*/ protected array $classCeList = []; protected array $classCeInfo = []; protected function isConstructorNativeFunction(FunctionDef $func): bool { return $func->method && str_ends_with($func->name, self::NAMESPACE_SEPARATOR . '__construct'); } public function __construct(string $rootPath) { parent::__construct($rootPath); $this->climate->arguments->add(Constants::COMPILER_OPTIONS); $this->preprocessArgvAdvanced(); $this->climate->arguments->parse(); // 只读取命令行参数,不立即应用(等待 YAML 解析后再应用) // 这样可以确保优先级:命令行 > YAML > 默认值 $this->internalFunctions = []; foreach (get_defined_functions()['internal'] as $functionName) { $function = Reflection::getFunction($functionName); if ($function !== null && Reflection::isTypePhpExtension($function->getExtensionName())) { continue; } $this->internalFunctions[$functionName] = true; } unset($this->internalFunctions[self::ENTRY_FUNCTION]); $this->internalConstants = $this->loadInternalConstants(); if ($this->climate->arguments->defined('help')) { $this->showUsage(); exit(0); } if ($this->climate->arguments->defined('version')) { $this->showVersion(); exit(0); } // 提前处理 --no-color,确保后续所有输出均为无颜色模式 if ($this->climate->arguments->defined('no-color')) { $this->climate->forceAnsiOff(); } // 检测操作系统、编译器以及 Windows 平台的 PHP lib 文件 $this->detectPlatform(); } protected function loadInternalConstants(): array { $groups = get_defined_constants(true); if (!is_array($groups)) { return get_defined_constants(); } $constants = []; foreach ($groups as $groupName => $group) { // 编译器进程中的用户常量属于被编译程序的运行时状态,不能在静态阶段展开。 if (strcasecmp((string) $groupName, 'user') === 0 || Reflection::isTypePhpExtension($groupName) || !is_array($group)) { continue; } foreach ($group as $name => $value) { $constants[$name] = $value; } } return $constants; } /** * 检测操作系统、编译器以及 Windows 平台的 PHP lib 文件 */ protected function detectPlatform(): void { try { $this->platform = PlatformFactory::create(); $this->cppCompiler = CompilerFactory::detectCompilerName($this->platform); if ($this->platform instanceof Windows) { $libInfo = $this->platform->detectPhpLibs($this->getPhpDir()); $this->windowsPhpEmbedLib = $libInfo['embed']; $this->windowsPhpCoreLib = $libInfo['core']; $this->isPhpZts = $libInfo['is_zts']; $this->platform = new Windows( phpLibs: [$this->windowsPhpCoreLib, $this->windowsPhpEmbedLib], isZts: $this->isPhpZts, phpSdkPath: $this->getPhpDir() . '\\SDK' ); } $this->compilerBackend = CompilerFactory::createByName($this->cppCompiler, $this->platform); $this->climate->info( "Initialized platform/backend: {$this->platform->getName()} + {$this->compilerBackend->getName()} ({$this->compilerBackend->getCompilerCommand()})" ); } catch (\Throwable $e) { $this->error($e->getMessage()); } } public function parseArgv(array $argv) { $path = null; for ($i = 1; $i < count($argv); $i++) { if ($argv[$i] !== '' && $argv[$i][0] !== '-') { $path = $argv[$i]; break; } } if (empty($path)) { $this->showUsage(); exit(1); } return $path; } public function showUsage(): void { $climate = $this->climate; $this->showVersion(); $climate->br(); global $argv; $cmd = $argv[0]; $climate->bold('USAGE:'); $climate->tab()->out($cmd . ' [options]'); $climate->br(); $climate->bold('ARGUMENTS:'); $climate->tab()->out(' Input PHP file/directory/YAML config to compile'); $climate->br(); $climate->bold('EXAMPLES:'); $climate->tab()->out($cmd . ' hello.php'); $climate->tab()->out($cmd . ' bench.php -O2'); $climate->tab()->out($cmd . ' project/config.yml -O2'); $climate->tab()->out($cmd . ' my-ext/ -O2 -o myapp -m ext'); $climate->tab()->out($cmd . ' app.php -r -O2 -- --flag1 value1'); $climate->br(); $climate->bold('OPTIONS:'); $climate->tab()->out('-O Optimization level (0-3, default: 0)'); $climate->tab()->out('--profile Enable performance profiling (adds -lprofiler, forces recompile)'); $climate->tab()->out('-d, --debug Enable debug mode (auto-disable optimizations, add debug symbols)'); $climate->tab()->out('-o, --output Output binary name (default: input basename)'); $climate->tab()->out('-v, --version Show version'); $climate->tab()->out('-h, --help Show this help message'); $climate->tab()->out('-f, --force Force recompile phpx misc files (ignore cache)'); $climate->tab()->out('-m, --mode Compilation mode: bin (binary), lib (shared library), or ext (PHP extension); default: bin'); $climate->tab()->out('-r, --run Run the compiled binary after build'); $climate->tab()->out('-j, --job Number of parallel compilation jobs (default: 4)'); $climate->tab()->out('--cxx-std C++ standard version (c++17, c++20, etc., default: c++17)'); $climate->tab()->out('--march Target CPU instruction set (e.g. native, x86-64-v3, armv8-a)'); $climate->tab()->out('--target-platform Cross-compilation target triple (e.g. aarch64-linux-gnu)'); $climate->tab()->out('--lto Enable Link Time Optimization (-flto)'); $climate->tab()->out('--no-literal-strings Disable literal strings optimization'); $climate->tab()->out('--php-version PHP language version to accept (8.2-8.5, default: 8.5)'); $climate->tab()->out('--no-progress Disable progress bar, output per-file compilation progress line by line'); $climate->tab()->out('--no-console Hide console window (Windows only, GUI application)'); $climate->tab()->out('--no-color Disable ANSI color output'); $climate->tab()->out('--sanitize Enable sanitizers (address, undefined, etc.)'); $climate->tab()->out('--build-dir Specify build directory for generated C++ code (default: /build)'); $climate->tab()->out('--dry Dry run: only generate C++ code, skip compilation and linking'); $climate->tab()->out('-I, --include-path Add an additional C++ include directory (repeatable)'); $climate->tab()->out('-D, --define Define a preprocessor macro (repeatable, e.g. -D FOO=bar)'); $climate->tab()->out('--format Enable clang-format code formatting (disabled by default)'); $climate->tab()->out('-l, --link-lib Link against a library (repeatable, e.g. -lcurl)'); $climate->tab()->out('-L, --link-path Add a library search path (repeatable, e.g. -L/usr/local/lib)'); $climate->br(); } /** * 应用命令行参数(在 YAML 解析后调用,确保命令行参数优先级最高) */ protected function applyCommandLineArguments(): void { $this->applyPhpVersionCommandLineArgument(); // 优化级别 if ($this->climate->arguments->defined('optimize')) { $this->optimizeLevel = $this->climate->arguments->get('optimize'); } // 构建模式 if ($this->climate->arguments->defined('mode')) { $this->setBuildMode($this->climate->arguments->get('mode')); } // 调试行号 if ($this->climate->arguments->defined('debug-line')) { $this->debugLine = intval($this->climate->arguments->get('debug-line')); } // 最大并行任务数 if ($this->climate->arguments->defined('job')) { $this->maxJob = intval($this->climate->arguments->get('job')); } // 调试模式 if ($this->climate->arguments->defined('debug')) { $this->debug = true; } // 禁用字面量字符串优化 if ($this->climate->arguments->defined('no-literal-strings')) { $this->noLiteralStrings = true; } // 启用性能分析(需强制重编译 misc 文件以确保 PPROF_ON 宏生效,仅 Linux 支持) if ($this->climate->arguments->defined('profile')) { if (!$this->isLinux()) { $this->climate->error('--profile is only supported on Linux (requires gperftools)'); exit(1); } $this->enableProfiler = true; } // 禁用进度条 if ($this->climate->arguments->defined('no-progress')) { $this->noProgress = true; } // 隐藏控制台窗口 if ($this->climate->arguments->defined('no-console')) { $this->noConsole = true; } // Sanitizer if ($this->climate->arguments->defined('sanitize')) { $this->sanitize = $this->climate->arguments->get('sanitize'); } // C++ 标准版本 if ($this->climate->arguments->defined('cxx-std')) { $this->cxxStd = $this->climate->arguments->get('cxx-std'); } // 目标 CPU 指令集 if ($this->climate->arguments->defined('march')) { $this->march = $this->climate->arguments->get('march'); } // 交叉编译目标平台 if ($this->climate->arguments->defined('target-platform')) { $this->targetPlatform = $this->climate->arguments->get('target-platform'); } // 输出文件名/路径 if ($this->climate->arguments->defined('output')) { $this->setOutputPath($this->climate->arguments->get('output')); } // 构建目录 if ($this->climate->arguments->defined('build-dir')) { $buildDir = $this->climate->arguments->get('build-dir'); if (!empty($buildDir)) { $this->setBuildDir($buildDir); } } // 干运行模式 if ($this->climate->arguments->defined('dry')) { $this->dryRun = true; } // 用户自定义 C++ include 路径(直接从 argv 解析以支持多值) if ($this->hasRepeatableArgvFlag(['-I', '--include-path'])) { $this->userIncludePaths = $this->parseRepeatableArgv(['-I', '--include-path']); } // 用户自定义预处理器宏(直接从 argv 解析以支持多值) if ($this->hasRepeatableArgvFlag(['-D', '--define'])) { $this->userDefines = $this->parseRepeatableArgv(['-D', '--define']); } // 链接时优化 if ($this->climate->arguments->defined('lto')) { $this->enableLto = true; } // clang-format 代码格式化(默认关闭,需显式 --format 开启) if ($this->climate->arguments->defined('format')) { $this->enableCodeFormattingIfAvailable('--format'); } // 用户自定义链接库(直接从 argv 解析以支持多值) if ($this->hasRepeatableArgvFlag(['-l', '--link-lib'])) { $this->linkLibs = $this->parseRepeatableArgv(['-l', '--link-lib']); } // 用户自定义库搜索路径(直接从 argv 解析以支持多值) if ($this->hasRepeatableArgvFlag(['-L', '--link-path'])) { $this->linkPaths = $this->parseRepeatableArgv(['-L', '--link-path']); } } /** Apply this option early because YAML source conditions depend on it. */ protected function applyPhpVersionCommandLineArgument(): void { if ($this->climate->arguments->defined('php-version')) { $this->setPhpVersion((string) $this->climate->arguments->get('php-version')); } } /** * 从原始 $argv 中解析可重复参数,支持 -X val 和 --long val 两种形式。 * CLImate 的 multiple 选项只能保留最后一个值,因此需要手动解析。 * * @param string[] $flags 要匹配的标志列表,如 ['-I', '--include-path'] * @return string[] 收集到的所有值 */ protected function parseRepeatableArgv(array $flags): array { global $argv; $values = []; for ($i = 1; $i < count($argv); $i++) { // 精确匹配标志(如 -I, --include-path) if (in_array($argv[$i], $flags, true) && isset($argv[$i + 1]) && $argv[$i + 1] !== '' && $argv[$i + 1][0] !== '-') { $values[] = $argv[$i + 1]; $i++; // 跳过值 } // 合并形式:-I/path 或 --include-path=/path elseif (!$this->isLongFlagWithEquals($argv[$i], $flags, $values)) { // 检查短标志合并:-I/path foreach ($flags as $flag) { if (strlen($flag) === 2 && $flag[0] === '-') { $short = substr($flag, 1); if (preg_match('/^-' . preg_quote($short, '/') . '(.+)$/', $argv[$i], $m)) { $values[] = $m[1]; } } } } } return $values; } protected function hasRepeatableArgvFlag(array $flags): bool { global $argv; for ($i = 1; $i < count($argv); $i++) { $arg = $argv[$i]; if (in_array($arg, $flags, true)) { return true; } foreach ($flags as $flag) { if (str_starts_with($arg, $flag . '=')) { return true; } if (strlen($flag) === 2 && $flag[0] === '-') { $short = substr($flag, 1); if (preg_match('/^-' . preg_quote($short, '/') . '(.+)$/', $arg)) { return true; } } } } return false; } /** * 处理 --flag=value 格式的长标志 */ private function isLongFlagWithEquals(string $arg, array $flags, array &$values): bool { foreach ($flags as $flag) { if (str_starts_with($flag, '--') && preg_match('/^' . preg_quote($flag, '/') . '=(.+)$/', $arg, $m)) { $values[] = $m[1]; return true; } } return false; } private function showVersion(): void { $this->climate->bold()->out(self::APP_NAME . ' v' . self::VERSION); } private function enableCodeFormattingIfAvailable(string $source): void { $clangFormatVersion = shell_exec('clang-format --version'); if (!empty($clangFormatVersion)) { $this->formatCode = true; return; } $this->climate->warning($source . ' requested but clang-format not found, skipping formatting'); } protected function formatCppCode(string $file): void { if (!$this->formatCode) { return; } $cmd = 'cd ' . escapeshellarg($this->rootPath) . ' && clang-format -i ' . escapeshellarg($file); $this->climate->info('format: ' . $this->getRelativePath($file)); $this->climate->comment($cmd); shell_exec($cmd); } public function save(string $code, string $file): void { $this->writeFile($file, $code); $this->formatCppCode($file); } public function convertFile(string $file): string { $previousPhase = $this->enterCompilerPhase(self::PHASE_CONVERT); try { $file = realpath($file); $phpCode = $this->loadFile($file); $this->localHeaders = []; while (true) { try { $cppCode = $this->doConvert($phpCode); $cppFile = $this->getCppFile($file); $this->save($cppCode, $cppFile); $this->phpSrcFiles[] = $file; // 生成 stub 文件,依赖 convert 阶段的 use 等信息 $this->genStubFile($this->file); return $cppFile; } catch (Redo $e) { continue; } } } finally { $this->restoreCompilerPhase($previousPhase); } } public function getRegisterClassFunctionArgs(ClassDef|InterfaceDef $classDef): string { return implode(', ', $this->getRegisterClassFunctionCeList($classDef)); } /** * 初始化新的 Platform 和 Backend 抽象层 * 这是一个渐进式迁移,保持向后兼容 */ protected function initializeNewArchitecture(): void { try { $platform = $this->platform ?? PlatformFactory::create(); $this->platform = $platform; // 自动检测平台和编译器 $result = CompilerFactory::autoDetect($this->cppCompiler, $platform); $this->platform = $result['platform']; $this->compilerBackend = $result['compiler']; $this->climate->info( "Initialized new architecture: {$this->platform->getName()} + {$this->compilerBackend->getName()}" ); } catch (\Exception $e) { // 如果初始化失败,回退到旧逻辑 $this->climate->warning( "Failed to initialize new architecture: {$e->getMessage()}. Using legacy mode." ); $this->platform = null; $this->compilerBackend = null; } } /** * 设置 C++ 编译器(从配置文件读取) */ public function setCppCompiler(string $compiler): void { $this->cppCompiler = $compiler; $this->climate->info("Using compiler from config: {$this->cppCompiler}"); // 重新初始化 Backend $this->initializeNewArchitecture(); } public function setBuildMode(string $mode): void { $mode = strtolower(trim($mode)); $mode = match ($mode) { 'binary', 'cli' => self::BUILD_MODE_BIN, 'extension' => self::BUILD_MODE_EXT, 'library', 'shared', 'dll', 'dylib', 'so' => self::BUILD_MODE_LIB, default => $mode, }; if (!in_array($mode, [self::BUILD_MODE_BIN, self::BUILD_MODE_EXT, self::BUILD_MODE_LIB], true)) { $this->error("Invalid build mode `{$mode}`. Expected bin, lib, or ext."); } $this->buildMode = $mode; } public function setTargetName(string $name): void { // 如果指定了路径(包含目录分隔符),提取目录和文件名 if (str_contains($name, '/') || str_contains($name, '\\')) { $this->outputDir = dirname($name); $name = basename($name); } $name = str_replace(['-', '*'], '_', $name); if (!preg_match('/^[a-zA-Z0-9_]+$/', $name)) { $this->climate->red('The target name `' . $name . '` must be a valid identifier'); exit(1); } $realTargetPath = $this->rootPath . '/' . $name; if (is_dir($realTargetPath)) { $this->climate->red('The target name `' . $name . '` must not be a directory'); exit(1); } $this->targetName = $name; } /** * Set an explicit output path without using its extension in generated symbols. */ public function setOutputPath(string $path): void { if (str_contains($path, '/') || str_contains($path, '\\')) { $this->outputDir = dirname($path); $path = basename($path); } $extension = pathinfo($path, PATHINFO_EXTENSION); if ($extension !== '') { $this->explicitOutputExtension = '.' . $extension; $path = substr($path, 0, -strlen($this->explicitOutputExtension)); } else { $this->explicitOutputExtension = null; } $this->hasExplicitOutput = true; $this->setTargetName($path); } protected function getTargetFileName(): string { $targetFile = $this->targetName; if ($this->isBuildModeLib() && !$this->isWindows() && !$this->hasExplicitOutput) { $targetFile = 'lib' . $targetFile; } $extension = $this->explicitOutputExtension ?? $this->getPlatform()->getTargetExtension($this->buildMode); if ($extension !== '' && !str_ends_with($targetFile, $extension)) { $targetFile .= $extension; } if ($this->outputDir !== '') { $targetFile = rtrim($this->outputDir, '/\\') . '/' . $targetFile; } return $targetFile; } public function getLibraryImportStubFile(): string { $directory = $this->outputDir !== '' ? $this->outputDir : (getcwd() ?: $this->rootPath); return rtrim($directory, '/\\') . '/' . $this->targetName . '.stub.php'; } /** @param array $files */ public function genLibraryImportStub(array $files): string { $file = $this->getLibraryImportStubFile(); $generator = new LibraryImportStubGenerator($this->parser, $this->printer); $this->writeFile($file, $generator->generate($files, $this->externalImportStubFiles)); $this->climate->info('generate library import stub: ' . $this->getRelativePath($file)); return $file; } public function preprocessArgvAdvanced(): void { global $argv; $processed = [$argv[0]]; for ($i = 1; $i < count($argv); $i++) { $arg = $argv[$i]; if (preg_match('/^-([a-zA-Z])(.+)$/', $arg, $matches)) { $option = $matches[1]; $value = $matches[2]; $processed[] = "-{$option}"; $processed[] = $value; } elseif (preg_match('/^-([a-zA-Z]{2,})$/', $arg, $matches)) { $options = str_split($matches[1]); foreach ($options as $opt) { $processed[] = "-{$opt}"; } } else { $processed[] = $arg; } } $argv = $processed; } public function genDataDeclarations(string $file): void { $lines[] = '#include '; $lines[] = PHP_EOL; // Embedded binaries populate the CLI script fields in $_SERVER at // request startup, even when the source does not reference $_SERVER. if ($this->isBuildModeBin() && !$this->hasGlobalVar('_SERVER')) { $this->addGlobalVar('_SERVER', Type::ARRAY); } foreach ($this->globalVars as $name => $type) { $lines[] = 'extern THREAD_LOCAL ' . Type::VAR . ' ' . $this->escapeGlobalVar($name) . ';'; } if ($this->literalStrings) { $literalStringsCount = count($this->literalStrings); $lines[] = 'extern ' . Type::STR . ' ' . self::LITERAL_STRINGS . '[' . $literalStringsCount . '];' . PHP_EOL; } foreach ($this->constants as $name => $constant) { $lines[] = 'extern ' . $constant->type . ' ' . $name . ';'; } // 确保数组大小至少为 1,避免 C/C++ 编译错误 $classCount = max(1, count($this->classMap)); $lines[] = 'extern THREAD_LOCAL zend_class_entry *' . self::PREFIX . self::CLASS_MAP . '[' . $classCount . '];' . PHP_EOL; $funcCount = max(1, count($this->funcMap)); $lines[] = 'extern THREAD_LOCAL zend_function *' . self::PREFIX . self::FUNC_MAP . '[' . $funcCount . '];' . PHP_EOL; $propCount = max(1, count($this->propMap)); $lines[] = 'extern THREAD_LOCAL uint32_t ' . self::PREFIX . self::PROP_MAP . '[' . $propCount . '];' . PHP_EOL; foreach ($this->getClassLikesWithConstants() as $classDef) { foreach ($classDef->constants as $constant) { if ($constant->type === Type::ARRAY) { $constName = self::PREFIX . $this->getNativeName($constant->name, $classDef->namespace, $classDef->name); $lines[] = 'extern ' . Type::VAR . ' ' . $constName . ';' . PHP_EOL; } } } $code = implode(PHP_EOL, $lines) . PHP_EOL . PHP_EOL; $this->writeFile($file, $code); } public function genExtension(): string { if ($this->isBuildModeBin()) { if (!$this->hasFunction(self::ENTRY_FUNCTION)) { $this->climate->red('When the build mode is a binary executable file, the `main()` function must be defined'); exit(1); } } $file = $this->getBuildDir() . '/extension-' . $this->targetName . '.cc'; $this->localHeaders = $this->argInfoHeaderFiles; $this->genClassCeList(); $this->indentLevel++; $code = $this->genIncludeHeaderFiles(); if ($this->isBuildModeLib() && !$this->isWindows()) { // PHPX's embedded runtime references this CLI-only symbol even when main() is disabled. $code .= 'extern "C" void save_ps_args(int, char **) {}' . PHP_EOL; } if ($this->isBuildModeBin()) { $cliHeaders = [ '#include "php_cli_process_title.h"', '#include "php_cli_process_title_arginfo.h"', ]; $code .= 'extern "C" {' . PHP_EOL; $code .= implode(PHP_EOL, $cliHeaders) . PHP_EOL; $code .= '}' . PHP_EOL; } $code .= "// global vars \n"; foreach ($this->globalVars as $name => $type) { $code .= 'THREAD_LOCAL ' . Type::VAR . ' ' . $this->escapeGlobalVar($name) . ';' . PHP_EOL; } $code .= "// class register functions \n"; foreach ($this->classCeList as $ce) { $code .= 'zend_class_entry *' . $ce . ';' . PHP_EOL; } $code .= "// class entry \n"; // 确保数组大小至少为 1,避免 C/C++ 编译错误 $code .= 'THREAD_LOCAL zend_class_entry *' . self::PREFIX . self::CLASS_MAP . '[' . max(1, count($this->classMap)) . '];' . PHP_EOL; $code .= "// func \n"; $code .= 'THREAD_LOCAL zend_function *' . self::PREFIX . self::FUNC_MAP . '[' . max(1, count($this->funcMap)) . '];' . PHP_EOL; $code .= "// property \n"; $code .= 'THREAD_LOCAL uint32_t ' . self::PREFIX . self::PROP_MAP . '[' . max(1, count($this->propMap)) . '];' . PHP_EOL; $code .= "// functions \n"; $code .= <<<'CODE' zend_class_entry *php_get_class(int class_id, const php::Str &class_name) { if (UNEXPECTED(php_class_map[class_id] == nullptr)) { php_class_map[class_id] = php::getClassEntrySafe(class_name); } return php_class_map[class_id]; } zend_function *php_get_func(int func_id, const php::Str &func_name) { if (UNEXPECTED(php_func_map[func_id] == nullptr)) { php_func_map[func_id] = php::getFunction(func_name); } return php_func_map[func_id]; } zend_function *php_get_method(int func_id, const php::Str &method_name, int class_id, const php::Str &class_name) { if (UNEXPECTED(php_func_map[func_id] == nullptr)) { auto ce = php_get_class(class_id, class_name); php_func_map[func_id] = php::getMethod(ce, method_name); } return php_func_map[func_id]; } uint32_t php_get_prop(int prop_id, const php::Str &prop_name, int class_id, const php::Str &class_name) { if (UNEXPECTED(php_property_map[prop_id] == 0)) { php_property_map[prop_id] = php::getPropertyOffset(class_name, prop_name) + 1024; } return php_property_map[prop_id] - 1024; } CODE; $code .= "\n\n"; $code .= "// literal strings \n"; if ($this->literalStrings) { $code .= Type::STR . ' ' . self::LITERAL_STRINGS . '[] = {' . PHP_EOL; foreach ($this->literalStrings as $str => $index) { $code .= Type::STR . '{ZEND_STRL("' . $this->escapeString($str) . '"), true}, // [' . $index . ']' . PHP_EOL; } $code .= '};' . PHP_EOL . PHP_EOL; } else { $code .= PHP_EOL; } $code .= "// default argument values \n"; $code .= $this->genDefaultArgumentHelperDefinitions(); $code .= "// constants \n"; foreach ($this->constants as $name => $const) { $code .= $const->type . ' ' . $name . ";\n"; } $code .= "// class \n"; foreach ($this->getClassLikesWithConstants() as $classDef) { if ($classDef instanceof ClassDef && !$classDef->trait && !$classDef->enum) { $code .= 'static zend_object* (*create_object_' . $classDef->getNamespacedName() . ")(zend_class_entry *class_type);\n"; $code .= 'static zend_object_handlers property_handlers_' . $classDef->getNamespacedName() . ";\n"; } foreach ($classDef->constants as $constant) { if ($constant->type === Type::ARRAY) { $constName = self::PREFIX . $this->getNativeName($constant->name, $classDef->namespace, $classDef->name); $code .= Type::VAR . ' ' . $constName . ";\n"; } } } $code .= "// clang-format off\n"; $code .= "static const zend_function_entry ext_functions[] = {\n"; if ($this->isBuildModeBin()) { $code .= $this->getIndent() . "PHP_FE(cli_set_process_title, arginfo_cli_set_process_title)\n"; $code .= $this->getIndent() . "PHP_FE(cli_get_process_title, arginfo_cli_get_process_title)\n"; } foreach ($this->symbols->functions() as $functionDef) { if ($functionDef->attributeFactory) { continue; } if ($this->isBuildModeExt() and $functionDef->name === self::ENTRY_FUNCTION) { continue; } if ($functionDef->method) { continue; } $fullName = $functionDef->getNamespacedName(); $zifName = $this->escapeZendFnName($fullName); if ($functionDef->namespace) { $code .= $this->getIndent() . 'ZEND_NAMED_FE("' . $this->escapeString($fullName) . '", ZEND_FN(' . $zifName . '), arginfo_' . $zifName . ')' . PHP_EOL; } else { $code .= $this->getIndent() . 'ZEND_FE(' . $zifName . ', arginfo_' . $zifName . ')' . PHP_EOL; } } $code .= $this->getIndent() . "ZEND_FE_END\n};\n// clang-format on" . PHP_EOL . PHP_EOL; // minit begin $code .= 'PHP_MINIT_FUNCTION(' . $this->getModuleName() . ') {' . PHP_EOL; $code .= 'zend_try {' . PHP_EOL; $code .= '// class/interface class entries' . PHP_EOL; $code .= 'typephp_register_fiber_generator_class();' . PHP_EOL; $code .= 'if (typephp_install_reflection_attribute_handlers() != SUCCESS) {' . PHP_EOL; $code .= $this->getIndent() . 'return FAILURE;' . PHP_EOL; $code .= '}' . PHP_EOL; $code .= $this->genClassPropertyInit() . PHP_EOL; $code .= '// register symbols' . PHP_EOL; foreach ($this->registerSymbols as $registerSymbolFn) { $code .= $registerSymbolFn . '(module_number);' . PHP_EOL; } $code .= '} zend_end_try();' . PHP_EOL; $code .= 'return SUCCESS;' . PHP_EOL; $code .= '}' . PHP_EOL . PHP_EOL; // minit end $code .= 'PHP_MSHUTDOWN_FUNCTION(' . $this->getModuleName() . ') {' . PHP_EOL; $code .= 'typephp_uninstall_reflection_attribute_handlers();' . PHP_EOL; $code .= 'return SUCCESS;' . PHP_EOL; $code .= '}' . PHP_EOL . PHP_EOL; $code .= 'THREAD_LOCAL zval globals_array;' . PHP_EOL; // php_app_init begin $code .= 'void php_app_init() {' . PHP_EOL; $code .= '// register constants' . PHP_EOL; foreach ($this->constants as $name => $const) { $code .= "{$name} = {$const->value};\n"; $code .= 'php::fn::define(' . $this->genCharPtr($const->name, true) . ', ' . $name . ');' . PHP_EOL; } $code .= '// global vars ' . PHP_EOL; foreach ($this->globalVars as $name => $type) { if ($name == 'GLOBALS') { continue; } $code .= 'php::initGlobal(' . $this->genCharPtr($name) . ', ' . $this->escapeGlobalVar($name) . ');' . PHP_EOL; } $code .= '// static property ' . PHP_EOL; foreach ($this->symbols->classes() as $classDef) { // Traits are never instantiated on their own; their static properties // live on the classes that use them (where the members are flattened). // Initialising a default on the trait itself would write to the trait's // static property table and, on PHP >= 8.3, trigger a // "Accessing static trait property" deprecation when the value is read // through `self::` from a consuming class. Skip traits here; the // consuming classes still initialise their own (flattened) copies. if ($classDef->trait) { continue; } foreach ($classDef->properties as $property) { if (!$property->isStatic() || $property->default === null) { continue; } if ($property->arrayInitPlan) { $statement = 'php::setStaticProperty(' . $this->genCharPtr($classDef->getNamespacedName(false), true) . ', ' . $this->genCharPtr($property->name) . ', ' . $property->arrayInitPlan->expr . ');' . PHP_EOL; $code .= $this->wrapArrayInitPlan($property->arrayInitPlan, $statement); } else { $default = $property->type === Type::FLOAT ? $this->convertFloatExpr($property->default) : $property->default; $statement = 'php::setStaticProperty(' . $this->genCharPtr($classDef->getNamespacedName(false), true) . ', ' . $this->genCharPtr($property->name) . ', ' . 'php::Var(' . $default . '));' . PHP_EOL; $code .= $statement; } } } $code .= '// class array constants' . PHP_EOL; $code .= $this->genClassArrayConstants(); $code .= '}' . PHP_EOL . PHP_EOL; // php_app_init end // php_app_clean begin $code .= 'void php_app_clean() {' . PHP_EOL; foreach ($this->globalVars as $name => $type) { if ($name != 'GLOBALS') { $code .= $this->escapeGlobalVar($name) . '.unset();' . PHP_EOL; $code .= 'php::unsetGlobal("' . $name . '");' . PHP_EOL; } } foreach ($this->constants as $name => $const) { if ($const->type !== Type::VAR) { continue; } $code .= $name . '.unset();' . PHP_EOL; } $code .= '// class array constants' . PHP_EOL; foreach ($this->getClassLikesWithConstants() as $classDef) { foreach ($classDef->constants as $constant) { if ($constant->type === Type::ARRAY) { $constName = self::PREFIX . $this->getNativeName($constant->name, $classDef->namespace, $classDef->name); $code .= $constName . ".unset();\n"; $classNameStr = $this->genCharPtr($classDef->getNamespacedName(false), true); $classConstStr = $this->genCharPtr($constant->name); $code .= "php::updateConstant($classNameStr, $classConstStr, php::null);\n"; } } } // Clean up inherited array constants from child classes foreach ($this->symbols->classes() as $className => $classDef) { $ownConstNames = []; foreach ($classDef->constants as $constant) { if ($constant->type === Type::ARRAY) { $ownConstNames[$constant->name] = true; } } $parentName = $this->escapeClass($classDef->extends); while ($parentName && $this->symbols->hasClass($parentName)) { $parentDef = $this->symbols->class($parentName); foreach ($parentDef->constants as $constant) { if ($constant->type === Type::ARRAY && !isset($ownConstNames[$constant->name])) { $ownConstNames[$constant->name] = true; $classNameStr = $this->genCharPtr($classDef->getNamespacedName(false), true); $classConstStr = $this->genCharPtr($constant->name); $code .= "php::updateConstant($classNameStr, $classConstStr, php::null);\n"; } } $parentName = $this->escapeClass($parentDef->extends); } foreach ($this->getClassImplementedInterfaces($classDef) as $interfaceName) { if (!$this->hasInterface($interfaceName)) { continue; } $interfaceDef = $this->getInterface($interfaceName); foreach ($interfaceDef->constants as $constant) { if ($constant->type === Type::ARRAY && !isset($ownConstNames[$constant->name])) { $ownConstNames[$constant->name] = true; $classNameStr = $this->genCharPtr($classDef->getNamespacedName(false), true); $classConstStr = $this->genCharPtr($constant->name); $code .= "php::updateConstant($classNameStr, $classConstStr, php::null);\n"; } } } } // 扩展模式,需要在 RSHUTDOWN 阶段中清理函数、类、属性表 if ($this->isBuildModeExt()) { $code .= 'std::memset(' . self::PREFIX . self::FUNC_MAP . ', 0, sizeof(' . self::PREFIX . self::FUNC_MAP . '));' . PHP_EOL; $code .= 'std::memset(' . self::PREFIX . self::CLASS_MAP . ', 0, sizeof(' . self::PREFIX . self::CLASS_MAP . '));' . PHP_EOL; $code .= 'std::memset(' . self::PREFIX . self::PROP_MAP . ', 0, sizeof(' . self::PREFIX . self::PROP_MAP . '));' . PHP_EOL; } $code .= '}' . PHP_EOL . PHP_EOL; // php_app_clean end $moduleName = $this->getModuleName(); // rinit begin $code .= 'PHP_RINIT_FUNCTION(' . $moduleName . ') {' . PHP_EOL; $code .= 'php::request_init();' . PHP_EOL; $code .= 'php_app_init();' . PHP_EOL; if ($this->isBuildModeBin()) { $entryFunction = $this->symbols->function(self::ENTRY_FUNCTION); // FunctionDef::sourceFile comes from loadFile()'s realpath(), so the // CLI script fields always identify main()'s canonical absolute file. $entryFile = $entryFunction->sourceFile; $entryFileArg = $this->genCharPtr($entryFile, true); $entryPrefix = str_repeat("\n", max(0, $entryFunction->startLine - 1)); if (count($entryFunction->argInfoList) == 2) { $entryScript = $entryPrefix . 'global $argc, $argv; main($argc, $argv);'; } else { $entryScript = $entryPrefix . 'main();'; } $code .= 'php::eval(' . $this->genCharPtr($entryScript, true) . ', ' . $entryFileArg . ');' . PHP_EOL; } $code .= 'return SUCCESS;' . PHP_EOL; $code .= '}' . PHP_EOL . PHP_EOL; // rinit end $code .= <<isBuildModeExt()) { $code .= "ZEND_GET_MODULE({$moduleName});\n"; } else { $code .= 'zend_module_entry *' . self::PREFIX . 'embed_get_module() {' . PHP_EOL; $code .= $this->getIndent() . 'return &' . $moduleName . '_module_entry;' . PHP_EOL; $code .= '}' . PHP_EOL; } $this->indentLevel--; $this->writeFile($file, $code); $this->formatCppCode($file); $this->localHeaders = []; return $file; } public function getModuleName(): string { return Constants::EXTENSION_PREFIX . $this->targetName; } /** * 检查 phpx/src/misc/ 下的源文件是否已有有效缓存,始终生效(除非指定 --force)。 * 缓存必须匹配编译命令和 PHP ABI,且 .o 文件必须不早于源文件和 phpx 头文件。 */ public function hasMiscObjectFileCache(string $cppFile): bool { if ($this->climate->arguments->defined('force') || $this->enableProfiler) { return false; } $objectFile = $this->getObjectFile($cppFile); if (!file_exists($objectFile)) { return false; } $metadataFile = $this->getMiscObjectCacheMetadataFile($objectFile); if (!is_file($metadataFile)) { return false; } $cachedKey = file_get_contents($metadataFile); if ($cachedKey === false || trim($cachedKey) !== $this->getMiscObjectCacheKey($cppFile, $objectFile)) { return false; } $objectMtime = filemtime($objectFile); if ($objectMtime <= filemtime($cppFile)) { return false; } $phpxDir = $this->getPhpxDir(); $headerDirs = [$phpxDir . '/include', $phpxDir . '/src/misc']; foreach ($headerDirs as $dir) { if (!is_dir($dir)) { continue; } $iterator = new \RecursiveIteratorIterator( new \RecursiveDirectoryIterator($dir, \FilesystemIterator::SKIP_DOTS) ); foreach ($iterator as $file) { if ($file->getExtension() === 'h' && $file->getMTime() > $objectMtime) { return false; } } } return true; } protected function getMiscObjectCacheMetadataFile(string $objectFile): string { return $objectFile . '.typephp-cache'; } protected function getMiscObjectCacheKey(string $sourceFile, string $objectFile): string { $abi = [ 'php_version_id' => PHP_VERSION_ID, 'php_api_version' => defined('PHP_API_VERSION') ? constant('PHP_API_VERSION') : null, 'zend_module_api' => defined('ZEND_MODULE_API_NO') ? constant('ZEND_MODULE_API_NO') : null, 'php_zts' => defined('PHP_ZTS') ? PHP_ZTS : null, 'php_debug' => defined('PHP_DEBUG') ? PHP_DEBUG : null, 'integer_size' => PHP_INT_SIZE, ]; return hash('sha256', $this->buildCompileFileCommand($sourceFile, $objectFile) . "\0" . serialize($abi)); } protected function writeMiscObjectCacheMetadata(string $sourceFile, string $objectFile): void { $metadataFile = $this->getMiscObjectCacheMetadataFile($objectFile); if (file_put_contents($metadataFile, $this->getMiscObjectCacheKey($sourceFile, $objectFile) . PHP_EOL) === false) { throw new \RuntimeException('Cannot write misc object cache metadata: ' . $metadataFile); } } protected function invalidateMiscObjectCache(string $objectFile): void { $metadataFile = $this->getMiscObjectCacheMetadataFile($objectFile); if (is_file($metadataFile)) { unlink($metadataFile); } } public function isPhpxMiscFile(string $cppFile): bool { $miscDir = $this->getPhpxDir() . '/src/misc/'; return str_starts_with($cppFile, $miscDir); } /** * 判断文件是否为 C++ 源文件 */ protected function isCppFile(string $filePath): bool { $extension = pathinfo($filePath, PATHINFO_EXTENSION); return in_array($extension, ['cc', 'cpp', 'cxx'], true); } /** * 根据文件扩展名获取语言类型标识(用于 -x 参数). * * @return string|null 语言标识(c, assembler, objective-c, objective-c++), * 或 null 表示使用默认检测(C++ 文件) */ protected function getLanguageFromExtension(string $filePath): ?string { $ext = strtolower(pathinfo($filePath, PATHINFO_EXTENSION)); return match ($ext) { 'c' => 'c', 's', 'S' => 'assembler', 'm' => 'objective-c', 'mm' => 'objective-c++', 'cc', 'cpp', 'cxx' => null, default => null, }; } /** * 判断文件是否为原生编译型源文件(C/C++/汇编/ObjC 等). */ protected function isNativeSourceFile(string $filePath): bool { return FileScanner::isNativeSourceFile($filePath); } public function compileFile(string $cppFile, string $objectFile, bool $parallel = false): void { if ($this->isPhpxMiscFile($cppFile) && $this->hasMiscObjectFileCache($cppFile)) { if (!$parallel) { $this->climate->darkGray('[cache] skip: ' . $cppFile); } return; } $isMiscFile = $this->isPhpxMiscFile($cppFile); if ($isMiscFile) { $this->invalidateMiscObjectCache($objectFile); } $language = $this->getLanguageFromExtension($cppFile); $options = match ($language) { null => $this->getCompileCommandOptions(), 'c' => $this->getCCompileCommandOptions(), default => $this->getNativeCompileCommandOptions($language), }; $result = $this->getNativeBuilder()->compile($cppFile, $objectFile, $options, $language, $parallel); if (!$parallel) { $this->climate->comment($result['command']); } if ($result['status'] !== 0) { if ($parallel && !empty($result['output'])) { foreach ($result['output'] as $line) { $this->climate->red($line); } } $this->error('compile failed: ' . $cppFile); } if ($isMiscFile) { $this->writeMiscObjectCacheMetadata($cppFile, $objectFile); } } protected function buildCompileFileCommand(string $sourceFile, string $objectFile): string { $language = $this->getLanguageFromExtension($sourceFile); $options = match ($language) { null => $this->getCompileCommandOptions(), 'c' => $this->getCCompileCommandOptions(), default => $this->getNativeCompileCommandOptions($language), }; return $this->getNativeBuilder()->compileCommand($sourceFile, $objectFile, $options, $language); } public function compile(array $sourceFiles): array { $job = $this->maxJob; $sourceFiles[] = $this->getPhpxDir() . '/src/misc/typephp_fiber_generator.cc'; $sourceFiles[] = $this->getPhpxDir() . '/src/misc/typephp_helper.cc'; // embed 需要 main 函数,以及 cli 的内置函数定义 if ($this->isBuildModeEmbed()) { $sourceFiles[] = $this->getPhpxDir() . '/src/misc/typephp_main.cc'; } if ($this->isBuildModeBin()) { $sourceFiles[] = $this->getPhpxDir() . '/src/misc/php_cli_process_title.c'; $sourceFiles[] = $this->getPhpxDir() . '/src/misc/ps_title.c'; } $this->preparePhpXPrecompiledHeader(); // Windows 平台:编译资源文件(图标、版本信息等) $this->compileResourceFile(); if (!$this->getPlatform()->supportsPcntlParallelCompile() or $job <= 1) { return $this->compileSourceFile($sourceFiles); } // Unix/Linux/macOS 使用 pcntl 并行编译 return $this->compileWithPcntl($sourceFiles, $job); } protected function preparePhpXPrecompiledHeader(): void { $backend = $this->getCompilerBackend(); if (!$backend->supportsPrecompiledHeaders()) { return; } $phpxDir = $this->getPhpxDir(); $phpDir = $this->getPhpDir(); $dependencies = [ $phpxDir . '/include', $phpxDir . '/src/misc', $phpxDir . '/thirdparty/mpdecimal/libmpdec', $phpxDir . '/thirdparty/mpdecimal/libmpdec++', $phpDir . '/include', ]; try { $result = (new PrecompiledHeaderManager($backend, $this->getNativeBuilder()))->prepare( $this->globalHeaders, $dependencies, $this->getBuildDir() . '/cache/pch', $this->getPrecompiledHeaderCompileCommandOptions(), ); $this->precompiledHeader = [ 'header' => $result['header'], 'artifact' => $result['artifact'], ]; $displayArtifact = $this->getRelativePath($result['artifact']); $this->climate->darkGray($result['cached'] ? '[pch] cache: ' . $displayArtifact : '[pch] built: ' . $displayArtifact); } catch (\Throwable $e) { // PCH is an optimization. A compiler-specific failure must not make // an otherwise valid TypePHP project unbuildable. $this->precompiledHeader = null; $this->climate->warning('[pch] disabled: ' . $e->getMessage()); } } protected function compileSourceFile(array $sourceFiles): array { $objectFiles = []; $totalFiles = count($sourceFiles); $failedFiles = []; $this->climate->lightBlue("Starting compilation for {$totalFiles} files"); $index = 0; foreach ($sourceFiles as $cppFile) { $objectFile = $this->getObjectFile($cppFile); try { $this->compileFile($cppFile, $objectFile, false); if (is_file($objectFile)) { $objectFiles[] = $objectFile; } else { $failedFiles[] = $cppFile; $this->climate->red("Compilation failed: {$cppFile}"); $index++; continue; } } catch (\Throwable $e) { $failedFiles[] = $cppFile; $this->climate->red("Compilation error: {$cppFile} - " . $e->getMessage()); $index++; continue; } $index++; if ($this->noProgress) { $percent = intval($index / $totalFiles * 100); $cppFileShorted = $this->removeCommonPrefix($this->buildDir, $cppFile); $this->climate->white("[{$index}/{$totalFiles}] {$percent}% {$cppFileShorted}"); } } if (!empty($failedFiles)) { throw new \Exception('Compilation failed for: ' . implode(', ', $failedFiles)); } $this->climate->green("Successfully compiled {$totalFiles} files"); return $objectFiles; } /** * Unix/Linux/macOS 平台并行编译(使用 pcntl) */ protected function pcntlWait(?int &$status): int { return pcntl_wait($status); } protected function pcntlFork(): int { return pcntl_fork(); } protected function pcntlLastError(): int { return pcntl_get_last_error(); } protected function waitForCompileChild(): array { do { $status = null; $pid = $this->pcntlWait($status); $error = $pid === -1 ? $this->pcntlLastError() : 0; } while ($pid === -1 && defined('PCNTL_EINTR') && $error === PCNTL_EINTR); if ($pid === -1) { $message = function_exists('pcntl_strerror') ? pcntl_strerror($error) : 'error ' . $error; throw new \RuntimeException('Failed to wait for compiler process: ' . $message); } return [$pid, (int) $status]; } protected function compileChildSucceeded(int $status): bool { return pcntl_wifexited($status) && pcntl_wexitstatus($status) === 0; } protected function getCompileChildFailureReason(int $status): string { if (pcntl_wifsignaled($status)) { return 'terminated by signal ' . pcntl_wtermsig($status); } if (pcntl_wifexited($status)) { return 'exited with status ' . pcntl_wexitstatus($status); } return 'terminated abnormally'; } protected function compileWithPcntl(array $sourceFiles, int $job): array { if (!function_exists('pcntl_fork')) { $this->climate->warning('pcntl extension not available, using sequential compilation'); return $this->compileSourceFile($sourceFiles); } $totalFiles = count($sourceFiles); $this->climate->lightBlue("Starting parallel compilation with {$job} jobs for {$totalFiles} files"); $progress = null; if (!$this->noProgress) { $progress = new Progressbar(); $progress->barStyle([AnsiTerminal::FG_GREEN]) ->percentageStyle([AnsiTerminal::TEXT_BOLD]) ->labelStyle([AnsiTerminal::FG_CYAN]); $progress->renderInPlace(0, $totalFiles, 'Compiling'); } $result = $this->getNativeBuilder()->dispatchParallel( $sourceFiles, $job, fn(string $source): string => $this->getObjectFile($source), function (string $source, string $object): void { $this->compileFile($source, $object, true); }, fn(): int => $this->pcntlFork(), fn(): array => $this->waitForCompileChild(), fn(int $status): bool => $this->compileChildSucceeded($status), function (string $source, string $object, int $status, bool $success, int $completed) use ($progress, $totalFiles): void { if (!$success) { echo PHP_EOL; $this->climate->red("Compilation failed: {$source} ({$this->getCompileChildFailureReason($status)})"); } if ($this->noProgress) { $percent = $completed >= $totalFiles ? 100 : min(99, (int) ceil($completed / $totalFiles * 100)); $shortSource = $this->removeCommonPrefix($this->buildDir, $source); $this->climate->white("[{$completed}/{$totalFiles}] {$percent}% {$shortSource}"); } else { $progress->renderInPlace($completed, $totalFiles, 'Compiling'); } }, ); if (!$this->noProgress) { echo PHP_EOL; } if ($result['failures'] !== []) { throw new \Exception('Compilation failed for: ' . implode(', ', $result['failures'])); } $this->climate->green("Successfully compiled {$totalFiles} files"); return $result['objects']; } public function output(string $message, string $style = 'out'): void { $this->climate->{$style}($message); } protected function buildLinkCommand(array $objectFiles, string $targetFile): string { return $this->getNativeBuilder()->linkCommand($objectFiles, $targetFile, $this->getLinkCommandOptions()); } public function build(array $objectFiles): string { $targetFile = $this->getTargetFileName(); // Windows 平台:将 .res 资源文件加入链接 if ($this->isWindows() && $this->hasResourceFile()) { $resFile = $this->getResourceResFile(); if (file_exists($resFile)) { $objectFiles[] = $resFile; } } $buildError = null; $result = $this->getNativeBuilder()->link($objectFiles, $targetFile, $this->getLinkCommandOptions()); $this->climate->comment($result['command']); foreach ($result['output'] as $line) { $this->climate->out($line); } if ($result['status'] !== 0) { $buildError = 'link failed: ' . $targetFile; } elseif (!$result['generated']) { $buildError = 'target file not generated: ' . $targetFile; } if ($buildError !== null) { $this->error($buildError); } $this->climate->green('Build successful: ' . $targetFile); return $targetFile; } protected function getNativeBuilder(): NativeBuilder { return $this->nativeBuilder ??= new NativeBuilder($this->getCompilerBackend()); } public function isRunRequested(): bool { return $this->climate->arguments->defined('run'); } public function isDryRun(): bool { return $this->dryRun; } public function run(string $targetFile): never { if ($this->buildMode !== self::BUILD_MODE_BIN) { $this->climate->error('--run is only supported in binary mode (-m bin), not library or extension mode'); exit(1); } if (DIRECTORY_SEPARATOR !== '\\' && !str_starts_with($targetFile, '/')) { $targetFile = './' . $targetFile; } $targetArgs = $this->getTargetArgs(); $command = escapeshellcmd($targetFile); if (!empty($targetArgs)) { $escapedArgs = []; foreach ($targetArgs as $targetArg) { $escapedArgs[] = escapeshellarg($targetArg); } $command .= ' ' . implode(' ', $escapedArgs); } fwrite(STDERR, "Running: {$command}\n"); passthru($command, $exitCode); exit($exitCode); } public function getTargetArgs(): array { return $this->climate->arguments->trailingArray() ?? []; } public function genFunctionDeclarations(string $file): void { $code = '#pragma once' . PHP_EOL . PHP_EOL; $code .= '#include ' . PHP_EOL; $code .= '#include ' . PHP_EOL; $code .= '#include ' . PHP_EOL; $code .= PHP_EOL; if ($this->isBuildModeLib()) { $code .= $this->genLibraryApiMacro($this->targetName); } $importLibraries = []; foreach ($this->symbols->functions() as $function) { if ($this->isImportedFunction($function)) { $importLibraries[$function->importLibrary] = true; } } foreach (array_keys($importLibraries) as $library) { $code .= $this->genLibraryImportMacro($library); } $code .= $this->genDefaultArgumentHelperDeclarations(); foreach ($this->symbols->functions() as $name => $func) { $functionDeclarationPrefix = $this->getFunctionDeclarationPrefix($func); $list = []; if ($func->method) { $list[] = Type::OBJECT . ' &this_'; if ($func->hasTraitParentCeParameter) { $list[] = 'zend_class_entry *trait_parent_ce'; } } $argInfoList = $func->argInfoList; if ($argInfoList) { foreach ($argInfoList as $argumentIndex => $argInfo) { if ($argInfo->variadic) { $arg = Type::ARRAY . ' ' . $argInfo->name . ' = ' . $this->genDefaultArgumentExpr($name, $argumentIndex); } else { $arg = $this->genArgumentDeclaration($argInfo); if ($argInfo->default !== '' && !$this->isConstructorNativeFunction($func)) { $arg .= ' = ' . $this->genDefaultArgumentExpr($name, $argumentIndex); } } $list[] = $arg; } } $params = implode(', ', $list); $functionAttribute = $this->getFunctionOptimizationAttribute($func); $code .= $functionDeclarationPrefix . $functionAttribute . ($func->returnsByRef ? Type::REF : $func->returnType) . ' ' . self::PREFIX . $name . '(' . $params . ');' . PHP_EOL; if ($func->hasMultiReturn()) { $code .= 'namespace ' . self::MULTI_RETURN_NAMESPACE . ' {' . PHP_EOL; $code .= $functionDeclarationPrefix . $functionAttribute . $func->getMultiReturnCppType() . ' ' . self::PREFIX . $name . '(' . $params . ');' . PHP_EOL; $code .= '}' . PHP_EOL; } } $this->writeFile($file, $code); } protected function getLibraryApiMacroName(): string { return 'TYPEPHP_' . strtoupper($this->targetName) . '_API'; } protected function genLibraryApiMacro(string $library): string { $apiMacro = $this->getNamedLibraryApiMacroName($library); $exportsMacro = $this->getNamedLibraryExportsMacroName($library); $code = "#if defined({$exportsMacro})\n"; $code .= "# define {$apiMacro} TYPEPHP_SYMBOL_EXPORT\n"; $code .= "#else\n"; $code .= "# define {$apiMacro} TYPEPHP_SYMBOL_IMPORT\n"; return $code . "#endif\n\n"; } protected function genLibraryImportMacro(string $library): string { $importMacro = $this->getNamedLibraryImportMacroName($library); return "#define {$importMacro} TYPEPHP_SYMBOL_IMPORT\n\n"; } protected function getFunctionDeclarationPrefix(FunctionDef $function): string { if ($this->isImportedFunction($function)) { return $this->getNamedLibraryImportMacroName($function->importLibrary) . ' '; } if ($this->isBuildModeLib() && $function->exported) { return $this->getLibraryApiMacroName() . ' '; } return 'extern '; } protected function getFunctionOptimizationAttribute(FunctionDef $function): string { if ($function->hot) { return 'TYPEPHP_HOT_ATTRIBUTE '; } if ($function->cold) { return 'TYPEPHP_COLD_ATTRIBUTE '; } return ''; } protected function isImportedFunction(FunctionDef $function): bool { return $function->importLibrary !== ''; } protected function getNamedLibraryApiMacroName(string $library): string { return 'TYPEPHP_' . strtoupper($library) . '_API'; } protected function getNamedLibraryImportMacroName(string $library): string { return 'TYPEPHP_' . strtoupper($library) . '_IMPORT'; } protected function getNamedLibraryExportsMacroName(string $library): string { return 'TYPEPHP_' . strtoupper($library) . '_EXPORTS'; } protected function getLibraryExportsMacroName(): string { return $this->getNamedLibraryExportsMacroName($this->targetName); } public function getBuildMode(): string { return $this->buildMode; } public function getArgInfoStubFilename(string $stubFile): string { $rs = str_replace(['.stub.php', '.php'], '', $stubFile); return str_replace('-', '_', $rs); } public function getArgInfoHeaderFile(string $file, bool $relative = false): string { $filePath = $this->getRelativePath(str_replace(['.stub.php', '.php'], '', $file)); $filename = self::PREFIX . str_replace(['/', '\\'], '_', $filePath); $filename = $this->escapeFileName($filename); $absPath = $this->getIncludeDir() . "/{$filename}_arginfo.h"; if ($relative) { return ltrim($this->removeCommonPrefix($this->getIncludeDir(), $absPath), '/'); } return $absPath; } public function genIncludeHeaderFiles(): string { $headers = array_merge($this->globalHeaders, [ "php_{$this->targetName}_func_decl.h", "php_{$this->targetName}_data_decl.h", ], $this->localHeaders); $lines = []; foreach ($headers as $header) { $lines[] = '#include <' . $header . '>'; } return implode(PHP_EOL, $lines) . PHP_EOL; } public function genClassPropertyInit(): string { $code = ''; foreach ($this->classCeList as $ce) { $info = $this->classCeInfo[$ce] ?? $this->getInternalCeInfo($ce); $code .= "{$ce} = {$info['func']}({$info['args']});\n"; $classDef = !empty($info['classDef']) ? $info['classDef'] : null; /** * @var ClassDef $classDef */ if ($classDef && !$classDef->trait && !$classDef->enum) { $className = $classDef->getNamespacedName(); $handlers = "property_handlers_{$className}"; $initBlock = ''; foreach ($classDef->properties as $property) { if ($property->isStatic() || $property->default === null) { continue; } if ($property->arrayInitPlan) { $init = "auto value = {$property->arrayInitPlan->expr};\n"; $init .= 'zend_update_property(' . $ce . ', obj, ' . $this->genZendStrl($property->name) . ", value.ptr());\n"; $init .= "php::throwErrorIfOccurred();\n"; $initBlock .= $this->wrapArrayInitPlan($property->arrayInitPlan, $init); } else { // Scalar / constant / null default value. Wrap it in a // php::Var so it can be stored as a zval in the object's // property table via zend_update_property. Each property is // wrapped in its own block so the local `value` does not // clash with siblings declared in the same create_object body. $default = $property->type === Type::FLOAT ? $this->convertFloatExpr($property->default) : $property->default; $init = "do {\n"; $init .= "auto value = php::Var({$default});\n"; $init .= 'zend_update_property(' . $ce . ', obj, ' . $this->genZendStrl($property->name) . ", value.ptr());\n"; $init .= "php::throwErrorIfOccurred();\n"; $init .= "} while (0);\n"; $initBlock .= $init; } } $delegateToParentAllocator = $this->parentHasCustomCreateObjectOnPhp84($classDef); $buildCreateBody = function () use ($classDef, $className, $handlers, $initBlock, $delegateToParentAllocator): string { $body = $classDef->ctorInit; $body .= "auto obj = typephp_create_object_with_defaults(\n"; $body .= "class_type, create_object_{$className}, &{$handlers}, "; $body .= ($delegateToParentAllocator ? 'true' : 'false') . ",\n"; $body .= "[&](zend_object *obj) {\n"; $body .= $initBlock; $body .= "});\n"; $body .= $classDef->ctorClean; return $body . "return obj;\n"; }; $code .= "typephp_install_property_handlers({$ce}, &{$handlers});\n"; $code .= "#if (PHP_VERSION_ID < 80400)\n"; $code .= "create_object_{$className} = php_get_create_object_fn({$ce});\n"; $code .= "{$ce}->create_object = [](zend_class_entry *class_type) -> zend_object* {\n"; $code .= $buildCreateBody(); $code .= "};\n"; if ($classDef->requireCtor || $this->classHasAsymmetricOrHookedProperty($classDef)) { $code .= "#else\n"; $code .= "create_object_{$className} = php_get_create_object_fn({$ce});\n"; $code .= "{$ce}->create_object = [](zend_class_entry *class_type) -> zend_object* {\n"; $code .= $buildCreateBody(); $code .= "};\n"; } $code .= "#endif\n"; } } return $code; } /** * Whether the given class (or any of its ancestors) declares an asymmetric * visibility property (private(set)/protected(set)) or a hooked property * (getter/setter). Such classes install a custom write_property handler, and * on PHP >= 8.4 that handler lives in the class's default object handlers, so * the engine's object_properties_init would reject inherited default values * unless we generate our own create_object that initializes with the standard * handlers first. */ private function classHasAsymmetricOrHookedProperty(ClassDef $classDef): bool { $current = $classDef; $seen = []; while ($current !== null) { $key = strtolower(ltrim($current->getNamespacedName(), '\\')); if (isset($seen[$key])) { break; } $seen[$key] = true; foreach ($current->properties as $property) { if ($property->isPrivateSet() || $property->isProtectedSet() || $property->getter !== null || $property->setter !== null ) { return true; } } if (!$current->extends) { break; } $parent = $this->getClassDef($current->extends); if ($parent === null) { break; } $current = $parent; } return false; } private function parentHasCustomCreateObjectOnPhp84(ClassDef $classDef): bool { if ($classDef->extends === '') { return false; } if ($classDef->inheritedFromInternalClass) { return true; } $parent = $this->getClassDef($classDef->extends); while ($parent !== null) { foreach ($parent->properties as $property) { if (!$property->isStatic() && $property->default !== null) { return true; } } if ($this->classHasAsymmetricOrHookedProperty($parent)) { return true; } if ($parent->extends === '') { break; } if ($parent->inheritedFromInternalClass) { return true; } $parent = $this->getClassDef($parent->extends); } return false; } protected function getRegisterClassFunction(string $name): string { return self::PREFIX . 'register_class_' . $name; } protected function getRegisterClassFunctionCeList(ClassDef|InterfaceDef $classDef): array { $list = []; if ($classDef instanceof InterfaceDef) { foreach ($classDef->extendsList ?: ($classDef->extends ? [$classDef->extends] : []) as $parentInterface) { $list[] = self::PREFIX . 'class_entry_' . $this->escapeCeName($parentInterface); } return $list; } $parentCe = $this->getParentClassCe($classDef); if ($parentCe !== '') { $list = [$parentCe]; } $implements = $this->getImplementCe($classDef); return array_merge($list, $implements); } protected function getClassCe(ClassLikeDef $classDef): string { return self::PREFIX . 'class_entry_' . $this->escapeCeName($classDef->getNamespacedName()); } /** * @return array */ private function getClassLikesWithConstants(): array { return array_merge($this->symbols->classes(), $this->symbols->interfaces()); } protected function getFilesFromDir(string $path): array { $scanner = new FileScanner($path); return $scanner->scan(); } protected function genClassArrayConstants(): string { $code = ''; foreach ($this->getClassLikesWithConstants() as $classDef) { foreach ($classDef->constants as $constant) { if ($constant->type === Type::ARRAY) { $constName = self::PREFIX . $this->getNativeName($constant->name, $classDef->namespace, $classDef->name); $code .= "do {\n"; $code .= $constant->arrayExpr; $code .= $constName . ' = ' . $constant->value . ";\n"; $classNameStr = $this->genCharPtr($classDef->getNamespacedName(false), true); $classConstStr = $this->genCharPtr($constant->name); $code .= "php::updateConstant($classNameStr, $classConstStr, {$constant->value});\n"; $code .= "} while(0);\n"; } } } // Propagate array constants to child classes that don't override them foreach ($this->symbols->classes() as $className => $classDef) { $ownConstNames = []; foreach ($classDef->constants as $constant) { if ($constant->type === Type::ARRAY) { $ownConstNames[$constant->name] = true; } } $parentName = $this->escapeClass($classDef->extends); while ($parentName && $this->symbols->hasClass($parentName)) { $parentDef = $this->symbols->class($parentName); foreach ($parentDef->constants as $constant) { if ($constant->type === Type::ARRAY && !isset($ownConstNames[$constant->name])) { $ownConstNames[$constant->name] = true; $constName = self::PREFIX . $this->getNativeName($constant->name, $parentDef->namespace, $parentDef->name); $classNameStr = $this->genCharPtr($classDef->getNamespacedName(false), true); $classConstStr = $this->genCharPtr($constant->name); $code .= "php::updateConstant($classNameStr, $classConstStr, {$constName});\n"; } } $parentName = $this->escapeClass($parentDef->extends); } foreach ($this->getClassImplementedInterfaces($classDef) as $interfaceName) { if (!$this->hasInterface($interfaceName)) { continue; } $interfaceDef = $this->getInterface($interfaceName); foreach ($interfaceDef->constants as $constant) { if ($constant->type === Type::ARRAY && !isset($ownConstNames[$constant->name])) { $ownConstNames[$constant->name] = true; $constName = self::PREFIX . $this->getNativeName($constant->name, $interfaceDef->namespace, $interfaceDef->name); $classNameStr = $this->genCharPtr($classDef->getNamespacedName(false), true); $classConstStr = $this->genCharPtr($constant->name); $code .= "php::updateConstant($classNameStr, $classConstStr, {$constName});\n"; } } } } return $code; } protected function getAbsolutePath(string $path, string $projectDir): string { $absPath = $this->resolvePath($path, $projectDir, 'Source path'); return realpath($absPath); } protected function resolvePath(string $path, string $baseDir, string $label = 'Path'): string { $path = trim($path); if ($path === '') { $this->error($label . ' must not be empty'); } if ($this->isAbsolutePath($path)) { return $path; } return $baseDir . '/' . $path; } protected function isAbsolutePath(string $path): bool { return $path !== '' && ( $path[0] === '/' || $path[0] === '\\' || preg_match('/^[A-Za-z]:[\\\\\\/]/', $path) === 1 ); } protected function parseProjectYaml(string $path): array { $cfg = $this->getProjectYamlLoader()->load($path); $projectDir = dirname($path); if (array_key_exists('php-version', $cfg) && !$this->climate->arguments->defined('php-version')) { $this->setPhpVersion((string) $cfg['php-version']); } if (!empty($cfg['sources'])) { $sources = $cfg['sources']; if (!is_array($sources)) { $this->error('`sources` must be array'); } $list = []; foreach ($sources as $sourceEntry) { [$src, $condition] = $this->parseProjectYamlSourceEntry($sourceEntry); if ($condition !== null && !$this->evaluateProjectYamlCondition($condition)) { continue; } $realPath = $this->getAbsolutePath($src, $projectDir); if (!$realPath) { $this->error('Source file not exists: `' . $src . '`'); } if (is_file($realPath)) { $list[] = $realPath; $this->sourceDirs[] = basename($realPath); } else { $tmp = $this->getFilesFromDir($realPath); $list = array_merge($list, $tmp); $this->sourceDirs[] = $realPath; } } } else { $list = $this->getFilesFromDir($projectDir); } if (array_key_exists('optimize', $cfg)) { $this->optimizeLevel = (int) $cfg['optimize']; } if (array_key_exists('job', $cfg)) { $this->maxJob = (int) $cfg['job']; } if (!empty($cfg['debug'])) { $this->debug = true; } if (!empty($cfg['no-literal-strings'])) { $this->noLiteralStrings = true; } if (!empty($cfg['profile'])) { if (!$this->isLinux()) { $this->climate->error('`profile` in YAML is only supported on Linux (requires gperftools)'); exit(1); } $this->enableProfiler = true; } if (!empty($cfg['no-progress'])) { $this->noProgress = true; } if (!empty($cfg['no-console'])) { $this->noConsole = true; } $sanitize = $cfg['sanitize'] ?? null; if (!empty($sanitize)) { $this->sanitize = (string) $sanitize; } // 读取 cxx-flags $cxxFlags = $cfg['cxx-flags'] ?? null; if (!empty($cxxFlags)) { if (is_array($cxxFlags)) { $this->cxxFlags = implode(' ', $cxxFlags); } else { $this->cxxFlags = str_replace("\n", ' ', $cxxFlags); } } // 读取 cxx-std $cxxStd = $cfg['cxx-std'] ?? null; if (!empty($cxxStd)) { $this->cxxStd = $cxxStd; } // 读取 march(目标 CPU 指令集) $march = $cfg['march'] ?? null; if (!empty($march)) { $this->march = $march; } // 读取 target-platform $targetPlatform = $cfg['target-platform'] ?? null; if (!empty($targetPlatform)) { $this->targetPlatform = (string) $targetPlatform; } // 读取 build-dir $buildDir = $cfg['build-dir'] ?? null; if (!empty($buildDir)) { $this->setBuildDir($this->resolvePath((string) $buildDir, $projectDir, 'Build path')); } if (!empty($cfg['dry'])) { $this->dryRun = true; } // 读取 ld-flags $ldflags = $cfg['ld-flags'] ?? null; if (!empty($ldflags)) { if (is_array($ldflags)) { $this->ldflags = implode(' ', $ldflags); } else { $this->ldflags = str_replace("\n", ' ', $ldflags); } } // 读取 include-paths $includePaths = $cfg['include-paths'] ?? null; if (!empty($includePaths) && is_array($includePaths)) { foreach ($includePaths as $includePath) { $this->userIncludePaths[] = $this->resolvePath((string) $includePath, $projectDir, 'Include path'); } } // 读取 defines $defines = $cfg['defines'] ?? null; if (!empty($defines) && is_array($defines)) { foreach ($defines as $define) { $this->userDefines[] = (string) $define; } } // 读取 lto if (!empty($cfg['lto'])) { $this->enableLto = true; } // 读取 format if (!empty($cfg['format'])) { $this->enableCodeFormattingIfAvailable('YAML format'); } // 读取 link-libs $linkLibs = $cfg['link-libs'] ?? null; if (!empty($linkLibs) && is_array($linkLibs)) { foreach ($linkLibs as $lib) { $this->linkLibs[] = (string)$lib; } } // 读取 link-paths $linkPaths = $cfg['link-paths'] ?? null; if (!empty($linkPaths) && is_array($linkPaths)) { foreach ($linkPaths as $linkPath) { $this->linkPaths[] = $this->resolvePath((string) $linkPath, $projectDir, 'Link path'); } } // 读取 output/name。name 只表示目标名,不能按 YAML 目录解析成输出路径。 $output = $cfg['output'] ?? null; if (!empty($output)) { $this->setOutputPath($this->resolvePath((string) $output, $projectDir, 'Output path')); } elseif (!empty($cfg['name'])) { $this->setTargetName((string) $cfg['name']); } // 读取 cpp-compiler $cppCompiler = $cfg['cpp-compiler'] ?? null; if (!empty($cppCompiler)) { $this->setCppCompiler($cppCompiler); } // 读取 mode/type/build-mode(支持 CLI/YAML 两套命名) $buildMode = $cfg['mode'] ?? $cfg['build-mode'] ?? $cfg['type'] ?? null; if (!empty($buildMode)) { $this->setBuildMode((string) $buildMode); } // 读取 ignore(支持中横线和下划线) $ignore = $cfg['ignore'] ?? null; if (!empty($ignore)) { if (!is_array($ignore)) { $this->error('`ignore` must be array'); } foreach ($ignore as $src) { $realPath = $this->getAbsolutePath($src, $projectDir); if (!$realPath) { // Ignore entries describe optional exclusions. Projects often // share one configuration across dependency versions where an // excluded file or directory may not exist. continue; } $this->ignorePaths[] = $realPath; } } // 读取 resource(Windows 资源配置:图标、版本信息) $resource = $cfg['resource'] ?? null; if (!empty($resource)) { if (!is_array($resource)) { $this->error('`resource` must be array'); } // 验证图标文件是否存在 if (!empty($resource['icon'])) { $iconPath = $resource['icon']; if (!preg_match('/^[A-Za-z]:\\|^\//', $iconPath)) { $iconPath = $projectDir . DIRECTORY_SEPARATOR . $iconPath; } if (!file_exists($iconPath)) { $this->error('Icon file not exists: `' . $resource['icon'] . '`'); } } $this->resourceConfig = $resource; $this->resourceConfig['_projectDir'] = $projectDir; } // 读取 manifest(Windows 清单文件,与 resource 同级,缺省不携带) $manifest = $cfg['manifest'] ?? null; if (!empty($manifest)) { if (!is_string($manifest)) { $this->error('`manifest` must be a string (path to manifest file)'); } $manifestPath = $manifest; if (!preg_match('/^[A-Za-z]:\\|^\//', $manifestPath)) { $manifestPath = $projectDir . DIRECTORY_SEPARATOR . $manifestPath; } if (!file_exists($manifestPath)) { $this->error('Manifest file not exists: `' . $manifest . '`'); } if (empty($this->resourceConfig)) { $this->resourceConfig = ['_projectDir' => $projectDir]; } $this->resourceConfig['manifest'] = $manifest; } return $this->filterIgnoredFiles($list); } /** * @return array{0: string, 1: string|null} */ protected function parseProjectYamlSourceEntry(mixed $entry): array { return $this->getProjectYamlLoader()->parseSourceEntry($entry); } protected function evaluateProjectYamlCondition(string $condition): bool { return $this->getProjectYamlLoader()->evaluateCondition($condition); } protected function getProjectYamlLoader(): ProjectYamlLoader { $this->projectYamlLoader ??= new ProjectYamlLoader($this->phpVersion, fn(string $message): never => $this->error($message)); $this->projectYamlLoader->setPhpVersion($this->phpVersion); return $this->projectYamlLoader; } protected function getInternalCeInfo(string $ce): array { return [ 'func' => Symbol::getClassEntrySafe(), 'args' => '"' . substr($ce, strlen(self::PREFIX . 'class_entry_')) . '"', ]; } protected function getParentClassCe(ClassLikeDef $classDef): string { if (!$classDef->extends) { return ''; } return self::PREFIX . 'class_entry_' . $this->escapeCeName($classDef->extends); } protected function doConvert(string $phpCode): string { $this->climate->info('convert: ' . $this->getRelativePath($this->file)); $ast = $this->parser->parse($phpCode); $traverser = new NodeTraverser(); $traverser->addVisitor(new NameResolver(null, ['replaceNodes' => false])); $traverser->addVisitor(new Visitor(sourceFile: $this->file)); $traverser->addVisitor(new ConstantExpressionValidationVisitor( $this->phpVersion, fn (Node $node, string $message) => $this->fatalError($node, $message), )); $traverser->addVisitor(new RuntimeAttributeFactoryLowering($this->file)); $stmts = $traverser->traverse($ast); $this->resetFile(); $this->resetNamespace(); $this->resetClass(); $this->resetMethod(); $this->resetFunction(); $cppCode = ''; foreach ($stmts as $v) { $type = $v->getType(); switch ($type) { case 'Stmt_Declare': $this->parseDeclare($v); break; case 'Stmt_Namespace': $cppCode .= $this->parseNamespace($v); break; case 'Stmt_Class': case 'Stmt_Trait': case 'Stmt_Enum': $cppCode .= $this->parseClass($v); break; case 'Stmt_Use': $cppCode .= $this->parseUse($v) . PHP_EOL; break; case 'Stmt_GroupUse': $this->parseGroupUse($v); break; case 'Stmt_Function': $cppCode .= $this->parseFunction($v) . PHP_EOL; break; case 'Stmt_Const': $this->parseConstDef($v); break; case 'Stmt_Interface': $this->validateInterfaceOverrideAttributes($v); break; case 'Stmt_Nop': break; default: abort($v); break; } } foreach ($this->classesDefineInFile as $classDef) { $cppCode .= $this->genClassWrapper($classDef); } foreach ($this->interfacesDefineInFile as $interfaceDef) { $cppCode .= $this->genClassWrapper($interfaceDef); } foreach ($this->functionDefineInFile as $functionDef) { if ($functionDef->attributeFactory) { continue; } $cppCode .= $this->genFunctionWrapper($functionDef); } $constDataCode = ''; foreach ($this->constData as $name => $data) { $constDataCode .= 'static const unsigned char ' . $name . '[] = {' . $data . '};' . PHP_EOL; } $constDataCode .= PHP_EOL; return $this->genIncludeHeaderFiles() . $constDataCode . $cppCode; } protected function genClassCeList(): void { if (empty($this->symbols->interfaces()) and empty($this->symbols->classes())) { return; } $sorter = new StringSort(); foreach ($this->symbols->interfaces() as $interfaceDef) { $ce = $this->getClassCe($interfaceDef); $deps = []; foreach ($interfaceDef->extendsList ?: ($interfaceDef->extends ? [$interfaceDef->extends] : []) as $parent) { $tmpCe = self::PREFIX . 'class_entry_' . $this->escapeCeName($parent); // 不存在的接口,说明可能是内置接口 if (!$this->hasInterface($parent)) { $sorter->add($tmpCe); } $deps[] = $tmpCe; } $this->classCeInfo[$ce] = [ 'deps' => $deps, 'func' => $this->getRegisterClassFunction($interfaceDef->getNamespacedName()), 'args' => $this->getRegisterClassFunctionArgs($interfaceDef), 'argDef' => $this->getRegisterClassFunctionArgDef($interfaceDef), ]; $sorter->add($ce, $deps); } foreach ($this->symbols->classes() as $classDef) { $ce = $this->getClassCe($classDef); $deps = []; $parent = $classDef->extends; if ($parent) { // 不存在的父类,说明可能是内置类 $tmpCe = $this->getParentClassCe($classDef); if (!$this->hasClass($parent)) { $sorter->add($tmpCe); } $deps[] = $tmpCe; } $implements = $classDef->implements; if ($implements) { foreach ($implements as $interface) { $tmpCe = self::PREFIX . 'class_entry_' . $this->escapeCeName($interface); if (!$this->hasInterface($interface)) { $sorter->add($tmpCe); } $deps[] = $tmpCe; } } $this->classCeInfo[$ce] = [ 'classDef' => $classDef, 'deps' => $deps, 'func' => $this->getRegisterClassFunction($classDef->getNamespacedName()), 'args' => $this->getRegisterClassFunctionArgs($classDef), 'argDef' => $this->getRegisterClassFunctionArgDef($classDef), ]; $sorter->add($ce, $deps); } $this->classCeList = $sorter->sort(); } protected function getNativeMethodName(ClassDef $classDef, MethodDef $methodDef): string { return $this->getNativeName($methodDef->name, $classDef->namespace, $classDef->name); } protected function parseDeclare(mixed $v): void { $declares = $v->declares; foreach ($declares as $declare) { $key = $this->parseIdentifier($declare->key); $value = match (true) { $declare->value instanceof Node\Scalar\String_ => $declare->value->value, $declare->value instanceof Node\Scalar\Int_ => (string) $declare->value->value, default => $this->parseIdentifier($declare->value), }; if ($key === 'ticks') { $this->fatalError($v, 'declare(ticks=1) is not supported'); } elseif ($key === 'encoding') { if (strtolower($value) !== 'utf-8') { $this->fatalError($v, 'declare(encoding="' . $value . '") is not supported, only UTF-8 is supported'); } } elseif ($key === 'strict_types') { if (!($declare->value instanceof Node\Scalar\Int_) or $declare->value->value !== 1) { $this->fatalError($v, 'declare(strict_types=0) is not allowed, only strict_types=1 is supported'); } } else { $this->fatalError($v, 'declare(' . $key . '=' . $value . ') is not supported'); } } } protected function parseNamespace(Node\Stmt\Namespace_ $node): string { $ns = $node->name ? $this->parseIdentifier($node->name) : ''; $code = ''; $this->resetNamespace(); $this->resetClass(); $this->resetMethod(); $this->resetFunction(); $this->namespace = $ns; $ns_end = ''; foreach ($node->stmts as $v2) { $type2 = $v2->getType(); switch ($type2) { case 'Stmt_Class': case 'Stmt_Trait': case 'Stmt_Enum': $code .= $this->parseClass($v2); break; case 'Stmt_Const': $this->parseConstDef($v2); break; case 'Stmt_Function': $code .= $this->parseFunction($v2) . PHP_EOL; break; case 'Stmt_Use': $code .= $this->parseUse($v2) . PHP_EOL; break; case 'Stmt_GroupUse': $this->parseGroupUse($v2); break; case 'Stmt_Interface': $this->validateInterfaceOverrideAttributes($v2); break; case 'Stmt_Nop': break; default: abort($v2); break; } } $code .= $ns_end; $this->resetNamespace(); return $code; } protected function genStubFile(string $file): void { $headerFile = $this->getArgInfoHeaderFile($file, true); $this->climate->info('generate arginfo file: ' . $this->getRelativePath($file)); generateStubFile($file, $this->getIncludeDir() . '/' . $headerFile, true, $this->getPhpVersion()); $headerCode = file_get_contents($this->getBuildDir() . '/include/' . $headerFile); $needsAttributeSymbols = str_contains($headerCode, 'zend_add_function_attribute(') || str_contains($headerCode, 'zend_add_parameter_attribute(') || str_contains($headerCode, 'zend_add_global_constant_attribute('); if ($this->useRegisterSymbolsFn || $needsAttributeSymbols) { if (preg_match('/\bstatic\s+void\s+(register_[A-Za-z0-9_]+_symbols)\s*\(\s*int\s+module_number\s*\)/', $headerCode, $matches)) { $registerSymbolFn = $matches[1]; $this->registerSymbols[] = $registerSymbolFn; } } $this->argInfoHeaderFiles[] = $headerFile; } public function parseTraitUseForStub(Node\Stmt\ClassLike $stmt, Node\Name $className): void { $methods = []; $constants = []; $properties = []; $traitMethods = []; $traitConstants = []; $traitProperties = []; $classDef = $this->getClass($className->toString()); foreach ($stmt->stmts as $classStmt) { if ($classStmt instanceof Node\Stmt\ClassMethod) { $name = strtolower($classStmt->name->toString()); $methods[$name] = $classStmt; } if ($classStmt instanceof Node\Stmt\Property) { foreach ($classStmt->props as $prop) { $name = strtolower($prop->name->toString()); $properties[$name] = $prop; } } if ($classStmt instanceof Node\Stmt\ClassConst) { foreach ($classStmt->consts as $const) { $name = strtolower($const->name->toString()); $constants[$name] = $const; } } } foreach ($stmt->stmts as $classStmt) { if (!$classStmt instanceof Node\Stmt\TraitUse) { continue; } foreach ($classStmt->traits as $trait1) { $traitFullName = $this->getNamespacedClassName($trait1); if (!$this->hasClass($traitFullName)) { $this->fatalError($classStmt, "Trait `{$traitFullName}` not found"); } $traitDef = $this->getClass($traitFullName); if (!$traitDef->trait) { $this->fatalError($classStmt, "Trait `{$traitFullName}` not found"); } $traitAst = clone $traitDef->trait; $traitStmts = $traitAst->stmts; $aliasStmts = []; foreach ($traitStmts as $k1 => $traitStmt) { if ($traitStmt instanceof Node\Stmt\ClassMethod) { $methodName = strtolower($traitStmt->name->toString()); $fullMethodName = $this->getFullMethodName($traitFullName, $methodName); // A trait method's `self`/`static`/`parent` return and parameter // types refer to the class that uses the trait, not the trait // itself. Re-resolve them on the cloned AST so the generated // arginfo reflects the consuming class (PHP trait semantics) and // passes ZendVM's runtime signature-compatibility checks. The // alias clones below inherit this rewrite. $this->reresolveTraitMethodAstLateBoundTypes($classDef, $traitFullName, $traitStmt); foreach ($classDef->traitAliases[$fullMethodName] ?? [] as $alias) { $aliasName = strtolower($alias['newName']); if ($aliasName === $methodName) { if ($alias['newModifier']) { $traitStmt->flags = $alias['newModifier']; } } elseif (!isset($methods[$aliasName]) && !isset($traitMethods[$aliasName])) { $aliasStmt = clone $traitStmt; $aliasStmt->name = new Node\Identifier($alias['newName']); if ($alias['newModifier']) { $aliasStmt->flags = $alias['newModifier']; } $aliasStmts[] = $aliasStmt; $traitMethods[$aliasName] = [$traitFullName, $aliasStmt]; } } if (isset($classDef->traitIgnored[$fullMethodName])) { unset($traitStmts[$k1]); continue; } if (isset($traitMethods[$methodName])) { [$existingTraitName, $existingStmt] = $traitMethods[$methodName]; $newAbstract = $traitStmt->isAbstract(); $existingAbstract = $existingStmt->isAbstract(); if ($newAbstract && $existingAbstract) { // Both abstract: validate signature compatibility $this->validateTraitAbstractMethodCompatibility( $classStmt, $existingTraitName, $traitFullName, $methodName, $existingStmt, $traitStmt ); // Signatures compatible, skip this duplicate unset($traitStmts[$k1]); continue; } if ($newAbstract && !$existingAbstract) { // Existing concrete wins over new abstract unset($traitStmts[$k1]); continue; } if (!$newAbstract && $existingAbstract) { // New concrete replaces existing abstract $traitMethods[$methodName] = [$traitFullName, $traitStmt]; unset($traitStmts[$k1]); continue; } // Both concrete — error $this->fatalError($classStmt, "Trait `{$traitFullName}` method `{$methodName}` already exists"); } if (isset($methods[$methodName])) { unset($traitStmts[$k1]); } $traitMethods[$methodName] = [$traitFullName, $traitStmt]; } if ($traitStmt instanceof Node\Stmt\ClassConst) { foreach ($traitStmt->consts as $k2 => $const) { $constName = strtolower($const->name->toString()); if (isset($constants[$constName])) { unset($traitStmt->consts[$k2]); if (!$traitStmt->consts) { unset($traitStmts[$k1]); } continue; } if (isset($traitConstants[$constName])) { [$existingConstStmt, $existingConst] = $traitConstants[$constName]; if ($existingConstStmt->flags !== $traitStmt->flags || $this->typeNodeToStringOrNull($existingConstStmt->type) !== $this->typeNodeToStringOrNull($traitStmt->type) || $this->printer->prettyPrintExpr($existingConst->value) !== $this->printer->prettyPrintExpr($const->value)) { $this->fatalError($classStmt, "Trait `{$traitFullName}` constant `{$constName}` already exists"); } unset($traitStmt->consts[$k2]); if (!$traitStmt->consts) { unset($traitStmts[$k1]); } continue; } $traitConstants[$constName] = [$traitStmt, $const]; } } if ($traitStmt instanceof Node\Stmt\Property) { foreach ($traitStmt->props as $k2 => $prop) { $propName = strtolower($prop->name->toString()); if (isset($properties[$propName])) { unset($traitStmt->props[$k2]); if (!$traitStmt->props) { unset($traitStmts[$k1]); } continue; } if (isset($traitProperties[$propName])) { [$existingPropStmt, $existingProp] = $traitProperties[$propName]; $existingDefault = $existingProp->default ? $this->printer->prettyPrintExpr($existingProp->default) : null; $propDefault = $prop->default ? $this->printer->prettyPrintExpr($prop->default) : null; if ($existingPropStmt->flags !== $traitStmt->flags || $this->typeNodeToStringOrNull($existingPropStmt->type) !== $this->typeNodeToStringOrNull($traitStmt->type) || $existingDefault !== $propDefault) { $this->fatalError($classStmt, "Trait `{$traitFullName}` property `{$propName}` already exists"); } unset($traitStmt->props[$k2]); if (!$traitStmt->props) { unset($traitStmts[$k1]); } continue; } $traitProperties[$propName] = [$traitStmt, $prop]; } } } $stmt->stmts = array_merge($stmt->stmts, $traitStmts, $aliasStmts); } } } /** * Re-resolve a trait method's late-bound `self`/`static`/`parent` return and * parameter types on the cloned AST that is being flattened into a class. * * `resolveTypeDecl()` mutates a trait method's `self`/`static`/`parent` type * node to the trait's own name at parse time, so the cloned AST carries the * trait name rather than the late-bound keyword. We instead rewrite those * nodes to the consuming class (or its parent) using the keyword recorded on * the trait method's FunctionDef, matching PHP's trait semantics. This keeps * the generated arginfo correct for ZendVM's runtime compatibility checks. */ private function reresolveTraitMethodAstLateBoundTypes( ClassDef $usingClassDef, string $traitFullName, Node\Stmt\ClassMethod $methodStmt ): void { if (!$this->hasClass($traitFullName)) { return; } $traitDef = $this->getClass($traitFullName); if (!$traitDef->hasMethod($methodStmt->name->toString())) { return; } $fn = $traitDef->getMethod($methodStmt->name->toString())->functionDef; if ($fn->returnTypeKeyword !== '' && $methodStmt->returnType instanceof Node\Name) { if ($fn->returnTypeKeyword === 'static') { // `static` remains late-bound in the composed method signature. $methodStmt->returnType = new Node\Name('static'); } else { $resolved = $this->resolveLateBoundClass($usingClassDef, $fn->returnTypeKeyword); if ($resolved !== null) { $methodStmt->returnType = new Node\Name($resolved); } } } foreach ($fn->argInfoList as $i => $arg) { if ( $arg->typeKeyword !== '' && isset($methodStmt->params[$i]) && $methodStmt->params[$i]->type instanceof Node\Name ) { if ($arg->typeKeyword === 'static') { $methodStmt->params[$i]->type = new Node\Name('static'); } else { $resolved = $this->resolveLateBoundClass($usingClassDef, $arg->typeKeyword); if ($resolved !== null) { $methodStmt->params[$i]->type = new Node\Name($resolved); } } } } } /** * Validate that two abstract trait methods have compatible signatures. * PHP allows multiple traits to declare the same abstract method as long * as parameters and return type are compatible. */ protected function validateTraitAbstractMethodCompatibility( Node\Stmt\TraitUse $classStmt, string $traitA, string $traitB, string $methodName, Node\Stmt\ClassMethod $a, Node\Stmt\ClassMethod $b ): void { // Compare visibility if ($a->flags !== $b->flags) { $this->fatalError( $classStmt, "Trait `{$traitA}` and Trait `{$traitB}` define the same abstract method `{$methodName}` " . 'but with different visibility' ); } // Compare return type $aRet = $a->returnType ? $this->typeNodeToString($a->returnType) : null; $bRet = $b->returnType ? $this->typeNodeToString($b->returnType) : null; if ($aRet !== $bRet) { $this->fatalError( $classStmt, "Trait `{$traitA}` and Trait `{$traitB}` define the same abstract method `{$methodName}` " . 'but with different return types' ); } // Compare parameter count if (count($a->params) !== count($b->params)) { $this->fatalError( $classStmt, "Trait `{$traitA}` and Trait `{$traitB}` define the same abstract method `{$methodName}` " . 'but with incompatible parameter counts' ); } // Compare parameter types foreach ($a->params as $i => $paramA) { $paramB = $b->params[$i]; $typeA = $paramA->type ? $this->typeNodeToString($paramA->type) : null; $typeB = $paramB->type ? $this->typeNodeToString($paramB->type) : null; if ($typeA !== $typeB) { $this->fatalError( $classStmt, "Trait `{$traitA}` and Trait `{$traitB}` define the same abstract method `{$methodName}` " . "but parameter #{$i} has incompatible types" ); } if ($paramA->byRef !== $paramB->byRef) { $this->fatalError( $classStmt, "Trait `{$traitA}` and Trait `{$traitB}` define the same abstract method `{$methodName}` " . "but parameter #{$i} differs in by-reference" ); } if ($paramA->variadic !== $paramB->variadic) { $this->fatalError( $classStmt, "Trait `{$traitA}` and Trait `{$traitB}` define the same abstract method `{$methodName}` " . "but parameter #{$i} differs in variadic" ); } } } /** * Convert a PHP-Parser type node to a normalized string for comparison. */ private function typeNodeToString(NodeAbstract $typeNode): string { if ($typeNode instanceof Node\Identifier) { return $typeNode->name; } if ($typeNode instanceof Node\Name) { return $typeNode->toString(); } if ($typeNode instanceof Node\NullableType) { return '?' . $this->typeNodeToString($typeNode->type); } if ($typeNode instanceof Node\UnionType) { $parts = []; foreach ($typeNode->types as $t) { $parts[] = $this->typeNodeToString($t); } sort($parts); return implode('|', $parts); } if ($typeNode instanceof Node\IntersectionType) { $parts = []; foreach ($typeNode->types as $t) { $parts[] = $this->typeNodeToString($t); } sort($parts); return implode('&', $parts); } // Fallback: use pretty printer return $this->printer->prettyPrint([$typeNode]); } private function typeNodeToStringOrNull(?NodeAbstract $typeNode): ?string { return $typeNode ? $this->typeNodeToString($typeNode) : null; } private function configureGeneratedConstructorParentCall(Node\Stmt\Class_ $class): void { $constructor = null; foreach ($class->getMethods() as $method) { if ($method->getAttribute(ConstructorLowering::GENERATED_ATTRIBUTE, false)) { $constructor = $method; break; } } if ($constructor === null || $this->classDef->extends === '') { return; } $parent = $this->classDef->extends; while ($parent !== '') { $parentDef = $this->getClassDef($parent); if ($parentDef === null) { $reflection = Reflection::getClass($parent); $parentConstructor = $reflection?->getConstructor(); if ($parentConstructor === null) { return; } $owner = $parentConstructor->getDeclaringClass()->getName(); $this->applyGeneratedConstructorParentRule( $constructor, $owner, $parentConstructor->getModifiers(), $parentConstructor->getNumberOfRequiredParameters(), $parentConstructor->isAbstract(), ); return; } if ($parentDef->hasMethod('__construct')) { $parentConstructor = $parentDef->getMethod('__construct'); $this->applyGeneratedConstructorParentRule( $constructor, $parent, $parentConstructor->flags, $parentConstructor->functionDef?->argCountRequired ?? 0, false, ); return; } if ($parentDef->hasAbstractMethod('__construct')) { $parentConstructor = $parentDef->getAbstractMethod('__construct'); $this->applyGeneratedConstructorParentRule( $constructor, $parent, $parentConstructor->flags, $parentConstructor->functionDef?->argCountRequired ?? 0, true, ); return; } $parent = $parentDef->extends; } } private function applyGeneratedConstructorParentRule( Node\Stmt\ClassMethod $constructor, string $parent, int $flags, int $requiredArguments, bool $abstract, ): void { $attributeTarget = $constructor->getAttribute( \TypePhp\Diagnostics\CompileTimeAttributeDiagnostic::GENERATED_TARGET, $constructor, ); if (!$attributeTarget instanceof Node) { $attributeTarget = $constructor; } if ($flags & Modifiers::FINAL) { $this->fatalCompileTimeAttribute( $attributeTarget, 'Constructor', "Cannot override final method `{$parent}::__construct()`", $attributeTarget, ); } if ($flags & Modifiers::PRIVATE) { return; } if ($requiredArguments > 0) { $this->fatalCompileTimeAttribute( $attributeTarget, 'Constructor', "Constructor cannot be generated because parent constructor `{$parent}::__construct()` " . "requires {$requiredArguments} argument(s); declare `__construct()` explicitly", $attributeTarget, ); } if ($abstract) { return; } array_unshift($constructor->stmts, new Node\Stmt\Expression(new Node\Expr\StaticCall( new Node\Name('parent'), new Node\Identifier('__construct'), ))); } protected function parseClass(Node\Stmt\Class_|Node\Stmt\Trait_|Node\Stmt\Enum_ $class): string { $this->class = $this->parseIdentifier($class->name); $fullName = $this->getFullClassName(); if (!$this->hasClass($fullName)) { $this->fatalError($class, "class {$fullName} not found"); } $this->classDef = $this->getClass($fullName); $this->parseMethodsForTarget($class); if ($class instanceof Node\Stmt\Class_) { $this->configureGeneratedConstructorParentCall($class); } if ($class instanceof Node\Stmt\Class_ && $this->classDef->printerGenerated) { $available = [...$this->parentPublicProperties($this->classDef->extends), ...\TypePhp\Transform\ClassFieldSelection::ownPublicProperties($class)]; try { $properties = \TypePhp\Transform\ClassFieldSelection::resolve( $this->classDef->printerFields, $this->classDef->printerFields === null ? $available : $this->selectableProperties($this->classDef), 'Printer', ); } catch (SyntaxError $error) { throw new SyntaxError(CompileTimeAttributeDiagnostic::format( $error->getMessage(), 'Printer', $class, $this->file, ), 0, $error); } \TypePhp\Transform\PrinterLowering::rebuildGeneratedMethod( $class, $properties, $this->classDef->printerFields, $this->classStringProperties($this->classDef), ); } if ($class instanceof Node\Stmt\Class_ && $this->classDef->arrayableGenerated) { $available = [...$this->parentPublicProperties($this->classDef->extends), ...\TypePhp\Transform\ClassFieldSelection::ownPublicProperties($class)]; try { $properties = \TypePhp\Transform\ClassFieldSelection::resolve( $this->classDef->arrayableFields, $this->classDef->arrayableFields === null ? $available : $this->selectableProperties($this->classDef), 'Arrayable', ); } catch (SyntaxError $error) { throw new SyntaxError(CompileTimeAttributeDiagnostic::format( $error->getMessage(), 'Arrayable', $class, $this->file, ), 0, $error); } \TypePhp\Transform\ArrayableLowering::rebuildGeneratedMethod( $class, $properties, $this->classDef->arrayableFields, ); } // 如果不是继承自内置类,需要检查父类是否存在,在预处理阶段只需检查了是否继承内置类 // 目前不允许继承自动态加载的自定义类 if ($this->classDef->extends and !$this->classDef->inheritedFromInternalClass) { $parentClass = $this->getNamespacedClassName($this->parseIdentifier($class->extends)); if ($this->hasClass($parentClass)) { $parent = $this->getClass($parentClass); // 父类是 final 无法继承 if ($parent->flags & Modifiers::FINAL) { $this->fatalError($class, "Class `{$this->class}` cannot extend final class `{$parentClass}`"); } } else { $this->fatalError($class, "Class `{$this->class}` inherits from a non-existent class `{$parentClass}`"); } } if (is_array($this->classDef->implements)) { foreach ($this->classDef->implements as $interfaceName) { if (!$this->hasInterface($interfaceName) and !$this->isInternalInterface($interfaceName)) { $this->fatalError($class, "Class `{$this->class}` implements a non-existent interface `{$interfaceName}`"); } } } $this->checkPropertyOverride($class); $this->checkConstantOverride($class); $className = $this->classDef->getNamespacedName(); $this->classesDefineInFile[$className] = $this->classDef; $methodCodes = []; foreach ($class->stmts as $v) { $type = $v->getType(); switch ($type) { case 'Stmt_ClassConst': case 'Stmt_Property': case 'Stmt_Nop': case 'Stmt_EnumCase': break; case 'Stmt_ClassMethod': $this->parseClassMethod($v, $methodCodes); break; case 'Stmt_TraitUse': $this->parseTraitUse($v, $methodCodes); break; default: abort($v); break; } } if (!$class instanceof Node\Stmt\Trait_) { $this->validateOverrideAttributes($class); $this->checkInterfaceImplementations($class); $this->checkInheritedAbstractMethodsAreImplemented($class); } $code = $this->genNativeMethod($methodCodes); $oriCtx = $this->context; $this->context = $this->classDef->propertyContext; $this->classDef->ctorInit .= $this->genScopeVarDecl() . $this->parseBeforeStmtLines(); $this->classDef->ctorClean .= $this->parseAfterStmtLines(); $this->context = $oriCtx; $this->resetClass(); return $code; } protected function genNativeMethod(array $methodCodes): string { $code = ''; $classDef = $this->classDef; foreach ($classDef->methods as $method) { $code .= $methodCodes[$method->name] . PHP_EOL; } $code .= PHP_EOL; return $code; } protected function genWrapperFunctionArgs( string $fn, FunctionDef $functionDef, string $displayName, array $implicitMethodArgs = [] ): string { $cppCode = ''; $callParams = ''; if ($functionDef->argCountRequired > 0) { $cppCode .= $this->genWrapperRequiredArgCountCheck($functionDef, $displayName); } foreach ($functionDef->argInfoList as $k => $argInfo) { $var = 'arg_' . $argInfo->name; if ($argInfo->variadic) { $cppCode .= $this->getIndent() . Type::ARRAY . ' ' . $var . ';' . PHP_EOL; $cppCode .= $this->getIndent() . 'for (uint32_t i = ' . $k . '; i < php::getCallArgNum(); i++) {' . PHP_EOL; $this->indentLevel++; $cppCode .= $this->getIndent() . $var . '.append(php::getCallArg(i));' . PHP_EOL; $this->indentLevel--; $cppCode .= '}' . PHP_EOL; $cppCode .= $this->genExtraNamedVariadicArgs($var); } else { if ($argInfo->default !== '') { $nativeName = str_starts_with($fn, self::PREFIX) ? substr($fn, strlen(self::PREFIX)) : $fn; $defaultExpr = $this->genDefaultArgumentExpr($nativeName, $k); if ($argInfo->byRef) { $argExpr = 'php::getCallArgByRef(' . $k . ', ' . $defaultExpr . ')'; } else { $argExpr = 'php::getCallArg(' . $k . ', ' . $defaultExpr . ')'; } } else { if ($argInfo->byRef) { $argExpr = 'php::getCallArgByRef(' . $k . ')'; } else { $argExpr = 'php::getCallArg(' . $k . ')'; } } $cppType = $this->getDefaultArgumentType($argInfo); $declaredClass = $argInfo->declaredClass ?: $argInfo->class; if ($argInfo->type === Type::OBJECT && $declaredClass !== '') { $expr = $this->convertObjectExpr($argExpr, $this->getClassEntryPtr($declaredClass)); } else { $expr = $this->convertExprFromType($argInfo->type, $argExpr); } $cppCode .= $this->getIndent() . $cppType . ' ' . $var . ' = ' . $expr . ';' . PHP_EOL; } $callParam = $var; if ($this->canConsumeForwardedArgument($argInfo)) { $callParam = 'php::takeValue(' . $var . ')'; } $callParams .= $callParam . ','; } if ($functionDef->method) { $methodArgs = implode(', ', array_merge(['this_'], $implicitMethodArgs)); $callParams = $functionDef->argInfoList ? $methodArgs . ', ' . rtrim($callParams, ',') : $methodArgs; } else { $isEntryFunction = $this->hasFunction(self::ENTRY_FUNCTION) && $functionDef === $this->getFunction(self::ENTRY_FUNCTION); if ($this->isBuildModeBin() && $isEntryFunction) { // $_SERVER 的初始化必须置于 main 入口函数内,以确保在其被访问前,运行环境及超全局上下文已完全就绪。 $cppCode .= $this->registerServerEnvironment($functionDef->sourceFile); } $callParams = $functionDef->argInfoList ? rtrim($callParams, ',') : ''; } if ($functionDef->returnType !== Type::VOID) { $cppCode .= $this->getIndent() . 'auto retval = ' . $fn . '(' . $callParams . ');' . PHP_EOL; $cppCode .= $this->getIndent() . 'php::move(retval, return_value);' . PHP_EOL; if (!$functionDef->returnsByRef) { $cppCode .= $this->getIndent() . 'php::deref(return_value);' . PHP_EOL; } } else { $cppCode .= $this->getIndent() . $fn . '(' . $callParams . ');' . PHP_EOL; } $cppCode .= '}' . PHP_EOL . PHP_EOL; return $cppCode; } private function registerServerEnvironment(string $entryFile): string { /** * 对于常驻内存型应用,执行完当前逻辑后,会立即进入长时间的事件循环等待。 * 因此,这些变量仅作为临时用途,用完后应即刻销毁,无需长期持有。 */ $cppCode = "const char *value = " . $this->genCharPtr($entryFile, true) . ';' . PHP_EOL; $cppCode .= 'php::Var &_SERVER = ' . $this->escapeGlobalVar('_SERVER') . ';' . PHP_EOL; $cppCode .= '_SERVER.item("PHP_SELF", true) = value;'. PHP_EOL; $cppCode .= '_SERVER.item("SCRIPT_NAME", true) = value;'. PHP_EOL; $cppCode .= '_SERVER.item("SCRIPT_FILENAME", true) = value;'. PHP_EOL; $cppCode .= '_SERVER.item("PATH_TRANSLATED", true) = value;'. PHP_EOL; $cppCode .= '_SERVER.item("DOCUMENT_ROOT", true) = "";' . PHP_EOL; return $cppCode . PHP_EOL; } private function canConsumeForwardedArgument(ArgInfo $argInfo): bool { if ($argInfo->byRef) { return false; } if ($argInfo->variadic) { return true; } return in_array($this->getDefaultArgumentType($argInfo), [ Type::VAR, Type::STR, Type::ARRAY, Type::OBJECT, ], true); } private function genWrapperRequiredArgCountCheck(FunctionDef $functionDef, string $displayName): string { $required = $functionDef->argCountRequired; $expected = $required === count($functionDef->argInfoList) ? 'exactly' : 'at least'; $message = $this->genCharPtr( 'Too few arguments to function ' . $displayName . '(), %u passed and ' . $expected . ' ' . $required . ' expected', true ); $code = $this->getIndent() . 'if (UNEXPECTED(php::getCallArgNum() < ' . $required . ')) {' . PHP_EOL; $this->indentLevel++; $code .= $this->getIndent() . 'php::throwExceptionEx(zend_ce_argument_count_error, 0, ' . $message . ', php::getCallArgNum());' . PHP_EOL; $code .= $this->getIndent() . 'return;' . PHP_EOL; $this->indentLevel--; $code .= $this->getIndent() . '}' . PHP_EOL; return $code; } protected function genMethodWrapper(ClassDef $classDef, MethodDef $methodDef): string { $name = $classDef->getNamespacedName(); $cppCode = 'ZEND_METHOD(' . $name . ', ' . $methodDef->name . '){' . PHP_EOL; $cppCode .= $this->getIndent() . Type::OBJECT . ' this_(&execute_data->This);' . PHP_EOL; $fn = self::PREFIX . $this->getNativeMethodName($classDef, $methodDef); $implicitMethodArgs = []; if ($classDef->trait !== null && $methodDef->parentMethodCalls) { // Trait methods are not directly callable without a composing class, // but keep the generated Zend wrapper well-formed. $implicitMethodArgs[] = 'this_.parent_ce()'; } $cppCode .= $this->genWrapperFunctionArgs( $fn, $methodDef->functionDef, $classDef->getNamespacedName(false) . '::' . $methodDef->name, $implicitMethodArgs ); return $cppCode; } protected function getClassRegisterCeFunc(ClassDef|InterfaceDef $classDef): string { $cppCode = ''; $name = $classDef->getNamespacedName(); $argsDef = $this->getRegisterClassFunctionArgDef($classDef); $param = $this->getRegisterClassFunctionArgs($classDef); $cppCode .= 'zend_class_entry *' . $this->getRegisterClassFunction($name) . '(' . $argsDef . ') {' . PHP_EOL; $cppCode .= $this->getIndent() . 'return register_class_' . $name . '(' . $param . ');' . PHP_EOL; $cppCode .= '}' . PHP_EOL . PHP_EOL; return $cppCode; } protected function genClassWrapper(ClassDef|InterfaceDef $classDef): string { $cppCode = ''; // 接口没有方法实体 if ($classDef instanceof ClassDef) { $defaultPropCount = 0; foreach ($classDef->properties as $property) { if (!$property->isStatic() && $property->default !== null) { $defaultPropCount++; } } if ($defaultPropCount > 0) { $classDef->requireCtor = true; } $methods = $classDef->methods; foreach ($methods as $methodDef) { $cppCode .= $this->genMethodWrapper($classDef, $methodDef); } } return $cppCode; } /** * @param array $list */ protected function genClassConstantList(array $list): string { $code = ''; foreach ($list as $const) { $code .= $this->getIndent() . $this->genClassConstant($const); } return $code; } protected function genClassConstant(ConstantDef $const): string { return 'static const ' . $const->type . ' ' . $const->name . ';' . PHP_EOL; } /** * @param array $list */ protected function genClassPropertyList(array $list): string { $code = ''; foreach ($list as $prop) { $code .= $this->getIndent() . $this->genClassProperty($prop); } return $code; } protected function genClassProperty(PropertyDef $prop): string { $code = $prop->type . ' ' . $prop->name; if ($prop->default !== null) { $code .= ' = ' . $prop->default; } return $code . ';' . PHP_EOL; } protected function genFunction(string $name, string $returnType, array $args = [], array $lines = []): string { $_args = []; foreach ($args as $arg => $type) { $_args[] = $type . ' ' . $arg; } $code = $returnType . ' ' . $name . '(' . implode(', ', $_args) . ') {' . PHP_EOL; $code .= implode(PHP_EOL, $lines) . PHP_EOL; $code .= '}' . PHP_EOL; return $code; } /** * Build type-check descriptor array from UnionType or NullableType AST node. * Returns ['check' => array, 'typeStr' => string] or empty check array if no check needed. */ /** * Generate a C++ boolean expression for a single type descriptor entry. */ /** * Generate C++ runtime type-check block for a function parameter with union/nullable type. */ /** * Generate C++ runtime type-check block for a function return value with union/nullable type. */ /** * @throws \Exception */ protected function parseFunction(Node\Stmt\Function_|Node\Stmt\ClassMethod $v): string { $this->resetFunction(); $name = $this->getFunctionName($v); $this->function = $this->parseIdentifier($v->name); if (!$this->hasFunction($name)) { $this->fatalError($v, 'Function `' . $name . '` not found'); } $this->functionDef = $this->getFunction($name); // 类方法不要保存到 functions 中 if ($this->methodDef) { $this->methodDef->functionDef = $this->functionDef; } else { $this->functionDefineInFile[$name] = $this->functionDef; } // stub 函数,没有函数的具体实现,只有声明,实现在 C++ 或者 .so 中定义 if ($this->functionDef->stub) { $this->resetFunction(); return ''; } if ($this->class) { $this->addArgument('this_', Type::OBJECT); } foreach ($this->functionDef->argInfoList as $argInfo) { $this->addArgument($argInfo->name, $argInfo->variadic ? Type::ARRAY : $argInfo->type); if (!$argInfo->variadic and $argInfo->declaredClass) { $this->addObject($argInfo->name, $argInfo->declaredClass); } } if ($this->functionDef->generator) { try { return $this->genFiberGeneratorFunction($v, $this->functionDef, $name); } finally { $this->resetFunction(); } } // Build SSA/e-SSA analysis for this function if ($v->stmts) { $oriLocalVars = $this->context->localVars; $oriTmpVarIndex = $this->context->tmpVarIndex; $oriDeclaredObjects = $this->context->declaredObjects; /** SSA/e-SSA analysis for the current function. Built once per function, discarded with the context. */ $ssaBuilder = new SsaBuilder($v->stmts, $this->functionDef->argInfoList); $ssaBuilder->build(); $this->context->ssaBuilder = $ssaBuilder; $this->analyzeStableObjects($ssaBuilder); if ($this->nativeTypes) { // Narrow local variable types based on SSA analysis. $this->optimizeVarTypes($ssaBuilder); // Narrow range-proven loop counters and native property accesses. $this->optimizeLoopVars($ssaBuilder); $this->optimizeObjectProps($ssaBuilder); } $this->context->resetAnalysisTemporaries($oriLocalVars, $oriTmpVarIndex, $oriDeclaredObjects); } $stmts = ''; if ($v->stmts) { $this->indentLevel++; try { $stmts = $this->parseStmts($v->stmts); if (!$this->isReturnStmtInLastLine($v->stmts)) { $stmts .= $this->genReturnCode(); } } catch (Skip) { $this->climate->cyan('Skip function ' . $name); } $this->indentLevel--; } else { $stmts = $this->genReturnCode(); } $multiReturn = $this->functionDef->hasMultiReturn(); $cppReturnType = $multiReturn ? $this->functionDef->getMultiReturnCppType() : ($this->functionDef->returnsByRef ? Type::REF : $this->getReturnType()); $this->functionDef->hasTraitParentCeParameter = $this->classDef?->trait !== null && (bool) $this->methodDef?->parentMethodCalls; $nativeName = self::PREFIX . $name; $functionAttribute = $this->getFunctionOptimizationAttribute($this->functionDef); $functionDeclCode = $functionAttribute . $cppReturnType . ' ' . ($multiReturn ? $this->getMultiReturnImplName($name) : $nativeName) . '('; if ($this->class) { $functionDeclCode .= Type::OBJECT . ' &this_'; if ($this->functionDef->hasTraitParentCeParameter) { $functionDeclCode .= ', zend_class_entry *trait_parent_ce'; } if ($this->functionDef->params) { $functionDeclCode .= ', '; } } $functionDeclCode .= $this->functionDef->params . ')'; $code = $functionDeclCode . ' {' . PHP_EOL; $this->indentLevel++; $code .= $this->genScopeVarDecl(); $code .= "\n"; // Runtime union/nullable parameter type checks foreach ($this->functionDef->argInfoList as $i => $argInfo) { if (!empty($argInfo->typeCheck)) { $code .= $this->genUnionParamCheck($argInfo, $i); } } // Constructor Property Promotion happens after parameter type validation. foreach ($this->functionDef->argInfoList as $argInfo) { if (!$argInfo->property) { continue; } $code .= $this->genPropertyPromotion($argInfo); } $this->indentLevel--; // 构建 PHP 级别的函数名用于 debug backtrace if ($this->class) { $debugName = $this->class . '::' . $this->function; } else { $debugName = $this->function; if ($this->namespace) { $debugName = $this->namespace . '\\' . $debugName; } } $code .= $this->genDebugInfo(null, $debugName, $v->getStartLine()); // 函数中存在动态调用的函数,需要在运行时动态切换作用域 if ($this->methodDef and $this->methodDef->hasDynamicCall) { $code .= $this->genScopeSwitchCode(); } $code .= $stmts; $code .= "}\n"; if ($multiReturn) { $forwardArgs = implode(', ', array_map( fn($argInfo) => $this->canConsumeForwardedArgument($argInfo) ? 'php::takeValue(' . $argInfo->name . ')' : $argInfo->name, $this->functionDef->argInfoList, )); $code .= $functionAttribute . Type::ARRAY . ' ' . $nativeName . '(' . $this->functionDef->params . ') {' . PHP_EOL; $this->indentLevel++; $code .= $this->getIndent() . 'return ' . Type::ARRAY . '(' . $this->getMultiReturnImplName($name) . '(' . $forwardArgs . '));' . PHP_EOL; $this->indentLevel--; $code .= '}' . PHP_EOL; } $this->resetFunction(); return $code; } /** * 检查父类方法是否可以被重写,私有方法不能被重写,方法签名必须兼容 */ protected function checkParentMethodCanBeOverridden(Node\Stmt\ClassMethod $v, string $name): void { if ($name === '__construct') { return; } $classDef = $this->classDef; $childFuncDef = $this->methodDef->functionDef; while (true) { $extends = $classDef->extends; if (!$extends) { break; } // 父类是内置类 if ($classDef->inheritedFromInternalClass) { $modifiers = Reflection::getClassMethodModifiers($extends, $name); if ($modifiers & \ReflectionMethod::IS_PRIVATE) { goto _error; } if ($modifiers & \ReflectionMethod::IS_FINAL) { goto _final_error; } break; } $classDef = $this->getClass($extends); if ($classDef->hasMethod($name)) { $methodDef = $classDef->getMethod($name); if ($methodDef->flags & Modifiers::PRIVATE) { _error: $message = 'Cannot override private method `' . $extends . '::' . $name . '()`'; $this->fatalGeneratedMethodAttributeIfAny($v, $message, $extends, $name); $this->fatalError($v, $message); } if ($methodDef->flags & Modifiers::FINAL) { _final_error: $message = 'Cannot override final method `' . $extends . '::' . $name . '()`'; $this->fatalGeneratedMethodAttributeIfAny($v, $message, $extends, $name); $this->fatalError($v, $message); } $this->validateMethodOverrideSignature($v, $name, $this->methodDef, $methodDef, $extends); break; } if ($classDef->hasAbstractMethod($name) && isset($classDef->abstractMethodDefs[strtolower($name)])) { $this->validateMethodOverrideSignature($v, $name, $this->methodDef, $classDef->getAbstractMethod($name), $extends); break; } } } private function validateMethodOverrideSignature( NodeAbstract $v, string $methodName, MethodDef $childMethodDef, MethodDef $parentMethodDef, string $parentClass ): void { $className = $this->getFullClassName(); // PHP allows widening visibility in overrides (e.g. protected -> public), // but forbids narrowing it. if ($this->getVisibilityRank($childMethodDef->flags) < $this->getVisibilityRank($parentMethodDef->flags)) { $this->fatalMethodOverrideIncompatible($v, $className, $methodName, $parentClass); } if (($childMethodDef->flags & Modifiers::STATIC) !== ($parentMethodDef->flags & Modifiers::STATIC)) { $this->fatalMethodOverrideIncompatible($v, $className, $methodName, $parentClass); } $childFuncDef = $childMethodDef->functionDef; $parentFuncDef = $parentMethodDef->functionDef; if (!$childFuncDef || !$parentFuncDef) { return; } // MustUse is part of the callable contract. An override may strengthen // this guarantee, but it must not drop one promised by a parent class // or interface. if ($parentFuncDef->mustUse && !$childFuncDef->mustUse) { $message = "Declaration of `{$className}::{$methodName}()` must be compatible with " . "`{$parentClass}::{$methodName}()`"; $this->error(CompileTimeAttributeDiagnostic::formatPositions( $message, 'MustUse', "method {$parentClass}::{$methodName}()", $parentFuncDef->sourceFile, $parentFuncDef->startLine, 'override drops MustUse contract', $this->file, $v->getStartLine(), )); } if (!$this->isReturnTypeOverrideCompatible( $childFuncDef, $parentFuncDef, $className, $parentClass, )) { $this->fatalMethodOverrideIncompatible($v, $className, $methodName, $parentClass); } if ($childFuncDef->returnsByRef !== $parentFuncDef->returnsByRef) { $this->fatalMethodOverrideIncompatible($v, $className, $methodName, $parentClass); } // Child methods may add optional trailing parameters, but they cannot // require more arguments than the parent contract. if ($childFuncDef->argCountRequired > $parentFuncDef->argCountRequired) { $this->fatalMethodOverrideIncompatible($v, $className, $methodName, $parentClass); } // Compare each parent-declared parameter position. foreach ($parentFuncDef->argInfoList as $i => $parentArg) { if (!isset($childFuncDef->argInfoList[$i])) { $this->fatalMethodOverrideIncompatible($v, $className, $methodName, $parentClass); } $childArg = $childFuncDef->argInfoList[$i]; if (!$this->isParameterTypeOverrideCompatible($childArg, $parentArg)) { $this->fatalMethodOverrideIncompatible($v, $className, $methodName, $parentClass); } if ($childArg->byRef !== $parentArg->byRef) { $this->fatalMethodOverrideIncompatible($v, $className, $methodName, $parentClass); } if ($childArg->variadic !== $parentArg->variadic) { $this->fatalMethodOverrideIncompatible($v, $className, $methodName, $parentClass); } } // Any extra child parameters must be optional or variadic. for ($i = count($parentFuncDef->argInfoList); $i < count($childFuncDef->argInfoList); $i++) { $childArg = $childFuncDef->argInfoList[$i]; if (!$childArg->variadic && $childArg->defaultValue === null) { $this->fatalMethodOverrideIncompatible($v, $className, $methodName, $parentClass); } } } private function fatalMethodOverrideIncompatible( NodeAbstract $v, string $className, string $methodName, string $parentClass ): void { $message = "Declaration of `{$className}::{$methodName}()` must be compatible " . "with `{$parentClass}::{$methodName}()`"; $this->fatalGeneratedMethodAttributeIfAny($v, $message, $parentClass, $methodName); $this->fatalError($v, $message); } private function fatalGeneratedMethodAttributeIfAny( NodeAbstract $method, string $message, string $parentClass, string $methodName, ): void { $attribute = $method->getAttribute(CompileTimeAttributeDiagnostic::GENERATED_BY); $target = $method->getAttribute(CompileTimeAttributeDiagnostic::GENERATED_TARGET); if (!is_string($attribute) || !$target instanceof Node) { return; } $parentFunction = null; $parentDef = $this->getClassDef($parentClass); if ($parentDef instanceof ClassDef) { if ($parentDef->hasMethod($methodName)) { $parentFunction = $parentDef->getMethod($methodName)->functionDef; } elseif ($parentDef->hasAbstractMethod($methodName) && isset($parentDef->abstractMethodDefs[strtolower($methodName)])) { $parentFunction = $parentDef->getAbstractMethod($methodName)->functionDef; } } $this->error(CompileTimeAttributeDiagnostic::formatPositions( $message, $attribute, CompileTimeAttributeDiagnostic::describeTarget($target), $this->file, $target->getStartLine(), $parentFunction === null ? null : 'parent method', $parentFunction?->sourceFile, $parentFunction?->startLine, )); } private function isReturnTypeOverrideCompatible( FunctionDef $childFuncDef, FunctionDef $parentFuncDef, string $childClass, string $parentClass, ): bool { if ($parentFuncDef->returnTypeUndeclared) { return true; } if ($childFuncDef->returnTypeUndeclared) { return false; } $parentTypes = $this->getReturnAcceptedTypes($parentFuncDef, $parentClass); $childTypes = $this->getReturnAcceptedTypes($childFuncDef, $childClass); // Type checks are stored in disjunctive normal form: the outer list is // a union, while an allOf entry is an intersection. Every child union // branch must imply at least one complete parent branch. foreach ($childTypes as $childType) { if (!$this->isReturnTypeCoveredBy($childType, $parentTypes)) { return false; } } return true; } private function getReturnAcceptedTypes(FunctionDef $functionDef, string $declaringClass): array { $returnTypeCheck = $functionDef->generator ? $functionDef->declaredReturnTypeCheck : $functionDef->returnTypeCheck; $returnType = $functionDef->generator ? $functionDef->declaredReturnType : $functionDef->returnType; $returnClass = $functionDef->generator ? $functionDef->declaredReturnClass : $functionDef->returnClass; $returnTypeStr = $functionDef->generator ? $functionDef->declaredReturnTypeStr : $functionDef->returnTypeStr; if (!empty($returnTypeCheck)) { return array_map( fn (array $type): array => $this->normalizeReturnTypeEntry($type, $declaringClass), $returnTypeCheck, ); } if ($functionDef->returnTypeKeyword === 'static') { return [['kind' => 'isStatic', 'class' => $declaringClass]]; } if ($returnType === Type::OBJECT && $returnClass !== '') { return [['kind' => 'instanceof', 'class' => $returnClass]]; } $declaredType = strtolower($returnTypeStr); return match ($declaredType) { 'mixed' => [['kind' => 'isMixed']], 'never' => [['kind' => 'isNever']], 'void' => [['kind' => 'isVoid']], 'null' => [['kind' => 'isNull']], 'true' => [['kind' => 'isTrue']], 'false' => [['kind' => 'isFalse']], 'callable' => [['kind' => 'callable']], 'iterable' => [['kind' => 'iterable']], 'object' => [['kind' => 'isObject']], default => match ($returnType) { Type::INT => [['kind' => 'isInt']], Type::FLOAT => [['kind' => 'isFloat']], Type::BOOL => [['kind' => 'isBool']], Type::STR => [['kind' => 'isString']], Type::ARRAY => [['kind' => 'isArray']], Type::RESOURCE => [['kind' => 'isResource']], Type::OBJECT => [['kind' => 'isObject']], default => [['kind' => 'isMixed']], }, }; } private function normalizeReturnTypeEntry(array $type, string $declaringClass): array { if (($type['kind'] ?? null) === 'allOf') { $type['types'] = array_map( fn (array $member): array => $this->normalizeReturnTypeEntry($member, $declaringClass), $type['types'], ); } elseif (($type['kind'] ?? null) === 'instanceof' && ($type['class'] ?? null) === 'static') { $type = ['kind' => 'isStatic', 'class' => $declaringClass]; } return $type; } private function isReturnTypeCoveredBy(array $childType, array $parentTypes): bool { $childClause = ($childType['kind'] ?? null) === 'allOf' ? $childType['types'] : [$childType]; foreach ($parentTypes as $parentType) { $parentClause = ($parentType['kind'] ?? null) === 'allOf' ? $parentType['types'] : [$parentType]; if ($this->isReturnTypeClauseSubtype($childClause, $parentClause)) { return true; } } return false; } private function isReturnTypeClauseSubtype(array $childClause, array $parentClause): bool { foreach ($parentClause as $parentType) { $covered = false; foreach ($childClause as $childType) { if ($this->isReturnTypeEntryCompatible($childType, $parentType)) { $covered = true; break; } } if (!$covered) { return false; } } return true; } private function isReturnTypeEntryCompatible(array $childType, array $parentType): bool { $childKind = $childType['kind'] ?? null; $parentKind = $parentType['kind'] ?? null; if ($childKind === 'isNever' || $parentKind === 'isMixed') { return true; } if (($childKind === 'isTrue' || $childKind === 'isFalse') && $parentKind === 'isBool') { return true; } if ($childKind === 'isArray' && $parentKind === 'iterable') { return true; } if ($childKind === 'isStatic') { if ($parentKind === 'isObject' || $parentKind === 'isStatic') { return true; } if ($parentKind === 'instanceof') { return $this->isInheritedFrom( $childType['class'] ?? '', $parentType['class'] ?? '', ); } return false; } if ($childKind === 'instanceof') { if ($parentKind === 'isObject') { return true; } $childClass = $childType['class'] ?? ''; if ($parentKind === 'iterable') { return $childClass !== '' && $this->isInheritedFrom($childClass, 'Traversable'); } if ($parentKind === 'instanceof') { $parentClass = $parentType['class'] ?? ''; return $childClass !== '' && $parentClass !== '' && $this->isInheritedFrom($childClass, $parentClass); } return false; } return $childKind !== null && $childKind === $parentKind; } private function isParameterTypeOverrideCompatible(ArgInfo $childArg, ArgInfo $parentArg): bool { // Child methods may omit parameter types (contravariance — accepting a // wider set of inputs is always compatible with the parent contract). if ($this->isTopParameterType($childArg)) { return true; } if ($this->isTopParameterType($parentArg)) { return false; } $parentAcceptedTypes = $this->getParameterAcceptedTypes($parentArg); $childAcceptedTypes = $this->getParameterAcceptedTypes($childArg); if ($parentAcceptedTypes !== null || $childAcceptedTypes !== null) { if ($parentAcceptedTypes === null || $childAcceptedTypes === null) { return false; } return $this->isAcceptedTypeSubset($parentAcceptedTypes, $childAcceptedTypes); } if ($childArg->type !== $parentArg->type) { return false; } if ($parentArg->type !== Type::OBJECT) { return true; } if ($childArg->class === $parentArg->class) { return true; } if (!$childArg->class || !$parentArg->class) { return false; } return $this->isInheritedFrom($parentArg->class, $childArg->class); } private function isTopParameterType(ArgInfo $arg): bool { return $arg->undeclared || $arg->explicitMixed; } private function getParameterAcceptedTypes(ArgInfo $arg): ?array { if (!empty($arg->typeCheck)) { return $arg->typeCheck; } $declaredClass = $arg->declaredClass ?: $arg->class; return match ($arg->type) { Type::INT => [['kind' => 'isInt']], Type::FLOAT => [['kind' => 'isFloat']], Type::BOOL => [['kind' => 'isBool']], Type::STR => [['kind' => 'isString']], Type::ARRAY => [['kind' => 'isArray']], Type::RESOURCE => [['kind' => 'isResource']], Type::OBJECT => $declaredClass ? [['kind' => 'instanceof', 'class' => $declaredClass]] : [['kind' => 'isObject']], default => null, }; } private function isAcceptedTypeSubset(array $parentTypes, array $childTypes): bool { foreach ($parentTypes as $parentType) { if (!$this->isAcceptedTypeCovered($parentType, $childTypes)) { return false; } } return true; } private function isAcceptedTypeCovered(array $parentType, array $childTypes): bool { foreach ($childTypes as $childType) { if ($this->isAcceptedTypeCompatible($parentType, $childType)) { return true; } } return false; } private function isAcceptedTypeCompatible(array $parentType, array $childType): bool { $parentKind = $parentType['kind'] ?? null; $childKind = $childType['kind'] ?? null; if ($parentKind === 'instanceof' && $childKind === 'isObject') { return true; } if ($parentKind !== $childKind) { return false; } if ($parentKind === 'allOf') { return $parentType == $childType; } if ($parentKind !== 'instanceof') { return true; } $parentClass = $parentType['class'] ?? ''; $childClass = $childType['class'] ?? ''; if ($parentClass === $childClass) { return true; } if ($parentClass === '' || $childClass === '') { return false; } return $this->isInheritedFrom($parentClass, $childClass); } private function checkInterfaceImplementations(Node\Stmt\Class_|Node\Stmt\Enum_ $classStmt): void { $classDef = $this->classDef; foreach ($this->getClassImplementedInterfaces($classDef) as $interfaceName) { $this->checkInterfaceImplementation($classStmt, $classDef, $interfaceName); } } private function validateOverrideAttributes(Node\Stmt\Class_|Node\Stmt\Enum_ $classStmt): void { $methods = [...$this->classDef->methods, ...$this->classDef->abstractMethodDefs]; foreach ($methods as $methodDef) { if (!$methodDef->functionDef?->overrideRequired) { continue; } if ($this->hasMatchingOverrideDeclaration($this->classDef, $methodDef->name)) { continue; } $this->fatalMissingOverride( $methodDef->node ?? $classStmt, $this->classDef->getNamespacedName(false), $methodDef->name, ); } } private function hasMatchingOverrideDeclaration(ClassDef $classDef, string $methodName): bool { if (strtolower($methodName) === '__construct') { return false; } $current = $classDef; while ($current->extends !== '') { $parentName = $current->extends; if ($current->inheritedFromInternalClass || $this->isInternalClass($parentName)) { $modifiers = Reflection::getClassMethodModifiers($parentName, $methodName); if ($modifiers !== null && !($modifiers & \ReflectionMethod::IS_PRIVATE)) { return true; } break; } if (!$this->hasClass($parentName)) { break; } $current = $this->getClass($parentName); if ($current->hasMethod($methodName)) { if (!($current->getMethod($methodName)->flags & Modifiers::PRIVATE)) { return true; } } elseif ($current->hasAbstractMethod($methodName)) { if (!($current->getMethodFlags($methodName) & Modifiers::PRIVATE)) { return true; } } } foreach ($this->getClassImplementedInterfaces($classDef) as $interfaceName) { if ($this->isInternalInterface($interfaceName)) { if (Reflection::hasMethod($interfaceName, $methodName)) { return true; } continue; } if ($this->hasInterface($interfaceName) && $this->getInterface($interfaceName)->hasMethod($methodName)) { return true; } } return false; } private function validateInterfaceOverrideAttributes(Node\Stmt\Interface_ $interfaceStmt): void { $name = $this->parseIdentifier($interfaceStmt->name); $interfaceName = $this->namespace === '' ? $name : $this->namespace . '\\' . $name; if (!$this->hasInterface($interfaceName)) { return; } $interfaceDef = $this->getInterface($interfaceName); foreach ($interfaceDef->methods as $methodDef) { if (!$methodDef->functionDef?->overrideRequired) { continue; } $visited = []; if ($this->interfaceParentsHaveMethod($interfaceDef, $methodDef->name, $visited)) { continue; } $this->fatalMissingOverride($methodDef->node ?? $interfaceStmt, $interfaceName, $methodDef->name); } } private function fatalMissingOverride(NodeAbstract $node, string $className, string $methodName): never { $this->fatalCompileTimeAttribute( $node, 'Override', "{$className}::{$methodName}() has #[\\Override] attribute, " . 'but no matching parent method exists', ); } /** @param array $visited */ private function interfaceParentsHaveMethod( InterfaceDef $interfaceDef, string $methodName, array &$visited, ): bool { foreach ($interfaceDef->extendsList ?: ($interfaceDef->extends ? [$interfaceDef->extends] : []) as $parentName) { $key = strtolower($parentName); if (isset($visited[$key])) { continue; } $visited[$key] = true; if ($this->isInternalInterface($parentName)) { if (Reflection::hasMethod($parentName, $methodName)) { return true; } continue; } if (!$this->hasInterface($parentName)) { continue; } $parent = $this->getInterface($parentName); if ($parent->hasMethod($methodName) || $this->interfaceParentsHaveMethod($parent, $methodName, $visited)) { return true; } } return false; } private function checkInterfaceImplementation(NodeAbstract $node, ClassDef $classDef, string $interfaceName): void { if ($this->isInternalInterface($interfaceName)) { return; } if (!$this->hasInterface($interfaceName)) { return; } $interfaceDef = $this->getInterface($interfaceName); foreach ($interfaceDef->methods as $methodName => $interfaceMethodDef) { $childMethodDef = $this->findClassMethodDef($classDef, $methodName, $classDef->isAbstract()); if ($childMethodDef === null) { if ($classDef->isAbstract()) { continue; } $this->fatalError($node, "Class `{$classDef->getNamespacedName(false)}` must implement method `{$interfaceName}::{$interfaceMethodDef->name}()`"); } $this->validateMethodOverrideSignature( $node, $interfaceMethodDef->name, $childMethodDef, $interfaceMethodDef, $interfaceName ); } foreach ($interfaceDef->extendsList ?: ($interfaceDef->extends ? [$interfaceDef->extends] : []) as $parentInterface) { $this->checkInterfaceImplementation($node, $classDef, $parentInterface); } } private function findClassMethodDef(ClassDef $classDef, string $methodName, bool $includeAbstract = true): ?MethodDef { $current = $classDef; while (true) { if ($current->hasMethod($methodName)) { return $current->getMethod($methodName); } if ($includeAbstract && $current->hasAbstractMethod($methodName) && isset($current->abstractMethodDefs[strtolower($methodName)])) { return $current->getAbstractMethod($methodName); } if (!$current->extends || !$this->hasClass($current->extends)) { return null; } $current = $this->getClass($current->extends); } } private function checkInheritedAbstractMethodsAreImplemented(NodeAbstract $node): void { $classDef = $this->classDef; if ($classDef->isAbstract()) { return; } $current = $classDef; while ($current->extends && $this->hasClass($current->extends)) { $parent = $this->getClass($current->extends); foreach ($parent->abstractMethodDefs as $methodName => $abstractMethodDef) { if ($this->findClassMethodDef($classDef, $methodName, false) === null) { $this->fatalError( $node, "Class `{$classDef->getNamespacedName(false)}` must implement abstract method `{$parent->getNamespacedName(false)}::{$abstractMethodDef->name}()`" ); } } $current = $parent; } } private function getVisibilityRank(int $flags): int { if ($flags & Modifiers::PUBLIC) { return 3; } if ($flags & Modifiers::PROTECTED) { return 2; } if ($flags & Modifiers::PRIVATE) { return 1; } return 3; } private function checkPropertyOverride(Node\Stmt\Class_|Node\Stmt\Trait_|Node\Stmt\Enum_ $classStmt): void { $classDef = $this->classDef; $className = $this->getFullClassName(); $chainNode = $classDef; while ($chainNode->extends && !$chainNode->inheritedFromInternalClass) { $parentClass = $chainNode->extends; $chainNode = $this->getClass($parentClass); if (!$chainNode) { break; } foreach ($this->classDef->properties as $name => $childProp) { if ($chainNode->hasProperty($name)) { $parentProp = $chainNode->getProperty($name); // A parent private property would be a separate PHP slot // hidden by the child declaration. TypePHP forbids that // dual-slot model. Public/protected declarations instead // describe the same inherited property slot and must obey // PHP-compatible type, visibility and readonly rules. if ($parentProp->flags & Modifiers::PRIVATE) { $this->fatalError($classStmt, "Declaration of `{$className}::\${$name}` conflicts with private property " . "`{$parentClass}::\${$name}`; property shadowing across inheritance is not allowed"); } if ($childProp->type !== $parentProp->type || $childProp->class !== $parentProp->class) { $this->fatalError($classStmt, "Declaration of `{$className}::\${$name}` must be compatible " . "with `{$parentClass}::\${$name}`"); } if ($this->getVisibilityRank($childProp->flags) < $this->getVisibilityRank($parentProp->flags)) { $this->fatalError($classStmt, "Declaration of `{$className}::\${$name}` must be compatible " . "with `{$parentClass}::\${$name}`"); } if ($this->getPropertySetVisibilityRank($childProp) < $this->getPropertySetVisibilityRank($parentProp)) { $this->fatalError($classStmt, "Declaration of `{$className}::\${$name}` must not restrict set visibility " . "of `{$parentClass}::\${$name}`"); } if (($childProp->flags & Modifiers::READONLY) !== ($parentProp->flags & Modifiers::READONLY)) { $this->fatalError($classStmt, "Declaration of `{$className}::\${$name}` must be compatible " . "with `{$parentClass}::\${$name}`"); } } } } } private function getPropertySetVisibilityRank(PropertyDef $property): int { if ($property->isPrivateSet()) { return 1; } if ($property->isProtectedSet()) { return 2; } return $this->getVisibilityRank($property->flags); } private function checkConstantOverride(Node\Stmt\Class_|Node\Stmt\Trait_|Node\Stmt\Enum_ $classStmt): void { $classDef = $this->classDef; $className = $this->getFullClassName(); $chainNode = $classDef; while ($chainNode->extends && !$chainNode->inheritedFromInternalClass) { $parentClass = $chainNode->extends; $chainNode = $this->getClass($parentClass); if (!$chainNode) { break; } foreach ($this->classDef->constants as $name => $childConst) { if ($chainNode->hasConstant($name)) { $parentConst = $chainNode->getConstant($name); if ($parentConst->flags & Modifiers::PRIVATE) { continue; } if ($parentConst->flags & Modifiers::FINAL) { $this->fatalError($classStmt, "Cannot override final constant `{$parentClass}::{$name}`"); } // PHP only enforces type compatibility when the parent constant // carries an explicit declared type. Overriding an untyped constant // with a value of any type is permitted, so the type check is skipped // in that case. Visibility is always enforced below. if ($parentConst->declaredType !== null) { if ($childConst->declaredType === null) { $this->fatalError($classStmt, "Declaration of `{$className}::{$name}` must be compatible " . "with `{$parentClass}::{$name}`"); } // An untyped child constant whose value is an expression (e.g. // `X = ParentClass::Y`) is inferred as a variant. Resolve its real // type from the referenced constant so the compatibility check uses // the actual value type. $childType = $childConst->type; if ($childType === Type::VAR && $childConst->valueExpr instanceof Node\Expr\ClassConstFetch) { $resolved = $this->resolveReferencedConstantType($childConst->valueExpr, $this->getFullClassName()); if ($resolved !== null) { $childType = $resolved; } } if ($childType !== $parentConst->type || $childConst->class !== $parentConst->class) { $this->fatalError($classStmt, "Declaration of `{$className}::{$name}` must be compatible " . "with `{$parentClass}::{$name}`"); } } if ($this->getVisibilityRank($childConst->flags) < $this->getVisibilityRank($parentConst->flags)) { $this->fatalError($classStmt, "Declaration of `{$className}::{$name}` must be compatible " . "with `{$parentClass}::{$name}`"); } } } } } protected function parseClassMethod(Node\Stmt\ClassMethod $v, array &$methodCodes): void { $name = $this->getMethodName($v); $this->method = $name; $flags = $this->parseModifiers($v->flags); if (!($flags & Modifiers::ABSTRACT)) { $this->methodDef = $this->classDef->getMethod($name); // Keep the AST node so trait-composed methods can report accurate // line numbers when validated for override compatibility later. $this->methodDef->node = $v; if ($this->classDef->trait === null && $this->methodDef->functionDef?->overrideRequired && !$this->hasMatchingOverrideDeclaration($this->classDef, $name)) { $this->fatalMissingOverride($v, $this->classDef->getNamespacedName(false), $name); } // 预处理阶段没有父类的信息,只能在实现阶段检查 $this->checkParentMethodCanBeOverridden($v, $name); $methodCodes[$name] = $this->parseFunction($v); } $this->resetMethod(); } protected function parseTraitUse(Node\Stmt\TraitUse $v, array &$methodCodes): void { $classDef = $this->classDef; foreach ($v->traits as $trait) { $traitName = $this->parseIdentifier($trait); $traitFullName = $this->getNamespacedClassName($traitName); if (!$this->hasClass($traitFullName)) { $this->fatalError($v, $traitFullName . ' not found'); } $traitDef = $this->getClass($traitFullName); // 将 Trait 中定义的 常量、静态常量、属性、方法、静态属性复制到当前类中 foreach ($traitDef->constants as $const) { if ($classDef->hasConstant($const->name)) { if (!$this->isCompatibleTraitConstant($classDef->getConstant($const->name), $const)) { $this->fatalError($v, "Trait `{$traitFullName}` constant `{$const->name}` conflicts with class `{$classDef->getNamespacedName(false)}`"); } continue; } $classDef->constants[$const->name] = $const; } foreach ($traitDef->properties as $prop) { if ($classDef->hasProperty($prop->name)) { if (!$this->isCompatibleTraitProperty($classDef->getProperty($prop->name), $prop)) { $this->fatalError($v, "Trait `{$traitFullName}` property `{$prop->name}` conflicts with class `{$classDef->getNamespacedName(false)}`"); } continue; } $classDef->properties[$prop->name] = $prop; } foreach ($traitDef->methods as $methodDef) { $classMethodName = $traitMethodName = $methodDef->name; $fullMethodName = $this->getFullMethodName($traitFullName, $traitMethodName); $originalMethodDef = $methodDef; $aliasMethodDefs = []; foreach ($classDef->traitAliases[$fullMethodName] ?? [] as $alias) { if (strtolower($alias['newName']) === strtolower($traitMethodName)) { if ($alias['newModifier']) { if ($originalMethodDef === $methodDef) { $originalMethodDef = clone $methodDef; } $originalMethodDef->flags = $this->parseModifiers($alias['newModifier']); } continue; } $aliasMethodDef = clone $methodDef; $classMethodName = $aliasMethodDef->name = $alias['newName']; if ($alias['newModifier']) { $aliasMethodDef->flags = $this->parseModifiers($alias['newModifier']); } $aliasMethodDefs[strtolower($classMethodName)] = [$classMethodName, $aliasMethodDef]; } // 设置了 insteadof 选项,此 Trait 的方法将不会被使用 if (isset($classDef->traitIgnored[$fullMethodName])) { foreach ($aliasMethodDefs as [$aliasMethodName, $aliasMethodDef]) { if ($classDef->hasMethod($aliasMethodName)) { continue; } $methodCodes[$aliasMethodName] = $this->addTraitMethodWrapper( $classDef, $traitDef, $aliasMethodDef, $traitMethodName, $aliasMethodName ); } continue; } // 类中已经有同名方法,则不使用 Trait 中的方法 if (!$classDef->hasMethod($traitMethodName)) { $methodCodes[$traitMethodName] = $this->addTraitMethodWrapper( $classDef, $traitDef, $originalMethodDef, $traitMethodName, $traitMethodName ); } foreach ($aliasMethodDefs as [$aliasMethodName, $aliasMethodDef]) { if ($classDef->hasMethod($aliasMethodName)) { continue; } $methodCodes[$aliasMethodName] = $this->addTraitMethodWrapper( $classDef, $traitDef, $aliasMethodDef, $traitMethodName, $aliasMethodName ); } } } } private function addTraitMethodWrapper( ClassDef $classDef, ClassDef $traitDef, MethodDef $methodDef, string $traitMethodName, string $classMethodName ): string { // A trait may be composed by multiple classes and aliases. Each wrapper // needs independent signature metadata. $methodDef = clone $methodDef; // A trait method's `self`/`static`/`parent` return and parameter types // refer to the class that uses the trait, not the trait itself. Re-resolve // them to the consuming class so signature-compatibility checks (against // parent classes and interfaces) and `detectClassOfExpr()` observe the // correct type. The cloned FunctionDef keeps the trait's own native // function untouched. $this->reresolveTraitLateBoundTypes($classDef, $methodDef); // The wrapper computes the composing class's parent scope and passes it // to the trait function; it does not expose that scope in its signature. $methodDef->functionDef->hasTraitParentCeParameter = false; // Validate `parent::` calls emitted from this trait method against the // parent of the class that is composing the trait. The trait itself has // no parent at compile time, so this is the only place the parent class // (and therefore the visibility of its methods) is known. foreach ($methodDef->parentMethodCalls as $parentCall) { $this->validateTraitParentCall($traitDef, $classDef, $parentCall['method'], $parentCall['node']); } // A trait method flattened into a class participates in the inheritance // hierarchy: it must remain signature-compatible with any same-named // parent method, exactly as a directly-declared override would. PHP // enforces this at class declaration time ("Declaration of X::m() must // be compatible with Y::m()"); without this check the incompatibility // only surfaces as a runtime fatal error that the compiled binary would // otherwise ignore and keep executing past. $this->checkTraitMethodOverrideCompatibility($classDef, $methodDef, $classMethodName); $classDef->addMethod($methodDef); $traitMethodNativeName = $this->getNativeName($traitMethodName, $traitDef->namespace, $traitDef->name); $classMethodNativeName = $this->getNativeName($classMethodName, $classDef->namespace, $classDef->name); $argList = ['this_']; if ($methodDef->parentMethodCalls) { // Bind parent:: to the class that actually composes the trait. This // remains correct when the generated wrapper is inherited further. $argList[] = $this->getClassEntryPtr($classDef->extends); } foreach ($methodDef->functionDef->argInfoList as $argInfo) { $argList[] = $argInfo->name; } $argv = implode(', ', $argList); $cppReturnType = $methodDef->functionDef->returnsByRef ? Type::REF : $methodDef->getReturnType(); $code = $cppReturnType . ' ' . self::PREFIX . $classMethodNativeName . '('; if ($this->class) { $code .= Type::OBJECT . ' &this_'; if ($methodDef->functionDef->params) { $code .= ', '; } } $this->addFunction($classMethodNativeName, $methodDef->functionDef); $code .= $methodDef->functionDef->params . ')'; $code .= '{' . PHP_EOL; $this->indentLevel++; $methodCall = self::PREFIX . $traitMethodNativeName . '(' . $argv . ')'; if ($cppReturnType !== Type::VOID) { $methodCall = 'return ' . $methodCall; } $code .= $this->getIndent() . $methodCall . ';' . PHP_EOL; $this->indentLevel--; $code .= $this->getIndent() . '}' . PHP_EOL; return $code; } /** * Re-resolve a trait method's late-bound `self`/`static`/`parent` return and * parameter types to the class that is composing the trait. * * In PHP, `self` (and `static`) inside a trait refers to the using class, and * `parent` refers to the using class's parent. The compiler records these as * the trait's own name at parse time, which is wrong once the method is * flattened into a class: interface/trait `self` comparisons and * `detectClassOfExpr()` would otherwise observe the trait name instead of the * consuming class. We clone the FunctionDef so the trait's standalone native * function keeps its original (trait-context) types. */ private function reresolveTraitLateBoundTypes(ClassDef $usingClassDef, MethodDef $methodDef): void { $fn = $methodDef->functionDef; // Always produce a distinct FunctionDef for the composing-class wrapper. // The wrapper has a separate native signature from the trait function. $newFn = clone $fn; if ($fn->returnTypeKeyword !== '') { $resolved = $this->resolveLateBoundClass($usingClassDef, $fn->returnTypeKeyword); if ($resolved !== null && $resolved !== $newFn->returnClass) { $newFn->returnClass = $resolved; } } $newArgs = []; foreach ($newFn->argInfoList as $arg) { $newArg = clone $arg; if ($newArg->typeKeyword !== '') { $resolved = $this->resolveLateBoundClass($usingClassDef, $newArg->typeKeyword); if ($resolved !== null) { if ($newArg->class !== '') { $newArg->class = $resolved; } if ($newArg->declaredClass !== '') { $newArg->declaredClass = $resolved; } } } $newArgs[] = $newArg; } $newFn->argInfoList = $newArgs; $methodDef->functionDef = $newFn; } private function resolveLateBoundClass(ClassDef $usingClassDef, string $keyword): ?string { if ($keyword === 'self') { return $usingClassDef->getNamespacedName(false); } if ($keyword === 'parent') { return $usingClassDef->extends !== '' ? $usingClassDef->extends : null; } // `static` is late-static-bound and resolved to the concrete class only at // call time, so it must keep an empty class (matching a directly-declared // `: static` method). Resolving it to the consuming class here would break // interface/trait signature-compatibility checks, which compare the empty // `static` class on both sides. return null; } /** * Validate a `parent::method()` call recorded inside a trait method. * * The trait has no parent of its own, so the only point at which the parent * class is known is when a class actually uses the trait. At that moment we * can statically resolve the parent method and reject private methods, which * PHP would otherwise only report as a runtime "Call to private method" error. */ private function validateTraitParentCall(ClassDef $traitDef, ClassDef $usingClassDef, string $method, NodeAbstract $node): void { if (!$usingClassDef->extends) { $this->fatalError( $node, "Cannot access parent when class `{$usingClassDef->getNamespacedName(false)}` has no parent" ); } $parentClass = $usingClassDef->extends; // Internal / not-compiled parents are opaque to the compiler; let the // runtime enforce visibility for those. if (!$this->hasClass($parentClass)) { return; } if ($this->getMethodFlags($parentClass, $method) & Modifiers::PRIVATE) { $this->fatalError( $node, "Cannot access private method `{$parentClass}::{$method}()` via parent:: in trait `{$traitDef->name}`" ); } } /** * Validate that a trait method being flattened into a class remains * signature-compatible with any same-named method declared up the parent * chain — the same compatibility contract a directly-declared override must * satisfy (see `checkParentMethodCanBeOverridden`). * * Only the signature contract is enforced here (not the "cannot override * private/final" rule), because a trait method is flattened into the class * and, like a normal subclass method, is allowed to shadow a private parent * method. PHP reports the incompatibility as a class-declaration fatal error * ("Declaration of X::m() must be compatible with Y::m()"), which we surface * at compile time so the broken program is rejected instead of being emitted * and executed past a runtime fatal error. */ private function checkTraitMethodOverrideCompatibility(ClassDef $usingClassDef, MethodDef $methodDef, string $methodName): void { if ($methodName === '__construct' || $methodDef->node === null) { return; } $classDef = $usingClassDef; while (true) { $extends = $classDef->extends; if (!$extends) { break; } if ($classDef->inheritedFromInternalClass) { $modifiers = Reflection::getClassMethodModifiers($extends, $methodName); if ($modifiers !== null && ($modifiers & \ReflectionMethod::IS_FINAL)) { $this->fatalError($methodDef->node, "Cannot override final method `{$extends}::{$methodName}()`"); } break; } // Dynamically supplied parents are opaque to the compiler. if (!$this->hasClass($extends)) { break; } $classDef = $this->getClass($extends); if ($classDef->hasMethod($methodName)) { $parentMethodDef = $classDef->getMethod($methodName); // A private method is a separate slot and may be shadowed by the // method imported from the trait. if ($parentMethodDef->flags & Modifiers::PRIVATE) { break; } if ($parentMethodDef->flags & Modifiers::FINAL) { $this->fatalError($methodDef->node, "Cannot override final method `{$extends}::{$methodName}()`"); } $this->validateMethodOverrideSignature( $methodDef->node, $methodName, $methodDef, $parentMethodDef, $extends ); break; } if ($classDef->hasAbstractMethod($methodName) && isset($classDef->abstractMethodDefs[strtolower($methodName)])) { $this->validateMethodOverrideSignature( $methodDef->node, $methodName, $methodDef, $classDef->getAbstractMethod($methodName), $extends ); break; } } } private function isCompatibleTraitConstant(ConstantDef $existing, ConstantDef $incoming): bool { return $existing->flags === $incoming->flags && $existing->type === $incoming->type && $existing->class === $incoming->class && $existing->value === $incoming->value; } private function isCompatibleTraitProperty(PropertyDef $existing, PropertyDef $incoming): bool { return $existing->flags === $incoming->flags && $existing->type === $incoming->type && $existing->class === $incoming->class && $existing->nullable === $incoming->nullable && $existing->default === $incoming->default; } private function getRegisterClassFunctionArgDef(ClassDef|InterfaceDef $classDef): string { $depsCeList = $this->getRegisterClassFunctionCeList($classDef); if (empty($depsCeList)) { return ''; } return 'zend_class_entry *' . implode(', zend_class_entry *', $depsCeList); } private function getImplementCe(ClassDef $classDef): array { $list = []; foreach ($classDef->implements as $interface) { $list[] = self::PREFIX . 'class_entry_' . $this->escapeCeName($interface); } return $list; } private function genFunctionWrapper(FunctionDef $functionDef): string { $name = $this->escapeZendFnName($functionDef->getNamespacedName()); $cppCode = 'ZEND_FUNCTION(' . $name . '){' . PHP_EOL; $fn = self::PREFIX . $this->getNativeName($functionDef->name, $functionDef->namespace); $cppCode .= $this->genWrapperFunctionArgs($fn, $functionDef, $functionDef->getNamespacedName()); return $cppCode; } /** Return the generated C++ symbol for a hidden runtime-attribute factory. */ public function getRuntimeAttributeFactoryNativeName(string $fullName): string { $fullName = ltrim($fullName, '\\'); $separator = strrpos($fullName, '\\'); if ($separator === false) { return self::PREFIX . $this->getNativeName($fullName); } return self::PREFIX . $this->getNativeName( substr($fullName, $separator + 1), substr($fullName, 0, $separator), ); } private function genClassNative(): string { $code = 'class ' . $this->class . ' { '; $publicMethods = []; $protectedMethods = []; $privateMethods = []; $publicConstants = []; $protectedConstants = []; $privateConstants = []; $publicProperties = []; $protectedProperties = []; $privateProperties = []; foreach ($this->classDef->constants as $const) { if ($const->flags & Modifiers::PUBLIC) { $publicConstants[] = $const; } if ($const->flags & Modifiers::PROTECTED) { $protectedConstants[] = $const; } if ($const->flags & Modifiers::PRIVATE) { $privateConstants[] = $const; } } foreach ($this->classDef->methods as $method) { if ($method->flags & Modifiers::PUBLIC) { $publicMethods[] = $method; } if ($method->flags & Modifiers::PROTECTED) { $protectedMethods[] = $method; } if ($method->flags & Modifiers::PRIVATE) { $privateMethods[] = $method; } } foreach ($this->classDef->properties as $property) { if ($property->flags & Modifiers::PUBLIC) { $publicProperties[] = $property; } if ($property->flags & Modifiers::PROTECTED) { $protectedProperties[] = $property; } if ($property->flags & Modifiers::PRIVATE) { $privateProperties[] = $property; } } if ($privateConstants) { $code .= 'private:' . PHP_EOL; $code .= $this->genClassConstantList($privateConstants); } if ($protectedConstants) { $code .= 'protected:' . PHP_EOL; $code .= $this->genClassConstantList($protectedConstants); } if ($publicConstants) { $code .= 'public:' . PHP_EOL; $code .= $this->genClassConstantList($publicConstants); } if ($privateProperties) { $code .= 'private:' . PHP_EOL; $code .= $this->genClassPropertyList($privateProperties); } if ($protectedProperties) { $code .= 'protected:' . PHP_EOL; $code .= $this->genClassPropertyList($protectedProperties); } if ($publicProperties) { $code .= 'public:' . PHP_EOL; $code .= $this->genClassPropertyList($publicProperties); } $code .= '};' . PHP_EOL . PHP_EOL; return $code; } }