746dddc067
* Map is unnecessary and inefficient in almost every case. * Replaced by the new HashMap. * Renamed Map to RBMap and Set to RBSet for cases that still make sense (order matters) but use is discouraged. There were very few cases where replacing by HashMap was undesired because keeping the key order was intended. I tried to keep those (as RBMap) as much as possible, but might have missed some. Review appreciated!
463 lines
15 KiB
C++
463 lines
15 KiB
C++
/*************************************************************************/
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/* servers_debugger.cpp */
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/*************************************************************************/
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/* This file is part of: */
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/* GODOT ENGINE */
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/* https://godotengine.org */
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/*************************************************************************/
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/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
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/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
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/* */
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/* Permission is hereby granted, free of charge, to any person obtaining */
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/* a copy of this software and associated documentation files (the */
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/* "Software"), to deal in the Software without restriction, including */
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/* without limitation the rights to use, copy, modify, merge, publish, */
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/* distribute, sublicense, and/or sell copies of the Software, and to */
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/* permit persons to whom the Software is furnished to do so, subject to */
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/* the following conditions: */
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/* */
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/* The above copyright notice and this permission notice shall be */
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/* included in all copies or substantial portions of the Software. */
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/* */
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/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
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/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
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/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
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/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
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/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
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/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
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/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
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/*************************************************************************/
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#include "servers_debugger.h"
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#include "core/config/project_settings.h"
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#include "core/debugger/engine_debugger.h"
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#include "core/debugger/engine_profiler.h"
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#include "core/io/marshalls.h"
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#include "servers/display_server.h"
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#define CHECK_SIZE(arr, expected, what) ERR_FAIL_COND_V_MSG((uint32_t)arr.size() < (uint32_t)(expected), false, String("Malformed ") + what + " message from script debugger, message too short. Expected size: " + itos(expected) + ", actual size: " + itos(arr.size()))
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#define CHECK_END(arr, expected, what) ERR_FAIL_COND_V_MSG((uint32_t)arr.size() > (uint32_t)expected, false, String("Malformed ") + what + " message from script debugger, message too long. Expected size: " + itos(expected) + ", actual size: " + itos(arr.size()))
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Array ServersDebugger::ResourceUsage::serialize() {
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infos.sort();
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Array arr;
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arr.push_back(infos.size() * 4);
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for (const ResourceInfo &E : infos) {
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arr.push_back(E.path);
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arr.push_back(E.format);
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arr.push_back(E.type);
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arr.push_back(E.vram);
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}
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return arr;
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}
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bool ServersDebugger::ResourceUsage::deserialize(const Array &p_arr) {
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CHECK_SIZE(p_arr, 1, "ResourceUsage");
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uint32_t size = p_arr[0];
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CHECK_SIZE(p_arr, size, "ResourceUsage");
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int idx = 1;
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for (uint32_t i = 0; i < size / 4; i++) {
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ResourceInfo info;
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info.path = p_arr[idx];
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info.format = p_arr[idx + 1];
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info.type = p_arr[idx + 2];
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info.vram = p_arr[idx + 3];
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infos.push_back(info);
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}
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CHECK_END(p_arr, idx, "ResourceUsage");
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return true;
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}
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Array ServersDebugger::ScriptFunctionSignature::serialize() {
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Array arr;
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arr.push_back(name);
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arr.push_back(id);
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return arr;
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}
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bool ServersDebugger::ScriptFunctionSignature::deserialize(const Array &p_arr) {
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CHECK_SIZE(p_arr, 2, "ScriptFunctionSignature");
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name = p_arr[0];
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id = p_arr[1];
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CHECK_END(p_arr, 2, "ScriptFunctionSignature");
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return true;
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}
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Array ServersDebugger::ServersProfilerFrame::serialize() {
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Array arr;
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arr.push_back(frame_number);
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arr.push_back(frame_time);
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arr.push_back(process_time);
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arr.push_back(physics_time);
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arr.push_back(physics_frame_time);
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arr.push_back(script_time);
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arr.push_back(servers.size());
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for (int i = 0; i < servers.size(); i++) {
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ServerInfo &s = servers[i];
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arr.push_back(s.name);
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arr.push_back(s.functions.size() * 2);
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for (int j = 0; j < s.functions.size(); j++) {
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ServerFunctionInfo &f = s.functions[j];
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arr.push_back(f.name);
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arr.push_back(f.time);
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}
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}
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arr.push_back(script_functions.size() * 4);
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for (int i = 0; i < script_functions.size(); i++) {
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arr.push_back(script_functions[i].sig_id);
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arr.push_back(script_functions[i].call_count);
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arr.push_back(script_functions[i].self_time);
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arr.push_back(script_functions[i].total_time);
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}
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return arr;
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}
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bool ServersDebugger::ServersProfilerFrame::deserialize(const Array &p_arr) {
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CHECK_SIZE(p_arr, 7, "ServersProfilerFrame");
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frame_number = p_arr[0];
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frame_time = p_arr[1];
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process_time = p_arr[2];
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physics_time = p_arr[3];
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physics_frame_time = p_arr[4];
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script_time = p_arr[5];
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int servers_size = p_arr[6];
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int idx = 7;
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while (servers_size) {
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CHECK_SIZE(p_arr, idx + 2, "ServersProfilerFrame");
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servers_size--;
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ServerInfo si;
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si.name = p_arr[idx];
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int sub_data_size = p_arr[idx + 1];
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idx += 2;
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CHECK_SIZE(p_arr, idx + sub_data_size, "ServersProfilerFrame");
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for (int j = 0; j < sub_data_size / 2; j++) {
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ServerFunctionInfo sf;
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sf.name = p_arr[idx];
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sf.time = p_arr[idx + 1];
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idx += 2;
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si.functions.push_back(sf);
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}
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servers.push_back(si);
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}
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CHECK_SIZE(p_arr, idx + 1, "ServersProfilerFrame");
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int func_size = p_arr[idx];
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idx += 1;
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CHECK_SIZE(p_arr, idx + func_size, "ServersProfilerFrame");
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for (int i = 0; i < func_size / 4; i++) {
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ScriptFunctionInfo fi;
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fi.sig_id = p_arr[idx];
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fi.call_count = p_arr[idx + 1];
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fi.self_time = p_arr[idx + 2];
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fi.total_time = p_arr[idx + 3];
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script_functions.push_back(fi);
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idx += 4;
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}
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CHECK_END(p_arr, idx, "ServersProfilerFrame");
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return true;
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}
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Array ServersDebugger::VisualProfilerFrame::serialize() {
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Array arr;
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arr.push_back(frame_number);
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arr.push_back(areas.size() * 3);
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for (int i = 0; i < areas.size(); i++) {
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arr.push_back(areas[i].name);
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arr.push_back(areas[i].cpu_msec);
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arr.push_back(areas[i].gpu_msec);
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}
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return arr;
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}
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bool ServersDebugger::VisualProfilerFrame::deserialize(const Array &p_arr) {
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CHECK_SIZE(p_arr, 2, "VisualProfilerFrame");
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frame_number = p_arr[0];
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int size = p_arr[1];
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CHECK_SIZE(p_arr, size, "VisualProfilerFrame");
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int idx = 2;
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areas.resize(size / 3);
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RS::FrameProfileArea *w = areas.ptrw();
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for (int i = 0; i < size / 3; i++) {
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w[i].name = p_arr[idx];
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w[i].cpu_msec = p_arr[idx + 1];
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w[i].gpu_msec = p_arr[idx + 2];
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idx += 3;
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}
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CHECK_END(p_arr, idx, "VisualProfilerFrame");
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return true;
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}
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class ServersDebugger::ScriptsProfiler : public EngineProfiler {
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typedef ServersDebugger::ScriptFunctionSignature FunctionSignature;
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typedef ServersDebugger::ScriptFunctionInfo FunctionInfo;
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struct ProfileInfoSort {
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bool operator()(ScriptLanguage::ProfilingInfo *A, ScriptLanguage::ProfilingInfo *B) const {
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return A->total_time < B->total_time;
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}
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};
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Vector<ScriptLanguage::ProfilingInfo> info;
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Vector<ScriptLanguage::ProfilingInfo *> ptrs;
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HashMap<StringName, int> sig_map;
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int max_frame_functions = 16;
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public:
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void toggle(bool p_enable, const Array &p_opts) {
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if (p_enable) {
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sig_map.clear();
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for (int i = 0; i < ScriptServer::get_language_count(); i++) {
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ScriptServer::get_language(i)->profiling_start();
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}
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if (p_opts.size() == 1 && p_opts[0].get_type() == Variant::INT) {
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max_frame_functions = MAX(0, int(p_opts[0]));
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}
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} else {
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for (int i = 0; i < ScriptServer::get_language_count(); i++) {
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ScriptServer::get_language(i)->profiling_stop();
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}
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}
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}
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void write_frame_data(Vector<FunctionInfo> &r_funcs, uint64_t &r_total, bool p_accumulated) {
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int ofs = 0;
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for (int i = 0; i < ScriptServer::get_language_count(); i++) {
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if (p_accumulated) {
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ofs += ScriptServer::get_language(i)->profiling_get_accumulated_data(&info.write[ofs], info.size() - ofs);
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} else {
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ofs += ScriptServer::get_language(i)->profiling_get_frame_data(&info.write[ofs], info.size() - ofs);
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}
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}
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for (int i = 0; i < ofs; i++) {
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ptrs.write[i] = &info.write[i];
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}
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SortArray<ScriptLanguage::ProfilingInfo *, ProfileInfoSort> sa;
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sa.sort(ptrs.ptrw(), ofs);
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int to_send = MIN(ofs, max_frame_functions);
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// Check signatures first, and compute total time.
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r_total = 0;
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for (int i = 0; i < to_send; i++) {
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if (!sig_map.has(ptrs[i]->signature)) {
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int idx = sig_map.size();
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FunctionSignature sig;
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sig.name = ptrs[i]->signature;
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sig.id = idx;
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EngineDebugger::get_singleton()->send_message("servers:function_signature", sig.serialize());
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sig_map[ptrs[i]->signature] = idx;
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}
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r_total += ptrs[i]->self_time;
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}
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// Send frame, script time, functions information then
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r_funcs.resize(to_send);
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FunctionInfo *w = r_funcs.ptrw();
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for (int i = 0; i < to_send; i++) {
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if (sig_map.has(ptrs[i]->signature)) {
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w[i].sig_id = sig_map[ptrs[i]->signature];
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}
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w[i].call_count = ptrs[i]->call_count;
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w[i].total_time = ptrs[i]->total_time / 1000000.0;
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w[i].self_time = ptrs[i]->self_time / 1000000.0;
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}
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}
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ScriptsProfiler() {
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info.resize(GLOBAL_GET("debug/settings/profiler/max_functions"));
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ptrs.resize(info.size());
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}
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};
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class ServersDebugger::ServersProfiler : public EngineProfiler {
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bool skip_profile_frame = false;
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typedef ServersDebugger::ServerInfo ServerInfo;
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typedef ServersDebugger::ServerFunctionInfo ServerFunctionInfo;
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HashMap<StringName, ServerInfo> server_data;
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ScriptsProfiler scripts_profiler;
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double frame_time = 0;
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double process_time = 0;
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double physics_time = 0;
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double physics_frame_time = 0;
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void _send_frame_data(bool p_final) {
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ServersDebugger::ServersProfilerFrame frame;
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frame.frame_number = Engine::get_singleton()->get_process_frames();
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frame.frame_time = frame_time;
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frame.process_time = process_time;
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frame.physics_time = physics_time;
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frame.physics_frame_time = physics_frame_time;
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HashMap<StringName, ServerInfo>::Iterator E = server_data.begin();
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while (E) {
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if (!p_final) {
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frame.servers.push_back(E->value);
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}
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E->value.functions.clear();
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++E;
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}
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uint64_t time = 0;
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scripts_profiler.write_frame_data(frame.script_functions, time, p_final);
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frame.script_time = USEC_TO_SEC(time);
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if (skip_profile_frame) {
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skip_profile_frame = false;
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return;
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}
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if (p_final) {
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EngineDebugger::get_singleton()->send_message("servers:profile_total", frame.serialize());
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} else {
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EngineDebugger::get_singleton()->send_message("servers:profile_frame", frame.serialize());
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}
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}
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public:
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void toggle(bool p_enable, const Array &p_opts) {
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skip_profile_frame = false;
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if (p_enable) {
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server_data.clear(); // Clear old profiling data.
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} else {
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_send_frame_data(true); // Send final frame.
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}
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scripts_profiler.toggle(p_enable, p_opts);
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}
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void add(const Array &p_data) {
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String name = p_data[0];
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if (!server_data.has(name)) {
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ServerInfo info;
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info.name = name;
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server_data[name] = info;
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}
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ServerInfo &srv = server_data[name];
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ServerFunctionInfo fi;
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fi.name = p_data[1];
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fi.time = p_data[2];
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srv.functions.push_back(fi);
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}
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void tick(double p_frame_time, double p_process_time, double p_physics_time, double p_physics_frame_time) {
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frame_time = p_frame_time;
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process_time = p_process_time;
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physics_time = p_physics_time;
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physics_frame_time = p_physics_frame_time;
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_send_frame_data(false);
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}
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void skip_frame() {
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skip_profile_frame = true;
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}
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};
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class ServersDebugger::VisualProfiler : public EngineProfiler {
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typedef ServersDebugger::ServerInfo ServerInfo;
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typedef ServersDebugger::ServerFunctionInfo ServerFunctionInfo;
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HashMap<StringName, ServerInfo> server_data;
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public:
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void toggle(bool p_enable, const Array &p_opts) {
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RS::get_singleton()->set_frame_profiling_enabled(p_enable);
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}
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void add(const Array &p_data) {}
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void tick(double p_frame_time, double p_process_time, double p_physics_time, double p_physics_frame_time) {
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Vector<RS::FrameProfileArea> profile_areas = RS::get_singleton()->get_frame_profile();
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ServersDebugger::VisualProfilerFrame frame;
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if (!profile_areas.size()) {
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return;
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}
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frame.frame_number = RS::get_singleton()->get_frame_profile_frame();
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frame.areas.append_array(profile_areas);
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EngineDebugger::get_singleton()->send_message("visual:profile_frame", frame.serialize());
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}
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};
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ServersDebugger *ServersDebugger::singleton = nullptr;
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void ServersDebugger::initialize() {
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if (EngineDebugger::is_active()) {
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memnew(ServersDebugger);
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}
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}
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void ServersDebugger::deinitialize() {
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if (singleton) {
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memdelete(singleton);
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}
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}
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Error ServersDebugger::_capture(void *p_user, const String &p_cmd, const Array &p_data, bool &r_captured) {
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ERR_FAIL_COND_V(!singleton, ERR_BUG);
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r_captured = true;
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if (p_cmd == "memory") {
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singleton->_send_resource_usage();
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} else if (p_cmd == "draw") { // Forced redraw.
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// For camera override to stay live when the game is paused from the editor.
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double delta = 0.0;
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if (singleton->last_draw_time) {
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delta = (OS::get_singleton()->get_ticks_usec() - singleton->last_draw_time) / 1000000.0;
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}
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singleton->last_draw_time = OS::get_singleton()->get_ticks_usec();
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RenderingServer::get_singleton()->sync();
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if (RenderingServer::get_singleton()->has_changed()) {
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RenderingServer::get_singleton()->draw(true, delta);
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}
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} else if (p_cmd == "foreground") {
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singleton->last_draw_time = 0.0;
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DisplayServer::get_singleton()->window_move_to_foreground();
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singleton->servers_profiler->skip_frame();
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} else {
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r_captured = false;
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}
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return OK;
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}
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void ServersDebugger::_send_resource_usage() {
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ServersDebugger::ResourceUsage usage;
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List<RS::TextureInfo> tinfo;
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RS::get_singleton()->texture_debug_usage(&tinfo);
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for (const RS::TextureInfo &E : tinfo) {
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ServersDebugger::ResourceInfo info;
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info.path = E.path;
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info.vram = E.bytes;
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info.id = E.texture;
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info.type = "Texture";
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if (E.depth == 0) {
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info.format = itos(E.width) + "x" + itos(E.height) + " " + Image::get_format_name(E.format);
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} else {
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info.format = itos(E.width) + "x" + itos(E.height) + "x" + itos(E.depth) + " " + Image::get_format_name(E.format);
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}
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usage.infos.push_back(info);
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}
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EngineDebugger::get_singleton()->send_message("servers:memory_usage", usage.serialize());
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}
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ServersDebugger::ServersDebugger() {
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singleton = this;
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// Generic servers profiler (audio/physics/...)
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servers_profiler.instantiate();
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servers_profiler->bind("servers");
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// Visual Profiler (cpu/gpu times)
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visual_profiler.instantiate();
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visual_profiler->bind("visual");
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EngineDebugger::Capture servers_cap(nullptr, &_capture);
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EngineDebugger::register_message_capture("servers", servers_cap);
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}
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ServersDebugger::~ServersDebugger() {
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EngineDebugger::unregister_message_capture("servers");
|
|
singleton = nullptr;
|
|
}
|