mirror of
https://github.com/ZDoom/gzdoom-gles.git
synced 2024-11-28 06:53:40 +00:00
- Made sdl/i_system.cpp:I_GetTimePolled() functionally equivalent to the
Win32 version. - Updated fmod_wrap.h and fmodsound.cpp for FMOD 4.20. - GCC warning removal. SVN r1286 (trunk)
This commit is contained in:
parent
fb1af415f5
commit
c1cefee2f4
8 changed files with 68 additions and 34 deletions
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@ -1,3 +1,9 @@
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November 8, 2008
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- Made sdl/i_system.cpp:I_GetTimePolled() functionally equivalent to the
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Win32 version.
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- Updated fmod_wrap.h and fmodsound.cpp for FMOD 4.20.
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- GCC warning removal.
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November 2, 2008 (Changes by Graf Zahl)
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- Fixed: The TEXTURES parser didn't report an error for invalid keywords.
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- Fixed: The DECORATE expression evaluator was too strict with missing jump labels.
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@ -87,7 +87,7 @@ DWORD LanguageIDs[4] =
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int (*I_GetTime) (bool saveMS);
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int (*I_WaitForTic) (int);
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void (*I_FreezTime) (bool frozen);
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void (*I_FreezeTime) (bool frozen);
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void I_Tactile (int on, int off, int total)
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{
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@ -117,6 +117,7 @@ unsigned int I_MSTime (void)
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static DWORD TicStart;
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static DWORD TicNext;
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static DWORD BaseTime;
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static int TicFrozen;
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//
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@ -131,13 +132,17 @@ int I_GetTimePolled (bool saveMS)
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}
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DWORD tm = SDL_GetTicks ();
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if (BaseTime == 0)
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{
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BaseTime = tm;
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}
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if (saveMS)
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{
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TicStart = tm;
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TicNext = Scale ((Scale (tm, TICRATE, 1000) + 1), 1000, TICRATE);
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}
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return Scale (tm, TICRATE, 1000);
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return Scale (tm - BaseTime, TICRATE, 1000);
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}
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int I_WaitForTicPolled (int prevtic)
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@ -151,22 +156,22 @@ int I_WaitForTicPolled (int prevtic)
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return time;
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}
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void I_FreezeTimePolled (bool frozen)
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{
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if (frozen)
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{
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assert(TicFrozen == 0);
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TicFrozen = I_GetTimePolled(false);
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}
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else
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{
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assert(TicFrozen != 0);
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int froze = TicFrozen;
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TicFrozen = 0;
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int now = I_GetTimePolled(false);
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basetime += (now - froze) * 1000 / TICRATE;
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}
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}
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void I_FreezeTimePolled (bool frozen)
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{
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if (frozen)
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{
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assert(TicFrozen == 0);
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TicFrozen = I_GetTimePolled(false);
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}
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else
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{
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assert(TicFrozen != 0);
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int froze = TicFrozen;
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TicFrozen = 0;
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int now = I_GetTimePolled(false);
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BaseTime += (now - froze) * 1000 / TICRATE;
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}
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}
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// Returns the fractional amount of a tic passed since the most recent tic
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fixed_t I_GetTimeFrac (uint32 *ms)
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@ -193,6 +193,8 @@ namespace FMOD
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// Userdata set/get.
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FMOD_RESULT setUserData (void *userdata) { return FMOD_System_SetUserData(this, userdata); }
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FMOD_RESULT getUserData (void **userdata) { return FMOD_System_GetUserData(this, userdata); }
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FMOD_RESULT getMemoryInfo (unsigned int memorybits, unsigned int event_memorybits, unsigned int *memoryused, unsigned int *memoryused_array) { return FMOD_System_GetMemoryInfo(this, memorybits, event_memorybits, memoryused, memoryused_array); }
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};
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/*
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@ -256,6 +258,8 @@ namespace FMOD
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// Userdata set/get.
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FMOD_RESULT setUserData (void *userdata) { return FMOD_Sound_SetUserData(this, userdata); }
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FMOD_RESULT getUserData (void **userdata) { return FMOD_Sound_GetUserData(this, userdata); }
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FMOD_RESULT getMemoryInfo (unsigned int memorybits, unsigned int event_memorybits, unsigned int *memoryused, unsigned int *memoryused_array) { return FMOD_Sound_GetMemoryInfo(this, memorybits, event_memorybits, memoryused, memoryused_array); }
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};
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/*
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@ -299,7 +303,9 @@ namespace FMOD
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FMOD_RESULT setChannelGroup (ChannelGroup *channelgroup) { return FMOD_Channel_SetChannelGroup(this, (FMOD_CHANNELGROUP *)channelgroup); }
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FMOD_RESULT getChannelGroup (ChannelGroup **channelgroup) { return FMOD_Channel_GetChannelGroup(this, (FMOD_CHANNELGROUP **)channelgroup); }
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FMOD_RESULT setCallback (FMOD_CHANNEL_CALLBACKTYPE type, FMOD_CHANNEL_CALLBACK callback, int command) { return FMOD_Channel_SetCallback(this, type, callback, command); }
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FMOD_RESULT setCallback (FMOD_CHANNEL_CALLBACK callback) { return FMOD_Channel_SetCallback(this, callback); }
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FMOD_RESULT setLowPassGain (float gain) { return FMOD_Channel_SetLowPassGain(this, gain); }
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FMOD_RESULT getLowPassGain (float *gain) { return FMOD_Channel_GetLowPassGain(this, gain); }
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// 3D functionality.
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FMOD_RESULT set3DAttributes (const FMOD_VECTOR *pos, const FMOD_VECTOR *vel) { return FMOD_Channel_Set3DAttributes(this, pos, vel); }
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@ -345,6 +351,8 @@ namespace FMOD
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// Userdata set/get.
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FMOD_RESULT setUserData (void *userdata) { return FMOD_Channel_SetUserData(this, userdata); }
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FMOD_RESULT getUserData (void **userdata) { return FMOD_Channel_GetUserData(this, userdata); }
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FMOD_RESULT getMemoryInfo (unsigned int memorybits, unsigned int event_memorybits, unsigned int *memoryused, unsigned int *memoryused_array) { return FMOD_Channel_GetMemoryInfo(this, memorybits, event_memorybits, memoryused, memoryused_array); }
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};
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/*
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@ -402,6 +410,8 @@ namespace FMOD
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// Userdata set/get.
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FMOD_RESULT setUserData (void *userdata) { return FMOD_ChannelGroup_SetUserData(this, userdata); }
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FMOD_RESULT getUserData (void **userdata) { return FMOD_ChannelGroup_GetUserData(this, userdata); }
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FMOD_RESULT getMemoryInfo (unsigned int memorybits, unsigned int event_memorybits, unsigned int *memoryused, unsigned int *memoryused_array) { return FMOD_ChannelGroup_GetMemoryInfo(this, memorybits, event_memorybits, memoryused, memoryused_array); }
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};
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/*
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@ -438,6 +448,8 @@ namespace FMOD
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// Userdata set/get.
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FMOD_RESULT setUserData (void *userdata) { return FMOD_SoundGroup_SetUserData(this, userdata); }
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FMOD_RESULT getUserData (void **userdata) { return FMOD_SoundGroup_GetUserData(this, userdata); }
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FMOD_RESULT getMemoryInfo (unsigned int memorybits, unsigned int event_memorybits, unsigned int *memoryused, unsigned int *memoryused_array) { return FMOD_SoundGroup_GetMemoryInfo(this, memorybits, event_memorybits, memoryused, memoryused_array); }
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};
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/*
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@ -489,6 +501,8 @@ namespace FMOD
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// Userdata set/get.
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FMOD_RESULT setUserData (void *userdata) { return FMOD_DSP_SetUserData(this, userdata); }
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FMOD_RESULT getUserData (void **userdata) { return FMOD_DSP_GetUserData(this, userdata); }
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FMOD_RESULT getMemoryInfo (unsigned int memorybits, unsigned int event_memorybits, unsigned int *memoryused, unsigned int *memoryused_array) { return FMOD_DSP_GetMemoryInfo(this, memorybits, event_memorybits, memoryused, memoryused_array); }
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};
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// Userdata set/get.
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FMOD_RESULT setUserData (void *userdata) { return FMOD_DSPConnection_SetUserData(this, userdata); }
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FMOD_RESULT getUserData (void **userdata) { return FMOD_DSPConnection_GetUserData(this, userdata); }
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FMOD_RESULT getMemoryInfo (unsigned int memorybits, unsigned int event_memorybits, unsigned int *memoryused, unsigned int *memoryused_array) { return FMOD_DSPConnection_GetMemoryInfo(this, memorybits, event_memorybits, memoryused, memoryused_array); }
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};
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@ -555,6 +571,8 @@ namespace FMOD
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// Userdata set/get.
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FMOD_RESULT setUserData (void *userdata) { return FMOD_Geometry_SetUserData(this, userdata); }
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FMOD_RESULT getUserData (void **userdata) { return FMOD_Geometry_GetUserData(this, userdata); }
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FMOD_RESULT getMemoryInfo (unsigned int memorybits, unsigned int event_memorybits, unsigned int *memoryused, unsigned int *memoryused_array) { return FMOD_Geometry_GetMemoryInfo(this, memorybits, event_memorybits, memoryused, memoryused_array); }
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};
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@ -583,6 +601,8 @@ namespace FMOD
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// Userdata set/get.
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FMOD_RESULT setUserData (void *userdata) { return FMOD_Reverb_SetUserData(this, userdata); }
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FMOD_RESULT getUserData (void **userdata) { return FMOD_Reverb_GetUserData(this, userdata); }
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FMOD_RESULT getMemoryInfo (unsigned int memorybits, unsigned int event_memorybits, unsigned int *memoryused, unsigned int *memoryused_array) { return FMOD_Reverb_GetMemoryInfo(this, memorybits, event_memorybits, memoryused, memoryused_array); }
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};
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}
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@ -1603,7 +1603,7 @@ FISoundChannel *FMODSoundRenderer::CommonChannelSetup(FMOD::Channel *chan, FISou
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chan->getDelay(FMOD_DELAYTYPE_DSPCLOCK_START, &schan->StartTime.Hi, &schan->StartTime.Lo);
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}
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chan->setUserData(schan);
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chan->setCallback(FMOD_CHANNEL_CALLBACKTYPE_END, ChannelEndCallback, 0);
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chan->setCallback(ChannelCallback);
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GRolloff = NULL;
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return schan;
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}
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//==========================================================================
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//
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// FMODSoundRenderer :: ChannelEndCallback static
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// FMODSoundRenderer :: ChannelCallback static
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//
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// Called when the channel finishes playing.
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// Handles when a channel finishes playing. This is only called when
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// System::update is called and is therefore asynchronous with the actual
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// end of the channel.
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//
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//==========================================================================
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FMOD_RESULT F_CALLBACK FMODSoundRenderer::ChannelEndCallback
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(FMOD_CHANNEL *channel, FMOD_CHANNEL_CALLBACKTYPE type,
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int cmd, unsigned int data1, unsigned int data2)
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FMOD_RESULT F_CALLBACK FMODSoundRenderer::ChannelCallback
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(FMOD_CHANNEL *channel, FMOD_CHANNEL_CALLBACKTYPE type, void *data1, void *data2)
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{
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assert(type == FMOD_CHANNEL_CALLBACKTYPE_END);
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if (type != FMOD_CHANNEL_CALLBACKTYPE_END)
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{
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return FMOD_OK;
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}
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FMOD::Channel *chan = (FMOD::Channel *)channel;
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FISoundChannel *schan;
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QWORD_UNION DSPClock;
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int OutputRate;
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static FMOD_RESULT F_CALLBACK ChannelEndCallback
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(FMOD_CHANNEL *channel, FMOD_CHANNEL_CALLBACKTYPE type, int cmd, unsigned int data1, unsigned int data2);
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static FMOD_RESULT F_CALLBACK ChannelCallback(FMOD_CHANNEL *channel, FMOD_CHANNEL_CALLBACKTYPE type, void *data1, void *data2);
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static float F_CALLBACK RolloffCallback(FMOD_CHANNEL *channel, float distance);
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void HandleChannelDelay(FMOD::Channel *chan, FISoundChannel *reuse_chan, bool abstime, float freq) const;
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variables.ShrinkToFit();
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qsort(&variables[0], variables.Size(), sizeof(variables[0]), varcmp);
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}
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}
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}
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@ -2666,7 +2666,7 @@ ExpVal FxMultiNameState::EvalExpression (AActor *self)
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{
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const char *dot="";
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Printf("Jump target '");
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for (int i=0;i<names.Size();i++)
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for (unsigned int i=0;i<names.Size();i++)
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{
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Printf("%s%s", dot, names[i].GetChars());
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dot = ".";
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FStateExpressions::~FStateExpressions()
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{
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for(unsigned i=0; i<Size(); i++)
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for(int i=0; i<Size(); i++)
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{
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if (expressions[i].expr != NULL && !expressions[i].cloned)
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{
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FCompileContext ctx;
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ctx.lax = true;
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for(unsigned i=0; i<Size(); i++)
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for(int i=0; i<Size(); i++)
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{
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if (expressions[i].cloned)
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{
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}
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}
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for(unsigned i=0; i<Size(); i++)
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for(int i=0; i<Size(); i++)
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{
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if (expressions[i].expr != NULL)
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{
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@ -93,4 +93,4 @@ struct FExpressionType
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};
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#endif
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#endif
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