#include #include #include using namespace std; using namespace Magick; Napi::Value Invert(const Napi::CallbackInfo &info) { Napi::Env env = info.Env(); try { Napi::Object obj = info[0].As(); string path = obj.Get("path").As().Utf8Value(); string type = obj.Get("type").As().Utf8Value(); int delay = obj.Has("delay") ? obj.Get("delay").As().Int32Value() : 0; Blob blob; list frames; list coalesced; list mid; readImages(&frames, path); coalesceImages(&coalesced, frames.begin(), frames.end()); for_each(coalesced.begin(), coalesced.end(), negateImage()); for (Image &image : coalesced) { image.negateChannel(Magick::AlphaChannel); mid.push_back(image); } // Magick::ChannelType(Magick::CompositeChannels ^ Magick::AlphaChannel) for_each(mid.begin(), mid.end(), magickImage(type)); optimizeTransparency(mid.begin(), mid.end()); if (type == "gif") { for (Image &image : mid) { image.quantizeDitherMethod(FloydSteinbergDitherMethod); image.quantize(); if (delay != 0) image.animationDelay(delay); } } writeImages(mid.begin(), mid.end(), &blob); Napi::Object result = Napi::Object::New(env); result.Set("data", Napi::Buffer::Copy(env, (char *)blob.data(), blob.length())); result.Set("type", type); return result; } catch (std::exception const &err) { throw Napi::Error::New(env, err.what()); } }