mirror of
https://github.com/golang/go
synced 2024-11-19 15:24:46 -07:00
dbd8f3d739
Currently, if anything goes wrong when printing a traceback, we simply cut off the traceback without any further diagnostics. Unfortunately, right now, we have a few issues that are difficult to debug because the traceback simply cuts off (#21431, #23484). This is an attempt to improve the debuggability of traceback failure by printing a diagnostic message plus a hex dump around the failed traceback frame when something goes wrong. The failures look like: goroutine 5 [running]: runtime: unexpected return pc for main.badLR2 called from 0xbad stack: frame={sp:0xc42004dfa8, fp:0xc42004dfc8} stack=[0xc42004d800,0xc42004e000) 000000c42004dea8: 0000000000000001 0000000000000001 000000c42004deb8: 000000c42004ded8 000000c42004ded8 000000c42004dec8: 0000000000427eea <runtime.dopanic+74> 000000c42004ded8 000000c42004ded8: 000000000044df70 <runtime.dopanic.func1+0> 000000c420001080 000000c42004dee8: 0000000000427b21 <runtime.gopanic+961> 000000c42004df08 000000c42004def8: 000000c42004df98 0000000000427b21 <runtime.gopanic+961> 000000c42004df08: 0000000000000000 0000000000000000 000000c42004df18: 0000000000000000 0000000000000000 000000c42004df28: 0000000000000000 0000000000000000 000000c42004df38: 0000000000000000 000000c420001080 000000c42004df48: 0000000000000000 0000000000000000 000000c42004df58: 0000000000000000 0000000000000000 000000c42004df68: 000000c4200010a0 0000000000000000 000000c42004df78: 00000000004c6400 00000000005031d0 000000c42004df88: 0000000000000000 0000000000000000 000000c42004df98: 000000c42004dfb8 00000000004ae7d9 <main.badLR2+73> 000000c42004dfa8: <00000000004c6400 00000000005031d0 000000c42004dfb8: 000000c42004dfd0 !0000000000000bad 000000c42004dfc8: >0000000000000000 0000000000000000 000000c42004dfd8: 0000000000451821 <runtime.goexit+1> 0000000000000000 000000c42004dfe8: 0000000000000000 0000000000000000 000000c42004dff8: 0000000000000000 main.badLR2(0x0) /go/src/runtime/testdata/testprog/badtraceback.go:42 +0x49 For #21431, #23484. Change-Id: I8718fc76ced81adb0b4b0b4f2293f3219ca80786 Reviewed-on: https://go-review.googlesource.com/89016 Run-TryBot: Austin Clements <austin@google.com> TryBot-Result: Gobot Gobot <gobot@golang.org> Reviewed-by: Cherry Zhang <cherryyz@google.com>
305 lines
5.6 KiB
Go
305 lines
5.6 KiB
Go
// 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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package runtime
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import (
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"runtime/internal/atomic"
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"runtime/internal/sys"
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"unsafe"
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)
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// The compiler knows that a print of a value of this type
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// should use printhex instead of printuint (decimal).
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type hex uint64
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func bytes(s string) (ret []byte) {
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rp := (*slice)(unsafe.Pointer(&ret))
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sp := stringStructOf(&s)
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rp.array = sp.str
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rp.len = sp.len
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rp.cap = sp.len
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return
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}
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var (
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// printBacklog is a circular buffer of messages written with the builtin
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// print* functions, for use in postmortem analysis of core dumps.
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printBacklog [512]byte
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printBacklogIndex int
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)
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// recordForPanic maintains a circular buffer of messages written by the
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// runtime leading up to a process crash, allowing the messages to be
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// extracted from a core dump.
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//
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// The text written during a process crash (following "panic" or "fatal
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// error") is not saved, since the goroutine stacks will generally be readable
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// from the runtime datastructures in the core file.
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func recordForPanic(b []byte) {
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printlock()
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if atomic.Load(&panicking) == 0 {
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// Not actively crashing: maintain circular buffer of print output.
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for i := 0; i < len(b); {
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n := copy(printBacklog[printBacklogIndex:], b[i:])
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i += n
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printBacklogIndex += n
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printBacklogIndex %= len(printBacklog)
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}
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}
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printunlock()
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}
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var debuglock mutex
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// The compiler emits calls to printlock and printunlock around
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// the multiple calls that implement a single Go print or println
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// statement. Some of the print helpers (printslice, for example)
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// call print recursively. There is also the problem of a crash
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// happening during the print routines and needing to acquire
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// the print lock to print information about the crash.
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// For both these reasons, let a thread acquire the printlock 'recursively'.
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func printlock() {
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mp := getg().m
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mp.locks++ // do not reschedule between printlock++ and lock(&debuglock).
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mp.printlock++
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if mp.printlock == 1 {
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lock(&debuglock)
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}
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mp.locks-- // now we know debuglock is held and holding up mp.locks for us.
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}
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func printunlock() {
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mp := getg().m
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mp.printlock--
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if mp.printlock == 0 {
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unlock(&debuglock)
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}
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}
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// write to goroutine-local buffer if diverting output,
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// or else standard error.
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func gwrite(b []byte) {
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if len(b) == 0 {
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return
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}
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recordForPanic(b)
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gp := getg()
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if gp == nil || gp.writebuf == nil {
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writeErr(b)
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return
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}
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n := copy(gp.writebuf[len(gp.writebuf):cap(gp.writebuf)], b)
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gp.writebuf = gp.writebuf[:len(gp.writebuf)+n]
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}
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func printsp() {
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printstring(" ")
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}
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func printnl() {
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printstring("\n")
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}
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func printbool(v bool) {
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if v {
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printstring("true")
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} else {
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printstring("false")
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}
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}
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func printfloat(v float64) {
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switch {
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case v != v:
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printstring("NaN")
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return
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case v+v == v && v > 0:
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printstring("+Inf")
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return
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case v+v == v && v < 0:
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printstring("-Inf")
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return
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}
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const n = 7 // digits printed
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var buf [n + 7]byte
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buf[0] = '+'
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e := 0 // exp
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if v == 0 {
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if 1/v < 0 {
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buf[0] = '-'
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}
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} else {
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if v < 0 {
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v = -v
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buf[0] = '-'
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}
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// normalize
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for v >= 10 {
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e++
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v /= 10
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}
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for v < 1 {
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e--
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v *= 10
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}
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// round
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h := 5.0
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for i := 0; i < n; i++ {
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h /= 10
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}
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v += h
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if v >= 10 {
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e++
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v /= 10
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}
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}
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// format +d.dddd+edd
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for i := 0; i < n; i++ {
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s := int(v)
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buf[i+2] = byte(s + '0')
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v -= float64(s)
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v *= 10
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}
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buf[1] = buf[2]
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buf[2] = '.'
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buf[n+2] = 'e'
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buf[n+3] = '+'
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if e < 0 {
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e = -e
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buf[n+3] = '-'
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}
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buf[n+4] = byte(e/100) + '0'
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buf[n+5] = byte(e/10)%10 + '0'
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buf[n+6] = byte(e%10) + '0'
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gwrite(buf[:])
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}
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func printcomplex(c complex128) {
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print("(", real(c), imag(c), "i)")
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}
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func printuint(v uint64) {
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var buf [100]byte
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i := len(buf)
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for i--; i > 0; i-- {
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buf[i] = byte(v%10 + '0')
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if v < 10 {
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break
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}
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v /= 10
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}
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gwrite(buf[i:])
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}
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func printint(v int64) {
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if v < 0 {
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printstring("-")
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v = -v
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}
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printuint(uint64(v))
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}
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func printhex(v uint64) {
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const dig = "0123456789abcdef"
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var buf [100]byte
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i := len(buf)
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for i--; i > 0; i-- {
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buf[i] = dig[v%16]
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if v < 16 {
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break
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}
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v /= 16
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}
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i--
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buf[i] = 'x'
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i--
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buf[i] = '0'
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gwrite(buf[i:])
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}
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func printpointer(p unsafe.Pointer) {
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printhex(uint64(uintptr(p)))
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}
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func printstring(s string) {
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gwrite(bytes(s))
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}
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func printslice(s []byte) {
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sp := (*slice)(unsafe.Pointer(&s))
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print("[", len(s), "/", cap(s), "]")
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printpointer(sp.array)
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}
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func printeface(e eface) {
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print("(", e._type, ",", e.data, ")")
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}
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func printiface(i iface) {
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print("(", i.tab, ",", i.data, ")")
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}
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// hexdumpWords prints a word-oriented hex dump of [p, end).
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//
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// If mark != nil, it will be called with each printed word's address
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// and should return a character mark to appear just before that
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// word's value. It can return 0 to indicate no mark.
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func hexdumpWords(p, end uintptr, mark func(uintptr) byte) {
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p1 := func(x uintptr) {
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var buf [2 * sys.PtrSize]byte
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for i := len(buf) - 1; i >= 0; i-- {
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if x&0xF < 10 {
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buf[i] = byte(x&0xF) + '0'
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} else {
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buf[i] = byte(x&0xF) - 10 + 'a'
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}
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x >>= 4
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}
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gwrite(buf[:])
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}
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printlock()
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var markbuf [1]byte
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markbuf[0] = ' '
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for i := uintptr(0); p+i < end; i += sys.PtrSize {
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if i%16 == 0 {
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if i != 0 {
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println()
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}
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p1(p + i)
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print(": ")
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}
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if mark != nil {
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markbuf[0] = mark(p + i)
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if markbuf[0] == 0 {
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markbuf[0] = ' '
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}
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}
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gwrite(markbuf[:])
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val := *(*uintptr)(unsafe.Pointer(p + i))
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p1(val)
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print(" ")
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// Can we symbolize val?
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fn := findfunc(val)
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if fn.valid() {
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print("<", funcname(fn), "+", val-fn.entry, "> ")
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}
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}
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println()
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printunlock()
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}
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