mirror of https://github.com/golang/go.git
210 lines
5.9 KiB
Go
210 lines
5.9 KiB
Go
// Copyright 2018 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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//go:build amd64 && linux
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// +build amd64,linux
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package runtime
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import (
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"internal/abi"
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"runtime/internal/sys"
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"unsafe"
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)
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// InjectDebugCall injects a debugger call to fn into g. regArgs must
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// contain any arguments to fn that are passed in registers, according
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// to the internal Go ABI. It may be nil if no arguments are passed in
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// registers to fn. args must be a pointer to a valid call frame (including
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// arguments and return space) for fn, or nil. tkill must be a function that
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// will send SIGTRAP to thread ID tid. gp must be locked to its OS thread and
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// running.
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//
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// On success, InjectDebugCall returns the panic value of fn or nil.
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// If fn did not panic, its results will be available in args.
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func InjectDebugCall(gp *g, fn interface{}, regArgs *abi.RegArgs, stackArgs interface{}, tkill func(tid int) error, returnOnUnsafePoint bool) (interface{}, error) {
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if gp.lockedm == 0 {
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return nil, plainError("goroutine not locked to thread")
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}
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tid := int(gp.lockedm.ptr().procid)
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if tid == 0 {
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return nil, plainError("missing tid")
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}
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f := efaceOf(&fn)
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if f._type == nil || f._type.kind&kindMask != kindFunc {
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return nil, plainError("fn must be a function")
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}
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fv := (*funcval)(f.data)
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a := efaceOf(&stackArgs)
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if a._type != nil && a._type.kind&kindMask != kindPtr {
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return nil, plainError("args must be a pointer or nil")
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}
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argp := a.data
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var argSize uintptr
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if argp != nil {
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argSize = (*ptrtype)(unsafe.Pointer(a._type)).elem.size
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}
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h := new(debugCallHandler)
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h.gp = gp
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// gp may not be running right now, but we can still get the M
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// it will run on since it's locked.
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h.mp = gp.lockedm.ptr()
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h.fv, h.regArgs, h.argp, h.argSize = fv, regArgs, argp, argSize
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h.handleF = h.handle // Avoid allocating closure during signal
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defer func() { testSigtrap = nil }()
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for i := 0; ; i++ {
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testSigtrap = h.inject
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noteclear(&h.done)
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h.err = ""
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if err := tkill(tid); err != nil {
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return nil, err
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}
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// Wait for completion.
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notetsleepg(&h.done, -1)
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if h.err != "" {
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switch h.err {
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case "call not at safe point":
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if returnOnUnsafePoint {
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// This is for TestDebugCallUnsafePoint.
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return nil, h.err
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}
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fallthrough
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case "retry _Grunnable", "executing on Go runtime stack", "call from within the Go runtime":
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// These are transient states. Try to get out of them.
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if i < 100 {
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usleep(100)
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Gosched()
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continue
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}
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}
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return nil, h.err
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}
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return h.panic, nil
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}
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}
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type debugCallHandler struct {
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gp *g
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mp *m
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fv *funcval
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regArgs *abi.RegArgs
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argp unsafe.Pointer
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argSize uintptr
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panic interface{}
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handleF func(info *siginfo, ctxt *sigctxt, gp2 *g) bool
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err plainError
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done note
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savedRegs sigcontext
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savedFP fpstate1
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}
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func (h *debugCallHandler) inject(info *siginfo, ctxt *sigctxt, gp2 *g) bool {
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switch h.gp.atomicstatus {
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case _Grunning:
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if getg().m != h.mp {
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println("trap on wrong M", getg().m, h.mp)
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return false
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}
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// Push current PC on the stack.
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rsp := ctxt.rsp() - sys.PtrSize
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*(*uint64)(unsafe.Pointer(uintptr(rsp))) = ctxt.rip()
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ctxt.set_rsp(rsp)
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// Write the argument frame size.
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*(*uintptr)(unsafe.Pointer(uintptr(rsp - 16))) = h.argSize
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// Save current registers.
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h.savedRegs = *ctxt.regs()
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h.savedFP = *h.savedRegs.fpstate
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h.savedRegs.fpstate = nil
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// Set PC to debugCallV2.
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ctxt.set_rip(uint64(funcPC(debugCallV2)))
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// Call injected. Switch to the debugCall protocol.
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testSigtrap = h.handleF
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case _Grunnable:
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// Ask InjectDebugCall to pause for a bit and then try
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// again to interrupt this goroutine.
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h.err = plainError("retry _Grunnable")
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notewakeup(&h.done)
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default:
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h.err = plainError("goroutine in unexpected state at call inject")
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notewakeup(&h.done)
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}
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// Resume execution.
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return true
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}
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func (h *debugCallHandler) handle(info *siginfo, ctxt *sigctxt, gp2 *g) bool {
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// Sanity check.
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if getg().m != h.mp {
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println("trap on wrong M", getg().m, h.mp)
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return false
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}
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f := findfunc(uintptr(ctxt.rip()))
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if !(hasPrefix(funcname(f), "runtime.debugCall") || hasPrefix(funcname(f), "debugCall")) {
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println("trap in unknown function", funcname(f))
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return false
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}
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if *(*byte)(unsafe.Pointer(uintptr(ctxt.rip() - 1))) != 0xcc {
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println("trap at non-INT3 instruction pc =", hex(ctxt.rip()))
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return false
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}
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switch status := ctxt.r12(); status {
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case 0:
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// Frame is ready. Copy the arguments to the frame and to registers.
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sp := ctxt.rsp()
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memmove(unsafe.Pointer(uintptr(sp)), h.argp, h.argSize)
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if h.regArgs != nil {
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storeRegArgs(ctxt.regs(), h.regArgs)
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}
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// Push return PC.
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sp -= sys.PtrSize
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ctxt.set_rsp(sp)
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*(*uint64)(unsafe.Pointer(uintptr(sp))) = ctxt.rip()
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// Set PC to call and context register.
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ctxt.set_rip(uint64(h.fv.fn))
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ctxt.regs().rdx = uint64(uintptr(unsafe.Pointer(h.fv)))
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case 1:
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// Function returned. Copy frame and result registers back out.
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sp := ctxt.rsp()
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memmove(h.argp, unsafe.Pointer(uintptr(sp)), h.argSize)
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if h.regArgs != nil {
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loadRegArgs(h.regArgs, ctxt.regs())
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}
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case 2:
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// Function panicked. Copy panic out.
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sp := ctxt.rsp()
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memmove(unsafe.Pointer(&h.panic), unsafe.Pointer(uintptr(sp)), 2*sys.PtrSize)
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case 8:
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// Call isn't safe. Get the reason.
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sp := ctxt.rsp()
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reason := *(*string)(unsafe.Pointer(uintptr(sp)))
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h.err = plainError(reason)
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// Don't wake h.done. We need to transition to status 16 first.
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case 16:
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// Restore all registers except RIP and RSP.
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rip, rsp := ctxt.rip(), ctxt.rsp()
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fp := ctxt.regs().fpstate
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*ctxt.regs() = h.savedRegs
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ctxt.regs().fpstate = fp
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*fp = h.savedFP
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ctxt.set_rip(rip)
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ctxt.set_rsp(rsp)
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// Done
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notewakeup(&h.done)
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default:
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h.err = plainError("unexpected debugCallV2 status")
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notewakeup(&h.done)
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}
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// Resume execution.
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return true
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}
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