/** * Copyright (c) 2006-2022 LOVE Development Team * * This software is provided 'as-is', without any express or implied * warranty. In no event will the authors be held liable for any damages * arising from the use of this software. * * Permission is granted to anyone to use this software for any purpose, * including commercial applications, and to alter it and redistribute it * freely, subject to the following restrictions: * * 1. The origin of this software must not be misrepresented; you must not * claim that you wrote the original software. If you use this software * in a product, an acknowledgment in the product documentation would be * appreciated but is not required. * 2. Altered source versions must be plainly marked as such, and must not be * misrepresented as being the original software. * 3. This notice may not be removed or altered from any source distribution. **/ #include "wrap_RecordingDevice.h" #include "wrap_Audio.h" #include "sound/SoundData.h" namespace love { namespace audio { RecordingDevice *luax_checkrecordingdevice(lua_State *L, int idx) { return luax_checktype(L, idx); } int w_RecordingDevice_start(lua_State *L) { RecordingDevice *d = luax_checkrecordingdevice(L, 1); int samples = d->getMaxSamples(); int samplerate = d->getSampleRate(); int bitdepth = d->getBitDepth(); int channels = d->getChannelCount(); if (lua_gettop(L) > 1) { samples = (int) luaL_checkinteger(L, 2); samplerate = (int) luaL_optinteger(L, 3, RecordingDevice::DEFAULT_SAMPLE_RATE); bitdepth = (int) luaL_optinteger(L, 4, RecordingDevice::DEFAULT_BIT_DEPTH); channels = (int) (int) luaL_optinteger(L, 5, RecordingDevice::DEFAULT_CHANNELS); } bool success = false; luax_catchexcept(L, [&]() { success = d->start(samples, samplerate, bitdepth, channels); }); luax_pushboolean(L, success); return 1; } int w_RecordingDevice_stop(lua_State *L) { RecordingDevice *d = luax_checkrecordingdevice(L, 1); love::sound::SoundData *s = nullptr; luax_catchexcept(L, [&](){ s = d->getData(); }); d->stop(); if (s != nullptr) { luax_pushtype(L, s); s->release(); } else lua_pushnil(L); return 1; } int w_RecordingDevice_getData(lua_State *L) { RecordingDevice *d = luax_checkrecordingdevice(L, 1); love::sound::SoundData *s = nullptr; luax_catchexcept(L, [&](){ s = d->getData(); }); if (s != nullptr) { luax_pushtype(L, s); s->release(); } else lua_pushnil(L); return 1; } int w_RecordingDevice_getSampleCount(lua_State *L) { RecordingDevice *d = luax_checkrecordingdevice(L, 1); lua_pushnumber(L, d->getSampleCount()); return 1; } int w_RecordingDevice_getSampleRate(lua_State *L) { RecordingDevice *d = luax_checkrecordingdevice(L, 1); lua_pushnumber(L, d->getSampleRate()); return 1; } int w_RecordingDevice_getBitDepth(lua_State *L) { RecordingDevice *d = luax_checkrecordingdevice(L, 1); lua_pushnumber(L, d->getBitDepth()); return 1; } int w_RecordingDevice_getChannelCount(lua_State *L) { RecordingDevice *d = luax_checkrecordingdevice(L, 1); lua_pushnumber(L, d->getChannelCount()); return 1; } int w_RecordingDevice_getName(lua_State *L) { RecordingDevice *d = luax_checkrecordingdevice(L, 1); lua_pushstring(L, d->getName()); return 1; } int w_RecordingDevice_isRecording(lua_State *L) { RecordingDevice *d = luax_checkrecordingdevice(L, 1); lua_pushboolean(L, d->isRecording()); return 1; } static const luaL_Reg w_RecordingDevice_functions[] = { { "start", w_RecordingDevice_start }, { "stop", w_RecordingDevice_stop }, { "getData", w_RecordingDevice_getData }, { "getSampleCount", w_RecordingDevice_getSampleCount }, { "getSampleRate", w_RecordingDevice_getSampleRate }, { "getBitDepth", w_RecordingDevice_getBitDepth }, { "getChannelCount", w_RecordingDevice_getChannelCount }, { "getName", w_RecordingDevice_getName }, { "isRecording", w_RecordingDevice_isRecording }, { 0, 0 } }; extern "C" int luaopen_recordingdevice(lua_State *L) { int ret = luax_register_type(L, &RecordingDevice::type, w_RecordingDevice_functions, nullptr); return ret; } } //audio } //love