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/*
* This file is part of the coreboot project.
*
* Copyright (C) 2011-2012 Advanced Micro Devices, Inc.
* Copyright (C) 2016 Kyösti Mälkki
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; version 2 of the License.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include <stdint.h>
#include <string.h>
#include <arch/acpi.h>
#include <bootstate.h>
#include <cbfs.h>
#include <cbmem.h>
#include <northbridge/amd/agesa/state_machine.h>
#include <northbridge/amd/agesa/agesa_helper.h>
#include <northbridge/amd/agesa/BiosCallOuts.h>
#include "amdlib.h"
#include "AMD.h"
#if IS_ENABLED(CONFIG_CPU_AMD_AGESA_OPENSOURCE)
#include "Dispatcher.h"
#endif
#if ENV_ROMSTAGE
#include <PlatformMemoryConfiguration.h>
CONST PSO_ENTRY ROMDATA DefaultPlatformMemoryConfiguration[] = {PSO_END};
#endif
static void agesa_locate_image(AMD_CONFIG_PARAMS *StdHeader)
{
#if IS_ENABLED(CONFIG_CPU_AMD_AGESA_BINARY_PI)
const char ModuleIdentifier[] = AGESA_ID;
const void *agesa, *image;
size_t file_size;
agesa = cbfs_boot_map_with_leak((const char *)CONFIG_AGESA_CBFS_NAME,
CBFS_TYPE_RAW, &file_size);
if (agesa == NULL)
return;
image = LibAmdLocateImage(agesa, agesa + file_size, 4096,
ModuleIdentifier);
StdHeader->ImageBasePtr = (void*) image;
#endif
}
void agesa_set_interface(struct sysinfo *cb)
{
memset(&cb->StdHeader, 0, sizeof(AMD_CONFIG_PARAMS));
cb->StdHeader.CalloutPtr = GetBiosCallout;
if (IS_ENABLED(CONFIG_CPU_AMD_AGESA_BINARY_PI)) {
agesa_locate_image(&cb->StdHeader);
AMD_IMAGE_HEADER *image =
(void*)(uintptr_t)cb->StdHeader.ImageBasePtr;
ASSERT(image);
AMD_MODULE_HEADER *module =
(void*)(uintptr_t)image->ModuleInfoOffset;
ASSERT(module && module->ModuleDispatcher);
}
}
AGESA_STATUS module_dispatch(AGESA_STRUCT_NAME func,
AMD_CONFIG_PARAMS *StdHeader)
{
MODULE_ENTRY dispatcher;
#if IS_ENABLED(CONFIG_CPU_AMD_AGESA_OPENSOURCE)
dispatcher = AmdAgesaDispatcher;
#endif
#if IS_ENABLED(CONFIG_CPU_AMD_AGESA_BINARY_PI)
AMD_IMAGE_HEADER *image = (void*)(uintptr_t)StdHeader->ImageBasePtr;
AMD_MODULE_HEADER *module = (void*)(uintptr_t)image->ModuleInfoOffset;
dispatcher = module->ModuleDispatcher;
#endif
StdHeader->Func = func;
return dispatcher(StdHeader);
}
static AGESA_STATUS amd_create_struct(AMD_INTERFACE_PARAMS *aip,
AGESA_STRUCT_NAME func, void *buf, size_t len)
{
aip->AgesaFunctionName = func;
aip->AllocationMethod = 0;
aip->NewStructPtr = buf;
aip->NewStructSize = len;
if (buf != NULL && len != 0)
aip->AllocationMethod = ByHost;
return module_dispatch(AMD_CREATE_STRUCT, &aip->StdHeader);
}
static AGESA_STATUS amd_release_struct(AMD_INTERFACE_PARAMS *aip)
{
/* Cannot release AMD_LATE_PARAMS until ACPI tables are done. */
if (aip->AgesaFunctionName == AMD_INIT_LATE)
return AGESA_SUCCESS;
return module_dispatch(AMD_RELEASE_STRUCT, &aip->StdHeader);
}
/* By design, for each valid AGESA_STRUCT_NAME, AMD_CONFIG_PARAMS
* can be evaluated to apply correct typecast based on Func field.
*/
static AGESA_STATUS romstage_dispatch(struct sysinfo *cb,
AGESA_STRUCT_NAME func, AMD_CONFIG_PARAMS *StdHeader)
{
AGESA_STATUS status = AGESA_UNSUPPORTED;
switch (func)
{
case AMD_INIT_RESET:
{
AMD_RESET_PARAMS *param = (void *)StdHeader;
platform_BeforeInitReset(cb, param);
board_BeforeInitReset(cb, param);
status = module_dispatch(func, StdHeader);
break;
}
case AMD_INIT_EARLY:
{
AMD_EARLY_PARAMS *param = (void *)StdHeader;
platform_BeforeInitEarly(cb, param);
board_BeforeInitEarly(cb, param);
status = module_dispatch(func, StdHeader);
break;
}
case AMD_INIT_POST:
{
AMD_POST_PARAMS *param = (void *)StdHeader;
platform_BeforeInitPost(cb, param);
board_BeforeInitPost(cb, param);
status = module_dispatch(func, StdHeader);
platform_AfterInitPost(cb, param);
break;
}
case AMD_INIT_RESUME:
{
AMD_RESUME_PARAMS *param = (void *)StdHeader;
platform_BeforeInitResume(cb, param);
status = module_dispatch(func, StdHeader);
platform_AfterInitResume(cb, param);
break;
}
default:
{
break;
}
}
return status;
}
static AGESA_STATUS ramstage_dispatch(struct sysinfo *cb,
AGESA_STRUCT_NAME func, AMD_CONFIG_PARAMS *StdHeader)
{
AGESA_STATUS status = AGESA_UNSUPPORTED;
switch (func)
{
case AMD_INIT_ENV:
{
AMD_ENV_PARAMS *param = (void *)StdHeader;
platform_BeforeInitEnv(cb, param);
board_BeforeInitEnv(cb, param);
status = module_dispatch(func, StdHeader);
platform_AfterInitEnv(cb, param);
break;
}
case AMD_S3LATE_RESTORE:
{
AMD_S3LATE_PARAMS *param = (void *)StdHeader;
platform_BeforeS3LateRestore(cb, param);
status = module_dispatch(func, StdHeader);
platform_AfterS3LateRestore(cb, param);
break;
}
case AMD_INIT_MID:
{
AMD_MID_PARAMS *param = (void *)StdHeader;
platform_BeforeInitMid(cb, param);
board_BeforeInitMid(cb, param);
status = module_dispatch(func, StdHeader);
break;
}
case AMD_S3_SAVE:
{
AMD_S3SAVE_PARAMS *param = (void *)StdHeader;
status = module_dispatch(func, StdHeader);
platform_AfterS3Save(cb, param);
break;
}
case AMD_INIT_LATE:
{
AMD_LATE_PARAMS *param = (void *)StdHeader;
status = module_dispatch(func, StdHeader);
platform_AfterInitLate(cb, param);
completion_InitLate(cb, param);
break;
}
default:
{
break;
}
}
return status;
}
/* DEBUG trace helper */
struct agesa_state
{
u8 apic_id;
AGESA_STRUCT_NAME func;
const char *function_name;
};
static void state_on_entry(struct agesa_state *task, AGESA_STRUCT_NAME func,
const char *struct_name)
{
task->apic_id = (u8) (cpuid_ebx(1) >> 24);
task->func = func;
task->function_name = struct_name;
printk(BIOS_DEBUG, "\nAPIC %02d: ** Enter %s [%08x]\n",
task->apic_id, task->function_name, task->func);
}
static void state_on_exit(struct agesa_state *task,
AMD_CONFIG_PARAMS *StdHeader)
{
printk(BIOS_DEBUG, "APIC %02d: Heap in %s (%d) at 0x%08x\n",
task->apic_id, heap_status_name(StdHeader->HeapStatus),
StdHeader->HeapStatus, (u32)StdHeader->HeapBasePtr);
printk(BIOS_DEBUG, "APIC %02d: ** Exit %s [%08x]\n",
task->apic_id, task->function_name, task->func);
}
int agesa_execute_state(struct sysinfo *cb, AGESA_STRUCT_NAME func)
{
AMD_INTERFACE_PARAMS aip;
union {
AMD_RESET_PARAMS reset;
AMD_S3LATE_PARAMS s3late;
} agesa_params;
void *buf = NULL;
size_t len = 0;
const char *state_name = agesa_struct_name(func);
AGESA_STATUS status, final;
struct agesa_state task;
memset(&task, 0, sizeof(task));
state_on_entry(&task, func, state_name);
aip.StdHeader = cb->StdHeader;
/* For these calls, heap is not available. */
if (func == AMD_INIT_RESET || func == AMD_S3LATE_RESTORE) {
buf = (void *) &agesa_params;
len = sizeof(agesa_params);
memcpy(buf, &cb->StdHeader, sizeof(cb->StdHeader));
}
status = amd_create_struct(&aip, func, buf, len);
ASSERT(status == AGESA_SUCCESS);
/* Must call the function buffer was allocated for.*/
AMD_CONFIG_PARAMS *StdHeader = aip.NewStructPtr;
ASSERT(StdHeader->Func == func);
if (ENV_ROMSTAGE)
final = romstage_dispatch(cb, func, StdHeader);
if (ENV_RAMSTAGE)
final = ramstage_dispatch(cb, func, StdHeader);
agesawrapper_trace(final, StdHeader, state_name);
ASSERT(final < AGESA_FATAL);
status = amd_release_struct(&aip);
ASSERT(status == AGESA_SUCCESS);
state_on_exit(&task, &aip.StdHeader);
return (final < AGESA_FATAL) ? 0 : -1;
}
#if ENV_RAMSTAGE
static void amd_bs_ramstage_init(void *arg)
{
struct sysinfo *cb = arg;
agesa_set_interface(cb);
if (!acpi_is_wakeup_s3())
agesa_execute_state(cb, AMD_INIT_ENV);
else {
agesa_execute_state(cb, AMD_S3LATE_RESTORE);
fchs3earlyrestore(&cb->StdHeader);
}
}
void sb_After_Pci_Restore_Init(void);
static void amd_bs_dev_enable(void *arg)
{
struct sysinfo *cb = arg;
if (!acpi_is_wakeup_s3())
agesa_execute_state(cb, AMD_INIT_MID);
/* FIXME */
if (IS_ENABLED(CONFIG_AMD_SB_CIMX) && acpi_is_wakeup_s3())
sb_After_Pci_Restore_Init();
}
static void amd_bs_post_device(void *arg)
{
struct sysinfo *cb = arg;
if (acpi_is_wakeup_s3()) {
fchs3laterestore(&cb->StdHeader);
return;
}
agesa_execute_state(cb, AMD_INIT_LATE);
if (!acpi_s3_resume_allowed())
return;
agesa_execute_state(cb, AMD_S3_SAVE);
}
static struct sysinfo state_machine;
BOOT_STATE_INIT_ENTRY(BS_PRE_DEVICE, BS_ON_ENTRY, amd_bs_ramstage_init,
&state_machine);
BOOT_STATE_INIT_ENTRY(BS_DEV_ENABLE, BS_ON_ENTRY, amd_bs_dev_enable,
&state_machine);
BOOT_STATE_INIT_ENTRY(BS_POST_DEVICE, BS_ON_EXIT, amd_bs_post_device,
&state_machine);
#endif /* ENV_RAMSTAGE */
/* Empty stubs for cases board does not need to override anything. */
void __attribute__((weak))
board_BeforeInitReset(struct sysinfo *cb, AMD_RESET_PARAMS *Reset) { }
void __attribute__((weak))
board_BeforeInitEarly(struct sysinfo *cb, AMD_EARLY_PARAMS *Early) { }
void __attribute__((weak))
board_BeforeInitPost(struct sysinfo *cb, AMD_POST_PARAMS *Post) { }
void __attribute__((weak))
board_BeforeInitEnv(struct sysinfo *cb, AMD_ENV_PARAMS *Env) { }
void __attribute__((weak))
board_BeforeInitMid(struct sysinfo *cb, AMD_MID_PARAMS *Mid) { }
AGESA_STATUS __attribute__((weak))
fchs3earlyrestore(AMD_CONFIG_PARAMS *StdHeader)
{
return AGESA_SUCCESS;
}
AGESA_STATUS __attribute__((weak))
fchs3laterestore(AMD_CONFIG_PARAMS *StdHeader)
{
return AGESA_SUCCESS;
}
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