mirror of
https://github.com/love2d/love.git
synced 2026-08-16 08:11:02 +02:00
404 lines
13 KiB
C++
404 lines
13 KiB
C++
/**
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* Copyright (c) 2006-2023 LOVE Development Team
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*
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* This software is provided 'as-is', without any express or implied
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* warranty. In no event will the authors be held liable for any damages
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* arising from the use of this software.
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*
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* Permission is granted to anyone to use this software for any purpose,
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* including commercial applications, and to alter it and redistribute it
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* freely, subject to the following restrictions:
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*
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* 1. The origin of this software must not be misrepresented; you must not
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* claim that you wrote the original software. If you use this software
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* in a product, an acknowledgment in the product documentation would be
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* appreciated but is not required.
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* 2. Altered source versions must be plainly marked as such, and must not be
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* misrepresented as being the original software.
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* 3. This notice may not be removed or altered from any source distribution.
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**/
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#include "wrap_Buffer.h"
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#include "Buffer.h"
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#include "common/Data.h"
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#include <limits>
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namespace love
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{
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namespace graphics
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{
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static const double defaultComponents[] = {0.0, 0.0, 0.0, 1.0};
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template <typename T>
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static inline size_t writeData(lua_State *L, int startidx, int components, char *data)
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{
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auto componentdata = (T *) data;
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for (int i = 0; i < components; i++)
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componentdata[i] = (T) (luaL_optnumber(L, startidx + i, defaultComponents[i]));
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return sizeof(T) * components;
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}
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template <typename T>
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static inline size_t writeSNormData(lua_State *L, int startidx, int components, char *data)
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{
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auto componentdata = (T *) data;
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const auto maxval = std::numeric_limits<T>::max();
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for (int i = 0; i < components; i++)
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componentdata[i] = (T) (luax_optnumberclamped(L, startidx + i, -1.0, 1.0, defaultComponents[i]) * maxval);
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return sizeof(T) * components;
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}
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template <typename T>
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static inline size_t writeUNormData(lua_State *L, int startidx, int components, char *data)
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{
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auto componentdata = (T *) data;
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const auto maxval = std::numeric_limits<T>::max();
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for (int i = 0; i < components; i++)
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componentdata[i] = (T) (luax_optnumberclamped01(L, startidx + i, 1.0) * maxval);
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return sizeof(T) * components;
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}
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void luax_writebufferdata(lua_State *L, int startidx, DataFormat format, char *data)
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{
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switch (format)
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{
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case DATAFORMAT_FLOAT: writeData<float>(L, startidx, 1, data); break;
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case DATAFORMAT_FLOAT_VEC2: writeData<float>(L, startidx, 2, data); break;
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case DATAFORMAT_FLOAT_VEC3: writeData<float>(L, startidx, 3, data); break;
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case DATAFORMAT_FLOAT_VEC4: writeData<float>(L, startidx, 4, data); break;
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case DATAFORMAT_INT32: writeData<int32>(L, startidx, 1, data); break;
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case DATAFORMAT_INT32_VEC2: writeData<int32>(L, startidx, 2, data); break;
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case DATAFORMAT_INT32_VEC3: writeData<int32>(L, startidx, 3, data); break;
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case DATAFORMAT_INT32_VEC4: writeData<int32>(L, startidx, 4, data); break;
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case DATAFORMAT_UINT32: writeData<uint32>(L, startidx, 1, data); break;
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case DATAFORMAT_UINT32_VEC2: writeData<uint32>(L, startidx, 2, data); break;
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case DATAFORMAT_UINT32_VEC3: writeData<uint32>(L, startidx, 3, data); break;
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case DATAFORMAT_UINT32_VEC4: writeData<uint32>(L, startidx, 4, data); break;
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case DATAFORMAT_SNORM8_VEC4: writeSNormData<int8>(L, startidx, 4, data); break;
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case DATAFORMAT_UNORM8_VEC4: writeUNormData<uint8>(L, startidx, 4, data); break;
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case DATAFORMAT_INT8_VEC4: writeData<int8>(L, startidx, 4, data); break;
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case DATAFORMAT_UINT8_VEC4: writeData<uint8>(L, startidx, 4, data); break;
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case DATAFORMAT_SNORM16_VEC2: writeSNormData<int16>(L, startidx, 2, data); break;
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case DATAFORMAT_SNORM16_VEC4: writeSNormData<int16>(L, startidx, 4, data); break;
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case DATAFORMAT_UNORM16_VEC2: writeUNormData<uint16>(L, startidx, 2, data); break;
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case DATAFORMAT_UNORM16_VEC4: writeUNormData<uint16>(L, startidx, 4, data); break;
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case DATAFORMAT_INT16_VEC2: writeData<int16>(L, startidx, 2, data); break;
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case DATAFORMAT_INT16_VEC4: writeData<int16>(L, startidx, 4, data); break;
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case DATAFORMAT_UINT16: writeData<uint16>(L, startidx, 1, data); break;
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case DATAFORMAT_UINT16_VEC2: writeData<uint16>(L, startidx, 2, data); break;
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case DATAFORMAT_UINT16_VEC4: writeData<uint16>(L, startidx, 4, data); break;
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default: break;
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}
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}
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template <typename T>
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static inline size_t readData(lua_State *L, int components, const char *data)
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{
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const auto componentdata = (const T *) data;
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for (int i = 0; i < components; i++)
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lua_pushnumber(L, (lua_Number) componentdata[i]);
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return sizeof(T) * components;
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}
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template <typename T>
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static inline size_t readSNormData(lua_State *L, int components, const char *data)
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{
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const auto componentdata = (const T *) data;
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const auto maxval = std::numeric_limits<T>::max();
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for (int i = 0; i < components; i++)
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lua_pushnumber(L, std::max(-1.0, (lua_Number) componentdata[i] / (lua_Number)maxval));
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return sizeof(T) * components;
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}
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template <typename T>
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static inline size_t readUNormData(lua_State *L, int components, const char *data)
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{
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const auto componentdata = (const T *) data;
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const auto maxval = std::numeric_limits<T>::max();
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for (int i = 0; i < components; i++)
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lua_pushnumber(L, (lua_Number) componentdata[i] / (lua_Number)maxval);
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return sizeof(T) * components;
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}
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void luax_readbufferdata(lua_State *L, DataFormat format, const char *data)
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{
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switch (format)
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{
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case DATAFORMAT_FLOAT: readData<float>(L, 1, data); break;
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case DATAFORMAT_FLOAT_VEC2: readData<float>(L, 2, data); break;
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case DATAFORMAT_FLOAT_VEC3: readData<float>(L, 3, data); break;
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case DATAFORMAT_FLOAT_VEC4: readData<float>(L, 4, data); break;
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case DATAFORMAT_INT32: readData<int32>(L, 1, data); break;
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case DATAFORMAT_INT32_VEC2: readData<int32>(L, 2, data); break;
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case DATAFORMAT_INT32_VEC3: readData<int32>(L, 3, data); break;
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case DATAFORMAT_INT32_VEC4: readData<int32>(L, 4, data); break;
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case DATAFORMAT_UINT32: readData<uint32>(L, 1, data); break;
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case DATAFORMAT_UINT32_VEC2: readData<uint32>(L, 2, data); break;
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case DATAFORMAT_UINT32_VEC3: readData<uint32>(L, 3, data); break;
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case DATAFORMAT_UINT32_VEC4: readData<uint32>(L, 4, data); break;
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case DATAFORMAT_SNORM8_VEC4: readSNormData<int8>(L, 4, data); break;
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case DATAFORMAT_UNORM8_VEC4: readUNormData<uint8>(L, 4, data); break;
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case DATAFORMAT_INT8_VEC4: readData<int8>(L, 4, data); break;
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case DATAFORMAT_UINT8_VEC4: readData<uint8>(L, 4, data); break;
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case DATAFORMAT_SNORM16_VEC2: readSNormData<int16>(L, 2, data); break;
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case DATAFORMAT_SNORM16_VEC4: readSNormData<int16>(L, 4, data); break;
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case DATAFORMAT_UNORM16_VEC2: readUNormData<uint16>(L, 2, data); break;
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case DATAFORMAT_UNORM16_VEC4: readUNormData<uint16>(L, 4, data); break;
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case DATAFORMAT_INT16_VEC2: readData<int16>(L, 2, data); break;
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case DATAFORMAT_INT16_VEC4: readData<int16>(L, 4, data); break;
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case DATAFORMAT_UINT16: readData<uint16>(L, 1, data); break;
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case DATAFORMAT_UINT16_VEC2: readData<uint16>(L, 2, data); break;
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case DATAFORMAT_UINT16_VEC4: readData<uint16>(L, 4, data); break;
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default: break;
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}
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}
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Buffer *luax_checkbuffer(lua_State *L, int idx)
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{
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return luax_checktype<Buffer>(L, idx);
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}
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static int w_Buffer_setArrayData(lua_State *L)
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{
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Buffer *t = luax_checkbuffer(L, 1);
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int sourceindex = (int) luaL_optnumber(L, 3, 1) - 1;
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int destindex = (int) luaL_optnumber(L, 4, 1) - 1;
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if (sourceindex < 0)
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return luaL_error(L, "Source start index must be at least 1.");
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int count = -1;
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if (!lua_isnoneornil(L, 5))
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{
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count = (int) luaL_checknumber(L, 5);
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if (count <= 0)
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return luaL_error(L, "Element count must be greater than 0.");
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}
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size_t stride = t->getArrayStride();
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size_t bufferoffset = destindex * stride;
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int arraylength = (int) t->getArrayLength();
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if (destindex >= arraylength || destindex < 0)
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return luaL_error(L, "Invalid buffer start index (must be between 1 and %d)", arraylength);
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if (luax_istype(L, 2, Data::type))
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{
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Data *d = luax_checktype<Data>(L, 2);
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int dataarraylength = d->getSize() / stride;
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if (sourceindex >= dataarraylength)
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return luaL_error(L, "Invalid data start index (must be between 1 and %d)", dataarraylength);
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int maxcount = std::min(dataarraylength - sourceindex, arraylength - destindex);
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if (count < 0)
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count = maxcount;
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if (count > maxcount)
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return luaL_error(L, "Too many array elements (expected at most %d, got %d)", maxcount, count);
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size_t dataoffset = sourceindex * stride;
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size_t datasize = std::min(d->getSize() - dataoffset, count * stride);
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const void *sourcedata = (const uint8 *) d->getData() + dataoffset;
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t->fill(bufferoffset, datasize, sourcedata);
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return 0;
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}
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const std::vector<Buffer::DataMember> &members = t->getDataMembers();
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int ncomponents = 0;
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for (const Buffer::DataMember &member : members)
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ncomponents += member.info.components;
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luaL_checktype(L, 2, LUA_TTABLE);
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int tablelen = (int) luax_objlen(L, 2);
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lua_rawgeti(L, 2, 1);
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bool tableoftables = lua_istable(L, -1);
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lua_pop(L, 1);
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if (!tableoftables)
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{
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if (tablelen % ncomponents != 0)
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return luaL_error(L, "Array length in flat array variant of Buffer:setArrayData must be a multiple of the total number of components (%d)", ncomponents);
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tablelen /= ncomponents;
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}
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if (sourceindex >= tablelen)
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return luaL_error(L, "Invalid data start index (must be between 1 and %d)", tablelen);
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count = count >= 0 ? std::min(count, tablelen - sourceindex) : tablelen - sourceindex;
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if (destindex + count > arraylength)
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return luaL_error(L, "Too many array elements (expected at most %d, got %d)", arraylength - destindex, count);
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char *data = (char *) t->map(Buffer::MAP_WRITE_INVALIDATE, bufferoffset, count * stride);
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if (tableoftables)
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{
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for (int i = sourceindex; i < count; i++)
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{
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// get arraydata[index]
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lua_rawgeti(L, 2, i + 1);
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luaL_checktype(L, -1, LUA_TTABLE);
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// get arraydata[index][j]
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for (int j = 1; j <= ncomponents; j++)
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lua_rawgeti(L, -j, j);
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int idx = -ncomponents;
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for (const Buffer::DataMember &member : members)
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{
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luax_writebufferdata(L, idx, member.decl.format, data + member.offset);
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idx += member.info.components;
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}
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lua_pop(L, ncomponents + 1);
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data += stride;
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}
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}
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else // Flat array
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{
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for (int i = sourceindex; i < count; i++)
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{
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// get arraydata[arrayindex * ncomponents + componentindex]
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for (int componentindex = 1; componentindex <= ncomponents; componentindex++)
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lua_rawgeti(L, 2, i * ncomponents + componentindex);
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int idx = -ncomponents;
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for (const Buffer::DataMember &member : members)
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{
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luax_writebufferdata(L, idx, member.decl.format, data + member.offset);
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idx += member.info.components;
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}
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lua_pop(L, ncomponents);
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data += stride;
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}
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}
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t->unmap(bufferoffset, count * stride);
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return 0;
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}
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static int w_Buffer_getElementCount(lua_State *L)
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{
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Buffer *t = luax_checkbuffer(L, 1);
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lua_pushinteger(L, t->getArrayLength());
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return 1;
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}
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static int w_Buffer_getElementStride(lua_State *L)
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{
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Buffer *t = luax_checkbuffer(L, 1);
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lua_pushinteger(L, t->getArrayStride());
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return 1;
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}
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static int w_Buffer_getSize(lua_State *L)
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{
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Buffer *t = luax_checkbuffer(L, 1);
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lua_pushinteger(L, t->getSize());
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return 1;
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}
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static int w_Buffer_getFormat(lua_State *L)
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{
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Buffer *t = luax_checkbuffer(L, 1);
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const auto &members = t->getDataMembers();
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lua_createtable(L, (int) members.size(), 0);
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for (size_t i = 0; i < members.size(); i++)
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{
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const Buffer::DataMember &member = members[i];
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lua_createtable(L, 0, 4);
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lua_pushstring(L, member.decl.name.c_str());
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lua_setfield(L, -2, "name");
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const char *formatstr = "unknown";
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getConstant(member.decl.format, formatstr);
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lua_pushstring(L, formatstr);
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lua_setfield(L, -2, "format");
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lua_pushinteger(L, member.decl.arrayLength);
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lua_setfield(L, -2, "arraylength");
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lua_pushinteger(L, member.offset);
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lua_setfield(L, -2, "offset");
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lua_rawseti(L, -2, i + 1);
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}
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return 1;
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}
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static int w_Buffer_isBufferType(lua_State *L)
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{
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Buffer *t = luax_checkbuffer(L, 1);
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BufferUsage bufferusage = BUFFERUSAGE_MAX_ENUM;
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const char *typestr = luaL_checkstring(L, 2);
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if (!getConstant(typestr, bufferusage))
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return luax_enumerror(L, "buffer type", getConstants(bufferusage), typestr);
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luax_pushboolean(L, (t->getUsageFlags() & (1 << bufferusage)) != 0);
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return 1;
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}
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static const luaL_Reg w_Buffer_functions[] =
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{
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{ "setArrayData", w_Buffer_setArrayData },
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{ "getElementCount", w_Buffer_getElementCount },
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{ "getElementStride", w_Buffer_getElementStride },
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{ "getSize", w_Buffer_getSize },
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{ "getFormat", w_Buffer_getFormat },
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{ "isBufferType", w_Buffer_isBufferType },
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{ 0, 0 }
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};
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extern "C" int luaopen_graphicsbuffer(lua_State *L)
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{
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return luax_register_type(L, &Buffer::type, w_Buffer_functions, nullptr);
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}
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} // graphics
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} // love
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