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https://github.com/golang/go
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66fcf45477
This change updates runtime.semasleep to no longer call runtime.nanotime and instead calls lwp_park with a duration to sleep relative to the monotonic clock, so the nanotime is never called. (This requires updating to a newer version of the lwp_park system call, which is safe, because Go 1.10 will require the unreleased NetBSD 8+ anyway) Additionally, this change makes the nanotime function use the monotonic clock for netbsd/arm, which was forgotten from https://golang.org/cl/81135 which updated netbsd/amd64 and netbsd/386. Because semasleep previously depended on nanotime, the past few days of netbsd have likely been unstable because lwp_park was then mixing the monotonic and wall clocks. After this CL, lwp_park no longer depends on nanotime. Original patch submitted at: https://www.netbsd.org/~christos/go-lwp-park-clock-monotonic.diff This commit message (any any mistakes therein) were written by Brad Fitzpatrick. (Brad migrated the patch to Gerrit and checked CLAs) Updates #6007 Fixes #22968 Also updates netbsd/arm to use monotonic time for Change-Id: If77ef7dc610b3025831d84cdfadfbbba2c52acb2 Reviewed-on: https://go-review.googlesource.com/81715 Run-TryBot: Brad Fitzpatrick <bradfitz@golang.org> TryBot-Result: Gobot Gobot <gobot@golang.org> Reviewed-by: Brad Fitzpatrick <bradfitz@golang.org>
394 lines
8.5 KiB
ArmAsm
394 lines
8.5 KiB
ArmAsm
// Copyright 2009 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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//
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// System calls and other sys.stuff for AMD64, NetBSD
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// /usr/src/sys/kern/syscalls.master for syscall numbers.
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//
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#include "go_asm.h"
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#include "go_tls.h"
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#include "textflag.h"
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// int32 lwp_create(void *context, uintptr flags, void *lwpid)
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TEXT runtime·lwp_create(SB),NOSPLIT,$0
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MOVQ ctxt+0(FP), DI
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MOVQ flags+8(FP), SI
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MOVQ lwpid+16(FP), DX
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MOVL $309, AX // sys__lwp_create
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SYSCALL
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JCC 2(PC)
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NEGQ AX
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MOVL AX, ret+24(FP)
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RET
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TEXT runtime·lwp_tramp(SB),NOSPLIT,$0
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// Set FS to point at m->tls.
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LEAQ m_tls(R8), DI
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CALL runtime·settls(SB)
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// Set up new stack.
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get_tls(CX)
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MOVQ R8, g_m(R9)
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MOVQ R9, g(CX)
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CALL runtime·stackcheck(SB)
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// Call fn
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CALL R12
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// It shouldn't return. If it does, exit.
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MOVL $310, AX // sys__lwp_exit
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SYSCALL
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JMP -3(PC) // keep exiting
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TEXT runtime·osyield(SB),NOSPLIT,$0
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MOVL $350, AX // sys_sched_yield
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SYSCALL
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RET
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TEXT runtime·lwp_park(SB),NOSPLIT,$0
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MOVL clockid+0(FP), DI // arg 1 - clockid
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MOVL flags+4(FP), SI // arg 2 - flags
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MOVQ ts+8(FP), DX // arg 3 - ts
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MOVL unpark+16(FP), R10 // arg 4 - unpark
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MOVQ hint+24(FP), R8 // arg 5 - hint
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MOVQ unparkhint+32(FP), R9 // arg 6 - unparkhint
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MOVL $478, AX // sys__lwp_park
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SYSCALL
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MOVL AX, ret+40(FP)
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RET
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TEXT runtime·lwp_unpark(SB),NOSPLIT,$0
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MOVL lwp+0(FP), DI // arg 1 - lwp
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MOVQ hint+8(FP), SI // arg 2 - hint
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MOVL $321, AX // sys__lwp_unpark
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SYSCALL
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MOVL AX, ret+16(FP)
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RET
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TEXT runtime·lwp_self(SB),NOSPLIT,$0
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MOVL $311, AX // sys__lwp_self
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SYSCALL
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MOVL AX, ret+0(FP)
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RET
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// Exit the entire program (like C exit)
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TEXT runtime·exit(SB),NOSPLIT,$-8
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MOVL code+0(FP), DI // arg 1 - exit status
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MOVL $1, AX // sys_exit
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SYSCALL
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MOVL $0xf1, 0xf1 // crash
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RET
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// func exitThread(wait *uint32)
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TEXT runtime·exitThread(SB),NOSPLIT,$0-8
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MOVQ wait+0(FP), AX
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// We're done using the stack.
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MOVL $0, (AX)
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MOVL $310, AX // sys__lwp_exit
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SYSCALL
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MOVL $0xf1, 0xf1 // crash
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JMP 0(PC)
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TEXT runtime·open(SB),NOSPLIT,$-8
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MOVQ name+0(FP), DI // arg 1 pathname
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MOVL mode+8(FP), SI // arg 2 flags
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MOVL perm+12(FP), DX // arg 3 mode
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MOVL $5, AX
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SYSCALL
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JCC 2(PC)
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MOVL $-1, AX
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MOVL AX, ret+16(FP)
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RET
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TEXT runtime·closefd(SB),NOSPLIT,$-8
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MOVL fd+0(FP), DI // arg 1 fd
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MOVL $6, AX
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SYSCALL
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JCC 2(PC)
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MOVL $-1, AX
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MOVL AX, ret+8(FP)
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RET
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TEXT runtime·read(SB),NOSPLIT,$-8
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MOVL fd+0(FP), DI // arg 1 fd
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MOVQ p+8(FP), SI // arg 2 buf
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MOVL n+16(FP), DX // arg 3 count
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MOVL $3, AX
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SYSCALL
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JCC 2(PC)
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MOVL $-1, AX
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MOVL AX, ret+24(FP)
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RET
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TEXT runtime·write(SB),NOSPLIT,$-8
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MOVQ fd+0(FP), DI // arg 1 - fd
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MOVQ p+8(FP), SI // arg 2 - buf
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MOVL n+16(FP), DX // arg 3 - nbyte
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MOVL $4, AX // sys_write
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SYSCALL
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JCC 2(PC)
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MOVL $-1, AX
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MOVL AX, ret+24(FP)
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RET
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TEXT runtime·usleep(SB),NOSPLIT,$16
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MOVL $0, DX
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MOVL usec+0(FP), AX
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MOVL $1000000, CX
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DIVL CX
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MOVQ AX, 0(SP) // tv_sec
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MOVL $1000, AX
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MULL DX
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MOVQ AX, 8(SP) // tv_nsec
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MOVQ SP, DI // arg 1 - rqtp
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MOVQ $0, SI // arg 2 - rmtp
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MOVL $430, AX // sys_nanosleep
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SYSCALL
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RET
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TEXT runtime·raise(SB),NOSPLIT,$16
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MOVL $311, AX // sys__lwp_self
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SYSCALL
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MOVQ AX, DI // arg 1 - target
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MOVL sig+0(FP), SI // arg 2 - signo
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MOVL $318, AX // sys__lwp_kill
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SYSCALL
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RET
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TEXT runtime·raiseproc(SB),NOSPLIT,$16
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MOVL $20, AX // sys_getpid
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SYSCALL
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MOVQ AX, DI // arg 1 - pid
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MOVL sig+0(FP), SI // arg 2 - signo
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MOVL $37, AX // sys_kill
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SYSCALL
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RET
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TEXT runtime·setitimer(SB),NOSPLIT,$-8
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MOVL mode+0(FP), DI // arg 1 - which
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MOVQ new+8(FP), SI // arg 2 - itv
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MOVQ old+16(FP), DX // arg 3 - oitv
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MOVL $425, AX // sys_setitimer
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SYSCALL
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RET
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// func walltime() (sec int64, nsec int32)
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TEXT runtime·walltime(SB), NOSPLIT, $32
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MOVQ $0, DI // arg 1 - clock_id
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LEAQ 8(SP), SI // arg 2 - tp
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MOVL $427, AX // sys_clock_gettime
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SYSCALL
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MOVQ 8(SP), AX // sec
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MOVL 16(SP), DX // nsec
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// sec is in AX, nsec in DX
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MOVQ AX, sec+0(FP)
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MOVL DX, nsec+8(FP)
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RET
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TEXT runtime·nanotime(SB),NOSPLIT,$32
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MOVQ $3, DI // arg 1 - clock_id CLOCK_MONOTONIC
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LEAQ 8(SP), SI // arg 2 - tp
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MOVL $427, AX // sys_clock_gettime
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SYSCALL
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MOVQ 8(SP), AX // sec
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MOVL 16(SP), DX // nsec
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// sec is in AX, nsec in DX
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// return nsec in AX
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IMULQ $1000000000, AX
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ADDQ DX, AX
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MOVQ AX, ret+0(FP)
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RET
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TEXT runtime·getcontext(SB),NOSPLIT,$-8
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MOVQ ctxt+0(FP), DI // arg 1 - context
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MOVL $307, AX // sys_getcontext
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SYSCALL
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JCC 2(PC)
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MOVL $0xf1, 0xf1 // crash
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RET
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TEXT runtime·sigprocmask(SB),NOSPLIT,$0
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MOVL how+0(FP), DI // arg 1 - how
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MOVQ new+8(FP), SI // arg 2 - set
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MOVQ old+16(FP), DX // arg 3 - oset
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MOVL $293, AX // sys_sigprocmask
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SYSCALL
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JCC 2(PC)
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MOVL $0xf1, 0xf1 // crash
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RET
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TEXT runtime·sigreturn_tramp(SB),NOSPLIT,$-8
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MOVQ R15, DI // Load address of ucontext
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MOVQ $308, AX // sys_setcontext
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SYSCALL
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MOVQ $-1, DI // Something failed...
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MOVL $1, AX // sys_exit
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SYSCALL
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TEXT runtime·sigaction(SB),NOSPLIT,$-8
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MOVL sig+0(FP), DI // arg 1 - signum
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MOVQ new+8(FP), SI // arg 2 - nsa
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MOVQ old+16(FP), DX // arg 3 - osa
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// arg 4 - tramp
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LEAQ runtime·sigreturn_tramp(SB), R10
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MOVQ $2, R8 // arg 5 - vers
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MOVL $340, AX // sys___sigaction_sigtramp
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SYSCALL
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JCC 2(PC)
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MOVL $0xf1, 0xf1 // crash
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RET
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TEXT runtime·sigfwd(SB),NOSPLIT,$0-32
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MOVQ fn+0(FP), AX
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MOVL sig+8(FP), DI
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MOVQ info+16(FP), SI
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MOVQ ctx+24(FP), DX
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PUSHQ BP
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MOVQ SP, BP
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ANDQ $~15, SP // alignment for x86_64 ABI
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CALL AX
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MOVQ BP, SP
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POPQ BP
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RET
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TEXT runtime·sigtramp(SB),NOSPLIT,$72
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// Save callee-saved C registers, since the caller may be a C signal handler.
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MOVQ BX, bx-8(SP)
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MOVQ BP, bp-16(SP) // save in case GOEXPERIMENT=noframepointer is set
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MOVQ R12, r12-24(SP)
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MOVQ R13, r13-32(SP)
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MOVQ R14, r14-40(SP)
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MOVQ R15, r15-48(SP)
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// We don't save mxcsr or the x87 control word because sigtrampgo doesn't
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// modify them.
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MOVQ DX, ctx-56(SP)
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MOVQ SI, info-64(SP)
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MOVQ DI, signum-72(SP)
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CALL runtime·sigtrampgo(SB)
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MOVQ r15-48(SP), R15
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MOVQ r14-40(SP), R14
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MOVQ r13-32(SP), R13
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MOVQ r12-24(SP), R12
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MOVQ bp-16(SP), BP
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MOVQ bx-8(SP), BX
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RET
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TEXT runtime·mmap(SB),NOSPLIT,$0
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MOVQ addr+0(FP), DI // arg 1 - addr
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MOVQ n+8(FP), SI // arg 2 - len
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MOVL prot+16(FP), DX // arg 3 - prot
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MOVL flags+20(FP), R10 // arg 4 - flags
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MOVL fd+24(FP), R8 // arg 5 - fd
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MOVL off+28(FP), R9
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SUBQ $16, SP
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MOVQ R9, 8(SP) // arg 7 - offset (passed on stack)
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MOVQ $0, R9 // arg 6 - pad
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MOVL $197, AX // sys_mmap
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SYSCALL
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JCC ok
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ADDQ $16, SP
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MOVQ $0, p+32(FP)
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MOVQ AX, err+40(FP)
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RET
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ok:
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ADDQ $16, SP
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MOVQ AX, p+32(FP)
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MOVQ $0, err+40(FP)
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RET
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TEXT runtime·munmap(SB),NOSPLIT,$0
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MOVQ addr+0(FP), DI // arg 1 - addr
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MOVQ n+8(FP), SI // arg 2 - len
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MOVL $73, AX // sys_munmap
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SYSCALL
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JCC 2(PC)
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MOVL $0xf1, 0xf1 // crash
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RET
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TEXT runtime·madvise(SB),NOSPLIT,$0
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MOVQ addr+0(FP), DI // arg 1 - addr
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MOVQ n+8(FP), SI // arg 2 - len
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MOVL flags+16(FP), DX // arg 3 - behav
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MOVQ $75, AX // sys_madvise
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SYSCALL
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// ignore failure - maybe pages are locked
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RET
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TEXT runtime·sigaltstack(SB),NOSPLIT,$-8
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MOVQ new+0(FP), DI // arg 1 - nss
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MOVQ old+8(FP), SI // arg 2 - oss
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MOVQ $281, AX // sys___sigaltstack14
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SYSCALL
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JCC 2(PC)
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MOVL $0xf1, 0xf1 // crash
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RET
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// set tls base to DI
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TEXT runtime·settls(SB),NOSPLIT,$8
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// adjust for ELF: wants to use -8(FS) for g
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ADDQ $8, DI // arg 1 - ptr
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MOVQ $317, AX // sys__lwp_setprivate
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SYSCALL
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JCC 2(PC)
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MOVL $0xf1, 0xf1 // crash
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RET
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TEXT runtime·sysctl(SB),NOSPLIT,$0
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MOVQ mib+0(FP), DI // arg 1 - name
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MOVL miblen+8(FP), SI // arg 2 - namelen
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MOVQ out+16(FP), DX // arg 3 - oldp
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MOVQ size+24(FP), R10 // arg 4 - oldlenp
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MOVQ dst+32(FP), R8 // arg 5 - newp
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MOVQ ndst+40(FP), R9 // arg 6 - newlen
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MOVQ $202, AX // sys___sysctl
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SYSCALL
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JCC 4(PC)
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NEGQ AX
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MOVL AX, ret+48(FP)
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RET
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MOVL $0, AX
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MOVL AX, ret+48(FP)
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RET
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// int32 runtime·kqueue(void)
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TEXT runtime·kqueue(SB),NOSPLIT,$0
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MOVQ $0, DI
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MOVL $344, AX
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SYSCALL
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JCC 2(PC)
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NEGQ AX
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MOVL AX, ret+0(FP)
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RET
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// int32 runtime·kevent(int kq, Kevent *changelist, int nchanges, Kevent *eventlist, int nevents, Timespec *timeout)
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TEXT runtime·kevent(SB),NOSPLIT,$0
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MOVL kq+0(FP), DI
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MOVQ ch+8(FP), SI
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MOVL nch+16(FP), DX
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MOVQ ev+24(FP), R10
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MOVL nev+32(FP), R8
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MOVQ ts+40(FP), R9
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MOVL $435, AX
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SYSCALL
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JCC 2(PC)
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NEGQ AX
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MOVL AX, ret+48(FP)
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RET
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// void runtime·closeonexec(int32 fd)
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TEXT runtime·closeonexec(SB),NOSPLIT,$0
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MOVL fd+0(FP), DI // fd
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MOVQ $2, SI // F_SETFD
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MOVQ $1, DX // FD_CLOEXEC
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MOVL $92, AX // fcntl
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SYSCALL
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RET
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