1139 lines
42 KiB
C++
1139 lines
42 KiB
C++
#pragma comment(lib, "dxgi.lib")
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#pragma comment(lib, "d3d11.lib")
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#include "polyvox_filament_plugin.h"
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// This must be included before many other Windows headers.
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#include <windows.h>
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// For getPlatformVersion; remove unless needed for your plugin implementation.
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#include <VersionHelpers.h>
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#include <flutter/method_channel.h>
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#include <flutter/plugin_registrar_windows.h>
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#include <flutter/standard_method_codec.h>
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#include <flutter/texture_registrar.h>
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#include <codecvt>
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#include <cstring>
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#include <filesystem>
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#include <fstream>
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#include <iostream>
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#include <locale>
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#include <map>
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#include <math.h>
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#include <memory>
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#include <sstream>
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#include <string>
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#include <vector>
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#include <future>
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#include "GL/GL.h"
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#include "GL/GLu.h"
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#include "GL/wglext.h"
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#include "PolyvoxFilamentApi.h"
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#include "ThreadPool.hpp"
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namespace polyvox_filament {
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static ThreadPool* _tp;
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// static
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void PolyvoxFilamentPlugin::RegisterWithRegistrar(
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flutter::PluginRegistrarWindows *registrar) {
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auto channel =
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std::make_unique<flutter::MethodChannel<flutter::EncodableValue>>(
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registrar->messenger(), "app.polyvox.filament/event",
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&flutter::StandardMethodCodec::GetInstance());
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auto plugin = std::make_unique<PolyvoxFilamentPlugin>(
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registrar->texture_registrar(), registrar);
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channel->SetMethodCallHandler(
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[plugin_pointer = plugin.get()](const auto &call, auto result) {
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plugin_pointer->HandleMethodCall(call, std::move(result));
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});
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registrar->AddPlugin(std::move(plugin));
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}
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PolyvoxFilamentPlugin::PolyvoxFilamentPlugin(
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flutter::TextureRegistrar *textureRegistrar,
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flutter::PluginRegistrarWindows *pluginRegistrar)
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: _textureRegistrar(textureRegistrar), _pluginRegistrar(pluginRegistrar) {}
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PolyvoxFilamentPlugin::~PolyvoxFilamentPlugin() {}
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ResourceBuffer PolyvoxFilamentPlugin::loadResource(const char *name) {
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TCHAR pBuf[256];
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size_t len = sizeof(pBuf);
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int bytes = GetModuleFileName(NULL, pBuf, len);
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std::wstring_convert<std::codecvt_utf8_utf16<wchar_t>> converter;
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std::wstring assetPath = converter.from_bytes(name);
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std::wstring exePathBuf(pBuf);
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std::filesystem::path exePath(exePathBuf);
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auto exeDir = exePath.remove_filename();
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std::filesystem::path p(exeDir.wstring() + L"data/flutter_assets/" +
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assetPath);
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std::wcout << "Loading from " << p << std::endl;
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std::streampos length;
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std::ifstream is(p.c_str(), std::ios::binary);
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if (!is) {
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std::cout << "Failed to find resource at file path " << p << std::endl;
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return ResourceBuffer(nullptr, 0, -1);
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}
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is.seekg(0, std::ios::end);
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length = is.tellg();
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char *buffer;
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buffer = new char[length];
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is.seekg(0, std::ios::beg);
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is.read(buffer, length);
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is.close();
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auto id = _resources.size();
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auto rb = ResourceBuffer(buffer, length, id);
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_resources.emplace(id, rb);
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return rb;
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}
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void PolyvoxFilamentPlugin::freeResource(ResourceBuffer rbuf) {
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free((void *)rbuf.data);
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}
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static ResourceBuffer _loadResource(const char *path, void *const plugin) {
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return ((PolyvoxFilamentPlugin *)plugin)->loadResource(path);
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}
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static void _freeResource(ResourceBuffer rbf, void *const plugin) {
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((PolyvoxFilamentPlugin *)plugin)->freeResource(rbf);
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}
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void PolyvoxFilamentPlugin::CreateFilamentViewer(
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const flutter::MethodCall<flutter::EncodableValue> &methodCall,
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std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
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if(!_tp) {
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_tp = new ThreadPool();
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}
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const auto *args =
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std::get_if<flutter::EncodableList>(methodCall.arguments());
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const auto width = uint32_t(*(std::get_if<double>(&(args->at(0)))));
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const auto height = uint32_t(*(std::get_if<double>(&(args->at(1)))));
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const ResourceLoaderWrapper *const resourceLoader =
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new ResourceLoaderWrapper(_loadResource, _freeResource, this);
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wglMakeCurrent(NULL, NULL);
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std::packaged_task<void()> lambda([&]() mutable {
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_viewer = (void *)create_filament_viewer(_context, resourceLoader);
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// auto hwnd = _pluginRegistrar->GetView()->GetNativeWindow();
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create_swap_chain(_viewer, nullptr, width, height);
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create_render_target(_viewer, _glTextureId, width, height);
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result->Success(flutter::EncodableValue((int64_t)_viewer));
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});
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std::thread([&]() {
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while (true)
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{
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if(_rendering) {
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std::packaged_task<void()> renderLambda([&]() mutable {
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render(_viewer, 0, nullptr, nullptr, nullptr);
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_textureRegistrar->MarkTextureFrameAvailable(_flutterTextureId);
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});
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_tp->add_task(renderLambda);
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}
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std::this_thread::sleep_for(
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std::chrono::milliseconds(_frameIntervalInMilliseconds));
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}
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}).detach();
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auto fut = _tp->add_task(lambda);
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fut.wait();
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}
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void PolyvoxFilamentPlugin::Render(
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const flutter::MethodCall<flutter::EncodableValue> &methodCall,
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std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
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auto callback = [](void *buf, size_t size, void *data) {
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auto plugin = (PolyvoxFilamentPlugin *)data;
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plugin->_textureRegistrar->MarkTextureFrameAvailable(
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plugin->_flutterTextureId);
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};
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_D3D11DeviceContext->CopyResource(_externalD3DTexture2D.Get(),
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_internalD3DTexture2D.Get());
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_D3D11DeviceContext->Flush();
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// render(_viewer, 0, _pixelData.get(), callback, this);
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std::packaged_task<void()> lambda([=]() mutable {
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render(_viewer, 0, nullptr, nullptr, nullptr);
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_textureRegistrar->MarkTextureFrameAvailable(_flutterTextureId);
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});
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auto fut = _tp->add_task(lambda);
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fut.wait();
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result->Success(flutter::EncodableValue(true));
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}
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void PolyvoxFilamentPlugin::SetRendering(
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const flutter::MethodCall<flutter::EncodableValue> &methodCall,
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std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
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_rendering = *(std::get_if<bool>(methodCall.arguments()));
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result->Success(flutter::EncodableValue("OK"));
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}
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void PolyvoxFilamentPlugin::CreateTexture(
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const flutter::MethodCall<flutter::EncodableValue> &methodCall,
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std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
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const auto *args =
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std::get_if<flutter::EncodableList>(methodCall.arguments());
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const auto width = (uint32_t)round(*(std::get_if<double>(&(args->at(0)))));
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const auto height = (uint32_t)round(*(std::get_if<double>(&(args->at(1)))));
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EGLSurface surface_ = EGL_NO_SURFACE;
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EGLDisplay display_ = EGL_NO_DISPLAY;
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EGLContext context_ = nullptr;
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EGLConfig config_ = nullptr;
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void* bar = eglGetProcAddress;
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void* foo = eglGetProcAddress("eglGetPlatformDisplayEXT");
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if (display_ == EGL_NO_DISPLAY) {
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auto eglGetPlatformDisplayEXT =
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reinterpret_cast<PFNEGLGETPLATFORMDISPLAYEXTPROC>(
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eglGetProcAddress("eglGetPlatformDisplayEXT"));
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if (eglGetPlatformDisplayEXT) {
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display_ = eglGetPlatformDisplayEXT(EGL_PLATFORM_ANGLE_ANGLE,
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EGL_DEFAULT_DISPLAY,
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kD3D11DisplayAttributes);
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if (eglInitialize(display_, 0, 0) == EGL_FALSE) {
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display_ = eglGetPlatformDisplayEXT(EGL_PLATFORM_ANGLE_ANGLE,
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EGL_DEFAULT_DISPLAY,
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kD3D11_9_3DisplayAttributes);
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if (eglInitialize(display_, 0, 0) == EGL_FALSE) {
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display_ = eglGetPlatformDisplayEXT(EGL_PLATFORM_ANGLE_ANGLE,
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EGL_DEFAULT_DISPLAY,
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kD3D9DisplayAttributes);
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if (eglInitialize(display_, 0, 0) == EGL_FALSE) {
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display_ = eglGetPlatformDisplayEXT(EGL_PLATFORM_ANGLE_ANGLE,
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EGL_DEFAULT_DISPLAY,
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kWrapDisplayAttributes);
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if (eglInitialize(display_, 0, 0) == EGL_FALSE) {
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result->Error("eglGetPlatformDisplayEXT");
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}
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}
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}
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}
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} else {
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result->Error("eglGetProcAddress");
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}
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}
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IDXGIAdapter* adapter_ = nullptr;
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// first, we need to initialize the D3D device and create the backing texture
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// this has been taken from https://github.com/alexmercerind/flutter-windows-ANGLE-OpenGL-ES/blob/master/windows/angle_surface_manager.cc
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auto feature_levels = {
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D3D_FEATURE_LEVEL_11_0,
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D3D_FEATURE_LEVEL_10_1,
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D3D_FEATURE_LEVEL_10_0,
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D3D_FEATURE_LEVEL_9_3,
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};
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// NOTE: Not enabling DirectX 12.
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// |D3D11CreateDevice| crashes directly on Windows 7.
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// D3D_FEATURE_LEVEL_12_2, D3D_FEATURE_LEVEL_12_1, D3D_FEATURE_LEVEL_12_0,
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// D3D_FEATURE_LEVEL_11_1, D3D_FEATURE_LEVEL_11_0, D3D_FEATURE_LEVEL_10_1,
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// D3D_FEATURE_LEVEL_10_0, D3D_FEATURE_LEVEL_9_3,
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IDXGIFactory* dxgi = nullptr;
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::CreateDXGIFactory(__uuidof(IDXGIFactory), (void**)&dxgi);
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// Manually selecting adapter. As far as my experience goes, this is the
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// safest approach. Passing NULL (so-called default) seems to cause issues
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// on Windows 7 or maybe some older graphics drivers.
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// First adapter is the default.
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// |D3D_DRIVER_TYPE_UNKNOWN| must be passed with manual adapter selection.
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dxgi->EnumAdapters(0, &adapter_);
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dxgi->Release();
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if (!adapter_) {
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result->Error("ERROR", "Failed to locate default D3D adapter", nullptr);
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return;
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}
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DXGI_ADAPTER_DESC adapter_desc_;
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adapter_->GetDesc(&adapter_desc_);
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std::wcout << L"D3D adapter description: " << adapter_desc_.Description << std::endl;
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auto hr = ::D3D11CreateDevice(
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adapter_, D3D_DRIVER_TYPE_UNKNOWN, 0, 0, feature_levels.begin(),
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static_cast<UINT>(feature_levels.size()), D3D11_SDK_VERSION,
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&_D3D11Device, 0, &_D3D11DeviceContext);
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if (FAILED(hr)) {
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result->Error("ERROR", "Failed to create D3D device", nullptr);
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return;
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}
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std::cout << "Created D3D device" << std::endl;
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D3D11_TEXTURE2D_DESC texDesc = { 0 };
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texDesc.Width = width;
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texDesc.Height = height;
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texDesc.Format = DXGI_FORMAT_B8G8R8A8_UNORM;
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texDesc.MipLevels = 1;
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texDesc.ArraySize = 1;
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texDesc.SampleDesc.Count = 1;
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texDesc.SampleDesc.Quality = 0;
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texDesc.Usage = D3D11_USAGE_DEFAULT;
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texDesc.BindFlags = D3D11_BIND_RENDER_TARGET | D3D11_BIND_SHADER_RESOURCE;
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texDesc.CPUAccessFlags = 0;
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texDesc.MiscFlags = D3D11_RESOURCE_MISC_SHARED;
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// create internal texture
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hr = _D3D11Device->CreateTexture2D(&texDesc, nullptr, &_internalD3DTexture2D);
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if FAILED(hr)
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{
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result->Error("ERROR", "Failed to create D3D texture", nullptr);
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return;
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}
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auto resource = Microsoft::WRL::ComPtr<IDXGIResource>{};
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hr = _internalD3DTexture2D.As(&resource);
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if FAILED(hr) {
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result->Error("ERROR", "Failed to create D3D texture", nullptr);
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return;
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}
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hr = resource->GetSharedHandle(&_internalD3DTextureHandle);
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if FAILED(hr) {
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result->Error("ERROR", "Failed to get shared handle to D3D texture", nullptr);
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return;
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}
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_internalD3DTexture2D->AddRef();
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std::cout << "Created internal D3D texture" << std::endl;
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// external
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hr = _D3D11Device->CreateTexture2D(&texDesc, nullptr, &_externalD3DTexture2D);
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if FAILED(hr)
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{
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result->Error("ERROR", "Failed to create D3D texture", nullptr);
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return;
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}
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resource = Microsoft::WRL::ComPtr<IDXGIResource>{};
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hr = _externalD3DTexture2D.As(&resource);
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if FAILED(hr) {
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result->Error("ERROR", "Failed to create D3D texture", nullptr);
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return;
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}
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hr = resource->GetSharedHandle(&_externalD3DTextureHandle);
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if FAILED(hr) {
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result->Error("ERROR", "Failed to get shared handle to external D3D texture", nullptr);
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return;
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}
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_externalD3DTexture2D->AddRef();
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std::cout << "Created external D3D texture" << std::endl;
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HWND hwnd = _pluginRegistrar->GetView()
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->GetNativeWindow(); // CreateWindowA("STATIC", "dummy", 0, 0,
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// 0, 1, 1, NULL, NULL, NULL, NULL);
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HDC whdc = GetDC(hwnd);
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if (whdc == NULL) {
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result->Error("ERROR", "No device context for temporary window", nullptr);
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return;
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}
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PIXELFORMATDESCRIPTOR pfd = {
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sizeof(PIXELFORMATDESCRIPTOR),
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1,
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PFD_DRAW_TO_WINDOW | PFD_SUPPORT_OPENGL | PFD_DOUBLEBUFFER, // Flags
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PFD_TYPE_RGBA, // The kind of framebuffer. RGBA or palette.
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32, // Colordepth of the framebuffer.
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0,
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0,
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0,
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0,
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0,
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0,
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0,
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0,
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0,
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0,
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0,
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0,
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0,
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24, // Number of bits for the depthbuffer
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0, // Number of bits for the stencilbuffer
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0, // Number of Aux buffers in the framebuffer.
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PFD_MAIN_PLANE,
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0,
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0,
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0,
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0};
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int pixelFormat = ChoosePixelFormat(whdc, &pfd);
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SetPixelFormat(whdc, pixelFormat, &pfd);
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// We need a tmp context to retrieve and call wglCreateContextAttribsARB.
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HGLRC tempContext = wglCreateContext(whdc);
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if (!wglMakeCurrent(whdc, tempContext)) {
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result->Error("ERROR", "Failed to acquire temporary context", nullptr);
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return;
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}
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PFNWGLCREATECONTEXTATTRIBSARBPROC wglCreateContextAttribs = nullptr;
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wglCreateContextAttribs =
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(PFNWGLCREATECONTEXTATTRIBSARBPROC)wglGetProcAddress(
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"wglCreateContextAttribsARB");
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if (!wglCreateContextAttribs) {
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result->Error("ERROR", "Failed to resolve wglCreateContextAttribsARB",
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nullptr);
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return;
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}
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for (int minor = 5; minor >= 1; minor--) {
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std::vector<int> mAttribs = {WGL_CONTEXT_MAJOR_VERSION_ARB, 4,
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WGL_CONTEXT_MINOR_VERSION_ARB, minor, 0};
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_context = wglCreateContextAttribs(whdc, nullptr, mAttribs.data());
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if (_context) {
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break;
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}
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}
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wglMakeCurrent(NULL, NULL);
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wglDeleteContext(tempContext);
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hwnd = _pluginRegistrar->GetView()->GetNativeWindow();
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whdc = GetDC(hwnd);
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if (whdc == NULL) {
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result->Error("ERROR", "No device context for actual window", nullptr);
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return;
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}
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if (!_context || !wglMakeCurrent(whdc, _context)) {
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result->Error("ERROR", "Failed to create OpenGL context.");
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return;
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}
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glGenTextures(1, &_glTextureId);
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GLenum err = glGetError();
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if (err != GL_NO_ERROR) {
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result->Error("ERROR", "Failed to generate texture, GL error was %d", err);
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return;
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}
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glBindTexture(GL_TEXTURE_2D, _glTextureId);
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// glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
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// glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
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// glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP);
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// glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP);
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glTexImage2D(GL_TEXTURE_2D, 0, GL_RGBA8, width, height, 0, GL_RGBA,
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GL_UNSIGNED_BYTE, 0);
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err = glGetError();
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if (err != GL_NO_ERROR) {
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result->Error("ERROR", "Failed to generate texture, GL error was %d", err);
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return;
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}
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// _pixelData.reset(new uint8_t[width * height * 4]);
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// _pixelBuffer = std::make_unique<FlutterDesktopPixelBuffer>();
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// _pixelBuffer->buffer = _pixelData.get();
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// _pixelBuffer->width = size_t(width);
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// _pixelBuffer->height = size_t(height);
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// _texture =
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// std::make_unique<flutter::TextureVariant>(flutter::PixelBufferTexture(
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// [=](size_t width,
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// size_t height) -> const FlutterDesktopPixelBuffer * {
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// if(!_context || !wglMakeCurrent(whdc, _context)) {
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// std::cout << "Failed to switch OpenGL context." << std::endl;
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// } else {
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// uint8_t* data = new uint8_t[width*height*4];
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// glBindTexture(GL_TEXTURE_2D, _glTextureId);
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// glGetTexImage(GL_TEXTURE_2D,0,GL_RGBA,GL_UNSIGNED_BYTE,data);
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// GLenum err = glGetError();
|
|
|
|
// if(err != GL_NO_ERROR) {
|
|
// if(err == GL_INVALID_OPERATION) {
|
|
// std::cout << "Invalid op" << std::endl;
|
|
// } else if(err == GL_INVALID_VALUE) {
|
|
// std::cout << "Invalid value" << std::endl;
|
|
// } else if(err == GL_OUT_OF_MEMORY) {
|
|
// std::cout << "Out of mem" << std::endl;
|
|
// } else if(err == GL_INVALID_ENUM ) {
|
|
// std::cout << "Invalid enum" << std::endl;
|
|
// } else {
|
|
// std::cout << "Unknown error" << std::endl;
|
|
// }
|
|
// }
|
|
|
|
// _pixelData.reset(data);
|
|
// wglMakeCurrent(NULL, NULL);
|
|
// }
|
|
// _pixelBuffer->buffer = _pixelData.get();
|
|
|
|
// return _pixelBuffer.get();
|
|
// }));
|
|
|
|
_textureDescriptor = std::make_unique<FlutterDesktopGpuSurfaceDescriptor>();
|
|
_textureDescriptor->struct_size = sizeof(FlutterDesktopGpuSurfaceDescriptor);
|
|
_textureDescriptor->handle = _externalD3DTextureHandle;
|
|
_textureDescriptor->width = _textureDescriptor->visible_width = width;
|
|
_textureDescriptor->height = _textureDescriptor->visible_height = height;
|
|
_textureDescriptor->release_context = nullptr;
|
|
_textureDescriptor->release_callback = [](void* release_context) {};
|
|
_textureDescriptor->format = kFlutterDesktopPixelFormatBGRA8888;
|
|
|
|
_texture =
|
|
std::make_unique<flutter::TextureVariant>(flutter::GpuSurfaceTexture(
|
|
kFlutterDesktopGpuSurfaceTypeDxgiSharedHandle,
|
|
[&](auto, auto) { return _textureDescriptor.get(); }));
|
|
|
|
_flutterTextureId = _textureRegistrar->RegisterTexture(_texture.get());
|
|
std::cout << "Registered Flutter texture ID " << _flutterTextureId << std::endl;
|
|
result->Success(flutter::EncodableValue(_flutterTextureId));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::SetBackgroundImage(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
const auto path = std::get_if<std::string>(&(args->at(0)));
|
|
const auto fillHeight = std::get_if<bool>(&(args->at(1)));
|
|
std::packaged_task<void()> lambda([&]() mutable {
|
|
set_background_image(_viewer, path->c_str(), *fillHeight);
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
fut.wait();
|
|
|
|
result->Success(flutter::EncodableValue(true));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::SetBackgroundColor(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
const auto r = std::get_if<double>(&(args->at(0)));
|
|
const auto g = std::get_if<double>(&(args->at(1)));
|
|
const auto b = std::get_if<double>(&(args->at(2)));
|
|
const auto a = std::get_if<double>(&(args->at(3)));
|
|
std::packaged_task<void()> lambda([&]() mutable {
|
|
set_background_color(_viewer, static_cast<float>(*r), static_cast<float>(*g),
|
|
static_cast<float>(*b), static_cast<float>(*a));
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
fut.wait();
|
|
|
|
result->Success(flutter::EncodableValue(true));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::GetAssetManager(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
auto assetManager = get_asset_manager(_viewer);
|
|
result->Success(flutter::EncodableValue((int64_t)assetManager));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::UpdateViewportAndCameraProjection(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
|
|
const auto width = std::get_if<int32_t>(&(args->at(0)));
|
|
const auto height = std::get_if<int32_t>(&(args->at(1)));
|
|
const auto scaleFactor = std::get_if<double>(&(args->at(2)));
|
|
|
|
update_viewport_and_camera_projection(_viewer, (uint32_t)*width,
|
|
(uint32_t)*height,
|
|
static_cast<double>(*scaleFactor));
|
|
result->Success(flutter::EncodableValue(true));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::LoadSkybox(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
const auto *args = std::get_if<std::string>(methodCall.arguments());
|
|
std::packaged_task<void()> lambda([&]() mutable {
|
|
load_skybox(_viewer, (*args).c_str());
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
fut.wait();
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::RemoveIbl(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
std::packaged_task<void()> lambda([&]() mutable {
|
|
remove_ibl(_viewer);
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
fut.wait();
|
|
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::LoadIbl(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
const auto path = std::get_if<std::string>(&(args->at(0)));
|
|
const auto intensity = std::get_if<double>(&(args->at(1)));
|
|
std::packaged_task<void()> lambda([&]() mutable {
|
|
load_ibl(_viewer, (*path).c_str(), static_cast<float>(*intensity));
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
fut.wait();
|
|
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::RemoveSkybox(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
std::packaged_task<void()> lambda([&]() mutable {
|
|
remove_skybox(_viewer);
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
fut.wait();
|
|
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::AddLight(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
const auto type = *std::get_if<int>(&(args->at(0)));
|
|
const auto color = *std::get_if<double>(&(args->at(1)));
|
|
const auto intensity = *std::get_if<double>(&(args->at(2)));
|
|
const auto posX = *std::get_if<double>(&(args->at(3)));
|
|
const auto posY = *std::get_if<double>(&(args->at(4)));
|
|
const auto posZ = *std::get_if<double>(&(args->at(5)));
|
|
const auto dirX = *std::get_if<double>(&(args->at(6)));
|
|
const auto dirY = *std::get_if<double>(&(args->at(7)));
|
|
const auto dirZ = *std::get_if<double>(&(args->at(8)));
|
|
const auto shadows = *std::get_if<bool>(&(args->at(9)));
|
|
|
|
std::packaged_task<void()> lambda([&]() mutable {
|
|
auto entityId = add_light(_viewer, type, color, intensity, posX, posY, posZ,
|
|
dirX, dirY, dirZ, shadows);
|
|
result->Success(flutter::EncodableValue(entityId));
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
fut.wait();
|
|
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::LoadGlb(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
|
|
const auto assetManager = *std::get_if<int64_t>(&(args->at(0)));
|
|
const auto path = *std::get_if<std::string>(&(args->at(1)));
|
|
const auto unlit = *std::get_if<bool>(&(args->at(2)));
|
|
|
|
std::packaged_task<void()> lambda([&]() mutable {
|
|
auto entityId = load_glb((void *)assetManager, path.c_str(), unlit);
|
|
result->Success(flutter::EncodableValue(entityId));
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
fut.wait();
|
|
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::GetAnimationNames(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
|
|
const auto assetManager = *std::get_if<int64_t>(&(args->at(0)));
|
|
const auto asset = *std::get_if<int32_t>(&(args->at(1)));
|
|
|
|
std::vector<flutter::EncodableValue> names;
|
|
|
|
auto numNames = get_animation_count((void *)assetManager, asset);
|
|
|
|
for (int i = 0; i < numNames; i++) {
|
|
char out[255];
|
|
get_animation_name((void *)assetManager, asset, out, i);
|
|
names.push_back(flutter::EncodableValue(out));
|
|
}
|
|
|
|
result->Success(names);
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::RemoveAsset(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
const auto asset = *std::get_if<int>(&(args->at(1)));
|
|
std::packaged_task<void()> lambda([&]() mutable {
|
|
remove_asset(_viewer, asset);
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
fut.wait();
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::TransformToUnitCube(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
|
|
const auto assetManager = *std::get_if<int64_t>(&(args->at(0)));
|
|
const auto asset = *std::get_if<int32_t>(&(args->at(1)));
|
|
std::packaged_task<void()> lambda([&]() mutable {
|
|
transform_to_unit_cube((void *)assetManager, asset);
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
fut.wait();
|
|
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::RotateStart(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
|
|
const auto x = *std::get_if<double>(&(args->at(0)));
|
|
const auto y = *std::get_if<double>(&(args->at(1)));
|
|
|
|
std::packaged_task<void()> lambda([=]() mutable {
|
|
grab_begin(_viewer, static_cast<float>(x), static_cast<float>(y), false);
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::RotateEnd(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
std::packaged_task<void()> lambda([=]() mutable {
|
|
grab_end(_viewer);
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::RotateUpdate(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
const auto x = *std::get_if<double>(&(args->at(0)));
|
|
const auto y = *std::get_if<double>(&(args->at(1)));
|
|
std::packaged_task<void()> lambda([=]() mutable {
|
|
grab_update(_viewer, static_cast<float>(x), static_cast<float>(y));
|
|
});
|
|
auto fut = _tp->add_task(lambda);
|
|
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::PanStart(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
|
|
const auto x = *std::get_if<double>(&(args->at(0)));
|
|
const auto y = *std::get_if<double>(&(args->at(1)));
|
|
|
|
grab_begin(_viewer, static_cast<float>(x), static_cast<float>(y), true);
|
|
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::PanUpdate(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
|
|
const auto x = *std::get_if<double>(&(args->at(0)));
|
|
const auto y = *std::get_if<double>(&(args->at(1)));
|
|
|
|
grab_update(_viewer, static_cast<float>(x), static_cast<float>(y));
|
|
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::PanEnd(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
grab_end(_viewer);
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::SetPosition(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
const auto assetManager = *std::get_if<int64_t>(&(args->at(0)));
|
|
const auto asset = *std::get_if<int32_t>(&(args->at(1)));
|
|
const auto x = *std::get_if<double>(&(args->at(2)));
|
|
const auto y = *std::get_if<double>(&(args->at(3)));
|
|
const auto z = *std::get_if<double>(&(args->at(4)));
|
|
|
|
set_position((void *)assetManager, asset, static_cast<float>(x),
|
|
static_cast<float>(y), static_cast<float>(z));
|
|
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::SetRotation(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
const auto assetManager = *std::get_if<int64_t>(&(args->at(0)));
|
|
const auto asset = *std::get_if<int32_t>(&(args->at(1)));
|
|
const auto rads = *std::get_if<double>(&(args->at(2)));
|
|
const auto x = *std::get_if<double>(&(args->at(3)));
|
|
const auto y = *std::get_if<double>(&(args->at(4)));
|
|
const auto z = *std::get_if<double>(&(args->at(5)));
|
|
|
|
set_rotation((void *)assetManager, asset, static_cast<float>(rads),
|
|
static_cast<float>(x), static_cast<float>(y),
|
|
static_cast<float>(z));
|
|
|
|
result->Success(flutter::EncodableValue("OK"));
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::GrabBegin(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
|
|
const auto x = static_cast<float>(*std::get_if<double>(&(args->at(0))));
|
|
const auto y = static_cast<float>(*std::get_if<double>(&(args->at(1))));
|
|
auto pan = std::get_if<bool>(&(args->at(2)));
|
|
|
|
grab_begin(_viewer, x, y, pan);
|
|
|
|
flutter::EncodableValue response("OK");
|
|
|
|
result->Success(response);
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::GrabEnd(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
grab_end(_viewer);
|
|
flutter::EncodableValue response("OK");
|
|
result->Success(response);
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::GrabUpdate(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
|
|
const auto *args =
|
|
std::get_if<flutter::EncodableList>(methodCall.arguments());
|
|
|
|
const auto x = static_cast<float>(*std::get_if<double>(&(args->at(0))));
|
|
const auto y = static_cast<float>(*std::get_if<double>(&(args->at(1))));
|
|
|
|
grab_update(_viewer, x, y);
|
|
|
|
flutter::EncodableValue response("OK");
|
|
|
|
result->Success(response);
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::ScrollBegin(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
scroll_begin(_viewer);
|
|
flutter::EncodableValue response("OK");
|
|
result->Success(response);
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::ScrollEnd(
|
|
const flutter::MethodCall<flutter::EncodableValue> &methodCall,
|
|
std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
|
|
scroll_end(_viewer);
|
|
flutter::EncodableValue response("OK");
|
|
result->Success(response);
|
|
}
|
|
|
|
void PolyvoxFilamentPlugin::ScrollUpdate(
|
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const flutter::MethodCall<flutter::EncodableValue> &methodCall,
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std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
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const auto *args = std::get_if<flutter::EncodableList>(methodCall.arguments());
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const float x = static_cast<float>(*std::get_if<double>(&(args->at(0))));
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const float y = static_cast<float>(*std::get_if<double>(&(args->at(1))));
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const float z = static_cast<float>(*std::get_if<double>(&(args->at(2))));
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scroll_update(_viewer, x, y, z);
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flutter::EncodableValue response("OK");
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result->Success(response);
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}
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void PolyvoxFilamentPlugin::HandleMethodCall(
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const flutter::MethodCall<flutter::EncodableValue> &methodCall,
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std::unique_ptr<flutter::MethodResult<flutter::EncodableValue>> result) {
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// std::cout << methodCall.method_name() << std::endl;
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if (methodCall.method_name() == "createFilamentViewer") {
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CreateFilamentViewer(methodCall, std::move(result));
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} else if (methodCall.method_name() == "createTexture") {
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CreateTexture(methodCall, std::move(result));
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} else if (methodCall.method_name() == "setBackgroundImage") {
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SetBackgroundImage(methodCall, std::move(result));
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} else if (methodCall.method_name() == "setBackgroundColor") {
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SetBackgroundColor(methodCall, std::move(result));
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} else if (methodCall.method_name() == "render") {
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Render(methodCall, std::move(result));
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} else if (methodCall.method_name() == "setRendering") {
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SetRendering(methodCall, std::move(result));
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} else if (methodCall.method_name() == "updateViewportAndCameraProjection") {
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UpdateViewportAndCameraProjection(methodCall, std::move(result));
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} else if (methodCall.method_name() == "getAssetManager") {
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GetAssetManager(methodCall, std::move(result));
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} else if (methodCall.method_name() == "addLight") {
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AddLight(methodCall, std::move(result));
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} else if (methodCall.method_name() == "loadGlb") {
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LoadGlb(methodCall, std::move(result));
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} else if (methodCall.method_name() == "loadSkybox") {
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LoadSkybox(methodCall, std::move(result));
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} else if (methodCall.method_name() == "loadIbl") {
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LoadIbl(methodCall, std::move(result));
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} else if (methodCall.method_name() == "removeIbl") {
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RemoveIbl(methodCall, std::move(result));
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} else if (methodCall.method_name() == "removeSkybox") {
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RemoveSkybox(methodCall, std::move(result));
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} else if (methodCall.method_name() == "addLight") {
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AddLight(methodCall, std::move(result));
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} else if (methodCall.method_name() == "getAnimationNames") {
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GetAnimationNames(methodCall, std::move(result));
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} else if (methodCall.method_name() == "removeAsset") {
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RemoveAsset(methodCall, std::move(result));
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} else if (methodCall.method_name() == "transformToUnitCube") {
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TransformToUnitCube(methodCall, std::move(result));
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} else if (methodCall.method_name() == "rotateStart") {
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RotateStart(methodCall, std::move(result));
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} else if (methodCall.method_name() == "rotateEnd") {
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RotateEnd(methodCall, std::move(result));
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} else if (methodCall.method_name() == "rotateUpdate") {
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RotateUpdate(methodCall, std::move(result));
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} else if (methodCall.method_name() == "panStart") {
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PanStart(methodCall, std::move(result));
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} else if (methodCall.method_name() == "panUpdate") {
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PanUpdate(methodCall, std::move(result));
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} else if (methodCall.method_name() == "panEnd") {
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PanEnd(methodCall, std::move(result));
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} else if (methodCall.method_name() == "setPosition") {
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SetPosition(methodCall, std::move(result));
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} else if (methodCall.method_name() == "setRotation") {
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SetRotation(methodCall, std::move(result));
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} else if (methodCall.method_name() == "grabBegin") {
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GrabBegin(methodCall, std::move(result));
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} else if (methodCall.method_name() == "grabEnd") {
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GrabEnd(methodCall, std::move(result));
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} else if (methodCall.method_name() == "grabUpdate") {
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GrabUpdate(methodCall, std::move(result));
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} else if (methodCall.method_name() == "scrollBegin") {
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ScrollBegin(methodCall, std::move(result));
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} else if (methodCall.method_name() == "scrollEnd") {
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ScrollEnd(methodCall, std::move(result));
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} else if (methodCall.method_name() == "scrollUpdate") {
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ScrollUpdate(methodCall, std::move(result));
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} else {
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result->NotImplemented();
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}
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// } else if(strcmp(method, "setToneMapping") == 0) {
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// response = _set_tone_mapping(self, methodCall);
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// } else if(strcmp(method, "setBloom") == 0) {
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// response = _set_bloom(self, methodCall);
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// } else if(strcmp(method, "resize") == 0) {
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// response = _resize(self, methodCall);
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// } else if(strcmp(method, "getContext") == 0) {
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// g_autoptr(FlValue) result =
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// fl_value_new_int(reinterpret_cast<int64_t>(glXGetCurrentContext()));
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// response = FL_METHOD_RESPONSE(fl_method_success_response_new(result));
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// } else if(strcmp(method, "getGlTextureId") == 0) {
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// g_autoptr(FlValue) result =
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// fl_value_new_int(reinterpret_cast<unsigned
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// int>(((FilamentTextureGL*)self->texture)->texture_id));
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// response = FL_METHOD_RESPONSE(fl_method_success_response_new(result));
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// } else if(strcmp(method, "getResourceLoader") == 0) {
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// ResourceLoaderWrapper* resourceLoader = new
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// ResourceLoaderWrapper(loadResource, freeResource); g_autoptr(FlValue)
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// result =
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// fl_value_new_int(reinterpret_cast<int64_t>(resourceLoader));
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// response = FL_METHOD_RESPONSE(fl_method_success_response_new(result));
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// } else if(strcmp(method, "setRendering") == 0) {
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// self->rendering = fl_value_get_bool(fl_methodCall_get_args(methodCall));
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// response =
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// FL_METHOD_RESPONSE(fl_method_success_response_new(fl_value_new_string("OK")));
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// } else if(strcmp(method, "setCamera") == 0) {
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// response = _set_camera(self, method_call);
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// } else if(strcmp(method, "setCameraModelMatrix") == 0) {
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// response = _set_camera_model_matrix(self, method_call);
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// } else if(strcmp(method, "setCameraExposure") == 0) {
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// response = _set_camera_exposure(self, method_call);
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// } else if(strcmp(method, "setCameraPosition") == 0) {
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// response = _set_camera_position(self, method_call);
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// } else if(strcmp(method, "setCameraRotation") == 0) {
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// response = _set_camera_rotation(self, method_call);
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// } else if(strcmp(method, "setFrameInterval") == 0) {
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// response = _set_frame_interval(self, method_call);
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// } else if(strcmp(method, "scrollBegin") == 0) {
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// response = _scroll_begin(self, method_call);
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// } else if(strcmp(method, "scrollEnd") == 0) {
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// response = _scroll_end(self, method_call);
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// } else if(strcmp(method, "scrollUpdate") == 0) {
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// response = _scroll_update(self, method_call);
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// } else if(strcmp(method, "grabBegin") == 0) {
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// response = _grab_begin(self, method_call);
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// } else if(strcmp(method, "grabEnd") == 0) {
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// response = _grab_end(self, method_call);
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// } else if(strcmp(method, "grabUpdate") == 0) {
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// response = _grab_update(self, method_call);
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// } else if(strcmp(method, "playAnimation") == 0) {
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// response = _play_animation(self, method_call);
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// } else if(strcmp(method, "stopAnimation") == 0) {
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// response = _stop_animation(self, method_call);
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// } else if(strcmp(method, "setMorphTargetWeights") == 0) {
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// response = _set_morph_target_weights(self, method_call);
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// } else if(strcmp(method, "setMorphAnimation") == 0) {
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// response = _set_morph_animation(self, method_call);
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// } else if(strcmp(method, "getMorphTargetNames") == 0) {
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// response = _get_morph_target_names(self, method_call);
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// } else if(strcmp(method, "setPosition") == 0) {
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// response = _set_position(self, method_call);
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// } else if(strcmp(method, "setBoneTransform") == 0) {
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// response = _set_bone_transform(self, method_call);
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// } else {
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// response = FL_METHOD_RESPONSE(fl_method_not_implemented_response_new());
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// }
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// fl_method_call_respond(method_call, response, nullptr);
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}
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} // namespace polyvox_filament
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// glfwInit();
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// glfwWindowHint(GLFW_CONTEXT_VERSION_MAJOR, 3);
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// glfwWindowHint(GLFW_CONTEXT_VERSION_MINOR, 3);
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// glfwWindowHint(GLFW_OPENGL_PROFILE, GLFW_OPENGL_CORE_PROFILE);
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// glfwWindowHint(GLFW_VISIBLE, GLFW_FALSE);
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// GLFWwindow* window = glfwCreateWindow(1024, 768, "", nullptr, nullptr);
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// if (!window) {
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// std::cout << "Failed to create GLFW window" << std::endl;
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// glfwTerminate();
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// return;
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// }
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// glfwMakeContextCurrent(window);
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// glClearColor(0.1f, 0.2f, 0.3f, 1.0f);
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// glClear(GL_COLOR_BUFFER_BIT);
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// auto data = new uint8_t[1024*768*4];
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// glReadPixels(0,0, 1024, 768, GL_RGBA, GL_UNSIGNED_BYTE, data);
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// _pixelData.reset(data);
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// GLuint glTextureId = 0;
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// auto textureData = new uint8_t[1024*768*4];
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// for(int y = 0; y < 768; y++) {
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// for(int x=0; x < 1024; x++) {
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// textureData[y*768 + (x*4)] = 0;
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// textureData[y*768 + (x*4+1)] = 255;
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// textureData[y*768 + (x*4+2)] = 0;
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// textureData[y*768 + (x*4+3)] = 255;
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// }
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// }
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// glGenTextures(1, &glTextureId);
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// glBindTexture(GL_TEXTURE_2D, glTextureId);
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// glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
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// glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
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// glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_S, GL_CLAMP);
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// glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_WRAP_T, GL_CLAMP);
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// glTexImage2D(GL_TEXTURE_2D, 0, GL_RGBA8, 1024, 768, 0, GL_RGBA,
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// GL_UNSIGNED_BYTE, textureData);
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// _pixelBuffer = std::make_unique<FlutterDesktopPixelBuffer>();
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// _pixelBuffer->buffer = _pixelData.get();
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// _pixelBuffer->width = 1024;
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// _pixelBuffer->height = 768;
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// _texture =
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// std::make_unique<flutter::TextureVariant>(flutter::PixelBufferTexture(
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// [=](size_t width, size_t height) -> const FlutterDesktopPixelBuffer* {
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// std::cout << "Copying pixel buffer for " << width << "x" << height <<
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// std::endl;
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// // uint8_t* data = _pixelData.get();
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// uint8_t* data = new uint8_t[height*width*4];
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// glReadPixels(0,0, (GLsizei)width, (GLsizei)height, GL_RGB,
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// GL_UNSIGNED_BYTE, data); return _pixelBuffer.get();
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// }));
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// std::cout << "Registering texture" << std::endl;
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// _flutterTextureId = _textureRegistrar->RegisterTexture(_texture.get());
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// _textureRegistrar->MarkTextureFrameAvailable(_flutterTextureId);
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// std::cout << "Registered " << _flutterTextureId << std::endl;
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