mirror of
https://github.com/WinampDesktop/winamp.git
synced 2024-11-24 01:47:51 -05:00
370 lines
9.4 KiB
C++
370 lines
9.4 KiB
C++
#include <bfc/platform/platform.h>
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#include "timermul.h"
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#include <api.h>
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#include <api/config/items/attribs.h>
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#include <api/config/items/cfgitem.h>
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// {9149C445-3C30-4e04-8433-5A518ED0FDDE}
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const GUID uioptions_guid =
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{ 0x9149c445, 0x3c30, 0x4e04, { 0x84, 0x33, 0x5a, 0x51, 0x8e, 0xd0, 0xfd, 0xde } };
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PtrListQuickSorted<MultiplexerServer, MultiplexerServerComparatorTID> servers_tid;
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PtrListQuickSorted<MultiplexerServer, MultiplexerServerComparatorTID> servers_mux;
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TimerMultiplexer::TimerMultiplexer() {
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timerset = 0;
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nslices = 0;
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resolution = -1;
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check_resolution = true;
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client = NULL;
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curslice = 0;
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running_timer = NULL;
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uioptions = NULL;
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justexited = 0;
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firstevent = 1;
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resetTimer(50); // initial, is changed for config value on first event
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}
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TimerMultiplexer::~TimerMultiplexer() {
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doShutdown();
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}
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void TimerMultiplexer::setClient(TimerMultiplexerClient *_client) {
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client = _client;
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}
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void TimerMultiplexer::addTimer(int ms, void *data) {
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//if (ms < 0) { DebugString("Timer with negative delay set, ignored coz the time machine service isn't ready yet\n"); }
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MultiplexedTimer *t = new MultiplexedTimer(ms, data);
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if (ms >= MAX_TIMER_DELAY) {
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lptimers.addItem(t);
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t->nexttick = Wasabi::Std::getTickCount() + t->ms;
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} else {
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timers.addItem(t);
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if (nslices > 0)
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distribute(t);
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}
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}
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void TimerMultiplexer::removeTimer(void *data) {
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if (running_timer && running_timer->data == data)
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running_timer = NULL;
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int i;
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for (i=0;i<timers.getNumItems();i++) {
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MultiplexedTimer *t = timers.enumItem(i);
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if (t->data == data) {
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removeFromWheel(t);
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timers.removeByPos(i);
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delete t;
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return;
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}
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}
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for (i=0;i<lptimers.getNumItems();i++) {
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MultiplexedTimer *t = lptimers.enumItem(i);
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if (t->data == data) {
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removeFromLowPrecision(t);
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delete t;
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return;
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}
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}
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}
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void TimerMultiplexer::setResolution(int ms) {
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resolution = ms;
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}
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void TimerMultiplexer::shutdown() {
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doShutdown();
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}
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void TimerMultiplexer::doShutdown() {
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timers.deleteAll();
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wheel.deleteAll();
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lptimers.deleteAll();
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if (timerset) {
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MultiplexerServer *s = servers_mux.findItem((const wchar_t *)this);
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if (s) {
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#ifdef WIN32
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KillTimer(NULL, s->getId());
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#elif defined(LINUX)
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#endif
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}
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timerset = 0;
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}
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}
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void TimerMultiplexer::checkResolution(DWORD now) {
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if (check_resolution == true)
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{
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if (WASABI_API_CONFIG)
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{
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if (uioptions == NULL)
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{
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uioptions = WASABI_API_CONFIG->config_getCfgItemByGuid(uioptions_guid);
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if (uioptions)
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{
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ifc_dependent *ui_change = uioptions->getDependencyPtr();
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ui_change->dependent_regViewer(this, 1);
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}
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}
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check_resolution = uioptions?false:true;
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int nresolution = uioptions ? _intVal(uioptions, L"Multiplexed timers resolution") : DEF_RES;
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nresolution = MAX(10, MIN(MAX_TIMER_DELAY/LOW_RES_DIV, nresolution));
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if (nresolution != resolution) {
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resetTimer(nresolution);
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resolution = nresolution;
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resetWheel();
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}
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}
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}
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}
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VOID CALLBACK timerMultiplexerServerProc(HWND hwnd, UINT uMsg, UINT_PTR idEvent, DWORD dwTime) {
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MultiplexerServer *s = servers_tid.findItem((const wchar_t *)&idEvent);
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if (s) s->getMultiplexer()->onServerTimer();
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}
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void TimerMultiplexer::resetTimer(int newresolution) {
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if (timerset) {
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MultiplexerServer *s = servers_mux.findItem((const wchar_t *)this);
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if (s)
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KillTimer(NULL, s->getId());
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}
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// linux port implements settimer
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UINT_PTR id = SetTimer(NULL, 0, newresolution, timerMultiplexerServerProc);
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MultiplexerServer *s = servers_mux.findItem((const wchar_t *)this);
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if (!s) {
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s = new MultiplexerServer(this, (UINT)id);
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servers_mux.addItem(s);
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servers_tid.addItem(s);
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} else {
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s->setId(id);
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servers_tid.sort();
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}
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timerset = 1;
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}
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PtrList<MultiplexedTimer> *TimerMultiplexer::getSlice(int n) {
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ASSERT(nslices > 0);
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return wheel.enumItem(n % nslices);
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}
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void TimerMultiplexer::resetWheel() {
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wheel.deleteAll();
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nslices = MAX_TIMER_DELAY / resolution;
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for (int i=0;i<nslices;i++)
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wheel.addItem(new PtrList< MultiplexedTimer >);
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curslice = 0;
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distributeAll();
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}
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void TimerMultiplexer::distributeAll() {
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for (int i=0;i<timers.getNumItems();i++) {
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distribute(timers.enumItem(i));
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}
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}
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void TimerMultiplexer::distribute(MultiplexedTimer *t) {
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ASSERT(t != NULL);
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int delay = t->ms;
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int slice = delay / resolution + curslice;
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PtrList<MultiplexedTimer> *l = getSlice(slice);
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ASSERT(l != NULL);
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l->addItem(t);
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}
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void TimerMultiplexer::onServerTimer() {
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justexited = 0;
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DWORD now = Wasabi::Std::getTickCount();
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checkResolution(now);
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runCurSlice(now);
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if ((curslice % (nslices/LOW_RES_DIV)) == 0) { // execute low precision timers every MAX_TIMER_DELAY/LOW_RES_DIV
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runLowPrecisionTimers(now);
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}
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if (!justexited) {
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curslice++;
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curslice %= nslices;
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}
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justexited = 1;
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if (firstevent) {
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firstevent = 0;
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checkResolution(Wasabi::Std::getTickCount());
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}
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}
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void TimerMultiplexer::runCurSlice(DWORD now) {
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//DebugString("Running slice %d\n", curslice);
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PtrList<MultiplexedTimer> *slice = getSlice(curslice);
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ASSERT(slice != NULL);
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// mark them clean
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int i;
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for (i=0;i<slice->getNumItems();i++)
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slice->enumItem(i)->flag = 0;
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// run events
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int n;
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do {
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n = 0;
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for (i=0;i<slice->getNumItems();i++) {
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MultiplexedTimer *t = slice->enumItem(i);
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if (t == NULL) break; // do not remove this line even if you think it's useless
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// t might have been removed by a previous runTimer in this slice, so see if it's still here and if not, ignore
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if (!timers.haveItem(t)) { slice->removeItem(t); i--; continue; }
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if (t->flag == 1) continue;
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t->flag = 1;
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int lastdelay = MAX(0, (int)(now - t->lastmscount));
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DWORD last = t->lastmscount;
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if (last == 0) last = now;
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t->lastmscount = now;
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t->lastdelay = lastdelay;
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running_timer = t;
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runTimer(now, last, t, slice, i);
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// -----------------------------------------------------------------------
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// WARNING
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//
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// below this line, you can no longer assume that t is pointing at valid
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// memory, because runTimer can eventually call removeTimer
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// -----------------------------------------------------------------------
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n++;
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}
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} while (n > 0);
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}
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void TimerMultiplexer::runTimer(DWORD now, DWORD last, MultiplexedTimer *t, PtrList<MultiplexedTimer> *slice, int pos) {
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int nextslice = curslice + t->ms / resolution;
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int spent = now - last;
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int lost = spent - t->ms;
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if (lost > 0) {
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t->lost += (float)lost / (float)t->ms;
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}
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PtrList<MultiplexedTimer> *next = getSlice(nextslice);
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ASSERT(next != NULL);
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if (slice == next) {
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nextslice++;
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next = getSlice(nextslice);
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}
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slice->removeByPos(pos);
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next->addItem(t);
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int skip = (int)t->lost;
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t->lost -= (int)t->lost;
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if (client) {
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client->onMultiplexedTimer(t->data, skip, t->lastdelay);
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// -----------------------------------------------------------------------
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// WARNING
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//
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// below this line, you can no longer assume that t is pointing at valid
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// memory, because onMultiplexedTimer can eventually call removeTimer
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// -----------------------------------------------------------------------
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}
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}
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void TimerMultiplexer::removeFromWheel(MultiplexedTimer *t) {
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for (int i=0;i<nslices;i++) {
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PtrList<MultiplexedTimer> *slice = getSlice(i);
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for (int j=0;j<slice->getNumItems();j++) {
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if (slice->enumItem(j) == t) {
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slice->removeByPos(j);
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j--;
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}
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}
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}
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}
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void TimerMultiplexer::removeFromLowPrecision(MultiplexedTimer *t) {
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for (int i=0;i<lptimers.getNumItems();i++) {
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if (lptimers.enumItem(i) == t) {
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lptimers.removeByPos(i);
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i--;
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}
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}
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}
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void TimerMultiplexer::runLowPrecisionTimers(DWORD now) {
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int restart;
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do {
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restart = 0;
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for (int i=0;i<lptimers.getNumItems();i++) {
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MultiplexedTimer *t = lptimers.enumItem(i);
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if (t->nexttick < now) {
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if (client) {
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running_timer = t;
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t->lost += (now - t->nexttick) / t->ms;
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int skip = (int)t->lost;
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t->lost -= skip; // remove integer part
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DWORD last = t->lastmscount;
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t->lastdelay = now-last;
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t->lastmscount = now;
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t->nexttick = t->nexttick+(t->ms)*(skip+1);
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client->onMultiplexedTimer(t->data, skip, t->lastdelay);
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// -----------------------------------------------------------------------
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// WARNING
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//
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// below this line, you can no longer assume that t is pointing at valid
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// memory, because onMultiplexedTimer can eventually call removeTimer
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// -----------------------------------------------------------------------
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}
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if (running_timer == NULL) { // onMultiplexedTimer called removeTimer
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restart =1;
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break;
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}
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}
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}
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} while (restart);
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}
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int TimerMultiplexer::getNumTimers() {
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return timers.getNumItems();
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}
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int TimerMultiplexer::getNumTimersLP() {
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return lptimers.getNumItems();
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}
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int TimerMultiplexer::dependentViewer_callback(ifc_dependent *item, const GUID *classguid, int cb, intptr_t param1, intptr_t param2 , void *ptr, size_t ptrlen)
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{
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if (param1 == CfgItem::Event_ATTRIBUTE_CHANGED)
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{
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check_resolution=true;
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}
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else if (param1 == CfgItem::Event_ATTRIBUTE_REMOVED)
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{
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uioptions=0;
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}
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return 1;
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}
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#define CBCLASS TimerMultiplexer
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START_DISPATCH;
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CB(DEPENDENTVIEWER_CALLBACK, dependentViewer_callback)
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END_DISPATCH;
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#undef CBCLASS
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