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runtime: find a home for orphaned comments
These comments were left behind after runtime.h was converted from C to Go. I examined the original code and tried to move these to the places that the most sense. Change-Id: I8769d60234c0113d682f9de3bd8d6c34c450c188 Reviewed-on: https://go-review.googlesource.com/21969 Reviewed-by: Matthew Dempsky <mdempsky@google.com> Run-TryBot: Matthew Dempsky <mdempsky@google.com> TryBot-Result: Gobot Gobot <gobot@golang.org>
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@ -3,6 +3,9 @@
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// license that can be found in the LICENSE file.
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// Lock-free stack.
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// Initialize head to 0, compare with 0 to test for emptiness.
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// The stack does not keep pointers to nodes,
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// so they can be garbage collected if there are no other pointers to nodes.
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// The following code runs only on g0 stack.
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package runtime
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@ -13,13 +13,13 @@ import (
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// This implementation depends on OS-specific implementations of
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//
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// runtime·futexsleep(uint32 *addr, uint32 val, int64 ns)
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// futexsleep(addr *uint32, val uint32, ns int64)
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// Atomically,
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// if(*addr == val) sleep
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// if *addr == val { sleep }
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// Might be woken up spuriously; that's allowed.
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// Don't sleep longer than ns; ns < 0 means forever.
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//
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// runtime·futexwakeup(uint32 *addr, uint32 cnt)
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// futexwakeup(addr *uint32, cnt uint32)
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// If any procs are sleeping on addr, wake up at most cnt.
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const (
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@ -13,4 +13,7 @@ package runtime
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import "unsafe"
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// mmap calls the mmap system call. It is implemented in assembly.
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// We only pass the lower 32 bits of file offset to the
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// assembly routine; the higher bits (if required), should be provided
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// by the assembly routine as 0.
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func mmap(addr unsafe.Pointer, n uintptr, prot, flags, fd int32, off uint32) unsafe.Pointer
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@ -10,9 +10,7 @@ import (
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"unsafe"
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)
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/*
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* defined constants
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*/
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// defined constants
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const (
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// G status
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//
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@ -99,6 +97,10 @@ const (
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_Pdead
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)
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// Mutual exclusion locks. In the uncontended case,
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// as fast as spin locks (just a few user-level instructions),
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// but on the contention path they sleep in the kernel.
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// A zeroed Mutex is unlocked (no need to initialize each lock).
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type mutex struct {
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// Futex-based impl treats it as uint32 key,
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// while sema-based impl as M* waitm.
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@ -106,6 +108,26 @@ type mutex struct {
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key uintptr
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}
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// sleep and wakeup on one-time events.
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// before any calls to notesleep or notewakeup,
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// must call noteclear to initialize the Note.
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// then, exactly one thread can call notesleep
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// and exactly one thread can call notewakeup (once).
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// once notewakeup has been called, the notesleep
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// will return. future notesleep will return immediately.
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// subsequent noteclear must be called only after
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// previous notesleep has returned, e.g. it's disallowed
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// to call noteclear straight after notewakeup.
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//
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// notetsleep is like notesleep but wakes up after
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// a given number of nanoseconds even if the event
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// has not yet happened. if a goroutine uses notetsleep to
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// wake up early, it must wait to call noteclear until it
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// can be sure that no other goroutine is calling
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// notewakeup.
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//
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// notesleep/notetsleep are generally called on g0,
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// notetsleepg is similar to notetsleep but is called on user g.
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type note struct {
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// Futex-based impl treats it as uint32 key,
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// while sema-based impl as M* waitm.
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@ -397,8 +419,8 @@ type m struct {
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waittraceskip int
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startingtrace bool
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syscalltick uint32
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//#ifdef GOOS_windows
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thread uintptr // thread handle
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// these are here because they are too large to be on the stack
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// of low-level NOSPLIT functions.
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libcall libcall
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@ -406,7 +428,7 @@ type m struct {
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libcallsp uintptr
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libcallg guintptr
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syscall libcall // stores syscall parameters on windows
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//#endif
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mOS
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}
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@ -530,10 +552,10 @@ type schedt struct {
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totaltime int64 // ∫gomaxprocs dt up to procresizetime
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}
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// The m->locked word holds two pieces of state counting active calls to LockOSThread/lockOSThread.
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// The m.locked word holds two pieces of state counting active calls to LockOSThread/lockOSThread.
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// The low bit (LockExternal) is a boolean reporting whether any LockOSThread call is active.
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// External locks are not recursive; a second lock is silently ignored.
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// The upper bits of m->locked record the nesting depth of calls to lockOSThread
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// The upper bits of m.locked record the nesting depth of calls to lockOSThread
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// (counting up by LockInternal), popped by unlockOSThread (counting down by LockInternal).
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// Internal locks can be recursive. For instance, a lock for cgo can occur while the main
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// goroutine is holding the lock during the initialization phase.
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@ -603,13 +625,6 @@ type forcegcstate struct {
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idle uint32
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}
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/*
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* known to compiler
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*/
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const (
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_Structrnd = sys.RegSize
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)
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// startup_random_data holds random bytes initialized at startup. These come from
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// the ELF AT_RANDOM auxiliary vector (vdso_linux_amd64.go or os_linux_386.go).
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var startupRandomData []byte
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@ -635,9 +650,7 @@ func extendRandom(r []byte, n int) {
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}
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}
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/*
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* deferred subroutine calls
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*/
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// deferred subroutine calls
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type _defer struct {
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siz int32
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started bool
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@ -648,9 +661,7 @@ type _defer struct {
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link *_defer
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}
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/*
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* panics
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*/
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// panics
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type _panic struct {
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argp unsafe.Pointer // pointer to arguments of deferred call run during panic; cannot move - known to liblink
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arg interface{} // argument to panic
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@ -659,10 +670,7 @@ type _panic struct {
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aborted bool // the panic was aborted
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}
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/*
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* stack traces
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*/
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// stack traces
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type stkframe struct {
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fn *_func // function being run
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pc uintptr // program counter within fn
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@ -682,10 +690,8 @@ const (
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_TraceJumpStack // if traceback is on a systemstack, resume trace at g that called into it
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)
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const (
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// The maximum number of frames we print for a traceback
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_TracebackMaxFrames = 100
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)
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// The maximum number of frames we print for a traceback
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const _TracebackMaxFrames = 100
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var (
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emptystring string
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@ -716,46 +722,3 @@ var (
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islibrary bool // -buildmode=c-shared
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isarchive bool // -buildmode=c-archive
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)
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/*
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* mutual exclusion locks. in the uncontended case,
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* as fast as spin locks (just a few user-level instructions),
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* but on the contention path they sleep in the kernel.
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* a zeroed Mutex is unlocked (no need to initialize each lock).
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*/
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/*
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* sleep and wakeup on one-time events.
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* before any calls to notesleep or notewakeup,
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* must call noteclear to initialize the Note.
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* then, exactly one thread can call notesleep
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* and exactly one thread can call notewakeup (once).
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* once notewakeup has been called, the notesleep
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* will return. future notesleep will return immediately.
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* subsequent noteclear must be called only after
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* previous notesleep has returned, e.g. it's disallowed
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* to call noteclear straight after notewakeup.
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*
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* notetsleep is like notesleep but wakes up after
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* a given number of nanoseconds even if the event
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* has not yet happened. if a goroutine uses notetsleep to
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* wake up early, it must wait to call noteclear until it
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* can be sure that no other goroutine is calling
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* notewakeup.
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*
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* notesleep/notetsleep are generally called on g0,
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* notetsleepg is similar to notetsleep but is called on user g.
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*/
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// bool runtime·notetsleep(Note*, int64); // false - timeout
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// bool runtime·notetsleepg(Note*, int64); // false - timeout
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/*
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* Lock-free stack.
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* Initialize uint64 head to 0, compare with 0 to test for emptiness.
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* The stack does not keep pointers to nodes,
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* so they can be garbage collected if there are no other pointers to nodes.
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*/
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// for mmap, we only pass the lower 32 bits of file offset to the
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// assembly routine; the higher bits (if required), should be provided
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// by the assembly routine as 0.
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