zephyr/include/arch/common/sys_bitops.h
Eugeniy Paltsev ebe51e26cb ARCH: COMMON: split sys_io.h for MMIO & memory bits functions
As of today 'include/arch/common/sys_io.h" has generic implementation
for MMIO accessors and memory bits manipulation functions. That leads
to several architectures like ARC, ARM/aarch64, ARM/aarch32/corter_a_r
redefine entire 'common/sys_io.h' even if they only have different
MMIO accessors implementation.

So split 'include/arch/common/sys_io.h" to
 * sys_io.h - generic MMIO accessors
 * sys_bitops.h - generic memory bits manipulation functions

Signed-off-by: Eugeniy Paltsev <Eugeniy.Paltsev@synopsys.com>
2020-09-01 13:36:48 +02:00

117 lines
2.3 KiB
C

/*
* Copyright (c) 2020, Wind River Systems, Inc.
* Copyright (c) 2017, Oticon A/S
* Copyright (c) 2020, Synopsys
*
* SPDX-License-Identifier: Apache-2.0
*/
/* Memory bits manipulation functions in non-arch-specific C code */
#ifndef ZEPHYR_INCLUDE_ARCH_COMMON_SYS_BITOPS_H_
#define ZEPHYR_INCLUDE_ARCH_COMMON_SYS_BITOPS_H_
#ifndef _ASMLANGUAGE
#include <toolchain.h>
#include <zephyr/types.h>
#include <sys/sys_io.h>
#ifdef __cplusplus
extern "C" {
#endif
static ALWAYS_INLINE void sys_set_bit(mem_addr_t addr, unsigned int bit)
{
uint32_t temp = *(volatile uint32_t *)addr;
*(volatile uint32_t *)addr = temp | (1 << bit);
}
static ALWAYS_INLINE void sys_clear_bit(mem_addr_t addr, unsigned int bit)
{
uint32_t temp = *(volatile uint32_t *)addr;
*(volatile uint32_t *)addr = temp & ~(1 << bit);
}
static ALWAYS_INLINE int sys_test_bit(mem_addr_t addr, unsigned int bit)
{
uint32_t temp = *(volatile uint32_t *)addr;
return temp & (1 << bit);
}
static ALWAYS_INLINE
void sys_bitfield_set_bit(mem_addr_t addr, unsigned int bit)
{
/* Doing memory offsets in terms of 32-bit values to prevent
* alignment issues
*/
sys_set_bit(addr + ((bit >> 5) << 2), bit & 0x1F);
}
static ALWAYS_INLINE
void sys_bitfield_clear_bit(mem_addr_t addr, unsigned int bit)
{
sys_clear_bit(addr + ((bit >> 5) << 2), bit & 0x1F);
}
static ALWAYS_INLINE
int sys_bitfield_test_bit(mem_addr_t addr, unsigned int bit)
{
return sys_test_bit(addr + ((bit >> 5) << 2), bit & 0x1F);
}
static ALWAYS_INLINE
int sys_test_and_set_bit(mem_addr_t addr, unsigned int bit)
{
int ret;
ret = sys_test_bit(addr, bit);
sys_set_bit(addr, bit);
return ret;
}
static ALWAYS_INLINE
int sys_test_and_clear_bit(mem_addr_t addr, unsigned int bit)
{
int ret;
ret = sys_test_bit(addr, bit);
sys_clear_bit(addr, bit);
return ret;
}
static ALWAYS_INLINE
int sys_bitfield_test_and_set_bit(mem_addr_t addr, unsigned int bit)
{
int ret;
ret = sys_bitfield_test_bit(addr, bit);
sys_bitfield_set_bit(addr, bit);
return ret;
}
static ALWAYS_INLINE
int sys_bitfield_test_and_clear_bit(mem_addr_t addr, unsigned int bit)
{
int ret;
ret = sys_bitfield_test_bit(addr, bit);
sys_bitfield_clear_bit(addr, bit);
return ret;
}
#ifdef __cplusplus
}
#endif
#endif /* _ASMLANGUAGE */
#endif /* ZEPHYR_INCLUDE_ARCH_COMMON_SYS_BITOPS_H_ */