Changes: - Get rid of the h8qgi mainboard specific code and use the platform generic function wrapper that was added in change http://review.coreboot.org/#/c/2777/ AMD Fam15: Add SPD read functions to wrapper code - Move DIMM addresses into devicetree.cb Notes: - The DIMM reads only happen in romstage, so the function is not available in ramstage. Point the read-SPD callback to a generic function in ramstage. - select_socket() and restore_socket() started by duplicating sp5100_set_gpio() and sp5100_restore_gpio(), which were in dimmSpd.c. In addition to renaming the functions to more specifically state their purpose, some cleanup and magic number reduction was done. Change-Id: I346ebd8399d4ba3e280576e667fdc62fa75a63b8 Signed-off-by: Kimarie Hoot <kimarie.hoot@se-eng.com> Reviewed-on: http://review.coreboot.org/2828 Tested-by: build bot (Jenkins) Reviewed-by: Stefan Reinauer <stefan.reinauer@coreboot.org>
577 lines
17 KiB
C
577 lines
17 KiB
C
/*
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* This file is part of the coreboot project.
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*
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* Copyright (C) 2011 Advanced Micro Devices, Inc.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; version 2 of the License.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include "agesawrapper.h"
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#include "amdlib.h"
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#include "BiosCallOuts.h"
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#include "Ids.h"
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#include "OptionsIds.h"
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#include "heapManager.h"
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#include <northbridge/amd/agesa/family15/dimmSpd.h>
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#include <arch/io.h>
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#include <arch/romcc_io.h>
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#ifdef __PRE_RAM__
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/* These defines are used to select the appropriate socket for the SPD read
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* because this is a multi-socket design.
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*/
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#define PCI_REG_GPIO_56_to_53_CNTRL (0x52)
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#define GPIO_OUT_BIT_GPIO53 (BIT0)
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#define GPIO_OUT_BIT_GPIO54 (BIT1)
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#define GPIO_OUT_ENABLE_BIT_GPIO53 (BIT4)
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#define GPIO_OUT_ENABLE_BIT_GPIO54 (BIT5)
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#define GPIO_OUT_BIT_GPIO54_to_53_MASK \
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(GPIO_OUT_BIT_GPIO54 | GPIO_OUT_BIT_GPIO53)
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#define GPIO_OUT_ENABLE_BIT_GPIO54_to_53_MASK \
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(GPIO_OUT_ENABLE_BIT_GPIO54 | GPIO_OUT_ENABLE_BIT_GPIO53)
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static UINT8 select_socket(UINT8 socket_id)
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{
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device_t sm_dev = PCI_DEV(0, 0x14, 0); //SMBus
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UINT8 value = 0;
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UINT8 gpio56_to_53 = 0;
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/* Configure GPIO54,53 to select the desired socket
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* GPIO54,53 control the HC4052 S1,S0
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* S1 S0 true table
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* 0 0 channel 1 (Socket1)
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* 0 1 channel 2 (Socket2)
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* 1 0 channel 3 (Socket3)
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* 1 1 channel 4 (Socket4)
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*/
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gpio56_to_53 = pci_read_config8(sm_dev, PCI_REG_GPIO_56_to_53_CNTRL);
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value = gpio56_to_53 & (~GPIO_OUT_BIT_GPIO54_to_53_MASK);
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value |= socket_id;
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value &= (~GPIO_OUT_ENABLE_BIT_GPIO54_to_53_MASK); // 0=Output Enabled, 1=Tristate
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pci_write_config8(sm_dev, PCI_REG_GPIO_56_to_53_CNTRL, value);
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return gpio56_to_53;
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}
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static void restore_socket(UINT8 original_value)
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{
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device_t sm_dev = PCI_DEV(0, 0x14, 0); //SMBus
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pci_write_config8(sm_dev, PCI_REG_GPIO_56_to_53_CNTRL, original_value);
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}
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#endif
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STATIC BIOS_CALLOUT_STRUCT BiosCallouts[] =
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{
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{
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AGESA_ALLOCATE_BUFFER,
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BiosAllocateBuffer
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},
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{
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AGESA_DEALLOCATE_BUFFER,
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BiosDeallocateBuffer
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},
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{
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AGESA_DO_RESET,
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BiosReset
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},
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{
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AGESA_LOCATE_BUFFER,
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BiosLocateBuffer
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},
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{
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AGESA_READ_SPD,
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BiosReadSpd
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},
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{
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AGESA_READ_SPD_RECOVERY,
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BiosDefaultRet
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},
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{
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AGESA_RUNFUNC_ONAP,
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BiosRunFuncOnAp
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},
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{
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AGESA_GET_IDS_INIT_DATA,
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BiosGetIdsInitData
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},
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{
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AGESA_HOOKBEFORE_DQS_TRAINING,
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BiosHookBeforeDQSTraining
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},
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{
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AGESA_HOOKBEFORE_DRAM_INIT,
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BiosHookBeforeDramInit
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},
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{
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AGESA_HOOKBEFORE_EXIT_SELF_REF,
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BiosHookBeforeExitSelfRefresh
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},
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};
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AGESA_STATUS GetBiosCallout (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
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{
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UINTN i;
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AGESA_STATUS CalloutStatus;
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UINTN CallOutCount = sizeof (BiosCallouts) / sizeof (BiosCallouts [0]);
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for (i = 0; i < CallOutCount; i++) {
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if (BiosCallouts[i].CalloutName == Func) {
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break;
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}
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}
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if(i >= CallOutCount) {
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return AGESA_UNSUPPORTED;
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}
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CalloutStatus = BiosCallouts[i].CalloutPtr (Func, Data, ConfigPtr);
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return CalloutStatus;
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}
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CONST IDS_NV_ITEM IdsData[] =
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{
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/*{
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AGESA_IDS_NV_MAIN_PLL_CON,
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0x1
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},
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{
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AGESA_IDS_NV_MAIN_PLL_FID_EN,
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0x1
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},
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{
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AGESA_IDS_NV_MAIN_PLL_FID,
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0x8
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},
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{
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AGESA_IDS_NV_CUSTOM_NB_PSTATE,
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},
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{
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AGESA_IDS_NV_CUSTOM_NB_P0_DIV_CTRL,
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},
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{
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AGESA_IDS_NV_CUSTOM_NB_P1_DIV_CTRL,
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},
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{
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AGESA_IDS_NV_FORCE_NB_PSTATE,
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},
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*/
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{
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0xFFFF,
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0xFFFF
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}
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};
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#define NUM_IDS_ENTRIES (sizeof (IdsData) / sizeof (IDS_NV_ITEM))
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AGESA_STATUS BiosGetIdsInitData (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
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{
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UINTN i;
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IDS_NV_ITEM *IdsPtr;
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IdsPtr = ((IDS_CALLOUT_STRUCT *) ConfigPtr)->IdsNvPtr;
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if (Data == IDS_CALLOUT_INIT) {
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for (i = 0; i < NUM_IDS_ENTRIES; i++) {
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IdsPtr[i].IdsNvValue = IdsData[i].IdsNvValue;
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IdsPtr[i].IdsNvId = IdsData[i].IdsNvId;
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}
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}
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return AGESA_SUCCESS;
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}
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AGESA_STATUS BiosAllocateBuffer (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
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{
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UINT32 AvailableHeapSize;
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UINT8 *BiosHeapBaseAddr;
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UINT32 CurrNodeOffset;
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UINT32 PrevNodeOffset;
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UINT32 FreedNodeOffset;
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UINT32 BestFitNodeOffset;
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UINT32 BestFitPrevNodeOffset;
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UINT32 NextFreeOffset;
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BIOS_BUFFER_NODE *CurrNodePtr;
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BIOS_BUFFER_NODE *FreedNodePtr;
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BIOS_BUFFER_NODE *BestFitNodePtr;
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BIOS_BUFFER_NODE *BestFitPrevNodePtr;
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BIOS_BUFFER_NODE *NextFreePtr;
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BIOS_HEAP_MANAGER *BiosHeapBasePtr;
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AGESA_BUFFER_PARAMS *AllocParams;
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AllocParams = ((AGESA_BUFFER_PARAMS *) ConfigPtr);
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AllocParams->BufferPointer = NULL;
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AvailableHeapSize = BIOS_HEAP_SIZE - sizeof (BIOS_HEAP_MANAGER);
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BiosHeapBaseAddr = (UINT8 *) BIOS_HEAP_START_ADDRESS;
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BiosHeapBasePtr = (BIOS_HEAP_MANAGER *) BIOS_HEAP_START_ADDRESS;
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if (BiosHeapBasePtr->StartOfAllocatedNodes == 0) {
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/* First allocation */
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CurrNodeOffset = sizeof (BIOS_HEAP_MANAGER);
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CurrNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + CurrNodeOffset);
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CurrNodePtr->BufferHandle = AllocParams->BufferHandle;
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CurrNodePtr->BufferSize = AllocParams->BufferLength;
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CurrNodePtr->NextNodeOffset = 0;
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AllocParams->BufferPointer = (UINT8 *) CurrNodePtr + sizeof (BIOS_BUFFER_NODE);
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/* Update the remaining free space */
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FreedNodeOffset = CurrNodeOffset + CurrNodePtr->BufferSize + sizeof (BIOS_BUFFER_NODE);
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FreedNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + FreedNodeOffset);
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FreedNodePtr->BufferSize = AvailableHeapSize - sizeof (BIOS_BUFFER_NODE) - CurrNodePtr->BufferSize;
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FreedNodePtr->NextNodeOffset = 0;
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/* Update the offsets for Allocated and Freed nodes */
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BiosHeapBasePtr->StartOfAllocatedNodes = CurrNodeOffset;
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BiosHeapBasePtr->StartOfFreedNodes = FreedNodeOffset;
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} else {
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/* Find out whether BufferHandle has been allocated on the heap. */
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/* If it has, return AGESA_BOUNDS_CHK */
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CurrNodeOffset = BiosHeapBasePtr->StartOfAllocatedNodes;
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CurrNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + CurrNodeOffset);
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while (CurrNodeOffset != 0) {
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CurrNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + CurrNodeOffset);
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if (CurrNodePtr->BufferHandle == AllocParams->BufferHandle) {
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return AGESA_BOUNDS_CHK;
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}
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CurrNodeOffset = CurrNodePtr->NextNodeOffset;
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/* If BufferHandle has not been allocated on the heap, CurrNodePtr here points
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to the end of the allocated nodes list.
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*/
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}
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/* Find the node that best fits the requested buffer size */
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FreedNodeOffset = BiosHeapBasePtr->StartOfFreedNodes;
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PrevNodeOffset = FreedNodeOffset;
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BestFitNodeOffset = 0;
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BestFitPrevNodeOffset = 0;
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while (FreedNodeOffset != 0) {
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FreedNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + FreedNodeOffset);
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if (FreedNodePtr->BufferSize >= (AllocParams->BufferLength + sizeof (BIOS_BUFFER_NODE))) {
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if (BestFitNodeOffset == 0) {
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/* First node that fits the requested buffer size */
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BestFitNodeOffset = FreedNodeOffset;
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BestFitPrevNodeOffset = PrevNodeOffset;
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} else {
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/* Find out whether current node is a better fit than the previous nodes */
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BestFitNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + BestFitNodeOffset);
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if (BestFitNodePtr->BufferSize > FreedNodePtr->BufferSize) {
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BestFitNodeOffset = FreedNodeOffset;
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BestFitPrevNodeOffset = PrevNodeOffset;
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}
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}
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}
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PrevNodeOffset = FreedNodeOffset;
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FreedNodeOffset = FreedNodePtr->NextNodeOffset;
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} /* end of while loop */
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if (BestFitNodeOffset == 0) {
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/* If we could not find a node that fits the requested buffer */
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/* size, return AGESA_BOUNDS_CHK */
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return AGESA_BOUNDS_CHK;
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} else {
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BestFitNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + BestFitNodeOffset);
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BestFitPrevNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + BestFitPrevNodeOffset);
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/* If BestFitNode is larger than the requested buffer, fragment the node further */
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if (BestFitNodePtr->BufferSize > (AllocParams->BufferLength + sizeof (BIOS_BUFFER_NODE))) {
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NextFreeOffset = BestFitNodeOffset + AllocParams->BufferLength + sizeof (BIOS_BUFFER_NODE);
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NextFreePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + NextFreeOffset);
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NextFreePtr->BufferSize = BestFitNodePtr->BufferSize - (AllocParams->BufferLength + sizeof (BIOS_BUFFER_NODE));
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NextFreePtr->NextNodeOffset = BestFitNodePtr->NextNodeOffset;
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} else {
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/* Otherwise, next free node is NextNodeOffset of BestFitNode */
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NextFreeOffset = BestFitNodePtr->NextNodeOffset;
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}
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/* If BestFitNode is the first buffer in the list, then update
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StartOfFreedNodes to reflect the new free node
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*/
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if (BestFitNodeOffset == BiosHeapBasePtr->StartOfFreedNodes) {
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BiosHeapBasePtr->StartOfFreedNodes = NextFreeOffset;
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} else {
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BestFitPrevNodePtr->NextNodeOffset = NextFreeOffset;
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}
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/* Add BestFitNode to the list of Allocated nodes */
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CurrNodePtr->NextNodeOffset = BestFitNodeOffset;
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BestFitNodePtr->BufferSize = AllocParams->BufferLength;
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BestFitNodePtr->BufferHandle = AllocParams->BufferHandle;
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BestFitNodePtr->NextNodeOffset = 0;
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/* Remove BestFitNode from list of Freed nodes */
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AllocParams->BufferPointer = (UINT8 *) BestFitNodePtr + sizeof (BIOS_BUFFER_NODE);
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}
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}
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return AGESA_SUCCESS;
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}
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AGESA_STATUS BiosDeallocateBuffer (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
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{
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UINT8 *BiosHeapBaseAddr;
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UINT32 AllocNodeOffset;
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UINT32 PrevNodeOffset;
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UINT32 NextNodeOffset;
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UINT32 FreedNodeOffset;
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UINT32 EndNodeOffset;
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BIOS_BUFFER_NODE *AllocNodePtr;
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BIOS_BUFFER_NODE *PrevNodePtr;
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BIOS_BUFFER_NODE *FreedNodePtr;
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BIOS_BUFFER_NODE *NextNodePtr;
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BIOS_HEAP_MANAGER *BiosHeapBasePtr;
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AGESA_BUFFER_PARAMS *AllocParams;
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BiosHeapBaseAddr = (UINT8 *) BIOS_HEAP_START_ADDRESS;
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BiosHeapBasePtr = (BIOS_HEAP_MANAGER *) BIOS_HEAP_START_ADDRESS;
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AllocParams = (AGESA_BUFFER_PARAMS *) ConfigPtr;
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/* Find target node to deallocate in list of allocated nodes.
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Return AGESA_BOUNDS_CHK if the BufferHandle is not found
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*/
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AllocNodeOffset = BiosHeapBasePtr->StartOfAllocatedNodes;
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AllocNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + AllocNodeOffset);
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PrevNodeOffset = AllocNodeOffset;
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while (AllocNodePtr->BufferHandle != AllocParams->BufferHandle) {
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if (AllocNodePtr->NextNodeOffset == 0) {
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return AGESA_BOUNDS_CHK;
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}
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PrevNodeOffset = AllocNodeOffset;
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AllocNodeOffset = AllocNodePtr->NextNodeOffset;
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AllocNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + AllocNodeOffset);
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}
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/* Remove target node from list of allocated nodes */
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PrevNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + PrevNodeOffset);
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PrevNodePtr->NextNodeOffset = AllocNodePtr->NextNodeOffset;
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/* Zero out the buffer, and clear the BufferHandle */
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LibAmdMemFill ((UINT8 *)AllocNodePtr + sizeof (BIOS_BUFFER_NODE), 0, AllocNodePtr->BufferSize, &(AllocParams->StdHeader));
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AllocNodePtr->BufferHandle = 0;
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AllocNodePtr->BufferSize += sizeof (BIOS_BUFFER_NODE);
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/* Add deallocated node in order to the list of freed nodes */
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FreedNodeOffset = BiosHeapBasePtr->StartOfFreedNodes;
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FreedNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + FreedNodeOffset);
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EndNodeOffset = AllocNodeOffset + AllocNodePtr->BufferSize;
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if (AllocNodeOffset < FreedNodeOffset) {
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/* Add to the start of the freed list */
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if (EndNodeOffset == FreedNodeOffset) {
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/* If the freed node is adjacent to the first node in the list, concatenate both nodes */
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AllocNodePtr->BufferSize += FreedNodePtr->BufferSize;
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AllocNodePtr->NextNodeOffset = FreedNodePtr->NextNodeOffset;
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/* Clear the BufferSize and NextNodeOffset of the previous first node */
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FreedNodePtr->BufferSize = 0;
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FreedNodePtr->NextNodeOffset = 0;
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} else {
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/* Otherwise, add freed node to the start of the list
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Update NextNodeOffset and BufferSize to include the
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size of BIOS_BUFFER_NODE
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*/
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AllocNodePtr->NextNodeOffset = FreedNodeOffset;
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}
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/* Update StartOfFreedNodes to the new first node */
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BiosHeapBasePtr->StartOfFreedNodes = AllocNodeOffset;
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} else {
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/* Traverse list of freed nodes to find where the deallocated node
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should be place
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*/
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NextNodeOffset = FreedNodeOffset;
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NextNodePtr = FreedNodePtr;
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while (AllocNodeOffset > NextNodeOffset) {
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PrevNodeOffset = NextNodeOffset;
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if (NextNodePtr->NextNodeOffset == 0) {
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break;
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}
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NextNodeOffset = NextNodePtr->NextNodeOffset;
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NextNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + NextNodeOffset);
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}
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/* If deallocated node is adjacent to the next node,
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concatenate both nodes
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*/
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if (NextNodeOffset == EndNodeOffset) {
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NextNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + NextNodeOffset);
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AllocNodePtr->BufferSize += NextNodePtr->BufferSize;
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AllocNodePtr->NextNodeOffset = NextNodePtr->NextNodeOffset;
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NextNodePtr->BufferSize = 0;
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NextNodePtr->NextNodeOffset = 0;
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} else {
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/*AllocNodePtr->NextNodeOffset = FreedNodePtr->NextNodeOffset; */
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AllocNodePtr->NextNodeOffset = NextNodeOffset;
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}
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/* If deallocated node is adjacent to the previous node,
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concatenate both nodes
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*/
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PrevNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + PrevNodeOffset);
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EndNodeOffset = PrevNodeOffset + PrevNodePtr->BufferSize;
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if (AllocNodeOffset == EndNodeOffset) {
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PrevNodePtr->NextNodeOffset = AllocNodePtr->NextNodeOffset;
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PrevNodePtr->BufferSize += AllocNodePtr->BufferSize;
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AllocNodePtr->BufferSize = 0;
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AllocNodePtr->NextNodeOffset = 0;
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} else {
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PrevNodePtr->NextNodeOffset = AllocNodeOffset;
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}
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}
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return AGESA_SUCCESS;
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}
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AGESA_STATUS BiosLocateBuffer (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
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{
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UINT32 AllocNodeOffset;
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UINT8 *BiosHeapBaseAddr;
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BIOS_BUFFER_NODE *AllocNodePtr;
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BIOS_HEAP_MANAGER *BiosHeapBasePtr;
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AGESA_BUFFER_PARAMS *AllocParams;
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AllocParams = (AGESA_BUFFER_PARAMS *) ConfigPtr;
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BiosHeapBaseAddr = (UINT8 *) BIOS_HEAP_START_ADDRESS;
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BiosHeapBasePtr = (BIOS_HEAP_MANAGER *) BIOS_HEAP_START_ADDRESS;
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AllocNodeOffset = BiosHeapBasePtr->StartOfAllocatedNodes;
|
|
AllocNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + AllocNodeOffset);
|
|
|
|
while (AllocParams->BufferHandle != AllocNodePtr->BufferHandle) {
|
|
if (AllocNodePtr->NextNodeOffset == 0) {
|
|
AllocParams->BufferPointer = NULL;
|
|
AllocParams->BufferLength = 0;
|
|
return AGESA_BOUNDS_CHK;
|
|
} else {
|
|
AllocNodeOffset = AllocNodePtr->NextNodeOffset;
|
|
AllocNodePtr = (BIOS_BUFFER_NODE *) (BiosHeapBaseAddr + AllocNodeOffset);
|
|
}
|
|
}
|
|
|
|
AllocParams->BufferPointer = (UINT8 *) ((UINT8 *) AllocNodePtr + sizeof (BIOS_BUFFER_NODE));
|
|
AllocParams->BufferLength = AllocNodePtr->BufferSize;
|
|
|
|
return AGESA_SUCCESS;
|
|
|
|
}
|
|
|
|
AGESA_STATUS BiosRunFuncOnAp (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
|
|
{
|
|
AGESA_STATUS Status;
|
|
|
|
Status = agesawrapper_amdlaterunaptask (Data, ConfigPtr);
|
|
return Status;
|
|
}
|
|
|
|
AGESA_STATUS BiosReset (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
|
|
{
|
|
AGESA_STATUS Status;
|
|
UINT8 Value;
|
|
UINTN ResetType;
|
|
AMD_CONFIG_PARAMS *StdHeader;
|
|
|
|
ResetType = Data;
|
|
StdHeader = ConfigPtr;
|
|
|
|
//
|
|
// Perform the RESET based upon the ResetType. In case of
|
|
// WARM_RESET_WHENVER and COLD_RESET_WHENEVER, the request will go to
|
|
// AmdResetManager. During the critical condition, where reset is required
|
|
// immediately, the reset will be invoked directly by writing 0x04 to port
|
|
// 0xCF9 (Reset Port).
|
|
//
|
|
switch (ResetType) {
|
|
case WARM_RESET_WHENEVER:
|
|
case COLD_RESET_WHENEVER:
|
|
break;
|
|
|
|
case WARM_RESET_IMMEDIATELY:
|
|
case COLD_RESET_IMMEDIATELY:
|
|
Value = 0x06;
|
|
LibAmdIoWrite (AccessWidth8, 0xCf9, &Value, StdHeader);
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
|
|
Status = 0;
|
|
return Status;
|
|
}
|
|
|
|
AGESA_STATUS BiosReadSpd (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
|
|
{
|
|
AGESA_STATUS Status;
|
|
#ifdef __PRE_RAM__
|
|
UINT8 original_value = 0;
|
|
|
|
if (ConfigPtr == NULL)
|
|
return AGESA_ERROR;
|
|
|
|
original_value = select_socket(((AGESA_READ_SPD_PARAMS *)ConfigPtr)->SocketId);
|
|
|
|
Status = agesa_ReadSPD (Func, Data, ConfigPtr);
|
|
|
|
restore_socket(original_value);
|
|
#else
|
|
Status = AGESA_UNSUPPORTED;
|
|
#endif
|
|
|
|
return Status;
|
|
}
|
|
|
|
AGESA_STATUS BiosDefaultRet (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
|
|
{
|
|
return AGESA_UNSUPPORTED;
|
|
}
|
|
|
|
/* Call the host environment interface to provide a user hook opportunity. */
|
|
AGESA_STATUS BiosHookBeforeDQSTraining (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
|
|
{
|
|
return AGESA_SUCCESS;
|
|
}
|
|
|
|
/* Call the host environment interface to provide a user hook opportunity. */
|
|
AGESA_STATUS BiosHookBeforeDramInit (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
|
|
{
|
|
return AGESA_SUCCESS;
|
|
}
|
|
|
|
/* Call the host environment interface to provide a user hook opportunity. */
|
|
AGESA_STATUS BiosHookBeforeExitSelfRefresh (UINT32 Func, UINT32 Data, VOID *ConfigPtr)
|
|
{
|
|
return AGESA_SUCCESS;
|
|
}
|
|
|