zephyr/arch/arm/include/kernel_arch_func.h
Andrew Boie c5c104f91e kernel: fix k_thread_stack_t definition
Currently this is defined as a k_thread_stack_t pointer.
However this isn't correct, stacks are defined as arrays. Extern
references to k_thread_stack_t doesn't work properly as the compiler
treats it as a pointer to the stack array and not the array itself.

Declaring as an unsized array of k_thread_stack_t doesn't work
well either. The least amount of confusion is to leave out the
pointer/array status completely, use pointers for function prototypes,
and define K_THREAD_STACK_EXTERN() to properly create an extern
reference.

The definitions for all functions and struct that use
k_thread_stack_t need to be updated, but code that uses them should
be unchanged.

Signed-off-by: Andrew Boie <andrew.p.boie@intel.com>
2017-10-17 08:24:29 -07:00

106 lines
2.3 KiB
C

/*
* Copyright (c) 2013-2016 Wind River Systems, Inc.
*
* SPDX-License-Identifier: Apache-2.0
*/
/**
* @file
* @brief Private kernel definitions (ARM)
*
* This file contains private kernel function definitions and various
* other definitions for the ARM Cortex-M3 processor architecture.
*
* This file is also included by assembly language files which must #define
* _ASMLANGUAGE before including this header file. Note that kernel
* assembly source files obtains structure offset values via "absolute symbols"
* in the offsets.o module.
*/
/* this file is only meant to be included by kernel_structs.h */
#ifndef _kernel_arch_func__h_
#define _kernel_arch_func__h_
#ifdef __cplusplus
extern "C" {
#endif
#ifndef _ASMLANGUAGE
extern void _FaultInit(void);
extern void _CpuIdleInit(void);
static ALWAYS_INLINE void kernel_arch_init(void)
{
_InterruptStackSetup();
_ExcSetup();
_FaultInit();
_CpuIdleInit();
}
static ALWAYS_INLINE void
_arch_switch_to_main_thread(struct k_thread *main_thread,
k_thread_stack_t *main_stack,
size_t main_stack_size, k_thread_entry_t _main)
{
/* get high address of the stack, i.e. its start (stack grows down) */
char *start_of_main_stack;
start_of_main_stack =
K_THREAD_STACK_BUFFER(main_stack) + main_stack_size;
start_of_main_stack = (void *)STACK_ROUND_DOWN(start_of_main_stack);
_current = main_thread;
/* the ready queue cache already contains the main thread */
__asm__ __volatile__(
/* move to main() thread stack */
"msr PSP, %0 \t\n"
/* unlock interrupts */
#ifdef CONFIG_ARMV6_M
"cpsie i \t\n"
#elif defined(CONFIG_ARMV7_M)
"movs %%r1, #0 \n\t"
"msr BASEPRI, %%r1 \n\t"
#else
#error Unknown ARM architecture
#endif /* CONFIG_ARMV6_M */
/* branch to _thread_entry(_main, 0, 0, 0) */
"mov %%r0, %1 \n\t"
"bx %2 \t\n"
/* never gets here */
:
: "r"(start_of_main_stack),
"r"(_main), "r"(_thread_entry)
: "r0", "r1", "sp"
);
CODE_UNREACHABLE;
}
static ALWAYS_INLINE void
_set_thread_return_value(struct k_thread *thread, unsigned int value)
{
thread->arch.swap_return_value = value;
}
extern void k_cpu_atomic_idle(unsigned int key);
#define _is_in_isr() _IsInIsr()
extern void _IntLibInit(void);
#endif /* _ASMLANGUAGE */
#ifdef __cplusplus
}
#endif
#endif /* _kernel_arch_func__h_ */