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) 2015-2019, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_MACROS_S
#define ARM_MACROS_S
#include <drivers/arm/gic_common.h>
#include <drivers/arm/gicv2.h>
#include <drivers/arm/gicv3.h>
#include <platform_def.h>
.section .rodata.gic_reg_name, "aS"
/* Applicable only to GICv2 and GICv3 with SRE disabled (legacy mode) */
gicc_regs:
.asciz "gicc_hppir", "gicc_ahppir", "gicc_ctlr", ""
/* Applicable only to GICv3 with SRE enabled */
icc_regs:
.asciz "icc_hppir0_el1", "icc_hppir1_el1", "icc_ctlr_el3", ""
/* Registers common to both GICv2 and GICv3 */
gicd_pend_reg:
.asciz "gicd_ispendr regs (Offsets 0x200-0x278)\nOffset\t\t\tValue\n"
newline:
.asciz "\n"
spacer:
.asciz ":\t\t 0x"
prefix:
.asciz "0x"
/* ---------------------------------------------
* The below utility macro prints out relevant GIC
* registers whenever an unhandled exception is
* taken in BL31 on ARM standard platforms.
* Expects: GICD base in x16, GICC base in x17
* Clobbers: x0 - x10, sp
* ---------------------------------------------
*/
.macro arm_print_gic_regs
/* Check for GICv3 system register access */
mrs x7, id_aa64pfr0_el1
ubfx x7, x7, #ID_AA64PFR0_GIC_SHIFT, #ID_AA64PFR0_GIC_WIDTH
cmp x7, #1
b.ne print_gicv2
/* Check for SRE enable */
mrs x8, ICC_SRE_EL3
tst x8, #ICC_SRE_SRE_BIT
b.eq print_gicv2
/* Load the icc reg list to x6 */
adr x6, icc_regs
/* Load the icc regs to gp regs used by str_in_crash_buf_print */
mrs x8, ICC_HPPIR0_EL1
mrs x9, ICC_HPPIR1_EL1
mrs x10, ICC_CTLR_EL3
/* Store to the crash buf and print to console */
bl str_in_crash_buf_print
b print_gic_common
print_gicv2:
/* Load the gicc reg list to x6 */
adr x6, gicc_regs
/* Load the gicc regs to gp regs used by str_in_crash_buf_print */
ldr w8, [x17, #GICC_HPPIR]
ldr w9, [x17, #GICC_AHPPIR]
ldr w10, [x17, #GICC_CTLR]
/* Store to the crash buf and print to console */
bl str_in_crash_buf_print
print_gic_common:
/* Print the GICD_ISPENDR regs */
add x7, x16, #GICD_ISPENDR
adr x4, gicd_pend_reg
bl asm_print_str
gicd_ispendr_loop:
sub x4, x7, x16
cmp x4, #0x280
b.eq exit_print_gic_regs
/* Print "0x" */
adr x4, prefix
bl asm_print_str
/* Print offset */
sub x4, x7, x16
mov x5, #12
bl asm_print_hex_bits
adr x4, spacer
bl asm_print_str
ldr x4, [x7], #8
bl asm_print_hex
adr x4, newline
bl asm_print_str
b gicd_ispendr_loop
exit_print_gic_regs:
.endm
#endif /* ARM_MACROS_S */
@@ -0,0 +1,37 @@
/*
* Copyright (c) 2016, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef CCI_MACROS_S
#define CCI_MACROS_S
#include <drivers/arm/cci.h>
#include <platform_def.h>
.section .rodata.cci_reg_name, "aS"
cci_iface_regs:
.asciz "cci_snoop_ctrl_cluster0", "cci_snoop_ctrl_cluster1" , ""
/* ------------------------------------------------
* The below required platform porting macro prints
* out relevant interconnect registers whenever an
* unhandled exception is taken in BL31.
* Clobbers: x0 - x9, sp
* ------------------------------------------------
*/
.macro print_cci_regs
adr x6, cci_iface_regs
/* Store in x7 the base address of the first interface */
mov_imm x7, (PLAT_ARM_CCI_BASE + SLAVE_IFACE_OFFSET( \
PLAT_ARM_CCI_CLUSTER0_SL_IFACE_IX))
ldr w8, [x7, #SNOOP_CTRL_REG]
/* Store in x7 the base address of the second interface */
mov_imm x7, (PLAT_ARM_CCI_BASE + SLAVE_IFACE_OFFSET( \
PLAT_ARM_CCI_CLUSTER1_SL_IFACE_IX))
ldr w9, [x7, #SNOOP_CTRL_REG]
/* Store to the crash buf and print to console */
bl str_in_crash_buf_print
.endm
#endif /* CCI_MACROS_S */
@@ -0,0 +1,43 @@
/*
* Copyright (c) 2014-2018, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_CONFIG_H
#define ARM_CONFIG_H
#include <stdint.h>
#include <lib/utils_def.h>
/* Whether Base memory map is in use */
#define ARM_CONFIG_BASE_MMAP BIT(1)
/* Whether TZC should be configured */
#define ARM_CONFIG_HAS_TZC BIT(2)
/* FVP model has shifted affinity */
#define ARM_CONFIG_FVP_SHIFTED_AFF BIT(3)
/* FVP model has SMMUv3 affinity */
#define ARM_CONFIG_FVP_HAS_SMMUV3 BIT(4)
/* FVP model has CCI (400 or 500/550) devices */
#define ARM_CONFIG_FVP_HAS_CCI400 BIT(5)
#define ARM_CONFIG_FVP_HAS_CCI5XX BIT(6)
typedef struct arm_config {
unsigned long flags;
} arm_config_t;
/* If used, arm_config must be defined and populated in the platform port */
extern arm_config_t arm_config;
static inline const arm_config_t *get_arm_config(void)
{
return &arm_config;
}
#endif /* ARM_CONFIG_H */
@@ -0,0 +1,780 @@
/*
* Copyright (c) 2015-2022, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_DEF_H
#define ARM_DEF_H
#include <arch.h>
#include <common/interrupt_props.h>
#include <common/tbbr/tbbr_img_def.h>
#include <drivers/arm/gic_common.h>
#include <lib/utils_def.h>
#include <lib/xlat_tables/xlat_tables_defs.h>
#include <plat/arm/common/smccc_def.h>
#include <plat/common/common_def.h>
/******************************************************************************
* Definitions common to all ARM standard platforms
*****************************************************************************/
/*
* Root of trust key hash lengths
*/
#define ARM_ROTPK_HEADER_LEN 19
#define ARM_ROTPK_HASH_LEN 32
/* Special value used to verify platform parameters from BL2 to BL31 */
#define ARM_BL31_PLAT_PARAM_VAL ULL(0x0f1e2d3c4b5a6978)
#define ARM_SYSTEM_COUNT U(1)
#define ARM_CACHE_WRITEBACK_SHIFT 6
/*
* Macros mapping the MPIDR Affinity levels to ARM Platform Power levels. The
* power levels have a 1:1 mapping with the MPIDR affinity levels.
*/
#define ARM_PWR_LVL0 MPIDR_AFFLVL0
#define ARM_PWR_LVL1 MPIDR_AFFLVL1
#define ARM_PWR_LVL2 MPIDR_AFFLVL2
#define ARM_PWR_LVL3 MPIDR_AFFLVL3
/*
* Macros for local power states in ARM platforms encoded by State-ID field
* within the power-state parameter.
*/
/* Local power state for power domains in Run state. */
#define ARM_LOCAL_STATE_RUN U(0)
/* Local power state for retention. Valid only for CPU power domains */
#define ARM_LOCAL_STATE_RET U(1)
/* Local power state for OFF/power-down. Valid for CPU and cluster power
domains */
#define ARM_LOCAL_STATE_OFF U(2)
/* Memory location options for TSP */
#define ARM_TRUSTED_SRAM_ID 0
#define ARM_TRUSTED_DRAM_ID 1
#define ARM_DRAM_ID 2
#ifdef PLAT_ARM_TRUSTED_SRAM_BASE
#define ARM_TRUSTED_SRAM_BASE PLAT_ARM_TRUSTED_SRAM_BASE
#else
#define ARM_TRUSTED_SRAM_BASE UL(0x04000000)
#endif /* PLAT_ARM_TRUSTED_SRAM_BASE */
#define ARM_SHARED_RAM_BASE ARM_TRUSTED_SRAM_BASE
#define ARM_SHARED_RAM_SIZE UL(0x00001000) /* 4 KB */
/* The remaining Trusted SRAM is used to load the BL images */
#define ARM_BL_RAM_BASE (ARM_SHARED_RAM_BASE + \
ARM_SHARED_RAM_SIZE)
#define ARM_BL_RAM_SIZE (PLAT_ARM_TRUSTED_SRAM_SIZE - \
ARM_SHARED_RAM_SIZE)
/*
* The top 16MB (or 64MB if RME is enabled) of DRAM1 is configured as
* follows:
* - SCP TZC DRAM: If present, DRAM reserved for SCP use
* - L1 GPT DRAM: Reserved for L1 GPT if RME is enabled
* - REALM DRAM: Reserved for Realm world if RME is enabled
* - TF-A <-> RMM SHARED: Area shared for communication between TF-A and RMM
* - AP TZC DRAM: The remaining TZC secured DRAM reserved for AP use
*
* RME enabled(64MB) RME not enabled(16MB)
* -------------------- -------------------
* | | | |
* | AP TZC (~28MB) | | AP TZC (~14MB) |
* -------------------- -------------------
* | | | |
* | REALM (RMM) | | EL3 TZC (2MB) |
* | (32MB - 4KB) | -------------------
* -------------------- | |
* | | | SCP TZC |
* | TF-A <-> RMM | 0xFFFF_FFFF-------------------
* | SHARED (4KB) |
* --------------------
* | |
* | EL3 TZC (3MB) |
* --------------------
* | L1 GPT + SCP TZC |
* | (~1MB) |
* 0xFFFF_FFFF --------------------
*/
#if ENABLE_RME
#define ARM_TZC_DRAM1_SIZE UL(0x04000000) /* 64MB */
/*
* Define a region within the TZC secured DRAM for use by EL3 runtime
* firmware. This region is meant to be NOLOAD and will not be zero
* initialized. Data sections with the attribute `arm_el3_tzc_dram` will be
* placed here. 3MB region is reserved if RME is enabled, 2MB otherwise.
*/
#define ARM_EL3_TZC_DRAM1_SIZE UL(0x00300000) /* 3MB */
#define ARM_L1_GPT_SIZE UL(0x00100000) /* 1MB */
/* 32MB - ARM_EL3_RMM_SHARED_SIZE */
#define ARM_REALM_SIZE (UL(0x02000000) - \
ARM_EL3_RMM_SHARED_SIZE)
#define ARM_EL3_RMM_SHARED_SIZE (PAGE_SIZE) /* 4KB */
#else
#define ARM_TZC_DRAM1_SIZE UL(0x01000000) /* 16MB */
#define ARM_EL3_TZC_DRAM1_SIZE UL(0x00200000) /* 2MB */
#define ARM_L1_GPT_SIZE UL(0)
#define ARM_REALM_SIZE UL(0)
#define ARM_EL3_RMM_SHARED_SIZE UL(0)
#endif /* ENABLE_RME */
#define ARM_SCP_TZC_DRAM1_BASE (ARM_DRAM1_BASE + \
ARM_DRAM1_SIZE - \
(ARM_SCP_TZC_DRAM1_SIZE + \
ARM_L1_GPT_SIZE))
#define ARM_SCP_TZC_DRAM1_SIZE PLAT_ARM_SCP_TZC_DRAM1_SIZE
#define ARM_SCP_TZC_DRAM1_END (ARM_SCP_TZC_DRAM1_BASE + \
ARM_SCP_TZC_DRAM1_SIZE - 1U)
#if ENABLE_RME
#define ARM_L1_GPT_ADDR_BASE (ARM_DRAM1_BASE + \
ARM_DRAM1_SIZE - \
ARM_L1_GPT_SIZE)
#define ARM_L1_GPT_END (ARM_L1_GPT_ADDR_BASE + \
ARM_L1_GPT_SIZE - 1U)
#define ARM_REALM_BASE (ARM_EL3_RMM_SHARED_BASE - \
ARM_REALM_SIZE)
#define ARM_REALM_END (ARM_REALM_BASE + ARM_REALM_SIZE - 1U)
#define ARM_EL3_RMM_SHARED_BASE (ARM_DRAM1_BASE + \
ARM_DRAM1_SIZE - \
(ARM_SCP_TZC_DRAM1_SIZE + \
ARM_L1_GPT_SIZE + \
ARM_EL3_RMM_SHARED_SIZE + \
ARM_EL3_TZC_DRAM1_SIZE))
#define ARM_EL3_RMM_SHARED_END (ARM_EL3_RMM_SHARED_BASE + \
ARM_EL3_RMM_SHARED_SIZE - 1U)
#endif /* ENABLE_RME */
#define ARM_EL3_TZC_DRAM1_BASE (ARM_SCP_TZC_DRAM1_BASE - \
ARM_EL3_TZC_DRAM1_SIZE)
#define ARM_EL3_TZC_DRAM1_END (ARM_EL3_TZC_DRAM1_BASE + \
ARM_EL3_TZC_DRAM1_SIZE - 1U)
#define ARM_AP_TZC_DRAM1_BASE (ARM_DRAM1_BASE + \
ARM_DRAM1_SIZE - \
ARM_TZC_DRAM1_SIZE)
#define ARM_AP_TZC_DRAM1_SIZE (ARM_TZC_DRAM1_SIZE - \
(ARM_SCP_TZC_DRAM1_SIZE + \
ARM_EL3_TZC_DRAM1_SIZE + \
ARM_EL3_RMM_SHARED_SIZE + \
ARM_REALM_SIZE + \
ARM_L1_GPT_SIZE))
#define ARM_AP_TZC_DRAM1_END (ARM_AP_TZC_DRAM1_BASE + \
ARM_AP_TZC_DRAM1_SIZE - 1U)
/* Define the Access permissions for Secure peripherals to NS_DRAM */
#if ARM_CRYPTOCELL_INTEG
/*
* Allow Secure peripheral to read NS DRAM when integrated with CryptoCell.
* This is required by CryptoCell to authenticate BL33 which is loaded
* into the Non Secure DDR.
*/
#define ARM_TZC_NS_DRAM_S_ACCESS TZC_REGION_S_RD
#else
#define ARM_TZC_NS_DRAM_S_ACCESS TZC_REGION_S_NONE
#endif
#ifdef SPD_opteed
/*
* BL2 needs to map 4MB at the end of TZC_DRAM1 in order to
* load/authenticate the trusted os extra image. The first 512KB of
* TZC_DRAM1 are reserved for trusted os (OPTEE). The extra image loading
* for OPTEE is paged image which only include the paging part using
* virtual memory but without "init" data. OPTEE will copy the "init" data
* (from pager image) to the first 512KB of TZC_DRAM, and then copy the
* extra image behind the "init" data.
*/
#define ARM_OPTEE_PAGEABLE_LOAD_BASE (ARM_AP_TZC_DRAM1_BASE + \
ARM_AP_TZC_DRAM1_SIZE - \
ARM_OPTEE_PAGEABLE_LOAD_SIZE)
#define ARM_OPTEE_PAGEABLE_LOAD_SIZE UL(0x400000)
#define ARM_OPTEE_PAGEABLE_LOAD_MEM MAP_REGION_FLAT( \
ARM_OPTEE_PAGEABLE_LOAD_BASE, \
ARM_OPTEE_PAGEABLE_LOAD_SIZE, \
MT_MEMORY | MT_RW | MT_SECURE)
/*
* Map the memory for the OP-TEE core (also known as OP-TEE pager when paging
* support is enabled).
*/
#define ARM_MAP_OPTEE_CORE_MEM MAP_REGION_FLAT( \
BL32_BASE, \
BL32_LIMIT - BL32_BASE, \
MT_MEMORY | MT_RW | MT_SECURE)
#endif /* SPD_opteed */
#define ARM_NS_DRAM1_BASE ARM_DRAM1_BASE
#define ARM_NS_DRAM1_SIZE (ARM_DRAM1_SIZE - \
ARM_TZC_DRAM1_SIZE)
#define ARM_NS_DRAM1_END (ARM_NS_DRAM1_BASE + \
ARM_NS_DRAM1_SIZE - 1U)
#ifdef PLAT_ARM_DRAM1_BASE
#define ARM_DRAM1_BASE PLAT_ARM_DRAM1_BASE
#else
#define ARM_DRAM1_BASE ULL(0x80000000)
#endif /* PLAT_ARM_DRAM1_BASE */
#define ARM_DRAM1_SIZE ULL(0x80000000)
#define ARM_DRAM1_END (ARM_DRAM1_BASE + \
ARM_DRAM1_SIZE - 1U)
#define ARM_DRAM2_BASE PLAT_ARM_DRAM2_BASE
#define ARM_DRAM2_SIZE PLAT_ARM_DRAM2_SIZE
#define ARM_DRAM2_END (ARM_DRAM2_BASE + \
ARM_DRAM2_SIZE - 1U)
#define ARM_IRQ_SEC_PHY_TIMER 29
#define ARM_IRQ_SEC_SGI_0 8
#define ARM_IRQ_SEC_SGI_1 9
#define ARM_IRQ_SEC_SGI_2 10
#define ARM_IRQ_SEC_SGI_3 11
#define ARM_IRQ_SEC_SGI_4 12
#define ARM_IRQ_SEC_SGI_5 13
#define ARM_IRQ_SEC_SGI_6 14
#define ARM_IRQ_SEC_SGI_7 15
/*
* Define a list of Group 1 Secure and Group 0 interrupt properties as per GICv3
* terminology. On a GICv2 system or mode, the lists will be merged and treated
* as Group 0 interrupts.
*/
#define ARM_G1S_IRQ_PROPS(grp) \
INTR_PROP_DESC(ARM_IRQ_SEC_PHY_TIMER, GIC_HIGHEST_SEC_PRIORITY, (grp), \
GIC_INTR_CFG_LEVEL), \
INTR_PROP_DESC(ARM_IRQ_SEC_SGI_1, GIC_HIGHEST_SEC_PRIORITY, (grp), \
GIC_INTR_CFG_EDGE), \
INTR_PROP_DESC(ARM_IRQ_SEC_SGI_2, GIC_HIGHEST_SEC_PRIORITY, (grp), \
GIC_INTR_CFG_EDGE), \
INTR_PROP_DESC(ARM_IRQ_SEC_SGI_3, GIC_HIGHEST_SEC_PRIORITY, (grp), \
GIC_INTR_CFG_EDGE), \
INTR_PROP_DESC(ARM_IRQ_SEC_SGI_4, GIC_HIGHEST_SEC_PRIORITY, (grp), \
GIC_INTR_CFG_EDGE), \
INTR_PROP_DESC(ARM_IRQ_SEC_SGI_5, GIC_HIGHEST_SEC_PRIORITY, (grp), \
GIC_INTR_CFG_EDGE), \
INTR_PROP_DESC(ARM_IRQ_SEC_SGI_7, GIC_HIGHEST_SEC_PRIORITY, (grp), \
GIC_INTR_CFG_EDGE)
#define ARM_G0_IRQ_PROPS(grp) \
INTR_PROP_DESC(ARM_IRQ_SEC_SGI_0, PLAT_SDEI_NORMAL_PRI, (grp), \
GIC_INTR_CFG_EDGE), \
INTR_PROP_DESC(ARM_IRQ_SEC_SGI_6, GIC_HIGHEST_SEC_PRIORITY, (grp), \
GIC_INTR_CFG_EDGE)
#define ARM_MAP_SHARED_RAM MAP_REGION_FLAT( \
ARM_SHARED_RAM_BASE, \
ARM_SHARED_RAM_SIZE, \
MT_DEVICE | MT_RW | EL3_PAS)
#define ARM_MAP_NS_DRAM1 MAP_REGION_FLAT( \
ARM_NS_DRAM1_BASE, \
ARM_NS_DRAM1_SIZE, \
MT_MEMORY | MT_RW | MT_NS)
#define ARM_MAP_DRAM2 MAP_REGION_FLAT( \
ARM_DRAM2_BASE, \
ARM_DRAM2_SIZE, \
MT_MEMORY | MT_RW | MT_NS)
#define ARM_MAP_TSP_SEC_MEM MAP_REGION_FLAT( \
TSP_SEC_MEM_BASE, \
TSP_SEC_MEM_SIZE, \
MT_MEMORY | MT_RW | MT_SECURE)
#if ARM_BL31_IN_DRAM
#define ARM_MAP_BL31_SEC_DRAM MAP_REGION_FLAT( \
BL31_BASE, \
PLAT_ARM_MAX_BL31_SIZE, \
MT_MEMORY | MT_RW | MT_SECURE)
#endif
#define ARM_MAP_EL3_TZC_DRAM MAP_REGION_FLAT( \
ARM_EL3_TZC_DRAM1_BASE, \
ARM_EL3_TZC_DRAM1_SIZE, \
MT_MEMORY | MT_RW | EL3_PAS)
#define ARM_MAP_TRUSTED_DRAM MAP_REGION_FLAT( \
PLAT_ARM_TRUSTED_DRAM_BASE, \
PLAT_ARM_TRUSTED_DRAM_SIZE, \
MT_MEMORY | MT_RW | MT_SECURE)
#if ENABLE_RME
/*
* We add the EL3_RMM_SHARED size to RMM mapping to map the region as a block.
* Else we end up requiring more pagetables in BL2 for ROMLIB build.
*/
#define ARM_MAP_RMM_DRAM MAP_REGION_FLAT( \
PLAT_ARM_RMM_BASE, \
(PLAT_ARM_RMM_SIZE + \
ARM_EL3_RMM_SHARED_SIZE), \
MT_MEMORY | MT_RW | MT_REALM)
#define ARM_MAP_GPT_L1_DRAM MAP_REGION_FLAT( \
ARM_L1_GPT_ADDR_BASE, \
ARM_L1_GPT_SIZE, \
MT_MEMORY | MT_RW | EL3_PAS)
#define ARM_MAP_EL3_RMM_SHARED_MEM \
MAP_REGION_FLAT( \
ARM_EL3_RMM_SHARED_BASE, \
ARM_EL3_RMM_SHARED_SIZE, \
MT_MEMORY | MT_RW | MT_REALM)
#endif /* ENABLE_RME */
/*
* Mapping for the BL1 RW region. This mapping is needed by BL2 in order to
* share the Mbed TLS heap. Since the heap is allocated inside BL1, it resides
* in the BL1 RW region. Hence, BL2 needs access to the BL1 RW region in order
* to be able to access the heap.
*/
#define ARM_MAP_BL1_RW MAP_REGION_FLAT( \
BL1_RW_BASE, \
BL1_RW_LIMIT - BL1_RW_BASE, \
MT_MEMORY | MT_RW | EL3_PAS)
/*
* If SEPARATE_CODE_AND_RODATA=1 we define a region for each section
* otherwise one region is defined containing both.
*/
#if SEPARATE_CODE_AND_RODATA
#define ARM_MAP_BL_RO MAP_REGION_FLAT( \
BL_CODE_BASE, \
BL_CODE_END - BL_CODE_BASE, \
MT_CODE | EL3_PAS), \
MAP_REGION_FLAT( \
BL_RO_DATA_BASE, \
BL_RO_DATA_END \
- BL_RO_DATA_BASE, \
MT_RO_DATA | EL3_PAS)
#else
#define ARM_MAP_BL_RO MAP_REGION_FLAT( \
BL_CODE_BASE, \
BL_CODE_END - BL_CODE_BASE, \
MT_CODE | EL3_PAS)
#endif
#if USE_COHERENT_MEM
#define ARM_MAP_BL_COHERENT_RAM MAP_REGION_FLAT( \
BL_COHERENT_RAM_BASE, \
BL_COHERENT_RAM_END \
- BL_COHERENT_RAM_BASE, \
MT_DEVICE | MT_RW | EL3_PAS)
#endif
#if USE_ROMLIB
#define ARM_MAP_ROMLIB_CODE MAP_REGION_FLAT( \
ROMLIB_RO_BASE, \
ROMLIB_RO_LIMIT - ROMLIB_RO_BASE,\
MT_CODE | EL3_PAS)
#define ARM_MAP_ROMLIB_DATA MAP_REGION_FLAT( \
ROMLIB_RW_BASE, \
ROMLIB_RW_END - ROMLIB_RW_BASE,\
MT_MEMORY | MT_RW | EL3_PAS)
#endif
/*
* Map mem_protect flash region with read and write permissions
*/
#define ARM_V2M_MAP_MEM_PROTECT MAP_REGION_FLAT(PLAT_ARM_MEM_PROT_ADDR, \
V2M_FLASH_BLOCK_SIZE, \
MT_DEVICE | MT_RW | MT_SECURE)
/*
* Map the region for device tree configuration with read and write permissions
*/
#define ARM_MAP_BL_CONFIG_REGION MAP_REGION_FLAT(ARM_BL_RAM_BASE, \
(ARM_FW_CONFIGS_LIMIT \
- ARM_BL_RAM_BASE), \
MT_MEMORY | MT_RW | EL3_PAS)
/*
* Map L0_GPT with read and write permissions
*/
#if ENABLE_RME
#define ARM_MAP_L0_GPT_REGION MAP_REGION_FLAT(ARM_L0_GPT_ADDR_BASE, \
ARM_L0_GPT_SIZE, \
MT_MEMORY | MT_RW | MT_ROOT)
#endif
/*
* The max number of regions like RO(code), coherent and data required by
* different BL stages which need to be mapped in the MMU.
*/
#define ARM_BL_REGIONS 7
#define MAX_MMAP_REGIONS (PLAT_ARM_MMAP_ENTRIES + \
ARM_BL_REGIONS)
/* Memory mapped Generic timer interfaces */
#ifdef PLAT_ARM_SYS_CNTCTL_BASE
#define ARM_SYS_CNTCTL_BASE PLAT_ARM_SYS_CNTCTL_BASE
#else
#define ARM_SYS_CNTCTL_BASE UL(0x2a430000)
#endif
#ifdef PLAT_ARM_SYS_CNTREAD_BASE
#define ARM_SYS_CNTREAD_BASE PLAT_ARM_SYS_CNTREAD_BASE
#else
#define ARM_SYS_CNTREAD_BASE UL(0x2a800000)
#endif
#ifdef PLAT_ARM_SYS_TIMCTL_BASE
#define ARM_SYS_TIMCTL_BASE PLAT_ARM_SYS_TIMCTL_BASE
#else
#define ARM_SYS_TIMCTL_BASE UL(0x2a810000)
#endif
#ifdef PLAT_ARM_SYS_CNT_BASE_S
#define ARM_SYS_CNT_BASE_S PLAT_ARM_SYS_CNT_BASE_S
#else
#define ARM_SYS_CNT_BASE_S UL(0x2a820000)
#endif
#ifdef PLAT_ARM_SYS_CNT_BASE_NS
#define ARM_SYS_CNT_BASE_NS PLAT_ARM_SYS_CNT_BASE_NS
#else
#define ARM_SYS_CNT_BASE_NS UL(0x2a830000)
#endif
#define ARM_CONSOLE_BAUDRATE 115200
/* Trusted Watchdog constants */
#ifdef PLAT_ARM_SP805_TWDG_BASE
#define ARM_SP805_TWDG_BASE PLAT_ARM_SP805_TWDG_BASE
#else
#define ARM_SP805_TWDG_BASE UL(0x2a490000)
#endif
#define ARM_SP805_TWDG_CLK_HZ 32768
/* The TBBR document specifies a watchdog timeout of 256 seconds. SP805
* asserts reset after two consecutive countdowns (2 x 128 = 256 sec) */
#define ARM_TWDG_TIMEOUT_SEC 128
#define ARM_TWDG_LOAD_VAL (ARM_SP805_TWDG_CLK_HZ * \
ARM_TWDG_TIMEOUT_SEC)
/******************************************************************************
* Required platform porting definitions common to all ARM standard platforms
*****************************************************************************/
/*
* This macro defines the deepest retention state possible. A higher state
* id will represent an invalid or a power down state.
*/
#define PLAT_MAX_RET_STATE ARM_LOCAL_STATE_RET
/*
* This macro defines the deepest power down states possible. Any state ID
* higher than this is invalid.
*/
#define PLAT_MAX_OFF_STATE ARM_LOCAL_STATE_OFF
/*
* Some data must be aligned on the biggest cache line size in the platform.
* This is known only to the platform as it might have a combination of
* integrated and external caches.
*/
#define CACHE_WRITEBACK_GRANULE (U(1) << ARM_CACHE_WRITEBACK_SHIFT)
/*
* To enable FW_CONFIG to be loaded by BL1, define the corresponding base
* and limit. Leave enough space of BL2 meminfo.
*/
#define ARM_FW_CONFIG_BASE (ARM_BL_RAM_BASE + sizeof(meminfo_t))
#define ARM_FW_CONFIG_LIMIT ((ARM_BL_RAM_BASE + PAGE_SIZE) \
+ (PAGE_SIZE / 2U))
/*
* Boot parameters passed from BL2 to BL31/BL32 are stored here
*/
#define ARM_BL2_MEM_DESC_BASE (ARM_FW_CONFIG_LIMIT)
#define ARM_BL2_MEM_DESC_LIMIT (ARM_BL2_MEM_DESC_BASE \
+ (PAGE_SIZE / 2U))
/*
* Define limit of firmware configuration memory:
* ARM_FW_CONFIG + ARM_BL2_MEM_DESC memory
*/
#define ARM_FW_CONFIGS_LIMIT (ARM_BL_RAM_BASE + (PAGE_SIZE * 2))
#if ENABLE_RME
/*
* Store the L0 GPT on Trusted SRAM next to firmware
* configuration memory, 4KB aligned.
*/
#define ARM_L0_GPT_SIZE (PAGE_SIZE)
#define ARM_L0_GPT_ADDR_BASE (ARM_FW_CONFIGS_LIMIT)
#define ARM_L0_GPT_LIMIT (ARM_L0_GPT_ADDR_BASE + ARM_L0_GPT_SIZE)
#else
#define ARM_L0_GPT_SIZE U(0)
#endif
/*******************************************************************************
* BL1 specific defines.
* BL1 RW data is relocated from ROM to RAM at runtime so we need 2 sets of
* addresses.
******************************************************************************/
#define BL1_RO_BASE PLAT_ARM_TRUSTED_ROM_BASE
#ifdef PLAT_BL1_RO_LIMIT
#define BL1_RO_LIMIT PLAT_BL1_RO_LIMIT
#else
#define BL1_RO_LIMIT (PLAT_ARM_TRUSTED_ROM_BASE \
+ (PLAT_ARM_TRUSTED_ROM_SIZE - \
PLAT_ARM_MAX_ROMLIB_RO_SIZE))
#endif
/*
* Put BL1 RW at the top of the Trusted SRAM.
*/
#define BL1_RW_BASE (ARM_BL_RAM_BASE + \
ARM_BL_RAM_SIZE - \
(PLAT_ARM_MAX_BL1_RW_SIZE +\
PLAT_ARM_MAX_ROMLIB_RW_SIZE))
#define BL1_RW_LIMIT (ARM_BL_RAM_BASE + \
(ARM_BL_RAM_SIZE - PLAT_ARM_MAX_ROMLIB_RW_SIZE))
#define ROMLIB_RO_BASE BL1_RO_LIMIT
#define ROMLIB_RO_LIMIT (PLAT_ARM_TRUSTED_ROM_BASE + PLAT_ARM_TRUSTED_ROM_SIZE)
#define ROMLIB_RW_BASE (BL1_RW_BASE + PLAT_ARM_MAX_BL1_RW_SIZE)
#define ROMLIB_RW_END (ROMLIB_RW_BASE + PLAT_ARM_MAX_ROMLIB_RW_SIZE)
/*******************************************************************************
* BL2 specific defines.
******************************************************************************/
#if BL2_AT_EL3
#if ENABLE_PIE
/*
* As the BL31 image size appears to be increased when built with the ENABLE_PIE
* option, set BL2 base address to have enough space for BL31 in Trusted SRAM.
*/
#define BL2_BASE (ARM_TRUSTED_SRAM_BASE + \
(PLAT_ARM_TRUSTED_SRAM_SIZE >> 1) + \
0x3000)
#else
/* Put BL2 towards the middle of the Trusted SRAM */
#define BL2_BASE (ARM_TRUSTED_SRAM_BASE + \
(PLAT_ARM_TRUSTED_SRAM_SIZE >> 1) + \
0x2000)
#endif /* ENABLE_PIE */
#define BL2_LIMIT (ARM_BL_RAM_BASE + ARM_BL_RAM_SIZE)
#else
/*
* Put BL2 just below BL1.
*/
#define BL2_BASE (BL1_RW_BASE - PLAT_ARM_MAX_BL2_SIZE)
#define BL2_LIMIT BL1_RW_BASE
#endif
/*******************************************************************************
* BL31 specific defines.
******************************************************************************/
#if ARM_BL31_IN_DRAM || SEPARATE_NOBITS_REGION
/*
* Put BL31 at the bottom of TZC secured DRAM
*/
#define BL31_BASE ARM_AP_TZC_DRAM1_BASE
#define BL31_LIMIT (ARM_AP_TZC_DRAM1_BASE + \
PLAT_ARM_MAX_BL31_SIZE)
/*
* For SEPARATE_NOBITS_REGION, BL31 PROGBITS are loaded in TZC secured DRAM.
* And BL31 NOBITS are loaded in Trusted SRAM such that BL2 is overwritten.
*/
#if SEPARATE_NOBITS_REGION
#define BL31_NOBITS_BASE BL2_BASE
#define BL31_NOBITS_LIMIT BL2_LIMIT
#endif /* SEPARATE_NOBITS_REGION */
#elif (RESET_TO_BL31)
/* Ensure Position Independent support (PIE) is enabled for this config.*/
# if !ENABLE_PIE
# error "BL31 must be a PIE if RESET_TO_BL31=1."
#endif
/*
* Since this is PIE, we can define BL31_BASE to 0x0 since this macro is solely
* used for building BL31 and not used for loading BL31.
*/
# define BL31_BASE 0x0
# define BL31_LIMIT PLAT_ARM_MAX_BL31_SIZE
#else
/* Put BL31 below BL2 in the Trusted SRAM.*/
#define BL31_BASE ((ARM_BL_RAM_BASE + ARM_BL_RAM_SIZE)\
- PLAT_ARM_MAX_BL31_SIZE)
#define BL31_PROGBITS_LIMIT BL2_BASE
/*
* For BL2_AT_EL3 make sure the BL31 can grow up until BL2_BASE. This is
* because in the BL2_AT_EL3 configuration, BL2 is always resident.
*/
#if BL2_AT_EL3
#define BL31_LIMIT BL2_BASE
#else
#define BL31_LIMIT (ARM_BL_RAM_BASE + ARM_BL_RAM_SIZE)
#endif
#endif
/******************************************************************************
* RMM specific defines
*****************************************************************************/
#if ENABLE_RME
#define RMM_BASE (ARM_REALM_BASE)
#define RMM_LIMIT (RMM_BASE + ARM_REALM_SIZE)
#define RMM_SHARED_BASE (ARM_EL3_RMM_SHARED_BASE)
#define RMM_SHARED_SIZE (ARM_EL3_RMM_SHARED_SIZE)
#endif
#if !defined(__aarch64__) || JUNO_AARCH32_EL3_RUNTIME
/*******************************************************************************
* BL32 specific defines for EL3 runtime in AArch32 mode
******************************************************************************/
# if RESET_TO_SP_MIN && !JUNO_AARCH32_EL3_RUNTIME
/* Ensure Position Independent support (PIE) is enabled for this config.*/
# if !ENABLE_PIE
# error "BL32 must be a PIE if RESET_TO_SP_MIN=1."
#endif
/*
* Since this is PIE, we can define BL32_BASE to 0x0 since this macro is solely
* used for building BL32 and not used for loading BL32.
*/
# define BL32_BASE 0x0
# define BL32_LIMIT PLAT_ARM_MAX_BL32_SIZE
# else
/* Put BL32 below BL2 in the Trusted SRAM.*/
# define BL32_BASE ((ARM_BL_RAM_BASE + ARM_BL_RAM_SIZE)\
- PLAT_ARM_MAX_BL32_SIZE)
# define BL32_PROGBITS_LIMIT BL2_BASE
# define BL32_LIMIT (ARM_BL_RAM_BASE + ARM_BL_RAM_SIZE)
# endif /* RESET_TO_SP_MIN && !JUNO_AARCH32_EL3_RUNTIME */
#else
/*******************************************************************************
* BL32 specific defines for EL3 runtime in AArch64 mode
******************************************************************************/
/*
* On ARM standard platforms, the TSP can execute from Trusted SRAM,
* Trusted DRAM (if available) or the DRAM region secured by the TrustZone
* controller.
*/
# if SPM_MM || SPMC_AT_EL3
# define TSP_SEC_MEM_BASE (ARM_AP_TZC_DRAM1_BASE + ULL(0x200000))
# define TSP_SEC_MEM_SIZE (ARM_AP_TZC_DRAM1_SIZE - ULL(0x200000))
# define BL32_BASE (ARM_AP_TZC_DRAM1_BASE + ULL(0x200000))
# define BL32_LIMIT (ARM_AP_TZC_DRAM1_BASE + \
ARM_AP_TZC_DRAM1_SIZE)
# elif defined(SPD_spmd)
# define TSP_SEC_MEM_BASE (ARM_AP_TZC_DRAM1_BASE + ULL(0x200000))
# define TSP_SEC_MEM_SIZE (ARM_AP_TZC_DRAM1_SIZE - ULL(0x200000))
# define BL32_BASE PLAT_ARM_SPMC_BASE
# define BL32_LIMIT (PLAT_ARM_SPMC_BASE + \
PLAT_ARM_SPMC_SIZE)
# elif ARM_BL31_IN_DRAM
# define TSP_SEC_MEM_BASE (ARM_AP_TZC_DRAM1_BASE + \
PLAT_ARM_MAX_BL31_SIZE)
# define TSP_SEC_MEM_SIZE (ARM_AP_TZC_DRAM1_SIZE - \
PLAT_ARM_MAX_BL31_SIZE)
# define BL32_BASE (ARM_AP_TZC_DRAM1_BASE + \
PLAT_ARM_MAX_BL31_SIZE)
# define BL32_LIMIT (ARM_AP_TZC_DRAM1_BASE + \
ARM_AP_TZC_DRAM1_SIZE)
# elif ARM_TSP_RAM_LOCATION_ID == ARM_TRUSTED_SRAM_ID
# define TSP_SEC_MEM_BASE ARM_BL_RAM_BASE
# define TSP_SEC_MEM_SIZE ARM_BL_RAM_SIZE
# define TSP_PROGBITS_LIMIT BL31_BASE
# define BL32_BASE ARM_FW_CONFIGS_LIMIT
# define BL32_LIMIT BL31_BASE
# elif ARM_TSP_RAM_LOCATION_ID == ARM_TRUSTED_DRAM_ID
# define TSP_SEC_MEM_BASE PLAT_ARM_TRUSTED_DRAM_BASE
# define TSP_SEC_MEM_SIZE PLAT_ARM_TRUSTED_DRAM_SIZE
# define BL32_BASE PLAT_ARM_TRUSTED_DRAM_BASE
# define BL32_LIMIT (PLAT_ARM_TRUSTED_DRAM_BASE \
+ (UL(1) << 21))
# elif ARM_TSP_RAM_LOCATION_ID == ARM_DRAM_ID
# define TSP_SEC_MEM_BASE ARM_AP_TZC_DRAM1_BASE
# define TSP_SEC_MEM_SIZE ARM_AP_TZC_DRAM1_SIZE
# define BL32_BASE ARM_AP_TZC_DRAM1_BASE
# define BL32_LIMIT (ARM_AP_TZC_DRAM1_BASE + \
ARM_AP_TZC_DRAM1_SIZE)
# else
# error "Unsupported ARM_TSP_RAM_LOCATION_ID value"
# endif
#endif /* !__aarch64__ || JUNO_AARCH32_EL3_RUNTIME */
/*
* BL32 is mandatory in AArch32. In AArch64, undefine BL32_BASE if there is no
* SPD and no SPM-MM and no SPMC-AT-EL3, as they are the only ones that can be
* used as BL32.
*/
#if defined(__aarch64__) && !JUNO_AARCH32_EL3_RUNTIME
# if defined(SPD_none) && !SPM_MM && !SPMC_AT_EL3
# undef BL32_BASE
# endif /* defined(SPD_none) && !SPM_MM || !SPMC_AT_EL3 */
#endif /* defined(__aarch64__) && !JUNO_AARCH32_EL3_RUNTIME */
/*******************************************************************************
* FWU Images: NS_BL1U, BL2U & NS_BL2U defines.
******************************************************************************/
#define BL2U_BASE BL2_BASE
#define BL2U_LIMIT BL2_LIMIT
#define NS_BL2U_BASE ARM_NS_DRAM1_BASE
#define NS_BL1U_BASE (PLAT_ARM_NVM_BASE + UL(0x03EB8000))
/*
* ID of the secure physical generic timer interrupt used by the TSP.
*/
#define TSP_IRQ_SEC_PHY_TIMER ARM_IRQ_SEC_PHY_TIMER
/*
* One cache line needed for bakery locks on ARM platforms
*/
#define PLAT_PERCPU_BAKERY_LOCK_SIZE (1 * CACHE_WRITEBACK_GRANULE)
/* Priority levels for ARM platforms */
#define PLAT_RAS_PRI 0x10
#define PLAT_SDEI_CRITICAL_PRI 0x60
#define PLAT_SDEI_NORMAL_PRI 0x70
/* ARM platforms use 3 upper bits of secure interrupt priority */
#define PLAT_PRI_BITS 3
/* SGI used for SDEI signalling */
#define ARM_SDEI_SGI ARM_IRQ_SEC_SGI_0
#if SDEI_IN_FCONF
/* ARM SDEI dynamic private event max count */
#define ARM_SDEI_DP_EVENT_MAX_CNT 3
/* ARM SDEI dynamic shared event max count */
#define ARM_SDEI_DS_EVENT_MAX_CNT 3
#else
/* ARM SDEI dynamic private event numbers */
#define ARM_SDEI_DP_EVENT_0 1000
#define ARM_SDEI_DP_EVENT_1 1001
#define ARM_SDEI_DP_EVENT_2 1002
/* ARM SDEI dynamic shared event numbers */
#define ARM_SDEI_DS_EVENT_0 2000
#define ARM_SDEI_DS_EVENT_1 2001
#define ARM_SDEI_DS_EVENT_2 2002
#define ARM_SDEI_PRIVATE_EVENTS \
SDEI_DEFINE_EVENT_0(ARM_SDEI_SGI), \
SDEI_PRIVATE_EVENT(ARM_SDEI_DP_EVENT_0, SDEI_DYN_IRQ, SDEI_MAPF_DYNAMIC), \
SDEI_PRIVATE_EVENT(ARM_SDEI_DP_EVENT_1, SDEI_DYN_IRQ, SDEI_MAPF_DYNAMIC), \
SDEI_PRIVATE_EVENT(ARM_SDEI_DP_EVENT_2, SDEI_DYN_IRQ, SDEI_MAPF_DYNAMIC)
#define ARM_SDEI_SHARED_EVENTS \
SDEI_SHARED_EVENT(ARM_SDEI_DS_EVENT_0, SDEI_DYN_IRQ, SDEI_MAPF_DYNAMIC), \
SDEI_SHARED_EVENT(ARM_SDEI_DS_EVENT_1, SDEI_DYN_IRQ, SDEI_MAPF_DYNAMIC), \
SDEI_SHARED_EVENT(ARM_SDEI_DS_EVENT_2, SDEI_DYN_IRQ, SDEI_MAPF_DYNAMIC)
#endif /* SDEI_IN_FCONF */
#endif /* ARM_DEF_H */
@@ -0,0 +1,17 @@
/*
* Copyright (c) 2018-2021, Arm Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_DYN_CFG_HELPERS_H
#define ARM_DYN_CFG_HELPERS_H
#include <stddef.h>
#include <stdint.h>
/* Function declarations */
int arm_dyn_tb_fw_cfg_init(void *dtb, int *node);
int arm_set_dtb_mbedtls_heap_info(void *dtb, void *heap_addr,
size_t heap_size);
#endif /* ARM_DYN_CFG_HELPERS_H */
@@ -0,0 +1,29 @@
/*
* Copyright (c) 2019-2020, ARM Limited. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_FCONF_GETTER
#define ARM_FCONF_GETTER
#include <assert.h>
#include <lib/fconf/fconf.h>
/* ARM io policies */
#define arm__io_policies_getter(id) __extension__ ({ \
assert((id) < MAX_NUMBER_IDS); \
&policies[id]; \
})
struct plat_io_policy {
uintptr_t *dev_handle;
uintptr_t image_spec;
int (*check)(const uintptr_t spec);
};
extern struct plat_io_policy policies[];
int fconf_populate_arm_io_policies(uintptr_t config);
#endif /* ARM_FCONF_GETTER */
@@ -0,0 +1,19 @@
/*
* Copyright (c) 2020, ARM Limited. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_FCONF_IO_STORAGE_H
#define ARM_FCONF_IO_STORAGE_H
#include <stdint.h>
/* IO devices handle */
extern uintptr_t memmap_dev_handle;
extern uintptr_t fip_dev_handle;
/* Function declarations */
int open_fip(const uintptr_t spec);
int open_memmap(const uintptr_t spec);
#endif /* ARM_FCONF_IO_STORAGE_H */
@@ -0,0 +1,103 @@
/*
* Copyright (c) 2021-2022, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_PAS_DEF_H
#define ARM_PAS_DEF_H
#include <lib/gpt_rme/gpt_rme.h>
#include <plat/arm/common/arm_def.h>
/*****************************************************************************
* PAS regions used to initialize the Granule Protection Table (GPT)
****************************************************************************/
/*
* The PA space is initially mapped in the GPT as follows:
*
* ============================================================================
* Base Addr| Size |L? GPT|PAS |Content |Comment
* ============================================================================
* 0GB | 1GB |L0 GPT|ANY |TBROM (EL3 code) |Fixed mapping
* | | | |TSRAM (EL3 data) |
* | | | |IO (incl.UARTs & GIC) |
* ----------------------------------------------------------------------------
* 1GB | 1GB |L0 GPT|ANY |IO |Fixed mapping
* ----------------------------------------------------------------------------
* 2GB | 1GB |L1 GPT|NS |DRAM (NS Kernel) |Use T.Descrip
* ----------------------------------------------------------------------------
* 3GB |1GB-64MB |L1 GPT|NS |DRAM (NS Kernel) |Use T.Descrip
* ----------------------------------------------------------------------------
* 4GB-64MB |64MB-32MB | | | |
* | -4MB |L1 GPT|SECURE|DRAM TZC |Use T.Descrip
* ----------------------------------------------------------------------------
* 4GB-32MB | | | | |
* -3MB-1MB |32MB |L1 GPT|REALM |RMM |Use T.Descrip
* ----------------------------------------------------------------------------
* 4GB-3MB | | | | |
* -1MB |3MB |L1 GPT|ROOT |EL3 DRAM data |Use T.Descrip
* ----------------------------------------------------------------------------
* 4GB-1MB |1MB |L1 GPT|ROOT |DRAM (L1 GPTs, SCP TZC) |Fixed mapping
* ============================================================================
*
* - 4KB of L0 GPT reside in TSRAM, on top of the CONFIG section.
* - ~1MB of L1 GPTs reside at the top of DRAM1 (TZC area).
* - The first 1GB region has GPT_GPI_ANY and, therefore, is not protected by
* the GPT.
* - The DRAM TZC area is split into three regions: the L1 GPT region and
* 3MB of region below that are defined as GPT_GPI_ROOT, 32MB Realm region
* below that is defined as GPT_GPI_REALM and the rest of it is defined as
* GPT_GPI_SECURE.
*/
/* TODO: This might not be the best way to map the PAS */
/* Device memory 0 to 2GB */
#define ARM_PAS_1_BASE (U(0))
#define ARM_PAS_1_SIZE ((ULL(1)<<31)) /* 2GB */
/* NS memory 2GB to (end - 64MB) */
#define ARM_PAS_2_BASE (ARM_PAS_1_BASE + ARM_PAS_1_SIZE)
#define ARM_PAS_2_SIZE (ARM_NS_DRAM1_SIZE)
/* Shared area between EL3 and RMM */
#define ARM_PAS_SHARED_BASE (ARM_EL3_RMM_SHARED_BASE)
#define ARM_PAS_SHARED_SIZE (ARM_EL3_RMM_SHARED_SIZE)
/* Secure TZC region */
#define ARM_PAS_3_BASE (ARM_AP_TZC_DRAM1_BASE)
#define ARM_PAS_3_SIZE (ARM_AP_TZC_DRAM1_SIZE)
#define ARM_PAS_GPI_ANY MAP_GPT_REGION(ARM_PAS_1_BASE, \
ARM_PAS_1_SIZE, \
GPT_GPI_ANY)
#define ARM_PAS_KERNEL GPT_MAP_REGION_GRANULE(ARM_PAS_2_BASE, \
ARM_PAS_2_SIZE, \
GPT_GPI_NS)
#define ARM_PAS_SECURE GPT_MAP_REGION_GRANULE(ARM_PAS_3_BASE, \
ARM_PAS_3_SIZE, \
GPT_GPI_SECURE)
/*
* REALM and Shared area share the same PAS, so consider them a single
* PAS region to configure in GPT.
*/
#define ARM_PAS_REALM GPT_MAP_REGION_GRANULE(ARM_REALM_BASE, \
(ARM_PAS_SHARED_SIZE + \
ARM_REALM_SIZE), \
GPT_GPI_REALM)
#define ARM_PAS_EL3_DRAM GPT_MAP_REGION_GRANULE(ARM_EL3_TZC_DRAM1_BASE, \
ARM_EL3_TZC_DRAM1_SIZE, \
GPT_GPI_ROOT)
#define ARM_PAS_GPTS GPT_MAP_REGION_GRANULE(ARM_L1_GPT_ADDR_BASE, \
ARM_L1_GPT_SIZE, \
GPT_GPI_ROOT)
/* GPT Configuration options */
#define PLATFORM_L0GPTSZ GPCCR_L0GPTSZ_30BITS
#endif /* ARM_PAS_DEF_H */
@@ -0,0 +1,43 @@
/*
* Copyright (c) 2017-2022, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_RECLAIM_INIT_LD_S
#define ARM_RECLAIM_INIT_LD_S
SECTIONS
{
.init __STACKS_START__ : {
. = . + PLATFORM_STACK_SIZE;
. = ALIGN(PAGE_SIZE);
__INIT_CODE_START__ = .;
*(*text.init.*);
__INIT_CODE_END__ = .;
INIT_CODE_END_ALIGNED = ALIGN(PAGE_SIZE);
} >RAM
#ifdef BL31_PROGBITS_LIMIT
ASSERT(__INIT_CODE_END__ <= BL31_PROGBITS_LIMIT,
"BL31 init has exceeded progbits limit.")
#endif
}
#define ABS ABSOLUTE
#define STACK_SECTION \
stacks (NOLOAD) : { \
__STACKS_START__ = .; \
*(tzfw_normal_stacks) \
__STACKS_END__ = .; \
/* Allow room for the init section where necessary. */ \
OFFSET = ABS(SIZEOF(.init) - (. - __STACKS_START__)); \
/* Offset sign */ \
SIGN = ABS(OFFSET) & (1 << 63); \
/* Offset mask */ \
MASK = ABS(SIGN >> 63) - 1; \
. += ABS(OFFSET) & ABS(MASK); \
. = ALIGN(PAGE_SIZE); \
}
#endif /* ARM_RECLAIM_INIT_LD_S */
@@ -0,0 +1,38 @@
/*
* Copyright (c) 2016-2019,2021-2022, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_SIP_SVC_H
#define ARM_SIP_SVC_H
#include <lib/utils_def.h>
/* SMC function IDs for SiP Service queries */
#define ARM_SIP_SVC_CALL_COUNT U(0x8200ff00)
#define ARM_SIP_SVC_UID U(0x8200ff01)
/* U(0x8200ff02) is reserved */
#define ARM_SIP_SVC_VERSION U(0x8200ff03)
/* PMF_SMC_GET_TIMESTAMP_32 0x82000010 */
/* PMF_SMC_GET_TIMESTAMP_64 0xC2000010 */
/* Function ID for requesting state switch of lower EL */
#define ARM_SIP_SVC_EXE_STATE_SWITCH U(0x82000020)
/* DEBUGFS_SMC_32 0x82000030U */
/* DEBUGFS_SMC_64 0xC2000030U */
/*
* Arm(R) Ethos(TM)-N NPU SiP SMC function IDs
* 0xC2000050-0xC200005F
* 0x82000050-0x8200005F
*/
/* ARM SiP Service Calls version numbers */
#define ARM_SIP_SVC_VERSION_MAJOR U(0x0)
#define ARM_SIP_SVC_VERSION_MINOR U(0x2)
#endif /* ARM_SIP_SVC_H */
@@ -0,0 +1,103 @@
/*
* Copyright (c) 2017-2019, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_SPM_DEF_H
#define ARM_SPM_DEF_H
#include <lib/utils_def.h>
#include <lib/xlat_tables/xlat_tables_defs.h>
/*
* If BL31 is placed in DRAM, place the Secure Partition in DRAM right after the
* region used by BL31. If BL31 it is placed in SRAM, put the Secure Partition
* at the base of DRAM.
*/
#define ARM_SP_IMAGE_BASE BL32_BASE
#define ARM_SP_IMAGE_LIMIT BL32_LIMIT
/* The maximum size of the S-EL0 payload can be 3MB */
#define ARM_SP_IMAGE_SIZE ULL(0x300000)
#ifdef IMAGE_BL2
/* SPM Payload memory. Mapped as RW in BL2. */
#define ARM_SP_IMAGE_MMAP MAP_REGION_FLAT( \
ARM_SP_IMAGE_BASE, \
ARM_SP_IMAGE_SIZE, \
MT_MEMORY | MT_RW | MT_SECURE)
#endif
#ifdef IMAGE_BL31
/* SPM Payload memory. Mapped as code in S-EL1 */
#define ARM_SP_IMAGE_MMAP MAP_REGION2( \
ARM_SP_IMAGE_BASE, \
ARM_SP_IMAGE_BASE, \
ARM_SP_IMAGE_SIZE, \
MT_CODE | MT_SECURE | MT_USER, \
PAGE_SIZE)
#endif
/*
* Memory shared between EL3 and S-EL0. It is used by EL3 to push data into
* S-EL0, so it is mapped with RW permission from EL3 and with RO permission
* from S-EL0. Placed after SPM Payload memory.
*/
#define PLAT_SPM_BUF_BASE (ARM_SP_IMAGE_BASE + ARM_SP_IMAGE_SIZE)
#define PLAT_SPM_BUF_SIZE ULL(0x100000)
#define ARM_SPM_BUF_EL3_MMAP MAP_REGION_FLAT( \
PLAT_SPM_BUF_BASE, \
PLAT_SPM_BUF_SIZE, \
MT_RW_DATA | MT_SECURE)
#define ARM_SPM_BUF_EL0_MMAP MAP_REGION2( \
PLAT_SPM_BUF_BASE, \
PLAT_SPM_BUF_BASE, \
PLAT_SPM_BUF_SIZE, \
MT_RO_DATA | MT_SECURE | MT_USER,\
PAGE_SIZE)
/*
* Memory shared between Normal world and S-EL0 for passing data during service
* requests. Mapped as RW and NS. Placed after the shared memory between EL3 and
* S-EL0.
*/
#define PLAT_SP_IMAGE_NS_BUF_BASE (PLAT_SPM_BUF_BASE + PLAT_SPM_BUF_SIZE)
#define PLAT_SP_IMAGE_NS_BUF_SIZE ULL(0x10000)
#define ARM_SP_IMAGE_NS_BUF_MMAP MAP_REGION2( \
PLAT_SP_IMAGE_NS_BUF_BASE, \
PLAT_SP_IMAGE_NS_BUF_BASE, \
PLAT_SP_IMAGE_NS_BUF_SIZE, \
MT_RW_DATA | MT_NS | MT_USER, \
PAGE_SIZE)
/*
* RW memory, which uses the remaining Trusted DRAM. Placed after the memory
* shared between Secure and Non-secure worlds, or after the platform specific
* buffers, if defined. First there is the stack memory for all CPUs and then
* there is the common heap memory. Both are mapped with RW permissions.
*/
#define PLAT_SP_IMAGE_STACK_BASE PLAT_ARM_SP_IMAGE_STACK_BASE
#define PLAT_SP_IMAGE_STACK_PCPU_SIZE ULL(0x2000)
#define ARM_SP_IMAGE_STACK_TOTAL_SIZE (PLATFORM_CORE_COUNT * \
PLAT_SP_IMAGE_STACK_PCPU_SIZE)
#define ARM_SP_IMAGE_HEAP_BASE (PLAT_SP_IMAGE_STACK_BASE + \
ARM_SP_IMAGE_STACK_TOTAL_SIZE)
#define ARM_SP_IMAGE_HEAP_SIZE (ARM_SP_IMAGE_LIMIT - ARM_SP_IMAGE_HEAP_BASE)
#define ARM_SP_IMAGE_RW_MMAP MAP_REGION2( \
PLAT_SP_IMAGE_STACK_BASE, \
PLAT_SP_IMAGE_STACK_BASE, \
(ARM_SP_IMAGE_LIMIT - \
PLAT_SP_IMAGE_STACK_BASE), \
MT_RW_DATA | MT_SECURE | MT_USER,\
PAGE_SIZE)
/* Total number of memory regions with distinct properties */
#define ARM_SP_IMAGE_NUM_MEM_REGIONS 6
/* Cookies passed to the Secure Partition at boot. Not used by ARM platforms. */
#define PLAT_SPM_COOKIE_0 ULL(0)
#define PLAT_SPM_COOKIE_1 ULL(0)
#endif /* ARM_SPM_DEF_H */
@@ -0,0 +1,30 @@
/*
* Copyright (c) 2017-2018, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef ARM_TZC_DRAM_LD_S
#define ARM_TZC_DRAM_LD_S
#include <lib/xlat_tables/xlat_tables_defs.h>
MEMORY {
EL3_SEC_DRAM (rw): ORIGIN = ARM_EL3_TZC_DRAM1_BASE, LENGTH = ARM_EL3_TZC_DRAM1_SIZE
}
SECTIONS
{
. = ARM_EL3_TZC_DRAM1_BASE;
ASSERT(. == ALIGN(PAGE_SIZE),
"ARM_EL3_TZC_DRAM_BASE address is not aligned on a page boundary.")
el3_tzc_dram (NOLOAD) : ALIGN(PAGE_SIZE) {
__EL3_SEC_DRAM_START__ = .;
*(arm_el3_tzc_dram)
__EL3_SEC_DRAM_UNALIGNED_END__ = .;
. = ALIGN(PAGE_SIZE);
__EL3_SEC_DRAM_END__ = .;
} >EL3_SEC_DRAM
}
#endif /* ARM_TZC_DRAM_LD_S */
@@ -0,0 +1,33 @@
/*
* Copyright (c) 2020, Arm Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef FCONF_ARM_SP_GETTER_H
#define FCONF_ARM_SP_GETTER_H
#include <common/tbbr/tbbr_img_def.h>
#include <lib/fconf/fconf.h>
#include <tools_share/uuid.h>
/* arm_sp getter */
#define arm__sp_getter(prop) arm_sp.prop
#define ARM_SP_MAX_SIZE U(0xb0000)
#define ARM_SP_OWNER_NAME_LEN U(8)
struct arm_sp_t {
unsigned int number_of_sp;
union uuid_helper_t uuids[MAX_SP_IDS];
uintptr_t load_addr[MAX_SP_IDS];
char owner[MAX_SP_IDS][ARM_SP_OWNER_NAME_LEN];
};
int fconf_populate_arm_sp(uintptr_t config);
extern struct arm_sp_t arm_sp;
extern bl_mem_params_node_t sp_mem_params_descs[MAX_SP_IDS];
#endif /* FCONF_ARM_SP_GETTER_H */
@@ -0,0 +1,63 @@
/*
* Copyright (c) 2021-2022, Arm Limited. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef FCONF_ETHOSN_GETTER_H
#define FCONF_ETHOSN_GETTER_H
#include <assert.h>
#include <stdbool.h>
#include <lib/fconf/fconf.h>
#define hw_config__ethosn_config_getter(prop) ethosn_config.prop
#define hw_config__ethosn_device_getter(dev_idx) __extension__ ({ \
assert(dev_idx < ethosn_config.num_devices); \
&ethosn_config.devices[dev_idx]; \
})
#define ETHOSN_DEV_NUM_MAX U(2)
#define ETHOSN_DEV_CORE_NUM_MAX U(8)
#define ETHOSN_DEV_ASSET_ALLOCATOR_NUM_MAX U(16)
struct ethosn_allocator_t {
uint32_t stream_id;
};
struct ethosn_main_allocator_t {
struct ethosn_allocator_t firmware;
struct ethosn_allocator_t working_data;
};
struct ethosn_asset_allocator_t {
struct ethosn_allocator_t command_stream;
struct ethosn_allocator_t weight_data;
struct ethosn_allocator_t buffer_data;
struct ethosn_allocator_t intermediate_data;
};
struct ethosn_core_t {
uint64_t addr;
struct ethosn_main_allocator_t main_allocator;
};
struct ethosn_device_t {
bool has_reserved_memory;
uint32_t num_cores;
struct ethosn_core_t cores[ETHOSN_DEV_CORE_NUM_MAX];
uint32_t num_allocators;
struct ethosn_asset_allocator_t asset_allocators[ETHOSN_DEV_ASSET_ALLOCATOR_NUM_MAX];
};
struct ethosn_config_t {
uint32_t num_devices;
struct ethosn_device_t devices[ETHOSN_DEV_NUM_MAX];
};
int fconf_populate_arm_ethosn(uintptr_t config);
extern struct ethosn_config_t ethosn_config;
#endif /* FCONF_ETHOSN_GETTER_H */
@@ -0,0 +1,17 @@
/*
* Copyright (c) 2020, Arm Limited. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef FCONF_NV_CNTR_GETTER_H
#define FCONF_NV_CNTR_GETTER_H
#include <common/nv_cntr_ids.h>
#include <lib/fconf/fconf.h>
#define cot__nv_cntr_addr_getter(id) nv_cntr_base_addr[id]
extern uintptr_t nv_cntr_base_addr[MAX_NV_CTR_IDS];
#endif /* FCONF_NV_CNTR_GETTER_H */
@@ -0,0 +1,31 @@
/*
* Copyright (c) 2019-2020, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef FCONF_SDEI_GETTER_H
#define FCONF_SDEI_GETTER_H
#include <lib/fconf/fconf.h>
#include <platform_def.h>
#define sdei__dyn_config_getter(id) sdei_dyn_config.id
struct sdei_dyn_config_t {
uint32_t private_ev_cnt;
int32_t private_ev_nums[PLAT_SDEI_DP_EVENT_MAX_CNT];
unsigned int private_ev_intrs[PLAT_SDEI_DP_EVENT_MAX_CNT];
unsigned int private_ev_flags[PLAT_SDEI_DP_EVENT_MAX_CNT];
uint32_t shared_ev_cnt;
int32_t shared_ev_nums[PLAT_SDEI_DS_EVENT_MAX_CNT];
unsigned int shared_ev_intrs[PLAT_SDEI_DS_EVENT_MAX_CNT];
unsigned int shared_ev_flags[PLAT_SDEI_DS_EVENT_MAX_CNT];
};
int fconf_populate_sdei_dyn_config(uintptr_t config);
extern struct sdei_dyn_config_t sdei_dyn_config;
#endif /* FCONF_SDEI_GETTER_H */
@@ -0,0 +1,27 @@
/*
* Copyright (c) 2020, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef FCONF_SEC_INTR_CONFIG_H
#define FCONF_SEC_INTR_CONFIG_H
#include <lib/fconf/fconf.h>
#include <platform_def.h>
#define hw_config__sec_intr_prop_getter(id) sec_intr_prop.id
#define SEC_INT_COUNT_MAX U(15)
struct sec_intr_prop_t {
interrupt_prop_t descriptor[SEC_INT_COUNT_MAX];
uint32_t count;
};
int fconf_populate_sec_intr_config(uintptr_t config);
extern struct sec_intr_prop_t sec_intr_prop;
#endif /* FCONF_SEC_INTR_CONFIG_H */
@@ -0,0 +1,363 @@
/*
* Copyright (c) 2015-2022, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef PLAT_ARM_H
#define PLAT_ARM_H
#include <stdbool.h>
#include <stdint.h>
#include <drivers/arm/tzc_common.h>
#include <lib/bakery_lock.h>
#include <lib/cassert.h>
#include <lib/el3_runtime/cpu_data.h>
#include <lib/spinlock.h>
#include <lib/utils_def.h>
#include <lib/xlat_tables/xlat_tables_compat.h>
/*******************************************************************************
* Forward declarations
******************************************************************************/
struct meminfo;
struct image_info;
struct bl_params;
typedef struct arm_tzc_regions_info {
unsigned long long base;
unsigned long long end;
unsigned int sec_attr;
unsigned int nsaid_permissions;
} arm_tzc_regions_info_t;
/*******************************************************************************
* Default mapping definition of the TrustZone Controller for ARM standard
* platforms.
* Configure:
* - Region 0 with no access;
* - Region 1 with secure access only;
* - the remaining DRAM regions access from the given Non-Secure masters.
******************************************************************************/
#if SPM_MM
#define ARM_TZC_REGIONS_DEF \
{ARM_AP_TZC_DRAM1_BASE, ARM_EL3_TZC_DRAM1_END + ARM_L1_GPT_SIZE,\
TZC_REGION_S_RDWR, 0}, \
{ARM_NS_DRAM1_BASE, ARM_NS_DRAM1_END, ARM_TZC_NS_DRAM_S_ACCESS, \
PLAT_ARM_TZC_NS_DEV_ACCESS}, \
{ARM_DRAM2_BASE, ARM_DRAM2_END, ARM_TZC_NS_DRAM_S_ACCESS, \
PLAT_ARM_TZC_NS_DEV_ACCESS}, \
{PLAT_SP_IMAGE_NS_BUF_BASE, (PLAT_SP_IMAGE_NS_BUF_BASE + \
PLAT_SP_IMAGE_NS_BUF_SIZE) - 1, TZC_REGION_S_NONE, \
PLAT_ARM_TZC_NS_DEV_ACCESS}
#elif ENABLE_RME
#define ARM_TZC_REGIONS_DEF \
{ARM_AP_TZC_DRAM1_BASE, ARM_AP_TZC_DRAM1_END, TZC_REGION_S_RDWR, 0},\
{ARM_EL3_TZC_DRAM1_BASE, ARM_L1_GPT_END, TZC_REGION_S_RDWR, 0}, \
{ARM_NS_DRAM1_BASE, ARM_NS_DRAM1_END, ARM_TZC_NS_DRAM_S_ACCESS, \
PLAT_ARM_TZC_NS_DEV_ACCESS}, \
/* Realm and Shared area share the same PAS */ \
{ARM_REALM_BASE, ARM_EL3_RMM_SHARED_END, ARM_TZC_NS_DRAM_S_ACCESS, \
PLAT_ARM_TZC_NS_DEV_ACCESS}, \
{ARM_DRAM2_BASE, ARM_DRAM2_END, ARM_TZC_NS_DRAM_S_ACCESS, \
PLAT_ARM_TZC_NS_DEV_ACCESS}
#else
#define ARM_TZC_REGIONS_DEF \
{ARM_AP_TZC_DRAM1_BASE, ARM_EL3_TZC_DRAM1_END + ARM_L1_GPT_SIZE,\
TZC_REGION_S_RDWR, 0}, \
{ARM_NS_DRAM1_BASE, ARM_NS_DRAM1_END, ARM_TZC_NS_DRAM_S_ACCESS, \
PLAT_ARM_TZC_NS_DEV_ACCESS}, \
{ARM_DRAM2_BASE, ARM_DRAM2_END, ARM_TZC_NS_DRAM_S_ACCESS, \
PLAT_ARM_TZC_NS_DEV_ACCESS}
#endif
#define ARM_CASSERT_MMAP \
CASSERT((ARRAY_SIZE(plat_arm_mmap) - 1) <= PLAT_ARM_MMAP_ENTRIES, \
assert_plat_arm_mmap_mismatch); \
CASSERT((PLAT_ARM_MMAP_ENTRIES + ARM_BL_REGIONS) \
<= MAX_MMAP_REGIONS, \
assert_max_mmap_regions);
void arm_setup_romlib(void);
#if defined(IMAGE_BL31) || (!defined(__aarch64__) && defined(IMAGE_BL32))
/*
* Use this macro to instantiate lock before it is used in below
* arm_lock_xxx() macros
*/
#define ARM_INSTANTIATE_LOCK static DEFINE_BAKERY_LOCK(arm_lock)
#define ARM_LOCK_GET_INSTANCE (&arm_lock)
#if !HW_ASSISTED_COHERENCY
#define ARM_SCMI_INSTANTIATE_LOCK DEFINE_BAKERY_LOCK(arm_scmi_lock)
#else
#define ARM_SCMI_INSTANTIATE_LOCK spinlock_t arm_scmi_lock
#endif
#define ARM_SCMI_LOCK_GET_INSTANCE (&arm_scmi_lock)
/*
* These are wrapper macros to the Coherent Memory Bakery Lock API.
*/
#define arm_lock_init() bakery_lock_init(&arm_lock)
#define arm_lock_get() bakery_lock_get(&arm_lock)
#define arm_lock_release() bakery_lock_release(&arm_lock)
#else
/*
* Empty macros for all other BL stages other than BL31 and BL32
*/
#define ARM_INSTANTIATE_LOCK static int arm_lock __unused
#define ARM_LOCK_GET_INSTANCE 0
#define arm_lock_init()
#define arm_lock_get()
#define arm_lock_release()
#endif /* defined(IMAGE_BL31) || (!defined(__aarch64__) && defined(IMAGE_BL32)) */
#if ARM_RECOM_STATE_ID_ENC
/*
* Macros used to parse state information from State-ID if it is using the
* recommended encoding for State-ID.
*/
#define ARM_LOCAL_PSTATE_WIDTH 4
#define ARM_LOCAL_PSTATE_MASK ((1 << ARM_LOCAL_PSTATE_WIDTH) - 1)
/* Macros to construct the composite power state */
/* Make composite power state parameter till power level 0 */
#if PSCI_EXTENDED_STATE_ID
#define arm_make_pwrstate_lvl0(lvl0_state, pwr_lvl, type) \
(((lvl0_state) << PSTATE_ID_SHIFT) | ((type) << PSTATE_TYPE_SHIFT))
#else
#define arm_make_pwrstate_lvl0(lvl0_state, pwr_lvl, type) \
(((lvl0_state) << PSTATE_ID_SHIFT) | \
((pwr_lvl) << PSTATE_PWR_LVL_SHIFT) | \
((type) << PSTATE_TYPE_SHIFT))
#endif /* __PSCI_EXTENDED_STATE_ID__ */
/* Make composite power state parameter till power level 1 */
#define arm_make_pwrstate_lvl1(lvl1_state, lvl0_state, pwr_lvl, type) \
(((lvl1_state) << ARM_LOCAL_PSTATE_WIDTH) | \
arm_make_pwrstate_lvl0(lvl0_state, pwr_lvl, type))
/* Make composite power state parameter till power level 2 */
#define arm_make_pwrstate_lvl2(lvl2_state, lvl1_state, lvl0_state, pwr_lvl, type) \
(((lvl2_state) << (ARM_LOCAL_PSTATE_WIDTH * 2)) | \
arm_make_pwrstate_lvl1(lvl1_state, lvl0_state, pwr_lvl, type))
#endif /* __ARM_RECOM_STATE_ID_ENC__ */
/* ARM State switch error codes */
#define STATE_SW_E_PARAM (-2)
#define STATE_SW_E_DENIED (-3)
/* plat_get_rotpk_info() flags */
#define ARM_ROTPK_REGS_ID 1
#define ARM_ROTPK_DEVEL_RSA_ID 2
#define ARM_ROTPK_DEVEL_ECDSA_ID 3
/* IO storage utility functions */
int arm_io_setup(void);
/* Set image specification in IO block policy */
int arm_set_image_source(unsigned int image_id, const char *part_name,
uintptr_t *dev_handle, uintptr_t *image_spec);
void arm_set_fip_addr(uint32_t active_fw_bank_idx);
/* Security utility functions */
void arm_tzc400_setup(uintptr_t tzc_base,
const arm_tzc_regions_info_t *tzc_regions);
struct tzc_dmc500_driver_data;
void arm_tzc_dmc500_setup(struct tzc_dmc500_driver_data *plat_driver_data,
const arm_tzc_regions_info_t *tzc_regions);
/* Console utility functions */
void arm_console_boot_init(void);
void arm_console_boot_end(void);
void arm_console_runtime_init(void);
void arm_console_runtime_end(void);
/* Systimer utility function */
void arm_configure_sys_timer(void);
/* PM utility functions */
int arm_validate_power_state(unsigned int power_state,
psci_power_state_t *req_state);
int arm_validate_psci_entrypoint(uintptr_t entrypoint);
int arm_validate_ns_entrypoint(uintptr_t entrypoint);
void arm_system_pwr_domain_save(void);
void arm_system_pwr_domain_resume(void);
int arm_psci_read_mem_protect(int *enabled);
int arm_nor_psci_write_mem_protect(int val);
void arm_nor_psci_do_static_mem_protect(void);
void arm_nor_psci_do_dyn_mem_protect(void);
int arm_psci_mem_protect_chk(uintptr_t base, u_register_t length);
/* Topology utility function */
int arm_check_mpidr(u_register_t mpidr);
/* BL1 utility functions */
void arm_bl1_early_platform_setup(void);
void arm_bl1_platform_setup(void);
void arm_bl1_plat_arch_setup(void);
/* BL2 utility functions */
void arm_bl2_early_platform_setup(uintptr_t fw_config, struct meminfo *mem_layout);
void arm_bl2_platform_setup(void);
void arm_bl2_plat_arch_setup(void);
uint32_t arm_get_spsr_for_bl32_entry(void);
uint32_t arm_get_spsr_for_bl33_entry(void);
int arm_bl2_plat_handle_post_image_load(unsigned int image_id);
int arm_bl2_handle_post_image_load(unsigned int image_id);
struct bl_params *arm_get_next_bl_params(void);
/* BL2 at EL3 functions */
void arm_bl2_el3_early_platform_setup(void);
void arm_bl2_el3_plat_arch_setup(void);
/* BL2U utility functions */
void arm_bl2u_early_platform_setup(struct meminfo *mem_layout,
void *plat_info);
void arm_bl2u_platform_setup(void);
void arm_bl2u_plat_arch_setup(void);
/* BL31 utility functions */
void arm_bl31_early_platform_setup(void *from_bl2, uintptr_t soc_fw_config,
uintptr_t hw_config, void *plat_params_from_bl2);
void arm_bl31_platform_setup(void);
void arm_bl31_plat_runtime_setup(void);
void arm_bl31_plat_arch_setup(void);
/* TSP utility functions */
void arm_tsp_early_platform_setup(void);
/* SP_MIN utility functions */
void arm_sp_min_early_platform_setup(void *from_bl2, uintptr_t tos_fw_config,
uintptr_t hw_config, void *plat_params_from_bl2);
void arm_sp_min_plat_runtime_setup(void);
void arm_sp_min_plat_arch_setup(void);
/* FIP TOC validity check */
bool arm_io_is_toc_valid(void);
/* Utility functions for Dynamic Config */
void arm_bl2_dyn_cfg_init(void);
void arm_bl1_set_mbedtls_heap(void);
int arm_get_mbedtls_heap(void **heap_addr, size_t *heap_size);
#if MEASURED_BOOT
int arm_set_tos_fw_info(uintptr_t log_addr, size_t log_size);
int arm_set_nt_fw_info(
/*
* Currently OP-TEE does not support reading DTBs from Secure memory
* and this option should be removed when feature is supported.
*/
#ifdef SPD_opteed
uintptr_t log_addr,
#endif
size_t log_size, uintptr_t *ns_log_addr);
int arm_set_tb_fw_info(uintptr_t log_addr, size_t log_size);
int arm_get_tb_fw_info(uint64_t *log_addr, size_t *log_size);
#endif /* MEASURED_BOOT */
/*
* Free the memory storing initialization code only used during an images boot
* time so it can be reclaimed for runtime data
*/
void arm_free_init_memory(void);
/*
* Make the higher level translation tables read-only
*/
void arm_xlat_make_tables_readonly(void);
/*
* Mandatory functions required in ARM standard platforms
*/
unsigned int plat_arm_get_cluster_core_count(u_register_t mpidr);
void plat_arm_gic_driver_init(void);
void plat_arm_gic_init(void);
void plat_arm_gic_cpuif_enable(void);
void plat_arm_gic_cpuif_disable(void);
void plat_arm_gic_redistif_on(void);
void plat_arm_gic_redistif_off(void);
void plat_arm_gic_pcpu_init(void);
void plat_arm_gic_save(void);
void plat_arm_gic_resume(void);
void plat_arm_security_setup(void);
void plat_arm_pwrc_setup(void);
void plat_arm_interconnect_init(void);
void plat_arm_interconnect_enter_coherency(void);
void plat_arm_interconnect_exit_coherency(void);
void plat_arm_program_trusted_mailbox(uintptr_t address);
bool plat_arm_bl1_fwu_needed(void);
__dead2 void plat_arm_error_handler(int err);
__dead2 void plat_arm_system_reset(void);
/*
* Optional functions in ARM standard platforms
*/
void plat_arm_override_gicr_frames(const uintptr_t *plat_gicr_frames);
int arm_get_rotpk_info(void *cookie, void **key_ptr, unsigned int *key_len,
unsigned int *flags);
int arm_get_rotpk_info_regs(void **key_ptr, unsigned int *key_len,
unsigned int *flags);
int arm_get_rotpk_info_cc(void **key_ptr, unsigned int *key_len,
unsigned int *flags);
int arm_get_rotpk_info_dev(void **key_ptr, unsigned int *key_len,
unsigned int *flags);
#if ARM_PLAT_MT
unsigned int plat_arm_get_cpu_pe_count(u_register_t mpidr);
#endif
/*
* This function is called after loading SCP_BL2 image and it is used to perform
* any platform-specific actions required to handle the SCP firmware.
*/
int plat_arm_bl2_handle_scp_bl2(struct image_info *scp_bl2_image_info);
/*
* Optional functions required in ARM standard platforms
*/
void plat_arm_io_setup(void);
int plat_arm_get_alt_image_source(
unsigned int image_id,
uintptr_t *dev_handle,
uintptr_t *image_spec);
unsigned int plat_arm_calc_core_pos(u_register_t mpidr);
const mmap_region_t *plat_arm_get_mmap(void);
/* Allow platform to override psci_pm_ops during runtime */
const plat_psci_ops_t *plat_arm_psci_override_pm_ops(plat_psci_ops_t *ops);
/* Execution state switch in ARM platforms */
int arm_execution_state_switch(unsigned int smc_fid,
uint32_t pc_hi,
uint32_t pc_lo,
uint32_t cookie_hi,
uint32_t cookie_lo,
void *handle);
/* Optional functions for SP_MIN */
void plat_arm_sp_min_early_platform_setup(u_register_t arg0, u_register_t arg1,
u_register_t arg2, u_register_t arg3);
/* global variables */
extern plat_psci_ops_t plat_arm_psci_pm_ops;
extern const mmap_region_t plat_arm_mmap[];
extern const unsigned int arm_pm_idle_states[];
/* secure watchdog */
void plat_arm_secure_wdt_start(void);
void plat_arm_secure_wdt_stop(void);
/* Get SOC-ID of ARM platform */
uint32_t plat_arm_get_soc_id(void);
#endif /* PLAT_ARM_H */
@@ -0,0 +1,13 @@
/*
* Copyright (c) 2020-2021, ARM Limited and Contributors. All rights reserved.
*
* SPDX-License-Identifier: BSD-3-Clause
*/
#ifndef SMCCC_DEF_H
#define SMCCC_DEF_H
/* Defines used to retrieve ARM SOC revision */
#define ARM_SOC_CONTINUATION_CODE U(0x4)
#define ARM_SOC_IDENTIFICATION_CODE U(0x3B)
#endif /* SMCCC_DEF_H */