196 lines
4.6 KiB
C
196 lines
4.6 KiB
C
/*
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* Copyright (c) 2018 Linaro Limited.
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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/**
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* @file
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* @brief ARC specific sycall header
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*
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* This header contains the ARC specific sycall interface. It is
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* included by the syscall interface architecture-abstraction header
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* (include/arch/syscall.h)
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*/
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#ifndef ZEPHYR_INCLUDE_ARCH_ARC_SYSCALL_H_
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#define ZEPHYR_INCLUDE_ARCH_ARC_SYSCALL_H_
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#define _TRAP_S_SCALL_IRQ_OFFLOAD 1
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#define _TRAP_S_CALL_RUNTIME_EXCEPT 2
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#define _TRAP_S_CALL_SYSTEM_CALL 3
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#ifdef CONFIG_USERSPACE
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#ifndef _ASMLANGUAGE
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#include <zephyr/types.h>
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#include <stdbool.h>
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#ifdef CONFIG_CPU_ARCV2
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#include <arch/arc/v2/aux_regs.h>
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#endif
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#ifdef __cplusplus
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extern "C" {
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#endif
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/* Syscall invocation macros. arc-specific machine constraints used to ensure
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* args land in the proper registers. Currently, they are all stub functions
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* just for enabling CONFIG_USERSPACE on arc w/o errors.
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*/
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static inline u32_t z_arch_syscall_invoke6(u32_t arg1, u32_t arg2, u32_t arg3,
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u32_t arg4, u32_t arg5, u32_t arg6,
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u32_t call_id)
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{
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register u32_t ret __asm__("r0") = arg1;
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register u32_t r1 __asm__("r1") = arg2;
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register u32_t r2 __asm__("r2") = arg3;
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register u32_t r3 __asm__("r3") = arg4;
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register u32_t r4 __asm__("r4") = arg5;
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register u32_t r5 __asm__("r5") = arg6;
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register u32_t r6 __asm__("r6") = call_id;
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compiler_barrier();
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__asm__ volatile(
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"trap_s %[trap_s_id]\n"
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: "=r"(ret)
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: [trap_s_id] "i" (_TRAP_S_CALL_SYSTEM_CALL),
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"r" (ret), "r" (r1), "r" (r2), "r" (r3),
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"r" (r4), "r" (r5), "r" (r6));
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return ret;
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}
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static inline u32_t z_arch_syscall_invoke5(u32_t arg1, u32_t arg2, u32_t arg3,
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u32_t arg4, u32_t arg5, u32_t call_id)
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{
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register u32_t ret __asm__("r0") = arg1;
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register u32_t r1 __asm__("r1") = arg2;
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register u32_t r2 __asm__("r2") = arg3;
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register u32_t r3 __asm__("r3") = arg4;
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register u32_t r4 __asm__("r4") = arg5;
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register u32_t r6 __asm__("r6") = call_id;
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compiler_barrier();
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__asm__ volatile(
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"trap_s %[trap_s_id]\n"
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: "=r"(ret)
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: [trap_s_id] "i" (_TRAP_S_CALL_SYSTEM_CALL),
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"r" (ret), "r" (r1), "r" (r2), "r" (r3),
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"r" (r4), "r" (r6));
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return ret;
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}
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static inline u32_t z_arch_syscall_invoke4(u32_t arg1, u32_t arg2, u32_t arg3,
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u32_t arg4, u32_t call_id)
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{
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register u32_t ret __asm__("r0") = arg1;
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register u32_t r1 __asm__("r1") = arg2;
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register u32_t r2 __asm__("r2") = arg3;
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register u32_t r3 __asm__("r3") = arg4;
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register u32_t r6 __asm__("r6") = call_id;
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compiler_barrier();
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__asm__ volatile(
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"trap_s %[trap_s_id]\n"
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: "=r"(ret)
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: [trap_s_id] "i" (_TRAP_S_CALL_SYSTEM_CALL),
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"r" (ret), "r" (r1), "r" (r2), "r" (r3),
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"r" (r6));
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return ret;
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}
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static inline u32_t z_arch_syscall_invoke3(u32_t arg1, u32_t arg2, u32_t arg3,
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u32_t call_id)
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{
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register u32_t ret __asm__("r0") = arg1;
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register u32_t r1 __asm__("r1") = arg2;
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register u32_t r2 __asm__("r2") = arg3;
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register u32_t r6 __asm__("r6") = call_id;
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compiler_barrier();
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__asm__ volatile(
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"trap_s %[trap_s_id]\n"
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: "=r"(ret)
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: [trap_s_id] "i" (_TRAP_S_CALL_SYSTEM_CALL),
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"r" (ret), "r" (r1), "r" (r2), "r" (r6));
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return ret;
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}
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static inline u32_t z_arch_syscall_invoke2(u32_t arg1, u32_t arg2, u32_t call_id)
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{
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register u32_t ret __asm__("r0") = arg1;
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register u32_t r1 __asm__("r1") = arg2;
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register u32_t r6 __asm__("r6") = call_id;
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compiler_barrier();
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__asm__ volatile(
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"trap_s %[trap_s_id]\n"
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: "=r"(ret)
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: [trap_s_id] "i" (_TRAP_S_CALL_SYSTEM_CALL),
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"r" (ret), "r" (r1), "r" (r6));
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return ret;
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}
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static inline u32_t z_arch_syscall_invoke1(u32_t arg1, u32_t call_id)
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{
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register u32_t ret __asm__("r0") = arg1;
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register u32_t r6 __asm__("r6") = call_id;
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compiler_barrier();
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__asm__ volatile(
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"trap_s %[trap_s_id]\n"
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: "=r"(ret)
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: [trap_s_id] "i" (_TRAP_S_CALL_SYSTEM_CALL),
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"r" (ret), "r" (r6));
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return ret;
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}
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static inline u32_t z_arch_syscall_invoke0(u32_t call_id)
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{
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register u32_t ret __asm__("r0");
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register u32_t r6 __asm__("r6") = call_id;
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compiler_barrier();
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__asm__ volatile(
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"trap_s %[trap_s_id]\n"
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: "=r"(ret)
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: [trap_s_id] "i" (_TRAP_S_CALL_SYSTEM_CALL),
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"r" (ret), "r" (r6));
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return ret;
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}
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static inline bool z_arch_is_user_context(void)
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{
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u32_t status;
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compiler_barrier();
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__asm__ volatile("lr %0, [%[status32]]\n"
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: "=r"(status)
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: [status32] "i" (_ARC_V2_STATUS32));
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return !(status & _ARC_V2_STATUS32_US) ? true : false;
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}
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#ifdef __cplusplus
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}
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#endif
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#endif /* _ASMLANGUAGE */
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#endif /* CONFIG_USERSPACE */
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#endif /* ZEPHYR_INCLUDE_ARCH_ARC_SYSCALL_H_ */
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