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/*
* Copyright (c) 2016 Jean-Paul Etienne <fractalclone@gmail.com>
*
* SPDX-License-Identifier: Apache-2.0
*/
/**
* @file
* @brief RISCV32 specific kernel interface header
* This header contains the RISCV32 specific kernel interface. It is
* included by the generic kernel interface header (arch/cpu.h)
*/
#ifndef _RISCV32_ARCH_H_
#define _RISCV32_ARCH_H_
#include "exp.h"
#include "sys_io.h"
#include <irq.h>
#include <sw_isr_table.h>
#include <soc.h>
#ifdef __cplusplus
extern "C" {
#endif
/* stacks, for RISCV architecture stack should be 16byte-aligned */
#define STACK_ALIGN 16
#ifndef _ASMLANGUAGE
#include <misc/util.h>
#define STACK_ROUND_UP(x) ROUND_UP(x, STACK_ALIGN)
#define STACK_ROUND_DOWN(x) ROUND_DOWN(x, STACK_ALIGN)
/* APIs need to support non-byte addressable architectures */
#define OCTET_TO_SIZEOFUNIT(X) (X)
#define SIZEOFUNIT_TO_OCTET(X) (X)
/* macros convert value of it's argument to a string */
#define DO_TOSTR(s) #s
#define TOSTR(s) DO_TOSTR(s)
/* concatenate the values of the arguments into one */
#define DO_CONCAT(x, y) x ## y
#define CONCAT(x, y) DO_CONCAT(x, y)
/*
* SOC-specific function to get the IRQ number generating the interrupt.
* __soc_get_irq returns a bitfield of pending IRQs.
*/
extern u32_t __soc_get_irq(void);
void _arch_irq_enable(unsigned int irq);
void _arch_irq_disable(unsigned int irq);
int _arch_irq_is_enabled(unsigned int irq);
void _irq_spurious(void *unused);
/**
* Configure a static interrupt.
*
* All arguments must be computable by the compiler at build time.
*
* @param irq_p IRQ line number
* @param priority_p Interrupt priority
* @param isr_p Interrupt service routine
* @param isr_param_p ISR parameter
* @param flags_p IRQ options
*
* @return The vector assigned to this interrupt
*/
#if defined(CONFIG_RISCV_HAS_PLIC)
#define _ARCH_IRQ_CONNECT(irq_p, priority_p, isr_p, isr_param_p, flags_p) \
({ \
_ISR_DECLARE(irq_p, 0, isr_p, isr_param_p); \
riscv_plic_set_priority(irq_p, priority_p); \
irq_p; \
})
#else
#define _ARCH_IRQ_CONNECT(irq_p, priority_p, isr_p, isr_param_p, flags_p) \
({ \
_ISR_DECLARE(irq_p, 0, isr_p, isr_param_p); \
irq_p; \
})
#endif
/*
* use atomic instruction csrrc to lock global irq
* csrrc: atomic read and clear bits in CSR register
*/
static ALWAYS_INLINE unsigned int _arch_irq_lock(void)
{
unsigned int key, mstatus;
__asm__ volatile ("csrrc %0, mstatus, %1"
: "=r" (mstatus)
: "r" (SOC_MSTATUS_IEN)
: "memory");
key = (mstatus & SOC_MSTATUS_IEN);
return key;
}
/*
* use atomic instruction csrrs to unlock global irq
* csrrs: atomic read and set bits in CSR register
*/
static ALWAYS_INLINE void _arch_irq_unlock(unsigned int key)
{
unsigned int mstatus;
__asm__ volatile ("csrrs %0, mstatus, %1"
: "=r" (mstatus)
: "r" (key & SOC_MSTATUS_IEN)
: "memory");
}
extern u32_t _timer_cycle_get_32(void);
#define _arch_k_cycle_get_32() _timer_cycle_get_32()
#endif /*_ASMLANGUAGE */
#if defined(CONFIG_SOC_RISCV32_PULPINO)
#include <arch/riscv32/pulpino/asm_inline.h>
#elif defined(CONFIG_SOC_RISCV32_QEMU)
#include <arch/riscv32/riscv32-qemu/asm_inline.h>
#elif defined(CONFIG_SOC_RISCV32_FE310)
#include <arch/riscv32/fe310/asm_inline.h>
#endif
#ifdef __cplusplus
}
#endif
#endif