d6e0f5e675
Added serial port, websocket, midi and initial audio functionality.
284 lines
6.0 KiB
C++
284 lines
6.0 KiB
C++
#include "cwCommon.h"
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#include "cwLog.h"
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#include "cwCommonImpl.h"
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#include "cwMem.h"
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#include "cwThread.h"
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#include <pthread.h>
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namespace cw
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{
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namespace thread
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{
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enum
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{
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kDoExitThFl = 0x01,
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kDoPauseThFl = 0x02,
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kDoRunThFl = 0x04
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};
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typedef struct thread_str
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{
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pthread_t pThreadH;
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stateId_t stateId;
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cbFunc_t func;
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void* funcArg;
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unsigned doFlags;
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unsigned stateMicros;
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unsigned pauseMicros;
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unsigned sleepMicros = 15000;
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} thread_t;
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inline thread_t* _handleToPtr(handle_t h) { return handleToPtr<handle_t,thread_t>(h); }
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rc_t _waitForState( thread_t* p, unsigned stateId )
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{
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unsigned waitTimeMicroSecs = 0;
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while( p->stateId != stateId && waitTimeMicroSecs < p->stateMicros )
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{
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sleepUs( p->sleepMicros );
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waitTimeMicroSecs += p->sleepMicros;
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}
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return p->stateId==stateId ? kOkRC : kTimeOutRC;
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}
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void _threadCleanUpCallback(void* p)
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{
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((thread_t*)p)->stateId = kExitedThId;
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}
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void* _threadCallback(void* param)
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{
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thread_t* p = (thread_t*)param;
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// set a clean up handler - this will be called when the
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// thread terminates unexpectedly or pthread_cleanup_pop() is called.
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pthread_cleanup_push(_threadCleanUpCallback,p);
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while( cwIsFlag(p->doFlags,kDoExitThFl) == false )
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{
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// if we are in the pause state
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if( p->stateId == kPausedThId )
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{
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sleepUs( p->pauseMicros );
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// check if we have been requested to leave the pause state
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if( cwIsFlag(p->doFlags,kDoRunThFl) )
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{
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p->doFlags = cwClrFlag(p->doFlags,kDoRunThFl);
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p->stateId = kRunningThId;
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}
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}
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else
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{
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// call the user-defined function
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if( p->func(p->funcArg)==false )
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break;
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// check if we have been requested to enter the pause state
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if( cwIsFlag(p->doFlags,kDoPauseThFl) )
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{
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p->doFlags = cwClrFlag(p->doFlags,kDoPauseThFl);
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p->stateId = kPausedThId;
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}
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}
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}
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pthread_cleanup_pop(1);
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pthread_exit(NULL);
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return p;
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}
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}
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}
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cw::rc_t cw::thread::create( handle_t& hRef, cbFunc_t func, void* funcArg, int stateMicros, int pauseMicros )
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{
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rc_t rc;
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int sysRC;
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pthread_attr_t attr;
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if((rc = destroy(hRef)) != kOkRC )
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return rc;
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thread_t* p = memAllocZ<thread_t>();
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p->func = func;
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p->funcArg = funcArg;
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p->stateMicros = stateMicros;
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p->pauseMicros = pauseMicros;
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p->stateId = kPausedThId;
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if((sysRC = pthread_attr_init(&attr)) != 0)
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{
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p->stateId = kNotInitThId;
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rc = cwLogSysError(kOpFailRC,sysRC,"Thread attribute init failed.");
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}
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else
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if ((sysRC = pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_DETACHED)) != 0)
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{
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p->stateId = kNotInitThId;
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rc = cwLogSysError(kOpFailRC,sysRC,"Thread set detach attribute failed.");
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}
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else
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if((sysRC = pthread_create(&p->pThreadH, &attr, _threadCallback, (void*)p )) != 0 )
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{
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p->stateId = kNotInitThId;
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rc = cwLogSysError(kOpFailRC,sysRC,"Thread create failed.");
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}
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hRef.set(p);
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return rc;
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}
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cw::rc_t cw::thread::destroy( handle_t& hRef )
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{
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rc_t rc = kOkRC;
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if( !hRef.isValid() )
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return rc;
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thread_t* p = _handleToPtr(hRef);
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// tell the thread to exit
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p->doFlags = cwSetFlag(p->doFlags,kDoExitThFl);
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// wait for the thread to exit and then deallocate the thread object
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if((rc = _waitForState(p,kExitedThId)) != kOkRC )
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return cwLogError(rc,"Thread timed out waiting for destroy.");
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memRelease(p);
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hRef.clear();
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return rc;
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}
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cw::rc_t cw::thread::pause( handle_t h, unsigned cmdFlags )
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{
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rc_t rc = kOkRC;
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bool pauseFl = cwIsFlag(cmdFlags,kPauseFl);
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bool waitFl = cwIsFlag(cmdFlags,kWaitFl);
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thread_t* p = _handleToPtr(h);
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bool isPausedFl = p->stateId == kPausedThId;
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unsigned waitId;
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if( isPausedFl == pauseFl )
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return kOkRC;
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if( pauseFl )
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{
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p->doFlags = cwSetFlag(p->doFlags,kDoPauseThFl);
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waitId = kPausedThId;
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}
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else
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{
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p->doFlags = cwSetFlag(p->doFlags,kDoRunThFl);
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waitId = kRunningThId;
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}
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if( waitFl )
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rc = _waitForState(p,waitId);
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if( rc != kOkRC )
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cwLogError(rc,"Thread timed out waiting for '%s'.", pauseFl ? "pause" : "un-pause");
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return rc;
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}
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cw::rc_t cw::thread::unpause( handle_t h )
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{ return pause( h, kWaitFl); }
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cw::thread::stateId_t cw::thread::state( handle_t h )
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{
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thread_t* p = _handleToPtr(h);
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return p->stateId;
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}
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unsigned cw::thread::id()
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{ return static_cast<unsigned>(pthread_self()); }
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namespace cw
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{
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bool _threadTestCb( void* p )
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{
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unsigned* ip = (unsigned*)p;
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ip[0]++;
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return true;
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}
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}
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cw::rc_t cw::threadTest()
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{
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thread::handle_t h;
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unsigned val = 0;
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rc_t rc;
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char c = 0;
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if((rc = thread::create(h,_threadTestCb,&val)) != kOkRC )
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return rc;
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if((rc = thread::pause(h,0)) != kOkRC )
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goto errLabel;
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cwLogInfo("o=print p=pause s=state q=quit\n");
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while( c != 'q' )
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{
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c = (char)fgetc(stdin);
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fflush(stdin);
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switch(c)
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{
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case 'o':
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cwLogInfo("val: 0x%x\n",val);
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break;
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case 's':
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cwLogInfo("state=%i\n",thread::state(h));
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break;
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case 'p':
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{
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if( thread::state(h) == thread::kPausedThId )
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rc = thread::pause(h,thread::kWaitFl);
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else
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rc = thread::pause(h,thread::kPauseFl|thread::kWaitFl);
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if( rc == kOkRC )
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cwLogInfo("new state:%i\n", thread::state(h));
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else
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{
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cwLogError(rc,"threadPause() test failed.");
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goto errLabel;
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}
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}
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break;
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case 'q':
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break;
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//default:
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//cwLogInfo("Unknown:%c\n",c);
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}
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}
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errLabel:
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rc_t rc0 = rc = thread::destroy(h);
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return rc == kOkRC ? rc0 : rc;
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}
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