/** * Copyright (c) 2006-2016 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_ImageData.h" #include "common/wrap_Data.h" #include "filesystem/File.h" // Shove the wrap_ImageData.lua code directly into a raw string literal. static const char imagedata_lua[] = #include "wrap_ImageData.lua" ; namespace love { namespace image { /** * NOTE: Additional wrapper code is in wrap_ImageData.lua. Be sure to keep it * in sync with any changes made to this file! **/ ImageData *luax_checkimagedata(lua_State *L, int idx) { return luax_checktype(L, idx, IMAGE_IMAGE_DATA_ID); } int w_ImageData_getFormat(lua_State *L) { ImageData *t = luax_checkimagedata(L, 1); PixelFormat format = t->getFormat(); const char *fstr = nullptr; if (!getConstant(format, fstr)) return luaL_error(L, "Unknown pixel format."); lua_pushstring(L, fstr); return 1; } int w_ImageData_getWidth(lua_State *L) { ImageData *t = luax_checkimagedata(L, 1); lua_pushinteger(L, t->getWidth()); return 1; } int w_ImageData_getHeight(lua_State *L) { ImageData *t = luax_checkimagedata(L, 1); lua_pushinteger(L, t->getHeight()); return 1; } int w_ImageData_getDimensions(lua_State *L) { ImageData *t = luax_checkimagedata(L, 1); lua_pushinteger(L, t->getWidth()); lua_pushinteger(L, t->getHeight()); return 2; } // TODO: rgba16f static void luax_checkpixel_rgba8(lua_State *L, int startidx, Pixel &p) { for (int i = 0; i < 3; i++) p.rgba8[i] = (uint8) (luaL_checknumber(L, startidx + i) * 255.0); p.rgba8[3] = (uint8) (luaL_optnumber(L, startidx + 3, 1.0) * 255.0); } static void luax_checkpixel_rgba16(lua_State *L, int startidx, Pixel &p) { for (int i = 0; i < 3; i++) p.rgba16[i] = (uint16) (luaL_checknumber(L, startidx + i) * 65535.0); p.rgba16[3] = (uint16) (luaL_optnumber(L, startidx + 3, 1.0) * 65535.0); } static void luax_checkpixel_rgba16f(lua_State *L, int startidx, Pixel &p) { for (int i = 0; i < 3; i++) p.rgba16f[i] = floatToHalf((float) luaL_checknumber(L, startidx + i)); p.rgba16f[3] = floatToHalf((float) luaL_optnumber(L, startidx + 3, 1.0)); } static void luax_checkpixel_rgba32f(lua_State *L, int startidx, Pixel &p) { for (int i = 0; i < 3; i++) p.rgba32f[i] = (float) luaL_checknumber(L, startidx + i); p.rgba32f[3] = (float) luaL_optnumber(L, startidx + 3, 1.0); } static int luax_pushpixel_rgba8(lua_State *L, const Pixel &p) { for (int i = 0; i < 4; i++) lua_pushnumber(L, (lua_Number) p.rgba8[i] / 255.0); return 4; } static int luax_pushpixel_rgba16(lua_State *L, const Pixel &p) { for (int i = 0; i < 4; i++) lua_pushnumber(L, (lua_Number) p.rgba16[i] / 65535.0); return 4; } static int luax_pushpixel_rgba16f(lua_State *L, const Pixel &p) { for (int i = 0; i < 4; i++) lua_pushnumber(L, (lua_Number) halfToFloat(p.rgba16f[i])); return 4; } static int luax_pushpixel_rgba32f(lua_State *L, const Pixel &p) { for (int i = 0; i < 4; i++) lua_pushnumber(L, (lua_Number) p.rgba32f[i]); return 4; } typedef void(*checkpixel)(lua_State *L, int startidx, Pixel &p); typedef int(*pushpixel)(lua_State *L, const Pixel &p); static checkpixel checkFormats[PIXELFORMAT_MAX_ENUM] = {}; static pushpixel pushFormats[PIXELFORMAT_MAX_ENUM] = {}; int w_ImageData_getPixel(lua_State *L) { ImageData *t = luax_checkimagedata(L, 1); int x = (int) luaL_checknumber(L, 2); int y = (int) luaL_checknumber(L, 3); PixelFormat format = t->getFormat(); Pixel p; luax_catchexcept(L, [&](){ t->getPixel(x, y, p); }); return pushFormats[format](L, p); } int w_ImageData_setPixel(lua_State *L) { ImageData *t = luax_checkimagedata(L, 1); int x = (int) luaL_checknumber(L, 2); int y = (int) luaL_checknumber(L, 3); PixelFormat format = t->getFormat(); Pixel p; if (lua_istable(L, 4)) { for (int i = 1; i <= 4; i++) lua_rawgeti(L, 4, i); checkFormats[format](L, -4, p); lua_pop(L, 4); } else checkFormats[format](L, 4, p); luax_catchexcept(L, [&](){ t->setPixel(x, y, p); }); return 0; } // ImageData:mapPixel. Not thread-safe! See wrap_ImageData.lua for the thread- // safe wrapper function. int w_ImageData__mapPixelUnsafe(lua_State *L) { ImageData *t = luax_checkimagedata(L, 1); luaL_checktype(L, 2, LUA_TFUNCTION); // No optints because we assume they're done in the wrapper function. int sx = (int) lua_tonumber(L, 3); int sy = (int) lua_tonumber(L, 4); int w = (int) lua_tonumber(L, 5); int h = (int) lua_tonumber(L, 6); if (!(t->inside(sx, sy) && t->inside(sx+w-1, sy+h-1))) return luaL_error(L, "Invalid rectangle dimensions."); int iw = t->getWidth(); PixelFormat format = t->getFormat(); auto checkpixel = checkFormats[format]; auto pushpixel = pushFormats[format]; uint8 *data = (uint8 *) t->getData(); size_t pixelsize = t->getPixelSize(); for (int y = sy; y < sy+h; y++) { for (int x = sx; x < sx+w; x++) { Pixel *pixeldata = (Pixel *) (data + (y * iw + x) * pixelsize); lua_pushvalue(L, 2); // ImageData lua_pushnumber(L, x); lua_pushnumber(L, y); pushpixel(L, *pixeldata); lua_call(L, 6, 4); checkpixel(L, -4, *pixeldata); lua_pop(L, 4); // Pop return values. } } return 0; } int w_ImageData_paste(lua_State *L) { ImageData *t = luax_checkimagedata(L, 1); ImageData *src = luax_checkimagedata(L, 2); int dx = (int) luaL_checknumber(L, 3); int dy = (int) luaL_checknumber(L, 4); int sx = (int) luaL_optnumber(L, 5, 0); int sy = (int) luaL_optnumber(L, 6, 0); int sw = (int) luaL_optnumber(L, 7, src->getWidth()); int sh = (int) luaL_optnumber(L, 8, src->getHeight()); t->paste((love::image::ImageData *)src, dx, dy, sx, sy, sw, sh); return 0; } int w_ImageData_encode(lua_State *L) { ImageData *t = luax_checkimagedata(L, 1); ImageData::EncodedFormat format; const char *fmt = luaL_checkstring(L, 2); if (!ImageData::getConstant(fmt, format)) return luaL_error(L, "Invalid encoded image format '%s'.", fmt); bool hasfilename = false; std::string filename = "Image." + std::string(fmt); if (!lua_isnoneornil(L, 3)) { hasfilename = true; filename = luax_checkstring(L, 3); } love::filesystem::FileData *filedata = nullptr; luax_catchexcept(L, [&](){ filedata = t->encode(format, filename.c_str()); }); luax_pushtype(L, FILESYSTEM_FILE_DATA_ID, filedata); filedata->release(); if (hasfilename) { luax_getfunction(L, "filesystem", "write"); lua_pushvalue(L, 3); // filename lua_pushvalue(L, -3); // FileData lua_call(L, 2, 0); } return 1; } int w_ImageData__performAtomic(lua_State *L) { ImageData *t = luax_checkimagedata(L, 1); int err = 0; { love::thread::Lock lock(t->getMutex()); // call the function, passing any user-specified arguments. err = lua_pcall(L, lua_gettop(L) - 2, LUA_MULTRET, 0); } // Unfortunately, this eats the stack trace, too bad. if (err != 0) return lua_error(L); // The function and everything after it in the stack are eaten by the pcall, // leaving only the ImageData object. Everything else is a return value. return lua_gettop(L) - 1; } // C functions in a struct, necessary for the FFI versions of ImageData methods. struct FFI_ImageData { void (*lockMutex)(Proxy *p); void (*unlockMutex)(Proxy *p); float (*halfToFloat)(half h); half (*floatToHalf)(float f); }; static FFI_ImageData ffifuncs = { [](Proxy *p) // lockMutex { // We don't do any type-checking for the Proxy here since these functions // are always called from code which has already done type checking. ImageData *i = (ImageData *) p->object; i->getMutex()->lock(); }, [](Proxy *p) // unlockMutex { ImageData *i = (ImageData *) p->object; i->getMutex()->unlock(); }, halfToFloat, floatToHalf, }; static const luaL_Reg w_ImageData_functions[] = { { "getFormat", w_ImageData_getFormat }, { "getWidth", w_ImageData_getWidth }, { "getHeight", w_ImageData_getHeight }, { "getDimensions", w_ImageData_getDimensions }, { "getPixel", w_ImageData_getPixel }, { "setPixel", w_ImageData_setPixel }, { "paste", w_ImageData_paste }, { "encode", w_ImageData_encode }, // Used in the Lua wrapper code. { "_mapPixelUnsafe", w_ImageData__mapPixelUnsafe }, { "_performAtomic", w_ImageData__performAtomic }, { 0, 0 } }; extern "C" int luaopen_imagedata(lua_State *L) { checkFormats[PIXELFORMAT_RGBA8] = luax_checkpixel_rgba8; checkFormats[PIXELFORMAT_RGBA16] = luax_checkpixel_rgba16; checkFormats[PIXELFORMAT_RGBA16F] = luax_checkpixel_rgba16f; checkFormats[PIXELFORMAT_RGBA32F] = luax_checkpixel_rgba32f; pushFormats[PIXELFORMAT_RGBA8] = luax_pushpixel_rgba8; pushFormats[PIXELFORMAT_RGBA16] = luax_pushpixel_rgba16; pushFormats[PIXELFORMAT_RGBA16F] = luax_pushpixel_rgba16f; pushFormats[PIXELFORMAT_RGBA32F] = luax_pushpixel_rgba32f; int ret = luax_register_type(L, IMAGE_IMAGE_DATA_ID, "ImageData", w_Data_functions, w_ImageData_functions, nullptr); luax_gettypemetatable(L, IMAGE_IMAGE_DATA_ID); // Load and execute ImageData.lua, sending the metatable and the ffi // functions struct pointer as arguments. if (lua_istable(L, -1)) { luaL_loadbuffer(L, imagedata_lua, sizeof(imagedata_lua), "ImageData.lua"); lua_pushvalue(L, -2); lua_pushlightuserdata(L, &ffifuncs); lua_call(L, 2, 0); } // Pop the metatable. lua_pop(L, 1); return ret; } } // image } // love