wiiu: initial changes from re3

This commit is contained in:
GaryOderNichts 2021-02-01 22:54:46 +01:00
parent 3e0dbf42d4
commit acdf6a8505
83 changed files with 3316 additions and 17126 deletions

4
.gitignore vendored
View File

@ -358,3 +358,7 @@ sdk/
codewarrior/reVC_Data/
codewarrior/Release/
codewarrior/Debug/
*.rpx
*.elf
/.vscode

18
.gitmodules vendored
View File

@ -1,16 +1,6 @@
[submodule "vendor/ogg"]
path = vendor/ogg
url = https://github.com/xiph/ogg.git
branch = master
[submodule "vendor/opus"]
path = vendor/opus
url = https://github.com/xiph/opus.git
branch = master
[submodule "vendor/opusfile"]
path = vendor/opusfile
url = https://github.com/xiph/opusfile.git
branch = master
[submodule "vendor/librw"]
path = vendor/librw
url = https://github.com/aap/librw.git
branch = master
url = https://github.com/GaryOderNichts/librw
[submodule "vendor/openal-soft"]
path = vendor/openal-soft
url = https://github.com/GaryOderNichts/openal-soft

View File

@ -1,32 +1,25 @@
{
"configurations": [
{
"name": "Mac",
"includePath": ["${default}"],
"defines": [],
"macFrameworkPath": [
"/Applications/Xcode.app/Contents/Developer/Platforms/MacOSX.platform/Developer/SDKs/MacOSX.sdk/System/Library/Frameworks"
],
"compilerPath": "/opt/local/bin/clang",
"compilerArgs": ["-g"],
"cStandard": "gnu11",
"cppStandard": "gnu++14",
"browse": {
"path": [
"/opt/local/include",
"/Applications/Xcode.app/Contents/Developer/Platforms/MacOSX.platform/Developer/SDKs/MacOSX.sdk/usr/include"
]
}
},
{
"name": "Linux",
"includePath": ["${default}"],
"defines": ["XDG_ROOT"],
"compilerPath": "/usr/bin/gcc",
"compilerArgs": ["-ggdb"],
"cStandard": "gnu11",
"cppStandard": "gnu++14"
}
],
"version": 4
"configurations": [
{
"name": "Linux",
"includePath": [
"${workspaceFolder}/**",
"${WUT_ROOT}/include",
"../librw"
],
"defines": [
"__WIIU__",
"__WUT__",
"LIBRW",
"AUDIO_OAL",
"BIGENDIAN",
"__FILENAME__=\"a\""
],
"compilerPath": "/usr/bin/gcc",
"cStandard": "gnu18",
"cppStandard": "gnu++14",
"intelliSenseMode": "gcc-x64"
}
],
"version": 4
}

89
.vscode/launch.json vendored
View File

@ -1,89 +0,0 @@
{
"configurations": [
{
"MIMode": "gdb",
"args": [],
"cwd": "${workspaceFolder}",
"environment": [],
"externalConsole": false,
"name": "(gdb) Launch (Linux Debug)",
"preLaunchTask": "Compile (Debug Linux x64)",
"program": "${workspaceFolder}/bin/linux-amd64-librw_gl3_glfw-oal/Debug/re3",
"request": "launch",
"setupCommands": [
{
"description": "Enable pretty-printing for gdb",
"ignoreFailures": true,
"text": "-enable-pretty-printing"
}
],
"stopAtEntry": false,
"targetArchitecture": "x64",
"type": "cppdbg"
},
{
"MIMode": "gdb",
"args": [],
"cwd": "${workspaceFolder}",
"environment": [],
"externalConsole": false,
"name": "(gdb) Launch (Linux Release)",
"preLaunchTask": "Compile (Release Linux x64)",
"program": "${workspaceFolder}/bin/linux-amd64-librw_gl3_glfw-oal/Release/re3",
"request": "launch",
"setupCommands": [
{
"description": "Enable pretty-printing for gdb",
"ignoreFailures": true,
"text": "-enable-pretty-printing"
}
],
"stopAtEntry": false,
"targetArchitecture": "x64",
"type": "cppdbg"
},
{
"MIMode": "lldb",
"args": [],
"cwd": "${workspaceFolder}",
"environment": [],
"externalConsole": false,
"name": "(lldb) Launch (macOS Debug)",
"preLaunchTask": "Compile (Debug macOS x64)",
"program": "${workspaceFolder}/bin/macosx-amd64-librw_gl3_glfw-oal/Debug/re3.app",
"request": "launch",
"setupCommands": [
{
"description": "Enable pretty-printing for lldb",
"ignoreFailures": true,
"text": "-enable-pretty-printing"
}
],
"stopAtEntry": false,
"targetArchitecture": "x64",
"type": "cppdbg"
},
{
"MIMode": "lldb",
"args": [],
"cwd": "${workspaceFolder}",
"environment": [],
"externalConsole": false,
"name": "(lldb) Launch (macOS Release)",
"preLaunchTask": "Compile (Release macOS x64)",
"program": "${workspaceFolder}/bin/macosx-amd64-librw_gl3_glfw-oal/Release/re3.app",
"request": "launch",
"setupCommands": [
{
"description": "Enable pretty-printing for lldb",
"ignoreFailures": true,
"text": "-enable-pretty-printing"
}
],
"stopAtEntry": false,
"targetArchitecture": "x64",
"type": "cppdbg"
}
],
"version": "0.2.0"
}

95
.vscode/settings.json vendored
View File

@ -1,30 +1,69 @@
{
"C_Cpp.default.cStandard": "gnu11",
"C_Cpp.default.cppStandard": "gnu++14",
"C_Cpp.default.includePath": [
"src/animation",
"src/audio",
"src/control",
"src/core",
"src/entities",
"src/extras",
"src/fakerw",
"src/math",
"src/modelinfo",
"src/objects",
"src/peds",
"src/render",
"src/rw",
"src/save",
"src/skel",
"src/text",
"src/vehicles",
"src/weapons",
"vendor/librw"
],
"C_Cpp.vcFormat.indent.gotoLabels": "leftmostColumn",
"C_Cpp.vcFormat.space.pointerReferenceAlignment": "right",
"cSpell.enabled": false,
"files.trimFinalNewlines": false,
"files.trimTrailingWhitespace": false
"files.associations": {
"*.utheme": "ini",
"chrono": "cpp",
"random": "cpp",
"limits": "cpp",
"valarray": "cpp",
"*.tcc": "cpp",
"fstream": "cpp",
"memory_resource": "cpp",
"*.idl": "cpp",
"array": "cpp",
"string_view": "cpp",
"initializer_list": "cpp",
"utility": "cpp",
"typeinfo": "cpp",
"cmath": "cpp",
"string": "cpp",
"cctype": "cpp",
"clocale": "cpp",
"csignal": "cpp",
"cstdarg": "cpp",
"cstddef": "cpp",
"cstdio": "cpp",
"cstdlib": "cpp",
"cstring": "cpp",
"ctime": "cpp",
"cwchar": "cpp",
"cwctype": "cpp",
"atomic": "cpp",
"bit": "cpp",
"bitset": "cpp",
"complex": "cpp",
"condition_variable": "cpp",
"cstdint": "cpp",
"deque": "cpp",
"list": "cpp",
"map": "cpp",
"set": "cpp",
"unordered_map": "cpp",
"vector": "cpp",
"exception": "cpp",
"algorithm": "cpp",
"functional": "cpp",
"iterator": "cpp",
"memory": "cpp",
"numeric": "cpp",
"optional": "cpp",
"ratio": "cpp",
"system_error": "cpp",
"tuple": "cpp",
"type_traits": "cpp",
"iomanip": "cpp",
"iosfwd": "cpp",
"iostream": "cpp",
"istream": "cpp",
"mutex": "cpp",
"new": "cpp",
"ostream": "cpp",
"sstream": "cpp",
"stdexcept": "cpp",
"streambuf": "cpp",
"thread": "cpp",
"cfenv": "cpp",
"cinttypes": "cpp",
"typeindex": "cpp",
"variant": "cpp"
}
}

95
.vscode/tasks.json vendored
View File

@ -1,95 +0,0 @@
{
"tasks": [
{
"args": ["--with-librw", "gmake2"],
"command": "./premake5Linux",
"label": "Premake (Linux)",
"problemMatcher": "$gcc",
"type": "shell"
},
{
"args": ["--with-librw", "gmake2"],
"command": "premake5",
"label": "Premake (macOS)",
"problemMatcher": "$gcc",
"type": "shell"
},
{
"args": [
"-j5",
"config=debug_linux-amd64-librw_gl3_glfw-oal",
"verbose=1"
],
"command": "make",
"dependsOn": "Premake (Linux)",
"group": {
"isDefault": true,
"kind": "build"
},
"label": "Compile (Debug Linux x64)",
"options": {
"cwd": "${workspaceFolder}/build"
},
"problemMatcher": "$gcc",
"type": "shell"
},
{
"args": [
"-j5",
"config=release_linux-amd64-librw_gl3_glfw-oal",
"verbose=1"
],
"command": "make",
"dependsOn": "Premake (Linux)",
"group": {
"isDefault": true,
"kind": "build"
},
"label": "Compile (Release Linux x64)",
"options": {
"cwd": "${workspaceFolder}/build"
},
"problemMatcher": "$gcc",
"type": "shell"
},
{
"args": [
"-j5",
"config=debug_macosx-amd64-librw_gl3_glfw-oal",
"verbose=1"
],
"command": "make",
"dependsOn": "Premake (macOS)",
"group": {
"isDefault": true,
"kind": "build"
},
"label": "Compile (Debug macOS x64)",
"options": {
"cwd": "${workspaceFolder}/build"
},
"problemMatcher": "$gcc",
"type": "shell"
},
{
"args": [
"-j5",
"config=release_macosx-amd64-librw_gl3_glfw-oal",
"verbose=1"
],
"command": "make",
"dependsOn": "Premake (macOS)",
"group": {
"isDefault": true,
"kind": "build"
},
"label": "Compile (Release macOS x64)",
"options": {
"cwd": "${workspaceFolder}/build"
},
"problemMatcher": "$gcc",
"type": "shell"
}
],
"version": "2.0.0"
}

186
Makefile Normal file
View File

@ -0,0 +1,186 @@
RELEASE_BUILD := 0
CHANNEL_BUILD := 0
#-------------------------------------------------------------------------------
.SUFFIXES:
#-------------------------------------------------------------------------------
ifeq ($(strip $(DEVKITPRO)),)
$(error "Please set DEVKITPRO in your environment. export DEVKITPRO=<path to>/devkitpro")
endif
TOPDIR ?= $(CURDIR)
include $(DEVKITPRO)/wut/share/wut_rules
#-------------------------------------------------------------------------------
# TARGET is the name of the output
# BUILD is the directory where object files & intermediate files will be placed
# SOURCES is a list of directories containing source code
# DATA is a list of directories containing data files
# INCLUDES is a list of directories containing header files
#-------------------------------------------------------------------------------
TARGET := reVC
BUILD := build
SOURCES := src \
src/animation \
src/audio \
src/audio/oal \
src/audio/eax \
src/buildings \
src/collision \
src/control \
src/core \
src/entities \
src/extras \
src/fakerw \
src/math \
src/modelinfo \
src/objects \
src/peds \
src/render \
src/rw \
src/save \
src/skel \
src/skel/wiiu \
src/skel/wiiu/debug \
src/text \
src/vehicles \
src/weapons
DATA := data
INCLUDES := $(SOURCES) \
vendor/librw \
vendor/librw/inc \
vendor/openal-soft/include \
vendor/dr_libs
#-------------------------------------------------------------------------------
# options for code generation
#-------------------------------------------------------------------------------
CFLAGS := -Wall -O2 -ffunction-sections -Wno-strict-aliasing \
-Wno-unknown-pragmas -Wno-parentheses -Wno-sign-compare -Wno-stringop-truncation -Wno-unused-variable \
$(MACHDEP)
CFLAGS += $(INCLUDE) -D__WIIU__ -D__WUT__ -DLIBRW -DAUDIO_OAL -DrwBIGENDIAN -DBIGENDIAN
CXXFLAGS := $(CFLAGS)
ASFLAGS := $(ARCH)
LDFLAGS = $(ARCH) $(RPXSPECS) -Wl,-Map,$(notdir $*.map)
ifeq ($(RELEASE_BUILD), 0)
CFLAGS += -g -D_DEBUG_BUILD_
CXXFLAGS += -g -D_DEBUG_BUILD_
ASFLAGS += -g
LDFLAGS += -g
endif
ifeq ($(CHANNEL_BUILD), 1)
CFLAGS += -DWIIU_CHANNEL
CXXFLAGS += -DWIIU_CHANNEL
endif
LIBS := -lrw -lmpg123 -lsndfile -lopenal -lSDL2 -lwut
#-------------------------------------------------------------------------------
# list of directories containing libraries, this must be the top level
# containing include and lib
#-------------------------------------------------------------------------------
LIBDIRS := $(PORTLIBS) $(WUT_ROOT) $(TOPDIR)/vendor/librw $(TOPDIR)/vendor/openal-soft
#-------------------------------------------------------------------------------
# no real need to edit anything past this point unless you need to add additional
# rules for different file extensions
#-------------------------------------------------------------------------------
ifneq ($(BUILD),$(notdir $(CURDIR)))
#-------------------------------------------------------------------------------
export OUTPUT := $(CURDIR)/$(TARGET)
export TOPDIR := $(CURDIR)
export VPATH := $(foreach dir,$(SOURCES),$(CURDIR)/$(dir)) \
$(foreach dir,$(DATA),$(CURDIR)/$(dir))
export DEPSDIR := $(CURDIR)/$(BUILD)
CFILES := $(foreach dir,$(SOURCES),$(notdir $(wildcard $(dir)/*.c)))
CPPFILES := $(foreach dir,$(SOURCES),$(notdir $(wildcard $(dir)/*.cpp)))
BINFILES := $(foreach dir,$(DATA),$(notdir $(wildcard $(dir)/*.*)))
#-------------------------------------------------------------------------------
# use CXX for linking C++ projects, CC for standard C
#-------------------------------------------------------------------------------
ifeq ($(strip $(CPPFILES)),)
#-------------------------------------------------------------------------------
export LD := $(CC)
#-------------------------------------------------------------------------------
else
#-------------------------------------------------------------------------------
export LD := $(CXX)
#-------------------------------------------------------------------------------
endif
#-------------------------------------------------------------------------------
export OFILES_BIN := $(addsuffix .o,$(BINFILES))
export OFILES_SRC := $(CPPFILES:.cpp=.o) $(CFILES:.c=.o)
export OFILES := $(OFILES_BIN) $(OFILES_SRC)
export HFILES_BIN := $(addsuffix .h,$(subst .,_,$(BINFILES)))
export INCLUDE := $(foreach dir,$(INCLUDES),-I$(CURDIR)/$(dir)) \
$(foreach dir,$(LIBDIRS),-I$(dir)/include) \
-I$(CURDIR)/$(BUILD)
export LIBPATHS := $(foreach dir,$(LIBDIRS),-L$(dir)/lib)
.PHONY: $(BUILD) clean vendor all
#-------------------------------------------------------------------------------
all: $(BUILD)
vendor:
@echo Building librw
@$(MAKE) --no-print-directory -C $(TOPDIR)/vendor/librw
@echo Building openal-soft
@$(MAKE) --no-print-directory -C $(TOPDIR)/vendor/openal-soft
$(BUILD): | vendor
@[ -d $@ ] || mkdir -p $@
@$(MAKE) --no-print-directory -C $(BUILD) -f $(CURDIR)/Makefile
#-------------------------------------------------------------------------------
clean:
@$(MAKE) --no-print-directory -C $(TOPDIR)/vendor/librw clean
@$(MAKE) --no-print-directory -C $(TOPDIR)/vendor/openal-soft clean
@echo clean ...
@rm -fr $(BUILD) $(TARGET).rpx $(TARGET).elf $(TARGET).strip.elf
#-------------------------------------------------------------------------------
else
.PHONY: all
DEPENDS := $(OFILES:.o=.d)
#-------------------------------------------------------------------------------
# main targets
#-------------------------------------------------------------------------------
all : $(OUTPUT).rpx
$(OUTPUT).rpx : $(OUTPUT).elf
$(OUTPUT).elf : $(OFILES)
$(OFILES_SRC) : $(HFILES_BIN)
#-------------------------------------------------------------------------------
# you need a rule like this for each extension you use as binary data
#-------------------------------------------------------------------------------
%.bin.o %_bin.h : %.bin
#-------------------------------------------------------------------------------
@echo $(notdir $<)
@$(bin2o)
-include $(DEPENDS)
#-------------------------------------------------------------------------------
endif
#-------------------------------------------------------------------------------

View File

@ -1,4 +1,17 @@
# reVC
# reVC-wiiu
<img src="https://github.com/GaryOderNichts/re3-wiiu/blob/wiiu/logo.png?raw=true" alt="re3 logo" width="200">
This is a port of GTA Vice City to the Nintendo Wii U.
## Building
To build this project make sure you install the required packages:
`(dkp-)pacman -S ppc-mpg123 wut`
Build [SDL2 from yawut](https://github.com/yawut/SDL/tree/wiiu-2.0.9) to avoid issues with crashes and exiting.
You also need to build [libsndfile](https://github.com/libsndfile/libsndfile). To configure libsndfile for the Wii U take a look at this gist: https://gist.github.com/GaryOderNichts/475edaf03ff08ba100840608f92eade8
Then clone this repo using `git clone --recursive https://github.com/GaryOderNichts/re3` and build using `make`.
To build the channel edit `CHANNEL_BUILD := 0` to `CHANNEL_BUILD := 1` in the `Makefile`.
# Original README
[![Build Status](https://img.shields.io/endpoint.svg?url=https%3A%2F%2Factions-badge.atrox.dev%2FGTAmodding%2Fre3%2Fbadge%3Fref%3Dmiami&style=flat)](https://actions-badge.atrox.dev/GTAmodding/re3/goto?ref=miami)
<a href="https://discord.gg/aKYAwCx92H"><img src="https://img.shields.io/badge/discord-join-7289DA.svg?logo=discord&longCache=true&style=flat" /></a>

View File

@ -1290,20 +1290,22 @@ CAnimManager::LoadAnimFile(RwStream *stream, bool compress, char (*uncompressedA
// block name
RwStreamRead(stream, &anpk, sizeof(IfpHeader));
memLittle32(&anpk.size);
ROUNDSIZE(anpk.size);
RwStreamRead(stream, &info, sizeof(IfpHeader));
memLittle32(&info.size);
ROUNDSIZE(info.size);
RwStreamRead(stream, buf, info.size);
CAnimBlock *animBlock = GetAnimationBlock(buf+4);
if(animBlock){
if(animBlock->numAnims == 0){
animBlock->numAnims = *(int*)buf;
animBlock->numAnims = BSWAP32(*(int*)buf);
animBlock->firstIndex = ms_numAnimations;
}
}else{
animBlock = &ms_aAnimBlocks[ms_numAnimBlocks++];
strncpy(animBlock->name, buf+4, MAX_ANIMBLOCK_NAME);
animBlock->numAnims = *(int*)buf;
animBlock->numAnims = BSWAP32(*(int*)buf);
animBlock->firstIndex = ms_numAnimations;
}
@ -1317,6 +1319,7 @@ CAnimManager::LoadAnimFile(RwStream *stream, bool compress, char (*uncompressedA
// animation name
RwStreamRead(stream, &name, sizeof(IfpHeader));
memLittle32(&name.size);
ROUNDSIZE(name.size);
RwStreamRead(stream, buf, name.size);
hier->SetName(buf);
@ -1340,25 +1343,29 @@ CAnimManager::LoadAnimFile(RwStream *stream, bool compress, char (*uncompressedA
// DG info has number of nodes/sequences
RwStreamRead(stream, (char*)&dgan, sizeof(IfpHeader));
memLittle32(&dgan.size);
ROUNDSIZE(dgan.size);
RwStreamRead(stream, (char*)&info, sizeof(IfpHeader));
memLittle32(&info.size);
ROUNDSIZE(info.size);
RwStreamRead(stream, buf, info.size);
hier->numSequences = *(int*)buf;
hier->numSequences = BSWAP32(*(int*)buf);
hier->sequences = new CAnimBlendSequence[hier->numSequences];
CAnimBlendSequence *seq = hier->sequences;
for(k = 0; k < hier->numSequences; k++, seq++){
// Each node has a name and key frames
RwStreamRead(stream, &cpan, sizeof(IfpHeader));
memLittle32(&cpan.size);
ROUNDSIZE(dgan.size);
RwStreamRead(stream, &anim, sizeof(IfpHeader));
memLittle32(&anim.size);
ROUNDSIZE(anim.size);
RwStreamRead(stream, buf, anim.size);
int numFrames = *(int*)(buf+28);
int numFrames = BSWAP32(*(int*)(buf+28));
seq->SetName(buf);
if(anim.size == 44)
seq->SetBoneTag(*(int*)(buf+40));
seq->SetBoneTag(BSWAP32(*(int*)(buf+40)));
if(numFrames == 0)
continue;
@ -1380,53 +1387,53 @@ CAnimManager::LoadAnimFile(RwStream *stream, bool compress, char (*uncompressedA
for(l = 0; l < numFrames; l++){
if(hasScale){
RwStreamRead(stream, buf, 0x2C);
CQuaternion rot(fbuf[0], fbuf[1], fbuf[2], fbuf[3]);
CQuaternion rot(FLOATSWAP32(fbuf[0]), FLOATSWAP32(fbuf[1]), FLOATSWAP32(fbuf[2]), FLOATSWAP32(fbuf[3]));
rot.Invert();
CVector trans(fbuf[4], fbuf[5], fbuf[6]);
CVector trans(FLOATSWAP32(fbuf[4]), FLOATSWAP32(fbuf[5]), FLOATSWAP32(fbuf[6]));
if(compressHier){
KeyFrameTransCompressed *kf = (KeyFrameTransCompressed*)seq->GetKeyFrameCompressed(l);
kf->SetRotation(rot);
kf->SetTranslation(trans);
// scaling ignored
kf->SetTime(fbuf[10]); // absolute time here
kf->SetTime(FLOATSWAP32(fbuf[10])); // absolute time here
}else{
KeyFrameTrans *kf = (KeyFrameTrans*)seq->GetKeyFrame(l);
kf->rotation = rot;
kf->translation = trans;
// scaling ignored
kf->deltaTime = fbuf[10]; // absolute time here
kf->deltaTime = FLOATSWAP32(fbuf[10]); // absolute time here
}
}else if(hasTranslation){
RwStreamRead(stream, buf, 0x20);
CQuaternion rot(fbuf[0], fbuf[1], fbuf[2], fbuf[3]);
CQuaternion rot(FLOATSWAP32(fbuf[0]), FLOATSWAP32(fbuf[1]), FLOATSWAP32(fbuf[2]), FLOATSWAP32(fbuf[3]));
rot.Invert();
CVector trans(fbuf[4], fbuf[5], fbuf[6]);
CVector trans(FLOATSWAP32(fbuf[4]), FLOATSWAP32(fbuf[5]), FLOATSWAP32(fbuf[6]));
if(compressHier){
KeyFrameTransCompressed *kf = (KeyFrameTransCompressed*)seq->GetKeyFrameCompressed(l);
kf->SetRotation(rot);
kf->SetTranslation(trans);
kf->SetTime(fbuf[7]); // absolute time here
kf->SetTime(FLOATSWAP32(fbuf[7])); // absolute time here
}else{
KeyFrameTrans *kf = (KeyFrameTrans*)seq->GetKeyFrame(l);
kf->rotation = rot;
kf->translation = trans;
kf->deltaTime = fbuf[7]; // absolute time here
kf->deltaTime = FLOATSWAP32(fbuf[7]); // absolute time here
}
}else{
RwStreamRead(stream, buf, 0x14);
CQuaternion rot(fbuf[0], fbuf[1], fbuf[2], fbuf[3]);
CQuaternion rot(FLOATSWAP32(fbuf[0]), FLOATSWAP32(fbuf[1]), FLOATSWAP32(fbuf[2]), FLOATSWAP32(fbuf[3]));
rot.Invert();
if(compressHier){
KeyFrameCompressed *kf = (KeyFrameCompressed*)seq->GetKeyFrameCompressed(l);
kf->SetRotation(rot);
kf->SetTime(fbuf[4]); // absolute time here
kf->SetTime(FLOATSWAP32(fbuf[4])); // absolute time here
}else{
KeyFrame *kf = (KeyFrame*)seq->GetKeyFrame(l);
kf->rotation = rot;
kf->deltaTime = fbuf[4]; // absolute time here
kf->deltaTime = FLOATSWAP32(fbuf[4]); // absolute time here
}
}
}

View File

@ -155,9 +155,18 @@ void CChannel::SetVolume(int32 vol)
void CChannel::SetSampleData(void *_data, size_t _DataSize, int32 freq)
{
Data = _data;
DataSize = _DataSize;
Frequency = freq;
#ifdef BIGENDIAN
Data = malloc(DataSize);
memcpy(Data, _data, DataSize);
for (int i = 0; i < DataSize / sizeof(uint16); i++) {
((uint16*)Data)[i] = BSWAP16(((uint16*)Data)[i]);
}
#else
Data = _data;
#endif
}
void CChannel::SetCurrentFreq(uint32 freq)
@ -201,6 +210,11 @@ void CChannel::ClearBuffer()
{
if ( !HasSource() ) return;
alSourcei(alSources[id], AL_BUFFER, AL_NONE);
#ifdef BIGENDIAN
free(Data);
#endif
Data = nil;
DataSize = 0;
}

View File

@ -3,6 +3,8 @@
#ifdef AUDIO_OAL
#include "stream.h"
#include "sampman.h"
#include <stdio.h>
#include <malloc.h>
#if defined _MSC_VER && !defined CMAKE_NO_AUTOLINK
#ifdef AUDIO_OAL_USE_SNDFILE
@ -11,6 +13,10 @@
#ifdef AUDIO_OAL_USE_MPG123
#pragma comment( lib, "libmpg123-0.lib" )
#endif
#if 0
#define DR_WAV_IMPLEMENTATION
#include "dr_wav.h"
#endif
#endif
#ifdef AUDIO_OAL_USE_SNDFILE
#include <sndfile.h>
@ -393,16 +399,71 @@ public:
};
#ifdef AUDIO_OAL_USE_SNDFILE
static sf_count_t sndfile_vio_get_filelen(void* user_data)
{
int32 pos = ftell((FILE*)user_data);
fseek((FILE*)user_data, 0, SEEK_END);
int32 size = ftell((FILE*)user_data);
fseek((FILE*)user_data, pos, SEEK_SET);
return size;
}
static sf_count_t sndfile_vio_seek(sf_count_t offset, int whence, void* user_data)
{
fseek((FILE*)user_data, offset, whence);
return ftell((FILE*)user_data);
}
static sf_count_t sndfile_vio_read(void* ptr, sf_count_t count, void* user_data)
{
return fread(ptr, 1, count, (FILE*)user_data);
}
static sf_count_t
sndfile_vio_write(const void* ptr, sf_count_t count, void* user_data)
{
return fwrite(ptr, 1, count, (FILE*)user_data);
}
static sf_count_t
sndfile_vio_tell(void* user_data)
{
return ftell((FILE*)user_data);
}
static SF_VIRTUAL_IO vio =
{
.get_filelen = sndfile_vio_get_filelen,
.seek = sndfile_vio_seek,
.read = sndfile_vio_read,
.write = sndfile_vio_write,
.tell = sndfile_vio_tell,
};
class CSndFile : public IDecoder
{
SNDFILE *m_pfSound;
SF_INFO m_soundInfo;
FILE* m_fileHandle;
char* m_buffer;
public:
CSndFile(const char *path) :
m_pfSound(nil)
m_pfSound(nil),
m_fileHandle(NULL),
m_buffer(NULL)
{
memset(&m_soundInfo, 0, sizeof(m_soundInfo));
m_pfSound = sf_open(path, SFM_READ, &m_soundInfo);
m_buffer = (char*) memalign(0x40, IO_BUFFER_SIZE);
m_fileHandle = fopen(path, "rb");
if (!m_fileHandle) {
return;
}
setvbuf(m_fileHandle, m_buffer, _IOFBF, IO_BUFFER_SIZE);
m_pfSound = sf_open_virtual(&vio, SFM_READ, &m_soundInfo, m_fileHandle);
}
~CSndFile()
@ -412,6 +473,11 @@ public:
sf_close(m_pfSound);
m_pfSound = nil;
}
if (m_fileHandle) {
fclose(m_fileHandle);
}
free(m_buffer);
}
bool IsOpened()
@ -461,11 +527,134 @@ public:
return size;
}
};
#if DR_WAV_IMPLEMENTATION
static size_t drwav_read_replacement(void* pUserData, void* pBufferOut, size_t bytesToRead)
{
return fread(pBufferOut, 1, bytesToRead, (FILE*)pUserData);
}
static drwav_bool32 drwav_seek_replacement(void* pUserData, int offset, drwav_seek_origin origin)
{
return fseek((FILE*)pUserData, offset, origin) == 0;
}
class CDrWav : public IDecoder
{
drwav m_drWav;
bool m_bIsLoaded;
FILE* m_fileHandle;
char* m_buffer;
public:
CDrWav(const char *path) :
m_bIsLoaded(false),
m_fileHandle(NULL),
m_buffer(NULL)
{
memset(&m_drWav, 0, sizeof(m_drWav));
m_buffer = (char*) memalign(0x40, IO_BUFFER_SIZE);
m_fileHandle = fopen(path, "rb");
if (!m_fileHandle) {
return;
}
setvbuf(m_fileHandle, m_buffer, _IOFBF, IO_BUFFER_SIZE);
if( !drwav_init(&m_drWav, drwav_read_replacement, drwav_seek_replacement, m_fileHandle, NULL) ) {
return;
}
m_bIsLoaded = true;
}
~CDrWav()
{
if ( m_bIsLoaded )
{
drwav_uninit(&m_drWav);
m_bIsLoaded = false;
}
if (m_fileHandle) {
fclose(m_fileHandle);
}
free(m_buffer);
}
bool IsOpened()
{
return m_bIsLoaded;
}
uint32 GetSampleSize()
{
return drwav_get_bytes_per_pcm_frame(&m_drWav);
}
uint32 GetSampleCount()
{
return m_drWav.totalPCMFrameCount;
}
uint32 GetSampleRate()
{
return m_drWav.sampleRate;
}
uint32 GetChannels()
{
return m_drWav.channels;
}
void Seek(uint32 milliseconds)
{
if ( !IsOpened() ) return;
drwav_seek_to_pcm_frame(&m_drWav, ms2samples(milliseconds));
}
uint32 Tell()
{
if ( !IsOpened() ) return 0;
if (drwav__is_compressed_format_tag(m_drWav.translatedFormatTag)) {
return samples2ms(m_drWav.compressed.iCurrentPCMFrame);
} else {
uint32 bytes_per_frame = GetSampleSize();
return samples2ms(
((m_drWav.totalPCMFrameCount * bytes_per_frame) - m_drWav.bytesRemaining) / bytes_per_frame
);
}
}
uint32 Decode(void *buffer)
{
if ( !IsOpened() ) return 0;
size_t read = drwav_read_raw(&m_drWav, GetBufferSize(), buffer);
#ifdef BIGENDIAN
for (int i = 0; i < GetBufferSize() / sizeof(uint16); i++) {
((uint16*)buffer)[i] = BSWAP16(((uint16*)buffer)[i]);
}
#endif
return read;
}
};
#endif
#endif
#ifdef AUDIO_OAL_USE_MPG123
// fuzzy seek eliminates stutter when playing ADF but spams errors a lot (nothing breaks though)
#define MP3_USE_FUZZY_SEEK
static ssize_t mpg123_read_replacement(void* handle, void* data, size_t size)
{
return fread(data, 1, size, (FILE*)handle);
}
static off_t mpg123_seek_replacement(void* handle, off_t offset, int whence)
{
return fseek((FILE*)handle, offset, whence);
}
class CMP3File : public IDecoder
{
@ -474,6 +663,8 @@ protected:
bool m_bOpened;
uint32 m_nRate;
uint32 m_nChannels;
FILE* m_fileHandle;
char* m_buffer;
CMP3File() :
m_pMH(nil),
@ -485,7 +676,9 @@ public:
m_pMH(nil),
m_bOpened(false),
m_nRate(0),
m_nChannels(0)
m_nChannels(0),
m_fileHandle(NULL),
m_buffer(NULL)
{
m_pMH = mpg123_new(nil, nil);
if ( m_pMH )
@ -497,7 +690,18 @@ public:
int channels = 0;
int encoding = 0;
m_bOpened = mpg123_open(m_pMH, path) == MPG123_OK
m_buffer = (char*) memalign(0x40, IO_BUFFER_SIZE);
m_fileHandle = fopen(path, "rb");
if (!m_fileHandle) {
m_bOpened = false;
return;
}
setvbuf(m_fileHandle, m_buffer, _IOFBF, IO_BUFFER_SIZE);
m_bOpened = mpg123_replace_reader_handle(m_pMH, mpg123_read_replacement, mpg123_seek_replacement, NULL) == MPG123_OK
&& mpg123_open_handle(m_pMH, m_fileHandle) == MPG123_OK
&& mpg123_getformat(m_pMH, &rate, &channels, &encoding) == MPG123_OK;
m_nRate = rate;
m_nChannels = channels;
@ -516,6 +720,12 @@ public:
{
mpg123_close(m_pMH);
mpg123_delete(m_pMH);
if (m_fileHandle) {
fclose(m_fileHandle);
}
free(m_buffer);
m_pMH = nil;
}
}
@ -1001,6 +1211,8 @@ CStream::CStream(char *filename, ALuint *sources, ALuint (&buffers)[NUM_STREAMBU
if (!strcasecmp(&m_aFilename[strlen(m_aFilename) - strlen(".wav")], ".wav"))
#ifdef AUDIO_OAL_USE_SNDFILE
m_pSoundFile = new CSndFile(m_aFilename);
#elif defined(DR_WAV_IMPLEMENTATION)
m_pSoundFile = new CDrWav(m_aFilename);
#else
m_pSoundFile = new CWavFile(m_aFilename);
#endif

View File

@ -122,7 +122,11 @@ enum
#define MAX_STREAMS 3
#ifndef __WIIU__
#define DIGITALRATE 32000
#else
#define DIGITALRATE 44100
#endif
#define DIGITALBITS 16
#define DIGITALCHANNELS 2

View File

@ -48,6 +48,12 @@
//TODO: max channels
//TODO: loop count
#ifdef __WIIU__
extern "C" char *_getcwd (char *__buf, size_t __size);
#else
#define _getcwd getcwd
#endif
cSampleManager SampleManager;
bool _bSampmanInitialised = false;
@ -534,6 +540,8 @@ _ResolveLink(char const *path, char *out)
psl->Release();
}
return false;
#elif defined __WIIU__
return false;
#else
struct stat sb;
@ -575,7 +583,7 @@ _FindMP3s(void)
int total_ms;
WIN32_FIND_DATA fd;
if (getcwd(_mp3DirectoryPath, MAX_PATH) == NULL) {
if (_getcwd(_mp3DirectoryPath, MAX_PATH) == NULL) {
perror("getcwd: ");
return;
}
@ -991,7 +999,11 @@ cSampleManager::Initialise(void)
add_providers();
#ifdef AUDIO_CACHE
#ifdef WIIU_CHANNEL
FILE *cacheFile = fcaseopen("/vol/external01/wiiu/apps/reVC/audio/sound.cache", "rb");
#else
FILE *cacheFile = fcaseopen("audio\\sound.cache", "rb");
#endif
if (cacheFile) {
debug("Loadind audio cache (If game crashes around here, then your cache is corrupted, remove audio/sound.cache)\n");
fread(nStreamLength, sizeof(uint32), TOTAL_STREAMED_SOUNDS, cacheFile);
@ -1017,7 +1029,11 @@ cSampleManager::Initialise(void)
USERERROR("Can't open '%s'\n", StreamedNameTable[i]);
}
#ifdef AUDIO_CACHE
#ifdef WIIU_CHANNEL
cacheFile = fcaseopen("/vol/external01/wiiu/apps/reVC/audio/sound.cache", "wb");
#else
cacheFile = fcaseopen("audio\\sound.cache", "wb");
#endif
if(cacheFile) {
debug("Saving audio cache\n");
fwrite(nStreamLength, sizeof(uint32), TOTAL_STREAMED_SOUNDS, cacheFile);
@ -2029,6 +2045,17 @@ cSampleManager::InitialiseSampleBanks(void)
fpSampleDataHandle = op_open_file(SampleBankDataFilename, &e);
#endif
fread(m_aSamples, sizeof(tSample), TOTAL_AUDIO_SAMPLES, fpSampleDescHandle);
#ifdef BIGENDIAN
// fix endianess
for (int i = 0; i < TOTAL_AUDIO_SAMPLES; i++)
{
memLittle32(&m_aSamples[i].nOffset);
memLittle32(&m_aSamples[i].nSize);
memLittle32(&m_aSamples[i].nFrequency);
memLittle32(&m_aSamples[i].nLoopStart);
memLittle32(&m_aSamples[i].nLoopEnd);
}
#endif
#ifdef OPUS_SFX
int32 _nSampleDataEndOffset = m_aSamples[TOTAL_AUDIO_SAMPLES - 1].nOffset + m_aSamples[TOTAL_AUDIO_SAMPLES - 1].nSize;
#endif

View File

@ -126,10 +126,10 @@ void COnscreenTimerEntry::Process() {
}
int32* timerPtr = CTheScripts::GetPointerToScriptVariable(m_nClockOffset);
int32 oldTime = *timerPtr;
int32 oldTime = BSWAP32(*timerPtr);
if (m_bClockGoingDown) {
int32 newTime = oldTime - int32(CTimer::GetTimeStepInMilliseconds());
*timerPtr = newTime;
*timerPtr = BSWAP32(newTime);
if (newTime < 0) {
*timerPtr = 0;
m_bClockProcessed = 0;
@ -148,12 +148,12 @@ void COnscreenTimerEntry::Process() {
}
void COnscreenTimerEntry::ProcessForDisplayClock() {
uint32 time = *CTheScripts::GetPointerToScriptVariable(m_nClockOffset);
uint32 time = BSWAP32(*CTheScripts::GetPointerToScriptVariable(m_nClockOffset));
sprintf(m_aClockBuffer, "%02d:%02d", time / 1000 / 60 % 100,
time / 1000 % 60);
}
void COnscreenCounterEntry::ProcessForDisplayCounter() {
uint32 counter = *CTheScripts::GetPointerToScriptVariable(m_nCounterOffset);
uint32 counter = BSWAP32(*CTheScripts::GetPointerToScriptVariable(m_nCounterOffset));
sprintf(m_aCounterBuffer, "%d", counter);
}

View File

@ -2048,7 +2048,7 @@ void CRunningScript::CollectParameters(uint32* pIp, int16 total)
case ARGUMENT_GLOBALVAR:
varIndex = CTheScripts::Read2BytesFromScript(pIp);
script_assert(varIndex >= 8 && varIndex < CTheScripts::GetSizeOfVariableSpace());
ScriptParams[i] = *((int32*)&CTheScripts::ScriptSpace[varIndex]);
ScriptParams[i] = BSWAP32(*((int32*)&CTheScripts::ScriptSpace[varIndex]));
break;
case ARGUMENT_LOCALVAR:
varIndex = CTheScripts::Read2BytesFromScript(pIp);
@ -2085,7 +2085,7 @@ int CRunningScript::CollectParameterForDebug(char* buf, bool& var)
var = true;
sprintf(tmpstr, " $%d", varIndex / 4);
strcat(buf, tmpstr);
return *((int32*)&CTheScripts::ScriptSpace[varIndex]);
return BSWAP32(*((int32*)&CTheScripts::ScriptSpace[varIndex]));
case ARGUMENT_LOCALVAR:
varIndex = CTheScripts::Read2BytesFromScript(&m_nIp);
script_assert(varIndex >= 0 && varIndex < ARRAY_SIZE(m_anLocalVariables));
@ -2135,7 +2135,7 @@ int32 CRunningScript::CollectNextParameterWithoutIncreasingPC(uint32 ip)
case ARGUMENT_INT32:
return CTheScripts::Read4BytesFromScript(pIp);
case ARGUMENT_GLOBALVAR:
return *((int32*)&CTheScripts::ScriptSpace[(uint16)CTheScripts::Read2BytesFromScript(pIp)]);
return BSWAP32(*((int32*)&CTheScripts::ScriptSpace[(uint16)CTheScripts::Read2BytesFromScript(pIp)]));
case ARGUMENT_LOCALVAR:
return m_anLocalVariables[CTheScripts::Read2BytesFromScript(pIp)];
case ARGUMENT_INT8:
@ -2155,7 +2155,7 @@ void CRunningScript::StoreParameters(uint32* pIp, int16 number)
for (int16 i = 0; i < number; i++){
switch (CTheScripts::Read1ByteFromScript(pIp)) {
case ARGUMENT_GLOBALVAR:
*(int32*)&CTheScripts::ScriptSpace[(uint16)CTheScripts::Read2BytesFromScript(pIp)] = ScriptParams[i];
*(int32*)&CTheScripts::ScriptSpace[(uint16)CTheScripts::Read2BytesFromScript(pIp)] = BSWAP32(ScriptParams[i]);
break;
case ARGUMENT_LOCALVAR:
m_anLocalVariables[CTheScripts::Read2BytesFromScript(pIp)] = ScriptParams[i];
@ -2460,7 +2460,7 @@ CRunningScript* CTheScripts::StartTestScript()
bool CTheScripts::IsPlayerOnAMission()
{
return OnAMissionFlag && *(int32*)&ScriptSpace[OnAMissionFlag] == 1;
return OnAMissionFlag && BSWAP32(*(int32*)&ScriptSpace[OnAMissionFlag]) == 1;
}
void CRunningScript::Process()
@ -2634,14 +2634,14 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
*ptr = ScriptParams[0];
*ptr = BSWAP32(ScriptParams[0]);
return 0;
}
case COMMAND_SET_VAR_FLOAT:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
*(float*)ptr = *(float*)&ScriptParams[0];
*(float*)ptr = FLOATSWAP32(*(float*)&ScriptParams[0]);
return 0;
}
case COMMAND_SET_LVAR_INT:
@ -2662,14 +2662,22 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
#ifndef BIGENDIAN
*ptr += ScriptParams[0];
#else
*ptr = BSWAP32(BSWAP32(*ptr) + ScriptParams[0]);
#endif
return 0;
}
case COMMAND_ADD_VAL_TO_FLOAT_VAR:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
#ifndef BIGENDIAN
*(float*)ptr += *(float*)&ScriptParams[0];
#else
*(float*)ptr = FLOATSWAP32(FLOATSWAP32(*(float*)ptr ) + *(float*)&ScriptParams[0]);
#endif
return 0;
}
case COMMAND_ADD_VAL_TO_INT_LVAR:
@ -2690,14 +2698,22 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
#ifndef BIGENDIAN
*ptr -= ScriptParams[0];
#else
*ptr = BSWAP32(BSWAP32(*ptr) - ScriptParams[0]);
#endif
return 0;
}
case COMMAND_SUB_VAL_FROM_FLOAT_VAR:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
#ifndef BIGENDIAN
*(float*)ptr -= *(float*)&ScriptParams[0];
#else
*(float*)ptr = FLOATSWAP32(FLOATSWAP32(*(float*)ptr ) - *(float*)&ScriptParams[0]);
#endif
return 0;
}
case COMMAND_SUB_VAL_FROM_INT_LVAR:
@ -2718,14 +2734,22 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
#ifndef BIGENDIAN
*ptr *= ScriptParams[0];
#else
*ptr = BSWAP32(BSWAP32(*ptr) * ScriptParams[0]);
#endif
return 0;
}
case COMMAND_MULT_FLOAT_VAR_BY_VAL:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
#ifndef BIGENDIAN
*(float*)ptr *= *(float*)&ScriptParams[0];
#else
*(float*)ptr = FLOATSWAP32(FLOATSWAP32(*(float*)ptr ) * *(float*)&ScriptParams[0]);
#endif
return 0;
}
case COMMAND_MULT_INT_LVAR_BY_VAL:
@ -2746,14 +2770,22 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
#ifndef BIGENDIAN
*ptr /= ScriptParams[0];
#else
*ptr = BSWAP32(BSWAP32(*ptr) / ScriptParams[0]);
#endif
return 0;
}
case COMMAND_DIV_FLOAT_VAR_BY_VAL:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
#ifndef BIGENDIAN
*(float*)ptr /= *(float*)&ScriptParams[0];
#else
*(float*)ptr = FLOATSWAP32(FLOATSWAP32(*(float*)ptr ) / *(float*)&ScriptParams[0]);
#endif
return 0;
}
case COMMAND_DIV_INT_LVAR_BY_VAL:
@ -2774,7 +2806,7 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
UpdateCompareFlag(*ptr > ScriptParams[0]);
UpdateCompareFlag(BSWAP32(*ptr) > ScriptParams[0]);
return 0;
}
case COMMAND_IS_INT_LVAR_GREATER_THAN_NUMBER:
@ -2788,7 +2820,7 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
CollectParameters(&m_nIp, 1);
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(ScriptParams[0] > *ptr);
UpdateCompareFlag(ScriptParams[0] > BSWAP32(*ptr));
return 0;
}
case COMMAND_IS_NUMBER_GREATER_THAN_INT_LVAR:
@ -2802,21 +2834,21 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*ptr1 > *ptr2);
UpdateCompareFlag(BSWAP32(*ptr1) > BSWAP32(*ptr2));
return 0;
}
case COMMAND_IS_INT_LVAR_GREATER_THAN_INT_VAR:
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*ptr1 > *ptr2);
UpdateCompareFlag(*ptr1 > BSWAP32(*ptr2));
return 0;
}
case COMMAND_IS_INT_VAR_GREATER_THAN_INT_LVAR:
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
UpdateCompareFlag(*ptr1 > *ptr2);
UpdateCompareFlag(BSWAP32(*ptr1) > *ptr2);
return 0;
}
case COMMAND_IS_INT_LVAR_GREATER_THAN_INT_LVAR:
@ -2830,7 +2862,7 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
UpdateCompareFlag(*(float*)ptr > *(float*)&ScriptParams[0]);
UpdateCompareFlag(FLOATSWAP32(*(float*)ptr) > *(float*)&ScriptParams[0]);
return 0;
}
case COMMAND_IS_FLOAT_LVAR_GREATER_THAN_NUMBER:
@ -2844,7 +2876,7 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
CollectParameters(&m_nIp, 1);
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*(float*)&ScriptParams[0] > *(float*)ptr);
UpdateCompareFlag(*(float*)&ScriptParams[0] > FLOATSWAP32(*(float*)ptr));
return 0;
}
case COMMAND_IS_NUMBER_GREATER_THAN_FLOAT_LVAR:
@ -2858,21 +2890,21 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*(float*)ptr1 > *(float*)ptr2);
UpdateCompareFlag(FLOATSWAP32(*(float*)ptr1) > FLOATSWAP32(*(float*)ptr2));
return 0;
}
case COMMAND_IS_FLOAT_LVAR_GREATER_THAN_FLOAT_VAR:
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*(float*)ptr1 > *(float*)ptr2);
UpdateCompareFlag(*(float*)ptr1 > FLOATSWAP32(*(float*)ptr2));
return 0;
}
case COMMAND_IS_FLOAT_VAR_GREATER_THAN_FLOAT_LVAR:
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
UpdateCompareFlag(*(float*)ptr1 > *(float*)ptr2);
UpdateCompareFlag(FLOATSWAP32(*(float*)ptr1) > *(float*)ptr2);
return 0;
}
case COMMAND_IS_FLOAT_LVAR_GREATER_THAN_FLOAT_LVAR:
@ -2886,7 +2918,7 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
UpdateCompareFlag(*ptr >= ScriptParams[0]);
UpdateCompareFlag(BSWAP32(*ptr) >= ScriptParams[0]);
return 0;
}
case COMMAND_IS_INT_LVAR_GREATER_OR_EQUAL_TO_NUMBER:
@ -2900,7 +2932,7 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
CollectParameters(&m_nIp, 1);
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(ScriptParams[0] >= *ptr);
UpdateCompareFlag(ScriptParams[0] >= BSWAP32(*ptr));
return 0;
}
case COMMAND_IS_NUMBER_GREATER_OR_EQUAL_TO_INT_LVAR:
@ -2914,21 +2946,21 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*ptr1 >= *ptr2);
UpdateCompareFlag(BSWAP32(*ptr1) >= BSWAP32(*ptr2));
return 0;
}
case COMMAND_IS_INT_LVAR_GREATER_OR_EQUAL_TO_INT_VAR:
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*ptr1 >= *ptr2);
UpdateCompareFlag(*ptr1 >= BSWAP32(*ptr2));
return 0;
}
case COMMAND_IS_INT_VAR_GREATER_OR_EQUAL_TO_INT_LVAR:
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
UpdateCompareFlag(*ptr1 >= *ptr2);
UpdateCompareFlag(BSWAP32(*ptr1) >= *ptr2);
return 0;
}
case COMMAND_IS_INT_LVAR_GREATER_OR_EQUAL_TO_INT_LVAR:
@ -2942,7 +2974,7 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
UpdateCompareFlag(*(float*)ptr >= *(float*)&ScriptParams[0]);
UpdateCompareFlag(FLOATSWAP32(*(float*)ptr) >= *(float*)&ScriptParams[0]);
return 0;
}
case COMMAND_IS_FLOAT_LVAR_GREATER_OR_EQUAL_TO_NUMBER:
@ -2956,7 +2988,7 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
CollectParameters(&m_nIp, 1);
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*(float*)&ScriptParams[0] >= *(float*)ptr);
UpdateCompareFlag(*(float*)&ScriptParams[0] >= FLOATSWAP32(*(float*)ptr));
return 0;
}
case COMMAND_IS_NUMBER_GREATER_OR_EQUAL_TO_FLOAT_LVAR:
@ -2970,21 +3002,21 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*(float*)ptr1 >= *(float*)ptr2);
UpdateCompareFlag(FLOATSWAP32(*(float*)ptr1) >= FLOATSWAP32(*(float*)ptr2));
return 0;
}
case COMMAND_IS_FLOAT_LVAR_GREATER_OR_EQUAL_TO_FLOAT_VAR:
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*(float*)ptr1 >= *(float*)ptr2);
UpdateCompareFlag(*(float*)ptr1 >= FLOATSWAP32(*(float*)ptr2));
return 0;
}
case COMMAND_IS_FLOAT_VAR_GREATER_OR_EQUAL_TO_FLOAT_LVAR:
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
UpdateCompareFlag(*(float*)ptr1 >= *(float*)ptr2);
UpdateCompareFlag(FLOATSWAP32(*(float*)ptr1) >= *(float*)ptr2);
return 0;
}
case COMMAND_IS_FLOAT_LVAR_GREATER_OR_EQUAL_TO_FLOAT_LVAR:
@ -2998,7 +3030,7 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
UpdateCompareFlag(*ptr == ScriptParams[0]);
UpdateCompareFlag(BSWAP32(*ptr) == ScriptParams[0]);
return 0;
}
case COMMAND_IS_INT_LVAR_EQUAL_TO_NUMBER:
@ -3012,14 +3044,14 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*ptr1 == *ptr2);
UpdateCompareFlag(BSWAP32(*ptr1) == BSWAP32(*ptr2));
return 0;
}
case COMMAND_IS_INT_VAR_EQUAL_TO_INT_LVAR:
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
UpdateCompareFlag(*ptr1 == *ptr2);
UpdateCompareFlag(BSWAP32(*ptr1) == *ptr2);
return 0;
}
case COMMAND_IS_INT_LVAR_EQUAL_TO_INT_LVAR:
@ -3038,7 +3070,7 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
UpdateCompareFlag(*(float*)ptr == *(float*)&ScriptParams[0]);
UpdateCompareFlag(FLOATSWAP32(*(float*)ptr) == *(float*)&ScriptParams[0]);
return 0;
}
case COMMAND_IS_FLOAT_LVAR_EQUAL_TO_NUMBER:
@ -3052,14 +3084,14 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
UpdateCompareFlag(*(float*)ptr1 == *(float*)ptr2);
UpdateCompareFlag(FLOATSWAP32(*(float*)ptr1) == FLOATSWAP32(*(float*)ptr2));
return 0;
}
case COMMAND_IS_FLOAT_VAR_EQUAL_TO_FLOAT_LVAR:
{
int32* ptr1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
int32* ptr2 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
UpdateCompareFlag(*(float*)ptr1 == *(float*)ptr2);
UpdateCompareFlag(FLOATSWAP32(*(float*)ptr1) == *(float*)ptr2);
return 0;
}
case COMMAND_IS_FLOAT_LVAR_EQUAL_TO_FLOAT_LVAR:
@ -3121,7 +3153,11 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
pNew->m_anLocalVariables[i] = CTheScripts::Read4BytesFromScript(&m_nIp);
break;
case ARGUMENT_GLOBALVAR:
#ifndef BIGENDIAN
pNew->m_anLocalVariables[i] = *(int32*)&CTheScripts::ScriptSpace[(uint16)CTheScripts::Read2BytesFromScript(&m_nIp)];
#else
pNew->m_anLocalVariables[i] = BSWAP32(*(int32*)&CTheScripts::ScriptSpace[(uint16)CTheScripts::Read2BytesFromScript(&m_nIp)]);
#endif
break;
case ARGUMENT_LOCALVAR:
pNew->m_anLocalVariables[i] = m_anLocalVariables[CTheScripts::Read2BytesFromScript(&m_nIp)];
@ -3285,15 +3321,23 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
}
case COMMAND_ADD_INT_VAR_TO_INT_VAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*nScriptVar1 += *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#else
*nScriptVar1 = BSWAP32(BSWAP32(*nScriptVar1) + BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL)));
#endif
return 0;
case COMMAND_ADD_INT_LVAR_TO_INT_VAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*nScriptVar1 += *GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
#else
*nScriptVar1 = BSWAP32(BSWAP32(*nScriptVar1) + *GetPointerToScriptVariable(&m_nIp, VAR_LOCAL));
#endif
return 0;
case COMMAND_ADD_INT_VAR_TO_INT_LVAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*nScriptVar1 += *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*nScriptVar1 += BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
case COMMAND_ADD_INT_LVAR_TO_INT_LVAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
@ -3301,15 +3345,23 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
return 0;
case COMMAND_ADD_FLOAT_VAR_TO_FLOAT_VAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 += *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) + FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL)));
#endif
return 0;
case COMMAND_ADD_FLOAT_LVAR_TO_FLOAT_VAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 += *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) + *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL));
#endif
return 0;
case COMMAND_ADD_FLOAT_VAR_TO_FLOAT_LVAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*fScriptVar1 += *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*fScriptVar1 += FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
case COMMAND_ADD_FLOAT_LVAR_TO_FLOAT_LVAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
@ -3317,7 +3369,11 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
return 0;
case COMMAND_SUB_INT_VAR_FROM_INT_VAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*nScriptVar1 -= *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*nScriptVar1 -= GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#else
*nScriptVar1 = BSWAP32(BSWAP32(*nScriptVar1) - BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL)));
#endif
return 0;
case COMMAND_SUB_INT_LVAR_FROM_INT_LVAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
@ -3325,7 +3381,11 @@ int8 CRunningScript::ProcessCommands0To99(int32 command)
return 0;
case COMMAND_SUB_FLOAT_VAR_FROM_FLOAT_VAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 -= *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) - FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL)));
#endif
return 0;
case COMMAND_SUB_FLOAT_LVAR_FROM_FLOAT_LVAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
@ -3345,31 +3405,47 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
switch (command) {
case COMMAND_SUB_INT_LVAR_FROM_INT_VAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*nScriptVar1 -= *GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
#else
*nScriptVar1 = BSWAP32(BSWAP32(*nScriptVar1) - *GetPointerToScriptVariable(&m_nIp, VAR_LOCAL));
#endif
return 0;
case COMMAND_SUB_INT_VAR_FROM_INT_LVAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*nScriptVar1 -= *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*nScriptVar1 -= BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
case COMMAND_SUB_FLOAT_LVAR_FROM_FLOAT_VAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 -= *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) - *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL));
#endif
return 0;
case COMMAND_SUB_FLOAT_VAR_FROM_FLOAT_LVAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*fScriptVar1 -= *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*fScriptVar1 -= FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
case COMMAND_MULT_INT_VAR_BY_INT_VAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*nScriptVar1 *= *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#else
*nScriptVar1 = BSWAP32(BSWAP32(*nScriptVar1) * BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL)));
#endif
return 0;
case COMMAND_MULT_INT_VAR_BY_INT_LVAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*nScriptVar1 *= *GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
#else
*nScriptVar1 = BSWAP32(BSWAP32(*nScriptVar1) * *GetPointerToScriptVariable(&m_nIp, VAR_LOCAL));
#endif
return 0;
case COMMAND_MULT_INT_LVAR_BY_INT_VAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*nScriptVar1 *= *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*nScriptVar1 *= BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
case COMMAND_MULT_INT_LVAR_BY_INT_LVAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
@ -3377,15 +3453,23 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
return 0;
case COMMAND_MULT_FLOAT_VAR_BY_FLOAT_VAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 *= *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) * FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL)));
#endif
return 0;
case COMMAND_MULT_FLOAT_VAR_BY_FLOAT_LVAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 *= *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) * *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL));
#endif
return 0;
case COMMAND_MULT_FLOAT_LVAR_BY_FLOAT_VAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*fScriptVar1 *= *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*fScriptVar1 *= FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
case COMMAND_MULT_FLOAT_LVAR_BY_FLOAT_LVAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
@ -3393,15 +3477,23 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
return 0;
case COMMAND_DIV_INT_VAR_BY_INT_VAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*nScriptVar1 /= *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#else
*nScriptVar1 = BSWAP32(BSWAP32(*nScriptVar1) / BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL)));
#endif
return 0;
case COMMAND_DIV_INT_VAR_BY_INT_LVAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*nScriptVar1 /= *GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
#else
*nScriptVar1 = BSWAP32(BSWAP32(*nScriptVar1) / *GetPointerToScriptVariable(&m_nIp, VAR_LOCAL));
#endif
return 0;
case COMMAND_DIV_INT_LVAR_BY_INT_VAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*nScriptVar1 /= *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*nScriptVar1 /= BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
case COMMAND_DIV_INT_LVAR_BY_INT_LVAR:
nScriptVar1 = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
@ -3409,15 +3501,23 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
return 0;
case COMMAND_DIV_FLOAT_VAR_BY_FLOAT_VAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 /= *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) / FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL)));
#endif
return 0;
case COMMAND_DIV_FLOAT_VAR_BY_FLOAT_LVAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 /= *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) / *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL));
#endif
return 0;
case COMMAND_DIV_FLOAT_LVAR_BY_FLOAT_VAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*fScriptVar1 /= *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*fScriptVar1 /= FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
case COMMAND_DIV_FLOAT_LVAR_BY_FLOAT_LVAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
@ -3427,7 +3527,11 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
#ifndef BIGENDIAN
*(float*)ptr += CTimer::GetTimeStep() * *(float*)&ScriptParams[0];
#else
*(float*)ptr = FLOATSWAP32(FLOATSWAP32(*(float*)ptr) + (CTimer::GetTimeStep() * *(float*)&ScriptParams[0]));
#endif
return 0;
}
case COMMAND_ADD_TIMED_VAL_TO_FLOAT_LVAR:
@ -3439,7 +3543,11 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
}
case COMMAND_ADD_TIMED_FLOAT_VAR_TO_FLOAT_VAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 += CTimer::GetTimeStep() * *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) + (CTimer::GetTimeStep() * FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL))));
#endif
return 0;
#ifdef FIX_BUGS
case COMMAND_ADD_TIMED_FLOAT_VAR_TO_FLOAT_LVAR:
@ -3447,7 +3555,11 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
case COMMAND_ADD_TIMED_FLOAT_LVAR_TO_FLOAT_VAR:
#endif
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 += CTimer::GetTimeStep() * *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) + (CTimer::GetTimeStep() * *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL)));
#endif
return 0;
#ifdef FIX_BUGS
case COMMAND_ADD_TIMED_FLOAT_LVAR_TO_FLOAT_VAR:
@ -3455,7 +3567,7 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
case COMMAND_ADD_TIMED_FLOAT_VAR_TO_FLOAT_LVAR:
#endif
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*fScriptVar1 += CTimer::GetTimeStep() * *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*fScriptVar1 += CTimer::GetTimeStep() * FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
case COMMAND_ADD_TIMED_FLOAT_LVAR_TO_FLOAT_LVAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
@ -3465,7 +3577,11 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
CollectParameters(&m_nIp, 1);
#ifndef BIGENDIAN
*(float*)ptr -= CTimer::GetTimeStep() * *(float*)&ScriptParams[0];
#else
*(float*)ptr = FLOATSWAP32(FLOATSWAP32(*(float*)ptr) - (CTimer::GetTimeStep() * *(float*)&ScriptParams[0]));
#endif
return 0;
}
case COMMAND_SUB_TIMED_VAL_FROM_FLOAT_LVAR:
@ -3477,7 +3593,11 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
}
case COMMAND_SUB_TIMED_FLOAT_VAR_FROM_FLOAT_VAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 -= CTimer::GetTimeStep() * *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) - (CTimer::GetTimeStep() * FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL))));
#endif
return 0;
#ifdef FIX_BUGS // in SA it was fixed by reversing their order in enum
case COMMAND_SUB_TIMED_FLOAT_VAR_FROM_FLOAT_LVAR:
@ -3485,7 +3605,11 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
case COMMAND_SUB_TIMED_FLOAT_LVAR_FROM_FLOAT_VAR:
#endif
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
#ifndef BIGENDIAN
*fScriptVar1 -= CTimer::GetTimeStep() * *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
#else
*fScriptVar1 = FLOATSWAP32(FLOATSWAP32(*fScriptVar1) - (CTimer::GetTimeStep() * *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL)));
#endif
return 0;
#ifdef FIX_BUGS
case COMMAND_SUB_TIMED_FLOAT_LVAR_FROM_FLOAT_VAR:
@ -3493,7 +3617,7 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
case COMMAND_SUB_TIMED_FLOAT_VAR_FROM_FLOAT_LVAR:
#endif
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*fScriptVar1 -= CTimer::GetTimeStep() * *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*fScriptVar1 -= CTimer::GetTimeStep() * FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
case COMMAND_SUB_TIMED_FLOAT_LVAR_FROM_FLOAT_LVAR:
fScriptVar1 = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
@ -3508,13 +3632,13 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
case COMMAND_SET_VAR_INT_TO_LVAR_INT:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = *GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*ptr = BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_LOCAL));
return 0;
}
case COMMAND_SET_LVAR_INT_TO_VAR_INT:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*ptr = *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
}
case COMMAND_SET_LVAR_INT_TO_LVAR_INT:
@ -3532,13 +3656,13 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
case COMMAND_SET_VAR_FLOAT_TO_LVAR_FLOAT:
{
float* ptr = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*ptr = FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL));
return 0;
}
case COMMAND_SET_LVAR_FLOAT_TO_VAR_FLOAT:
{
float* ptr = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*ptr = *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
}
case COMMAND_SET_LVAR_FLOAT_TO_LVAR_FLOAT:
@ -3550,19 +3674,21 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
case COMMAND_CSET_VAR_INT_TO_VAR_FLOAT:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
*ptr = BSWAP32(*ptr);
return 0;
}
case COMMAND_CSET_VAR_INT_TO_LVAR_FLOAT:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = *(float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*ptr = BSWAP32(*ptr);
return 0;
}
case COMMAND_CSET_LVAR_INT_TO_VAR_FLOAT:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*ptr = *(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = FLOATSWAP32(*(float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
}
case COMMAND_CSET_LVAR_INT_TO_LVAR_FLOAT:
@ -3574,19 +3700,21 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
case COMMAND_CSET_VAR_FLOAT_TO_VAR_INT:
{
float* ptr = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
*ptr = FLOATSWAP32(*ptr);
return 0;
}
case COMMAND_CSET_VAR_FLOAT_TO_LVAR_INT:
{
float* ptr = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = *GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*ptr = FLOATSWAP32(*ptr);
return 0;
}
case COMMAND_CSET_LVAR_FLOAT_TO_VAR_INT:
{
float* ptr = (float*)GetPointerToScriptVariable(&m_nIp, VAR_LOCAL);
*ptr = *GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = BSWAP32(*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL));
return 0;
}
case COMMAND_CSET_LVAR_FLOAT_TO_LVAR_INT:
@ -3598,7 +3726,7 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
case COMMAND_ABS_VAR_INT:
{
int32* ptr = GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = ABS(*ptr);
*ptr = BSWAP32(ABS(BSWAP32(*ptr)));
return 0;
}
case COMMAND_ABS_LVAR_INT:
@ -3610,7 +3738,7 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
case COMMAND_ABS_VAR_FLOAT:
{
float* ptr = (float*)GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL);
*ptr = ABS(*ptr);
*ptr = FLOATSWAP32(ABS(FLOATSWAP32(*ptr)));
return 0;
}
case COMMAND_ABS_LVAR_FLOAT:
@ -3626,16 +3754,16 @@ int8 CRunningScript::ProcessCommands100To199(int32 command)
CGeneral::GetRandomNumber();
CGeneral::GetRandomNumber(); /* To make it EXTRA random! */
#ifdef FIX_BUGS
*ptr = CGeneral::GetRandomNumberInRange(0.0f, 1.0f);
*ptr = FLOATSWAP32(CGeneral::GetRandomNumberInRange(0.0f, 1.0f));
#else
*ptr = CGeneral::GetRandomNumber() / 65536.0f;
*ptr = FLOATSWAP32(CGeneral::GetRandomNumber() / 65536.0f);
/* Between 0 and 0.5 on PC (oh well...), never used in original script. */
#endif
return 0;
}
case COMMAND_GENERATE_RANDOM_INT:
*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL) = CGeneral::GetRandomNumber();
*GetPointerToScriptVariable(&m_nIp, VAR_GLOBAL) = BSWAP32(CGeneral::GetRandomNumber());
return 0;
case COMMAND_CREATE_CHAR:
{

View File

@ -1,9 +1,16 @@
#ifndef _WIN32
#include "common.h"
#include "crossplatform.h"
#include <pthread.h>
#include <signal.h>
#ifdef __WIIU__
#include <malloc.h>
#include <coreinit/thread.h>
#include <coreinit/semaphore.h>
#else
#include <pthread.h>
#include <semaphore.h>
#include <sys/syscall.h>
#endif
#include <sys/types.h>
#include <unistd.h>
#include <sys/time.h>
@ -12,7 +19,6 @@
#include <sys/stat.h>
#include <fcntl.h>
#include <sys/resource.h>
#include <sys/syscall.h>
#include "CdStream.h"
#include "rwcore.h"
@ -21,6 +27,79 @@
#define CDDEBUG(f, ...) debug ("%s: " f "\n", "cdvd_stream", ## __VA_ARGS__)
#define CDTRACE(f, ...) printf("%s: " f "\n", "cdvd_stream", ## __VA_ARGS__)
#ifdef __WIIU__
typedef OSSemaphore sem_t;
#define SEM_FAILED (NULL)
static sem_t *sem_open(const char *name, int oflag, mode_t mode, unsigned int value)
{
sem_t* sem = (sem_t*) calloc(1, sizeof(sem_t));
OSInitSemaphore(sem, value);
return sem;
}
static int sem_close(sem_t *sem)
{
free(sem);
return 0;
}
static int sem_unlink(const char *name) { return 0; };
static int sem_post(sem_t *sem)
{
OSSignalSemaphore(sem);
return 0;
}
static int sem_wait(sem_t *sem)
{
OSWaitSemaphore(sem);
return 0;
}
static void wiiu_thread_deallocator(OSThread *thread, void *stack)
{
free(thread);
free(stack);
}
static void wiiu_thread_cleanup(OSThread *thread, void *stack) { }
static int wiiu_thread_create(OSThread *thread, const void *attr, void *(*start_routine) (void *), void *arg)
{
OSThread *handle = (OSThread *)memalign(16, sizeof(OSThread));
unsigned int stackSize = 0x8000;
void *stackTop = (uint8*) memalign(16, stackSize) + stackSize;
if (!OSCreateThread(handle,
(OSThreadEntryPointFn)start_routine,
(int32_t)arg,
NULL,
stackTop,
stackSize,
16,
OS_THREAD_ATTRIB_AFFINITY_ANY))
{
free(stackTop);
free(handle);
return EINVAL;
}
*thread = *handle;
OSSetThreadDeallocator(handle, &wiiu_thread_deallocator);
OSSetThreadCleanupCallback(handle, &wiiu_thread_cleanup);
OSResumeThread(handle);
return 0;
}
#endif
// #define ONE_THREAD_PER_CHANNEL // Don't use if you're not on SSD/Flash. (Also you may want to benefit from this via using all channels in Streaming.cpp)
#ifdef FLUSHABLE_STREAMING
bool flushStream[MAX_CDCHANNELS];
#endif
@ -35,7 +114,11 @@ struct CdReadInfo
int32 nStatus;
#ifdef ONE_THREAD_PER_CHANNEL
int8 nThreadStatus; // 0: created 1:priority set up 2:abort now
#ifdef __WIIU__
OSThread pChannelThread;
#else
pthread_t pChannelThread;
#endif
sem_t *pStartSemaphore;
#endif
sem_t *pDoneSemaphore; // used for CdStreamSync
@ -50,12 +133,15 @@ int32 gImgFiles[MAX_CDIMAGES]; // -1: error 0:unused otherwise: fd
char *gImgNames[MAX_CDIMAGES];
#ifndef ONE_THREAD_PER_CHANNEL
#ifdef __WIIU__
OSThread _gCdStreamThread;
#else
pthread_t _gCdStreamThread;
#endif
sem_t *gCdStreamSema; // released when we have new thing to read(so channel is set)
int8 gCdStreamThreadStatus; // 0: created 1:priority set up 2:abort now
Queue gChannelRequestQ;
bool _gbCdStreamOverlapped;
#endif
CdReadInfo *gpReadInfo;
@ -113,7 +199,11 @@ CdStreamInitThread(void)
gpReadInfo[i].nThreadStatus = 0;
int *channelI = (int*)malloc(sizeof(int));
*channelI = i;
#ifdef __WIIU__
status = wiiu_thread_create(&gpReadInfo[i].pChannelThread, NULL, CdStreamThread, (void*)channelI);
#else
status = pthread_create(&gpReadInfo[i].pChannelThread, NULL, CdStreamThread, (void*)channelI);
#endif
if (status == -1)
{
@ -128,7 +218,11 @@ CdStreamInitThread(void)
#ifndef ONE_THREAD_PER_CHANNEL
debug("Using one streaming thread for all channels\n");
gCdStreamThreadStatus = 0;
#ifdef __WIIU__
status = wiiu_thread_create(&_gCdStreamThread, NULL, CdStreamThread, nil);
#else
status = pthread_create(&_gCdStreamThread, NULL, CdStreamThread, nil);
#endif
if (status == -1)
{
@ -144,6 +238,7 @@ CdStreamInitThread(void)
void
CdStreamInit(int32 numChannels)
{
#ifndef __WIIU__
struct statvfs fsInfo;
if((statvfs("models/gta3.img", &fsInfo)) < 0)
@ -166,6 +261,11 @@ CdStreamInit(int32 numChannels)
}
*/
void *pBuffer = (void *)RwMallocAlign(CDSTREAM_SECTOR_SIZE, (RwUInt32)fsInfo.f_bsize);
#else
// statvfs doesn't work properly on wiiu
void *pBuffer = (void *)RwMallocAlign(CDSTREAM_SECTOR_SIZE, CDSTREAM_SECTOR_SIZE);
#endif
ASSERT( pBuffer != nil );
gNumImages = 0;
@ -218,12 +318,16 @@ CdStreamShutdown(void)
#ifndef ONE_THREAD_PER_CHANNEL
gCdStreamThreadStatus = 2;
sem_post(gCdStreamSema);
#ifndef __WIIU__
pthread_join(_gCdStreamThread, nil);
#endif
#else
for ( int32 i = 0; i < gNumChannels; i++ ) {
gpReadInfo[i].nThreadStatus = 2;
sem_post(gpReadInfo[i].pStartSemaphore);
#ifndef __WIIU__
pthread_join(gpReadInfo[i].pChannelThread, nil);
#endif
}
#endif
}
@ -324,13 +428,21 @@ CdStreamSync(int32 channel)
if (flushStream[channel]) {
pChannel->nSectorsToRead = 0;
#ifdef ONE_THREAD_PER_CHANNEL
#ifdef __WIIU__
OSCancelThread(&pChannel->pChannelThread);
#else
pthread_kill(pChannel->pChannelThread, SIGUSR1);
#endif
if (pChannel->bReading) {
pChannel->bLocked = true;
#else
if (pChannel->bReading) {
pChannel->bLocked = true;
#ifdef __WIIU__
OSCancelThread(&_gCdStreamThread);
#else
pthread_kill(_gCdStreamThread, SIGUSR1);
#endif
#endif
while (pChannel->bLocked)
sem_wait(pChannel->pDoneSemaphore);
@ -483,7 +595,13 @@ void *CdStreamThread(void *param)
if (gpReadInfo)
free(gpReadInfo);
gpReadInfo = nil;
#ifdef __WIIU__
//OSExitThread(0);
return 0;
#else
pthread_exit(nil);
#endif
#endif
}
bool

View File

@ -109,6 +109,41 @@ int32 CControllerConfigManager::GetJoyButtonJustDown()
return i + 1;
}
}
#elif defined __WIIU__
uint32 triggerButtons = m_NewState.buttonsTriggered;
if (triggerButtons & VPAD_BUTTON_A)
return 2;
else if (triggerButtons & VPAD_BUTTON_B)
return 1;
else if (triggerButtons & VPAD_BUTTON_X)
return 3;
else if (triggerButtons & VPAD_BUTTON_Y)
return 4;
else if (triggerButtons & VPAD_BUTTON_ZL)
return 7;
else if (triggerButtons & VPAD_BUTTON_ZR)
return 8;
else if (triggerButtons & VPAD_BUTTON_MINUS)
return 9;
else if (triggerButtons & VPAD_BUTTON_PLUS)
return 12;
else if (triggerButtons & VPAD_BUTTON_STICK_L)
return 10;
else if (triggerButtons & VPAD_BUTTON_STICK_R)
return 11;
else if (triggerButtons & VPAD_BUTTON_UP)
return 13;
else if (triggerButtons & VPAD_BUTTON_RIGHT)
return 14;
else if (triggerButtons & VPAD_BUTTON_DOWN)
return 15;
else if (triggerButtons & VPAD_BUTTON_LEFT)
return 16;
else if (triggerButtons & VPAD_BUTTON_L)
return 5;
else if (triggerButtons & VPAD_BUTTON_R)
return 6;
#endif
return 0;
}
@ -2713,6 +2748,41 @@ void CControllerConfigManager::UpdateJoyButtonState(int32 padnumber)
m_aButtonStates[i] = m_NewState.buttons[i];
}
}
#elif defined __WIIU__
uint32 heldButtons = m_NewState.buttonsHeld;
if (heldButtons & VPAD_BUTTON_A)
m_aButtonStates[1] = 1;
if (heldButtons & VPAD_BUTTON_B)
m_aButtonStates[0] = 1;
if (heldButtons & VPAD_BUTTON_X)
m_aButtonStates[2] = 1;
if (heldButtons & VPAD_BUTTON_Y)
m_aButtonStates[3] = 1;
if (heldButtons & VPAD_BUTTON_ZL)
m_aButtonStates[6] = 1;
if (heldButtons & VPAD_BUTTON_ZR)
m_aButtonStates[7] = 1;
if (heldButtons & VPAD_BUTTON_MINUS)
m_aButtonStates[8] = 1;
if (heldButtons & VPAD_BUTTON_PLUS)
m_aButtonStates[11] = 1;
if (heldButtons & VPAD_BUTTON_STICK_L)
m_aButtonStates[9] = 1;
if (heldButtons & VPAD_BUTTON_STICK_R)
m_aButtonStates[10] = 1;
if (heldButtons & VPAD_BUTTON_UP)
m_aButtonStates[12] = 1;
if (heldButtons & VPAD_BUTTON_RIGHT)
m_aButtonStates[13] = 1;
if (heldButtons & VPAD_BUTTON_DOWN)
m_aButtonStates[14] = 1;
if (heldButtons & VPAD_BUTTON_LEFT)
m_aButtonStates[15] = 1;
if (heldButtons & VPAD_BUTTON_L)
m_aButtonStates[4] = 1;
if (heldButtons & VPAD_BUTTON_R)
m_aButtonStates[5] = 1;
#endif
}

View File

@ -5,6 +5,10 @@
#include <dinput.h>
#endif
#ifdef __WIIU__
#include <vpad/input.h>
#endif
// based on x-gtasa
enum eControllerType
@ -116,6 +120,13 @@ struct GlfwJoyState {
};
#endif
#ifdef __WIIU__
struct WiiUJoyState {
uint32 buttonsTriggered;
uint32 buttonsHeld;
};
#endif
class CControllerConfigManager
{
public:
@ -135,6 +146,9 @@ public:
#if defined RW_GL3
GlfwJoyState m_OldState;
GlfwJoyState m_NewState;
#elif defined __WIIU__
WiiUJoyState m_OldState;
WiiUJoyState m_NewState;
#else
DIJOYSTATE2 m_OldState;
DIJOYSTATE2 m_NewState;

View File

@ -23,7 +23,11 @@ CDirectory::ReadDirFile(const char *filename)
fd = CFileMgr::OpenFile(filename, "rb");
while(CFileMgr::Read(fd, (char*)&dirinfo, sizeof(dirinfo)))
{
memLittle32(&dirinfo.offset);
memLittle32(&dirinfo.size);
AddItem(dirinfo);
}
CFileMgr::CloseFile(fd);
}

View File

@ -189,7 +189,12 @@ CFileLoader::LoadCollisionFile(const char *filename, uint8 colSlot)
assert(fd > 0);
while(CFileMgr::Read(fd, (char*)&header, sizeof(header))){
#ifdef BIGENDIAN
assert(header.ident == 'COLL');
#else
assert(header.ident == 'LLOC');
#endif
memLittle32(&header.size);
CFileMgr::Read(fd, (char*)work_buff, header.size);
memcpy(modelname, work_buff, 24);
@ -291,29 +296,38 @@ CFileLoader::LoadCollisionModel(uint8 *buf, CColModel &model, char *modelname)
{
int i;
model.boundingSphere.radius = *(float*)(buf);
model.boundingSphere.center.x = *(float*)(buf+4);
model.boundingSphere.center.y = *(float*)(buf+8);
model.boundingSphere.center.z = *(float*)(buf+12);
model.boundingBox.min.x = *(float*)(buf+16);
model.boundingBox.min.y = *(float*)(buf+20);
model.boundingBox.min.z = *(float*)(buf+24);
model.boundingBox.max.x = *(float*)(buf+28);
model.boundingBox.max.y = *(float*)(buf+32);
model.boundingBox.max.z = *(float*)(buf+36);
model.numSpheres = *(int16*)(buf+40);
model.boundingSphere.radius = FLOATSWAP32(*(float*)(buf));
model.boundingSphere.center.x = FLOATSWAP32(*(float*)(buf+4));
model.boundingSphere.center.y = FLOATSWAP32(*(float*)(buf+8));
model.boundingSphere.center.z = FLOATSWAP32(*(float*)(buf+12));
model.boundingBox.min.x = FLOATSWAP32(*(float*)(buf+16));
model.boundingBox.min.y = FLOATSWAP32(*(float*)(buf+20));
model.boundingBox.min.z = FLOATSWAP32(*(float*)(buf+24));
model.boundingBox.max.x = FLOATSWAP32(*(float*)(buf+28));
model.boundingBox.max.y = FLOATSWAP32(*(float*)(buf+32));
model.boundingBox.max.z = FLOATSWAP32(*(float*)(buf+36));
model.numSpheres = (int16) BSWAP16(*(uint16*)(buf+40));
buf += 44;
if(model.numSpheres > 0){
model.spheres = (CColSphere*)RwMalloc(model.numSpheres*sizeof(CColSphere));
REGISTER_MEMPTR(&model.spheres);
for(i = 0; i < model.numSpheres; i++){
#ifndef BIGENDIAN
model.spheres[i].Set(*(float*)buf, *(CVector*)(buf+4), buf[16], buf[17]);
#else
float radius = FLOATSWAP32(*(float*)buf);
CVector center = *(CVector*)(buf+4);
center.x = FLOATSWAP32(center.x);
center.y = FLOATSWAP32(center.y);
center.z = FLOATSWAP32(center.z);
model.spheres[i].Set(radius, center, buf[16], buf[17]);
#endif
buf += 20;
}
}else
model.spheres = nil;
model.numLines = *(int16*)buf;
model.numLines = (int16) BSWAP16(*(uint16*)buf);
buf += 4;
if(model.numLines > 0){
//model.lines = (CColLine*)RwMalloc(model.numLines*sizeof(CColLine));
@ -326,25 +340,44 @@ CFileLoader::LoadCollisionModel(uint8 *buf, CColModel &model, char *modelname)
model.numLines = 0;
model.lines = nil;
model.numBoxes = *(int16*)buf;
model.numBoxes = (int16) BSWAP16(*(uint16*)buf);
buf += 4;
if(model.numBoxes > 0){
model.boxes = (CColBox*)RwMalloc(model.numBoxes*sizeof(CColBox));
REGISTER_MEMPTR(&model.boxes);
for(i = 0; i < model.numBoxes; i++){
#ifndef BIGENDIAN
model.boxes[i].Set(*(CVector*)buf, *(CVector*)(buf+12), buf[24], buf[25]);
#else
CVector min = *(CVector*)buf;
min.x = FLOATSWAP32(min.x);
min.y = FLOATSWAP32(min.y);
min.z = FLOATSWAP32(min.z);
CVector max = *(CVector*)(buf+12);
max.x = FLOATSWAP32(max.x);
max.y = FLOATSWAP32(max.y);
max.z = FLOATSWAP32(max.z);
model.boxes[i].Set(min, max, buf[24], buf[25]);
#endif
buf += 28;
}
}else
model.boxes = nil;
int32 numVertices = *(int16*)buf;
int32 numVertices = (int16) BSWAP16(*(uint16*)buf);
buf += 4;
if(numVertices > 0){
model.vertices = (CompressedVector*)RwMalloc(numVertices*sizeof(CompressedVector));
REGISTER_MEMPTR(&model.vertices);
for(i = 0; i < numVertices; i++){
#ifndef BIGENDIAN
model.vertices[i].Set(*(float*)buf, *(float*)(buf+4), *(float*)(buf+8));
#else
float x = FLOATSWAP32(*(float*)buf);
float y = FLOATSWAP32(*(float*)(buf+4));
float z = FLOATSWAP32(*(float*)(buf+8));
model.vertices[i].Set(x, y, z);
#endif
#if 0
if(Abs(*(float*)buf) >= 256.0f ||
Abs(*(float*)(buf+4)) >= 256.0f ||
@ -356,13 +389,20 @@ CFileLoader::LoadCollisionModel(uint8 *buf, CColModel &model, char *modelname)
}else
model.vertices = nil;
model.numTriangles = *(int16*)buf;
model.numTriangles = (int16) BSWAP16(*(uint16*)buf);
buf += 4;
if(model.numTriangles > 0){
model.triangles = (CColTriangle*)RwMalloc(model.numTriangles*sizeof(CColTriangle));
REGISTER_MEMPTR(&model.triangles);
for(i = 0; i < model.numTriangles; i++){
#ifndef BIGENDIAN
model.triangles[i].Set(*(int32*)buf, *(int32*)(buf+4), *(int32*)(buf+8), buf[12]);
#else
int32 a = (int32) BSWAP32(*(uint32*)buf);
int32 b = (int32) BSWAP32(*(uint32*)(buf+4));
int32 c = (int32) BSWAP32(*(uint32*)(buf+8));
model.triangles[i].Set(a, b, c, buf[12]);
#endif
buf += 16;
}
}else

View File

@ -5,6 +5,7 @@
#endif
#include "common.h"
#include "crossplatform.h"
#include <malloc.h>
#include "FileMgr.h"
@ -22,6 +23,9 @@ struct myFILE
{
bool isText;
FILE *file;
#ifdef BUFFER_FILES
char* buf;
#endif
};
#define NUMFILES 20
@ -32,7 +36,13 @@ static myFILE myfiles[NUMFILES];
#include <dirent.h>
#include <errno.h>
#include <unistd.h>
#ifdef __WIIU__
// The default getcwd prefixes with fs: which causes issues with some functions
extern "C" char *_getcwd (char *__buf, size_t __size);
#else
#define _getcwd getcwd
#endif
// Case-insensitivity on linux (from https://github.com/OneSadCookie/fcaseopen)
void mychdir(char const *path)
@ -74,6 +84,10 @@ found:
myfiles[fd].file = fcaseopen(filename, realmode);
if(myfiles[fd].file == nil)
return 0;
#ifdef BUFFER_FILES
myfiles[fd].buf = (char*) memalign(0x40, IO_BUFFER_SIZE);
setvbuf(myfiles[fd].file, myfiles[fd].buf, _IOFBF, IO_BUFFER_SIZE);
#endif
return fd;
}
@ -85,6 +99,9 @@ myfclose(int fd)
if(myfiles[fd].file){
ret = fclose(myfiles[fd].file);
myfiles[fd].file = nil;
#ifdef BUFFER_FILES
free(myfiles[fd].buf);
#endif
return ret;
}
return EOF;

View File

@ -491,7 +491,11 @@ CMenuManager::CMenuManager()
DisplayComboButtonErrMsg = false;
m_PrefsDMA = 1;
OS_Language = LANG_ENGLISH;
#ifdef __WIIU__
m_ControlMethod = CONTROL_CLASSIC;
#else
m_ControlMethod = CONTROL_STANDARD;
#endif
#ifdef PC_PLAYER_CONTROLS
CCamera::m_bUseMouse3rdPerson = true;
#else
@ -2904,13 +2908,24 @@ CMenuManager::InitialiseChangedLanguageSettings()
void
CMenuManager::LoadAllTextures()
{
#ifndef KEEP_FRONTEND_LOADED
if (m_bSpritesLoaded)
return;
#else
if (m_bFrontendLoaded)
return;
m_bFrontendLoaded = true;
#endif
// First icon is hidden behind arrow
m_LeftMostRadioX = MENU_X_LEFT_ALIGNED(MENURADIO_ICON_FIRST_X - MENURADIO_ICON_SIZE);
CTimer::Stop();
#ifdef KEEP_FRONTEND_LOADED
if (m_bSpritesLoaded)
return;
#endif
CStreaming::MakeSpaceFor(350 * CDSTREAM_SECTOR_SIZE); // twice of it in mobile
CStreaming::ImGonnaUseStreamingMemory();
CGame::TidyUpMemory(false, true);
@ -4790,13 +4805,15 @@ CMenuManager::ProcessUserInput(uint8 goDown, uint8 goUp, uint8 optionSelected, u
ControlsManager.MakeControllerActionsBlank();
ControlsManager.InitDefaultControlConfiguration();
ControlsManager.InitDefaultControlConfigMouse(MousePointerStateHelper.GetMouseSetUp());
#if !defined RW_GL3
#ifdef _WIN32
if (AllValidWinJoys.m_aJoys[JOYSTICK1].m_bInitialised) {
DIDEVCAPS devCaps;
devCaps.dwSize = sizeof(DIDEVCAPS);
PSGLOBAL(joy1)->GetCapabilities(&devCaps);
ControlsManager.InitDefaultControlConfigJoyPad(devCaps.dwButtons);
}
#elif defined __WIIU__
ControlsManager.InitDefaultControlConfigJoyPad(16);
#else
if (PSGLOBAL(joy1id) != -1 && glfwJoystickPresent(PSGLOBAL(joy1id))) {
int count;
@ -4811,7 +4828,11 @@ CMenuManager::ProcessUserInput(uint8 goDown, uint8 goUp, uint8 optionSelected, u
#endif
TheCamera.m_fMouseAccelHorzntl = 0.0025f;
CVehicle::m_bDisableMouseSteering = true;
#ifdef __WIIU__
m_ControlMethod = CONTROL_CLASSIC;
#else
m_ControlMethod = CONTROL_STANDARD;
#endif
#ifdef PC_PLAYER_CONTROLS
TheCamera.m_bUseMouse3rdPerson = true;
#else
@ -5513,31 +5534,44 @@ CMenuManager::SwitchMenuOnAndOff()
}
void
#ifdef KEEP_FRONTEND_LOADED
CMenuManager::UnloadTextures(bool forceUnload)
#else
CMenuManager::UnloadTextures()
#endif
{
if (m_nCurrScreen == MENUPAGE_SOUND_SETTINGS)
DMAudio.StopFrontEndTrack();
DMAudio.PlayFrontEndSound(SOUND_FRONTEND_MENU_STARTING, 0);
DMAudio.ChangeMusicMode(MUSICMODE_GAME);
if (m_bSpritesLoaded) {
printf("REMOVE frontend\n");
int frontend = CTxdStore::FindTxdSlot("frontend1");
for (int i = 0; i < 3; ++i)
m_aFrontEndSprites[i].Delete();
CTxdStore::RemoveTxd(frontend);
if (!m_OnlySaveMenu) {
int frontend2 = CTxdStore::FindTxdSlot("frontend2");
for (int i = 3; i < NUM_MENU_SPRITES; ++i)
#ifdef KEEP_FRONTEND_LOADED
if (forceUnload)
#endif
{
if (m_bSpritesLoaded) {
printf("REMOVE frontend\n");
int frontend = CTxdStore::FindTxdSlot("frontend1");
for (int i = 0; i < 3; ++i)
m_aFrontEndSprites[i].Delete();
CTxdStore::RemoveTxd(frontend2);
}
CTxdStore::RemoveTxd(frontend);
m_bSpritesLoaded = false;
if (!m_OnlySaveMenu) {
int frontend2 = CTxdStore::FindTxdSlot("frontend2");
for (int i = 3; i < NUM_MENU_SPRITES; ++i)
m_aFrontEndSprites[i].Delete();
CTxdStore::RemoveTxd(frontend2);
}
m_bSpritesLoaded = false;
}
}
#ifdef KEEP_FRONTEND_LOADED
m_bFrontendLoaded = false;
#endif
m_OnlySaveMenu = false;
CUserDisplay::PlaceName.ProcessAfterFrontEndShutDown();
}

View File

@ -599,6 +599,9 @@ public:
int32 m_firstStartCounter;
CSprite2d m_aFrontEndSprites[NUM_MENU_SPRITES];
bool m_bSpritesLoaded;
#ifdef KEEP_FRONTEND_LOADED
bool m_bFrontendLoaded;
#endif
int32 m_LeftMostRadioX;
int32 m_ScrollRadioBy;
int32 m_nCurrScreen;
@ -771,7 +774,11 @@ public:
float StretchX(float);
float StretchY(float);
void SwitchMenuOnAndOff();
#ifdef KEEP_FRONTEND_LOADED
void UnloadTextures(bool forceUnload = false);
#else
void UnloadTextures();
#endif
void WaitForUserCD();
int GetNumOptionsCntrlConfigScreens();
void SwitchToNewScreen(int8);

View File

@ -862,6 +862,8 @@ CMouseControllerState CMousePointerStateHelper::GetMouseSetUp()
state.WHEELUP = true;
}
}
#elif __WIIU__
// no mouse on the Wii U
#else
// It seems there is no way to get number of buttons on mouse, so assign all buttons if we have mouse.
double xpos = 1.0f, ypos;
@ -921,6 +923,8 @@ void CPad::UpdateMouse()
NewMouseControllerState = PCTempMouseControllerState;
}
}
#elif __WIIU__
// no mouse on the Wii U
#else
if ( IsForegroundApp() && PSGLOBAL(cursorIsInWindow) )
{

View File

@ -256,22 +256,28 @@ CStreaming::Init2(void)
#endif
}
#ifdef WIIU_CHANNEL
#define TXD_PATH "/vol/external01/wiiu/apps/reVC/MODELS/TXD.IMG"
#else
#define TXD_PATH "MODELS\\TXD.IMG"
#endif
void
CStreaming::Init(void)
{
#ifdef USE_TXD_CDIMAGE
if(!CanVideoCardDoDXT()){
int txdHandle = CFileMgr::OpenFile("MODELS\\TXD.IMG", "r");
int txdHandle = CFileMgr::OpenFile(TXD_PATH, "r");
if (txdHandle)
CFileMgr::CloseFile(txdHandle);
if (!CheckVideoCardCaps() && txdHandle) {
CdStreamAddImage("MODELS\\TXD.IMG");
CdStreamAddImage(TXD_PATH);
CStreaming::Init2();
} else {
CStreaming::Init2();
if (CreateTxdImageForVideoCard()) {
CStreaming::Shutdown();
CdStreamAddImage("MODELS\\TXD.IMG");
CdStreamAddImage(TXD_PATH);
CStreaming::Init2();
}
}
@ -415,6 +421,8 @@ CStreaming::LoadCdDirectory(const char *dirname, int n)
imgSelector = n<<24;
assert(sizeof(direntry) == 32);
while(CFileMgr::Read(fd, (char*)&direntry, sizeof(direntry))){
memLittle32(&direntry.offset);
memLittle32(&direntry.size);
bool bAddToStreaming = false;
if(direntry.size > (uint32)ms_streamingBufferSize)

View File

@ -106,6 +106,36 @@ typedef uint8 bool8;
typedef uint16 bool16;
typedef uint32 bool32;
#ifdef BIGENDIAN
#define BSWAP32(x) __builtin_bswap32(x)
#define BSWAP16(x) __builtin_bswap16(x)
inline float _floatswap32(float f)
{
uint32 _swapval = BSWAP32(*(uint32*)&f);
return *(float*)&_swapval;
}
#define FLOATSWAP32(x) _floatswap32(x)
inline void _memLittle32(void* val)
{
*(uint32*)val = BSWAP32(*(uint32*)val);
}
#define memLittle32(val) _memLittle32(val)
inline void _memLittle16(void* val)
{
*(uint16*)val = BSWAP16(*(uint16*)val);
}
#define memLittle16(val) _memLittle16(val)
#else
#define BSWAP32(x) (x)
#define BSWAP16(x) (x)
#define FLOATSWAP32(x) (x)
#define memLittle32(val)
#define memLittle16(val)
#endif
#if defined(_MSC_VER) || defined (__MWERKS__)
typedef ptrdiff_t ssize_t;
#endif
@ -335,6 +365,9 @@ void re3_usererror(const char *format, ...);
#define DEV(f, ...) re3_debug("[DEV]: " f, ## __VA_ARGS__)
#endif
#define __FILENAME_X__ (strrchr(__FILE__, '\\') ? strrchr(__FILE__, '\\') + 1 : __FILE__)
#define __FILENAME__ (strrchr(__FILE__, '/') ? strrchr(__FILE__, '/') + 1 : __FILENAME_X__)
#ifdef __MWERKS__
void debug(char *f, ...);
void Error(char *f, ...);
@ -344,7 +377,7 @@ __inline__ void TRACE(char *f, ...) { } // this is re3 only, and so the function
#define debug(f, ...) re3_debug("[DBG]: " f, ## __VA_ARGS__)
#define Error(f, ...) re3_debug("[ERROR]: " f, ## __VA_ARGS__)
#ifndef MASTER
#define TRACE(f, ...) re3_trace(__FILE__, __LINE__, __FUNCTION__, f, ## __VA_ARGS__)
#define TRACE(f, ...) re3_trace(__FILENAME__, __LINE__, __FUNCTION__, f, ## __VA_ARGS__)
#define USERERROR(f, ...) re3_usererror(f, ## __VA_ARGS__)
#else
#define TRACE(f, ...)
@ -352,8 +385,9 @@ __inline__ void TRACE(char *f, ...) { } // this is re3 only, and so the function
#endif
#endif
#ifndef MASTER
#define assert(_Expression) (void)( (!!(_Expression)) || (re3_assert(#_Expression, __FILE__, __LINE__, __FUNCTION__), 0) )
#undef assert
#if !defined(MASTER) || defined(__WIIU__)
#define assert(_Expression) (void)( (!!(_Expression)) || (re3_assert(#_Expression, __FILENAME__, __LINE__, __FUNCTION__), 0) )
#else
#define assert(_Expression)
#endif
@ -531,7 +565,8 @@ inline void SkipSaveBuf(uint8*& buf, uint32 &length, int32 skip)
template<typename T>
inline const T ReadSaveBuf(uint8 *&buf)
{
T &value = *(T*)buf;
T value;
memcpy(&value, buf, sizeof(T));
SkipSaveBuf(buf, sizeof(T));
return value;
}
@ -539,7 +574,8 @@ inline const T ReadSaveBuf(uint8 *&buf)
template<typename T>
inline const T ReadSaveBuf(uint8 *&buf, uint32 &length)
{
T &value = *(T*)buf;
T value;
memcpy(&value, buf, sizeof(T));
SkipSaveBuf(buf, length, sizeof(T));
return value;
}
@ -547,19 +583,19 @@ inline const T ReadSaveBuf(uint8 *&buf, uint32 &length)
template<typename T>
inline T *WriteSaveBuf(uint8 *&buf, const T &value)
{
T *p = (T*)buf;
*p = value;
memcpy(buf, &value, sizeof(T));
T* result = (T*)buf;
SkipSaveBuf(buf, sizeof(T));
return p;
return result;
}
template<typename T>
inline T *WriteSaveBuf(uint8 *&buf, uint32 &length, const T &value)
{
T *p = (T*)buf;
*p = value;
memcpy(buf, &value, sizeof(T));
T* result = (T*)buf;
SkipSaveBuf(buf, length, sizeof(T));
return p;
return result;
}

View File

@ -164,7 +164,7 @@ enum Config {
// This is enabled for all released games except mobile
// any debug stuff that is only left in mobile, is not in MASTER
//#define MASTER
#define MASTER
// once and for all:
// pc: FINAL & MASTER
@ -264,16 +264,18 @@ enum Config {
#define USE_TXD_CDIMAGE // generate and load textures from txd.img
#define PS2_ALPHA_TEST // emulate ps2 alpha test
#define IMPROVED_VIDEOMODE // save and load videomode parameters instead of a magic number
#define DISABLE_LOADING_SCREEN // disable the loading screen which vastly improves the loading time
// #define DISABLE_LOADING_SCREEN // disable the loading screen which vastly improves the loading time
#define DISABLE_VSYNC_ON_TEXTURE_CONVERSION // make texture conversion work faster by disabling vsync
#define ANISOTROPIC_FILTERING // set all textures to max anisotropic filtering
//#define USE_TEXTURE_POOL
#ifdef LIBRW
#ifndef __WIIU__
#define EXTENDED_COLOURFILTER // more options for colour filter (replaces mblur)
#define EXTENDED_PIPELINES // custom render pipelines (includes Neo)
#define SCREEN_DROPLETS // neo water droplets
#define NEW_RENDERER // leeds-like world rendering, needs librw
#endif
#endif
#define FIX_SPRITES // fix sprites aspect ratio(moon, coronas, particle etc)
@ -292,7 +294,7 @@ enum Config {
#if !defined(RW_GL3) && defined(_WIN32)
#define XINPUT
#endif
#if !defined(_WIN32) && !defined(__SWITCH__)
#if !defined(_WIN32) && !defined(__SWITCH__) && !defined(__WIIU__)
#define DONT_TRUST_RECOGNIZED_JOYSTICKS // Then we'll only rely on GLFW gamepad DB, and expect user to enter Controller->Detect joysticks if his joystick isn't on that list.
#endif
#define DETECT_PAD_INPUT_SWITCH // Adds automatic switch of pad related stuff between controller and kb/m
@ -314,8 +316,8 @@ enum Config {
//# define PS2_MENU_USEALLPAGEICONS
#else
# define MAP_ENHANCEMENTS // Adding waypoint and better mouse support
# define TRIANGLE_BACK_BUTTON
//# define CIRCLE_BACK_BUTTON
//# define TRIANGLE_BACK_BUTTON
# define CIRCLE_BACK_BUTTON
#define LEGACY_MENU_OPTIONS // i.e. frame sync(vsync)
#define MUCH_SHORTER_OUTRO_SCREEN
// #define XBOX_MESSAGE_SCREEN // Blue background, no "saved successfully press OK" screen etc.
@ -325,7 +327,9 @@ enum Config {
# define GRAPHICS_MENU_OPTIONS // otherwise Display settings will be scrollable
# define NO_ISLAND_LOADING // disable loadscreen between islands via loading all island data at once, consumes more memory and CPU
# define CUTSCENE_BORDERS_SWITCH
# define MULTISAMPLING // adds MSAA option
# ifndef __WIIU__ // not supported in gx2 librw
# define MULTISAMPLING // adds MSAA option
#endif
# define INVERT_LOOK_FOR_PAD // enable the hidden option
# endif
#endif
@ -344,7 +348,7 @@ static_assert(false, "SUPPORT_XBOX_SCRIPT and SUPPORT_MOBILE_SCRIPT are mutually
//#define MISSION_REPLAY // mobile feature
#endif
//#define SIMPLIER_MISSIONS // apply simplifications from mobile
#define USE_ADVANCED_SCRIPT_DEBUG_OUTPUT
//#define USE_ADVANCED_SCRIPT_DEBUG_OUTPUT
#define SCRIPT_LOG_FILE_LEVEL 0 // 0 == no log, 1 == overwrite every frame, 2 == full log
#ifndef USE_ADVANCED_SCRIPT_DEBUG_OUTPUT
@ -378,7 +382,7 @@ static_assert(false, "SUPPORT_XBOX_SCRIPT and SUPPORT_MOBILE_SCRIPT are mutually
// Audio
#define AUDIO_CACHE // cache sound lengths to speed up the cold boot
//#define PS2_AUDIO_PATHS // changes audio paths for cutscenes and radio to PS2 paths (needs vbdec on MSS builds)
//#define AUDIO_OAL_USE_SNDFILE // use libsndfile to decode WAVs instead of our internal decoder
#define AUDIO_OAL_USE_SNDFILE // use libsndfile to decode WAVs instead of our internal decoder
#define AUDIO_OAL_USE_MPG123 // use mpg123 to support mp3 files
#ifdef AUDIO_OPUS
@ -406,6 +410,16 @@ static_assert(false, "SUPPORT_XBOX_SCRIPT and SUPPORT_MOBILE_SCRIPT are mutually
#undef NO_ISLAND_LOADING
#endif
#ifdef __WIIU__
#define KEEP_FRONTEND_LOADED
#define BUFFER_FILES
#endif
#ifdef BUFFER_FILES
#define IO_BUFFER_SIZE (128*1024)
#define INI_BUFFER_SIZE (8*1024) // 8k should be enough for the ini file
#endif
// -------
#if defined __MWERKS__ || defined VANILLA_DEFINES

View File

@ -37,7 +37,7 @@
#include "MBlur.h"
#include "ControllerConfig.h"
#ifdef DONT_TRUST_RECOGNIZED_JOYSTICKS
#if 1
#include "crossplatform.h"
#endif
@ -46,6 +46,11 @@
#include <stdarg.h>
#endif
#ifdef __WIIU__
#include <coreinit/debug.h>
#include <whb/log.h>
#endif
#include <list>
#ifdef RWLIBS
@ -352,12 +357,20 @@ void SaveINIControllerSettings()
StoreIni("Controller", "JoystickName", gSelectedJoystickName, 128);
#endif
StoreIni("Controller", "PadButtonsInited", ControlsManager.ms_padButtonsInited);
#ifdef WIIU_CHANNEL
cfg.write_file("/vol/external01/wiiu/apps/reVC/reVC.ini");
#else
cfg.write_file("reVC.ini");
#endif
}
bool LoadINISettings()
{
#ifdef WIIU_CHANNEL
if (!cfg.load_file("/vol/external01/wiiu/apps/reVC/reVC.ini"))
#else
if (!cfg.load_file("reVC.ini"))
#endif
return false;
#ifdef IMPROVED_VIDEOMODE
@ -527,7 +540,11 @@ void SaveINISettings()
}
#endif
#ifdef WIIU_CHANNEL
cfg.write_file("/vol/external01/wiiu/apps/reVC/reVC.ini");
#else
cfg.write_file("reVC.ini");
#endif
}
#endif
@ -1033,7 +1050,7 @@ const int re3_buffsize = 1024;
static char re3_buff[re3_buffsize];
#endif
#ifndef MASTER
#if !defined(MASTER) || defined(__WIIU__)
void re3_assert(const char *expr, const char *filename, unsigned int lineno, const char *func)
{
#ifdef _WIN32
@ -1081,6 +1098,12 @@ void re3_assert(const char *expr, const char *filename, unsigned int lineno, con
return;
abort();
#elif __WIIU__
WHBLogPrintf("\nRE3 ASSERT FAILED\n\tFile: %s\n\tLine: %d\n\tFunction: %s\n\tExpression: %s\n",filename,lineno,func,expr);
char buf[2048];
sprintf(buf, "RE3 ASSERT FAILED\nFile: %s\nLine: %d\nFunction: %s\nExpression: %s\n",filename,lineno,func,expr);
OSFatal(buf);
#else
// TODO
printf("\nRE3 ASSERT FAILED\n\tFile: %s\n\tLine: %d\n\tFunction: %s\n\tExpression: %s\n",filename,lineno,func,expr);
@ -1101,7 +1124,11 @@ void re3_debug(const char *format, ...)
#endif
va_end(va);
#ifdef __WIIU__
WHBLogPrintf("%s", re3_buff);
#else
printf("%s", re3_buff);
#endif
CDebug::DebugAddText(re3_buff);
#endif
}
@ -1142,7 +1169,11 @@ void re3_usererror(const char *format, ...)
_exit(3);
#else
vsprintf(re3_buff, format, va);
#ifdef __WIIU__
WHBLogPrintf("\nRE3 Error!\n\t%s\n",re3_buff);
#else
printf("\nRE3 Error!\n\t%s\n",re3_buff);
#endif
assert(false);
#endif
}

View File

@ -33,6 +33,9 @@
#include <cstdio> // for std::FILE
#include <algorithm> // for std::find_if
#include <functional> // for std::function
#ifdef BUFFER_FILES
#include <malloc.h> // for memalign
#endif
namespace linb
{
@ -193,6 +196,11 @@ namespace linb
string_type null_string;
size_type pos;
#ifdef BUFFER_FILES
char* buffer = (char*) memalign(0x40, INI_BUFFER_SIZE);
setvbuf(f, buffer, _IOFBF, INI_BUFFER_SIZE);
#endif
// Trims an string
auto trim = [](string_type& s, bool trimLeft, bool trimRight) -> string_type&
{
@ -264,6 +272,9 @@ namespace linb
}
fclose(f);
#ifdef BUFFER_FILES
free(buffer);
#endif
return true;
}
return false;
@ -276,6 +287,10 @@ namespace linb
{
if(FILE* f = fopen(filename, "w"))
{
#ifdef BUFFER_FILES
char* buffer = (char*) memalign(0x40, INI_BUFFER_SIZE);
setvbuf(f, buffer, _IOFBF, INI_BUFFER_SIZE);
#endif
bool first = true;
for(auto& sec : this->data)
{
@ -290,6 +305,9 @@ namespace linb
}
}
fclose(f);
#ifdef BUFFER_FILES
free(buffer);
#endif
return true;
}
return false;

View File

@ -152,7 +152,9 @@ inline CVector MultiplyInverse(const CMatrix &mat, const CVector &vec)
class CCompressedMatrixNotAligned
{
#ifndef BIGENDIAN
CVector m_vecPos;
#endif
int8 m_rightX;
int8 m_rightY;
int8 m_rightZ;
@ -160,6 +162,10 @@ class CCompressedMatrixNotAligned
int8 m_upY;
int8 m_upZ;
public:
#ifdef BIGENDIAN
// needs to be public for bswapping
CVector m_vecPos;
#endif
void CompressFromFullMatrix(CMatrix &other);
void DecompressIntoFullMatrix(CMatrix &other);
};

View File

@ -247,6 +247,14 @@ CMBlur::CreateImmediateModeData(RwCamera *cam, RwRect *rect)
RwIm2DVertexSetU(&Vertex2[3], 1.0f, 1.0f/RwCameraGetNearClipPlane(cam));
RwIm2DVertexSetV(&Vertex2[3], 0.0f, 1.0f/RwCameraGetNearClipPlane(cam));
RwIm2DVertexSetIntRGBA(&Vertex2[3], 255, 255, 255, 255);
#ifdef __WIIU__
// The texture from the gx2 rasterRenderFast are currently mirrored so flip our Vs
RwIm2DVertexSetV(&Vertex[0], 1.0f, 1.0f/RwCameraGetNearClipPlane(cam));
RwIm2DVertexSetV(&Vertex[1], 0.0f, 1.0f/RwCameraGetNearClipPlane(cam));
RwIm2DVertexSetV(&Vertex[2], 0.0f, 1.0f/RwCameraGetNearClipPlane(cam));
RwIm2DVertexSetV(&Vertex[3], 1.0f, 1.0f/RwCameraGetNearClipPlane(cam));
#endif
}
void

View File

@ -32,6 +32,8 @@ FindPlayerDff(uint32 &offset, uint32 &size)
do {
if (!CFileMgr::Read(file, (char*)&info, sizeof(CDirectory::DirectoryInfo)))
return;
memLittle32(&info.offset);
memLittle32(&info.size);
} while (strcasecmp("player.dff", info.name) != 0);
offset = info.offset;

View File

@ -137,6 +137,20 @@ CWaterLevel::Initialise(Const char *pWaterDat)
CFileMgr::Read(hFile, (char *)aWaterBlockList, sizeof(aWaterBlockList));
CFileMgr::Read(hFile, (char *)aWaterFineBlockList, sizeof(aWaterFineBlockList));
CFileMgr::CloseFile(hFile);
#ifdef BIGENDIAN
memLittle32(&ms_nNoOfWaterLevels);
for (int i = 0; i < 48; i++)
ms_aWaterZs[i] = FLOATSWAP32(ms_aWaterZs[i]);
for (int i = 0; i < 48; i++)
{
CRect* r = &ms_aWaterRects[i];
r->left = FLOATSWAP32(r->left);
r->bottom = FLOATSWAP32(r->bottom);
r->right = FLOATSWAP32(r->right);
r->top = FLOATSWAP32(r->top);
}
#endif
}
#ifndef MASTER
else
@ -261,6 +275,19 @@ CWaterLevel::Initialise(Const char *pWaterDat)
if (hFile > 0)
{
#ifdef BIGENDIAN
ms_nNoOfWaterLevels = BSWAP32(ms_nNoOfWaterLevels);
for (int i = 0; i < 48; i++)
ms_aWaterZs[i] = FLOATSWAP32(ms_aWaterZs[i]);
for (int i = 0; i < 48; i++)
{
CRect* r = &ms_aWaterRects[i];
r->left = FLOATSWAP32(r->left);
r->bottom = FLOATSWAP32(r->bottom);
r->right = FLOATSWAP32(r->right);
r->top = FLOATSWAP32(r->top);
}
#endif
CFileMgr::Write(hFile, (char *)&ms_nNoOfWaterLevels, sizeof(ms_nNoOfWaterLevels));
CFileMgr::Write(hFile, (char *)ms_aWaterZs, sizeof(ms_aWaterZs));
CFileMgr::Write(hFile, (char *)ms_aWaterRects, sizeof(ms_aWaterRects));

View File

@ -34,6 +34,8 @@ GeometryListStreamRead1(RwStream *stream, rpGeometryList *geomlist)
if(RwStreamRead(stream, &numGeoms, 4) != 4)
return nil;
memLittle32(&numGeoms);
numberGeometrys = numGeoms/2;
geomlist->numGeoms = numGeoms;
if(geomlist->numGeoms > 0){
@ -101,6 +103,11 @@ ClumpAtomicStreamRead(RwStream *stream, rwFrameList *frmList, rpGeometryList *ge
if(RwStreamRead(stream, &a, size) != size)
return nil;
memLittle32(&a.frameIndex);
memLittle32(&a.geomIndex);
memLittle32(&a.flags);
memLittle32(&a.unused);
atomic = RpAtomicCreate();
if(atomic == nil)
return nil;
@ -150,6 +157,10 @@ RpClumpGtaStreamRead1(RwStream *stream)
return false;
}
memLittle32(&gClumpInfo.numAtomics);
memLittle32(&gClumpInfo.numCameras);
memLittle32(&gClumpInfo.numLights);
if(!RwStreamFindChunk(stream, rwID_FRAMELIST, nil, &version))
return false;
if(rwFrameListStreamRead(stream, &gFrameList) == nil)

View File

@ -84,6 +84,8 @@ RwTexDictionaryGtaStreamRead(RwStream *stream)
if(RwStreamRead(stream, &numTextures, size) != size)
return nil;
memLittle32(&numTextures);
texDict = RwTexDictionaryCreate();
if(texDict == nil)
return nil;
@ -119,6 +121,8 @@ RwTexDictionaryGtaStreamRead1(RwStream *stream)
if(RwStreamRead(stream, &numTextures, size) != size)
return nil;
memLittle32(&numTextures);
texDict = RwTexDictionaryCreate();
if(texDict == nil)
return nil;
@ -199,7 +203,11 @@ ReadVideoCardCapsFile(GPUcaps *caps)
{
memset(caps, 0, sizeof(GPUcaps));
#ifdef WIIU_CHANNEL
int32 file = CFileMgr::OpenFile("/vol/external01/wiiu/apps/reVC/DATA/CAPS.DAT", "rb");
#else
int32 file = CFileMgr::OpenFile("DATA\\CAPS.DAT", "rb");
#endif
if (file != 0) {
CFileMgr::Read(file, (char*)&caps->version, 4);
CFileMgr::Read(file, (char*)&caps->platform, 4);
@ -226,7 +234,11 @@ WriteVideoCardCapsFile(void)
{
GPUcaps caps;
GetGPUcaps(&caps);
#ifdef WIIU_CHANNEL
int32 file = CFileMgr::OpenFile("/vol/external01/wiiu/apps/reVC/DATA/CAPS.DAT", "wb");
#else
int32 file = CFileMgr::OpenFile("DATA\\CAPS.DAT", "wb");
#endif
if (file != 0) {
CFileMgr::Write(file, (char*)&caps.version, 4);
CFileMgr::Write(file, (char*)&caps.platform, 4);
@ -379,7 +391,11 @@ CreateTxdImageForVideoCard()
RwFileFunctions *filesys = RwOsGetFileInterface();
#endif
#ifdef WIIU_CHANNEL
RwStream *img = RwStreamOpen(rwSTREAMFILENAME, rwSTREAMWRITE, "/vol/external01/wiiu/apps/reVC/models/txd.img");
#else
RwStream *img = RwStreamOpen(rwSTREAMFILENAME, rwSTREAMWRITE, "models\\txd.img");
#endif
if (img == nil) {
// original code does otherwise and it leaks
delete []buf;
@ -450,8 +466,14 @@ CreateTxdImageForVideoCard()
RwStreamWrite(img, buf, num);
}
#ifndef BIGENDIAN
dirInfo.offset = pos / CDSTREAM_SECTOR_SIZE;
dirInfo.size = size;
#else
// Save as little endian for consistancy
dirInfo.offset = BSWAP32(pos / CDSTREAM_SECTOR_SIZE);
dirInfo.size = BSWAP32(size);
#endif
strncpy(dirInfo.name, filename, sizeof(dirInfo.name));
pDir->AddItem(dirInfo);
CStreaming::RemoveTxd(i);
@ -473,7 +495,11 @@ CreateTxdImageForVideoCard()
rw::gl3::needToReadBackTextures = false;
#endif
#ifdef WIIU_CHANNEL
if (!pDir->WriteDirFile("/vol/external01/wiiu/apps/reVC/models/txd.dir")) {
#else
if (!pDir->WriteDirFile("models\\txd.dir")) {
#endif
DealWithTxdWriteError(i, TXDSTORESIZE, "CVT_ERR");
delete pDir;
return false;

View File

@ -1,6 +1,10 @@
#include "common.h"
#include "crossplatform.h"
#ifdef __WIIU__
#include <coreinit/time.h>
#endif
// Codes compatible with Windows and Linux
#ifndef _WIN32
@ -17,9 +21,22 @@ void tmToSystemTime(const tm *tm, SYSTEMTIME *out) {
}
void GetLocalTime_CP(SYSTEMTIME *out) {
#ifndef __WIIU__
time_t timestamp = time(nil);
tm *localTm = localtime(&timestamp);
tmToSystemTime(localTm, out);
#else
OSCalendarTime time;
OSTicksToCalendarTime(OSGetTime(), &time);
out->wYear = time.tm_year;
out->wMonth = time.tm_mon + 1;
out->wDayOfWeek = time.tm_wday;
out->wDay = time.tm_mday;
out->wHour = time.tm_hour;
out->wMinute = time.tm_min;
out->wSecond = time.tm_sec;
out->wMilliseconds = time.tm_msec;
#endif
}
#endif
@ -38,7 +55,7 @@ HANDLE FindFirstFile(const char* pathname, WIN32_FIND_DATA* firstfile) {
// Case-sensitivity and backslashes...
// Will be freed at the bottom
char *realFolder = casepath(folder);
char *realFolder = casepath(folder, false);
if (realFolder) {
folder = realFolder;
}
@ -165,7 +182,13 @@ char* casepath(char const* path, bool checkPathFirst)
}
size_t l = strlen(path);
#ifdef __WIIU__
// alloca seems to cause issues here, so just use the stack
char _p[l+1];
char* p = _p;
#else
char* p = (char*)alloca(l + 1);
#endif
char* out = (char*)malloc(l + 3); // for extra ./
strcpy(p, path);
@ -177,7 +200,23 @@ char* casepath(char const* path, bool checkPathFirst)
DIR* d;
if (p[0] == '/' || p[0] == '\\')
{
#ifdef __WIIU__
// skip the /vol/*/ as we can't open it
if (strncmp(path, "/vol/content", strlen("/vol/content")) == 0) {
d = opendir("/vol/content/");
p += 13;
strcpy(out, "/vol/content");
rl += 12;
}
else if (strncmp(path, "/vol/external01", strlen("/vol/external01")) == 0) {
d = opendir("/vol/external01/");
p += 16;
strcpy(out, "/vol/external01");
rl += 15;
}
#else
d = opendir("/");
#endif
}
else
{
@ -236,7 +275,7 @@ char* casepath(char const* path, bool checkPathFirst)
if (!e)
{
printf("casepath couldn't find dir/file \"%s\", full path was %s\n", c, path);
debug("casepath couldn't find dir/file \"%s\", full path was %s\n", c, path);
// No match, add original name and continue converting further slashes.
strcpy(out + rl, c);
rl += strlen(c);
@ -251,7 +290,7 @@ char* casepath(char const* path, bool checkPathFirst)
}
if (rl > l + 2) {
printf("\n\ncasepath: Corrected path length is longer then original+2:\n\tOriginal: %s (%zu chars)\n\tCorrected: %s (%zu chars)\n\n", path, l, out, rl);
debug("\n\ncasepath: Corrected path length is longer then original+2:\n\tOriginal: %s (%zu chars)\n\tCorrected: %s (%zu chars)\n\n", path, l, out, rl);
}
return out;
}

View File

@ -33,6 +33,10 @@ char *_strdate(char *buf);
extern DWORD _dwOperatingSystemVersion;
#define fcaseopen fopen
#else
#ifdef __WIIU__
#include "wiiu.h"
#endif
char *strupr(char *str);
char *strlwr(char *str);

View File

@ -0,0 +1,281 @@
// based on whbs crash handler <https://github.com/devkitPro/wut/blob/master/libraries/libwhb/src/crash.c>
#include <coreinit/core.h>
#include <coreinit/debug.h>
#include <coreinit/exception.h>
#include <coreinit/internal.h>
#include <coreinit/systeminfo.h>
#include <coreinit/thread.h>
#include <coreinit/time.h>
#include <stdarg.h>
#include <stdio.h>
#include <whb/log.h>
#define LOG_DISASSEMBLY_SIZE (4096)
#define LOG_STACK_TRACE_SIZE (4096)
#define LOG_REGISTER_SIZE (4096)
#define THREAD_STACK_SIZE (4096)
static const char *
sCrashType = NULL;
static char
sDisassemblyBuffer[LOG_DISASSEMBLY_SIZE];
static uint32_t
sDisassemblyLength = 0;
static char
sStackTraceBuffer[LOG_STACK_TRACE_SIZE];
static uint32_t
sStackTraceLength = 0;
static char
sRegistersBuffer[LOG_REGISTER_SIZE];
static uint32_t
sRegistersLength = 0;
static char
sFatalBuffer[LOG_REGISTER_SIZE + LOG_DISASSEMBLY_SIZE + LOG_STACK_TRACE_SIZE];
static uint8_t
sCrashThreadStack[THREAD_STACK_SIZE];
static OSThread __attribute__((aligned(8)))
sCrashThread;
static int
crashReportThread(int argc, const char **argv)
{
// Log crash dump
#ifdef _DEBUG_BUILD_
WHBLogPrint(sRegistersBuffer);
WHBLogPrint(sDisassemblyBuffer);
WHBLogPrint(sStackTraceBuffer);
#endif
sprintf(sFatalBuffer, "RE3 CRASH\nStackTrace:\n%s", sStackTraceBuffer);
OSFatal(sFatalBuffer);
return 0;
}
static void
disassemblyPrintCallback(const char* fmt, ...)
{
va_list args;
va_start(args, fmt);
sDisassemblyLength += vsprintf(sDisassemblyBuffer + sDisassemblyLength,
fmt, args);
sDisassemblyBuffer[sDisassemblyLength] = 0;
va_end(args);
}
static void
getDisassembly(OSContext *context)
{
sDisassemblyLength = 0;
sDisassemblyBuffer[0] = 0;
if (context->srr0 > 16) {
DisassemblePPCRange((void *)(context->srr0 - 16),
(void *)(context->srr0 + 16),
disassemblyPrintCallback,
OSGetSymbolName,
DISASSEMBLE_PPC_FLAGS_NONE);
}
}
static void
getStackTrace(OSContext *context)
{
int i;
uint32_t *stackPtr;
char name[256];
sStackTraceLength = 0;
sStackTraceBuffer[0] = 0;
stackPtr = (uint32_t *)context->gpr[1];
sStackTraceLength += sprintf(sStackTraceBuffer + sStackTraceLength,
"Address: Back Chain LR Save\n");
for (i = 0; i < 16; ++i) {
uint32_t addr;
if (!stackPtr ||
(uintptr_t)stackPtr == 0x1 ||
(uintptr_t)stackPtr == 0xFFFFFFFF) {
break;
}
sStackTraceLength += sprintf(sStackTraceBuffer + sStackTraceLength,
"0x%08x: 0x%08x 0x%08x",
(uintptr_t)stackPtr,
(uintptr_t)stackPtr[0],
(uintptr_t)stackPtr[1]);
addr = OSGetSymbolName(stackPtr[1], name, sizeof(name));
if (addr) {
sStackTraceLength += sprintf(sStackTraceBuffer + sStackTraceLength,
" %s+0x%x", name,
(uintptr_t)(stackPtr[1] - addr));
}
sStackTraceLength += sprintf(sStackTraceBuffer + sStackTraceLength, "\n");
stackPtr = (uint32_t *)*stackPtr;
}
sStackTraceBuffer[sStackTraceLength] = 0;
}
static void
writeRegister(const char* fmt, ...)
{
va_list args;
va_start(args, fmt);
sRegistersLength += vsprintf(sRegistersBuffer + sRegistersLength, fmt, args);
sRegistersBuffer[sRegistersLength] = 0;
va_end(args);
}
static void
getRegisters(OSContext *context)
{
OSTime tbr = OSGetSystemTime();
uint32_t addr;
char name[256];
int i;
uint64_t *fpr, *psf;
sRegistersLength = 0;
sRegistersBuffer[sRegistersLength] = 0;
writeRegister("--Proc%d-Core%u--------- OSContext 0x%p --------------------\n\n",
OSGetUPID(), OSGetCoreId(), context);
writeRegister("tag1 = 0x%08X (expecting 0x%08X)\n",
(uint32_t)(context->tag >> 32),
(uint32_t)(OS_CONTEXT_TAG >> 32));
writeRegister("tag2 = 0x%08X (expecting 0x%08X)\n",
(uint32_t)(context->tag & 0xFFFFFFFF),
(uint32_t)(OS_CONTEXT_TAG & 0xFFFFFFFF));
writeRegister("TBR = 0x%08X_%08X\n",
(uint32_t)(tbr >> 32), (uint32_t)(tbr & 0xFFFFFFFF));
writeRegister("CR = 0x%08X\n", context->cr);
writeRegister("CTR = 0x%08X\n", context->ctr);
writeRegister("LR = 0x%08X", context->lr);
addr = OSGetSymbolName(context->lr, name, sizeof(name));
if (addr) {
writeRegister(" %s+0x%X", name, context->lr - addr);
}
writeRegister("\n");
writeRegister("SRR0 = 0x%08X", context->srr0);
addr = OSGetSymbolName(context->srr0, name, sizeof(name));
if (addr) {
writeRegister(" %s+0x%X", name, context->srr0 - addr);
}
writeRegister("\n");
writeRegister("SRR1 = 0x%08X\n", context->srr1);
writeRegister("state = 0x%04X\n", context->state);
for (i = 0; i < 16; ++i) {
writeRegister("r%-2d = 0x%08x (%14d) r%-2d = 0x%08x (%14d)\n",
i, context->gpr[i], context->gpr[i],
i + 16, context->gpr[i + 16], context->gpr[i + 16]);
}
writeRegister("\n--GQRs----------\n");
for (i = 0; i < 4; ++i) {
writeRegister("gqr%d = 0x%08x \t gqr%d = 0x%08x\n",
i, context->gqr[i], context->gqr[i],
i + 4, context->gqr[i + 4], context->gqr[i + 4]);
}
writeRegister("\n--Per-core OSContext runtime ----\n");
for (i = 0; i < 3; ++i) {
writeRegister("coretime[%d] = 0x%016llX ticks, %lld second(s) elapsed\n",
i, context->coretime[i],
OSTicksToSeconds(context->coretime[i]));
}
writeRegister("\n--FPRs----------\n");
fpr = (uint64_t *)context->fpr;
for (i = 0; i < 16; ++i) {
writeRegister("fr%d \t= 0x%16.16llx \t fr%d \t= 0x%16.16llx\n",
i, fpr[i],
i + 16, fpr[i + 16]);
}
writeRegister("\n\n--PSFs----------\n");
psf = (uint64_t *)context->psf;
for (i = 0; i < 16; ++i) {
writeRegister("ps%d \t= 0x%16.16llx \t ps%d \t= 0x%16.16llx\n",
i, psf[i],
i + 16, psf[i + 16]);
}
}
static BOOL
handleException(const char *type,
OSContext *context)
{
sCrashType = type;
getDisassembly(context);
getStackTrace(context);
getRegisters(context);
OSCreateThread(&sCrashThread,
crashReportThread,
0,
NULL,
sCrashThreadStack + THREAD_STACK_SIZE,
THREAD_STACK_SIZE,
16,
0);
OSResumeThread(&sCrashThread);
OSSuspendThread((OSThread *)context);
return TRUE;
}
static BOOL
handleAlignment(OSContext *context)
{
return handleException("ALIGNMENT", context);
}
static BOOL
handleDSI(OSContext *context)
{
return handleException("DSI", context);
}
static BOOL
handleISI(OSContext *context)
{
return handleException("ISI", context);
}
static BOOL
handleProgram(OSContext *context)
{
return handleException("PROGRAM", context);
}
void
wiiu_init_crashhandler(void)
{
OSSetExceptionCallbackEx(OS_EXCEPTION_MODE_GLOBAL,
OS_EXCEPTION_TYPE_ALIGNMENT, handleAlignment);
OSSetExceptionCallbackEx(OS_EXCEPTION_MODE_GLOBAL,
OS_EXCEPTION_TYPE_DSI, handleDSI);
OSSetExceptionCallbackEx(OS_EXCEPTION_MODE_GLOBAL,
OS_EXCEPTION_TYPE_ISI, handleISI);
OSSetExceptionCallbackEx(OS_EXCEPTION_MODE_GLOBAL,
OS_EXCEPTION_TYPE_PROGRAM, handleProgram);
}

87
src/skel/wiiu/realpath.c Normal file
View File

@ -0,0 +1,87 @@
#ifdef __WIIU__
#include <assert.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#include <limits.h>
#include <sys/stat.h>
#include <errno.h>
#include <stddef.h>
// The default getcwd prefixes with fs: which causes issues with some functions
char *_getcwd (char *__buf, size_t __size)
{
char buf[__size];
char* ret = getcwd(buf, __size);
if (!ret)
return NULL;
strcpy(__buf, buf + 3);
// remove a '/' at the end
if (__buf[strlen(__buf)-1] == '/') __buf[strlen(__buf)-1] = '\0';
return __buf;
}
/* realpath.c - Return the canonicalized absolute pathname
* Written 2000 by Werner Almesberger
*
* Canonical name: never ends with a slash
*/
static int resolve_path(char *path,char *result,char *pos)
{
if (*path == '/') {
*result = '/';
pos = result+1;
path++;
}
*pos = 0;
if (!*path) return 0;
while (1) {
char *slash;
struct stat st;
slash = *path ? strchr(path,'/') : NULL;
if (slash) *slash = 0;
if (!path[0] || (path[0] == '.' &&
(!path[1] || (path[1] == '.' && !path[2])))) {
pos--;
if (pos != result && path[0] && path[1])
while (*--pos != '/');
}
else {
strcpy(pos,path);
pos = strchr(result,0);
}
if (slash) {
*pos++ = '/';
path = slash+1;
}
*pos = 0;
if (!slash) break;
}
return 0;
}
char *realpath(const char *__restrict path,char *__restrict resolved_path)
{
char cwd[PATH_MAX];
char *path_copy;
int res;
if (!*path) {
errno = ENOENT; /* SUSv2 */
return NULL;
}
if (!_getcwd(cwd,sizeof(cwd))) return NULL;
strcpy(resolved_path,"/");
if (resolve_path(cwd,resolved_path,resolved_path)) return NULL;
strcat(resolved_path,"/");
path_copy = strdup(path);
if (!path_copy) return NULL;
res = resolve_path(path_copy,resolved_path,strchr(resolved_path,0));
free(path_copy);
if (res) return NULL;
return resolved_path;
}
#endif

1540
src/skel/wiiu/wiiu.cpp Normal file

File diff suppressed because it is too large Load Diff

22
src/skel/wiiu/wiiu.h Normal file
View File

@ -0,0 +1,22 @@
#ifndef _WIIU_H_
#define _WIIU_H_
#include "common.h"
typedef struct
{
void* window;
RwBool fullScreen;
RwV2d lastMousePos;
double mouseWheel;
bool cursorIsInWindow;
RwInt8 joy1id;
RwInt8 joy2id;
}
psGlobalType;
#define PSGLOBAL(var) (((psGlobalType *)(RsGlobal.ps))->var)
void CapturePad(RwInt32 padID);
#endif

View File

@ -325,6 +325,11 @@ CKeyArray::Load(size_t length, int file, size_t* offset)
CFileMgr::Read(file, rawbytes, length);
*offset += length;
#endif
#ifdef BIGENDIAN
for (int i = 0; i < numEntries; i++)
memLittle32(&entries[i].valueOffset);
#endif
}
void
@ -419,6 +424,11 @@ CData::Load(size_t length, int file, size_t * offset)
CFileMgr::Read(file, rawbytes, length);
*offset += length;
#endif
#ifdef BIGENDIAN
for (int i = 0; i < numChars; i++)
memLittle16(&chars[i]);
#endif
}
void

2
vendor/librw vendored

@ -1 +1 @@
Subproject commit 60a5ace16309ccd3d174a3ec14a1062540934066
Subproject commit 2e731f8d94013662ed62b4689e5873cc1189ac1d

File diff suppressed because it is too large Load Diff

199
vendor/libsndfile/NEWS vendored
View File

@ -1,199 +0,0 @@
Version 1.0.28 (2017-04-02)
* Fix buffer overruns in FLAC and ID3 handling code.
* Move to variable length header storage.
* Fix detection of Large File Support for 32 bit systems.
* Remove large stack allocations in ALAC handling code.
* Remove all use of Variable Length Arrays.
* Minor bug fixes and improvements.
Version 1.0.27 (2016-06-19)
* Fix an SF_INFO seekable flag regression introduced in 1.0.26.
* Fix potential infinite loops on malformed input files.
* Add string metadata read/write for CAF and RF64.
* Add handling of CUE chunks.
* Fix endian-ness issues in PAF files.
* Minor bug fixes and improvements.
Version 1.0.26 (2015-11-22)
* Fix for CVE-2014-9496, SD2 buffer read overflow.
* Fix for CVE-2014-9756, file_io.c divide by zero.
* Fix for CVE-2015-7805, AIFF heap write overflow.
* Add support for ALAC encoder in a CAF container.
* Add support for Cart chunks in WAV files.
* Minor bug fixes and improvements.
Version 1.0.25 (2011-07-13)
* Fix for Secunia Advisory SA45125, heap overflow in PAF file handler.
* Accept broken WAV files with blockalign == 0.
* Minor bug fixes and improvements.
Version 1.0.24 (2011-03-23)
* WAV files now have an 18 byte u-law and A-law fmt chunk.
* Document virtual I/O functionality.
* Two new methods rawHandle() and takeOwnership() in sndfile.hh.
* AIFF fix for non-zero offset value in SSND chunk.
* Minor bug fixes and improvements.
Version 1.0.23 (2010-10-10)
* Add version metadata to Windows DLL.
* Add a missing 'inline' to sndfile.hh.
* Update docs.
* Minor bug fixes and improvements.
Version 1.0.22 (2010-10-04)
* Couple of fixes for SDS file writer.
* Fixes arising from static analysis.
* Handle FLAC files with ID3 meta data at start of file.
* Handle FLAC files which report zero length.
* Other minor bug fixes and improvements.
Version 1.0.21 (2009-12-13)
* Add a couple of new binary programs to programs/ dir.
* Remove sndfile-jackplay (now in sndfile-tools package).
* Add windows only function sf_wchar_open().
* Bunch of minor bug fixes.
Version 1.0.20 (2009-05-14)
* Fix potential heap overflow in VOC file parser (Tobias Klein, http://www.trapkit.de/).
Version 1.0.19 (2009-03-02)
* Fix for CVE-2009-0186 (Alin Rad Pop, Secunia Research).
* Huge number of minor bug fixes as a result of static analysis.
Version 1.0.18 (2009-02-07)
* Add Ogg/Vorbis support (thanks to John ffitch).
* Remove captive FLAC library.
* Many new features and bug fixes.
* Generate Win32 and Win64 pre-compiled binaries.
Version 1.0.17 (2006-08-31)
* Add sndfile.hh C++ wrapper.
* Update Win32 MinGW build instructions.
* Minor bug fixes and cleanups.
Version 1.0.16 (2006-04-30)
* Add support for Broadcast (BEXT) chunks in WAV files.
* Implement new commands SFC_GET_SIGNAL_MAX and SFC_GET_MAX_ALL_CHANNELS.
* Add support for RIFX (big endian WAV variant).
* Fix configure script bugs.
* Fix bug in INST and MARK chunk writing for AIFF files.
Version 1.0.15 (2006-03-16)
* Fix some ia64 issues.
* Fix precompiled DLL.
* Minor bug fixes.
Version 1.0.14 (2006-02-19)
* Really fix MinGW compile problems.
* Minor bug fixes.
Version 1.0.13 (2006-01-21)
* Fix for MinGW compiler problems.
* Allow readin/write of instrument chunks from WAV and AIFF files.
* Compile problem fix for Solaris compiler.
* Minor cleanups and bug fixes.
Version 1.0.12 (2005-09-30)
* Add support for FLAC and Apple's Core Audio Format (CAF).
* Add virtual I/O interface (still needs docs).
* Cygwin and other Win32 fixes.
* Minor bug fixes and cleanups.
Version 1.0.11 (2004-11-15)
* Add support for SD2 files.
* Add read support for loop info in WAV and AIFF files.
* Add more tests.
* Improve type safety.
* Minor optimisations and bug fixes.
Version 1.0.10 (2004-06-15)
* Fix AIFF read/write mode bugs.
* Add support for compiling Win32 DLLS using MinGW.
* Fix problems resulting in failed compiles with gcc-2.95.
* Improve test suite.
* Minor bug fixes.
Version 1.0.9 (2004-03-30)
* Add handling of AVR (Audio Visual Research) files.
* Improve handling of WAVEFORMATEXTENSIBLE WAV files.
* Fix for using pipes on Win32.
Version 1.0.8 (2004-03-14)
* Correct peak chunk handing for files with > 16 tracks.
* Fix for WAV files with huge number of CUE chunks.
Version 1.0.7 (2004-02-25)
* Fix clip mode detection on ia64, MIPS and other CPUs.
* Fix two MacOSX build problems.
Version 1.0.6 (2004-02-08)
* Added support for native Win32 file access API (Ross Bencina).
* New mode to add clippling then a converting from float/double to integer
would otherwise wrap around.
* Fixed a bug in reading/writing files > 2Gig on Linux, Solaris and others.
* Many minor bug fixes.
* Other random fixes for Win32.
Version 1.0.5 (2003-05-03)
* Added support for HTK files.
* Added new function sf_open_fd() to allow for secure opening of temporary
files as well as reading/writing sound files embedded within larger
container files.
* Added string support for AIFF files.
* Minor bug fixes and code cleanups.
Version 1.0.4 (2003-02-02)
* Added suport of PVF and XI files.
* Added functionality for setting and retreiving strings from sound files.
* Minor code cleanups and bug fixes.
Version 1.0.3 (2002-12-09)
* Minor bug fixes.
Version 1.0.2 (2002-11-24)
* Added support for VOX ADPCM.
* Improved error reporting.
* Added version scripting on Linux and Solaris.
* Minor bug fixes.
Version 1.0.1 (2002-09-14)
* Added MAT and MAT5 file formats.
* Minor bug fixes.
Version 1.0.0 (2002-08-16)
* Final release for 1.0.0.
Version 1.0.0rc6 (2002-08-14)
* Release candidate 6 for the 1.0.0 series.
* MacOS9 fixes.
Version 1.0.0rc5 (2002-08-10)
* Release candidate 5 for the 1.0.0 series.
* Changed the definition of sf_count_t which was causing problems when
libsndfile was compiled with other libraries (ie WxWindows).
* Minor bug fixes.
* Documentation cleanup.
Version 1.0.0rc4 (2002-08-03)
* Release candidate 4 for the 1.0.0 series.
* Minor bug fixes.
* Fix broken Win32 "make check".
Version 1.0.0rc3 (2002-08-02)
* Release candidate 3 for the 1.0.0 series.
* Fix bug where libsndfile was reading beyond the end of the data chunk.
* Added on-the-fly header updates on write.
* Fix a couple of documentation issues.
Version 1.0.0rc2 (2002-06-24)
* Release candidate 2 for the 1.0.0 series.
* Fix compile problem for Win32.
Version 1.0.0rc1 (2002-06-24)
* Release candidate 1 for the 1.0.0 series.
Version 0.0.28 (2002-04-27)
* Last offical release of 0.0.X series of the library.
Version 0.0.8 (1999-02-16)
* First offical release.

Binary file not shown.

Binary file not shown.

View File

@ -1,857 +0,0 @@
/*
** Copyright (C) 1999-2016 Erik de Castro Lopo <erikd@mega-nerd.com>
**
** This program is free software; you can redistribute it and/or modify
** it under the terms of the GNU Lesser General Public License as published by
** the Free Software Foundation; either version 2.1 of the License, or
** (at your option) any later version.
**
** This program is distributed in the hope that it will be useful,
** but WITHOUT ANY WARRANTY; without even the implied warranty of
** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
** GNU Lesser General Public License for more details.
**
** You should have received a copy of the GNU Lesser General Public License
** along with this program; if not, write to the Free Software
** Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
*/
/*
** sndfile.h -- system-wide definitions
**
** API documentation is in the doc/ directory of the source code tarball
** and at http://www.mega-nerd.com/libsndfile/api.html.
*/
#ifndef SNDFILE_H
#define SNDFILE_H
/* This is the version 1.0.X header file. */
#define SNDFILE_1
#include <stdio.h>
#include <stdint.h>
#include <sys/types.h>
#ifdef __cplusplus
extern "C" {
#endif /* __cplusplus */
/* The following file types can be read and written.
** A file type would consist of a major type (ie SF_FORMAT_WAV) bitwise
** ORed with a minor type (ie SF_FORMAT_PCM). SF_FORMAT_TYPEMASK and
** SF_FORMAT_SUBMASK can be used to separate the major and minor file
** types.
*/
enum
{ /* Major formats. */
SF_FORMAT_WAV = 0x010000, /* Microsoft WAV format (little endian default). */
SF_FORMAT_AIFF = 0x020000, /* Apple/SGI AIFF format (big endian). */
SF_FORMAT_AU = 0x030000, /* Sun/NeXT AU format (big endian). */
SF_FORMAT_RAW = 0x040000, /* RAW PCM data. */
SF_FORMAT_PAF = 0x050000, /* Ensoniq PARIS file format. */
SF_FORMAT_SVX = 0x060000, /* Amiga IFF / SVX8 / SV16 format. */
SF_FORMAT_NIST = 0x070000, /* Sphere NIST format. */
SF_FORMAT_VOC = 0x080000, /* VOC files. */
SF_FORMAT_IRCAM = 0x0A0000, /* Berkeley/IRCAM/CARL */
SF_FORMAT_W64 = 0x0B0000, /* Sonic Foundry's 64 bit RIFF/WAV */
SF_FORMAT_MAT4 = 0x0C0000, /* Matlab (tm) V4.2 / GNU Octave 2.0 */
SF_FORMAT_MAT5 = 0x0D0000, /* Matlab (tm) V5.0 / GNU Octave 2.1 */
SF_FORMAT_PVF = 0x0E0000, /* Portable Voice Format */
SF_FORMAT_XI = 0x0F0000, /* Fasttracker 2 Extended Instrument */
SF_FORMAT_HTK = 0x100000, /* HMM Tool Kit format */
SF_FORMAT_SDS = 0x110000, /* Midi Sample Dump Standard */
SF_FORMAT_AVR = 0x120000, /* Audio Visual Research */
SF_FORMAT_WAVEX = 0x130000, /* MS WAVE with WAVEFORMATEX */
SF_FORMAT_SD2 = 0x160000, /* Sound Designer 2 */
SF_FORMAT_FLAC = 0x170000, /* FLAC lossless file format */
SF_FORMAT_CAF = 0x180000, /* Core Audio File format */
SF_FORMAT_WVE = 0x190000, /* Psion WVE format */
SF_FORMAT_OGG = 0x200000, /* Xiph OGG container */
SF_FORMAT_MPC2K = 0x210000, /* Akai MPC 2000 sampler */
SF_FORMAT_RF64 = 0x220000, /* RF64 WAV file */
/* Subtypes from here on. */
SF_FORMAT_PCM_S8 = 0x0001, /* Signed 8 bit data */
SF_FORMAT_PCM_16 = 0x0002, /* Signed 16 bit data */
SF_FORMAT_PCM_24 = 0x0003, /* Signed 24 bit data */
SF_FORMAT_PCM_32 = 0x0004, /* Signed 32 bit data */
SF_FORMAT_PCM_U8 = 0x0005, /* Unsigned 8 bit data (WAV and RAW only) */
SF_FORMAT_FLOAT = 0x0006, /* 32 bit float data */
SF_FORMAT_DOUBLE = 0x0007, /* 64 bit float data */
SF_FORMAT_ULAW = 0x0010, /* U-Law encoded. */
SF_FORMAT_ALAW = 0x0011, /* A-Law encoded. */
SF_FORMAT_IMA_ADPCM = 0x0012, /* IMA ADPCM. */
SF_FORMAT_MS_ADPCM = 0x0013, /* Microsoft ADPCM. */
SF_FORMAT_GSM610 = 0x0020, /* GSM 6.10 encoding. */
SF_FORMAT_VOX_ADPCM = 0x0021, /* OKI / Dialogix ADPCM */
SF_FORMAT_G721_32 = 0x0030, /* 32kbs G721 ADPCM encoding. */
SF_FORMAT_G723_24 = 0x0031, /* 24kbs G723 ADPCM encoding. */
SF_FORMAT_G723_40 = 0x0032, /* 40kbs G723 ADPCM encoding. */
SF_FORMAT_DWVW_12 = 0x0040, /* 12 bit Delta Width Variable Word encoding. */
SF_FORMAT_DWVW_16 = 0x0041, /* 16 bit Delta Width Variable Word encoding. */
SF_FORMAT_DWVW_24 = 0x0042, /* 24 bit Delta Width Variable Word encoding. */
SF_FORMAT_DWVW_N = 0x0043, /* N bit Delta Width Variable Word encoding. */
SF_FORMAT_DPCM_8 = 0x0050, /* 8 bit differential PCM (XI only) */
SF_FORMAT_DPCM_16 = 0x0051, /* 16 bit differential PCM (XI only) */
SF_FORMAT_VORBIS = 0x0060, /* Xiph Vorbis encoding. */
SF_FORMAT_ALAC_16 = 0x0070, /* Apple Lossless Audio Codec (16 bit). */
SF_FORMAT_ALAC_20 = 0x0071, /* Apple Lossless Audio Codec (20 bit). */
SF_FORMAT_ALAC_24 = 0x0072, /* Apple Lossless Audio Codec (24 bit). */
SF_FORMAT_ALAC_32 = 0x0073, /* Apple Lossless Audio Codec (32 bit). */
/* Endian-ness options. */
SF_ENDIAN_FILE = 0x00000000, /* Default file endian-ness. */
SF_ENDIAN_LITTLE = 0x10000000, /* Force little endian-ness. */
SF_ENDIAN_BIG = 0x20000000, /* Force big endian-ness. */
SF_ENDIAN_CPU = 0x30000000, /* Force CPU endian-ness. */
SF_FORMAT_SUBMASK = 0x0000FFFF,
SF_FORMAT_TYPEMASK = 0x0FFF0000,
SF_FORMAT_ENDMASK = 0x30000000
} ;
/*
** The following are the valid command numbers for the sf_command()
** interface. The use of these commands is documented in the file
** command.html in the doc directory of the source code distribution.
*/
enum
{ SFC_GET_LIB_VERSION = 0x1000,
SFC_GET_LOG_INFO = 0x1001,
SFC_GET_CURRENT_SF_INFO = 0x1002,
SFC_GET_NORM_DOUBLE = 0x1010,
SFC_GET_NORM_FLOAT = 0x1011,
SFC_SET_NORM_DOUBLE = 0x1012,
SFC_SET_NORM_FLOAT = 0x1013,
SFC_SET_SCALE_FLOAT_INT_READ = 0x1014,
SFC_SET_SCALE_INT_FLOAT_WRITE = 0x1015,
SFC_GET_SIMPLE_FORMAT_COUNT = 0x1020,
SFC_GET_SIMPLE_FORMAT = 0x1021,
SFC_GET_FORMAT_INFO = 0x1028,
SFC_GET_FORMAT_MAJOR_COUNT = 0x1030,
SFC_GET_FORMAT_MAJOR = 0x1031,
SFC_GET_FORMAT_SUBTYPE_COUNT = 0x1032,
SFC_GET_FORMAT_SUBTYPE = 0x1033,
SFC_CALC_SIGNAL_MAX = 0x1040,
SFC_CALC_NORM_SIGNAL_MAX = 0x1041,
SFC_CALC_MAX_ALL_CHANNELS = 0x1042,
SFC_CALC_NORM_MAX_ALL_CHANNELS = 0x1043,
SFC_GET_SIGNAL_MAX = 0x1044,
SFC_GET_MAX_ALL_CHANNELS = 0x1045,
SFC_SET_ADD_PEAK_CHUNK = 0x1050,
SFC_SET_ADD_HEADER_PAD_CHUNK = 0x1051,
SFC_UPDATE_HEADER_NOW = 0x1060,
SFC_SET_UPDATE_HEADER_AUTO = 0x1061,
SFC_FILE_TRUNCATE = 0x1080,
SFC_SET_RAW_START_OFFSET = 0x1090,
SFC_SET_DITHER_ON_WRITE = 0x10A0,
SFC_SET_DITHER_ON_READ = 0x10A1,
SFC_GET_DITHER_INFO_COUNT = 0x10A2,
SFC_GET_DITHER_INFO = 0x10A3,
SFC_GET_EMBED_FILE_INFO = 0x10B0,
SFC_SET_CLIPPING = 0x10C0,
SFC_GET_CLIPPING = 0x10C1,
SFC_GET_CUE_COUNT = 0x10CD,
SFC_GET_CUE = 0x10CE,
SFC_SET_CUE = 0x10CF,
SFC_GET_INSTRUMENT = 0x10D0,
SFC_SET_INSTRUMENT = 0x10D1,
SFC_GET_LOOP_INFO = 0x10E0,
SFC_GET_BROADCAST_INFO = 0x10F0,
SFC_SET_BROADCAST_INFO = 0x10F1,
SFC_GET_CHANNEL_MAP_INFO = 0x1100,
SFC_SET_CHANNEL_MAP_INFO = 0x1101,
SFC_RAW_DATA_NEEDS_ENDSWAP = 0x1110,
/* Support for Wavex Ambisonics Format */
SFC_WAVEX_SET_AMBISONIC = 0x1200,
SFC_WAVEX_GET_AMBISONIC = 0x1201,
/*
** RF64 files can be set so that on-close, writable files that have less
** than 4GB of data in them are converted to RIFF/WAV, as per EBU
** recommendations.
*/
SFC_RF64_AUTO_DOWNGRADE = 0x1210,
SFC_SET_VBR_ENCODING_QUALITY = 0x1300,
SFC_SET_COMPRESSION_LEVEL = 0x1301,
/* Cart Chunk support */
SFC_SET_CART_INFO = 0x1400,
SFC_GET_CART_INFO = 0x1401,
/* Following commands for testing only. */
SFC_TEST_IEEE_FLOAT_REPLACE = 0x6001,
/*
** SFC_SET_ADD_* values are deprecated and will disappear at some
** time in the future. They are guaranteed to be here up to and
** including version 1.0.8 to avoid breakage of existing software.
** They currently do nothing and will continue to do nothing.
*/
SFC_SET_ADD_DITHER_ON_WRITE = 0x1070,
SFC_SET_ADD_DITHER_ON_READ = 0x1071
} ;
/*
** String types that can be set and read from files. Not all file types
** support this and even the file types which support one, may not support
** all string types.
*/
enum
{ SF_STR_TITLE = 0x01,
SF_STR_COPYRIGHT = 0x02,
SF_STR_SOFTWARE = 0x03,
SF_STR_ARTIST = 0x04,
SF_STR_COMMENT = 0x05,
SF_STR_DATE = 0x06,
SF_STR_ALBUM = 0x07,
SF_STR_LICENSE = 0x08,
SF_STR_TRACKNUMBER = 0x09,
SF_STR_GENRE = 0x10
} ;
/*
** Use the following as the start and end index when doing metadata
** transcoding.
*/
#define SF_STR_FIRST SF_STR_TITLE
#define SF_STR_LAST SF_STR_GENRE
enum
{ /* True and false */
SF_FALSE = 0,
SF_TRUE = 1,
/* Modes for opening files. */
SFM_READ = 0x10,
SFM_WRITE = 0x20,
SFM_RDWR = 0x30,
SF_AMBISONIC_NONE = 0x40,
SF_AMBISONIC_B_FORMAT = 0x41
} ;
/* Public error values. These are guaranteed to remain unchanged for the duration
** of the library major version number.
** There are also a large number of private error numbers which are internal to
** the library which can change at any time.
*/
enum
{ SF_ERR_NO_ERROR = 0,
SF_ERR_UNRECOGNISED_FORMAT = 1,
SF_ERR_SYSTEM = 2,
SF_ERR_MALFORMED_FILE = 3,
SF_ERR_UNSUPPORTED_ENCODING = 4
} ;
/* Channel map values (used with SFC_SET/GET_CHANNEL_MAP).
*/
enum
{ SF_CHANNEL_MAP_INVALID = 0,
SF_CHANNEL_MAP_MONO = 1,
SF_CHANNEL_MAP_LEFT, /* Apple calls this 'Left' */
SF_CHANNEL_MAP_RIGHT, /* Apple calls this 'Right' */
SF_CHANNEL_MAP_CENTER, /* Apple calls this 'Center' */
SF_CHANNEL_MAP_FRONT_LEFT,
SF_CHANNEL_MAP_FRONT_RIGHT,
SF_CHANNEL_MAP_FRONT_CENTER,
SF_CHANNEL_MAP_REAR_CENTER, /* Apple calls this 'Center Surround', Msft calls this 'Back Center' */
SF_CHANNEL_MAP_REAR_LEFT, /* Apple calls this 'Left Surround', Msft calls this 'Back Left' */
SF_CHANNEL_MAP_REAR_RIGHT, /* Apple calls this 'Right Surround', Msft calls this 'Back Right' */
SF_CHANNEL_MAP_LFE, /* Apple calls this 'LFEScreen', Msft calls this 'Low Frequency' */
SF_CHANNEL_MAP_FRONT_LEFT_OF_CENTER, /* Apple calls this 'Left Center' */
SF_CHANNEL_MAP_FRONT_RIGHT_OF_CENTER, /* Apple calls this 'Right Center */
SF_CHANNEL_MAP_SIDE_LEFT, /* Apple calls this 'Left Surround Direct' */
SF_CHANNEL_MAP_SIDE_RIGHT, /* Apple calls this 'Right Surround Direct' */
SF_CHANNEL_MAP_TOP_CENTER, /* Apple calls this 'Top Center Surround' */
SF_CHANNEL_MAP_TOP_FRONT_LEFT, /* Apple calls this 'Vertical Height Left' */
SF_CHANNEL_MAP_TOP_FRONT_RIGHT, /* Apple calls this 'Vertical Height Right' */
SF_CHANNEL_MAP_TOP_FRONT_CENTER, /* Apple calls this 'Vertical Height Center' */
SF_CHANNEL_MAP_TOP_REAR_LEFT, /* Apple and MS call this 'Top Back Left' */
SF_CHANNEL_MAP_TOP_REAR_RIGHT, /* Apple and MS call this 'Top Back Right' */
SF_CHANNEL_MAP_TOP_REAR_CENTER, /* Apple and MS call this 'Top Back Center' */
SF_CHANNEL_MAP_AMBISONIC_B_W,
SF_CHANNEL_MAP_AMBISONIC_B_X,
SF_CHANNEL_MAP_AMBISONIC_B_Y,
SF_CHANNEL_MAP_AMBISONIC_B_Z,
SF_CHANNEL_MAP_MAX
} ;
/* A SNDFILE* pointer can be passed around much like stdio.h's FILE* pointer. */
typedef struct SNDFILE_tag SNDFILE ;
/* The following typedef is system specific and is defined when libsndfile is
** compiled. sf_count_t will be a 64 bit value when the underlying OS allows
** 64 bit file offsets.
** On windows, we need to allow the same header file to be compiler by both GCC
** and the Microsoft compiler.
*/
#if (defined (_MSCVER) || defined (_MSC_VER) && (_MSC_VER < 1310))
typedef __int64 sf_count_t ;
#define SF_COUNT_MAX 0x7fffffffffffffffi64
#else
typedef __int64 sf_count_t ;
#define SF_COUNT_MAX 0x7FFFFFFFFFFFFFFFLL
#endif
/* A pointer to a SF_INFO structure is passed to sf_open () and filled in.
** On write, the SF_INFO structure is filled in by the user and passed into
** sf_open ().
*/
struct SF_INFO
{ sf_count_t frames ; /* Used to be called samples. Changed to avoid confusion. */
int samplerate ;
int channels ;
int format ;
int sections ;
int seekable ;
} ;
typedef struct SF_INFO SF_INFO ;
/* The SF_FORMAT_INFO struct is used to retrieve information about the sound
** file formats libsndfile supports using the sf_command () interface.
**
** Using this interface will allow applications to support new file formats
** and encoding types when libsndfile is upgraded, without requiring
** re-compilation of the application.
**
** Please consult the libsndfile documentation (particularly the information
** on the sf_command () interface) for examples of its use.
*/
typedef struct
{ int format ;
const char *name ;
const char *extension ;
} SF_FORMAT_INFO ;
/*
** Enums and typedefs for adding dither on read and write.
** See the html documentation for sf_command(), SFC_SET_DITHER_ON_WRITE
** and SFC_SET_DITHER_ON_READ.
*/
enum
{ SFD_DEFAULT_LEVEL = 0,
SFD_CUSTOM_LEVEL = 0x40000000,
SFD_NO_DITHER = 500,
SFD_WHITE = 501,
SFD_TRIANGULAR_PDF = 502
} ;
typedef struct
{ int type ;
double level ;
const char *name ;
} SF_DITHER_INFO ;
/* Struct used to retrieve information about a file embedded within a
** larger file. See SFC_GET_EMBED_FILE_INFO.
*/
typedef struct
{ sf_count_t offset ;
sf_count_t length ;
} SF_EMBED_FILE_INFO ;
/*
** Struct used to retrieve cue marker information from a file
*/
typedef struct
{ int32_t indx ;
uint32_t position ;
int32_t fcc_chunk ;
int32_t chunk_start ;
int32_t block_start ;
uint32_t sample_offset ;
char name [256] ;
} SF_CUE_POINT ;
#define SF_CUES_VAR(count) \
struct \
{ uint32_t cue_count ; \
SF_CUE_POINT cue_points [count] ; \
}
typedef SF_CUES_VAR (100) SF_CUES ;
/*
** Structs used to retrieve music sample information from a file.
*/
enum
{ /*
** The loop mode field in SF_INSTRUMENT will be one of the following.
*/
SF_LOOP_NONE = 800,
SF_LOOP_FORWARD,
SF_LOOP_BACKWARD,
SF_LOOP_ALTERNATING
} ;
typedef struct
{ int gain ;
char basenote, detune ;
char velocity_lo, velocity_hi ;
char key_lo, key_hi ;
int loop_count ;
struct
{ int mode ;
uint32_t start ;
uint32_t end ;
uint32_t count ;
} loops [16] ; /* make variable in a sensible way */
} SF_INSTRUMENT ;
/* Struct used to retrieve loop information from a file.*/
typedef struct
{
short time_sig_num ; /* any positive integer > 0 */
short time_sig_den ; /* any positive power of 2 > 0 */
int loop_mode ; /* see SF_LOOP enum */
int num_beats ; /* this is NOT the amount of quarter notes !!!*/
/* a full bar of 4/4 is 4 beats */
/* a full bar of 7/8 is 7 beats */
float bpm ; /* suggestion, as it can be calculated using other fields:*/
/* file's length, file's sampleRate and our time_sig_den*/
/* -> bpms are always the amount of _quarter notes_ per minute */
int root_key ; /* MIDI note, or -1 for None */
int future [6] ;
} SF_LOOP_INFO ;
/* Struct used to retrieve broadcast (EBU) information from a file.
** Strongly (!) based on EBU "bext" chunk format used in Broadcast WAVE.
*/
#define SF_BROADCAST_INFO_VAR(coding_hist_size) \
struct \
{ char description [256] ; \
char originator [32] ; \
char originator_reference [32] ; \
char origination_date [10] ; \
char origination_time [8] ; \
uint32_t time_reference_low ; \
uint32_t time_reference_high ; \
short version ; \
char umid [64] ; \
char reserved [190] ; \
uint32_t coding_history_size ; \
char coding_history [coding_hist_size] ; \
}
/* SF_BROADCAST_INFO is the above struct with coding_history field of 256 bytes. */
typedef SF_BROADCAST_INFO_VAR (256) SF_BROADCAST_INFO ;
struct SF_CART_TIMER
{ char usage [4] ;
int32_t value ;
} ;
typedef struct SF_CART_TIMER SF_CART_TIMER ;
#define SF_CART_INFO_VAR(p_tag_text_size) \
struct \
{ char version [4] ; \
char title [64] ; \
char artist [64] ; \
char cut_id [64] ; \
char client_id [64] ; \
char category [64] ; \
char classification [64] ; \
char out_cue [64] ; \
char start_date [10] ; \
char start_time [8] ; \
char end_date [10] ; \
char end_time [8] ; \
char producer_app_id [64] ; \
char producer_app_version [64] ; \
char user_def [64] ; \
int32_t level_reference ; \
SF_CART_TIMER post_timers [8] ; \
char reserved [276] ; \
char url [1024] ; \
uint32_t tag_text_size ; \
char tag_text [p_tag_text_size] ; \
}
typedef SF_CART_INFO_VAR (256) SF_CART_INFO ;
/* Virtual I/O functionality. */
typedef sf_count_t (*sf_vio_get_filelen) (void *user_data) ;
typedef sf_count_t (*sf_vio_seek) (sf_count_t offset, int whence, void *user_data) ;
typedef sf_count_t (*sf_vio_read) (void *ptr, sf_count_t count, void *user_data) ;
typedef sf_count_t (*sf_vio_write) (const void *ptr, sf_count_t count, void *user_data) ;
typedef sf_count_t (*sf_vio_tell) (void *user_data) ;
struct SF_VIRTUAL_IO
{ sf_vio_get_filelen get_filelen ;
sf_vio_seek seek ;
sf_vio_read read ;
sf_vio_write write ;
sf_vio_tell tell ;
} ;
typedef struct SF_VIRTUAL_IO SF_VIRTUAL_IO ;
/* Open the specified file for read, write or both. On error, this will
** return a NULL pointer. To find the error number, pass a NULL SNDFILE
** to sf_strerror ().
** All calls to sf_open() should be matched with a call to sf_close().
*/
SNDFILE* sf_open (const char *path, int mode, SF_INFO *sfinfo) ;
/* Use the existing file descriptor to create a SNDFILE object. If close_desc
** is TRUE, the file descriptor will be closed when sf_close() is called. If
** it is FALSE, the descriptor will not be closed.
** When passed a descriptor like this, the library will assume that the start
** of file header is at the current file offset. This allows sound files within
** larger container files to be read and/or written.
** On error, this will return a NULL pointer. To find the error number, pass a
** NULL SNDFILE to sf_strerror ().
** All calls to sf_open_fd() should be matched with a call to sf_close().
*/
SNDFILE* sf_open_fd (int fd, int mode, SF_INFO *sfinfo, int close_desc) ;
SNDFILE* sf_open_virtual (SF_VIRTUAL_IO *sfvirtual, int mode, SF_INFO *sfinfo, void *user_data) ;
/* sf_error () returns a error number which can be translated to a text
** string using sf_error_number().
*/
int sf_error (SNDFILE *sndfile) ;
/* sf_strerror () returns to the caller a pointer to the current error message for
** the given SNDFILE.
*/
const char* sf_strerror (SNDFILE *sndfile) ;
/* sf_error_number () allows the retrieval of the error string for each internal
** error number.
**
*/
const char* sf_error_number (int errnum) ;
/* The following two error functions are deprecated but they will remain in the
** library for the foreseeable future. The function sf_strerror() should be used
** in their place.
*/
int sf_perror (SNDFILE *sndfile) ;
int sf_error_str (SNDFILE *sndfile, char* str, size_t len) ;
/* Return TRUE if fields of the SF_INFO struct are a valid combination of values. */
int sf_command (SNDFILE *sndfile, int command, void *data, int datasize) ;
/* Return TRUE if fields of the SF_INFO struct are a valid combination of values. */
int sf_format_check (const SF_INFO *info) ;
/* Seek within the waveform data chunk of the SNDFILE. sf_seek () uses
** the same values for whence (SEEK_SET, SEEK_CUR and SEEK_END) as
** stdio.h function fseek ().
** An offset of zero with whence set to SEEK_SET will position the
** read / write pointer to the first data sample.
** On success sf_seek returns the current position in (multi-channel)
** samples from the start of the file.
** Please see the libsndfile documentation for moving the read pointer
** separately from the write pointer on files open in mode SFM_RDWR.
** On error all of these functions return -1.
*/
enum
{ SF_SEEK_SET = SEEK_SET,
SF_SEEK_CUR = SEEK_CUR,
SF_SEEK_END = SEEK_END
} ;
sf_count_t sf_seek (SNDFILE *sndfile, sf_count_t frames, int whence) ;
/* Functions for retrieving and setting string data within sound files.
** Not all file types support this features; AIFF and WAV do. For both
** functions, the str_type parameter must be one of the SF_STR_* values
** defined above.
** On error, sf_set_string() returns non-zero while sf_get_string()
** returns NULL.
*/
int sf_set_string (SNDFILE *sndfile, int str_type, const char* str) ;
const char* sf_get_string (SNDFILE *sndfile, int str_type) ;
/* Return the library version string. */
const char * sf_version_string (void) ;
/* Return the current byterate at this point in the file. The byte rate in this
** case is the number of bytes per second of audio data. For instance, for a
** stereo, 18 bit PCM encoded file with an 16kHz sample rate, the byte rate
** would be 2 (stereo) * 2 (two bytes per sample) * 16000 => 64000 bytes/sec.
** For some file formats the returned value will be accurate and exact, for some
** it will be a close approximation, for some it will be the average bitrate for
** the whole file and for some it will be a time varying value that was accurate
** when the file was most recently read or written.
** To get the bitrate, multiple this value by 8.
** Returns -1 for unknown.
*/
int sf_current_byterate (SNDFILE *sndfile) ;
/* Functions for reading/writing the waveform data of a sound file.
*/
sf_count_t sf_read_raw (SNDFILE *sndfile, void *ptr, sf_count_t bytes) ;
sf_count_t sf_write_raw (SNDFILE *sndfile, const void *ptr, sf_count_t bytes) ;
/* Functions for reading and writing the data chunk in terms of frames.
** The number of items actually read/written = frames * number of channels.
** sf_xxxx_raw read/writes the raw data bytes from/to the file
** sf_xxxx_short passes data in the native short format
** sf_xxxx_int passes data in the native int format
** sf_xxxx_float passes data in the native float format
** sf_xxxx_double passes data in the native double format
** All of these read/write function return number of frames read/written.
*/
sf_count_t sf_readf_short (SNDFILE *sndfile, short *ptr, sf_count_t frames) ;
sf_count_t sf_writef_short (SNDFILE *sndfile, const short *ptr, sf_count_t frames) ;
sf_count_t sf_readf_int (SNDFILE *sndfile, int *ptr, sf_count_t frames) ;
sf_count_t sf_writef_int (SNDFILE *sndfile, const int *ptr, sf_count_t frames) ;
sf_count_t sf_readf_float (SNDFILE *sndfile, float *ptr, sf_count_t frames) ;
sf_count_t sf_writef_float (SNDFILE *sndfile, const float *ptr, sf_count_t frames) ;
sf_count_t sf_readf_double (SNDFILE *sndfile, double *ptr, sf_count_t frames) ;
sf_count_t sf_writef_double (SNDFILE *sndfile, const double *ptr, sf_count_t frames) ;
/* Functions for reading and writing the data chunk in terms of items.
** Otherwise similar to above.
** All of these read/write function return number of items read/written.
*/
sf_count_t sf_read_short (SNDFILE *sndfile, short *ptr, sf_count_t items) ;
sf_count_t sf_write_short (SNDFILE *sndfile, const short *ptr, sf_count_t items) ;
sf_count_t sf_read_int (SNDFILE *sndfile, int *ptr, sf_count_t items) ;
sf_count_t sf_write_int (SNDFILE *sndfile, const int *ptr, sf_count_t items) ;
sf_count_t sf_read_float (SNDFILE *sndfile, float *ptr, sf_count_t items) ;
sf_count_t sf_write_float (SNDFILE *sndfile, const float *ptr, sf_count_t items) ;
sf_count_t sf_read_double (SNDFILE *sndfile, double *ptr, sf_count_t items) ;
sf_count_t sf_write_double (SNDFILE *sndfile, const double *ptr, sf_count_t items) ;
/* Close the SNDFILE and clean up all memory allocations associated with this
** file.
** Returns 0 on success, or an error number.
*/
int sf_close (SNDFILE *sndfile) ;
/* If the file is opened SFM_WRITE or SFM_RDWR, call fsync() on the file
** to force the writing of data to disk. If the file is opened SFM_READ
** no action is taken.
*/
void sf_write_sync (SNDFILE *sndfile) ;
/* The function sf_wchar_open() is Windows Only!
** Open a file passing in a Windows Unicode filename. Otherwise, this is
** the same as sf_open().
**
** In order for this to work, you need to do the following:
**
** #include <windows.h>
** #define ENABLE_SNDFILE_WINDOWS_PROTOTYPES 1
** #including <sndfile.h>
*/
#if (defined (ENABLE_SNDFILE_WINDOWS_PROTOTYPES) && ENABLE_SNDFILE_WINDOWS_PROTOTYPES)
SNDFILE* sf_wchar_open (LPCWSTR wpath, int mode, SF_INFO *sfinfo) ;
#endif
/* Getting and setting of chunks from within a sound file.
**
** These functions allow the getting and setting of chunks within a sound file
** (for those formats which allow it).
**
** These functions fail safely. Specifically, they will not allow you to overwrite
** existing chunks or add extra versions of format specific reserved chunks but
** should allow you to retrieve any and all chunks (may not be implemented for
** all chunks or all file formats).
*/
struct SF_CHUNK_INFO
{ char id [64] ; /* The chunk identifier. */
unsigned id_size ; /* The size of the chunk identifier. */
unsigned datalen ; /* The size of that data. */
void *data ; /* Pointer to the data. */
} ;
typedef struct SF_CHUNK_INFO SF_CHUNK_INFO ;
/* Set the specified chunk info (must be done before any audio data is written
** to the file). This will fail for format specific reserved chunks.
** The chunk_info->data pointer must be valid until the file is closed.
** Returns SF_ERR_NO_ERROR on success or non-zero on failure.
*/
int sf_set_chunk (SNDFILE * sndfile, const SF_CHUNK_INFO * chunk_info) ;
/*
** An opaque structure to an iterator over the all chunks of a given id
*/
typedef struct SF_CHUNK_ITERATOR SF_CHUNK_ITERATOR ;
/* Get an iterator for all chunks matching chunk_info.
** The iterator will point to the first chunk matching chunk_info.
** Chunks are matching, if (chunk_info->id) matches the first
** (chunk_info->id_size) bytes of a chunk found in the SNDFILE* handle.
** If chunk_info is NULL, an iterator to all chunks in the SNDFILE* handle
** is returned.
** The values of chunk_info->datalen and chunk_info->data are ignored.
** If no matching chunks are found in the sndfile, NULL is returned.
** The returned iterator will stay valid until one of the following occurs:
** a) The sndfile is closed.
** b) A new chunk is added using sf_set_chunk().
** c) Another chunk iterator function is called on the same SNDFILE* handle
** that causes the iterator to be modified.
** The memory for the iterator belongs to the SNDFILE* handle and is freed when
** sf_close() is called.
*/
SF_CHUNK_ITERATOR *
sf_get_chunk_iterator (SNDFILE * sndfile, const SF_CHUNK_INFO * chunk_info) ;
/* Iterate through chunks by incrementing the iterator.
** Increments the iterator and returns a handle to the new one.
** After this call, iterator will no longer be valid, and you must use the
** newly returned handle from now on.
** The returned handle can be used to access the next chunk matching
** the criteria as defined in sf_get_chunk_iterator().
** If iterator points to the last chunk, this will free all resources
** associated with iterator and return NULL.
** The returned iterator will stay valid until sf_get_chunk_iterator_next
** is called again, the sndfile is closed or a new chunk us added.
*/
SF_CHUNK_ITERATOR *
sf_next_chunk_iterator (SF_CHUNK_ITERATOR * iterator) ;
/* Get the size of the specified chunk.
** If the specified chunk exists, the size will be returned in the
** datalen field of the SF_CHUNK_INFO struct.
** Additionally, the id of the chunk will be copied to the id
** field of the SF_CHUNK_INFO struct and it's id_size field will
** be updated accordingly.
** If the chunk doesn't exist chunk_info->datalen will be zero, and the
** id and id_size fields will be undefined.
** The function will return SF_ERR_NO_ERROR on success or non-zero on
** failure.
*/
int
sf_get_chunk_size (const SF_CHUNK_ITERATOR * it, SF_CHUNK_INFO * chunk_info) ;
/* Get the specified chunk data.
** If the specified chunk exists, up to chunk_info->datalen bytes of
** the chunk data will be copied into the chunk_info->data buffer
** (allocated by the caller) and the chunk_info->datalen field
** updated to reflect the size of the data. The id and id_size
** field will be updated according to the retrieved chunk
** If the chunk doesn't exist chunk_info->datalen will be zero, and the
** id and id_size fields will be undefined.
** The function will return SF_ERR_NO_ERROR on success or non-zero on
** failure.
*/
int
sf_get_chunk_data (const SF_CHUNK_ITERATOR * it, SF_CHUNK_INFO * chunk_info) ;
#ifdef __cplusplus
} /* extern "C" */
#endif /* __cplusplus */
#endif /* SNDFILE_H */

View File

@ -1,446 +0,0 @@
/*
** Copyright (C) 2005-2012 Erik de Castro Lopo <erikd@mega-nerd.com>
**
** All rights reserved.
**
** Redistribution and use in source and binary forms, with or without
** modification, are permitted provided that the following conditions are
** met:
**
** * Redistributions of source code must retain the above copyright
** notice, this list of conditions and the following disclaimer.
** * Redistributions in binary form must reproduce the above copyright
** notice, this list of conditions and the following disclaimer in
** the documentation and/or other materials provided with the
** distribution.
** * Neither the author nor the names of any contributors may be used
** to endorse or promote products derived from this software without
** specific prior written permission.
**
** THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
** "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
** TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
** PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
** CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
** EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
** PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
** OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
** WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
** OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
** ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
/*
** The above modified BSD style license (GPL and LGPL compatible) applies to
** this file. It does not apply to libsndfile itself which is released under
** the GNU LGPL or the libsndfile test suite which is released under the GNU
** GPL.
** This means that this header file can be used under this modified BSD style
** license, but the LGPL still holds for the libsndfile library itself.
*/
/*
** sndfile.hh -- A lightweight C++ wrapper for the libsndfile API.
**
** All the methods are inlines and all functionality is contained in this
** file. There is no separate implementation file.
**
** API documentation is in the doc/ directory of the source code tarball
** and at http://www.mega-nerd.com/libsndfile/api.html.
*/
#ifndef SNDFILE_HH
#define SNDFILE_HH
#include <sndfile.h>
#include <string>
#include <new> // for std::nothrow
class SndfileHandle
{ private :
struct SNDFILE_ref
{ SNDFILE_ref (void) ;
~SNDFILE_ref (void) ;
SNDFILE *sf ;
SF_INFO sfinfo ;
int ref ;
} ;
SNDFILE_ref *p ;
public :
/* Default constructor */
SndfileHandle (void) : p (NULL) {} ;
SndfileHandle (const char *path, int mode = SFM_READ,
int format = 0, int channels = 0, int samplerate = 0) ;
SndfileHandle (std::string const & path, int mode = SFM_READ,
int format = 0, int channels = 0, int samplerate = 0) ;
SndfileHandle (int fd, bool close_desc, int mode = SFM_READ,
int format = 0, int channels = 0, int samplerate = 0) ;
SndfileHandle (SF_VIRTUAL_IO &sfvirtual, void *user_data, int mode = SFM_READ,
int format = 0, int channels = 0, int samplerate = 0) ;
#ifdef ENABLE_SNDFILE_WINDOWS_PROTOTYPES
SndfileHandle (LPCWSTR wpath, int mode = SFM_READ,
int format = 0, int channels = 0, int samplerate = 0) ;
#endif
~SndfileHandle (void) ;
SndfileHandle (const SndfileHandle &orig) ;
SndfileHandle & operator = (const SndfileHandle &rhs) ;
/* Mainly for debugging/testing. */
int refCount (void) const { return (p == NULL) ? 0 : p->ref ; }
operator bool () const { return (p != NULL) ; }
bool operator == (const SndfileHandle &rhs) const { return (p == rhs.p) ; }
sf_count_t frames (void) const { return p ? p->sfinfo.frames : 0 ; }
int format (void) const { return p ? p->sfinfo.format : 0 ; }
int channels (void) const { return p ? p->sfinfo.channels : 0 ; }
int samplerate (void) const { return p ? p->sfinfo.samplerate : 0 ; }
int error (void) const ;
const char * strError (void) const ;
int command (int cmd, void *data, int datasize) ;
sf_count_t seek (sf_count_t frames, int whence) ;
void writeSync (void) ;
int setString (int str_type, const char* str) ;
const char* getString (int str_type) const ;
static int formatCheck (int format, int channels, int samplerate) ;
sf_count_t read (short *ptr, sf_count_t items) ;
sf_count_t read (int *ptr, sf_count_t items) ;
sf_count_t read (float *ptr, sf_count_t items) ;
sf_count_t read (double *ptr, sf_count_t items) ;
sf_count_t write (const short *ptr, sf_count_t items) ;
sf_count_t write (const int *ptr, sf_count_t items) ;
sf_count_t write (const float *ptr, sf_count_t items) ;
sf_count_t write (const double *ptr, sf_count_t items) ;
sf_count_t readf (short *ptr, sf_count_t frames) ;
sf_count_t readf (int *ptr, sf_count_t frames) ;
sf_count_t readf (float *ptr, sf_count_t frames) ;
sf_count_t readf (double *ptr, sf_count_t frames) ;
sf_count_t writef (const short *ptr, sf_count_t frames) ;
sf_count_t writef (const int *ptr, sf_count_t frames) ;
sf_count_t writef (const float *ptr, sf_count_t frames) ;
sf_count_t writef (const double *ptr, sf_count_t frames) ;
sf_count_t readRaw (void *ptr, sf_count_t bytes) ;
sf_count_t writeRaw (const void *ptr, sf_count_t bytes) ;
/**< Raw access to the handle. SndfileHandle keeps ownership. */
SNDFILE * rawHandle (void) ;
/**< Take ownership of handle, if reference count is 1. */
SNDFILE * takeOwnership (void) ;
} ;
/*==============================================================================
** Nothing but implementation below.
*/
inline
SndfileHandle::SNDFILE_ref::SNDFILE_ref (void)
: sf (NULL), sfinfo (), ref (1)
{}
inline
SndfileHandle::SNDFILE_ref::~SNDFILE_ref (void)
{ if (sf != NULL) sf_close (sf) ; }
inline
SndfileHandle::SndfileHandle (const char *path, int mode, int fmt, int chans, int srate)
: p (NULL)
{
p = new (std::nothrow) SNDFILE_ref () ;
if (p != NULL)
{ p->ref = 1 ;
p->sfinfo.frames = 0 ;
p->sfinfo.channels = chans ;
p->sfinfo.format = fmt ;
p->sfinfo.samplerate = srate ;
p->sfinfo.sections = 0 ;
p->sfinfo.seekable = 0 ;
p->sf = sf_open (path, mode, &p->sfinfo) ;
} ;
return ;
} /* SndfileHandle const char * constructor */
inline
SndfileHandle::SndfileHandle (std::string const & path, int mode, int fmt, int chans, int srate)
: p (NULL)
{
p = new (std::nothrow) SNDFILE_ref () ;
if (p != NULL)
{ p->ref = 1 ;
p->sfinfo.frames = 0 ;
p->sfinfo.channels = chans ;
p->sfinfo.format = fmt ;
p->sfinfo.samplerate = srate ;
p->sfinfo.sections = 0 ;
p->sfinfo.seekable = 0 ;
p->sf = sf_open (path.c_str (), mode, &p->sfinfo) ;
} ;
return ;
} /* SndfileHandle std::string constructor */
inline
SndfileHandle::SndfileHandle (int fd, bool close_desc, int mode, int fmt, int chans, int srate)
: p (NULL)
{
if (fd < 0)
return ;
p = new (std::nothrow) SNDFILE_ref () ;
if (p != NULL)
{ p->ref = 1 ;
p->sfinfo.frames = 0 ;
p->sfinfo.channels = chans ;
p->sfinfo.format = fmt ;
p->sfinfo.samplerate = srate ;
p->sfinfo.sections = 0 ;
p->sfinfo.seekable = 0 ;
p->sf = sf_open_fd (fd, mode, &p->sfinfo, close_desc) ;
} ;
return ;
} /* SndfileHandle fd constructor */
inline
SndfileHandle::SndfileHandle (SF_VIRTUAL_IO &sfvirtual, void *user_data, int mode, int fmt, int chans, int srate)
: p (NULL)
{
p = new (std::nothrow) SNDFILE_ref () ;
if (p != NULL)
{ p->ref = 1 ;
p->sfinfo.frames = 0 ;
p->sfinfo.channels = chans ;
p->sfinfo.format = fmt ;
p->sfinfo.samplerate = srate ;
p->sfinfo.sections = 0 ;
p->sfinfo.seekable = 0 ;
p->sf = sf_open_virtual (&sfvirtual, mode, &p->sfinfo, user_data) ;
} ;
return ;
} /* SndfileHandle std::string constructor */
inline
SndfileHandle::~SndfileHandle (void)
{ if (p != NULL && --p->ref == 0)
delete p ;
} /* SndfileHandle destructor */
inline
SndfileHandle::SndfileHandle (const SndfileHandle &orig)
: p (orig.p)
{ if (p != NULL)
++p->ref ;
} /* SndfileHandle copy constructor */
inline SndfileHandle &
SndfileHandle::operator = (const SndfileHandle &rhs)
{
if (&rhs == this)
return *this ;
if (p != NULL && --p->ref == 0)
delete p ;
p = rhs.p ;
if (p != NULL)
++p->ref ;
return *this ;
} /* SndfileHandle assignment operator */
inline int
SndfileHandle::error (void) const
{ return sf_error (p->sf) ; }
inline const char *
SndfileHandle::strError (void) const
{ return sf_strerror (p->sf) ; }
inline int
SndfileHandle::command (int cmd, void *data, int datasize)
{ return sf_command (p->sf, cmd, data, datasize) ; }
inline sf_count_t
SndfileHandle::seek (sf_count_t frame_count, int whence)
{ return sf_seek (p->sf, frame_count, whence) ; }
inline void
SndfileHandle::writeSync (void)
{ sf_write_sync (p->sf) ; }
inline int
SndfileHandle::setString (int str_type, const char* str)
{ return sf_set_string (p->sf, str_type, str) ; }
inline const char*
SndfileHandle::getString (int str_type) const
{ return sf_get_string (p->sf, str_type) ; }
inline int
SndfileHandle::formatCheck (int fmt, int chans, int srate)
{
SF_INFO sfinfo ;
sfinfo.frames = 0 ;
sfinfo.channels = chans ;
sfinfo.format = fmt ;
sfinfo.samplerate = srate ;
sfinfo.sections = 0 ;
sfinfo.seekable = 0 ;
return sf_format_check (&sfinfo) ;
}
/*---------------------------------------------------------------------*/
inline sf_count_t
SndfileHandle::read (short *ptr, sf_count_t items)
{ return sf_read_short (p->sf, ptr, items) ; }
inline sf_count_t
SndfileHandle::read (int *ptr, sf_count_t items)
{ return sf_read_int (p->sf, ptr, items) ; }
inline sf_count_t
SndfileHandle::read (float *ptr, sf_count_t items)
{ return sf_read_float (p->sf, ptr, items) ; }
inline sf_count_t
SndfileHandle::read (double *ptr, sf_count_t items)
{ return sf_read_double (p->sf, ptr, items) ; }
inline sf_count_t
SndfileHandle::write (const short *ptr, sf_count_t items)
{ return sf_write_short (p->sf, ptr, items) ; }
inline sf_count_t
SndfileHandle::write (const int *ptr, sf_count_t items)
{ return sf_write_int (p->sf, ptr, items) ; }
inline sf_count_t
SndfileHandle::write (const float *ptr, sf_count_t items)
{ return sf_write_float (p->sf, ptr, items) ; }
inline sf_count_t
SndfileHandle::write (const double *ptr, sf_count_t items)
{ return sf_write_double (p->sf, ptr, items) ; }
inline sf_count_t
SndfileHandle::readf (short *ptr, sf_count_t frame_count)
{ return sf_readf_short (p->sf, ptr, frame_count) ; }
inline sf_count_t
SndfileHandle::readf (int *ptr, sf_count_t frame_count)
{ return sf_readf_int (p->sf, ptr, frame_count) ; }
inline sf_count_t
SndfileHandle::readf (float *ptr, sf_count_t frame_count)
{ return sf_readf_float (p->sf, ptr, frame_count) ; }
inline sf_count_t
SndfileHandle::readf (double *ptr, sf_count_t frame_count)
{ return sf_readf_double (p->sf, ptr, frame_count) ; }
inline sf_count_t
SndfileHandle::writef (const short *ptr, sf_count_t frame_count)
{ return sf_writef_short (p->sf, ptr, frame_count) ; }
inline sf_count_t
SndfileHandle::writef (const int *ptr, sf_count_t frame_count)
{ return sf_writef_int (p->sf, ptr, frame_count) ; }
inline sf_count_t
SndfileHandle::writef (const float *ptr, sf_count_t frame_count)
{ return sf_writef_float (p->sf, ptr, frame_count) ; }
inline sf_count_t
SndfileHandle::writef (const double *ptr, sf_count_t frame_count)
{ return sf_writef_double (p->sf, ptr, frame_count) ; }
inline sf_count_t
SndfileHandle::readRaw (void *ptr, sf_count_t bytes)
{ return sf_read_raw (p->sf, ptr, bytes) ; }
inline sf_count_t
SndfileHandle::writeRaw (const void *ptr, sf_count_t bytes)
{ return sf_write_raw (p->sf, ptr, bytes) ; }
inline SNDFILE *
SndfileHandle::rawHandle (void)
{ return (p ? p->sf : NULL) ; }
inline SNDFILE *
SndfileHandle::takeOwnership (void)
{
if (p == NULL || (p->ref != 1))
return NULL ;
SNDFILE * sf = p->sf ;
p->sf = NULL ;
delete p ;
p = NULL ;
return sf ;
}
#ifdef ENABLE_SNDFILE_WINDOWS_PROTOTYPES
inline
SndfileHandle::SndfileHandle (LPCWSTR wpath, int mode, int fmt, int chans, int srate)
: p (NULL)
{
p = new (std::nothrow) SNDFILE_ref () ;
if (p != NULL)
{ p->ref = 1 ;
p->sfinfo.frames = 0 ;
p->sfinfo.channels = chans ;
p->sfinfo.format = fmt ;
p->sfinfo.samplerate = srate ;
p->sfinfo.sections = 0 ;
p->sfinfo.seekable = 0 ;
p->sf = sf_wchar_open (wpath, mode, &p->sfinfo) ;
} ;
return ;
} /* SndfileHandle const wchar_t * constructor */
#endif
#endif /* SNDFILE_HH */

View File

@ -1,47 +0,0 @@
; Auto-generated by create_symbols_file.py
LIBRARY libsndfile-1.dll
EXPORTS
sf_command @1
sf_open @2
sf_close @3
sf_seek @4
sf_error @7
sf_perror @8
sf_error_str @9
sf_error_number @10
sf_format_check @11
sf_read_raw @16
sf_readf_short @17
sf_readf_int @18
sf_readf_float @19
sf_readf_double @20
sf_read_short @21
sf_read_int @22
sf_read_float @23
sf_read_double @24
sf_write_raw @32
sf_writef_short @33
sf_writef_int @34
sf_writef_float @35
sf_writef_double @36
sf_write_short @37
sf_write_int @38
sf_write_float @39
sf_write_double @40
sf_strerror @50
sf_get_string @60
sf_set_string @61
sf_version_string @68
sf_open_fd @70
sf_wchar_open @71
sf_open_virtual @80
sf_write_sync @90
sf_set_chunk @100
sf_get_chunk_size @101
sf_get_chunk_data @102
sf_get_chunk_iterator @103
sf_next_chunk_iterator @104
sf_current_byterate @110

Binary file not shown.

View File

@ -1,12 +0,0 @@
prefix=c:/devel/target/libsndfile
exec_prefix=${prefix}
libdir=${exec_prefix}/lib
includedir=${prefix}/include
Name: sndfile
Description: A library for reading and writing audio files
Requires:
Version: 1.0.28
Libs: -L${libdir} -lsndfile
Libs.private: Ext/libflac.la Ext/libvorbis.la Ext/libogg.la
Cflags: -I${includedir}

View File

@ -1,47 +0,0 @@
; Auto-generated by create_symbols_file.py
LIBRARY libsndfile-1.dll
EXPORTS
sf_command @1
sf_open @2
sf_close @3
sf_seek @4
sf_error @7
sf_perror @8
sf_error_str @9
sf_error_number @10
sf_format_check @11
sf_read_raw @16
sf_readf_short @17
sf_readf_int @18
sf_readf_float @19
sf_readf_double @20
sf_read_short @21
sf_read_int @22
sf_read_float @23
sf_read_double @24
sf_write_raw @32
sf_writef_short @33
sf_writef_int @34
sf_writef_float @35
sf_writef_double @36
sf_write_short @37
sf_write_int @38
sf_write_float @39
sf_write_double @40
sf_strerror @50
sf_get_string @60
sf_set_string @61
sf_version_string @68
sf_open_fd @70
sf_wchar_open @71
sf_open_virtual @80
sf_write_sync @90
sf_set_chunk @100
sf_get_chunk_size @101
sf_get_chunk_data @102
sf_get_chunk_iterator @103
sf_next_chunk_iterator @104
sf_current_byterate @110

Binary file not shown.

View File

@ -1,12 +0,0 @@
prefix=c:/devel/target/libsndfile
exec_prefix=${prefix}
libdir=${exec_prefix}/lib
includedir=${prefix}/include
Name: sndfile
Description: A library for reading and writing audio files
Requires:
Version: 1.0.28
Libs: -L${libdir} -lsndfile
Libs.private: Ext/libflac.la Ext/libvorbis.la Ext/libogg.la
Cflags: -I${includedir}

View File

@ -1,141 +0,0 @@
#pragma once
// fake mss.h header for use with re3, to make using mss32.dll possible
// gta3 uses miles 6.1a
// check https://github.com/withmorten/re3mss for more info
#include <stdint.h>
typedef char C8;
typedef uint8_t U8;
typedef int8_t S8;
typedef int16_t S16;
typedef uint16_t U16;
typedef int32_t S32;
typedef uint32_t U32;
typedef float F32;
typedef double F64;
typedef void *HSTREAM;
typedef U32 HPROVIDER;
typedef void *H3DPOBJECT;
typedef H3DPOBJECT H3DSAMPLE;
typedef void *HSAMPLE;
typedef void *HDIGDRIVER;
typedef U32 HPROENUM;
#define HPROENUM_FIRST 0
typedef S32 M3DRESULT;
#define M3D_NOERR 0
enum { ENVIRONMENT_CAVE = 8 };
#define AIL_3D_2_SPEAKER 0
#define AIL_3D_HEADPHONE 1
#define AIL_3D_4_SPEAKER 3
#define DIG_MIXER_CHANNELS 1
#define DIG_F_MONO_16 1
#define DIG_PCM_SIGN 1
#define SMP_PLAYING 4
typedef struct _AILSOUNDINFO
{
S32 format;
void const *data_ptr;
U32 data_len;
U32 rate;
S32 bits;
S32 channels;
U32 samples;
U32 block_size;
void const *initial_ptr;
} AILSOUNDINFO;
typedef U32 (WINAPI *AIL_file_open_callback)(char const * Filename, U32 * FileHandle);
typedef void (WINAPI *AIL_file_close_callback)(U32 FileHandle);
#define AIL_FILE_SEEK_BEGIN 0
#define AIL_FILE_SEEK_CURRENT 1
#define AIL_FILE_SEEK_END 2
typedef S32(WINAPI *AIL_file_seek_callback)(U32 FileHandle, S32 Offset, U32 Type);
typedef U32(WINAPI *AIL_file_read_callback)(U32 FileHandle, void* Buffer, U32 Bytes);
#ifdef RE3MSS_EXPORTS
#define RE3MSS_EXPORT __declspec(dllexport)
#else
#define RE3MSS_EXPORT __declspec(dllimport)
#endif
#ifdef __cplusplus
extern "C" {
#endif
RE3MSS_EXPORT S32 WINAPI AIL_enumerate_3D_providers(HPROENUM *next, HPROVIDER *dest, C8 **name);
RE3MSS_EXPORT void WINAPI AIL_release_3D_sample_handle(H3DSAMPLE S);
RE3MSS_EXPORT void WINAPI AIL_close_3D_provider(HPROVIDER lib);
RE3MSS_EXPORT void WINAPI AIL_set_3D_provider_preference(HPROVIDER lib, C8 const *name, void const *val);
RE3MSS_EXPORT M3DRESULT WINAPI AIL_open_3D_provider(HPROVIDER lib);
RE3MSS_EXPORT C8 *WINAPI AIL_last_error(void);
RE3MSS_EXPORT S32 WINAPI AIL_3D_room_type(HPROVIDER lib);
RE3MSS_EXPORT void WINAPI AIL_set_3D_room_type(HPROVIDER lib, S32 room_type);
RE3MSS_EXPORT void WINAPI AIL_3D_provider_attribute(HPROVIDER lib, C8 const *name, void *val);
RE3MSS_EXPORT H3DSAMPLE WINAPI AIL_allocate_3D_sample_handle(HPROVIDER lib);
RE3MSS_EXPORT void WINAPI AIL_set_3D_sample_effects_level(H3DSAMPLE S, F32 effects_level);
RE3MSS_EXPORT void WINAPI AIL_set_3D_speaker_type(HPROVIDER lib, S32 speaker_type);
RE3MSS_EXPORT HSTREAM WINAPI AIL_open_stream(HDIGDRIVER dig, C8 const *filename, S32 stream_mem);
RE3MSS_EXPORT void WINAPI AIL_stream_ms_position(HSTREAM S, S32 *total_milliseconds, S32 *current_milliseconds);
RE3MSS_EXPORT void WINAPI AIL_close_stream(HSTREAM stream);
RE3MSS_EXPORT S32 WINAPI AIL_digital_handle_release(HDIGDRIVER drvr);
RE3MSS_EXPORT S32 WINAPI AIL_digital_handle_reacquire(HDIGDRIVER drvr);
RE3MSS_EXPORT C8 *WINAPI AIL_set_redist_directory(C8 const *dir);
RE3MSS_EXPORT S32 WINAPI AIL_startup(void);
RE3MSS_EXPORT S32 WINAPI AIL_set_preference(U32 number, S32 value);
RE3MSS_EXPORT HDIGDRIVER WINAPI AIL_open_digital_driver(U32 frequency, S32 bits, S32 channel, U32 flags);
RE3MSS_EXPORT void *WINAPI AIL_mem_alloc_lock(U32 size);
RE3MSS_EXPORT HSAMPLE WINAPI AIL_allocate_sample_handle(HDIGDRIVER dig);
RE3MSS_EXPORT void WINAPI AIL_init_sample(HSAMPLE S);
RE3MSS_EXPORT void WINAPI AIL_set_sample_type(HSAMPLE S, S32 format, U32 flags);
RE3MSS_EXPORT void WINAPI AIL_pause_stream(HSTREAM stream, S32 onoff);
RE3MSS_EXPORT void WINAPI AIL_release_sample_handle(HSAMPLE S);
RE3MSS_EXPORT void WINAPI AIL_mem_free_lock(void *ptr);
RE3MSS_EXPORT void WINAPI AIL_close_digital_driver(HDIGDRIVER dig);
RE3MSS_EXPORT void WINAPI AIL_shutdown(void);
RE3MSS_EXPORT void WINAPI AIL_set_3D_sample_volume(H3DSAMPLE S, S32 volume);
RE3MSS_EXPORT void WINAPI AIL_set_sample_volume(HSAMPLE S, S32 volume);
RE3MSS_EXPORT void WINAPI AIL_set_sample_address(HSAMPLE S, void const *start, U32 len);
RE3MSS_EXPORT S32 WINAPI AIL_set_3D_sample_info(H3DSAMPLE S, AILSOUNDINFO const *info);
RE3MSS_EXPORT void WINAPI AIL_set_3D_position(H3DPOBJECT obj, F32 X, F32 Y, F32 Z);
RE3MSS_EXPORT void WINAPI AIL_set_3D_sample_distances(H3DSAMPLE S, F32 max_dist, F32 min_dist);
RE3MSS_EXPORT void WINAPI AIL_set_sample_pan(HSAMPLE S, S32 pan);
RE3MSS_EXPORT void WINAPI AIL_set_sample_playback_rate(HSAMPLE S, S32 playback_rate);
RE3MSS_EXPORT void WINAPI AIL_set_3D_sample_playback_rate(H3DSAMPLE S, S32 playback_rate);
RE3MSS_EXPORT void WINAPI AIL_set_sample_loop_block(HSAMPLE S, S32 loop_start_offset, S32 loop_end_offset);
RE3MSS_EXPORT void WINAPI AIL_set_3D_sample_loop_block(H3DSAMPLE S, S32 loop_start_offset, S32 loop_end_offset);
RE3MSS_EXPORT void WINAPI AIL_set_sample_loop_count(HSAMPLE S, S32 loop_count);
RE3MSS_EXPORT void WINAPI AIL_set_3D_sample_loop_count(H3DSAMPLE S, S32 loops);
RE3MSS_EXPORT U32 WINAPI AIL_sample_status(HSAMPLE S);
RE3MSS_EXPORT U32 WINAPI AIL_3D_sample_status(H3DSAMPLE S);
RE3MSS_EXPORT void WINAPI AIL_start_sample(HSAMPLE S);
RE3MSS_EXPORT void WINAPI AIL_start_3D_sample(H3DSAMPLE S);
RE3MSS_EXPORT void WINAPI AIL_end_sample(HSAMPLE S);
RE3MSS_EXPORT void WINAPI AIL_end_3D_sample(H3DSAMPLE S);
RE3MSS_EXPORT void WINAPI AIL_set_stream_loop_count(HSTREAM stream, S32 count);
RE3MSS_EXPORT S32 WINAPI AIL_service_stream(HSTREAM stream, S32 fillup);
RE3MSS_EXPORT void WINAPI AIL_start_stream(HSTREAM stream);
RE3MSS_EXPORT void WINAPI AIL_set_stream_ms_position(HSTREAM S, S32 milliseconds);
RE3MSS_EXPORT void WINAPI AIL_set_stream_volume(HSTREAM stream, S32 volume);
RE3MSS_EXPORT void WINAPI AIL_set_stream_pan(HSTREAM stream, S32 pan);
RE3MSS_EXPORT S32 WINAPI AIL_stream_status(HSTREAM stream);
RE3MSS_EXPORT void WINAPI AIL_set_file_callbacks(AIL_file_open_callback opencb, AIL_file_close_callback closecb, AIL_file_seek_callback seekcb, AIL_file_read_callback readcb);
#ifdef __cplusplus
}
#endif

Binary file not shown.

Binary file not shown.

Binary file not shown.

View File

@ -1,159 +0,0 @@
/*
libmpg123: MPEG Audio Decoder library
separate header just for audio format definitions not tied to
library code
copyright 1995-2020 by the mpg123 project
free software under the terms of the LGPL 2.1
see COPYING and AUTHORS files in distribution or http://mpg123.org
*/
#ifndef MPG123_ENC_H
#define MPG123_ENC_H
/** \file fmt123.h Audio format definitions. */
/** \defgroup mpg123_enc mpg123 PCM sample encodings
* These are definitions for audio formats used by libmpg123 and
* libout123.
*
* @{
*/
/** An enum over all sample types possibly known to mpg123.
* The values are designed as bit flags to allow bitmasking for encoding
* families.
* This is also why the enum is not used as type for actual encoding variables,
* plain integers (at least 16 bit, 15 bit being used) cover the possible
* combinations of these flags.
*
* Note that (your build of) libmpg123 does not necessarily support all these.
* Usually, you can expect the 8bit encodings and signed 16 bit.
* Also 32bit float will be usual beginning with mpg123-1.7.0 .
* What you should bear in mind is that (SSE, etc) optimized routines may be
* absent for some formats. We do have SSE for 16, 32 bit and float, though.
* 24 bit integer is done via postprocessing of 32 bit output -- just cutting
* the last byte, no rounding, even. If you want better, do it yourself.
*
* All formats are in native byte order. If you need different endinaness, you
* can simply postprocess the output buffers (libmpg123 wouldn't do anything
* else). The macro MPG123_SAMPLESIZE() can be helpful there.
*/
enum mpg123_enc_enum
{
/* 0000 0000 0000 1111 Some 8 bit integer encoding. */
MPG123_ENC_8 = 0x00f
/* 0000 0000 0100 0000 Some 16 bit integer encoding. */
, MPG123_ENC_16 = 0x040
/* 0100 0000 0000 0000 Some 24 bit integer encoding. */
, MPG123_ENC_24 = 0x4000
/* 0000 0001 0000 0000 Some 32 bit integer encoding. */
, MPG123_ENC_32 = 0x100
/* 0000 0000 1000 0000 Some signed integer encoding. */
, MPG123_ENC_SIGNED = 0x080
/* 0000 1110 0000 0000 Some float encoding. */
, MPG123_ENC_FLOAT = 0xe00
/* 0000 0000 1101 0000 signed 16 bit */
, MPG123_ENC_SIGNED_16 = (MPG123_ENC_16|MPG123_ENC_SIGNED|0x10)
/* 0000 0000 0110 0000 unsigned 16 bit */
, MPG123_ENC_UNSIGNED_16 = (MPG123_ENC_16|0x20)
/* 0000 0000 0000 0001 unsigned 8 bit */
, MPG123_ENC_UNSIGNED_8 = 0x01
/* 0000 0000 1000 0010 signed 8 bit */
, MPG123_ENC_SIGNED_8 = (MPG123_ENC_SIGNED|0x02)
/* 0000 0000 0000 0100 ulaw 8 bit */
, MPG123_ENC_ULAW_8 = 0x04
/* 0000 0000 0000 1000 alaw 8 bit */
, MPG123_ENC_ALAW_8 = 0x08
/* 0001 0001 1000 0000 signed 32 bit */
, MPG123_ENC_SIGNED_32 = MPG123_ENC_32|MPG123_ENC_SIGNED|0x1000
/* 0010 0001 0000 0000 unsigned 32 bit */
, MPG123_ENC_UNSIGNED_32 = MPG123_ENC_32|0x2000
/* 0101 0000 1000 0000 signed 24 bit */
, MPG123_ENC_SIGNED_24 = MPG123_ENC_24|MPG123_ENC_SIGNED|0x1000
/* 0110 0000 0000 0000 unsigned 24 bit */
, MPG123_ENC_UNSIGNED_24 = MPG123_ENC_24|0x2000
/* 0000 0010 0000 0000 32bit float */
, MPG123_ENC_FLOAT_32 = 0x200
/* 0000 0100 0000 0000 64bit float */
, MPG123_ENC_FLOAT_64 = 0x400
/* Any possibly known encoding from the list above. */
, MPG123_ENC_ANY = ( MPG123_ENC_SIGNED_16 | MPG123_ENC_UNSIGNED_16
| MPG123_ENC_UNSIGNED_8 | MPG123_ENC_SIGNED_8
| MPG123_ENC_ULAW_8 | MPG123_ENC_ALAW_8
| MPG123_ENC_SIGNED_32 | MPG123_ENC_UNSIGNED_32
| MPG123_ENC_SIGNED_24 | MPG123_ENC_UNSIGNED_24
| MPG123_ENC_FLOAT_32 | MPG123_ENC_FLOAT_64 )
};
/** Get size of one PCM sample with given encoding.
* This is included both in libmpg123 and libout123. Both offer
* an API function to provide the macro results from library
* compile-time, not that of you application. This most likely
* does not matter as I do not expect any fresh PCM sample
* encoding to appear. But who knows? Perhaps the encoding type
* will be abused for funny things in future, not even plain PCM.
* And, by the way: Thomas really likes the ?: operator.
* \param enc the encoding (mpg123_enc_enum value)
* \return size of one sample in bytes
*/
#define MPG123_SAMPLESIZE(enc) ( \
(enc) < 1 \
? 0 \
: ( (enc) & MPG123_ENC_8 \
? 1 \
: ( (enc) & MPG123_ENC_16 \
? 2 \
: ( (enc) & MPG123_ENC_24 \
? 3 \
: ( ( (enc) & MPG123_ENC_32 \
|| (enc) == MPG123_ENC_FLOAT_32 ) \
? 4 \
: ( (enc) == MPG123_ENC_FLOAT_64 \
? 8 \
: 0 \
) ) ) ) ) )
/** Representation of zero in differing encodings.
* This exists to define proper silence in various encodings without
* having to link to libsyn123 to do actual conversions at runtime.
* You have to handle big/little endian order yourself, though.
* This takes the shortcut that any signed encoding has a zero with
* all-zero bits. Unsigned linear encodings just have the highest bit set
* (2^(n-1) for n bits), while the nonlinear 8-bit ones are special.
* \param enc the encoding (mpg123_enc_enum value)
* \param siz bytes per sample (return value of MPG123_SAMPLESIZE(enc))
* \param off byte (octet) offset counted from LSB
* \return unsigned byte value for the designated octet
*/
#define MPG123_ZEROSAMPLE(enc, siz, off) ( \
(enc) == MPG123_ENC_ULAW_8 \
? (off == 0 ? 0xff : 0x00) \
: ( (enc) == MPG123_ENC_ALAW_8 \
? (off == 0 ? 0xd5 : 0x00) \
: ( (((enc) & (MPG123_ENC_SIGNED|MPG123_ENC_FLOAT)) || (siz) != ((off)+1)) \
? 0x00 \
: 0x80 \
) ) )
/** Structure defining an audio format.
* Providing the members as individual function arguments to define a certain
* output format is easy enough. This struct makes is more comfortable to deal
* with a list of formats.
* Negative values for the members might be used to communicate use of default
* values.
*/
struct mpg123_fmt
{
long rate; /**< sampling rate in Hz */
int channels; /**< channel count */
/** encoding code, can be single value or bitwise or of members of
* mpg123_enc_enum */
int encoding;
};
/* @} */
#endif

File diff suppressed because it is too large Load Diff

Binary file not shown.

Binary file not shown.

1
vendor/ogg vendored

@ -1 +0,0 @@
Subproject commit 684c73773e7e2683245ffd6aa75f04115b51123a

1
vendor/openal-soft vendored Submodule

@ -0,0 +1 @@
Subproject commit cc1d6d8a3e3192faf8a7c243aca5d1e5304f0ca5

View File

@ -1,437 +0,0 @@
GNU LIBRARY GENERAL PUBLIC LICENSE
Version 2, June 1991
Copyright (C) 1991 Free Software Foundation, Inc.
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
Everyone is permitted to copy and distribute verbatim copies
of this license document, but changing it is not allowed.
[This is the first released version of the library GPL. It is
numbered 2 because it goes with version 2 of the ordinary GPL.]
Preamble
The licenses for most software are designed to take away your
freedom to share and change it. By contrast, the GNU General Public
Licenses are intended to guarantee your freedom to share and change
free software--to make sure the software is free for all its users.
This license, the Library General Public License, applies to some
specially designated Free Software Foundation software, and to any
other libraries whose authors decide to use it. You can use it for
your libraries, too.
When we speak of free software, we are referring to freedom, not
price. Our General Public Licenses are designed to make sure that you
have the freedom to distribute copies of free software (and charge for
this service if you wish), that you receive source code or can get it
if you want it, that you can change the software or use pieces of it
in new free programs; and that you know you can do these things.
To protect your rights, we need to make restrictions that forbid
anyone to deny you these rights or to ask you to surrender the rights.
These restrictions translate to certain responsibilities for you if
you distribute copies of the library, or if you modify it.
For example, if you distribute copies of the library, whether gratis
or for a fee, you must give the recipients all the rights that we gave
you. You must make sure that they, too, receive or can get the source
code. If you link a program with the library, you must provide
complete object files to the recipients so that they can relink them
with the library, after making changes to the library and recompiling
it. And you must show them these terms so they know their rights.
Our method of protecting your rights has two steps: (1) copyright
the library, and (2) offer you this license which gives you legal
permission to copy, distribute and/or modify the library.
Also, for each distributor's protection, we want to make certain
that everyone understands that there is no warranty for this free
library. If the library is modified by someone else and passed on, we
want its recipients to know that what they have is not the original
version, so that any problems introduced by others will not reflect on
the original authors' reputations.
Finally, any free program is threatened constantly by software
patents. We wish to avoid the danger that companies distributing free
software will individually obtain patent licenses, thus in effect
transforming the program into proprietary software. To prevent this,
we have made it clear that any patent must be licensed for everyone's
free use or not licensed at all.
Most GNU software, including some libraries, is covered by the ordinary
GNU General Public License, which was designed for utility programs. This
license, the GNU Library General Public License, applies to certain
designated libraries. This license is quite different from the ordinary
one; be sure to read it in full, and don't assume that anything in it is
the same as in the ordinary license.
The reason we have a separate public license for some libraries is that
they blur the distinction we usually make between modifying or adding to a
program and simply using it. Linking a program with a library, without
changing the library, is in some sense simply using the library, and is
analogous to running a utility program or application program. However, in
a textual and legal sense, the linked executable is a combined work, a
derivative of the original library, and the ordinary General Public License
treats it as such.
Because of this blurred distinction, using the ordinary General
Public License for libraries did not effectively promote software
sharing, because most developers did not use the libraries. We
concluded that weaker conditions might promote sharing better.
However, unrestricted linking of non-free programs would deprive the
users of those programs of all benefit from the free status of the
libraries themselves. This Library General Public License is intended to
permit developers of non-free programs to use free libraries, while
preserving your freedom as a user of such programs to change the free
libraries that are incorporated in them. (We have not seen how to achieve
this as regards changes in header files, but we have achieved it as regards
changes in the actual functions of the Library.) The hope is that this
will lead to faster development of free libraries.
The precise terms and conditions for copying, distribution and
modification follow. Pay close attention to the difference between a
"work based on the library" and a "work that uses the library". The
former contains code derived from the library, while the latter only
works together with the library.
Note that it is possible for a library to be covered by the ordinary
General Public License rather than by this special one.
GNU LIBRARY GENERAL PUBLIC LICENSE
TERMS AND CONDITIONS FOR COPYING, DISTRIBUTION AND MODIFICATION
0. This License Agreement applies to any software library which
contains a notice placed by the copyright holder or other authorized
party saying it may be distributed under the terms of this Library
General Public License (also called "this License"). Each licensee is
addressed as "you".
A "library" means a collection of software functions and/or data
prepared so as to be conveniently linked with application programs
(which use some of those functions and data) to form executables.
The "Library", below, refers to any such software library or work
which has been distributed under these terms. A "work based on the
Library" means either the Library or any derivative work under
copyright law: that is to say, a work containing the Library or a
portion of it, either verbatim or with modifications and/or translated
straightforwardly into another language. (Hereinafter, translation is
included without limitation in the term "modification".)
"Source code" for a work means the preferred form of the work for
making modifications to it. For a library, complete source code means
all the source code for all modules it contains, plus any associated
interface definition files, plus the scripts used to control compilation
and installation of the library.
Activities other than copying, distribution and modification are not
covered by this License; they are outside its scope. The act of
running a program using the Library is not restricted, and output from
such a program is covered only if its contents constitute a work based
on the Library (independent of the use of the Library in a tool for
writing it). Whether that is true depends on what the Library does
and what the program that uses the Library does.
1. You may copy and distribute verbatim copies of the Library's
complete source code as you receive it, in any medium, provided that
you conspicuously and appropriately publish on each copy an
appropriate copyright notice and disclaimer of warranty; keep intact
all the notices that refer to this License and to the absence of any
warranty; and distribute a copy of this License along with the
Library.
You may charge a fee for the physical act of transferring a copy,
and you may at your option offer warranty protection in exchange for a
fee.
2. You may modify your copy or copies of the Library or any portion
of it, thus forming a work based on the Library, and copy and
distribute such modifications or work under the terms of Section 1
above, provided that you also meet all of these conditions:
a) The modified work must itself be a software library.
b) You must cause the files modified to carry prominent notices
stating that you changed the files and the date of any change.
c) You must cause the whole of the work to be licensed at no
charge to all third parties under the terms of this License.
d) If a facility in the modified Library refers to a function or a
table of data to be supplied by an application program that uses
the facility, other than as an argument passed when the facility
is invoked, then you must make a good faith effort to ensure that,
in the event an application does not supply such function or
table, the facility still operates, and performs whatever part of
its purpose remains meaningful.
(For example, a function in a library to compute square roots has
a purpose that is entirely well-defined independent of the
application. Therefore, Subsection 2d requires that any
application-supplied function or table used by this function must
be optional: if the application does not supply it, the square
root function must still compute square roots.)
These requirements apply to the modified work as a whole. If
identifiable sections of that work are not derived from the Library,
and can be reasonably considered independent and separate works in
themselves, then this License, and its terms, do not apply to those
sections when you distribute them as separate works. But when you
distribute the same sections as part of a whole which is a work based
on the Library, the distribution of the whole must be on the terms of
this License, whose permissions for other licensees extend to the
entire whole, and thus to each and every part regardless of who wrote
it.
Thus, it is not the intent of this section to claim rights or contest
your rights to work written entirely by you; rather, the intent is to
exercise the right to control the distribution of derivative or
collective works based on the Library.
In addition, mere aggregation of another work not based on the Library
with the Library (or with a work based on the Library) on a volume of
a storage or distribution medium does not bring the other work under
the scope of this License.
3. You may opt to apply the terms of the ordinary GNU General Public
License instead of this License to a given copy of the Library. To do
this, you must alter all the notices that refer to this License, so
that they refer to the ordinary GNU General Public License, version 2,
instead of to this License. (If a newer version than version 2 of the
ordinary GNU General Public License has appeared, then you can specify
that version instead if you wish.) Do not make any other change in
these notices.
Once this change is made in a given copy, it is irreversible for
that copy, so the ordinary GNU General Public License applies to all
subsequent copies and derivative works made from that copy.
This option is useful when you wish to copy part of the code of
the Library into a program that is not a library.
4. You may copy and distribute the Library (or a portion or
derivative of it, under Section 2) in object code or executable form
under the terms of Sections 1 and 2 above provided that you accompany
it with the complete corresponding machine-readable source code, which
must be distributed under the terms of Sections 1 and 2 above on a
medium customarily used for software interchange.
If distribution of object code is made by offering access to copy
from a designated place, then offering equivalent access to copy the
source code from the same place satisfies the requirement to
distribute the source code, even though third parties are not
compelled to copy the source along with the object code.
5. A program that contains no derivative of any portion of the
Library, but is designed to work with the Library by being compiled or
linked with it, is called a "work that uses the Library". Such a
work, in isolation, is not a derivative work of the Library, and
therefore falls outside the scope of this License.
However, linking a "work that uses the Library" with the Library
creates an executable that is a derivative of the Library (because it
contains portions of the Library), rather than a "work that uses the
library". The executable is therefore covered by this License.
Section 6 states terms for distribution of such executables.
When a "work that uses the Library" uses material from a header file
that is part of the Library, the object code for the work may be a
derivative work of the Library even though the source code is not.
Whether this is true is especially significant if the work can be
linked without the Library, or if the work is itself a library. The
threshold for this to be true is not precisely defined by law.
If such an object file uses only numerical parameters, data
structure layouts and accessors, and small macros and small inline
functions (ten lines or less in length), then the use of the object
file is unrestricted, regardless of whether it is legally a derivative
work. (Executables containing this object code plus portions of the
Library will still fall under Section 6.)
Otherwise, if the work is a derivative of the Library, you may
distribute the object code for the work under the terms of Section 6.
Any executables containing that work also fall under Section 6,
whether or not they are linked directly with the Library itself.
6. As an exception to the Sections above, you may also compile or
link a "work that uses the Library" with the Library to produce a
work containing portions of the Library, and distribute that work
under terms of your choice, provided that the terms permit
modification of the work for the customer's own use and reverse
engineering for debugging such modifications.
You must give prominent notice with each copy of the work that the
Library is used in it and that the Library and its use are covered by
this License. You must supply a copy of this License. If the work
during execution displays copyright notices, you must include the
copyright notice for the Library among them, as well as a reference
directing the user to the copy of this License. Also, you must do one
of these things:
a) Accompany the work with the complete corresponding
machine-readable source code for the Library including whatever
changes were used in the work (which must be distributed under
Sections 1 and 2 above); and, if the work is an executable linked
with the Library, with the complete machine-readable "work that
uses the Library", as object code and/or source code, so that the
user can modify the Library and then relink to produce a modified
executable containing the modified Library. (It is understood
that the user who changes the contents of definitions files in the
Library will not necessarily be able to recompile the application
to use the modified definitions.)
b) Accompany the work with a written offer, valid for at
least three years, to give the same user the materials
specified in Subsection 6a, above, for a charge no more
than the cost of performing this distribution.
c) If distribution of the work is made by offering access to copy
from a designated place, offer equivalent access to copy the above
specified materials from the same place.
d) Verify that the user has already received a copy of these
materials or that you have already sent this user a copy.
For an executable, the required form of the "work that uses the
Library" must include any data and utility programs needed for
reproducing the executable from it. However, as a special exception,
the source code distributed need not include anything that is normally
distributed (in either source or binary form) with the major
components (compiler, kernel, and so on) of the operating system on
which the executable runs, unless that component itself accompanies
the executable.
It may happen that this requirement contradicts the license
restrictions of other proprietary libraries that do not normally
accompany the operating system. Such a contradiction means you cannot
use both them and the Library together in an executable that you
distribute.
7. You may place library facilities that are a work based on the
Library side-by-side in a single library together with other library
facilities not covered by this License, and distribute such a combined
library, provided that the separate distribution of the work based on
the Library and of the other library facilities is otherwise
permitted, and provided that you do these two things:
a) Accompany the combined library with a copy of the same work
based on the Library, uncombined with any other library
facilities. This must be distributed under the terms of the
Sections above.
b) Give prominent notice with the combined library of the fact
that part of it is a work based on the Library, and explaining
where to find the accompanying uncombined form of the same work.
8. You may not copy, modify, sublicense, link with, or distribute
the Library except as expressly provided under this License. Any
attempt otherwise to copy, modify, sublicense, link with, or
distribute the Library is void, and will automatically terminate your
rights under this License. However, parties who have received copies,
or rights, from you under this License will not have their licenses
terminated so long as such parties remain in full compliance.
9. You are not required to accept this License, since you have not
signed it. However, nothing else grants you permission to modify or
distribute the Library or its derivative works. These actions are
prohibited by law if you do not accept this License. Therefore, by
modifying or distributing the Library (or any work based on the
Library), you indicate your acceptance of this License to do so, and
all its terms and conditions for copying, distributing or modifying
the Library or works based on it.
10. Each time you redistribute the Library (or any work based on the
Library), the recipient automatically receives a license from the
original licensor to copy, distribute, link with or modify the Library
subject to these terms and conditions. You may not impose any further
restrictions on the recipients' exercise of the rights granted herein.
You are not responsible for enforcing compliance by third parties to
this License.
11. If, as a consequence of a court judgment or allegation of patent
infringement or for any other reason (not limited to patent issues),
conditions are imposed on you (whether by court order, agreement or
otherwise) that contradict the conditions of this License, they do not
excuse you from the conditions of this License. If you cannot
distribute so as to satisfy simultaneously your obligations under this
License and any other pertinent obligations, then as a consequence you
may not distribute the Library at all. For example, if a patent
license would not permit royalty-free redistribution of the Library by
all those who receive copies directly or indirectly through you, then
the only way you could satisfy both it and this License would be to
refrain entirely from distribution of the Library.
If any portion of this section is held invalid or unenforceable under any
particular circumstance, the balance of the section is intended to apply,
and the section as a whole is intended to apply in other circumstances.
It is not the purpose of this section to induce you to infringe any
patents or other property right claims or to contest validity of any
such claims; this section has the sole purpose of protecting the
integrity of the free software distribution system which is
implemented by public license practices. Many people have made
generous contributions to the wide range of software distributed
through that system in reliance on consistent application of that
system; it is up to the author/donor to decide if he or she is willing
to distribute software through any other system and a licensee cannot
impose that choice.
This section is intended to make thoroughly clear what is believed to
be a consequence of the rest of this License.
12. If the distribution and/or use of the Library is restricted in
certain countries either by patents or by copyrighted interfaces, the
original copyright holder who places the Library under this License may add
an explicit geographical distribution limitation excluding those countries,
so that distribution is permitted only in or among countries not thus
excluded. In such case, this License incorporates the limitation as if
written in the body of this License.
13. The Free Software Foundation may publish revised and/or new
versions of the Library General Public License from time to time.
Such new versions will be similar in spirit to the present version,
but may differ in detail to address new problems or concerns.
Each version is given a distinguishing version number. If the Library
specifies a version number of this License which applies to it and
"any later version", you have the option of following the terms and
conditions either of that version or of any later version published by
the Free Software Foundation. If the Library does not specify a
license version number, you may choose any version ever published by
the Free Software Foundation.
14. If you wish to incorporate parts of the Library into other free
programs whose distribution conditions are incompatible with these,
write to the author to ask for permission. For software which is
copyrighted by the Free Software Foundation, write to the Free
Software Foundation; we sometimes make exceptions for this. Our
decision will be guided by the two goals of preserving the free status
of all derivatives of our free software and of promoting the sharing
and reuse of software generally.
NO WARRANTY
15. BECAUSE THE LIBRARY IS LICENSED FREE OF CHARGE, THERE IS NO
WARRANTY FOR THE LIBRARY, TO THE EXTENT PERMITTED BY APPLICABLE LAW.
EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT HOLDERS AND/OR
OTHER PARTIES PROVIDE THE LIBRARY "AS IS" WITHOUT WARRANTY OF ANY
KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO, THE
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
PURPOSE. THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE
LIBRARY IS WITH YOU. SHOULD THE LIBRARY PROVE DEFECTIVE, YOU ASSUME
THE COST OF ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
16. IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN
WRITING WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MAY MODIFY
AND/OR REDISTRIBUTE THE LIBRARY AS PERMITTED ABOVE, BE LIABLE TO YOU
FOR DAMAGES, INCLUDING ANY GENERAL, SPECIAL, INCIDENTAL OR
CONSEQUENTIAL DAMAGES ARISING OUT OF THE USE OR INABILITY TO USE THE
LIBRARY (INCLUDING BUT NOT LIMITED TO LOSS OF DATA OR DATA BEING
RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD PARTIES OR A
FAILURE OF THE LIBRARY TO OPERATE WITH ANY OTHER SOFTWARE), EVEN IF
SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH
DAMAGES.
END OF TERMS AND CONDITIONS

Binary file not shown.

Binary file not shown.

View File

@ -1,655 +0,0 @@
#ifndef AL_AL_H
#define AL_AL_H
#if defined(__cplusplus)
extern "C" {
#endif
#ifndef AL_API
#if defined(AL_LIBTYPE_STATIC)
#define AL_API
#elif defined(_WIN32)
#define AL_API __declspec(dllimport)
#else
#define AL_API extern
#endif
#endif
#if defined(_WIN32)
#define AL_APIENTRY __cdecl
#else
#define AL_APIENTRY
#endif
/* Deprecated macros. */
#define OPENAL
#define ALAPI AL_API
#define ALAPIENTRY AL_APIENTRY
#define AL_INVALID (-1)
#define AL_ILLEGAL_ENUM AL_INVALID_ENUM
#define AL_ILLEGAL_COMMAND AL_INVALID_OPERATION
/* Supported AL versions. */
#define AL_VERSION_1_0
#define AL_VERSION_1_1
/** 8-bit boolean */
typedef char ALboolean;
/** character */
typedef char ALchar;
/** signed 8-bit 2's complement integer */
typedef signed char ALbyte;
/** unsigned 8-bit integer */
typedef unsigned char ALubyte;
/** signed 16-bit 2's complement integer */
typedef short ALshort;
/** unsigned 16-bit integer */
typedef unsigned short ALushort;
/** signed 32-bit 2's complement integer */
typedef int ALint;
/** unsigned 32-bit integer */
typedef unsigned int ALuint;
/** non-negative 32-bit binary integer size */
typedef int ALsizei;
/** enumerated 32-bit value */
typedef int ALenum;
/** 32-bit IEEE754 floating-point */
typedef float ALfloat;
/** 64-bit IEEE754 floating-point */
typedef double ALdouble;
/** void type (for opaque pointers only) */
typedef void ALvoid;
/* Enumerant values begin at column 50. No tabs. */
/** "no distance model" or "no buffer" */
#define AL_NONE 0
/** Boolean False. */
#define AL_FALSE 0
/** Boolean True. */
#define AL_TRUE 1
/**
* Relative source.
* Type: ALboolean
* Range: [AL_TRUE, AL_FALSE]
* Default: AL_FALSE
*
* Specifies if the Source has relative coordinates.
*/
#define AL_SOURCE_RELATIVE 0x202
/**
* Inner cone angle, in degrees.
* Type: ALint, ALfloat
* Range: [0 - 360]
* Default: 360
*
* The angle covered by the inner cone, where the source will not attenuate.
*/
#define AL_CONE_INNER_ANGLE 0x1001
/**
* Outer cone angle, in degrees.
* Range: [0 - 360]
* Default: 360
*
* The angle covered by the outer cone, where the source will be fully
* attenuated.
*/
#define AL_CONE_OUTER_ANGLE 0x1002
/**
* Source pitch.
* Type: ALfloat
* Range: [0.5 - 2.0]
* Default: 1.0
*
* A multiplier for the frequency (sample rate) of the source's buffer.
*/
#define AL_PITCH 0x1003
/**
* Source or listener position.
* Type: ALfloat[3], ALint[3]
* Default: {0, 0, 0}
*
* The source or listener location in three dimensional space.
*
* OpenAL, like OpenGL, uses a right handed coordinate system, where in a
* frontal default view X (thumb) points right, Y points up (index finger), and
* Z points towards the viewer/camera (middle finger).
*
* To switch from a left handed coordinate system, flip the sign on the Z
* coordinate.
*/
#define AL_POSITION 0x1004
/**
* Source direction.
* Type: ALfloat[3], ALint[3]
* Default: {0, 0, 0}
*
* Specifies the current direction in local space.
* A zero-length vector specifies an omni-directional source (cone is ignored).
*/
#define AL_DIRECTION 0x1005
/**
* Source or listener velocity.
* Type: ALfloat[3], ALint[3]
* Default: {0, 0, 0}
*
* Specifies the current velocity in local space.
*/
#define AL_VELOCITY 0x1006
/**
* Source looping.
* Type: ALboolean
* Range: [AL_TRUE, AL_FALSE]
* Default: AL_FALSE
*
* Specifies whether source is looping.
*/
#define AL_LOOPING 0x1007
/**
* Source buffer.
* Type: ALuint
* Range: any valid Buffer.
*
* Specifies the buffer to provide sound samples.
*/
#define AL_BUFFER 0x1009
/**
* Source or listener gain.
* Type: ALfloat
* Range: [0.0 - ]
*
* A value of 1.0 means unattenuated. Each division by 2 equals an attenuation
* of about -6dB. Each multiplicaton by 2 equals an amplification of about
* +6dB.
*
* A value of 0.0 is meaningless with respect to a logarithmic scale; it is
* silent.
*/
#define AL_GAIN 0x100A
/**
* Minimum source gain.
* Type: ALfloat
* Range: [0.0 - 1.0]
*
* The minimum gain allowed for a source, after distance and cone attenation is
* applied (if applicable).
*/
#define AL_MIN_GAIN 0x100D
/**
* Maximum source gain.
* Type: ALfloat
* Range: [0.0 - 1.0]
*
* The maximum gain allowed for a source, after distance and cone attenation is
* applied (if applicable).
*/
#define AL_MAX_GAIN 0x100E
/**
* Listener orientation.
* Type: ALfloat[6]
* Default: {0.0, 0.0, -1.0, 0.0, 1.0, 0.0}
*
* Effectively two three dimensional vectors. The first vector is the front (or
* "at") and the second is the top (or "up").
*
* Both vectors are in local space.
*/
#define AL_ORIENTATION 0x100F
/**
* Source state (query only).
* Type: ALint
* Range: [AL_INITIAL, AL_PLAYING, AL_PAUSED, AL_STOPPED]
*/
#define AL_SOURCE_STATE 0x1010
/* Source state values. */
#define AL_INITIAL 0x1011
#define AL_PLAYING 0x1012
#define AL_PAUSED 0x1013
#define AL_STOPPED 0x1014
/**
* Source Buffer Queue size (query only).
* Type: ALint
*
* The number of buffers queued using alSourceQueueBuffers, minus the buffers
* removed with alSourceUnqueueBuffers.
*/
#define AL_BUFFERS_QUEUED 0x1015
/**
* Source Buffer Queue processed count (query only).
* Type: ALint
*
* The number of queued buffers that have been fully processed, and can be
* removed with alSourceUnqueueBuffers.
*
* Looping sources will never fully process buffers because they will be set to
* play again for when the source loops.
*/
#define AL_BUFFERS_PROCESSED 0x1016
/**
* Source reference distance.
* Type: ALfloat
* Range: [0.0 - ]
* Default: 1.0
*
* The distance in units that no attenuation occurs.
*
* At 0.0, no distance attenuation ever occurs on non-linear attenuation models.
*/
#define AL_REFERENCE_DISTANCE 0x1020
/**
* Source rolloff factor.
* Type: ALfloat
* Range: [0.0 - ]
* Default: 1.0
*
* Multiplier to exaggerate or diminish distance attenuation.
*
* At 0.0, no distance attenuation ever occurs.
*/
#define AL_ROLLOFF_FACTOR 0x1021
/**
* Outer cone gain.
* Type: ALfloat
* Range: [0.0 - 1.0]
* Default: 0.0
*
* The gain attenuation applied when the listener is outside of the source's
* outer cone.
*/
#define AL_CONE_OUTER_GAIN 0x1022
/**
* Source maximum distance.
* Type: ALfloat
* Range: [0.0 - ]
* Default: FLT_MAX
*
* The distance above which the source is not attenuated any further with a
* clamped distance model, or where attenuation reaches 0.0 gain for linear
* distance models with a default rolloff factor.
*/
#define AL_MAX_DISTANCE 0x1023
/** Source buffer position, in seconds */
#define AL_SEC_OFFSET 0x1024
/** Source buffer position, in sample frames */
#define AL_SAMPLE_OFFSET 0x1025
/** Source buffer position, in bytes */
#define AL_BYTE_OFFSET 0x1026
/**
* Source type (query only).
* Type: ALint
* Range: [AL_STATIC, AL_STREAMING, AL_UNDETERMINED]
*
* A Source is Static if a Buffer has been attached using AL_BUFFER.
*
* A Source is Streaming if one or more Buffers have been attached using
* alSourceQueueBuffers.
*
* A Source is Undetermined when it has the NULL buffer attached using
* AL_BUFFER.
*/
#define AL_SOURCE_TYPE 0x1027
/* Source type values. */
#define AL_STATIC 0x1028
#define AL_STREAMING 0x1029
#define AL_UNDETERMINED 0x1030
/** Unsigned 8-bit mono buffer format. */
#define AL_FORMAT_MONO8 0x1100
/** Signed 16-bit mono buffer format. */
#define AL_FORMAT_MONO16 0x1101
/** Unsigned 8-bit stereo buffer format. */
#define AL_FORMAT_STEREO8 0x1102
/** Signed 16-bit stereo buffer format. */
#define AL_FORMAT_STEREO16 0x1103
/** Buffer frequency (query only). */
#define AL_FREQUENCY 0x2001
/** Buffer bits per sample (query only). */
#define AL_BITS 0x2002
/** Buffer channel count (query only). */
#define AL_CHANNELS 0x2003
/** Buffer data size (query only). */
#define AL_SIZE 0x2004
/* Buffer state. Not for public use. */
#define AL_UNUSED 0x2010
#define AL_PENDING 0x2011
#define AL_PROCESSED 0x2012
/** No error. */
#define AL_NO_ERROR 0
/** Invalid name paramater passed to AL call. */
#define AL_INVALID_NAME 0xA001
/** Invalid enum parameter passed to AL call. */
#define AL_INVALID_ENUM 0xA002
/** Invalid value parameter passed to AL call. */
#define AL_INVALID_VALUE 0xA003
/** Illegal AL call. */
#define AL_INVALID_OPERATION 0xA004
/** Not enough memory. */
#define AL_OUT_OF_MEMORY 0xA005
/** Context string: Vendor ID. */
#define AL_VENDOR 0xB001
/** Context string: Version. */
#define AL_VERSION 0xB002
/** Context string: Renderer ID. */
#define AL_RENDERER 0xB003
/** Context string: Space-separated extension list. */
#define AL_EXTENSIONS 0xB004
/**
* Doppler scale.
* Type: ALfloat
* Range: [0.0 - ]
* Default: 1.0
*
* Scale for source and listener velocities.
*/
#define AL_DOPPLER_FACTOR 0xC000
AL_API void AL_APIENTRY alDopplerFactor(ALfloat value);
/**
* Doppler velocity (deprecated).
*
* A multiplier applied to the Speed of Sound.
*/
#define AL_DOPPLER_VELOCITY 0xC001
AL_API void AL_APIENTRY alDopplerVelocity(ALfloat value);
/**
* Speed of Sound, in units per second.
* Type: ALfloat
* Range: [0.0001 - ]
* Default: 343.3
*
* The speed at which sound waves are assumed to travel, when calculating the
* doppler effect.
*/
#define AL_SPEED_OF_SOUND 0xC003
AL_API void AL_APIENTRY alSpeedOfSound(ALfloat value);
/**
* Distance attenuation model.
* Type: ALint
* Range: [AL_NONE, AL_INVERSE_DISTANCE, AL_INVERSE_DISTANCE_CLAMPED,
* AL_LINEAR_DISTANCE, AL_LINEAR_DISTANCE_CLAMPED,
* AL_EXPONENT_DISTANCE, AL_EXPONENT_DISTANCE_CLAMPED]
* Default: AL_INVERSE_DISTANCE_CLAMPED
*
* The model by which sources attenuate with distance.
*
* None - No distance attenuation.
* Inverse - Doubling the distance halves the source gain.
* Linear - Linear gain scaling between the reference and max distances.
* Exponent - Exponential gain dropoff.
*
* Clamped variations work like the non-clamped counterparts, except the
* distance calculated is clamped between the reference and max distances.
*/
#define AL_DISTANCE_MODEL 0xD000
AL_API void AL_APIENTRY alDistanceModel(ALenum distanceModel);
/* Distance model values. */
#define AL_INVERSE_DISTANCE 0xD001
#define AL_INVERSE_DISTANCE_CLAMPED 0xD002
#define AL_LINEAR_DISTANCE 0xD003
#define AL_LINEAR_DISTANCE_CLAMPED 0xD004
#define AL_EXPONENT_DISTANCE 0xD005
#define AL_EXPONENT_DISTANCE_CLAMPED 0xD006
/* Renderer State management. */
AL_API void AL_APIENTRY alEnable(ALenum capability);
AL_API void AL_APIENTRY alDisable(ALenum capability);
AL_API ALboolean AL_APIENTRY alIsEnabled(ALenum capability);
/* State retrieval. */
AL_API const ALchar* AL_APIENTRY alGetString(ALenum param);
AL_API void AL_APIENTRY alGetBooleanv(ALenum param, ALboolean *values);
AL_API void AL_APIENTRY alGetIntegerv(ALenum param, ALint *values);
AL_API void AL_APIENTRY alGetFloatv(ALenum param, ALfloat *values);
AL_API void AL_APIENTRY alGetDoublev(ALenum param, ALdouble *values);
AL_API ALboolean AL_APIENTRY alGetBoolean(ALenum param);
AL_API ALint AL_APIENTRY alGetInteger(ALenum param);
AL_API ALfloat AL_APIENTRY alGetFloat(ALenum param);
AL_API ALdouble AL_APIENTRY alGetDouble(ALenum param);
/* Error retrieval. */
/** Obtain the first error generated in the AL context since the last check. */
AL_API ALenum AL_APIENTRY alGetError(void);
/** Query for the presence of an extension on the AL context. */
AL_API ALboolean AL_APIENTRY alIsExtensionPresent(const ALchar *extname);
/**
* Retrieve the address of a function. The returned function may be context-
* specific.
*/
AL_API void* AL_APIENTRY alGetProcAddress(const ALchar *fname);
/**
* Retrieve the value of an enum. The returned value may be context-specific.
*/
AL_API ALenum AL_APIENTRY alGetEnumValue(const ALchar *ename);
/* Set Listener parameters */
AL_API void AL_APIENTRY alListenerf(ALenum param, ALfloat value);
AL_API void AL_APIENTRY alListener3f(ALenum param, ALfloat value1, ALfloat value2, ALfloat value3);
AL_API void AL_APIENTRY alListenerfv(ALenum param, const ALfloat *values);
AL_API void AL_APIENTRY alListeneri(ALenum param, ALint value);
AL_API void AL_APIENTRY alListener3i(ALenum param, ALint value1, ALint value2, ALint value3);
AL_API void AL_APIENTRY alListeneriv(ALenum param, const ALint *values);
/* Get Listener parameters */
AL_API void AL_APIENTRY alGetListenerf(ALenum param, ALfloat *value);
AL_API void AL_APIENTRY alGetListener3f(ALenum param, ALfloat *value1, ALfloat *value2, ALfloat *value3);
AL_API void AL_APIENTRY alGetListenerfv(ALenum param, ALfloat *values);
AL_API void AL_APIENTRY alGetListeneri(ALenum param, ALint *value);
AL_API void AL_APIENTRY alGetListener3i(ALenum param, ALint *value1, ALint *value2, ALint *value3);
AL_API void AL_APIENTRY alGetListeneriv(ALenum param, ALint *values);
/** Create Source objects. */
AL_API void AL_APIENTRY alGenSources(ALsizei n, ALuint *sources);
/** Delete Source objects. */
AL_API void AL_APIENTRY alDeleteSources(ALsizei n, const ALuint *sources);
/** Verify a handle is a valid Source. */
AL_API ALboolean AL_APIENTRY alIsSource(ALuint source);
/* Set Source parameters. */
AL_API void AL_APIENTRY alSourcef(ALuint source, ALenum param, ALfloat value);
AL_API void AL_APIENTRY alSource3f(ALuint source, ALenum param, ALfloat value1, ALfloat value2, ALfloat value3);
AL_API void AL_APIENTRY alSourcefv(ALuint source, ALenum param, const ALfloat *values);
AL_API void AL_APIENTRY alSourcei(ALuint source, ALenum param, ALint value);
AL_API void AL_APIENTRY alSource3i(ALuint source, ALenum param, ALint value1, ALint value2, ALint value3);
AL_API void AL_APIENTRY alSourceiv(ALuint source, ALenum param, const ALint *values);
/* Get Source parameters. */
AL_API void AL_APIENTRY alGetSourcef(ALuint source, ALenum param, ALfloat *value);
AL_API void AL_APIENTRY alGetSource3f(ALuint source, ALenum param, ALfloat *value1, ALfloat *value2, ALfloat *value3);
AL_API void AL_APIENTRY alGetSourcefv(ALuint source, ALenum param, ALfloat *values);
AL_API void AL_APIENTRY alGetSourcei(ALuint source, ALenum param, ALint *value);
AL_API void AL_APIENTRY alGetSource3i(ALuint source, ALenum param, ALint *value1, ALint *value2, ALint *value3);
AL_API void AL_APIENTRY alGetSourceiv(ALuint source, ALenum param, ALint *values);
/** Play, replay, or resume (if paused) a list of Sources */
AL_API void AL_APIENTRY alSourcePlayv(ALsizei n, const ALuint *sources);
/** Stop a list of Sources */
AL_API void AL_APIENTRY alSourceStopv(ALsizei n, const ALuint *sources);
/** Rewind a list of Sources */
AL_API void AL_APIENTRY alSourceRewindv(ALsizei n, const ALuint *sources);
/** Pause a list of Sources */
AL_API void AL_APIENTRY alSourcePausev(ALsizei n, const ALuint *sources);
/** Play, replay, or resume a Source */
AL_API void AL_APIENTRY alSourcePlay(ALuint source);
/** Stop a Source */
AL_API void AL_APIENTRY alSourceStop(ALuint source);
/** Rewind a Source (set playback postiton to beginning) */
AL_API void AL_APIENTRY alSourceRewind(ALuint source);
/** Pause a Source */
AL_API void AL_APIENTRY alSourcePause(ALuint source);
/** Queue buffers onto a source */
AL_API void AL_APIENTRY alSourceQueueBuffers(ALuint source, ALsizei nb, const ALuint *buffers);
/** Unqueue processed buffers from a source */
AL_API void AL_APIENTRY alSourceUnqueueBuffers(ALuint source, ALsizei nb, ALuint *buffers);
/** Create Buffer objects */
AL_API void AL_APIENTRY alGenBuffers(ALsizei n, ALuint *buffers);
/** Delete Buffer objects */
AL_API void AL_APIENTRY alDeleteBuffers(ALsizei n, const ALuint *buffers);
/** Verify a handle is a valid Buffer */
AL_API ALboolean AL_APIENTRY alIsBuffer(ALuint buffer);
/** Specifies the data to be copied into a buffer */
AL_API void AL_APIENTRY alBufferData(ALuint buffer, ALenum format, const ALvoid *data, ALsizei size, ALsizei freq);
/* Set Buffer parameters, */
AL_API void AL_APIENTRY alBufferf(ALuint buffer, ALenum param, ALfloat value);
AL_API void AL_APIENTRY alBuffer3f(ALuint buffer, ALenum param, ALfloat value1, ALfloat value2, ALfloat value3);
AL_API void AL_APIENTRY alBufferfv(ALuint buffer, ALenum param, const ALfloat *values);
AL_API void AL_APIENTRY alBufferi(ALuint buffer, ALenum param, ALint value);
AL_API void AL_APIENTRY alBuffer3i(ALuint buffer, ALenum param, ALint value1, ALint value2, ALint value3);
AL_API void AL_APIENTRY alBufferiv(ALuint buffer, ALenum param, const ALint *values);
/* Get Buffer parameters. */
AL_API void AL_APIENTRY alGetBufferf(ALuint buffer, ALenum param, ALfloat *value);
AL_API void AL_APIENTRY alGetBuffer3f(ALuint buffer, ALenum param, ALfloat *value1, ALfloat *value2, ALfloat *value3);
AL_API void AL_APIENTRY alGetBufferfv(ALuint buffer, ALenum param, ALfloat *values);
AL_API void AL_APIENTRY alGetBufferi(ALuint buffer, ALenum param, ALint *value);
AL_API void AL_APIENTRY alGetBuffer3i(ALuint buffer, ALenum param, ALint *value1, ALint *value2, ALint *value3);
AL_API void AL_APIENTRY alGetBufferiv(ALuint buffer, ALenum param, ALint *values);
/* Pointer-to-function type, useful for dynamically getting AL entry points. */
typedef void (AL_APIENTRY *LPALENABLE)(ALenum capability);
typedef void (AL_APIENTRY *LPALDISABLE)(ALenum capability);
typedef ALboolean (AL_APIENTRY *LPALISENABLED)(ALenum capability);
typedef const ALchar* (AL_APIENTRY *LPALGETSTRING)(ALenum param);
typedef void (AL_APIENTRY *LPALGETBOOLEANV)(ALenum param, ALboolean *values);
typedef void (AL_APIENTRY *LPALGETINTEGERV)(ALenum param, ALint *values);
typedef void (AL_APIENTRY *LPALGETFLOATV)(ALenum param, ALfloat *values);
typedef void (AL_APIENTRY *LPALGETDOUBLEV)(ALenum param, ALdouble *values);
typedef ALboolean (AL_APIENTRY *LPALGETBOOLEAN)(ALenum param);
typedef ALint (AL_APIENTRY *LPALGETINTEGER)(ALenum param);
typedef ALfloat (AL_APIENTRY *LPALGETFLOAT)(ALenum param);
typedef ALdouble (AL_APIENTRY *LPALGETDOUBLE)(ALenum param);
typedef ALenum (AL_APIENTRY *LPALGETERROR)(void);
typedef ALboolean (AL_APIENTRY *LPALISEXTENSIONPRESENT)(const ALchar *extname);
typedef void* (AL_APIENTRY *LPALGETPROCADDRESS)(const ALchar *fname);
typedef ALenum (AL_APIENTRY *LPALGETENUMVALUE)(const ALchar *ename);
typedef void (AL_APIENTRY *LPALLISTENERF)(ALenum param, ALfloat value);
typedef void (AL_APIENTRY *LPALLISTENER3F)(ALenum param, ALfloat value1, ALfloat value2, ALfloat value3);
typedef void (AL_APIENTRY *LPALLISTENERFV)(ALenum param, const ALfloat *values);
typedef void (AL_APIENTRY *LPALLISTENERI)(ALenum param, ALint value);
typedef void (AL_APIENTRY *LPALLISTENER3I)(ALenum param, ALint value1, ALint value2, ALint value3);
typedef void (AL_APIENTRY *LPALLISTENERIV)(ALenum param, const ALint *values);
typedef void (AL_APIENTRY *LPALGETLISTENERF)(ALenum param, ALfloat *value);
typedef void (AL_APIENTRY *LPALGETLISTENER3F)(ALenum param, ALfloat *value1, ALfloat *value2, ALfloat *value3);
typedef void (AL_APIENTRY *LPALGETLISTENERFV)(ALenum param, ALfloat *values);
typedef void (AL_APIENTRY *LPALGETLISTENERI)(ALenum param, ALint *value);
typedef void (AL_APIENTRY *LPALGETLISTENER3I)(ALenum param, ALint *value1, ALint *value2, ALint *value3);
typedef void (AL_APIENTRY *LPALGETLISTENERIV)(ALenum param, ALint *values);
typedef void (AL_APIENTRY *LPALGENSOURCES)(ALsizei n, ALuint *sources);
typedef void (AL_APIENTRY *LPALDELETESOURCES)(ALsizei n, const ALuint *sources);
typedef ALboolean (AL_APIENTRY *LPALISSOURCE)(ALuint source);
typedef void (AL_APIENTRY *LPALSOURCEF)(ALuint source, ALenum param, ALfloat value);
typedef void (AL_APIENTRY *LPALSOURCE3F)(ALuint source, ALenum param, ALfloat value1, ALfloat value2, ALfloat value3);
typedef void (AL_APIENTRY *LPALSOURCEFV)(ALuint source, ALenum param, const ALfloat *values);
typedef void (AL_APIENTRY *LPALSOURCEI)(ALuint source, ALenum param, ALint value);
typedef void (AL_APIENTRY *LPALSOURCE3I)(ALuint source, ALenum param, ALint value1, ALint value2, ALint value3);
typedef void (AL_APIENTRY *LPALSOURCEIV)(ALuint source, ALenum param, const ALint *values);
typedef void (AL_APIENTRY *LPALGETSOURCEF)(ALuint source, ALenum param, ALfloat *value);
typedef void (AL_APIENTRY *LPALGETSOURCE3F)(ALuint source, ALenum param, ALfloat *value1, ALfloat *value2, ALfloat *value3);
typedef void (AL_APIENTRY *LPALGETSOURCEFV)(ALuint source, ALenum param, ALfloat *values);
typedef void (AL_APIENTRY *LPALGETSOURCEI)(ALuint source, ALenum param, ALint *value);
typedef void (AL_APIENTRY *LPALGETSOURCE3I)(ALuint source, ALenum param, ALint *value1, ALint *value2, ALint *value3);
typedef void (AL_APIENTRY *LPALGETSOURCEIV)(ALuint source, ALenum param, ALint *values);
typedef void (AL_APIENTRY *LPALSOURCEPLAYV)(ALsizei n, const ALuint *sources);
typedef void (AL_APIENTRY *LPALSOURCESTOPV)(ALsizei n, const ALuint *sources);
typedef void (AL_APIENTRY *LPALSOURCEREWINDV)(ALsizei n, const ALuint *sources);
typedef void (AL_APIENTRY *LPALSOURCEPAUSEV)(ALsizei n, const ALuint *sources);
typedef void (AL_APIENTRY *LPALSOURCEPLAY)(ALuint source);
typedef void (AL_APIENTRY *LPALSOURCESTOP)(ALuint source);
typedef void (AL_APIENTRY *LPALSOURCEREWIND)(ALuint source);
typedef void (AL_APIENTRY *LPALSOURCEPAUSE)(ALuint source);
typedef void (AL_APIENTRY *LPALSOURCEQUEUEBUFFERS)(ALuint source, ALsizei nb, const ALuint *buffers);
typedef void (AL_APIENTRY *LPALSOURCEUNQUEUEBUFFERS)(ALuint source, ALsizei nb, ALuint *buffers);
typedef void (AL_APIENTRY *LPALGENBUFFERS)(ALsizei n, ALuint *buffers);
typedef void (AL_APIENTRY *LPALDELETEBUFFERS)(ALsizei n, const ALuint *buffers);
typedef ALboolean (AL_APIENTRY *LPALISBUFFER)(ALuint buffer);
typedef void (AL_APIENTRY *LPALBUFFERDATA)(ALuint buffer, ALenum format, const ALvoid *data, ALsizei size, ALsizei freq);
typedef void (AL_APIENTRY *LPALBUFFERF)(ALuint buffer, ALenum param, ALfloat value);
typedef void (AL_APIENTRY *LPALBUFFER3F)(ALuint buffer, ALenum param, ALfloat value1, ALfloat value2, ALfloat value3);
typedef void (AL_APIENTRY *LPALBUFFERFV)(ALuint buffer, ALenum param, const ALfloat *values);
typedef void (AL_APIENTRY *LPALBUFFERI)(ALuint buffer, ALenum param, ALint value);
typedef void (AL_APIENTRY *LPALBUFFER3I)(ALuint buffer, ALenum param, ALint value1, ALint value2, ALint value3);
typedef void (AL_APIENTRY *LPALBUFFERIV)(ALuint buffer, ALenum param, const ALint *values);
typedef void (AL_APIENTRY *LPALGETBUFFERF)(ALuint buffer, ALenum param, ALfloat *value);
typedef void (AL_APIENTRY *LPALGETBUFFER3F)(ALuint buffer, ALenum param, ALfloat *value1, ALfloat *value2, ALfloat *value3);
typedef void (AL_APIENTRY *LPALGETBUFFERFV)(ALuint buffer, ALenum param, ALfloat *values);
typedef void (AL_APIENTRY *LPALGETBUFFERI)(ALuint buffer, ALenum param, ALint *value);
typedef void (AL_APIENTRY *LPALGETBUFFER3I)(ALuint buffer, ALenum param, ALint *value1, ALint *value2, ALint *value3);
typedef void (AL_APIENTRY *LPALGETBUFFERIV)(ALuint buffer, ALenum param, ALint *values);
typedef void (AL_APIENTRY *LPALDOPPLERFACTOR)(ALfloat value);
typedef void (AL_APIENTRY *LPALDOPPLERVELOCITY)(ALfloat value);
typedef void (AL_APIENTRY *LPALSPEEDOFSOUND)(ALfloat value);
typedef void (AL_APIENTRY *LPALDISTANCEMODEL)(ALenum distanceModel);
#if defined(__cplusplus)
} /* extern "C" */
#endif
#endif /* AL_AL_H */

View File

@ -1,270 +0,0 @@
#ifndef AL_ALC_H
#define AL_ALC_H
#if defined(__cplusplus)
extern "C" {
#endif
#ifndef ALC_API
#if defined(AL_LIBTYPE_STATIC)
#define ALC_API
#elif defined(_WIN32)
#define ALC_API __declspec(dllimport)
#else
#define ALC_API extern
#endif
#endif
#if defined(_WIN32)
#define ALC_APIENTRY __cdecl
#else
#define ALC_APIENTRY
#endif
/* Deprecated macros. */
#define ALCAPI ALC_API
#define ALCAPIENTRY ALC_APIENTRY
#define ALC_INVALID 0
/** Supported ALC version? */
#define ALC_VERSION_0_1 1
/** Opaque device handle */
typedef struct ALCdevice ALCdevice;
/** Opaque context handle */
typedef struct ALCcontext ALCcontext;
/** 8-bit boolean */
typedef char ALCboolean;
/** character */
typedef char ALCchar;
/** signed 8-bit 2's complement integer */
typedef signed char ALCbyte;
/** unsigned 8-bit integer */
typedef unsigned char ALCubyte;
/** signed 16-bit 2's complement integer */
typedef short ALCshort;
/** unsigned 16-bit integer */
typedef unsigned short ALCushort;
/** signed 32-bit 2's complement integer */
typedef int ALCint;
/** unsigned 32-bit integer */
typedef unsigned int ALCuint;
/** non-negative 32-bit binary integer size */
typedef int ALCsizei;
/** enumerated 32-bit value */
typedef int ALCenum;
/** 32-bit IEEE754 floating-point */
typedef float ALCfloat;
/** 64-bit IEEE754 floating-point */
typedef double ALCdouble;
/** void type (for opaque pointers only) */
typedef void ALCvoid;
/* Enumerant values begin at column 50. No tabs. */
/** Boolean False. */
#define ALC_FALSE 0
/** Boolean True. */
#define ALC_TRUE 1
/** Context attribute: <int> Hz. */
#define ALC_FREQUENCY 0x1007
/** Context attribute: <int> Hz. */
#define ALC_REFRESH 0x1008
/** Context attribute: AL_TRUE or AL_FALSE synchronous context? */
#define ALC_SYNC 0x1009
/** Context attribute: <int> requested Mono (3D) Sources. */
#define ALC_MONO_SOURCES 0x1010
/** Context attribute: <int> requested Stereo Sources. */
#define ALC_STEREO_SOURCES 0x1011
/** No error. */
#define ALC_NO_ERROR 0
/** Invalid device handle. */
#define ALC_INVALID_DEVICE 0xA001
/** Invalid context handle. */
#define ALC_INVALID_CONTEXT 0xA002
/** Invalid enum parameter passed to an ALC call. */
#define ALC_INVALID_ENUM 0xA003
/** Invalid value parameter passed to an ALC call. */
#define ALC_INVALID_VALUE 0xA004
/** Out of memory. */
#define ALC_OUT_OF_MEMORY 0xA005
/** Runtime ALC major version. */
#define ALC_MAJOR_VERSION 0x1000
/** Runtime ALC minor version. */
#define ALC_MINOR_VERSION 0x1001
/** Context attribute list size. */
#define ALC_ATTRIBUTES_SIZE 0x1002
/** Context attribute list properties. */
#define ALC_ALL_ATTRIBUTES 0x1003
/** String for the default device specifier. */
#define ALC_DEFAULT_DEVICE_SPECIFIER 0x1004
/**
* String for the given device's specifier.
*
* If device handle is NULL, it is instead a null-char separated list of
* strings of known device specifiers (list ends with an empty string).
*/
#define ALC_DEVICE_SPECIFIER 0x1005
/** String for space-separated list of ALC extensions. */
#define ALC_EXTENSIONS 0x1006
/** Capture extension */
#define ALC_EXT_CAPTURE 1
/**
* String for the given capture device's specifier.
*
* If device handle is NULL, it is instead a null-char separated list of
* strings of known capture device specifiers (list ends with an empty string).
*/
#define ALC_CAPTURE_DEVICE_SPECIFIER 0x310
/** String for the default capture device specifier. */
#define ALC_CAPTURE_DEFAULT_DEVICE_SPECIFIER 0x311
/** Number of sample frames available for capture. */
#define ALC_CAPTURE_SAMPLES 0x312
/** Enumerate All extension */
#define ALC_ENUMERATE_ALL_EXT 1
/** String for the default extended device specifier. */
#define ALC_DEFAULT_ALL_DEVICES_SPECIFIER 0x1012
/**
* String for the given extended device's specifier.
*
* If device handle is NULL, it is instead a null-char separated list of
* strings of known extended device specifiers (list ends with an empty string).
*/
#define ALC_ALL_DEVICES_SPECIFIER 0x1013
/* Context management. */
/** Create and attach a context to the given device. */
ALC_API ALCcontext* ALC_APIENTRY alcCreateContext(ALCdevice *device, const ALCint *attrlist);
/**
* Makes the given context the active process-wide context. Passing NULL clears
* the active context.
*/
ALC_API ALCboolean ALC_APIENTRY alcMakeContextCurrent(ALCcontext *context);
/** Resumes processing updates for the given context. */
ALC_API void ALC_APIENTRY alcProcessContext(ALCcontext *context);
/** Suspends updates for the given context. */
ALC_API void ALC_APIENTRY alcSuspendContext(ALCcontext *context);
/** Remove a context from its device and destroys it. */
ALC_API void ALC_APIENTRY alcDestroyContext(ALCcontext *context);
/** Returns the currently active context. */
ALC_API ALCcontext* ALC_APIENTRY alcGetCurrentContext(void);
/** Returns the device that a particular context is attached to. */
ALC_API ALCdevice* ALC_APIENTRY alcGetContextsDevice(ALCcontext *context);
/* Device management. */
/** Opens the named playback device. */
ALC_API ALCdevice* ALC_APIENTRY alcOpenDevice(const ALCchar *devicename);
/** Closes the given playback device. */
ALC_API ALCboolean ALC_APIENTRY alcCloseDevice(ALCdevice *device);
/* Error support. */
/** Obtain the most recent Device error. */
ALC_API ALCenum ALC_APIENTRY alcGetError(ALCdevice *device);
/* Extension support. */
/**
* Query for the presence of an extension on the device. Pass a NULL device to
* query a device-inspecific extension.
*/
ALC_API ALCboolean ALC_APIENTRY alcIsExtensionPresent(ALCdevice *device, const ALCchar *extname);
/**
* Retrieve the address of a function. Given a non-NULL device, the returned
* function may be device-specific.
*/
ALC_API ALCvoid* ALC_APIENTRY alcGetProcAddress(ALCdevice *device, const ALCchar *funcname);
/**
* Retrieve the value of an enum. Given a non-NULL device, the returned value
* may be device-specific.
*/
ALC_API ALCenum ALC_APIENTRY alcGetEnumValue(ALCdevice *device, const ALCchar *enumname);
/* Query functions. */
/** Returns information about the device, and error strings. */
ALC_API const ALCchar* ALC_APIENTRY alcGetString(ALCdevice *device, ALCenum param);
/** Returns information about the device and the version of OpenAL. */
ALC_API void ALC_APIENTRY alcGetIntegerv(ALCdevice *device, ALCenum param, ALCsizei size, ALCint *values);
/* Capture functions. */
/**
* Opens the named capture device with the given frequency, format, and buffer
* size.
*/
ALC_API ALCdevice* ALC_APIENTRY alcCaptureOpenDevice(const ALCchar *devicename, ALCuint frequency, ALCenum format, ALCsizei buffersize);
/** Closes the given capture device. */
ALC_API ALCboolean ALC_APIENTRY alcCaptureCloseDevice(ALCdevice *device);
/** Starts capturing samples into the device buffer. */
ALC_API void ALC_APIENTRY alcCaptureStart(ALCdevice *device);
/** Stops capturing samples. Samples in the device buffer remain available. */
ALC_API void ALC_APIENTRY alcCaptureStop(ALCdevice *device);
/** Reads samples from the device buffer. */
ALC_API void ALC_APIENTRY alcCaptureSamples(ALCdevice *device, ALCvoid *buffer, ALCsizei samples);
/* Pointer-to-function type, useful for dynamically getting ALC entry points. */
typedef ALCcontext* (ALC_APIENTRY *LPALCCREATECONTEXT)(ALCdevice *device, const ALCint *attrlist);
typedef ALCboolean (ALC_APIENTRY *LPALCMAKECONTEXTCURRENT)(ALCcontext *context);
typedef void (ALC_APIENTRY *LPALCPROCESSCONTEXT)(ALCcontext *context);
typedef void (ALC_APIENTRY *LPALCSUSPENDCONTEXT)(ALCcontext *context);
typedef void (ALC_APIENTRY *LPALCDESTROYCONTEXT)(ALCcontext *context);
typedef ALCcontext* (ALC_APIENTRY *LPALCGETCURRENTCONTEXT)(void);
typedef ALCdevice* (ALC_APIENTRY *LPALCGETCONTEXTSDEVICE)(ALCcontext *context);
typedef ALCdevice* (ALC_APIENTRY *LPALCOPENDEVICE)(const ALCchar *devicename);
typedef ALCboolean (ALC_APIENTRY *LPALCCLOSEDEVICE)(ALCdevice *device);
typedef ALCenum (ALC_APIENTRY *LPALCGETERROR)(ALCdevice *device);
typedef ALCboolean (ALC_APIENTRY *LPALCISEXTENSIONPRESENT)(ALCdevice *device, const ALCchar *extname);
typedef ALCvoid* (ALC_APIENTRY *LPALCGETPROCADDRESS)(ALCdevice *device, const ALCchar *funcname);
typedef ALCenum (ALC_APIENTRY *LPALCGETENUMVALUE)(ALCdevice *device, const ALCchar *enumname);
typedef const ALCchar* (ALC_APIENTRY *LPALCGETSTRING)(ALCdevice *device, ALCenum param);
typedef void (ALC_APIENTRY *LPALCGETINTEGERV)(ALCdevice *device, ALCenum param, ALCsizei size, ALCint *values);
typedef ALCdevice* (ALC_APIENTRY *LPALCCAPTUREOPENDEVICE)(const ALCchar *devicename, ALCuint frequency, ALCenum format, ALCsizei buffersize);
typedef ALCboolean (ALC_APIENTRY *LPALCCAPTURECLOSEDEVICE)(ALCdevice *device);
typedef void (ALC_APIENTRY *LPALCCAPTURESTART)(ALCdevice *device);
typedef void (ALC_APIENTRY *LPALCCAPTURESTOP)(ALCdevice *device);
typedef void (ALC_APIENTRY *LPALCCAPTURESAMPLES)(ALCdevice *device, ALCvoid *buffer, ALCsizei samples);
#if defined(__cplusplus)
}
#endif
#endif /* AL_ALC_H */

View File

@ -1,585 +0,0 @@
/**
* OpenAL cross platform audio library
* Copyright (C) 2008 by authors.
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Library General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Library General Public License for more details.
*
* You should have received a copy of the GNU Library General Public
* License along with this library; if not, write to the
* Free Software Foundation, Inc.,
* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
* Or go to http://www.gnu.org/copyleft/lgpl.html
*/
#ifndef AL_ALEXT_H
#define AL_ALEXT_H
#include <stddef.h>
/* Define int64_t and uint64_t types */
#if defined(__STDC_VERSION__) && __STDC_VERSION__ >= 199901L
#include <inttypes.h>
#elif defined(__cplusplus) && __cplusplus >= 201103L
#include <cinttypes>
#elif defined(_WIN32) && defined(__GNUC__)
#include <stdint.h>
#elif defined(_WIN32)
typedef __int64 int64_t;
typedef unsigned __int64 uint64_t;
#else
/* Fallback if nothing above works */
#include <inttypes.h>
#endif
#include "alc.h"
#include "al.h"
#ifdef __cplusplus
extern "C" {
#endif
#ifndef AL_LOKI_IMA_ADPCM_format
#define AL_LOKI_IMA_ADPCM_format 1
#define AL_FORMAT_IMA_ADPCM_MONO16_EXT 0x10000
#define AL_FORMAT_IMA_ADPCM_STEREO16_EXT 0x10001
#endif
#ifndef AL_LOKI_WAVE_format
#define AL_LOKI_WAVE_format 1
#define AL_FORMAT_WAVE_EXT 0x10002
#endif
#ifndef AL_EXT_vorbis
#define AL_EXT_vorbis 1
#define AL_FORMAT_VORBIS_EXT 0x10003
#endif
#ifndef AL_LOKI_quadriphonic
#define AL_LOKI_quadriphonic 1
#define AL_FORMAT_QUAD8_LOKI 0x10004
#define AL_FORMAT_QUAD16_LOKI 0x10005
#endif
#ifndef AL_EXT_float32
#define AL_EXT_float32 1
#define AL_FORMAT_MONO_FLOAT32 0x10010
#define AL_FORMAT_STEREO_FLOAT32 0x10011
#endif
#ifndef AL_EXT_double
#define AL_EXT_double 1
#define AL_FORMAT_MONO_DOUBLE_EXT 0x10012
#define AL_FORMAT_STEREO_DOUBLE_EXT 0x10013
#endif
#ifndef AL_EXT_MULAW
#define AL_EXT_MULAW 1
#define AL_FORMAT_MONO_MULAW_EXT 0x10014
#define AL_FORMAT_STEREO_MULAW_EXT 0x10015
#endif
#ifndef AL_EXT_ALAW
#define AL_EXT_ALAW 1
#define AL_FORMAT_MONO_ALAW_EXT 0x10016
#define AL_FORMAT_STEREO_ALAW_EXT 0x10017
#endif
#ifndef ALC_LOKI_audio_channel
#define ALC_LOKI_audio_channel 1
#define ALC_CHAN_MAIN_LOKI 0x500001
#define ALC_CHAN_PCM_LOKI 0x500002
#define ALC_CHAN_CD_LOKI 0x500003
#endif
#ifndef AL_EXT_MCFORMATS
#define AL_EXT_MCFORMATS 1
/* Provides support for surround sound buffer formats with 8, 16, and 32-bit
* samples.
*
* QUAD8: Unsigned 8-bit, Quadraphonic (Front Left, Front Right, Rear Left,
* Rear Right).
* QUAD16: Signed 16-bit, Quadraphonic.
* QUAD32: 32-bit float, Quadraphonic.
* REAR8: Unsigned 8-bit, Rear Stereo (Rear Left, Rear Right).
* REAR16: Signed 16-bit, Rear Stereo.
* REAR32: 32-bit float, Rear Stereo.
* 51CHN8: Unsigned 8-bit, 5.1 Surround (Front Left, Front Right, Front Center,
* LFE, Side Left, Side Right). Note that some audio systems may label
* 5.1's Side channels as Rear or Surround; they are equivalent for the
* purposes of this extension.
* 51CHN16: Signed 16-bit, 5.1 Surround.
* 51CHN32: 32-bit float, 5.1 Surround.
* 61CHN8: Unsigned 8-bit, 6.1 Surround (Front Left, Front Right, Front Center,
* LFE, Rear Center, Side Left, Side Right).
* 61CHN16: Signed 16-bit, 6.1 Surround.
* 61CHN32: 32-bit float, 6.1 Surround.
* 71CHN8: Unsigned 8-bit, 7.1 Surround (Front Left, Front Right, Front Center,
* LFE, Rear Left, Rear Right, Side Left, Side Right).
* 71CHN16: Signed 16-bit, 7.1 Surround.
* 71CHN32: 32-bit float, 7.1 Surround.
*/
#define AL_FORMAT_QUAD8 0x1204
#define AL_FORMAT_QUAD16 0x1205
#define AL_FORMAT_QUAD32 0x1206
#define AL_FORMAT_REAR8 0x1207
#define AL_FORMAT_REAR16 0x1208
#define AL_FORMAT_REAR32 0x1209
#define AL_FORMAT_51CHN8 0x120A
#define AL_FORMAT_51CHN16 0x120B
#define AL_FORMAT_51CHN32 0x120C
#define AL_FORMAT_61CHN8 0x120D
#define AL_FORMAT_61CHN16 0x120E
#define AL_FORMAT_61CHN32 0x120F
#define AL_FORMAT_71CHN8 0x1210
#define AL_FORMAT_71CHN16 0x1211
#define AL_FORMAT_71CHN32 0x1212
#endif
#ifndef AL_EXT_MULAW_MCFORMATS
#define AL_EXT_MULAW_MCFORMATS 1
#define AL_FORMAT_MONO_MULAW 0x10014
#define AL_FORMAT_STEREO_MULAW 0x10015
#define AL_FORMAT_QUAD_MULAW 0x10021
#define AL_FORMAT_REAR_MULAW 0x10022
#define AL_FORMAT_51CHN_MULAW 0x10023
#define AL_FORMAT_61CHN_MULAW 0x10024
#define AL_FORMAT_71CHN_MULAW 0x10025
#endif
#ifndef AL_EXT_IMA4
#define AL_EXT_IMA4 1
#define AL_FORMAT_MONO_IMA4 0x1300
#define AL_FORMAT_STEREO_IMA4 0x1301
#endif
#ifndef AL_EXT_STATIC_BUFFER
#define AL_EXT_STATIC_BUFFER 1
typedef void (AL_APIENTRY*PFNALBUFFERDATASTATICPROC)(const ALint,ALenum,ALvoid*,ALsizei,ALsizei);
#ifdef AL_ALEXT_PROTOTYPES
AL_API void AL_APIENTRY alBufferDataStatic(const ALint buffer, ALenum format, ALvoid *data, ALsizei len, ALsizei freq);
#endif
#endif
#ifndef ALC_EXT_EFX
#define ALC_EXT_EFX 1
#include "efx.h"
#endif
#ifndef ALC_EXT_disconnect
#define ALC_EXT_disconnect 1
#define ALC_CONNECTED 0x313
#endif
#ifndef ALC_EXT_thread_local_context
#define ALC_EXT_thread_local_context 1
typedef ALCboolean (ALC_APIENTRY*PFNALCSETTHREADCONTEXTPROC)(ALCcontext *context);
typedef ALCcontext* (ALC_APIENTRY*PFNALCGETTHREADCONTEXTPROC)(void);
#ifdef AL_ALEXT_PROTOTYPES
ALC_API ALCboolean ALC_APIENTRY alcSetThreadContext(ALCcontext *context);
ALC_API ALCcontext* ALC_APIENTRY alcGetThreadContext(void);
#endif
#endif
#ifndef AL_EXT_source_distance_model
#define AL_EXT_source_distance_model 1
#define AL_SOURCE_DISTANCE_MODEL 0x200
#endif
#ifndef AL_SOFT_buffer_sub_data
#define AL_SOFT_buffer_sub_data 1
#define AL_BYTE_RW_OFFSETS_SOFT 0x1031
#define AL_SAMPLE_RW_OFFSETS_SOFT 0x1032
typedef void (AL_APIENTRY*PFNALBUFFERSUBDATASOFTPROC)(ALuint,ALenum,const ALvoid*,ALsizei,ALsizei);
#ifdef AL_ALEXT_PROTOTYPES
AL_API void AL_APIENTRY alBufferSubDataSOFT(ALuint buffer,ALenum format,const ALvoid *data,ALsizei offset,ALsizei length);
#endif
#endif
#ifndef AL_SOFT_loop_points
#define AL_SOFT_loop_points 1
#define AL_LOOP_POINTS_SOFT 0x2015
#endif
#ifndef AL_EXT_FOLDBACK
#define AL_EXT_FOLDBACK 1
#define AL_EXT_FOLDBACK_NAME "AL_EXT_FOLDBACK"
#define AL_FOLDBACK_EVENT_BLOCK 0x4112
#define AL_FOLDBACK_EVENT_START 0x4111
#define AL_FOLDBACK_EVENT_STOP 0x4113
#define AL_FOLDBACK_MODE_MONO 0x4101
#define AL_FOLDBACK_MODE_STEREO 0x4102
typedef void (AL_APIENTRY*LPALFOLDBACKCALLBACK)(ALenum,ALsizei);
typedef void (AL_APIENTRY*LPALREQUESTFOLDBACKSTART)(ALenum,ALsizei,ALsizei,ALfloat*,LPALFOLDBACKCALLBACK);
typedef void (AL_APIENTRY*LPALREQUESTFOLDBACKSTOP)(void);
#ifdef AL_ALEXT_PROTOTYPES
AL_API void AL_APIENTRY alRequestFoldbackStart(ALenum mode,ALsizei count,ALsizei length,ALfloat *mem,LPALFOLDBACKCALLBACK callback);
AL_API void AL_APIENTRY alRequestFoldbackStop(void);
#endif
#endif
#ifndef ALC_EXT_DEDICATED
#define ALC_EXT_DEDICATED 1
#define AL_DEDICATED_GAIN 0x0001
#define AL_EFFECT_DEDICATED_DIALOGUE 0x9001
#define AL_EFFECT_DEDICATED_LOW_FREQUENCY_EFFECT 0x9000
#endif
#ifndef AL_SOFT_buffer_samples
#define AL_SOFT_buffer_samples 1
/* Channel configurations */
#define AL_MONO_SOFT 0x1500
#define AL_STEREO_SOFT 0x1501
#define AL_REAR_SOFT 0x1502
#define AL_QUAD_SOFT 0x1503
#define AL_5POINT1_SOFT 0x1504
#define AL_6POINT1_SOFT 0x1505
#define AL_7POINT1_SOFT 0x1506
/* Sample types */
#define AL_BYTE_SOFT 0x1400
#define AL_UNSIGNED_BYTE_SOFT 0x1401
#define AL_SHORT_SOFT 0x1402
#define AL_UNSIGNED_SHORT_SOFT 0x1403
#define AL_INT_SOFT 0x1404
#define AL_UNSIGNED_INT_SOFT 0x1405
#define AL_FLOAT_SOFT 0x1406
#define AL_DOUBLE_SOFT 0x1407
#define AL_BYTE3_SOFT 0x1408
#define AL_UNSIGNED_BYTE3_SOFT 0x1409
/* Storage formats */
#define AL_MONO8_SOFT 0x1100
#define AL_MONO16_SOFT 0x1101
#define AL_MONO32F_SOFT 0x10010
#define AL_STEREO8_SOFT 0x1102
#define AL_STEREO16_SOFT 0x1103
#define AL_STEREO32F_SOFT 0x10011
#define AL_QUAD8_SOFT 0x1204
#define AL_QUAD16_SOFT 0x1205
#define AL_QUAD32F_SOFT 0x1206
#define AL_REAR8_SOFT 0x1207
#define AL_REAR16_SOFT 0x1208
#define AL_REAR32F_SOFT 0x1209
#define AL_5POINT1_8_SOFT 0x120A
#define AL_5POINT1_16_SOFT 0x120B
#define AL_5POINT1_32F_SOFT 0x120C
#define AL_6POINT1_8_SOFT 0x120D
#define AL_6POINT1_16_SOFT 0x120E
#define AL_6POINT1_32F_SOFT 0x120F
#define AL_7POINT1_8_SOFT 0x1210
#define AL_7POINT1_16_SOFT 0x1211
#define AL_7POINT1_32F_SOFT 0x1212
/* Buffer attributes */
#define AL_INTERNAL_FORMAT_SOFT 0x2008
#define AL_BYTE_LENGTH_SOFT 0x2009
#define AL_SAMPLE_LENGTH_SOFT 0x200A
#define AL_SEC_LENGTH_SOFT 0x200B
typedef void (AL_APIENTRY*LPALBUFFERSAMPLESSOFT)(ALuint,ALuint,ALenum,ALsizei,ALenum,ALenum,const ALvoid*);
typedef void (AL_APIENTRY*LPALBUFFERSUBSAMPLESSOFT)(ALuint,ALsizei,ALsizei,ALenum,ALenum,const ALvoid*);
typedef void (AL_APIENTRY*LPALGETBUFFERSAMPLESSOFT)(ALuint,ALsizei,ALsizei,ALenum,ALenum,ALvoid*);
typedef ALboolean (AL_APIENTRY*LPALISBUFFERFORMATSUPPORTEDSOFT)(ALenum);
#ifdef AL_ALEXT_PROTOTYPES
AL_API void AL_APIENTRY alBufferSamplesSOFT(ALuint buffer, ALuint samplerate, ALenum internalformat, ALsizei samples, ALenum channels, ALenum type, const ALvoid *data);
AL_API void AL_APIENTRY alBufferSubSamplesSOFT(ALuint buffer, ALsizei offset, ALsizei samples, ALenum channels, ALenum type, const ALvoid *data);
AL_API void AL_APIENTRY alGetBufferSamplesSOFT(ALuint buffer, ALsizei offset, ALsizei samples, ALenum channels, ALenum type, ALvoid *data);
AL_API ALboolean AL_APIENTRY alIsBufferFormatSupportedSOFT(ALenum format);
#endif
#endif
#ifndef AL_SOFT_direct_channels
#define AL_SOFT_direct_channels 1
#define AL_DIRECT_CHANNELS_SOFT 0x1033
#endif
#ifndef ALC_SOFT_loopback
#define ALC_SOFT_loopback 1
#define ALC_FORMAT_CHANNELS_SOFT 0x1990
#define ALC_FORMAT_TYPE_SOFT 0x1991
/* Sample types */
#define ALC_BYTE_SOFT 0x1400
#define ALC_UNSIGNED_BYTE_SOFT 0x1401
#define ALC_SHORT_SOFT 0x1402
#define ALC_UNSIGNED_SHORT_SOFT 0x1403
#define ALC_INT_SOFT 0x1404
#define ALC_UNSIGNED_INT_SOFT 0x1405
#define ALC_FLOAT_SOFT 0x1406
/* Channel configurations */
#define ALC_MONO_SOFT 0x1500
#define ALC_STEREO_SOFT 0x1501
#define ALC_QUAD_SOFT 0x1503
#define ALC_5POINT1_SOFT 0x1504
#define ALC_6POINT1_SOFT 0x1505
#define ALC_7POINT1_SOFT 0x1506
typedef ALCdevice* (ALC_APIENTRY*LPALCLOOPBACKOPENDEVICESOFT)(const ALCchar*);
typedef ALCboolean (ALC_APIENTRY*LPALCISRENDERFORMATSUPPORTEDSOFT)(ALCdevice*,ALCsizei,ALCenum,ALCenum);
typedef void (ALC_APIENTRY*LPALCRENDERSAMPLESSOFT)(ALCdevice*,ALCvoid*,ALCsizei);
#ifdef AL_ALEXT_PROTOTYPES
ALC_API ALCdevice* ALC_APIENTRY alcLoopbackOpenDeviceSOFT(const ALCchar *deviceName);
ALC_API ALCboolean ALC_APIENTRY alcIsRenderFormatSupportedSOFT(ALCdevice *device, ALCsizei freq, ALCenum channels, ALCenum type);
ALC_API void ALC_APIENTRY alcRenderSamplesSOFT(ALCdevice *device, ALCvoid *buffer, ALCsizei samples);
#endif
#endif
#ifndef AL_EXT_STEREO_ANGLES
#define AL_EXT_STEREO_ANGLES 1
#define AL_STEREO_ANGLES 0x1030
#endif
#ifndef AL_EXT_SOURCE_RADIUS
#define AL_EXT_SOURCE_RADIUS 1
#define AL_SOURCE_RADIUS 0x1031
#endif
#ifndef AL_SOFT_source_latency
#define AL_SOFT_source_latency 1
#define AL_SAMPLE_OFFSET_LATENCY_SOFT 0x1200
#define AL_SEC_OFFSET_LATENCY_SOFT 0x1201
typedef int64_t ALint64SOFT;
typedef uint64_t ALuint64SOFT;
typedef void (AL_APIENTRY*LPALSOURCEDSOFT)(ALuint,ALenum,ALdouble);
typedef void (AL_APIENTRY*LPALSOURCE3DSOFT)(ALuint,ALenum,ALdouble,ALdouble,ALdouble);
typedef void (AL_APIENTRY*LPALSOURCEDVSOFT)(ALuint,ALenum,const ALdouble*);
typedef void (AL_APIENTRY*LPALGETSOURCEDSOFT)(ALuint,ALenum,ALdouble*);
typedef void (AL_APIENTRY*LPALGETSOURCE3DSOFT)(ALuint,ALenum,ALdouble*,ALdouble*,ALdouble*);
typedef void (AL_APIENTRY*LPALGETSOURCEDVSOFT)(ALuint,ALenum,ALdouble*);
typedef void (AL_APIENTRY*LPALSOURCEI64SOFT)(ALuint,ALenum,ALint64SOFT);
typedef void (AL_APIENTRY*LPALSOURCE3I64SOFT)(ALuint,ALenum,ALint64SOFT,ALint64SOFT,ALint64SOFT);
typedef void (AL_APIENTRY*LPALSOURCEI64VSOFT)(ALuint,ALenum,const ALint64SOFT*);
typedef void (AL_APIENTRY*LPALGETSOURCEI64SOFT)(ALuint,ALenum,ALint64SOFT*);
typedef void (AL_APIENTRY*LPALGETSOURCE3I64SOFT)(ALuint,ALenum,ALint64SOFT*,ALint64SOFT*,ALint64SOFT*);
typedef void (AL_APIENTRY*LPALGETSOURCEI64VSOFT)(ALuint,ALenum,ALint64SOFT*);
#ifdef AL_ALEXT_PROTOTYPES
AL_API void AL_APIENTRY alSourcedSOFT(ALuint source, ALenum param, ALdouble value);
AL_API void AL_APIENTRY alSource3dSOFT(ALuint source, ALenum param, ALdouble value1, ALdouble value2, ALdouble value3);
AL_API void AL_APIENTRY alSourcedvSOFT(ALuint source, ALenum param, const ALdouble *values);
AL_API void AL_APIENTRY alGetSourcedSOFT(ALuint source, ALenum param, ALdouble *value);
AL_API void AL_APIENTRY alGetSource3dSOFT(ALuint source, ALenum param, ALdouble *value1, ALdouble *value2, ALdouble *value3);
AL_API void AL_APIENTRY alGetSourcedvSOFT(ALuint source, ALenum param, ALdouble *values);
AL_API void AL_APIENTRY alSourcei64SOFT(ALuint source, ALenum param, ALint64SOFT value);
AL_API void AL_APIENTRY alSource3i64SOFT(ALuint source, ALenum param, ALint64SOFT value1, ALint64SOFT value2, ALint64SOFT value3);
AL_API void AL_APIENTRY alSourcei64vSOFT(ALuint source, ALenum param, const ALint64SOFT *values);
AL_API void AL_APIENTRY alGetSourcei64SOFT(ALuint source, ALenum param, ALint64SOFT *value);
AL_API void AL_APIENTRY alGetSource3i64SOFT(ALuint source, ALenum param, ALint64SOFT *value1, ALint64SOFT *value2, ALint64SOFT *value3);
AL_API void AL_APIENTRY alGetSourcei64vSOFT(ALuint source, ALenum param, ALint64SOFT *values);
#endif
#endif
#ifndef ALC_EXT_DEFAULT_FILTER_ORDER
#define ALC_EXT_DEFAULT_FILTER_ORDER 1
#define ALC_DEFAULT_FILTER_ORDER 0x1100
#endif
#ifndef AL_SOFT_deferred_updates
#define AL_SOFT_deferred_updates 1
#define AL_DEFERRED_UPDATES_SOFT 0xC002
typedef void (AL_APIENTRY*LPALDEFERUPDATESSOFT)(void);
typedef void (AL_APIENTRY*LPALPROCESSUPDATESSOFT)(void);
#ifdef AL_ALEXT_PROTOTYPES
AL_API void AL_APIENTRY alDeferUpdatesSOFT(void);
AL_API void AL_APIENTRY alProcessUpdatesSOFT(void);
#endif
#endif
#ifndef AL_SOFT_block_alignment
#define AL_SOFT_block_alignment 1
#define AL_UNPACK_BLOCK_ALIGNMENT_SOFT 0x200C
#define AL_PACK_BLOCK_ALIGNMENT_SOFT 0x200D
#endif
#ifndef AL_SOFT_MSADPCM
#define AL_SOFT_MSADPCM 1
#define AL_FORMAT_MONO_MSADPCM_SOFT 0x1302
#define AL_FORMAT_STEREO_MSADPCM_SOFT 0x1303
#endif
#ifndef AL_SOFT_source_length
#define AL_SOFT_source_length 1
/*#define AL_BYTE_LENGTH_SOFT 0x2009*/
/*#define AL_SAMPLE_LENGTH_SOFT 0x200A*/
/*#define AL_SEC_LENGTH_SOFT 0x200B*/
#endif
#ifndef ALC_SOFT_pause_device
#define ALC_SOFT_pause_device 1
typedef void (ALC_APIENTRY*LPALCDEVICEPAUSESOFT)(ALCdevice *device);
typedef void (ALC_APIENTRY*LPALCDEVICERESUMESOFT)(ALCdevice *device);
#ifdef AL_ALEXT_PROTOTYPES
ALC_API void ALC_APIENTRY alcDevicePauseSOFT(ALCdevice *device);
ALC_API void ALC_APIENTRY alcDeviceResumeSOFT(ALCdevice *device);
#endif
#endif
#ifndef AL_EXT_BFORMAT
#define AL_EXT_BFORMAT 1
/* Provides support for B-Format ambisonic buffers (first-order, FuMa scaling
* and layout).
*
* BFORMAT2D_8: Unsigned 8-bit, 3-channel non-periphonic (WXY).
* BFORMAT2D_16: Signed 16-bit, 3-channel non-periphonic (WXY).
* BFORMAT2D_FLOAT32: 32-bit float, 3-channel non-periphonic (WXY).
* BFORMAT3D_8: Unsigned 8-bit, 4-channel periphonic (WXYZ).
* BFORMAT3D_16: Signed 16-bit, 4-channel periphonic (WXYZ).
* BFORMAT3D_FLOAT32: 32-bit float, 4-channel periphonic (WXYZ).
*/
#define AL_FORMAT_BFORMAT2D_8 0x20021
#define AL_FORMAT_BFORMAT2D_16 0x20022
#define AL_FORMAT_BFORMAT2D_FLOAT32 0x20023
#define AL_FORMAT_BFORMAT3D_8 0x20031
#define AL_FORMAT_BFORMAT3D_16 0x20032
#define AL_FORMAT_BFORMAT3D_FLOAT32 0x20033
#endif
#ifndef AL_EXT_MULAW_BFORMAT
#define AL_EXT_MULAW_BFORMAT 1
#define AL_FORMAT_BFORMAT2D_MULAW 0x10031
#define AL_FORMAT_BFORMAT3D_MULAW 0x10032
#endif
#ifndef ALC_SOFT_HRTF
#define ALC_SOFT_HRTF 1
#define ALC_HRTF_SOFT 0x1992
#define ALC_DONT_CARE_SOFT 0x0002
#define ALC_HRTF_STATUS_SOFT 0x1993
#define ALC_HRTF_DISABLED_SOFT 0x0000
#define ALC_HRTF_ENABLED_SOFT 0x0001
#define ALC_HRTF_DENIED_SOFT 0x0002
#define ALC_HRTF_REQUIRED_SOFT 0x0003
#define ALC_HRTF_HEADPHONES_DETECTED_SOFT 0x0004
#define ALC_HRTF_UNSUPPORTED_FORMAT_SOFT 0x0005
#define ALC_NUM_HRTF_SPECIFIERS_SOFT 0x1994
#define ALC_HRTF_SPECIFIER_SOFT 0x1995
#define ALC_HRTF_ID_SOFT 0x1996
typedef const ALCchar* (ALC_APIENTRY*LPALCGETSTRINGISOFT)(ALCdevice *device, ALCenum paramName, ALCsizei index);
typedef ALCboolean (ALC_APIENTRY*LPALCRESETDEVICESOFT)(ALCdevice *device, const ALCint *attribs);
#ifdef AL_ALEXT_PROTOTYPES
ALC_API const ALCchar* ALC_APIENTRY alcGetStringiSOFT(ALCdevice *device, ALCenum paramName, ALCsizei index);
ALC_API ALCboolean ALC_APIENTRY alcResetDeviceSOFT(ALCdevice *device, const ALCint *attribs);
#endif
#endif
#ifndef AL_SOFT_gain_clamp_ex
#define AL_SOFT_gain_clamp_ex 1
#define AL_GAIN_LIMIT_SOFT 0x200E
#endif
#ifndef AL_SOFT_source_resampler
#define AL_SOFT_source_resampler
#define AL_NUM_RESAMPLERS_SOFT 0x1210
#define AL_DEFAULT_RESAMPLER_SOFT 0x1211
#define AL_SOURCE_RESAMPLER_SOFT 0x1212
#define AL_RESAMPLER_NAME_SOFT 0x1213
typedef const ALchar* (AL_APIENTRY*LPALGETSTRINGISOFT)(ALenum pname, ALsizei index);
#ifdef AL_ALEXT_PROTOTYPES
AL_API const ALchar* AL_APIENTRY alGetStringiSOFT(ALenum pname, ALsizei index);
#endif
#endif
#ifndef AL_SOFT_source_spatialize
#define AL_SOFT_source_spatialize
#define AL_SOURCE_SPATIALIZE_SOFT 0x1214
#define AL_AUTO_SOFT 0x0002
#endif
#ifndef ALC_SOFT_output_limiter
#define ALC_SOFT_output_limiter
#define ALC_OUTPUT_LIMITER_SOFT 0x199A
#endif
#ifndef ALC_SOFT_device_clock
#define ALC_SOFT_device_clock 1
typedef int64_t ALCint64SOFT;
typedef uint64_t ALCuint64SOFT;
#define ALC_DEVICE_CLOCK_SOFT 0x1600
#define ALC_DEVICE_LATENCY_SOFT 0x1601
#define ALC_DEVICE_CLOCK_LATENCY_SOFT 0x1602
#define AL_SAMPLE_OFFSET_CLOCK_SOFT 0x1202
#define AL_SEC_OFFSET_CLOCK_SOFT 0x1203
typedef void (ALC_APIENTRY*LPALCGETINTEGER64VSOFT)(ALCdevice *device, ALCenum pname, ALsizei size, ALCint64SOFT *values);
#ifdef AL_ALEXT_PROTOTYPES
ALC_API void ALC_APIENTRY alcGetInteger64vSOFT(ALCdevice *device, ALCenum pname, ALsizei size, ALCint64SOFT *values);
#endif
#endif
#ifndef AL_SOFT_direct_channels_remix
#define AL_SOFT_direct_channels_remix 1
#define AL_DROP_UNMATCHED_SOFT 0x0001
#define AL_REMIX_UNMATCHED_SOFT 0x0002
#endif
#ifndef AL_SOFT_bformat_ex
#define AL_SOFT_bformat_ex 1
#define AL_AMBISONIC_LAYOUT_SOFT 0x1997
#define AL_AMBISONIC_SCALING_SOFT 0x1998
/* Ambisonic layouts */
#define AL_FUMA_SOFT 0x0000
#define AL_ACN_SOFT 0x0001
/* Ambisonic scalings (normalization) */
/*#define AL_FUMA_SOFT*/
#define AL_SN3D_SOFT 0x0001
#define AL_N3D_SOFT 0x0002
#endif
#ifndef ALC_SOFT_loopback_bformat
#define ALC_SOFT_loopback_bformat 1
#define ALC_AMBISONIC_LAYOUT_SOFT 0x1997
#define ALC_AMBISONIC_SCALING_SOFT 0x1998
#define ALC_AMBISONIC_ORDER_SOFT 0x1999
#define ALC_MAX_AMBISONIC_ORDER_SOFT 0x199B
#define ALC_BFORMAT3D_SOFT 0x1507
/* Ambisonic layouts */
#define ALC_FUMA_SOFT 0x0000
#define ALC_ACN_SOFT 0x0001
/* Ambisonic scalings (normalization) */
/*#define ALC_FUMA_SOFT*/
#define ALC_SN3D_SOFT 0x0001
#define ALC_N3D_SOFT 0x0002
#endif
#ifndef AL_SOFT_effect_target
#define AL_SOFT_effect_target
#define AL_EFFECTSLOT_TARGET_SOFT 0x199C
#endif
#ifndef AL_SOFT_events
#define AL_SOFT_events 1
#define AL_EVENT_CALLBACK_FUNCTION_SOFT 0x19A2
#define AL_EVENT_CALLBACK_USER_PARAM_SOFT 0x19A3
#define AL_EVENT_TYPE_BUFFER_COMPLETED_SOFT 0x19A4
#define AL_EVENT_TYPE_SOURCE_STATE_CHANGED_SOFT 0x19A5
#define AL_EVENT_TYPE_DISCONNECTED_SOFT 0x19A6
typedef void (AL_APIENTRY*ALEVENTPROCSOFT)(ALenum eventType, ALuint object, ALuint param,
ALsizei length, const ALchar *message,
void *userParam);
typedef void (AL_APIENTRY*LPALEVENTCONTROLSOFT)(ALsizei count, const ALenum *types, ALboolean enable);
typedef void (AL_APIENTRY*LPALEVENTCALLBACKSOFT)(ALEVENTPROCSOFT callback, void *userParam);
typedef void* (AL_APIENTRY*LPALGETPOINTERSOFT)(ALenum pname);
typedef void (AL_APIENTRY*LPALGETPOINTERVSOFT)(ALenum pname, void **values);
#ifdef AL_ALEXT_PROTOTYPES
AL_API void AL_APIENTRY alEventControlSOFT(ALsizei count, const ALenum *types, ALboolean enable);
AL_API void AL_APIENTRY alEventCallbackSOFT(ALEVENTPROCSOFT callback, void *userParam);
AL_API void* AL_APIENTRY alGetPointerSOFT(ALenum pname);
AL_API void AL_APIENTRY alGetPointervSOFT(ALenum pname, void **values);
#endif
#endif
#ifdef __cplusplus
}
#endif
#endif

View File

@ -1,3 +0,0 @@
/* The tokens that would be defined here are already defined in efx.h. This
* empty file is here to provide compatibility with Windows-based projects
* that would include it. */

View File

@ -1,402 +0,0 @@
/* Reverb presets for EFX */
#ifndef EFX_PRESETS_H
#define EFX_PRESETS_H
#ifndef EFXEAXREVERBPROPERTIES_DEFINED
#define EFXEAXREVERBPROPERTIES_DEFINED
typedef struct {
float flDensity;
float flDiffusion;
float flGain;
float flGainHF;
float flGainLF;
float flDecayTime;
float flDecayHFRatio;
float flDecayLFRatio;
float flReflectionsGain;
float flReflectionsDelay;
float flReflectionsPan[3];
float flLateReverbGain;
float flLateReverbDelay;
float flLateReverbPan[3];
float flEchoTime;
float flEchoDepth;
float flModulationTime;
float flModulationDepth;
float flAirAbsorptionGainHF;
float flHFReference;
float flLFReference;
float flRoomRolloffFactor;
int iDecayHFLimit;
} EFXEAXREVERBPROPERTIES, *LPEFXEAXREVERBPROPERTIES;
#endif
/* Default Presets */
#define EFX_REVERB_PRESET_GENERIC \
{ 1.0000f, 1.0000f, 0.3162f, 0.8913f, 1.0000f, 1.4900f, 0.8300f, 1.0000f, 0.0500f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_PADDEDCELL \
{ 0.1715f, 1.0000f, 0.3162f, 0.0010f, 1.0000f, 0.1700f, 0.1000f, 1.0000f, 0.2500f, 0.0010f, { 0.0000f, 0.0000f, 0.0000f }, 1.2691f, 0.0020f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_ROOM \
{ 0.4287f, 1.0000f, 0.3162f, 0.5929f, 1.0000f, 0.4000f, 0.8300f, 1.0000f, 0.1503f, 0.0020f, { 0.0000f, 0.0000f, 0.0000f }, 1.0629f, 0.0030f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_BATHROOM \
{ 0.1715f, 1.0000f, 0.3162f, 0.2512f, 1.0000f, 1.4900f, 0.5400f, 1.0000f, 0.6531f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 3.2734f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_LIVINGROOM \
{ 0.9766f, 1.0000f, 0.3162f, 0.0010f, 1.0000f, 0.5000f, 0.1000f, 1.0000f, 0.2051f, 0.0030f, { 0.0000f, 0.0000f, 0.0000f }, 0.2805f, 0.0040f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_STONEROOM \
{ 1.0000f, 1.0000f, 0.3162f, 0.7079f, 1.0000f, 2.3100f, 0.6400f, 1.0000f, 0.4411f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 1.1003f, 0.0170f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_AUDITORIUM \
{ 1.0000f, 1.0000f, 0.3162f, 0.5781f, 1.0000f, 4.3200f, 0.5900f, 1.0000f, 0.4032f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 0.7170f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CONCERTHALL \
{ 1.0000f, 1.0000f, 0.3162f, 0.5623f, 1.0000f, 3.9200f, 0.7000f, 1.0000f, 0.2427f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 0.9977f, 0.0290f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CAVE \
{ 1.0000f, 1.0000f, 0.3162f, 1.0000f, 1.0000f, 2.9100f, 1.3000f, 1.0000f, 0.5000f, 0.0150f, { 0.0000f, 0.0000f, 0.0000f }, 0.7063f, 0.0220f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_ARENA \
{ 1.0000f, 1.0000f, 0.3162f, 0.4477f, 1.0000f, 7.2400f, 0.3300f, 1.0000f, 0.2612f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 1.0186f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_HANGAR \
{ 1.0000f, 1.0000f, 0.3162f, 0.3162f, 1.0000f, 10.0500f, 0.2300f, 1.0000f, 0.5000f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 1.2560f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CARPETEDHALLWAY \
{ 0.4287f, 1.0000f, 0.3162f, 0.0100f, 1.0000f, 0.3000f, 0.1000f, 1.0000f, 0.1215f, 0.0020f, { 0.0000f, 0.0000f, 0.0000f }, 0.1531f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_HALLWAY \
{ 0.3645f, 1.0000f, 0.3162f, 0.7079f, 1.0000f, 1.4900f, 0.5900f, 1.0000f, 0.2458f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 1.6615f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_STONECORRIDOR \
{ 1.0000f, 1.0000f, 0.3162f, 0.7612f, 1.0000f, 2.7000f, 0.7900f, 1.0000f, 0.2472f, 0.0130f, { 0.0000f, 0.0000f, 0.0000f }, 1.5758f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_ALLEY \
{ 1.0000f, 0.3000f, 0.3162f, 0.7328f, 1.0000f, 1.4900f, 0.8600f, 1.0000f, 0.2500f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 0.9954f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.1250f, 0.9500f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_FOREST \
{ 1.0000f, 0.3000f, 0.3162f, 0.0224f, 1.0000f, 1.4900f, 0.5400f, 1.0000f, 0.0525f, 0.1620f, { 0.0000f, 0.0000f, 0.0000f }, 0.7682f, 0.0880f, { 0.0000f, 0.0000f, 0.0000f }, 0.1250f, 1.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CITY \
{ 1.0000f, 0.5000f, 0.3162f, 0.3981f, 1.0000f, 1.4900f, 0.6700f, 1.0000f, 0.0730f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 0.1427f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_MOUNTAINS \
{ 1.0000f, 0.2700f, 0.3162f, 0.0562f, 1.0000f, 1.4900f, 0.2100f, 1.0000f, 0.0407f, 0.3000f, { 0.0000f, 0.0000f, 0.0000f }, 0.1919f, 0.1000f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 1.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_QUARRY \
{ 1.0000f, 1.0000f, 0.3162f, 0.3162f, 1.0000f, 1.4900f, 0.8300f, 1.0000f, 0.0000f, 0.0610f, { 0.0000f, 0.0000f, 0.0000f }, 1.7783f, 0.0250f, { 0.0000f, 0.0000f, 0.0000f }, 0.1250f, 0.7000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_PLAIN \
{ 1.0000f, 0.2100f, 0.3162f, 0.1000f, 1.0000f, 1.4900f, 0.5000f, 1.0000f, 0.0585f, 0.1790f, { 0.0000f, 0.0000f, 0.0000f }, 0.1089f, 0.1000f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 1.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_PARKINGLOT \
{ 1.0000f, 1.0000f, 0.3162f, 1.0000f, 1.0000f, 1.6500f, 1.5000f, 1.0000f, 0.2082f, 0.0080f, { 0.0000f, 0.0000f, 0.0000f }, 0.2652f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_SEWERPIPE \
{ 0.3071f, 0.8000f, 0.3162f, 0.3162f, 1.0000f, 2.8100f, 0.1400f, 1.0000f, 1.6387f, 0.0140f, { 0.0000f, 0.0000f, 0.0000f }, 3.2471f, 0.0210f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_UNDERWATER \
{ 0.3645f, 1.0000f, 0.3162f, 0.0100f, 1.0000f, 1.4900f, 0.1000f, 1.0000f, 0.5963f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 7.0795f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 1.1800f, 0.3480f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_DRUGGED \
{ 0.4287f, 0.5000f, 0.3162f, 1.0000f, 1.0000f, 8.3900f, 1.3900f, 1.0000f, 0.8760f, 0.0020f, { 0.0000f, 0.0000f, 0.0000f }, 3.1081f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 1.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_DIZZY \
{ 0.3645f, 0.6000f, 0.3162f, 0.6310f, 1.0000f, 17.2300f, 0.5600f, 1.0000f, 0.1392f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 0.4937f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 1.0000f, 0.8100f, 0.3100f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_PSYCHOTIC \
{ 0.0625f, 0.5000f, 0.3162f, 0.8404f, 1.0000f, 7.5600f, 0.9100f, 1.0000f, 0.4864f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 2.4378f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 4.0000f, 1.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
/* Castle Presets */
#define EFX_REVERB_PRESET_CASTLE_SMALLROOM \
{ 1.0000f, 0.8900f, 0.3162f, 0.3981f, 0.1000f, 1.2200f, 0.8300f, 0.3100f, 0.8913f, 0.0220f, { 0.0000f, 0.0000f, 0.0000f }, 1.9953f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.1380f, 0.0800f, 0.2500f, 0.0000f, 0.9943f, 5168.6001f, 139.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CASTLE_SHORTPASSAGE \
{ 1.0000f, 0.8900f, 0.3162f, 0.3162f, 0.1000f, 2.3200f, 0.8300f, 0.3100f, 0.8913f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0230f, { 0.0000f, 0.0000f, 0.0000f }, 0.1380f, 0.0800f, 0.2500f, 0.0000f, 0.9943f, 5168.6001f, 139.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CASTLE_MEDIUMROOM \
{ 1.0000f, 0.9300f, 0.3162f, 0.2818f, 0.1000f, 2.0400f, 0.8300f, 0.4600f, 0.6310f, 0.0220f, { 0.0000f, 0.0000f, 0.0000f }, 1.5849f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.1550f, 0.0300f, 0.2500f, 0.0000f, 0.9943f, 5168.6001f, 139.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CASTLE_LARGEROOM \
{ 1.0000f, 0.8200f, 0.3162f, 0.2818f, 0.1259f, 2.5300f, 0.8300f, 0.5000f, 0.4467f, 0.0340f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0160f, { 0.0000f, 0.0000f, 0.0000f }, 0.1850f, 0.0700f, 0.2500f, 0.0000f, 0.9943f, 5168.6001f, 139.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CASTLE_LONGPASSAGE \
{ 1.0000f, 0.8900f, 0.3162f, 0.3981f, 0.1000f, 3.4200f, 0.8300f, 0.3100f, 0.8913f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 1.4125f, 0.0230f, { 0.0000f, 0.0000f, 0.0000f }, 0.1380f, 0.0800f, 0.2500f, 0.0000f, 0.9943f, 5168.6001f, 139.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CASTLE_HALL \
{ 1.0000f, 0.8100f, 0.3162f, 0.2818f, 0.1778f, 3.1400f, 0.7900f, 0.6200f, 0.1778f, 0.0560f, { 0.0000f, 0.0000f, 0.0000f }, 1.1220f, 0.0240f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5168.6001f, 139.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CASTLE_CUPBOARD \
{ 1.0000f, 0.8900f, 0.3162f, 0.2818f, 0.1000f, 0.6700f, 0.8700f, 0.3100f, 1.4125f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 3.5481f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 0.1380f, 0.0800f, 0.2500f, 0.0000f, 0.9943f, 5168.6001f, 139.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CASTLE_COURTYARD \
{ 1.0000f, 0.4200f, 0.3162f, 0.4467f, 0.1995f, 2.1300f, 0.6100f, 0.2300f, 0.2239f, 0.1600f, { 0.0000f, 0.0000f, 0.0000f }, 0.7079f, 0.0360f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.3700f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_CASTLE_ALCOVE \
{ 1.0000f, 0.8900f, 0.3162f, 0.5012f, 0.1000f, 1.6400f, 0.8700f, 0.3100f, 1.0000f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 1.4125f, 0.0340f, { 0.0000f, 0.0000f, 0.0000f }, 0.1380f, 0.0800f, 0.2500f, 0.0000f, 0.9943f, 5168.6001f, 139.5000f, 0.0000f, 0x1 }
/* Factory Presets */
#define EFX_REVERB_PRESET_FACTORY_SMALLROOM \
{ 0.3645f, 0.8200f, 0.3162f, 0.7943f, 0.5012f, 1.7200f, 0.6500f, 1.3100f, 0.7079f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 1.7783f, 0.0240f, { 0.0000f, 0.0000f, 0.0000f }, 0.1190f, 0.0700f, 0.2500f, 0.0000f, 0.9943f, 3762.6001f, 362.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_FACTORY_SHORTPASSAGE \
{ 0.3645f, 0.6400f, 0.2512f, 0.7943f, 0.5012f, 2.5300f, 0.6500f, 1.3100f, 1.0000f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0380f, { 0.0000f, 0.0000f, 0.0000f }, 0.1350f, 0.2300f, 0.2500f, 0.0000f, 0.9943f, 3762.6001f, 362.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_FACTORY_MEDIUMROOM \
{ 0.4287f, 0.8200f, 0.2512f, 0.7943f, 0.5012f, 2.7600f, 0.6500f, 1.3100f, 0.2818f, 0.0220f, { 0.0000f, 0.0000f, 0.0000f }, 1.4125f, 0.0230f, { 0.0000f, 0.0000f, 0.0000f }, 0.1740f, 0.0700f, 0.2500f, 0.0000f, 0.9943f, 3762.6001f, 362.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_FACTORY_LARGEROOM \
{ 0.4287f, 0.7500f, 0.2512f, 0.7079f, 0.6310f, 4.2400f, 0.5100f, 1.3100f, 0.1778f, 0.0390f, { 0.0000f, 0.0000f, 0.0000f }, 1.1220f, 0.0230f, { 0.0000f, 0.0000f, 0.0000f }, 0.2310f, 0.0700f, 0.2500f, 0.0000f, 0.9943f, 3762.6001f, 362.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_FACTORY_LONGPASSAGE \
{ 0.3645f, 0.6400f, 0.2512f, 0.7943f, 0.5012f, 4.0600f, 0.6500f, 1.3100f, 1.0000f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0370f, { 0.0000f, 0.0000f, 0.0000f }, 0.1350f, 0.2300f, 0.2500f, 0.0000f, 0.9943f, 3762.6001f, 362.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_FACTORY_HALL \
{ 0.4287f, 0.7500f, 0.3162f, 0.7079f, 0.6310f, 7.4300f, 0.5100f, 1.3100f, 0.0631f, 0.0730f, { 0.0000f, 0.0000f, 0.0000f }, 0.8913f, 0.0270f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0700f, 0.2500f, 0.0000f, 0.9943f, 3762.6001f, 362.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_FACTORY_CUPBOARD \
{ 0.3071f, 0.6300f, 0.2512f, 0.7943f, 0.5012f, 0.4900f, 0.6500f, 1.3100f, 1.2589f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 1.9953f, 0.0320f, { 0.0000f, 0.0000f, 0.0000f }, 0.1070f, 0.0700f, 0.2500f, 0.0000f, 0.9943f, 3762.6001f, 362.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_FACTORY_COURTYARD \
{ 0.3071f, 0.5700f, 0.3162f, 0.3162f, 0.6310f, 2.3200f, 0.2900f, 0.5600f, 0.2239f, 0.1400f, { 0.0000f, 0.0000f, 0.0000f }, 0.3981f, 0.0390f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.2900f, 0.2500f, 0.0000f, 0.9943f, 3762.6001f, 362.5000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_FACTORY_ALCOVE \
{ 0.3645f, 0.5900f, 0.2512f, 0.7943f, 0.5012f, 3.1400f, 0.6500f, 1.3100f, 1.4125f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 1.0000f, 0.0380f, { 0.0000f, 0.0000f, 0.0000f }, 0.1140f, 0.1000f, 0.2500f, 0.0000f, 0.9943f, 3762.6001f, 362.5000f, 0.0000f, 0x1 }
/* Ice Palace Presets */
#define EFX_REVERB_PRESET_ICEPALACE_SMALLROOM \
{ 1.0000f, 0.8400f, 0.3162f, 0.5623f, 0.2818f, 1.5100f, 1.5300f, 0.2700f, 0.8913f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 1.4125f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.1640f, 0.1400f, 0.2500f, 0.0000f, 0.9943f, 12428.5000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_ICEPALACE_SHORTPASSAGE \
{ 1.0000f, 0.7500f, 0.3162f, 0.5623f, 0.2818f, 1.7900f, 1.4600f, 0.2800f, 0.5012f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 1.1220f, 0.0190f, { 0.0000f, 0.0000f, 0.0000f }, 0.1770f, 0.0900f, 0.2500f, 0.0000f, 0.9943f, 12428.5000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_ICEPALACE_MEDIUMROOM \
{ 1.0000f, 0.8700f, 0.3162f, 0.5623f, 0.4467f, 2.2200f, 1.5300f, 0.3200f, 0.3981f, 0.0390f, { 0.0000f, 0.0000f, 0.0000f }, 1.1220f, 0.0270f, { 0.0000f, 0.0000f, 0.0000f }, 0.1860f, 0.1200f, 0.2500f, 0.0000f, 0.9943f, 12428.5000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_ICEPALACE_LARGEROOM \
{ 1.0000f, 0.8100f, 0.3162f, 0.5623f, 0.4467f, 3.1400f, 1.5300f, 0.3200f, 0.2512f, 0.0390f, { 0.0000f, 0.0000f, 0.0000f }, 1.0000f, 0.0270f, { 0.0000f, 0.0000f, 0.0000f }, 0.2140f, 0.1100f, 0.2500f, 0.0000f, 0.9943f, 12428.5000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_ICEPALACE_LONGPASSAGE \
{ 1.0000f, 0.7700f, 0.3162f, 0.5623f, 0.3981f, 3.0100f, 1.4600f, 0.2800f, 0.7943f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0250f, { 0.0000f, 0.0000f, 0.0000f }, 0.1860f, 0.0400f, 0.2500f, 0.0000f, 0.9943f, 12428.5000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_ICEPALACE_HALL \
{ 1.0000f, 0.7600f, 0.3162f, 0.4467f, 0.5623f, 5.4900f, 1.5300f, 0.3800f, 0.1122f, 0.0540f, { 0.0000f, 0.0000f, 0.0000f }, 0.6310f, 0.0520f, { 0.0000f, 0.0000f, 0.0000f }, 0.2260f, 0.1100f, 0.2500f, 0.0000f, 0.9943f, 12428.5000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_ICEPALACE_CUPBOARD \
{ 1.0000f, 0.8300f, 0.3162f, 0.5012f, 0.2239f, 0.7600f, 1.5300f, 0.2600f, 1.1220f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 1.9953f, 0.0160f, { 0.0000f, 0.0000f, 0.0000f }, 0.1430f, 0.0800f, 0.2500f, 0.0000f, 0.9943f, 12428.5000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_ICEPALACE_COURTYARD \
{ 1.0000f, 0.5900f, 0.3162f, 0.2818f, 0.3162f, 2.0400f, 1.2000f, 0.3800f, 0.3162f, 0.1730f, { 0.0000f, 0.0000f, 0.0000f }, 0.3162f, 0.0430f, { 0.0000f, 0.0000f, 0.0000f }, 0.2350f, 0.4800f, 0.2500f, 0.0000f, 0.9943f, 12428.5000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_ICEPALACE_ALCOVE \
{ 1.0000f, 0.8400f, 0.3162f, 0.5623f, 0.2818f, 2.7600f, 1.4600f, 0.2800f, 1.1220f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 0.8913f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.1610f, 0.0900f, 0.2500f, 0.0000f, 0.9943f, 12428.5000f, 99.6000f, 0.0000f, 0x1 }
/* Space Station Presets */
#define EFX_REVERB_PRESET_SPACESTATION_SMALLROOM \
{ 0.2109f, 0.7000f, 0.3162f, 0.7079f, 0.8913f, 1.7200f, 0.8200f, 0.5500f, 0.7943f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 1.4125f, 0.0130f, { 0.0000f, 0.0000f, 0.0000f }, 0.1880f, 0.2600f, 0.2500f, 0.0000f, 0.9943f, 3316.1001f, 458.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPACESTATION_SHORTPASSAGE \
{ 0.2109f, 0.8700f, 0.3162f, 0.6310f, 0.8913f, 3.5700f, 0.5000f, 0.5500f, 1.0000f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 1.1220f, 0.0160f, { 0.0000f, 0.0000f, 0.0000f }, 0.1720f, 0.2000f, 0.2500f, 0.0000f, 0.9943f, 3316.1001f, 458.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPACESTATION_MEDIUMROOM \
{ 0.2109f, 0.7500f, 0.3162f, 0.6310f, 0.8913f, 3.0100f, 0.5000f, 0.5500f, 0.3981f, 0.0340f, { 0.0000f, 0.0000f, 0.0000f }, 1.1220f, 0.0350f, { 0.0000f, 0.0000f, 0.0000f }, 0.2090f, 0.3100f, 0.2500f, 0.0000f, 0.9943f, 3316.1001f, 458.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPACESTATION_LARGEROOM \
{ 0.3645f, 0.8100f, 0.3162f, 0.6310f, 0.8913f, 3.8900f, 0.3800f, 0.6100f, 0.3162f, 0.0560f, { 0.0000f, 0.0000f, 0.0000f }, 0.8913f, 0.0350f, { 0.0000f, 0.0000f, 0.0000f }, 0.2330f, 0.2800f, 0.2500f, 0.0000f, 0.9943f, 3316.1001f, 458.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPACESTATION_LONGPASSAGE \
{ 0.4287f, 0.8200f, 0.3162f, 0.6310f, 0.8913f, 4.6200f, 0.6200f, 0.5500f, 1.0000f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0310f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.2300f, 0.2500f, 0.0000f, 0.9943f, 3316.1001f, 458.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPACESTATION_HALL \
{ 0.4287f, 0.8700f, 0.3162f, 0.6310f, 0.8913f, 7.1100f, 0.3800f, 0.6100f, 0.1778f, 0.1000f, { 0.0000f, 0.0000f, 0.0000f }, 0.6310f, 0.0470f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.2500f, 0.2500f, 0.0000f, 0.9943f, 3316.1001f, 458.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPACESTATION_CUPBOARD \
{ 0.1715f, 0.5600f, 0.3162f, 0.7079f, 0.8913f, 0.7900f, 0.8100f, 0.5500f, 1.4125f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 1.7783f, 0.0180f, { 0.0000f, 0.0000f, 0.0000f }, 0.1810f, 0.3100f, 0.2500f, 0.0000f, 0.9943f, 3316.1001f, 458.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPACESTATION_ALCOVE \
{ 0.2109f, 0.7800f, 0.3162f, 0.7079f, 0.8913f, 1.1600f, 0.8100f, 0.5500f, 1.4125f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 1.0000f, 0.0180f, { 0.0000f, 0.0000f, 0.0000f }, 0.1920f, 0.2100f, 0.2500f, 0.0000f, 0.9943f, 3316.1001f, 458.2000f, 0.0000f, 0x1 }
/* Wooden Galleon Presets */
#define EFX_REVERB_PRESET_WOODEN_SMALLROOM \
{ 1.0000f, 1.0000f, 0.3162f, 0.1122f, 0.3162f, 0.7900f, 0.3200f, 0.8700f, 1.0000f, 0.0320f, { 0.0000f, 0.0000f, 0.0000f }, 0.8913f, 0.0290f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 4705.0000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_WOODEN_SHORTPASSAGE \
{ 1.0000f, 1.0000f, 0.3162f, 0.1259f, 0.3162f, 1.7500f, 0.5000f, 0.8700f, 0.8913f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 0.6310f, 0.0240f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 4705.0000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_WOODEN_MEDIUMROOM \
{ 1.0000f, 1.0000f, 0.3162f, 0.1000f, 0.2818f, 1.4700f, 0.4200f, 0.8200f, 0.8913f, 0.0490f, { 0.0000f, 0.0000f, 0.0000f }, 0.8913f, 0.0290f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 4705.0000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_WOODEN_LARGEROOM \
{ 1.0000f, 1.0000f, 0.3162f, 0.0891f, 0.2818f, 2.6500f, 0.3300f, 0.8200f, 0.8913f, 0.0660f, { 0.0000f, 0.0000f, 0.0000f }, 0.7943f, 0.0490f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 4705.0000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_WOODEN_LONGPASSAGE \
{ 1.0000f, 1.0000f, 0.3162f, 0.1000f, 0.3162f, 1.9900f, 0.4000f, 0.7900f, 1.0000f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 0.4467f, 0.0360f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 4705.0000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_WOODEN_HALL \
{ 1.0000f, 1.0000f, 0.3162f, 0.0794f, 0.2818f, 3.4500f, 0.3000f, 0.8200f, 0.8913f, 0.0880f, { 0.0000f, 0.0000f, 0.0000f }, 0.7943f, 0.0630f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 4705.0000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_WOODEN_CUPBOARD \
{ 1.0000f, 1.0000f, 0.3162f, 0.1413f, 0.3162f, 0.5600f, 0.4600f, 0.9100f, 1.1220f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 1.1220f, 0.0280f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 4705.0000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_WOODEN_COURTYARD \
{ 1.0000f, 0.6500f, 0.3162f, 0.0794f, 0.3162f, 1.7900f, 0.3500f, 0.7900f, 0.5623f, 0.1230f, { 0.0000f, 0.0000f, 0.0000f }, 0.1000f, 0.0320f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 4705.0000f, 99.6000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_WOODEN_ALCOVE \
{ 1.0000f, 1.0000f, 0.3162f, 0.1259f, 0.3162f, 1.2200f, 0.6200f, 0.9100f, 1.1220f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 0.7079f, 0.0240f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 4705.0000f, 99.6000f, 0.0000f, 0x1 }
/* Sports Presets */
#define EFX_REVERB_PRESET_SPORT_EMPTYSTADIUM \
{ 1.0000f, 1.0000f, 0.3162f, 0.4467f, 0.7943f, 6.2600f, 0.5100f, 1.1000f, 0.0631f, 0.1830f, { 0.0000f, 0.0000f, 0.0000f }, 0.3981f, 0.0380f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPORT_SQUASHCOURT \
{ 1.0000f, 0.7500f, 0.3162f, 0.3162f, 0.7943f, 2.2200f, 0.9100f, 1.1600f, 0.4467f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 0.7943f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.1260f, 0.1900f, 0.2500f, 0.0000f, 0.9943f, 7176.8999f, 211.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPORT_SMALLSWIMMINGPOOL \
{ 1.0000f, 0.7000f, 0.3162f, 0.7943f, 0.8913f, 2.7600f, 1.2500f, 1.1400f, 0.6310f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 0.7943f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.1790f, 0.1500f, 0.8950f, 0.1900f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_SPORT_LARGESWIMMINGPOOL \
{ 1.0000f, 0.8200f, 0.3162f, 0.7943f, 1.0000f, 5.4900f, 1.3100f, 1.1400f, 0.4467f, 0.0390f, { 0.0000f, 0.0000f, 0.0000f }, 0.5012f, 0.0490f, { 0.0000f, 0.0000f, 0.0000f }, 0.2220f, 0.5500f, 1.1590f, 0.2100f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_SPORT_GYMNASIUM \
{ 1.0000f, 0.8100f, 0.3162f, 0.4467f, 0.8913f, 3.1400f, 1.0600f, 1.3500f, 0.3981f, 0.0290f, { 0.0000f, 0.0000f, 0.0000f }, 0.5623f, 0.0450f, { 0.0000f, 0.0000f, 0.0000f }, 0.1460f, 0.1400f, 0.2500f, 0.0000f, 0.9943f, 7176.8999f, 211.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPORT_FULLSTADIUM \
{ 1.0000f, 1.0000f, 0.3162f, 0.0708f, 0.7943f, 5.2500f, 0.1700f, 0.8000f, 0.1000f, 0.1880f, { 0.0000f, 0.0000f, 0.0000f }, 0.2818f, 0.0380f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SPORT_STADIUMTANNOY \
{ 1.0000f, 0.7800f, 0.3162f, 0.5623f, 0.5012f, 2.5300f, 0.8800f, 0.6800f, 0.2818f, 0.2300f, { 0.0000f, 0.0000f, 0.0000f }, 0.5012f, 0.0630f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.2000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
/* Prefab Presets */
#define EFX_REVERB_PRESET_PREFAB_WORKSHOP \
{ 0.4287f, 1.0000f, 0.3162f, 0.1413f, 0.3981f, 0.7600f, 1.0000f, 1.0000f, 1.0000f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 1.1220f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_PREFAB_SCHOOLROOM \
{ 0.4022f, 0.6900f, 0.3162f, 0.6310f, 0.5012f, 0.9800f, 0.4500f, 0.1800f, 1.4125f, 0.0170f, { 0.0000f, 0.0000f, 0.0000f }, 1.4125f, 0.0150f, { 0.0000f, 0.0000f, 0.0000f }, 0.0950f, 0.1400f, 0.2500f, 0.0000f, 0.9943f, 7176.8999f, 211.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_PREFAB_PRACTISEROOM \
{ 0.4022f, 0.8700f, 0.3162f, 0.3981f, 0.5012f, 1.1200f, 0.5600f, 0.1800f, 1.2589f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 1.4125f, 0.0110f, { 0.0000f, 0.0000f, 0.0000f }, 0.0950f, 0.1400f, 0.2500f, 0.0000f, 0.9943f, 7176.8999f, 211.2000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_PREFAB_OUTHOUSE \
{ 1.0000f, 0.8200f, 0.3162f, 0.1122f, 0.1585f, 1.3800f, 0.3800f, 0.3500f, 0.8913f, 0.0240f, { 0.0000f, 0.0000f, -0.0000f }, 0.6310f, 0.0440f, { 0.0000f, 0.0000f, 0.0000f }, 0.1210f, 0.1700f, 0.2500f, 0.0000f, 0.9943f, 2854.3999f, 107.5000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_PREFAB_CARAVAN \
{ 1.0000f, 1.0000f, 0.3162f, 0.0891f, 0.1259f, 0.4300f, 1.5000f, 1.0000f, 1.0000f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 1.9953f, 0.0120f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
/* Dome and Pipe Presets */
#define EFX_REVERB_PRESET_DOME_TOMB \
{ 1.0000f, 0.7900f, 0.3162f, 0.3548f, 0.2239f, 4.1800f, 0.2100f, 0.1000f, 0.3868f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 1.6788f, 0.0220f, { 0.0000f, 0.0000f, 0.0000f }, 0.1770f, 0.1900f, 0.2500f, 0.0000f, 0.9943f, 2854.3999f, 20.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_PIPE_SMALL \
{ 1.0000f, 1.0000f, 0.3162f, 0.3548f, 0.2239f, 5.0400f, 0.1000f, 0.1000f, 0.5012f, 0.0320f, { 0.0000f, 0.0000f, 0.0000f }, 2.5119f, 0.0150f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 2854.3999f, 20.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_DOME_SAINTPAULS \
{ 1.0000f, 0.8700f, 0.3162f, 0.3548f, 0.2239f, 10.4800f, 0.1900f, 0.1000f, 0.1778f, 0.0900f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0420f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.1200f, 0.2500f, 0.0000f, 0.9943f, 2854.3999f, 20.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_PIPE_LONGTHIN \
{ 0.2560f, 0.9100f, 0.3162f, 0.4467f, 0.2818f, 9.2100f, 0.1800f, 0.1000f, 0.7079f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 0.7079f, 0.0220f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 2854.3999f, 20.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_PIPE_LARGE \
{ 1.0000f, 1.0000f, 0.3162f, 0.3548f, 0.2239f, 8.4500f, 0.1000f, 0.1000f, 0.3981f, 0.0460f, { 0.0000f, 0.0000f, 0.0000f }, 1.5849f, 0.0320f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 2854.3999f, 20.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_PIPE_RESONANT \
{ 0.1373f, 0.9100f, 0.3162f, 0.4467f, 0.2818f, 6.8100f, 0.1800f, 0.1000f, 0.7079f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 1.0000f, 0.0220f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 2854.3999f, 20.0000f, 0.0000f, 0x0 }
/* Outdoors Presets */
#define EFX_REVERB_PRESET_OUTDOORS_BACKYARD \
{ 1.0000f, 0.4500f, 0.3162f, 0.2512f, 0.5012f, 1.1200f, 0.3400f, 0.4600f, 0.4467f, 0.0690f, { 0.0000f, 0.0000f, -0.0000f }, 0.7079f, 0.0230f, { 0.0000f, 0.0000f, 0.0000f }, 0.2180f, 0.3400f, 0.2500f, 0.0000f, 0.9943f, 4399.1001f, 242.9000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_OUTDOORS_ROLLINGPLAINS \
{ 1.0000f, 0.0000f, 0.3162f, 0.0112f, 0.6310f, 2.1300f, 0.2100f, 0.4600f, 0.1778f, 0.3000f, { 0.0000f, 0.0000f, -0.0000f }, 0.4467f, 0.0190f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 1.0000f, 0.2500f, 0.0000f, 0.9943f, 4399.1001f, 242.9000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_OUTDOORS_DEEPCANYON \
{ 1.0000f, 0.7400f, 0.3162f, 0.1778f, 0.6310f, 3.8900f, 0.2100f, 0.4600f, 0.3162f, 0.2230f, { 0.0000f, 0.0000f, -0.0000f }, 0.3548f, 0.0190f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 1.0000f, 0.2500f, 0.0000f, 0.9943f, 4399.1001f, 242.9000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_OUTDOORS_CREEK \
{ 1.0000f, 0.3500f, 0.3162f, 0.1778f, 0.5012f, 2.1300f, 0.2100f, 0.4600f, 0.3981f, 0.1150f, { 0.0000f, 0.0000f, -0.0000f }, 0.1995f, 0.0310f, { 0.0000f, 0.0000f, 0.0000f }, 0.2180f, 0.3400f, 0.2500f, 0.0000f, 0.9943f, 4399.1001f, 242.9000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_OUTDOORS_VALLEY \
{ 1.0000f, 0.2800f, 0.3162f, 0.0282f, 0.1585f, 2.8800f, 0.2600f, 0.3500f, 0.1413f, 0.2630f, { 0.0000f, 0.0000f, -0.0000f }, 0.3981f, 0.1000f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.3400f, 0.2500f, 0.0000f, 0.9943f, 2854.3999f, 107.5000f, 0.0000f, 0x0 }
/* Mood Presets */
#define EFX_REVERB_PRESET_MOOD_HEAVEN \
{ 1.0000f, 0.9400f, 0.3162f, 0.7943f, 0.4467f, 5.0400f, 1.1200f, 0.5600f, 0.2427f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0290f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0800f, 2.7420f, 0.0500f, 0.9977f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_MOOD_HELL \
{ 1.0000f, 0.5700f, 0.3162f, 0.3548f, 0.4467f, 3.5700f, 0.4900f, 2.0000f, 0.0000f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 1.4125f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.1100f, 0.0400f, 2.1090f, 0.5200f, 0.9943f, 5000.0000f, 139.5000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_MOOD_MEMORY \
{ 1.0000f, 0.8500f, 0.3162f, 0.6310f, 0.3548f, 4.0600f, 0.8200f, 0.5600f, 0.0398f, 0.0000f, { 0.0000f, 0.0000f, 0.0000f }, 1.1220f, 0.0000f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.4740f, 0.4500f, 0.9886f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
/* Driving Presets */
#define EFX_REVERB_PRESET_DRIVING_COMMENTATOR \
{ 1.0000f, 0.0000f, 0.3162f, 0.5623f, 0.5012f, 2.4200f, 0.8800f, 0.6800f, 0.1995f, 0.0930f, { 0.0000f, 0.0000f, 0.0000f }, 0.2512f, 0.0170f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 1.0000f, 0.2500f, 0.0000f, 0.9886f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_DRIVING_PITGARAGE \
{ 0.4287f, 0.5900f, 0.3162f, 0.7079f, 0.5623f, 1.7200f, 0.9300f, 0.8700f, 0.5623f, 0.0000f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0160f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.1100f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_DRIVING_INCAR_RACER \
{ 0.0832f, 0.8000f, 0.3162f, 1.0000f, 0.7943f, 0.1700f, 2.0000f, 0.4100f, 1.7783f, 0.0070f, { 0.0000f, 0.0000f, 0.0000f }, 0.7079f, 0.0150f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 10268.2002f, 251.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_DRIVING_INCAR_SPORTS \
{ 0.0832f, 0.8000f, 0.3162f, 0.6310f, 1.0000f, 0.1700f, 0.7500f, 0.4100f, 1.0000f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 0.5623f, 0.0000f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 10268.2002f, 251.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_DRIVING_INCAR_LUXURY \
{ 0.2560f, 1.0000f, 0.3162f, 0.1000f, 0.5012f, 0.1300f, 0.4100f, 0.4600f, 0.7943f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 1.5849f, 0.0100f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 10268.2002f, 251.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_DRIVING_FULLGRANDSTAND \
{ 1.0000f, 1.0000f, 0.3162f, 0.2818f, 0.6310f, 3.0100f, 1.3700f, 1.2800f, 0.3548f, 0.0900f, { 0.0000f, 0.0000f, 0.0000f }, 0.1778f, 0.0490f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 10420.2002f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_DRIVING_EMPTYGRANDSTAND \
{ 1.0000f, 1.0000f, 0.3162f, 1.0000f, 0.7943f, 4.6200f, 1.7500f, 1.4000f, 0.2082f, 0.0900f, { 0.0000f, 0.0000f, 0.0000f }, 0.2512f, 0.0490f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.0000f, 0.9943f, 10420.2002f, 250.0000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_DRIVING_TUNNEL \
{ 1.0000f, 0.8100f, 0.3162f, 0.3981f, 0.8913f, 3.4200f, 0.9400f, 1.3100f, 0.7079f, 0.0510f, { 0.0000f, 0.0000f, 0.0000f }, 0.7079f, 0.0470f, { 0.0000f, 0.0000f, 0.0000f }, 0.2140f, 0.0500f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 155.3000f, 0.0000f, 0x1 }
/* City Presets */
#define EFX_REVERB_PRESET_CITY_STREETS \
{ 1.0000f, 0.7800f, 0.3162f, 0.7079f, 0.8913f, 1.7900f, 1.1200f, 0.9100f, 0.2818f, 0.0460f, { 0.0000f, 0.0000f, 0.0000f }, 0.1995f, 0.0280f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.2000f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CITY_SUBWAY \
{ 1.0000f, 0.7400f, 0.3162f, 0.7079f, 0.8913f, 3.0100f, 1.2300f, 0.9100f, 0.7079f, 0.0460f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0280f, { 0.0000f, 0.0000f, 0.0000f }, 0.1250f, 0.2100f, 0.2500f, 0.0000f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CITY_MUSEUM \
{ 1.0000f, 0.8200f, 0.3162f, 0.1778f, 0.1778f, 3.2800f, 1.4000f, 0.5700f, 0.2512f, 0.0390f, { 0.0000f, 0.0000f, -0.0000f }, 0.8913f, 0.0340f, { 0.0000f, 0.0000f, 0.0000f }, 0.1300f, 0.1700f, 0.2500f, 0.0000f, 0.9943f, 2854.3999f, 107.5000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_CITY_LIBRARY \
{ 1.0000f, 0.8200f, 0.3162f, 0.2818f, 0.0891f, 2.7600f, 0.8900f, 0.4100f, 0.3548f, 0.0290f, { 0.0000f, 0.0000f, -0.0000f }, 0.8913f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 0.1300f, 0.1700f, 0.2500f, 0.0000f, 0.9943f, 2854.3999f, 107.5000f, 0.0000f, 0x0 }
#define EFX_REVERB_PRESET_CITY_UNDERPASS \
{ 1.0000f, 0.8200f, 0.3162f, 0.4467f, 0.8913f, 3.5700f, 1.1200f, 0.9100f, 0.3981f, 0.0590f, { 0.0000f, 0.0000f, 0.0000f }, 0.8913f, 0.0370f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.1400f, 0.2500f, 0.0000f, 0.9920f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CITY_ABANDONED \
{ 1.0000f, 0.6900f, 0.3162f, 0.7943f, 0.8913f, 3.2800f, 1.1700f, 0.9100f, 0.4467f, 0.0440f, { 0.0000f, 0.0000f, 0.0000f }, 0.2818f, 0.0240f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.2000f, 0.2500f, 0.0000f, 0.9966f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
/* Misc. Presets */
#define EFX_REVERB_PRESET_DUSTYROOM \
{ 0.3645f, 0.5600f, 0.3162f, 0.7943f, 0.7079f, 1.7900f, 0.3800f, 0.2100f, 0.5012f, 0.0020f, { 0.0000f, 0.0000f, 0.0000f }, 1.2589f, 0.0060f, { 0.0000f, 0.0000f, 0.0000f }, 0.2020f, 0.0500f, 0.2500f, 0.0000f, 0.9886f, 13046.0000f, 163.3000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_CHAPEL \
{ 1.0000f, 0.8400f, 0.3162f, 0.5623f, 1.0000f, 4.6200f, 0.6400f, 1.2300f, 0.4467f, 0.0320f, { 0.0000f, 0.0000f, 0.0000f }, 0.7943f, 0.0490f, { 0.0000f, 0.0000f, 0.0000f }, 0.2500f, 0.0000f, 0.2500f, 0.1100f, 0.9943f, 5000.0000f, 250.0000f, 0.0000f, 0x1 }
#define EFX_REVERB_PRESET_SMALLWATERROOM \
{ 1.0000f, 0.7000f, 0.3162f, 0.4477f, 1.0000f, 1.5100f, 1.2500f, 1.1400f, 0.8913f, 0.0200f, { 0.0000f, 0.0000f, 0.0000f }, 1.4125f, 0.0300f, { 0.0000f, 0.0000f, 0.0000f }, 0.1790f, 0.1500f, 0.8950f, 0.1900f, 0.9920f, 5000.0000f, 250.0000f, 0.0000f, 0x0 }
#endif /* EFX_PRESETS_H */

View File

@ -1,762 +0,0 @@
#ifndef AL_EFX_H
#define AL_EFX_H
#include <float.h>
#include "alc.h"
#include "al.h"
#ifdef __cplusplus
extern "C" {
#endif
#define ALC_EXT_EFX_NAME "ALC_EXT_EFX"
#define ALC_EFX_MAJOR_VERSION 0x20001
#define ALC_EFX_MINOR_VERSION 0x20002
#define ALC_MAX_AUXILIARY_SENDS 0x20003
/* Listener properties. */
#define AL_METERS_PER_UNIT 0x20004
/* Source properties. */
#define AL_DIRECT_FILTER 0x20005
#define AL_AUXILIARY_SEND_FILTER 0x20006
#define AL_AIR_ABSORPTION_FACTOR 0x20007
#define AL_ROOM_ROLLOFF_FACTOR 0x20008
#define AL_CONE_OUTER_GAINHF 0x20009
#define AL_DIRECT_FILTER_GAINHF_AUTO 0x2000A
#define AL_AUXILIARY_SEND_FILTER_GAIN_AUTO 0x2000B
#define AL_AUXILIARY_SEND_FILTER_GAINHF_AUTO 0x2000C
/* Effect properties. */
/* Reverb effect parameters */
#define AL_REVERB_DENSITY 0x0001
#define AL_REVERB_DIFFUSION 0x0002
#define AL_REVERB_GAIN 0x0003
#define AL_REVERB_GAINHF 0x0004
#define AL_REVERB_DECAY_TIME 0x0005
#define AL_REVERB_DECAY_HFRATIO 0x0006
#define AL_REVERB_REFLECTIONS_GAIN 0x0007
#define AL_REVERB_REFLECTIONS_DELAY 0x0008
#define AL_REVERB_LATE_REVERB_GAIN 0x0009
#define AL_REVERB_LATE_REVERB_DELAY 0x000A
#define AL_REVERB_AIR_ABSORPTION_GAINHF 0x000B
#define AL_REVERB_ROOM_ROLLOFF_FACTOR 0x000C
#define AL_REVERB_DECAY_HFLIMIT 0x000D
/* EAX Reverb effect parameters */
#define AL_EAXREVERB_DENSITY 0x0001
#define AL_EAXREVERB_DIFFUSION 0x0002
#define AL_EAXREVERB_GAIN 0x0003
#define AL_EAXREVERB_GAINHF 0x0004
#define AL_EAXREVERB_GAINLF 0x0005
#define AL_EAXREVERB_DECAY_TIME 0x0006
#define AL_EAXREVERB_DECAY_HFRATIO 0x0007
#define AL_EAXREVERB_DECAY_LFRATIO 0x0008
#define AL_EAXREVERB_REFLECTIONS_GAIN 0x0009
#define AL_EAXREVERB_REFLECTIONS_DELAY 0x000A
#define AL_EAXREVERB_REFLECTIONS_PAN 0x000B
#define AL_EAXREVERB_LATE_REVERB_GAIN 0x000C
#define AL_EAXREVERB_LATE_REVERB_DELAY 0x000D
#define AL_EAXREVERB_LATE_REVERB_PAN 0x000E
#define AL_EAXREVERB_ECHO_TIME 0x000F
#define AL_EAXREVERB_ECHO_DEPTH 0x0010
#define AL_EAXREVERB_MODULATION_TIME 0x0011
#define AL_EAXREVERB_MODULATION_DEPTH 0x0012
#define AL_EAXREVERB_AIR_ABSORPTION_GAINHF 0x0013
#define AL_EAXREVERB_HFREFERENCE 0x0014
#define AL_EAXREVERB_LFREFERENCE 0x0015
#define AL_EAXREVERB_ROOM_ROLLOFF_FACTOR 0x0016
#define AL_EAXREVERB_DECAY_HFLIMIT 0x0017
/* Chorus effect parameters */
#define AL_CHORUS_WAVEFORM 0x0001
#define AL_CHORUS_PHASE 0x0002
#define AL_CHORUS_RATE 0x0003
#define AL_CHORUS_DEPTH 0x0004
#define AL_CHORUS_FEEDBACK 0x0005
#define AL_CHORUS_DELAY 0x0006
/* Distortion effect parameters */
#define AL_DISTORTION_EDGE 0x0001
#define AL_DISTORTION_GAIN 0x0002
#define AL_DISTORTION_LOWPASS_CUTOFF 0x0003
#define AL_DISTORTION_EQCENTER 0x0004
#define AL_DISTORTION_EQBANDWIDTH 0x0005
/* Echo effect parameters */
#define AL_ECHO_DELAY 0x0001
#define AL_ECHO_LRDELAY 0x0002
#define AL_ECHO_DAMPING 0x0003
#define AL_ECHO_FEEDBACK 0x0004
#define AL_ECHO_SPREAD 0x0005
/* Flanger effect parameters */
#define AL_FLANGER_WAVEFORM 0x0001
#define AL_FLANGER_PHASE 0x0002
#define AL_FLANGER_RATE 0x0003
#define AL_FLANGER_DEPTH 0x0004
#define AL_FLANGER_FEEDBACK 0x0005
#define AL_FLANGER_DELAY 0x0006
/* Frequency shifter effect parameters */
#define AL_FREQUENCY_SHIFTER_FREQUENCY 0x0001
#define AL_FREQUENCY_SHIFTER_LEFT_DIRECTION 0x0002
#define AL_FREQUENCY_SHIFTER_RIGHT_DIRECTION 0x0003
/* Vocal morpher effect parameters */
#define AL_VOCAL_MORPHER_PHONEMEA 0x0001
#define AL_VOCAL_MORPHER_PHONEMEA_COARSE_TUNING 0x0002
#define AL_VOCAL_MORPHER_PHONEMEB 0x0003
#define AL_VOCAL_MORPHER_PHONEMEB_COARSE_TUNING 0x0004
#define AL_VOCAL_MORPHER_WAVEFORM 0x0005
#define AL_VOCAL_MORPHER_RATE 0x0006
/* Pitchshifter effect parameters */
#define AL_PITCH_SHIFTER_COARSE_TUNE 0x0001
#define AL_PITCH_SHIFTER_FINE_TUNE 0x0002
/* Ringmodulator effect parameters */
#define AL_RING_MODULATOR_FREQUENCY 0x0001
#define AL_RING_MODULATOR_HIGHPASS_CUTOFF 0x0002
#define AL_RING_MODULATOR_WAVEFORM 0x0003
/* Autowah effect parameters */
#define AL_AUTOWAH_ATTACK_TIME 0x0001
#define AL_AUTOWAH_RELEASE_TIME 0x0002
#define AL_AUTOWAH_RESONANCE 0x0003
#define AL_AUTOWAH_PEAK_GAIN 0x0004
/* Compressor effect parameters */
#define AL_COMPRESSOR_ONOFF 0x0001
/* Equalizer effect parameters */
#define AL_EQUALIZER_LOW_GAIN 0x0001
#define AL_EQUALIZER_LOW_CUTOFF 0x0002
#define AL_EQUALIZER_MID1_GAIN 0x0003
#define AL_EQUALIZER_MID1_CENTER 0x0004
#define AL_EQUALIZER_MID1_WIDTH 0x0005
#define AL_EQUALIZER_MID2_GAIN 0x0006
#define AL_EQUALIZER_MID2_CENTER 0x0007
#define AL_EQUALIZER_MID2_WIDTH 0x0008
#define AL_EQUALIZER_HIGH_GAIN 0x0009
#define AL_EQUALIZER_HIGH_CUTOFF 0x000A
/* Effect type */
#define AL_EFFECT_FIRST_PARAMETER 0x0000
#define AL_EFFECT_LAST_PARAMETER 0x8000
#define AL_EFFECT_TYPE 0x8001
/* Effect types, used with the AL_EFFECT_TYPE property */
#define AL_EFFECT_NULL 0x0000
#define AL_EFFECT_REVERB 0x0001
#define AL_EFFECT_CHORUS 0x0002
#define AL_EFFECT_DISTORTION 0x0003
#define AL_EFFECT_ECHO 0x0004
#define AL_EFFECT_FLANGER 0x0005
#define AL_EFFECT_FREQUENCY_SHIFTER 0x0006
#define AL_EFFECT_VOCAL_MORPHER 0x0007
#define AL_EFFECT_PITCH_SHIFTER 0x0008
#define AL_EFFECT_RING_MODULATOR 0x0009
#define AL_EFFECT_AUTOWAH 0x000A
#define AL_EFFECT_COMPRESSOR 0x000B
#define AL_EFFECT_EQUALIZER 0x000C
#define AL_EFFECT_EAXREVERB 0x8000
/* Auxiliary Effect Slot properties. */
#define AL_EFFECTSLOT_EFFECT 0x0001
#define AL_EFFECTSLOT_GAIN 0x0002
#define AL_EFFECTSLOT_AUXILIARY_SEND_AUTO 0x0003
/* NULL Auxiliary Slot ID to disable a source send. */
#define AL_EFFECTSLOT_NULL 0x0000
/* Filter properties. */
/* Lowpass filter parameters */
#define AL_LOWPASS_GAIN 0x0001
#define AL_LOWPASS_GAINHF 0x0002
/* Highpass filter parameters */
#define AL_HIGHPASS_GAIN 0x0001
#define AL_HIGHPASS_GAINLF 0x0002
/* Bandpass filter parameters */
#define AL_BANDPASS_GAIN 0x0001
#define AL_BANDPASS_GAINLF 0x0002
#define AL_BANDPASS_GAINHF 0x0003
/* Filter type */
#define AL_FILTER_FIRST_PARAMETER 0x0000
#define AL_FILTER_LAST_PARAMETER 0x8000
#define AL_FILTER_TYPE 0x8001
/* Filter types, used with the AL_FILTER_TYPE property */
#define AL_FILTER_NULL 0x0000
#define AL_FILTER_LOWPASS 0x0001
#define AL_FILTER_HIGHPASS 0x0002
#define AL_FILTER_BANDPASS 0x0003
/* Effect object function types. */
typedef void (AL_APIENTRY *LPALGENEFFECTS)(ALsizei, ALuint*);
typedef void (AL_APIENTRY *LPALDELETEEFFECTS)(ALsizei, const ALuint*);
typedef ALboolean (AL_APIENTRY *LPALISEFFECT)(ALuint);
typedef void (AL_APIENTRY *LPALEFFECTI)(ALuint, ALenum, ALint);
typedef void (AL_APIENTRY *LPALEFFECTIV)(ALuint, ALenum, const ALint*);
typedef void (AL_APIENTRY *LPALEFFECTF)(ALuint, ALenum, ALfloat);
typedef void (AL_APIENTRY *LPALEFFECTFV)(ALuint, ALenum, const ALfloat*);
typedef void (AL_APIENTRY *LPALGETEFFECTI)(ALuint, ALenum, ALint*);
typedef void (AL_APIENTRY *LPALGETEFFECTIV)(ALuint, ALenum, ALint*);
typedef void (AL_APIENTRY *LPALGETEFFECTF)(ALuint, ALenum, ALfloat*);
typedef void (AL_APIENTRY *LPALGETEFFECTFV)(ALuint, ALenum, ALfloat*);
/* Filter object function types. */
typedef void (AL_APIENTRY *LPALGENFILTERS)(ALsizei, ALuint*);
typedef void (AL_APIENTRY *LPALDELETEFILTERS)(ALsizei, const ALuint*);
typedef ALboolean (AL_APIENTRY *LPALISFILTER)(ALuint);
typedef void (AL_APIENTRY *LPALFILTERI)(ALuint, ALenum, ALint);
typedef void (AL_APIENTRY *LPALFILTERIV)(ALuint, ALenum, const ALint*);
typedef void (AL_APIENTRY *LPALFILTERF)(ALuint, ALenum, ALfloat);
typedef void (AL_APIENTRY *LPALFILTERFV)(ALuint, ALenum, const ALfloat*);
typedef void (AL_APIENTRY *LPALGETFILTERI)(ALuint, ALenum, ALint*);
typedef void (AL_APIENTRY *LPALGETFILTERIV)(ALuint, ALenum, ALint*);
typedef void (AL_APIENTRY *LPALGETFILTERF)(ALuint, ALenum, ALfloat*);
typedef void (AL_APIENTRY *LPALGETFILTERFV)(ALuint, ALenum, ALfloat*);
/* Auxiliary Effect Slot object function types. */
typedef void (AL_APIENTRY *LPALGENAUXILIARYEFFECTSLOTS)(ALsizei, ALuint*);
typedef void (AL_APIENTRY *LPALDELETEAUXILIARYEFFECTSLOTS)(ALsizei, const ALuint*);
typedef ALboolean (AL_APIENTRY *LPALISAUXILIARYEFFECTSLOT)(ALuint);
typedef void (AL_APIENTRY *LPALAUXILIARYEFFECTSLOTI)(ALuint, ALenum, ALint);
typedef void (AL_APIENTRY *LPALAUXILIARYEFFECTSLOTIV)(ALuint, ALenum, const ALint*);
typedef void (AL_APIENTRY *LPALAUXILIARYEFFECTSLOTF)(ALuint, ALenum, ALfloat);
typedef void (AL_APIENTRY *LPALAUXILIARYEFFECTSLOTFV)(ALuint, ALenum, const ALfloat*);
typedef void (AL_APIENTRY *LPALGETAUXILIARYEFFECTSLOTI)(ALuint, ALenum, ALint*);
typedef void (AL_APIENTRY *LPALGETAUXILIARYEFFECTSLOTIV)(ALuint, ALenum, ALint*);
typedef void (AL_APIENTRY *LPALGETAUXILIARYEFFECTSLOTF)(ALuint, ALenum, ALfloat*);
typedef void (AL_APIENTRY *LPALGETAUXILIARYEFFECTSLOTFV)(ALuint, ALenum, ALfloat*);
#ifdef AL_ALEXT_PROTOTYPES
AL_API void AL_APIENTRY alGenEffects(ALsizei n, ALuint *effects);
AL_API void AL_APIENTRY alDeleteEffects(ALsizei n, const ALuint *effects);
AL_API ALboolean AL_APIENTRY alIsEffect(ALuint effect);
AL_API void AL_APIENTRY alEffecti(ALuint effect, ALenum param, ALint iValue);
AL_API void AL_APIENTRY alEffectiv(ALuint effect, ALenum param, const ALint *piValues);
AL_API void AL_APIENTRY alEffectf(ALuint effect, ALenum param, ALfloat flValue);
AL_API void AL_APIENTRY alEffectfv(ALuint effect, ALenum param, const ALfloat *pflValues);
AL_API void AL_APIENTRY alGetEffecti(ALuint effect, ALenum param, ALint *piValue);
AL_API void AL_APIENTRY alGetEffectiv(ALuint effect, ALenum param, ALint *piValues);
AL_API void AL_APIENTRY alGetEffectf(ALuint effect, ALenum param, ALfloat *pflValue);
AL_API void AL_APIENTRY alGetEffectfv(ALuint effect, ALenum param, ALfloat *pflValues);
AL_API void AL_APIENTRY alGenFilters(ALsizei n, ALuint *filters);
AL_API void AL_APIENTRY alDeleteFilters(ALsizei n, const ALuint *filters);
AL_API ALboolean AL_APIENTRY alIsFilter(ALuint filter);
AL_API void AL_APIENTRY alFilteri(ALuint filter, ALenum param, ALint iValue);
AL_API void AL_APIENTRY alFilteriv(ALuint filter, ALenum param, const ALint *piValues);
AL_API void AL_APIENTRY alFilterf(ALuint filter, ALenum param, ALfloat flValue);
AL_API void AL_APIENTRY alFilterfv(ALuint filter, ALenum param, const ALfloat *pflValues);
AL_API void AL_APIENTRY alGetFilteri(ALuint filter, ALenum param, ALint *piValue);
AL_API void AL_APIENTRY alGetFilteriv(ALuint filter, ALenum param, ALint *piValues);
AL_API void AL_APIENTRY alGetFilterf(ALuint filter, ALenum param, ALfloat *pflValue);
AL_API void AL_APIENTRY alGetFilterfv(ALuint filter, ALenum param, ALfloat *pflValues);
AL_API void AL_APIENTRY alGenAuxiliaryEffectSlots(ALsizei n, ALuint *effectslots);
AL_API void AL_APIENTRY alDeleteAuxiliaryEffectSlots(ALsizei n, const ALuint *effectslots);
AL_API ALboolean AL_APIENTRY alIsAuxiliaryEffectSlot(ALuint effectslot);
AL_API void AL_APIENTRY alAuxiliaryEffectSloti(ALuint effectslot, ALenum param, ALint iValue);
AL_API void AL_APIENTRY alAuxiliaryEffectSlotiv(ALuint effectslot, ALenum param, const ALint *piValues);
AL_API void AL_APIENTRY alAuxiliaryEffectSlotf(ALuint effectslot, ALenum param, ALfloat flValue);
AL_API void AL_APIENTRY alAuxiliaryEffectSlotfv(ALuint effectslot, ALenum param, const ALfloat *pflValues);
AL_API void AL_APIENTRY alGetAuxiliaryEffectSloti(ALuint effectslot, ALenum param, ALint *piValue);
AL_API void AL_APIENTRY alGetAuxiliaryEffectSlotiv(ALuint effectslot, ALenum param, ALint *piValues);
AL_API void AL_APIENTRY alGetAuxiliaryEffectSlotf(ALuint effectslot, ALenum param, ALfloat *pflValue);
AL_API void AL_APIENTRY alGetAuxiliaryEffectSlotfv(ALuint effectslot, ALenum param, ALfloat *pflValues);
#endif
/* Filter ranges and defaults. */
/* Lowpass filter */
#define AL_LOWPASS_MIN_GAIN (0.0f)
#define AL_LOWPASS_MAX_GAIN (1.0f)
#define AL_LOWPASS_DEFAULT_GAIN (1.0f)
#define AL_LOWPASS_MIN_GAINHF (0.0f)
#define AL_LOWPASS_MAX_GAINHF (1.0f)
#define AL_LOWPASS_DEFAULT_GAINHF (1.0f)
/* Highpass filter */
#define AL_HIGHPASS_MIN_GAIN (0.0f)
#define AL_HIGHPASS_MAX_GAIN (1.0f)
#define AL_HIGHPASS_DEFAULT_GAIN (1.0f)
#define AL_HIGHPASS_MIN_GAINLF (0.0f)
#define AL_HIGHPASS_MAX_GAINLF (1.0f)
#define AL_HIGHPASS_DEFAULT_GAINLF (1.0f)
/* Bandpass filter */
#define AL_BANDPASS_MIN_GAIN (0.0f)
#define AL_BANDPASS_MAX_GAIN (1.0f)
#define AL_BANDPASS_DEFAULT_GAIN (1.0f)
#define AL_BANDPASS_MIN_GAINHF (0.0f)
#define AL_BANDPASS_MAX_GAINHF (1.0f)
#define AL_BANDPASS_DEFAULT_GAINHF (1.0f)
#define AL_BANDPASS_MIN_GAINLF (0.0f)
#define AL_BANDPASS_MAX_GAINLF (1.0f)
#define AL_BANDPASS_DEFAULT_GAINLF (1.0f)
/* Effect parameter ranges and defaults. */
/* Standard reverb effect */
#define AL_REVERB_MIN_DENSITY (0.0f)
#define AL_REVERB_MAX_DENSITY (1.0f)
#define AL_REVERB_DEFAULT_DENSITY (1.0f)
#define AL_REVERB_MIN_DIFFUSION (0.0f)
#define AL_REVERB_MAX_DIFFUSION (1.0f)
#define AL_REVERB_DEFAULT_DIFFUSION (1.0f)
#define AL_REVERB_MIN_GAIN (0.0f)
#define AL_REVERB_MAX_GAIN (1.0f)
#define AL_REVERB_DEFAULT_GAIN (0.32f)
#define AL_REVERB_MIN_GAINHF (0.0f)
#define AL_REVERB_MAX_GAINHF (1.0f)
#define AL_REVERB_DEFAULT_GAINHF (0.89f)
#define AL_REVERB_MIN_DECAY_TIME (0.1f)
#define AL_REVERB_MAX_DECAY_TIME (20.0f)
#define AL_REVERB_DEFAULT_DECAY_TIME (1.49f)
#define AL_REVERB_MIN_DECAY_HFRATIO (0.1f)
#define AL_REVERB_MAX_DECAY_HFRATIO (2.0f)
#define AL_REVERB_DEFAULT_DECAY_HFRATIO (0.83f)
#define AL_REVERB_MIN_REFLECTIONS_GAIN (0.0f)
#define AL_REVERB_MAX_REFLECTIONS_GAIN (3.16f)
#define AL_REVERB_DEFAULT_REFLECTIONS_GAIN (0.05f)
#define AL_REVERB_MIN_REFLECTIONS_DELAY (0.0f)
#define AL_REVERB_MAX_REFLECTIONS_DELAY (0.3f)
#define AL_REVERB_DEFAULT_REFLECTIONS_DELAY (0.007f)
#define AL_REVERB_MIN_LATE_REVERB_GAIN (0.0f)
#define AL_REVERB_MAX_LATE_REVERB_GAIN (10.0f)
#define AL_REVERB_DEFAULT_LATE_REVERB_GAIN (1.26f)
#define AL_REVERB_MIN_LATE_REVERB_DELAY (0.0f)
#define AL_REVERB_MAX_LATE_REVERB_DELAY (0.1f)
#define AL_REVERB_DEFAULT_LATE_REVERB_DELAY (0.011f)
#define AL_REVERB_MIN_AIR_ABSORPTION_GAINHF (0.892f)
#define AL_REVERB_MAX_AIR_ABSORPTION_GAINHF (1.0f)
#define AL_REVERB_DEFAULT_AIR_ABSORPTION_GAINHF (0.994f)
#define AL_REVERB_MIN_ROOM_ROLLOFF_FACTOR (0.0f)
#define AL_REVERB_MAX_ROOM_ROLLOFF_FACTOR (10.0f)
#define AL_REVERB_DEFAULT_ROOM_ROLLOFF_FACTOR (0.0f)
#define AL_REVERB_MIN_DECAY_HFLIMIT AL_FALSE
#define AL_REVERB_MAX_DECAY_HFLIMIT AL_TRUE
#define AL_REVERB_DEFAULT_DECAY_HFLIMIT AL_TRUE
/* EAX reverb effect */
#define AL_EAXREVERB_MIN_DENSITY (0.0f)
#define AL_EAXREVERB_MAX_DENSITY (1.0f)
#define AL_EAXREVERB_DEFAULT_DENSITY (1.0f)
#define AL_EAXREVERB_MIN_DIFFUSION (0.0f)
#define AL_EAXREVERB_MAX_DIFFUSION (1.0f)
#define AL_EAXREVERB_DEFAULT_DIFFUSION (1.0f)
#define AL_EAXREVERB_MIN_GAIN (0.0f)
#define AL_EAXREVERB_MAX_GAIN (1.0f)
#define AL_EAXREVERB_DEFAULT_GAIN (0.32f)
#define AL_EAXREVERB_MIN_GAINHF (0.0f)
#define AL_EAXREVERB_MAX_GAINHF (1.0f)
#define AL_EAXREVERB_DEFAULT_GAINHF (0.89f)
#define AL_EAXREVERB_MIN_GAINLF (0.0f)
#define AL_EAXREVERB_MAX_GAINLF (1.0f)
#define AL_EAXREVERB_DEFAULT_GAINLF (1.0f)
#define AL_EAXREVERB_MIN_DECAY_TIME (0.1f)
#define AL_EAXREVERB_MAX_DECAY_TIME (20.0f)
#define AL_EAXREVERB_DEFAULT_DECAY_TIME (1.49f)
#define AL_EAXREVERB_MIN_DECAY_HFRATIO (0.1f)
#define AL_EAXREVERB_MAX_DECAY_HFRATIO (2.0f)
#define AL_EAXREVERB_DEFAULT_DECAY_HFRATIO (0.83f)
#define AL_EAXREVERB_MIN_DECAY_LFRATIO (0.1f)
#define AL_EAXREVERB_MAX_DECAY_LFRATIO (2.0f)
#define AL_EAXREVERB_DEFAULT_DECAY_LFRATIO (1.0f)
#define AL_EAXREVERB_MIN_REFLECTIONS_GAIN (0.0f)
#define AL_EAXREVERB_MAX_REFLECTIONS_GAIN (3.16f)
#define AL_EAXREVERB_DEFAULT_REFLECTIONS_GAIN (0.05f)
#define AL_EAXREVERB_MIN_REFLECTIONS_DELAY (0.0f)
#define AL_EAXREVERB_MAX_REFLECTIONS_DELAY (0.3f)
#define AL_EAXREVERB_DEFAULT_REFLECTIONS_DELAY (0.007f)
#define AL_EAXREVERB_DEFAULT_REFLECTIONS_PAN_XYZ (0.0f)
#define AL_EAXREVERB_MIN_LATE_REVERB_GAIN (0.0f)
#define AL_EAXREVERB_MAX_LATE_REVERB_GAIN (10.0f)
#define AL_EAXREVERB_DEFAULT_LATE_REVERB_GAIN (1.26f)
#define AL_EAXREVERB_MIN_LATE_REVERB_DELAY (0.0f)
#define AL_EAXREVERB_MAX_LATE_REVERB_DELAY (0.1f)
#define AL_EAXREVERB_DEFAULT_LATE_REVERB_DELAY (0.011f)
#define AL_EAXREVERB_DEFAULT_LATE_REVERB_PAN_XYZ (0.0f)
#define AL_EAXREVERB_MIN_ECHO_TIME (0.075f)
#define AL_EAXREVERB_MAX_ECHO_TIME (0.25f)
#define AL_EAXREVERB_DEFAULT_ECHO_TIME (0.25f)
#define AL_EAXREVERB_MIN_ECHO_DEPTH (0.0f)
#define AL_EAXREVERB_MAX_ECHO_DEPTH (1.0f)
#define AL_EAXREVERB_DEFAULT_ECHO_DEPTH (0.0f)
#define AL_EAXREVERB_MIN_MODULATION_TIME (0.04f)
#define AL_EAXREVERB_MAX_MODULATION_TIME (4.0f)
#define AL_EAXREVERB_DEFAULT_MODULATION_TIME (0.25f)
#define AL_EAXREVERB_MIN_MODULATION_DEPTH (0.0f)
#define AL_EAXREVERB_MAX_MODULATION_DEPTH (1.0f)
#define AL_EAXREVERB_DEFAULT_MODULATION_DEPTH (0.0f)
#define AL_EAXREVERB_MIN_AIR_ABSORPTION_GAINHF (0.892f)
#define AL_EAXREVERB_MAX_AIR_ABSORPTION_GAINHF (1.0f)
#define AL_EAXREVERB_DEFAULT_AIR_ABSORPTION_GAINHF (0.994f)
#define AL_EAXREVERB_MIN_HFREFERENCE (1000.0f)
#define AL_EAXREVERB_MAX_HFREFERENCE (20000.0f)
#define AL_EAXREVERB_DEFAULT_HFREFERENCE (5000.0f)
#define AL_EAXREVERB_MIN_LFREFERENCE (20.0f)
#define AL_EAXREVERB_MAX_LFREFERENCE (1000.0f)
#define AL_EAXREVERB_DEFAULT_LFREFERENCE (250.0f)
#define AL_EAXREVERB_MIN_ROOM_ROLLOFF_FACTOR (0.0f)
#define AL_EAXREVERB_MAX_ROOM_ROLLOFF_FACTOR (10.0f)
#define AL_EAXREVERB_DEFAULT_ROOM_ROLLOFF_FACTOR (0.0f)
#define AL_EAXREVERB_MIN_DECAY_HFLIMIT AL_FALSE
#define AL_EAXREVERB_MAX_DECAY_HFLIMIT AL_TRUE
#define AL_EAXREVERB_DEFAULT_DECAY_HFLIMIT AL_TRUE
/* Chorus effect */
#define AL_CHORUS_WAVEFORM_SINUSOID (0)
#define AL_CHORUS_WAVEFORM_TRIANGLE (1)
#define AL_CHORUS_MIN_WAVEFORM (0)
#define AL_CHORUS_MAX_WAVEFORM (1)
#define AL_CHORUS_DEFAULT_WAVEFORM (1)
#define AL_CHORUS_MIN_PHASE (-180)
#define AL_CHORUS_MAX_PHASE (180)
#define AL_CHORUS_DEFAULT_PHASE (90)
#define AL_CHORUS_MIN_RATE (0.0f)
#define AL_CHORUS_MAX_RATE (10.0f)
#define AL_CHORUS_DEFAULT_RATE (1.1f)
#define AL_CHORUS_MIN_DEPTH (0.0f)
#define AL_CHORUS_MAX_DEPTH (1.0f)
#define AL_CHORUS_DEFAULT_DEPTH (0.1f)
#define AL_CHORUS_MIN_FEEDBACK (-1.0f)
#define AL_CHORUS_MAX_FEEDBACK (1.0f)
#define AL_CHORUS_DEFAULT_FEEDBACK (0.25f)
#define AL_CHORUS_MIN_DELAY (0.0f)
#define AL_CHORUS_MAX_DELAY (0.016f)
#define AL_CHORUS_DEFAULT_DELAY (0.016f)
/* Distortion effect */
#define AL_DISTORTION_MIN_EDGE (0.0f)
#define AL_DISTORTION_MAX_EDGE (1.0f)
#define AL_DISTORTION_DEFAULT_EDGE (0.2f)
#define AL_DISTORTION_MIN_GAIN (0.01f)
#define AL_DISTORTION_MAX_GAIN (1.0f)
#define AL_DISTORTION_DEFAULT_GAIN (0.05f)
#define AL_DISTORTION_MIN_LOWPASS_CUTOFF (80.0f)
#define AL_DISTORTION_MAX_LOWPASS_CUTOFF (24000.0f)
#define AL_DISTORTION_DEFAULT_LOWPASS_CUTOFF (8000.0f)
#define AL_DISTORTION_MIN_EQCENTER (80.0f)
#define AL_DISTORTION_MAX_EQCENTER (24000.0f)
#define AL_DISTORTION_DEFAULT_EQCENTER (3600.0f)
#define AL_DISTORTION_MIN_EQBANDWIDTH (80.0f)
#define AL_DISTORTION_MAX_EQBANDWIDTH (24000.0f)
#define AL_DISTORTION_DEFAULT_EQBANDWIDTH (3600.0f)
/* Echo effect */
#define AL_ECHO_MIN_DELAY (0.0f)
#define AL_ECHO_MAX_DELAY (0.207f)
#define AL_ECHO_DEFAULT_DELAY (0.1f)
#define AL_ECHO_MIN_LRDELAY (0.0f)
#define AL_ECHO_MAX_LRDELAY (0.404f)
#define AL_ECHO_DEFAULT_LRDELAY (0.1f)
#define AL_ECHO_MIN_DAMPING (0.0f)
#define AL_ECHO_MAX_DAMPING (0.99f)
#define AL_ECHO_DEFAULT_DAMPING (0.5f)
#define AL_ECHO_MIN_FEEDBACK (0.0f)
#define AL_ECHO_MAX_FEEDBACK (1.0f)
#define AL_ECHO_DEFAULT_FEEDBACK (0.5f)
#define AL_ECHO_MIN_SPREAD (-1.0f)
#define AL_ECHO_MAX_SPREAD (1.0f)
#define AL_ECHO_DEFAULT_SPREAD (-1.0f)
/* Flanger effect */
#define AL_FLANGER_WAVEFORM_SINUSOID (0)
#define AL_FLANGER_WAVEFORM_TRIANGLE (1)
#define AL_FLANGER_MIN_WAVEFORM (0)
#define AL_FLANGER_MAX_WAVEFORM (1)
#define AL_FLANGER_DEFAULT_WAVEFORM (1)
#define AL_FLANGER_MIN_PHASE (-180)
#define AL_FLANGER_MAX_PHASE (180)
#define AL_FLANGER_DEFAULT_PHASE (0)
#define AL_FLANGER_MIN_RATE (0.0f)
#define AL_FLANGER_MAX_RATE (10.0f)
#define AL_FLANGER_DEFAULT_RATE (0.27f)
#define AL_FLANGER_MIN_DEPTH (0.0f)
#define AL_FLANGER_MAX_DEPTH (1.0f)
#define AL_FLANGER_DEFAULT_DEPTH (1.0f)
#define AL_FLANGER_MIN_FEEDBACK (-1.0f)
#define AL_FLANGER_MAX_FEEDBACK (1.0f)
#define AL_FLANGER_DEFAULT_FEEDBACK (-0.5f)
#define AL_FLANGER_MIN_DELAY (0.0f)
#define AL_FLANGER_MAX_DELAY (0.004f)
#define AL_FLANGER_DEFAULT_DELAY (0.002f)
/* Frequency shifter effect */
#define AL_FREQUENCY_SHIFTER_MIN_FREQUENCY (0.0f)
#define AL_FREQUENCY_SHIFTER_MAX_FREQUENCY (24000.0f)
#define AL_FREQUENCY_SHIFTER_DEFAULT_FREQUENCY (0.0f)
#define AL_FREQUENCY_SHIFTER_MIN_LEFT_DIRECTION (0)
#define AL_FREQUENCY_SHIFTER_MAX_LEFT_DIRECTION (2)
#define AL_FREQUENCY_SHIFTER_DEFAULT_LEFT_DIRECTION (0)
#define AL_FREQUENCY_SHIFTER_DIRECTION_DOWN (0)
#define AL_FREQUENCY_SHIFTER_DIRECTION_UP (1)
#define AL_FREQUENCY_SHIFTER_DIRECTION_OFF (2)
#define AL_FREQUENCY_SHIFTER_MIN_RIGHT_DIRECTION (0)
#define AL_FREQUENCY_SHIFTER_MAX_RIGHT_DIRECTION (2)
#define AL_FREQUENCY_SHIFTER_DEFAULT_RIGHT_DIRECTION (0)
/* Vocal morpher effect */
#define AL_VOCAL_MORPHER_MIN_PHONEMEA (0)
#define AL_VOCAL_MORPHER_MAX_PHONEMEA (29)
#define AL_VOCAL_MORPHER_DEFAULT_PHONEMEA (0)
#define AL_VOCAL_MORPHER_MIN_PHONEMEA_COARSE_TUNING (-24)
#define AL_VOCAL_MORPHER_MAX_PHONEMEA_COARSE_TUNING (24)
#define AL_VOCAL_MORPHER_DEFAULT_PHONEMEA_COARSE_TUNING (0)
#define AL_VOCAL_MORPHER_MIN_PHONEMEB (0)
#define AL_VOCAL_MORPHER_MAX_PHONEMEB (29)
#define AL_VOCAL_MORPHER_DEFAULT_PHONEMEB (10)
#define AL_VOCAL_MORPHER_MIN_PHONEMEB_COARSE_TUNING (-24)
#define AL_VOCAL_MORPHER_MAX_PHONEMEB_COARSE_TUNING (24)
#define AL_VOCAL_MORPHER_DEFAULT_PHONEMEB_COARSE_TUNING (0)
#define AL_VOCAL_MORPHER_PHONEME_A (0)
#define AL_VOCAL_MORPHER_PHONEME_E (1)
#define AL_VOCAL_MORPHER_PHONEME_I (2)
#define AL_VOCAL_MORPHER_PHONEME_O (3)
#define AL_VOCAL_MORPHER_PHONEME_U (4)
#define AL_VOCAL_MORPHER_PHONEME_AA (5)
#define AL_VOCAL_MORPHER_PHONEME_AE (6)
#define AL_VOCAL_MORPHER_PHONEME_AH (7)
#define AL_VOCAL_MORPHER_PHONEME_AO (8)
#define AL_VOCAL_MORPHER_PHONEME_EH (9)
#define AL_VOCAL_MORPHER_PHONEME_ER (10)
#define AL_VOCAL_MORPHER_PHONEME_IH (11)
#define AL_VOCAL_MORPHER_PHONEME_IY (12)
#define AL_VOCAL_MORPHER_PHONEME_UH (13)
#define AL_VOCAL_MORPHER_PHONEME_UW (14)
#define AL_VOCAL_MORPHER_PHONEME_B (15)
#define AL_VOCAL_MORPHER_PHONEME_D (16)
#define AL_VOCAL_MORPHER_PHONEME_F (17)
#define AL_VOCAL_MORPHER_PHONEME_G (18)
#define AL_VOCAL_MORPHER_PHONEME_J (19)
#define AL_VOCAL_MORPHER_PHONEME_K (20)
#define AL_VOCAL_MORPHER_PHONEME_L (21)
#define AL_VOCAL_MORPHER_PHONEME_M (22)
#define AL_VOCAL_MORPHER_PHONEME_N (23)
#define AL_VOCAL_MORPHER_PHONEME_P (24)
#define AL_VOCAL_MORPHER_PHONEME_R (25)
#define AL_VOCAL_MORPHER_PHONEME_S (26)
#define AL_VOCAL_MORPHER_PHONEME_T (27)
#define AL_VOCAL_MORPHER_PHONEME_V (28)
#define AL_VOCAL_MORPHER_PHONEME_Z (29)
#define AL_VOCAL_MORPHER_WAVEFORM_SINUSOID (0)
#define AL_VOCAL_MORPHER_WAVEFORM_TRIANGLE (1)
#define AL_VOCAL_MORPHER_WAVEFORM_SAWTOOTH (2)
#define AL_VOCAL_MORPHER_MIN_WAVEFORM (0)
#define AL_VOCAL_MORPHER_MAX_WAVEFORM (2)
#define AL_VOCAL_MORPHER_DEFAULT_WAVEFORM (0)
#define AL_VOCAL_MORPHER_MIN_RATE (0.0f)
#define AL_VOCAL_MORPHER_MAX_RATE (10.0f)
#define AL_VOCAL_MORPHER_DEFAULT_RATE (1.41f)
/* Pitch shifter effect */
#define AL_PITCH_SHIFTER_MIN_COARSE_TUNE (-12)
#define AL_PITCH_SHIFTER_MAX_COARSE_TUNE (12)
#define AL_PITCH_SHIFTER_DEFAULT_COARSE_TUNE (12)
#define AL_PITCH_SHIFTER_MIN_FINE_TUNE (-50)
#define AL_PITCH_SHIFTER_MAX_FINE_TUNE (50)
#define AL_PITCH_SHIFTER_DEFAULT_FINE_TUNE (0)
/* Ring modulator effect */
#define AL_RING_MODULATOR_MIN_FREQUENCY (0.0f)
#define AL_RING_MODULATOR_MAX_FREQUENCY (8000.0f)
#define AL_RING_MODULATOR_DEFAULT_FREQUENCY (440.0f)
#define AL_RING_MODULATOR_MIN_HIGHPASS_CUTOFF (0.0f)
#define AL_RING_MODULATOR_MAX_HIGHPASS_CUTOFF (24000.0f)
#define AL_RING_MODULATOR_DEFAULT_HIGHPASS_CUTOFF (800.0f)
#define AL_RING_MODULATOR_SINUSOID (0)
#define AL_RING_MODULATOR_SAWTOOTH (1)
#define AL_RING_MODULATOR_SQUARE (2)
#define AL_RING_MODULATOR_MIN_WAVEFORM (0)
#define AL_RING_MODULATOR_MAX_WAVEFORM (2)
#define AL_RING_MODULATOR_DEFAULT_WAVEFORM (0)
/* Autowah effect */
#define AL_AUTOWAH_MIN_ATTACK_TIME (0.0001f)
#define AL_AUTOWAH_MAX_ATTACK_TIME (1.0f)
#define AL_AUTOWAH_DEFAULT_ATTACK_TIME (0.06f)
#define AL_AUTOWAH_MIN_RELEASE_TIME (0.0001f)
#define AL_AUTOWAH_MAX_RELEASE_TIME (1.0f)
#define AL_AUTOWAH_DEFAULT_RELEASE_TIME (0.06f)
#define AL_AUTOWAH_MIN_RESONANCE (2.0f)
#define AL_AUTOWAH_MAX_RESONANCE (1000.0f)
#define AL_AUTOWAH_DEFAULT_RESONANCE (1000.0f)
#define AL_AUTOWAH_MIN_PEAK_GAIN (0.00003f)
#define AL_AUTOWAH_MAX_PEAK_GAIN (31621.0f)
#define AL_AUTOWAH_DEFAULT_PEAK_GAIN (11.22f)
/* Compressor effect */
#define AL_COMPRESSOR_MIN_ONOFF (0)
#define AL_COMPRESSOR_MAX_ONOFF (1)
#define AL_COMPRESSOR_DEFAULT_ONOFF (1)
/* Equalizer effect */
#define AL_EQUALIZER_MIN_LOW_GAIN (0.126f)
#define AL_EQUALIZER_MAX_LOW_GAIN (7.943f)
#define AL_EQUALIZER_DEFAULT_LOW_GAIN (1.0f)
#define AL_EQUALIZER_MIN_LOW_CUTOFF (50.0f)
#define AL_EQUALIZER_MAX_LOW_CUTOFF (800.0f)
#define AL_EQUALIZER_DEFAULT_LOW_CUTOFF (200.0f)
#define AL_EQUALIZER_MIN_MID1_GAIN (0.126f)
#define AL_EQUALIZER_MAX_MID1_GAIN (7.943f)
#define AL_EQUALIZER_DEFAULT_MID1_GAIN (1.0f)
#define AL_EQUALIZER_MIN_MID1_CENTER (200.0f)
#define AL_EQUALIZER_MAX_MID1_CENTER (3000.0f)
#define AL_EQUALIZER_DEFAULT_MID1_CENTER (500.0f)
#define AL_EQUALIZER_MIN_MID1_WIDTH (0.01f)
#define AL_EQUALIZER_MAX_MID1_WIDTH (1.0f)
#define AL_EQUALIZER_DEFAULT_MID1_WIDTH (1.0f)
#define AL_EQUALIZER_MIN_MID2_GAIN (0.126f)
#define AL_EQUALIZER_MAX_MID2_GAIN (7.943f)
#define AL_EQUALIZER_DEFAULT_MID2_GAIN (1.0f)
#define AL_EQUALIZER_MIN_MID2_CENTER (1000.0f)
#define AL_EQUALIZER_MAX_MID2_CENTER (8000.0f)
#define AL_EQUALIZER_DEFAULT_MID2_CENTER (3000.0f)
#define AL_EQUALIZER_MIN_MID2_WIDTH (0.01f)
#define AL_EQUALIZER_MAX_MID2_WIDTH (1.0f)
#define AL_EQUALIZER_DEFAULT_MID2_WIDTH (1.0f)
#define AL_EQUALIZER_MIN_HIGH_GAIN (0.126f)
#define AL_EQUALIZER_MAX_HIGH_GAIN (7.943f)
#define AL_EQUALIZER_DEFAULT_HIGH_GAIN (1.0f)
#define AL_EQUALIZER_MIN_HIGH_CUTOFF (4000.0f)
#define AL_EQUALIZER_MAX_HIGH_CUTOFF (16000.0f)
#define AL_EQUALIZER_DEFAULT_HIGH_CUTOFF (6000.0f)
/* Source parameter value ranges and defaults. */
#define AL_MIN_AIR_ABSORPTION_FACTOR (0.0f)
#define AL_MAX_AIR_ABSORPTION_FACTOR (10.0f)
#define AL_DEFAULT_AIR_ABSORPTION_FACTOR (0.0f)
#define AL_MIN_ROOM_ROLLOFF_FACTOR (0.0f)
#define AL_MAX_ROOM_ROLLOFF_FACTOR (10.0f)
#define AL_DEFAULT_ROOM_ROLLOFF_FACTOR (0.0f)
#define AL_MIN_CONE_OUTER_GAINHF (0.0f)
#define AL_MAX_CONE_OUTER_GAINHF (1.0f)
#define AL_DEFAULT_CONE_OUTER_GAINHF (1.0f)
#define AL_MIN_DIRECT_FILTER_GAINHF_AUTO AL_FALSE
#define AL_MAX_DIRECT_FILTER_GAINHF_AUTO AL_TRUE
#define AL_DEFAULT_DIRECT_FILTER_GAINHF_AUTO AL_TRUE
#define AL_MIN_AUXILIARY_SEND_FILTER_GAIN_AUTO AL_FALSE
#define AL_MAX_AUXILIARY_SEND_FILTER_GAIN_AUTO AL_TRUE
#define AL_DEFAULT_AUXILIARY_SEND_FILTER_GAIN_AUTO AL_TRUE
#define AL_MIN_AUXILIARY_SEND_FILTER_GAINHF_AUTO AL_FALSE
#define AL_MAX_AUXILIARY_SEND_FILTER_GAINHF_AUTO AL_TRUE
#define AL_DEFAULT_AUXILIARY_SEND_FILTER_GAINHF_AUTO AL_TRUE
/* Listener parameter value ranges and defaults. */
#define AL_MIN_METERS_PER_UNIT FLT_MIN
#define AL_MAX_METERS_PER_UNIT FLT_MAX
#define AL_DEFAULT_METERS_PER_UNIT (1.0f)
#ifdef __cplusplus
} /* extern "C" */
#endif
#endif /* AL_EFX_H */

View File

@ -1,96 +0,0 @@
EXPORTS
alBuffer3f
alBuffer3i
alBufferData
alBufferf
alBufferfv
alBufferi
alBufferiv
alDeleteBuffers
alDeleteSources
alDisable
alDistanceModel
alDopplerFactor
alDopplerVelocity
alEnable
alGenBuffers
alGenSources
alGetBoolean
alGetBooleanv
alGetBuffer3f
alGetBuffer3i
alGetBufferf
alGetBufferfv
alGetBufferi
alGetBufferiv
alGetDouble
alGetDoublev
alGetEnumValue
alGetError
alGetFloat
alGetFloatv
alGetInteger
alGetIntegerv
alGetListener3f
alGetListener3i
alGetListenerf
alGetListenerfv
alGetListeneri
alGetListeneriv
alGetProcAddress
alGetSource3f
alGetSource3i
alGetSourcef
alGetSourcefv
alGetSourcei
alGetSourceiv
alGetString
alIsBuffer
alIsEnabled
alIsExtensionPresent
alIsSource
alListener3f
alListener3i
alListenerf
alListenerfv
alListeneri
alListeneriv
alSource3f
alSource3i
alSourcePause
alSourcePausev
alSourcePlay
alSourcePlayv
alSourceQueueBuffers
alSourceRewind
alSourceRewindv
alSourceStop
alSourceStopv
alSourceUnqueueBuffers
alSourcef
alSourcefv
alSourcei
alSourceiv
alSpeedOfSound
alcCaptureCloseDevice
alcCaptureOpenDevice
alcCaptureSamples
alcCaptureStart
alcCaptureStop
alcCloseDevice
alcCreateContext
alcDestroyContext
alcGetContextsDevice
alcGetCurrentContext
alcGetEnumValue
alcGetError
alcGetIntegerv
alcGetProcAddress
alcGetString
alcGetThreadContext
alcIsExtensionPresent
alcMakeContextCurrent
alcOpenDevice
alcProcessContext
alcSetThreadContext
alcSuspendContext

Binary file not shown.

Binary file not shown.

View File

@ -1,96 +0,0 @@
EXPORTS
alBuffer3f
alBuffer3i
alBufferData
alBufferf
alBufferfv
alBufferi
alBufferiv
alDeleteBuffers
alDeleteSources
alDisable
alDistanceModel
alDopplerFactor
alDopplerVelocity
alEnable
alGenBuffers
alGenSources
alGetBoolean
alGetBooleanv
alGetBuffer3f
alGetBuffer3i
alGetBufferf
alGetBufferfv
alGetBufferi
alGetBufferiv
alGetDouble
alGetDoublev
alGetEnumValue
alGetError
alGetFloat
alGetFloatv
alGetInteger
alGetIntegerv
alGetListener3f
alGetListener3i
alGetListenerf
alGetListenerfv
alGetListeneri
alGetListeneriv
alGetProcAddress
alGetSource3f
alGetSource3i
alGetSourcef
alGetSourcefv
alGetSourcei
alGetSourceiv
alGetString
alIsBuffer
alIsEnabled
alIsExtensionPresent
alIsSource
alListener3f
alListener3i
alListenerf
alListenerfv
alListeneri
alListeneriv
alSource3f
alSource3i
alSourcePause
alSourcePausev
alSourcePlay
alSourcePlayv
alSourceQueueBuffers
alSourceRewind
alSourceRewindv
alSourceStop
alSourceStopv
alSourceUnqueueBuffers
alSourcef
alSourcefv
alSourcei
alSourceiv
alSpeedOfSound
alcCaptureCloseDevice
alcCaptureOpenDevice
alcCaptureSamples
alcCaptureStart
alcCaptureStop
alcCloseDevice
alcCreateContext
alcDestroyContext
alcGetContextsDevice
alcGetCurrentContext
alcGetEnumValue
alcGetError
alcGetIntegerv
alcGetProcAddress
alcGetString
alcGetThreadContext
alcIsExtensionPresent
alcMakeContextCurrent
alcOpenDevice
alcProcessContext
alcSetThreadContext
alcSuspendContext

Binary file not shown.

Binary file not shown.

View File

@ -1,32 +0,0 @@
OpenAL Soft Binary Distribution
These binaries are provided as a convenience. Users and developers may use it
so they can use OpenAL Soft without having to build it from source.
Note that it is still expected to install the OpenAL redistributable provided
by Creative Labs (at http://openal.org/), as that will provide the "router"
OpenAL32.dll that applications talk to, and may provide extra drivers for the
user's system. The DLLs provided here will simply add additional devices for
applications to select from. If you do not wish to use the redistributable,
then rename soft_oal.dll to OpenAL32.dll (note: even the 64-bit DLL should be
named OpenAL32.dll). Just be aware this will prevent other system-installed
OpenAL implementations from working.
To use the 32-bit DLL, copy it from the bin\Win32 folder to the folder that
the 32-bit OpenAL32.dll router is installed in.
For 32-bit Windows, the Win32 DLL will typically go into the system32 folder.
For 64-bit Windows, the Win32 DLL will typically go into the SysWOW64 folder.
To use the 64-bit DLL, copy it from the bin\Win64 folder to the folder that
the 64-bit OpenAL32.dll router is installed in.
For 64-bit Windows, this will typically be the system32 folder.
The included openal-info32.exe and openal-info64.exe programs can be used to
tell if the OpenAL Soft DLL is being detected. It should be run from a command
shell, as the program will exit as soon as it's done printing information.
A configuration GUI app is provided in the alsoft-config folder. It is a front-
end to editing %AppData%\alsoft.ini, which can be used to modify certain
behaviors for OpenAL Soft devices.
Have fun!

1
vendor/opus vendored

@ -1 +0,0 @@
Subproject commit 6bae366f9fef25191fc812c430e8abd40a13a233

1
vendor/opusfile vendored

@ -1 +0,0 @@
Subproject commit 6452e838e68e8f4fc0b3599523c760ac6276ce89