mirror of
https://github.com/Cockatrice/Cockatrice.git
synced 2026-09-21 09:05:10 -07:00
236 lines
No EOL
7.1 KiB
C++
236 lines
No EOL
7.1 KiB
C++
#include "replay_manager.h"
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#include "../../../client/settings/cache_settings.h"
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#include <QTimer>
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#include <libcockatrice/protocol/get_pb_extension.h>
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#include <libcockatrice/settings/interface_settings.h>
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static constexpr int TIMER_INTERVAL_MS = 200;
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static constexpr int EMPTY_SECTION_MARGIN_MS = 500;
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static QList<int> createReplayTimeline(const GameReplay *replay)
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{
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// Create list: event number -> time [ms]
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unsigned int lastEventTimestamp = 0;
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const int eventCount = replay->event_list_size();
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QList<int> replayTimeline;
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for (int i = 0; i < eventCount; ++i) {
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int nextSecondIndex = i + 1;
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while (nextSecondIndex < eventCount &&
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replay->event_list(nextSecondIndex).seconds_elapsed() == lastEventTimestamp) {
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++nextSecondIndex;
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}
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// Distribute simultaneous events evenly across 1 second.
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const int numberEventsThisSecond = nextSecondIndex - i;
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for (int k = 0; k < numberEventsThisSecond; ++k) {
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int eventMs = replay->event_list(i + k).seconds_elapsed() * 1000;
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int distributionMs = static_cast<int>(static_cast<qreal>(k) / numberEventsThisSecond * 1000);
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replayTimeline.append(eventMs + distributionMs);
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}
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if (nextSecondIndex < eventCount) {
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lastEventTimestamp = replay->event_list(nextSecondIndex).seconds_elapsed();
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}
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i += numberEventsThisSecond - 1;
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}
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return replayTimeline;
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}
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ReplayManager::ReplayManager(QObject *parent, GameReplay *replay)
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: QObject(parent), replay(replay), replayTimeline(createReplayTimeline(replay))
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{
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maxTime = replayTimeline.isEmpty() ? 0 : replayTimeline.last();
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replayTimer = new QTimer(this);
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replayTimer->setInterval(TIMER_INTERVAL_MS);
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connect(replayTimer, &QTimer::timeout, this, &ReplayManager::replayTimerTimeout);
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rewindBufferingTimer = new QTimer(this);
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rewindBufferingTimer->setSingleShot(true);
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connect(rewindBufferingTimer, &QTimer::timeout, this, &ReplayManager::processRewind);
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}
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ReplayManager::~ReplayManager()
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{
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delete replay;
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}
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void ReplayManager::skipToTime(int newTime, bool doRewindBuffering)
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{
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// check boundary conditions
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if (newTime < 0) {
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newTime = 0;
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}
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if (newTime > maxTime) {
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newTime = maxTime;
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}
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newTime -= newTime % TIMER_INTERVAL_MS; // Time should always be a multiple of the interval
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const bool isBackwardsSkip = newTime < currentProcessedTime;
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currentVisualTime = newTime;
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if (isBackwardsSkip) {
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handleBackwardsSkip(doRewindBuffering);
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} else {
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processNewEvents(FORWARD_SKIP);
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}
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timeChanged(currentVisualTime);
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}
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/**
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* @brief Handles a backwards skip in the replay timeline.
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*
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* @param doRewindBuffering When true, if multiple backward skips are made in quick succession, only a single rewind
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* is processed at the end. When false, the backwards skip will always cause an immediate rewind.
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*/
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void ReplayManager::handleBackwardsSkip(bool doRewindBuffering)
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{
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if (doRewindBuffering) {
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// We use a one-shot timer to implement the rewind buffering.
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// The rewind only happens once the timer runs out.
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// If another backwards skip happens, the timer will just get reset instead of rewinding.
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rewindBufferingTimer->stop();
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rewindBufferingTimer->start(SettingsCache::instance().userInterface().getRewindBufferingMs());
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} else {
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// otherwise, process the rewind immediately
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processRewind();
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}
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}
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void ReplayManager::processRewind()
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{
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// stop any queued-up rewinds
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rewindBufferingTimer->stop();
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// process the rewind
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currentEvent = 0;
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emit rewound();
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processNewEvents(BACKWARD_SKIP);
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}
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void ReplayManager::replayTimerTimeout()
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{
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currentVisualTime += TIMER_INTERVAL_MS;
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processNewEvents(NORMAL_PLAYBACK);
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timeChanged(currentVisualTime);
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if (skipEmptySections) {
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handleSkipEmptySection();
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}
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}
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/** @brief Processes all unprocessed events up to the current time. */
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void ReplayManager::processNewEvents(PlaybackMode playbackMode)
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{
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currentProcessedTime = currentVisualTime;
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while (currentEvent < replayTimeline.size() && replayTimeline[currentEvent] < currentProcessedTime) {
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EventProcessingOptions options;
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// backwards skip => always skip reveal windows
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// forwards skip => skip reveal windows that don't happen within a big skip of the target
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if (playbackMode == BACKWARD_SKIP || currentProcessedTime - replayTimeline[currentEvent] > BIG_SKIP_MS) {
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options |= SKIP_REVEAL_WINDOW;
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}
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// backwards skip => always skip tap animation
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// backwards skip => always skip damage animation (battlefield shimmer / life counter flash)
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if (playbackMode == BACKWARD_SKIP) {
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options |= SKIP_TAP_ANIMATION;
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options |= SKIP_DAMAGE_ANIMATION;
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}
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emit eventReplayed(replay->event_list(currentEvent), options);
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++currentEvent;
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}
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if (currentEvent == replayTimeline.size()) {
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emit replayFinished();
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replayTimer->stop();
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}
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}
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static bool hasMeaningfulEvent(const GameEventContainer &cont)
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{
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const int eventListSize = cont.event_list_size();
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for (int i = 0; i < eventListSize; ++i) {
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const GameEvent &event = cont.event_list(i);
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const auto eventType = static_cast<GameEvent::GameEventType>(getPbExtension(event));
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if (eventType != GameEvent::PLAYER_PROPERTIES_CHANGED) {
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return true;
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}
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}
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return false;
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}
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void ReplayManager::handleSkipEmptySection()
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{
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if (currentEvent == replayTimeline.size()) {
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return;
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}
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// find most recent meaningful event
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int prevEvent = std::max(0, currentEvent - 1);
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for (; prevEvent > 0 && !hasMeaningfulEvent(replay->event_list(prevEvent)); --prevEvent) {
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}
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int prevEventTime = replayTimeline.value(prevEvent);
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if (currentVisualTime - prevEventTime <= EMPTY_SECTION_MARGIN_MS) {
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return;
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}
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// find next earliest meaningful event
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int nextEvent = currentEvent;
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for (; nextEvent < replayTimeline.size() - 1 && !hasMeaningfulEvent(replay->event_list(nextEvent)); ++nextEvent) {
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}
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int nextEventTime = replayTimeline.value(nextEvent);
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if (nextEventTime - currentVisualTime <= EMPTY_SECTION_MARGIN_MS) {
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return;
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}
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// skip forward if we're not within margin of either event
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skipToTime(nextEventTime - EMPTY_SECTION_MARGIN_MS, false);
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}
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void ReplayManager::setTimeScaleFactor(qreal _timeScaleFactor)
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{
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timeScaleFactor = _timeScaleFactor;
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int interval = std::max(1, qRound(TIMER_INTERVAL_MS / timeScaleFactor));
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replayTimer->setInterval(interval);
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}
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void ReplayManager::setSkipEmptySections(bool value)
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{
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skipEmptySections = value;
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}
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void ReplayManager::startReplay()
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{
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replayTimer->start();
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}
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void ReplayManager::stopReplay()
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{
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replayTimer->stop();
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}
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void ReplayManager::setTime(int time)
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{
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// don't buffer rewinds from clicks, since clicks usually don't happen fast enough to require buffering
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skipToTime(time, false);
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}
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void ReplayManager::skipByAmount(int amount)
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{
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skipToTime(currentVisualTime + amount, amount < 0);
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} |