Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log acpidump". Running tests: acpidump. acpidump: Dump ACPI tables. -------------------------------------------------------------------------------- Test 1 of 1: Dump ACPI tables. FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. RSDP @ 7981d000 (36 bytes) ---- Root System Description Pointer: [0x000 0000 8] Signature: RSD PTR [0x008 0008 1] Checksum: 0x40 [0x009 0009 6] OEM ID: ALASKA [0x00f 0015 1] Revision: 0x02 [0x010 0016 4] RsdtAddress: 0x7981d028 [0x014 0020 4] Length: 0x00000024 [0x018 0024 8] XsdtAddress: 0x000000007981d0b0 [0x020 0032 1] Extended Checksum: 0x62 [0x021 0033 3] Reserved: 0x00 [0] [0x021 0033 3] Reserved: 0x00 [1] [0x021 0033 3] Reserved: 0x00 [2] XSDT @ 7981d0b0 (228 bytes) ---- Extended System Description Table: [0x000 0000 4] Signature: XSDT [0x004 0004 4] Length: 0x000000e4 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0xcd [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x01072009 [0x01c 0028 4] Creator ID: AMI [0x020 0032 4] Creator Revision: 0x00010013 [0x024 0036 8] Entry 00 FACP: 0x000000007984a5c0 [0x02c 0044 8] Entry 01 APIC: 0x000000007984a6d0 [0x034 0052 8] Entry 02 FPDT: 0x000000007984aab8 [0x03c 0060 8] Entry 03 FIDT: 0x000000007984ab00 [0x044 0068 8] Entry 04 SPMI: 0x000000007984aba0 [0x04c 0076 8] Entry 05 MCFG: 0x000000007984abe0 [0x054 0084 8] Entry 06 UEFI: 0x000000007984ac20 [0x05c 0092 8] Entry 07 BDAT: 0x000000007984ac68 [0x064 0100 8] Entry 08 HPET: 0x000000007984ac98 [0x06c 0108 8] Entry 09 MSCT: 0x000000007984acd0 [0x074 0116 8] Entry 10 PMCT: 0x000000007984ad60 [0x07c 0124 8] Entry 11 SLIT: 0x000000007984adc8 [0x084 0132 8] Entry 12 SRAT: 0x000000007984adf8 [0x08c 0140 8] Entry 13 WDDT: 0x000000007984bc50 [0x094 0148 8] Entry 14 SSDT: 0x000000007984bc90 [0x09c 0156 8] Entry 15 UEFI: 0x000000007985a968 [0x0a4 0164 8] Entry 16 SSDT: 0x000000007985a9c8 [0x0ac 0172 8] Entry 17 SSDT: 0x000000007985cb10 [0x0b4 0180 8] Entry 18 PRAD: 0x000000007985cb78 [0x0bc 0188 8] Entry 19 DMAR: 0x000000007985cc80 [0x0c4 0196 8] Entry 20 HEST: 0x000000007985cd68 [0x0cc 0204 8] Entry 21 BERT: 0x000000007985ce10 [0x0d4 0212 8] Entry 22 ERST: 0x000000007985ce40 [0x0dc 0220 8] Entry 23 EINJ: 0x000000007985d070 FACS @ 79e1bf80 (64 bytes) ---- Firmware ACPI Control Structure: [0x000 0000 4] Signature: FACS [0x004 0004 4] Length: 0x00000040 [0x008 0008 4] H/W Signature: 0x00000058 [0x00c 0012 4] Waking Vector: 0x00000000 [0x010 0016 4] Global Lock: 0x00000000 [0x014 0020 4] Flags: 0x00000000 [0x018 0024 8] X Waking Vector: 0x0000000000000000 [0x020 0032 1] Version: 0x02 [0x024 0036 4] OSPM Flags: 0x00000000 DSDT @ 7981d228 (185236 bytes) ---- Differentiated System Description Table: [0x000 0000 4] Signature: DSDT [0x004 0004 4] Length: 0x0002d394 [0x008 0008 1] Revision: 0x02 [0x009 0009 1] Checksum: 0x58 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x01072009 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20091013 Contains 0x2d370 bytes of AML byte code FACP @ 7984a5c0 (268 bytes) ---- Fixed ACPI Description Table: [0x000 0000 4] Signature: FACP [0x004 0004 4] Length: 0x0000010c [0x008 0008 1] Revision: 0x05 [0x009 0009 1] Checksum: 0x23 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x01072009 [0x01c 0028 4] Creator ID: AMI [0x020 0032 4] Creator Revision: 0x00010013 [0x024 0036 4] FACS Address: 0x79e1bf80 [0x028 0040 4] DSDT Address: 0x7981d228 [0x02c 0044 1] Model: 0x01 [0x02d 0045 1] PM Profile: 0x04 (Enterprise Server) [0x02e 0046 2] SCI Interrupt: 0x0009 [0x030 0048 4] SMI Command Port: 0x000000b2 [0x034 0052 1] ACPI Enable Value: 0xa0 [0x035 0053 1] ACPI Disable Value: 0xa1 [0x036 0054 1] S4BIOS Command: 0x00 [0x037 0055 1] P-State Control: 0x00 [0x038 0056 4] PM1A Event Block: 0x00000400 [0x03c 0060 4] PM1B Event Block: 0x00000000 [0x040 0064 4] PM1A Control Block: 0x00000404 [0x044 0068 4] PM1B Control Block: 0x00000000 [0x048 0072 4] PM2 Control Block: 0x00000450 [0x04c 0076 4] PM Timer Block: 0x00000408 [0x050 0080 4] GPE0 Block: 0x00000420 [0x054 0084 4] GPE1 Block: 0x00000000 [0x058 0088 1] PM1 Event Block Length: 0x04 [0x059 0089 1] PM1 Control Block Length: 0x02 [0x05a 0090 1] PM2 Control Block Length: 0x01 [0x05b 0091 1] PM Timer Block Length: 0x04 [0x05c 0092 1] GPE0 Block Length: 0x10 [0x05d 0093 1] GPE1 Block Length: 0x00 [0x05f 0095 1] _CST Support: 0x00 [0x060 0096 2] C2 Latency: 0x0065 [0x062 0098 2] C3 Latency: 0x03e9 [0x064 0100 2] CPU Cache Size: 0x0400 [0x066 0102 2] CPU Cache Flush Stride: 0x0010 [0x068 0104 1] Duty Cycle Offset: 0x01 [0x069 0105 1] Duty Cycle Width: 0x03 [0x06a 0106 1] RTC Day Alarm Index: 0x0d [0x06b 0107 1] RTC Month Alarm Index: 0x00 [0x06c 0108 1] RTC Century Index: 0x32 [0x06d 0109 2] IA-PC Boot Flags (see below): 0x0001 Legacy Devices Supported (V2): 0x1 8042 present on ports 60/64 (V2): 0x0 VGA Not Present (V4): 0x0 MSI Not Supported (V4): 0x0 PCIe ASPM Not supported (V4): 0x0 CMOS RTC Not Present (V5): 0x0 [0x070 0112 4] Flags (see below): 0x000084a5 WBINVD instruction (V1): 0x1 WBINVD flushes all caches (V1): 0x0 All CPUs support C1 (V1): 0x1 C2 works on MP system (V1): 0x0 Control Method Power Button (V1): 0x0 Control Method Sleep Button (V1): 0x1 RTC wake not in fixed reg space (V1): 0x0 RTC can wake system from S4 (V1): 0x1 32 bit PM timer (V1): 0x0 Docking Capability (V1): 0x0 Reset Register Supported (V2): 0x1 Sealed Case (V3): 0x0 Headless, No Video (V3): 0x0 Use native instr. after SLP_TYPx (V3): 0x0 PCI_EXP_WAK bits supported (V4): 0x0 Use platform clock (V4): 0x1 RTC_STS Valid after S4 wake (V4): 0x0 Remote power on capable (V4): 0x0 Use APIC Cluster Model (V4): 0x0 Use APIC Physical Dest. Mode (V4): 0x0 ACPI hardware is not implemented (V5): 0x0 S0 power savings are equal or better than S3 (V5): 0x0 Reserved (bits 22..31): 0x000 [0x081 0129 2] ARM Boot Flags (V5.1): 0x0000 PSCI Compliant (V5.1): 0x0 PSCI Use HSC instead of SMC (V5.1): 0x0 [0x083 0131 1] FADT Minor Version: 0x00 [0x074 0116 12] RESET_REG: (Generic Address Structure) [0x074 0116 1] addr_space_id: 0x01 (System I/O) [0x075 0117 1] reg_bit_width: 0x08 [0x076 0118 1] reg_bit_offset: 0x00 [0x077 0119 1] access_width: 0x00 (Undefined (legacy reasons)) [0x078 0120 8] address: 0x0000000000000cf9 [0x080 0128 1] RESET_VALUE: 0x06 [0x084 0132 8] X_FIRMWARE_CTRL: 0x0000000000000000 [0x08c 0140 8] X_DSDT: 0x000000007981d228 [0x094 0148 12] X_PM1a_EVT_BLK: (Generic Address Structure) [0x094 0148 1] addr_space_id: 0x01 (System I/O) [0x095 0149 1] reg_bit_width: 0x20 [0x096 0150 1] reg_bit_offset: 0x00 [0x097 0151 1] access_width: 0x02 (Word Access) [0x098 0152 8] address: 0x0000000000000400 [0x0a0 0160 12] X_PM1b_EVT_BLK: (Generic Address Structure) [0x0a0 0160 1] addr_space_id: 0x01 (System I/O) [0x0a1 0161 1] reg_bit_width: 0x00 [0x0a2 0162 1] reg_bit_offset: 0x00 [0x0a3 0163 1] access_width: 0x02 (Word Access) [0x0a4 0164 8] address: 0x0000000000000000 [0x0ac 0172 12] X_PM1a_CNT_BLK: (Generic Address Structure) [0x0ac 0172 1] addr_space_id: 0x01 (System I/O) [0x0ad 0173 1] reg_bit_width: 0x10 [0x0ae 0174 1] reg_bit_offset: 0x00 [0x0af 0175 1] access_width: 0x02 (Word Access) [0x0b0 0176 8] address: 0x0000000000000404 [0x0b8 0184 12] X_PM1b_CNT_BLK: (Generic Address Structure) [0x0b8 0184 1] addr_space_id: 0x01 (System I/O) [0x0b9 0185 1] reg_bit_width: 0x00 [0x0ba 0186 1] reg_bit_offset: 0x00 [0x0bb 0187 1] access_width: 0x02 (Word Access) [0x0bc 0188 8] address: 0x0000000000000000 [0x0c4 0196 12] X_PM2_CNT_BLK: (Generic Address Structure) [0x0c4 0196 1] addr_space_id: 0x01 (System I/O) [0x0c5 0197 1] reg_bit_width: 0x08 [0x0c6 0198 1] reg_bit_offset: 0x00 [0x0c7 0199 1] access_width: 0x01 (Byte Access) [0x0c8 0200 8] address: 0x0000000000000450 [0x0d0 0208 12] X_PM_TMR_BLK: (Generic Address Structure) [0x0d0 0208 1] addr_space_id: 0x01 (System I/O) [0x0d1 0209 1] reg_bit_width: 0x20 [0x0d2 0210 1] reg_bit_offset: 0x00 [0x0d3 0211 1] access_width: 0x03 (DWord Access) [0x0d4 0212 8] address: 0x0000000000000408 [0x0dc 0220 12] X_GPE0_BLK: (Generic Address Structure) [0x0dc 0220 1] addr_space_id: 0x01 (System I/O) [0x0dd 0221 1] reg_bit_width: 0x80 [0x0de 0222 1] reg_bit_offset: 0x00 [0x0df 0223 1] access_width: 0x01 (Byte Access) [0x0e0 0224 8] address: 0x0000000000000420 [0x0e8 0232 12] X_GPE1_BLK: (Generic Address Structure) [0x0e8 0232 1] addr_space_id: 0x01 (System I/O) [0x0e9 0233 1] reg_bit_width: 0x00 [0x0ea 0234 1] reg_bit_offset: 0x00 [0x0eb 0235 1] access_width: 0x01 (Byte Access) [0x0ec 0236 8] address: 0x0000000000000000 [0x0f4 0244 12] SLEEP_CONTROL_REG: (Generic Address Structure) [0x0f4 0244 1] addr_space_id: 0x00 (System Memory) [0x0f5 0245 1] reg_bit_width: 0x00 [0x0f6 0246 1] reg_bit_offset: 0x00 [0x0f7 0247 1] access_width: 0x00 (Undefined (legacy reasons)) [0x0f8 0248 8] address: 0x0000000000000000 [0x100 0256 12] SLEEP_STATUS_REG: (Generic Address Structure) [0x100 0256 1] addr_space_id: 0x00 (System Memory) [0x101 0257 1] reg_bit_width: 0x00 [0x102 0258 1] reg_bit_offset: 0x00 [0x103 0259 1] access_width: 0x00 (Undefined (legacy reasons)) [0x104 0260 8] address: 0x0000000000000000 APIC @ 7984a6d0 (996 bytes) ---- Multiple APIC Description Table: [0x000 0000 4] Signature: APIC [0x004 0004 4] Length: 0x000003e4 [0x008 0008 1] Revision: 0x03 [0x009 0009 1] Checksum: 0x1f [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x01072009 [0x01c 0028 4] Creator ID: AMI [0x020 0032 4] Creator Revision: 0x00010013 [0x024 0036 4] Local APIC Address: 0xfee00000 [0x028 0040 4] Flags: 0x00000001 PCAT_COMPAT: 0x1 APIC Structure #1: [0x02c 0044 1] Type: 0x00 (Processor Local APIC) [0x02d 0045 1] Length: 0x08 [0x02e 0046 1] ACPI CPU ID: 0x00 [0x02f 0047 1] APIC ID: 0x00 [0x030 0048 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #2: [0x034 0052 1] Type: 0x00 (Processor Local APIC) [0x035 0053 1] Length: 0x08 [0x036 0054 1] ACPI CPU ID: 0x02 [0x037 0055 1] APIC ID: 0x02 [0x038 0056 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #3: [0x03c 0060 1] Type: 0x00 (Processor Local APIC) [0x03d 0061 1] Length: 0x08 [0x03e 0062 1] ACPI CPU ID: 0x04 [0x03f 0063 1] APIC ID: 0x04 [0x040 0064 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #4: [0x044 0068 1] Type: 0x00 (Processor Local APIC) [0x045 0069 1] Length: 0x08 [0x046 0070 1] ACPI CPU ID: 0x06 [0x047 0071 1] APIC ID: 0x06 [0x048 0072 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #5: [0x04c 0076 1] Type: 0x00 (Processor Local APIC) [0x04d 0077 1] Length: 0x08 [0x04e 0078 1] ACPI CPU ID: 0x08 [0x04f 0079 1] APIC ID: 0x08 [0x050 0080 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #6: [0x054 0084 1] Type: 0x00 (Processor Local APIC) [0x055 0085 1] Length: 0x08 [0x056 0086 1] ACPI CPU ID: 0x0a [0x057 0087 1] APIC ID: 0x0a [0x058 0088 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #7: [0x05c 0092 1] Type: 0x00 (Processor Local APIC) [0x05d 0093 1] Length: 0x08 [0x05e 0094 1] ACPI CPU ID: 0x0c [0x05f 0095 1] APIC ID: 0x0c [0x060 0096 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #8: [0x064 0100 1] Type: 0x00 (Processor Local APIC) [0x065 0101 1] Length: 0x08 [0x066 0102 1] ACPI CPU ID: 0x0e [0x067 0103 1] APIC ID: 0x0e [0x068 0104 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #9: [0x06c 0108 1] Type: 0x00 (Processor Local APIC) [0x06d 0109 1] Length: 0x08 [0x06e 0110 1] ACPI CPU ID: 0x10 [0x06f 0111 1] APIC ID: 0x10 [0x070 0112 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #10: [0x074 0116 1] Type: 0x00 (Processor Local APIC) [0x075 0117 1] Length: 0x08 [0x076 0118 1] ACPI CPU ID: 0x12 [0x077 0119 1] APIC ID: 0x12 [0x078 0120 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #11: [0x07c 0124 1] Type: 0x00 (Processor Local APIC) [0x07d 0125 1] Length: 0x08 [0x07e 0126 1] ACPI CPU ID: 0x14 [0x07f 0127 1] APIC ID: 0x14 [0x080 0128 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #12: [0x084 0132 1] Type: 0x00 (Processor Local APIC) [0x085 0133 1] Length: 0x08 [0x086 0134 1] ACPI CPU ID: 0x16 [0x087 0135 1] APIC ID: 0x16 [0x088 0136 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #13: [0x08c 0140 1] Type: 0x00 (Processor Local APIC) [0x08d 0141 1] Length: 0x08 [0x08e 0142 1] ACPI CPU ID: 0x18 [0x08f 0143 1] APIC ID: 0x18 [0x090 0144 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #14: [0x094 0148 1] Type: 0x00 (Processor Local APIC) [0x095 0149 1] Length: 0x08 [0x096 0150 1] ACPI CPU ID: 0x1a [0x097 0151 1] APIC ID: 0x1a [0x098 0152 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #15: [0x09c 0156 1] Type: 0x00 (Processor Local APIC) [0x09d 0157 1] Length: 0x08 [0x09e 0158 1] ACPI CPU ID: 0x1c [0x09f 0159 1] APIC ID: 0x1c [0x0a0 0160 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #16: [0x0a4 0164 1] Type: 0x00 (Processor Local APIC) [0x0a5 0165 1] Length: 0x08 [0x0a6 0166 1] ACPI CPU ID: 0x1e [0x0a7 0167 1] APIC ID: 0x1e [0x0a8 0168 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #17: [0x0ac 0172 1] Type: 0x00 (Processor Local APIC) [0x0ad 0173 1] Length: 0x08 [0x0ae 0174 1] ACPI CPU ID: 0x20 [0x0af 0175 1] APIC ID: 0x20 [0x0b0 0176 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #18: [0x0b4 0180 1] Type: 0x00 (Processor Local APIC) [0x0b5 0181 1] Length: 0x08 [0x0b6 0182 1] ACPI CPU ID: 0x22 [0x0b7 0183 1] APIC ID: 0x22 [0x0b8 0184 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #19: [0x0bc 0188 1] Type: 0x00 (Processor Local APIC) [0x0bd 0189 1] Length: 0x08 [0x0be 0190 1] ACPI CPU ID: 0x24 [0x0bf 0191 1] APIC ID: 0x24 [0x0c0 0192 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #20: [0x0c4 0196 1] Type: 0x00 (Processor Local APIC) [0x0c5 0197 1] Length: 0x08 [0x0c6 0198 1] ACPI CPU ID: 0x26 [0x0c7 0199 1] APIC ID: 0x26 [0x0c8 0200 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #21: [0x0cc 0204 1] Type: 0x00 (Processor Local APIC) [0x0cd 0205 1] Length: 0x08 [0x0ce 0206 1] ACPI CPU ID: 0x28 [0x0cf 0207 1] APIC ID: 0x28 [0x0d0 0208 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #22: [0x0d4 0212 1] Type: 0x00 (Processor Local APIC) [0x0d5 0213 1] Length: 0x08 [0x0d6 0214 1] ACPI CPU ID: 0x2a [0x0d7 0215 1] APIC ID: 0x2a [0x0d8 0216 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #23: [0x0dc 0220 1] Type: 0x00 (Processor Local APIC) [0x0dd 0221 1] Length: 0x08 [0x0de 0222 1] ACPI CPU ID: 0x2c [0x0df 0223 1] APIC ID: 0x2c [0x0e0 0224 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #24: [0x0e4 0228 1] Type: 0x00 (Processor Local APIC) [0x0e5 0229 1] Length: 0x08 [0x0e6 0230 1] ACPI CPU ID: 0x2e [0x0e7 0231 1] APIC ID: 0x2e [0x0e8 0232 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #25: [0x0ec 0236 1] Type: 0x00 (Processor Local APIC) [0x0ed 0237 1] Length: 0x08 [0x0ee 0238 1] ACPI CPU ID: 0x30 [0x0ef 0239 1] APIC ID: 0x30 [0x0f0 0240 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #26: [0x0f4 0244 1] Type: 0x00 (Processor Local APIC) [0x0f5 0245 1] Length: 0x08 [0x0f6 0246 1] ACPI CPU ID: 0x32 [0x0f7 0247 1] APIC ID: 0x32 [0x0f8 0248 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #27: [0x0fc 0252 1] Type: 0x00 (Processor Local APIC) [0x0fd 0253 1] Length: 0x08 [0x0fe 0254 1] ACPI CPU ID: 0x34 [0x0ff 0255 1] APIC ID: 0x34 [0x100 0256 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #28: [0x104 0260 1] Type: 0x00 (Processor Local APIC) [0x105 0261 1] Length: 0x08 [0x106 0262 1] ACPI CPU ID: 0x36 [0x107 0263 1] APIC ID: 0x36 [0x108 0264 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #29: [0x10c 0268 1] Type: 0x00 (Processor Local APIC) [0x10d 0269 1] Length: 0x08 [0x10e 0270 1] ACPI CPU ID: 0x38 [0x10f 0271 1] APIC ID: 0x38 [0x110 0272 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #30: [0x114 0276 1] Type: 0x00 (Processor Local APIC) [0x115 0277 1] Length: 0x08 [0x116 0278 1] ACPI CPU ID: 0x3a [0x117 0279 1] APIC ID: 0x3a [0x118 0280 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #31: [0x11c 0284 1] Type: 0x00 (Processor Local APIC) [0x11d 0285 1] Length: 0x08 [0x11e 0286 1] ACPI CPU ID: 0x3c [0x11f 0287 1] APIC ID: 0x3c [0x120 0288 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #32: [0x124 0292 1] Type: 0x00 (Processor Local APIC) [0x125 0293 1] Length: 0x08 [0x126 0294 1] ACPI CPU ID: 0x3e [0x127 0295 1] APIC ID: 0x3e [0x128 0296 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #33: [0x12c 0300 1] Type: 0x00 (Processor Local APIC) [0x12d 0301 1] Length: 0x08 [0x12e 0302 1] ACPI CPU ID: 0x01 [0x12f 0303 1] APIC ID: 0x01 [0x130 0304 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #34: [0x134 0308 1] Type: 0x00 (Processor Local APIC) [0x135 0309 1] Length: 0x08 [0x136 0310 1] ACPI CPU ID: 0x03 [0x137 0311 1] APIC ID: 0x03 [0x138 0312 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #35: [0x13c 0316 1] Type: 0x00 (Processor Local APIC) [0x13d 0317 1] Length: 0x08 [0x13e 0318 1] ACPI CPU ID: 0x05 [0x13f 0319 1] APIC ID: 0x05 [0x140 0320 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #36: [0x144 0324 1] Type: 0x00 (Processor Local APIC) [0x145 0325 1] Length: 0x08 [0x146 0326 1] ACPI CPU ID: 0x07 [0x147 0327 1] APIC ID: 0x07 [0x148 0328 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #37: [0x14c 0332 1] Type: 0x00 (Processor Local APIC) [0x14d 0333 1] Length: 0x08 [0x14e 0334 1] ACPI CPU ID: 0x09 [0x14f 0335 1] APIC ID: 0x09 [0x150 0336 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #38: [0x154 0340 1] Type: 0x00 (Processor Local APIC) [0x155 0341 1] Length: 0x08 [0x156 0342 1] ACPI CPU ID: 0x0b [0x157 0343 1] APIC ID: 0x0b [0x158 0344 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #39: [0x15c 0348 1] Type: 0x00 (Processor Local APIC) [0x15d 0349 1] Length: 0x08 [0x15e 0350 1] ACPI CPU ID: 0x0d [0x15f 0351 1] APIC ID: 0x0d [0x160 0352 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #40: [0x164 0356 1] Type: 0x00 (Processor Local APIC) [0x165 0357 1] Length: 0x08 [0x166 0358 1] ACPI CPU ID: 0x0f [0x167 0359 1] APIC ID: 0x0f [0x168 0360 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #41: [0x16c 0364 1] Type: 0x00 (Processor Local APIC) [0x16d 0365 1] Length: 0x08 [0x16e 0366 1] ACPI CPU ID: 0x11 [0x16f 0367 1] APIC ID: 0x11 [0x170 0368 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #42: [0x174 0372 1] Type: 0x00 (Processor Local APIC) [0x175 0373 1] Length: 0x08 [0x176 0374 1] ACPI CPU ID: 0x13 [0x177 0375 1] APIC ID: 0x13 [0x178 0376 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #43: [0x17c 0380 1] Type: 0x00 (Processor Local APIC) [0x17d 0381 1] Length: 0x08 [0x17e 0382 1] ACPI CPU ID: 0x15 [0x17f 0383 1] APIC ID: 0x15 [0x180 0384 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #44: [0x184 0388 1] Type: 0x00 (Processor Local APIC) [0x185 0389 1] Length: 0x08 [0x186 0390 1] ACPI CPU ID: 0x17 [0x187 0391 1] APIC ID: 0x17 [0x188 0392 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #45: [0x18c 0396 1] Type: 0x00 (Processor Local APIC) [0x18d 0397 1] Length: 0x08 [0x18e 0398 1] ACPI CPU ID: 0x19 [0x18f 0399 1] APIC ID: 0x19 [0x190 0400 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #46: [0x194 0404 1] Type: 0x00 (Processor Local APIC) [0x195 0405 1] Length: 0x08 [0x196 0406 1] ACPI CPU ID: 0x1b [0x197 0407 1] APIC ID: 0x1b [0x198 0408 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #47: [0x19c 0412 1] Type: 0x00 (Processor Local APIC) [0x19d 0413 1] Length: 0x08 [0x19e 0414 1] ACPI CPU ID: 0x1d [0x19f 0415 1] APIC ID: 0x1d [0x1a0 0416 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #48: [0x1a4 0420 1] Type: 0x00 (Processor Local APIC) [0x1a5 0421 1] Length: 0x08 [0x1a6 0422 1] ACPI CPU ID: 0x1f [0x1a7 0423 1] APIC ID: 0x1f [0x1a8 0424 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #49: [0x1ac 0428 1] Type: 0x00 (Processor Local APIC) [0x1ad 0429 1] Length: 0x08 [0x1ae 0430 1] ACPI CPU ID: 0x21 [0x1af 0431 1] APIC ID: 0x21 [0x1b0 0432 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #50: [0x1b4 0436 1] Type: 0x00 (Processor Local APIC) [0x1b5 0437 1] Length: 0x08 [0x1b6 0438 1] ACPI CPU ID: 0x23 [0x1b7 0439 1] APIC ID: 0x23 [0x1b8 0440 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #51: [0x1bc 0444 1] Type: 0x00 (Processor Local APIC) [0x1bd 0445 1] Length: 0x08 [0x1be 0446 1] ACPI CPU ID: 0x25 [0x1bf 0447 1] APIC ID: 0x25 [0x1c0 0448 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #52: [0x1c4 0452 1] Type: 0x00 (Processor Local APIC) [0x1c5 0453 1] Length: 0x08 [0x1c6 0454 1] ACPI CPU ID: 0x27 [0x1c7 0455 1] APIC ID: 0x27 [0x1c8 0456 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #53: [0x1cc 0460 1] Type: 0x00 (Processor Local APIC) [0x1cd 0461 1] Length: 0x08 [0x1ce 0462 1] ACPI CPU ID: 0x29 [0x1cf 0463 1] APIC ID: 0x29 [0x1d0 0464 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #54: [0x1d4 0468 1] Type: 0x00 (Processor Local APIC) [0x1d5 0469 1] Length: 0x08 [0x1d6 0470 1] ACPI CPU ID: 0x2b [0x1d7 0471 1] APIC ID: 0x2b [0x1d8 0472 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #55: [0x1dc 0476 1] Type: 0x00 (Processor Local APIC) [0x1dd 0477 1] Length: 0x08 [0x1de 0478 1] ACPI CPU ID: 0x2d [0x1df 0479 1] APIC ID: 0x2d [0x1e0 0480 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #56: [0x1e4 0484 1] Type: 0x00 (Processor Local APIC) [0x1e5 0485 1] Length: 0x08 [0x1e6 0486 1] ACPI CPU ID: 0x2f [0x1e7 0487 1] APIC ID: 0x2f [0x1e8 0488 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #57: [0x1ec 0492 1] Type: 0x00 (Processor Local APIC) [0x1ed 0493 1] Length: 0x08 [0x1ee 0494 1] ACPI CPU ID: 0x31 [0x1ef 0495 1] APIC ID: 0x31 [0x1f0 0496 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #58: [0x1f4 0500 1] Type: 0x00 (Processor Local APIC) [0x1f5 0501 1] Length: 0x08 [0x1f6 0502 1] ACPI CPU ID: 0x33 [0x1f7 0503 1] APIC ID: 0x33 [0x1f8 0504 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #59: [0x1fc 0508 1] Type: 0x00 (Processor Local APIC) [0x1fd 0509 1] Length: 0x08 [0x1fe 0510 1] ACPI CPU ID: 0x35 [0x1ff 0511 1] APIC ID: 0x35 [0x200 0512 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #60: [0x204 0516 1] Type: 0x00 (Processor Local APIC) [0x205 0517 1] Length: 0x08 [0x206 0518 1] ACPI CPU ID: 0x37 [0x207 0519 1] APIC ID: 0x37 [0x208 0520 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #61: [0x20c 0524 1] Type: 0x00 (Processor Local APIC) [0x20d 0525 1] Length: 0x08 [0x20e 0526 1] ACPI CPU ID: 0x39 [0x20f 0527 1] APIC ID: 0x39 [0x210 0528 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #62: [0x214 0532 1] Type: 0x00 (Processor Local APIC) [0x215 0533 1] Length: 0x08 [0x216 0534 1] ACPI CPU ID: 0x3b [0x217 0535 1] APIC ID: 0x3b [0x218 0536 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #63: [0x21c 0540 1] Type: 0x00 (Processor Local APIC) [0x21d 0541 1] Length: 0x08 [0x21e 0542 1] ACPI CPU ID: 0x3d [0x21f 0543 1] APIC ID: 0x3d [0x220 0544 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #64: [0x224 0548 1] Type: 0x00 (Processor Local APIC) [0x225 0549 1] Length: 0x08 [0x226 0550 1] ACPI CPU ID: 0x3f [0x227 0551 1] APIC ID: 0x3f [0x228 0552 4] Flags: 0x00000001 Enabled: 0x1 APIC Structure #65: [0x22c 0556 1] Type: 0x04 (Local APIC NMI) [0x22d 0557 1] Length: 0x06 [0x22e 0558 1] ACPI CPU ID: 0x00 [0x22f 0559 2] Flags: 0x0005 [0x231 0561 1] Local APIC LINT: 0x01 APIC Structure #66: [0x232 0562 1] Type: 0x04 (Local APIC NMI) [0x233 0563 1] Length: 0x06 [0x234 0564 1] ACPI CPU ID: 0x02 [0x235 0565 2] Flags: 0x0005 [0x237 0567 1] Local APIC LINT: 0x01 APIC Structure #67: [0x238 0568 1] Type: 0x04 (Local APIC NMI) [0x239 0569 1] Length: 0x06 [0x23a 0570 1] ACPI CPU ID: 0x04 [0x23b 0571 2] Flags: 0x0005 [0x23d 0573 1] Local APIC LINT: 0x01 APIC Structure #68: [0x23e 0574 1] Type: 0x04 (Local APIC NMI) [0x23f 0575 1] Length: 0x06 [0x240 0576 1] ACPI CPU ID: 0x06 [0x241 0577 2] Flags: 0x0005 [0x243 0579 1] Local APIC LINT: 0x01 APIC Structure #69: [0x244 0580 1] Type: 0x04 (Local APIC NMI) [0x245 0581 1] Length: 0x06 [0x246 0582 1] ACPI CPU ID: 0x08 [0x247 0583 2] Flags: 0x0005 [0x249 0585 1] Local APIC LINT: 0x01 APIC Structure #70: [0x24a 0586 1] Type: 0x04 (Local APIC NMI) [0x24b 0587 1] Length: 0x06 [0x24c 0588 1] ACPI CPU ID: 0x0a [0x24d 0589 2] Flags: 0x0005 [0x24f 0591 1] Local APIC LINT: 0x01 APIC Structure #71: [0x250 0592 1] Type: 0x04 (Local APIC NMI) [0x251 0593 1] Length: 0x06 [0x252 0594 1] ACPI CPU ID: 0x0c [0x253 0595 2] Flags: 0x0005 [0x255 0597 1] Local APIC LINT: 0x01 APIC Structure #72: [0x256 0598 1] Type: 0x04 (Local APIC NMI) [0x257 0599 1] Length: 0x06 [0x258 0600 1] ACPI CPU ID: 0x0e [0x259 0601 2] Flags: 0x0005 [0x25b 0603 1] Local APIC LINT: 0x01 APIC Structure #73: [0x25c 0604 1] Type: 0x04 (Local APIC NMI) [0x25d 0605 1] Length: 0x06 [0x25e 0606 1] ACPI CPU ID: 0x10 [0x25f 0607 2] Flags: 0x0005 [0x261 0609 1] Local APIC LINT: 0x01 APIC Structure #74: [0x262 0610 1] Type: 0x04 (Local APIC NMI) [0x263 0611 1] Length: 0x06 [0x264 0612 1] ACPI CPU ID: 0x12 [0x265 0613 2] Flags: 0x0005 [0x267 0615 1] Local APIC LINT: 0x01 APIC Structure #75: [0x268 0616 1] Type: 0x04 (Local APIC NMI) [0x269 0617 1] Length: 0x06 [0x26a 0618 1] ACPI CPU ID: 0x14 [0x26b 0619 2] Flags: 0x0005 [0x26d 0621 1] Local APIC LINT: 0x01 APIC Structure #76: [0x26e 0622 1] Type: 0x04 (Local APIC NMI) [0x26f 0623 1] Length: 0x06 [0x270 0624 1] ACPI CPU ID: 0x16 [0x271 0625 2] Flags: 0x0005 [0x273 0627 1] Local APIC LINT: 0x01 APIC Structure #77: [0x274 0628 1] Type: 0x04 (Local APIC NMI) [0x275 0629 1] Length: 0x06 [0x276 0630 1] ACPI CPU ID: 0x18 [0x277 0631 2] Flags: 0x0005 [0x279 0633 1] Local APIC LINT: 0x01 APIC Structure #78: [0x27a 0634 1] Type: 0x04 (Local APIC NMI) [0x27b 0635 1] Length: 0x06 [0x27c 0636 1] ACPI CPU ID: 0x1a [0x27d 0637 2] Flags: 0x0005 [0x27f 0639 1] Local APIC LINT: 0x01 APIC Structure #79: [0x280 0640 1] Type: 0x04 (Local APIC NMI) [0x281 0641 1] Length: 0x06 [0x282 0642 1] ACPI CPU ID: 0x1c [0x283 0643 2] Flags: 0x0005 [0x285 0645 1] Local APIC LINT: 0x01 APIC Structure #80: [0x286 0646 1] Type: 0x04 (Local APIC NMI) [0x287 0647 1] Length: 0x06 [0x288 0648 1] ACPI CPU ID: 0x1e [0x289 0649 2] Flags: 0x0005 [0x28b 0651 1] Local APIC LINT: 0x01 APIC Structure #81: [0x28c 0652 1] Type: 0x04 (Local APIC NMI) [0x28d 0653 1] Length: 0x06 [0x28e 0654 1] ACPI CPU ID: 0x20 [0x28f 0655 2] Flags: 0x0005 [0x291 0657 1] Local APIC LINT: 0x01 APIC Structure #82: [0x292 0658 1] Type: 0x04 (Local APIC NMI) [0x293 0659 1] Length: 0x06 [0x294 0660 1] ACPI CPU ID: 0x22 [0x295 0661 2] Flags: 0x0005 [0x297 0663 1] Local APIC LINT: 0x01 APIC Structure #83: [0x298 0664 1] Type: 0x04 (Local APIC NMI) [0x299 0665 1] Length: 0x06 [0x29a 0666 1] ACPI CPU ID: 0x24 [0x29b 0667 2] Flags: 0x0005 [0x29d 0669 1] Local APIC LINT: 0x01 APIC Structure #84: [0x29e 0670 1] Type: 0x04 (Local APIC NMI) [0x29f 0671 1] Length: 0x06 [0x2a0 0672 1] ACPI CPU ID: 0x26 [0x2a1 0673 2] Flags: 0x0005 [0x2a3 0675 1] Local APIC LINT: 0x01 APIC Structure #85: [0x2a4 0676 1] Type: 0x04 (Local APIC NMI) [0x2a5 0677 1] Length: 0x06 [0x2a6 0678 1] ACPI CPU ID: 0x28 [0x2a7 0679 2] Flags: 0x0005 [0x2a9 0681 1] Local APIC LINT: 0x01 APIC Structure #86: [0x2aa 0682 1] Type: 0x04 (Local APIC NMI) [0x2ab 0683 1] Length: 0x06 [0x2ac 0684 1] ACPI CPU ID: 0x2a [0x2ad 0685 2] Flags: 0x0005 [0x2af 0687 1] Local APIC LINT: 0x01 APIC Structure #87: [0x2b0 0688 1] Type: 0x04 (Local APIC NMI) [0x2b1 0689 1] Length: 0x06 [0x2b2 0690 1] ACPI CPU ID: 0x2c [0x2b3 0691 2] Flags: 0x0005 [0x2b5 0693 1] Local APIC LINT: 0x01 APIC Structure #88: [0x2b6 0694 1] Type: 0x04 (Local APIC NMI) [0x2b7 0695 1] Length: 0x06 [0x2b8 0696 1] ACPI CPU ID: 0x2e [0x2b9 0697 2] Flags: 0x0005 [0x2bb 0699 1] Local APIC LINT: 0x01 APIC Structure #89: [0x2bc 0700 1] Type: 0x04 (Local APIC NMI) [0x2bd 0701 1] Length: 0x06 [0x2be 0702 1] ACPI CPU ID: 0x30 [0x2bf 0703 2] Flags: 0x0005 [0x2c1 0705 1] Local APIC LINT: 0x01 APIC Structure #90: [0x2c2 0706 1] Type: 0x04 (Local APIC NMI) [0x2c3 0707 1] Length: 0x06 [0x2c4 0708 1] ACPI CPU ID: 0x32 [0x2c5 0709 2] Flags: 0x0005 [0x2c7 0711 1] Local APIC LINT: 0x01 APIC Structure #91: [0x2c8 0712 1] Type: 0x04 (Local APIC NMI) [0x2c9 0713 1] Length: 0x06 [0x2ca 0714 1] ACPI CPU ID: 0x34 [0x2cb 0715 2] Flags: 0x0005 [0x2cd 0717 1] Local APIC LINT: 0x01 APIC Structure #92: [0x2ce 0718 1] Type: 0x04 (Local APIC NMI) [0x2cf 0719 1] Length: 0x06 [0x2d0 0720 1] ACPI CPU ID: 0x36 [0x2d1 0721 2] Flags: 0x0005 [0x2d3 0723 1] Local APIC LINT: 0x01 APIC Structure #93: [0x2d4 0724 1] Type: 0x04 (Local APIC NMI) [0x2d5 0725 1] Length: 0x06 [0x2d6 0726 1] ACPI CPU ID: 0x38 [0x2d7 0727 2] Flags: 0x0005 [0x2d9 0729 1] Local APIC LINT: 0x01 APIC Structure #94: [0x2da 0730 1] Type: 0x04 (Local APIC NMI) [0x2db 0731 1] Length: 0x06 [0x2dc 0732 1] ACPI CPU ID: 0x3a [0x2dd 0733 2] Flags: 0x0005 [0x2df 0735 1] Local APIC LINT: 0x01 APIC Structure #95: [0x2e0 0736 1] Type: 0x04 (Local APIC NMI) [0x2e1 0737 1] Length: 0x06 [0x2e2 0738 1] ACPI CPU ID: 0x3c [0x2e3 0739 2] Flags: 0x0005 [0x2e5 0741 1] Local APIC LINT: 0x01 APIC Structure #96: [0x2e6 0742 1] Type: 0x04 (Local APIC NMI) [0x2e7 0743 1] Length: 0x06 [0x2e8 0744 1] ACPI CPU ID: 0x3e [0x2e9 0745 2] Flags: 0x0005 [0x2eb 0747 1] Local APIC LINT: 0x01 APIC Structure #97: [0x2ec 0748 1] Type: 0x04 (Local APIC NMI) [0x2ed 0749 1] Length: 0x06 [0x2ee 0750 1] ACPI CPU ID: 0x01 [0x2ef 0751 2] Flags: 0x0005 [0x2f1 0753 1] Local APIC LINT: 0x01 APIC Structure #98: [0x2f2 0754 1] Type: 0x04 (Local APIC NMI) [0x2f3 0755 1] Length: 0x06 [0x2f4 0756 1] ACPI CPU ID: 0x03 [0x2f5 0757 2] Flags: 0x0005 [0x2f7 0759 1] Local APIC LINT: 0x01 APIC Structure #99: [0x2f8 0760 1] Type: 0x04 (Local APIC NMI) [0x2f9 0761 1] Length: 0x06 [0x2fa 0762 1] ACPI CPU ID: 0x05 [0x2fb 0763 2] Flags: 0x0005 [0x2fd 0765 1] Local APIC LINT: 0x01 APIC Structure #100: [0x2fe 0766 1] Type: 0x04 (Local APIC NMI) [0x2ff 0767 1] Length: 0x06 [0x300 0768 1] ACPI CPU ID: 0x07 [0x301 0769 2] Flags: 0x0005 [0x303 0771 1] Local APIC LINT: 0x01 APIC Structure #101: [0x304 0772 1] Type: 0x04 (Local APIC NMI) [0x305 0773 1] Length: 0x06 [0x306 0774 1] ACPI CPU ID: 0x09 [0x307 0775 2] Flags: 0x0005 [0x309 0777 1] Local APIC LINT: 0x01 APIC Structure #102: [0x30a 0778 1] Type: 0x04 (Local APIC NMI) [0x30b 0779 1] Length: 0x06 [0x30c 0780 1] ACPI CPU ID: 0x0b [0x30d 0781 2] Flags: 0x0005 [0x30f 0783 1] Local APIC LINT: 0x01 APIC Structure #103: [0x310 0784 1] Type: 0x04 (Local APIC NMI) [0x311 0785 1] Length: 0x06 [0x312 0786 1] ACPI CPU ID: 0x0d [0x313 0787 2] Flags: 0x0005 [0x315 0789 1] Local APIC LINT: 0x01 APIC Structure #104: [0x316 0790 1] Type: 0x04 (Local APIC NMI) [0x317 0791 1] Length: 0x06 [0x318 0792 1] ACPI CPU ID: 0x0f [0x319 0793 2] Flags: 0x0005 [0x31b 0795 1] Local APIC LINT: 0x01 APIC Structure #105: [0x31c 0796 1] Type: 0x04 (Local APIC NMI) [0x31d 0797 1] Length: 0x06 [0x31e 0798 1] ACPI CPU ID: 0x11 [0x31f 0799 2] Flags: 0x0005 [0x321 0801 1] Local APIC LINT: 0x01 APIC Structure #106: [0x322 0802 1] Type: 0x04 (Local APIC NMI) [0x323 0803 1] Length: 0x06 [0x324 0804 1] ACPI CPU ID: 0x13 [0x325 0805 2] Flags: 0x0005 [0x327 0807 1] Local APIC LINT: 0x01 APIC Structure #107: [0x328 0808 1] Type: 0x04 (Local APIC NMI) [0x329 0809 1] Length: 0x06 [0x32a 0810 1] ACPI CPU ID: 0x15 [0x32b 0811 2] Flags: 0x0005 [0x32d 0813 1] Local APIC LINT: 0x01 APIC Structure #108: [0x32e 0814 1] Type: 0x04 (Local APIC NMI) [0x32f 0815 1] Length: 0x06 [0x330 0816 1] ACPI CPU ID: 0x17 [0x331 0817 2] Flags: 0x0005 [0x333 0819 1] Local APIC LINT: 0x01 APIC Structure #109: [0x334 0820 1] Type: 0x04 (Local APIC NMI) [0x335 0821 1] Length: 0x06 [0x336 0822 1] ACPI CPU ID: 0x19 [0x337 0823 2] Flags: 0x0005 [0x339 0825 1] Local APIC LINT: 0x01 APIC Structure #110: [0x33a 0826 1] Type: 0x04 (Local APIC NMI) [0x33b 0827 1] Length: 0x06 [0x33c 0828 1] ACPI CPU ID: 0x1b [0x33d 0829 2] Flags: 0x0005 [0x33f 0831 1] Local APIC LINT: 0x01 APIC Structure #111: [0x340 0832 1] Type: 0x04 (Local APIC NMI) [0x341 0833 1] Length: 0x06 [0x342 0834 1] ACPI CPU ID: 0x1d [0x343 0835 2] Flags: 0x0005 [0x345 0837 1] Local APIC LINT: 0x01 APIC Structure #112: [0x346 0838 1] Type: 0x04 (Local APIC NMI) [0x347 0839 1] Length: 0x06 [0x348 0840 1] ACPI CPU ID: 0x1f [0x349 0841 2] Flags: 0x0005 [0x34b 0843 1] Local APIC LINT: 0x01 APIC Structure #113: [0x34c 0844 1] Type: 0x04 (Local APIC NMI) [0x34d 0845 1] Length: 0x06 [0x34e 0846 1] ACPI CPU ID: 0x21 [0x34f 0847 2] Flags: 0x0005 [0x351 0849 1] Local APIC LINT: 0x01 APIC Structure #114: [0x352 0850 1] Type: 0x04 (Local APIC NMI) [0x353 0851 1] Length: 0x06 [0x354 0852 1] ACPI CPU ID: 0x23 [0x355 0853 2] Flags: 0x0005 [0x357 0855 1] Local APIC LINT: 0x01 APIC Structure #115: [0x358 0856 1] Type: 0x04 (Local APIC NMI) [0x359 0857 1] Length: 0x06 [0x35a 0858 1] ACPI CPU ID: 0x25 [0x35b 0859 2] Flags: 0x0005 [0x35d 0861 1] Local APIC LINT: 0x01 APIC Structure #116: [0x35e 0862 1] Type: 0x04 (Local APIC NMI) [0x35f 0863 1] Length: 0x06 [0x360 0864 1] ACPI CPU ID: 0x27 [0x361 0865 2] Flags: 0x0005 [0x363 0867 1] Local APIC LINT: 0x01 APIC Structure #117: [0x364 0868 1] Type: 0x04 (Local APIC NMI) [0x365 0869 1] Length: 0x06 [0x366 0870 1] ACPI CPU ID: 0x29 [0x367 0871 2] Flags: 0x0005 [0x369 0873 1] Local APIC LINT: 0x01 APIC Structure #118: [0x36a 0874 1] Type: 0x04 (Local APIC NMI) [0x36b 0875 1] Length: 0x06 [0x36c 0876 1] ACPI CPU ID: 0x2b [0x36d 0877 2] Flags: 0x0005 [0x36f 0879 1] Local APIC LINT: 0x01 APIC Structure #119: [0x370 0880 1] Type: 0x04 (Local APIC NMI) [0x371 0881 1] Length: 0x06 [0x372 0882 1] ACPI CPU ID: 0x2d [0x373 0883 2] Flags: 0x0005 [0x375 0885 1] Local APIC LINT: 0x01 APIC Structure #120: [0x376 0886 1] Type: 0x04 (Local APIC NMI) [0x377 0887 1] Length: 0x06 [0x378 0888 1] ACPI CPU ID: 0x2f [0x379 0889 2] Flags: 0x0005 [0x37b 0891 1] Local APIC LINT: 0x01 APIC Structure #121: [0x37c 0892 1] Type: 0x04 (Local APIC NMI) [0x37d 0893 1] Length: 0x06 [0x37e 0894 1] ACPI CPU ID: 0x31 [0x37f 0895 2] Flags: 0x0005 [0x381 0897 1] Local APIC LINT: 0x01 APIC Structure #122: [0x382 0898 1] Type: 0x04 (Local APIC NMI) [0x383 0899 1] Length: 0x06 [0x384 0900 1] ACPI CPU ID: 0x33 [0x385 0901 2] Flags: 0x0005 [0x387 0903 1] Local APIC LINT: 0x01 APIC Structure #123: [0x388 0904 1] Type: 0x04 (Local APIC NMI) [0x389 0905 1] Length: 0x06 [0x38a 0906 1] ACPI CPU ID: 0x35 [0x38b 0907 2] Flags: 0x0005 [0x38d 0909 1] Local APIC LINT: 0x01 APIC Structure #124: [0x38e 0910 1] Type: 0x04 (Local APIC NMI) [0x38f 0911 1] Length: 0x06 [0x390 0912 1] ACPI CPU ID: 0x37 [0x391 0913 2] Flags: 0x0005 [0x393 0915 1] Local APIC LINT: 0x01 APIC Structure #125: [0x394 0916 1] Type: 0x04 (Local APIC NMI) [0x395 0917 1] Length: 0x06 [0x396 0918 1] ACPI CPU ID: 0x39 [0x397 0919 2] Flags: 0x0005 [0x399 0921 1] Local APIC LINT: 0x01 APIC Structure #126: [0x39a 0922 1] Type: 0x04 (Local APIC NMI) [0x39b 0923 1] Length: 0x06 [0x39c 0924 1] ACPI CPU ID: 0x3b [0x39d 0925 2] Flags: 0x0005 [0x39f 0927 1] Local APIC LINT: 0x01 APIC Structure #127: [0x3a0 0928 1] Type: 0x04 (Local APIC NMI) [0x3a1 0929 1] Length: 0x06 [0x3a2 0930 1] ACPI CPU ID: 0x3d [0x3a3 0931 2] Flags: 0x0005 [0x3a5 0933 1] Local APIC LINT: 0x01 APIC Structure #128: [0x3a6 0934 1] Type: 0x04 (Local APIC NMI) [0x3a7 0935 1] Length: 0x06 [0x3a8 0936 1] ACPI CPU ID: 0x3f [0x3a9 0937 2] Flags: 0x0005 [0x3ab 0939 1] Local APIC LINT: 0x01 APIC Structure #129: [0x3ac 0940 1] Type: 0x01 (I/O APIC) [0x3ad 0941 1] Length: 0x0c [0x3ae 0942 1] I/O APIC ID: 0x00 [0x3b0 0944 4] I/O APIC Addr: 0xfec00000 [0x3b4 0948 4] Global IRQ Base: 0x00000000 APIC Structure #130: [0x3b8 0952 1] Type: 0x01 (I/O APIC) [0x3b9 0953 1] Length: 0x0c [0x3ba 0954 1] I/O APIC ID: 0x02 [0x3bc 0956 4] I/O APIC Addr: 0xfec01000 [0x3c0 0960 4] Global IRQ Base: 0x00000018 APIC Structure #131: [0x3c4 0964 1] Type: 0x01 (I/O APIC) [0x3c5 0965 1] Length: 0x0c [0x3c6 0966 1] I/O APIC ID: 0x03 [0x3c8 0968 4] I/O APIC Addr: 0xfec40000 [0x3cc 0972 4] Global IRQ Base: 0x00000030 APIC Structure #132: [0x3d0 0976 1] Type: 0x02 (Interrupt Source Override) [0x3d1 0977 1] Length: 0x0a [0x3d2 0978 1] Bus: 0x00 [0x3d3 0979 1] Source: 0x00 [0x3d4 0980 4] Gbl Sys Int: 0x00000002 [0x3d8 0984 2] Flags: 0x0000 Polarity: 0x0 Trigger Mode: 0x0 APIC Structure #133: [0x3da 0986 1] Type: 0x02 (Interrupt Source Override) [0x3db 0987 1] Length: 0x0a [0x3dc 0988 1] Bus: 0x00 [0x3dd 0989 1] Source: 0x09 [0x3de 0990 4] Gbl Sys Int: 0x00000009 [0x3e2 0994 2] Flags: 0x000d Polarity: 0x1 Trigger Mode: 0x3 FPDT @ 7984aab8 (68 bytes) ---- Firmware Performance Data Table: [0x000 0000 4] Signature: FPDT [0x004 0004 4] Length: 0x00000044 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0xfe [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x01072009 [0x01c 0028 4] Creator ID: AMI [0x020 0032 4] Creator Revision: 0x00010013 S3 Performance Table pointer: [0x024 0036 2] Type: 0x0001 [0x026 0038 1] Length: 0x10 [0x027 0039 1] Revision: 0x01 [0x028 0040 4] Reserved: 0x00000000 [0x02c 0044 8] S3PT Pointer: 0x000000007bac3f30 Basic Boot Performance Data Record pointer: [0x034 0052 2] Type: 0x0000 [0x036 0054 1] Length: 0x10 [0x037 0055 1] Revision: 0x01 [0x038 0056 4] Reserved: 0x00000000 [0x03c 0060 8] FBPT Pointer: 0x000000007bac3f50 FIDT @ 7984ab00 (156 bytes) ---- [0x000 0000 4] Signature: FIDT [0x004 0004 4] Length: 0x0000009c [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0x34 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x01072009 [0x01c 0028 4] Creator ID: AMI [0x020 0032 4] Creator Revision: 0x00010013 0000: 46 49 44 54 9c 00 00 00 01 34 41 4c 41 53 4b 41 FIDT.....4ALASKA 0010: 41 20 4d 20 49 20 00 00 09 20 07 01 41 4d 49 20 A M I ... ..AMI 0020: 13 00 01 00 24 46 49 44 04 78 00 46 30 36 41 33 ....$FID.x.F06A3 0030: 41 30 31 00 99 c8 08 b9 fd 76 b9 4b 98 08 0c 9d A01......v.K.... 0040: f4 0e 43 1f 30 35 00 30 36 00 30 30 00 30 30 00 ..C.05.06.00.00. 0050: 00 00 00 00 00 00 00 ff ff 41 4c 41 53 4b 41 41 .........ALASKAA 0060: 20 4d 20 49 20 00 00 00 00 00 00 00 00 00 00 00 M I ........... 0070: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 0080: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 0090: 00 00 00 00 00 00 00 00 00 00 00 00 ............ SPMI @ 7984aba0 (64 bytes) ---- [0x000 0000 4] Signature: SPMI [0x004 0004 4] Length: 0x00000040 [0x008 0008 1] Revision: 0x05 [0x009 0009 1] Checksum: 0xe5 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000000 [0x01c 0028 4] Creator ID: AMI. [0x020 0032 4] Creator Revision: 0x00000000 0000: 53 50 4d 49 40 00 00 00 05 e5 41 4c 41 53 4b 41 SPMI@.....ALASKA 0010: 41 20 4d 20 49 20 00 00 00 00 00 00 41 4d 49 2e A M I ......AMI. 0020: 00 00 00 00 01 01 00 02 00 00 00 00 00 00 00 00 ................ 0030: 01 00 00 01 a2 0c 00 00 00 00 00 00 00 00 00 00 ................ MCFG @ 7984abe0 (60 bytes) ---- PCI Express Memory Mapped Config Space Base Address Table: [0x000 0000 4] Signature: MCFG [0x004 0004 4] Length: 0x0000003c [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0x61 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x01072009 [0x01c 0028 4] Creator ID: MSFT [0x020 0032 4] Creator Revision: 0x00000097 [0x024 0036 8] Reserved: 0x0000000000000000 Configuration #1: [0x000 0000 8] Base Address: 0x0000000080000000 [0x008 0008 2] PCI Seg Grp Num: 0x0000 [0x00a 0010 1] Start Bus Num: 0x00 [0x00b 0011 1] End Bus Num: 0xff [0x00c 0012 4] Reserved: 0x00000000 UEFI @ 7984ac20 (66 bytes) ---- UEFI ACPI Data Table: [0x000 0000 4] Signature: UEFI [0x004 0004 4] Length: 0x00000042 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0xf7 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x01072009 [0x01c 0028 4] Creator ID: [0x020 0032 4] Creator Revision: 0x00000000 [0x024 0036 16] UUID: C68ED8E2-9DC6-4CBD-9D94-DB65ACC5C332 0034: 36 00 01 00 00 00 00 00 00 00 00 00 00 00 6............. BDAT @ 7984ac68 (48 bytes) ---- [0x000 0000 4] Signature: BDAT [0x004 0004 4] Length: 0x00000030 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0x4d [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000000 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20091013 0000: 42 44 41 54 30 00 00 00 01 4d 41 4c 41 53 4b 41 BDAT0....MALASKA 0010: 41 20 4d 20 49 20 00 00 00 00 00 00 49 4e 54 4c A M I ......INTL 0020: 13 10 09 20 00 00 00 00 00 00 00 00 00 00 00 00 ... ............ HPET @ 7984ac98 (56 bytes) ---- IA-PC High Precision Event Timer Table: [0x000 0000 4] Signature: HPET [0x004 0004 4] Length: 0x00000038 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0x4d [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000001 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20091013 [0x024 0036 4] Event Timer ID: 0x8086a701 Hardware Rev: 0x01 Num Comparitors: 0x07 Count Size Cap: 0x1 Reserved: 0x0 IRQ Routing Cap: 0x1 PCI Vendor ID: 0x8086 [0x028 0040 12] Base Address: (Generic Address Structure) [0x028 0040 1] addr_space_id: 0x00 (System Memory) [0x029 0041 1] reg_bit_width: 0x40 [0x02a 0042 1] reg_bit_offset: 0x00 [0x02b 0043 1] access_width: 0x00 (Undefined (legacy reasons)) [0x02c 0044 8] address: 0x00000000fed00000 [0x034 0052 1] HPET Number: 0x00 [0x035 0053 2] Main Counter Min: 0x37ee [0x037 0055 1] Page Prot Attr: 0x00 Page Protection: 0x0 OEM Attr: 0x0 MSCT @ 7984acd0 (144 bytes) ---- Maximum System Characteristics Table: [0x000 0000 4] Signature: MSCT [0x004 0004 4] Length: 0x00000090 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0xfe [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000001 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20091013 0000: 4d 53 43 54 90 00 00 00 01 fe 41 4c 41 53 4b 41 MSCT......ALASKA 0010: 41 20 4d 20 49 20 00 00 01 00 00 00 49 4e 54 4c A M I ......INTL 0020: 13 10 09 20 38 00 00 00 03 00 00 00 00 00 00 00 ... 8........... 0030: ff ff ff ff ff 0f 00 00 01 16 00 00 00 00 03 00 ................ 0040: 00 00 24 00 00 00 ff ff ff ff ff 0f 00 00 01 16 ..$............. 0050: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 0060: 00 00 00 00 01 16 00 00 00 00 00 00 00 00 00 00 ................ 0070: 00 00 00 00 00 00 00 00 00 00 01 16 00 00 00 00 ................ 0080: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ PMCT @ 7984ad60 (100 bytes) ---- [0x000 0000 4] Signature: PMCT [0x004 0004 4] Length: 0x00000064 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0x23 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000000 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20091013 0000: 50 4d 43 54 64 00 00 00 01 23 41 4c 41 53 4b 41 PMCTd....#ALASKA 0010: 41 20 4d 20 49 20 00 00 00 00 00 00 49 4e 54 4c A M I ......INTL 0020: 13 10 09 20 02 00 00 00 00 00 02 00 01 00 00 00 ... ............ 0030: d0 07 00 00 00 00 20 20 20 20 20 20 20 20 20 20 ...... 0040: 20 20 20 20 20 20 00 00 01 00 00 00 00 00 00 00 .......... 0050: 00 00 00 00 20 20 20 20 20 20 20 20 20 20 20 20 .... 0060: 20 20 20 20 SLIT @ 7984adc8 (48 bytes) ---- System Locality Distance Information Table: [0x000 0000 4] Signature: SLIT [0x004 0004 4] Length: 0x00000030 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0xeb [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000001 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20091013 # Sys Localities: 0x2(2) Entry[00][00]: 0a Entry[00][01]: 15 Entry[01][00]: 15 Entry[01][01]: 0a SRAT @ 7984adf8 (3672 bytes) ---- System Resource Affinity Tanle: [0x000 0000 4] Signature: SRAT [0x004 0004 4] Length: 0x00000e58 [0x008 0008 1] Revision: 0x03 [0x009 0009 1] Checksum: 0xf3 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000001 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20091013 Processor Local APIC/SAPID Affinity Structure: [0x032 0050 1] Proximity [7:0]: 0x00 [0x033 0051 1] APIC ID: 0x00 [0x034 0052 4] Flags: 0x00000001 [0x038 0056 1] L_SAPIC_EID: 0x00 [0x03b 0059 1] Proximity [31:24]: 0x00 [0x03a 0058 1] Proximity [23:16]: 0x00 [0x039 0057 1] Proximity [15:8]: 0x00 [0x03c 0060 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x042 0066 1] Proximity [7:0]: 0x00 [0x043 0067 1] APIC ID: 0x02 [0x044 0068 4] Flags: 0x00000001 [0x048 0072 1] L_SAPIC_EID: 0x00 [0x04b 0075 1] Proximity [31:24]: 0x00 [0x04a 0074 1] Proximity [23:16]: 0x00 [0x049 0073 1] Proximity [15:8]: 0x00 [0x04c 0076 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x052 0082 1] Proximity [7:0]: 0x00 [0x053 0083 1] APIC ID: 0x04 [0x054 0084 4] Flags: 0x00000001 [0x058 0088 1] L_SAPIC_EID: 0x00 [0x05b 0091 1] Proximity [31:24]: 0x00 [0x05a 0090 1] Proximity [23:16]: 0x00 [0x059 0089 1] Proximity [15:8]: 0x00 [0x05c 0092 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x062 0098 1] Proximity [7:0]: 0x00 [0x063 0099 1] APIC ID: 0x06 [0x064 0100 4] Flags: 0x00000001 [0x068 0104 1] L_SAPIC_EID: 0x00 [0x06b 0107 1] Proximity [31:24]: 0x00 [0x06a 0106 1] Proximity [23:16]: 0x00 [0x069 0105 1] Proximity [15:8]: 0x00 [0x06c 0108 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x072 0114 1] Proximity [7:0]: 0x00 [0x073 0115 1] APIC ID: 0x08 [0x074 0116 4] Flags: 0x00000001 [0x078 0120 1] L_SAPIC_EID: 0x00 [0x07b 0123 1] Proximity [31:24]: 0x00 [0x07a 0122 1] Proximity [23:16]: 0x00 [0x079 0121 1] Proximity [15:8]: 0x00 [0x07c 0124 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x082 0130 1] Proximity [7:0]: 0x00 [0x083 0131 1] APIC ID: 0x0a [0x084 0132 4] Flags: 0x00000001 [0x088 0136 1] L_SAPIC_EID: 0x00 [0x08b 0139 1] Proximity [31:24]: 0x00 [0x08a 0138 1] Proximity [23:16]: 0x00 [0x089 0137 1] Proximity [15:8]: 0x00 [0x08c 0140 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x092 0146 1] Proximity [7:0]: 0x00 [0x093 0147 1] APIC ID: 0x0c [0x094 0148 4] Flags: 0x00000001 [0x098 0152 1] L_SAPIC_EID: 0x00 [0x09b 0155 1] Proximity [31:24]: 0x00 [0x09a 0154 1] Proximity [23:16]: 0x00 [0x099 0153 1] Proximity [15:8]: 0x00 [0x09c 0156 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x0a2 0162 1] Proximity [7:0]: 0x00 [0x0a3 0163 1] APIC ID: 0x0e [0x0a4 0164 4] Flags: 0x00000001 [0x0a8 0168 1] L_SAPIC_EID: 0x00 [0x0ab 0171 1] Proximity [31:24]: 0x00 [0x0aa 0170 1] Proximity [23:16]: 0x00 [0x0a9 0169 1] Proximity [15:8]: 0x00 [0x0ac 0172 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x0b2 0178 1] Proximity [7:0]: 0x00 [0x0b3 0179 1] APIC ID: 0x10 [0x0b4 0180 4] Flags: 0x00000001 [0x0b8 0184 1] L_SAPIC_EID: 0x00 [0x0bb 0187 1] Proximity [31:24]: 0x00 [0x0ba 0186 1] Proximity [23:16]: 0x00 [0x0b9 0185 1] Proximity [15:8]: 0x00 [0x0bc 0188 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x0c2 0194 1] Proximity [7:0]: 0x00 [0x0c3 0195 1] APIC ID: 0x12 [0x0c4 0196 4] Flags: 0x00000001 [0x0c8 0200 1] L_SAPIC_EID: 0x00 [0x0cb 0203 1] Proximity [31:24]: 0x00 [0x0ca 0202 1] Proximity [23:16]: 0x00 [0x0c9 0201 1] Proximity [15:8]: 0x00 [0x0cc 0204 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x0d2 0210 1] Proximity [7:0]: 0x00 [0x0d3 0211 1] APIC ID: 0x14 [0x0d4 0212 4] Flags: 0x00000001 [0x0d8 0216 1] L_SAPIC_EID: 0x00 [0x0db 0219 1] Proximity [31:24]: 0x00 [0x0da 0218 1] Proximity [23:16]: 0x00 [0x0d9 0217 1] Proximity [15:8]: 0x00 [0x0dc 0220 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x0e2 0226 1] Proximity [7:0]: 0x00 [0x0e3 0227 1] APIC ID: 0x16 [0x0e4 0228 4] Flags: 0x00000001 [0x0e8 0232 1] L_SAPIC_EID: 0x00 [0x0eb 0235 1] Proximity [31:24]: 0x00 [0x0ea 0234 1] Proximity [23:16]: 0x00 [0x0e9 0233 1] Proximity [15:8]: 0x00 [0x0ec 0236 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x0f2 0242 1] Proximity [7:0]: 0x00 [0x0f3 0243 1] APIC ID: 0x18 [0x0f4 0244 4] Flags: 0x00000001 [0x0f8 0248 1] L_SAPIC_EID: 0x00 [0x0fb 0251 1] Proximity [31:24]: 0x00 [0x0fa 0250 1] Proximity [23:16]: 0x00 [0x0f9 0249 1] Proximity [15:8]: 0x00 [0x0fc 0252 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x102 0258 1] Proximity [7:0]: 0x00 [0x103 0259 1] APIC ID: 0x1a [0x104 0260 4] Flags: 0x00000001 [0x108 0264 1] L_SAPIC_EID: 0x00 [0x10b 0267 1] Proximity [31:24]: 0x00 [0x10a 0266 1] Proximity [23:16]: 0x00 [0x109 0265 1] Proximity [15:8]: 0x00 [0x10c 0268 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x112 0274 1] Proximity [7:0]: 0x00 [0x113 0275 1] APIC ID: 0x1c [0x114 0276 4] Flags: 0x00000001 [0x118 0280 1] L_SAPIC_EID: 0x00 [0x11b 0283 1] Proximity [31:24]: 0x00 [0x11a 0282 1] Proximity [23:16]: 0x00 [0x119 0281 1] Proximity [15:8]: 0x00 [0x11c 0284 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x122 0290 1] Proximity [7:0]: 0x00 [0x123 0291 1] APIC ID: 0x1e [0x124 0292 4] Flags: 0x00000001 [0x128 0296 1] L_SAPIC_EID: 0x00 [0x12b 0299 1] Proximity [31:24]: 0x00 [0x12a 0298 1] Proximity [23:16]: 0x00 [0x129 0297 1] Proximity [15:8]: 0x00 [0x12c 0300 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x132 0306 1] Proximity [7:0]: 0x01 [0x133 0307 1] APIC ID: 0x20 [0x134 0308 4] Flags: 0x00000001 [0x138 0312 1] L_SAPIC_EID: 0x00 [0x13b 0315 1] Proximity [31:24]: 0x00 [0x13a 0314 1] Proximity [23:16]: 0x00 [0x139 0313 1] Proximity [15:8]: 0x00 [0x13c 0316 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x142 0322 1] Proximity [7:0]: 0x01 [0x143 0323 1] APIC ID: 0x22 [0x144 0324 4] Flags: 0x00000001 [0x148 0328 1] L_SAPIC_EID: 0x00 [0x14b 0331 1] Proximity [31:24]: 0x00 [0x14a 0330 1] Proximity [23:16]: 0x00 [0x149 0329 1] Proximity [15:8]: 0x00 [0x14c 0332 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x152 0338 1] Proximity [7:0]: 0x01 [0x153 0339 1] APIC ID: 0x24 [0x154 0340 4] Flags: 0x00000001 [0x158 0344 1] L_SAPIC_EID: 0x00 [0x15b 0347 1] Proximity [31:24]: 0x00 [0x15a 0346 1] Proximity [23:16]: 0x00 [0x159 0345 1] Proximity [15:8]: 0x00 [0x15c 0348 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x162 0354 1] Proximity [7:0]: 0x01 [0x163 0355 1] APIC ID: 0x26 [0x164 0356 4] Flags: 0x00000001 [0x168 0360 1] L_SAPIC_EID: 0x00 [0x16b 0363 1] Proximity [31:24]: 0x00 [0x16a 0362 1] Proximity [23:16]: 0x00 [0x169 0361 1] Proximity [15:8]: 0x00 [0x16c 0364 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x172 0370 1] Proximity [7:0]: 0x01 [0x173 0371 1] APIC ID: 0x28 [0x174 0372 4] Flags: 0x00000001 [0x178 0376 1] L_SAPIC_EID: 0x00 [0x17b 0379 1] Proximity [31:24]: 0x00 [0x17a 0378 1] Proximity [23:16]: 0x00 [0x179 0377 1] Proximity [15:8]: 0x00 [0x17c 0380 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x182 0386 1] Proximity [7:0]: 0x01 [0x183 0387 1] APIC ID: 0x2a [0x184 0388 4] Flags: 0x00000001 [0x188 0392 1] L_SAPIC_EID: 0x00 [0x18b 0395 1] Proximity [31:24]: 0x00 [0x18a 0394 1] Proximity [23:16]: 0x00 [0x189 0393 1] Proximity [15:8]: 0x00 [0x18c 0396 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x192 0402 1] Proximity [7:0]: 0x01 [0x193 0403 1] APIC ID: 0x2c [0x194 0404 4] Flags: 0x00000001 [0x198 0408 1] L_SAPIC_EID: 0x00 [0x19b 0411 1] Proximity [31:24]: 0x00 [0x19a 0410 1] Proximity [23:16]: 0x00 [0x199 0409 1] Proximity [15:8]: 0x00 [0x19c 0412 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x1a2 0418 1] Proximity [7:0]: 0x01 [0x1a3 0419 1] APIC ID: 0x2e [0x1a4 0420 4] Flags: 0x00000001 [0x1a8 0424 1] L_SAPIC_EID: 0x00 [0x1ab 0427 1] Proximity [31:24]: 0x00 [0x1aa 0426 1] Proximity [23:16]: 0x00 [0x1a9 0425 1] Proximity [15:8]: 0x00 [0x1ac 0428 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x1b2 0434 1] Proximity [7:0]: 0x01 [0x1b3 0435 1] APIC ID: 0x30 [0x1b4 0436 4] Flags: 0x00000001 [0x1b8 0440 1] L_SAPIC_EID: 0x00 [0x1bb 0443 1] Proximity [31:24]: 0x00 [0x1ba 0442 1] Proximity [23:16]: 0x00 [0x1b9 0441 1] Proximity [15:8]: 0x00 [0x1bc 0444 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x1c2 0450 1] Proximity [7:0]: 0x01 [0x1c3 0451 1] APIC ID: 0x32 [0x1c4 0452 4] Flags: 0x00000001 [0x1c8 0456 1] L_SAPIC_EID: 0x00 [0x1cb 0459 1] Proximity [31:24]: 0x00 [0x1ca 0458 1] Proximity [23:16]: 0x00 [0x1c9 0457 1] Proximity [15:8]: 0x00 [0x1cc 0460 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x1d2 0466 1] Proximity [7:0]: 0x01 [0x1d3 0467 1] APIC ID: 0x34 [0x1d4 0468 4] Flags: 0x00000001 [0x1d8 0472 1] L_SAPIC_EID: 0x00 [0x1db 0475 1] Proximity [31:24]: 0x00 [0x1da 0474 1] Proximity [23:16]: 0x00 [0x1d9 0473 1] Proximity [15:8]: 0x00 [0x1dc 0476 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x1e2 0482 1] Proximity [7:0]: 0x01 [0x1e3 0483 1] APIC ID: 0x36 [0x1e4 0484 4] Flags: 0x00000001 [0x1e8 0488 1] L_SAPIC_EID: 0x00 [0x1eb 0491 1] Proximity [31:24]: 0x00 [0x1ea 0490 1] Proximity [23:16]: 0x00 [0x1e9 0489 1] Proximity [15:8]: 0x00 [0x1ec 0492 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x1f2 0498 1] Proximity [7:0]: 0x01 [0x1f3 0499 1] APIC ID: 0x38 [0x1f4 0500 4] Flags: 0x00000001 [0x1f8 0504 1] L_SAPIC_EID: 0x00 [0x1fb 0507 1] Proximity [31:24]: 0x00 [0x1fa 0506 1] Proximity [23:16]: 0x00 [0x1f9 0505 1] Proximity [15:8]: 0x00 [0x1fc 0508 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x202 0514 1] Proximity [7:0]: 0x01 [0x203 0515 1] APIC ID: 0x3a [0x204 0516 4] Flags: 0x00000001 [0x208 0520 1] L_SAPIC_EID: 0x00 [0x20b 0523 1] Proximity [31:24]: 0x00 [0x20a 0522 1] Proximity [23:16]: 0x00 [0x209 0521 1] Proximity [15:8]: 0x00 [0x20c 0524 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x212 0530 1] Proximity [7:0]: 0x01 [0x213 0531 1] APIC ID: 0x3c [0x214 0532 4] Flags: 0x00000001 [0x218 0536 1] L_SAPIC_EID: 0x00 [0x21b 0539 1] Proximity [31:24]: 0x00 [0x21a 0538 1] Proximity [23:16]: 0x00 [0x219 0537 1] Proximity [15:8]: 0x00 [0x21c 0540 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x222 0546 1] Proximity [7:0]: 0x01 [0x223 0547 1] APIC ID: 0x3e [0x224 0548 4] Flags: 0x00000001 [0x228 0552 1] L_SAPIC_EID: 0x00 [0x22b 0555 1] Proximity [31:24]: 0x00 [0x22a 0554 1] Proximity [23:16]: 0x00 [0x229 0553 1] Proximity [15:8]: 0x00 [0x22c 0556 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x232 0562 1] Proximity [7:0]: 0x00 [0x233 0563 1] APIC ID: 0x01 [0x234 0564 4] Flags: 0x00000001 [0x238 0568 1] L_SAPIC_EID: 0x00 [0x23b 0571 1] Proximity [31:24]: 0x00 [0x23a 0570 1] Proximity [23:16]: 0x00 [0x239 0569 1] Proximity [15:8]: 0x00 [0x23c 0572 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x242 0578 1] Proximity [7:0]: 0x00 [0x243 0579 1] APIC ID: 0x03 [0x244 0580 4] Flags: 0x00000001 [0x248 0584 1] L_SAPIC_EID: 0x00 [0x24b 0587 1] Proximity [31:24]: 0x00 [0x24a 0586 1] Proximity [23:16]: 0x00 [0x249 0585 1] Proximity [15:8]: 0x00 [0x24c 0588 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x252 0594 1] Proximity [7:0]: 0x00 [0x253 0595 1] APIC ID: 0x05 [0x254 0596 4] Flags: 0x00000001 [0x258 0600 1] L_SAPIC_EID: 0x00 [0x25b 0603 1] Proximity [31:24]: 0x00 [0x25a 0602 1] Proximity [23:16]: 0x00 [0x259 0601 1] Proximity [15:8]: 0x00 [0x25c 0604 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x262 0610 1] Proximity [7:0]: 0x00 [0x263 0611 1] APIC ID: 0x07 [0x264 0612 4] Flags: 0x00000001 [0x268 0616 1] L_SAPIC_EID: 0x00 [0x26b 0619 1] Proximity [31:24]: 0x00 [0x26a 0618 1] Proximity [23:16]: 0x00 [0x269 0617 1] Proximity [15:8]: 0x00 [0x26c 0620 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x272 0626 1] Proximity [7:0]: 0x00 [0x273 0627 1] APIC ID: 0x09 [0x274 0628 4] Flags: 0x00000001 [0x278 0632 1] L_SAPIC_EID: 0x00 [0x27b 0635 1] Proximity [31:24]: 0x00 [0x27a 0634 1] Proximity [23:16]: 0x00 [0x279 0633 1] Proximity [15:8]: 0x00 [0x27c 0636 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x282 0642 1] Proximity [7:0]: 0x00 [0x283 0643 1] APIC ID: 0x0b [0x284 0644 4] Flags: 0x00000001 [0x288 0648 1] L_SAPIC_EID: 0x00 [0x28b 0651 1] Proximity [31:24]: 0x00 [0x28a 0650 1] Proximity [23:16]: 0x00 [0x289 0649 1] Proximity [15:8]: 0x00 [0x28c 0652 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x292 0658 1] Proximity [7:0]: 0x00 [0x293 0659 1] APIC ID: 0x0d [0x294 0660 4] Flags: 0x00000001 [0x298 0664 1] L_SAPIC_EID: 0x00 [0x29b 0667 1] Proximity [31:24]: 0x00 [0x29a 0666 1] Proximity [23:16]: 0x00 [0x299 0665 1] Proximity [15:8]: 0x00 [0x29c 0668 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x2a2 0674 1] Proximity [7:0]: 0x00 [0x2a3 0675 1] APIC ID: 0x0f [0x2a4 0676 4] Flags: 0x00000001 [0x2a8 0680 1] L_SAPIC_EID: 0x00 [0x2ab 0683 1] Proximity [31:24]: 0x00 [0x2aa 0682 1] Proximity [23:16]: 0x00 [0x2a9 0681 1] Proximity [15:8]: 0x00 [0x2ac 0684 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x2b2 0690 1] Proximity [7:0]: 0x00 [0x2b3 0691 1] APIC ID: 0x11 [0x2b4 0692 4] Flags: 0x00000001 [0x2b8 0696 1] L_SAPIC_EID: 0x00 [0x2bb 0699 1] Proximity [31:24]: 0x00 [0x2ba 0698 1] Proximity [23:16]: 0x00 [0x2b9 0697 1] Proximity [15:8]: 0x00 [0x2bc 0700 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x2c2 0706 1] Proximity [7:0]: 0x00 [0x2c3 0707 1] APIC ID: 0x13 [0x2c4 0708 4] Flags: 0x00000001 [0x2c8 0712 1] L_SAPIC_EID: 0x00 [0x2cb 0715 1] Proximity [31:24]: 0x00 [0x2ca 0714 1] Proximity [23:16]: 0x00 [0x2c9 0713 1] Proximity [15:8]: 0x00 [0x2cc 0716 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x2d2 0722 1] Proximity [7:0]: 0x00 [0x2d3 0723 1] APIC ID: 0x15 [0x2d4 0724 4] Flags: 0x00000001 [0x2d8 0728 1] L_SAPIC_EID: 0x00 [0x2db 0731 1] Proximity [31:24]: 0x00 [0x2da 0730 1] Proximity [23:16]: 0x00 [0x2d9 0729 1] Proximity [15:8]: 0x00 [0x2dc 0732 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x2e2 0738 1] Proximity [7:0]: 0x00 [0x2e3 0739 1] APIC ID: 0x17 [0x2e4 0740 4] Flags: 0x00000001 [0x2e8 0744 1] L_SAPIC_EID: 0x00 [0x2eb 0747 1] Proximity [31:24]: 0x00 [0x2ea 0746 1] Proximity [23:16]: 0x00 [0x2e9 0745 1] Proximity [15:8]: 0x00 [0x2ec 0748 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x2f2 0754 1] Proximity [7:0]: 0x00 [0x2f3 0755 1] APIC ID: 0x19 [0x2f4 0756 4] Flags: 0x00000001 [0x2f8 0760 1] L_SAPIC_EID: 0x00 [0x2fb 0763 1] Proximity [31:24]: 0x00 [0x2fa 0762 1] Proximity [23:16]: 0x00 [0x2f9 0761 1] Proximity [15:8]: 0x00 [0x2fc 0764 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x302 0770 1] Proximity [7:0]: 0x00 [0x303 0771 1] APIC ID: 0x1b [0x304 0772 4] Flags: 0x00000001 [0x308 0776 1] L_SAPIC_EID: 0x00 [0x30b 0779 1] Proximity [31:24]: 0x00 [0x30a 0778 1] Proximity [23:16]: 0x00 [0x309 0777 1] Proximity [15:8]: 0x00 [0x30c 0780 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x312 0786 1] Proximity [7:0]: 0x00 [0x313 0787 1] APIC ID: 0x1d [0x314 0788 4] Flags: 0x00000001 [0x318 0792 1] L_SAPIC_EID: 0x00 [0x31b 0795 1] Proximity [31:24]: 0x00 [0x31a 0794 1] Proximity [23:16]: 0x00 [0x319 0793 1] Proximity [15:8]: 0x00 [0x31c 0796 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x322 0802 1] Proximity [7:0]: 0x00 [0x323 0803 1] APIC ID: 0x1f [0x324 0804 4] Flags: 0x00000001 [0x328 0808 1] L_SAPIC_EID: 0x00 [0x32b 0811 1] Proximity [31:24]: 0x00 [0x32a 0810 1] Proximity [23:16]: 0x00 [0x329 0809 1] Proximity [15:8]: 0x00 [0x32c 0812 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x332 0818 1] Proximity [7:0]: 0x01 [0x333 0819 1] APIC ID: 0x21 [0x334 0820 4] Flags: 0x00000001 [0x338 0824 1] L_SAPIC_EID: 0x00 [0x33b 0827 1] Proximity [31:24]: 0x00 [0x33a 0826 1] Proximity [23:16]: 0x00 [0x339 0825 1] Proximity [15:8]: 0x00 [0x33c 0828 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x342 0834 1] Proximity [7:0]: 0x01 [0x343 0835 1] APIC ID: 0x23 [0x344 0836 4] Flags: 0x00000001 [0x348 0840 1] L_SAPIC_EID: 0x00 [0x34b 0843 1] Proximity [31:24]: 0x00 [0x34a 0842 1] Proximity [23:16]: 0x00 [0x349 0841 1] Proximity [15:8]: 0x00 [0x34c 0844 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x352 0850 1] Proximity [7:0]: 0x01 [0x353 0851 1] APIC ID: 0x25 [0x354 0852 4] Flags: 0x00000001 [0x358 0856 1] L_SAPIC_EID: 0x00 [0x35b 0859 1] Proximity [31:24]: 0x00 [0x35a 0858 1] Proximity [23:16]: 0x00 [0x359 0857 1] Proximity [15:8]: 0x00 [0x35c 0860 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x362 0866 1] Proximity [7:0]: 0x01 [0x363 0867 1] APIC ID: 0x27 [0x364 0868 4] Flags: 0x00000001 [0x368 0872 1] L_SAPIC_EID: 0x00 [0x36b 0875 1] Proximity [31:24]: 0x00 [0x36a 0874 1] Proximity [23:16]: 0x00 [0x369 0873 1] Proximity [15:8]: 0x00 [0x36c 0876 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x372 0882 1] Proximity [7:0]: 0x01 [0x373 0883 1] APIC ID: 0x29 [0x374 0884 4] Flags: 0x00000001 [0x378 0888 1] L_SAPIC_EID: 0x00 [0x37b 0891 1] Proximity [31:24]: 0x00 [0x37a 0890 1] Proximity [23:16]: 0x00 [0x379 0889 1] Proximity [15:8]: 0x00 [0x37c 0892 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x382 0898 1] Proximity [7:0]: 0x01 [0x383 0899 1] APIC ID: 0x2b [0x384 0900 4] Flags: 0x00000001 [0x388 0904 1] L_SAPIC_EID: 0x00 [0x38b 0907 1] Proximity [31:24]: 0x00 [0x38a 0906 1] Proximity [23:16]: 0x00 [0x389 0905 1] Proximity [15:8]: 0x00 [0x38c 0908 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x392 0914 1] Proximity [7:0]: 0x01 [0x393 0915 1] APIC ID: 0x2d [0x394 0916 4] Flags: 0x00000001 [0x398 0920 1] L_SAPIC_EID: 0x00 [0x39b 0923 1] Proximity [31:24]: 0x00 [0x39a 0922 1] Proximity [23:16]: 0x00 [0x399 0921 1] Proximity [15:8]: 0x00 [0x39c 0924 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x3a2 0930 1] Proximity [7:0]: 0x01 [0x3a3 0931 1] APIC ID: 0x2f [0x3a4 0932 4] Flags: 0x00000001 [0x3a8 0936 1] L_SAPIC_EID: 0x00 [0x3ab 0939 1] Proximity [31:24]: 0x00 [0x3aa 0938 1] Proximity [23:16]: 0x00 [0x3a9 0937 1] Proximity [15:8]: 0x00 [0x3ac 0940 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x3b2 0946 1] Proximity [7:0]: 0x01 [0x3b3 0947 1] APIC ID: 0x31 [0x3b4 0948 4] Flags: 0x00000001 [0x3b8 0952 1] L_SAPIC_EID: 0x00 [0x3bb 0955 1] Proximity [31:24]: 0x00 [0x3ba 0954 1] Proximity [23:16]: 0x00 [0x3b9 0953 1] Proximity [15:8]: 0x00 [0x3bc 0956 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x3c2 0962 1] Proximity [7:0]: 0x01 [0x3c3 0963 1] APIC ID: 0x33 [0x3c4 0964 4] Flags: 0x00000001 [0x3c8 0968 1] L_SAPIC_EID: 0x00 [0x3cb 0971 1] Proximity [31:24]: 0x00 [0x3ca 0970 1] Proximity [23:16]: 0x00 [0x3c9 0969 1] Proximity [15:8]: 0x00 [0x3cc 0972 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x3d2 0978 1] Proximity [7:0]: 0x01 [0x3d3 0979 1] APIC ID: 0x35 [0x3d4 0980 4] Flags: 0x00000001 [0x3d8 0984 1] L_SAPIC_EID: 0x00 [0x3db 0987 1] Proximity [31:24]: 0x00 [0x3da 0986 1] Proximity [23:16]: 0x00 [0x3d9 0985 1] Proximity [15:8]: 0x00 [0x3dc 0988 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x3e2 0994 1] Proximity [7:0]: 0x01 [0x3e3 0995 1] APIC ID: 0x37 [0x3e4 0996 4] Flags: 0x00000001 [0x3e8 1000 1] L_SAPIC_EID: 0x00 [0x3eb 1003 1] Proximity [31:24]: 0x00 [0x3ea 1002 1] Proximity [23:16]: 0x00 [0x3e9 1001 1] Proximity [15:8]: 0x00 [0x3ec 1004 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x3f2 1010 1] Proximity [7:0]: 0x01 [0x3f3 1011 1] APIC ID: 0x39 [0x3f4 1012 4] Flags: 0x00000001 [0x3f8 1016 1] L_SAPIC_EID: 0x00 [0x3fb 1019 1] Proximity [31:24]: 0x00 [0x3fa 1018 1] Proximity [23:16]: 0x00 [0x3f9 1017 1] Proximity [15:8]: 0x00 [0x3fc 1020 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x402 1026 1] Proximity [7:0]: 0x01 [0x403 1027 1] APIC ID: 0x3b [0x404 1028 4] Flags: 0x00000001 [0x408 1032 1] L_SAPIC_EID: 0x00 [0x40b 1035 1] Proximity [31:24]: 0x00 [0x40a 1034 1] Proximity [23:16]: 0x00 [0x409 1033 1] Proximity [15:8]: 0x00 [0x40c 1036 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x412 1042 1] Proximity [7:0]: 0x01 [0x413 1043 1] APIC ID: 0x3d [0x414 1044 4] Flags: 0x00000001 [0x418 1048 1] L_SAPIC_EID: 0x00 [0x41b 1051 1] Proximity [31:24]: 0x00 [0x41a 1050 1] Proximity [23:16]: 0x00 [0x419 1049 1] Proximity [15:8]: 0x00 [0x41c 1052 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x422 1058 1] Proximity [7:0]: 0x01 [0x423 1059 1] APIC ID: 0x3f [0x424 1060 4] Flags: 0x00000001 [0x428 1064 1] L_SAPIC_EID: 0x00 [0x42b 1067 1] Proximity [31:24]: 0x00 [0x42a 1066 1] Proximity [23:16]: 0x00 [0x429 1065 1] Proximity [15:8]: 0x00 [0x42c 1068 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x432 1074 1] Proximity [7:0]: 0x03 [0x433 1075 1] APIC ID: 0xff [0x434 1076 4] Flags: 0x00000000 [0x438 1080 1] L_SAPIC_EID: 0x00 [0x43b 1083 1] Proximity [31:24]: 0x00 [0x43a 1082 1] Proximity [23:16]: 0x00 [0x439 1081 1] Proximity [15:8]: 0x00 [0x43c 1084 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x442 1090 1] Proximity [7:0]: 0x03 [0x443 1091 1] APIC ID: 0xff [0x444 1092 4] Flags: 0x00000000 [0x448 1096 1] L_SAPIC_EID: 0x00 [0x44b 1099 1] Proximity [31:24]: 0x00 [0x44a 1098 1] Proximity [23:16]: 0x00 [0x449 1097 1] Proximity [15:8]: 0x00 [0x44c 1100 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x452 1106 1] Proximity [7:0]: 0x03 [0x453 1107 1] APIC ID: 0xff [0x454 1108 4] Flags: 0x00000000 [0x458 1112 1] L_SAPIC_EID: 0x00 [0x45b 1115 1] Proximity [31:24]: 0x00 [0x45a 1114 1] Proximity [23:16]: 0x00 [0x459 1113 1] Proximity [15:8]: 0x00 [0x45c 1116 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x462 1122 1] Proximity [7:0]: 0x03 [0x463 1123 1] APIC ID: 0xff [0x464 1124 4] Flags: 0x00000000 [0x468 1128 1] L_SAPIC_EID: 0x00 [0x46b 1131 1] Proximity [31:24]: 0x00 [0x46a 1130 1] Proximity [23:16]: 0x00 [0x469 1129 1] Proximity [15:8]: 0x00 [0x46c 1132 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x472 1138 1] Proximity [7:0]: 0x03 [0x473 1139 1] APIC ID: 0xff [0x474 1140 4] Flags: 0x00000000 [0x478 1144 1] L_SAPIC_EID: 0x00 [0x47b 1147 1] Proximity [31:24]: 0x00 [0x47a 1146 1] Proximity [23:16]: 0x00 [0x479 1145 1] Proximity [15:8]: 0x00 [0x47c 1148 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x482 1154 1] Proximity [7:0]: 0x03 [0x483 1155 1] APIC ID: 0xff [0x484 1156 4] Flags: 0x00000000 [0x488 1160 1] L_SAPIC_EID: 0x00 [0x48b 1163 1] Proximity [31:24]: 0x00 [0x48a 1162 1] Proximity [23:16]: 0x00 [0x489 1161 1] Proximity [15:8]: 0x00 [0x48c 1164 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x492 1170 1] Proximity [7:0]: 0x03 [0x493 1171 1] APIC ID: 0xff [0x494 1172 4] Flags: 0x00000000 [0x498 1176 1] L_SAPIC_EID: 0x00 [0x49b 1179 1] Proximity [31:24]: 0x00 [0x49a 1178 1] Proximity [23:16]: 0x00 [0x499 1177 1] Proximity [15:8]: 0x00 [0x49c 1180 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x4a2 1186 1] Proximity [7:0]: 0x03 [0x4a3 1187 1] APIC ID: 0xff [0x4a4 1188 4] Flags: 0x00000000 [0x4a8 1192 1] L_SAPIC_EID: 0x00 [0x4ab 1195 1] Proximity [31:24]: 0x00 [0x4aa 1194 1] Proximity [23:16]: 0x00 [0x4a9 1193 1] Proximity [15:8]: 0x00 [0x4ac 1196 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x4b2 1202 1] Proximity [7:0]: 0x00 [0x4b3 1203 1] APIC ID: 0xff [0x4b4 1204 4] Flags: 0x00000000 [0x4b8 1208 1] L_SAPIC_EID: 0x00 [0x4bb 1211 1] Proximity [31:24]: 0x00 [0x4ba 1210 1] Proximity [23:16]: 0x00 [0x4b9 1209 1] Proximity [15:8]: 0x00 [0x4bc 1212 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x4c2 1218 1] Proximity [7:0]: 0x00 [0x4c3 1219 1] APIC ID: 0xff [0x4c4 1220 4] Flags: 0x00000000 [0x4c8 1224 1] L_SAPIC_EID: 0x00 [0x4cb 1227 1] Proximity [31:24]: 0x00 [0x4ca 1226 1] Proximity [23:16]: 0x00 [0x4c9 1225 1] Proximity [15:8]: 0x00 [0x4cc 1228 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x4d2 1234 1] Proximity [7:0]: 0x00 [0x4d3 1235 1] APIC ID: 0xff [0x4d4 1236 4] Flags: 0x00000000 [0x4d8 1240 1] L_SAPIC_EID: 0x00 [0x4db 1243 1] Proximity [31:24]: 0x00 [0x4da 1242 1] Proximity [23:16]: 0x00 [0x4d9 1241 1] Proximity [15:8]: 0x00 [0x4dc 1244 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x4e2 1250 1] Proximity [7:0]: 0x00 [0x4e3 1251 1] APIC ID: 0xff [0x4e4 1252 4] Flags: 0x00000000 [0x4e8 1256 1] L_SAPIC_EID: 0x00 [0x4eb 1259 1] Proximity [31:24]: 0x00 [0x4ea 1258 1] Proximity [23:16]: 0x00 [0x4e9 1257 1] Proximity [15:8]: 0x00 [0x4ec 1260 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x4f2 1266 1] Proximity [7:0]: 0x00 [0x4f3 1267 1] APIC ID: 0xff [0x4f4 1268 4] Flags: 0x00000000 [0x4f8 1272 1] L_SAPIC_EID: 0x00 [0x4fb 1275 1] Proximity [31:24]: 0x00 [0x4fa 1274 1] Proximity [23:16]: 0x00 [0x4f9 1273 1] Proximity [15:8]: 0x00 [0x4fc 1276 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x502 1282 1] Proximity [7:0]: 0x00 [0x503 1283 1] APIC ID: 0xff [0x504 1284 4] Flags: 0x00000000 [0x508 1288 1] L_SAPIC_EID: 0x00 [0x50b 1291 1] Proximity [31:24]: 0x00 [0x50a 1290 1] Proximity [23:16]: 0x00 [0x509 1289 1] Proximity [15:8]: 0x00 [0x50c 1292 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x512 1298 1] Proximity [7:0]: 0x00 [0x513 1299 1] APIC ID: 0xff [0x514 1300 4] Flags: 0x00000000 [0x518 1304 1] L_SAPIC_EID: 0x00 [0x51b 1307 1] Proximity [31:24]: 0x00 [0x51a 1306 1] Proximity [23:16]: 0x00 [0x519 1305 1] Proximity [15:8]: 0x00 [0x51c 1308 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x522 1314 1] Proximity [7:0]: 0x00 [0x523 1315 1] APIC ID: 0xff [0x524 1316 4] Flags: 0x00000000 [0x528 1320 1] L_SAPIC_EID: 0x00 [0x52b 1323 1] Proximity [31:24]: 0x00 [0x52a 1322 1] Proximity [23:16]: 0x00 [0x529 1321 1] Proximity [15:8]: 0x00 [0x52c 1324 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x532 1330 1] Proximity [7:0]: 0x00 [0x533 1331 1] APIC ID: 0xff [0x534 1332 4] Flags: 0x00000000 [0x538 1336 1] L_SAPIC_EID: 0x00 [0x53b 1339 1] Proximity [31:24]: 0x00 [0x53a 1338 1] Proximity [23:16]: 0x00 [0x539 1337 1] Proximity [15:8]: 0x00 [0x53c 1340 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x542 1346 1] Proximity [7:0]: 0x00 [0x543 1347 1] APIC ID: 0xff [0x544 1348 4] Flags: 0x00000000 [0x548 1352 1] L_SAPIC_EID: 0x00 [0x54b 1355 1] Proximity [31:24]: 0x00 [0x54a 1354 1] Proximity [23:16]: 0x00 [0x549 1353 1] Proximity [15:8]: 0x00 [0x54c 1356 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x552 1362 1] Proximity [7:0]: 0x00 [0x553 1363 1] APIC ID: 0xff [0x554 1364 4] Flags: 0x00000000 [0x558 1368 1] L_SAPIC_EID: 0x00 [0x55b 1371 1] Proximity [31:24]: 0x00 [0x55a 1370 1] Proximity [23:16]: 0x00 [0x559 1369 1] Proximity [15:8]: 0x00 [0x55c 1372 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x562 1378 1] Proximity [7:0]: 0x00 [0x563 1379 1] APIC ID: 0xff [0x564 1380 4] Flags: 0x00000000 [0x568 1384 1] L_SAPIC_EID: 0x00 [0x56b 1387 1] Proximity [31:24]: 0x00 [0x56a 1386 1] Proximity [23:16]: 0x00 [0x569 1385 1] Proximity [15:8]: 0x00 [0x56c 1388 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x572 1394 1] Proximity [7:0]: 0x00 [0x573 1395 1] APIC ID: 0xff [0x574 1396 4] Flags: 0x00000000 [0x578 1400 1] L_SAPIC_EID: 0x00 [0x57b 1403 1] Proximity [31:24]: 0x00 [0x57a 1402 1] Proximity [23:16]: 0x00 [0x579 1401 1] Proximity [15:8]: 0x00 [0x57c 1404 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x582 1410 1] Proximity [7:0]: 0x00 [0x583 1411 1] APIC ID: 0xff [0x584 1412 4] Flags: 0x00000000 [0x588 1416 1] L_SAPIC_EID: 0x00 [0x58b 1419 1] Proximity [31:24]: 0x00 [0x58a 1418 1] Proximity [23:16]: 0x00 [0x589 1417 1] Proximity [15:8]: 0x00 [0x58c 1420 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x592 1426 1] Proximity [7:0]: 0x00 [0x593 1427 1] APIC ID: 0xff [0x594 1428 4] Flags: 0x00000000 [0x598 1432 1] L_SAPIC_EID: 0x00 [0x59b 1435 1] Proximity [31:24]: 0x00 [0x59a 1434 1] Proximity [23:16]: 0x00 [0x599 1433 1] Proximity [15:8]: 0x00 [0x59c 1436 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x5a2 1442 1] Proximity [7:0]: 0x00 [0x5a3 1443 1] APIC ID: 0xff [0x5a4 1444 4] Flags: 0x00000000 [0x5a8 1448 1] L_SAPIC_EID: 0x00 [0x5ab 1451 1] Proximity [31:24]: 0x00 [0x5aa 1450 1] Proximity [23:16]: 0x00 [0x5a9 1449 1] Proximity [15:8]: 0x00 [0x5ac 1452 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x5b2 1458 1] Proximity [7:0]: 0x00 [0x5b3 1459 1] APIC ID: 0xff [0x5b4 1460 4] Flags: 0x00000000 [0x5b8 1464 1] L_SAPIC_EID: 0x00 [0x5bb 1467 1] Proximity [31:24]: 0x00 [0x5ba 1466 1] Proximity [23:16]: 0x00 [0x5b9 1465 1] Proximity [15:8]: 0x00 [0x5bc 1468 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x5c2 1474 1] Proximity [7:0]: 0x00 [0x5c3 1475 1] APIC ID: 0xff [0x5c4 1476 4] Flags: 0x00000000 [0x5c8 1480 1] L_SAPIC_EID: 0x00 [0x5cb 1483 1] Proximity [31:24]: 0x00 [0x5ca 1482 1] Proximity [23:16]: 0x00 [0x5c9 1481 1] Proximity [15:8]: 0x00 [0x5cc 1484 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x5d2 1490 1] Proximity [7:0]: 0x01 [0x5d3 1491 1] APIC ID: 0xff [0x5d4 1492 4] Flags: 0x00000000 [0x5d8 1496 1] L_SAPIC_EID: 0x00 [0x5db 1499 1] Proximity [31:24]: 0x00 [0x5da 1498 1] Proximity [23:16]: 0x00 [0x5d9 1497 1] Proximity [15:8]: 0x00 [0x5dc 1500 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x5e2 1506 1] Proximity [7:0]: 0x01 [0x5e3 1507 1] APIC ID: 0xff [0x5e4 1508 4] Flags: 0x00000000 [0x5e8 1512 1] L_SAPIC_EID: 0x00 [0x5eb 1515 1] Proximity [31:24]: 0x00 [0x5ea 1514 1] Proximity [23:16]: 0x00 [0x5e9 1513 1] Proximity [15:8]: 0x00 [0x5ec 1516 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x5f2 1522 1] Proximity [7:0]: 0x01 [0x5f3 1523 1] APIC ID: 0xff [0x5f4 1524 4] Flags: 0x00000000 [0x5f8 1528 1] L_SAPIC_EID: 0x00 [0x5fb 1531 1] Proximity [31:24]: 0x00 [0x5fa 1530 1] Proximity [23:16]: 0x00 [0x5f9 1529 1] Proximity [15:8]: 0x00 [0x5fc 1532 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x602 1538 1] Proximity [7:0]: 0x01 [0x603 1539 1] APIC ID: 0xff [0x604 1540 4] Flags: 0x00000000 [0x608 1544 1] L_SAPIC_EID: 0x00 [0x60b 1547 1] Proximity [31:24]: 0x00 [0x60a 1546 1] Proximity [23:16]: 0x00 [0x609 1545 1] Proximity [15:8]: 0x00 [0x60c 1548 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x612 1554 1] Proximity [7:0]: 0x01 [0x613 1555 1] APIC ID: 0xff [0x614 1556 4] Flags: 0x00000000 [0x618 1560 1] L_SAPIC_EID: 0x00 [0x61b 1563 1] Proximity [31:24]: 0x00 [0x61a 1562 1] Proximity [23:16]: 0x00 [0x619 1561 1] Proximity [15:8]: 0x00 [0x61c 1564 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x622 1570 1] Proximity [7:0]: 0x01 [0x623 1571 1] APIC ID: 0xff [0x624 1572 4] Flags: 0x00000000 [0x628 1576 1] L_SAPIC_EID: 0x00 [0x62b 1579 1] Proximity [31:24]: 0x00 [0x62a 1578 1] Proximity [23:16]: 0x00 [0x629 1577 1] Proximity [15:8]: 0x00 [0x62c 1580 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x632 1586 1] Proximity [7:0]: 0x01 [0x633 1587 1] APIC ID: 0xff [0x634 1588 4] Flags: 0x00000000 [0x638 1592 1] L_SAPIC_EID: 0x00 [0x63b 1595 1] Proximity [31:24]: 0x00 [0x63a 1594 1] Proximity [23:16]: 0x00 [0x639 1593 1] Proximity [15:8]: 0x00 [0x63c 1596 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x642 1602 1] Proximity [7:0]: 0x01 [0x643 1603 1] APIC ID: 0xff [0x644 1604 4] Flags: 0x00000000 [0x648 1608 1] L_SAPIC_EID: 0x00 [0x64b 1611 1] Proximity [31:24]: 0x00 [0x64a 1610 1] Proximity [23:16]: 0x00 [0x649 1609 1] Proximity [15:8]: 0x00 [0x64c 1612 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x652 1618 1] Proximity [7:0]: 0x01 [0x653 1619 1] APIC ID: 0xff [0x654 1620 4] Flags: 0x00000000 [0x658 1624 1] L_SAPIC_EID: 0x00 [0x65b 1627 1] Proximity [31:24]: 0x00 [0x65a 1626 1] Proximity [23:16]: 0x00 [0x659 1625 1] Proximity [15:8]: 0x00 [0x65c 1628 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x662 1634 1] Proximity [7:0]: 0x01 [0x663 1635 1] APIC ID: 0xff [0x664 1636 4] Flags: 0x00000000 [0x668 1640 1] L_SAPIC_EID: 0x00 [0x66b 1643 1] Proximity [31:24]: 0x00 [0x66a 1642 1] Proximity [23:16]: 0x00 [0x669 1641 1] Proximity [15:8]: 0x00 [0x66c 1644 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x672 1650 1] Proximity [7:0]: 0x01 [0x673 1651 1] APIC ID: 0xff [0x674 1652 4] Flags: 0x00000000 [0x678 1656 1] L_SAPIC_EID: 0x00 [0x67b 1659 1] Proximity [31:24]: 0x00 [0x67a 1658 1] Proximity [23:16]: 0x00 [0x679 1657 1] Proximity [15:8]: 0x00 [0x67c 1660 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x682 1666 1] Proximity [7:0]: 0x01 [0x683 1667 1] APIC ID: 0xff [0x684 1668 4] Flags: 0x00000000 [0x688 1672 1] L_SAPIC_EID: 0x00 [0x68b 1675 1] Proximity [31:24]: 0x00 [0x68a 1674 1] Proximity [23:16]: 0x00 [0x689 1673 1] Proximity [15:8]: 0x00 [0x68c 1676 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x692 1682 1] Proximity [7:0]: 0x01 [0x693 1683 1] APIC ID: 0xff [0x694 1684 4] Flags: 0x00000000 [0x698 1688 1] L_SAPIC_EID: 0x00 [0x69b 1691 1] Proximity [31:24]: 0x00 [0x69a 1690 1] Proximity [23:16]: 0x00 [0x699 1689 1] Proximity [15:8]: 0x00 [0x69c 1692 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x6a2 1698 1] Proximity [7:0]: 0x01 [0x6a3 1699 1] APIC ID: 0xff [0x6a4 1700 4] Flags: 0x00000000 [0x6a8 1704 1] L_SAPIC_EID: 0x00 [0x6ab 1707 1] Proximity [31:24]: 0x00 [0x6aa 1706 1] Proximity [23:16]: 0x00 [0x6a9 1705 1] Proximity [15:8]: 0x00 [0x6ac 1708 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x6b2 1714 1] Proximity [7:0]: 0x01 [0x6b3 1715 1] APIC ID: 0xff [0x6b4 1716 4] Flags: 0x00000000 [0x6b8 1720 1] L_SAPIC_EID: 0x00 [0x6bb 1723 1] Proximity [31:24]: 0x00 [0x6ba 1722 1] Proximity [23:16]: 0x00 [0x6b9 1721 1] Proximity [15:8]: 0x00 [0x6bc 1724 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x6c2 1730 1] Proximity [7:0]: 0x01 [0x6c3 1731 1] APIC ID: 0xff [0x6c4 1732 4] Flags: 0x00000000 [0x6c8 1736 1] L_SAPIC_EID: 0x00 [0x6cb 1739 1] Proximity [31:24]: 0x00 [0x6ca 1738 1] Proximity [23:16]: 0x00 [0x6c9 1737 1] Proximity [15:8]: 0x00 [0x6cc 1740 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x6d2 1746 1] Proximity [7:0]: 0x01 [0x6d3 1747 1] APIC ID: 0xff [0x6d4 1748 4] Flags: 0x00000000 [0x6d8 1752 1] L_SAPIC_EID: 0x00 [0x6db 1755 1] Proximity [31:24]: 0x00 [0x6da 1754 1] Proximity [23:16]: 0x00 [0x6d9 1753 1] Proximity [15:8]: 0x00 [0x6dc 1756 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x6e2 1762 1] Proximity [7:0]: 0x01 [0x6e3 1763 1] APIC ID: 0xff [0x6e4 1764 4] Flags: 0x00000000 [0x6e8 1768 1] L_SAPIC_EID: 0x00 [0x6eb 1771 1] Proximity [31:24]: 0x00 [0x6ea 1770 1] Proximity [23:16]: 0x00 [0x6e9 1769 1] Proximity [15:8]: 0x00 [0x6ec 1772 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x6f2 1778 1] Proximity [7:0]: 0x02 [0x6f3 1779 1] APIC ID: 0xff [0x6f4 1780 4] Flags: 0x00000000 [0x6f8 1784 1] L_SAPIC_EID: 0x00 [0x6fb 1787 1] Proximity [31:24]: 0x00 [0x6fa 1786 1] Proximity [23:16]: 0x00 [0x6f9 1785 1] Proximity [15:8]: 0x00 [0x6fc 1788 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x702 1794 1] Proximity [7:0]: 0x02 [0x703 1795 1] APIC ID: 0xff [0x704 1796 4] Flags: 0x00000000 [0x708 1800 1] L_SAPIC_EID: 0x00 [0x70b 1803 1] Proximity [31:24]: 0x00 [0x70a 1802 1] Proximity [23:16]: 0x00 [0x709 1801 1] Proximity [15:8]: 0x00 [0x70c 1804 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x712 1810 1] Proximity [7:0]: 0x02 [0x713 1811 1] APIC ID: 0xff [0x714 1812 4] Flags: 0x00000000 [0x718 1816 1] L_SAPIC_EID: 0x00 [0x71b 1819 1] Proximity [31:24]: 0x00 [0x71a 1818 1] Proximity [23:16]: 0x00 [0x719 1817 1] Proximity [15:8]: 0x00 [0x71c 1820 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x722 1826 1] Proximity [7:0]: 0x02 [0x723 1827 1] APIC ID: 0xff [0x724 1828 4] Flags: 0x00000000 [0x728 1832 1] L_SAPIC_EID: 0x00 [0x72b 1835 1] Proximity [31:24]: 0x00 [0x72a 1834 1] Proximity [23:16]: 0x00 [0x729 1833 1] Proximity [15:8]: 0x00 [0x72c 1836 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x732 1842 1] Proximity [7:0]: 0x02 [0x733 1843 1] APIC ID: 0xff [0x734 1844 4] Flags: 0x00000000 [0x738 1848 1] L_SAPIC_EID: 0x00 [0x73b 1851 1] Proximity [31:24]: 0x00 [0x73a 1850 1] Proximity [23:16]: 0x00 [0x739 1849 1] Proximity [15:8]: 0x00 [0x73c 1852 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x742 1858 1] Proximity [7:0]: 0x02 [0x743 1859 1] APIC ID: 0xff [0x744 1860 4] Flags: 0x00000000 [0x748 1864 1] L_SAPIC_EID: 0x00 [0x74b 1867 1] Proximity [31:24]: 0x00 [0x74a 1866 1] Proximity [23:16]: 0x00 [0x749 1865 1] Proximity [15:8]: 0x00 [0x74c 1868 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x752 1874 1] Proximity [7:0]: 0x02 [0x753 1875 1] APIC ID: 0xff [0x754 1876 4] Flags: 0x00000000 [0x758 1880 1] L_SAPIC_EID: 0x00 [0x75b 1883 1] Proximity [31:24]: 0x00 [0x75a 1882 1] Proximity [23:16]: 0x00 [0x759 1881 1] Proximity [15:8]: 0x00 [0x75c 1884 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x762 1890 1] Proximity [7:0]: 0x02 [0x763 1891 1] APIC ID: 0xff [0x764 1892 4] Flags: 0x00000000 [0x768 1896 1] L_SAPIC_EID: 0x00 [0x76b 1899 1] Proximity [31:24]: 0x00 [0x76a 1898 1] Proximity [23:16]: 0x00 [0x769 1897 1] Proximity [15:8]: 0x00 [0x76c 1900 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x772 1906 1] Proximity [7:0]: 0x02 [0x773 1907 1] APIC ID: 0xff [0x774 1908 4] Flags: 0x00000000 [0x778 1912 1] L_SAPIC_EID: 0x00 [0x77b 1915 1] Proximity [31:24]: 0x00 [0x77a 1914 1] Proximity [23:16]: 0x00 [0x779 1913 1] Proximity [15:8]: 0x00 [0x77c 1916 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x782 1922 1] Proximity [7:0]: 0x02 [0x783 1923 1] APIC ID: 0xff [0x784 1924 4] Flags: 0x00000000 [0x788 1928 1] L_SAPIC_EID: 0x00 [0x78b 1931 1] Proximity [31:24]: 0x00 [0x78a 1930 1] Proximity [23:16]: 0x00 [0x789 1929 1] Proximity [15:8]: 0x00 [0x78c 1932 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x792 1938 1] Proximity [7:0]: 0x02 [0x793 1939 1] APIC ID: 0xff [0x794 1940 4] Flags: 0x00000000 [0x798 1944 1] L_SAPIC_EID: 0x00 [0x79b 1947 1] Proximity [31:24]: 0x00 [0x79a 1946 1] Proximity [23:16]: 0x00 [0x799 1945 1] Proximity [15:8]: 0x00 [0x79c 1948 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x7a2 1954 1] Proximity [7:0]: 0x02 [0x7a3 1955 1] APIC ID: 0xff [0x7a4 1956 4] Flags: 0x00000000 [0x7a8 1960 1] L_SAPIC_EID: 0x00 [0x7ab 1963 1] Proximity [31:24]: 0x00 [0x7aa 1962 1] Proximity [23:16]: 0x00 [0x7a9 1961 1] Proximity [15:8]: 0x00 [0x7ac 1964 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x7b2 1970 1] Proximity [7:0]: 0x02 [0x7b3 1971 1] APIC ID: 0xff [0x7b4 1972 4] Flags: 0x00000000 [0x7b8 1976 1] L_SAPIC_EID: 0x00 [0x7bb 1979 1] Proximity [31:24]: 0x00 [0x7ba 1978 1] Proximity [23:16]: 0x00 [0x7b9 1977 1] Proximity [15:8]: 0x00 [0x7bc 1980 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x7c2 1986 1] Proximity [7:0]: 0x02 [0x7c3 1987 1] APIC ID: 0xff [0x7c4 1988 4] Flags: 0x00000000 [0x7c8 1992 1] L_SAPIC_EID: 0x00 [0x7cb 1995 1] Proximity [31:24]: 0x00 [0x7ca 1994 1] Proximity [23:16]: 0x00 [0x7c9 1993 1] Proximity [15:8]: 0x00 [0x7cc 1996 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x7d2 2002 1] Proximity [7:0]: 0x02 [0x7d3 2003 1] APIC ID: 0xff [0x7d4 2004 4] Flags: 0x00000000 [0x7d8 2008 1] L_SAPIC_EID: 0x00 [0x7db 2011 1] Proximity [31:24]: 0x00 [0x7da 2010 1] Proximity [23:16]: 0x00 [0x7d9 2009 1] Proximity [15:8]: 0x00 [0x7dc 2012 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x7e2 2018 1] Proximity [7:0]: 0x02 [0x7e3 2019 1] APIC ID: 0xff [0x7e4 2020 4] Flags: 0x00000000 [0x7e8 2024 1] L_SAPIC_EID: 0x00 [0x7eb 2027 1] Proximity [31:24]: 0x00 [0x7ea 2026 1] Proximity [23:16]: 0x00 [0x7e9 2025 1] Proximity [15:8]: 0x00 [0x7ec 2028 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x7f2 2034 1] Proximity [7:0]: 0x02 [0x7f3 2035 1] APIC ID: 0xff [0x7f4 2036 4] Flags: 0x00000000 [0x7f8 2040 1] L_SAPIC_EID: 0x00 [0x7fb 2043 1] Proximity [31:24]: 0x00 [0x7fa 2042 1] Proximity [23:16]: 0x00 [0x7f9 2041 1] Proximity [15:8]: 0x00 [0x7fc 2044 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x802 2050 1] Proximity [7:0]: 0x02 [0x803 2051 1] APIC ID: 0xff [0x804 2052 4] Flags: 0x00000000 [0x808 2056 1] L_SAPIC_EID: 0x00 [0x80b 2059 1] Proximity [31:24]: 0x00 [0x80a 2058 1] Proximity [23:16]: 0x00 [0x809 2057 1] Proximity [15:8]: 0x00 [0x80c 2060 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x812 2066 1] Proximity [7:0]: 0x03 [0x813 2067 1] APIC ID: 0xff [0x814 2068 4] Flags: 0x00000000 [0x818 2072 1] L_SAPIC_EID: 0x00 [0x81b 2075 1] Proximity [31:24]: 0x00 [0x81a 2074 1] Proximity [23:16]: 0x00 [0x819 2073 1] Proximity [15:8]: 0x00 [0x81c 2076 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x822 2082 1] Proximity [7:0]: 0x03 [0x823 2083 1] APIC ID: 0xff [0x824 2084 4] Flags: 0x00000000 [0x828 2088 1] L_SAPIC_EID: 0x00 [0x82b 2091 1] Proximity [31:24]: 0x00 [0x82a 2090 1] Proximity [23:16]: 0x00 [0x829 2089 1] Proximity [15:8]: 0x00 [0x82c 2092 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x832 2098 1] Proximity [7:0]: 0x03 [0x833 2099 1] APIC ID: 0xff [0x834 2100 4] Flags: 0x00000000 [0x838 2104 1] L_SAPIC_EID: 0x00 [0x83b 2107 1] Proximity [31:24]: 0x00 [0x83a 2106 1] Proximity [23:16]: 0x00 [0x839 2105 1] Proximity [15:8]: 0x00 [0x83c 2108 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x842 2114 1] Proximity [7:0]: 0x03 [0x843 2115 1] APIC ID: 0xff [0x844 2116 4] Flags: 0x00000000 [0x848 2120 1] L_SAPIC_EID: 0x00 [0x84b 2123 1] Proximity [31:24]: 0x00 [0x84a 2122 1] Proximity [23:16]: 0x00 [0x849 2121 1] Proximity [15:8]: 0x00 [0x84c 2124 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x852 2130 1] Proximity [7:0]: 0x03 [0x853 2131 1] APIC ID: 0xff [0x854 2132 4] Flags: 0x00000000 [0x858 2136 1] L_SAPIC_EID: 0x00 [0x85b 2139 1] Proximity [31:24]: 0x00 [0x85a 2138 1] Proximity [23:16]: 0x00 [0x859 2137 1] Proximity [15:8]: 0x00 [0x85c 2140 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x862 2146 1] Proximity [7:0]: 0x03 [0x863 2147 1] APIC ID: 0xff [0x864 2148 4] Flags: 0x00000000 [0x868 2152 1] L_SAPIC_EID: 0x00 [0x86b 2155 1] Proximity [31:24]: 0x00 [0x86a 2154 1] Proximity [23:16]: 0x00 [0x869 2153 1] Proximity [15:8]: 0x00 [0x86c 2156 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x872 2162 1] Proximity [7:0]: 0x03 [0x873 2163 1] APIC ID: 0xff [0x874 2164 4] Flags: 0x00000000 [0x878 2168 1] L_SAPIC_EID: 0x00 [0x87b 2171 1] Proximity [31:24]: 0x00 [0x87a 2170 1] Proximity [23:16]: 0x00 [0x879 2169 1] Proximity [15:8]: 0x00 [0x87c 2172 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x882 2178 1] Proximity [7:0]: 0x03 [0x883 2179 1] APIC ID: 0xff [0x884 2180 4] Flags: 0x00000000 [0x888 2184 1] L_SAPIC_EID: 0x00 [0x88b 2187 1] Proximity [31:24]: 0x00 [0x88a 2186 1] Proximity [23:16]: 0x00 [0x889 2185 1] Proximity [15:8]: 0x00 [0x88c 2188 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x892 2194 1] Proximity [7:0]: 0x03 [0x893 2195 1] APIC ID: 0xff [0x894 2196 4] Flags: 0x00000000 [0x898 2200 1] L_SAPIC_EID: 0x00 [0x89b 2203 1] Proximity [31:24]: 0x00 [0x89a 2202 1] Proximity [23:16]: 0x00 [0x899 2201 1] Proximity [15:8]: 0x00 [0x89c 2204 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x8a2 2210 1] Proximity [7:0]: 0x03 [0x8a3 2211 1] APIC ID: 0xff [0x8a4 2212 4] Flags: 0x00000000 [0x8a8 2216 1] L_SAPIC_EID: 0x00 [0x8ab 2219 1] Proximity [31:24]: 0x00 [0x8aa 2218 1] Proximity [23:16]: 0x00 [0x8a9 2217 1] Proximity [15:8]: 0x00 [0x8ac 2220 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x8b2 2226 1] Proximity [7:0]: 0x03 [0x8b3 2227 1] APIC ID: 0xff [0x8b4 2228 4] Flags: 0x00000000 [0x8b8 2232 1] L_SAPIC_EID: 0x00 [0x8bb 2235 1] Proximity [31:24]: 0x00 [0x8ba 2234 1] Proximity [23:16]: 0x00 [0x8b9 2233 1] Proximity [15:8]: 0x00 [0x8bc 2236 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x8c2 2242 1] Proximity [7:0]: 0x03 [0x8c3 2243 1] APIC ID: 0xff [0x8c4 2244 4] Flags: 0x00000000 [0x8c8 2248 1] L_SAPIC_EID: 0x00 [0x8cb 2251 1] Proximity [31:24]: 0x00 [0x8ca 2250 1] Proximity [23:16]: 0x00 [0x8c9 2249 1] Proximity [15:8]: 0x00 [0x8cc 2252 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x8d2 2258 1] Proximity [7:0]: 0x03 [0x8d3 2259 1] APIC ID: 0xff [0x8d4 2260 4] Flags: 0x00000000 [0x8d8 2264 1] L_SAPIC_EID: 0x00 [0x8db 2267 1] Proximity [31:24]: 0x00 [0x8da 2266 1] Proximity [23:16]: 0x00 [0x8d9 2265 1] Proximity [15:8]: 0x00 [0x8dc 2268 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x8e2 2274 1] Proximity [7:0]: 0x03 [0x8e3 2275 1] APIC ID: 0xff [0x8e4 2276 4] Flags: 0x00000000 [0x8e8 2280 1] L_SAPIC_EID: 0x00 [0x8eb 2283 1] Proximity [31:24]: 0x00 [0x8ea 2282 1] Proximity [23:16]: 0x00 [0x8e9 2281 1] Proximity [15:8]: 0x00 [0x8ec 2284 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x8f2 2290 1] Proximity [7:0]: 0x03 [0x8f3 2291 1] APIC ID: 0xff [0x8f4 2292 4] Flags: 0x00000000 [0x8f8 2296 1] L_SAPIC_EID: 0x00 [0x8fb 2299 1] Proximity [31:24]: 0x00 [0x8fa 2298 1] Proximity [23:16]: 0x00 [0x8f9 2297 1] Proximity [15:8]: 0x00 [0x8fc 2300 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x902 2306 1] Proximity [7:0]: 0x03 [0x903 2307 1] APIC ID: 0xff [0x904 2308 4] Flags: 0x00000000 [0x908 2312 1] L_SAPIC_EID: 0x00 [0x90b 2315 1] Proximity [31:24]: 0x00 [0x90a 2314 1] Proximity [23:16]: 0x00 [0x909 2313 1] Proximity [15:8]: 0x00 [0x90c 2316 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x912 2322 1] Proximity [7:0]: 0x03 [0x913 2323 1] APIC ID: 0xff [0x914 2324 4] Flags: 0x00000000 [0x918 2328 1] L_SAPIC_EID: 0x00 [0x91b 2331 1] Proximity [31:24]: 0x00 [0x91a 2330 1] Proximity [23:16]: 0x00 [0x919 2329 1] Proximity [15:8]: 0x00 [0x91c 2332 4] Clock Domain: 0x: 0x00000000 Processor Local APIC/SAPID Affinity Structure: [0x922 2338 1] Proximity [7:0]: 0x03 [0x923 2339 1] APIC ID: 0xff [0x924 2340 4] Flags: 0x00000000 [0x928 2344 1] L_SAPIC_EID: 0x00 [0x92b 2347 1] Proximity [31:24]: 0x00 [0x92a 2346 1] Proximity [23:16]: 0x00 [0x929 2345 1] Proximity [15:8]: 0x00 [0x92c 2348 4] Clock Domain: 0x: 0x00000000 Memory Affinity Structure: [0x932 2354 4] Prox. Domain: 0x00000000 [0x938 2360 4] Base Addr Lo: 0x00000000 [0x93c 2364 4] Base Addr Hi: 0x00000000 [0x940 2368 4] Length Lo: 0x80000000 [0x944 2372 4] Length Hi: 0x00000000 [0x94c 2380 4] Flags: 0x00000001 Memory Affinity Structure: [0x95a 2394 4] Prox. Domain: 0x00000000 [0x960 2400 4] Base Addr Lo: 0x00000000 [0x964 2404 4] Base Addr Hi: 0x00000001 [0x968 2408 4] Length Lo: 0x80000000 [0x96c 2412 4] Length Hi: 0x0000003f [0x974 2420 4] Flags: 0x00000001 Memory Affinity Structure: [0x982 2434 4] Prox. Domain: 0x00000001 [0x988 2440 4] Base Addr Lo: 0x80000000 [0x98c 2444 4] Base Addr Hi: 0x00000040 [0x990 2448 4] Length Lo: 0x00000000 [0x994 2452 4] Length Hi: 0x00000040 [0x99c 2460 4] Flags: 0x00000001 Memory Affinity Structure: [0x9aa 2474 4] Prox. Domain: 0x00000000 [0x9b0 2480 4] Base Addr Lo: 0x00000000 [0x9b4 2484 4] Base Addr Hi: 0x00000000 [0x9b8 2488 4] Length Lo: 0x00000000 [0x9bc 2492 4] Length Hi: 0x00000000 [0x9c4 2500 4] Flags: 0x00000000 Memory Affinity Structure: [0x9d2 2514 4] Prox. Domain: 0x00000000 [0x9d8 2520 4] Base Addr Lo: 0x00000000 [0x9dc 2524 4] Base Addr Hi: 0x00000000 [0x9e0 2528 4] Length Lo: 0x00000000 [0x9e4 2532 4] Length Hi: 0x00000000 [0x9ec 2540 4] Flags: 0x00000000 Memory Affinity Structure: [0x9fa 2554 4] Prox. Domain: 0x00000000 [0xa00 2560 4] Base Addr Lo: 0x00000000 [0xa04 2564 4] Base Addr Hi: 0x00000000 [0xa08 2568 4] Length Lo: 0x00000000 [0xa0c 2572 4] Length Hi: 0x00000000 [0xa14 2580 4] Flags: 0x00000000 Memory Affinity Structure: [0xa22 2594 4] Prox. Domain: 0x00000000 [0xa28 2600 4] Base Addr Lo: 0x00000000 [0xa2c 2604 4] Base Addr Hi: 0x00000000 [0xa30 2608 4] Length Lo: 0x00000000 [0xa34 2612 4] Length Hi: 0x00000000 [0xa3c 2620 4] Flags: 0x00000000 Memory Affinity Structure: [0xa4a 2634 4] Prox. Domain: 0x00000000 [0xa50 2640 4] Base Addr Lo: 0x00000000 [0xa54 2644 4] Base Addr Hi: 0x00000000 [0xa58 2648 4] Length Lo: 0x00000000 [0xa5c 2652 4] Length Hi: 0x00000000 [0xa64 2660 4] Flags: 0x00000000 Memory Affinity Structure: [0xa72 2674 4] Prox. Domain: 0x00000000 [0xa78 2680 4] Base Addr Lo: 0x00000000 [0xa7c 2684 4] Base Addr Hi: 0x00000000 [0xa80 2688 4] Length Lo: 0x00000000 [0xa84 2692 4] Length Hi: 0x00000000 [0xa8c 2700 4] Flags: 0x00000000 Memory Affinity Structure: [0xa9a 2714 4] Prox. Domain: 0x00000000 [0xaa0 2720 4] Base Addr Lo: 0x00000000 [0xaa4 2724 4] Base Addr Hi: 0x00000000 [0xaa8 2728 4] Length Lo: 0x00000000 [0xaac 2732 4] Length Hi: 0x00000000 [0xab4 2740 4] Flags: 0x00000000 Memory Affinity Structure: [0xac2 2754 4] Prox. Domain: 0x00000000 [0xac8 2760 4] Base Addr Lo: 0x00000000 [0xacc 2764 4] Base Addr Hi: 0x00000000 [0xad0 2768 4] Length Lo: 0x00000000 [0xad4 2772 4] Length Hi: 0x00000000 [0xadc 2780 4] Flags: 0x00000000 Memory Affinity Structure: [0xaea 2794 4] Prox. Domain: 0x00000000 [0xaf0 2800 4] Base Addr Lo: 0x00000000 [0xaf4 2804 4] Base Addr Hi: 0x00000000 [0xaf8 2808 4] Length Lo: 0x00000000 [0xafc 2812 4] Length Hi: 0x00000000 [0xb04 2820 4] Flags: 0x00000000 Memory Affinity Structure: [0xb12 2834 4] Prox. Domain: 0x00000000 [0xb18 2840 4] Base Addr Lo: 0x00000000 [0xb1c 2844 4] Base Addr Hi: 0x00000000 [0xb20 2848 4] Length Lo: 0x00000000 [0xb24 2852 4] Length Hi: 0x00000000 [0xb2c 2860 4] Flags: 0x00000000 Memory Affinity Structure: [0xb3a 2874 4] Prox. Domain: 0x00000000 [0xb40 2880 4] Base Addr Lo: 0x00000000 [0xb44 2884 4] Base Addr Hi: 0x00000000 [0xb48 2888 4] Length Lo: 0x00000000 [0xb4c 2892 4] Length Hi: 0x00000000 [0xb54 2900 4] Flags: 0x00000000 Memory Affinity Structure: [0xb62 2914 4] Prox. Domain: 0x00000000 [0xb68 2920 4] Base Addr Lo: 0x00000000 [0xb6c 2924 4] Base Addr Hi: 0x00000000 [0xb70 2928 4] Length Lo: 0x00000000 [0xb74 2932 4] Length Hi: 0x00000000 [0xb7c 2940 4] Flags: 0x00000000 Memory Affinity Structure: [0xb8a 2954 4] Prox. Domain: 0x00000000 [0xb90 2960 4] Base Addr Lo: 0x00000000 [0xb94 2964 4] Base Addr Hi: 0x00000000 [0xb98 2968 4] Length Lo: 0x00000000 [0xb9c 2972 4] Length Hi: 0x00000000 [0xba4 2980 4] Flags: 0x00000000 Memory Affinity Structure: [0xbb2 2994 4] Prox. Domain: 0x00000000 [0xbb8 3000 4] Base Addr Lo: 0x00000000 [0xbbc 3004 4] Base Addr Hi: 0x00000000 [0xbc0 3008 4] Length Lo: 0x00000000 [0xbc4 3012 4] Length Hi: 0x00000000 [0xbcc 3020 4] Flags: 0x00000000 Memory Affinity Structure: [0xbda 3034 4] Prox. Domain: 0x00000000 [0xbe0 3040 4] Base Addr Lo: 0x00000000 [0xbe4 3044 4] Base Addr Hi: 0x00000000 [0xbe8 3048 4] Length Lo: 0x00000000 [0xbec 3052 4] Length Hi: 0x00000000 [0xbf4 3060 4] Flags: 0x00000000 Memory Affinity Structure: [0xc02 3074 4] Prox. Domain: 0x00000000 [0xc08 3080 4] Base Addr Lo: 0x00000000 [0xc0c 3084 4] Base Addr Hi: 0x00000000 [0xc10 3088 4] Length Lo: 0x00000000 [0xc14 3092 4] Length Hi: 0x00000000 [0xc1c 3100 4] Flags: 0x00000000 Memory Affinity Structure: [0xc2a 3114 4] Prox. Domain: 0x00000000 [0xc30 3120 4] Base Addr Lo: 0x00000000 [0xc34 3124 4] Base Addr Hi: 0x00000000 [0xc38 3128 4] Length Lo: 0x00000000 [0xc3c 3132 4] Length Hi: 0x00000000 [0xc44 3140 4] Flags: 0x00000000 Memory Affinity Structure: [0xc52 3154 4] Prox. Domain: 0x00000000 [0xc58 3160 4] Base Addr Lo: 0x00000000 [0xc5c 3164 4] Base Addr Hi: 0x00000000 [0xc60 3168 4] Length Lo: 0x00000000 [0xc64 3172 4] Length Hi: 0x00000000 [0xc6c 3180 4] Flags: 0x00000000 Memory Affinity Structure: [0xc7a 3194 4] Prox. Domain: 0x00000000 [0xc80 3200 4] Base Addr Lo: 0x00000000 [0xc84 3204 4] Base Addr Hi: 0x00000000 [0xc88 3208 4] Length Lo: 0x00000000 [0xc8c 3212 4] Length Hi: 0x00000000 [0xc94 3220 4] Flags: 0x00000000 Memory Affinity Structure: [0xca2 3234 4] Prox. Domain: 0x00000000 [0xca8 3240 4] Base Addr Lo: 0x00000000 [0xcac 3244 4] Base Addr Hi: 0x00000000 [0xcb0 3248 4] Length Lo: 0x00000000 [0xcb4 3252 4] Length Hi: 0x00000000 [0xcbc 3260 4] Flags: 0x00000000 Memory Affinity Structure: [0xcca 3274 4] Prox. Domain: 0x00000000 [0xcd0 3280 4] Base Addr Lo: 0x00000000 [0xcd4 3284 4] Base Addr Hi: 0x00000000 [0xcd8 3288 4] Length Lo: 0x00000000 [0xcdc 3292 4] Length Hi: 0x00000000 [0xce4 3300 4] Flags: 0x00000000 Memory Affinity Structure: [0xcf2 3314 4] Prox. Domain: 0x00000000 [0xcf8 3320 4] Base Addr Lo: 0x00000000 [0xcfc 3324 4] Base Addr Hi: 0x00000000 [0xd00 3328 4] Length Lo: 0x00000000 [0xd04 3332 4] Length Hi: 0x00000000 [0xd0c 3340 4] Flags: 0x00000000 Memory Affinity Structure: [0xd1a 3354 4] Prox. Domain: 0x00000000 [0xd20 3360 4] Base Addr Lo: 0x00000000 [0xd24 3364 4] Base Addr Hi: 0x00000000 [0xd28 3368 4] Length Lo: 0x00000000 [0xd2c 3372 4] Length Hi: 0x00000000 [0xd34 3380 4] Flags: 0x00000000 Memory Affinity Structure: [0xd42 3394 4] Prox. Domain: 0x00000000 [0xd48 3400 4] Base Addr Lo: 0x00000000 [0xd4c 3404 4] Base Addr Hi: 0x00000000 [0xd50 3408 4] Length Lo: 0x00000000 [0xd54 3412 4] Length Hi: 0x00000000 [0xd5c 3420 4] Flags: 0x00000000 Memory Affinity Structure: [0xd6a 3434 4] Prox. Domain: 0x00000000 [0xd70 3440 4] Base Addr Lo: 0x00000000 [0xd74 3444 4] Base Addr Hi: 0x00000000 [0xd78 3448 4] Length Lo: 0x00000000 [0xd7c 3452 4] Length Hi: 0x00000000 [0xd84 3460 4] Flags: 0x00000000 Memory Affinity Structure: [0xd92 3474 4] Prox. Domain: 0x00000000 [0xd98 3480 4] Base Addr Lo: 0x00000000 [0xd9c 3484 4] Base Addr Hi: 0x00000000 [0xda0 3488 4] Length Lo: 0x00000000 [0xda4 3492 4] Length Hi: 0x00000000 [0xdac 3500 4] Flags: 0x00000000 Memory Affinity Structure: [0xdba 3514 4] Prox. Domain: 0x00000000 [0xdc0 3520 4] Base Addr Lo: 0x00000000 [0xdc4 3524 4] Base Addr Hi: 0x00000000 [0xdc8 3528 4] Length Lo: 0x00000000 [0xdcc 3532 4] Length Hi: 0x00000000 [0xdd4 3540 4] Flags: 0x00000000 Memory Affinity Structure: [0xde2 3554 4] Prox. Domain: 0x00000000 [0xde8 3560 4] Base Addr Lo: 0x00000000 [0xdec 3564 4] Base Addr Hi: 0x00000000 [0xdf0 3568 4] Length Lo: 0x00000000 [0xdf4 3572 4] Length Hi: 0x00000000 [0xdfc 3580 4] Flags: 0x00000000 Memory Affinity Structure: [0xe0a 3594 4] Prox. Domain: 0x00000000 [0xe10 3600 4] Base Addr Lo: 0x00000000 [0xe14 3604 4] Base Addr Hi: 0x00000000 [0xe18 3608 4] Length Lo: 0x00000000 [0xe1c 3612 4] Length Hi: 0x00000000 [0xe24 3620 4] Flags: 0x00000000 Memory Affinity Structure: [0xe32 3634 4] Prox. Domain: 0x00000000 [0xe38 3640 4] Base Addr Lo: 0x00000000 [0xe3c 3644 4] Base Addr Hi: 0x00000000 [0xe40 3648 4] Length Lo: 0x00000000 [0xe44 3652 4] Length Hi: 0x00000000 [0xe4c 3660 4] Flags: 0x00000000 WDDT @ 7984bc50 (64 bytes) ---- [0x000 0000 4] Signature: WDDT [0x004 0004 4] Length: 0x00000040 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0x85 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000000 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20091013 0000: 57 44 44 54 40 00 00 00 01 85 41 4c 41 53 4b 41 WDDT@.....ALASKA 0010: 41 20 4d 20 49 20 00 00 00 00 00 00 49 4e 54 4c A M I ......INTL 0020: 13 10 09 20 00 00 00 01 00 01 01 ff 00 00 00 00 ... ............ 0030: 00 00 00 00 00 00 3f 00 04 00 58 02 01 00 00 00 ......?...X..... SSDT @ 7984bc90 (60627 bytes) ---- Secondary System Description Table: [0x000 0000 4] Signature: SSDT [0x004 0004 4] Length: 0x0000ecd3 [0x008 0008 1] Revision: 0x02 [0x009 0009 1] Checksum: 0x73 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: PmMgt [0x018 0024 4] OEM Revision: 0x00000002 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20120913 Contains 0xecaf bytes of AML byte code UEFI @ 7985a968 (92 bytes) ---- UEFI ACPI Data Table: [0x000 0000 4] Signature: UEFI [0x004 0004 4] Length: 0x0000005c [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0xba [0x00a 0010 6] OEM ID: INTEL [0x010 0016 8] OEM Table ID: RstSataV [0x018 0024 4] OEM Revision: 0x00000000 [0x01c 0028 4] Creator ID: [0x020 0032 4] Creator Revision: 0x00000000 [0x024 0036 16] UUID: E4DD92E0-AC7D-11DF-94E2-0800200C9A66 0034: 36 00 24 56 45 52 02 02 04 00 01 00 00 00 02 04 6.$VER.......... 0044: 26 dc 17 00 7e 00 06 00 06 00 02 04 17 00 00 ac &...~........... 0054: 0d 00 00 00 67 00 00 00 ....g... SSDT @ 7985a9c8 (8516 bytes) ---- Secondary System Description Table: [0x000 0000 4] Signature: SSDT [0x004 0004 4] Length: 0x00002144 [0x008 0008 1] Revision: 0x02 [0x009 0009 1] Checksum: 0xb2 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: SpsNm [0x018 0024 4] OEM Revision: 0x00000002 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20120913 Contains 0x2120 bytes of AML byte code SSDT @ 7985cb10 (100 bytes) ---- Secondary System Description Table: [0x000 0000 4] Signature: SSDT [0x004 0004 4] Length: 0x00000064 [0x008 0008 1] Revision: 0x02 [0x009 0009 1] Checksum: 0x00 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: SpsNvs [0x018 0024 4] OEM Revision: 0x00000002 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20120913 Contains 0x40 bytes of AML byte code PRAD @ 7985cb78 (258 bytes) ---- [0x000 0000 4] Signature: PRAD [0x004 0004 4] Length: 0x00000102 [0x008 0008 1] Revision: 0x02 [0x009 0009 1] Checksum: 0x95 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000002 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20120913 0000: 50 52 41 44 02 01 00 00 02 95 41 4c 41 53 4b 41 PRAD......ALASKA 0010: 41 20 4d 20 49 20 00 00 02 00 00 00 49 4e 54 4c A M I ......INTL 0020: 13 09 12 20 10 4d 0d 5c 5f 53 42 5f 5b 82 44 0d ... .M.\_SB_[.D. 0030: 50 52 41 44 08 5f 48 49 44 0d 41 43 50 49 30 30 PRAD._HID.ACPI00 0040: 30 43 00 14 09 5f 53 54 41 00 a4 0a 0f 14 44 05 0C..._STA.....D. 0050: 5f 50 55 52 00 70 0d 50 52 41 44 3a 20 45 6e 74 _PUR.p.PRAD: Ent 0060: 65 72 69 6e 67 20 5f 50 55 52 00 5b 31 08 49 44 ering _PUR.[1.ID 0070: 4c 5f 12 04 02 01 00 7b 7d 5c 50 55 52 41 0a 80 L_.....{}\PURA.. 0080: 00 0b ff ff 5c 50 55 52 42 7b 7a 5c 50 55 52 41 ....\PURB{z\PURA 0090: 0a 10 00 0b ff ff 88 49 44 4c 5f 01 00 a4 49 44 .......IDL_...ID 00a0: 4c 5f 14 4f 05 5f 4f 53 54 0b 70 0d 50 52 41 44 L_.O._OST.p.PRAD 00b0: 3a 20 45 6e 74 65 72 69 6e 67 20 5f 4f 53 54 00 : Entering _OST. 00c0: 5b 31 a0 3f 93 7b 5c 50 55 52 42 0a ff 00 0a 83 [1.?.{\PURB..... 00d0: 74 5c 54 48 4e 55 99 6a 00 60 7d 5c 50 55 52 42 t\THNU.j.`}\PURB 00e0: 79 60 0a 10 00 5c 50 55 52 42 5c 2f 04 5f 53 42 y`...\PURB\/._SB 00f0: 5f 50 43 49 30 48 45 43 32 44 43 4e 46 5c 50 55 _PCI0HEC2DCNF\PU 0100: 52 42 RB DMAR @ 7985cc80 (232 bytes) ---- DMA Remapping Table: [0x000 0000 4] Signature: DMAR [0x004 0004 4] Length: 0x000000e8 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0x62 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000001 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x20091013 [0x024 0036 1] Host Address Width: 0x2d [0x025 0037 1] Flags: 0x03 [0x026 0038 10] Reserved: 0x00 [0] [0x026 0038 10] Reserved: 0x00 [1] [0x026 0038 10] Reserved: 0x00 [2] [0x026 0038 10] Reserved: 0x00 [3] [0x026 0038 10] Reserved: 0x00 [4] [0x026 0038 10] Reserved: 0x00 [5] [0x026 0038 10] Reserved: 0x00 [6] [0x026 0038 10] Reserved: 0x00 [7] [0x026 0038 10] Reserved: 0x00 [8] [0x026 0038 10] Reserved: 0x00 [9] Hardware Unit Definition: [0x030 0048 2] Type: 0x0000 [0x032 0050 2] Length: 0x0018 [0x034 0052 1] Flags: 0x00 [0x035 0053 1] Reserved: 0x00 [0x036 0054 2] Segment Number: 0x0000 [0x038 0056 8] Register Base Address: 0x00000000fbffc000 [0x040 0064 1] Type: 0x03 [0x041 0065 1] Length: 0x08 [0x042 0066 2] Reserved: 0x0000 [0x044 0068 1] Enumeration ID: 0x03 [0x045 0069 1] Start Bus Number: 0x80 [0x046 0070 1] Path: 0x05 [0] [0x047 0071 1] Path: 0x04 [1] Hardware Unit Definition: [0x048 0072 2] Type: 0x0000 [0x04a 0074 2] Length: 0x0028 [0x04c 0076 1] Flags: 0x01 [0x04d 0077 1] Reserved: 0x00 [0x04e 0078 2] Segment Number: 0x0000 [0x050 0080 8] Register Base Address: 0x00000000c7ffc000 [0x058 0088 1] Type: 0x03 [0x059 0089 1] Length: 0x08 [0x05a 0090 2] Reserved: 0x0000 [0x05c 0092 1] Enumeration ID: 0x00 [0x05d 0093 1] Start Bus Number: 0xf0 [0x05e 0094 1] Path: 0x1f [0] [0x05f 0095 1] Path: 0x07 [1] [0x060 0096 1] Type: 0x03 [0x061 0097 1] Length: 0x08 [0x062 0098 2] Reserved: 0x0000 [0x064 0100 1] Enumeration ID: 0x02 [0x065 0101 1] Start Bus Number: 0x00 [0x066 0102 1] Path: 0x05 [0] [0x067 0103 1] Path: 0x04 [1] [0x068 0104 1] Type: 0x04 [0x069 0105 1] Length: 0x08 [0x06a 0106 2] Reserved: 0x0000 [0x06c 0108 1] Enumeration ID: 0x00 [0x06d 0109 1] Start Bus Number: 0xf0 [0x06e 0110 1] Path: 0x0f [0] [0x06f 0111 1] Path: 0x00 [1] Reserved Memory Definition: [0x070 0112 2] Type: 0x0001 [0x072 0114 2] Length: 0x0020 [0x074 0116 2] Reserved: 0x0000 [0x076 0118 2] Segment: 0x0000 [0x078 0120 8] Base Address: 0x000000007bad2000 [0x080 0128 8] End Address: 0x000000007bae0fff [0x088 0136 1] Type: 0x01 [0x089 0137 1] Length: 0x08 [0x08a 0138 2] Reserved: 0x0000 [0x08c 0140 1] Enumeration ID: 0x00 [0x08d 0141 1] Start Bus Number: 0x00 [0x08e 0142 1] Path: 0x14 [0] [0x08f 0143 1] Path: 0x00 [1] Root Port ATS Capability Reporting Structure: [0x090 0144 2] Type: 0x0002 [0x092 0146 2] Length: 0x0030 [0x094 0148 1] Flags: 0x00 [0x095 0149 1] Reserved: 0x00 [0x096 0150 2] Segment: 0x0000 [0x098 0152 1] Type: 0x02 [0x099 0153 1] Length: 0x08 [0x09a 0154 2] Reserved: 0x0000 [0x09c 0156 1] Enumeration ID: 0x00 [0x09d 0157 1] Start Bus Number: 0x00 [0x09e 0158 1] Path: 0x01 [0] [0x09f 0159 1] Path: 0x00 [1] [0x0a0 0160 1] Type: 0x02 [0x0a1 0161 1] Length: 0x08 [0x0a2 0162 2] Reserved: 0x0000 [0x0a4 0164 1] Enumeration ID: 0x00 [0x0a5 0165 1] Start Bus Number: 0x00 [0x0a6 0166 1] Path: 0x02 [0] [0x0a7 0167 1] Path: 0x00 [1] [0x0a8 0168 1] Type: 0x02 [0x0a9 0169 1] Length: 0x08 [0x0aa 0170 2] Reserved: 0x0000 [0x0ac 0172 1] Enumeration ID: 0x00 [0x0ad 0173 1] Start Bus Number: 0x00 [0x0ae 0174 1] Path: 0x02 [0] [0x0af 0175 1] Path: 0x02 [1] [0x0b0 0176 1] Type: 0x02 [0x0b1 0177 1] Length: 0x08 [0x0b2 0178 2] Reserved: 0x0000 [0x0b4 0180 1] Enumeration ID: 0x00 [0x0b5 0181 1] Start Bus Number: 0x00 [0x0b6 0182 1] Path: 0x03 [0] [0x0b7 0183 1] Path: 0x00 [1] [0x0b8 0184 1] Type: 0x02 [0x0b9 0185 1] Length: 0x08 [0x0ba 0186 2] Reserved: 0x0000 [0x0bc 0188 1] Enumeration ID: 0x00 [0x0bd 0189 1] Start Bus Number: 0x00 [0x0be 0190 1] Path: 0x03 [0] [0x0bf 0191 1] Path: 0x02 [1] HEST @ 7985cd68 (168 bytes) ---- Hardware Error Source Table: [0x000 0000 4] Signature: HEST [0x004 0004 4] Length: 0x000000a8 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0x09 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000001 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x00000001 0000: 48 45 53 54 a8 00 00 00 01 09 41 4c 41 53 4b 41 HEST......ALASKA 0010: 41 20 4d 20 49 20 00 00 01 00 00 00 49 4e 54 4c A M I ......INTL 0020: 01 00 00 00 02 00 00 00 09 00 00 00 ff ff 00 01 ................ 0030: 01 00 00 00 01 00 00 00 00 10 00 00 00 40 00 04 .............@.. 0040: 18 90 7f 79 00 00 00 00 00 1c 3e 00 60 ea 00 00 ...y......>.`... 0050: 02 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 0060: 00 00 00 00 00 10 00 00 09 00 01 00 ff ff 00 01 ................ 0070: 01 00 00 00 01 00 00 00 00 10 00 00 00 40 00 04 .............@.. 0080: 20 a0 7f 79 00 00 00 00 04 1c 00 00 00 00 00 00 ..y............ 0090: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 00a0: 00 00 00 00 00 10 00 00 ........ BERT @ 7985ce10 (48 bytes) ---- Boot Error Record Table: [0x000 0000 4] Signature: BERT [0x004 0004 4] Length: 0x00000030 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0x05 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000001 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x00000001 [0x024 0036 4] Region Length: 0x00008000 [0x028 0040 8] Region Addr: 0x00000000797ff018 ERST @ 7985ce40 (560 bytes) ---- Error Record Serialization Table: [0x000 0000 4] Signature: ERST [0x004 0004 4] Length: 0x00000230 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0x53 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000001 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x00000001 [0x024 0036 4] Serialization Hdr. Size: 0x00000030 [0x02c 0044 4] Insrtuction Entry Count: 0x00000010 Entry #1 [0x030 0048 1] Action: 0x00 (BEGIN_WRITE_OPERATION) [0x031 0049 1] Instruction: 0x03 (WRITE_REGISTER_VALUE) [0x032 0050 1] Flags: 0x00 [0x034 0052 12] Register region: (Generic Address Structure) [0x034 0052 1] addr_space_id: 0x00 (System Memory) [0x035 0053 1] reg_bit_width: 0x08 [0x036 0054 1] reg_bit_offset: 0x00 [0x037 0055 1] access_width: 0x01 (Byte Access) [0x038 0056 8] address: 0x0000000079372018 [0x040 0064 8] Value: 0x0000000000000000 [0x048 0072 8] Mask: 0x00000000000000ff Entry #2 [0x050 0080 1] Action: 0x01 (BEGIN_READ_OPERATION) [0x051 0081 1] Instruction: 0x03 (WRITE_REGISTER_VALUE) [0x052 0082 1] Flags: 0x00 [0x054 0084 12] Register region: (Generic Address Structure) [0x054 0084 1] addr_space_id: 0x00 (System Memory) [0x055 0085 1] reg_bit_width: 0x08 [0x056 0086 1] reg_bit_offset: 0x00 [0x057 0087 1] access_width: 0x01 (Byte Access) [0x058 0088 8] address: 0x0000000079372018 [0x060 0096 8] Value: 0x0000000000000001 [0x068 0104 8] Mask: 0x00000000000000ff Entry #3 [0x070 0112 1] Action: 0x02 (BEGIN_CLEAR_OPERATION) [0x071 0113 1] Instruction: 0x03 (WRITE_REGISTER_VALUE) [0x072 0114 1] Flags: 0x00 [0x074 0116 12] Register region: (Generic Address Structure) [0x074 0116 1] addr_space_id: 0x00 (System Memory) [0x075 0117 1] reg_bit_width: 0x08 [0x076 0118 1] reg_bit_offset: 0x00 [0x077 0119 1] access_width: 0x01 (Byte Access) [0x078 0120 8] address: 0x0000000079372018 [0x080 0128 8] Value: 0x0000000000000002 [0x088 0136 8] Mask: 0x00000000000000ff Entry #4 [0x090 0144 1] Action: 0x03 (END_OPERATION) [0x091 0145 1] Instruction: 0x03 (WRITE_REGISTER_VALUE) [0x092 0146 1] Flags: 0x00 [0x094 0148 12] Register region: (Generic Address Structure) [0x094 0148 1] addr_space_id: 0x00 (System Memory) [0x095 0149 1] reg_bit_width: 0x08 [0x096 0150 1] reg_bit_offset: 0x00 [0x097 0151 1] access_width: 0x01 (Byte Access) [0x098 0152 8] address: 0x0000000079372018 [0x0a0 0160 8] Value: 0x0000000000000003 [0x0a8 0168 8] Mask: 0x00000000000000ff Entry #5 [0x0b0 0176 1] Action: 0x04 (SET_RECORD_offsetof) [0x0b1 0177 1] Instruction: 0x02 (WRITE_REGISTER) [0x0b2 0178 1] Flags: 0x00 [0x0b4 0180 12] Register region: (Generic Address Structure) [0x0b4 0180 1] addr_space_id: 0x00 (System Memory) [0x0b5 0181 1] reg_bit_width: 0x20 [0x0b6 0182 1] reg_bit_offset: 0x00 [0x0b7 0183 1] access_width: 0x03 (DWord Access) [0x0b8 0184 8] address: 0x000000007937201c [0x0c0 0192 8] Value: 0x0000000000000000 [0x0c8 0200 8] Mask: 0x00000000ffffffff Entry #6 [0x0d0 0208 1] Action: 0x05 (EXECUTE_OPERATION) [0x0d1 0209 1] Instruction: 0x03 (WRITE_REGISTER_VALUE) [0x0d2 0210 1] Flags: 0x00 [0x0d4 0212 12] Register region: (Generic Address Structure) [0x0d4 0212 1] addr_space_id: 0x01 (System I/O) [0x0d5 0213 1] reg_bit_width: 0x08 [0x0d6 0214 1] reg_bit_offset: 0x00 [0x0d7 0215 1] access_width: 0x01 (Byte Access) [0x0d8 0216 8] address: 0x00000000000000b2 [0x0e0 0224 8] Value: 0x000000000000009c [0x0e8 0232 8] Mask: 0x00000000000000ff Entry #7 [0x0f0 0240 1] Action: 0x06 (CHECK_BUSY_STATUS) [0x0f1 0241 1] Instruction: 0x01 (READ_REGISTER_VALUE) [0x0f2 0242 1] Flags: 0x00 [0x0f4 0244 12] Register region: (Generic Address Structure) [0x0f4 0244 1] addr_space_id: 0x00 (System Memory) [0x0f5 0245 1] reg_bit_width: 0x08 [0x0f6 0246 1] reg_bit_offset: 0x00 [0x0f7 0247 1] access_width: 0x01 (Byte Access) [0x0f8 0248 8] address: 0x0000000079372020 [0x100 0256 8] Value: 0x0000000000000001 [0x108 0264 8] Mask: 0x00000000000000ff Entry #8 [0x110 0272 1] Action: 0x07 (GET_COMMAND_STATUS) [0x111 0273 1] Instruction: 0x00 (READ_REGISTER) [0x112 0274 1] Flags: 0x00 [0x114 0276 12] Register region: (Generic Address Structure) [0x114 0276 1] addr_space_id: 0x00 (System Memory) [0x115 0277 1] reg_bit_width: 0x08 [0x116 0278 1] reg_bit_offset: 0x00 [0x117 0279 1] access_width: 0x01 (Byte Access) [0x118 0280 8] address: 0x0000000079372021 [0x120 0288 8] Value: 0x0000000000000000 [0x128 0296 8] Mask: 0x00000000000000ff Entry #9 [0x130 0304 1] Action: 0x08 (GET_RECORD_IDENTIFIER) [0x131 0305 1] Instruction: 0x00 (READ_REGISTER) [0x132 0306 1] Flags: 0x00 [0x134 0308 12] Register region: (Generic Address Structure) [0x134 0308 1] addr_space_id: 0x00 (System Memory) [0x135 0309 1] reg_bit_width: 0x40 [0x136 0310 1] reg_bit_offset: 0x00 [0x137 0311 1] access_width: 0x04 (QWord Access) [0x138 0312 8] address: 0x0000000079372028 [0x140 0320 8] Value: 0x0000000000000000 [0x148 0328 8] Mask: 0xffffffffffffffff Entry #10 [0x150 0336 1] Action: 0x09 (SET_RECORD_IDENTIFIER) [0x151 0337 1] Instruction: 0x02 (WRITE_REGISTER) [0x152 0338 1] Flags: 0x00 [0x154 0340 12] Register region: (Generic Address Structure) [0x154 0340 1] addr_space_id: 0x00 (System Memory) [0x155 0341 1] reg_bit_width: 0x40 [0x156 0342 1] reg_bit_offset: 0x00 [0x157 0343 1] access_width: 0x04 (QWord Access) [0x158 0344 8] address: 0x0000000079372030 [0x160 0352 8] Value: 0x0000000000000000 [0x168 0360 8] Mask: 0xffffffffffffffff Entry #11 [0x170 0368 1] Action: 0x0a (GET_RECOERD_COUNT) [0x171 0369 1] Instruction: 0x00 (READ_REGISTER) [0x172 0370 1] Flags: 0x00 [0x174 0372 12] Register region: (Generic Address Structure) [0x174 0372 1] addr_space_id: 0x00 (System Memory) [0x175 0373 1] reg_bit_width: 0x10 [0x176 0374 1] reg_bit_offset: 0x00 [0x177 0375 1] access_width: 0x02 (Word Access) [0x178 0376 8] address: 0x0000000079372038 [0x180 0384 8] Value: 0x0000000000000000 [0x188 0392 8] Mask: 0x000000000000ffff Entry #12 [0x190 0400 1] Action: 0x0b (BEGIN_DUMMY_WRITE_OPERATION) [0x191 0401 1] Instruction: 0x03 (WRITE_REGISTER_VALUE) [0x192 0402 1] Flags: 0x00 [0x194 0404 12] Register region: (Generic Address Structure) [0x194 0404 1] addr_space_id: 0x00 (System Memory) [0x195 0405 1] reg_bit_width: 0x08 [0x196 0406 1] reg_bit_offset: 0x00 [0x197 0407 1] access_width: 0x01 (Byte Access) [0x198 0408 8] address: 0x0000000079372018 [0x1a0 0416 8] Value: 0x000000000000000b [0x1a8 0424 8] Mask: 0x00000000000000ff Entry #13 [0x1b0 0432 1] Action: 0x0c (RESERVED) [0x1b1 0433 1] Instruction: 0x04 (NOOP) [0x1b2 0434 1] Flags: 0x00 [0x1b4 0436 12] Register region: (Generic Address Structure) [0x1b4 0436 1] addr_space_id: 0x00 (System Memory) [0x1b5 0437 1] reg_bit_width: 0x08 [0x1b6 0438 1] reg_bit_offset: 0x00 [0x1b7 0439 1] access_width: 0x01 (Byte Access) [0x1b8 0440 8] address: 0x0000000000000000 [0x1c0 0448 8] Value: 0x0000000000000000 [0x1c8 0456 8] Mask: 0x00000000000000ff Entry #14 [0x1d0 0464 1] Action: 0x0d (GET_ERROR_LOG_ADDRESS_RANGE) [0x1d1 0465 1] Instruction: 0x00 (READ_REGISTER) [0x1d2 0466 1] Flags: 0x00 [0x1d4 0468 12] Register region: (Generic Address Structure) [0x1d4 0468 1] addr_space_id: 0x00 (System Memory) [0x1d5 0469 1] reg_bit_width: 0x40 [0x1d6 0470 1] reg_bit_offset: 0x00 [0x1d7 0471 1] access_width: 0x04 (QWord Access) [0x1d8 0472 8] address: 0x0000000079372040 [0x1e0 0480 8] Value: 0x0000000000000000 [0x1e8 0488 8] Mask: 0xffffffffffffffff Entry #15 [0x1f0 0496 1] Action: 0x0e (GET_ERROR_LOG_ADDRESS_RANGE_LENGTH) [0x1f1 0497 1] Instruction: 0x00 (READ_REGISTER) [0x1f2 0498 1] Flags: 0x00 [0x1f4 0500 12] Register region: (Generic Address Structure) [0x1f4 0500 1] addr_space_id: 0x00 (System Memory) [0x1f5 0501 1] reg_bit_width: 0x20 [0x1f6 0502 1] reg_bit_offset: 0x00 [0x1f7 0503 1] access_width: 0x03 (DWord Access) [0x1f8 0504 8] address: 0x0000000079372048 [0x200 0512 8] Value: 0x0000000000000000 [0x208 0520 8] Mask: 0x00000000ffffffff Entry #16 [0x210 0528 1] Action: 0x0f (GET_ERROR_LOG_ADDRESS_RANGE_ATTRIBUTES) [0x211 0529 1] Instruction: 0x00 (READ_REGISTER) [0x212 0530 1] Flags: 0x00 [0x214 0532 12] Register region: (Generic Address Structure) [0x214 0532 1] addr_space_id: 0x00 (System Memory) [0x215 0533 1] reg_bit_width: 0x08 [0x216 0534 1] reg_bit_offset: 0x00 [0x217 0535 1] access_width: 0x01 (Byte Access) [0x218 0536 8] address: 0x000000007937204c [0x220 0544 8] Value: 0x0000000000000000 [0x228 0552 8] Mask: 0x00000000000000ff EINJ @ 7985d070 (304 bytes) ---- Error Injection Table: [0x000 0000 4] Signature: EINJ [0x004 0004 4] Length: 0x00000130 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0xba [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x00000001 [0x01c 0028 4] Creator ID: INTL [0x020 0032 4] Creator Revision: 0x00000001 0000: 45 49 4e 4a 30 01 00 00 01 ba 41 4c 41 53 4b 41 EINJ0.....ALASKA 0010: 41 20 4d 20 49 20 00 00 01 00 00 00 49 4e 54 4c A M I ......INTL 0020: 01 00 00 00 0c 00 00 00 00 00 00 00 08 00 00 00 ................ 0030: 00 03 01 00 00 40 00 04 18 00 37 79 00 00 00 00 .....@....7y.... 0040: aa 55 aa 55 00 00 00 00 ff ff ff ff 00 00 00 00 .U.U............ 0050: 01 00 00 00 00 40 00 04 48 00 37 79 00 00 00 00 .....@..H.7y.... 0060: 00 00 00 00 00 00 00 00 ff ff ff ff ff ff ff ff ................ 0070: 02 02 01 00 00 40 00 04 20 00 37 79 00 00 00 00 .....@.. .7y.... 0080: 00 00 00 00 00 00 00 00 ff ff ff ff 00 00 00 00 ................ 0090: 03 00 00 00 00 40 00 04 50 00 37 79 00 00 00 00 .....@..P.7y.... 00a0: 00 00 00 00 00 00 00 00 ff ff ff ff 00 00 00 00 ................ 00b0: 04 03 01 00 00 40 00 04 18 00 37 79 00 00 00 00 .....@....7y.... 00c0: 00 00 00 00 00 00 00 00 ff ff ff ff 00 00 00 00 ................ 00d0: 05 03 01 00 01 10 00 02 b2 00 00 00 00 00 00 00 ................ 00e0: 9a 00 00 00 00 00 00 00 ff ff 00 00 00 00 00 00 ................ 00f0: 06 01 00 00 00 40 00 04 58 00 37 79 00 00 00 00 .....@..X.7y.... 0100: 01 00 00 00 00 00 00 00 01 00 00 00 00 00 00 00 ................ 0110: 07 00 01 00 00 40 00 04 60 00 37 79 00 00 00 00 .....@..`.7y.... 0120: 00 00 00 00 00 00 00 00 fe 01 00 00 00 00 00 00 ................ RSDT @ 7981d028 (132 bytes) ---- Root System Description Table: [0x000 0000 4] Signature: RSDT [0x004 0004 4] Length: 0x00000084 [0x008 0008 1] Revision: 0x01 [0x009 0009 1] Checksum: 0xe7 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x01072009 [0x01c 0028 4] Creator ID: MSFT [0x020 0032 4] Creator Revision: 0x00010013 [0x024 0036 4] Entry 00 FACP: 0x7981d1a0 [0x028 0040 4] Entry 01 APIC: 0x7984a6d0 [0x02c 0044 4] Entry 02 FPDT: 0x7984aab8 [0x030 0048 4] Entry 03 FIDT: 0x7984ab00 [0x034 0052 4] Entry 04 SPMI: 0x7984aba0 [0x038 0056 4] Entry 05 MCFG: 0x7984abe0 [0x03c 0060 4] Entry 06 UEFI: 0x7984ac20 [0x040 0064 4] Entry 07 BDAT: 0x7984ac68 [0x044 0068 4] Entry 08 HPET: 0x7984ac98 [0x048 0072 4] Entry 09 MSCT: 0x7984acd0 [0x04c 0076 4] Entry 10 PMCT: 0x7984ad60 [0x050 0080 4] Entry 11 SLIT: 0x7984adc8 [0x054 0084 4] Entry 12 SRAT: 0x7984adf8 [0x058 0088 4] Entry 13 WDDT: 0x7984bc50 [0x05c 0092 4] Entry 14 SSDT: 0x7984bc90 [0x060 0096 4] Entry 15 UEFI: 0x7985a968 [0x064 0100 4] Entry 16 SSDT: 0x7985a9c8 [0x068 0104 4] Entry 17 SSDT: 0x7985cb10 [0x06c 0108 4] Entry 18 PRAD: 0x7985cb78 [0x070 0112 4] Entry 19 DMAR: 0x7985cc80 [0x074 0116 4] Entry 20 HEST: 0x7985cd68 [0x078 0120 4] Entry 21 BERT: 0x7985ce10 [0x07c 0124 4] Entry 22 ERST: 0x7985ce40 [0x080 0128 4] Entry 23 EINJ: 0x7985d070 FACS @ 79e1bf40 (64 bytes) ---- Firmware ACPI Control Structure: [0x000 0000 4] Signature: FACS [0x004 0004 4] Length: 0x00000040 [0x008 0008 4] H/W Signature: 0x00000058 [0x00c 0012 4] Waking Vector: 0x00000000 [0x010 0016 4] Global Lock: 0x00000000 [0x014 0020 4] Flags: 0x00000000 [0x018 0024 8] X Waking Vector: 0x0000000000000000 [0x020 0032 1] Version: 0x00 [0x024 0036 4] OSPM Flags: 0x00000000 FACP @ 7981d1a0 (132 bytes) ---- Fixed ACPI Description Table: [0x000 0000 4] Signature: FACP [0x004 0004 4] Length: 0x00000084 [0x008 0008 1] Revision: 0x02 [0x009 0009 1] Checksum: 0x51 [0x00a 0010 6] OEM ID: ALASKA [0x010 0016 8] OEM Table ID: A M I [0x018 0024 4] OEM Revision: 0x01072009 [0x01c 0028 4] Creator ID: AMI [0x020 0032 4] Creator Revision: 0x00010013 [0x024 0036 4] FACS Address: 0x79e1bf40 [0x028 0040 4] DSDT Address: 0x7981d228 [0x02c 0044 1] Model: 0x01 [0x02d 0045 1] PM Profile: 0x04 (Enterprise Server) [0x02e 0046 2] SCI Interrupt: 0x0009 [0x030 0048 4] SMI Command Port: 0x000000b2 [0x034 0052 1] ACPI Enable Value: 0xa0 [0x035 0053 1] ACPI Disable Value: 0xa1 [0x036 0054 1] S4BIOS Command: 0x00 [0x037 0055 1] P-State Control: 0x00 [0x038 0056 4] PM1A Event Block: 0x00000400 [0x03c 0060 4] PM1B Event Block: 0x00000000 [0x040 0064 4] PM1A Control Block: 0x00000404 [0x044 0068 4] PM1B Control Block: 0x00000000 [0x048 0072 4] PM2 Control Block: 0x00000450 [0x04c 0076 4] PM Timer Block: 0x00000408 [0x050 0080 4] GPE0 Block: 0x00000420 [0x054 0084 4] GPE1 Block: 0x00000000 [0x058 0088 1] PM1 Event Block Length: 0x04 [0x059 0089 1] PM1 Control Block Length: 0x02 [0x05a 0090 1] PM2 Control Block Length: 0x01 [0x05b 0091 1] PM Timer Block Length: 0x04 [0x05c 0092 1] GPE0 Block Length: 0x10 [0x05d 0093 1] GPE1 Block Length: 0x00 [0x05f 0095 1] _CST Support: 0x00 [0x060 0096 2] C2 Latency: 0x0065 [0x062 0098 2] C3 Latency: 0x03e9 [0x064 0100 2] CPU Cache Size: 0x0400 [0x066 0102 2] CPU Cache Flush Stride: 0x0010 [0x068 0104 1] Duty Cycle Offset: 0x01 [0x069 0105 1] Duty Cycle Width: 0x03 [0x06a 0106 1] RTC Day Alarm Index: 0x0d [0x06b 0107 1] RTC Month Alarm Index: 0x00 [0x06c 0108 1] RTC Century Index: 0x32 [0x06d 0109 2] IA-PC Boot Flags (see below): 0x0011 Legacy Devices Supported (V2): 0x1 8042 present on ports 60/64 (V2): 0x0 VGA Not Present (V4): 0x0 MSI Not Supported (V4): 0x0 PCIe ASPM Not supported (V4): 0x1 CMOS RTC Not Present (V5): 0x0 [0x070 0112 4] Flags (see below): 0x000084a5 WBINVD instruction (V1): 0x1 WBINVD flushes all caches (V1): 0x0 All CPUs support C1 (V1): 0x1 C2 works on MP system (V1): 0x0 Control Method Power Button (V1): 0x0 Control Method Sleep Button (V1): 0x1 RTC wake not in fixed reg space (V1): 0x0 RTC can wake system from S4 (V1): 0x1 32 bit PM timer (V1): 0x0 Docking Capability (V1): 0x0 Reset Register Supported (V2): 0x1 Sealed Case (V3): 0x0 Headless, No Video (V3): 0x0 Use native instr. after SLP_TYPx (V3): 0x0 PCI_EXP_WAK bits supported (V4): 0x0 Use platform clock (V4): 0x1 RTC_STS Valid after S4 wake (V4): 0x0 Remote power on capable (V4): 0x0 Use APIC Cluster Model (V4): 0x0 Use APIC Physical Dest. Mode (V4): 0x0 ACPI hardware is not implemented (V5): 0x0 S0 power savings are equal or better than S3 (V5): 0x0 Reserved (bits 22..31): 0x000 [0x081 0129 2] ARM Boot Flags (V5.1): 0x0000 PSCI Compliant (V5.1): 0x0 PSCI Use HSC instead of SMC (V5.1): 0x0 [0x083 0131 1] FADT Minor Version: 0x00 [0x074 0116 12] RESET_REG: (Generic Address Structure) [0x074 0116 1] addr_space_id: 0x01 (System I/O) [0x075 0117 1] reg_bit_width: 0x08 [0x076 0118 1] reg_bit_offset: 0x00 [0x077 0119 1] access_width: 0x00 (Undefined (legacy reasons)) [0x078 0120 8] address: 0x0000000000000cf9 [0x080 0128 1] RESET_VALUE: 0x06 Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log acpiinfo". Running tests: acpiinfo. acpiinfo: General ACPI information test. -------------------------------------------------------------------------------- Test 1 of 3: Determine Kernel ACPI version. Kernel ACPICA driver version: 20131115, supports ACPI 5.0 Test 2 of 3: Determine machine's ACPI version. FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. FACP ACPI Version: 5.0 Test 3 of 3: Determine AML compiler. Determine the compiler used to generate the ACPI AML in the DSDT and SSDT. Table DSDT, OEM ALASKA, created with INTL (Intel) compiler. Table SSDT0, OEM ALASKA, created with INTL (Intel) compiler. Table SSDT1, OEM ALASKA, created with INTL (Intel) compiler. Table SSDT2, OEM ALASKA, created with INTL (Intel) compiler. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 3 info only. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 3 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ acpiinfo | | | | | | 3| ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 0| 0| 0| 0| 3| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log acpitables". Running tests: acpitables. acpitables: ACPI table settings sanity tests. -------------------------------------------------------------------------------- Test 1 of 2: Test ACPI tables. FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. PASSED: Test 1, Table APIC passed. Table ECDT not present to check. PASSED: Test 1, Table FACP passed. PASSED: Test 1, Table HPET passed. PASSED: Test 1, Table MCFG passed. PASSED: Test 1, Table RSDT passed. PASSED: Test 1, Table RSDP passed. Table SBST not present to check. PASSED: Test 1, Table XSDT passed. Test 2 of 2: Test ACPI headers. PASSED: Test 2, Table XSDT has valid signature and ID strings. PASSED: Test 2, Table DSDT has valid signature and ID strings. PASSED: Test 2, Table FACP has valid signature and ID strings. PASSED: Test 2, Table APIC has valid signature and ID strings. PASSED: Test 2, Table FPDT has valid signature and ID strings. PASSED: Test 2, Table FIDT has valid signature and ID strings. PASSED: Test 2, Table SPMI has valid signature and ID strings. PASSED: Test 2, Table MCFG has valid signature and ID strings. PASSED: Test 2, Table UEFI has valid signature and ID strings. PASSED: Test 2, Table BDAT has valid signature and ID strings. PASSED: Test 2, Table HPET has valid signature and ID strings. PASSED: Test 2, Table MSCT has valid signature and ID strings. PASSED: Test 2, Table PMCT has valid signature and ID strings. PASSED: Test 2, Table SLIT has valid signature and ID strings. PASSED: Test 2, Table SRAT has valid signature and ID strings. PASSED: Test 2, Table WDDT has valid signature and ID strings. PASSED: Test 2, Table SSDT has valid signature and ID strings. PASSED: Test 2, Table UEFI has valid signature and ID strings. PASSED: Test 2, Table SSDT has valid signature and ID strings. PASSED: Test 2, Table SSDT has valid signature and ID strings. PASSED: Test 2, Table PRAD has valid signature and ID strings. PASSED: Test 2, Table DMAR has valid signature and ID strings. PASSED: Test 2, Table HEST has valid signature and ID strings. PASSED: Test 2, Table BERT has valid signature and ID strings. PASSED: Test 2, Table ERST has valid signature and ID strings. PASSED: Test 2, Table EINJ has valid signature and ID strings. PASSED: Test 2, Table RSDT has valid signature and ID strings. PASSED: Test 2, Table FACP has valid signature and ID strings. ================================================================================ 35 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 35 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ acpitables | 35| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 35| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log apicedge". Running tests: apicedge. apicedge: APIC edge/level test. -------------------------------------------------------------------------------- Test 1 of 1: Legacy and PCI Interrupt Edge/Level trigger tests. PASSED: Test 1, Legacy interrupts are edge and PCI interrupts are level triggered. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ apicedge | 1| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 1| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log apicinstance". Running tests: apicinstance. apicinstance: Test for single instance of APIC/MADT table. -------------------------------------------------------------------------------- Test 1 of 1: Test for single instance of APIC/MADT table. FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Found APIC/MADT table APIC @ 7984a6d0, length 0x996 PASSED: Test 1, Found 1 APIC/MADT table(s), as expected. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ apicinstance | 1| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 1| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log aspm". Running tests: aspm. aspm: PCIe ASPM test. -------------------------------------------------------------------------------- Test 1 of 2: PCIe ASPM ACPI test. FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. PCIe ASPM is controlled by Linux kernel. Test 2 of 2: PCIe ASPM registers test. WARNING: Test 2, Device 07h:00h.00h L0s not enabled. WARNING: Test 2, Device 07h:00h.00h L1 not enabled. ADVICE: The ASPM L0s low power Link state is optimized for short entry and exit latencies, while providing substantial power savings. Disabling L0s of a PCIe device may increases power consumption, and will impact the battery life of a mobile system. ADVICE: The ASPM L1 low power Link state is optimized for maximum power savings with longer entry and exit latencies. Disabling L1 of a PCIe device may increases power consumption, and will impact the battery life of a mobile system significantly. PASSED: Test 2, PCIe ASPM setting matched was matched. WARNING: Test 2, Device 08h:00h.00h L0s not enabled. WARNING: Test 2, Device 08h:00h.00h L1 not enabled. ADVICE: The ASPM L0s low power Link state is optimized for short entry and exit latencies, while providing substantial power savings. Disabling L0s of a PCIe device may increases power consumption, and will impact the battery life of a mobile system. ADVICE: The ASPM L1 low power Link state is optimized for maximum power savings with longer entry and exit latencies. Disabling L1 of a PCIe device may increases power consumption, and will impact the battery life of a mobile system significantly. PASSED: Test 2, PCIe ASPM setting matched was matched. WARNING: Test 2, RP 08h:00h.00h L0s not enabled. WARNING: Test 2, RP 08h:00h.00h L1 not enabled. ADVICE: The ASPM L0s low power Link state is optimized for short entry and exit latencies, while providing substantial power savings. Disabling L0s of a PCIe device may increases power consumption, and will impact the battery life of a mobile system. ADVICE: The ASPM L1 low power Link state is optimized for maximum power savings with longer entry and exit latencies. Disabling L1 of a PCIe device may increases power consumption, and will impact the battery life of a mobile system significantly. PASSED: Test 2, PCIe ASPM setting matched was matched. ================================================================================ 3 passed, 0 failed, 6 warnings, 0 aborted, 0 skipped, 0 info only. ================================================================================ 3 passed, 0 failed, 6 warnings, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ aspm | 3| | | 6| | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 3| 0| 0| 6| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log bios32". Running tests: bios32. bios32: BIOS32 Service Directory test. -------------------------------------------------------------------------------- Machine is not using traditional BIOS firmware, skipping test. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 1 skipped, 0 info only. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 1 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ bios32 | | | | | 1| | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 0| 0| 0| 1| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log bios_info". Running tests: bios_info. bios_info: Gather BIOS DMI information. -------------------------------------------------------------------------------- Test 1 of 1: Gather BIOS DMI information BIOS Vendor : American Megatrends Inc. BIOS Version : F06A3A01.F06A1A02 BIOS Release Date : 08/28/2014 Board Name : F06A Board Serial # : QTFAMW42200029 Board Version : 31F06MB00E0 Board Asset Tag : Chassis Serial # : QTFCMW4260002 Chassis Type : 23 Chassis Vendor : Quanta Chassis Version : To be filled by O.E.M. Chassic Asset Tag : Product Name : F06A Product Serial # : QTFCMW4260002 Product UUID : 6084DF41-42A0-E311-9E38-C4544488954A Product Version : To be filled by O.E.M. System Vendor : Quanta ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 1 info only. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 1 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ bios_info | | | | | | 1| ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 0| 0| 0| 0| 1| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log checksum". Running tests: checksum. checksum: ACPI table checksum test. -------------------------------------------------------------------------------- Test 1 of 1: ACPI table checksum test. FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. PASSED: Test 1, Table RSDP has correct checksum 0x40. PASSED: Test 1, Table RSDP has correct extended checksum 0x62. PASSED: Test 1, Table XSDT has correct checksum 0xcd PASSED: Test 1, Table DSDT has correct checksum 0x58 PASSED: Test 1, Table FACP has correct checksum 0x23 PASSED: Test 1, Table APIC has correct checksum 0x1f PASSED: Test 1, Table FPDT has correct checksum 0xfe PASSED: Test 1, Table FIDT has correct checksum 0x34 PASSED: Test 1, Table SPMI has correct checksum 0xe5 PASSED: Test 1, Table MCFG has correct checksum 0x61 PASSED: Test 1, Table UEFI has correct checksum 0xf7 PASSED: Test 1, Table BDAT has correct checksum 0x4d PASSED: Test 1, Table HPET has correct checksum 0x4d PASSED: Test 1, Table MSCT has correct checksum 0xfe PASSED: Test 1, Table PMCT has correct checksum 0x23 PASSED: Test 1, Table SLIT has correct checksum 0xeb PASSED: Test 1, Table SRAT has correct checksum 0xf3 PASSED: Test 1, Table WDDT has correct checksum 0x85 PASSED: Test 1, Table SSDT has correct checksum 0x73 PASSED: Test 1, Table UEFI has correct checksum 0xba PASSED: Test 1, Table SSDT has correct checksum 0xb2 PASSED: Test 1, Table SSDT has correct checksum 0x00 PASSED: Test 1, Table PRAD has correct checksum 0x95 PASSED: Test 1, Table DMAR has correct checksum 0x62 PASSED: Test 1, Table HEST has correct checksum 0x09 PASSED: Test 1, Table BERT has correct checksum 0x05 PASSED: Test 1, Table ERST has correct checksum 0x53 PASSED: Test 1, Table EINJ has correct checksum 0xba PASSED: Test 1, Table RSDT has correct checksum 0xe7 PASSED: Test 1, Table FACP has correct checksum 0x51 ================================================================================ 30 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 30 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ checksum | 30| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 30| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log cmosdump". Running tests: cmosdump. cmosdump: Dump CMOS Memory. -------------------------------------------------------------------------------- Test 1 of 1: Dump CMOS Memory. CMOS Memory Dump: 0000: 34 34 49 16 10 10 05 02 10 14 26 02 50 80 00 00 44I.......&.P... 0010: 00 ff ff ff fb 7f 02 ff ff ff ff ff ff ff ff ff ................ 0020: ff ff ff ff ff ff ff ff ff ff cf ff ff ff 1b 32 ...............2 0030: ff ff 20 ff ff 91 07 ff 00 00 00 00 00 00 00 00 .. ............. 0040: 00 00 66 37 23 d0 c3 ff ff ff ff ff ff ff ff ff ..f7#........... 0050: ff ff ff ff ff ff ff ff ff ff ff ff ff ff df ff ................ 0060: ff ff ff ff ff ff ff ff ff ff fe ff ff ff ff ff ................ 0070: ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff ff ................ RTC Current Time: (CMOS 0x00..0x09) RTC seconds: 34 RTC minutes: 49 RTC hours: 10 RTC day of week: 05 RTC date day: 02 RTC date month: 10 RTC date year: 14 RTC Alarm: RTC seconds: 34 RTC minutes: 16 RTC hours: 10 Status Register A: (CMOS 0x0a): 0x26 Rate freq: 6 (976.562 microseconds (default)) Timer freq divider: 2 (32.768 KHz (default)) Update in progress: 0 Status Register B: (CMOS 0x0b): 0x02 Daylight savings: 0 (Disabled) 24 Hour Clock: 1 (24 Hour) Data Mode (DM): 0 (BCD) Square Wave: 0 (Disabled) Update ended IRQ: 0 (Disabled) Alarm IRQ: 0 (Disabled) Periodic IRQ: 0 (Disabled) Clock update cycle: 0 (Update normally) Status Register C: (CMOS 0x0c): 0x50 UF flag: 0x1 AF flag: 0x0 PF flag: 0x1 IRQF flag: 0x0 Status Register D: (CMOS 0x0d): 0x80 Valid CMOS RAM flag: 0x1 (Battery Good) Diagnostic Status: (CMOS 0x0e): 0x00 CMOS time status: 0x0 (Valid) Fixed disk init: 0x0 (Good) Memory size check: 0x0 (Good) Config info status: 0x0 (Valid) CMOS checksum status: 0x0 (Good) CMOS power loss: 0x0 (Not lost power) CMOS Shutdown Status: (CMOS 0x0f): 0x00 (Power on or soft reset) Floppy Disk Type: (CMOS 0x10): 0x00 Drive 0: None Drive 1: None Hard Disk Type: (CMOS 0x12, Obsolete): 0xff Drive 0: Type 16-47 Drive 1: Type 16-47 Installed H/W: (CMOS 0x14): 0xfb Maths Coprocessor: 0x1 (Installed) Keyboard: 0x0 (Not Installed) Display Adaptor: 0x1 (Installed) Primary Display: 0x3 (Monochrome) Floppy Drives: 0x03 (4 drives) Base Mem: (CMOS 0x16): 0x027f (639K) Extended Mem: (CMOS 0x18): 0xffff (65535K) [untrustworthy] Hard Disk Extended Types (CMOS 0x19, 0x1a): Hard Disk 0: 0xff Hard Disk 1: 0xff CMOS Checksum:(CMOS 0x2e):0x321b Extended Mem: (CMOS 0x30):0xffff Century Date: (CMOS 0x32):20 POST Information Flag (CMOS 0x33): POST cache test: 0x1 Failed BIOS size: 0x1 128KB Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log crs". Running tests: crs. crs: Test PCI host bridge configuration using _CRS. -------------------------------------------------------------------------------- Test 1 of 1: Test PCI host bridge configuration using _CRS. PASSED: Test 1, The kernel has detected a BIOS newer than the end of 2007 (8/28 /2014) and has assumed that your BIOS can correctly specify the host bridge MMIO aperture using _CRS. If this does not work correctly you can override this by booting with "pci=nocrs". ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ crs | 1| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 1| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log crsdump". Running tests: crsdump. crsdump: Dump ACPI _CRS resources. -------------------------------------------------------------------------------- FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Test 1 of 1: Dump ACPI _CRS (Current Resource Settings). \_SB_.UNC3._CRS (Word Address Space Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x08 0x0001: Length : 0x000d 0x0003: Resource Type : 0x02 (Bus number range) 0x0004: Reserved : 0x00 0x0004: Max Address Fixed : 0x01 (Fixed) 0x0004: Min Address Fixed : 0x01 (Fixed) 0x0004: Decode Type : 0x00 (Bridge Positively decodes this address) 0x0004: Ignored : 0x00 0x0005: Type Specific Flags : 0x00 0x0006: Address Space Granularity : 0x0000 0x0008: Address Range Minimum : 0x00ff 0x000a: Address Range Maximum : 0x00ff 0x000c: Address Translation Offset : 0x0000 0x000e: Address Length : 0x0001 0x0010: Resource Source Index : 0xffffffffffffffff \_SB_.UNC2._CRS (Word Address Space Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x08 0x0001: Length : 0x000d 0x0003: Resource Type : 0x02 (Bus number range) 0x0004: Reserved : 0x00 0x0004: Max Address Fixed : 0x01 (Fixed) 0x0004: Min Address Fixed : 0x01 (Fixed) 0x0004: Decode Type : 0x00 (Bridge Positively decodes this address) 0x0004: Ignored : 0x00 0x0005: Type Specific Flags : 0x00 0x0006: Address Space Granularity : 0x0000 0x0008: Address Range Minimum : 0x00ff 0x000a: Address Range Maximum : 0x00ff 0x000c: Address Translation Offset : 0x0000 0x000e: Address Length : 0x0001 0x0010: Resource Source Index : 0xffffffffffffffff \_SB_.UNC1._CRS (Word Address Space Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x08 0x0001: Length : 0x000d 0x0003: Resource Type : 0x02 (Bus number range) 0x0004: Reserved : 0x00 0x0004: Max Address Fixed : 0x01 (Fixed) 0x0004: Min Address Fixed : 0x01 (Fixed) 0x0004: Decode Type : 0x00 (Bridge Positively decodes this address) 0x0004: Ignored : 0x00 0x0005: Type Specific Flags : 0x00 0x0006: Address Space Granularity : 0x0000 0x0008: Address Range Minimum : 0x00ff 0x000a: Address Range Maximum : 0x00ff 0x000c: Address Translation Offset : 0x0000 0x000e: Address Length : 0x0001 0x0010: Resource Source Index : 0xffffffffffffffff \_SB_.UNC0._CRS (Word Address Space Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x08 0x0001: Length : 0x000d 0x0003: Resource Type : 0x02 (Bus number range) 0x0004: Reserved : 0x00 0x0004: Max Address Fixed : 0x01 (Fixed) 0x0004: Min Address Fixed : 0x01 (Fixed) 0x0004: Decode Type : 0x00 (Bridge Positively decodes this address) 0x0004: Ignored : 0x00 0x0005: Type Specific Flags : 0x00 0x0006: Address Space Granularity : 0x0000 0x0008: Address Range Minimum : 0x007f 0x000a: Address Range Maximum : 0x007f 0x000c: Address Translation Offset : 0x0000 0x000e: Address Length : 0x0001 0x0010: Resource Source Index : 0xffffffffffffffff \_SB_.PCI0.APIC._CRS (32-Bit Fixed Memory Range Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x06 0x0001: Length : 0x0009 0x0003: Write Status : 0x00 (non-writeable, read-only) 0x0004: Range Base Address : 0xfec00000 0x0008: Range Length : 0x00100000 \_SB_.PCI0._CRS (Word Address Space Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x08 0x0001: Length : 0x000d 0x0003: Resource Type : 0x02 (Bus number range) 0x0004: Reserved : 0x00 0x0004: Max Address Fixed : 0x01 (Fixed) 0x0004: Min Address Fixed : 0x01 (Fixed) 0x0004: Decode Type : 0x00 (Bridge Positively decodes this address) 0x0004: Ignored : 0x00 0x0005: Type Specific Flags : 0x00 0x0006: Address Space Granularity : 0x0000 0x0008: Address Range Minimum : 0x0000 0x000a: Address Range Maximum : 0x007e 0x000c: Address Translation Offset : 0x0000 0x000e: Address Length : 0x007f 0x0010: Resource Source Index : 0xffffffffffffffff \_SB_.PCI0.LPC0.DMAC._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x0000 0x0004: Maximum Base Address : 0x0000 0x0006: Base Alignment : 0x00 0x0007: Range Length : 0x10 \_SB_.PCI0.LPC0.RTC_._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x0070 0x0004: Maximum Base Address : 0x0070 0x0006: Base Alignment : 0x01 0x0007: Range Length : 0x02 \_SB_.PCI0.LPC0.PIC_._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x0020 0x0004: Maximum Base Address : 0x0020 0x0006: Base Alignment : 0x01 0x0007: Range Length : 0x1e \_SB_.PCI0.LPC0.FPU_._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x00f0 0x0004: Maximum Base Address : 0x00f0 0x0006: Base Alignment : 0x01 0x0007: Range Length : 0x01 \_SB_.PCI0.LPC0.TMR_._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x0040 0x0004: Maximum Base Address : 0x0040 0x0006: Base Alignment : 0x01 0x0007: Range Length : 0x04 \_SB_.PCI0.LPC0.SPKR._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x0061 0x0004: Maximum Base Address : 0x0061 0x0006: Base Alignment : 0x01 0x0007: Range Length : 0x01 \_SB_.PCI0.LPC0.HPET._CRS (32-Bit Fixed Memory Range Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x06 0x0001: Length : 0x0009 0x0003: Write Status : 0x01 (writeable, read/write) 0x0004: Range Base Address : 0xfed00000 0x0008: Range Length : 0x00000400 \_SB_.PCI0.LPC0.XTRA._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x0500 0x0004: Maximum Base Address : 0x0500 0x0006: Base Alignment : 0x01 0x0007: Range Length : 0x80 \_SB_.PCI0.LPC0.SIO1._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x0000 0x0004: Maximum Base Address : 0x0000 0x0006: Base Alignment : 0x00 0x0007: Range Length : 0x00 \_SB_.PCI0.LPC0.UAR1._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x0000 0x0004: Maximum Base Address : 0x0000 0x0006: Base Alignment : 0x01 0x0007: Range Length : 0x08 \_SB_.PCI0.LPC0.UAR2._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x0000 0x0004: Maximum Base Address : 0x0000 0x0006: Base Alignment : 0x01 0x0007: Range Length : 0x08 \_SB_.PCI0.LPC0.SPMI._CRS (I/O Port Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x08 0x0000: Tag Length : 0x07 0x0001: Reserved : 0x00 0x0001: Logical Device Decode : 0x01 (10 bit addresses) 0x0002: Minimum Base Address : 0x0ca2 0x0004: Maximum Base Address : 0x0ca2 0x0006: Base Alignment : 0x00 0x0007: Range Length : 0x01 \_SB_.PCI0.TPM_._CRS (32-Bit Fixed Memory Range Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x06 0x0001: Length : 0x0009 0x0003: Write Status : 0x00 (non-writeable, read-only) 0x0004: Range Base Address : 0xfed40000 0x0008: Range Length : 0x00005000 \_SB_.PCI1._CRS (Word Address Space Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x08 0x0001: Length : 0x000d 0x0003: Resource Type : 0x02 (Bus number range) 0x0004: Reserved : 0x00 0x0004: Max Address Fixed : 0x01 (Fixed) 0x0004: Min Address Fixed : 0x01 (Fixed) 0x0004: Decode Type : 0x00 (Bridge Positively decodes this address) 0x0004: Ignored : 0x00 0x0005: Type Specific Flags : 0x00 0x0006: Address Space Granularity : 0x0000 0x0008: Address Range Minimum : 0x0080 0x000a: Address Range Maximum : 0x00fe 0x000c: Address Translation Offset : 0x0000 0x000e: Address Length : 0x007f 0x0010: Resource Source Index : 0xffffffffffffffff \_SB_.PCI2._CRS (Word Address Space Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x08 0x0001: Length : 0x000d 0x0003: Resource Type : 0x02 (Bus number range) 0x0004: Reserved : 0x00 0x0004: Max Address Fixed : 0x01 (Fixed) 0x0004: Min Address Fixed : 0x01 (Fixed) 0x0004: Decode Type : 0x00 (Bridge Positively decodes this address) 0x0004: Ignored : 0x00 0x0005: Type Specific Flags : 0x00 0x0006: Address Space Granularity : 0x0000 0x0008: Address Range Minimum : 0x0000 0x000a: Address Range Maximum : 0x00fe 0x000c: Address Translation Offset : 0x0000 0x000e: Address Length : 0x00ff 0x0010: Resource Source Index : 0xffffffffffffffff \_SB_.PCI3._CRS (Word Address Space Descriptor): 0x0000: Tag Type : 0x01 0x0000: Tag Item ID : 0x08 0x0001: Length : 0x000d 0x0003: Resource Type : 0x02 (Bus number range) 0x0004: Reserved : 0x00 0x0004: Max Address Fixed : 0x01 (Fixed) 0x0004: Min Address Fixed : 0x01 (Fixed) 0x0004: Decode Type : 0x00 (Bridge Positively decodes this address) 0x0004: Ignored : 0x00 0x0005: Type Specific Flags : 0x00 0x0006: Address Space Granularity : 0x0000 0x0008: Address Range Minimum : 0x4858 0x000a: Address Range Maximum : 0x0000 0x000c: Address Translation Offset : 0x0000 0x000e: Address Length : 0x0001 0x0010: Resource Source Index : 0xffffffffffffffff \_SB_.LNKA._CRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0x0001 (IRQ: 0) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKB._CRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0x0001 (IRQ: 0) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKC._CRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0x0001 (IRQ: 0) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKD._CRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0x0001 (IRQ: 0) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKE._CRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0x0001 (IRQ: 0) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKF._CRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0x0001 (IRQ: 0) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKG._CRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0x0001 (IRQ: 0) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKH._CRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0x0001 (IRQ: 0) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log csm". Running tests: csm. csm: UEFI Compatibility Support Module test. -------------------------------------------------------------------------------- Test 1 of 1: UEFI Compatibility Support Module test. Checking for UEFI Compatibility Support Module (CSM) Int 10h jumps to 0xc16bc in option ROM at: 0xc0000..0xc8000 CSM: UEFI firmware seems to have CSM support with Int 10h support. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 1 info only. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 1 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ csm | | | | | | 1| ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 0| 0| 0| 0| 1| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:49:34 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log cstates". Running tests: cstates. cstates: Processor C state support test. -------------------------------------------------------------------------------- Test 1 of 1: Test all CPUs C-states. This test checks if all processors have the same number of C-states, if the C-state counter works and if C-state transitions happen. PASSED: Test 1, Processor 0 has reached all C-states: PASSED: Test 1, Processor 1 has reached all C-states: PASSED: Test 1, Processor 1 has the same number of C-states as processor 0 PASSED: Test 1, Processor 2 has reached all C-states: PASSED: Test 1, Processor 2 has the same number of C-states as processor 0 PASSED: Test 1, Processor 3 has reached all C-states: PASSED: Test 1, Processor 3 has the same number of C-states as processor 0 PASSED: Test 1, Processor 4 has reached all C-states: PASSED: Test 1, Processor 4 has the same number of C-states as processor 0 PASSED: Test 1, Processor 5 has reached all C-states: PASSED: Test 1, Processor 5 has the same number of C-states as processor 0 PASSED: Test 1, Processor 6 has reached all C-states: PASSED: Test 1, Processor 6 has the same number of C-states as processor 0 PASSED: Test 1, Processor 7 has reached all C-states: PASSED: Test 1, Processor 7 has the same number of C-states as processor 0 PASSED: Test 1, Processor 8 has reached all C-states: PASSED: Test 1, Processor 8 has the same number of C-states as processor 0 PASSED: Test 1, Processor 9 has reached all C-states: PASSED: Test 1, Processor 9 has the same number of C-states as processor 0 PASSED: Test 1, Processor 10 has reached all C-states: PASSED: Test 1, Processor 10 has the same number of C-states as processor 0 PASSED: Test 1, Processor 11 has reached all C-states: PASSED: Test 1, Processor 11 has the same number of C-states as processor 0 PASSED: Test 1, Processor 12 has reached all C-states: PASSED: Test 1, Processor 12 has the same number of C-states as processor 0 PASSED: Test 1, Processor 13 has reached all C-states: PASSED: Test 1, Processor 13 has the same number of C-states as processor 0 PASSED: Test 1, Processor 14 has reached all C-states: PASSED: Test 1, Processor 14 has the same number of C-states as processor 0 PASSED: Test 1, Processor 15 has reached all C-states: PASSED: Test 1, Processor 15 has the same number of C-states as processor 0 PASSED: Test 1, Processor 16 has reached all C-states: PASSED: Test 1, Processor 16 has the same number of C-states as processor 0 PASSED: Test 1, Processor 17 has reached all C-states: PASSED: Test 1, Processor 17 has the same number of C-states as processor 0 PASSED: Test 1, Processor 18 has reached all C-states: PASSED: Test 1, Processor 18 has the same number of C-states as processor 0 PASSED: Test 1, Processor 19 has reached all C-states: PASSED: Test 1, Processor 19 has the same number of C-states as processor 0 PASSED: Test 1, Processor 20 has reached all C-states: PASSED: Test 1, Processor 20 has the same number of C-states as processor 0 PASSED: Test 1, Processor 21 has reached all C-states: PASSED: Test 1, Processor 21 has the same number of C-states as processor 0 PASSED: Test 1, Processor 22 has reached all C-states: PASSED: Test 1, Processor 22 has the same number of C-states as processor 0 PASSED: Test 1, Processor 23 has reached all C-states: PASSED: Test 1, Processor 23 has the same number of C-states as processor 0 PASSED: Test 1, Processor 24 has reached all C-states: PASSED: Test 1, Processor 24 has the same number of C-states as processor 0 PASSED: Test 1, Processor 25 has reached all C-states: PASSED: Test 1, Processor 25 has the same number of C-states as processor 0 PASSED: Test 1, Processor 26 has reached all C-states: PASSED: Test 1, Processor 26 has the same number of C-states as processor 0 PASSED: Test 1, Processor 27 has reached all C-states: PASSED: Test 1, Processor 27 has the same number of C-states as processor 0 PASSED: Test 1, Processor 28 has reached all C-states: PASSED: Test 1, Processor 28 has the same number of C-states as processor 0 PASSED: Test 1, Processor 29 has reached all C-states: PASSED: Test 1, Processor 29 has the same number of C-states as processor 0 PASSED: Test 1, Processor 30 has reached all C-states: PASSED: Test 1, Processor 30 has the same number of C-states as processor 0 PASSED: Test 1, Processor 31 has reached all C-states: PASSED: Test 1, Processor 31 has the same number of C-states as processor 0 PASSED: Test 1, Processor 32 has reached all C-states: PASSED: Test 1, Processor 32 has the same number of C-states as processor 0 PASSED: Test 1, Processor 33 has reached all C-states: PASSED: Test 1, Processor 33 has the same number of C-states as processor 0 PASSED: Test 1, Processor 34 has reached all C-states: PASSED: Test 1, Processor 34 has the same number of C-states as processor 0 PASSED: Test 1, Processor 35 has reached all C-states: PASSED: Test 1, Processor 35 has the same number of C-states as processor 0 PASSED: Test 1, Processor 36 has reached all C-states: PASSED: Test 1, Processor 36 has the same number of C-states as processor 0 PASSED: Test 1, Processor 37 has reached all C-states: PASSED: Test 1, Processor 37 has the same number of C-states as processor 0 PASSED: Test 1, Processor 38 has reached all C-states: PASSED: Test 1, Processor 38 has the same number of C-states as processor 0 PASSED: Test 1, Processor 39 has reached all C-states: PASSED: Test 1, Processor 39 has the same number of C-states as processor 0 PASSED: Test 1, Processor 40 has reached all C-states: PASSED: Test 1, Processor 40 has the same number of C-states as processor 0 PASSED: Test 1, Processor 41 has reached all C-states: PASSED: Test 1, Processor 41 has the same number of C-states as processor 0 PASSED: Test 1, Processor 42 has reached all C-states: PASSED: Test 1, Processor 42 has the same number of C-states as processor 0 PASSED: Test 1, Processor 43 has reached all C-states: PASSED: Test 1, Processor 43 has the same number of C-states as processor 0 PASSED: Test 1, Processor 44 has reached all C-states: PASSED: Test 1, Processor 44 has the same number of C-states as processor 0 PASSED: Test 1, Processor 45 has reached all C-states: PASSED: Test 1, Processor 45 has the same number of C-states as processor 0 PASSED: Test 1, Processor 46 has reached all C-states: PASSED: Test 1, Processor 46 has the same number of C-states as processor 0 PASSED: Test 1, Processor 47 has reached all C-states: PASSED: Test 1, Processor 47 has the same number of C-states as processor 0 PASSED: Test 1, Processor 48 has reached all C-states: PASSED: Test 1, Processor 48 has the same number of C-states as processor 0 PASSED: Test 1, Processor 49 has reached all C-states: PASSED: Test 1, Processor 49 has the same number of C-states as processor 0 PASSED: Test 1, Processor 50 has reached all C-states: PASSED: Test 1, Processor 50 has the same number of C-states as processor 0 PASSED: Test 1, Processor 51 has reached all C-states: PASSED: Test 1, Processor 51 has the same number of C-states as processor 0 PASSED: Test 1, Processor 52 has reached all C-states: PASSED: Test 1, Processor 52 has the same number of C-states as processor 0 PASSED: Test 1, Processor 53 has reached all C-states: PASSED: Test 1, Processor 53 has the same number of C-states as processor 0 PASSED: Test 1, Processor 54 has reached all C-states: PASSED: Test 1, Processor 54 has the same number of C-states as processor 0 PASSED: Test 1, Processor 55 has reached all C-states: PASSED: Test 1, Processor 55 has the same number of C-states as processor 0 PASSED: Test 1, Processor 56 has reached all C-states: PASSED: Test 1, Processor 56 has the same number of C-states as processor 0 PASSED: Test 1, Processor 57 has reached all C-states: PASSED: Test 1, Processor 57 has the same number of C-states as processor 0 PASSED: Test 1, Processor 58 has reached all C-states: PASSED: Test 1, Processor 58 has the same number of C-states as processor 0 PASSED: Test 1, Processor 59 has reached all C-states: PASSED: Test 1, Processor 59 has the same number of C-states as processor 0 PASSED: Test 1, Processor 60 has reached all C-states: PASSED: Test 1, Processor 60 has the same number of C-states as processor 0 PASSED: Test 1, Processor 61 has reached all C-states: PASSED: Test 1, Processor 61 has the same number of C-states as processor 0 PASSED: Test 1, Processor 62 has reached all C-states: PASSED: Test 1, Processor 62 has the same number of C-states as processor 0 PASSED: Test 1, Processor 63 has reached all C-states: PASSED: Test 1, Processor 63 has the same number of C-states as processor 0 ================================================================================ 127 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 127 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ cstates | 127| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 127| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:38 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log dmar". Running tests: dmar. dmar: DMA Remapping (VT-d) test. -------------------------------------------------------------------------------- Test 1 of 1: DMA Remapping test. FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Unknown device scope type, the test case should be fixed. PASSED: Test 1, Found no DMAR errors in kernel log. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ dmar | 1| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 1| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:38 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log dmicheck". Running tests: dmicheck. dmicheck: DMI/SMBIOS table tests. -------------------------------------------------------------------------------- Test 1 of 2: Find and test SMBIOS Table Entry Point. This test tries to find and sanity check the SMBIOS data structures. PASSED: Test 1, Found SMBIOS Table Entry Point at 0xf0560 SMBIOS Entry Point Structure: Anchor String : _SM_ Checksum : 0xef Entry Point Length : 0x1f Major Version : 0x02 Minor Version : 0x08 Maximum Struct Size : 0x8a Entry Point Revision : 0x00 Formatted Area : 0x00 0x00 0x00 0x00 0x00 Intermediate Anchor : _DMI_ Intermediate Checksum : 0xdf Structure Table Length : 0x0d64 Structure Table Address: 0x000eb000 # of SMBIOS Structures : 0x0033 SBMIOS BCD Revision : 27 PASSED: Test 1, SMBIOS Table Entry Point Checksum is valid. PASSED: Test 1, SMBIOS Table Entry Point Length is valid. PASSED: Test 1, SMBIOS Table Entry Intermediate Anchor String _DMI_ is valid. PASSED: Test 1, SMBIOS Table Entry Point Intermediate Checksum is valid. PASSED: Test 1, SMBIOS Table Entry Structure Table Address and Length looks valid. Test 2 of 2: Test DMI/SMBIOS tables for errors. PASSED: Test 2, Entry @ 0x000eb000 'BIOS Information (Type 0)' FAILED [MEDIUM] DMISerialNumber: Test 2, String index 0x03 in table entry 'System Information (Type 1)' @ 0x000eb04f, field 'Version', offset 0x06 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless. Note that the kernel uses this field so it probably should be corrected to ensure the kernel is using sane values. FAILED [LOW] DMISerialNumber: Test 2, String index 0x05 in table entry 'System Information (Type 1)' @ 0x000eb04f, field 'SKU Number', offset 0x19 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless, however the kernel does not use this data so the issue is fairly low. ADVICE: It may be worth checking against section 7.2 of the System Management BIOS (SMBIOS) Reference Specification (see http://www.dmtf.org/standards /smbios). FAILED [LOW] DMISerialNumber: Test 2, String index 0x06 in table entry 'Base Board Information (Type 2)' @ 0x000eb0ba, field 'Location In Chassis', offset 0x0a has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless, however the kernel does not use this data so the issue is fairly low. ADVICE: It may be worth checking against section 7.3 of the System Management BIOS (SMBIOS) Reference Specification (see http://www.dmtf.org/standards /smbios). FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. FAILED [MEDIUM] DMISerialNumber: Test 2, String index 0x02 in table entry 'Chassis Information (Type 3)' @ 0x000eb10a, field 'Version', offset 0x06 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless. Note that the kernel uses this field so it probably should be corrected to ensure the kernel is using sane values. FAILED [HIGH] DMIValueOutOfRange: Test 2, Out of range value 0x00 (range allowed 0x00..0x42) while accessing entry 'Chassis Information (Type 3)' @ 0x000eb10a, field 'Base Board Type 0', offset 0x15 FAILED [LOW] DMISerialNumber: Test 2, String index 0x05 in table entry 'Chassis Information (Type 3)' @ 0x000eb10a, field 'SKU Number', offset 0x18 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless, however the kernel does not use this data so the issue is fairly low. ADVICE: It may be worth checking against section 7.4 of the System Management BIOS (SMBIOS) Reference Specification (see http://www.dmtf.org/standards /smbios). PASSED: Test 2, Entry @ 0x000eb169 'Port Connector Information (Type 8)' PASSED: Test 2, Entry @ 0x000eb180 'Port Connector Information (Type 8)' PASSED: Test 2, Entry @ 0x000eb1a6 'Port Connector Information (Type 8)' PASSED: Test 2, Entry @ 0x000eb1cc 'Port Connector Information (Type 8)' PASSED: Test 2, Entry @ 0x000eb1f2 'Port Connector Information (Type 8)' PASSED: Test 2, Entry @ 0x000eb218 'System Slot Information (Type 9)' PASSED: Test 2, Entry @ 0x000eb234 'System Slot Information (Type 9)' PASSED: Test 2, Entry @ 0x000eb252 'System Slot Information (Type 9)' PASSED: Test 2, Entry @ 0x000eb270 'System Slot Information (Type 9)' PASSED: Test 2, Entry @ 0x000eb28e 'Onboard Device (Type 41)' PASSED: Test 2, Entry @ 0x000eb29f 'Onboard Device (Type 41)' FAILED [LOW] DMISerialNumber: Test 2, String index 0x04 in table entry 'Processor Information (Type 4)' @ 0x000eb2b3, field 'Serial Number', offset 0x20 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless, however the kernel does not use this data so the issue is fairly low. ADVICE: It may be worth checking against section 7.5 of the System Management BIOS (SMBIOS) Reference Specification (see http://www.dmtf.org/standards /smbios). FAILED [LOW] DMISerialNumber: Test 2, String index 0x04 in table entry 'Processor Information (Type 4)' @ 0x000eb32e, field 'Serial Number', offset 0x20 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless, however the kernel does not use this data so the issue is fairly low. ADVICE: It may be worth checking against section 7.5 of the System Management BIOS (SMBIOS) Reference Specification (see http://www.dmtf.org/standards /smbios). FAILED [MEDIUM] DMISerialNumber: Test 2, String index 0x01 in table entry 'OEM Strings (Type 11)' @ 0x000eb3a9, field 'String 1', offset 0x04 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless. Note that the kernel uses this field so it probably should be corrected to ensure the kernel is using sane values. FAILED [MEDIUM] DMISerialNumber: Test 2, String index 0x02 in table entry 'OEM Strings (Type 11)' @ 0x000eb3a9, field 'String 2', offset 0x04 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless. Note that the kernel uses this field so it probably should be corrected to ensure the kernel is using sane values. FAILED [MEDIUM] DMISerialNumber: Test 2, String index 0x03 in table entry 'OEM Strings (Type 11)' @ 0x000eb3a9, field 'String 3', offset 0x04 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless. Note that the kernel uses this field so it probably should be corrected to ensure the kernel is using sane values. FAILED [MEDIUM] DMISerialNumber: Test 2, String index 0x04 in table entry 'OEM Strings (Type 11)' @ 0x000eb3a9, field 'String 4', offset 0x04 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. ADVICE: The DMI table contains data which is clearly been left in a default setting and not been configured for this machine. Somebody has probably forgotten to define this field and it basically means this field is effectively useless. Note that the kernel uses this field so it probably should be corrected to ensure the kernel is using sane values. ADVICE: It may be worth checking against section 7.12 of the System Management BIOS (SMBIOS) Reference Specification (see http://www.dmtf.org/standards /smbios). PASSED: Test 2, Entry @ 0x000eb433 'IPMI Device Information (Type 38)' PASSED: Test 2, Entry @ 0x000eb447 'Physical Memory Array (Type 16)' PASSED: Test 2, Entry @ 0x000eb460 'Memory Array Mapped Address (Type 19)' PASSED: Test 2, Entry @ 0x000eb481 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb4f4 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb567 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb5da 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb64d 'Physical Memory Array (Type 16)' PASSED: Test 2, Entry @ 0x000eb666 'Memory Array Mapped Address (Type 19)' PASSED: Test 2, Entry @ 0x000eb687 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb6fa 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb76d 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb7e0 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb853 'Physical Memory Array (Type 16)' PASSED: Test 2, Entry @ 0x000eb86c 'Memory Array Mapped Address (Type 19)' PASSED: Test 2, Entry @ 0x000eb88d 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb900 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb973 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eb9e6 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000eba59 'Physical Memory Array (Type 16)' PASSED: Test 2, Entry @ 0x000eba72 'Memory Array Mapped Address (Type 19)' PASSED: Test 2, Entry @ 0x000eba93 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000ebb06 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000ebb79 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000ebbec 'Memory Device (Type 17)' PASSED: Test 2, Entry @ 0x000ebc5f 'Cache Information (Type 7)' PASSED: Test 2, Entry @ 0x000ebc83 'Cache Information (Type 7)' PASSED: Test 2, Entry @ 0x000ebca7 'Cache Information (Type 7)' PASSED: Test 2, Entry @ 0x000ebccb 'Cache Information (Type 7)' PASSED: Test 2, Entry @ 0x000ebcef 'Cache Information (Type 7)' PASSED: Test 2, Entry @ 0x000ebd13 'Cache Information (Type 7)' PASSED: Test 2, Entry @ 0x000ebd37 'BIOS Language Information (Type 13)' PASSED: Test 2, Entry @ 0x000ebd5e 'End of Table (Type 127)' ================================================================================ 51 passed, 12 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 51 passed, 12 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: 1 dmicheck: Out of range value 0x00 (range allowed 0x00..0x42) while accessing entry 'Chassis Information (Type 3)' @ 0x000eb10a, field 'Base Board Type 0', offset 0x15 Medium failures: 6 dmicheck: String index 0x03 in table entry 'System Information (Type 1)' @ 0x000eb04f, field 'Version', offset 0x06 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. dmicheck: String index 0x02 in table entry 'Chassis Information (Type 3)' @ 0x000eb10a, field 'Version', offset 0x06 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. dmicheck: String index 0x01 in table entry 'OEM Strings (Type 11)' @ 0x000eb3a9, field 'String 1', offset 0x04 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. dmicheck: String index 0x02 in table entry 'OEM Strings (Type 11)' @ 0x000eb3a9, field 'String 2', offset 0x04 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. dmicheck: String index 0x03 in table entry 'OEM Strings (Type 11)' @ 0x000eb3a9, field 'String 3', offset 0x04 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. dmicheck: String index 0x04 in table entry 'OEM Strings (Type 11)' @ 0x000eb3a9, field 'String 4', offset 0x04 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. Low failures: 5 dmicheck: String index 0x05 in table entry 'System Information (Type 1)' @ 0x000eb04f, field 'SKU Number', offset 0x19 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. dmicheck: String index 0x06 in table entry 'Base Board Information (Type 2)' @ 0x000eb0ba, field 'Location In Chassis', offset 0x0a has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. dmicheck: String index 0x05 in table entry 'Chassis Information (Type 3)' @ 0x000eb10a, field 'SKU Number', offset 0x18 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. dmicheck: String index 0x04 in table entry 'Processor Information (Type 4)' @ 0x000eb2b3, field 'Serial Number', offset 0x20 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. dmicheck: String index 0x04 in table entry 'Processor Information (Type 4)' @ 0x000eb32e, field 'Serial Number', offset 0x20 has a default value 'To be filled by O.E.M.' and probably has not been updated by the BIOS vendor. Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ dmicheck | 51| 12| | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 51| 12| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:38 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log ebda". Running tests: ebda. ebda: Test EBDA region is mapped and reserved in memory map table. -------------------------------------------------------------------------------- Machine is not using traditional BIOS firmware, skipping test. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 1 skipped, 0 info only. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 1 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ ebda | | | | | 1| | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 0| 0| 0| 1| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:38 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log ebdadump". Running tests: ebdadump. ebdadump: Dump EBDA region. -------------------------------------------------------------------------------- Test 1 of 1: Dump EBDA region. EBDA region: 9fc00..a0000 (1024 bytes) 9fc00: 01 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fc10: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fc20: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fc30: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fc40: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fc50: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fc60: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fc70: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fc80: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fc90: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fca0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fcb0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fcc0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fcd0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fce0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fcf0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fd00: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fd10: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fd20: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fd30: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fd40: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fd50: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fd60: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fd70: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fd80: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fd90: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fda0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fdb0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fdc0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fdd0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fde0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fdf0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fe00: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fe10: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fe20: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fe30: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fe40: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fe50: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fe60: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fe70: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fe80: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fe90: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fea0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9feb0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fec0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fed0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fee0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fef0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ff00: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ff10: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ff20: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ff30: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ff40: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ff50: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ff60: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ff70: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ff80: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ff90: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ffa0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ffb0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ffc0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ffd0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9ffe0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 9fff0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:38 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log fadt". Running tests: fadt. fadt: FADT SCI_EN enabled tests. -------------------------------------------------------------------------------- FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Test 1 of 2: Test FADT SCI_EN bit is enabled. FADT Preferred PM Profile: 4 (Enterprise Server) FADT is greater than ACPI version 1.0 PASSED: Test 1, SCI_EN bit in PM1a Control Register Block is enabled. Test 2 of 2: Test FADT reset register. PASSED: Test 2, FADT reset register width is 8 bits wide as expected. PASSED: Test 2, FADT register bit offset is 0 as expected. ================================================================================ 3 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 3 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ fadt | 3| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 3| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:38 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log fan". Running tests: fan. fan: Simple fan tests. -------------------------------------------------------------------------------- Test 1 of 2: Test fan status. Test how many fans there are in the system. Check for the current status of the fan(s). PASSED: Test 1, Fan cooling_device0 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device1 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device2 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device3 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device4 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device5 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device6 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device7 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device8 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device9 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device10 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device11 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device12 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device13 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device14 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device15 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device16 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device17 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device18 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device19 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device20 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device21 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device22 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device23 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device24 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device25 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device26 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device27 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device28 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device29 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device30 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device31 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device32 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device33 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device34 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device35 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device36 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device37 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device38 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device39 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device40 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device41 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device42 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device43 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device44 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device45 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device46 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device47 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device48 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device49 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device50 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device51 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device52 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device53 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device54 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device55 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device56 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device57 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device58 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device59 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device60 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device61 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device62 of type Processor has max cooling state 17 and current cooling state 0. PASSED: Test 1, Fan cooling_device63 of type Processor has max cooling state 17 and current cooling state 0. FAILED [MEDIUM] NoFanCurState: Test 1, Fan present but has no cur_state present. Test 2 of 2: Load system, check CPU fan status. Test how many fans there are in the system. Check for the current status of the fan(s). Loading CPUs for 20 seconds to try and get fan speeds to change. Fan cooling_device0 current state did not change from value 0 while CPUs were busy. Fan cooling_device1 current state did not change from value 0 while CPUs were busy. Fan cooling_device2 current state did not change from value 0 while CPUs were busy. Fan cooling_device3 current state did not change from value 0 while CPUs were busy. Fan cooling_device4 current state did not change from value 0 while CPUs were busy. Fan cooling_device5 current state did not change from value 0 while CPUs were busy. Fan cooling_device6 current state did not change from value 0 while CPUs were busy. Fan cooling_device7 current state did not change from value 0 while CPUs were busy. Fan cooling_device8 current state did not change from value 0 while CPUs were busy. Fan cooling_device9 current state did not change from value 0 while CPUs were busy. Fan cooling_device10 current state did not change from value 0 while CPUs were busy. Fan cooling_device11 current state did not change from value 0 while CPUs were busy. Fan cooling_device12 current state did not change from value 0 while CPUs were busy. Fan cooling_device13 current state did not change from value 0 while CPUs were busy. Fan cooling_device14 current state did not change from value 0 while CPUs were busy. Fan cooling_device15 current state did not change from value 0 while CPUs were busy. Fan cooling_device16 current state did not change from value 0 while CPUs were busy. Fan cooling_device17 current state did not change from value 0 while CPUs were busy. Fan cooling_device18 current state did not change from value 0 while CPUs were busy. Fan cooling_device19 current state did not change from value 0 while CPUs were busy. Fan cooling_device20 current state did not change from value 0 while CPUs were busy. Fan cooling_device21 current state did not change from value 0 while CPUs were busy. Fan cooling_device22 current state did not change from value 0 while CPUs were busy. Fan cooling_device23 current state did not change from value 0 while CPUs were busy. Fan cooling_device24 current state did not change from value 0 while CPUs were busy. Fan cooling_device25 current state did not change from value 0 while CPUs were busy. Fan cooling_device26 current state did not change from value 0 while CPUs were busy. Fan cooling_device27 current state did not change from value 0 while CPUs were busy. Fan cooling_device28 current state did not change from value 0 while CPUs were busy. Fan cooling_device29 current state did not change from value 0 while CPUs were busy. Fan cooling_device30 current state did not change from value 0 while CPUs were busy. Fan cooling_device31 current state did not change from value 0 while CPUs were busy. Fan cooling_device32 current state did not change from value 0 while CPUs were busy. Fan cooling_device33 current state did not change from value 0 while CPUs were busy. Fan cooling_device34 current state did not change from value 0 while CPUs were busy. Fan cooling_device35 current state did not change from value 0 while CPUs were busy. Fan cooling_device36 current state did not change from value 0 while CPUs were busy. Fan cooling_device37 current state did not change from value 0 while CPUs were busy. Fan cooling_device38 current state did not change from value 0 while CPUs were busy. Fan cooling_device39 current state did not change from value 0 while CPUs were busy. Fan cooling_device40 current state did not change from value 0 while CPUs were busy. Fan cooling_device41 current state did not change from value 0 while CPUs were busy. Fan cooling_device42 current state did not change from value 0 while CPUs were busy. Fan cooling_device43 current state did not change from value 0 while CPUs were busy. Fan cooling_device44 current state did not change from value 0 while CPUs were busy. Fan cooling_device45 current state did not change from value 0 while CPUs were busy. Fan cooling_device46 current state did not change from value 0 while CPUs were busy. Fan cooling_device47 current state did not change from value 0 while CPUs were busy. Fan cooling_device48 current state did not change from value 0 while CPUs were busy. Fan cooling_device49 current state did not change from value 0 while CPUs were busy. Fan cooling_device50 current state did not change from value 0 while CPUs were busy. Fan cooling_device51 current state did not change from value 0 while CPUs were busy. Fan cooling_device52 current state did not change from value 0 while CPUs were busy. Fan cooling_device53 current state did not change from value 0 while CPUs were busy. Fan cooling_device54 current state did not change from value 0 while CPUs were busy. Fan cooling_device55 current state did not change from value 0 while CPUs were busy. Fan cooling_device56 current state did not change from value 0 while CPUs were busy. Fan cooling_device57 current state did not change from value 0 while CPUs were busy. Fan cooling_device58 current state did not change from value 0 while CPUs were busy. Fan cooling_device59 current state did not change from value 0 while CPUs were busy. Fan cooling_device60 current state did not change from value 0 while CPUs were busy. Fan cooling_device61 current state did not change from value 0 while CPUs were busy. Fan cooling_device62 current state did not change from value 0 while CPUs were busy. Fan cooling_device63 current state did not change from value 0 while CPUs were busy. ADVICE: Did not detect any change in the CPU related thermal cooling device states. It could be that the devices are returning static information back to the driver and/or the fan speed is automatically being controlled by firmware using System Management Mode in which case the kernel interfaces being examined may not work anyway. ================================================================================ 64 passed, 1 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 64 passed, 1 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: 1 fan: Fan present but has no cur_state present. Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ fan | 64| 1| | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 64| 1| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:59 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log gpedump". Running tests: gpedump. gpedump: Dump GPEs. -------------------------------------------------------------------------------- FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Test 1 of 1: Dump GPEs. Block 0: DeviceNode \_GPE (FADT Defined GPE Block) GPE range: 0x00 to 0x3f on interrupt 9 GPE count: 64 (8 registers) Register 0: (GPE 0x00-0x07) Run Enable: 0x00 Wake Enable: 0x00 Status Address: 0x00000420 Enable Address: 0x00000428 GPE 0x01: Flags: 0x05 (trigger: level, wake: run only) Dispatch: method Register 1: (GPE 0x08-0x0f) Run Enable: 0x00 Wake Enable: 0x00 Status Address: 0x00000421 Enable Address: 0x00000429 GPE 0x09: Flags: 0x05 (trigger: level, wake: run only) Dispatch: method GPE 0x0b: Flags: 0x05 (trigger: level, wake: run only) Dispatch: method GPE 0x0d: Flags: 0x05 (trigger: level, wake: run only) Dispatch: method Register 2: (GPE 0x10-0x17) Run Enable: 0x00 Wake Enable: 0x00 Status Address: 0x00000422 Enable Address: 0x0000042a GPE 0x10: Flags: 0x05 (trigger: level, wake: run only) Dispatch: method Register 3: (GPE 0x18-0x1f) Run Enable: 0x00 Wake Enable: 0x00 Status Address: 0x00000423 Enable Address: 0x0000042b Register 4: (GPE 0x20-0x27) Run Enable: 0x00 Wake Enable: 0x00 Status Address: 0x00000424 Enable Address: 0x0000042c GPE 0x24: Flags: 0x05 (trigger: level, wake: run only) Dispatch: method Register 5: (GPE 0x28-0x2f) Run Enable: 0x00 Wake Enable: 0x00 Status Address: 0x00000425 Enable Address: 0x0000042d Register 6: (GPE 0x30-0x37) Run Enable: 0x00 Wake Enable: 0x00 Status Address: 0x00000426 Enable Address: 0x0000042e Register 7: (GPE 0x38-0x3f) Run Enable: 0x00 Wake Enable: 0x00 Status Address: 0x00000427 Enable Address: 0x0000042f Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:59 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log hda_audio". Running tests: hda_audio. hda_audio: HDA Audio Pin Configuration test. -------------------------------------------------------------------------------- Test 1 of 1: HDA Audio Pin Configuration test. SKIPPED: Test 1, Cannot find any sound devices in /sys/class/sound. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 1 skipped, 0 info only. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 1 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ hda_audio | | | | | 1| | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 0| 0| 0| 1| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:59 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log hpet_check". Running tests: hpet_check. hpet_check: HPET configuration tests. -------------------------------------------------------------------------------- Test 1 of 4: Test HPET base in kernel log. This test checks the HPET PCI BAR for each timer block in the timer. The base address is passed by the firmware via an ACPI table. IRQ routing and initialization is also verified by the test. PASSED: Test 1, Found HPET base 0xfed00000 in kernel log. Test 2 of 4: Test HPET base in HPET table. FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Hardware ID of Event Block: PCI Vendor ID : 0x8086 Legacy IRQ Routing Capable : 1 COUNT_SIZE_CAP counter size: 1 Number of comparitors : 7 Hardwre Revision ID : 0x1 Lower 32 bit base Address : 0xfed00000 Address Space ID : 0x0 Register Bit Width : 0x40 Register Bit Offset : 0x0 Address Width : 0x0 HPET sequence number : 0x0 Minimum clock tick : 0x37ee Page Protection : 0x0 (No guaranteed protection) OEM attributes : 0x0 PASSED: Test 2, HPET looks sane. Test 3 of 4: Test HPET base in DSDT and/or SSDT. PASSED: Test 3, HPET base matches that between DSDT and the kernel (0xfed00000). Test 4 of 4: Test HPET configuration. PASSED: Test 4, Vendor ID looks sane: 0x8086. PASSED: Test 4, Valid clock period 69841279. ================================================================================ 5 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 5 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ hpet_check | 5| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 5| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:59 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log klog". Running tests: klog. klog: Scan kernel log for errors and warnings. -------------------------------------------------------------------------------- Test 1 of 1: Kernel log error check. FAILED [HIGH] KlogSratEntryUnsupported: Test 1, HIGH Kernel message: [ 0.229783] Your BIOS is broken and requested that x2apic be disabled. ADVICE: The DMAR DMAR_X2APIC_OPT_OUT bit was set so the firmware requested that the x2apic should be disabled leading to decreased system performance. The firmware opt out can be overridden using the intremap=no_x2apic_optout kernel parameter. Kernel message: [ 1.664773] [Firmware Bug]: ACPI: BIOS _OSI(Linux) query ignored ADVICE: This is not exactly a failure mode but a warning from the kernel. The _OSI() method has implemented a match to the 'Linux' query in the DSDT and this is redundant because the ACPI driver matches onto the Windows _OSI strings by default. Kernel message: [ 1.720463] ACPI Exception: AE_NOT_FOUND, While evaluating Sleep State [\_S1_] (20131115/hwxface-580) ADVICE: The exception comes from kernel cannot find _S1 namespace object that contains the register values for the sleep state when kernel would like to setup all the sleep state information. This means that the kernel does not know how to enter the S1 sleep state, however, it should not be a problem if the S1 sleep state isn't supported intentionally. Kernel message: [ 1.720467] ACPI Exception: AE_NOT_FOUND, While evaluating Sleep State [\_S2_] (20131115/hwxface-580) ADVICE: The exception comes from kernel cannot find _S2 namespace object that contains the register values for the sleep state when kernel would like to setup all the sleep state information. This means that the kernel does not know how to enter the S2 sleep state, however, it should not be a problem if the S2 sleep state isn't supported intentionally. FAILED [HIGH] KlogAcpiSleepStateEvalFailed: Test 1, HIGH Kernel message: [ 1.720469] ACPI Exception: AE_NOT_FOUND, While evaluating Sleep State [\_S3_] (20131115/hwxface-580) ADVICE: Failed to evaluate _Sx namespace object that contains the register values for the sleep state. FAILED [HIGH] KlogAcpiSleepStateEvalFailed: Test 1, HIGH Kernel message: [ 1.720472] ACPI Exception: AE_NOT_FOUND, While evaluating Sleep State [\_S4_] (20131115/hwxface-580) ADVICE: Failed to evaluate _Sx namespace object that contains the register values for the sleep state. FAILED [LOW] KlogAcpiSystemIOConflict: Test 1, LOW Kernel message: [ 7.012441] ACPI Warning: 0x0000000000000428-0x000000000000042f SystemIO conflicts with Region \GPE0 1 (20131115/utaddress-251) ADVICE: A resource conflict between an ACPI OperationRegion and a native driver has been detected. By default the kernel will use a strict policy and will not allow this region to conflict and -EBUSY will be returned to the caller that was trying to allocate the already claimed region. If an ACPI driver is available for this device then this should be used instead of a native driver, so disabling the native driver may help. (Note that the lpc_ich driver can trigger these warnings, in which case they can generally be ignored). One can specify kernel boot parameter acpi_enforce_resources=lax to disable these checks but it may lead to random problems and system instability. Alternatively, one can specify acpi_enforce_resources=no and ACPI Operation Region resources will not be registered. FAILED [LOW] KlogAcpiSystemIOConflict: Test 1, LOW Kernel message: [ 7.012449] ACPI Warning: 0x0000000000000500-0x000000000000052f SystemIO conflicts with Region \GPIV 1 (20131115/utaddress-251) ADVICE: A resource conflict between an ACPI OperationRegion and a native driver has been detected. By default the kernel will use a strict policy and will not allow this region to conflict and -EBUSY will be returned to the caller that was trying to allocate the already claimed region. If an ACPI driver is available for this device then this should be used instead of a native driver, so disabling the native driver may help. (Note that the lpc_ich driver can trigger these warnings, in which case they can generally be ignored). One can specify kernel boot parameter acpi_enforce_resources=lax to disable these checks but it may lead to random problems and system instability. Alternatively, one can specify acpi_enforce_resources=no and ACPI Operation Region resources will not be registered. FAILED [LOW] KlogAcpiSystemIOConflictLpcIchWatchDogTimer: Test 1, LOW Kernel message: [ 7.012567] lpc_ich: Resource conflict(s) found affecting gpio_ich ADVICE: A resource conflict has occurred between ACPI OperationRegions and the same I/O region used by the lpc_ich driver for the General Purpose I/O (GPIO) region. Sometimes this GPIO region is used by the firmware for rfkill or LED controls or very rarely for the Embedded Controller System Control Interrupt. This may require deeper inspection to check if the conflict will lead to any real issues. However, in the vast majority of cases this warning can be ignored as no harm will occur. Found 6 unique errors in kernel log. ================================================================================ 0 passed, 6 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 0 passed, 6 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: 3 klog: HIGH Kernel message: [ 0.229783] Your BIOS is broken and requested that x2apic be disabled. klog: HIGH Kernel message: [ 1.720469] ACPI Exception: AE_NOT_FOUND, While evaluating Sleep State [\_S3_] (20131115/hwxface-580) klog: HIGH Kernel message: [ 1.720472] ACPI Exception: AE_NOT_FOUND, While evaluating Sleep State [\_S4_] (20131115/hwxface-580) Medium failures: NONE Low failures: 3 klog: LOW Kernel message: [ 7.012441] ACPI Warning: 0x0000000000000428-0x000000000000042f SystemIO conflicts with Region \GPE0 1 (20131115/utaddress-251) klog: LOW Kernel message: [ 7.012449] ACPI Warning: 0x0000000000000500-0x000000000000052f SystemIO conflicts with Region \GPIV 1 (20131115/utaddress-251) klog: LOW Kernel message: [ 7.012567] lpc_ich: Resource conflict(s) found affecting gpio_ich Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ klog | | 6| | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 6| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:59 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log maxfreq". Running tests: maxfreq. maxfreq: Test max CPU frequencies against max scaling frequency. -------------------------------------------------------------------------------- Test 1 of 1: Maximum CPU frequency test. This test checks the maximum CPU frequency as detected by the kernel for each CPU against maxiumum frequency as specified by the BIOS frequency scaling settings. CPU 0 maximum frequency 2.301000 GHz is sane. CPU 1 maximum frequency 2.301000 GHz is sane. CPU 2 maximum frequency 2.301000 GHz is sane. CPU 3 maximum frequency 2.301000 GHz is sane. CPU 4 maximum frequency 2.301000 GHz is sane. CPU 5 maximum frequency 2.301000 GHz is sane. CPU 6 maximum frequency 2.301000 GHz is sane. CPU 7 maximum frequency 2.301000 GHz is sane. CPU 8 maximum frequency 2.301000 GHz is sane. CPU 9 maximum frequency 2.301000 GHz is sane. CPU 10 maximum frequency 2.301000 GHz is sane. CPU 11 maximum frequency 2.301000 GHz is sane. CPU 12 maximum frequency 2.301000 GHz is sane. CPU 13 maximum frequency 2.301000 GHz is sane. CPU 14 maximum frequency 2.301000 GHz is sane. CPU 15 maximum frequency 2.301000 GHz is sane. CPU 16 maximum frequency 2.301000 GHz is sane. CPU 17 maximum frequency 2.301000 GHz is sane. CPU 18 maximum frequency 2.301000 GHz is sane. CPU 19 maximum frequency 2.301000 GHz is sane. CPU 20 maximum frequency 2.301000 GHz is sane. CPU 21 maximum frequency 2.301000 GHz is sane. CPU 22 maximum frequency 2.301000 GHz is sane. CPU 23 maximum frequency 2.301000 GHz is sane. CPU 24 maximum frequency 2.301000 GHz is sane. CPU 25 maximum frequency 2.301000 GHz is sane. CPU 26 maximum frequency 2.301000 GHz is sane. CPU 27 maximum frequency 2.301000 GHz is sane. CPU 28 maximum frequency 2.301000 GHz is sane. CPU 29 maximum frequency 2.301000 GHz is sane. CPU 30 maximum frequency 2.301000 GHz is sane. CPU 31 maximum frequency 2.301000 GHz is sane. CPU 32 maximum frequency 2.301000 GHz is sane. CPU 33 maximum frequency 2.301000 GHz is sane. CPU 34 maximum frequency 2.301000 GHz is sane. CPU 35 maximum frequency 2.301000 GHz is sane. CPU 36 maximum frequency 2.301000 GHz is sane. CPU 37 maximum frequency 2.301000 GHz is sane. CPU 38 maximum frequency 2.301000 GHz is sane. CPU 39 maximum frequency 2.301000 GHz is sane. CPU 40 maximum frequency 2.301000 GHz is sane. CPU 41 maximum frequency 2.301000 GHz is sane. CPU 42 maximum frequency 2.301000 GHz is sane. CPU 43 maximum frequency 2.301000 GHz is sane. CPU 44 maximum frequency 2.301000 GHz is sane. CPU 45 maximum frequency 2.301000 GHz is sane. CPU 46 maximum frequency 2.301000 GHz is sane. CPU 47 maximum frequency 2.301000 GHz is sane. CPU 48 maximum frequency 2.301000 GHz is sane. CPU 49 maximum frequency 2.301000 GHz is sane. CPU 50 maximum frequency 2.301000 GHz is sane. CPU 51 maximum frequency 2.301000 GHz is sane. CPU 52 maximum frequency 2.301000 GHz is sane. CPU 53 maximum frequency 2.301000 GHz is sane. CPU 54 maximum frequency 2.301000 GHz is sane. CPU 55 maximum frequency 2.301000 GHz is sane. CPU 56 maximum frequency 2.301000 GHz is sane. CPU 57 maximum frequency 2.301000 GHz is sane. CPU 58 maximum frequency 2.301000 GHz is sane. CPU 59 maximum frequency 2.301000 GHz is sane. CPU 60 maximum frequency 2.301000 GHz is sane. CPU 61 maximum frequency 2.301000 GHz is sane. CPU 62 maximum frequency 2.301000 GHz is sane. CPU 63 maximum frequency 2.301000 GHz is sane. PASSED: Test 1, 64 CPUs passed the maximum frequency check. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ maxfreq | 1| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 1| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:59 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log maxreadreq". Running tests: maxreadreq. maxreadreq: Test firmware has set PCI Express MaxReadReq to a higher value on non-motherboard devices. -------------------------------------------------------------------------------- Test 1 of 1: Test firmware settings MaxReadReq for PCI Express devices. MaxReadReq for 0000:00:05.4 is low (128). MaxReadReq for 0000:00:11.0 is low (128). MaxReadReq for 0000:80:05.4 is low (128). FAILED [LOW] LowMaxReadReq: Test 1, 3 devices have low MaxReadReq settings. Firmware may have configured these too low. ADVICE: The MaxReadRequest size is set too low and will affect performance. It will provide excellent bus sharing at the cost of bus data transfer rates. Although not a critical issue, it may be worth considering setting the MaxReadRequest size to 256 or 512 to increase throughput on the PCI Express bus. Some drivers (for example the Brocade Fibre Channel driver) allow one to override the firmware settings. Where possible, this BIOS configuration setting is worth increasing it a little more for better performance at a small reduction of bus sharing. ================================================================================ 0 passed, 1 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 0 passed, 1 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: 1 maxreadreq: 3 devices have low MaxReadReq settings. Firmware may have configured these too low. Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ maxreadreq | | 1| | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 1| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:59 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log mcfg". Running tests: mcfg. mcfg: MCFG PCI Express* memory mapped config space test. -------------------------------------------------------------------------------- FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Test 1 of 2: Validate MCFG table. This test tries to validate the MCFG table by comparing the first 16 bytes in the MMIO mapped config space with the 'traditional' config space of the first PCI device (root bridge). The MCFG data is only trusted if it is marked reserved in the UEFI run-time service memory map Memory Map Layout ----------------- 0x0000000000000000 - 0x000000000009ffff (System RAM) 0x0000000000100000 - 0x0000000079246fff (System RAM) 0x0000000079247000 - 0x000000007980cfff (reserved) 0x000000007980d000 - 0x000000007985dfff (ACPI Non-volatile Storage) 0x000000007985e000 - 0x0000000079e1dfff (ACPI Non-volatile Storage) 0x0000000079e1e000 - 0x000000007bcf9fff (reserved) 0x000000007bcfa000 - 0x000000007bd55fff (reserved) 0x000000007bd56000 - 0x000000007bd56fff (System RAM) 0x000000007bd57000 - 0x000000007bddcfff (reserved) 0x000000007bddd000 - 0x000000007bffffff (System RAM) 0x0000000080000000 - 0x000000008fffffff (reserved) 0x00000000fed1c000 - 0x00000000fed1ffff (reserved) 0x00000000ff000000 - 0x00000000ffffffff (reserved) 0x0000000100000000 - 0x000000807fffffff (System RAM) MCFG table found, size is 16 bytes (excluding header) (1 entries). Configuration Entry #0: Base Address : 0x80000000 Segment : 0 Start bus : 0 End bus : 255 PASSED: Test 1, MCFG MMIO config space is reserved in memory map table. Test 2 of 2: Validate MCFG PCI config space. PASSED: Test 2, PCI config space verified. ================================================================================ 2 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 2 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ mcfg | 2| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 2| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:59 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log memmapdump". Running tests: memmapdump. memmapdump: Dump system memory map. -------------------------------------------------------------------------------- Test 1 of 1: Dump system memory map. Memory Map Layout ----------------- 0x0000000000000000 - 0x000000000009ffff (System RAM) 0x0000000000100000 - 0x0000000079246fff (System RAM) 0x0000000079247000 - 0x000000007980cfff (reserved) 0x000000007980d000 - 0x000000007985dfff (ACPI Non-volatile Storage) 0x000000007985e000 - 0x0000000079e1dfff (ACPI Non-volatile Storage) 0x0000000079e1e000 - 0x000000007bcf9fff (reserved) 0x000000007bcfa000 - 0x000000007bd55fff (reserved) 0x000000007bd56000 - 0x000000007bd56fff (System RAM) 0x000000007bd57000 - 0x000000007bddcfff (reserved) 0x000000007bddd000 - 0x000000007bffffff (System RAM) 0x0000000080000000 - 0x000000008fffffff (reserved) 0x00000000fed1c000 - 0x00000000fed1ffff (reserved) 0x00000000ff000000 - 0x00000000ffffffff (reserved) 0x0000000100000000 - 0x000000807fffffff (System RAM) Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:50:59 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log method". Running tests: method. method: ACPI DSDT Method Semantic tests. -------------------------------------------------------------------------------- FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. FADT Preferred PM profile indicates this is not a Mobile Platform. Test 1 of 155: Test Method Names. Found 8205 Objects PASSED: Test 1, Method names contain legal characters. Test 2 of 155: Test _AEI. SKIPPED: Test 2, Skipping test for non-existant object _AEI. Test 3 of 155: Test _PIC (Inform AML of Interrupt Model). PASSED: Test 3, \_PIC returned no values as expected. PASSED: Test 3, \_PIC returned no values as expected. PASSED: Test 3, \_PIC returned no values as expected. Test 4 of 155: Test _CID (Compatible ID). PASSED: Test 4, \_SB_.PCI0._CID returned an integer 0x030ad041 (EISA ID PNP0A03). PASSED: Test 4, \_SB_.PCI1._CID returned an integer 0x030ad041 (EISA ID PNP0A03). PASSED: Test 4, \_SB_.PCI2._CID returned an integer 0x030ad041 (EISA ID PNP0A03). PASSED: Test 4, \_SB_.PCI3._CID returned an integer 0x030ad041 (EISA ID PNP0A03). Test 5 of 155: Test _DDN (DOS Device Name). SKIPPED: Test 5, Skipping test for non-existant object _DDN. Test 6 of 155: Test _HID (Hardware ID). PASSED: Test 6, \_SB_.UNC3._HID returned an integer 0x030ad041 (EISA ID PNP0A03). PASSED: Test 6, \_SB_.UNC2._HID returned an integer 0x030ad041 (EISA ID PNP0A03). PASSED: Test 6, \_SB_.UNC1._HID returned an integer 0x030ad041 (EISA ID PNP0A03). PASSED: Test 6, \_SB_.UNC0._HID returned an integer 0x030ad041 (EISA ID PNP0A03). PASSED: Test 6, \_SB_.SCK0._HID returned a string 'ACPI0004' as expected. PASSED: Test 6, \_SB_.SCK1._HID returned a string 'ACPI0004' as expected. PASSED: Test 6, \_SB_.SCK2._HID returned a string 'ACPI0004' as expected. PASSED: Test 6, \_SB_.SCK3._HID returned a string 'ACPI0004' as expected. PASSED: Test 6, \_SB_.WERR._HID returned an integer 0x330cd041 (EISA ID PNP0C33). PASSED: Test 6, \_SB_.SRIO._HID returned a string 'PNP0C14' as expected. PASSED: Test 6, \_SB_.PCI0._HID returned an integer 0x080ad041 (EISA ID PNP0A08). PASSED: Test 6, \_SB_.PCI0.APIC._HID returned an integer 0x0300d041 (EISA ID PNP0003). PASSED: Test 6, \_SB_.PCI0.LPC0.DMAC._HID returned an integer 0x0002d041 (EISA ID PNP0200). PASSED: Test 6, \_SB_.PCI0.LPC0.RTC_._HID returned an integer 0x000bd041 (EISA ID PNP0B00). PASSED: Test 6, \_SB_.PCI0.LPC0.PIC_._HID returned an integer 0x0000d041 (EISA ID PNP0000). PASSED: Test 6, \_SB_.PCI0.LPC0.FPU_._HID returned an integer 0x040cd041 (EISA ID PNP0C04). PASSED: Test 6, \_SB_.PCI0.LPC0.TMR_._HID returned an integer 0x0001d041 (EISA ID PNP0100). PASSED: Test 6, \_SB_.PCI0.LPC0.SPKR._HID returned an integer 0x0008d041 (EISA ID PNP0800). PASSED: Test 6, \_SB_.PCI0.LPC0.HPET._HID returned an integer 0x0301d041 (EISA ID PNP0103). PASSED: Test 6, \_SB_.PCI0.LPC0.XTRA._HID returned an integer 0x020cd041 (EISA ID PNP0C02). PASSED: Test 6, \_SB_.PCI0.LPC0.SIO1._HID returned an integer 0x020cd041 (EISA ID PNP0C02). PASSED: Test 6, \_SB_.PCI0.LPC0.UAR1._HID returned an integer 0x0105d041 (EISA ID PNP0501). PASSED: Test 6, \_SB_.PCI0.LPC0.UAR2._HID returned an integer 0x0105d041 (EISA ID PNP0501). PASSED: Test 6, \_SB_.PCI0.LPC0.LPC2._HID returned an integer 0x080cd041 (EISA ID PNP0C08). PASSED: Test 6, \_SB_.PCI0.LPC0.SPMI._HID returned an integer 0x01000926 (EISA ID IPI0001). PASSED: Test 6, \_SB_.PCI0.TPM_._HID returned an integer 0x310cd041 (EISA ID PNP0C31). PASSED: Test 6, \_SB_.PCI1._HID returned an integer 0x080ad041 (EISA ID PNP0A08). PASSED: Test 6, \_SB_.PCI2._HID returned an integer 0x080ad041 (EISA ID PNP0A08). PASSED: Test 6, \_SB_.PCI3._HID returned an integer 0x080ad041 (EISA ID PNP0A08). PASSED: Test 6, \_SB_.PWRB._HID returned an integer 0x0c0cd041 (EISA ID PNP0C0C). PASSED: Test 6, \_SB_.LNKA._HID returned an integer 0x0f0cd041 (EISA ID PNP0C0F). PASSED: Test 6, \_SB_.LNKB._HID returned an integer 0x0f0cd041 (EISA ID PNP0C0F). PASSED: Test 6, \_SB_.LNKC._HID returned an integer 0x0f0cd041 (EISA ID PNP0C0F). PASSED: Test 6, \_SB_.LNKD._HID returned an integer 0x0f0cd041 (EISA ID PNP0C0F). PASSED: Test 6, \_SB_.LNKE._HID returned an integer 0x0f0cd041 (EISA ID PNP0C0F). PASSED: Test 6, \_SB_.LNKF._HID returned an integer 0x0f0cd041 (EISA ID PNP0C0F). PASSED: Test 6, \_SB_.LNKG._HID returned an integer 0x0f0cd041 (EISA ID PNP0C0F). PASSED: Test 6, \_SB_.LNKH._HID returned an integer 0x0f0cd041 (EISA ID PNP0C0F). PASSED: Test 6, \_SB_.PMT1._HID returned a string 'ACPI000D' as expected. Test 7 of 155: Test _HRV (Hardware Revision Number). SKIPPED: Test 7, Skipping test for non-existant object _HRV. Test 8 of 155: Test _PLD (Physical Device Location). PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS01._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS02._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS03._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS04._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS05._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS06._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS07._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS08._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS09._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS10._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS11._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS12._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS13._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.HS14._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.SSP1._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.SSP2._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.SSP3._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.SSP4._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.SSP5._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.XHCI.RHUB.SSP6._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC1.HUBN.PR01._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC1.HUBN.PR01.PR11._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC1.HUBN.PR01.PR12._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC1.HUBN.PR01.PR13._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC1.HUBN.PR01.PR14._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC1.HUBN.PR01.PR15._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC1.HUBN.PR01.PR16._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC1.HUBN.PR01.PR17._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC1.HUBN.PR01.PR18._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC2.HUBN.PR01._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC2.HUBN.PR01.PR11._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC2.HUBN.PR01.PR12._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC2.HUBN.PR01.PR13._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC2.HUBN.PR01.PR14._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC2.HUBN.PR01.PR15._PLD correctly returned a sane looking package. PASSED: Test 8, \_SB_.PCI0.EHC2.HUBN.PR01.PR16._PLD correctly returned a sane looking package. Test 9 of 155: Test _SUB (Subsystem ID). SKIPPED: Test 9, Skipping test for non-existant object _SUB. Test 10 of 155: Test _SUN (Slot User Number). PASSED: Test 10, \_SB_.PCI0.DMI0.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.DMI0.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.DMI0.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.DMI0.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.DMI0.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.DMI0.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.DMI0.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.DMI0.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR1B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2C.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2C.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2C.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2C.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2C.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2C.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2C.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2C.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2D.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2D.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2D.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2D.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2D.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2D.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2D.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR2D.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3C.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3C.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3C.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3C.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3C.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3C.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3C.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3C.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3D.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3D.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3D.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3D.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3D.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3D.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3D.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI0.BR3D.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QRP0.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QRP0.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QRP0.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QRP0.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QRP0.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QRP0.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QRP0.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QRP0.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR1B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2C.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2C.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2C.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2C.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2C.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2C.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2C.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2C.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2D.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2D.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2D.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2D.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2D.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2D.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2D.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR2D.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3C.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3C.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3C.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3C.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3C.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3C.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3C.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3C.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3D.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3D.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3D.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3D.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3D.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3D.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3D.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI1.QR3D.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RRP0.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RRP0.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RRP0.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RRP0.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RRP0.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RRP0.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RRP0.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RRP0.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR1B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2C.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2C.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2C.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2C.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2C.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2C.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2C.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2C.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2D.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2D.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2D.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2D.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2D.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2D.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2D.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR2D.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3C.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3C.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3C.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3C.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3C.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3C.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3C.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3C.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3D.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3D.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3D.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3D.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3D.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3D.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3D.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI2.RR3D.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SRP0.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SRP0.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SRP0.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SRP0.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SRP0.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SRP0.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SRP0.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SRP0.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR1B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2C.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2C.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2C.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2C.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2C.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2C.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2C.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2C.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2D.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2D.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2D.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2D.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2D.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2D.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2D.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR2D.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3A.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3A.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3A.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3A.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3A.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3A.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3A.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3A.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3B.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3B.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3B.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3B.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3B.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3B.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3B.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3B.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3C.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3C.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3C.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3C.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3C.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3C.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3C.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3C.H007._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3D.H000._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3D.H001._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3D.H002._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3D.H003._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3D.H004._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3D.H005._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3D.H006._SUN correctly returned an integer. PASSED: Test 10, \_SB_.PCI3.SR3D.H007._SUN correctly returned an integer. Test 11 of 155: Test _STR (String). FAILED [MEDIUM] MethodReturnBadType: Test 11, Method \_SB_.PCI0.LPC0.SPMI._STR did not return ACPI_TYPE_STRING. FAILED [MEDIUM] MethodReturnBadType: Test 11, Method \_SB_.PCI0.TPM_._STR did not return ACPI_TYPE_STRING. Test 12 of 155: Test _UID (Unique ID). PASSED: Test 12, \_SB_.UNC3._UID correctly returned sane looking value 0x000000ff. PASSED: Test 12, \_SB_.UNC2._UID correctly returned sane looking value 0x000000bf. PASSED: Test 12, \_SB_.UNC1._UID correctly returned sane looking value 0x0000007f. PASSED: Test 12, \_SB_.UNC0._UID correctly returned sane looking value 0x0000003f. PASSED: Test 12, \_SB_.SCK0._UID returned a string 'CPUSCK0' as expected. PASSED: Test 12, \_SB_.SCK1._UID returned a string 'CPUSCK1' as expected. PASSED: Test 12, \_SB_.SCK2._UID returned a string 'CPUSCK2' as expected. PASSED: Test 12, \_SB_.SCK3._UID returned a string 'CPUSCK3' as expected. PASSED: Test 12, \_SB_.WERR._UID correctly returned sane looking value 0x00000000. PASSED: Test 12, \_SB_.SRIO._UID correctly returned sane looking value 0x00000000. PASSED: Test 12, \_SB_.PCI0._UID correctly returned sane looking value 0x00000000. PASSED: Test 12, \_SB_.PCI0.IIOP._UID returned a string 'PCI0PRES' as expected. PASSED: Test 12, \_SB_.PCI0.MHP0._UID returned a string '00-00' as expected. PASSED: Test 12, \_SB_.PCI0.MHP1._UID returned a string '00-01' as expected. PASSED: Test 12, \_SB_.PCI0.LPC0.XTRA._UID correctly returned sane looking value 0x00000010. PASSED: Test 12, \_SB_.PCI0.LPC0.SIO1._UID correctly returned sane looking value 0x00000000. PASSED: Test 12, \_SB_.PCI0.LPC0.UAR1._UID correctly returned sane looking value 0x00000000. PASSED: Test 12, \_SB_.PCI0.LPC0.UAR2._UID correctly returned sane looking value 0x00000001. PASSED: Test 12, \_SB_.PCI0.LPC0.LPC2._UID correctly returned sane looking value 0x00000002. PASSED: Test 12, \_SB_.PCI0.LPC0.SPMI._UID correctly returned sane looking value 0x00000000. PASSED: Test 12, \_SB_.PCI0.TPM_._UID correctly returned sane looking value 0x00000001. PASSED: Test 12, \_SB_.PCI1._UID correctly returned sane looking value 0x00000040. PASSED: Test 12, \_SB_.PCI1.IIOP._UID returned a string 'IIO1PRES' as expected. PASSED: Test 12, \_SB_.PCI1.MHP0._UID returned a string '01-00' as expected. PASSED: Test 12, \_SB_.PCI1.MHP1._UID returned a string '01-01' as expected. PASSED: Test 12, \_SB_.PCI2._UID correctly returned sane looking value 0x00000080. PASSED: Test 12, \_SB_.PCI2.IIOP._UID returned a string 'IIO2PRES' as expected. PASSED: Test 12, \_SB_.PCI2.MHP0._UID returned a string '02-00' as expected. PASSED: Test 12, \_SB_.PCI2.MHP1._UID returned a string '02-01' as expected. PASSED: Test 12, \_SB_.PCI3._UID correctly returned sane looking value 0x000000c0. PASSED: Test 12, \_SB_.PCI3.IIOP._UID returned a string 'IIO3PRES' as expected. PASSED: Test 12, \_SB_.PCI3.MHP0._UID returned a string '03-00' as expected. PASSED: Test 12, \_SB_.PCI3.MHP1._UID returned a string '03-01' as expected. PASSED: Test 12, \_SB_.PWRB._UID correctly returned sane looking value 0x000000aa. PASSED: Test 12, \_SB_.LNKA._UID correctly returned sane looking value 0x00000001. PASSED: Test 12, \_SB_.LNKB._UID correctly returned sane looking value 0x00000002. PASSED: Test 12, \_SB_.LNKC._UID correctly returned sane looking value 0x00000003. PASSED: Test 12, \_SB_.LNKD._UID correctly returned sane looking value 0x00000004. PASSED: Test 12, \_SB_.LNKE._UID correctly returned sane looking value 0x00000005. PASSED: Test 12, \_SB_.LNKF._UID correctly returned sane looking value 0x00000006. PASSED: Test 12, \_SB_.LNKG._UID correctly returned sane looking value 0x00000007. PASSED: Test 12, \_SB_.LNKH._UID correctly returned sane looking value 0x00000008. PASSED: Test 12, \_SB_.PMT1._UID correctly returned sane looking value 0x00000000. Test 13 of 155: Test _CDM (Clock Domain). SKIPPED: Test 13, Skipping test for non-existant object _CDM. Test 14 of 155: Test _CRS (Current Resource Settings). PASSED: Test 14, \_SB_.UNC3._CRS (WORD Address Space Descriptor) looks sane. PASSED: Test 14, \_SB_.UNC2._CRS (WORD Address Space Descriptor) looks sane. PASSED: Test 14, \_SB_.UNC1._CRS (WORD Address Space Descriptor) looks sane. PASSED: Test 14, \_SB_.UNC0._CRS (WORD Address Space Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.APIC._CRS (32-bit Fixed Location Memory Range Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0._CRS (WORD Address Space Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.DMAC._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.RTC_._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.PIC_._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.FPU_._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.TMR_._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.SPKR._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.HPET._CRS (32-bit Fixed Location Memory Range Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.XTRA._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.SIO1._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.UAR1._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.UAR2._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.LPC0.SPMI._CRS (I/O Port Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI0.TPM_._CRS (32-bit Fixed Location Memory Range Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI1._CRS (WORD Address Space Descriptor) looks sane. PASSED: Test 14, \_SB_.PCI2._CRS (WORD Address Space Descriptor) looks sane. FAILED [MEDIUM] Method_CRS64BitWordAddrSpaceMaxLessThanMin: Test 14, \_SB_.PCI3._CRS WORD Address Space Descriptor minimum address range 0x4858 is greater than the maximum address range 0x0. ADVICE: See section '6.4.3.5 Address Space Resource Descriptors' table 6-179 of the ACPI specification for more details about how the _MIF, _MAF and memory range and granularity rules apply. Typically the kernel does not care about these being correct, so this is a minor issue. FAILED [MEDIUM] Method_CRS64BitWordAddrSpaceLengthInvalid: Test 14, \_SB_.PCI3._CRS WORD Address Space Descriptor length 0x1 does not match the difference between the minimum and maximum address ranges 0x4858-0x0. ADVICE: See section '6.4.3.5 Address Space Resource Descriptors' table 6-179 of the ACPI specification for more details about how the _MIF, _MAF and memory range and granularity rules apply. Typically the kernel does not care about these being correct, so this is a minor issue. PASSED: Test 14, \_SB_.LNKA._CRS (IRQ Descriptor) looks sane. PASSED: Test 14, \_SB_.LNKB._CRS (IRQ Descriptor) looks sane. PASSED: Test 14, \_SB_.LNKC._CRS (IRQ Descriptor) looks sane. PASSED: Test 14, \_SB_.LNKD._CRS (IRQ Descriptor) looks sane. PASSED: Test 14, \_SB_.LNKE._CRS (IRQ Descriptor) looks sane. PASSED: Test 14, \_SB_.LNKF._CRS (IRQ Descriptor) looks sane. PASSED: Test 14, \_SB_.LNKG._CRS (IRQ Descriptor) looks sane. PASSED: Test 14, \_SB_.LNKH._CRS (IRQ Descriptor) looks sane. Test 15 of 155: Test _DIS (Disable). PASSED: Test 15, \_SB_.PCI0.LPC0.UAR1._DIS returned no values as expected. PASSED: Test 15, \_SB_.PCI0.LPC0.UAR2._DIS returned no values as expected. PASSED: Test 15, \_SB_.LNKA._DIS returned no values as expected. PASSED: Test 15, \_SB_.LNKB._DIS returned no values as expected. PASSED: Test 15, \_SB_.LNKC._DIS returned no values as expected. PASSED: Test 15, \_SB_.LNKD._DIS returned no values as expected. PASSED: Test 15, \_SB_.LNKE._DIS returned no values as expected. PASSED: Test 15, \_SB_.LNKF._DIS returned no values as expected. PASSED: Test 15, \_SB_.LNKG._DIS returned no values as expected. PASSED: Test 15, \_SB_.LNKH._DIS returned no values as expected. Test 16 of 155: Test _DMA (Direct Memory Access). SKIPPED: Test 16, Skipping test for non-existant object _DMA. Test 17 of 155: Test _FIX (Fixed Register Resource Provider). SKIPPED: Test 17, Skipping test for non-existant object _FIX. Test 18 of 155: Test _GSB (Global System Interrupt Base). SKIPPED: Test 18, Skipping test for non-existant object _GSB. Test 19 of 155: Test _HPP (Hot Plug Parameters). PASSED: Test 19, \_SB_.PCI0.DMI0._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI0.BR1A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI0.BR1B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI0.BR2A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI0.BR2B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI0.BR2C._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI0.BR2D._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI0.BR3A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI0.BR3B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI0.BR3C._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI0.BR3D._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QRP0._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QR1A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QR1B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QR2A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QR2B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QR2C._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QR2D._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QR3A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QR3B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QR3C._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI1.QR3D._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RRP0._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RR1A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RR1B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RR2A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RR2B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RR2C._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RR2D._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RR3A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RR3B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RR3C._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI2.RR3D._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SRP0._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SR1A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SR1B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SR2A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SR2B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SR2C._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SR2D._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SR3A._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SR3B._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SR3C._HPP correctly returned a sane looking package. PASSED: Test 19, \_SB_.PCI3.SR3D._HPP correctly returned a sane looking package. Test 20 of 155: Test _PRS (Possible Resource Settings). PASSED: Test 20, \_SB_.PCI0.LPC0.UAR1._PRS (Start Dependent Functions Descriptor) looks sane. PASSED: Test 20, \_SB_.PCI0.LPC0.UAR2._PRS (Start Dependent Functions Descriptor) looks sane. PASSED: Test 20, \_SB_.LNKA._PRS (IRQ Descriptor) looks sane. PASSED: Test 20, \_SB_.LNKB._PRS (IRQ Descriptor) looks sane. PASSED: Test 20, \_SB_.LNKC._PRS (IRQ Descriptor) looks sane. PASSED: Test 20, \_SB_.LNKD._PRS (IRQ Descriptor) looks sane. PASSED: Test 20, \_SB_.LNKE._PRS (IRQ Descriptor) looks sane. PASSED: Test 20, \_SB_.LNKF._PRS (IRQ Descriptor) looks sane. PASSED: Test 20, \_SB_.LNKG._PRS (IRQ Descriptor) looks sane. PASSED: Test 20, \_SB_.LNKH._PRS (IRQ Descriptor) looks sane. Test 21 of 155: Test _PXM (Proximity). PASSED: Test 21, \_SB_.PCI0._PXM correctly returned an integer. PASSED: Test 21, \_SB_.PCI1._PXM correctly returned an integer. PASSED: Test 21, \_SB_.PCI2._PXM correctly returned an integer. PASSED: Test 21, \_SB_.PCI3._PXM correctly returned an integer. Test 22 of 155: Test _EDL (Eject Device List). SKIPPED: Test 22, Skipping test for non-existant object _EDL. Test 23 of 155: Test _EJD (Ejection Dependent Device). PASSED: Test 23, \_SB_.UNC3._EJD correctly returned a string. PASSED: Test 23, \_SB_.UNC2._EJD correctly returned a string. PASSED: Test 23, \_SB_.UNC1._EJD correctly returned a string. PASSED: Test 23, \_SB_.UNC0._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QRP0._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QR1A._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QR1B._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QR2A._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QR2B._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QR2C._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QR2D._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QR3A._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QR3B._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QR3C._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI1.QR3D._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RRP0._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RR1A._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RR1B._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RR2A._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RR2B._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RR2C._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RR2D._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RR3A._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RR3B._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RR3C._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI2.RR3D._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SRP0._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SR1A._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SR1B._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SR2A._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SR2B._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SR2C._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SR2D._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SR3A._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SR3B._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SR3C._EJD correctly returned a string. PASSED: Test 23, \_SB_.PCI3.SR3D._EJD correctly returned a string. Test 24 of 155: Test _EJ0 (Eject). SKIPPED: Test 24, Skipping test for non-existant object _EJ0. Test 25 of 155: Test _EJ1 (Eject). SKIPPED: Test 25, Skipping test for non-existant object _EJ1. Test 26 of 155: Test _EJ2 (Eject). SKIPPED: Test 26, Skipping test for non-existant object _EJ2. Test 27 of 155: Test _EJ3 (Eject). SKIPPED: Test 27, Skipping test for non-existant object _EJ3. Test 28 of 155: Test _EJ4 (Eject). SKIPPED: Test 28, Skipping test for non-existant object _EJ4. Test 29 of 155: Test _LCK (Lock). SKIPPED: Test 29, Skipping test for non-existant object _LCK. Test 30 of 155: Test _RMV (Remove). SKIPPED: Test 30, Skipping test for non-existant object _RMV. Test 31 of 155: Test _STA (Status). PASSED: Test 31, \_SB_.UNC3._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.UNC2._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.UNC1._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.UNC0._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.WERR._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.SRIO._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.LPC0.HPET._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.PCI0.LPC0.UAR1._STA correctly returned sane looking value 0x0000000d. PASSED: Test 31, \_SB_.PCI0.LPC0.UAR2._STA correctly returned sane looking value 0x0000000d. PASSED: Test 31, \_SB_.PCI0.LPC0.LPC2._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.PCI0.LPC0.SPMI._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS01._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS02._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS03._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS04._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS05._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS06._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS07._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS08._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS09._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS10._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS11._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS12._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS13._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.HS14._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.SSP1._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.SSP2._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.SSP3._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.SSP4._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.SSP5._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.XHCI.RHUB.SSP6._STA correctly returned sane looking value 0x0000000f. PASSED: Test 31, \_SB_.PCI0.HECI._STA correctly returned sane looking value 0x00000009. PASSED: Test 31, \_SB_.PCI0.HEC2._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.PCI0.TPM_._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.PCI1._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.PCI2._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.PCI3._STA correctly returned sane looking value 0x00000000. PASSED: Test 31, \_SB_.PWRB._STA correctly returned sane looking value 0x0000000b. PASSED: Test 31, \_SB_.LNKA._STA correctly returned sane looking value 0x0000000b. PASSED: Test 31, \_SB_.LNKB._STA correctly returned sane looking value 0x0000000b. PASSED: Test 31, \_SB_.LNKC._STA correctly returned sane looking value 0x0000000b. PASSED: Test 31, \_SB_.LNKD._STA correctly returned sane looking value 0x0000000b. PASSED: Test 31, \_SB_.LNKE._STA correctly returned sane looking value 0x0000000b. PASSED: Test 31, \_SB_.LNKF._STA correctly returned sane looking value 0x0000000b. PASSED: Test 31, \_SB_.LNKG._STA correctly returned sane looking value 0x0000000b. PASSED: Test 31, \_SB_.LNKH._STA correctly returned sane looking value 0x0000000b. PASSED: Test 31, \_SB_.PMT1._STA correctly returned sane looking value 0x00000004. Test 32 of 155: Test _BDN (BIOS Dock Name). SKIPPED: Test 32, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BDN. Test 33 of 155: Test _BBN (Base Bus Number). PASSED: Test 33, \_SB_.UNC3._BBN correctly returned an integer. PASSED: Test 33, \_SB_.UNC2._BBN correctly returned an integer. PASSED: Test 33, \_SB_.UNC1._BBN correctly returned an integer. PASSED: Test 33, \_SB_.UNC0._BBN correctly returned an integer. PASSED: Test 33, \_SB_.PCI0._BBN correctly returned an integer. PASSED: Test 33, \_SB_.PCI1._BBN correctly returned an integer. PASSED: Test 33, \_SB_.PCI2._BBN correctly returned an integer. PASSED: Test 33, \_SB_.PCI3._BBN correctly returned an integer. Test 34 of 155: Test _DCK (Dock). SKIPPED: Test 34, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _DCK. Test 35 of 155: Test _INI (Initialize). PASSED: Test 35, \_SB_._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.LPC0.SPMI._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.XHCI._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.EHC1._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.EHC2._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.HEC2._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.DMI0._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.BR1A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.BR1B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.BR2A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.BR2B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.BR2C._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.BR2D._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.BR3A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.BR3B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.BR3C._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI0.BR3D._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QRP0._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QR1A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QR1B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QR2A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QR2B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QR2C._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QR2D._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QR3A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QR3B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QR3C._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI1.QR3D._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RRP0._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RR1A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RR1B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RR2A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RR2B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RR2C._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RR2D._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RR3A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RR3B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RR3C._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI2.RR3D._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SRP0._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SR1A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SR1B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SR2A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SR2B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SR2C._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SR2D._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SR3A._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SR3B._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SR3C._INI returned no values as expected. PASSED: Test 35, \_SB_.PCI3.SR3D._INI returned no values as expected. Test 36 of 155: Test _SEG (Segment). SKIPPED: Test 36, Skipping test for non-existant object _SEG. Test 37 of 155: Test _OFF (Set resource off). SKIPPED: Test 37, Skipping test for non-existant object _OFF. Test 38 of 155: Test _ON (Set resource on). SKIPPED: Test 38, Skipping test for non-existant object _ON. Test 39 of 155: Test _DSW (Device Sleep Wake). SKIPPED: Test 39, Skipping test for non-existant object _DSW. Test 40 of 155: Test _IRC (In Rush Current). SKIPPED: Test 40, Skipping test for non-existant object _IRC. Test 41 of 155: Test _PRE (Power Resources for Enumeration). SKIPPED: Test 41, Skipping test for non-existant object _PRE. Test 42 of 155: Test _PR0 (Power Resources for D0). SKIPPED: Test 42, Skipping test for non-existant object _PR0. Test 43 of 155: Test _PR1 (Power Resources for D1). SKIPPED: Test 43, Skipping test for non-existant object _PR1. Test 44 of 155: Test _PR2 (Power Resources for D2). SKIPPED: Test 44, Skipping test for non-existant object _PR2. Test 45 of 155: Test _PR3 (Power Resources for D3). SKIPPED: Test 45, Skipping test for non-existant object _PR3. Test 46 of 155: Test _PS0 (Power State 0). SKIPPED: Test 46, Skipping test for non-existant object _PS0. Test 47 of 155: Test _PS1 (Power State 1). SKIPPED: Test 47, Skipping test for non-existant object _PS1. Test 48 of 155: Test _PS2 (Power State 2). SKIPPED: Test 48, Skipping test for non-existant object _PS2. Test 49 of 155: Test _PS3 (Power State 3). SKIPPED: Test 49, Skipping test for non-existant object _PS3. Test 50 of 155: Test _PSC (Power State Current). SKIPPED: Test 50, Skipping test for non-existant object _PSC. Test 51 of 155: Test _PSE (Power State for Enumeration). SKIPPED: Test 51, Skipping test for non-existant object _PSE. Test 52 of 155: Test _PSW (Power State Wake). PASSED: Test 52, \_SB_.PCI0.XHCI._PSW returned no values as expected. PASSED: Test 52, \_SB_.PCI0.EHC1._PSW returned no values as expected. PASSED: Test 52, \_SB_.PCI0.EHC2._PSW returned no values as expected. Test 53 of 155: Test _S1D (S1 Device State). SKIPPED: Test 53, Skipping test for non-existant object _S1D. Test 54 of 155: Test _S2D (S2 Device State). SKIPPED: Test 54, Skipping test for non-existant object _S2D. Test 55 of 155: Test _S3D (S3 Device State). PASSED: Test 55, \_SB_.PCI0.XHCI._S3D correctly returned an integer. PASSED: Test 55, \_SB_.PCI0.EHC1._S3D correctly returned an integer. PASSED: Test 55, \_SB_.PCI0.EHC2._S3D correctly returned an integer. Test 56 of 155: Test _S4D (S4 Device State). PASSED: Test 56, \_SB_.PCI0.XHCI._S4D correctly returned an integer. PASSED: Test 56, \_SB_.PCI0.EHC1._S4D correctly returned an integer. PASSED: Test 56, \_SB_.PCI0.EHC2._S4D correctly returned an integer. Test 57 of 155: Test _S0W (S0 Device Wake State). SKIPPED: Test 57, Skipping test for non-existant object _S0W. Test 58 of 155: Test _S1W (S1 Device Wake State). SKIPPED: Test 58, Skipping test for non-existant object _S1W. Test 59 of 155: Test _S2W (S2 Device Wake State). SKIPPED: Test 59, Skipping test for non-existant object _S2W. Test 60 of 155: Test _S3W (S3 Device Wake State). SKIPPED: Test 60, Skipping test for non-existant object _S3W. Test 61 of 155: Test _S4W (S4 Device Wake State). SKIPPED: Test 61, Skipping test for non-existant object _S4W. Test 62 of 155: Test _S0_ (S0 System State). \_S0_ PM1a_CNT.SLP_TYP value: 0x00000000 \_S0_ PM1b_CNT.SLP_TYP value: 0x00000000 PASSED: Test 62, \_S0_ correctly returned a sane looking package. Test 63 of 155: Test _S1_ (S1 System State). SKIPPED: Test 63, Skipping test for non-existant object _S1_. Test 64 of 155: Test _S2_ (S2 System State). SKIPPED: Test 64, Skipping test for non-existant object _S2_. Test 65 of 155: Test _S3_ (S3 System State). SKIPPED: Test 65, Skipping test for non-existant object _S3_. Test 66 of 155: Test _S4_ (S4 System State). SKIPPED: Test 66, Skipping test for non-existant object _S4_. Test 67 of 155: Test _S5_ (S5 System State). \_S5_ PM1a_CNT.SLP_TYP value: 0x00000007 \_S5_ PM1b_CNT.SLP_TYP value: 0x00000000 PASSED: Test 67, \_S5_ correctly returned a sane looking package. Test 68 of 155: Test _SWS (System Wake Source). SKIPPED: Test 68, Skipping test for non-existant object _SWS. Test 69 of 155: Test _PSS (Performance Supported States). \_SB_.SCK0.CP00._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP00._PSS correctly returned a sane looking package. \_SB_.SCK0.CP01._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP01._PSS correctly returned a sane looking package. \_SB_.SCK0.CP02._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP02._PSS correctly returned a sane looking package. \_SB_.SCK0.CP03._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP03._PSS correctly returned a sane looking package. \_SB_.SCK0.CP04._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP04._PSS correctly returned a sane looking package. \_SB_.SCK0.CP05._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP05._PSS correctly returned a sane looking package. \_SB_.SCK0.CP06._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP06._PSS correctly returned a sane looking package. \_SB_.SCK0.CP07._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP07._PSS correctly returned a sane looking package. \_SB_.SCK0.CP08._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP08._PSS correctly returned a sane looking package. \_SB_.SCK0.CP09._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP09._PSS correctly returned a sane looking package. \_SB_.SCK0.CP0A._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP0A._PSS correctly returned a sane looking package. \_SB_.SCK0.CP0B._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP0B._PSS correctly returned a sane looking package. \_SB_.SCK0.CP0C._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP0C._PSS correctly returned a sane looking package. \_SB_.SCK0.CP0D._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP0D._PSS correctly returned a sane looking package. \_SB_.SCK0.CP0E._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP0E._PSS correctly returned a sane looking package. \_SB_.SCK0.CP0F._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP0F._PSS correctly returned a sane looking package. \_SB_.SCK0.CP10._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP10._PSS correctly returned a sane looking package. \_SB_.SCK0.CP11._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP11._PSS correctly returned a sane looking package. \_SB_.SCK0.CP12._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP12._PSS correctly returned a sane looking package. \_SB_.SCK0.CP13._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP13._PSS correctly returned a sane looking package. \_SB_.SCK0.CP14._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP14._PSS correctly returned a sane looking package. \_SB_.SCK0.CP15._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP15._PSS correctly returned a sane looking package. \_SB_.SCK0.CP16._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP16._PSS correctly returned a sane looking package. \_SB_.SCK0.CP17._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP17._PSS correctly returned a sane looking package. \_SB_.SCK0.CP18._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP18._PSS correctly returned a sane looking package. \_SB_.SCK0.CP19._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP19._PSS correctly returned a sane looking package. \_SB_.SCK0.CP1A._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP1A._PSS correctly returned a sane looking package. \_SB_.SCK0.CP1B._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP1B._PSS correctly returned a sane looking package. \_SB_.SCK0.CP1C._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP1C._PSS correctly returned a sane looking package. \_SB_.SCK0.CP1D._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP1D._PSS correctly returned a sane looking package. \_SB_.SCK0.CP1E._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP1E._PSS correctly returned a sane looking package. \_SB_.SCK0.CP1F._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP1F._PSS correctly returned a sane looking package. \_SB_.SCK0.CP20._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP20._PSS correctly returned a sane looking package. \_SB_.SCK0.CP21._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP21._PSS correctly returned a sane looking package. \_SB_.SCK0.CP22._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP22._PSS correctly returned a sane looking package. \_SB_.SCK0.CP23._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK0.CP23._PSS correctly returned a sane looking package. \_SB_.SCK1.CP00._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP00._PSS correctly returned a sane looking package. \_SB_.SCK1.CP01._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP01._PSS correctly returned a sane looking package. \_SB_.SCK1.CP02._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP02._PSS correctly returned a sane looking package. \_SB_.SCK1.CP03._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP03._PSS correctly returned a sane looking package. \_SB_.SCK1.CP04._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP04._PSS correctly returned a sane looking package. \_SB_.SCK1.CP05._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP05._PSS correctly returned a sane looking package. \_SB_.SCK1.CP06._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP06._PSS correctly returned a sane looking package. \_SB_.SCK1.CP07._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP07._PSS correctly returned a sane looking package. \_SB_.SCK1.CP08._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP08._PSS correctly returned a sane looking package. \_SB_.SCK1.CP09._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP09._PSS correctly returned a sane looking package. \_SB_.SCK1.CP0A._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP0A._PSS correctly returned a sane looking package. \_SB_.SCK1.CP0B._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP0B._PSS correctly returned a sane looking package. \_SB_.SCK1.CP0C._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP0C._PSS correctly returned a sane looking package. \_SB_.SCK1.CP0D._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP0D._PSS correctly returned a sane looking package. \_SB_.SCK1.CP0E._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP0E._PSS correctly returned a sane looking package. \_SB_.SCK1.CP0F._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP0F._PSS correctly returned a sane looking package. \_SB_.SCK1.CP10._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP10._PSS correctly returned a sane looking package. \_SB_.SCK1.CP11._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP11._PSS correctly returned a sane looking package. \_SB_.SCK1.CP12._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP12._PSS correctly returned a sane looking package. \_SB_.SCK1.CP13._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP13._PSS correctly returned a sane looking package. \_SB_.SCK1.CP14._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP14._PSS correctly returned a sane looking package. \_SB_.SCK1.CP15._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP15._PSS correctly returned a sane looking package. \_SB_.SCK1.CP16._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP16._PSS correctly returned a sane looking package. \_SB_.SCK1.CP17._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP17._PSS correctly returned a sane looking package. \_SB_.SCK1.CP18._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP18._PSS correctly returned a sane looking package. \_SB_.SCK1.CP19._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP19._PSS correctly returned a sane looking package. \_SB_.SCK1.CP1A._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP1A._PSS correctly returned a sane looking package. \_SB_.SCK1.CP1B._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP1B._PSS correctly returned a sane looking package. \_SB_.SCK1.CP1C._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP1C._PSS correctly returned a sane looking package. \_SB_.SCK1.CP1D._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP1D._PSS correctly returned a sane looking package. \_SB_.SCK1.CP1E._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP1E._PSS correctly returned a sane looking package. \_SB_.SCK1.CP1F._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP1F._PSS correctly returned a sane looking package. \_SB_.SCK1.CP20._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP20._PSS correctly returned a sane looking package. \_SB_.SCK1.CP21._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP21._PSS correctly returned a sane looking package. \_SB_.SCK1.CP22._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP22._PSS correctly returned a sane looking package. \_SB_.SCK1.CP23._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK1.CP23._PSS correctly returned a sane looking package. \_SB_.SCK2.CP00._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP00._PSS correctly returned a sane looking package. \_SB_.SCK2.CP01._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP01._PSS correctly returned a sane looking package. \_SB_.SCK2.CP02._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP02._PSS correctly returned a sane looking package. \_SB_.SCK2.CP03._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP03._PSS correctly returned a sane looking package. \_SB_.SCK2.CP04._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP04._PSS correctly returned a sane looking package. \_SB_.SCK2.CP05._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP05._PSS correctly returned a sane looking package. \_SB_.SCK2.CP06._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP06._PSS correctly returned a sane looking package. \_SB_.SCK2.CP07._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP07._PSS correctly returned a sane looking package. \_SB_.SCK2.CP08._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP08._PSS correctly returned a sane looking package. \_SB_.SCK2.CP09._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP09._PSS correctly returned a sane looking package. \_SB_.SCK2.CP0A._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP0A._PSS correctly returned a sane looking package. \_SB_.SCK2.CP0B._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP0B._PSS correctly returned a sane looking package. \_SB_.SCK2.CP0C._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP0C._PSS correctly returned a sane looking package. \_SB_.SCK2.CP0D._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP0D._PSS correctly returned a sane looking package. \_SB_.SCK2.CP0E._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP0E._PSS correctly returned a sane looking package. \_SB_.SCK2.CP0F._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP0F._PSS correctly returned a sane looking package. \_SB_.SCK2.CP10._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP10._PSS correctly returned a sane looking package. \_SB_.SCK2.CP11._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP11._PSS correctly returned a sane looking package. \_SB_.SCK2.CP12._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP12._PSS correctly returned a sane looking package. \_SB_.SCK2.CP13._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP13._PSS correctly returned a sane looking package. \_SB_.SCK2.CP14._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP14._PSS correctly returned a sane looking package. \_SB_.SCK2.CP15._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP15._PSS correctly returned a sane looking package. \_SB_.SCK2.CP16._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP16._PSS correctly returned a sane looking package. \_SB_.SCK2.CP17._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP17._PSS correctly returned a sane looking package. \_SB_.SCK2.CP18._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP18._PSS correctly returned a sane looking package. \_SB_.SCK2.CP19._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP19._PSS correctly returned a sane looking package. \_SB_.SCK2.CP1A._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP1A._PSS correctly returned a sane looking package. \_SB_.SCK2.CP1B._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP1B._PSS correctly returned a sane looking package. \_SB_.SCK2.CP1C._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP1C._PSS correctly returned a sane looking package. \_SB_.SCK2.CP1D._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP1D._PSS correctly returned a sane looking package. \_SB_.SCK2.CP1E._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP1E._PSS correctly returned a sane looking package. \_SB_.SCK2.CP1F._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP1F._PSS correctly returned a sane looking package. \_SB_.SCK2.CP20._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP20._PSS correctly returned a sane looking package. \_SB_.SCK2.CP21._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP21._PSS correctly returned a sane looking package. \_SB_.SCK2.CP22._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP22._PSS correctly returned a sane looking package. \_SB_.SCK2.CP23._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK2.CP23._PSS correctly returned a sane looking package. \_SB_.SCK3.CP00._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP00._PSS correctly returned a sane looking package. \_SB_.SCK3.CP01._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP01._PSS correctly returned a sane looking package. \_SB_.SCK3.CP02._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP02._PSS correctly returned a sane looking package. \_SB_.SCK3.CP03._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP03._PSS correctly returned a sane looking package. \_SB_.SCK3.CP04._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP04._PSS correctly returned a sane looking package. \_SB_.SCK3.CP05._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP05._PSS correctly returned a sane looking package. \_SB_.SCK3.CP06._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP06._PSS correctly returned a sane looking package. \_SB_.SCK3.CP07._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP07._PSS correctly returned a sane looking package. \_SB_.SCK3.CP08._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP08._PSS correctly returned a sane looking package. \_SB_.SCK3.CP09._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP09._PSS correctly returned a sane looking package. \_SB_.SCK3.CP0A._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP0A._PSS correctly returned a sane looking package. \_SB_.SCK3.CP0B._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP0B._PSS correctly returned a sane looking package. \_SB_.SCK3.CP0C._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP0C._PSS correctly returned a sane looking package. \_SB_.SCK3.CP0D._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP0D._PSS correctly returned a sane looking package. \_SB_.SCK3.CP0E._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP0E._PSS correctly returned a sane looking package. \_SB_.SCK3.CP0F._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP0F._PSS correctly returned a sane looking package. \_SB_.SCK3.CP10._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP10._PSS correctly returned a sane looking package. \_SB_.SCK3.CP11._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP11._PSS correctly returned a sane looking package. \_SB_.SCK3.CP12._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP12._PSS correctly returned a sane looking package. \_SB_.SCK3.CP13._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP13._PSS correctly returned a sane looking package. \_SB_.SCK3.CP14._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP14._PSS correctly returned a sane looking package. \_SB_.SCK3.CP15._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP15._PSS correctly returned a sane looking package. \_SB_.SCK3.CP16._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP16._PSS correctly returned a sane looking package. \_SB_.SCK3.CP17._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP17._PSS correctly returned a sane looking package. \_SB_.SCK3.CP18._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP18._PSS correctly returned a sane looking package. \_SB_.SCK3.CP19._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP19._PSS correctly returned a sane looking package. \_SB_.SCK3.CP1A._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP1A._PSS correctly returned a sane looking package. \_SB_.SCK3.CP1B._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP1B._PSS correctly returned a sane looking package. \_SB_.SCK3.CP1C._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP1C._PSS correctly returned a sane looking package. \_SB_.SCK3.CP1D._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP1D._PSS correctly returned a sane looking package. \_SB_.SCK3.CP1E._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP1E._PSS correctly returned a sane looking package. \_SB_.SCK3.CP1F._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP1F._PSS correctly returned a sane looking package. \_SB_.SCK3.CP20._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP20._PSS correctly returned a sane looking package. \_SB_.SCK3.CP21._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP21._PSS correctly returned a sane looking package. \_SB_.SCK3.CP22._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP22._PSS correctly returned a sane looking package. \_SB_.SCK3.CP23._PSS values: P-State Freq Power Latency Bus Master (MHz) (mW) (us) Latency (us) 0 2301 135000 10 10 1 2300 135000 10 10 2 2200 126793 10 10 3 2100 120070 10 10 4 2000 112174 10 10 5 1900 105723 10 10 6 1800 99400 10 10 7 1700 91943 10 10 8 1600 85885 10 10 9 1500 79952 10 10 10 1400 72925 10 10 11 1300 67251 10 10 12 1200 61697 10 10 PASSED: Test 69, \_SB_.SCK3.CP23._PSS correctly returned a sane looking package. Test 70 of 155: Test _CPC (Continuous Performance Control). SKIPPED: Test 70, Skipping test for non-existant object _CPC. Test 71 of 155: Test _CSD (C State Dependencies). SKIPPED: Test 71, Skipping test for non-existant object _CSD. Test 72 of 155: Test _CST (C States). \_SB_.SCK0.CP00._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP00._CST correctly returned a sane looking values. \_SB_.SCK0.CP01._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP01._CST correctly returned a sane looking values. \_SB_.SCK0.CP02._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP02._CST correctly returned a sane looking values. \_SB_.SCK0.CP03._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP03._CST correctly returned a sane looking values. \_SB_.SCK0.CP04._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP04._CST correctly returned a sane looking values. \_SB_.SCK0.CP05._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP05._CST correctly returned a sane looking values. \_SB_.SCK0.CP06._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP06._CST correctly returned a sane looking values. \_SB_.SCK0.CP07._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP07._CST correctly returned a sane looking values. \_SB_.SCK0.CP08._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP08._CST correctly returned a sane looking values. \_SB_.SCK0.CP09._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP09._CST correctly returned a sane looking values. \_SB_.SCK0.CP0A._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP0A._CST correctly returned a sane looking values. \_SB_.SCK0.CP0B._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP0B._CST correctly returned a sane looking values. \_SB_.SCK0.CP0C._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP0C._CST correctly returned a sane looking values. \_SB_.SCK0.CP0D._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP0D._CST correctly returned a sane looking values. \_SB_.SCK0.CP0E._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP0E._CST correctly returned a sane looking values. \_SB_.SCK0.CP0F._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP0F._CST correctly returned a sane looking values. \_SB_.SCK0.CP10._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP10._CST correctly returned a sane looking values. \_SB_.SCK0.CP11._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP11._CST correctly returned a sane looking values. \_SB_.SCK0.CP12._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP12._CST correctly returned a sane looking values. \_SB_.SCK0.CP13._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP13._CST correctly returned a sane looking values. \_SB_.SCK0.CP14._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP14._CST correctly returned a sane looking values. \_SB_.SCK0.CP15._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP15._CST correctly returned a sane looking values. \_SB_.SCK0.CP16._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP16._CST correctly returned a sane looking values. \_SB_.SCK0.CP17._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP17._CST correctly returned a sane looking values. \_SB_.SCK0.CP18._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP18._CST correctly returned a sane looking values. \_SB_.SCK0.CP19._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP19._CST correctly returned a sane looking values. \_SB_.SCK0.CP1A._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP1A._CST correctly returned a sane looking values. \_SB_.SCK0.CP1B._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP1B._CST correctly returned a sane looking values. \_SB_.SCK0.CP1C._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP1C._CST correctly returned a sane looking values. \_SB_.SCK0.CP1D._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP1D._CST correctly returned a sane looking values. \_SB_.SCK0.CP1E._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP1E._CST correctly returned a sane looking values. \_SB_.SCK0.CP1F._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP1F._CST correctly returned a sane looking values. \_SB_.SCK0.CP20._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP20._CST correctly returned a sane looking values. \_SB_.SCK0.CP21._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP21._CST correctly returned a sane looking values. \_SB_.SCK0.CP22._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP22._CST correctly returned a sane looking values. \_SB_.SCK0.CP23._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK0.CP23._CST correctly returned a sane looking values. \_SB_.SCK1.CP00._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP00._CST correctly returned a sane looking values. \_SB_.SCK1.CP01._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP01._CST correctly returned a sane looking values. \_SB_.SCK1.CP02._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP02._CST correctly returned a sane looking values. \_SB_.SCK1.CP03._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP03._CST correctly returned a sane looking values. \_SB_.SCK1.CP04._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP04._CST correctly returned a sane looking values. \_SB_.SCK1.CP05._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP05._CST correctly returned a sane looking values. \_SB_.SCK1.CP06._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP06._CST correctly returned a sane looking values. \_SB_.SCK1.CP07._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP07._CST correctly returned a sane looking values. \_SB_.SCK1.CP08._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP08._CST correctly returned a sane looking values. \_SB_.SCK1.CP09._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP09._CST correctly returned a sane looking values. \_SB_.SCK1.CP0A._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP0A._CST correctly returned a sane looking values. \_SB_.SCK1.CP0B._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP0B._CST correctly returned a sane looking values. \_SB_.SCK1.CP0C._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP0C._CST correctly returned a sane looking values. \_SB_.SCK1.CP0D._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP0D._CST correctly returned a sane looking values. \_SB_.SCK1.CP0E._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP0E._CST correctly returned a sane looking values. \_SB_.SCK1.CP0F._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP0F._CST correctly returned a sane looking values. \_SB_.SCK1.CP10._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP10._CST correctly returned a sane looking values. \_SB_.SCK1.CP11._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP11._CST correctly returned a sane looking values. \_SB_.SCK1.CP12._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP12._CST correctly returned a sane looking values. \_SB_.SCK1.CP13._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP13._CST correctly returned a sane looking values. \_SB_.SCK1.CP14._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP14._CST correctly returned a sane looking values. \_SB_.SCK1.CP15._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP15._CST correctly returned a sane looking values. \_SB_.SCK1.CP16._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP16._CST correctly returned a sane looking values. \_SB_.SCK1.CP17._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP17._CST correctly returned a sane looking values. \_SB_.SCK1.CP18._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP18._CST correctly returned a sane looking values. \_SB_.SCK1.CP19._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP19._CST correctly returned a sane looking values. \_SB_.SCK1.CP1A._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP1A._CST correctly returned a sane looking values. \_SB_.SCK1.CP1B._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP1B._CST correctly returned a sane looking values. \_SB_.SCK1.CP1C._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP1C._CST correctly returned a sane looking values. \_SB_.SCK1.CP1D._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP1D._CST correctly returned a sane looking values. \_SB_.SCK1.CP1E._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP1E._CST correctly returned a sane looking values. \_SB_.SCK1.CP1F._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP1F._CST correctly returned a sane looking values. \_SB_.SCK1.CP20._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP20._CST correctly returned a sane looking values. \_SB_.SCK1.CP21._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP21._CST correctly returned a sane looking values. \_SB_.SCK1.CP22._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP22._CST correctly returned a sane looking values. \_SB_.SCK1.CP23._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK1.CP23._CST correctly returned a sane looking values. \_SB_.SCK2.CP00._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP00._CST correctly returned a sane looking values. \_SB_.SCK2.CP01._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP01._CST correctly returned a sane looking values. \_SB_.SCK2.CP02._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP02._CST correctly returned a sane looking values. \_SB_.SCK2.CP03._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP03._CST correctly returned a sane looking values. \_SB_.SCK2.CP04._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP04._CST correctly returned a sane looking values. \_SB_.SCK2.CP05._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP05._CST correctly returned a sane looking values. \_SB_.SCK2.CP06._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP06._CST correctly returned a sane looking values. \_SB_.SCK2.CP07._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP07._CST correctly returned a sane looking values. \_SB_.SCK2.CP08._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP08._CST correctly returned a sane looking values. \_SB_.SCK2.CP09._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP09._CST correctly returned a sane looking values. \_SB_.SCK2.CP0A._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP0A._CST correctly returned a sane looking values. \_SB_.SCK2.CP0B._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP0B._CST correctly returned a sane looking values. \_SB_.SCK2.CP0C._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP0C._CST correctly returned a sane looking values. \_SB_.SCK2.CP0D._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP0D._CST correctly returned a sane looking values. \_SB_.SCK2.CP0E._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP0E._CST correctly returned a sane looking values. \_SB_.SCK2.CP0F._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP0F._CST correctly returned a sane looking values. \_SB_.SCK2.CP10._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP10._CST correctly returned a sane looking values. \_SB_.SCK2.CP11._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP11._CST correctly returned a sane looking values. \_SB_.SCK2.CP12._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP12._CST correctly returned a sane looking values. \_SB_.SCK2.CP13._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP13._CST correctly returned a sane looking values. \_SB_.SCK2.CP14._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP14._CST correctly returned a sane looking values. \_SB_.SCK2.CP15._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP15._CST correctly returned a sane looking values. \_SB_.SCK2.CP16._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP16._CST correctly returned a sane looking values. \_SB_.SCK2.CP17._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP17._CST correctly returned a sane looking values. \_SB_.SCK2.CP18._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP18._CST correctly returned a sane looking values. \_SB_.SCK2.CP19._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP19._CST correctly returned a sane looking values. \_SB_.SCK2.CP1A._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP1A._CST correctly returned a sane looking values. \_SB_.SCK2.CP1B._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP1B._CST correctly returned a sane looking values. \_SB_.SCK2.CP1C._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP1C._CST correctly returned a sane looking values. \_SB_.SCK2.CP1D._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP1D._CST correctly returned a sane looking values. \_SB_.SCK2.CP1E._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP1E._CST correctly returned a sane looking values. \_SB_.SCK2.CP1F._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP1F._CST correctly returned a sane looking values. \_SB_.SCK2.CP20._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP20._CST correctly returned a sane looking values. \_SB_.SCK2.CP21._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP21._CST correctly returned a sane looking values. \_SB_.SCK2.CP22._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP22._CST correctly returned a sane looking values. \_SB_.SCK2.CP23._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK2.CP23._CST correctly returned a sane looking values. \_SB_.SCK3.CP00._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP00._CST correctly returned a sane looking values. \_SB_.SCK3.CP01._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP01._CST correctly returned a sane looking values. \_SB_.SCK3.CP02._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP02._CST correctly returned a sane looking values. \_SB_.SCK3.CP03._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP03._CST correctly returned a sane looking values. \_SB_.SCK3.CP04._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP04._CST correctly returned a sane looking values. \_SB_.SCK3.CP05._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP05._CST correctly returned a sane looking values. \_SB_.SCK3.CP06._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP06._CST correctly returned a sane looking values. \_SB_.SCK3.CP07._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP07._CST correctly returned a sane looking values. \_SB_.SCK3.CP08._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP08._CST correctly returned a sane looking values. \_SB_.SCK3.CP09._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP09._CST correctly returned a sane looking values. \_SB_.SCK3.CP0A._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP0A._CST correctly returned a sane looking values. \_SB_.SCK3.CP0B._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP0B._CST correctly returned a sane looking values. \_SB_.SCK3.CP0C._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP0C._CST correctly returned a sane looking values. \_SB_.SCK3.CP0D._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP0D._CST correctly returned a sane looking values. \_SB_.SCK3.CP0E._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP0E._CST correctly returned a sane looking values. \_SB_.SCK3.CP0F._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP0F._CST correctly returned a sane looking values. \_SB_.SCK3.CP10._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP10._CST correctly returned a sane looking values. \_SB_.SCK3.CP11._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP11._CST correctly returned a sane looking values. \_SB_.SCK3.CP12._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP12._CST correctly returned a sane looking values. \_SB_.SCK3.CP13._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP13._CST correctly returned a sane looking values. \_SB_.SCK3.CP14._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP14._CST correctly returned a sane looking values. \_SB_.SCK3.CP15._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP15._CST correctly returned a sane looking values. \_SB_.SCK3.CP16._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP16._CST correctly returned a sane looking values. \_SB_.SCK3.CP17._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP17._CST correctly returned a sane looking values. \_SB_.SCK3.CP18._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP18._CST correctly returned a sane looking values. \_SB_.SCK3.CP19._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP19._CST correctly returned a sane looking values. \_SB_.SCK3.CP1A._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP1A._CST correctly returned a sane looking values. \_SB_.SCK3.CP1B._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP1B._CST correctly returned a sane looking values. \_SB_.SCK3.CP1C._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP1C._CST correctly returned a sane looking values. \_SB_.SCK3.CP1D._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP1D._CST correctly returned a sane looking values. \_SB_.SCK3.CP1E._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP1E._CST correctly returned a sane looking values. \_SB_.SCK3.CP1F._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP1F._CST correctly returned a sane looking values. \_SB_.SCK3.CP20._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP20._CST correctly returned a sane looking values. \_SB_.SCK3.CP21._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP21._CST correctly returned a sane looking values. \_SB_.SCK3.CP22._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP22._CST correctly returned a sane looking values. \_SB_.SCK3.CP23._CST values: # C-State Latency Power (us) (mW) 1 C1 1 1016 2 C2 41 350 PASSED: Test 72, \_SB_.SCK3.CP23._CST correctly returned a sane looking values. Test 73 of 155: Test _PCT (Performance Control). PASSED: Test 73, \_SB_.SCK0.CP00._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP01._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP02._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP03._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP04._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP05._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP06._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP07._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP08._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP09._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP0A._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP0B._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP0C._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP0D._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP0E._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP0F._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP10._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP11._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP12._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP13._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP14._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP15._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP16._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP17._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP18._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP19._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP1A._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP1B._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP1C._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP1D._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP1E._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP1F._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP20._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP21._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP22._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK0.CP23._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP00._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP01._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP02._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP03._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP04._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP05._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP06._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP07._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP08._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP09._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP0A._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP0B._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP0C._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP0D._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP0E._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP0F._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP10._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP11._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP12._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP13._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP14._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP15._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP16._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP17._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP18._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP19._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP1A._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP1B._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP1C._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP1D._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP1E._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP1F._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP20._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP21._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP22._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK1.CP23._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP00._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP01._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP02._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP03._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP04._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP05._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP06._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP07._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP08._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP09._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP0A._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP0B._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP0C._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP0D._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP0E._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP0F._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP10._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP11._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP12._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP13._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP14._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP15._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP16._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP17._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP18._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP19._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP1A._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP1B._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP1C._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP1D._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP1E._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP1F._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP20._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP21._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP22._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK2.CP23._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP00._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP01._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP02._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP03._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP04._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP05._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP06._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP07._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP08._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP09._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP0A._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP0B._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP0C._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP0D._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP0E._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP0F._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP10._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP11._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP12._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP13._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP14._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP15._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP16._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP17._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP18._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP19._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP1A._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP1B._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP1C._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP1D._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP1E._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP1F._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP20._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP21._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP22._PCT correctly returned a sane looking package. PASSED: Test 73, \_SB_.SCK3.CP23._PCT correctly returned a sane looking package. Test 74 of 155: Test _PDL (P-State Depth Limit). SKIPPED: Test 74, Skipping test for non-existant object _PDL. Test 75 of 155: Test _PPC (Performance Present Capabilities). PASSED: Test 75, \_SB_.SCK0.CP00._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP01._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP02._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP03._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP04._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP05._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP06._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP07._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP08._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP09._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP0A._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP0B._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP0C._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP0D._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP0E._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP0F._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP10._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP11._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP12._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP13._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP14._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP15._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP16._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP17._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP18._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP19._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP1A._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP1B._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP1C._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP1D._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP1E._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP1F._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP20._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP21._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP22._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK0.CP23._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP00._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP01._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP02._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP03._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP04._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP05._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP06._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP07._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP08._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP09._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP0A._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP0B._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP0C._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP0D._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP0E._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP0F._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP10._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP11._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP12._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP13._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP14._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP15._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP16._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP17._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP18._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP19._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP1A._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP1B._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP1C._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP1D._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP1E._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP1F._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP20._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP21._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP22._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK1.CP23._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP00._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP01._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP02._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP03._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP04._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP05._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP06._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP07._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP08._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP09._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP0A._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP0B._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP0C._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP0D._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP0E._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP0F._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP10._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP11._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP12._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP13._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP14._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP15._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP16._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP17._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP18._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP19._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP1A._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP1B._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP1C._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP1D._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP1E._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP1F._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP20._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP21._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP22._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK2.CP23._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP00._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP01._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP02._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP03._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP04._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP05._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP06._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP07._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP08._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP09._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP0A._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP0B._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP0C._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP0D._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP0E._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP0F._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP10._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP11._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP12._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP13._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP14._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP15._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP16._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP17._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP18._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP19._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP1A._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP1B._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP1C._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP1D._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP1E._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP1F._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP20._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP21._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP22._PPC correctly returned an integer. PASSED: Test 75, \_SB_.SCK3.CP23._PPC correctly returned an integer. Test 76 of 155: Test _PPE (Polling for Platform Error). SKIPPED: Test 76, Skipping test for non-existant object _PPE. Test 77 of 155: Test _TDL (T-State Depth Limit). SKIPPED: Test 77, Skipping test for non-existant object _TDL. Test 78 of 155: Test _TPC (Throttling Present Capabilities). PASSED: Test 78, \_SB_.SCK0.CP00._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP01._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP02._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP03._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP04._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP05._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP06._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP07._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP08._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP09._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP0A._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP0B._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP0C._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP0D._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP0E._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP0F._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP10._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP11._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP12._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP13._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP14._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP15._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP16._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP17._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP18._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP19._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP1A._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP1B._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP1C._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP1D._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP1E._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP1F._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP20._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP21._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP22._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK0.CP23._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP00._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP01._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP02._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP03._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP04._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP05._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP06._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP07._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP08._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP09._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP0A._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP0B._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP0C._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP0D._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP0E._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP0F._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP10._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP11._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP12._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP13._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP14._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP15._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP16._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP17._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP18._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP19._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP1A._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP1B._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP1C._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP1D._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP1E._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP1F._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP20._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP21._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP22._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK1.CP23._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP00._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP01._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP02._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP03._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP04._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP05._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP06._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP07._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP08._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP09._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP0A._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP0B._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP0C._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP0D._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP0E._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP0F._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP10._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP11._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP12._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP13._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP14._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP15._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP16._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP17._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP18._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP19._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP1A._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP1B._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP1C._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP1D._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP1E._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP1F._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP20._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP21._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP22._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK2.CP23._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP00._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP01._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP02._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP03._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP04._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP05._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP06._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP07._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP08._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP09._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP0A._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP0B._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP0C._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP0D._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP0E._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP0F._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP10._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP11._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP12._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP13._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP14._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP15._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP16._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP17._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP18._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP19._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP1A._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP1B._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP1C._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP1D._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP1E._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP1F._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP20._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP21._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP22._TPC correctly returned an integer. PASSED: Test 78, \_SB_.SCK3.CP23._TPC correctly returned an integer. Test 79 of 155: Test _TSD (Throttling State Dependencies). SKIPPED: Test 79, Skipping test for non-existant object _TSD. Test 80 of 155: Test _TSS (Throttling Supported States). \_SB_.SCK0.CP00._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP00._TSS correctly returned a sane looking package. \_SB_.SCK0.CP01._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP01._TSS correctly returned a sane looking package. \_SB_.SCK0.CP02._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP02._TSS correctly returned a sane looking package. \_SB_.SCK0.CP03._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP03._TSS correctly returned a sane looking package. \_SB_.SCK0.CP04._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP04._TSS correctly returned a sane looking package. \_SB_.SCK0.CP05._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP05._TSS correctly returned a sane looking package. \_SB_.SCK0.CP06._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP06._TSS correctly returned a sane looking package. \_SB_.SCK0.CP07._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP07._TSS correctly returned a sane looking package. \_SB_.SCK0.CP08._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP08._TSS correctly returned a sane looking package. \_SB_.SCK0.CP09._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP09._TSS correctly returned a sane looking package. \_SB_.SCK0.CP0A._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP0A._TSS correctly returned a sane looking package. \_SB_.SCK0.CP0B._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP0B._TSS correctly returned a sane looking package. \_SB_.SCK0.CP0C._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP0C._TSS correctly returned a sane looking package. \_SB_.SCK0.CP0D._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP0D._TSS correctly returned a sane looking package. \_SB_.SCK0.CP0E._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP0E._TSS correctly returned a sane looking package. \_SB_.SCK0.CP0F._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP0F._TSS correctly returned a sane looking package. \_SB_.SCK0.CP10._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP10._TSS correctly returned a sane looking package. \_SB_.SCK0.CP11._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP11._TSS correctly returned a sane looking package. \_SB_.SCK0.CP12._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP12._TSS correctly returned a sane looking package. \_SB_.SCK0.CP13._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP13._TSS correctly returned a sane looking package. \_SB_.SCK0.CP14._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP14._TSS correctly returned a sane looking package. \_SB_.SCK0.CP15._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP15._TSS correctly returned a sane looking package. \_SB_.SCK0.CP16._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP16._TSS correctly returned a sane looking package. \_SB_.SCK0.CP17._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP17._TSS correctly returned a sane looking package. \_SB_.SCK0.CP18._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP18._TSS correctly returned a sane looking package. \_SB_.SCK0.CP19._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP19._TSS correctly returned a sane looking package. \_SB_.SCK0.CP1A._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP1A._TSS correctly returned a sane looking package. \_SB_.SCK0.CP1B._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP1B._TSS correctly returned a sane looking package. \_SB_.SCK0.CP1C._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP1C._TSS correctly returned a sane looking package. \_SB_.SCK0.CP1D._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP1D._TSS correctly returned a sane looking package. \_SB_.SCK0.CP1E._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP1E._TSS correctly returned a sane looking package. \_SB_.SCK0.CP1F._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP1F._TSS correctly returned a sane looking package. \_SB_.SCK0.CP20._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP20._TSS correctly returned a sane looking package. \_SB_.SCK0.CP21._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP21._TSS correctly returned a sane looking package. \_SB_.SCK0.CP22._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP22._TSS correctly returned a sane looking package. \_SB_.SCK0.CP23._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK0.CP23._TSS correctly returned a sane looking package. \_SB_.SCK1.CP00._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP00._TSS correctly returned a sane looking package. \_SB_.SCK1.CP01._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP01._TSS correctly returned a sane looking package. \_SB_.SCK1.CP02._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP02._TSS correctly returned a sane looking package. \_SB_.SCK1.CP03._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP03._TSS correctly returned a sane looking package. \_SB_.SCK1.CP04._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP04._TSS correctly returned a sane looking package. \_SB_.SCK1.CP05._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP05._TSS correctly returned a sane looking package. \_SB_.SCK1.CP06._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP06._TSS correctly returned a sane looking package. \_SB_.SCK1.CP07._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP07._TSS correctly returned a sane looking package. \_SB_.SCK1.CP08._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP08._TSS correctly returned a sane looking package. \_SB_.SCK1.CP09._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP09._TSS correctly returned a sane looking package. \_SB_.SCK1.CP0A._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP0A._TSS correctly returned a sane looking package. \_SB_.SCK1.CP0B._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP0B._TSS correctly returned a sane looking package. \_SB_.SCK1.CP0C._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP0C._TSS correctly returned a sane looking package. \_SB_.SCK1.CP0D._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP0D._TSS correctly returned a sane looking package. \_SB_.SCK1.CP0E._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP0E._TSS correctly returned a sane looking package. \_SB_.SCK1.CP0F._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP0F._TSS correctly returned a sane looking package. \_SB_.SCK1.CP10._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP10._TSS correctly returned a sane looking package. \_SB_.SCK1.CP11._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP11._TSS correctly returned a sane looking package. \_SB_.SCK1.CP12._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP12._TSS correctly returned a sane looking package. \_SB_.SCK1.CP13._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP13._TSS correctly returned a sane looking package. \_SB_.SCK1.CP14._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP14._TSS correctly returned a sane looking package. \_SB_.SCK1.CP15._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP15._TSS correctly returned a sane looking package. \_SB_.SCK1.CP16._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP16._TSS correctly returned a sane looking package. \_SB_.SCK1.CP17._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP17._TSS correctly returned a sane looking package. \_SB_.SCK1.CP18._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP18._TSS correctly returned a sane looking package. \_SB_.SCK1.CP19._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP19._TSS correctly returned a sane looking package. \_SB_.SCK1.CP1A._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP1A._TSS correctly returned a sane looking package. \_SB_.SCK1.CP1B._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP1B._TSS correctly returned a sane looking package. \_SB_.SCK1.CP1C._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP1C._TSS correctly returned a sane looking package. \_SB_.SCK1.CP1D._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP1D._TSS correctly returned a sane looking package. \_SB_.SCK1.CP1E._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP1E._TSS correctly returned a sane looking package. \_SB_.SCK1.CP1F._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP1F._TSS correctly returned a sane looking package. \_SB_.SCK1.CP20._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP20._TSS correctly returned a sane looking package. \_SB_.SCK1.CP21._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP21._TSS correctly returned a sane looking package. \_SB_.SCK1.CP22._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP22._TSS correctly returned a sane looking package. \_SB_.SCK1.CP23._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK1.CP23._TSS correctly returned a sane looking package. \_SB_.SCK2.CP00._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP00._TSS correctly returned a sane looking package. \_SB_.SCK2.CP01._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP01._TSS correctly returned a sane looking package. \_SB_.SCK2.CP02._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP02._TSS correctly returned a sane looking package. \_SB_.SCK2.CP03._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP03._TSS correctly returned a sane looking package. \_SB_.SCK2.CP04._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP04._TSS correctly returned a sane looking package. \_SB_.SCK2.CP05._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP05._TSS correctly returned a sane looking package. \_SB_.SCK2.CP06._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP06._TSS correctly returned a sane looking package. \_SB_.SCK2.CP07._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP07._TSS correctly returned a sane looking package. \_SB_.SCK2.CP08._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP08._TSS correctly returned a sane looking package. \_SB_.SCK2.CP09._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP09._TSS correctly returned a sane looking package. \_SB_.SCK2.CP0A._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP0A._TSS correctly returned a sane looking package. \_SB_.SCK2.CP0B._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP0B._TSS correctly returned a sane looking package. \_SB_.SCK2.CP0C._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP0C._TSS correctly returned a sane looking package. \_SB_.SCK2.CP0D._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP0D._TSS correctly returned a sane looking package. \_SB_.SCK2.CP0E._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP0E._TSS correctly returned a sane looking package. \_SB_.SCK2.CP0F._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP0F._TSS correctly returned a sane looking package. \_SB_.SCK2.CP10._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP10._TSS correctly returned a sane looking package. \_SB_.SCK2.CP11._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP11._TSS correctly returned a sane looking package. \_SB_.SCK2.CP12._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP12._TSS correctly returned a sane looking package. \_SB_.SCK2.CP13._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP13._TSS correctly returned a sane looking package. \_SB_.SCK2.CP14._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP14._TSS correctly returned a sane looking package. \_SB_.SCK2.CP15._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP15._TSS correctly returned a sane looking package. \_SB_.SCK2.CP16._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP16._TSS correctly returned a sane looking package. \_SB_.SCK2.CP17._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP17._TSS correctly returned a sane looking package. \_SB_.SCK2.CP18._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP18._TSS correctly returned a sane looking package. \_SB_.SCK2.CP19._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP19._TSS correctly returned a sane looking package. \_SB_.SCK2.CP1A._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP1A._TSS correctly returned a sane looking package. \_SB_.SCK2.CP1B._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP1B._TSS correctly returned a sane looking package. \_SB_.SCK2.CP1C._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP1C._TSS correctly returned a sane looking package. \_SB_.SCK2.CP1D._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP1D._TSS correctly returned a sane looking package. \_SB_.SCK2.CP1E._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP1E._TSS correctly returned a sane looking package. \_SB_.SCK2.CP1F._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP1F._TSS correctly returned a sane looking package. \_SB_.SCK2.CP20._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP20._TSS correctly returned a sane looking package. \_SB_.SCK2.CP21._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP21._TSS correctly returned a sane looking package. \_SB_.SCK2.CP22._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP22._TSS correctly returned a sane looking package. \_SB_.SCK2.CP23._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK2.CP23._TSS correctly returned a sane looking package. \_SB_.SCK3.CP00._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP00._TSS correctly returned a sane looking package. \_SB_.SCK3.CP01._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP01._TSS correctly returned a sane looking package. \_SB_.SCK3.CP02._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP02._TSS correctly returned a sane looking package. \_SB_.SCK3.CP03._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP03._TSS correctly returned a sane looking package. \_SB_.SCK3.CP04._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP04._TSS correctly returned a sane looking package. \_SB_.SCK3.CP05._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP05._TSS correctly returned a sane looking package. \_SB_.SCK3.CP06._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP06._TSS correctly returned a sane looking package. \_SB_.SCK3.CP07._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP07._TSS correctly returned a sane looking package. \_SB_.SCK3.CP08._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP08._TSS correctly returned a sane looking package. \_SB_.SCK3.CP09._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP09._TSS correctly returned a sane looking package. \_SB_.SCK3.CP0A._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP0A._TSS correctly returned a sane looking package. \_SB_.SCK3.CP0B._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP0B._TSS correctly returned a sane looking package. \_SB_.SCK3.CP0C._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP0C._TSS correctly returned a sane looking package. \_SB_.SCK3.CP0D._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP0D._TSS correctly returned a sane looking package. \_SB_.SCK3.CP0E._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP0E._TSS correctly returned a sane looking package. \_SB_.SCK3.CP0F._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP0F._TSS correctly returned a sane looking package. \_SB_.SCK3.CP10._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP10._TSS correctly returned a sane looking package. \_SB_.SCK3.CP11._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP11._TSS correctly returned a sane looking package. \_SB_.SCK3.CP12._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP12._TSS correctly returned a sane looking package. \_SB_.SCK3.CP13._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP13._TSS correctly returned a sane looking package. \_SB_.SCK3.CP14._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP14._TSS correctly returned a sane looking package. \_SB_.SCK3.CP15._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP15._TSS correctly returned a sane looking package. \_SB_.SCK3.CP16._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP16._TSS correctly returned a sane looking package. \_SB_.SCK3.CP17._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP17._TSS correctly returned a sane looking package. \_SB_.SCK3.CP18._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP18._TSS correctly returned a sane looking package. \_SB_.SCK3.CP19._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP19._TSS correctly returned a sane looking package. \_SB_.SCK3.CP1A._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP1A._TSS correctly returned a sane looking package. \_SB_.SCK3.CP1B._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP1B._TSS correctly returned a sane looking package. \_SB_.SCK3.CP1C._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP1C._TSS correctly returned a sane looking package. \_SB_.SCK3.CP1D._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP1D._TSS correctly returned a sane looking package. \_SB_.SCK3.CP1E._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP1E._TSS correctly returned a sane looking package. \_SB_.SCK3.CP1F._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP1F._TSS correctly returned a sane looking package. \_SB_.SCK3.CP20._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP20._TSS correctly returned a sane looking package. \_SB_.SCK3.CP21._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP21._TSS correctly returned a sane looking package. \_SB_.SCK3.CP22._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP22._TSS correctly returned a sane looking package. \_SB_.SCK3.CP23._TSS values: T-State CPU Power Latency Control Status Freq (mW) (usecs) 0 100% 61265 0 00 00 PASSED: Test 80, \_SB_.SCK3.CP23._TSS correctly returned a sane looking package. Test 81 of 155: Test _MSG (Message). SKIPPED: Test 81, Skipping test for non-existant object _MSG. Test 82 of 155: Test _ALC (Ambient Light Colour Chromaticity). SKIPPED: Test 82, Skipping test for non-existant object _ALC. Test 83 of 155: Test _ALI (Ambient Light Illuminance). SKIPPED: Test 83, Skipping test for non-existant object _ALI. Test 84 of 155: Test _ALT (Ambient Light Temperature). SKIPPED: Test 84, Skipping test for non-existant object _ALT. Test 85 of 155: Test _ALP (Ambient Light Polling). SKIPPED: Test 85, Skipping test for non-existant object _ALP. Test 86 of 155: Test _LID (Lid Status). SKIPPED: Test 86, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _LID. Test 87 of 155: Test _UPD (User Presence Detect). SKIPPED: Test 87, Skipping test for non-existant object _UPD. Test 88 of 155: Test _UPP (User Presence Polling). SKIPPED: Test 88, Skipping test for non-existant object _UPP. Test 89 of 155: Test _GCP (Get Capabilities). SKIPPED: Test 89, Skipping test for non-existant object _GCP. Test 90 of 155: Test _GRT (Get Real Time). SKIPPED: Test 90, Skipping test for non-existant object _GRT. Test 91 of 155: Test _GWS (Get Wake Status). SKIPPED: Test 91, Skipping test for non-existant object _GWS. Test 92 of 155: Test _STP (Set Expired Timer Wake Policy). SKIPPED: Test 92, Skipping test for non-existant object _STP. Test 93 of 155: Test _STV (Set Timer Value). SKIPPED: Test 93, Skipping test for non-existant object _STV. Test 94 of 155: Test _TIP (Expired Timer Wake Policy). SKIPPED: Test 94, Skipping test for non-existant object _TIP. Test 95 of 155: Test _TIV (Timer Values). SKIPPED: Test 95, Skipping test for non-existant object _TIV. Test 96 of 155: Test _SBS (Smart Battery Subsystem). SKIPPED: Test 96, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _SBS. Test 97 of 155: Test _BCT (Battery Charge Time). SKIPPED: Test 97, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BCT. Test 98 of 155: Test _BIF (Battery Information). SKIPPED: Test 98, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BIF. Test 99 of 155: Test _BIX (Battery Information Extended). SKIPPED: Test 99, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BIX. Test 100 of 155: Test _BMA (Battery Measurement Averaging). SKIPPED: Test 100, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BMA. Test 101 of 155: Test _BMC (Battery Maintenance Control). SKIPPED: Test 101, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BMC. Test 102 of 155: Test _BMD (Battery Maintenance Data). SKIPPED: Test 102, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BMD. Test 103 of 155: Test _BMS (Battery Measurement Sampling Time). SKIPPED: Test 103, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BMS. Test 104 of 155: Test _BST (Battery Status). SKIPPED: Test 104, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BST. Test 105 of 155: Test _BTP (Battery Trip Point). SKIPPED: Test 105, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BTP. Test 106 of 155: Test _BTM (Battery Time). SKIPPED: Test 106, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _BTM. Test 107 of 155: Test _PCL (Power Consumer List). SKIPPED: Test 107, Machine is not a mobile platform, skipping test for non-existant mobile platform related object _PCL. Test 108 of 155: Test _PIF (Power Source Information). SKIPPED: Test 108, Skipping test for non-existant object _PIF. Test 109 of 155: Test _PSR (Power Source). SKIPPED: Test 109, Skipping test for non-existant object _PSR. Test 110 of 155: Test _GAI (Get Averaging Level). PASSED: Test 110, \_SB_.PMT1._GAI correctly returned an integer. Test 111 of 155: Test _PMM (Power Meter Measurement). PASSED: Test 111, \_SB_.PMT1._PMM correctly returned an integer. Test 112 of 155: Test _FIF (Fan Information). SKIPPED: Test 112, Skipping test for non-existant object _FIF. Test 113 of 155: Test _FSL (Fan Set Level). SKIPPED: Test 113, Skipping test for non-existant object _FSL. Test 114 of 155: Test _FST (Fan Status). SKIPPED: Test 114, Skipping test for non-existant object _FST. Test 115 of 155: Test _ACx (Active Cooling). SKIPPED: Test 115, Skipping test for non-existant object _AC0. SKIPPED: Test 115, Skipping test for non-existant object _AC1. SKIPPED: Test 115, Skipping test for non-existant object _AC2. SKIPPED: Test 115, Skipping test for non-existant object _AC3. SKIPPED: Test 115, Skipping test for non-existant object _AC4. SKIPPED: Test 115, Skipping test for non-existant object _AC5. SKIPPED: Test 115, Skipping test for non-existant object _AC6. SKIPPED: Test 115, Skipping test for non-existant object _AC7. SKIPPED: Test 115, Skipping test for non-existant object _AC8. SKIPPED: Test 115, Skipping test for non-existant object _AC9. Test 116 of 155: Test _CRT (Critical Trip Point). SKIPPED: Test 116, Skipping test for non-existant object _CRT. Test 117 of 155: Test _DTI (Device Temperature Indication). SKIPPED: Test 117, Skipping test for non-existant object _DTI. Test 118 of 155: Test _HOT (Hot Temperature). SKIPPED: Test 118, Skipping test for non-existant object _HOT. Test 119 of 155: Test _NTT (Notification Temp Threshold). SKIPPED: Test 119, Skipping test for non-existant object _NTT. Test 120 of 155: Test _PSV (Passive Temp). SKIPPED: Test 120, Skipping test for non-existant object _PSV. Test 121 of 155: Test _RTV (Relative Temp Values). SKIPPED: Test 121, Skipping test for non-existant object _RTV. Test 122 of 155: Test _SCP (Set Cooling Policy). SKIPPED: Test 122, Skipping test for non-existant object _DTI. Test 123 of 155: Test _TC1 (Thermal Constant 1). SKIPPED: Test 123, Skipping test for non-existant object _TC1. Test 124 of 155: Test _TC2 (Thermal Constant 2). SKIPPED: Test 124, Skipping test for non-existant object _TC2. Test 125 of 155: Test _TMP (Thermal Zone Current Temp). SKIPPED: Test 125, Skipping test for non-existant object _TMP. Test 126 of 155: Test _TPT (Trip Point Temperature). SKIPPED: Test 126, Skipping test for non-existant object _TPT. Test 127 of 155: Test _TSP (Thermal Sampling Period). SKIPPED: Test 127, Skipping test for non-existant object _TSP. Test 128 of 155: Test _TST (Temperature Sensor Threshold). SKIPPED: Test 128, Skipping test for non-existant object _TST. Test 129 of 155: Test _TZP (Thermal Zone Polling). SKIPPED: Test 129, Skipping test for non-existant object _TZP. Test 130 of 155: Test _PTS (Prepare to Sleep). Test _PTS(1). PASSED: Test 130, \_PTS returned no values as expected. Test _PTS(2). PASSED: Test 130, \_PTS returned no values as expected. Test _PTS(3). PASSED: Test 130, \_PTS returned no values as expected. Test _PTS(4). PASSED: Test 130, \_PTS returned no values as expected. Test _PTS(5). PASSED: Test 130, \_PTS returned no values as expected. Test 131 of 155: Test _TTS (Transition to State). SKIPPED: Test 131, Optional control method _TTS does not exist. Test 132 of 155: Test _S0 (System S0 State). SKIPPED: Test 132, Skipping test for non-existant object _S0. Test 133 of 155: Test _S1 (System S1 State). SKIPPED: Test 133, Skipping test for non-existant object _S1. Test 134 of 155: Test _S2 (System S2 State). SKIPPED: Test 134, Skipping test for non-existant object _S2. Test 135 of 155: Test _S3 (System S3 State). SKIPPED: Test 135, Skipping test for non-existant object _S3. Test 136 of 155: Test _S4 (System S4 State). SKIPPED: Test 136, Skipping test for non-existant object _S4. Test 137 of 155: Test _S5 (System S5 State). SKIPPED: Test 137, Skipping test for non-existant object _S5. Test 138 of 155: Test _WAK (System Wake). Test _WAK(1) System Wake, State S1. PASSED: Test 138, \_WAK correctly returned a sane looking package. Test _WAK(2) System Wake, State S2. PASSED: Test 138, \_WAK correctly returned a sane looking package. Test _WAK(3) System Wake, State S3. PASSED: Test 138, \_WAK correctly returned a sane looking package. Test _WAK(4) System Wake, State S4. PASSED: Test 138, \_WAK correctly returned a sane looking package. Test _WAK(5) System Wake, State S5. PASSED: Test 138, \_WAK correctly returned a sane looking package. Test 139 of 155: Test _ADR (Return Unique ID for Device). PASSED: Test 139, \_SB_.UNC3._ADR correctly returned an integer. PASSED: Test 139, \_SB_.UNC2._ADR correctly returned an integer. PASSED: Test 139, \_SB_.UNC1._ADR correctly returned an integer. PASSED: Test 139, \_SB_.UNC0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.IIOP._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.MHP0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.MHP1._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.LPC0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.IP2P._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT2._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT2.PRID._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT2.PRID.MAST._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT2.PRID.SLAV._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT2.SECD._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT2.SECD.MAST._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT2.SECD.SLAV._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SMBS._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.TERM._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS01._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS02._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS03._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS04._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS05._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS06._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS07._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS08._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS09._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS10._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS11._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS12._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS13._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.HS14._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.SSP1._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.SSP2._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.SSP3._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.SSP4._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.SSP5._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.XHCI.RHUB.SSP6._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.LAN0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1.HUBN._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1.HUBN.PR01._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1.HUBN.PR01.PR11._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1.HUBN.PR01.PR12._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1.HUBN.PR01.PR13._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1.HUBN.PR01.PR14._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1.HUBN.PR01.PR15._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1.HUBN.PR01.PR16._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1.HUBN.PR01.PR17._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC1.HUBN.PR01.PR18._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC2._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC2.HUBN._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC2.HUBN.PR01._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC2.HUBN.PR01.PR11._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC2.HUBN.PR01.PR12._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC2.HUBN.PR01.PR13._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC2.HUBN.PR01.PR14._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC2.HUBN.PR01.PR15._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EHC2.HUBN.PR01.PR16._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.ALZA._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.HECI._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.HEC2._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.IDER._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.MEKT._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP01._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP02._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP03._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP04._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP05._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP05.LAN0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP06._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP06.AST0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP06.AST0.D076._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP07._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.RP08._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVMR._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVS0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVS1._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVS2._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.DMI0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.DMI0.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.DMI0.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.DMI0.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.DMI0.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.DMI0.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.DMI0.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.DMI0.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.DMI0.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1A.D078._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR1B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2A.D079._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2C.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2C.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2C.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2C.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2C.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2C.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2C.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2C.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2C.D07A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2D.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2D.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2D.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2D.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2D.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2D.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2D.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR2D.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3A.D07B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3C.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3C.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3C.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3C.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3C.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3C.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3C.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3C.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3C.D07C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3D.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3D.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3D.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3D.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3D.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3D.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3D.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.BR3D.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.CB0A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.CB0B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.CB0C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.CB0D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.CB0E._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.CB0F._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.CB0G._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.CB0H._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT1._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT1.PRID._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT1.PRID.MAST._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT1.PRID.SLAV._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT1.SECD._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT1.SECD.MAST._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.SAT1.SECD.SLAV._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVSS._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVSS.PRID._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVSS.PRID.MAST._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVSS.PRID.SLAV._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVSS.SECD._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVSS.SECD.MAST._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI0.EVSS.SECD.SLAV._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.IIOP._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.MHP0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.MHP1._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QRP0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QRP0.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QRP0.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QRP0.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QRP0.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QRP0.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QRP0.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QRP0.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QRP0.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR1B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2C.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2C.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2C.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2C.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2C.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2C.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2C.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2C.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2D.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2D.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2D.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2D.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2D.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2D.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2D.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR2D.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3C.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3C.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3C.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3C.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3C.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3C.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3C.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3C.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3D.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3D.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3D.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3D.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3D.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3D.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3D.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.QR3D.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.CB1A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.CB1B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.CB1C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.CB1D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.CB1E._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.CB1F._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.CB1G._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI1.CB1H._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.IIOP._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.MHP0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.MHP1._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RRP0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RRP0.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RRP0.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RRP0.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RRP0.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RRP0.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RRP0.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RRP0.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RRP0.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR1B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2C.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2C.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2C.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2C.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2C.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2C.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2C.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2C.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2D.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2D.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2D.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2D.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2D.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2D.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2D.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR2D.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3C.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3C.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3C.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3C.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3C.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3C.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3C.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3C.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3D.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3D.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3D.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3D.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3D.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3D.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3D.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.RR3D.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.CB2A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.CB2B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.CB2C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.CB2D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.CB2E._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.CB2F._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.CB2G._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI2.CB2H._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.IIOP._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.MHP0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.MHP1._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SRP0._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SRP0.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SRP0.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SRP0.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SRP0.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SRP0.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SRP0.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SRP0.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SRP0.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR1B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2C.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2C.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2C.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2C.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2C.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2C.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2C.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2C.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2D.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2D.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2D.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2D.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2D.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2D.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2D.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR2D.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3A.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3A.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3A.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3A.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3A.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3A.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3A.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3A.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3B.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3B.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3B.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3B.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3B.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3B.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3B.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3B.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3C.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3C.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3C.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3C.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3C.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3C.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3C.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3C.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3D.H000._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3D.H001._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3D.H002._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3D.H003._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3D.H004._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3D.H005._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3D.H006._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.SR3D.H007._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.CB3A._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.CB3B._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.CB3C._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.CB3D._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.CB3E._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.CB3F._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.CB3G._ADR correctly returned an integer. PASSED: Test 139, \_SB_.PCI3.CB3H._ADR correctly returned an integer. Test 140 of 155: Test _BCL (Query List of Brightness Control Levels Supported). SKIPPED: Test 140, Skipping test for non-existant object _BCL. Test 141 of 155: Test _BCM (Set Brightness Level). SKIPPED: Test 141, Skipping test for non-existant object _BCM. Test 142 of 155: Test _BQC (Brightness Query Current Level). SKIPPED: Test 142, Skipping test for non-existant object _BQC. Test 143 of 155: Test _DCS (Return the Status of Output Device). SKIPPED: Test 143, Skipping test for non-existant object _DCS. Test 144 of 155: Test _DDC (Return the EDID for this Device). SKIPPED: Test 144, Skipping test for non-existant object _DDC. Test 145 of 155: Test _DSS (Device Set State). SKIPPED: Test 145, Skipping test for non-existant object _DSS. Test 146 of 155: Test _DGS (Query Graphics State). SKIPPED: Test 146, Skipping test for non-existant object _DGS. Test 147 of 155: Test _DOD (Enumerate All Devices Attached to Display Adapter). SKIPPED: Test 147, Skipping test for non-existant object _DOD. Test 148 of 155: Test _DOS (Enable/Disable Output Switching). SKIPPED: Test 148, Skipping test for non-existant object _DOS. Test 149 of 155: Test _GPD (Get POST Device). SKIPPED: Test 149, Skipping test for non-existant object _GPD. Test 150 of 155: Test _ROM (Get ROM Data). SKIPPED: Test 150, Skipping test for non-existant object _ROM. Test 151 of 155: Test _SPD (Set POST Device). SKIPPED: Test 151, Skipping test for non-existant object _SPD. Test 152 of 155: Test _VPO (Video POST Options). SKIPPED: Test 152, Skipping test for non-existant object _VPO. Test 153 of 155: Test _CBA (Configuration Base Address). SKIPPED: Test 153, Skipping test for non-existant object _CBA. Test 154 of 155: Test _IFT (IPMI Interface Type). PASSED: Test 154, \_SB_.PCI0.LPC0.SPMI._IFT correctly returned an integer. Test 155 of 155: Test _SRV (IPMI Interface Revision). PASSED: Test 155, \_SB_.PCI0.LPC0.SPMI._SRV correctly returned an integer. ================================================================================ 2150 passed, 4 failed, 0 warning, 0 aborted, 129 skipped, 0 info only. ================================================================================ 2150 passed, 4 failed, 0 warning, 0 aborted, 129 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: 4 method: Method \_SB_.PCI0.LPC0.SPMI._STR did not return ACPI_TYPE_STRING. method: Method \_SB_.PCI0.TPM_._STR did not return ACPI_TYPE_STRING. method: \_SB_.PCI3._CRS WORD Address Space Descriptor minimum address range 0x4858 is greater than the maximum address range 0x0. method: \_SB_.PCI3._CRS WORD Address Space Descriptor length 0x1 does not match the difference between the minimum and maximum address ranges 0x4858-0x0. Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ method | 2150| 4| | | 129| | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 2150| 4| 0| 0| 129| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:00 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log microcode". Running tests: microcode. microcode: Test if system is using latest microcode. -------------------------------------------------------------------------------- Test 1 of 1: Test for most recent microcode being loaded. This test verifies if the firmware has put a recent revision of the microcode into the processor at boot time. Recent microcode is important to have all the required features and errata updates for the processor. The kernel did not report that CPU 0 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 1 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 2 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 3 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 4 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 5 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 6 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 7 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 8 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 9 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 16 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 17 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 18 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 19 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 20 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 21 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 22 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 23 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 24 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 25 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 32 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 33 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 34 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 35 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 36 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 37 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 38 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 39 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 40 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 41 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 48 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 49 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 50 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 51 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 52 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 53 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 54 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 55 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 56 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. The kernel did not report that CPU 57 has had a microcode update. The current firmware is revision 0x27 and probably has not been updated. Could not determine if CPU 64 had a microcode update from the kernel message log. Could not determine if CPU 65 had a microcode update from the kernel message log. Could not determine if CPU 66 had a microcode update from the kernel message log. Could not determine if CPU 67 had a microcode update from the kernel message log. Could not determine if CPU 68 had a microcode update from the kernel message log. Could not determine if CPU 69 had a microcode update from the kernel message log. Could not determine if CPU 70 had a microcode update from the kernel message log. Could not determine if CPU 71 had a microcode update from the kernel message log. Could not determine if CPU 72 had a microcode update from the kernel message log. Could not determine if CPU 73 had a microcode update from the kernel message log. Could not determine if CPU 80 had a microcode update from the kernel message log. Could not determine if CPU 81 had a microcode update from the kernel message log. Could not determine if CPU 82 had a microcode update from the kernel message log. Could not determine if CPU 83 had a microcode update from the kernel message log. Could not determine if CPU 84 had a microcode update from the kernel message log. Could not determine if CPU 85 had a microcode update from the kernel message log. Could not determine if CPU 86 had a microcode update from the kernel message log. Could not determine if CPU 87 had a microcode update from the kernel message log. Could not determine if CPU 88 had a microcode update from the kernel message log. Could not determine if CPU 89 had a microcode update from the kernel message log. Could not determine if CPU 96 had a microcode update from the kernel message log. Could not determine if CPU 97 had a microcode update from the kernel message log. Could not determine if CPU 98 had a microcode update from the kernel message log. Could not determine if CPU 99 had a microcode update from the kernel message log. SKIPPED: Test 1, Could not determine from kernel log if latest microcode has been loaded. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 1 skipped, 0 info only. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 1 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ microcode | | | | | 1| | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 0| 0| 0| 1| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:00 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log mpcheck". Running tests: mpcheck. mpcheck: MultiProcessor Tables tests. -------------------------------------------------------------------------------- Test 1 of 9: Test MP header. PASSED: Test 1, MP header looks sane. Test 2 of 9: Test MP CPU entries. PASSED: Test 2, All 32 CPU entries look sane. Test 3 of 9: Test MP Bus entries. PASSED: Test 3, All 12 Bus Entries looked sane. Test 4 of 9: Test MP IO APIC entries. PASSED: Test 4, All 3 IO APIC Entries look sane. Test 5 of 9: Test MP IO Interrupt entries. PASSED: Test 5, All 34 IO Interrupt Entries look sane. Test 6 of 9: Test MP Local Interrupt entries. PASSED: Test 6, All 2 Local Interrupt Entries look sane. Test 7 of 9: Test MP System Address entries. PASSED: Test 7, All 7 System Address Space Mapping Entries looks sane. Test 8 of 9: Test MP Bus Hierarchy entries. PASSED: Test 8, All 1 Bus Hierarchy Entries look sane. Test 9 of 9: Test MP Compatible Bus Address Space entries. PASSED: Test 9, All 4 Compatible Bus Address Space Entries look sane. ================================================================================ 9 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 9 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ mpcheck | 9| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 9| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:00 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log mpdump". Running tests: mpdump. mpdump: Dump MultiProcessor Data. -------------------------------------------------------------------------------- Test 1 of 1: Dump Multi Processor Data. MultiProcessor Header: (@0x000fd5d0) Signature: PCMP Table Length: 0x444 bytes Spec Revision: 4 (1.4) OEM ID: A M I Product ID: ALASKA Entry Count: 0x53 LAPIC Address: 0xfee00000 Extended Length: 0xb4 bytes CPU Entry: (@0x000fd5fc) Local APIC ID: 0x00 Local APIC Version: 0x15 CPU Flags: 0x03 Usable: 1 (Yes) Bootstrap CPU: 1 (Yes) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd610) Local APIC ID: 0x02 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd624) Local APIC ID: 0x04 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd638) Local APIC ID: 0x06 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd64c) Local APIC ID: 0x08 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd660) Local APIC ID: 0x0a Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd674) Local APIC ID: 0x0c Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd688) Local APIC ID: 0x0e Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd69c) Local APIC ID: 0x10 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd6b0) Local APIC ID: 0x12 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd6c4) Local APIC ID: 0x14 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd6d8) Local APIC ID: 0x16 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd6ec) Local APIC ID: 0x18 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd700) Local APIC ID: 0x1a Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd714) Local APIC ID: 0x1c Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd728) Local APIC ID: 0x1e Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd73c) Local APIC ID: 0x20 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd750) Local APIC ID: 0x22 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd764) Local APIC ID: 0x24 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd778) Local APIC ID: 0x26 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd78c) Local APIC ID: 0x28 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd7a0) Local APIC ID: 0x2a Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd7b4) Local APIC ID: 0x2c Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd7c8) Local APIC ID: 0x2e Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd7dc) Local APIC ID: 0x30 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd7f0) Local APIC ID: 0x32 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd804) Local APIC ID: 0x34 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd818) Local APIC ID: 0x36 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd82c) Local APIC ID: 0x38 Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd840) Local APIC ID: 0x3a Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd854) Local APIC ID: 0x3c Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) CPU Entry: (@0x000fd868) Local APIC ID: 0x3e Local APIC Version: 0x15 CPU Flags: 0x01 Usable: 1 (Yes) Bootstrap CPU: 0 (No) CPU Signature: Stepping: 0x02 Model: 0x0f Family: 0x06 Feature Flags: FPU present: 1 (Yes) MCE: 1 (Yes) CPMPXCHG8B: 1 (Yes) APIC enabled: 1 (Yes) Bus Entry: (@0x000fd87c) Bus ID: 0x00 Bus Type: PCI Bus Entry: (@0x000fd884) Bus ID: 0x80 Bus Type: PCI Bus Entry: (@0x000fd88c) Bus ID: 0x01 Bus Type: PCI Bus Entry: (@0x000fd894) Bus ID: 0x02 Bus Type: PCI Bus Entry: (@0x000fd89c) Bus ID: 0x03 Bus Type: PCI Bus Entry: (@0x000fd8a4) Bus ID: 0x04 Bus Type: PCI Bus Entry: (@0x000fd8ac) Bus ID: 0x05 Bus Type: PCI Bus Entry: (@0x000fd8b4) Bus ID: 0x06 Bus Type: PCI Bus Entry: (@0x000fd8bc) Bus ID: 0x07 Bus Type: PCI Bus Entry: (@0x000fd8c4) Bus ID: 0x08 Bus Type: PCI Bus Entry: (@0x000fd8cc) Bus ID: 0x09 Bus Type: PCI Bus Entry: (@0x000fd8d4) Bus ID: 0x81 Bus Type: ISA IO APIC Entry: (@0x000fd8dc) IO APIC ID: 0x00 IO APIC Version: 0x20 Flags: 0x01 Address: 0xfec00000 IO APIC Entry: (@0x000fd8e4) IO APIC ID: 0x02 IO APIC Version: 0x20 Flags: 0x01 Address: 0xfec01000 IO APIC Entry: (@0x000fd8ec) IO APIC ID: 0x03 IO APIC Version: 0x20 Flags: 0x01 Address: 0xfec40000 IO Interrupt Assignment Entry: (@0x000fd8f4) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x81 Src Bus IRQ 0x00 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x02 IO Interrupt Assignment Entry: (@0x000fd8fc) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x81 Src Bus IRQ 0x01 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x01 IO Interrupt Assignment Entry: (@0x000fd904) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x81 Src Bus IRQ 0x03 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x03 IO Interrupt Assignment Entry: (@0x000fd90c) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x81 Src Bus IRQ 0x04 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x04 IO Interrupt Assignment Entry: (@0x000fd914) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x81 Src Bus IRQ 0x08 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x08 IO Interrupt Assignment Entry: (@0x000fd91c) Interrupt Type: 0x00 (INT) Flags: 0x000d PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 2 (Reserved) Src Bus ID: 0x81 Src Bus IRQ 0x09 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x09 IO Interrupt Assignment Entry: (@0x000fd924) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x81 Src Bus IRQ 0x0d Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x0d IO Interrupt Assignment Entry: (@0x000fd92c) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x81 Src Bus IRQ 0x0e Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x0e IO Interrupt Assignment Entry: (@0x000fd934) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x81 Src Bus IRQ 0x0f Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x0f IO Interrupt Assignment Entry: (@0x000fd93c) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x04 Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x1a IO Interrupt Assignment Entry: (@0x000fd944) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x05 Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x1c IO Interrupt Assignment Entry: (@0x000fd94c) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x06 Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x1d IO Interrupt Assignment Entry: (@0x000fd954) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x07 Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x1e IO Interrupt Assignment Entry: (@0x000fd95c) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x08 Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x22 IO Interrupt Assignment Entry: (@0x000fd964) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x09 Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x25 IO Interrupt Assignment Entry: (@0x000fd96c) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x0a Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x24 IO Interrupt Assignment Entry: (@0x000fd974) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x0b Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x26 IO Interrupt Assignment Entry: (@0x000fd97c) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x0c Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x2a IO Interrupt Assignment Entry: (@0x000fd984) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x0d Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x2d IO Interrupt Assignment Entry: (@0x000fd98c) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x0e Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x2c IO Interrupt Assignment Entry: (@0x000fd994) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x0f Dst I/O APIC: 0x02 Dst I/O APIC INTIN: 0x2e IO Interrupt Assignment Entry: (@0x000fd99c) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x44 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x10 IO Interrupt Assignment Entry: (@0x000fd9a4) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x53 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x13 IO Interrupt Assignment Entry: (@0x000fd9ac) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x58 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x10 IO Interrupt Assignment Entry: (@0x000fd9b4) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x59 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x11 IO Interrupt Assignment Entry: (@0x000fd9bc) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x70 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x10 IO Interrupt Assignment Entry: (@0x000fd9c4) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x71 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x11 IO Interrupt Assignment Entry: (@0x000fd9cc) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x07 Src Bus IRQ 0x00 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x10 IO Interrupt Assignment Entry: (@0x000fd9d4) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x07 Src Bus IRQ 0x01 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x11 IO Interrupt Assignment Entry: (@0x000fd9dc) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x07 Src Bus IRQ 0x02 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x12 IO Interrupt Assignment Entry: (@0x000fd9e4) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x07 Src Bus IRQ 0x03 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x13 IO Interrupt Assignment Entry: (@0x000fd9ec) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x09 Src Bus IRQ 0x00 Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x10 IO Interrupt Assignment Entry: (@0x000fd9f4) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x7c Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x10 IO Interrupt Assignment Entry: (@0x000fd9fc) Interrupt Type: 0x00 (INT) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x7e Dst I/O APIC: 0x00 Dst I/O APIC INTIN: 0x12 Local Interrupt Assignement Entry: (@0x000fda04) Interrupt Type: 0x03 (ExtInt) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x00 Dst I/O APIC: 0xff Dst I/O APIC INTIN: 0x00 Local Interrupt Assignement Entry: (@0x000fda0c) Interrupt Type: 0x01 (NMI) Flags: 0x0000 PO (Polarity) 0 (Conforms to bus specification) EL (Trigger) 0 (Conforms to bus specification) Src Bus ID: 0x00 Src Bus IRQ 0x00 Dst I/O APIC: 0xff Dst I/O APIC INTIN: 0x01 System Address Space Mapping Entry: (@0x000fda14) Bus ID: 0x00 Address Type: 0x00 (I/O) Address Start: 0x0000000000000000 Address End: 0x0000000000001000 Address Length 0x0000000000001000 System Address Space Mapping Entry: (@0x000fda28) Bus ID: 0x00 Address Type: 0x00 (I/O) Address Start: 0x0000000000005000 Address End: 0x0000000000007120 Address Length 0x0000000000002120 System Address Space Mapping Entry: (@0x000fda3c) Bus ID: 0x00 Address Type: 0x01 (Memory) Address Start: 0x00000000000a0000 Address End: 0x00000000000c0000 Address Length 0x0000000000020000 System Address Space Mapping Entry: (@0x000fda50) Bus ID: 0x00 Address Type: 0x01 (Memory) Address Start: 0x00000000c7000000 Address End: 0x00000000c7a18000 Address Length 0x0000000000a18000 System Address Space Mapping Entry: (@0x000fda64) Bus ID: 0x80 Address Type: 0x00 (I/O) Address Start: 0x0000000000000000 Address End: 0x0000000000001000 Address Length 0x0000000000001000 System Address Space Mapping Entry: (@0x000fda78) Bus ID: 0x80 Address Type: 0x01 (Memory) Address Start: 0x00000000000a0000 Address End: 0x00000000000c0000 Address Length 0x0000000000020000 System Address Space Mapping Entry: (@0x000fda8c) Bus ID: 0x80 Address Type: 0x01 (Memory) Address Start: 0x00000000fbf00000 Address End: 0x00000000fbf01000 Address Length 0x0000000000001000 Bus Hierarchy Descriptor Entry: (@0x000fdaa0) Bus ID: 0x81 Bus Information: 0x1 Parent Bus: 0x00000000 Compatible Bus Hierarchy Descriptor Entry: (@0x000fdaa8) Bus ID: 0x00 Address Mod: 0x00 Predefine Range: 0x00000000 Compatible Bus Hierarchy Descriptor Entry: (@0x000fdab0) Bus ID: 0x00 Address Mod: 0x00 Predefine Range: 0x00000001 Compatible Bus Hierarchy Descriptor Entry: (@0x000fdab8) Bus ID: 0x80 Address Mod: 0x00 Predefine Range: 0x00000000 Compatible Bus Hierarchy Descriptor Entry: (@0x000fdac0) Bus ID: 0x80 Address Mod: 0x00 Predefine Range: 0x00000001 -------------------------------------------------------------------------------- Collated Data: Bus: ID Type 0 PCI 1 PCI 2 PCI 3 PCI 4 PCI 5 PCI 6 PCI 7 PCI 8 PCI 9 PCI 128 PCI 129 ISA APIC IDs: ID Type 0 I/O APIC 0 CPU Local APIC 2 I/O APIC 2 CPU Local APIC 3 I/O APIC 4 CPU Local APIC 6 CPU Local APIC 8 CPU Local APIC 10 CPU Local APIC 12 CPU Local APIC 14 CPU Local APIC 16 CPU Local APIC 18 CPU Local APIC 20 CPU Local APIC 22 CPU Local APIC 24 CPU Local APIC 26 CPU Local APIC 28 CPU Local APIC 30 CPU Local APIC 32 CPU Local APIC 34 CPU Local APIC 36 CPU Local APIC 38 CPU Local APIC 40 CPU Local APIC 42 CPU Local APIC 44 CPU Local APIC 46 CPU Local APIC 48 CPU Local APIC 50 CPU Local APIC 52 CPU Local APIC 54 CPU Local APIC 56 CPU Local APIC 58 CPU Local APIC 60 CPU Local APIC 62 CPU Local APIC IO Interrupts: Src Bus Src Bus Src Bus Dst I/O Dst I/O Type Polarity Trigger ID Type IRQ APIC APIC INTIN 0 PCI 4 2 26 INT Con Con 0 PCI 5 2 28 INT Con Con 0 PCI 6 2 29 INT Con Con 0 PCI 7 2 30 INT Con Con 0 PCI 8 2 34 INT Con Con 0 PCI 9 2 37 INT Con Con 0 PCI 10 2 36 INT Con Con 0 PCI 11 2 38 INT Con Con 0 PCI 12 2 42 INT Con Con 0 PCI 13 2 45 INT Con Con 0 PCI 14 2 44 INT Con Con 0 PCI 15 2 46 INT Con Con 0 PCI 68 0 16 INT Con Con 0 PCI 83 0 19 INT Con Con 0 PCI 88 0 16 INT Con Con 0 PCI 89 0 17 INT Con Con 0 PCI 112 0 16 INT Con Con 0 PCI 113 0 17 INT Con Con 0 PCI 124 0 16 INT Con Con 0 PCI 126 0 18 INT Con Con 7 PCI 0 0 16 INT Con Con 7 PCI 1 0 17 INT Con Con 7 PCI 2 0 18 INT Con Con 7 PCI 3 0 19 INT Con Con 9 PCI 0 0 16 INT Con Con 129 ISA 0 0 2 INT Con Con 129 ISA 1 0 1 INT Con Con 129 ISA 3 0 3 INT Con Con 129 ISA 4 0 4 INT Con Con 129 ISA 8 0 8 INT Con Con 129 ISA 9 0 9 INT Con Rsv 129 ISA 13 0 13 INT Con Con 129 ISA 14 0 14 INT Con Con 129 ISA 15 0 15 INT Con Con Local Interrupts: Src Bus Src Bus Src Bus Dst I/O Dst I/O Type Polarity Trigger ID Type IRQ APIC APIC INTIN 0 PCI 0 all 1 NMI Con Con 0 PCI 0 all 0 ExtInt Con Con Key: Con - Conforms to bus spec, Hi - Active High, Lo - Active Lo Rsv - Reserved, Lvl - Level Triggered, Edg - Edge Triggered System Address Table: Start Address End Address Bus ID Type 0000000000000000 - 0000000000001000 128 I/O 0000000000000000 - 0000000000001000 0 I/O 0000000000005000 - 0000000000007120 0 I/O 00000000000a0000 - 00000000000c0000 128 Memory 00000000000a0000 - 00000000000c0000 0 Memory 00000000c7000000 - 00000000c7a18000 0 Memory 00000000fbf00000 - 00000000fbf01000 128 Memory Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:00 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log msr". Running tests: msr. msr: MSR register tests. -------------------------------------------------------------------------------- Test 1 of 5: Test CPU generic MSRs. PASSED: Test 1, MSR 0x00000001 P5_MC_TYPE is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000006 MONITOR_FILTER_SIZE is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000017 PLATFORM_ID is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000002a EBL_CR_POWERON is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000001b APIC_BASE is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000003a FEATURE_CONTROL is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000008b BIOS_SIGN_ID is consistent across 64 CPUs. PASSED: Test 1, MSR 0x000000fe MTRRCAP is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000174 SYSENTER_CS is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000175 SYSENTER_ESP is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000176 SYSENTER_EIP is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000179 MCG_CAP is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000017a MCG_STATUS is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000019a CLOCK_MODULATION is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000019b THERM_INTERRUPT is consistent across 64 CPUs. PASSED: Test 1, MSR 0x000001a0 MISC_ENABLE is consistent across 64 CPUs. PASSED: Test 1, MSR 0x000001b2 PACKAGE_THERM_INTERRUPT is consistent across 64 CPUs. PASSED: Test 1, MSR 0x000001f2 SMRR_PHYSBASE is consistent across 64 CPUs. PASSED: Test 1, MSR 0x000001f3 SMRR_PHYSMASK is consistent across 64 CPUs. PASSED: Test 1, MSR 0x000001f8 PLATFORM_DCA_CAP is consistent across 64 CPUs. PASSED: Test 1, MSR 0x000001f9 CPU_DCA_CAP is consistent across 64 CPUs. PASSED: Test 1, MSR 0x000001fa DCA_O_CAP is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000200 MTRR_PHYSBASE0 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000201 MTRR_PHYSMASK0 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000202 MTRR_PHYSBASE1 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000203 MTRR_PHYSMASK1 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000204 MTRR_PHYSBASE2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000205 MTRR_PHYSMASK2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000206 MTRR_PHYSBASE3 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000207 MTRR_PHYSMASK3 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000208 MTRR_PHYSBASE4 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000209 MTRR_PHYSMASK4 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000020a MTRR_PHYSBASE5 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000020b MTRR_PHYSMASK5 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000020c MTRR_PHYSBASE6 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000020d MTRR_PHYSMASK6 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000020e MTRR_PHYSBASE7 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000020f MTRR_PHYSMASK7 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000210 MTRR_PHYSBASE8 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000211 MTRR_PHYSMASK8 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000212 MTRR_PHYSBASE9 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000213 MTRR_PHYSMASK9 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000250 MTRR_FIX64K_000 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000258 MTRR_FIX16K_800 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000259 MTRR_FIX16K_a00 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000268 MTRR_FIX4K_C000 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000269 MTRR_FIX4K_C800 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000026a MTRR_FIX4K_D000 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000026b MTRR_FIX4K_D800 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000026c MTRR_FIX4K_E000 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000026d MTRR_FIX4K_E800 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000026e MTRR_FIX4K_F000 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000026f MTRR_FIX4K_F800 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000277 PAT is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000280 MC0_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000281 MC1_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000282 MC2_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000283 MC3_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000284 MC4_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000285 MC5_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000286 MC6_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000287 MC7_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000288 MC8_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000289 MC9_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000028a MC10_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000028b MC11_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000028c MC12_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000028d MC13_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000028e MC14_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000028f MC15_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000290 MC16_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000291 MC17_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000292 MC18_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000293 MC19_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000294 MC20_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000295 MC21_CTL2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x000002ff MTRR_DEF_TYPE is consistent across 64 CPUs. PASSED: Test 1, MSR 0x000003f1 PEBS_ENABLE is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000480 VMX_BASIC is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000481 VMX_PINPASED_CTLS is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000482 VMX_PROCBASED_CTLS is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000483 VMX_EXIT_CTLS is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000484 VMX_ENTRY_CTLS is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000485 VMX_MISC is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000486 VMX_CR0_FIXED0 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000487 VMX_CR0_FIXED1 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000488 VMX_CR4_FIXED0 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000489 VMX_CR4_FIXED1 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000048a VMX_VMX_VMCS_ENUM is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000048b VMX_PROCBASED_CTLS2 is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000048c VMX_EPT_VPID_CAP is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000048d VMX_TRUE_PINBASED_CTLS is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000048e VMX_TRUE_PROCBASED_CTLS is consistent across 64 CPUs. PASSED: Test 1, MSR 0x0000048f VMX_TRUE_EXIT_CTLS is consistent across 64 CPUs. PASSED: Test 1, MSR 0x00000490 VMX_TRUE_ENTRY_CTLS is consistent across 64 CPUs. PASSED: Test 1, MSR 0xc0000080 EFER is consistent across 64 CPUs. PASSED: Test 1, MSR 0xc0000081 STAR is consistent across 64 CPUs. PASSED: Test 1, MSR 0xc0000082 LSTAR is consistent across 64 CPUs. PASSED: Test 1, MSR 0xc0000084 FMASK is consistent across 64 CPUs. PASSED: Test 1, MSR 0xc0000102 KERNEL_GS_BASE is consistent across 64 CPUs. Test 2 of 5: Test CPU specific model MSRs. No model specific tests for model 0x3f. Test 3 of 5: Test all P State Ratios. PASSED: Test 3, MSR 0x000000ce Minimum P-State is consistent across 64 CPUs. PASSED: Test 3, MSR 0x000000ce Maximum P-State is consistent across 64 CPUs. Test 4 of 5: Test C1 and C3 autodemotion. PASSED: Test 4, MSR 0x000000e2 C1 and C3 Autodemotion is consistent across 64 CPUs. C1 and C3 Autodemotion disabled. Test 5 of 5: Test SMRR MSR registers. PASSED: Test 5, MSR 0x000001f2 SMRR_PHYSBASE is consistent across 64 CPUs. PASSED: Test 5, MSR 0x000001f2 SMRR_TYPE is consistent across 64 CPUs. PASSED: Test 5, MSR 0x000001f3 SMRR_PHYSMASK is consistent across 64 CPUs. PASSED: Test 5, MSR 0x000001f3 SMRR_VALID is consistent across 64 CPUs. ================================================================================ 107 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 107 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ msr | 107| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 107| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:00 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log mtrr". Running tests: mtrr. mtrr: MTRR tests. -------------------------------------------------------------------------------- MTRR overview ------------- Reg 0: 0x0000000080000000 - 0x0000000100000000 ( 2048 MB) Uncached Reg 1: 0x0000380000000000 - 0x0000388000000000 (524288 MB) Uncached Test 1 of 3: Validate the kernel MTRR IOMEM setup. FAILED [MEDIUM] MTRRIncorrectAttr: Test 1, Memory range 0x1000 to 0x9ffff (System RAM) has incorrect attribute Default (Most probably Uncached). FAILED [MEDIUM] MTRRLackingAttr: Test 1, Memory range 0x1000 to 0x9ffff (System RAM) is lacking attribute Write-Back. FAILED [MEDIUM] MTRRIncorrectAttr: Test 1, Memory range 0x100000 to 0x79246fff (System RAM) has incorrect attribute Default (Most probably Uncached). FAILED [MEDIUM] MTRRLackingAttr: Test 1, Memory range 0x100000 to 0x79246fff (System RAM) is lacking attribute Write-Back. FAILED [MEDIUM] MTRRIncorrectAttr: Test 1, Memory range 0x7bd56000 to 0x7bd56fff (System RAM) has incorrect attribute Default (Most probably Uncached). FAILED [MEDIUM] MTRRLackingAttr: Test 1, Memory range 0x7bd56000 to 0x7bd56fff (System RAM) is lacking attribute Write-Back. FAILED [MEDIUM] MTRRIncorrectAttr: Test 1, Memory range 0x7bddd000 to 0x7bffffff (System RAM) has incorrect attribute Default (Most probably Uncached). FAILED [MEDIUM] MTRRLackingAttr: Test 1, Memory range 0x7bddd000 to 0x7bffffff (System RAM) is lacking attribute Write-Back. FAILED [MEDIUM] MTRRIncorrectAttr: Test 1, Memory range 0x100000000 to 0x807fffffff (System RAM) has incorrect attribute Default (Most probably Uncached). FAILED [MEDIUM] MTRRLackingAttr: Test 1, Memory range 0x100000000 to 0x807fffffff (System RAM) is lacking attribute Write-Back. Test 2 of 3: Validate the MTRR setup across all processors. PASSED: Test 2, All processors have the a consistent MTRR setup. Test 3 of 3: Test for AMD MtrrFixDramModEn being cleared by the BIOS. SKIPPED: Test 3, CPU is not an AMD, cannot test. ================================================================================ 1 passed, 10 failed, 0 warning, 0 aborted, 1 skipped, 0 info only. ================================================================================ 1 passed, 10 failed, 0 warning, 0 aborted, 1 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: 10 mtrr: Memory range 0x1000 to 0x9ffff (System RAM) has incorrect attribute Default (Most probably Uncached). mtrr: Memory range 0x1000 to 0x9ffff (System RAM) is lacking attribute Write-Back. mtrr: Memory range 0x100000 to 0x79246fff (System RAM) has incorrect attribute Default (Most probably Uncached). mtrr: Memory range 0x100000 to 0x79246fff (System RAM) is lacking attribute Write-Back. mtrr: Memory range 0x7bd56000 to 0x7bd56fff (System RAM) has incorrect attribute Default (Most probably Uncached). mtrr: Memory range 0x7bd56000 to 0x7bd56fff (System RAM) is lacking attribute Write-Back. mtrr: Memory range 0x7bddd000 to 0x7bffffff (System RAM) has incorrect attribute Default (Most probably Uncached). mtrr: Memory range 0x7bddd000 to 0x7bffffff (System RAM) is lacking attribute Write-Back. mtrr: Memory range 0x100000000 to 0x807fffffff (System RAM) has incorrect attribute Default (Most probably Uncached). mtrr: Memory range 0x100000000 to 0x807fffffff (System RAM) is lacking attribute Write-Back. Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ mtrr | 1| 10| | | 1| | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 1| 10| 0| 0| 1| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:00 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log nx". Running tests: nx. nx: Test if CPU NX is disabled by the BIOS. -------------------------------------------------------------------------------- Test 1 of 3: Test CPU NX capability. PASSED: Test 1, CPU has NX flags, BIOS is not disabling it. Test 2 of 3: Test all CPUs have same BIOS set NX flag. This test verifies that all CPUs have the same NX flag setting. Although rare, BIOS may set the NX flag differently per CPU. PASSED: Test 2, All 64 CPUs have the same NX flag set. Test 3 of 3: Test all CPUs have same msr setting in MSR 0x1a0. This test verifies that all CPUs have the same NX flag setting by examining the per CPU MSR register 0x1a0. PASSED: Test 3, All 64 CPUs have the NX flag in MSR 0x1a0 set. ================================================================================ 3 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 3 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ nx | 3| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 3| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:00 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log oops". Running tests: oops. oops: Scan kernel log for Oopses. -------------------------------------------------------------------------------- Test 1 of 1: Kernel log oops check. PASSED: Test 1, Found no oopses in kernel log. PASSED: Test 1, Found no WARN_ON warnings in kernel log. ================================================================================ 2 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 2 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ oops | 2| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 2| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:00 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log os2gap". Running tests: os2gap. os2gap: OS/2 memory hole test. -------------------------------------------------------------------------------- Test 1 of 1: Test the OS/2 15Mb memory hole is absent. PASSED: Test 1, No OS/2 memory hole found. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ os2gap | 1| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 1| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:00 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log osilinux". Running tests: osilinux. osilinux: Disassemble DSDT to check for _OSI("Linux"). -------------------------------------------------------------------------------- Test 1 of 1: Disassemble DSDT to check for _OSI("Linux"). FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. This is not strictly a failure mode, it just alerts one that this has been defined in the DSDT and probably should be avoided since the Linux ACPI driver matches onto the Windows _OSI strings { Store (0x0D, OSYS) /* \_SB_.OSYS */ } If (_OSI ("Linux")) { Store (0x01, OSYS) /* \_SB_.OSYS */ } If (_OSI ("FreeBSD")) { Store (0x02, OSYS) /* \_SB_.OSYS */ } If (_OSI ("HP-UX")) { Store (0x03, OSYS) /* \_SB_.OSYS */ } If (_OSI ("OpenVMS")) { Store (0x04, OSYS) /* \_SB_.OSYS */ } If (LGreaterEqual (OSYS, 0x0D)) { If (LEqual (XCNT, 0x00)) { ^PCI0.XHCI.XSEL (0x00) Store (0x84, IO80) /* \IO80 */ Increment (XCNT) } WARNING: Test 1, DSDT implements a deprecated _OSI("Linux") test. ================================================================================ 0 passed, 0 failed, 1 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 0 passed, 0 failed, 1 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ osilinux | | | | 1| | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 0| 0| 1| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:00 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log pcc". Running tests: pcc. pcc: Processor Clocking Control (PCC) test. -------------------------------------------------------------------------------- FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Test 1 of 1: Processor Clocking Control (PCC) test. This test checks the sanity of the Processor Clocking Control as found on some HP ProLiant machines. Most computers do not use this interface to control the CPU clock frequency, so this test will be skipped. This machine does not use Processor Clocking Control (PCC). ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 1 info only. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 1 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ pcc | | | | | | 1| ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 0| 0| 0| 0| 1| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:01 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log pciirq". Running tests: pciirq. pciirq: PCI IRQ Routing Table test. -------------------------------------------------------------------------------- Test 1 of 1: PCI IRQ Routing Table test. This test tries to find and sanity check the PCI IRQ Routing Table, as defined by http://www.microsoft.com/taiwan/whdc/archive/pciirq.mspx and described in pages 233-238 of PCI System Architecture, Fourth Edition, Mindshare, Inc. (1999). NOTE: The PCI IRQ Routing Table only really knows about ISA IRQs and is generally not used with APIC. Found PCI IRQ Routing Table at 0x000fd290 Signature : $PIR Version : 0x0100 (1.0) Table Size : 0x00c0 bytes (10 slot entries) PCI Router ID : 00:1f.0 PCI Exclusive IRQs : 0x0000 (none) Compatible PCI Router : 8086:27b8 Miniport Data : 0x00000000 (none) Reserved : 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00 Checksum : 0x48 Bus:Dev Slot INTA# INTB# INTC# INTD# 00:01 00 60/1ce0 61/1ce0 62/1c60 63/1c60 00:02 00 60/1ce0 61/1ce0 62/1c60 63/1c60 00:03 00 60/1ce0 61/1ce0 62/1c60 63/1c60 00:11 00 60/1ce0 00:14 00 63/1c60 00:16 00 60/1ce0 61/1ce0 00:1c 00 60/1ce0 61/1ce0 07:00 00 60/1ce0 61/1ce0 62/1c60 63/1c60 09:00 00 60/1ce0 00:1f 00 60/1ce0 62/1c60 PASSED: Test 1, The Compatible PCI Interrupt Router is defined. PASSED: Test 1, Table size was correct for 10 slot entries. PASSED: Test 1, Reserved region is set to zero. PASSED: Test 1, All 10 slots have sane looking link and IRQ bitmaps. ================================================================================ 4 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 4 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ pciirq | 4| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 4| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:01 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log plddump". Running tests: plddump. plddump: Dump ACPI _PLD (Physical Device Location). -------------------------------------------------------------------------------- FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Test 1 of 1: Dump ACPI _PLD (Physical Device Location). Name: \_SB_.PCI0.XHCI.RHUB.HS01._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 1 Group Position: 1 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS02._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 2 Group Position: 2 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS03._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 3 Group Position: 3 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS04._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 0 (No) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 4 Group Position: 4 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS05._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 0 (No) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 5 Group Position: 5 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS06._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 6 Group Position: 6 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS07._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 0 (No) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 7 Group Position: 7 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS08._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 0 (No) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 8 Group Position: 8 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS09._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 9 Group Position: 9 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS10._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 10 Group Position: 10 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS11._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 11 Group Position: 11 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS12._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 12 Group Position: 12 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS13._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 0 (No) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 13 Group Position: 13 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.HS14._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 14 Group Position: 14 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.SSP1._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 2 Group Position: 2 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.SSP2._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 3 Group Position: 3 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.SSP3._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 2 Group Position: 2 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.SSP4._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 3 Group Position: 3 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.SSP5._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 14 Group Position: 14 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.XHCI.RHUB.SSP6._PLD Revision: 2 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 0 (Top) Vertical Position: 1 (Center) Horizontal Position: 1 (Center) Shape: 0 (Round) Group Orientation: 1 Group Token: 1 Group Position: 1 Bay: 0 (No) Ejectable: 1 (Yes) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Vertical Offset: 65535 mm Horizontal Offset: 65535 mm Name: \_SB_.PCI0.EHC1.HUBN.PR01._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 0 (No) Dock: 0 (No) Lid: 0 (No) Panel Surface: 6 (Unknown) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC1.HUBN.PR01.PR11._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 4 (Front) Vertical Position: 3 (Unknown) Horizontal Position: 0 (Left) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC1.HUBN.PR01.PR12._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 4 (Front) Vertical Position: 3 (Unknown) Horizontal Position: 1 (Center) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC1.HUBN.PR01.PR13._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 4 (Front) Vertical Position: 3 (Unknown) Horizontal Position: 1 (Center) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC1.HUBN.PR01.PR14._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 4 (Front) Vertical Position: 3 (Unknown) Horizontal Position: 2 (Right) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC1.HUBN.PR01.PR15._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 6 (Unknown) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC1.HUBN.PR01.PR16._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 6 (Unknown) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC1.HUBN.PR01.PR17._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 6 (Unknown) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC1.HUBN.PR01.PR18._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 6 (Unknown) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC2.HUBN.PR01._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 0 (No) Dock: 0 (No) Lid: 0 (No) Panel Surface: 6 (Unknown) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC2.HUBN.PR01.PR11._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 4 (Front) Vertical Position: 3 (Unknown) Horizontal Position: 0 (Left) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC2.HUBN.PR01.PR12._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 4 (Front) Vertical Position: 3 (Unknown) Horizontal Position: 1 (Center) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC2.HUBN.PR01.PR13._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 4 (Front) Vertical Position: 3 (Unknown) Horizontal Position: 1 (Center) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC2.HUBN.PR01.PR14._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 4 (Front) Vertical Position: 3 (Unknown) Horizontal Position: 2 (Right) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC2.HUBN.PR01.PR15._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 6 (Unknown) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Name: \_SB_.PCI0.EHC2.HUBN.PR01.PR16._PLD Revision: 1 Ignore Color: 1 (Yes) Width: 0 mm Height: 0 mm User Visible: 1 (Yes) Dock: 0 (No) Lid: 0 (No) Panel Surface: 6 (Unknown) Shape: 7 (Unknown) Group Orientation: 0 Group Token: 0 Group Position: 0 Bay: 0 (No) Ejectable: 0 (No) OSPM Ejection Rqd: 0 (No) Cabinet Number: 0 Card Cage Number: 0 Reference: 0 (No) Rotation: 0 (0 degrees) Order: 0 Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:01 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log pnp". Running tests: pnp. pnp: BIOS Support Installation structure test. -------------------------------------------------------------------------------- Test 1 of 1: PnP BIOS Support Installation structure test. This test tries to find and sanity check the Plug and Play BIOS Support Installation Check structure. Found PnP Installation Check structure at 0x000f0b70 Signature : $PnP Version : 0x10 (1.0) Length : 0x0021 bytes Control Field : 0x0000 (Not supported) Event Notification Flag Address : 0x00000000 (undefined) Real Mode 16 bit Code Address : 0xf000:c956 Real Mode 16 bit Data Address : 0xf000:0000 16 bit Protected Mode Code Address : 0x000fc97e 16 bit Protected Mode Data Address : 0x000f0000 OEM Device Identifier : 0x00000000 (undefined) PASSED: Test 1, Version 1.0 detected. PASSED: Test 1, PnP Installation Check structure is the correct length of 33 bytes. ================================================================================ 2 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 2 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ pnp | 2| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 2| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:01 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log prsdump". Running tests: prsdump. prsdump: Dump ACPI _PRS resources. -------------------------------------------------------------------------------- FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Test 1 of 1: Dump ACPI _PRS (Possible Resource Settings). \_SB_.PCI0.LPC0.UAR1._PRS (Start Dependent Functions Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x06 0x0000: Tag Length : 0x01 0x0001: Reserved : 0x00 0x0001: Performance/robustness : 0x00 (Good configurarion) 0x0001: Compatibility priority : 0x00 (Good configurarion) \_SB_.PCI0.LPC0.UAR2._PRS (Start Dependent Functions Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x06 0x0000: Tag Length : 0x01 0x0001: Reserved : 0x00 0x0001: Performance/robustness : 0x00 (Good configurarion) 0x0001: Compatibility priority : 0x00 (Good configurarion) \_SB_.LNKA._PRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0xdcf8 (IRQ: 3 4 5 6 7 10 11 12 14 15) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKB._PRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0xdcf8 (IRQ: 3 4 5 6 7 10 11 12 14 15) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKC._PRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0xdc78 (IRQ: 3 4 5 6 10 11 12 14 15) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKD._PRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0xdc78 (IRQ: 3 4 5 6 10 11 12 14 15) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKE._PRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0xdcf8 (IRQ: 3 4 5 6 7 10 11 12 14 15) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKF._PRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0xdcf8 (IRQ: 3 4 5 6 7 10 11 12 14 15) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKG._PRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0xdcf8 (IRQ: 3 4 5 6 7 10 11 12 14 15) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) \_SB_.LNKH._PRS (IRQ Descriptor): 0x0000: Tag Type : 0x00 0x0000: Tag Item ID : 0x04 0x0000: Tag Length : 0x03 0x0001: IRQ Mask : 0xdcf8 (IRQ: 3 4 5 6 7 10 11 12 14 15) 0x0003: Reserved : 0x00 0x0003: Interrupt Sharing : 0x01 (Shared) 0x0003: Interrupt Polarity : 0x01 (Active-Low) 0x0003: Ignored : 0x00 0x0003: Interrupt Mode : 0x00 (Level-Triggered) Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:02 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log romdump". Running tests: romdump. romdump: Dump ROM data. -------------------------------------------------------------------------------- Test 1 of 1: Dump ROM data. Found ROM: c0000..c8000 (32768 bytes) c0000: 55 aa 40 e9 3c 03 e9 b7 16 00 00 00 00 00 00 00 U.@.<........... c0010: 30 2e 39 39 2e 31 30 00 44 00 d6 76 5c 00 49 42 0.99.10.D..v\.IB c0020: 4d 20 43 4f 4d 50 41 54 49 42 4c 45 00 00 60 00 M COMPATIBLE..`. c0030: 64 00 65 00 00 00 66 00 6c 00 72 00 ca 01 00 00 d.e...f.l.r..... c0040: 03 1a 00 20 50 43 49 52 03 1a 00 20 00 00 18 00 ... PCIR... .... c0050: 00 00 00 03 40 00 00 00 00 00 00 00 40 80 00 ff ....@.......@... c0060: 0f 04 1f ff ff ff 00 00 00 00 00 00 00 00 00 00 ................ c0070: 00 00 00 20 a8 a8 88 16 00 00 09 03 60 fc 00 ff ... ........`... c0080: 43 00 00 00 34 00 00 00 00 00 18 00 00 00 00 00 C...4........... c0090: 24 00 00 00 00 00 64 00 00 00 00 00 60 00 f0 00 $.....d.....`... c00a0: 00 00 20 20 f1 03 03 00 00 ff c8 00 00 00 20 20 .. .......... c00b0: f1 03 00 00 00 ff 9a 02 00 00 64 00 4c 4c 03 00 ..........d.LL.. c00c0: 68 00 00 18 00 00 00 ff 43 00 00 00 64 00 4c 4c h.......C...d.LL c00d0: 0f 00 04 00 30 01 00 00 08 00 0f 04 90 00 10 00 ....0........... c00e0: 25 28 30 33 14 40 17 96 00 cc 20 00 e2 00 00 00 %(03.@.... ..... c00f0: 80 00 00 00 00 00 84 00 ff ff ff 00 88 00 89 00 ................ c0100: 00 00 18 00 70 a1 00 40 18 00 70 23 00 00 38 00 ....p..@..p#..8. c0110: 00 00 00 00 40 00 44 44 44 ff 44 00 22 22 22 22 ....@.DDD.D."""" c0120: 48 00 22 22 22 22 4c 00 02 00 00 00 50 00 00 00 H.""""L.....P... c0130: 00 80 50 00 00 00 00 00 54 00 00 00 00 00 60 00 ..P.....T.....`. c0140: fa 00 00 00 6c 00 23 00 00 00 70 00 00 00 00 00 ....l.#...p..... c0150: 74 00 00 00 00 00 78 00 00 00 00 00 7c 00 00 00 t.....x.....|... c0160: 00 00 02 ff 00 00 00 00 34 00 01 00 00 00 0c 00 ........4....... c0170: 40 00 00 00 00 ff 43 00 00 00 2c 40 00 17 00 04 @.....C...,@.... c0180: 30 00 00 00 00 00 28 00 05 00 00 00 28 00 07 00 0.....(.....(... c0190: 00 00 28 00 03 00 00 00 28 00 01 00 00 00 2c 40 ..(.....(.....,@ c01a0: 00 16 00 04 0c 00 08 5c 00 00 28 00 01 00 00 00 .......\..(..... c01b0: 0c 00 01 5c 00 00 34 00 03 03 00 00 03 ff 00 00 ...\..4......... c01c0: 00 00 20 01 40 50 00 00 ff ff 00 20 a8 a8 88 16 .. .@P..... .... c01d0: 00 00 09 03 60 fc 00 ff 43 00 00 00 34 00 00 00 ....`...C...4... c01e0: 00 00 18 00 00 00 00 00 24 00 00 00 00 00 64 00 ........$.....d. c01f0: 00 00 00 00 60 00 f0 00 00 00 20 20 f1 03 03 00 ....`..... .... c0200: 00 ff c8 00 00 00 20 20 f1 03 00 00 00 ff 9a 02 ...... ........ c0210: 00 00 64 00 4c 4c 03 00 68 00 00 18 00 00 00 ff ..d.LL..h....... c0220: 43 00 00 00 64 00 4c 4c 0f 00 00 ff 43 00 00 00 C...d.LL....C... c0230: 04 00 00 01 00 00 08 00 0f 04 90 00 10 00 14 27 ...............' c0240: 20 22 14 40 16 b0 00 cc 20 00 e2 00 00 00 80 00 ".@.... ....... c0250: 00 00 00 00 84 00 ff ff ff 00 88 00 89 00 00 00 ................ c0260: 18 00 30 a1 00 40 18 00 30 23 00 00 38 00 00 00 ..0..@..0#..8... c0270: 00 00 40 00 00 80 80 ff 44 00 66 84 84 88 48 00 ..@.....D.f...H. c0280: 08 00 44 44 4c 00 00 00 00 00 50 00 00 00 00 80 ..DDL.....P..... c0290: 50 00 00 00 00 00 54 00 00 00 00 00 60 00 fa 00 P.....T.....`... c02a0: 00 00 6c 00 13 00 00 00 70 00 00 00 00 00 74 00 ..l.....p.....t. c02b0: 00 00 00 00 78 00 00 00 00 00 7c 00 00 00 00 00 ....x.....|..... c02c0: 01 ff 00 00 00 00 34 00 01 00 00 00 0c 00 00 00 ......4......... c02d0: 00 00 00 ff 43 00 00 00 2c 40 02 0d 00 00 30 00 ....C...,@....0. c02e0: 40 00 00 00 28 00 05 00 00 00 28 00 07 00 00 00 @...(.....(..... c02f0: 28 00 03 00 00 00 28 00 01 00 00 00 0c 00 08 5c (.....(........\ c0300: 00 00 2c 40 02 0c 00 00 28 00 01 00 00 00 30 00 ..,@....(.....0. c0310: c0 03 00 00 28 00 03 00 00 00 30 00 40 00 00 00 ....(.....0.@... c0320: 28 00 03 00 00 00 0c 00 01 5c ff 7f 34 00 03 05 (........\..4... c0330: 00 00 03 ff 00 00 00 00 20 01 40 50 00 00 ff ff ........ .@P.... c0340: ff ff fa 06 1e 66 60 2e 8e 1e 45 4b 0e 07 e8 0b .....f`...EK.... c0350: 30 0f 84 91 00 c7 06 40 00 bc 16 8c 0e 42 00 c7 0......@.....B.. c0360: 06 08 01 65 f0 c7 06 0a 01 00 f0 c7 06 b4 01 bc ...e............ c0370: 16 8c 0e b6 01 c7 06 0c 01 55 4f 8c 0e 0e 01 c7 .........UO..... c0380: 06 7c 00 55 53 8c 0e 7e 00 c7 06 a8 04 e3 4a 8c .|.US..~......J. c0390: 0e aa 04 80 26 10 04 cf 80 0e 10 04 20 c6 06 87 ....&....... ... c03a0: 04 60 c6 06 88 04 00 c6 06 89 04 11 c7 06 63 04 .`............c. c03b0: d4 03 e8 37 00 75 2f ba c3 03 b0 01 ee ba c2 03 ...7.u/......... c03c0: b0 e3 ee e8 55 00 e8 0e 2c 53 e8 c6 00 e8 05 01 ....U...,S...... c03d0: e8 bf 0d e8 2c 03 e8 73 12 e8 66 02 e8 2e 01 e8 ....,..s..f..... c03e0: bb 01 5b e8 03 2c 66 61 1f 07 fb cb 52 50 ba c3 ..[..,fa....RP.. c03f0: 03 ec a8 01 74 22 ba cc 03 ec ba d4 03 a8 01 75 ....t".........u c0400: 03 ba b4 03 b0 80 ee eb 00 ed 50 b8 80 a8 ef b0 ..........P..... c0410: 90 ee ed f6 c4 08 58 ef 58 5a c3 80 26 10 04 cf ......X.XZ..&... c0420: 80 0e 10 04 20 c6 06 87 04 60 c6 06 88 04 00 c6 .... ....`...... c0430: 06 89 04 11 e8 2c 00 75 23 80 0e 10 04 10 80 0e .....,.u#....... c0440: 87 04 02 80 26 89 04 fe b8 07 00 cd 42 80 36 10 ....&.......B.6. c0450: 04 10 80 36 87 04 02 c6 06 88 04 0f c7 06 63 04 ...6..........c. c0460: d4 03 c3 ba cc 03 ec 0c 01 ba c2 03 ee ba b4 03 ................ c0470: b0 08 e8 f1 2c 50 b8 08 00 e8 f8 2c e8 e7 2c 80 ....,P.....,..,. c0480: fc 08 75 0c b8 08 1f e8 ea 2c e8 d9 2c 80 fc 1f ..u......,..,... c0490: 58 ef c3 b9 1f 00 b8 81 00 e8 d4 2c fe c0 e2 f9 X..........,.... c04a0: c3 bf b1 22 8b 16 63 04 bb bc bd e8 1f 2d b0 bb ..."..c......-.. c04b0: 2e 8a 25 80 e4 03 b3 fc e8 f4 2c bf b5 22 bb be ..%.......,..".. c04c0: bf e8 09 2d b0 bb 2e 8a 25 80 e4 03 c0 e4 02 b3 ...-....%....... c04d0: f3 e8 db 2c c3 b8 8c 01 e8 95 2c b8 b7 f0 e8 9a ...,......,..... c04e0: 2c b8 b6 04 80 cc 20 e8 86 2c be 60 00 b0 a0 b9 ,..... ..,.`.... c04f0: 03 00 2e 8a 24 3c a2 75 0b e8 f4 2e 80 fb 20 75 ....$<.u...... u c0500: 03 80 e4 fc e8 69 2c fe c0 46 e2 e6 c3 bb 08 00 .....i,..F...... c0510: f6 06 89 04 01 75 02 b7 01 b8 01 1a cd 10 c3 41 .....u.........A c0520: 53 54 31 34 30 30 2f 32 34 30 30 20 56 47 41 20 ST1400/2400 VGA c0530: 54 72 75 65 20 43 6f 6c 6f 72 20 47 72 61 70 68 True Color Graph c0540: 69 63 73 20 61 6e 64 20 56 69 64 65 6f 20 41 63 ics and Video Ac c0550: 63 65 6c 65 72 61 74 6f 72 0d 0a 00 00 00 00 00 celerator....... c0560: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 07 ................ c0570: 00 56 42 49 4f 53 20 56 65 72 73 69 6f 6e 20 30 .VBIOS Version 0 c0580: 2e 39 39 2e 31 30 0d 0a 00 00 00 00 00 00 00 44 .99.10.........D c0590: 52 41 4d 20 53 69 7a 65 3a 20 4d 42 0a e8 93 00 RAM Size: MB.... c05a0: 2e f6 06 5c 00 01 0f 85 88 00 b4 01 b5 20 cd 10 ...\......... .. c05b0: bd 1f 05 2e 0f b6 16 70 05 2e 0f b6 1e 6f 05 b9 .......p.....o.. c05c0: 4b 00 b8 01 13 cd 10 bd 71 05 fe c6 b9 0e 00 b8 K.......q....... c05d0: 01 13 cd 10 bd 10 00 b2 0e b9 07 00 b8 01 13 cd ................ c05e0: 10 bd 8f 05 fe c6 b2 00 b9 0b 00 b8 01 13 cd 10 ................ c05f0: e8 5a 10 8b c3 b1 0a f6 f1 8b c8 b4 0e 2e 8a 1e .Z.............. c0600: 6f 05 80 f9 00 74 06 8a c1 04 30 cd 10 8a c5 04 o....t....0..... c0610: 30 cd 10 ba 4d 42 b9 02 00 b4 0e 2e 8a 1e 6f 05 0...MB........o. c0620: 8a c2 cd 10 c1 ea 08 e2 f7 2e 0f b6 0e 9c 05 e8 ................ c0630: 0a 2d c3 b8 03 00 cd 10 c3 bf 6c 00 eb 03 bf 66 .-........l....f c0640: 00 c3 b0 a1 e8 1b 2b 50 80 cc 05 e8 45 2b bb 14 ......+P....E+.. c0650: 00 e8 74 2d 66 50 66 b8 00 00 0a 00 e8 7b 2d 06 ..t-fPf......{-. c0660: 1e 0e 1f b8 00 a0 8e c0 bf 04 f0 66 b8 00 00 6e ...........f...n c0670: 1e 66 ab bf 00 f0 66 b8 01 00 00 00 66 ab b8 00 .f....f.....f... c0680: b0 8e c0 bf 20 01 66 26 8b 1d b8 98 01 81 fb c0 .... .f&........ c0690: 50 74 39 b8 8c 01 81 fb 40 50 74 30 b8 50 01 81 Pt9.....@Pt0.P.. c06a0: fb c0 4d 74 27 b8 0a 01 81 fb 61 50 74 1e b8 c8 ..Mt'.....aPt... c06b0: 00 81 fb 41 4c 74 15 b8 a6 00 81 fb 21 4a 74 0c ...ALt......!Jt. c06c0: b8 64 00 81 fb 41 cc 74 03 b8 8c 01 c1 e0 02 bf .d...A.t........ c06d0: 04 00 66 26 8b 1d f6 c3 40 75 02 d1 e0 b9 04 00 ..f&....@u...... c06e0: f7 e1 b9 0a 00 f7 f1 c1 e8 03 8b c8 1f 07 bb 14 ................ c06f0: 00 66 58 e8 e4 2c 58 e8 76 2a 8a e1 b0 98 e8 6f .fX..,X.v*.....o c0700: 2a c3 b0 a1 e8 5b 2a 50 80 cc 05 e8 85 2a bb 14 *....[*P.....*.. c0710: 00 e8 b4 2c 66 50 66 b8 00 00 0a 00 e8 bb 2c 06 ...,fPf.......,. c0720: 1e 0e 1f b8 00 a0 8e c0 bf 04 f0 66 b8 00 00 6e ...........f...n c0730: 1e 66 ab bf 00 f0 66 b8 01 00 00 00 66 ab b8 00 .f....f.....f... c0740: b0 8e c0 bf 00 20 66 b8 a8 a8 88 16 66 26 89 05 ..... f.....f&.. c0750: bf 0c 20 66 26 8b 05 66 83 e0 fd 66 26 89 05 bf .. f&..f...f&... c0760: 04 20 66 26 8b 05 66 83 e0 fb 66 26 89 05 bf 2c . f&..f...f&..., c0770: 20 66 26 8b 05 66 25 ff ff fc ff 66 26 89 05 bf f&..f%....f&... c0780: 40 20 66 26 8b 05 a8 80 75 0d bf 08 20 66 26 8b @ f&....u... f&. c0790: 05 0c 73 66 26 89 05 1f 07 bb 14 00 66 58 e8 39 ..sf&.......fX.9 c07a0: 2c 58 e8 cb 29 c3 00 ff 00 ff 33 cc 33 cc 55 aa ,X..).....3.3.U. c07b0: 55 aa 77 88 77 88 6e 4d cc 92 de 3c 3d 54 c7 43 U.w.w.nM...<=T.C c07c0: e8 f1 53 d2 61 7c ff ff ff ff 66 50 66 53 bf 70 ..S.a|....fPfS.p c07d0: 00 66 33 db 66 26 89 1d 66 c1 e0 03 66 0d c1 00 .f3.f&..f...f... c07e0: 00 00 66 26 89 05 66 b9 40 4b 4c 00 66 26 8b 05 ..f&..f.@KL.f&.. c07f0: 66 25 00 30 00 00 66 a9 00 20 00 00 75 20 66 49 f%.0..f.. ..u fI c0800: 74 15 66 a9 00 30 00 00 74 e2 66 33 db 66 26 89 t.f..0..t.f3.f&. c0810: 1d 66 5b 66 58 f9 c3 66 33 db 66 26 89 1d 66 5b .f[fX..f3.f&..f[ c0820: 66 58 f8 c3 66 50 66 53 bf 70 00 66 33 db 66 26 fX..fPfS.p.f3.f& c0830: 89 1d 66 c1 e0 03 66 0d c5 00 00 00 66 26 89 05 ..f...f.....f&.. c0840: 66 b9 40 4b 4c 00 66 26 8b 05 66 25 00 30 00 00 f.@KL.f&..f%.0.. c0850: 66 a9 00 20 00 00 75 20 66 49 74 15 66 a9 00 30 f.. ..u fIt.f..0 c0860: 00 00 74 e2 66 33 db 66 26 89 1d 66 5b 66 58 f9 ..t.f3.f&..f[fX. c0870: c3 66 33 db 66 26 89 1d 66 5b 66 58 f8 c3 66 50 .f3.f&..f[fX..fP c0880: bf 70 00 66 33 db 66 26 89 1d 66 c1 e0 03 66 83 .p.f3.f&..f...f. c0890: c8 41 66 26 89 05 66 b9 40 4b 4c 00 66 26 8b 05 .Af&..f.@KL.f&.. c08a0: 66 a9 00 10 00 00 75 07 e2 f2 bb ff ff eb 18 bf f.....u......... c08b0: 78 00 66 26 8b 05 66 8b d8 66 c1 e8 10 66 0b d8 x.f&..f..f...f.. c08c0: 66 81 e3 ff ff 00 00 bf 70 00 66 33 c0 66 26 89 f.......p.f3.f&. c08d0: 05 66 58 c3 66 50 bf 70 00 66 33 db 66 26 89 1d .fX.fP.p.f3.f&.. c08e0: 66 c1 e0 03 66 83 c8 05 66 26 89 05 66 b9 40 4b f...f...f&..f.@K c08f0: 4c 00 66 26 8b 05 66 a9 00 10 00 00 75 07 e2 f2 L.f&..f.....u... c0900: bb ff ff eb 18 bf 78 00 66 26 8b 05 66 8b d8 66 ......x.f&..f..f c0910: c1 e8 10 66 0b d8 66 81 e3 ff ff 00 00 bf 70 00 ...f..f.......p. c0920: 66 33 c0 66 26 89 05 66 58 c3 66 50 66 52 51 66 f3.f&..fX.fPfRQf c0930: 33 d2 66 b8 00 00 00 00 e8 99 ff 66 0b d3 f6 c7 3.f........f.... c0940: ff 74 05 f6 c3 ff 75 37 66 b8 00 00 00 00 e8 2d .t....u7f......- c0950: ff 66 0b d3 f6 c7 ff 74 05 f6 c3 ff 75 21 66 40 .f.....t....u!f@ c0960: 66 83 f8 07 76 e8 66 bb 03 00 00 00 f7 c2 ff ff f...v.f......... c0970: 74 10 bb 02 00 f6 c2 ff 75 08 bb 01 00 eb 03 66 t.......u......f c0980: 33 db 59 66 5a 66 58 c3 51 66 52 66 50 66 33 d2 3.YfZfX.QfRfPf3. c0990: 66 33 c0 e8 e8 fe 66 0b d3 66 81 fb ff ff 00 00 f3....f..f...... c09a0: 74 21 66 33 c0 e8 2c ff 66 0b d3 66 81 fb ff ff t!f3..,.f..f.... c09b0: 00 00 74 0f 66 f7 d2 66 81 e2 ff ff 00 00 66 8b ..t.f..f......f. c09c0: da eb 03 66 33 db 66 58 66 5a 59 c3 51 66 52 66 ...f3.fXfZY.QfRf c09d0: 50 66 33 c0 e8 f3 fd 73 06 66 33 c0 e8 45 fe 66 Pf3....s.f3..E.f c09e0: 58 66 5a 59 c3 66 50 66 52 51 55 66 ba 03 00 00 XfZY.fPfRQUf.... c09f0: 00 33 ed be a6 07 66 2e 8b 04 bf 7c 00 66 26 89 .3....f....|.f&. c0a00: 05 b9 05 00 e8 23 ff 83 fb 00 74 0b 66 23 d3 66 .....#....t.f#.f c0a10: 83 fa 00 74 15 eb 07 e2 eb 66 33 db eb 0c 83 c6 ...t.....f3..... c0a20: 04 45 83 fd 08 72 cf 66 8b da 5d 59 66 5a 66 58 .E...r.f..]YfZfX c0a30: c3 66 50 66 52 51 55 66 ba ff ff 00 00 33 ed be .fPfRQUf.....3.. c0a40: a6 07 66 2e 8b 04 bf 7c 00 66 26 89 05 b9 05 00 ..f....|.f&..... c0a50: e8 35 ff 83 fb 00 74 0b 66 23 d3 66 83 fa 00 74 .5....t.f#.f...t c0a60: 15 eb 07 e2 eb 66 33 db eb 0c 83 c6 04 45 83 fd .....f3......E.. c0a70: 08 72 cf 66 8b da 5d 59 66 5a 66 58 c3 66 50 66 .r.f..]YfZfX.fPf c0a80: 52 51 55 56 33 ed be a6 07 66 2e 8b 04 bf 7c 00 RQUV3....f....|. c0a90: 66 26 89 05 b9 02 00 e8 32 ff 72 05 e2 f9 f8 eb f&......2.r..... c0aa0: 0a 83 c6 04 45 83 fd 08 72 df f9 5e 5d 59 66 5a ....E...r..^]YfZ c0ab0: 66 58 c3 0e 1f b8 00 a0 8e c0 bf 04 f0 66 b8 00 fX...........f.. c0ac0: 00 72 1e 66 ab bf 00 f0 66 b8 01 00 00 00 66 ab .r.f....f.....f. c0ad0: b8 00 b0 8e c0 33 f6 bf 00 00 b9 20 00 66 8b 82 .....3..... .f.. c0ae0: a4 00 66 26 89 05 83 c7 04 83 c6 04 e2 ef 33 f6 ..f&..........3. c0af0: bf 00 01 b9 13 00 66 8b 42 0c 66 26 89 05 83 c7 ......f.B.f&.... c0b00: 04 83 c6 04 e2 f0 bf 80 01 b9 13 00 66 8b 42 0c ............f.B. c0b10: 66 26 89 05 83 c7 04 83 c6 04 e2 f0 0e 1f b8 00 f&.............. c0b20: a0 8e c0 bf 04 f0 66 b8 00 00 6e 1e 66 ab bf 00 ......f...n.f... c0b30: f0 66 b8 01 00 00 00 66 ab b8 00 b0 8e c0 c3 56 .f.....f.......V c0b40: 55 81 ec 2c 01 8b ec bf 0c 00 66 26 8b 05 66 89 U..,......f&..f. c0b50: 86 24 01 bf 18 00 66 26 8b 05 66 25 ff ff 00 00 .$....f&..f%.... c0b60: 66 26 89 05 66 89 86 28 01 32 c0 c6 46 05 00 c6 f&..f..(.2..F... c0b70: 46 06 00 c6 46 07 00 c6 46 08 00 33 f6 b9 26 00 F...F...F..3..&. c0b80: 66 c7 42 0c 00 00 00 00 83 c6 04 e2 f3 66 b8 ff f.B..........f.. c0b90: 00 ff 00 33 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00 00 00 ................ fc4c0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc4d0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc4e0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc4f0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc500: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc510: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc520: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc530: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc540: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc550: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc560: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc570: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc580: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc590: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc5a0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc5b0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc5c0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc5d0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc5e0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc5f0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc600: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc610: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc620: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc630: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc640: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc650: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc660: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc670: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc680: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc690: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc6a0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc6b0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc6c0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc6d0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc6e0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc6f0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc700: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc710: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc720: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc730: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc740: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc750: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc760: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc770: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc780: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc790: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc7a0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc7b0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc7c0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc7d0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc7e0: 00 00 00 00 00 00 00 00 00 00 13 0f ff 00 00 00 ................ fc7f0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc800: 00 00 ea c7 00 f0 00 00 00 00 00 00 00 00 00 00 ................ fc810: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fc820: 00 00 00 00 00 00 c3 0b e4 c3 3b e4 c3 f8 c3 f8 ..........;..... fc830: cb 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00 00 00 81 0f 00 0f 03 00 00 00 ................ fd940: 00 04 02 1a 03 00 00 00 00 05 02 1c 03 00 00 00 ................ fd950: 00 06 02 1d 03 00 00 00 00 07 02 1e 03 00 00 00 ................ fd960: 00 08 02 22 03 00 00 00 00 09 02 25 03 00 00 00 ...".......%.... fd970: 00 0a 02 24 03 00 00 00 00 0b 02 26 03 00 00 00 ...$.......&.... fd980: 00 0c 02 2a 03 00 00 00 00 0d 02 2d 03 00 00 00 ...*.......-.... fd990: 00 0e 02 2c 03 00 00 00 00 0f 02 2e 03 00 00 00 ...,............ fd9a0: 00 44 00 10 03 00 00 00 00 53 00 13 03 00 00 00 .D.......S...... fd9b0: 00 58 00 10 03 00 00 00 00 59 00 11 03 00 00 00 .X.......Y...... fd9c0: 00 70 00 10 03 00 00 00 00 71 00 11 03 00 00 00 .p.......q...... fd9d0: 07 00 00 10 03 00 00 00 07 01 00 11 03 00 00 00 ................ fd9e0: 07 02 00 12 03 00 00 00 07 03 00 13 03 00 00 00 ................ fd9f0: 09 00 00 10 03 00 00 00 00 7c 00 10 03 00 00 00 .........|...... fda00: 00 7e 00 12 04 03 00 00 00 00 ff 00 04 01 00 00 .~.............. fda10: 00 00 ff 01 80 14 00 00 00 00 00 00 00 00 00 00 ................ fda20: 00 10 00 00 00 00 00 00 80 14 00 00 00 50 00 00 .............P.. fda30: 00 00 00 00 20 21 00 00 00 00 00 00 80 14 00 01 .... !.......... fda40: 00 00 0a 00 00 00 00 00 00 00 02 00 00 00 00 00 ................ fda50: 80 14 00 01 00 00 00 c7 00 00 00 00 00 80 a1 00 ................ fda60: 00 00 00 00 80 14 80 00 00 00 00 00 00 00 00 00 ................ fda70: 00 10 00 00 00 00 00 00 80 14 80 01 00 00 0a 00 ................ fda80: 00 00 00 00 00 00 02 00 00 00 00 00 80 14 80 01 ................ fda90: 00 00 f0 fb 00 00 00 00 00 10 00 00 00 00 00 00 ................ fdaa0: 81 08 81 01 00 00 00 00 82 08 00 00 00 00 00 00 ................ fdab0: 82 08 00 00 01 00 00 00 82 08 80 00 00 00 00 00 ................ fdac0: 82 08 80 00 01 00 00 00 00 00 00 00 00 00 00 00 ................ fdad0: 5f 4d 50 5f d0 d5 0f 00 01 04 ec 00 00 00 00 00 _MP_............ fdae0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdaf0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdb00: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdb10: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdb20: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdb30: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdb40: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdb50: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdb60: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdb70: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdb80: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdb90: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdba0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdbb0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdbc0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdbd0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdbe0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdbf0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdc00: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdc10: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdc20: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdc30: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdc40: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdc50: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdc60: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdc70: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdc80: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdc90: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdca0: 00 00 00 00 00 00 00 00 00 00 00 00 00 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00 00 00 00 00 00 ................ fdd90: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdda0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fddb0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fddc0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fddd0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdde0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fddf0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fde00: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fde10: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fde20: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fde30: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fde40: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fde50: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fde60: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fde70: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fde80: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fde90: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdea0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdeb0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdec0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fded0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdee0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdef0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdf00: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdf10: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdf20: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdf30: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ fdf40: 00 00 00 00 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Data: 03c0: 81 ef 08 1f c9 20 7a 83 07 bd 5c 1f 02 ee 62 3e ..... z...\...b> Data: 03d0: 1a 11 f8 64 0f c9 61 1f e5 90 3f d3 60 1f e2 30 ...d..a...?.`..0 Data: 03e0: 8f b7 60 1f 18 da f7 d1 07 9c 58 ff dc 0f e0 b0 ..`.......X..... Data: 03f0: 0f e5 90 3c 03 6b ef ec 87 80 5c dd ef b5 03 f0 ...<.k....\..... Data: 0400: bc 79 23 5a 42 7a cf 9f 24 6e 30 ec 87 c8 c4 b2 .y#ZBz..$n0..... Data: 0410: 17 e5 7f f0 ef a3 8f d1 be 58 7c 5b f9 23 ad bd .........X|[.#.. Data: 0420: 58 63 90 df c6 bc 88 37 84 77 c7 c1 8e 35 e4 b3 Xc.....7.w...5.. Data: 0430: c7 f1 ec 87 7e 40 fb bd fe a0 7b 92 07 82 c0 3e ....~@....{....> Data: 0440: dc c1 f8 36 43 00 af e4 90 3f d2 60 1f 5c 40 f1 ...6C....?.`.\@. Data: 0450: 89 c7 f1 c8 1f 7a 40 fe 51 03 c3 30 76 11 fe 19 .....z@.Q..0v... Data: 0460: 23 ed 48 1e 16 62 3e 4a 01 f9 f9 68 fe ed 00 f1 #.H..b>J...h.... Data: 0470: 07 64 60 f8 2b 83 d7 10 3f 24 80 fe 71 83 b0 8f .d`.+...?$..q... Data: 0480: ad c3 8e 3a b6 11 f8 ac 35 cd 1f c2 be 92 c0 3c ...:....5......< Data: 0490: 71 b1 20 7e f6 e9 74 7f 1c 82 e1 10 3e 77 a7 f9 q. ~..t.....>w.. Data: 04a0: d5 ed d7 99 5c cc 3d 2f b8 a8 60 d7 2a 1e 91 5b ....\.=/..`.*..[ Data: 04b0: 73 1d a0 73 2c 15 0e 67 d6 68 19 15 cd 03 c0 29 s..s,..g.h.....) Data: 04c0: 7d f7 1d 90 6c e3 32 0b fb 06 61 90 52 fa b0 19 }...l.2...a.R... Data: 04d0: 86 07 d9 66 18 5c 72 97 19 98 78 c5 7f 38 1f ff ...f.\r...x..8.. Data: 04e0: 03 ea d8 ad 63 15 6c 54 77 cf bc c8 7a bc ba d6 ....c.lTw...z... Data: 04f0: 95 77 45 53 31 73 27 84 c0 43 cd eb 26 00 db 30 .wES1s'..C..&..0 Data: 0500: 1d fd a0 eb 3d ca ff a8 f4 9e ad 34 f9 ec a9 aa ....=......4.... Data: 0510: 4c af 15 36 45 cd 3e 50 06 53 99 9c d4 a7 94 e7 L..6E.>P.S...... Data: 0520: f5 69 1c b3 00 d1 ca fa 02 ac ae 10 52 cb f2 05 .i..........R... Data: 0530: b2 dc e0 aa d7 f4 11 dc ef cd 74 7e f2 2f ff 3c ..........t~./.< Data: 0540: 1c 42 fd ea 5e 02 9b b2 fd f2 43 fa 7d 36 8f be .B..^.....C.}6.. Data: 0550: 49 a2 40 9e 56 5c 29 be c7 f8 1a 95 69 4a af 6f I.@.V\).....iJ.o Data: 0560: 6d ed dd 23 f3 90 2e 7f 07 55 98 28 0d 3d ae 72 m..#.....U.(.=.r Data: 0570: 31 02 4e f7 e5 aa 1e d7 2e 1a 74 c5 cb a7 2e 60 1.N.......t....` Data: 0580: a6 d2 91 a3 a5 15 70 44 54 02 f4 99 3d fa 3f b6 ......pDT...=.?. Data: 0590: c2 f1 a5 10 54 03 4c c6 df ac 98 03 97 2e 54 55 ....T.L.......TU Data: 05a0: 32 ca 3a 08 39 8b 6a 03 d0 97 56 8e 03 ca 5c 08 2.:.9.j...V...\. Data: 05b0: e9 45 13 4d 0f 77 fb 6f 61 cf a1 2a d1 67 b3 c5 .E.M.w.oa..*.g.. Data: 05c0: fa 70 4f 86 93 48 8f f1 1e 66 2c bf 96 a4 0b 61 .pO..H...f,....a Data: 05d0: 52 86 85 45 14 75 37 77 76 f4 53 6b 2b c6 09 a0 R..E.u7wv.Sk+... Data: 05e0: 1b 4d 7b a0 b4 64 1f 60 39 93 ef c3 98 09 38 4a .M{..d.`9.....8J Data: 05f0: 2f 63 37 67 5b 12 1c 88 5e f6 13 fb 2b 37 f5 5e /c7g[...^...+7.^ Data: 0600: f2 d2 4b c2 a6 87 21 ee 59 8a 92 c4 14 95 99 97 ..K...!.Y....... Data: 0610: 9c 9e 6c d7 f8 23 74 5e cd 68 7d 9a 6e 92 50 e9 ..l..#t^.h}.n.P. Data: 0620: e1 58 32 ab 9e 9a 57 4b 06 38 b7 84 92 49 0a 48 .X2...WK.8...I.H Data: 0630: a4 d1 c1 5e 5e 92 2f f2 02 3e c5 cd 74 1a 57 b9 ...^^./..>..t.W. Data: 0640: f7 b4 95 f3 f5 75 54 6e e7 9d f7 15 73 a4 5c 5f .....uTn....s.\_ Data: 0650: ad f3 20 b5 eb e8 59 52 3a e6 ad 5d 4e f6 96 ae .. ...YR:..]N... Data: 0660: 15 4a be ae 26 95 9b f9 f6 ad 23 41 8e 0e 2b 57 .J..&.....#A..+W Data: 0670: 54 a6 9a 69 4c a0 5f b0 a1 04 84 65 75 6d 2d 1d T..iL._....eum-. Data: 0680: 0d 1e 8e 1c f5 65 5d 1d 16 79 db c8 13 9d 95 a9 .....e]..y...... Data: 0690: e6 40 b3 84 b5 3f 4c fd d5 ab 74 c2 15 35 7c 45 .@...?L...t..5|E Data: 06a0: 6a f3 ed d9 c7 85 a6 49 cc 26 35 a0 46 62 d1 35 j......I.&5.Fb.5 Data: 06b0: f5 a5 7d 6b 5f 5b eb 60 d3 3e ed 9f 68 e1 96 b5 ..}k_[.`.>..h... Data: 06c0: be 77 3b db d1 56 7e fd 6b 4c fc c2 4c 53 cd 5a .w;..V~.kL..LS.Z Data: 06d0: ce 4e b5 ed 6b 5b 31 89 55 5d 15 9b fc f4 db 4b .N..k[1.U].....K Data: 06e0: 18 31 f4 cd a0 a5 d7 d6 43 f0 84 d4 a0 8e a4 b5 .1......C....... Data: 06f0: 25 a2 35 c2 b6 0e 91 ef 6c fa 92 1c fd 63 f7 cf %.5.....l....c.. Data: 0700: 67 dd bc 7e c2 d6 d7 2d 6b fb 6a e5 b2 fa c7 ff g..~...-k.j..... Data: 0710: 3d 9f 81 fd 7d 9f 21 01 49 44 94 cd f3 a5 bc e4 =...}.!.ID...... Data: 0720: dc df f7 d7 d6 a9 c6 89 4d 5f 60 9d 56 7d b1 79 ........M_`.V}.y Data: 0730: d2 92 4d e0 a3 c3 05 f5 bb 2f c3 26 28 17 ed 16 ..M....../.&(... Data: 0740: 15 3b ca 0a 3a 88 2d ab ab 1f 68 27 74 34 95 24 .;..:.-...h't4.$ Data: 0750: 81 64 5e 19 66 78 66 c9 93 21 49 92 6c b3 56 ae .d^.fxf..!I.l.V. Data: 0760: 27 bf ca d5 41 af a9 89 15 4a a9 e6 ca e9 a0 a4 '...A....J...... Data: 0770: 2d e0 23 c2 93 f8 50 15 fe 17 53 47 c2 54 cf 85 -.#...P...SG.T.. Data: 0780: d5 fe 18 ac 20 53 77 14 0f a9 a0 b7 86 fd f3 b9 .... Sw......... Data: 0790: ed 0b ea b9 b4 78 67 ec 2d 55 55 51 49 54 95 cd .....xg.-UUQIT.. Data: 07a0: f3 a5 c4 f3 5f f0 b5 6e a0 57 d4 44 b0 4a a3 3e ...._..n.W.D.J.> Data: 07b0: de 6b 4d 5c 92 8e 18 d6 b6 3e 42 d7 f8 54 14 bf .kM\.....>B..T.. Data: 07c0: 66 b7 95 dd 2c 1a 67 b4 0f a9 e0 36 87 58 f9 dc f...,.g....6.X.. Data: 07d0: e1 6b 5b 5e ca d5 9b 36 62 93 34 d9 e6 ad 5b fb .k[^...6b.4...[. Data: 07e0: 6b 58 75 31 6c 14 ac 9e 6a ac 68 02 93 58 22 8d kXu1l...j.h..X". Data: 07f0: 69 16 17 83 33 9e bf ce 41 42 8b 02 9a 8a 82 8e i...3...AB...... Data: 0800: 96 03 58 50 28 fb 79 da 2a 3a a6 dd 85 af f1 f6 ..XP(.y.*:...... Data: 0810: 7f fd fe 9d 4e 73 bf 5e bc ea ff f4 00 ....Ns.^..... Name: MemoryConfig7. GUID: 80DBD530-B74C-4F11-8C03-418665532831 Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 1323 bytes of data. Data: 0000: 23 05 00 00 00 1e 00 00 04 1c 6b dd ee d1 25 fe #.........k...%. Data: 0010: f7 de 27 bb a5 74 6c c7 80 eb 1b 5c 21 94 ac 52 ..'..tl....\!..R Data: 0020: 46 e8 dc 97 77 6f b8 c2 6c 3a 6d 9b 46 d0 41 b2 F...wo..l:m.F.A. Data: 0030: da 59 09 35 9d a3 1c 18 0d f3 c8 70 3c 90 87 62 .Y.5.......p<..b Data: 0040: 33 72 dd 11 ac 69 ec e2 1e d0 65 76 9d c4 ca da 3r...i....ev.... Data: 0050: 62 0a 74 0a 1a 9b 4b 22 a3 91 a5 d3 48 11 ef bf b.t...K"....H... Data: 0060: fe ff f0 16 cf 81 79 d7 8f 78 af 86 fe 08 de 0d ......y..x...... Data: 0070: f8 15 7e 2d 5e 1f dd 05 92 34 a7 bb 78 3f ba 74 ..~-^....4..x?.t Data: 0080: d4 ed 15 ae 64 b5 d1 c8 b8 43 cc 66 77 0a d7 32 ....d....C.fw..2 Data: 0090: 5a e8 e4 5d f5 ea 67 83 b8 d8 36 9e 34 90 85 0e Z..]..g...6.4... Data: 00a0: 98 19 78 85 a7 eb 61 fc 03 4b 8b 70 34 98 76 23 ..x...a..K.p4.v# Data: 00b0: 4b f4 de 0a 8d a5 d9 3d 7a f6 a9 55 77 2a aa a8 K......=z..Uw*.. Data: 00c0: 02 d8 de bd ad a8 aa 0d 25 6b 21 8d c9 78 0a fb ........%k!..x.. Data: 00d0: ee 81 5d a1 5e e4 41 4e c5 58 2b 34 20 af 9a 59 ..].^.AN.X+4 ..Y Data: 00e0: e1 ba 05 3f 5a b0 8d 14 b3 db 94 1d 09 69 cb 94 ...?Z........i.. Data: 00f0: 1f 45 40 51 b1 67 9b 2c ef ca 0f aa a0 46 f9 cb .E@Q.g.,.....F.. Data: 0100: 1d d1 69 fa 6f 11 ae a7 5c 81 dd 94 bf 9e 90 7e ..i.o...\......~ Data: 0110: d1 03 df 0a 31 a0 1c 88 ce 0d 49 42 cf 3a 59 e0 ....1.....IB.:Y. Data: 0120: 94 1f 58 81 e3 24 1f 6a 90 7f d1 28 ff 40 b3 c2 ..X..$.j...(.@.. Data: 0130: 74 8c f9 c8 f3 d3 6e 40 ff 71 23 e4 5d 2c 5f 01 t.....n@.q#.],_. Data: 0140: 20 ff 21 6d c4 2d 3d 8a 5a fd a4 a3 fc e4 83 9b .!m.-=.Z....... Data: 0150: 5f e2 2c f7 25 07 e8 e7 ac f3 91 f6 6e 91 c1 71 _.,.%.......n..q Data: 0160: ba af 02 37 18 a1 eb 6b 01 5d 73 c5 81 cd ee f6 ...7...k.]s..... Data: 0170: b1 1c 6e a7 4c 8a f0 cb 3d e2 56 6e 05 1c 1e a7 ..n.L...=.Vn.... Data: 0180: 92 59 fd 44 b5 fe f2 83 e8 a6 0c e5 e7 1e 2d cc .Y.D..........-. Data: 0190: e4 97 56 95 3c 3e 6b 3c 52 c7 15 32 e6 b3 eb a4 ..V.<>k.. Data: 01d0: 7b 82 83 fc 0a 0f 09 e2 dd 66 6a 37 7a 0d 73 07 {........fj7z.s. Data: 01e0: b6 28 3e 92 81 3f 3f 3e 17 54 90 82 92 15 d0 5f .(>..??>.T....._ Data: 01f0: 53 63 03 7d 7f 30 3b 2e 70 42 47 95 b7 0d 96 9d Sc.}.0;.pBG..... Data: 0200: fa 34 da be 6c 14 78 94 e8 cf 4d 8d 7c 12 dc b8 .4..l.x...M.|... Data: 0210: a1 8f 53 0c 24 35 bb 04 7a 79 f1 29 e8 d1 a7 2b ..S.$5..zy.)...+ Data: 0220: 02 e4 2a 61 e3 84 59 6e 5a 26 f9 fd ba c0 b9 95 ..*a..YnZ&...... Data: 0230: 80 81 78 17 32 a8 03 3f 4f 7c fd 38 fb 7d 9d 00 ..x.2..?O|.8.}.. Data: 0240: 63 5f 53 20 6e 0c a4 f2 01 e2 44 88 80 7e dd 67 c_S n.....D..~.g Data: 0250: 3d 08 f3 07 3f 69 e8 f1 33 91 f0 f1 ea 43 27 2b =...?i..3....C'+ Data: 0260: 8c 80 3d 9d 05 b8 6c 24 35 a8 0b 30 7e 63 7d 7a ..=...l$5..0~c}z Data: 0270: 35 cd b6 68 75 fd 39 73 07 3c 66 8f e8 38 b3 06 5..hu.9s..5[..w.Ov... Data: 0310: 70 38 b6 93 43 0e c5 d8 d5 3f 70 37 90 5d 8e 15 p8..C....?p7.].. Data: 0320: 73 91 cb 80 ec 5f 59 28 32 f6 0d c7 b9 5b 32 3d s...._Y(2....[2= Data: 0330: 07 ed c7 80 f9 c0 d8 d5 cc 8d fd 5c c0 fd b5 ce ...........\.... Data: 0340: 07 4b 5f 30 8c fa 8d db b1 ec 3f 9a 1e 71 83 d9 .K_0......?..q.. Data: 0350: 3b 1a 92 07 e1 24 1f f7 20 7d c1 03 ea ec 26 07 ;....$.. }....&. Data: 0360: 28 81 fa 49 07 dd 14 bc 64 03 cd 0e 92 bd b8 d8 (..I....d....... Data: 0370: 16 79 32 07 c9 80 b0 3f ba 48 f7 a9 07 c1 20 7c .y2....?.H.... | Data: 0380: c4 83 cb 90 39 a3 f1 df 4c 8c 44 83 df bd 59 1f ....9...L.D...Y. Data: 0390: a4 24 7e 78 3b 84 03 fb c5 2e f4 b1 c5 40 3b b4 .$~x;........@;. Data: 03a0: 23 d5 20 79 82 6b fe cf 96 47 c4 ee b5 cd 1e 79 #. y.k...G.....y Data: 03b0: c7 da 9d 1e 69 1d f1 ed 1c 8d a5 b4 d8 ed 60 a8 ....i.........`. Data: 03c0: 3b fb 67 63 c4 b7 9d 1e b5 9c d8 d4 c2 9c 1f 0f ;.gc............ Data: 03d0: d9 72 3d 47 ee c7 ec b1 72 3b f2 f6 9e 03 91 bc .r=G....r;...... Data: 03e0: 2e 0b f9 ab 94 1c bb 37 22 a9 31 e3 88 1f 10 81 .......7".1..... Data: 03f0: fe 52 9b b5 20 7f 54 91 7b ed ea 83 c3 20 7c 82 .R.. .T.{.... |. Data: 0400: 07 7b 0a 74 74 d6 ae 47 a6 40 f8 65 0f be 20 7a .{.tt..G.@.e.. z Data: 0410: 8d 00 7c c4 83 9a 3f 9c 57 f2 12 0e ba 3f 87 06 ..|...?.W....?.. Data: 0420: 74 7a 86 8f 20 f9 04 83 99 79 a3 de 90 3f c2 90 tz.. ....y...?.. Data: 0430: 7c a2 07 dc 14 fb 2f 6c 9a e5 b7 c8 b6 72 90 77 |...../l.....r.w Data: 0440: 6b 03 db a4 1c 91 eb b5 d7 07 a8 b3 cf 07 cc 48 k..............H Data: 0450: 3b 1f d3 f6 2b bf 5b 6f 2f c1 0c 0b d6 61 77 ac ;...+.[o/....aw. Data: 0460: 68 1e be b5 a8 78 51 5a 06 05 fb 30 fc bc 86 a1 h....xQZ...0.... Data: 0470: 83 f1 b3 0c 8d 63 30 f1 e6 9a 07 07 ca 6a 18 5c .....c0......j.\ Data: 0480: 46 61 f4 70 99 85 35 ee 88 30 1d 34 0d b4 c3 30 Fa.p..5..0.4...0 Data: 0490: de 3c 6a 1f 55 eb 46 01 ff f0 7f 48 aa 84 aa 80 .. GUID: 80DBD530-B74C-4F11-8C03-418665532831 Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 22 bytes of data. Data: 0000: 0e 00 00 00 00 1e 00 00 00 1f 28 08 47 fc bc ec ..........(.G... Data: 0010: 02 00 00 00 06 00 ...... Name: MemoryConfig?. GUID: 80DBD530-B74C-4F11-8C03-418665532831 Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 67 bytes of data. Data: 0000: 3b 00 00 00 c2 00 00 00 00 24 43 6e 90 d5 3b e7 ;........$Cn..;. Data: 0010: fa 9a bb 02 d5 11 18 48 91 59 85 8c 11 5b 78 91 .......H.Y...[x. Data: 0020: 59 65 84 29 40 26 1b 63 86 07 cb 34 f3 9d 81 89 Ye.)@&.c...4.... Data: 0030: 2b 9a 01 15 72 4e d5 3d d5 dc 0c 2d 34 c0 bd 3d +...rN.=...-4..= Data: 0040: cb 00 00 ... Name: MemoryTypeInformation. GUID: 4C19049F-4137-4DD3-9C10-8B97A83FFDFA Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 64 bytes of data. Data: 0000: 05 00 00 00 5c 00 00 00 06 00 00 00 dc 1e 00 00 ....\........... Data: 0010: 0a 00 00 00 c0 05 00 00 09 00 00 00 51 00 00 00 ............Q... Data: 0020: 00 00 00 00 c6 05 00 00 03 00 00 00 00 06 00 00 ................ Data: 0030: 04 00 00 00 11 3b 00 00 0e 00 00 00 00 00 00 00 .....;.......... Name: MonotonicCounter. GUID: 01368881-C4AD-4B1D-B631-D57A8EC8DB6B Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 4 bytes of data. Data: 0000: a5 05 00 00 .... Name: NetworkStackVar. GUID: D1405D16-7AFC-4695-BB12-41459D3695A2 Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 6 bytes of data. Data: 0000: 01 01 01 00 00 00 ...... Name: OA3MSDMvariable. GUID: 01368881-C4AD-4B1D-B631-D57A8EC8DB6B Attr: 0x6 (BootServ,RunTime). Size: 24 bytes of data. Data: 0000: 00 00 00 00 00 00 00 00 98 af e1 79 00 00 00 00 ...........y.... Data: 0010: 00 f0 dc ff 00 00 00 00 ........ Name: OemSetupVar. GUID: EC87D643-EBA4-4BB5-A1E5-3F3E36B20DA9 Attr: 0x6 (BootServ,RunTime). Size: 276 bytes of data. Data: 0000: 02 00 00 00 00 00 00 00 14 01 00 00 00 00 00 00 ................ Data: 0010: 00 00 00 00 00 00 00 00 38 11 ee 7b 00 00 00 00 ........8..{.... Data: 0020: 18 fc 97 77 00 00 00 00 40 fc 97 77 00 00 00 00 ...w....@..w.... Data: 0030: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ Data: 0040: 4f 6e 62 6f 61 72 64 44 65 76 69 63 65 00 00 00 OnboardDevice... Data: 0050: 00 00 00 00 00 00 00 00 45 0e ee 7b 00 00 00 00 ........E..{.... Data: 0060: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ Data: 0070: 00 00 00 00 00 00 00 00 18 fc 97 77 00 00 00 00 ...........w.... Data: 0080: 01 00 00 00 00 00 00 00 03 00 00 00 00 00 00 00 ................ Data: 0090: 00 00 00 00 00 00 00 00 18 54 c1 78 00 00 00 00 .........T.x.... Data: 00a0: 18 53 c1 78 00 00 00 00 98 a3 41 78 00 00 00 00 .S.x......Ax.... Data: 00b0: 69 6d 67 66 00 00 00 00 01 00 00 00 00 00 00 00 imgf............ Data: 00c0: 18 f0 96 77 00 00 00 00 4e e0 20 79 00 00 00 00 ...w....N. y.... Data: 00d0: b0 e0 ed 7b 00 00 00 00 a0 e0 ed 7b 00 00 00 00 ...{.......{.... Data: 00e0: 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ Data: 00f0: 00 00 00 00 00 00 00 00 f8 77 ee 7b 00 00 00 00 .........w.{.... Data: 0100: 60 dd 20 79 00 00 00 00 98 6e c4 78 00 00 00 00 `. y.....n.x.... Data: 0110: 00 00 00 00 .... Name: OldBootOrder. GUID: 0C923CA9-DF73-4AC8-B6D2-98DDC30D99FC Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 12 bytes of data. Data: 0000: 0b 00 0a 00 05 00 06 00 09 00 00 00 ............ Name: OldLegacyDevOrder. GUID: A56074DB-65FE-45F7-BD21-2D2BDD8E9652 Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 8 bytes of data. Data: 0000: 05 00 00 00 04 00 19 ff ........ Name: OldUefiDevOrder. GUID: 0C923CA9-DF73-4AC8-B6D2-98DDC30D99FC Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 28 bytes of data. Data: 0000: 20 00 00 00 0a 00 05 00 00 00 06 00 00 00 14 00 ............... Data: 0010: 00 00 0a 00 0b 00 00 00 0a 00 00 00 ............ Name: OsIndicationsSupported. GUID: 8BE4DF61-93CA-11D2-AA0D-00E098032B8C Attr: 0x6 (BootServ,RunTime). Value: 0x0000000000000001 (EFI_OS_INDICATIONS_BOOT_TO_FW_UI). Name: PKDefault. GUID: 8BE4DF61-93CA-11D2-AA0D-00E098032B8C Attr: 0x6 (BootServ,RunTime). SignatureType: A5C059A1-94E4-4AA7-87B5-AB155C2BF072 (EFI_CERT_X509_GUID) SignatureListSize: 0x35e SignatureHeaderSize: 0x0 SignatureSize: 0x342 SignatureOwner: 26DC4851-195F-4AE1-9A19-FBF883BBB35E SignatureData: Data: 0000: 30 82 03 2e 30 82 02 16 a0 03 02 01 02 02 10 e4 0...0........... Data: 0010: 12 6c 1d a6 b1 d4 9f 41 94 e0 fe 36 50 59 c9 30 .l.....A...6PY.0 Data: 0020: 0d 06 09 2a 86 48 86 f7 0d 01 01 0b 05 00 30 25 ...*.H........0% Data: 0030: 31 23 30 21 06 03 55 04 03 13 1a 44 4f 20 4e 4f 1#0!..U....DO NO Data: 0040: 54 20 54 52 55 53 54 20 2d 20 41 4d 49 20 54 65 T TRUST - AMI Te Data: 0050: 73 74 20 50 4b 30 1e 17 0d 31 33 30 34 33 30 32 st PK0...1304302 Data: 0060: 32 35 30 31 35 5a 17 0d 31 37 30 34 33 30 32 32 25015Z..17043022 Data: 0070: 35 30 31 34 5a 30 25 31 23 30 21 06 03 55 04 03 5014Z0%1#0!..U.. Data: 0080: 13 1a 44 4f 20 4e 4f 54 20 54 52 55 53 54 20 2d ..DO NOT TRUST - Data: 0090: 20 41 4d 49 20 54 65 73 74 20 50 4b 30 82 01 22 AMI Test PK0.." Data: 00a0: 30 0d 06 09 2a 86 48 86 f7 0d 01 01 01 05 00 03 0...*.H......... Data: 00b0: 82 01 0f 00 30 82 01 0a 02 82 01 01 00 9c 18 19 ....0........... Data: 00c0: 79 cd 2e 05 c9 f5 29 24 5b f8 8e 7f 40 9a 91 70 y.....)$[...@..p Data: 00d0: be 14 d9 fe a2 d8 fd 33 60 e0 6f 57 78 f4 0a 44 .......3`.oWx..D Data: 00e0: 2a d8 f5 cb 23 04 67 7f 25 0f cc 27 77 6b 2f 8e *...#.g.%..'wk/. Data: 00f0: e3 1c f8 ad 9a 33 b8 0c 26 a4 d4 41 a2 38 56 dc .....3..&..A.8V. Data: 0100: eb 74 33 e0 61 09 bf 79 a9 bb 7c 72 f8 0d 22 fa .t3.a..y..|r..". Data: 0110: 4e b8 2e ed a7 da e3 2f 13 9b 14 96 e8 4a 8a 80 N....../.....J.. Data: 0120: cd 85 63 88 4f d8 c8 cc 1d 9a 32 4f db a9 56 30 ..c.O.....2O..V0 Data: 0130: fe 79 89 e7 fd 66 b0 3f 89 8f 4d d7 23 8c af 3b .y...f.?..M.#..; Data: 0140: 83 23 8c b3 0b 2c fc a7 cb 9b c2 2f aa 12 1e be .#...,...../.... Data: 0150: 83 8c b3 2f 77 b9 0d 37 c3 59 12 2c 9f 4d 0d 37 .../w..7.Y.,.M.7 Data: 0160: 47 ad a9 92 7a 14 e5 62 d1 22 7d af 03 25 6d b0 G...z..b."}..%m. Data: 0170: 64 e6 cf f6 5e 88 f6 ae f5 07 84 82 9f 4c 0d 57 d...^........L.W Data: 0180: 2f 55 f7 79 30 54 61 69 ef 8c 93 8f ee e4 74 e6 /U.y0Tai......t. Data: 0190: 29 c2 2c 1a ef 19 78 42 d7 f0 dd 13 35 3a f1 65 ).,...xB....5:.e Data: 01a0: bb fc 11 a4 7e 74 3f 12 ff dc bf bd e8 1f 1a b4 ....~t?......... Data: 01b0: a3 90 74 cf 20 92 eb 39 63 b5 b0 a3 e9 02 03 01 ..t. ..9c....... Data: 01c0: 00 01 a3 5a 30 58 30 56 06 03 55 1d 01 04 4f 30 ...Z0X0V..U...O0 Data: 01d0: 4d 80 10 64 a6 69 c0 11 9e c4 ca 86 86 aa 22 57 M..d.i........"W Data: 01e0: 30 b8 6e a1 27 30 25 31 23 30 21 06 03 55 04 03 0.n.'0%1#0!..U.. Data: 01f0: 13 1a 44 4f 20 4e 4f 54 20 54 52 55 53 54 20 2d ..DO NOT TRUST - Data: 0200: 20 41 4d 49 20 54 65 73 74 20 50 4b 82 10 e4 12 AMI Test PK.... Data: 0210: 6c 1d a6 b1 d4 9f 41 94 e0 fe 36 50 59 c9 30 0d l.....A...6PY.0. Data: 0220: 06 09 2a 86 48 86 f7 0d 01 01 0b 05 00 03 82 01 ..*.H........... Data: 0230: 01 00 6d 89 f6 53 7f 2a b3 79 94 c9 a3 af da 89 ..m..S.*.y...... Data: 0240: 4b 81 1e b5 e0 b6 f4 47 de 24 77 86 6c 46 bb 3d K......G.$w.lF.= Data: 0250: ce fd f1 e9 b9 fe 2b f4 55 c6 9f 13 85 cc 81 90 ......+.U....... Data: 0260: 0b b6 aa 86 8e 9d 07 ae 6a 67 31 61 c5 af 3d 1c ........jg1a..=. Data: 0270: 89 63 90 53 4a ae b1 35 d0 8a 02 dc 79 d0 e9 65 .c.SJ..5....y..e Data: 0280: fc 1b bf e6 4b d0 c5 2a af ef ce bb b4 45 62 a1 ....K..*.....Eb. Data: 0290: 93 9d 50 70 4e 4b ba 4b 8f 8d 94 7a cf 1c 8e 3f ..PpNK.K...z...? Data: 02a0: b2 27 77 f5 22 9b bb ac 45 1c e0 73 27 a4 c8 64 .'w."...E..s'..d Data: 02b0: d2 ed f8 37 64 3a b7 68 86 4a 40 45 9e d3 86 ce ...7d:.h.J@E.... Data: 02c0: b5 d5 f1 65 67 a7 8b f4 39 c6 da 94 5a ab 8b b5 ...eg...9...Z... Data: 02d0: 11 87 77 d7 b7 93 66 ce b9 d5 17 a5 d7 67 09 a6 ..w...f......g.. Data: 02e0: 62 29 9f 1d 31 ae bf e8 39 cc 88 99 1b d6 44 d0 b)..1...9.....D. Data: 02f0: 27 05 93 74 63 27 2e 55 e2 52 a1 7f ad 7b f4 62 '..tc'.U.R...{.b Data: 0300: 70 12 e1 e2 3c 5a 46 5b 6d 1a 70 8c a7 44 77 a5 p...6. Data: 2070: 0d a9 .. Name: TcgInternalSyncFlag. GUID: F3ED95DF-828E-41C7-BCA0-16C41965A634 Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 1 bytes of data. Data: 0000: 00 . Name: Timeout. GUID: 8BE4DF61-93CA-11D2-AA0D-00E098032B8C Attr: 0x7 (NonVolatile,BootServ,RunTime). Timeout: 5 seconds. Name: USB_POINT. GUID: 6F2C06A8-D4B4-4A93-9F78-2B480BE80E0F Attr: 0x6 (BootServ,RunTime). Size: 8 bytes of data. Data: 0000: 00 00 ae 7b 00 00 00 00 ...{.... Name: UefiDevOrder. GUID: 0C923CA9-DF73-4AC8-B6D2-98DDC30D99FC Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 28 bytes of data. Data: 0000: 20 00 00 00 0a 00 05 00 00 00 06 00 00 00 14 00 ............... Data: 0010: 00 00 0a 00 0b 00 00 00 0a 00 00 00 ............ Name: UsbMassDevNum. GUID: EC87D643-EBA4-4BB5-A1E5-3F3E36B20DA9 Attr: 0x6 (BootServ,RunTime). Size: 2 bytes of data. Data: 0000: 01 00 .. Name: UsbMassDevValid. GUID: EC87D643-EBA4-4BB5-A1E5-3F3E36B20DA9 Attr: 0x6 (BootServ,RunTime). Size: 16 bytes of data. Data: 0000: 01 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ Name: UsbSupport. GUID: EC87D643-EBA4-4BB5-A1E5-3F3E36B20DA9 Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 32 bytes of data. Data: 0000: 01 00 00 00 00 00 00 01 01 14 00 00 00 00 00 00 ................ Data: 0010: 00 00 00 00 00 00 00 00 00 00 01 01 00 05 00 01 ................ Name: WriteOnceStatus. GUID: 4B3082A3-80C6-4D7E-9CD0-583917265DF1 Attr: 0x7 (NonVolatile,BootServ,RunTime). Size: 64 bytes of data. Data: 0000: 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f ................ Data: 0010: 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f ................ Data: 0020: 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f ................ Data: 0030: 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f 7f ................ Name: dbDefault. GUID: 8BE4DF61-93CA-11D2-AA0D-00E098032B8C Attr: 0x6 (BootServ,RunTime). SignatureType: A5C059A1-94E4-4AA7-87B5-AB155C2BF072 (EFI_CERT_X509_GUID) SignatureListSize: 0x607 SignatureHeaderSize: 0x0 SignatureSize: 0x5eb SignatureOwner: 77FA9ABD-0359-4D32-BD60-28F4E78F784B SignatureData: Data: 0000: 30 82 05 d7 30 82 03 bf a0 03 02 01 02 02 0a 61 0...0..........a Data: 0010: 07 76 56 00 00 00 00 00 08 30 0d 06 09 2a 86 48 .vV......0...*.H Data: 0020: 86 f7 0d 01 01 0b 05 00 30 81 88 31 0b 30 09 06 ........0..1.0.. Data: 0030: 03 55 04 06 13 02 55 53 31 13 30 11 06 03 55 04 .U....US1.0...U. Data: 0040: 08 13 0a 57 61 73 68 69 6e 67 74 6f 6e 31 10 30 ...Washington1.0 Data: 0050: 0e 06 03 55 04 07 13 07 52 65 64 6d 6f 6e 64 31 ...U....Redmond1 Data: 0060: 1e 30 1c 06 03 55 04 0a 13 15 4d 69 63 72 6f 73 .0...U....Micros Data: 0070: 6f 66 74 20 43 6f 72 70 6f 72 61 74 69 6f 6e 31 oft Corporation1 Data: 0080: 32 30 30 06 03 55 04 03 13 29 4d 69 63 72 6f 73 200..U...)Micros Data: 0090: 6f 66 74 20 52 6f 6f 74 20 43 65 72 74 69 66 69 oft Root Certifi Data: 00a0: 63 61 74 65 20 41 75 74 68 6f 72 69 74 79 20 32 cate Authority 2 Data: 00b0: 30 31 30 30 1e 17 0d 31 31 31 30 31 39 31 38 34 0100...111019184 Data: 00c0: 31 34 32 5a 17 0d 32 36 31 30 31 39 31 38 35 31 142Z..2610191851 Data: 00d0: 34 32 5a 30 81 84 31 0b 30 09 06 03 55 04 06 13 42Z0..1.0...U... Data: 00e0: 02 55 53 31 13 30 11 06 03 55 04 08 13 0a 57 61 .US1.0...U....Wa Data: 00f0: 73 68 69 6e 67 74 6f 6e 31 10 30 0e 06 03 55 04 shington1.0...U. Data: 0100: 07 13 07 52 65 64 6d 6f 6e 64 31 1e 30 1c 06 03 ...Redmond1.0... Data: 0110: 55 04 0a 13 15 4d 69 63 72 6f 73 6f 66 74 20 43 U....Microsoft C Data: 0120: 6f 72 70 6f 72 61 74 69 6f 6e 31 2e 30 2c 06 03 orporation1.0,.. Data: 0130: 55 04 03 13 25 4d 69 63 72 6f 73 6f 66 74 20 57 U...%Microsoft W Data: 0140: 69 6e 64 6f 77 73 20 50 72 6f 64 75 63 74 69 6f indows Productio Data: 0150: 6e 20 50 43 41 20 32 30 31 31 30 82 01 22 30 0d n PCA 20110.."0. Data: 0160: 06 09 2a 86 48 86 f7 0d 01 01 01 05 00 03 82 01 ..*.H........... Data: 0170: 0f 00 30 82 01 0a 02 82 01 01 00 dd 0c bb a2 e4 ..0............. Data: 0180: 2e 09 e3 e7 c5 f7 96 69 bc 00 21 bd 69 33 33 ef .......i..!.i33. Data: 0190: ad 04 cb 54 80 ee 06 83 bb c5 20 84 d9 f7 d2 8b ...T...... ..... Data: 01a0: f3 38 b0 ab a4 ad 2d 7c 62 79 05 ff e3 4a 3f 04 .8....-|by...J?. Data: 01b0: 35 20 70 e3 c4 e7 6b e0 9c c0 36 75 e9 8a 31 dd 5 p...k...6u..1. Data: 01c0: 8d 70 e5 dc 37 b5 74 46 96 28 5b 87 60 23 2c bf .p..7.tF.([.`#,. Data: 01d0: dc 47 a5 67 f7 51 27 9e 72 eb 07 a6 c9 b9 1e 3b .G.g.Q'.r......; Data: 01e0: 53 35 7c e5 d3 ec 27 b9 87 1c fe b9 c9 23 09 6f S5|...'......#.o Data: 01f0: a8 46 91 c1 6e 96 3c 41 d3 cb a3 3f 5d 02 6a 4d .F..n.http:// Data: 0390: 77 77 77 2e 6d 69 63 72 6f 73 6f 66 74 2e 63 6f www.microsoft.co Data: 03a0: 6d 2f 70 6b 69 2f 63 65 72 74 73 2f 4d 69 63 52 m/pki/certs/MicR Data: 03b0: 6f 6f 43 65 72 41 75 74 5f 32 30 31 30 2d 30 36 ooCerAut_2010-06 Data: 03c0: 2d 32 33 2e 63 72 74 30 0d 06 09 2a 86 48 86 f7 -23.crt0...*.H.. Data: 03d0: 0d 01 01 0b 05 00 03 82 02 01 00 14 fc 7c 71 51 .............|qQ Data: 03e0: a5 79 c2 6e b2 ef 39 3e bc 3c 52 0f 6e 2b 3f 10 .y.n..9>..\`....... Data: 04c0: e9 f4 f6 96 85 b6 7f 51 88 66 47 19 8d a2 b0 12 .......Q.fG..... Data: 04d0: 3d 81 2a 68 05 77 bb 91 4c 62 7b b6 c1 07 c7 ba =.*h.w..Lb{..... Data: 04e0: 7a 87 34 03 0e 4b 62 7a 99 e9 ca fc ce 4a 37 c9 z.4..Kbz.....J7. Data: 04f0: 2d a4 57 7c 1c fe 3d dc b8 0f 5a fa d6 c4 b3 02 -.W|..=...Z..... Data: 0500: 85 02 3a ea b3 d9 6e e4 69 21 37 de 81 d1 f6 75 ..:...n.i!7....u Data: 0510: 19 05 67 d3 93 57 5e 29 1b 39 c8 ee 2d e1 cd e4 ..g..W^).9..-... Data: 0520: 45 73 5b d0 d2 ce 7a ab 16 19 82 46 58 d0 5e 9d Es[...z....FX.^. Data: 0530: 81 b3 67 af 6c 35 f2 bc e5 3f 24 e2 35 a2 0a 75 ..g.l5...?$.5..u Data: 0540: 06 f6 18 56 99 d4 78 2c d1 05 1b eb d0 88 01 9d ...V..x,........ Data: 0550: aa 10 f1 05 df ba 7e 2c 63 b7 06 9b 23 21 c4 f9 ......~,c...#!.. Data: 0560: 78 6c e2 58 17 06 36 2b 91 12 03 cc a4 d9 f2 2d xl.X..6+.......- Data: 0570: ba f9 94 9d 40 ed 18 45 f1 ce 8a 5c 6b 3e ab 03 ....@..E...\k>.. Data: 0580: d3 70 18 2a 0a 6a e0 5f 47 d1 d5 63 0a 32 f2 af .p.*.j._G..c.2.. Data: 0590: d7 36 1f 2a 70 5a e5 42 59 08 71 4b 57 ba 7e 83 .6.*pZ.BY.qKW.~. Data: 05a0: 81 f0 21 3c f4 1c c1 c5 b9 90 93 0e 88 45 93 86 ..!<.........E.. Data: 05b0: e9 b1 20 99 be 98 cb c5 95 a4 5d 62 d6 a0 63 08 .. .......]b..c. Data: 05c0: 20 bd 75 10 77 7d 3d f3 45 b9 9f 97 9f cb 57 80 .u.w}=.E.....W. Data: 05d0: 6f 33 a9 04 cf 77 a4 62 1c 59 7e o3...w.b.Y~ SignatureType: A5C059A1-94E4-4AA7-87B5-AB155C2BF072 (EFI_CERT_X509_GUID) SignatureListSize: 0x640 SignatureHeaderSize: 0x0 SignatureSize: 0x624 SignatureOwner: 77FA9ABD-0359-4D32-BD60-28F4E78F784B SignatureData: Data: 0000: 30 82 06 10 30 82 03 f8 a0 03 02 01 02 02 0a 61 0...0..........a Data: 0010: 08 d3 c4 00 00 00 00 00 04 30 0d 06 09 2a 86 48 .........0...*.H Data: 0020: 86 f7 0d 01 01 0b 05 00 30 81 91 31 0b 30 09 06 ........0..1.0.. Data: 0030: 03 55 04 06 13 02 55 53 31 13 30 11 06 03 55 04 .U....US1.0...U. Data: 0040: 08 13 0a 57 61 73 68 69 6e 67 74 6f 6e 31 10 30 ...Washington1.0 Data: 0050: 0e 06 03 55 04 07 13 07 52 65 64 6d 6f 6e 64 31 ...U....Redmond1 Data: 0060: 1e 30 1c 06 03 55 04 0a 13 15 4d 69 63 72 6f 73 .0...U....Micros Data: 0070: 6f 66 74 20 43 6f 72 70 6f 72 61 74 69 6f 6e 31 oft Corporation1 Data: 0080: 3b 30 39 06 03 55 04 03 13 32 4d 69 63 72 6f 73 ;09..U...2Micros Data: 0090: 6f 66 74 20 43 6f 72 70 6f 72 61 74 69 6f 6e 20 oft Corporation Data: 00a0: 54 68 69 72 64 20 50 61 72 74 79 20 4d 61 72 6b Third Party Mark Data: 00b0: 65 74 70 6c 61 63 65 20 52 6f 6f 74 30 1e 17 0d etplace Root0... Data: 00c0: 31 31 30 36 32 37 32 31 32 32 34 35 5a 17 0d 32 110627212245Z..2 Data: 00d0: 36 30 36 32 37 32 31 33 32 34 35 5a 30 81 81 31 60627213245Z0..1 Data: 00e0: 0b 30 09 06 03 55 04 06 13 02 55 53 31 13 30 11 .0...U....US1.0. Data: 00f0: 06 03 55 04 08 13 0a 57 61 73 68 69 6e 67 74 6f ..U....Washingto Data: 0100: 6e 31 10 30 0e 06 03 55 04 07 13 07 52 65 64 6d n1.0...U....Redm Data: 0110: 6f 6e 64 31 1e 30 1c 06 03 55 04 0a 13 15 4d 69 ond1.0...U....Mi Data: 0120: 63 72 6f 73 6f 66 74 20 43 6f 72 70 6f 72 61 74 crosoft Corporat Data: 0130: 69 6f 6e 31 2b 30 29 06 03 55 04 03 13 22 4d 69 ion1+0)..U..."Mi Data: 0140: 63 72 6f 73 6f 66 74 20 43 6f 72 70 6f 72 61 74 crosoft Corporat Data: 0150: 69 6f 6e 20 55 45 46 49 20 43 41 20 32 30 31 31 ion UEFI CA 2011 Data: 0160: 30 82 01 22 30 0d 06 09 2a 86 48 86 f7 0d 01 01 0.."0...*.H..... Data: 0170: 01 05 00 03 82 01 0f 00 30 82 01 0a 02 82 01 01 ........0....... Data: 0180: 00 a5 08 6c 4c c7 45 09 6a 4b 0c a4 c0 87 7f 06 ...lL.E.jK...... Data: 0190: 75 0c 43 01 54 64 e0 16 7f 07 ed 92 7d 0b b2 73 u.C.Td......}..s Data: 01a0: bf 0c 0a c6 4a 45 61 a0 c5 16 2d 96 d3 f5 2b a0 ....JEa...-...+. Data: 01b0: fb 4d 49 9b 41 80 90 3c b9 54 fd e6 bc d1 9d c4 .MI.A..<.T...... Data: 01c0: a4 18 8a 7f 41 8a 5c 59 83 68 32 bb 8c 47 c9 ee ....A.\Y.h2..G.. Data: 01d0: 71 bc 21 4f 9a 8a 7c ff 44 3f 8d 8f 32 b2 26 48 q.!O..|.D?..2.&H Data: 01e0: ae 75 b5 ee c9 4c 1e 4a 19 7e e4 82 9a 1d 78 77 .u...L.J.~....xw Data: 01f0: 4d 0c b0 bd f6 0f d3 16 d3 bc fa 2b a5 51 38 5d M..........+.Q8] Data: 0200: f5 fb ba db 78 02 db ff ec 0a 1b 96 d5 83 b8 19 ....x........... Data: 0210: 13 e9 b6 c0 7b 40 7b e1 1f 28 27 c9 fa ef 56 5e ....{@{..('...V^ Data: 0220: 1c e6 7e 94 7e c0 f0 44 b2 79 39 e5 da b2 62 8b ..~.~..D.y9...b. Data: 0230: 4d bf 38 70 e2 68 24 14 c9 33 a4 08 37 d5 58 69 M.8p.h$..3..7.Xi Data: 0240: 5e d3 7c ed c1 04 53 08 e7 4e b0 2a 87 63 08 61 ^.|...S..N.*.c.a Data: 0250: 6f 63 15 59 ea b2 2b 79 d7 0c 61 67 8a 5b fd 5e oc.Y..+y..ag.[.^ Data: 0260: ad 87 7f ba 86 67 4f 71 58 12 22 04 22 22 ce 8b .....gOqX."."".. Data: 0270: ef 54 71 00 ce 50 35 58 76 95 08 ee 6a b1 a2 01 .Tq..P5Xv...j... Data: 0280: d5 02 03 01 00 01 a3 82 01 76 30 82 01 72 30 12 .........v0..r0. Data: 0290: 06 09 2b 06 01 04 01 82 37 15 01 04 05 02 03 01 ..+.....7....... Data: 02a0: 00 01 30 23 06 09 2b 06 01 04 01 82 37 15 02 04 ..0#..+.....7... Data: 02b0: 16 04 14 f8 c1 6b b7 7f 77 53 4a f3 25 37 1d 4e .....k..wSJ.%7.N Data: 02c0: a1 26 7b 0f 20 70 80 30 1d 06 03 55 1d 0e 04 16 .&{. p.0...U.... Data: 02d0: 04 14 13 ad bf 43 09 bd 82 70 9c 8c d5 4f 31 6e .....C...p...O1n Data: 02e0: d5 22 98 8a 1b d4 30 19 06 09 2b 06 01 04 01 82 ."....0...+..... Data: 02f0: 37 14 02 04 0c 1e 0a 00 53 00 75 00 62 00 43 00 7.......S.u.b.C. Data: 0300: 41 30 0b 06 03 55 1d 0f 04 04 03 02 01 86 30 0f A0...U........0. Data: 0310: 06 03 55 1d 13 01 01 ff 04 05 30 03 01 01 ff 30 ..U.......0....0 Data: 0320: 1f 06 03 55 1d 23 04 18 30 16 80 14 45 66 52 43 ...U.#..0...EfRC Data: 0330: e1 7e 58 11 bf d6 4e 9e 23 55 08 3b 3a 22 6a a8 .~X...N.#U.;:"j. Data: 0340: 30 5c 06 03 55 1d 1f 04 55 30 53 30 51 a0 4f a0 0\..U...U0S0Q.O. Data: 0350: 4d 86 4b 68 74 74 70 3a 2f 2f 63 72 6c 2e 6d 69 M.Khttp://crl.mi Data: 0360: 63 72 6f 73 6f 66 74 2e 63 6f 6d 2f 70 6b 69 2f crosoft.com/pki/ Data: 0370: 63 72 6c 2f 70 72 6f 64 75 63 74 73 2f 4d 69 63 crl/products/Mic Data: 0380: 43 6f 72 54 68 69 50 61 72 4d 61 72 52 6f 6f 5f CorThiParMarRoo_ Data: 0390: 32 30 31 30 2d 31 30 2d 30 35 2e 63 72 6c 30 60 2010-10-05.crl0` Data: 03a0: 06 08 2b 06 01 05 05 07 01 01 04 54 30 52 30 50 ..+........T0R0P Data: 03b0: 06 08 2b 06 01 05 05 07 30 02 86 44 68 74 74 70 ..+.....0..Dhttp Data: 03c0: 3a 2f 2f 77 77 77 2e 6d 69 63 72 6f 73 6f 66 74 ://www.microsoft Data: 03d0: 2e 63 6f 6d 2f 70 6b 69 2f 63 65 72 74 73 2f 4d .com/pki/certs/M Data: 03e0: 69 63 43 6f 72 54 68 69 50 61 72 4d 61 72 52 6f icCorThiParMarRo Data: 03f0: 6f 5f 32 30 31 30 2d 31 30 2d 30 35 2e 63 72 74 o_2010-10-05.crt Data: 0400: 30 0d 06 09 2a 86 48 86 f7 0d 01 01 0b 05 00 03 0...*.H......... Data: 0410: 82 02 01 00 35 08 42 ff 30 cc ce f7 76 0c ad 10 ....5.B.0...v... Data: 0420: 68 58 35 29 46 32 76 27 7c ef 12 41 27 42 1b 4a hX5)F2v'|..A'B.J Data: 0430: aa 6d 81 38 48 59 13 55 f3 e9 58 34 a6 16 0b 82 .m.8HY.U..X4.... Data: 0440: aa 5d ad 82 da 80 83 41 06 8f b4 1d f2 03 b9 f3 .].....A........ Data: 0450: 1a 5d 1b f1 50 90 f9 b3 55 84 42 28 1c 20 bd b2 .]..P...U.B(. .. Data: 0460: ae 51 14 c5 c0 ac 97 95 21 1c 90 db 0f fc 77 9e .Q......!.....w. Data: 0470: 95 73 91 88 ca bd bd 52 b9 05 50 0d df 57 9e a0 .s.....R..P..W.. Data: 0480: 61 ed 0d e5 6d 25 d9 40 0f 17 40 c8 ce a3 4a c2 a...m%.@..@...J. Data: 0490: 4d af 9a 12 1d 08 54 8f bd c7 bc b9 2b 3d 49 2b M.....T.....+=I+ Data: 04a0: 1f 32 fc 6a 21 69 4f 9b c8 7e 42 34 fc 36 06 17 .2.j!iO..~B4.6.. Data: 04b0: 8b 8f 20 40 c0 b3 9a 25 75 27 cd c9 03 a3 f6 5d .. @...%u'.....] Data: 04c0: d1 e7 36 54 7a b9 50 b5 d3 12 d1 07 bf bb 74 df ..6Tz.P.......t. Data: 04d0: dc 1e 8f 80 d5 ed 18 f4 2f 14 16 6b 2f de 66 8c ......../..k/.f. Data: 04e0: b0 23 e5 c7 84 d8 ed ea c1 33 82 ad 56 4b 18 2d .#.......3..VK.- Data: 04f0: f1 68 95 07 cd cf f0 72 f0 ae bb dd 86 85 98 2c .h.....r......., Data: 0500: 21 4c 33 2b f0 0f 4a f0 68 87 b5 92 55 32 75 a1 !L3+..J.h...U2u. Data: 0510: 6a 82 6a 3c a3 25 11 a4 ed ad d7 04 ae cb d8 40 j.j<.%.........@ Data: 0520: 59 a0 84 d1 95 4c 62 91 22 1a 74 1d 8c 3d 47 0e Y....Lb.".t..=G. Data: 0530: 44 a6 e4 b0 9b 34 35 b1 fa b6 53 a8 2c 81 ec a4 D....45...S.,... Data: 0540: 05 71 c8 9d b8 ba e8 1b 44 66 e4 47 54 0e 8e 56 .q......Df.GT..V Data: 0550: 7f b3 9f 16 98 b2 86 d0 68 3e 90 23 b5 2f 5e 8f ........h>.#./^. Data: 0560: 50 85 8d c6 8d 82 5f 41 a1 f4 2e 0d e0 99 d2 6c P....._A.......l Data: 0570: 75 e4 b6 69 b5 21 86 fa 07 d1 f6 e2 4d d1 da ad u..i.!......M... Data: 0580: 2c 77 53 1e 25 32 37 c7 6c 52 72 95 86 b0 f1 35 ,wS.%27.lRr....5 Data: 0590: 61 6a 19 f5 b2 3b 81 50 56 a6 32 2d fe a2 89 f9 aj...;.PV.2-.... Data: 05a0: 42 86 27 18 55 a1 82 ca 5a 9b f8 30 98 54 14 a6 B.'.U...Z..0.T.. Data: 05b0: 47 96 25 2f c8 26 e4 41 94 1a 5c 02 3f e5 96 e3 G.%/.&.A..\.?... Data: 05c0: 85 5b 3c 3e 3f bb 47 16 72 55 e2 25 22 b1 d9 7b .[<>?.G.rU.%"..{ Data: 05d0: e7 03 06 2a a3 f7 1e 90 46 c3 00 0d d6 19 89 e3 ...*....F....... Data: 05e0: 0e 35 27 62 03 71 15 a6 ef d0 27 a0 a0 59 37 60 .5'b.q....'..Y7` Data: 05f0: f8 38 94 b8 e0 78 70 f8 ba 4c 86 87 94 f6 e0 ae .8...xp..L...... Data: 0600: 02 45 ee 65 c2 b6 a3 7e 69 16 75 07 92 9b f5 a6 .E.e...~i.u..... Data: 0610: bc 59 83 58 .Y.X Name: dbxDefault. GUID: 8BE4DF61-93CA-11D2-AA0D-00E098032B8C Attr: 0x6 (BootServ,RunTime). SignatureType: C1C41626-504C-4092-ACA9-41F936934328 (EFI_CERT_SHA256_GUID) SignatureListSize: 0x4c SignatureHeaderSize: 0x0 SignatureSize: 0x30 SignatureOwner: 00000000-0000-0000-0000-000000000000 SignatureData: Data: 0000: 6e 34 0b 9c ff b3 7a 98 9c a5 44 e6 bb 78 0a 2c n4....z...D..x., Data: 0010: 78 90 1d 3f b3 37 38 76 85 11 a3 06 17 af a0 1d x..?.78v........ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:02 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log uefirtmisc". Running tests: uefirtmisc. uefirtmisc: UEFI miscellaneous runtime service interface tests. -------------------------------------------------------------------------------- Test 1 of 2: Test for UEFI miscellaneous runtime service interfaces. Testing UEFI runtime service GetNextHighMonotonicCount interface. PASSED: Test 1, UEFI runtime service GetNextHighMonotonicCount interface test passed. Testing UEFI runtime service QueryCapsuleCapabilities interface. SKIPPED: Test 1, Not support the UEFI QueryCapsuleCapabilities runtime interface with flag value 0x0: cannot test. ADVICE: Firmware also needs to check if the revision of system table is correct or not. Linux kernel returns EFI_UNSUPPORTED as well, if the FirmwareRevision of system table is less than EFI_2_00_SYSTEM_TABLE_REVISION. SKIPPED: Test 1, Not support the UEFI QueryCapsuleCapabilities runtime interface with flag value 0x10000: cannot test. ADVICE: Firmware also needs to check if the revision of system table is correct or not. Linux kernel returns EFI_UNSUPPORTED as well, if the FirmwareRevision of system table is less than EFI_2_00_SYSTEM_TABLE_REVISION. SKIPPED: Test 1, Not support the UEFI QueryCapsuleCapabilities runtime interface with flag value 0x30000: cannot test. ADVICE: Firmware also needs to check if the revision of system table is correct or not. Linux kernel returns EFI_UNSUPPORTED as well, if the FirmwareRevision of system table is less than EFI_2_00_SYSTEM_TABLE_REVISION. SKIPPED: Test 1, Not support the UEFI QueryCapsuleCapabilities runtime interface with flag value 0x50000: cannot test. ADVICE: Firmware also needs to check if the revision of system table is correct or not. Linux kernel returns EFI_UNSUPPORTED as well, if the FirmwareRevision of system table is less than EFI_2_00_SYSTEM_TABLE_REVISION. SKIPPED: Test 1, Not support the UEFI QueryCapsuleCapabilities runtime interface with flag value 0x70000: cannot test. ADVICE: Firmware also needs to check if the revision of system table is correct or not. Linux kernel returns EFI_UNSUPPORTED as well, if the FirmwareRevision of system table is less than EFI_2_00_SYSTEM_TABLE_REVISION. Test 2 of 2: Stress test for UEFI miscellaneous runtime service interfaces. Stress testing for UEFI runtime service GetNextHighMonotonicCount interface. PASSED: Test 2, UEFI runtime service GetNextHighMonotonicCount interface stress test passed. Stress testing UEFI runtime service QueryCapsuleCapabilities interface. SKIPPED: Test 2, Not support the UEFI QueryCapsuleCapabilities runtime interface with flag value 0x0: cannot test. ADVICE: Firmware also needs to check if the revision of system table is correct or not. Linux kernel returns EFI_UNSUPPORTED as well, if the FirmwareRevision of system table is less than EFI_2_00_SYSTEM_TABLE_REVISION. SKIPPED: Test 2, Not support the UEFI QueryCapsuleCapabilities runtime interface with flag value 0x10000: cannot test. ADVICE: Firmware also needs to check if the revision of system table is correct or not. Linux kernel returns EFI_UNSUPPORTED as well, if the FirmwareRevision of system table is less than EFI_2_00_SYSTEM_TABLE_REVISION. SKIPPED: Test 2, Not support the UEFI QueryCapsuleCapabilities runtime interface with flag value 0x30000: cannot test. ADVICE: Firmware also needs to check if the revision of system table is correct or not. Linux kernel returns EFI_UNSUPPORTED as well, if the FirmwareRevision of system table is less than EFI_2_00_SYSTEM_TABLE_REVISION. SKIPPED: Test 2, Not support the UEFI QueryCapsuleCapabilities runtime interface with flag value 0x50000: cannot test. ADVICE: Firmware also needs to check if the revision of system table is correct or not. Linux kernel returns EFI_UNSUPPORTED as well, if the FirmwareRevision of system table is less than EFI_2_00_SYSTEM_TABLE_REVISION. SKIPPED: Test 2, Not support the UEFI QueryCapsuleCapabilities runtime interface with flag value 0x70000: cannot test. ADVICE: Firmware also needs to check if the revision of system table is correct or not. Linux kernel returns EFI_UNSUPPORTED as well, if the FirmwareRevision of system table is less than EFI_2_00_SYSTEM_TABLE_REVISION. ================================================================================ 2 passed, 0 failed, 0 warning, 0 aborted, 10 skipped, 0 info only. ================================================================================ 2 passed, 0 failed, 0 warning, 0 aborted, 10 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ uefirtmisc | 2| | | | 10| | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 2| 0| 0| 0| 10| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:03 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log uefirttime". Running tests: uefirttime. uefirttime: UEFI Runtime service time interface tests. -------------------------------------------------------------------------------- Test 1 of 4: Test UEFI RT service get time interface. PASSED: Test 1, UEFI runtime service GetTime interface test passed. Test 2 of 4: Test UEFI RT service set time interface. PASSED: Test 2, UEFI runtime service SetTime interface test passed. Test 3 of 4: Test UEFI RT service get wakeup time interface. PASSED: Test 3, UEFI runtime service GetWakeupTime interface test passed. Test 4 of 4: Test UEFI RT service set wakeup time interface. PASSED: Test 4, UEFI runtime service SetWakeupTime interface test passed. ================================================================================ 4 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 4 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ uefirttime | 4| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 4| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:06 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log uefirtvariable". Running tests: uefirtvariable. uefirtvariable: UEFI Runtime service variable interface tests. -------------------------------------------------------------------------------- Test 1 of 7: Test UEFI RT service get variable interface. PASSED: Test 1, UEFI runtime service GetVariable interface test passed. Test 2 of 7: Test UEFI RT service get next variable name interface. The runtime service GetNextVariableName interface function test. PASSED: Test 2, The runtime service GetNextVariableName interface function test passed. Check the GetNextVariableName returned value of VariableNameSize is equal to the length of VariableName. PASSED: Test 2, Check the GetNextVariableName returned value of VariableNameSize is equal to the length of VariableName passed. Test GetNextVariableName interface returns unique variables. PASSED: Test 2, Test GetNextVariableName interface returns unique variables passed. The GetNextVariableName interface conformance tests. PASSED: Test 2, The runtime service GetNextVariableName interface conformance tests passed. Test 3 of 7: Test UEFI RT service set variable interface. Testing SetVariable on two different GUIDs and the same variable name. PASSED: Test 3, SetVariable on two different GUIDs and the same variable name passed. Testing SetVariable on the same and different variable data. PASSED: Test 3, SetVariable on the same and different variable data passed. Testing SetVariable on similar variable name. PASSED: Test 3, SetVariable on similar variable name passed. Testing SetVariable on DataSize is 0. PASSED: Test 3, SetVariable on DataSize is 0 passed. Testing SetVariable on Attributes is 0. PASSED: Test 3, SetVariable on Attributes is 0 passed. Testing SetVariable on Invalid Attributes. PASSED: Test 3, SetVariable on Invalid Attributes passed. Testing SetVariable with both Authenticated Attributes set. PASSED: Test 3, Testing SetVariable with both Authenticated Attributes set passed. Test 4 of 7: Test UEFI RT service query variable info interface. PASSED: Test 4, UEFI runtime service query variable info interface test passed. Test 5 of 7: Test UEFI RT service variable interface stress test. Testing GetVariable on getting the variable 1024 times. PASSED: Test 5, GetVariable on getting the variable multiple times passed. Testing GetNextVariableName on getting the variable multiple times. PASSED: Test 5, GetNextVariableName on getting the next variable name multiple times passed. Test 6 of 7: Test UEFI RT service set variable interface stress test. Testing SetVariable on setting the variable with the same data 40 times. PASSED: Test 6, SetVariable on setting the variable with the same data multiple times passed. Testing SetVariable on setting the variable with different data 40 times. PASSED: Test 6, Testing SetVariable on setting the variable with different data multiple times passed. Testing SetVariable on setting the variable with different name 40 times. PASSED: Test 6, Testing SetVariable on setting the variable with different name multiple times passed. Testing SetVariable on setting the variable with different name and data 40 times. PASSED: Test 6, Testing SetVariable on setting the variable with different name and data multiple times passed. Test 7 of 7: Test UEFI RT service query variable info interface stress test. Testing QueryVariableInfo on querying the variable 1024 times. PASSED: Test 7, UEFI runtime service query variable info interface stress test passed. ================================================================================ 20 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 20 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ uefirtvariable | 20| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 20| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:07 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log uefivarinfo". Running tests: uefivarinfo. uefivarinfo: UEFI variable info query. -------------------------------------------------------------------------------- Test 1 of 1: UEFI variable info query. UEFI NVRAM storage: Maximum storage: 524288 bytes Remaining storage: 299164 bytes Maximum variable size: 65509 bytes Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:07 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log version". Running tests: version. version: Gather kernel system information. -------------------------------------------------------------------------------- Test 1 of 4: Gather kernel signature. Signature: Ubuntu 3.13.0-36.63-generic 3.13.11.6 Test 2 of 4: Gather kernel system information. Kernel Version: Linux version 3.13.0-36-generic (buildd@toyol) (gcc version 4.8.2 (Ubuntu 4.8.2-19ubuntu1) ) #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 Test 3 of 4: Gather kernel boot command line. Kernel boot command line: BOOT_IMAGE=/boot/vmlinuz-3.13.0-36-generic.efi.signed root=UUID=d3be2cce-9118-4ed1-b5df-d02b79db0c0f ro quiet splash Test 4 of 4: Gather ACPI driver version. ACPI Version: 20131115 ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 4 info only. ================================================================================ 0 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 4 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ version | | | | | | 4| ---------------+-----+-----+-----+-----+-----+-----+ Total: | 0| 0| 0| 0| 0| 4| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:07 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log virt". Running tests: virt. virt: CPU Virtualisation Configuration test. -------------------------------------------------------------------------------- Test 1 of 1: CPU Virtualisation Configuration test. Check VT/VMX Virtualization extensions are set up correctly. PASSED: Test 1, Virtualization extensions supported and enabled by BIOS. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ virt | 1| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 1| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+ Results generated by fwts: Version V14.08.00 (2014-08-21 12:52:46). Some of this work - Copyright (c) 1999 - 2014, Intel Corp. All rights reserved. Some of this work - Copyright (c) 2010 - 2014, Canonical. This test run on 02/10/14 at 10:51:07 on host Linux y97tm 3.13.0-36-generic #63-Ubuntu SMP Wed Sep 3 21:30:07 UTC 2014 x86_64. Command: "fwts -q --stdout-summary -r /root/.cache/plainbox/sessions /pbox-vz_8a6kh.session/CHECKBOX_DATA/fwts_results.log wmi". Running tests: wmi. wmi: Extract and analyse Windows Management Instrumentation (WMI). -------------------------------------------------------------------------------- FADT X_FIRMWARE_CTRL 64 bit pointer was zero, falling back to using FIRMWARE_CTRL 32 bit pointer. Test 1 of 1: Windows Management Instrumentation test. \_SB_.SRIO._WDG (1 of 1) GUID: 0E7AF9F2-44A1-4C6F-A4B0-A7678480DA61 WMI Method: Flags : 0x02 (Method) Object ID : AA Instance : 0x01 PASSED: Test 1, 0E7AF9F2-44A1-4C6F-A4B0-A7678480DA61 has associated method \_SB_.SRIO.WMAA ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. ================================================================================ 1 passed, 0 failed, 0 warning, 0 aborted, 0 skipped, 0 info only. Test Failure Summary ================================================================================ Critical failures: NONE High failures: NONE Medium failures: NONE Low failures: NONE Other failures: NONE Test |Pass |Fail |Abort|Warn |Skip |Info | ---------------+-----+-----+-----+-----+-----+-----+ wmi | 1| | | | | | ---------------+-----+-----+-----+-----+-----+-----+ Total: | 1| 0| 0| 0| 0| 0| ---------------+-----+-----+-----+-----+-----+-----+