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authorGuido van Rossum <guido@python.org>1996-07-30 16:48:31 (GMT)
committerGuido van Rossum <guido@python.org>1996-07-30 16:48:31 (GMT)
commit3ecebf17324b138a9d10ad429c0ad55ab5de1682 (patch)
tree3f83435c33f764792ff43ea8d3de160a3122f5d2 /Python
parentf2d125bdada897e8ae1e6dd73f44d833bc0c7c15 (diff)
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Changes needed by NeXT (the only platform that seems to use this).
Diffstat (limited to 'Python')
-rw-r--r--Python/thread_cthread.h41
1 files changed, 38 insertions, 3 deletions
diff --git a/Python/thread_cthread.h b/Python/thread_cthread.h
index 1a1a860..79bcc0f 100644
--- a/Python/thread_cthread.h
+++ b/Python/thread_cthread.h
@@ -22,7 +22,7 @@ OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
******************************************************************/
-#include <cthreads.h>
+#include <mach/cthreads.h>
/*
@@ -44,7 +44,10 @@ int start_new_thread _P2(func, void (*func) _P((void *)), arg, void *arg)
dprintf(("start_new_thread called\n"));
if (!initialized)
init_thread();
- (void) cthread_fork(func, arg);
+ /* looks like solaris detaches the thread to never rejoin
+ * so well do it here
+ */
+ cthread_detach(cthread_fork((cthread_fn_t) func, arg));
return success < 0 ? 0 : 1;
}
@@ -52,6 +55,7 @@ long get_thread_ident _P0()
{
if (!initialized)
init_thread();
+ return (long) cthread_self();
}
static void do_exit_thread _P1(no_cleanup, int no_cleanup)
@@ -84,6 +88,10 @@ static void do_exit_prog _P2(status, int status, no_cleanup, int no_cleanup)
_exit(status);
else
exit(status);
+ if (no_cleanup)
+ _exit(status);
+ else
+ exit(status);
}
void exit_prog _P1(status, int status)
@@ -102,11 +110,18 @@ void _exit_prog _P1(status, int status)
*/
type_lock allocate_lock _P0()
{
+ mutex_t lock;
dprintf(("allocate_lock called\n"));
if (!initialized)
init_thread();
+ lock = mutex_alloc();
+ if (mutex_init(lock)) {
+ perror("mutex_init");
+ free((void *) lock);
+ lock = 0;
+ }
dprintf(("allocate_lock() -> %lx\n", (long)lock));
return (type_lock) lock;
}
@@ -114,13 +129,20 @@ type_lock allocate_lock _P0()
void free_lock _P1(lock, type_lock lock)
{
dprintf(("free_lock(%lx) called\n", (long)lock));
+ mutex_free(lock);
}
int acquire_lock _P2(lock, type_lock lock, waitflag, int waitflag)
{
- int success;
+ int success = FALSE;
dprintf(("acquire_lock(%lx, %d) called\n", (long)lock, waitflag));
+ if (waitflag) { /* blocking */
+ mutex_lock(lock);
+ success = TRUE;
+ } else { /* non blocking */
+ success = mutex_try_lock(lock);
+ }
dprintf(("acquire_lock(%lx, %d) -> %d\n", (long)lock, waitflag, success));
return success;
}
@@ -128,13 +150,26 @@ int acquire_lock _P2(lock, type_lock lock, waitflag, int waitflag)
void release_lock _P1(lock, type_lock lock)
{
dprintf(("release_lock(%lx) called\n", (long)lock));
+ mutex_unlock((mutex_t )lock);
}
/*
* Semaphore support.
+ *
+ * This implementation is ripped directly from the pthreads implementation.
+ * Which is to say that it is 100% non-functional at this time.
+ *
+ * Assuming the page is still up, documentation can be found at:
+ *
+ * http://www.doc.ic.ac.uk/~mac/manuals/solaris-manual-pages/solaris/usr/man/man2/_lwp_sema_wait.2.html
+ *
+ * Looking at the man page, it seems that one could easily implement a
+ * semaphore using a condition.
+ *
*/
type_sema allocate_sema _P1(value, int value)
{
+ char *sema = 0;
dprintf(("allocate_sema called\n"));
if (!initialized)
init_thread();