#include #include #include #include #include "common.h" using namespace std; using namespace Magick; ArgumentMap Wall(string type, string *outType, char *BufferData, size_t BufferLength, [[maybe_unused]] ArgumentMap Arguments, size_t *DataSize) { Blob blob; list frames; list coalesced; list mid; try { readImages(&frames, Blob(BufferData, BufferLength)); } catch (Magick::WarningCoder &warning) { cerr << "Coder Warning: " << warning.what() << endl; } catch (Magick::Warning &warning) { cerr << "Warning: " << warning.what() << endl; } coalesceImages(&coalesced, frames.begin(), frames.end()); for (Image &image : coalesced) { image.resize(Geometry("128x128")); image.virtualPixelMethod(Magick::TileVirtualPixelMethod); image.matteColor("none"); image.backgroundColor("none"); image.scale(Geometry("512x512")); double arguments[16] = {0, 0, 57, 42, 0, 128, 63, 130, 128, 0, 140, 60, 128, 128, 140, 140}; image.distort(Magick::PerspectiveDistortion, 16, arguments); image.scale(Geometry("800x800>")); image.magick(*outType); mid.push_back(image); } optimizeTransparency(mid.begin(), mid.end()); if (*outType == "gif") { for (Image &image : mid) { image.quantizeDitherMethod(FloydSteinbergDitherMethod); image.quantize(); } } writeImages(mid.begin(), mid.end(), &blob); *DataSize = blob.length(); char *data = (char *)malloc(*DataSize); memcpy(data, blob.data(), *DataSize); ArgumentMap output; output["buf"] = data; output["width"] = (int)mid.front().columns(); output["height"] = (int)mid.front().rows(); return output; }