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New PyGILState_ API - implements pep 311, from patch 684256.
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10 changed files with 395 additions and 131 deletions
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@ -321,6 +321,8 @@ PyEval_AcquireThread(PyThreadState *tstate)
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{
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if (tstate == NULL)
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Py_FatalError("PyEval_AcquireThread: NULL new thread state");
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/* Check someone has called PyEval_InitThreads() to create the lock */
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assert(interpreter_lock);
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PyThread_acquire_lock(interpreter_lock, 1);
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if (PyThreadState_Swap(tstate) != NULL)
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Py_FatalError(
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141
Python/pystate.c
141
Python/pystate.c
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@ -142,6 +142,7 @@ PyThreadState_New(PyInterpreterState *interp)
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tstate->tracing = 0;
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tstate->use_tracing = 0;
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tstate->tick_counter = 0;
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tstate->gilstate_counter = 0;
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tstate->dict = NULL;
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@ -259,7 +260,17 @@ PyThreadState_Swap(PyThreadState *new)
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PyThreadState *old = _PyThreadState_Current;
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_PyThreadState_Current = new;
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/* It should not be possible for more than one thread state
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to be used for a thread. Check this the best we can in debug
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builds.
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*/
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#if defined(Py_DEBUG)
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if (new) {
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PyThreadState *check = PyGILState_GetThisThreadState();
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if (check && check != new)
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Py_FatalError("Invalid thread state for this thread");
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}
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#endif
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return old;
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}
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@ -308,3 +319,131 @@ PyThreadState *
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PyThreadState_Next(PyThreadState *tstate) {
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return tstate->next;
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}
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/* Python "auto thread state" API. */
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#ifdef WITH_THREAD
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/* Keep this as a static, as it is not reliable! It can only
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ever be compared to the state for the *current* thread.
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* If not equal, then it doesn't matter that the actual
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value may change immediately after comparison, as it can't
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possibly change to the current thread's state.
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* If equal, then the current thread holds the lock, so the value can't
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change until we yield the lock.
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*/
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static int
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PyThreadState_IsCurrent(PyThreadState *tstate)
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{
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/* Must be the tstate for this thread */
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assert(PyGILState_GetThisThreadState()==tstate);
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/* On Windows at least, simple reads and writes to 32 bit values
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are atomic.
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*/
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return tstate == _PyThreadState_Current;
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}
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/* The single PyInterpreterState used by this process'
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GILState implementation
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*/
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static PyInterpreterState *autoInterpreterState = NULL;
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static int autoTLSkey = 0;
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/* Internal initialization/finalization functions called by
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Py_Initialize/Py_Finalize
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*/
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void _PyGILState_Init(PyInterpreterState *i, PyThreadState *t)
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{
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assert(i && t); /* must init with a valid states */
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autoTLSkey = PyThread_create_key();
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autoInterpreterState = i;
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/* Now stash the thread state for this thread in TLS */
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PyThread_set_key_value(autoTLSkey, (void *)t);
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assert(t->gilstate_counter==0); /* must be a new thread state */
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t->gilstate_counter = 1;
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}
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void _PyGILState_Fini(void)
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{
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PyThread_delete_key(autoTLSkey);
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autoTLSkey = 0;
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autoInterpreterState = NULL;;
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}
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/* The public functions */
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PyThreadState *PyGILState_GetThisThreadState(void)
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{
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if (autoInterpreterState==NULL || autoTLSkey==0)
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return NULL;
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return (PyThreadState *) PyThread_get_key_value(autoTLSkey);
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}
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PyGILState_STATE PyGILState_Ensure(void)
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{
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int current;
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PyThreadState *tcur;
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/* Note that we do not auto-init Python here - apart from
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potential races with 2 threads auto-initializing, pep-311
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spells out other issues. Embedders are expected to have
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called Py_Initialize() and usually PyEval_InitThreads().
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*/
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assert(autoInterpreterState); /* Py_Initialize() hasn't been called! */
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tcur = PyThread_get_key_value(autoTLSkey);
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if (tcur==NULL) {
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/* Create a new thread state for this thread */
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tcur = PyThreadState_New(autoInterpreterState);
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if (tcur==NULL)
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Py_FatalError("Couldn't create thread-state for new thread");
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PyThread_set_key_value(autoTLSkey, (void *)tcur);
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current = 0; /* new thread state is never current */
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} else
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current = PyThreadState_IsCurrent(tcur);
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if (!current)
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PyEval_RestoreThread(tcur);
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/* Update our counter in the thread-state - no need for locks:
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- tcur will remain valid as we hold the GIL.
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- the counter is safe as we are the only thread "allowed"
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to modify this value
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*/
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tcur->gilstate_counter++;
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return current ? PyGILState_LOCKED : PyGILState_UNLOCKED;
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}
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void PyGILState_Release(PyGILState_STATE oldstate)
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{
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PyThreadState *tcur = PyThread_get_key_value(autoTLSkey);
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if (tcur==NULL)
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Py_FatalError("auto-releasing thread-state, "
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"but no thread-state for this thread");
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/* We must hold the GIL and have our thread state current */
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/* XXX - remove the check - the assert should be fine,
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but while this is very new (April 2003), the extra check
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by release-only users can't hurt.
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*/
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if (!PyThreadState_IsCurrent(tcur))
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Py_FatalError("This thread state must be current when releasing");
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assert (PyThreadState_IsCurrent(tcur));
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tcur->gilstate_counter -= 1;
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assert (tcur->gilstate_counter >= 0); /* illegal counter value */
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/* If we are about to destroy this thread-state, we must
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clear it while the lock is held, as destructors may run
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*/
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if (tcur->gilstate_counter==0) {
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/* can't have been locked when we created it */
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assert(oldstate==PyGILState_UNLOCKED);
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PyThreadState_Clear(tcur);
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}
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/* Release the lock if necessary */
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if (oldstate==PyGILState_UNLOCKED)
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PyEval_ReleaseThread(tcur);
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/* Now complete destruction of the thread if necessary */
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if (tcur->gilstate_counter==0) {
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/* Delete this thread from our TLS */
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PyThread_delete_key_value(autoTLSkey);
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/* Delete the thread-state */
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PyThreadState_Delete(tcur);
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}
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}
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#endif /* WITH_THREAD */
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@ -50,6 +50,11 @@ static void call_ll_exitfuncs(void);
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extern void _PyUnicode_Init(void);
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extern void _PyUnicode_Fini(void);
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#ifdef WITH_THREAD
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extern void _PyGILState_Init(PyInterpreterState *, PyThreadState *);
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extern void _PyGILState_Fini(void);
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#endif /* WITH_THREAD */
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int Py_DebugFlag; /* Needed by parser.c */
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int Py_VerboseFlag; /* Needed by import.c */
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int Py_InteractiveFlag; /* Needed by Py_FdIsInteractive() below */
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@ -180,6 +185,11 @@ Py_Initialize(void)
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if (!Py_NoSiteFlag)
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initsite(); /* Module site */
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/* auto-thread-state API, if available */
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#ifdef WITH_THREAD
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_PyGILState_Init(interp, tstate);
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#endif /* WITH_THREAD */
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PyModule_WarningsModule = PyImport_ImportModule("warnings");
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#if defined(Py_USING_UNICODE) && defined(HAVE_LANGINFO_H) && defined(CODESET)
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@ -244,6 +254,11 @@ Py_Finalize(void)
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call_sys_exitfunc();
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initialized = 0;
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/* Cleanup auto-thread-state */
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#ifdef WITH_THREAD
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_PyGILState_Fini();
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#endif /* WITH_THREAD */
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/* Get current thread state and interpreter pointer */
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tstate = PyThreadState_Get();
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interp = tstate->interp;
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108
Python/thread.c
108
Python/thread.c
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@ -137,3 +137,111 @@ void PyThread_init_thread(void)
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#include "thread_foobar.h"
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#endif
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*/
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#ifndef Py_HAVE_NATIVE_TLS
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/* If the platform has not supplied a platform specific
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TLS implementation, provide our own.
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This code stolen from "thread_sgi.h", where it was the only
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implementation of an existing Python TLS API.
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*/
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/*
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* Per-thread data ("key") support.
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*/
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struct key {
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struct key *next;
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long id;
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int key;
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void *value;
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};
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static struct key *keyhead = NULL;
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static int nkeys = 0;
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static PyThread_type_lock keymutex = NULL;
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static struct key *find_key(int key, void *value)
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{
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struct key *p;
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long id = PyThread_get_thread_ident();
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for (p = keyhead; p != NULL; p = p->next) {
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if (p->id == id && p->key == key)
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return p;
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}
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if (value == NULL)
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return NULL;
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p = (struct key *)malloc(sizeof(struct key));
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if (p != NULL) {
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p->id = id;
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p->key = key;
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p->value = value;
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PyThread_acquire_lock(keymutex, 1);
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p->next = keyhead;
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keyhead = p;
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PyThread_release_lock(keymutex);
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}
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return p;
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}
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int PyThread_create_key(void)
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{
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if (keymutex == NULL)
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keymutex = PyThread_allocate_lock();
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return ++nkeys;
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}
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void PyThread_delete_key(int key)
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{
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struct key *p, **q;
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PyThread_acquire_lock(keymutex, 1);
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q = &keyhead;
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while ((p = *q) != NULL) {
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if (p->key == key) {
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*q = p->next;
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free((void *)p);
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/* NB This does *not* free p->value! */
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}
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else
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q = &p->next;
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}
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PyThread_release_lock(keymutex);
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}
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int PyThread_set_key_value(int key, void *value)
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{
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struct key *p = find_key(key, value);
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if (p == NULL)
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return -1;
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else
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return 0;
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}
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void *PyThread_get_key_value(int key)
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{
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struct key *p = find_key(key, NULL);
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if (p == NULL)
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return NULL;
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else
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return p->value;
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}
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void PyThread_delete_key_value(int key)
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{
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long id = PyThread_get_thread_ident();
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struct key *p, **q;
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PyThread_acquire_lock(keymutex, 1);
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q = &keyhead;
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while ((p = *q) != NULL) {
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if (p->key == key && p->id == id) {
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*q = p->next;
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free((void *)p);
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/* NB This does *not* free p->value! */
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break;
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}
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else
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q = &p->next;
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}
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PyThread_release_lock(keymutex);
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}
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#endif /* Py_HAVE_NATIVE_TLS */
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@ -377,83 +377,3 @@ void PyThread_release_lock(PyThread_type_lock lock)
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if (usunsetlock((ulock_t) lock) < 0)
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perror("usunsetlock");
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}
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/*
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* Per-thread data ("key") support.
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*/
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struct key {
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struct key *next;
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long id;
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int key;
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void *value;
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};
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static struct key *keyhead = NULL;
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static int nkeys = 0;
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static PyThread_type_lock keymutex = NULL;
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static struct key *find_key(int key, void *value)
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{
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struct key *p;
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long id = PyThread_get_thread_ident();
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for (p = keyhead; p != NULL; p = p->next) {
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if (p->id == id && p->key == key)
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return p;
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}
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if (value == NULL)
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return NULL;
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p = (struct key *)malloc(sizeof(struct key));
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if (p != NULL) {
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p->id = id;
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p->key = key;
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p->value = value;
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PyThread_acquire_lock(keymutex, 1);
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p->next = keyhead;
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keyhead = p;
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PyThread_release_lock(keymutex);
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}
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return p;
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}
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int PyThread_create_key(void)
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{
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if (keymutex == NULL)
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keymutex = PyThread_allocate_lock();
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return ++nkeys;
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}
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void PyThread_delete_key(int key)
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{
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struct key *p, **q;
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PyThread_acquire_lock(keymutex, 1);
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q = &keyhead;
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while ((p = *q) != NULL) {
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if (p->key == key) {
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*q = p->next;
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free((void *)p);
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/* NB This does *not* free p->value! */
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}
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else
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q = &p->next;
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}
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PyThread_release_lock(keymutex);
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}
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int PyThread_set_key_value(int key, void *value)
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{
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struct key *p = find_key(key, value);
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if (p == NULL)
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return -1;
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else
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return 0;
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}
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void *PyThread_get_key_value(int key)
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{
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struct key *p = find_key(key, NULL);
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if (p == NULL)
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return NULL;
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else
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return p->value;
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}
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