mirror of
https://github.com/autc04/Retro68.git
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180 lines
7.2 KiB
Go
180 lines
7.2 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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// Breakpoint executes a breakpoint trap.
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func Breakpoint()
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// LockOSThread wires the calling goroutine to its current operating system thread.
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// Until the calling goroutine exits or calls UnlockOSThread, it will always
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// execute in that thread, and no other goroutine can.
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func LockOSThread()
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// UnlockOSThread unwires the calling goroutine from its fixed operating system thread.
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// If the calling goroutine has not called LockOSThread, UnlockOSThread is a no-op.
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func UnlockOSThread()
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// GOMAXPROCS sets the maximum number of CPUs that can be executing
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// simultaneously and returns the previous setting. If n < 1, it does not
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// change the current setting.
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// The number of logical CPUs on the local machine can be queried with NumCPU.
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// This call will go away when the scheduler improves.
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func GOMAXPROCS(n int) int
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// NumCPU returns the number of logical CPUs on the local machine.
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func NumCPU() int
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// NumCgoCall returns the number of cgo calls made by the current process.
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func NumCgoCall() int64
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// NumGoroutine returns the number of goroutines that currently exist.
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func NumGoroutine() int
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// MemProfileRate controls the fraction of memory allocations
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// that are recorded and reported in the memory profile.
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// The profiler aims to sample an average of
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// one allocation per MemProfileRate bytes allocated.
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//
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// To include every allocated block in the profile, set MemProfileRate to 1.
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// To turn off profiling entirely, set MemProfileRate to 0.
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//
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// The tools that process the memory profiles assume that the
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// profile rate is constant across the lifetime of the program
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// and equal to the current value. Programs that change the
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// memory profiling rate should do so just once, as early as
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// possible in the execution of the program (for example,
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// at the beginning of main).
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var MemProfileRate int = 512 * 1024
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// A MemProfileRecord describes the live objects allocated
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// by a particular call sequence (stack trace).
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type MemProfileRecord struct {
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AllocBytes, FreeBytes int64 // number of bytes allocated, freed
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AllocObjects, FreeObjects int64 // number of objects allocated, freed
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Stack0 [32]uintptr // stack trace for this record; ends at first 0 entry
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}
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// InUseBytes returns the number of bytes in use (AllocBytes - FreeBytes).
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func (r *MemProfileRecord) InUseBytes() int64 { return r.AllocBytes - r.FreeBytes }
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// InUseObjects returns the number of objects in use (AllocObjects - FreeObjects).
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func (r *MemProfileRecord) InUseObjects() int64 {
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return r.AllocObjects - r.FreeObjects
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}
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// Stack returns the stack trace associated with the record,
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// a prefix of r.Stack0.
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func (r *MemProfileRecord) Stack() []uintptr {
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for i, v := range r.Stack0 {
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if v == 0 {
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return r.Stack0[0:i]
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}
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}
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return r.Stack0[0:]
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}
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// MemProfile returns n, the number of records in the current memory profile.
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// If len(p) >= n, MemProfile copies the profile into p and returns n, true.
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// If len(p) < n, MemProfile does not change p and returns n, false.
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//
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// If inuseZero is true, the profile includes allocation records
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// where r.AllocBytes > 0 but r.AllocBytes == r.FreeBytes.
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// These are sites where memory was allocated, but it has all
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// been released back to the runtime.
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//
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// Most clients should use the runtime/pprof package or
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// the testing package's -test.memprofile flag instead
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// of calling MemProfile directly.
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func MemProfile(p []MemProfileRecord, inuseZero bool) (n int, ok bool)
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// A StackRecord describes a single execution stack.
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type StackRecord struct {
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Stack0 [32]uintptr // stack trace for this record; ends at first 0 entry
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}
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// Stack returns the stack trace associated with the record,
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// a prefix of r.Stack0.
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func (r *StackRecord) Stack() []uintptr {
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for i, v := range r.Stack0 {
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if v == 0 {
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return r.Stack0[0:i]
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}
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}
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return r.Stack0[0:]
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}
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// ThreadCreateProfile returns n, the number of records in the thread creation profile.
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// If len(p) >= n, ThreadCreateProfile copies the profile into p and returns n, true.
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// If len(p) < n, ThreadCreateProfile does not change p and returns n, false.
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//
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// Most clients should use the runtime/pprof package instead
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// of calling ThreadCreateProfile directly.
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func ThreadCreateProfile(p []StackRecord) (n int, ok bool)
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// GoroutineProfile returns n, the number of records in the active goroutine stack profile.
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// If len(p) >= n, GoroutineProfile copies the profile into p and returns n, true.
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// If len(p) < n, GoroutineProfile does not change p and returns n, false.
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//
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// Most clients should use the runtime/pprof package instead
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// of calling GoroutineProfile directly.
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func GoroutineProfile(p []StackRecord) (n int, ok bool)
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// CPUProfile returns the next chunk of binary CPU profiling stack trace data,
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// blocking until data is available. If profiling is turned off and all the profile
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// data accumulated while it was on has been returned, CPUProfile returns nil.
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// The caller must save the returned data before calling CPUProfile again.
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//
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// Most clients should use the runtime/pprof package or
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// the testing package's -test.cpuprofile flag instead of calling
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// CPUProfile directly.
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func CPUProfile() []byte
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// SetCPUProfileRate sets the CPU profiling rate to hz samples per second.
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// If hz <= 0, SetCPUProfileRate turns off profiling.
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// If the profiler is on, the rate cannot be changed without first turning it off.
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//
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// Most clients should use the runtime/pprof package or
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// the testing package's -test.cpuprofile flag instead of calling
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// SetCPUProfileRate directly.
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func SetCPUProfileRate(hz int)
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// SetBlockProfileRate controls the fraction of goroutine blocking events
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// that are reported in the blocking profile. The profiler aims to sample
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// an average of one blocking event per rate nanoseconds spent blocked.
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//
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// To include every blocking event in the profile, pass rate = 1.
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// To turn off profiling entirely, pass rate <= 0.
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func SetBlockProfileRate(rate int)
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// BlockProfileRecord describes blocking events originated
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// at a particular call sequence (stack trace).
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type BlockProfileRecord struct {
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Count int64
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Cycles int64
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StackRecord
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}
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// BlockProfile returns n, the number of records in the current blocking profile.
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// If len(p) >= n, BlockProfile copies the profile into p and returns n, true.
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// If len(p) < n, BlockProfile does not change p and returns n, false.
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//
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// Most clients should use the runtime/pprof package or
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// the testing package's -test.blockprofile flag instead
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// of calling BlockProfile directly.
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func BlockProfile(p []BlockProfileRecord) (n int, ok bool)
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// Stack formats a stack trace of the calling goroutine into buf
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// and returns the number of bytes written to buf.
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// If all is true, Stack formats stack traces of all other goroutines
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// into buf after the trace for the current goroutine.
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func Stack(buf []byte, all bool) int
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// Get field tracking information. Only fields with a tag go:"track"
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// are tracked. This function will add every such field that is
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// referenced to the map. The keys in the map will be
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// PkgPath.Name.FieldName. The value will be true for each field
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// added.
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func Fieldtrack(map[string]bool)
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