wraitii
ba736916fc
ThreadUtil shipped a scope lock and a mutex implementation, which can be removed since we now have these in the standard library. This lets us clean up this header which get included everywhere (through profiler includes). Tested By: Angen and Stan Differential Revision: https://code.wildfiregames.com/D1915 This was SVN commit r22344.
411 lines
14 KiB
C++
411 lines
14 KiB
C++
/* Copyright (C) 2019 Wildfire Games.
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* This file is part of 0 A.D.
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*
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* 0 A.D. is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 2 of the License, or
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* (at your option) any later version.
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*
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* 0 A.D. is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with 0 A.D. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "precompiled.h"
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#include "MapGenerator.h"
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#include "graphics/MapIO.h"
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#include "graphics/Patch.h"
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#include "graphics/Terrain.h"
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#include "lib/external_libraries/libsdl.h"
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#include "lib/status.h"
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#include "lib/timer.h"
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#include "lib/file/vfs/vfs_path.h"
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#include "maths/MathUtil.h"
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#include "ps/CLogger.h"
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#include "ps/FileIo.h"
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#include "ps/Profile.h"
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#include "ps/scripting/JSInterface_VFS.h"
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#include "scriptinterface/ScriptRuntime.h"
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#include "scriptinterface/ScriptConversions.h"
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#include "scriptinterface/ScriptInterface.h"
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#include <string>
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#include <vector>
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// TODO: what's a good default? perhaps based on map size
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#define RMS_RUNTIME_SIZE 96 * 1024 * 1024
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extern bool IsQuitRequested();
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static bool
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MapGeneratorInterruptCallback(JSContext* UNUSED(cx))
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{
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// This may not use SDL_IsQuitRequested(), because it runs in a thread separate to SDL, see SDL_PumpEvents
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if (IsQuitRequested())
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{
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LOGWARNING("Quit requested!");
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return false;
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}
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return true;
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}
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CMapGeneratorWorker::CMapGeneratorWorker()
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{
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// If something happens before we initialize, that's a failure
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m_Progress = -1;
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}
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CMapGeneratorWorker::~CMapGeneratorWorker()
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{
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// Wait for thread to end
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pthread_join(m_WorkerThread, NULL);
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}
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void CMapGeneratorWorker::Initialize(const VfsPath& scriptFile, const std::string& settings)
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{
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std::lock_guard<std::mutex> lock(m_WorkerMutex);
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// Set progress to positive value
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m_Progress = 1;
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m_ScriptPath = scriptFile;
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m_Settings = settings;
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// Launch the worker thread
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int ret = pthread_create(&m_WorkerThread, NULL, &RunThread, this);
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ENSURE(ret == 0);
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}
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void* CMapGeneratorWorker::RunThread(void *data)
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{
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debug_SetThreadName("MapGenerator");
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g_Profiler2.RegisterCurrentThread("MapGenerator");
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CMapGeneratorWorker* self = static_cast<CMapGeneratorWorker*>(data);
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shared_ptr<ScriptRuntime> mapgenRuntime = ScriptInterface::CreateRuntime(g_ScriptRuntime, RMS_RUNTIME_SIZE);
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// Enable the script to be aborted
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JS_SetInterruptCallback(mapgenRuntime->m_rt, MapGeneratorInterruptCallback);
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self->m_ScriptInterface = new ScriptInterface("Engine", "MapGenerator", mapgenRuntime);
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// Run map generation scripts
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if (!self->Run() || self->m_Progress > 0)
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{
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// Don't leave progress in an unknown state, if generator failed, set it to -1
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std::lock_guard<std::mutex> lock(self->m_WorkerMutex);
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self->m_Progress = -1;
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}
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// At this point the random map scripts are done running, so the thread has no further purpose
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// and can die. The data will be stored in m_MapData already if successful, or m_Progress
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// will contain an error value on failure.
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return NULL;
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}
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bool CMapGeneratorWorker::Run()
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{
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// We must destroy the ScriptInterface in the same thread because the JSAPI requires that!
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// Also we must not be in a request when calling the ScriptInterface destructor, so the autoFree object
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// must be instantiated before the request (destructors are called in reverse order of instantiation)
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struct AutoFree {
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AutoFree(ScriptInterface* p) : m_p(p) {}
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~AutoFree() { SAFE_DELETE(m_p); }
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ScriptInterface* m_p;
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} autoFree(m_ScriptInterface);
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JSContext* cx = m_ScriptInterface->GetContext();
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JSAutoRequest rq(cx);
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m_ScriptInterface->SetCallbackData(static_cast<void*> (this));
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// Replace RNG with a seeded deterministic function
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m_ScriptInterface->ReplaceNondeterministicRNG(m_MapGenRNG);
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// Functions for RMS
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JSI_VFS::RegisterScriptFunctions_Maps(*m_ScriptInterface);
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m_ScriptInterface->RegisterFunction<bool, std::wstring, CMapGeneratorWorker::LoadLibrary>("LoadLibrary");
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m_ScriptInterface->RegisterFunction<JS::Value, std::wstring, CMapGeneratorWorker::LoadHeightmap>("LoadHeightmapImage");
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m_ScriptInterface->RegisterFunction<JS::Value, std::string, CMapGeneratorWorker::LoadMapTerrain>("LoadMapTerrain");
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m_ScriptInterface->RegisterFunction<void, JS::HandleValue, CMapGeneratorWorker::ExportMap>("ExportMap");
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m_ScriptInterface->RegisterFunction<void, int, CMapGeneratorWorker::SetProgress>("SetProgress");
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m_ScriptInterface->RegisterFunction<CParamNode, std::string, CMapGeneratorWorker::GetTemplate>("GetTemplate");
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m_ScriptInterface->RegisterFunction<bool, std::string, CMapGeneratorWorker::TemplateExists>("TemplateExists");
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m_ScriptInterface->RegisterFunction<std::vector<std::string>, std::string, bool, CMapGeneratorWorker::FindTemplates>("FindTemplates");
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m_ScriptInterface->RegisterFunction<std::vector<std::string>, std::string, bool, CMapGeneratorWorker::FindActorTemplates>("FindActorTemplates");
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m_ScriptInterface->RegisterFunction<int, CMapGeneratorWorker::GetTerrainTileSize>("GetTerrainTileSize");
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// Globalscripts may use VFS script functions
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m_ScriptInterface->LoadGlobalScripts();
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// Parse settings
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JS::RootedValue settingsVal(cx);
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if (!m_ScriptInterface->ParseJSON(m_Settings, &settingsVal) && settingsVal.isUndefined())
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{
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LOGERROR("CMapGeneratorWorker::Run: Failed to parse settings");
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return false;
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}
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// Prevent unintentional modifications to the settings object by random map scripts
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if (!m_ScriptInterface->FreezeObject(settingsVal, true))
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{
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LOGERROR("CMapGeneratorWorker::Run: Failed to deepfreeze settings");
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return false;
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}
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// Init RNG seed
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u32 seed = 0;
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if (!m_ScriptInterface->HasProperty(settingsVal, "Seed") ||
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!m_ScriptInterface->GetProperty(settingsVal, "Seed", seed))
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LOGWARNING("CMapGeneratorWorker::Run: No seed value specified - using 0");
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m_MapGenRNG.seed(seed);
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// Copy settings to global variable
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JS::RootedValue global(cx, m_ScriptInterface->GetGlobalObject());
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if (!m_ScriptInterface->SetProperty(global, "g_MapSettings", settingsVal, true, true))
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{
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LOGERROR("CMapGeneratorWorker::Run: Failed to define g_MapSettings");
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return false;
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}
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// Load RMS
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LOGMESSAGE("Loading RMS '%s'", m_ScriptPath.string8());
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if (!m_ScriptInterface->LoadGlobalScriptFile(m_ScriptPath))
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{
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LOGERROR("CMapGeneratorWorker::Run: Failed to load RMS '%s'", m_ScriptPath.string8());
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return false;
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}
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return true;
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}
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int CMapGeneratorWorker::GetProgress()
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{
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std::lock_guard<std::mutex> lock(m_WorkerMutex);
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return m_Progress;
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}
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shared_ptr<ScriptInterface::StructuredClone> CMapGeneratorWorker::GetResults()
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{
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std::lock_guard<std::mutex> lock(m_WorkerMutex);
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return m_MapData;
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}
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bool CMapGeneratorWorker::LoadLibrary(ScriptInterface::CxPrivate* pCxPrivate, const std::wstring& name)
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{
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CMapGeneratorWorker* self = static_cast<CMapGeneratorWorker*>(pCxPrivate->pCBData);
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return self->LoadScripts(name);
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}
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void CMapGeneratorWorker::ExportMap(ScriptInterface::CxPrivate* pCxPrivate, JS::HandleValue data)
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{
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CMapGeneratorWorker* self = static_cast<CMapGeneratorWorker*>(pCxPrivate->pCBData);
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// Copy results
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std::lock_guard<std::mutex> lock(self->m_WorkerMutex);
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self->m_MapData = self->m_ScriptInterface->WriteStructuredClone(data);
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self->m_Progress = 0;
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}
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void CMapGeneratorWorker::SetProgress(ScriptInterface::CxPrivate* pCxPrivate, int progress)
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{
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CMapGeneratorWorker* self = static_cast<CMapGeneratorWorker*>(pCxPrivate->pCBData);
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// Copy data
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std::lock_guard<std::mutex> lock(self->m_WorkerMutex);
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if (progress >= self->m_Progress)
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self->m_Progress = progress;
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else
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LOGWARNING("The random map script tried to reduce the loading progress from %d to %d", self->m_Progress, progress);
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}
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CParamNode CMapGeneratorWorker::GetTemplate(ScriptInterface::CxPrivate* pCxPrivate, const std::string& templateName)
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{
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CMapGeneratorWorker* self = static_cast<CMapGeneratorWorker*>(pCxPrivate->pCBData);
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const CParamNode& templateRoot = self->m_TemplateLoader.GetTemplateFileData(templateName).GetChild("Entity");
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if (!templateRoot.IsOk())
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LOGERROR("Invalid template found for '%s'", templateName.c_str());
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return templateRoot;
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}
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bool CMapGeneratorWorker::TemplateExists(ScriptInterface::CxPrivate* pCxPrivate, const std::string& templateName)
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{
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CMapGeneratorWorker* self = static_cast<CMapGeneratorWorker*>(pCxPrivate->pCBData);
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return self->m_TemplateLoader.TemplateExists(templateName);
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}
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std::vector<std::string> CMapGeneratorWorker::FindTemplates(ScriptInterface::CxPrivate* pCxPrivate, const std::string& path, bool includeSubdirectories)
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{
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CMapGeneratorWorker* self = static_cast<CMapGeneratorWorker*>(pCxPrivate->pCBData);
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return self->m_TemplateLoader.FindTemplates(path, includeSubdirectories, SIMULATION_TEMPLATES);
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}
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std::vector<std::string> CMapGeneratorWorker::FindActorTemplates(ScriptInterface::CxPrivate* pCxPrivate, const std::string& path, bool includeSubdirectories)
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{
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CMapGeneratorWorker* self = static_cast<CMapGeneratorWorker*>(pCxPrivate->pCBData);
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return self->m_TemplateLoader.FindTemplates(path, includeSubdirectories, ACTOR_TEMPLATES);
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}
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int CMapGeneratorWorker::GetTerrainTileSize(ScriptInterface::CxPrivate* UNUSED(pCxPrivate))
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{
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return TERRAIN_TILE_SIZE;
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}
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bool CMapGeneratorWorker::LoadScripts(const std::wstring& libraryName)
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{
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// Ignore libraries that are already loaded
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if (m_LoadedLibraries.find(libraryName) != m_LoadedLibraries.end())
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return true;
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// Mark this as loaded, to prevent it recursively loading itself
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m_LoadedLibraries.insert(libraryName);
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VfsPath path = L"maps/random/" + libraryName + L"/";
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VfsPaths pathnames;
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// Load all scripts in mapgen directory
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Status ret = vfs::GetPathnames(g_VFS, path, L"*.js", pathnames);
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if (ret == INFO::OK)
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{
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for (const VfsPath& p : pathnames)
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{
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LOGMESSAGE("Loading map generator script '%s'", p.string8());
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if (!m_ScriptInterface->LoadGlobalScriptFile(p))
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{
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LOGERROR("CMapGeneratorWorker::LoadScripts: Failed to load script '%s'", p.string8());
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return false;
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}
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}
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}
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else
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{
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// Some error reading directory
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wchar_t error[200];
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LOGERROR("CMapGeneratorWorker::LoadScripts: Error reading scripts in directory '%s': %s", path.string8(), utf8_from_wstring(StatusDescription(ret, error, ARRAY_SIZE(error))));
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return false;
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}
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return true;
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}
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JS::Value CMapGeneratorWorker::LoadHeightmap(ScriptInterface::CxPrivate* pCxPrivate, const std::wstring& vfsPath)
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{
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std::vector<u16> heightmap;
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if (LoadHeightmapImageVfs(vfsPath, heightmap) != INFO::OK)
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{
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LOGERROR("Could not load heightmap file '%s'", utf8_from_wstring(vfsPath).c_str());
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return JS::UndefinedValue();
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}
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CMapGeneratorWorker* self = static_cast<CMapGeneratorWorker*>(pCxPrivate->pCBData);
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JSContext* cx = self->m_ScriptInterface->GetContext();
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JSAutoRequest rq(cx);
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JS::RootedValue returnValue(cx);
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ToJSVal_vector(cx, &returnValue, heightmap);
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return returnValue;
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}
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// See CMapReader::UnpackTerrain, CMapReader::ParseTerrain for the reordering
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JS::Value CMapGeneratorWorker::LoadMapTerrain(ScriptInterface::CxPrivate* pCxPrivate, const std::string& filename)
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{
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if (!VfsFileExists(filename))
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throw PSERROR_File_OpenFailed();
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CFileUnpacker unpacker;
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unpacker.Read(filename, "PSMP");
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if (unpacker.GetVersion() < CMapIO::FILE_READ_VERSION)
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throw PSERROR_File_InvalidVersion();
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// unpack size
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ssize_t patchesPerSide = (ssize_t)unpacker.UnpackSize();
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size_t verticesPerSide = patchesPerSide * PATCH_SIZE + 1;
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// unpack heightmap
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std::vector<u16> heightmap;
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heightmap.resize(SQR(verticesPerSide));
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unpacker.UnpackRaw(&heightmap[0], SQR(verticesPerSide) * sizeof(u16));
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// unpack texture names
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size_t textureCount = unpacker.UnpackSize();
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std::vector<std::string> textureNames;
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textureNames.reserve(textureCount);
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for (size_t i = 0; i < textureCount; ++i)
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{
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CStr texturename;
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unpacker.UnpackString(texturename);
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textureNames.push_back(texturename);
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}
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// unpack texture IDs per tile
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ssize_t tilesPerSide = patchesPerSide * PATCH_SIZE;
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std::vector<CMapIO::STileDesc> tiles;
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tiles.resize(size_t(SQR(tilesPerSide)));
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unpacker.UnpackRaw(&tiles[0], sizeof(CMapIO::STileDesc) * tiles.size());
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// reorder by patches and store and save texture IDs per tile
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std::vector<u16> textureIDs;
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for (ssize_t x = 0; x < tilesPerSide; ++x)
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{
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size_t patchX = x / PATCH_SIZE;
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size_t offX = x % PATCH_SIZE;
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for (ssize_t y = 0; y < tilesPerSide; ++y)
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{
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size_t patchY = y / PATCH_SIZE;
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size_t offY = y % PATCH_SIZE;
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// m_Priority and m_Tex2Index unused
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textureIDs.push_back(tiles[(patchY * patchesPerSide + patchX) * SQR(PATCH_SIZE) + (offY * PATCH_SIZE + offX)].m_Tex1Index);
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}
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}
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CMapGeneratorWorker* self = static_cast<CMapGeneratorWorker*>(pCxPrivate->pCBData);
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JSContext* cx = self->m_ScriptInterface->GetContext();
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JSAutoRequest rq(cx);
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JS::RootedValue returnValue(cx);
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self->m_ScriptInterface->Eval("({})", &returnValue);
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self->m_ScriptInterface->SetProperty(returnValue, "height", heightmap);
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self->m_ScriptInterface->SetProperty(returnValue, "textureNames", textureNames);
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self->m_ScriptInterface->SetProperty(returnValue, "textureIDs", textureIDs);
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return returnValue;
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}
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//////////////////////////////////////////////////////////////////////////////////
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//////////////////////////////////////////////////////////////////////////////////
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CMapGenerator::CMapGenerator() : m_Worker(new CMapGeneratorWorker())
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{
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}
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CMapGenerator::~CMapGenerator()
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{
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delete m_Worker;
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}
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void CMapGenerator::GenerateMap(const VfsPath& scriptFile, const std::string& settings)
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{
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m_Worker->Initialize(scriptFile, settings);
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}
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int CMapGenerator::GetProgress()
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{
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return m_Worker->GetProgress();
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}
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shared_ptr<ScriptInterface::StructuredClone> CMapGenerator::GetResults()
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{
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return m_Worker->GetResults();
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}
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