/* * Copyright (c) 2013-2014 Wind River Systems, Inc. * * SPDX-License-Identifier: Apache-2.0 */ /** * @file * @brief ARM specific kernel interface header * * This header contains the ARM specific kernel interface. It is * included by the kernel interface architecture-abstraction header * (include/arm/cpu.h) */ #ifndef ZEPHYR_INCLUDE_ARCH_ARM_ARCH_H_ #define ZEPHYR_INCLUDE_ARCH_ARM_ARCH_H_ /* Add include for DTS generated information */ #include /* ARM GPRs are often designated by two different names */ #define sys_define_gpr_with_alias(name1, name2) union { u32_t name1, name2; } #ifdef CONFIG_CPU_CORTEX_M #include #include #include #include #include #include #include #include #include #include #endif #ifdef __cplusplus extern "C" { #endif /** * @brief Declare the STACK_ALIGN_SIZE * * Denotes the required alignment of the stack pointer on public API * boundaries * */ #ifdef CONFIG_STACK_ALIGN_DOUBLE_WORD #define STACK_ALIGN_SIZE 8 #else #define STACK_ALIGN_SIZE 4 #endif /** * @brief Declare a minimum MPU guard alignment and size * * This specifies the minimum MPU guard alignment/size for the MPU. This * will be used to denote the guard section of the stack, if it exists. * * One key note is that this guard results in extra bytes being added to * the stack. APIs which give the stack ptr and stack size will take this * guard size into account. * * Stack is allocated, but initial stack pointer is at the end * (highest address). Stack grows down to the actual allocation * address (lowest address). Stack guard, if present, will comprise * the lowest MPU_GUARD_ALIGN_AND_SIZE bytes of the stack. * * As the stack grows down, it will reach the end of the stack when it * encounters either the stack guard region, or the stack allocation * address. * * ----------------------- <---- Stack allocation address + stack size + * | | MPU_GUARD_ALIGN_AND_SIZE * | Some thread data | <---- Defined when thread is created * | ... | * |---------------------| <---- Actual initial stack ptr * | Initial Stack Ptr | aligned to STACK_ALIGN_SIZE * | ... | * | ... | * | ... | * | ... | * | ... | * | ... | * | ... | * | ... | * | Stack Ends | * |---------------------- <---- Stack Buffer Ptr from API * | MPU Guard, | * | if present | * ----------------------- <---- Stack Allocation address * */ #if defined(CONFIG_MPU_STACK_GUARD) #define MPU_GUARD_ALIGN_AND_SIZE CONFIG_ARM_MPU_REGION_MIN_ALIGN_AND_SIZE #else #define MPU_GUARD_ALIGN_AND_SIZE 0 #endif /** * @brief Define alignment of a stack buffer * * This is used for two different things: * 1) Used in checks for stack size to be a multiple of the stack buffer * alignment * 2) Used to determine the alignment of a stack buffer * */ #if defined(CONFIG_USERSPACE) #define STACK_ALIGN CONFIG_ARM_MPU_REGION_MIN_ALIGN_AND_SIZE #else #define STACK_ALIGN MAX(STACK_ALIGN_SIZE, MPU_GUARD_ALIGN_AND_SIZE) #endif /** * @brief Calculate power of two ceiling for a buffer size input * */ #define POW2_CEIL(x) ((1 << (31 - __builtin_clz(x))) < x ? \ 1 << (31 - __builtin_clz(x) + 1) : \ 1 << (31 - __builtin_clz(x))) #if defined(CONFIG_USERSPACE) && \ defined(CONFIG_MPU_REQUIRES_POWER_OF_TWO_ALIGNMENT) /* Guard is 'carved-out' of the thread stack region, and the supervisor * mode stack is allocated elsewhere by gen_priv_stack.py */ #define Z_ARCH_THREAD_STACK_RESERVED 0 #else #define Z_ARCH_THREAD_STACK_RESERVED MPU_GUARD_ALIGN_AND_SIZE #endif #if defined(CONFIG_USERSPACE) && \ defined(CONFIG_MPU_REQUIRES_POWER_OF_TWO_ALIGNMENT) #define Z_ARCH_THREAD_STACK_DEFINE(sym, size) \ struct _k_thread_stack_element __noinit \ __aligned(POW2_CEIL(size)) sym[POW2_CEIL(size)] #else #define Z_ARCH_THREAD_STACK_DEFINE(sym, size) \ struct _k_thread_stack_element __noinit __aligned(STACK_ALIGN) \ sym[size+MPU_GUARD_ALIGN_AND_SIZE] #endif #if defined(CONFIG_USERSPACE) && \ defined(CONFIG_MPU_REQUIRES_POWER_OF_TWO_ALIGNMENT) #define Z_ARCH_THREAD_STACK_LEN(size) (POW2_CEIL(size)) #else #define Z_ARCH_THREAD_STACK_LEN(size) ((size)+MPU_GUARD_ALIGN_AND_SIZE) #endif #if defined(CONFIG_USERSPACE) && \ defined(CONFIG_MPU_REQUIRES_POWER_OF_TWO_ALIGNMENT) #define Z_ARCH_THREAD_STACK_ARRAY_DEFINE(sym, nmemb, size) \ struct _k_thread_stack_element __noinit \ __aligned(POW2_CEIL(size)) \ sym[nmemb][Z_ARCH_THREAD_STACK_LEN(size)] #else #define Z_ARCH_THREAD_STACK_ARRAY_DEFINE(sym, nmemb, size) \ struct _k_thread_stack_element __noinit \ __aligned(STACK_ALIGN) \ sym[nmemb][Z_ARCH_THREAD_STACK_LEN(size)] #endif #if defined(CONFIG_USERSPACE) && \ defined(CONFIG_MPU_REQUIRES_POWER_OF_TWO_ALIGNMENT) #define Z_ARCH_THREAD_STACK_MEMBER(sym, size) \ struct _k_thread_stack_element __aligned(POW2_CEIL(size)) \ sym[POW2_CEIL(size)] #else #define Z_ARCH_THREAD_STACK_MEMBER(sym, size) \ struct _k_thread_stack_element __aligned(STACK_ALIGN) \ sym[size+MPU_GUARD_ALIGN_AND_SIZE] #endif #define Z_ARCH_THREAD_STACK_SIZEOF(sym) (sizeof(sym) - MPU_GUARD_ALIGN_AND_SIZE) #define Z_ARCH_THREAD_STACK_BUFFER(sym) \ ((char *)(sym) + MPU_GUARD_ALIGN_AND_SIZE) #ifdef CONFIG_ARM_MPU #ifdef CONFIG_CPU_HAS_ARM_MPU #include #endif /* CONFIG_CPU_HAS_ARM_MPU */ #ifdef CONFIG_CPU_HAS_NXP_MPU #include #endif /* CONFIG_CPU_HAS_NXP_MPU */ #endif /* CONFIG_ARM_MPU */ #ifdef __cplusplus } #endif #endif /* ZEPHYR_INCLUDE_ARCH_ARM_ARCH_H_ */