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// Copyright 2015 The Go Authors. All rights reserved.
// Use of this source code is governed by a BSD-style
// license that can be found in the LICENSE file.
//go:build msan
#include "go_asm.h"
#include "go_tls.h"
#include "funcdata.h"
#include "textflag.h"
// This is like race_amd64.s, but for the msan calls.
// See race_amd64.s for detailed comments.
#ifdef GOOS_windows
#define RARG0 CX
#define RARG1 DX
#define RARG2 R8
#define RARG3 R9
#else
#define RARG0 DI
#define RARG1 SI
#define RARG2 DX
#define RARG3 CX
#endif
// func runtime·domsanread(addr unsafe.Pointer, sz uintptr)
// Called from msanread.
TEXT runtime·domsanread(SB), NOSPLIT, $0-16
MOVQ addr+0(FP), RARG0
MOVQ size+8(FP), RARG1
// void __msan_read_go(void *addr, uintptr_t sz);
MOVQ $__msan_read_go(SB), AX
JMP msancall<>(SB)
// func runtime·msanwrite(addr unsafe.Pointer, sz uintptr)
// Called from instrumented code.
TEXT runtime·msanwrite(SB), NOSPLIT, $0-16
MOVQ addr+0(FP), RARG0
MOVQ size+8(FP), RARG1
// void __msan_write_go(void *addr, uintptr_t sz);
MOVQ $__msan_write_go(SB), AX
JMP msancall<>(SB)
// func runtime·msanmalloc(addr unsafe.Pointer, sz uintptr)
TEXT runtime·msanmalloc(SB), NOSPLIT, $0-16
MOVQ addr+0(FP), RARG0
MOVQ size+8(FP), RARG1
// void __msan_malloc_go(void *addr, uintptr_t sz);
MOVQ $__msan_malloc_go(SB), AX
JMP msancall<>(SB)
// func runtime·msanfree(addr unsafe.Pointer, sz uintptr)
TEXT runtime·msanfree(SB), NOSPLIT, $0-16
MOVQ addr+0(FP), RARG0
MOVQ size+8(FP), RARG1
// void __msan_free_go(void *addr, uintptr_t sz);
MOVQ $__msan_free_go(SB), AX
JMP msancall<>(SB)
// func runtime·msanmove(dst, src unsafe.Pointer, sz uintptr)
TEXT runtime·msanmove(SB), NOSPLIT, $0-24
MOVQ dst+0(FP), RARG0
MOVQ src+8(FP), RARG1
MOVQ size+16(FP), RARG2
// void __msan_memmove(void *dst, void *src, uintptr_t sz);
MOVQ $__msan_memmove(SB), AX
JMP msancall<>(SB)
// Switches SP to g0 stack and calls (AX). Arguments already set.
TEXT msancall<>(SB), NOSPLIT, $0-0
get_tls(R12)
MOVQ g(R12), R14
MOVQ SP, R12 // callee-saved, preserved across the CALL
CMPQ R14, $0
JE call // no g; still on a system stack
MOVQ g_m(R14), R13
// Switch to g0 stack.
MOVQ m_g0(R13), R10
CMPQ R10, R14
JE call // already on g0
MOVQ (g_sched+gobuf_sp)(R10), SP
call:
ANDQ $~15, SP // alignment for gcc ABI
CALL AX
MOVQ R12, SP
RET
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