choosegenerators.cpp 14 KB

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  1. #include "choosegenerators.h"
  2. #include "ui_choosegenerators.h"
  3. #include "Hardware.h"
  4. #include <QComboBox>
  5. #include <QRegExp>
  6. #include <QRegExpValidator>
  7. #include <QMessageBox>
  8. mnd::MandelViewport Benchmarker::benchViewport(void)
  9. {
  10. return mnd::MandelViewport{ -1.250000598933854152929, 0.0001879894057291665530, 0.0000003839916666666565, 0.0000003839916666666565 };
  11. }
  12. const std::vector<mnd::MandelInfo> Benchmarker::benches {
  13. mnd::MandelInfo{ benchViewport(), 32, 32, 15, false },
  14. mnd::MandelInfo{ benchViewport(), 32, 32, 25, false },
  15. mnd::MandelInfo{ benchViewport(), 32, 32, 75, false },
  16. mnd::MandelInfo{ benchViewport(), 32, 32, 125, false },
  17. mnd::MandelInfo{ benchViewport(), 32, 32, 250, false },
  18. mnd::MandelInfo{ benchViewport(), 64, 32, 250, false },
  19. mnd::MandelInfo{ benchViewport(), 64, 64, 250, false },
  20. mnd::MandelInfo{ benchViewport(), 64, 64, 500, false },
  21. mnd::MandelInfo{ benchViewport(), 64, 128, 500, false },
  22. mnd::MandelInfo{ benchViewport(), 128, 128, 500, false },
  23. mnd::MandelInfo{ benchViewport(), 128, 128, 1000, false },
  24. mnd::MandelInfo{ benchViewport(), 128, 256, 1000, false },
  25. mnd::MandelInfo{ benchViewport(), 256, 256, 1000, false },
  26. mnd::MandelInfo{ benchViewport(), 256, 256, 2000, false },
  27. mnd::MandelInfo{ benchViewport(), 256, 512, 2000, false },
  28. mnd::MandelInfo{ benchViewport(), 512, 512, 2000, false },
  29. mnd::MandelInfo{ benchViewport(), 512, 512, 4000, false },
  30. mnd::MandelInfo{ benchViewport(), 512, 1024, 4000, false },
  31. mnd::MandelInfo{ benchViewport(), 1024, 1024, 4000, false },
  32. mnd::MandelInfo{ benchViewport(), 1024, 1024, 8000, false },
  33. mnd::MandelInfo{ benchViewport(), 1024, 1024, 16000, false },
  34. mnd::MandelInfo{ benchViewport(), 1024, 2048, 16000, false },
  35. mnd::MandelInfo{ benchViewport(), 2048, 2048, 16000, false },
  36. mnd::MandelInfo{ benchViewport(), 2048, 2048, 32000, false },
  37. mnd::MandelInfo{ benchViewport(), 2048, 2048, 64000, false },
  38. mnd::MandelInfo{ benchViewport(), 2048, 2048, 128000, false },
  39. mnd::MandelInfo{ benchViewport(), 2048, 2048, 256000, false },
  40. mnd::MandelInfo{ benchViewport(), 2048, 2048, 512000, false },
  41. mnd::MandelInfo{ benchViewport(), 2048, 2048, 1024000, false },
  42. mnd::MandelInfo{ benchViewport(), 2048, 2048, 4096000, false },
  43. mnd::MandelInfo{ benchViewport(), 2048, 2048, 8192000, false },
  44. mnd::MandelInfo{ benchViewport(), 2048, 2048, 16384000, false },
  45. mnd::MandelInfo{ benchViewport(), 2048, 2048, 32768000, false },
  46. mnd::MandelInfo{ benchViewport(), 2048, 2048, 65536000, false },
  47. mnd::MandelInfo{ benchViewport(), 2048, 2048, 131072000, false },
  48. mnd::MandelInfo{ benchViewport(), 2048, 2048, 262144000, false },
  49. mnd::MandelInfo{ benchViewport(), 2048, 2048, 524288000, false },
  50. mnd::MandelInfo{ benchViewport(), 2048, 2048, 1048576000, false },
  51. mnd::MandelInfo{ benchViewport(), 2048, 2048, 2097152000, false },
  52. };
  53. Benchmarker::~Benchmarker(void)
  54. {
  55. }
  56. std::pair<long long, std::chrono::nanoseconds> Benchmarker::measureMips(const std::function<Bitmap<float>*()>& bench) const
  57. {
  58. using namespace std::chrono;
  59. auto before = high_resolution_clock::now();
  60. auto* bitmap = bench();
  61. auto after = high_resolution_clock::now();
  62. long long sum = 0;
  63. for (int i = 0; i < bitmap->width * bitmap->height; i++) {
  64. sum += static_cast<long long>(std::floor(bitmap->pixels[size_t(i)]));
  65. }
  66. return std::make_pair(sum, duration_cast<nanoseconds>(after - before));
  67. }
  68. double Benchmarker::benchmarkResult(mnd::MandelGenerator& mg) const
  69. {
  70. size_t testIndex = 0;
  71. for (size_t i = 0; i < benches.size(); i++) {
  72. const mnd::MandelInfo& mi = benches[i];
  73. Bitmap<float> bmp(mi.bWidth, mi.bHeight);
  74. auto [iters, time] = measureMips([&mg, &mi, &bmp]() {
  75. mg.generate(mi, bmp.pixels.get());
  76. return &bmp;
  77. });
  78. if (time > std::chrono::milliseconds(500)) {
  79. testIndex = i + 2;
  80. //printf("testing index %d\n", testIndex);
  81. fflush(stdout);
  82. break;
  83. }
  84. else if (time < std::chrono::milliseconds(10)) {
  85. i += 7;
  86. }
  87. }
  88. const mnd::MandelInfo& mi = benches[(testIndex >= benches.size()) ? (benches.size() - 1) : testIndex];
  89. Bitmap<float> bmp(mi.bWidth, mi.bHeight);
  90. auto [iters, time] = measureMips([&mg, &mi, &bmp]() {
  91. mg.generate(mi, bmp.pixels.get());
  92. return &bmp;
  93. });
  94. return double(iters) / time.count() * 1000;
  95. }
  96. void Benchmarker::run(void)
  97. {
  98. double result = benchmarkResult(generator);
  99. emit finished(row, percentage, result);
  100. }
  101. ChooseGenerators::ChooseGenerators(mnd::MandelContext& mndCtxt, QWidget *parent) :
  102. QDialog{ parent },
  103. ui{ std::make_unique<Ui::ChooseGenerators>() },
  104. mndCtxt{ mndCtxt },
  105. tableContent{}
  106. {
  107. ui->setupUi(this);
  108. ui->progressBar->setRange(0, 1000);
  109. benchmarker.setMaxThreadCount(1);
  110. QFont f("unexistent");
  111. f.setStyleHint(QFont::Monospace);
  112. f.setPointSize(12);
  113. ui->formula->setFont(f);
  114. ui->label_2->setFont(f);
  115. ui->initialFormula->setFont(f);
  116. ui->label_5->setFont(f);
  117. QRegExp floatingpoint{ "^[-+]?(\\d*\\.?\\d+|\\d+\\.?\\d*)([eE][-+]\\d+)?$" };
  118. floatValidator = std::make_unique<QRegExpValidator>(floatingpoint, this);
  119. for (auto genType : mndCtxt.getSupportedTypes()) {
  120. const std::string& typeName = mnd::getGeneratorName(genType);
  121. generators.insert({ QString::fromStdString(typeName), mndCtxt.getCpuGenerator(genType) });
  122. }
  123. for (auto& device : mndCtxt.getDevices()) {
  124. for (auto genType : device.getSupportedTypes()) {
  125. const std::string& typeName = mnd::getGeneratorName(genType) + " [" + device.getName() + "]";
  126. generators.insert({ QString::fromStdString(typeName), device.getGenerator(genType) });
  127. }
  128. }
  129. auto& defGen = mndCtxt.getDefaultGenerator();
  130. for (auto it = defGen.getGenerators().rbegin(); it != defGen.getGenerators().rend(); it++) {
  131. auto& [prec, gen] = *it;
  132. ui->table->insertRow(0);
  133. QLineEdit* le = createFloatText();
  134. QComboBox* comboBox = createComboBox();
  135. le->setSizePolicy(QSizePolicy::Policy::Preferred, QSizePolicy::Policy::Preferred);
  136. comboBox->setSizePolicy(QSizePolicy::Policy::Preferred, QSizePolicy::Policy::Preferred);
  137. ui->table->setCellWidget(0, 0, le);
  138. ui->table->setCellWidget(0, 1, comboBox);
  139. tableContent.push_back({ le, comboBox });
  140. for (auto [n, g] : generators) {
  141. if (gen == g) {
  142. comboBox->setCurrentText(n);
  143. }
  144. }
  145. le->setText(QString::fromStdString(mnd::toLegibleString(prec)));
  146. comboBox->adjustSize();
  147. le->adjustSize();
  148. }
  149. ui->table->resizeColumnsToContents();
  150. std::vector<mnd::GeneratorType> generatorTypes = mndCtxt.getSupportedTypes();
  151. for (size_t i = 0; i < generatorTypes.size(); i++) {
  152. int rowCount = ui->generatorTable->rowCount();
  153. ui->generatorTable->insertRow(rowCount);
  154. ui->generatorTable->setItem(rowCount, 0, new QTableWidgetItem);
  155. ui->generatorTable->setItem(rowCount, 1, new QTableWidgetItem);
  156. const std::string& genName = mnd::getGeneratorName(generatorTypes[i]);
  157. const mnd::Real& prec = mndCtxt.getCpuGenerator(generatorTypes[i])->getPrecision();
  158. ui->generatorTable->item(rowCount, 0)->setText(QString::fromStdString(genName));
  159. ui->generatorTable->item(rowCount, 1)->setText(QString::fromStdString(mnd::toLegibleString(prec)));
  160. actualGenerators.push_back(mndCtxt.getCpuGenerator(generatorTypes[i]));
  161. }
  162. for (auto& device : mndCtxt.getDevices()) {
  163. std::vector<mnd::GeneratorType> generatorTypes = device.getSupportedTypes();
  164. for (size_t i = 0; i < generatorTypes.size(); i++) {
  165. int rowCount = ui->generatorTable->rowCount();
  166. ui->generatorTable->insertRow(rowCount);
  167. ui->generatorTable->setItem(rowCount, 0, new QTableWidgetItem);
  168. ui->generatorTable->setItem(rowCount, 1, new QTableWidgetItem);
  169. const std::string& genName = mnd::getGeneratorName(generatorTypes[i]) + " [" + device.getName() + "]";
  170. const mnd::Real& prec = device.getGenerator(generatorTypes[i])->getPrecision();
  171. ui->generatorTable->item(rowCount, 0)->setText(QString::fromStdString(genName));
  172. ui->generatorTable->item(rowCount, 1)->setText(QString::fromStdString(mnd::toLegibleString(prec)));
  173. actualGenerators.push_back(device.getGenerator(generatorTypes[i]));
  174. }
  175. }
  176. //ui->addRow->setIcon(ui->addRow->style()->standardIcon(QStyle::SP_));
  177. //ui->moveRowUp->setIcon(ui->moveRowUp->style()->standardIcon(QStyle::SP_ArrowUp));
  178. //ui->moveRowDown->setIcon(ui->moveRowDown->style()->standardIcon(QStyle::SP_ArrowDown));
  179. }
  180. ChooseGenerators::~ChooseGenerators()
  181. {
  182. }
  183. QComboBox* ChooseGenerators::createComboBox(void)
  184. {
  185. QComboBox* qcb = new QComboBox(ui->table);
  186. for (auto [name, type] : generators) {
  187. qcb->addItem(name);
  188. }
  189. return qcb;
  190. }
  191. QLineEdit* ChooseGenerators::createFloatText(void)
  192. {
  193. QLineEdit* le = new QLineEdit(ui->table);
  194. le->setValidator(floatValidator.get());
  195. return le;
  196. }
  197. void ChooseGenerators::setBenchmarkResult(int row, float percentage, double result)
  198. {
  199. this->ui->generatorTable->setItem(row, 2, new QTableWidgetItem);
  200. this->ui->generatorTable->item(row, 2)->setText(QString::number(result));
  201. ui->progressBar->setValue(int(percentage * 10.0f));
  202. }
  203. void ChooseGenerators::on_buttonBox_accepted()
  204. {
  205. //if (!chosenGenerator)
  206. auto adGen = std::make_unique<mnd::AdaptiveGenerator>();
  207. //createdGenerator->clear();
  208. try {
  209. for (size_t i = 0; i < tableContent.size(); i++) {
  210. QString precString = tableContent.at(i).first->text();
  211. QString genString = tableContent.at(i).second->currentText();
  212. mnd::Real precision = mnd::Real(precString.toStdString().c_str());
  213. mnd::MandelGenerator* generator = generators.at(genString);
  214. if (generator)
  215. adGen->addGenerator(precision, *generator);
  216. }
  217. }
  218. catch(...) {
  219. // TODO
  220. adGen = nullptr;
  221. }
  222. //chosenGenerator = std::move(adGen);
  223. }
  224. void ChooseGenerators::on_run_clicked()
  225. {
  226. ui->progressBar->setValue(0);
  227. for (int i = 0; i < ui->generatorTable->rowCount(); i++) {
  228. mnd::MandelGenerator* gen = actualGenerators.at(i);
  229. if (gen != nullptr) {
  230. Benchmarker* bench = new Benchmarker(mndCtxt, *gen, i, 100.0f * (i + 1) / ui->generatorTable->rowCount());
  231. QObject::connect(bench, &Benchmarker::finished, this, &ChooseGenerators::setBenchmarkResult);
  232. benchmarker.start(bench);
  233. }
  234. }
  235. }
  236. void ChooseGenerators::on_generatorTable_cellDoubleClicked(int row, int column)
  237. {
  238. if (column == 2) {
  239. QMessageBox msgBox{ this };
  240. msgBox.setText("Would you like to benchmark this generator?");
  241. msgBox.setStandardButtons(QMessageBox::Yes | QMessageBox::No);
  242. int response = msgBox.exec();
  243. if (response == QMessageBox::Yes) {
  244. mnd::MandelGenerator* gen = actualGenerators.at(row);
  245. if (gen != nullptr) {
  246. ui->progressBar->setValue(0);
  247. Benchmarker* bench = new Benchmarker(mndCtxt, *gen, row, 100.0f);
  248. QObject::connect(bench, &Benchmarker::finished, this, &ChooseGenerators::setBenchmarkResult);
  249. benchmarker.start(bench);
  250. }
  251. }
  252. }
  253. }
  254. #include <IterationCompiler.h>
  255. void ChooseGenerators::on_compile_clicked()
  256. {
  257. QString formula = this->ui->formula->text();
  258. QString z0formula = this->ui->initialFormula->text();
  259. mnd::IterationFormula zi{ mnd::parse(formula.toStdString()), { "c", "z" } };
  260. mnd::IterationFormula z0{ mnd::parse(z0formula.toStdString()), { "c" } };
  261. //zi.optimize();
  262. //z0.optimize();
  263. const mnd::MandelDevice& dev = mndCtxt.getDevices()[0];
  264. //auto cls = mnd::compileOpenCl(dev, z0, itf);
  265. std::vector<std::unique_ptr<mnd::MandelGenerator>> cpuGenerators;
  266. try {
  267. std::cout << mnd::toString(*z0.expr) << std::endl;
  268. std::cout << mnd::toString(*zi.expr) << std::endl;
  269. cpuGenerators = mnd::compileCpu(mndCtxt, z0, zi);
  270. }
  271. catch(const mnd::ParseError& pe) {
  272. printf("Parse error: %s\n", pe.what());
  273. return;
  274. }
  275. /*catch(const char* e) {
  276. printf("error: %s\n", e);
  277. return;
  278. }*/
  279. fflush(stdout);
  280. chosenGenerator = std::move(cpuGenerators[0]);
  281. return;
  282. std::string expr = mnd::toString(*zi.expr);
  283. printf("zi := %s\n", expr.c_str()); fflush(stdout);
  284. expr = mnd::toString(*z0.expr);
  285. printf("z0 := %s\n", expr.c_str()); fflush(stdout);
  286. //chosenGenerator = std::make_unique<mnd::NaiveGenerator>(std::move(itf), std::move(z0), mnd::getPrecision<double>());
  287. //return;
  288. mnd::ir::Formula irform = mnd::expand(z0, zi);
  289. printf("%s\n", irform.toString().c_str()); fflush(stdout);
  290. irform.constantPropagation();
  291. printf("%s\n", irform.toString().c_str()); fflush(stdout);
  292. auto cg = std::make_unique<mnd::CompiledGenerator>(mnd::compile(irform));
  293. std::string asmCode = cg->dump();
  294. printf("%s\n", asmCode.c_str()); fflush(stdout);
  295. /*QMessageBox msgBox(nullptr);
  296. msgBox.setText(QString::fromStdString(asmCode));
  297. msgBox.exec();*/
  298. chosenGenerator = std::move(cg);
  299. try {
  300. //chosenGenerator = mnd::compileCl(irform, dev);
  301. }
  302. catch(const std::string& msg) {
  303. printf("error compiling: %s", msg.c_str());
  304. }
  305. }
  306. void ChooseGenerators::on_benchmark_clicked()
  307. {
  308. if (!chosenGenerator)
  309. return;
  310. Benchmarker bm(mndCtxt, *chosenGenerator, 0, 0.0f);
  311. double mips = bm.benchmarkResult(*chosenGenerator);
  312. this->ui->compBenchResult->setText(QString::number(mips));
  313. }