GK SDK 源码库: XMIPCLinuxV100R005C00SPC030 (kernel/tools/open_source excluded)

This commit is contained in:
lai
2026-09-06 03:52:57 +08:00
commit b1928b41c0
21813 changed files with 4413081 additions and 0 deletions
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/*
* Copyright (c) 2020, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#include <common/tbbr/tbbr_img_def.h>
/dts-v1/;
/ {
dtb-registry {
compatible = "fconf,dyn_cfg-dtb_registry";
tb_fw-config {
load-address = <0x0 0x4001300>;
max-size = <0x200>;
id = <TB_FW_CONFIG_ID>;
};
nt_fw-config {
load-address = <0x0 0xFEF00000>;
max-size = <0x0100000>;
id = <NT_FW_CONFIG_ID>;
};
};
};
@@ -0,0 +1,22 @@
/*
* Copyright (c) 2020, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
/dts-v1/;
/ {
/* compatible string */
compatible = "arm,rd-v1-mc";
/*
* Place holder for system-id node with default values. The
* value of platform-id and config-id will be set to the
* correct values during the BL2 stage of boot.
*/
system-id {
platform-id = <0x0>;
config-id = <0x0>;
multi-chip-mode = <0x0>;
};
};
@@ -0,0 +1,28 @@
/*
* Copyright (c) 2020, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
/dts-v1/;
/ {
tb_fw-config {
compatible = "arm,tb_fw";
/* Disable authentication for development */
disable_auth = <0x0>;
/*
* The following two entries are placeholders for Mbed TLS
* heap information. The default values don't matter since
* they will be overwritten by BL1.
* In case of having shared Mbed TLS heap between BL1 and BL2,
* BL1 will populate these two properties with the respective
* info about the shared heap. This info will be available for
* BL2 in order to locate and re-use the heap.
*/
mbedtls_heap_addr = <0x0 0x0>;
mbedtls_heap_size = <0x0>;
};
};
@@ -0,0 +1,63 @@
/*
* Copyright (c) 2020-2022, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef PLATFORM_DEF_H
#define PLATFORM_DEF_H
#include <lib/utils_def.h>
#include <sgi_soc_platform_def.h>
#define PLAT_ARM_CLUSTER_COUNT U(4)
#define CSS_SGI_MAX_CPUS_PER_CLUSTER U(1)
#define CSS_SGI_MAX_PE_PER_CPU U(1)
#define PLAT_CSS_MHU_BASE UL(0x45400000)
#define PLAT_MHUV2_BASE PLAT_CSS_MHU_BASE
#define CSS_SYSTEM_PWR_DMN_LVL ARM_PWR_LVL2
#define PLAT_MAX_PWR_LVL ARM_PWR_LVL1
/* TZC Related Constants */
#define PLAT_ARM_TZC_BASE UL(0x21830000)
#define TZC400_BASE(n) (PLAT_ARM_TZC_BASE + \
(n * TZC400_OFFSET))
#define TZC400_OFFSET UL(0x1000000)
#define TZC400_COUNT U(8)
#define PLAT_ARM_TZC_FILTERS TZC_400_REGION_ATTR_FILTER_BIT(0)
#define TZC_NSAID_ALL_AP U(0)
#define TZC_NSAID_PCI U(1)
#define TZC_NSAID_HDLCD0 U(2)
#define TZC_NSAID_CLCD U(7)
#define TZC_NSAID_AP U(9)
#define TZC_NSAID_VIRTIO U(15)
#define PLAT_ARM_TZC_NS_DEV_ACCESS \
(TZC_REGION_ACCESS_RDWR(TZC_NSAID_ALL_AP)) | \
(TZC_REGION_ACCESS_RDWR(TZC_NSAID_HDLCD0)) | \
(TZC_REGION_ACCESS_RDWR(TZC_NSAID_PCI)) | \
(TZC_REGION_ACCESS_RDWR(TZC_NSAID_AP)) | \
(TZC_REGION_ACCESS_RDWR(TZC_NSAID_CLCD)) | \
(TZC_REGION_ACCESS_RDWR(TZC_NSAID_VIRTIO))
/* Virtual address used by dynamic mem_protect for chunk_base */
#define PLAT_ARM_MEM_PROTEC_VA_FRAME UL(0xC0000000)
/* Remote chip address offset (4TB per chip) */
#define CSS_SGI_ADDR_BITS_PER_CHIP U(42)
/* Physical and virtual address space limits for MMU in AARCH64 mode */
#define PLAT_PHY_ADDR_SPACE_SIZE CSS_SGI_REMOTE_CHIP_MEM_OFFSET( \
CSS_SGI_CHIP_COUNT)
#define PLAT_VIRT_ADDR_SPACE_SIZE CSS_SGI_REMOTE_CHIP_MEM_OFFSET( \
CSS_SGI_CHIP_COUNT)
/* GIC related constants */
#define PLAT_ARM_GICD_BASE UL(0x30000000)
#define PLAT_ARM_GICC_BASE UL(0x2C000000)
#define PLAT_ARM_GICR_BASE UL(0x30140000)
#endif /* PLATFORM_DEF_H */
@@ -0,0 +1,76 @@
# Copyright (c) 2020-2021, ARM Limited and Contributors. All rights reserved.
#
# SPDX-License-Identifier: BSD-3-Clause
#
# Enable GICv4 extension with multichip driver
GIC_ENABLE_V4_EXTN := 1
GICV3_IMPL_GIC600_MULTICHIP := 1
include plat/arm/css/sgi/sgi-common.mk
RDV1MC_BASE = plat/arm/board/rdv1mc
PLAT_INCLUDES += -I${RDV1MC_BASE}/include/
SGI_CPU_SOURCES := lib/cpus/aarch64/neoverse_v1.S
PLAT_BL_COMMON_SOURCES += ${CSS_ENT_BASE}/sgi_plat.c
BL1_SOURCES += ${SGI_CPU_SOURCES} \
${RDV1MC_BASE}/rdv1mc_err.c
BL2_SOURCES += ${RDV1MC_BASE}/rdv1mc_plat.c \
${RDV1MC_BASE}/rdv1mc_security.c \
${RDV1MC_BASE}/rdv1mc_err.c \
drivers/arm/tzc/tzc400.c \
plat/arm/common/arm_tzc400.c \
lib/utils/mem_region.c \
plat/arm/common/arm_nor_psci_mem_protect.c
BL31_SOURCES += ${SGI_CPU_SOURCES} \
${RDV1MC_BASE}/rdv1mc_plat.c \
${RDV1MC_BASE}/rdv1mc_topology.c \
drivers/cfi/v2m/v2m_flash.c \
drivers/arm/gic/v3/gic600_multichip.c \
lib/utils/mem_region.c \
plat/arm/common/arm_nor_psci_mem_protect.c
ifeq (${TRUSTED_BOARD_BOOT}, 1)
BL1_SOURCES += ${RDV1MC_BASE}/rdv1mc_trusted_boot.c
BL2_SOURCES += ${RDV1MC_BASE}/rdv1mc_trusted_boot.c
endif
# Enable dynamic addition of MMAP regions in BL31
BL31_CFLAGS += -DPLAT_XLAT_TABLES_DYNAMIC
# Add the FDT_SOURCES and options for Dynamic Config
FDT_SOURCES += ${RDV1MC_BASE}/fdts/${PLAT}_fw_config.dts \
${RDV1MC_BASE}/fdts/${PLAT}_tb_fw_config.dts
FW_CONFIG := ${BUILD_PLAT}/fdts/${PLAT}_fw_config.dtb
TB_FW_CONFIG := ${BUILD_PLAT}/fdts/${PLAT}_tb_fw_config.dtb
# Add the FW_CONFIG to FIP and specify the same to certtool
$(eval $(call TOOL_ADD_PAYLOAD,${FW_CONFIG},--fw-config,${FW_CONFIG}))
# Add the TB_FW_CONFIG to FIP and specify the same to certtool
$(eval $(call TOOL_ADD_PAYLOAD,${TB_FW_CONFIG},--tb-fw-config,${TB_FW_CONFIG}))
$(eval $(call CREATE_SEQ,SEQ,4))
ifneq ($(CSS_SGI_CHIP_COUNT),$(filter $(CSS_SGI_CHIP_COUNT),$(SEQ)))
$(error "Chip count for RD-V1-MC should be either $(SEQ) \
currently it is set to ${CSS_SGI_CHIP_COUNT}.")
endif
FDT_SOURCES += ${RDV1MC_BASE}/fdts/${PLAT}_nt_fw_config.dts
NT_FW_CONFIG := ${BUILD_PLAT}/fdts/${PLAT}_nt_fw_config.dtb
# Add the NT_FW_CONFIG to FIP and specify the same to certtool
$(eval $(call TOOL_ADD_PAYLOAD,${NT_FW_CONFIG},--nt-fw-config,${NT_FW_CONFIG}))
override CTX_INCLUDE_AARCH32_REGS := 0
override ENABLE_AMU := 1
ifneq ($(CSS_SGI_PLATFORM_VARIANT),0)
$(error "CSS_SGI_PLATFORM_VARIANT for RD-V1-MC should always be 0, \
currently set to ${CSS_SGI_PLATFORM_VARIANT}.")
endif
@@ -0,0 +1,17 @@
/*
* Copyright (c) 2020, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#include <plat/arm/common/plat_arm.h>
/*
* rdv1mc error handler
*/
void __dead2 plat_arm_error_handler(int err)
{
while (true) {
wfi();
}
}
@@ -0,0 +1,131 @@
/*
* Copyright (c) 2020, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#include <common/debug.h>
#include <drivers/arm/gic600_multichip.h>
#include <plat/arm/common/plat_arm.h>
#include <plat/common/platform.h>
#include <sgi_soc_platform_def.h>
#include <sgi_plat.h>
#if defined(IMAGE_BL31)
static const mmap_region_t rdv1mc_dynamic_mmap[] = {
ARM_MAP_SHARED_RAM_REMOTE_CHIP(1),
CSS_SGI_MAP_DEVICE_REMOTE_CHIP(1),
SOC_CSS_MAP_DEVICE_REMOTE_CHIP(1),
#if (CSS_SGI_CHIP_COUNT > 2)
ARM_MAP_SHARED_RAM_REMOTE_CHIP(2),
CSS_SGI_MAP_DEVICE_REMOTE_CHIP(2),
SOC_CSS_MAP_DEVICE_REMOTE_CHIP(2),
#endif
#if (CSS_SGI_CHIP_COUNT > 3)
ARM_MAP_SHARED_RAM_REMOTE_CHIP(3),
CSS_SGI_MAP_DEVICE_REMOTE_CHIP(3),
SOC_CSS_MAP_DEVICE_REMOTE_CHIP(3)
#endif
};
static struct gic600_multichip_data rdv1mc_multichip_data __init = {
.rt_owner_base = PLAT_ARM_GICD_BASE,
.rt_owner = 0,
.chip_count = CSS_SGI_CHIP_COUNT,
.chip_addrs = {
PLAT_ARM_GICD_BASE >> 16,
(PLAT_ARM_GICD_BASE + CSS_SGI_REMOTE_CHIP_MEM_OFFSET(1)) >> 16,
#if (CSS_SGI_CHIP_COUNT > 2)
(PLAT_ARM_GICD_BASE + CSS_SGI_REMOTE_CHIP_MEM_OFFSET(2)) >> 16,
#endif
#if (CSS_SGI_CHIP_COUNT > 3)
(PLAT_ARM_GICD_BASE + CSS_SGI_REMOTE_CHIP_MEM_OFFSET(3)) >> 16,
#endif
},
.spi_ids = {
{PLAT_ARM_GICD_BASE, 32, 255},
{0, 0, 0},
#if (CSS_SGI_CHIP_COUNT > 2)
{0, 0, 0},
#endif
#if (CSS_SGI_CHIP_COUNT > 3)
{0, 0, 0},
#endif
}
};
static uintptr_t rdv1mc_multichip_gicr_frames[] = {
/* Chip 0's GICR Base */
PLAT_ARM_GICR_BASE,
/* Chip 1's GICR BASE */
PLAT_ARM_GICR_BASE + CSS_SGI_REMOTE_CHIP_MEM_OFFSET(1),
#if (CSS_SGI_CHIP_COUNT > 2)
/* Chip 2's GICR BASE */
PLAT_ARM_GICR_BASE + CSS_SGI_REMOTE_CHIP_MEM_OFFSET(2),
#endif
#if (CSS_SGI_CHIP_COUNT > 3)
/* Chip 3's GICR BASE */
PLAT_ARM_GICR_BASE + CSS_SGI_REMOTE_CHIP_MEM_OFFSET(3),
#endif
UL(0) /* Zero Termination */
};
#endif /* IMAGE_BL31 */
unsigned int plat_arm_sgi_get_platform_id(void)
{
return mmio_read_32(SID_REG_BASE + SID_SYSTEM_ID_OFFSET)
& SID_SYSTEM_ID_PART_NUM_MASK;
}
unsigned int plat_arm_sgi_get_config_id(void)
{
return mmio_read_32(SID_REG_BASE + SID_SYSTEM_CFG_OFFSET);
}
unsigned int plat_arm_sgi_get_multi_chip_mode(void)
{
return (mmio_read_32(SID_REG_BASE + SID_NODE_ID_OFFSET) &
SID_MULTI_CHIP_MODE_MASK) >> SID_MULTI_CHIP_MODE_SHIFT;
}
/*
* bl31_platform_setup_function is guarded by IMAGE_BL31 macro because
* PLAT_XLAT_TABLES_DYNAMIC macro is set to build only for BL31 and not
* for other stages.
*/
#if defined(IMAGE_BL31)
void bl31_platform_setup(void)
{
int ret;
unsigned int i;
if ((plat_arm_sgi_get_multi_chip_mode() == 0) &&
(CSS_SGI_CHIP_COUNT > 1)) {
ERROR("Chip Count is set to %u but multi-chip mode is not "
"enabled\n", CSS_SGI_CHIP_COUNT);
panic();
} else if ((plat_arm_sgi_get_multi_chip_mode() == 1) &&
(CSS_SGI_CHIP_COUNT > 1)) {
INFO("Enabling support for multi-chip in RD-V1-MC\n");
for (i = 0; i < ARRAY_SIZE(rdv1mc_dynamic_mmap); i++) {
ret = mmap_add_dynamic_region(
rdv1mc_dynamic_mmap[i].base_pa,
rdv1mc_dynamic_mmap[i].base_va,
rdv1mc_dynamic_mmap[i].size,
rdv1mc_dynamic_mmap[i].attr);
if (ret != 0) {
ERROR("Failed to add dynamic mmap entry "
"(ret=%d)\n", ret);
panic();
}
}
plat_arm_override_gicr_frames(
rdv1mc_multichip_gicr_frames);
gic600_multichip_init(&rdv1mc_multichip_data);
}
sgi_bl31_common_platform_setup();
}
#endif /* IMAGE_BL31 */
@@ -0,0 +1,64 @@
/*
* Copyright (c) 2020-2021, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#include <common/debug.h>
#include <plat/arm/common/plat_arm.h>
#include <platform_def.h>
/* TZC memory regions for the first chip */
static const arm_tzc_regions_info_t tzc_regions[] = {
ARM_TZC_REGIONS_DEF,
{}
};
#if CSS_SGI_CHIP_COUNT > 1
static const arm_tzc_regions_info_t tzc_regions_mc[][CSS_SGI_CHIP_COUNT - 1] = {
{
/* TZC memory regions for second chip */
SGI_PLAT_TZC_NS_REMOTE_REGIONS_DEF(1),
{}
},
#if CSS_SGI_CHIP_COUNT > 2
{
/* TZC memory regions for third chip */
SGI_PLAT_TZC_NS_REMOTE_REGIONS_DEF(2),
{}
},
#endif
#if CSS_SGI_CHIP_COUNT > 3
{
/* TZC memory regions for fourth chip */
SGI_PLAT_TZC_NS_REMOTE_REGIONS_DEF(3),
{}
},
#endif
};
#endif /* CSS_SGI_CHIP_COUNT */
/* Initialize the secure environment */
void plat_arm_security_setup(void)
{
unsigned int i;
INFO("Configuring TrustZone Controller for Chip 0\n");
for (i = 0; i < TZC400_COUNT; i++) {
arm_tzc400_setup(TZC400_BASE(i), tzc_regions);
}
#if CSS_SGI_CHIP_COUNT > 1
unsigned int j;
for (i = 1; i < CSS_SGI_CHIP_COUNT; i++) {
INFO("Configuring TrustZone Controller for Chip %u\n", i);
for (j = 0; j < TZC400_COUNT; j++) {
arm_tzc400_setup(CSS_SGI_REMOTE_CHIP_MEM_OFFSET(i)
+ TZC400_BASE(j), tzc_regions_mc[i-1]);
}
}
#endif
}
@@ -0,0 +1,78 @@
/*
* Copyright (c) 2020, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#include <common/debug.h>
#include <plat/arm/common/plat_arm.h>
#include <plat/arm/css/common/css_pm.h>
#include <sgi_variant.h>
/******************************************************************************
* The power domain tree descriptor.
******************************************************************************/
const unsigned char rd_v1_mc_pd_tree_desc_multi_chip[] = {
((PLAT_ARM_CLUSTER_COUNT) * (CSS_SGI_CHIP_COUNT)),
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
#if (CSS_SGI_CHIP_COUNT > 1)
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
#endif
#if (CSS_SGI_CHIP_COUNT > 2)
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
#endif
#if (CSS_SGI_CHIP_COUNT > 3)
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER,
CSS_SGI_MAX_CPUS_PER_CLUSTER
#endif
};
/*******************************************************************************
* This function returns the topology tree information.
******************************************************************************/
const unsigned char *plat_get_power_domain_tree_desc(void)
{
if (plat_arm_sgi_get_multi_chip_mode() == 1)
return rd_v1_mc_pd_tree_desc_multi_chip;
panic();
}
/*******************************************************************************
* The array mapping platform core position (implemented by plat_my_core_pos())
* to the SCMI power domain ID implemented by SCP.
******************************************************************************/
const uint32_t plat_css_core_pos_to_scmi_dmn_id_map[] = {
(SET_SCMI_CHANNEL_ID(0x0) | SET_SCMI_DOMAIN_ID(0x0)),
(SET_SCMI_CHANNEL_ID(0x0) | SET_SCMI_DOMAIN_ID(0x1)),
(SET_SCMI_CHANNEL_ID(0x0) | SET_SCMI_DOMAIN_ID(0x2)),
(SET_SCMI_CHANNEL_ID(0x0) | SET_SCMI_DOMAIN_ID(0x3)),
#if (CSS_SGI_CHIP_COUNT > 1)
(SET_SCMI_CHANNEL_ID(0x1) | SET_SCMI_DOMAIN_ID(0x0)),
(SET_SCMI_CHANNEL_ID(0x1) | SET_SCMI_DOMAIN_ID(0x1)),
(SET_SCMI_CHANNEL_ID(0x1) | SET_SCMI_DOMAIN_ID(0x2)),
(SET_SCMI_CHANNEL_ID(0x1) | SET_SCMI_DOMAIN_ID(0x3)),
#endif
#if (CSS_SGI_CHIP_COUNT > 2)
(SET_SCMI_CHANNEL_ID(0x2) | SET_SCMI_DOMAIN_ID(0x0)),
(SET_SCMI_CHANNEL_ID(0x2) | SET_SCMI_DOMAIN_ID(0x1)),
(SET_SCMI_CHANNEL_ID(0x2) | SET_SCMI_DOMAIN_ID(0x2)),
(SET_SCMI_CHANNEL_ID(0x2) | SET_SCMI_DOMAIN_ID(0x3)),
#endif
#if (CSS_SGI_CHIP_COUNT > 3)
(SET_SCMI_CHANNEL_ID(0x3) | SET_SCMI_DOMAIN_ID(0x0)),
(SET_SCMI_CHANNEL_ID(0x3) | SET_SCMI_DOMAIN_ID(0x1)),
(SET_SCMI_CHANNEL_ID(0x3) | SET_SCMI_DOMAIN_ID(0x2)),
(SET_SCMI_CHANNEL_ID(0x3) | SET_SCMI_DOMAIN_ID(0x3))
#endif
};
@@ -0,0 +1,26 @@
/*
* Copyright (c) 2020, Arm Limited. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#include <plat/arm/common/plat_arm.h>
/*
* Return the ROTPK hash in the following ASN.1 structure in DER format:
*
* AlgorithmIdentifier ::= SEQUENCE {
* algorithm OBJECT IDENTIFIER,
* parameters ANY DEFINED BY algorithm OPTIONAL
* }
*
* DigestInfo ::= SEQUENCE {
* digestAlgorithm AlgorithmIdentifier,
* digest OCTET STRING
* }
*/
int plat_get_rotpk_info(void *cookie, void **key_ptr, unsigned int *key_len,
unsigned int *flags)
{
return arm_get_rotpk_info(cookie, key_ptr, key_len, flags);
}