зеркало из https://github.com/mozilla/gecko-dev.git
239 строки
6.1 KiB
C
239 строки
6.1 KiB
C
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/*
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* The contents of this file are subject to the Netscape Public License
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* Version 1.1 (the "NPL"); you may not use this file except in
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* compliance with the NPL. You may obtain a copy of the NPL at
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* http://www.mozilla.org/NPL/
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*
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* Software distributed under the NPL is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the NPL
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* for the specific language governing rights and limitations under the
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* NPL.
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*
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* The Initial Developer of this code under the NPL is Netscape
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* Communications Corporation. Portions created by Netscape are
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* Copyright (C) 1998 Netscape Communications Corporation. All Rights
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* Reserved.
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*/
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/*
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Attached is a test program that uses the nspr1 to demonstrate a bug
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under NT4.0. The fix has already been mentioned (add a ResetEvent just
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before leaving the critical section in _PR_CondWait in hwmon.c).
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*/
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#include "prthread.h"
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#include "prtypes.h"
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#include "prinit.h"
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#include "prmon.h"
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#include "prlog.h"
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typedef struct Arg_s
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{
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PRInt32 a, b;
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} Arg_t;
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PRMonitor* gMonitor; // the monitor
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PRInt32 gReading; // number of read locks
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PRInt32 gWriteWaiting; // number of threads waiting for write lock
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PRInt32 gReadWaiting; // number of threads waiting for read lock
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PRInt32 gCounter; // a counter
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// stats
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PRInt32 gReads; // number of successful reads
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PRInt32 gMaxReads; // max number of simultaneous reads
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PRInt32 gMaxWriteWaits; // max number of writes that waited for read
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PRInt32 gMaxReadWaits; // max number of reads that waited for write wait
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void spin (PRInt32 aDelay)
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{
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PRInt32 index;
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PRInt32 delay = aDelay * 1000;
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PR_Sleep(0);
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// randomize delay a bit
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delay = (delay / 2) + (PRInt32)((float)delay *
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((float)rand () / (float)RAND_MAX));
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for (index = 0; index < delay * 10; index++)
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// consume a bunch of cpu cycles
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;
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PR_Sleep(0);
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}
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void doWriteThread (void* arg)
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{
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PRInt32 last;
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Arg_t *args = (Arg_t*)arg;
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PRInt32 aWorkDelay = args->a, aWaitDelay = args->b;
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PR_Sleep(0);
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while (1)
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{
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// -- enter write lock
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PR_EnterMonitor (gMonitor);
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if (0 < gReading) // wait for read locks to go away
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{
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PRIntervalTime fiveSecs = PR_SecondsToInterval(5);
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gWriteWaiting++;
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if (gWriteWaiting > gMaxWriteWaits) // stats
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gMaxWriteWaits = gWriteWaiting;
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while (0 < gReading)
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PR_Wait (gMonitor, fiveSecs);
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gWriteWaiting--;
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}
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// -- write lock entered
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last = gCounter;
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gCounter++;
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spin (aWorkDelay);
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PR_ASSERT (gCounter == (last + 1)); // test invariance
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// -- exit write lock
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// if (0 < gReadWaiting) // notify waiting reads (do it anyway to show off the CondWait bug)
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PR_NotifyAll (gMonitor);
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PR_ExitMonitor (gMonitor);
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// -- write lock exited
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spin (aWaitDelay);
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}
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}
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void doReadThread (void* arg)
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{
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PRInt32 last;
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Arg_t *args = (Arg_t*)arg;
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PRInt32 aWorkDelay = args->a, aWaitDelay = args->b;
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PR_Sleep(0);
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while (1)
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{
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// -- enter read lock
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PR_EnterMonitor (gMonitor);
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if (0 < gWriteWaiting) // give up the monitor to waiting writes
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{
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PRIntervalTime fiveSecs = PR_SecondsToInterval(5);
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gReadWaiting++;
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if (gReadWaiting > gMaxReadWaits) // stats
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gMaxReadWaits = gReadWaiting;
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while (0 < gWriteWaiting)
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PR_Wait (gMonitor, fiveSecs);
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gReadWaiting--;
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}
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gReading++;
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gReads++; // stats
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if (gReading > gMaxReads) // stats
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gMaxReads = gReading;
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PR_ExitMonitor (gMonitor);
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// -- read lock entered
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last = gCounter;
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spin (aWorkDelay);
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PR_ASSERT (gCounter == last); // test invariance
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// -- exit read lock
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PR_EnterMonitor (gMonitor); // read unlock
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gReading--;
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// if ((0 == gReading) && (0 < gWriteWaiting)) // notify waiting writes (do it anyway to show off the CondWait bug)
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PR_NotifyAll (gMonitor);
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PR_ExitMonitor (gMonitor);
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// -- read lock exited
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spin (aWaitDelay);
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}
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}
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void fireThread (
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char* aName, void (*aProc)(void *arg), Arg_t *aArg)
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{
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PRThread *thread = PR_CreateThread(
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PR_USER_THREAD, aProc, aArg, PR_PRIORITY_NORMAL,
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PR_LOCAL_THREAD, PR_UNJOINABLE_THREAD, 0);
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}
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int pseudoMain (int argc, char** argv, char *pad)
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{
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PRInt32 lastWriteCount = gCounter;
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PRInt32 lastReadCount = gReads;
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Arg_t a1 = {500, 250};
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Arg_t a2 = {500, 500};
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Arg_t a3 = {250, 500};
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Arg_t a4 = {750, 250};
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Arg_t a5 = {100, 750};
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Arg_t a6 = {100, 500};
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Arg_t a7 = {100, 750};
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gMonitor = PR_NewMonitor ();
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fireThread ("R1", doReadThread, &a1);
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fireThread ("R2", doReadThread, &a2);
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fireThread ("R3", doReadThread, &a3);
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fireThread ("R4", doReadThread, &a4);
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fireThread ("W1", doWriteThread, &a5);
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fireThread ("W2", doWriteThread, &a6);
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fireThread ("W3", doWriteThread, &a7);
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fireThread ("R5", doReadThread, &a1);
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fireThread ("R6", doReadThread, &a2);
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fireThread ("R7", doReadThread, &a3);
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fireThread ("R8", doReadThread, &a4);
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fireThread ("W4", doWriteThread, &a5);
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fireThread ("W5", doWriteThread, &a6);
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fireThread ("W6", doWriteThread, &a7);
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while (1)
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{
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PRInt32 writeCount, readCount;
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PRIntervalTime fiveSecs = PR_SecondsToInterval(5);
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PR_Sleep (fiveSecs); // get out of the way
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// print some stats, not threadsafe, informative only
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writeCount = gCounter;
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readCount = gReads;
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printf ("\ntick %d writes (+%d), %d reads (+%d) [max %d, %d, %d]",
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writeCount, writeCount - lastWriteCount,
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readCount, readCount - lastReadCount,
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gMaxReads, gMaxWriteWaits, gMaxReadWaits);
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lastWriteCount = writeCount;
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lastReadCount = readCount;
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gMaxReads = gMaxWriteWaits = gMaxReadWaits = 0;
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}
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return 0;
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}
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static void padStack (int argc, char** argv)
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{
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char pad[512]; /* Work around bug in nspr on windoze */
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pseudoMain (argc, argv, pad);
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}
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void main (int argc, char **argv)
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{
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PR_Init(PR_USER_THREAD, PR_PRIORITY_NORMAL, 0);
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PR_STDIO_INIT();
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padStack (argc, argv);
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}
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/* bug1test.c */
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