Jeff Fan | 3e8ad6b | 2016-07-20 21:56:58 +0800 | [diff] [blame] | 1 | /** @file
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| 2 | CPU MP Initialize Library common functions.
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| 3 |
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| 4 | Copyright (c) 2016, Intel Corporation. All rights reserved.<BR>
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| 5 | This program and the accompanying materials
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| 6 | are licensed and made available under the terms and conditions of the BSD License
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| 7 | which accompanies this distribution. The full text of the license may be found at
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| 8 | http://opensource.org/licenses/bsd-license.php
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| 9 |
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| 10 | THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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| 11 | WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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| 12 |
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| 13 | **/
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| 14 |
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| 15 | #include "MpLib.h"
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| 16 |
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Jeff Fan | 93ca4c0 | 2016-07-21 16:08:12 +0800 | [diff] [blame] | 17 | EFI_GUID mCpuInitMpLibHobGuid = CPU_INIT_MP_LIB_HOB_GUID;
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| 18 |
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Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 19 | /**
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Jeff Fan | 7c3f2a1 | 2016-07-21 00:22:21 +0800 | [diff] [blame] | 20 | The function will check if BSP Execute Disable is enabled.
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| 21 | DxeIpl may have enabled Execute Disable for BSP,
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| 22 | APs need to get the status and sync up the settings.
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| 23 |
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| 24 | @retval TRUE BSP Execute Disable is enabled.
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| 25 | @retval FALSE BSP Execute Disable is not enabled.
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| 26 | **/
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| 27 | BOOLEAN
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| 28 | IsBspExecuteDisableEnabled (
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| 29 | VOID
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| 30 | )
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| 31 | {
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| 32 | UINT32 Eax;
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| 33 | CPUID_EXTENDED_CPU_SIG_EDX Edx;
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| 34 | MSR_IA32_EFER_REGISTER EferMsr;
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| 35 | BOOLEAN Enabled;
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| 36 |
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| 37 | Enabled = FALSE;
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| 38 | AsmCpuid (CPUID_EXTENDED_FUNCTION, &Eax, NULL, NULL, NULL);
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| 39 | if (Eax >= CPUID_EXTENDED_CPU_SIG) {
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| 40 | AsmCpuid (CPUID_EXTENDED_CPU_SIG, NULL, NULL, NULL, &Edx.Uint32);
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| 41 | //
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| 42 | // CPUID 0x80000001
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| 43 | // Bit 20: Execute Disable Bit available.
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| 44 | //
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| 45 | if (Edx.Bits.NX != 0) {
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| 46 | EferMsr.Uint64 = AsmReadMsr64 (MSR_IA32_EFER);
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| 47 | //
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| 48 | // MSR 0xC0000080
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| 49 | // Bit 11: Execute Disable Bit enable.
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| 50 | //
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| 51 | if (EferMsr.Bits.NXE != 0) {
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| 52 | Enabled = TRUE;
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| 53 | }
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| 54 | }
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| 55 | }
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| 56 |
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| 57 | return Enabled;
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| 58 | }
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| 59 |
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| 60 | /**
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Jeff Fan | 41be0da | 2016-07-21 21:20:18 +0800 | [diff] [blame] | 61 | Worker function for SwitchBSP().
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| 62 |
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| 63 | Worker function for SwitchBSP(), assigned to the AP which is intended
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| 64 | to become BSP.
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| 65 |
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| 66 | @param[in] Buffer Pointer to CPU MP Data
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| 67 | **/
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| 68 | VOID
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| 69 | EFIAPI
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| 70 | FutureBSPProc (
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| 71 | IN VOID *Buffer
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| 72 | )
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| 73 | {
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| 74 | CPU_MP_DATA *DataInHob;
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| 75 |
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| 76 | DataInHob = (CPU_MP_DATA *) Buffer;
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| 77 | AsmExchangeRole (&DataInHob->APInfo, &DataInHob->BSPInfo);
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| 78 | }
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| 79 |
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| 80 | /**
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Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 81 | Get the Application Processors state.
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| 82 |
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| 83 | @param[in] CpuData The pointer to CPU_AP_DATA of specified AP
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| 84 |
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| 85 | @return The AP status
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| 86 | **/
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| 87 | CPU_STATE
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| 88 | GetApState (
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| 89 | IN CPU_AP_DATA *CpuData
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| 90 | )
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| 91 | {
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| 92 | return CpuData->State;
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| 93 | }
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| 94 |
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| 95 | /**
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| 96 | Set the Application Processors state.
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| 97 |
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| 98 | @param[in] CpuData The pointer to CPU_AP_DATA of specified AP
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| 99 | @param[in] State The AP status
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| 100 | **/
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| 101 | VOID
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| 102 | SetApState (
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| 103 | IN CPU_AP_DATA *CpuData,
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| 104 | IN CPU_STATE State
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| 105 | )
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| 106 | {
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| 107 | AcquireSpinLock (&CpuData->ApLock);
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| 108 | CpuData->State = State;
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| 109 | ReleaseSpinLock (&CpuData->ApLock);
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| 110 | }
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Jeff Fan | 3e8ad6b | 2016-07-20 21:56:58 +0800 | [diff] [blame] | 111 |
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| 112 | /**
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Jeff Fan | ffab244 | 2016-12-26 16:44:24 +0800 | [diff] [blame^] | 113 | Save BSP's local APIC timer setting
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| 114 |
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| 115 | @param[in] CpuMpData Pointer to CPU MP Data
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| 116 | **/
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| 117 | VOID
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| 118 | SaveLocalApicTimerSetting (
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| 119 | IN CPU_MP_DATA *CpuMpData
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| 120 | )
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| 121 | {
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| 122 | //
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| 123 | // Record the current local APIC timer setting of BSP
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| 124 | //
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| 125 | GetApicTimerState (
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| 126 | &CpuMpData->DivideValue,
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| 127 | &CpuMpData->PeriodicMode,
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| 128 | &CpuMpData->Vector
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| 129 | );
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| 130 | CpuMpData->CurrentTimerCount = GetApicTimerCurrentCount ();
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| 131 | CpuMpData->TimerInterruptState = GetApicTimerInterruptState ();
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| 132 | }
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| 133 |
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| 134 | /**
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| 135 | Sync local APIC timer setting from BSP to AP.
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| 136 |
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| 137 | @param[in] CpuMpData Pointer to CPU MP Data
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| 138 | **/
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| 139 | VOID
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| 140 | SyncLocalApicTimerSetting (
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| 141 | IN CPU_MP_DATA *CpuMpData
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| 142 | )
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| 143 | {
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| 144 | //
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| 145 | // Sync local APIC timer setting from BSP to AP
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| 146 | //
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| 147 | InitializeApicTimer (
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| 148 | CpuMpData->DivideValue,
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| 149 | CpuMpData->CurrentTimerCount,
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| 150 | CpuMpData->PeriodicMode,
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| 151 | CpuMpData->Vector
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| 152 | );
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| 153 | //
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| 154 | // Disable AP's local APIC timer interrupt
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| 155 | //
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| 156 | DisableApicTimerInterrupt ();
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| 157 | }
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| 158 |
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| 159 | /**
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Jeff Fan | 68cb933 | 2016-07-20 23:47:59 +0800 | [diff] [blame] | 160 | Save the volatile registers required to be restored following INIT IPI.
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| 161 |
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| 162 | @param[out] VolatileRegisters Returns buffer saved the volatile resisters
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| 163 | **/
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| 164 | VOID
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| 165 | SaveVolatileRegisters (
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| 166 | OUT CPU_VOLATILE_REGISTERS *VolatileRegisters
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| 167 | )
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| 168 | {
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| 169 | CPUID_VERSION_INFO_EDX VersionInfoEdx;
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| 170 |
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| 171 | VolatileRegisters->Cr0 = AsmReadCr0 ();
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| 172 | VolatileRegisters->Cr3 = AsmReadCr3 ();
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| 173 | VolatileRegisters->Cr4 = AsmReadCr4 ();
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| 174 |
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| 175 | AsmCpuid (CPUID_VERSION_INFO, NULL, NULL, NULL, &VersionInfoEdx.Uint32);
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| 176 | if (VersionInfoEdx.Bits.DE != 0) {
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| 177 | //
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| 178 | // If processor supports Debugging Extensions feature
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| 179 | // by CPUID.[EAX=01H]:EDX.BIT2
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| 180 | //
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| 181 | VolatileRegisters->Dr0 = AsmReadDr0 ();
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| 182 | VolatileRegisters->Dr1 = AsmReadDr1 ();
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| 183 | VolatileRegisters->Dr2 = AsmReadDr2 ();
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| 184 | VolatileRegisters->Dr3 = AsmReadDr3 ();
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| 185 | VolatileRegisters->Dr6 = AsmReadDr6 ();
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| 186 | VolatileRegisters->Dr7 = AsmReadDr7 ();
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| 187 | }
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| 188 | }
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| 189 |
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| 190 | /**
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| 191 | Restore the volatile registers following INIT IPI.
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| 192 |
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| 193 | @param[in] VolatileRegisters Pointer to volatile resisters
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| 194 | @param[in] IsRestoreDr TRUE: Restore DRx if supported
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| 195 | FALSE: Do not restore DRx
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| 196 | **/
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| 197 | VOID
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| 198 | RestoreVolatileRegisters (
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| 199 | IN CPU_VOLATILE_REGISTERS *VolatileRegisters,
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| 200 | IN BOOLEAN IsRestoreDr
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| 201 | )
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| 202 | {
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| 203 | CPUID_VERSION_INFO_EDX VersionInfoEdx;
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| 204 |
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| 205 | AsmWriteCr0 (VolatileRegisters->Cr0);
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| 206 | AsmWriteCr3 (VolatileRegisters->Cr3);
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| 207 | AsmWriteCr4 (VolatileRegisters->Cr4);
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| 208 |
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| 209 | if (IsRestoreDr) {
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| 210 | AsmCpuid (CPUID_VERSION_INFO, NULL, NULL, NULL, &VersionInfoEdx.Uint32);
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| 211 | if (VersionInfoEdx.Bits.DE != 0) {
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| 212 | //
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| 213 | // If processor supports Debugging Extensions feature
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| 214 | // by CPUID.[EAX=01H]:EDX.BIT2
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| 215 | //
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| 216 | AsmWriteDr0 (VolatileRegisters->Dr0);
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| 217 | AsmWriteDr1 (VolatileRegisters->Dr1);
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| 218 | AsmWriteDr2 (VolatileRegisters->Dr2);
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| 219 | AsmWriteDr3 (VolatileRegisters->Dr3);
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| 220 | AsmWriteDr6 (VolatileRegisters->Dr6);
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| 221 | AsmWriteDr7 (VolatileRegisters->Dr7);
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| 222 | }
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| 223 | }
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| 224 | }
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| 225 |
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| 226 | /**
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Jeff Fan | 9ebcf0f | 2016-07-20 23:32:17 +0800 | [diff] [blame] | 227 | Detect whether Mwait-monitor feature is supported.
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| 228 |
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| 229 | @retval TRUE Mwait-monitor feature is supported.
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| 230 | @retval FALSE Mwait-monitor feature is not supported.
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| 231 | **/
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| 232 | BOOLEAN
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| 233 | IsMwaitSupport (
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| 234 | VOID
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| 235 | )
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| 236 | {
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| 237 | CPUID_VERSION_INFO_ECX VersionInfoEcx;
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| 238 |
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| 239 | AsmCpuid (CPUID_VERSION_INFO, NULL, NULL, &VersionInfoEcx.Uint32, NULL);
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| 240 | return (VersionInfoEcx.Bits.MONITOR == 1) ? TRUE : FALSE;
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| 241 | }
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| 242 |
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| 243 | /**
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| 244 | Get AP loop mode.
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| 245 |
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| 246 | @param[out] MonitorFilterSize Returns the largest monitor-line size in bytes.
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| 247 |
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| 248 | @return The AP loop mode.
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| 249 | **/
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| 250 | UINT8
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| 251 | GetApLoopMode (
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| 252 | OUT UINT32 *MonitorFilterSize
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| 253 | )
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| 254 | {
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| 255 | UINT8 ApLoopMode;
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| 256 | CPUID_MONITOR_MWAIT_EBX MonitorMwaitEbx;
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| 257 |
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| 258 | ASSERT (MonitorFilterSize != NULL);
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| 259 |
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| 260 | ApLoopMode = PcdGet8 (PcdCpuApLoopMode);
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| 261 | ASSERT (ApLoopMode >= ApInHltLoop && ApLoopMode <= ApInRunLoop);
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| 262 | if (ApLoopMode == ApInMwaitLoop) {
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| 263 | if (!IsMwaitSupport ()) {
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| 264 | //
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| 265 | // If processor does not support MONITOR/MWAIT feature,
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| 266 | // force AP in Hlt-loop mode
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| 267 | //
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| 268 | ApLoopMode = ApInHltLoop;
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| 269 | }
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| 270 | }
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| 271 |
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| 272 | if (ApLoopMode != ApInMwaitLoop) {
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| 273 | *MonitorFilterSize = sizeof (UINT32);
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| 274 | } else {
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| 275 | //
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| 276 | // CPUID.[EAX=05H]:EBX.BIT0-15: Largest monitor-line size in bytes
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| 277 | // CPUID.[EAX=05H].EDX: C-states supported using MWAIT
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| 278 | //
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| 279 | AsmCpuid (CPUID_MONITOR_MWAIT, NULL, &MonitorMwaitEbx.Uint32, NULL, NULL);
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| 280 | *MonitorFilterSize = MonitorMwaitEbx.Bits.LargestMonitorLineSize;
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| 281 | }
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| 282 |
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| 283 | return ApLoopMode;
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| 284 | }
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Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 285 |
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| 286 | /**
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 287 | Sort the APIC ID of all processors.
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| 288 |
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| 289 | This function sorts the APIC ID of all processors so that processor number is
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| 290 | assigned in the ascending order of APIC ID which eases MP debugging.
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| 291 |
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| 292 | @param[in] CpuMpData Pointer to PEI CPU MP Data
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| 293 | **/
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| 294 | VOID
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| 295 | SortApicId (
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| 296 | IN CPU_MP_DATA *CpuMpData
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| 297 | )
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| 298 | {
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| 299 | UINTN Index1;
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| 300 | UINTN Index2;
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| 301 | UINTN Index3;
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| 302 | UINT32 ApicId;
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 303 | CPU_INFO_IN_HOB CpuInfo;
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 304 | UINT32 ApCount;
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| 305 | CPU_INFO_IN_HOB *CpuInfoInHob;
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| 306 |
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| 307 | ApCount = CpuMpData->CpuCount - 1;
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 308 | CpuInfoInHob = (CPU_INFO_IN_HOB *) (UINTN) CpuMpData->CpuInfoInHob;
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 309 | if (ApCount != 0) {
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| 310 | for (Index1 = 0; Index1 < ApCount; Index1++) {
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| 311 | Index3 = Index1;
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| 312 | //
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| 313 | // Sort key is the hardware default APIC ID
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| 314 | //
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 315 | ApicId = CpuInfoInHob[Index1].ApicId;
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 316 | for (Index2 = Index1 + 1; Index2 <= ApCount; Index2++) {
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 317 | if (ApicId > CpuInfoInHob[Index2].ApicId) {
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 318 | Index3 = Index2;
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 319 | ApicId = CpuInfoInHob[Index2].ApicId;
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 320 | }
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| 321 | }
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| 322 | if (Index3 != Index1) {
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 323 | CopyMem (&CpuInfo, &CpuInfoInHob[Index3], sizeof (CPU_INFO_IN_HOB));
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 324 | CopyMem (
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 325 | &CpuInfoInHob[Index3],
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| 326 | &CpuInfoInHob[Index1],
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| 327 | sizeof (CPU_INFO_IN_HOB)
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 328 | );
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 329 | CopyMem (&CpuInfoInHob[Index1], &CpuInfo, sizeof (CPU_INFO_IN_HOB));
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 330 | }
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| 331 | }
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| 332 |
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| 333 | //
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| 334 | // Get the processor number for the BSP
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| 335 | //
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| 336 | ApicId = GetInitialApicId ();
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| 337 | for (Index1 = 0; Index1 < CpuMpData->CpuCount; Index1++) {
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 338 | if (CpuInfoInHob[Index1].ApicId == ApicId) {
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 339 | CpuMpData->BspNumber = (UINT32) Index1;
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| 340 | break;
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| 341 | }
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| 342 | }
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Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 343 | }
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| 344 | }
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| 345 |
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| 346 | /**
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Jeff Fan | fe62776 | 2016-07-21 00:29:49 +0800 | [diff] [blame] | 347 | Enable x2APIC mode on APs.
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| 348 |
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| 349 | @param[in, out] Buffer Pointer to private data buffer.
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| 350 | **/
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| 351 | VOID
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| 352 | EFIAPI
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| 353 | ApFuncEnableX2Apic (
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| 354 | IN OUT VOID *Buffer
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| 355 | )
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| 356 | {
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| 357 | SetApicMode (LOCAL_APIC_MODE_X2APIC);
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| 358 | }
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| 359 |
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| 360 | /**
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Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 361 | Do sync on APs.
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| 362 |
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| 363 | @param[in, out] Buffer Pointer to private data buffer.
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| 364 | **/
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| 365 | VOID
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| 366 | EFIAPI
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| 367 | ApInitializeSync (
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| 368 | IN OUT VOID *Buffer
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| 369 | )
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| 370 | {
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| 371 | CPU_MP_DATA *CpuMpData;
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| 372 |
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| 373 | CpuMpData = (CPU_MP_DATA *) Buffer;
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| 374 | //
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| 375 | // Sync BSP's MTRR table to AP
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| 376 | //
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| 377 | MtrrSetAllMtrrs (&CpuMpData->MtrrTable);
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| 378 | //
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| 379 | // Load microcode on AP
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| 380 | //
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| 381 | MicrocodeDetect (CpuMpData);
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| 382 | }
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| 383 |
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| 384 | /**
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| 385 | Find the current Processor number by APIC ID.
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| 386 |
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Dandan Bi | 367284e | 2016-12-13 10:46:28 +0800 | [diff] [blame] | 387 | @param[in] CpuMpData Pointer to PEI CPU MP Data
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| 388 | @param[out] ProcessorNumber Return the pocessor number found
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Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 389 |
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| 390 | @retval EFI_SUCCESS ProcessorNumber is found and returned.
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| 391 | @retval EFI_NOT_FOUND ProcessorNumber is not found.
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| 392 | **/
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| 393 | EFI_STATUS
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| 394 | GetProcessorNumber (
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| 395 | IN CPU_MP_DATA *CpuMpData,
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| 396 | OUT UINTN *ProcessorNumber
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| 397 | )
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| 398 | {
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| 399 | UINTN TotalProcessorNumber;
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| 400 | UINTN Index;
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 401 | CPU_INFO_IN_HOB *CpuInfoInHob;
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| 402 |
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| 403 | CpuInfoInHob = (CPU_INFO_IN_HOB *) (UINTN) CpuMpData->CpuInfoInHob;
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Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 404 |
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| 405 | TotalProcessorNumber = CpuMpData->CpuCount;
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| 406 | for (Index = 0; Index < TotalProcessorNumber; Index ++) {
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Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 407 | if (CpuInfoInHob[Index].ApicId == GetApicId ()) {
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Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 408 | *ProcessorNumber = Index;
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| 409 | return EFI_SUCCESS;
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| 410 | }
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| 411 | }
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| 412 | return EFI_NOT_FOUND;
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| 413 | }
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| 414 |
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Jeff Fan | 03434df | 2016-07-21 00:28:45 +0800 | [diff] [blame] | 415 | /**
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| 416 | This function will get CPU count in the system.
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| 417 |
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| 418 | @param[in] CpuMpData Pointer to PEI CPU MP Data
|
| 419 |
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| 420 | @return CPU count detected
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| 421 | **/
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| 422 | UINTN
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| 423 | CollectProcessorCount (
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| 424 | IN CPU_MP_DATA *CpuMpData
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| 425 | )
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| 426 | {
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| 427 | //
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| 428 | // Send 1st broadcast IPI to APs to wakeup APs
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| 429 | //
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| 430 | CpuMpData->InitFlag = ApInitConfig;
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| 431 | CpuMpData->X2ApicEnable = FALSE;
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| 432 | WakeUpAP (CpuMpData, TRUE, 0, NULL, NULL);
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Jeff Fan | 03434df | 2016-07-21 00:28:45 +0800 | [diff] [blame] | 433 | CpuMpData->InitFlag = ApInitDone;
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| 434 | ASSERT (CpuMpData->CpuCount <= PcdGet32 (PcdCpuMaxLogicalProcessorNumber));
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| 435 | //
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| 436 | // Wait for all APs finished the initialization
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| 437 | //
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| 438 | while (CpuMpData->FinishedCount < (CpuMpData->CpuCount - 1)) {
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| 439 | CpuPause ();
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| 440 | }
|
| 441 |
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Jeff Fan | fe62776 | 2016-07-21 00:29:49 +0800 | [diff] [blame] | 442 | if (CpuMpData->X2ApicEnable) {
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| 443 | DEBUG ((DEBUG_INFO, "Force x2APIC mode!\n"));
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| 444 | //
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| 445 | // Wakeup all APs to enable x2APIC mode
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| 446 | //
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| 447 | WakeUpAP (CpuMpData, TRUE, 0, ApFuncEnableX2Apic, NULL);
|
| 448 | //
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| 449 | // Wait for all known APs finished
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| 450 | //
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| 451 | while (CpuMpData->FinishedCount < (CpuMpData->CpuCount - 1)) {
|
| 452 | CpuPause ();
|
| 453 | }
|
| 454 | //
|
| 455 | // Enable x2APIC on BSP
|
| 456 | //
|
| 457 | SetApicMode (LOCAL_APIC_MODE_X2APIC);
|
| 458 | }
|
| 459 | DEBUG ((DEBUG_INFO, "APIC MODE is %d\n", GetApicMode ()));
|
Jeff Fan | 8a2d564 | 2016-07-21 00:31:36 +0800 | [diff] [blame] | 460 | //
|
| 461 | // Sort BSP/Aps by CPU APIC ID in ascending order
|
| 462 | //
|
| 463 | SortApicId (CpuMpData);
|
| 464 |
|
Jeff Fan | 03434df | 2016-07-21 00:28:45 +0800 | [diff] [blame] | 465 | DEBUG ((DEBUG_INFO, "MpInitLib: Find %d processors in system.\n", CpuMpData->CpuCount));
|
| 466 |
|
| 467 | return CpuMpData->CpuCount;
|
| 468 | }
|
| 469 |
|
Dandan Bi | 367284e | 2016-12-13 10:46:28 +0800 | [diff] [blame] | 470 | /**
|
Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 471 | Initialize CPU AP Data when AP is wakeup at the first time.
|
| 472 |
|
| 473 | @param[in, out] CpuMpData Pointer to PEI CPU MP Data
|
| 474 | @param[in] ProcessorNumber The handle number of processor
|
| 475 | @param[in] BistData Processor BIST data
|
Dandan Bi | 367284e | 2016-12-13 10:46:28 +0800 | [diff] [blame] | 476 | @param[in] ApTopOfStack Top of AP stack
|
Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 477 |
|
| 478 | **/
|
| 479 | VOID
|
| 480 | InitializeApData (
|
| 481 | IN OUT CPU_MP_DATA *CpuMpData,
|
| 482 | IN UINTN ProcessorNumber,
|
Jeff Fan | 845c5be | 2016-11-14 11:38:25 +0800 | [diff] [blame] | 483 | IN UINT32 BistData,
|
Laszlo Ersek | dd3fa0c | 2016-11-16 23:31:11 +0100 | [diff] [blame] | 484 | IN UINT64 ApTopOfStack
|
Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 485 | )
|
| 486 | {
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 487 | CPU_INFO_IN_HOB *CpuInfoInHob;
|
| 488 |
|
| 489 | CpuInfoInHob = (CPU_INFO_IN_HOB *) (UINTN) CpuMpData->CpuInfoInHob;
|
| 490 | CpuInfoInHob[ProcessorNumber].InitialApicId = GetInitialApicId ();
|
| 491 | CpuInfoInHob[ProcessorNumber].ApicId = GetApicId ();
|
| 492 | CpuInfoInHob[ProcessorNumber].Health = BistData;
|
Laszlo Ersek | dd3fa0c | 2016-11-16 23:31:11 +0100 | [diff] [blame] | 493 | CpuInfoInHob[ProcessorNumber].ApTopOfStack = ApTopOfStack;
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 494 |
|
Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 495 | CpuMpData->CpuData[ProcessorNumber].Waiting = FALSE;
|
Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 496 | CpuMpData->CpuData[ProcessorNumber].CpuHealthy = (BistData == 0) ? TRUE : FALSE;
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 497 | if (CpuInfoInHob[ProcessorNumber].InitialApicId >= 0xFF) {
|
Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 498 | //
|
| 499 | // Set x2APIC mode if there are any logical processor reporting
|
| 500 | // an Initial APIC ID of 255 or greater.
|
| 501 | //
|
| 502 | AcquireSpinLock(&CpuMpData->MpLock);
|
| 503 | CpuMpData->X2ApicEnable = TRUE;
|
| 504 | ReleaseSpinLock(&CpuMpData->MpLock);
|
| 505 | }
|
| 506 |
|
| 507 | InitializeSpinLock(&CpuMpData->CpuData[ProcessorNumber].ApLock);
|
| 508 | SetApState (&CpuMpData->CpuData[ProcessorNumber], CpuStateIdle);
|
| 509 | }
|
| 510 |
|
Jeff Fan | 9ebcf0f | 2016-07-20 23:32:17 +0800 | [diff] [blame] | 511 | /**
|
Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 512 | This function will be called from AP reset code if BSP uses WakeUpAP.
|
| 513 |
|
| 514 | @param[in] ExchangeInfo Pointer to the MP exchange info buffer
|
| 515 | @param[in] NumApsExecuting Number of current executing AP
|
| 516 | **/
|
| 517 | VOID
|
| 518 | EFIAPI
|
| 519 | ApWakeupFunction (
|
| 520 | IN MP_CPU_EXCHANGE_INFO *ExchangeInfo,
|
| 521 | IN UINTN NumApsExecuting
|
| 522 | )
|
| 523 | {
|
| 524 | CPU_MP_DATA *CpuMpData;
|
| 525 | UINTN ProcessorNumber;
|
| 526 | EFI_AP_PROCEDURE Procedure;
|
| 527 | VOID *Parameter;
|
| 528 | UINT32 BistData;
|
| 529 | volatile UINT32 *ApStartupSignalBuffer;
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 530 | CPU_INFO_IN_HOB *CpuInfoInHob;
|
Laszlo Ersek | dd3fa0c | 2016-11-16 23:31:11 +0100 | [diff] [blame] | 531 | UINT64 ApTopOfStack;
|
Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 532 |
|
| 533 | //
|
| 534 | // AP finished assembly code and begin to execute C code
|
| 535 | //
|
| 536 | CpuMpData = ExchangeInfo->CpuMpData;
|
| 537 |
|
Jeff Fan | ffab244 | 2016-12-26 16:44:24 +0800 | [diff] [blame^] | 538 | //
|
| 539 | // AP's local APIC settings will be lost after received INIT IPI
|
| 540 | // We need to re-initialize them at here
|
| 541 | //
|
| 542 | ProgramVirtualWireMode ();
|
| 543 | SyncLocalApicTimerSetting (CpuMpData);
|
Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 544 |
|
| 545 | while (TRUE) {
|
| 546 | if (CpuMpData->InitFlag == ApInitConfig) {
|
| 547 | //
|
| 548 | // Add CPU number
|
| 549 | //
|
| 550 | InterlockedIncrement ((UINT32 *) &CpuMpData->CpuCount);
|
| 551 | ProcessorNumber = NumApsExecuting;
|
| 552 | //
|
| 553 | // This is first time AP wakeup, get BIST information from AP stack
|
| 554 | //
|
Jeff Fan | 845c5be | 2016-11-14 11:38:25 +0800 | [diff] [blame] | 555 | ApTopOfStack = CpuMpData->Buffer + (ProcessorNumber + 1) * CpuMpData->CpuApStackSize;
|
Laszlo Ersek | dd3fa0c | 2016-11-16 23:31:11 +0100 | [diff] [blame] | 556 | BistData = *(UINT32 *) ((UINTN) ApTopOfStack - sizeof (UINTN));
|
Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 557 | //
|
| 558 | // Do some AP initialize sync
|
| 559 | //
|
| 560 | ApInitializeSync (CpuMpData);
|
| 561 | //
|
| 562 | // Sync BSP's Control registers to APs
|
| 563 | //
|
| 564 | RestoreVolatileRegisters (&CpuMpData->CpuData[0].VolatileRegisters, FALSE);
|
Jeff Fan | 845c5be | 2016-11-14 11:38:25 +0800 | [diff] [blame] | 565 | InitializeApData (CpuMpData, ProcessorNumber, BistData, ApTopOfStack);
|
Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 566 | ApStartupSignalBuffer = CpuMpData->CpuData[ProcessorNumber].StartupApSignal;
|
| 567 | } else {
|
| 568 | //
|
| 569 | // Execute AP function if AP is ready
|
| 570 | //
|
| 571 | GetProcessorNumber (CpuMpData, &ProcessorNumber);
|
| 572 | //
|
| 573 | // Clear AP start-up signal when AP waken up
|
| 574 | //
|
| 575 | ApStartupSignalBuffer = CpuMpData->CpuData[ProcessorNumber].StartupApSignal;
|
| 576 | InterlockedCompareExchange32 (
|
| 577 | (UINT32 *) ApStartupSignalBuffer,
|
| 578 | WAKEUP_AP_SIGNAL,
|
| 579 | 0
|
| 580 | );
|
| 581 | if (CpuMpData->ApLoopMode == ApInHltLoop) {
|
| 582 | //
|
| 583 | // Restore AP's volatile registers saved
|
| 584 | //
|
| 585 | RestoreVolatileRegisters (&CpuMpData->CpuData[ProcessorNumber].VolatileRegisters, TRUE);
|
| 586 | }
|
| 587 |
|
| 588 | if (GetApState (&CpuMpData->CpuData[ProcessorNumber]) == CpuStateReady) {
|
| 589 | Procedure = (EFI_AP_PROCEDURE)CpuMpData->CpuData[ProcessorNumber].ApFunction;
|
| 590 | Parameter = (VOID *) CpuMpData->CpuData[ProcessorNumber].ApFunctionArgument;
|
| 591 | if (Procedure != NULL) {
|
| 592 | SetApState (&CpuMpData->CpuData[ProcessorNumber], CpuStateBusy);
|
| 593 | //
|
Jeff Fan | 43c9fdc | 2016-12-26 16:28:58 +0800 | [diff] [blame] | 594 | // Enable source debugging on AP function
|
| 595 | //
|
| 596 | EnableDebugAgent ();
|
| 597 | //
|
Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 598 | // Invoke AP function here
|
| 599 | //
|
| 600 | Procedure (Parameter);
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 601 | CpuInfoInHob = (CPU_INFO_IN_HOB *) (UINTN) CpuMpData->CpuInfoInHob;
|
Jeff Fan | 41be0da | 2016-07-21 21:20:18 +0800 | [diff] [blame] | 602 | if (CpuMpData->SwitchBspFlag) {
|
| 603 | //
|
| 604 | // Re-get the processor number due to BSP/AP maybe exchange in AP function
|
| 605 | //
|
| 606 | GetProcessorNumber (CpuMpData, &ProcessorNumber);
|
| 607 | CpuMpData->CpuData[ProcessorNumber].ApFunction = 0;
|
| 608 | CpuMpData->CpuData[ProcessorNumber].ApFunctionArgument = 0;
|
Jeff Fan | b3775af | 2016-11-14 11:43:26 +0800 | [diff] [blame] | 609 | ApStartupSignalBuffer = CpuMpData->CpuData[ProcessorNumber].StartupApSignal;
|
| 610 | CpuInfoInHob[ProcessorNumber].ApTopOfStack = CpuInfoInHob[CpuMpData->NewBspNumber].ApTopOfStack;
|
Jeff Fan | 41be0da | 2016-07-21 21:20:18 +0800 | [diff] [blame] | 611 | } else {
|
| 612 | //
|
| 613 | // Re-get the CPU APICID and Initial APICID
|
| 614 | //
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 615 | CpuInfoInHob[ProcessorNumber].ApicId = GetApicId ();
|
| 616 | CpuInfoInHob[ProcessorNumber].InitialApicId = GetInitialApicId ();
|
Jeff Fan | 41be0da | 2016-07-21 21:20:18 +0800 | [diff] [blame] | 617 | }
|
Jeff Fan | b8b0430 | 2016-07-21 00:20:26 +0800 | [diff] [blame] | 618 | }
|
| 619 | SetApState (&CpuMpData->CpuData[ProcessorNumber], CpuStateFinished);
|
| 620 | }
|
| 621 | }
|
| 622 |
|
| 623 | //
|
| 624 | // AP finished executing C code
|
| 625 | //
|
| 626 | InterlockedIncrement ((UINT32 *) &CpuMpData->FinishedCount);
|
| 627 |
|
| 628 | //
|
| 629 | // Place AP is specified loop mode
|
| 630 | //
|
| 631 | if (CpuMpData->ApLoopMode == ApInHltLoop) {
|
| 632 | //
|
| 633 | // Save AP volatile registers
|
| 634 | //
|
| 635 | SaveVolatileRegisters (&CpuMpData->CpuData[ProcessorNumber].VolatileRegisters);
|
| 636 | //
|
| 637 | // Place AP in HLT-loop
|
| 638 | //
|
| 639 | while (TRUE) {
|
| 640 | DisableInterrupts ();
|
| 641 | CpuSleep ();
|
| 642 | CpuPause ();
|
| 643 | }
|
| 644 | }
|
| 645 | while (TRUE) {
|
| 646 | DisableInterrupts ();
|
| 647 | if (CpuMpData->ApLoopMode == ApInMwaitLoop) {
|
| 648 | //
|
| 649 | // Place AP in MWAIT-loop
|
| 650 | //
|
| 651 | AsmMonitor ((UINTN) ApStartupSignalBuffer, 0, 0);
|
| 652 | if (*ApStartupSignalBuffer != WAKEUP_AP_SIGNAL) {
|
| 653 | //
|
| 654 | // Check AP start-up signal again.
|
| 655 | // If AP start-up signal is not set, place AP into
|
| 656 | // the specified C-state
|
| 657 | //
|
| 658 | AsmMwait (CpuMpData->ApTargetCState << 4, 0);
|
| 659 | }
|
| 660 | } else if (CpuMpData->ApLoopMode == ApInRunLoop) {
|
| 661 | //
|
| 662 | // Place AP in Run-loop
|
| 663 | //
|
| 664 | CpuPause ();
|
| 665 | } else {
|
| 666 | ASSERT (FALSE);
|
| 667 | }
|
| 668 |
|
| 669 | //
|
| 670 | // If AP start-up signal is written, AP is waken up
|
| 671 | // otherwise place AP in loop again
|
| 672 | //
|
| 673 | if (*ApStartupSignalBuffer == WAKEUP_AP_SIGNAL) {
|
| 674 | break;
|
| 675 | }
|
| 676 | }
|
| 677 | }
|
| 678 | }
|
| 679 |
|
| 680 | /**
|
Jeff Fan | 96f5920 | 2016-07-21 00:23:52 +0800 | [diff] [blame] | 681 | Wait for AP wakeup and write AP start-up signal till AP is waken up.
|
| 682 |
|
| 683 | @param[in] ApStartupSignalBuffer Pointer to AP wakeup signal
|
| 684 | **/
|
| 685 | VOID
|
| 686 | WaitApWakeup (
|
| 687 | IN volatile UINT32 *ApStartupSignalBuffer
|
| 688 | )
|
| 689 | {
|
| 690 | //
|
| 691 | // If AP is waken up, StartupApSignal should be cleared.
|
| 692 | // Otherwise, write StartupApSignal again till AP waken up.
|
| 693 | //
|
| 694 | while (InterlockedCompareExchange32 (
|
| 695 | (UINT32 *) ApStartupSignalBuffer,
|
| 696 | WAKEUP_AP_SIGNAL,
|
| 697 | WAKEUP_AP_SIGNAL
|
| 698 | ) != 0) {
|
| 699 | CpuPause ();
|
| 700 | }
|
| 701 | }
|
| 702 |
|
| 703 | /**
|
Jeff Fan | 7c3f2a1 | 2016-07-21 00:22:21 +0800 | [diff] [blame] | 704 | This function will fill the exchange info structure.
|
| 705 |
|
| 706 | @param[in] CpuMpData Pointer to CPU MP Data
|
| 707 |
|
| 708 | **/
|
| 709 | VOID
|
| 710 | FillExchangeInfoData (
|
| 711 | IN CPU_MP_DATA *CpuMpData
|
| 712 | )
|
| 713 | {
|
| 714 | volatile MP_CPU_EXCHANGE_INFO *ExchangeInfo;
|
| 715 |
|
| 716 | ExchangeInfo = CpuMpData->MpCpuExchangeInfo;
|
| 717 | ExchangeInfo->Lock = 0;
|
| 718 | ExchangeInfo->StackStart = CpuMpData->Buffer;
|
| 719 | ExchangeInfo->StackSize = CpuMpData->CpuApStackSize;
|
| 720 | ExchangeInfo->BufferStart = CpuMpData->WakeupBuffer;
|
| 721 | ExchangeInfo->ModeOffset = CpuMpData->AddressMap.ModeEntryOffset;
|
| 722 |
|
| 723 | ExchangeInfo->CodeSegment = AsmReadCs ();
|
| 724 | ExchangeInfo->DataSegment = AsmReadDs ();
|
| 725 |
|
| 726 | ExchangeInfo->Cr3 = AsmReadCr3 ();
|
| 727 |
|
| 728 | ExchangeInfo->CFunction = (UINTN) ApWakeupFunction;
|
| 729 | ExchangeInfo->NumApsExecuting = 0;
|
Jeff Fan | 46d4b88 | 2016-11-14 11:09:00 +0800 | [diff] [blame] | 730 | ExchangeInfo->InitFlag = (UINTN) CpuMpData->InitFlag;
|
| 731 | ExchangeInfo->CpuInfo = (CPU_INFO_IN_HOB *) (UINTN) CpuMpData->CpuInfoInHob;
|
Jeff Fan | 7c3f2a1 | 2016-07-21 00:22:21 +0800 | [diff] [blame] | 732 | ExchangeInfo->CpuMpData = CpuMpData;
|
| 733 |
|
| 734 | ExchangeInfo->EnableExecuteDisable = IsBspExecuteDisableEnabled ();
|
| 735 |
|
| 736 | //
|
| 737 | // Get the BSP's data of GDT and IDT
|
| 738 | //
|
| 739 | AsmReadGdtr ((IA32_DESCRIPTOR *) &ExchangeInfo->GdtrProfile);
|
| 740 | AsmReadIdtr ((IA32_DESCRIPTOR *) &ExchangeInfo->IdtrProfile);
|
| 741 | }
|
| 742 |
|
| 743 | /**
|
Laszlo Ersek | 6e1987f | 2016-11-24 12:19:54 +0100 | [diff] [blame] | 744 | Helper function that waits until the finished AP count reaches the specified
|
| 745 | limit, or the specified timeout elapses (whichever comes first).
|
| 746 |
|
| 747 | @param[in] CpuMpData Pointer to CPU MP Data.
|
| 748 | @param[in] FinishedApLimit The number of finished APs to wait for.
|
| 749 | @param[in] TimeLimit The number of microseconds to wait for.
|
| 750 | **/
|
| 751 | VOID
|
| 752 | TimedWaitForApFinish (
|
| 753 | IN CPU_MP_DATA *CpuMpData,
|
| 754 | IN UINT32 FinishedApLimit,
|
| 755 | IN UINT32 TimeLimit
|
| 756 | );
|
| 757 |
|
| 758 | /**
|
Jeff Fan | 96f5920 | 2016-07-21 00:23:52 +0800 | [diff] [blame] | 759 | This function will be called by BSP to wakeup AP.
|
| 760 |
|
| 761 | @param[in] CpuMpData Pointer to CPU MP Data
|
| 762 | @param[in] Broadcast TRUE: Send broadcast IPI to all APs
|
| 763 | FALSE: Send IPI to AP by ApicId
|
| 764 | @param[in] ProcessorNumber The handle number of specified processor
|
| 765 | @param[in] Procedure The function to be invoked by AP
|
| 766 | @param[in] ProcedureArgument The argument to be passed into AP function
|
| 767 | **/
|
| 768 | VOID
|
| 769 | WakeUpAP (
|
| 770 | IN CPU_MP_DATA *CpuMpData,
|
| 771 | IN BOOLEAN Broadcast,
|
| 772 | IN UINTN ProcessorNumber,
|
| 773 | IN EFI_AP_PROCEDURE Procedure, OPTIONAL
|
| 774 | IN VOID *ProcedureArgument OPTIONAL
|
| 775 | )
|
| 776 | {
|
| 777 | volatile MP_CPU_EXCHANGE_INFO *ExchangeInfo;
|
| 778 | UINTN Index;
|
| 779 | CPU_AP_DATA *CpuData;
|
| 780 | BOOLEAN ResetVectorRequired;
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 781 | CPU_INFO_IN_HOB *CpuInfoInHob;
|
Jeff Fan | 96f5920 | 2016-07-21 00:23:52 +0800 | [diff] [blame] | 782 |
|
| 783 | CpuMpData->FinishedCount = 0;
|
| 784 | ResetVectorRequired = FALSE;
|
| 785 |
|
| 786 | if (CpuMpData->ApLoopMode == ApInHltLoop ||
|
| 787 | CpuMpData->InitFlag != ApInitDone) {
|
| 788 | ResetVectorRequired = TRUE;
|
| 789 | AllocateResetVector (CpuMpData);
|
| 790 | FillExchangeInfoData (CpuMpData);
|
Jeff Fan | ffab244 | 2016-12-26 16:44:24 +0800 | [diff] [blame^] | 791 | SaveLocalApicTimerSetting (CpuMpData);
|
Jeff Fan | 96f5920 | 2016-07-21 00:23:52 +0800 | [diff] [blame] | 792 | } else if (CpuMpData->ApLoopMode == ApInMwaitLoop) {
|
| 793 | //
|
| 794 | // Get AP target C-state each time when waking up AP,
|
| 795 | // for it maybe updated by platform again
|
| 796 | //
|
| 797 | CpuMpData->ApTargetCState = PcdGet8 (PcdCpuApTargetCstate);
|
| 798 | }
|
| 799 |
|
| 800 | ExchangeInfo = CpuMpData->MpCpuExchangeInfo;
|
| 801 |
|
| 802 | if (Broadcast) {
|
| 803 | for (Index = 0; Index < CpuMpData->CpuCount; Index++) {
|
| 804 | if (Index != CpuMpData->BspNumber) {
|
| 805 | CpuData = &CpuMpData->CpuData[Index];
|
| 806 | CpuData->ApFunction = (UINTN) Procedure;
|
| 807 | CpuData->ApFunctionArgument = (UINTN) ProcedureArgument;
|
| 808 | SetApState (CpuData, CpuStateReady);
|
| 809 | if (CpuMpData->InitFlag != ApInitConfig) {
|
| 810 | *(UINT32 *) CpuData->StartupApSignal = WAKEUP_AP_SIGNAL;
|
| 811 | }
|
| 812 | }
|
| 813 | }
|
| 814 | if (ResetVectorRequired) {
|
| 815 | //
|
| 816 | // Wakeup all APs
|
| 817 | //
|
| 818 | SendInitSipiSipiAllExcludingSelf ((UINT32) ExchangeInfo->BufferStart);
|
| 819 | }
|
Jeff Fan | c119221 | 2016-08-24 21:37:14 +0800 | [diff] [blame] | 820 | if (CpuMpData->InitFlag == ApInitConfig) {
|
| 821 | //
|
| 822 | // Wait for all potential APs waken up in one specified period
|
| 823 | //
|
Laszlo Ersek | 6e1987f | 2016-11-24 12:19:54 +0100 | [diff] [blame] | 824 | TimedWaitForApFinish (
|
| 825 | CpuMpData,
|
| 826 | PcdGet32 (PcdCpuMaxLogicalProcessorNumber) - 1,
|
| 827 | PcdGet32 (PcdCpuApInitTimeOutInMicroSeconds)
|
| 828 | );
|
Jeff Fan | c119221 | 2016-08-24 21:37:14 +0800 | [diff] [blame] | 829 | } else {
|
Jeff Fan | 96f5920 | 2016-07-21 00:23:52 +0800 | [diff] [blame] | 830 | //
|
| 831 | // Wait all APs waken up if this is not the 1st broadcast of SIPI
|
| 832 | //
|
| 833 | for (Index = 0; Index < CpuMpData->CpuCount; Index++) {
|
| 834 | CpuData = &CpuMpData->CpuData[Index];
|
| 835 | if (Index != CpuMpData->BspNumber) {
|
| 836 | WaitApWakeup (CpuData->StartupApSignal);
|
| 837 | }
|
| 838 | }
|
| 839 | }
|
| 840 | } else {
|
| 841 | CpuData = &CpuMpData->CpuData[ProcessorNumber];
|
| 842 | CpuData->ApFunction = (UINTN) Procedure;
|
| 843 | CpuData->ApFunctionArgument = (UINTN) ProcedureArgument;
|
| 844 | SetApState (CpuData, CpuStateReady);
|
| 845 | //
|
| 846 | // Wakeup specified AP
|
| 847 | //
|
| 848 | ASSERT (CpuMpData->InitFlag != ApInitConfig);
|
| 849 | *(UINT32 *) CpuData->StartupApSignal = WAKEUP_AP_SIGNAL;
|
| 850 | if (ResetVectorRequired) {
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 851 | CpuInfoInHob = (CPU_INFO_IN_HOB *) (UINTN) CpuMpData->CpuInfoInHob;
|
Jeff Fan | 96f5920 | 2016-07-21 00:23:52 +0800 | [diff] [blame] | 852 | SendInitSipiSipi (
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 853 | CpuInfoInHob[ProcessorNumber].ApicId,
|
Jeff Fan | 96f5920 | 2016-07-21 00:23:52 +0800 | [diff] [blame] | 854 | (UINT32) ExchangeInfo->BufferStart
|
| 855 | );
|
| 856 | }
|
| 857 | //
|
| 858 | // Wait specified AP waken up
|
| 859 | //
|
| 860 | WaitApWakeup (CpuData->StartupApSignal);
|
| 861 | }
|
| 862 |
|
| 863 | if (ResetVectorRequired) {
|
| 864 | FreeResetVector (CpuMpData);
|
| 865 | }
|
| 866 | }
|
| 867 |
|
| 868 | /**
|
Jeff Fan | 08085f0 | 2016-07-21 21:28:16 +0800 | [diff] [blame] | 869 | Calculate timeout value and return the current performance counter value.
|
| 870 |
|
| 871 | Calculate the number of performance counter ticks required for a timeout.
|
| 872 | If TimeoutInMicroseconds is 0, return value is also 0, which is recognized
|
| 873 | as infinity.
|
| 874 |
|
| 875 | @param[in] TimeoutInMicroseconds Timeout value in microseconds.
|
| 876 | @param[out] CurrentTime Returns the current value of the performance counter.
|
| 877 |
|
| 878 | @return Expected time stamp counter for timeout.
|
| 879 | If TimeoutInMicroseconds is 0, return value is also 0, which is recognized
|
| 880 | as infinity.
|
| 881 |
|
| 882 | **/
|
| 883 | UINT64
|
| 884 | CalculateTimeout (
|
| 885 | IN UINTN TimeoutInMicroseconds,
|
| 886 | OUT UINT64 *CurrentTime
|
| 887 | )
|
| 888 | {
|
| 889 | //
|
| 890 | // Read the current value of the performance counter
|
| 891 | //
|
| 892 | *CurrentTime = GetPerformanceCounter ();
|
| 893 |
|
| 894 | //
|
| 895 | // If TimeoutInMicroseconds is 0, return value is also 0, which is recognized
|
| 896 | // as infinity.
|
| 897 | //
|
| 898 | if (TimeoutInMicroseconds == 0) {
|
| 899 | return 0;
|
| 900 | }
|
| 901 |
|
| 902 | //
|
| 903 | // GetPerformanceCounterProperties () returns the timestamp counter's frequency
|
| 904 | // in Hz. So multiply the return value with TimeoutInMicroseconds and then divide
|
| 905 | // it by 1,000,000, to get the number of ticks for the timeout value.
|
| 906 | //
|
| 907 | return DivU64x32 (
|
| 908 | MultU64x64 (
|
| 909 | GetPerformanceCounterProperties (NULL, NULL),
|
| 910 | TimeoutInMicroseconds
|
| 911 | ),
|
| 912 | 1000000
|
| 913 | );
|
| 914 | }
|
| 915 |
|
| 916 | /**
|
| 917 | Checks whether timeout expires.
|
| 918 |
|
| 919 | Check whether the number of elapsed performance counter ticks required for
|
| 920 | a timeout condition has been reached.
|
| 921 | If Timeout is zero, which means infinity, return value is always FALSE.
|
| 922 |
|
| 923 | @param[in, out] PreviousTime On input, the value of the performance counter
|
| 924 | when it was last read.
|
| 925 | On output, the current value of the performance
|
| 926 | counter
|
| 927 | @param[in] TotalTime The total amount of elapsed time in performance
|
| 928 | counter ticks.
|
| 929 | @param[in] Timeout The number of performance counter ticks required
|
| 930 | to reach a timeout condition.
|
| 931 |
|
| 932 | @retval TRUE A timeout condition has been reached.
|
| 933 | @retval FALSE A timeout condition has not been reached.
|
| 934 |
|
| 935 | **/
|
| 936 | BOOLEAN
|
| 937 | CheckTimeout (
|
| 938 | IN OUT UINT64 *PreviousTime,
|
| 939 | IN UINT64 *TotalTime,
|
| 940 | IN UINT64 Timeout
|
| 941 | )
|
| 942 | {
|
| 943 | UINT64 Start;
|
| 944 | UINT64 End;
|
| 945 | UINT64 CurrentTime;
|
| 946 | INT64 Delta;
|
| 947 | INT64 Cycle;
|
| 948 |
|
| 949 | if (Timeout == 0) {
|
| 950 | return FALSE;
|
| 951 | }
|
| 952 | GetPerformanceCounterProperties (&Start, &End);
|
| 953 | Cycle = End - Start;
|
| 954 | if (Cycle < 0) {
|
| 955 | Cycle = -Cycle;
|
| 956 | }
|
| 957 | Cycle++;
|
| 958 | CurrentTime = GetPerformanceCounter();
|
| 959 | Delta = (INT64) (CurrentTime - *PreviousTime);
|
| 960 | if (Start > End) {
|
| 961 | Delta = -Delta;
|
| 962 | }
|
| 963 | if (Delta < 0) {
|
| 964 | Delta += Cycle;
|
| 965 | }
|
| 966 | *TotalTime += Delta;
|
| 967 | *PreviousTime = CurrentTime;
|
| 968 | if (*TotalTime > Timeout) {
|
| 969 | return TRUE;
|
| 970 | }
|
| 971 | return FALSE;
|
| 972 | }
|
| 973 |
|
| 974 | /**
|
Laszlo Ersek | 6e1987f | 2016-11-24 12:19:54 +0100 | [diff] [blame] | 975 | Helper function that waits until the finished AP count reaches the specified
|
| 976 | limit, or the specified timeout elapses (whichever comes first).
|
| 977 |
|
| 978 | @param[in] CpuMpData Pointer to CPU MP Data.
|
| 979 | @param[in] FinishedApLimit The number of finished APs to wait for.
|
| 980 | @param[in] TimeLimit The number of microseconds to wait for.
|
| 981 | **/
|
| 982 | VOID
|
| 983 | TimedWaitForApFinish (
|
| 984 | IN CPU_MP_DATA *CpuMpData,
|
| 985 | IN UINT32 FinishedApLimit,
|
| 986 | IN UINT32 TimeLimit
|
| 987 | )
|
| 988 | {
|
| 989 | //
|
| 990 | // CalculateTimeout() and CheckTimeout() consider a TimeLimit of 0
|
| 991 | // "infinity", so check for (TimeLimit == 0) explicitly.
|
| 992 | //
|
| 993 | if (TimeLimit == 0) {
|
| 994 | return;
|
| 995 | }
|
| 996 |
|
| 997 | CpuMpData->TotalTime = 0;
|
| 998 | CpuMpData->ExpectedTime = CalculateTimeout (
|
| 999 | TimeLimit,
|
| 1000 | &CpuMpData->CurrentTime
|
| 1001 | );
|
| 1002 | while (CpuMpData->FinishedCount < FinishedApLimit &&
|
| 1003 | !CheckTimeout (
|
| 1004 | &CpuMpData->CurrentTime,
|
| 1005 | &CpuMpData->TotalTime,
|
| 1006 | CpuMpData->ExpectedTime
|
| 1007 | )) {
|
| 1008 | CpuPause ();
|
| 1009 | }
|
| 1010 |
|
| 1011 | if (CpuMpData->FinishedCount >= FinishedApLimit) {
|
| 1012 | DEBUG ((
|
| 1013 | DEBUG_VERBOSE,
|
| 1014 | "%a: reached FinishedApLimit=%u in %Lu microseconds\n",
|
| 1015 | __FUNCTION__,
|
| 1016 | FinishedApLimit,
|
| 1017 | DivU64x64Remainder (
|
| 1018 | MultU64x32 (CpuMpData->TotalTime, 1000000),
|
| 1019 | GetPerformanceCounterProperties (NULL, NULL),
|
| 1020 | NULL
|
| 1021 | )
|
| 1022 | ));
|
| 1023 | }
|
| 1024 | }
|
| 1025 |
|
| 1026 | /**
|
Jeff Fan | 08085f0 | 2016-07-21 21:28:16 +0800 | [diff] [blame] | 1027 | Reset an AP to Idle state.
|
| 1028 |
|
| 1029 | Any task being executed by the AP will be aborted and the AP
|
| 1030 | will be waiting for a new task in Wait-For-SIPI state.
|
| 1031 |
|
| 1032 | @param[in] ProcessorNumber The handle number of processor.
|
| 1033 | **/
|
| 1034 | VOID
|
| 1035 | ResetProcessorToIdleState (
|
| 1036 | IN UINTN ProcessorNumber
|
| 1037 | )
|
| 1038 | {
|
| 1039 | CPU_MP_DATA *CpuMpData;
|
| 1040 |
|
| 1041 | CpuMpData = GetCpuMpData ();
|
| 1042 |
|
Jeff Fan | cb33bde | 2016-11-14 10:30:03 +0800 | [diff] [blame] | 1043 | CpuMpData->InitFlag = ApInitReconfig;
|
Jeff Fan | 08085f0 | 2016-07-21 21:28:16 +0800 | [diff] [blame] | 1044 | WakeUpAP (CpuMpData, FALSE, ProcessorNumber, NULL, NULL);
|
Jeff Fan | cb33bde | 2016-11-14 10:30:03 +0800 | [diff] [blame] | 1045 | while (CpuMpData->FinishedCount < 1) {
|
| 1046 | CpuPause ();
|
| 1047 | }
|
| 1048 | CpuMpData->InitFlag = ApInitDone;
|
Jeff Fan | 08085f0 | 2016-07-21 21:28:16 +0800 | [diff] [blame] | 1049 |
|
| 1050 | SetApState (&CpuMpData->CpuData[ProcessorNumber], CpuStateIdle);
|
| 1051 | }
|
| 1052 |
|
| 1053 | /**
|
| 1054 | Searches for the next waiting AP.
|
| 1055 |
|
| 1056 | Search for the next AP that is put in waiting state by single-threaded StartupAllAPs().
|
| 1057 |
|
| 1058 | @param[out] NextProcessorNumber Pointer to the processor number of the next waiting AP.
|
| 1059 |
|
| 1060 | @retval EFI_SUCCESS The next waiting AP has been found.
|
| 1061 | @retval EFI_NOT_FOUND No waiting AP exists.
|
| 1062 |
|
| 1063 | **/
|
| 1064 | EFI_STATUS
|
| 1065 | GetNextWaitingProcessorNumber (
|
| 1066 | OUT UINTN *NextProcessorNumber
|
| 1067 | )
|
| 1068 | {
|
| 1069 | UINTN ProcessorNumber;
|
| 1070 | CPU_MP_DATA *CpuMpData;
|
| 1071 |
|
| 1072 | CpuMpData = GetCpuMpData ();
|
| 1073 |
|
| 1074 | for (ProcessorNumber = 0; ProcessorNumber < CpuMpData->CpuCount; ProcessorNumber++) {
|
| 1075 | if (CpuMpData->CpuData[ProcessorNumber].Waiting) {
|
| 1076 | *NextProcessorNumber = ProcessorNumber;
|
| 1077 | return EFI_SUCCESS;
|
| 1078 | }
|
| 1079 | }
|
| 1080 |
|
| 1081 | return EFI_NOT_FOUND;
|
| 1082 | }
|
| 1083 |
|
| 1084 | /** Checks status of specified AP.
|
| 1085 |
|
| 1086 | This function checks whether the specified AP has finished the task assigned
|
| 1087 | by StartupThisAP(), and whether timeout expires.
|
| 1088 |
|
| 1089 | @param[in] ProcessorNumber The handle number of processor.
|
| 1090 |
|
| 1091 | @retval EFI_SUCCESS Specified AP has finished task assigned by StartupThisAPs().
|
| 1092 | @retval EFI_TIMEOUT The timeout expires.
|
| 1093 | @retval EFI_NOT_READY Specified AP has not finished task and timeout has not expired.
|
| 1094 | **/
|
| 1095 | EFI_STATUS
|
| 1096 | CheckThisAP (
|
| 1097 | IN UINTN ProcessorNumber
|
| 1098 | )
|
| 1099 | {
|
| 1100 | CPU_MP_DATA *CpuMpData;
|
| 1101 | CPU_AP_DATA *CpuData;
|
| 1102 |
|
| 1103 | CpuMpData = GetCpuMpData ();
|
| 1104 | CpuData = &CpuMpData->CpuData[ProcessorNumber];
|
| 1105 |
|
| 1106 | //
|
| 1107 | // Check the CPU state of AP. If it is CpuStateFinished, then the AP has finished its task.
|
| 1108 | // Only BSP and corresponding AP access this unit of CPU Data. This means the AP will not modify the
|
| 1109 | // value of state after setting the it to CpuStateFinished, so BSP can safely make use of its value.
|
| 1110 | //
|
| 1111 | //
|
| 1112 | // If the AP finishes for StartupThisAP(), return EFI_SUCCESS.
|
| 1113 | //
|
| 1114 | if (GetApState(CpuData) == CpuStateFinished) {
|
| 1115 | if (CpuData->Finished != NULL) {
|
| 1116 | *(CpuData->Finished) = TRUE;
|
| 1117 | }
|
| 1118 | SetApState (CpuData, CpuStateIdle);
|
| 1119 | return EFI_SUCCESS;
|
| 1120 | } else {
|
| 1121 | //
|
| 1122 | // If timeout expires for StartupThisAP(), report timeout.
|
| 1123 | //
|
| 1124 | if (CheckTimeout (&CpuData->CurrentTime, &CpuData->TotalTime, CpuData->ExpectedTime)) {
|
| 1125 | if (CpuData->Finished != NULL) {
|
| 1126 | *(CpuData->Finished) = FALSE;
|
| 1127 | }
|
| 1128 | //
|
| 1129 | // Reset failed AP to idle state
|
| 1130 | //
|
| 1131 | ResetProcessorToIdleState (ProcessorNumber);
|
| 1132 |
|
| 1133 | return EFI_TIMEOUT;
|
| 1134 | }
|
| 1135 | }
|
| 1136 | return EFI_NOT_READY;
|
| 1137 | }
|
| 1138 |
|
| 1139 | /**
|
| 1140 | Checks status of all APs.
|
| 1141 |
|
| 1142 | This function checks whether all APs have finished task assigned by StartupAllAPs(),
|
| 1143 | and whether timeout expires.
|
| 1144 |
|
| 1145 | @retval EFI_SUCCESS All APs have finished task assigned by StartupAllAPs().
|
| 1146 | @retval EFI_TIMEOUT The timeout expires.
|
| 1147 | @retval EFI_NOT_READY APs have not finished task and timeout has not expired.
|
| 1148 | **/
|
| 1149 | EFI_STATUS
|
| 1150 | CheckAllAPs (
|
| 1151 | VOID
|
| 1152 | )
|
| 1153 | {
|
| 1154 | UINTN ProcessorNumber;
|
| 1155 | UINTN NextProcessorNumber;
|
| 1156 | UINTN ListIndex;
|
| 1157 | EFI_STATUS Status;
|
| 1158 | CPU_MP_DATA *CpuMpData;
|
| 1159 | CPU_AP_DATA *CpuData;
|
| 1160 |
|
| 1161 | CpuMpData = GetCpuMpData ();
|
| 1162 |
|
| 1163 | NextProcessorNumber = 0;
|
| 1164 |
|
| 1165 | //
|
| 1166 | // Go through all APs that are responsible for the StartupAllAPs().
|
| 1167 | //
|
| 1168 | for (ProcessorNumber = 0; ProcessorNumber < CpuMpData->CpuCount; ProcessorNumber++) {
|
| 1169 | if (!CpuMpData->CpuData[ProcessorNumber].Waiting) {
|
| 1170 | continue;
|
| 1171 | }
|
| 1172 |
|
| 1173 | CpuData = &CpuMpData->CpuData[ProcessorNumber];
|
| 1174 | //
|
| 1175 | // Check the CPU state of AP. If it is CpuStateFinished, then the AP has finished its task.
|
| 1176 | // Only BSP and corresponding AP access this unit of CPU Data. This means the AP will not modify the
|
| 1177 | // value of state after setting the it to CpuStateFinished, so BSP can safely make use of its value.
|
| 1178 | //
|
| 1179 | if (GetApState(CpuData) == CpuStateFinished) {
|
| 1180 | CpuMpData->RunningCount ++;
|
| 1181 | CpuMpData->CpuData[ProcessorNumber].Waiting = FALSE;
|
| 1182 | SetApState(CpuData, CpuStateIdle);
|
| 1183 |
|
| 1184 | //
|
| 1185 | // If in Single Thread mode, then search for the next waiting AP for execution.
|
| 1186 | //
|
| 1187 | if (CpuMpData->SingleThread) {
|
| 1188 | Status = GetNextWaitingProcessorNumber (&NextProcessorNumber);
|
| 1189 |
|
| 1190 | if (!EFI_ERROR (Status)) {
|
| 1191 | WakeUpAP (
|
| 1192 | CpuMpData,
|
| 1193 | FALSE,
|
| 1194 | (UINT32) NextProcessorNumber,
|
| 1195 | CpuMpData->Procedure,
|
| 1196 | CpuMpData->ProcArguments
|
| 1197 | );
|
| 1198 | }
|
| 1199 | }
|
| 1200 | }
|
| 1201 | }
|
| 1202 |
|
| 1203 | //
|
| 1204 | // If all APs finish, return EFI_SUCCESS.
|
| 1205 | //
|
| 1206 | if (CpuMpData->RunningCount == CpuMpData->StartCount) {
|
| 1207 | return EFI_SUCCESS;
|
| 1208 | }
|
| 1209 |
|
| 1210 | //
|
| 1211 | // If timeout expires, report timeout.
|
| 1212 | //
|
| 1213 | if (CheckTimeout (
|
| 1214 | &CpuMpData->CurrentTime,
|
| 1215 | &CpuMpData->TotalTime,
|
| 1216 | CpuMpData->ExpectedTime)
|
| 1217 | ) {
|
| 1218 | //
|
| 1219 | // If FailedCpuList is not NULL, record all failed APs in it.
|
| 1220 | //
|
| 1221 | if (CpuMpData->FailedCpuList != NULL) {
|
| 1222 | *CpuMpData->FailedCpuList =
|
| 1223 | AllocatePool ((CpuMpData->StartCount - CpuMpData->FinishedCount + 1) * sizeof (UINTN));
|
| 1224 | ASSERT (*CpuMpData->FailedCpuList != NULL);
|
| 1225 | }
|
| 1226 | ListIndex = 0;
|
| 1227 |
|
| 1228 | for (ProcessorNumber = 0; ProcessorNumber < CpuMpData->CpuCount; ProcessorNumber++) {
|
| 1229 | //
|
| 1230 | // Check whether this processor is responsible for StartupAllAPs().
|
| 1231 | //
|
| 1232 | if (CpuMpData->CpuData[ProcessorNumber].Waiting) {
|
| 1233 | //
|
| 1234 | // Reset failed APs to idle state
|
| 1235 | //
|
| 1236 | ResetProcessorToIdleState (ProcessorNumber);
|
| 1237 | CpuMpData->CpuData[ProcessorNumber].Waiting = FALSE;
|
| 1238 | if (CpuMpData->FailedCpuList != NULL) {
|
| 1239 | (*CpuMpData->FailedCpuList)[ListIndex++] = ProcessorNumber;
|
| 1240 | }
|
| 1241 | }
|
| 1242 | }
|
| 1243 | if (CpuMpData->FailedCpuList != NULL) {
|
| 1244 | (*CpuMpData->FailedCpuList)[ListIndex] = END_OF_CPU_LIST;
|
| 1245 | }
|
| 1246 | return EFI_TIMEOUT;
|
| 1247 | }
|
| 1248 | return EFI_NOT_READY;
|
| 1249 | }
|
| 1250 |
|
| 1251 | /**
|
Jeff Fan | 3e8ad6b | 2016-07-20 21:56:58 +0800 | [diff] [blame] | 1252 | MP Initialize Library initialization.
|
| 1253 |
|
| 1254 | This service will allocate AP reset vector and wakeup all APs to do APs
|
| 1255 | initialization.
|
| 1256 |
|
| 1257 | This service must be invoked before all other MP Initialize Library
|
| 1258 | service are invoked.
|
| 1259 |
|
| 1260 | @retval EFI_SUCCESS MP initialization succeeds.
|
| 1261 | @retval Others MP initialization fails.
|
| 1262 |
|
| 1263 | **/
|
| 1264 | EFI_STATUS
|
| 1265 | EFIAPI
|
| 1266 | MpInitLibInitialize (
|
| 1267 | VOID
|
| 1268 | )
|
| 1269 | {
|
Jeff Fan | 6a2ee2b | 2016-07-21 00:32:53 +0800 | [diff] [blame] | 1270 | CPU_MP_DATA *OldCpuMpData;
|
| 1271 | CPU_INFO_IN_HOB *CpuInfoInHob;
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1272 | UINT32 MaxLogicalProcessorNumber;
|
| 1273 | UINT32 ApStackSize;
|
Jeff Fan | f7f85d8 | 2016-07-20 22:56:09 +0800 | [diff] [blame] | 1274 | MP_ASSEMBLY_ADDRESS_MAP AddressMap;
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1275 | UINTN BufferSize;
|
Jeff Fan | 9ebcf0f | 2016-07-20 23:32:17 +0800 | [diff] [blame] | 1276 | UINT32 MonitorFilterSize;
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1277 | VOID *MpBuffer;
|
| 1278 | UINTN Buffer;
|
| 1279 | CPU_MP_DATA *CpuMpData;
|
Jeff Fan | 9ebcf0f | 2016-07-20 23:32:17 +0800 | [diff] [blame] | 1280 | UINT8 ApLoopMode;
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1281 | UINT8 *MonitorBuffer;
|
Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 1282 | UINTN Index;
|
Jeff Fan | f7f85d8 | 2016-07-20 22:56:09 +0800 | [diff] [blame] | 1283 | UINTN ApResetVectorSize;
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1284 | UINTN BackupBufferAddr;
|
Jeff Fan | 6a2ee2b | 2016-07-21 00:32:53 +0800 | [diff] [blame] | 1285 |
|
| 1286 | OldCpuMpData = GetCpuMpDataFromGuidedHob ();
|
| 1287 | if (OldCpuMpData == NULL) {
|
| 1288 | MaxLogicalProcessorNumber = PcdGet32(PcdCpuMaxLogicalProcessorNumber);
|
| 1289 | } else {
|
| 1290 | MaxLogicalProcessorNumber = OldCpuMpData->CpuCount;
|
| 1291 | }
|
Jeff Fan | 14e8137 | 2016-11-04 15:45:13 +0800 | [diff] [blame] | 1292 | ASSERT (MaxLogicalProcessorNumber != 0);
|
Jeff Fan | f7f85d8 | 2016-07-20 22:56:09 +0800 | [diff] [blame] | 1293 |
|
| 1294 | AsmGetAddressMap (&AddressMap);
|
| 1295 | ApResetVectorSize = AddressMap.RendezvousFunnelSize + sizeof (MP_CPU_EXCHANGE_INFO);
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1296 | ApStackSize = PcdGet32(PcdCpuApStackSize);
|
Jeff Fan | 9ebcf0f | 2016-07-20 23:32:17 +0800 | [diff] [blame] | 1297 | ApLoopMode = GetApLoopMode (&MonitorFilterSize);
|
| 1298 |
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1299 | BufferSize = ApStackSize * MaxLogicalProcessorNumber;
|
| 1300 | BufferSize += MonitorFilterSize * MaxLogicalProcessorNumber;
|
| 1301 | BufferSize += sizeof (CPU_MP_DATA);
|
| 1302 | BufferSize += ApResetVectorSize;
|
| 1303 | BufferSize += (sizeof (CPU_AP_DATA) + sizeof (CPU_INFO_IN_HOB))* MaxLogicalProcessorNumber;
|
| 1304 | MpBuffer = AllocatePages (EFI_SIZE_TO_PAGES (BufferSize));
|
| 1305 | ASSERT (MpBuffer != NULL);
|
| 1306 | ZeroMem (MpBuffer, BufferSize);
|
| 1307 | Buffer = (UINTN) MpBuffer;
|
| 1308 |
|
| 1309 | MonitorBuffer = (UINT8 *) (Buffer + ApStackSize * MaxLogicalProcessorNumber);
|
| 1310 | BackupBufferAddr = (UINTN) MonitorBuffer + MonitorFilterSize * MaxLogicalProcessorNumber;
|
| 1311 | CpuMpData = (CPU_MP_DATA *) (BackupBufferAddr + ApResetVectorSize);
|
| 1312 | CpuMpData->Buffer = Buffer;
|
| 1313 | CpuMpData->CpuApStackSize = ApStackSize;
|
| 1314 | CpuMpData->BackupBuffer = BackupBufferAddr;
|
| 1315 | CpuMpData->BackupBufferSize = ApResetVectorSize;
|
Jeff Fan | d11f10d | 2016-08-24 22:02:48 +0800 | [diff] [blame] | 1316 | CpuMpData->SaveRestoreFlag = FALSE;
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1317 | CpuMpData->WakeupBuffer = (UINTN) -1;
|
| 1318 | CpuMpData->CpuCount = 1;
|
| 1319 | CpuMpData->BspNumber = 0;
|
| 1320 | CpuMpData->WaitEvent = NULL;
|
Jeff Fan | 41be0da | 2016-07-21 21:20:18 +0800 | [diff] [blame] | 1321 | CpuMpData->SwitchBspFlag = FALSE;
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1322 | CpuMpData->CpuData = (CPU_AP_DATA *) (CpuMpData + 1);
|
| 1323 | CpuMpData->CpuInfoInHob = (UINT64) (UINTN) (CpuMpData->CpuData + MaxLogicalProcessorNumber);
|
| 1324 | InitializeSpinLock(&CpuMpData->MpLock);
|
| 1325 | //
|
Jeff Fan | 68cb933 | 2016-07-20 23:47:59 +0800 | [diff] [blame] | 1326 | // Save BSP's Control registers to APs
|
| 1327 | //
|
| 1328 | SaveVolatileRegisters (&CpuMpData->CpuData[0].VolatileRegisters);
|
| 1329 | //
|
Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 1330 | // Set BSP basic information
|
| 1331 | //
|
Jeff Fan | 845c5be | 2016-11-14 11:38:25 +0800 | [diff] [blame] | 1332 | InitializeApData (CpuMpData, 0, 0, CpuMpData->Buffer);
|
Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 1333 | //
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1334 | // Save assembly code information
|
| 1335 | //
|
| 1336 | CopyMem (&CpuMpData->AddressMap, &AddressMap, sizeof (MP_ASSEMBLY_ADDRESS_MAP));
|
| 1337 | //
|
| 1338 | // Finally set AP loop mode
|
| 1339 | //
|
| 1340 | CpuMpData->ApLoopMode = ApLoopMode;
|
| 1341 | DEBUG ((DEBUG_INFO, "AP Loop Mode is %d\n", CpuMpData->ApLoopMode));
|
| 1342 | //
|
Jeff Fan | 03a1a92 | 2016-07-20 23:43:29 +0800 | [diff] [blame] | 1343 | // Set up APs wakeup signal buffer
|
| 1344 | //
|
| 1345 | for (Index = 0; Index < MaxLogicalProcessorNumber; Index++) {
|
| 1346 | CpuMpData->CpuData[Index].StartupApSignal =
|
| 1347 | (UINT32 *)(MonitorBuffer + MonitorFilterSize * Index);
|
| 1348 | }
|
Jeff Fan | 94f63c7 | 2016-07-20 23:49:35 +0800 | [diff] [blame] | 1349 | //
|
| 1350 | // Load Microcode on BSP
|
| 1351 | //
|
| 1352 | MicrocodeDetect (CpuMpData);
|
| 1353 | //
|
Jeff Fan | e59f8f6 | 2016-07-20 23:33:25 +0800 | [diff] [blame] | 1354 | // Store BSP's MTRR setting
|
| 1355 | //
|
| 1356 | MtrrGetAllMtrrs (&CpuMpData->MtrrTable);
|
| 1357 |
|
Jeff Fan | 6a2ee2b | 2016-07-21 00:32:53 +0800 | [diff] [blame] | 1358 | if (OldCpuMpData == NULL) {
|
Jeff Fan | 14e8137 | 2016-11-04 15:45:13 +0800 | [diff] [blame] | 1359 | if (MaxLogicalProcessorNumber > 1) {
|
| 1360 | //
|
| 1361 | // Wakeup all APs and calculate the processor count in system
|
| 1362 | //
|
| 1363 | CollectProcessorCount (CpuMpData);
|
| 1364 | }
|
Jeff Fan | 6a2ee2b | 2016-07-21 00:32:53 +0800 | [diff] [blame] | 1365 | } else {
|
| 1366 | //
|
| 1367 | // APs have been wakeup before, just get the CPU Information
|
| 1368 | // from HOB
|
| 1369 | //
|
| 1370 | CpuMpData->CpuCount = OldCpuMpData->CpuCount;
|
| 1371 | CpuMpData->BspNumber = OldCpuMpData->BspNumber;
|
| 1372 | CpuMpData->InitFlag = ApInitReconfig;
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 1373 | CpuMpData->CpuInfoInHob = OldCpuMpData->CpuInfoInHob;
|
| 1374 | CpuInfoInHob = (CPU_INFO_IN_HOB *) (UINTN) CpuMpData->CpuInfoInHob;
|
Jeff Fan | 6a2ee2b | 2016-07-21 00:32:53 +0800 | [diff] [blame] | 1375 | for (Index = 0; Index < CpuMpData->CpuCount; Index++) {
|
| 1376 | InitializeSpinLock(&CpuMpData->CpuData[Index].ApLock);
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 1377 | if (CpuInfoInHob[Index].InitialApicId >= 255) {
|
Jeff Fan | 6a2ee2b | 2016-07-21 00:32:53 +0800 | [diff] [blame] | 1378 | CpuMpData->X2ApicEnable = TRUE;
|
| 1379 | }
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 1380 | CpuMpData->CpuData[Index].CpuHealthy = (CpuInfoInHob[Index].Health == 0)? TRUE:FALSE;
|
Jeff Fan | 6a2ee2b | 2016-07-21 00:32:53 +0800 | [diff] [blame] | 1381 | CpuMpData->CpuData[Index].ApFunction = 0;
|
| 1382 | CopyMem (
|
| 1383 | &CpuMpData->CpuData[Index].VolatileRegisters,
|
| 1384 | &CpuMpData->CpuData[0].VolatileRegisters,
|
| 1385 | sizeof (CPU_VOLATILE_REGISTERS)
|
| 1386 | );
|
| 1387 | }
|
Jeff Fan | 14e8137 | 2016-11-04 15:45:13 +0800 | [diff] [blame] | 1388 | if (MaxLogicalProcessorNumber > 1) {
|
| 1389 | //
|
| 1390 | // Wakeup APs to do some AP initialize sync
|
| 1391 | //
|
| 1392 | WakeUpAP (CpuMpData, TRUE, 0, ApInitializeSync, CpuMpData);
|
| 1393 | //
|
| 1394 | // Wait for all APs finished initialization
|
| 1395 | //
|
| 1396 | while (CpuMpData->FinishedCount < (CpuMpData->CpuCount - 1)) {
|
| 1397 | CpuPause ();
|
| 1398 | }
|
| 1399 | CpuMpData->InitFlag = ApInitDone;
|
| 1400 | for (Index = 0; Index < CpuMpData->CpuCount; Index++) {
|
| 1401 | SetApState (&CpuMpData->CpuData[Index], CpuStateIdle);
|
| 1402 | }
|
Jeff Fan | 6a2ee2b | 2016-07-21 00:32:53 +0800 | [diff] [blame] | 1403 | }
|
| 1404 | }
|
Jeff Fan | 93ca4c0 | 2016-07-21 16:08:12 +0800 | [diff] [blame] | 1405 |
|
| 1406 | //
|
| 1407 | // Initialize global data for MP support
|
| 1408 | //
|
| 1409 | InitMpGlobalData (CpuMpData);
|
| 1410 |
|
Jeff Fan | f7f85d8 | 2016-07-20 22:56:09 +0800 | [diff] [blame] | 1411 | return EFI_SUCCESS;
|
Jeff Fan | 3e8ad6b | 2016-07-20 21:56:58 +0800 | [diff] [blame] | 1412 | }
|
| 1413 |
|
| 1414 | /**
|
| 1415 | Gets detailed MP-related information on the requested processor at the
|
| 1416 | instant this call is made. This service may only be called from the BSP.
|
| 1417 |
|
| 1418 | @param[in] ProcessorNumber The handle number of processor.
|
| 1419 | @param[out] ProcessorInfoBuffer A pointer to the buffer where information for
|
| 1420 | the requested processor is deposited.
|
| 1421 | @param[out] HealthData Return processor health data.
|
| 1422 |
|
| 1423 | @retval EFI_SUCCESS Processor information was returned.
|
| 1424 | @retval EFI_DEVICE_ERROR The calling processor is an AP.
|
| 1425 | @retval EFI_INVALID_PARAMETER ProcessorInfoBuffer is NULL.
|
| 1426 | @retval EFI_NOT_FOUND The processor with the handle specified by
|
| 1427 | ProcessorNumber does not exist in the platform.
|
| 1428 | @retval EFI_NOT_READY MP Initialize Library is not initialized.
|
| 1429 |
|
| 1430 | **/
|
| 1431 | EFI_STATUS
|
| 1432 | EFIAPI
|
| 1433 | MpInitLibGetProcessorInfo (
|
| 1434 | IN UINTN ProcessorNumber,
|
| 1435 | OUT EFI_PROCESSOR_INFORMATION *ProcessorInfoBuffer,
|
| 1436 | OUT EFI_HEALTH_FLAGS *HealthData OPTIONAL
|
| 1437 | )
|
| 1438 | {
|
Jeff Fan | ad52f25 | 2016-07-21 21:12:46 +0800 | [diff] [blame] | 1439 | CPU_MP_DATA *CpuMpData;
|
| 1440 | UINTN CallerNumber;
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 1441 | CPU_INFO_IN_HOB *CpuInfoInHob;
|
Jeff Fan | ad52f25 | 2016-07-21 21:12:46 +0800 | [diff] [blame] | 1442 |
|
| 1443 | CpuMpData = GetCpuMpData ();
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 1444 | CpuInfoInHob = (CPU_INFO_IN_HOB *) (UINTN) CpuMpData->CpuInfoInHob;
|
Jeff Fan | ad52f25 | 2016-07-21 21:12:46 +0800 | [diff] [blame] | 1445 |
|
| 1446 | //
|
| 1447 | // Check whether caller processor is BSP
|
| 1448 | //
|
| 1449 | MpInitLibWhoAmI (&CallerNumber);
|
| 1450 | if (CallerNumber != CpuMpData->BspNumber) {
|
| 1451 | return EFI_DEVICE_ERROR;
|
| 1452 | }
|
| 1453 |
|
| 1454 | if (ProcessorInfoBuffer == NULL) {
|
| 1455 | return EFI_INVALID_PARAMETER;
|
| 1456 | }
|
| 1457 |
|
| 1458 | if (ProcessorNumber >= CpuMpData->CpuCount) {
|
| 1459 | return EFI_NOT_FOUND;
|
| 1460 | }
|
| 1461 |
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 1462 | ProcessorInfoBuffer->ProcessorId = (UINT64) CpuInfoInHob[ProcessorNumber].ApicId;
|
Jeff Fan | ad52f25 | 2016-07-21 21:12:46 +0800 | [diff] [blame] | 1463 | ProcessorInfoBuffer->StatusFlag = 0;
|
| 1464 | if (ProcessorNumber == CpuMpData->BspNumber) {
|
| 1465 | ProcessorInfoBuffer->StatusFlag |= PROCESSOR_AS_BSP_BIT;
|
| 1466 | }
|
| 1467 | if (CpuMpData->CpuData[ProcessorNumber].CpuHealthy) {
|
| 1468 | ProcessorInfoBuffer->StatusFlag |= PROCESSOR_HEALTH_STATUS_BIT;
|
| 1469 | }
|
| 1470 | if (GetApState (&CpuMpData->CpuData[ProcessorNumber]) == CpuStateDisabled) {
|
| 1471 | ProcessorInfoBuffer->StatusFlag &= ~PROCESSOR_ENABLED_BIT;
|
| 1472 | } else {
|
| 1473 | ProcessorInfoBuffer->StatusFlag |= PROCESSOR_ENABLED_BIT;
|
| 1474 | }
|
| 1475 |
|
| 1476 | //
|
| 1477 | // Get processor location information
|
| 1478 | //
|
Jeff Fan | 262128e | 2016-11-01 10:45:37 +0800 | [diff] [blame] | 1479 | GetProcessorLocationByApicId (
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 1480 | CpuInfoInHob[ProcessorNumber].ApicId,
|
Leo Duran | 73152f1 | 2016-11-01 03:42:57 +0800 | [diff] [blame] | 1481 | &ProcessorInfoBuffer->Location.Package,
|
| 1482 | &ProcessorInfoBuffer->Location.Core,
|
| 1483 | &ProcessorInfoBuffer->Location.Thread
|
| 1484 | );
|
Jeff Fan | ad52f25 | 2016-07-21 21:12:46 +0800 | [diff] [blame] | 1485 |
|
| 1486 | if (HealthData != NULL) {
|
Jeff Fan | 31a1e4d | 2016-11-14 10:49:51 +0800 | [diff] [blame] | 1487 | HealthData->Uint32 = CpuInfoInHob[ProcessorNumber].Health;
|
Jeff Fan | ad52f25 | 2016-07-21 21:12:46 +0800 | [diff] [blame] | 1488 | }
|
| 1489 |
|
| 1490 | return EFI_SUCCESS;
|
Jeff Fan | 3e8ad6b | 2016-07-20 21:56:58 +0800 | [diff] [blame] | 1491 | }
|
Jeff Fan | ad52f25 | 2016-07-21 21:12:46 +0800 | [diff] [blame] | 1492 |
|
Jeff Fan | 41be0da | 2016-07-21 21:20:18 +0800 | [diff] [blame] | 1493 | /**
|
| 1494 | Worker function to switch the requested AP to be the BSP from that point onward.
|
| 1495 |
|
| 1496 | @param[in] ProcessorNumber The handle number of AP that is to become the new BSP.
|
| 1497 | @param[in] EnableOldBSP If TRUE, then the old BSP will be listed as an
|
| 1498 | enabled AP. Otherwise, it will be disabled.
|
| 1499 |
|
| 1500 | @retval EFI_SUCCESS BSP successfully switched.
|
| 1501 | @retval others Failed to switch BSP.
|
| 1502 |
|
| 1503 | **/
|
| 1504 | EFI_STATUS
|
| 1505 | SwitchBSPWorker (
|
| 1506 | IN UINTN ProcessorNumber,
|
| 1507 | IN BOOLEAN EnableOldBSP
|
| 1508 | )
|
| 1509 | {
|
| 1510 | CPU_MP_DATA *CpuMpData;
|
| 1511 | UINTN CallerNumber;
|
| 1512 | CPU_STATE State;
|
| 1513 | MSR_IA32_APIC_BASE_REGISTER ApicBaseMsr;
|
| 1514 |
|
| 1515 | CpuMpData = GetCpuMpData ();
|
| 1516 |
|
| 1517 | //
|
| 1518 | // Check whether caller processor is BSP
|
| 1519 | //
|
| 1520 | MpInitLibWhoAmI (&CallerNumber);
|
| 1521 | if (CallerNumber != CpuMpData->BspNumber) {
|
| 1522 | return EFI_SUCCESS;
|
| 1523 | }
|
| 1524 |
|
| 1525 | if (ProcessorNumber >= CpuMpData->CpuCount) {
|
| 1526 | return EFI_NOT_FOUND;
|
| 1527 | }
|
| 1528 |
|
| 1529 | //
|
| 1530 | // Check whether specified AP is disabled
|
| 1531 | //
|
| 1532 | State = GetApState (&CpuMpData->CpuData[ProcessorNumber]);
|
| 1533 | if (State == CpuStateDisabled) {
|
| 1534 | return EFI_INVALID_PARAMETER;
|
| 1535 | }
|
| 1536 |
|
| 1537 | //
|
| 1538 | // Check whether ProcessorNumber specifies the current BSP
|
| 1539 | //
|
| 1540 | if (ProcessorNumber == CpuMpData->BspNumber) {
|
| 1541 | return EFI_INVALID_PARAMETER;
|
| 1542 | }
|
| 1543 |
|
| 1544 | //
|
| 1545 | // Check whether specified AP is busy
|
| 1546 | //
|
| 1547 | if (State == CpuStateBusy) {
|
| 1548 | return EFI_NOT_READY;
|
| 1549 | }
|
| 1550 |
|
| 1551 | CpuMpData->BSPInfo.State = CPU_SWITCH_STATE_IDLE;
|
| 1552 | CpuMpData->APInfo.State = CPU_SWITCH_STATE_IDLE;
|
| 1553 | CpuMpData->SwitchBspFlag = TRUE;
|
Jeff Fan | b3775af | 2016-11-14 11:43:26 +0800 | [diff] [blame] | 1554 | CpuMpData->NewBspNumber = ProcessorNumber;
|
Jeff Fan | 41be0da | 2016-07-21 21:20:18 +0800 | [diff] [blame] | 1555 |
|
| 1556 | //
|
| 1557 | // Clear the BSP bit of MSR_IA32_APIC_BASE
|
| 1558 | //
|
| 1559 | ApicBaseMsr.Uint64 = AsmReadMsr64 (MSR_IA32_APIC_BASE);
|
| 1560 | ApicBaseMsr.Bits.BSP = 0;
|
| 1561 | AsmWriteMsr64 (MSR_IA32_APIC_BASE, ApicBaseMsr.Uint64);
|
| 1562 |
|
| 1563 | //
|
| 1564 | // Need to wakeUp AP (future BSP).
|
| 1565 | //
|
| 1566 | WakeUpAP (CpuMpData, FALSE, ProcessorNumber, FutureBSPProc, CpuMpData);
|
| 1567 |
|
| 1568 | AsmExchangeRole (&CpuMpData->BSPInfo, &CpuMpData->APInfo);
|
| 1569 |
|
| 1570 | //
|
| 1571 | // Set the BSP bit of MSR_IA32_APIC_BASE on new BSP
|
| 1572 | //
|
| 1573 | ApicBaseMsr.Uint64 = AsmReadMsr64 (MSR_IA32_APIC_BASE);
|
| 1574 | ApicBaseMsr.Bits.BSP = 1;
|
| 1575 | AsmWriteMsr64 (MSR_IA32_APIC_BASE, ApicBaseMsr.Uint64);
|
| 1576 |
|
| 1577 | //
|
| 1578 | // Wait for old BSP finished AP task
|
| 1579 | //
|
| 1580 | while (GetApState (&CpuMpData->CpuData[CallerNumber]) != CpuStateFinished) {
|
| 1581 | CpuPause ();
|
| 1582 | }
|
| 1583 |
|
| 1584 | CpuMpData->SwitchBspFlag = FALSE;
|
| 1585 | //
|
| 1586 | // Set old BSP enable state
|
| 1587 | //
|
| 1588 | if (!EnableOldBSP) {
|
| 1589 | SetApState (&CpuMpData->CpuData[CallerNumber], CpuStateDisabled);
|
| 1590 | }
|
| 1591 | //
|
| 1592 | // Save new BSP number
|
| 1593 | //
|
| 1594 | CpuMpData->BspNumber = (UINT32) ProcessorNumber;
|
| 1595 |
|
| 1596 | return EFI_SUCCESS;
|
| 1597 | }
|
Jeff Fan | ad52f25 | 2016-07-21 21:12:46 +0800 | [diff] [blame] | 1598 |
|
Jeff Fan | 3e8ad6b | 2016-07-20 21:56:58 +0800 | [diff] [blame] | 1599 | /**
|
Jeff Fan | e37109b | 2016-07-21 21:23:05 +0800 | [diff] [blame] | 1600 | Worker function to let the caller enable or disable an AP from this point onward.
|
| 1601 | This service may only be called from the BSP.
|
| 1602 |
|
| 1603 | @param[in] ProcessorNumber The handle number of AP.
|
| 1604 | @param[in] EnableAP Specifies the new state for the processor for
|
| 1605 | enabled, FALSE for disabled.
|
| 1606 | @param[in] HealthFlag If not NULL, a pointer to a value that specifies
|
| 1607 | the new health status of the AP.
|
| 1608 |
|
| 1609 | @retval EFI_SUCCESS The specified AP was enabled or disabled successfully.
|
| 1610 | @retval others Failed to Enable/Disable AP.
|
| 1611 |
|
| 1612 | **/
|
| 1613 | EFI_STATUS
|
| 1614 | EnableDisableApWorker (
|
| 1615 | IN UINTN ProcessorNumber,
|
| 1616 | IN BOOLEAN EnableAP,
|
| 1617 | IN UINT32 *HealthFlag OPTIONAL
|
| 1618 | )
|
| 1619 | {
|
| 1620 | CPU_MP_DATA *CpuMpData;
|
| 1621 | UINTN CallerNumber;
|
| 1622 |
|
| 1623 | CpuMpData = GetCpuMpData ();
|
| 1624 |
|
| 1625 | //
|
| 1626 | // Check whether caller processor is BSP
|
| 1627 | //
|
| 1628 | MpInitLibWhoAmI (&CallerNumber);
|
| 1629 | if (CallerNumber != CpuMpData->BspNumber) {
|
| 1630 | return EFI_DEVICE_ERROR;
|
| 1631 | }
|
| 1632 |
|
| 1633 | if (ProcessorNumber == CpuMpData->BspNumber) {
|
| 1634 | return EFI_INVALID_PARAMETER;
|
| 1635 | }
|
| 1636 |
|
| 1637 | if (ProcessorNumber >= CpuMpData->CpuCount) {
|
| 1638 | return EFI_NOT_FOUND;
|
| 1639 | }
|
| 1640 |
|
| 1641 | if (!EnableAP) {
|
| 1642 | SetApState (&CpuMpData->CpuData[ProcessorNumber], CpuStateDisabled);
|
| 1643 | } else {
|
| 1644 | SetApState (&CpuMpData->CpuData[ProcessorNumber], CpuStateIdle);
|
| 1645 | }
|
| 1646 |
|
| 1647 | if (HealthFlag != NULL) {
|
| 1648 | CpuMpData->CpuData[ProcessorNumber].CpuHealthy =
|
| 1649 | (BOOLEAN) ((*HealthFlag & PROCESSOR_HEALTH_STATUS_BIT) != 0);
|
| 1650 | }
|
| 1651 |
|
| 1652 | return EFI_SUCCESS;
|
| 1653 | }
|
| 1654 |
|
| 1655 | /**
|
Jeff Fan | 3e8ad6b | 2016-07-20 21:56:58 +0800 | [diff] [blame] | 1656 | This return the handle number for the calling processor. This service may be
|
| 1657 | called from the BSP and APs.
|
| 1658 |
|
| 1659 | @param[out] ProcessorNumber Pointer to the handle number of AP.
|
| 1660 | The range is from 0 to the total number of
|
| 1661 | logical processors minus 1. The total number of
|
| 1662 | logical processors can be retrieved by
|
| 1663 | MpInitLibGetNumberOfProcessors().
|
| 1664 |
|
| 1665 | @retval EFI_SUCCESS The current processor handle number was returned
|
| 1666 | in ProcessorNumber.
|
| 1667 | @retval EFI_INVALID_PARAMETER ProcessorNumber is NULL.
|
| 1668 | @retval EFI_NOT_READY MP Initialize Library is not initialized.
|
| 1669 |
|
| 1670 | **/
|
| 1671 | EFI_STATUS
|
| 1672 | EFIAPI
|
| 1673 | MpInitLibWhoAmI (
|
| 1674 | OUT UINTN *ProcessorNumber
|
| 1675 | )
|
| 1676 | {
|
Jeff Fan | 5c9e099 | 2016-07-21 21:14:00 +0800 | [diff] [blame] | 1677 | CPU_MP_DATA *CpuMpData;
|
| 1678 |
|
| 1679 | if (ProcessorNumber == NULL) {
|
| 1680 | return EFI_INVALID_PARAMETER;
|
| 1681 | }
|
| 1682 |
|
| 1683 | CpuMpData = GetCpuMpData ();
|
| 1684 |
|
| 1685 | return GetProcessorNumber (CpuMpData, ProcessorNumber);
|
Jeff Fan | 3e8ad6b | 2016-07-20 21:56:58 +0800 | [diff] [blame] | 1686 | }
|
Jeff Fan | 809213a | 2016-07-21 00:34:19 +0800 | [diff] [blame] | 1687 |
|
Jeff Fan | 3e8ad6b | 2016-07-20 21:56:58 +0800 | [diff] [blame] | 1688 | /**
|
| 1689 | Retrieves the number of logical processor in the platform and the number of
|
| 1690 | those logical processors that are enabled on this boot. This service may only
|
| 1691 | be called from the BSP.
|
| 1692 |
|
| 1693 | @param[out] NumberOfProcessors Pointer to the total number of logical
|
| 1694 | processors in the system, including the BSP
|
| 1695 | and disabled APs.
|
| 1696 | @param[out] NumberOfEnabledProcessors Pointer to the number of enabled logical
|
| 1697 | processors that exist in system, including
|
| 1698 | the BSP.
|
| 1699 |
|
| 1700 | @retval EFI_SUCCESS The number of logical processors and enabled
|
| 1701 | logical processors was retrieved.
|
| 1702 | @retval EFI_DEVICE_ERROR The calling processor is an AP.
|
| 1703 | @retval EFI_INVALID_PARAMETER NumberOfProcessors is NULL and NumberOfEnabledProcessors
|
| 1704 | is NULL.
|
| 1705 | @retval EFI_NOT_READY MP Initialize Library is not initialized.
|
| 1706 |
|
| 1707 | **/
|
| 1708 | EFI_STATUS
|
| 1709 | EFIAPI
|
| 1710 | MpInitLibGetNumberOfProcessors (
|
| 1711 | OUT UINTN *NumberOfProcessors, OPTIONAL
|
| 1712 | OUT UINTN *NumberOfEnabledProcessors OPTIONAL
|
| 1713 | )
|
| 1714 | {
|
Jeff Fan | 809213a | 2016-07-21 00:34:19 +0800 | [diff] [blame] | 1715 | CPU_MP_DATA *CpuMpData;
|
| 1716 | UINTN CallerNumber;
|
| 1717 | UINTN ProcessorNumber;
|
| 1718 | UINTN EnabledProcessorNumber;
|
| 1719 | UINTN Index;
|
| 1720 |
|
| 1721 | CpuMpData = GetCpuMpData ();
|
| 1722 |
|
| 1723 | if ((NumberOfProcessors == NULL) && (NumberOfEnabledProcessors == NULL)) {
|
| 1724 | return EFI_INVALID_PARAMETER;
|
| 1725 | }
|
| 1726 |
|
| 1727 | //
|
| 1728 | // Check whether caller processor is BSP
|
| 1729 | //
|
| 1730 | MpInitLibWhoAmI (&CallerNumber);
|
| 1731 | if (CallerNumber != CpuMpData->BspNumber) {
|
| 1732 | return EFI_DEVICE_ERROR;
|
| 1733 | }
|
| 1734 |
|
| 1735 | ProcessorNumber = CpuMpData->CpuCount;
|
| 1736 | EnabledProcessorNumber = 0;
|
| 1737 | for (Index = 0; Index < ProcessorNumber; Index++) {
|
| 1738 | if (GetApState (&CpuMpData->CpuData[Index]) != CpuStateDisabled) {
|
| 1739 | EnabledProcessorNumber ++;
|
| 1740 | }
|
| 1741 | }
|
| 1742 |
|
| 1743 | if (NumberOfProcessors != NULL) {
|
| 1744 | *NumberOfProcessors = ProcessorNumber;
|
| 1745 | }
|
| 1746 | if (NumberOfEnabledProcessors != NULL) {
|
| 1747 | *NumberOfEnabledProcessors = EnabledProcessorNumber;
|
| 1748 | }
|
| 1749 |
|
| 1750 | return EFI_SUCCESS;
|
Jeff Fan | 3e8ad6b | 2016-07-20 21:56:58 +0800 | [diff] [blame] | 1751 | }
|
Jeff Fan | 6a2ee2b | 2016-07-21 00:32:53 +0800 | [diff] [blame] | 1752 |
|
Jeff Fan | 809213a | 2016-07-21 00:34:19 +0800 | [diff] [blame] | 1753 |
|
Jeff Fan | 93ca4c0 | 2016-07-21 16:08:12 +0800 | [diff] [blame] | 1754 | /**
|
Jeff Fan | 86efe97 | 2016-07-21 21:33:11 +0800 | [diff] [blame] | 1755 | Worker function to execute a caller provided function on all enabled APs.
|
| 1756 |
|
| 1757 | @param[in] Procedure A pointer to the function to be run on
|
| 1758 | enabled APs of the system.
|
| 1759 | @param[in] SingleThread If TRUE, then all the enabled APs execute
|
| 1760 | the function specified by Procedure one by
|
| 1761 | one, in ascending order of processor handle
|
| 1762 | number. If FALSE, then all the enabled APs
|
| 1763 | execute the function specified by Procedure
|
| 1764 | simultaneously.
|
| 1765 | @param[in] WaitEvent The event created by the caller with CreateEvent()
|
| 1766 | service.
|
Dandan Bi | 367284e | 2016-12-13 10:46:28 +0800 | [diff] [blame] | 1767 | @param[in] TimeoutInMicroseconds Indicates the time limit in microseconds for
|
Jeff Fan | 86efe97 | 2016-07-21 21:33:11 +0800 | [diff] [blame] | 1768 | APs to return from Procedure, either for
|
| 1769 | blocking or non-blocking mode.
|
| 1770 | @param[in] ProcedureArgument The parameter passed into Procedure for
|
| 1771 | all APs.
|
| 1772 | @param[out] FailedCpuList If all APs finish successfully, then its
|
| 1773 | content is set to NULL. If not all APs
|
| 1774 | finish before timeout expires, then its
|
| 1775 | content is set to address of the buffer
|
| 1776 | holding handle numbers of the failed APs.
|
| 1777 |
|
| 1778 | @retval EFI_SUCCESS In blocking mode, all APs have finished before
|
| 1779 | the timeout expired.
|
| 1780 | @retval EFI_SUCCESS In non-blocking mode, function has been dispatched
|
| 1781 | to all enabled APs.
|
| 1782 | @retval others Failed to Startup all APs.
|
| 1783 |
|
| 1784 | **/
|
| 1785 | EFI_STATUS
|
| 1786 | StartupAllAPsWorker (
|
| 1787 | IN EFI_AP_PROCEDURE Procedure,
|
| 1788 | IN BOOLEAN SingleThread,
|
| 1789 | IN EFI_EVENT WaitEvent OPTIONAL,
|
| 1790 | IN UINTN TimeoutInMicroseconds,
|
| 1791 | IN VOID *ProcedureArgument OPTIONAL,
|
| 1792 | OUT UINTN **FailedCpuList OPTIONAL
|
| 1793 | )
|
| 1794 | {
|
| 1795 | EFI_STATUS Status;
|
| 1796 | CPU_MP_DATA *CpuMpData;
|
| 1797 | UINTN ProcessorCount;
|
| 1798 | UINTN ProcessorNumber;
|
| 1799 | UINTN CallerNumber;
|
| 1800 | CPU_AP_DATA *CpuData;
|
| 1801 | BOOLEAN HasEnabledAp;
|
| 1802 | CPU_STATE ApState;
|
| 1803 |
|
| 1804 | CpuMpData = GetCpuMpData ();
|
| 1805 |
|
| 1806 | if (FailedCpuList != NULL) {
|
| 1807 | *FailedCpuList = NULL;
|
| 1808 | }
|
| 1809 |
|
| 1810 | if (CpuMpData->CpuCount == 1) {
|
| 1811 | return EFI_NOT_STARTED;
|
| 1812 | }
|
| 1813 |
|
| 1814 | if (Procedure == NULL) {
|
| 1815 | return EFI_INVALID_PARAMETER;
|
| 1816 | }
|
| 1817 |
|
| 1818 | //
|
| 1819 | // Check whether caller processor is BSP
|
| 1820 | //
|
| 1821 | MpInitLibWhoAmI (&CallerNumber);
|
| 1822 | if (CallerNumber != CpuMpData->BspNumber) {
|
| 1823 | return EFI_DEVICE_ERROR;
|
| 1824 | }
|
| 1825 |
|
| 1826 | //
|
| 1827 | // Update AP state
|
| 1828 | //
|
| 1829 | CheckAndUpdateApsStatus ();
|
| 1830 |
|
| 1831 | ProcessorCount = CpuMpData->CpuCount;
|
| 1832 | HasEnabledAp = FALSE;
|
| 1833 | //
|
| 1834 | // Check whether all enabled APs are idle.
|
| 1835 | // If any enabled AP is not idle, return EFI_NOT_READY.
|
| 1836 | //
|
| 1837 | for (ProcessorNumber = 0; ProcessorNumber < ProcessorCount; ProcessorNumber++) {
|
| 1838 | CpuData = &CpuMpData->CpuData[ProcessorNumber];
|
| 1839 | if (ProcessorNumber != CpuMpData->BspNumber) {
|
| 1840 | ApState = GetApState (CpuData);
|
| 1841 | if (ApState != CpuStateDisabled) {
|
| 1842 | HasEnabledAp = TRUE;
|
| 1843 | if (ApState != CpuStateIdle) {
|
| 1844 | //
|
| 1845 | // If any enabled APs are busy, return EFI_NOT_READY.
|
| 1846 | //
|
| 1847 | return EFI_NOT_READY;
|
| 1848 | }
|
| 1849 | }
|
| 1850 | }
|
| 1851 | }
|
| 1852 |
|
| 1853 | if (!HasEnabledAp) {
|
| 1854 | //
|
| 1855 | // If no enabled AP exists, return EFI_NOT_STARTED.
|
| 1856 | //
|
| 1857 | return EFI_NOT_STARTED;
|
| 1858 | }
|
| 1859 |
|
| 1860 | CpuMpData->StartCount = 0;
|
| 1861 | for (ProcessorNumber = 0; ProcessorNumber < ProcessorCount; ProcessorNumber++) {
|
| 1862 | CpuData = &CpuMpData->CpuData[ProcessorNumber];
|
| 1863 | CpuData->Waiting = FALSE;
|
| 1864 | if (ProcessorNumber != CpuMpData->BspNumber) {
|
| 1865 | if (CpuData->State == CpuStateIdle) {
|
| 1866 | //
|
| 1867 | // Mark this processor as responsible for current calling.
|
| 1868 | //
|
| 1869 | CpuData->Waiting = TRUE;
|
| 1870 | CpuMpData->StartCount++;
|
| 1871 | }
|
| 1872 | }
|
| 1873 | }
|
| 1874 |
|
| 1875 | CpuMpData->Procedure = Procedure;
|
| 1876 | CpuMpData->ProcArguments = ProcedureArgument;
|
| 1877 | CpuMpData->SingleThread = SingleThread;
|
| 1878 | CpuMpData->FinishedCount = 0;
|
| 1879 | CpuMpData->RunningCount = 0;
|
| 1880 | CpuMpData->FailedCpuList = FailedCpuList;
|
| 1881 | CpuMpData->ExpectedTime = CalculateTimeout (
|
| 1882 | TimeoutInMicroseconds,
|
| 1883 | &CpuMpData->CurrentTime
|
| 1884 | );
|
| 1885 | CpuMpData->TotalTime = 0;
|
| 1886 | CpuMpData->WaitEvent = WaitEvent;
|
| 1887 |
|
| 1888 | if (!SingleThread) {
|
| 1889 | WakeUpAP (CpuMpData, TRUE, 0, Procedure, ProcedureArgument);
|
| 1890 | } else {
|
| 1891 | for (ProcessorNumber = 0; ProcessorNumber < ProcessorCount; ProcessorNumber++) {
|
| 1892 | if (ProcessorNumber == CallerNumber) {
|
| 1893 | continue;
|
| 1894 | }
|
| 1895 | if (CpuMpData->CpuData[ProcessorNumber].Waiting) {
|
| 1896 | WakeUpAP (CpuMpData, FALSE, ProcessorNumber, Procedure, ProcedureArgument);
|
| 1897 | break;
|
| 1898 | }
|
| 1899 | }
|
| 1900 | }
|
| 1901 |
|
| 1902 | Status = EFI_SUCCESS;
|
| 1903 | if (WaitEvent == NULL) {
|
| 1904 | do {
|
| 1905 | Status = CheckAllAPs ();
|
| 1906 | } while (Status == EFI_NOT_READY);
|
| 1907 | }
|
| 1908 |
|
| 1909 | return Status;
|
| 1910 | }
|
| 1911 |
|
| 1912 | /**
|
Jeff Fan | 20ae577 | 2016-07-21 21:31:47 +0800 | [diff] [blame] | 1913 | Worker function to let the caller get one enabled AP to execute a caller-provided
|
| 1914 | function.
|
| 1915 |
|
| 1916 | @param[in] Procedure A pointer to the function to be run on
|
| 1917 | enabled APs of the system.
|
| 1918 | @param[in] ProcessorNumber The handle number of the AP.
|
| 1919 | @param[in] WaitEvent The event created by the caller with CreateEvent()
|
| 1920 | service.
|
Dandan Bi | 367284e | 2016-12-13 10:46:28 +0800 | [diff] [blame] | 1921 | @param[in] TimeoutInMicroseconds Indicates the time limit in microseconds for
|
Jeff Fan | 20ae577 | 2016-07-21 21:31:47 +0800 | [diff] [blame] | 1922 | APs to return from Procedure, either for
|
| 1923 | blocking or non-blocking mode.
|
| 1924 | @param[in] ProcedureArgument The parameter passed into Procedure for
|
| 1925 | all APs.
|
| 1926 | @param[out] Finished If AP returns from Procedure before the
|
| 1927 | timeout expires, its content is set to TRUE.
|
| 1928 | Otherwise, the value is set to FALSE.
|
| 1929 |
|
| 1930 | @retval EFI_SUCCESS In blocking mode, specified AP finished before
|
| 1931 | the timeout expires.
|
| 1932 | @retval others Failed to Startup AP.
|
| 1933 |
|
| 1934 | **/
|
| 1935 | EFI_STATUS
|
| 1936 | StartupThisAPWorker (
|
| 1937 | IN EFI_AP_PROCEDURE Procedure,
|
| 1938 | IN UINTN ProcessorNumber,
|
| 1939 | IN EFI_EVENT WaitEvent OPTIONAL,
|
| 1940 | IN UINTN TimeoutInMicroseconds,
|
| 1941 | IN VOID *ProcedureArgument OPTIONAL,
|
| 1942 | OUT BOOLEAN *Finished OPTIONAL
|
| 1943 | )
|
| 1944 | {
|
| 1945 | EFI_STATUS Status;
|
| 1946 | CPU_MP_DATA *CpuMpData;
|
| 1947 | CPU_AP_DATA *CpuData;
|
| 1948 | UINTN CallerNumber;
|
| 1949 |
|
| 1950 | CpuMpData = GetCpuMpData ();
|
| 1951 |
|
| 1952 | if (Finished != NULL) {
|
| 1953 | *Finished = FALSE;
|
| 1954 | }
|
| 1955 |
|
| 1956 | //
|
| 1957 | // Check whether caller processor is BSP
|
| 1958 | //
|
| 1959 | MpInitLibWhoAmI (&CallerNumber);
|
| 1960 | if (CallerNumber != CpuMpData->BspNumber) {
|
| 1961 | return EFI_DEVICE_ERROR;
|
| 1962 | }
|
| 1963 |
|
| 1964 | //
|
| 1965 | // Check whether processor with the handle specified by ProcessorNumber exists
|
| 1966 | //
|
| 1967 | if (ProcessorNumber >= CpuMpData->CpuCount) {
|
| 1968 | return EFI_NOT_FOUND;
|
| 1969 | }
|
| 1970 |
|
| 1971 | //
|
| 1972 | // Check whether specified processor is BSP
|
| 1973 | //
|
| 1974 | if (ProcessorNumber == CpuMpData->BspNumber) {
|
| 1975 | return EFI_INVALID_PARAMETER;
|
| 1976 | }
|
| 1977 |
|
| 1978 | //
|
| 1979 | // Check parameter Procedure
|
| 1980 | //
|
| 1981 | if (Procedure == NULL) {
|
| 1982 | return EFI_INVALID_PARAMETER;
|
| 1983 | }
|
| 1984 |
|
| 1985 | //
|
| 1986 | // Update AP state
|
| 1987 | //
|
| 1988 | CheckAndUpdateApsStatus ();
|
| 1989 |
|
| 1990 | //
|
| 1991 | // Check whether specified AP is disabled
|
| 1992 | //
|
| 1993 | if (GetApState (&CpuMpData->CpuData[ProcessorNumber]) == CpuStateDisabled) {
|
| 1994 | return EFI_INVALID_PARAMETER;
|
| 1995 | }
|
| 1996 |
|
| 1997 | //
|
| 1998 | // If WaitEvent is not NULL, execute in non-blocking mode.
|
| 1999 | // BSP saves data for CheckAPsStatus(), and returns EFI_SUCCESS.
|
| 2000 | // CheckAPsStatus() will check completion and timeout periodically.
|
| 2001 | //
|
| 2002 | CpuData = &CpuMpData->CpuData[ProcessorNumber];
|
| 2003 | CpuData->WaitEvent = WaitEvent;
|
| 2004 | CpuData->Finished = Finished;
|
| 2005 | CpuData->ExpectedTime = CalculateTimeout (TimeoutInMicroseconds, &CpuData->CurrentTime);
|
| 2006 | CpuData->TotalTime = 0;
|
| 2007 |
|
| 2008 | WakeUpAP (CpuMpData, FALSE, ProcessorNumber, Procedure, ProcedureArgument);
|
| 2009 |
|
| 2010 | //
|
| 2011 | // If WaitEvent is NULL, execute in blocking mode.
|
| 2012 | // BSP checks AP's state until it finishes or TimeoutInMicrosecsond expires.
|
| 2013 | //
|
| 2014 | Status = EFI_SUCCESS;
|
| 2015 | if (WaitEvent == NULL) {
|
| 2016 | do {
|
| 2017 | Status = CheckThisAP (ProcessorNumber);
|
| 2018 | } while (Status == EFI_NOT_READY);
|
| 2019 | }
|
| 2020 |
|
| 2021 | return Status;
|
| 2022 | }
|
| 2023 |
|
| 2024 | /**
|
Jeff Fan | 93ca4c0 | 2016-07-21 16:08:12 +0800 | [diff] [blame] | 2025 | Get pointer to CPU MP Data structure from GUIDed HOB.
|
| 2026 |
|
| 2027 | @return The pointer to CPU MP Data structure.
|
| 2028 | **/
|
| 2029 | CPU_MP_DATA *
|
| 2030 | GetCpuMpDataFromGuidedHob (
|
| 2031 | VOID
|
| 2032 | )
|
| 2033 | {
|
| 2034 | EFI_HOB_GUID_TYPE *GuidHob;
|
| 2035 | VOID *DataInHob;
|
| 2036 | CPU_MP_DATA *CpuMpData;
|
| 2037 |
|
| 2038 | CpuMpData = NULL;
|
| 2039 | GuidHob = GetFirstGuidHob (&mCpuInitMpLibHobGuid);
|
| 2040 | if (GuidHob != NULL) {
|
| 2041 | DataInHob = GET_GUID_HOB_DATA (GuidHob);
|
| 2042 | CpuMpData = (CPU_MP_DATA *) (*(UINTN *) DataInHob);
|
| 2043 | }
|
| 2044 | return CpuMpData;
|
| 2045 | }
|
Jeff Fan | 42c37b3 | 2016-08-24 22:41:40 +0800 | [diff] [blame] | 2046 |
|
| 2047 | /**
|
| 2048 | Get available system memory below 1MB by specified size.
|
| 2049 |
|
| 2050 | @param[in] CpuMpData The pointer to CPU MP Data structure.
|
| 2051 | **/
|
| 2052 | VOID
|
| 2053 | BackupAndPrepareWakeupBuffer(
|
| 2054 | IN CPU_MP_DATA *CpuMpData
|
| 2055 | )
|
| 2056 | {
|
| 2057 | CopyMem (
|
| 2058 | (VOID *) CpuMpData->BackupBuffer,
|
| 2059 | (VOID *) CpuMpData->WakeupBuffer,
|
| 2060 | CpuMpData->BackupBufferSize
|
| 2061 | );
|
| 2062 | CopyMem (
|
| 2063 | (VOID *) CpuMpData->WakeupBuffer,
|
| 2064 | (VOID *) CpuMpData->AddressMap.RendezvousFunnelAddress,
|
| 2065 | CpuMpData->AddressMap.RendezvousFunnelSize
|
| 2066 | );
|
| 2067 | }
|
| 2068 |
|
| 2069 | /**
|
| 2070 | Restore wakeup buffer data.
|
| 2071 |
|
| 2072 | @param[in] CpuMpData The pointer to CPU MP Data structure.
|
| 2073 | **/
|
| 2074 | VOID
|
| 2075 | RestoreWakeupBuffer(
|
| 2076 | IN CPU_MP_DATA *CpuMpData
|
| 2077 | )
|
| 2078 | {
|
| 2079 | CopyMem (
|
| 2080 | (VOID *) CpuMpData->WakeupBuffer,
|
| 2081 | (VOID *) CpuMpData->BackupBuffer,
|
| 2082 | CpuMpData->BackupBufferSize
|
| 2083 | );
|
| 2084 | }
|