// Copyright (c) 2017, the Dart project authors. Please see the AUTHORS file // for details. All rights reserved. Use of this source code is governed by a // BSD-style license that can be found in the LICENSE file. #include "bin/dfe.h" #include #include "bin/abi_version.h" #include "bin/dartutils.h" #include "bin/directory.h" #include "bin/error_exit.h" #include "bin/file.h" #include "bin/main_options.h" #include "bin/platform.h" #include "bin/utils.h" #include "include/dart_tools_api.h" #include "platform/utils.h" extern "C" { #if !defined(EXCLUDE_CFE_AND_KERNEL_PLATFORM) extern const uint8_t kKernelServiceDill[]; extern intptr_t kKernelServiceDillSize; extern const uint8_t kPlatformStrongDill[]; extern intptr_t kPlatformStrongDillSize; #else const uint8_t* kKernelServiceDill = NULL; intptr_t kKernelServiceDillSize = 0; const uint8_t* kPlatformStrongDill = NULL; intptr_t kPlatformStrongDillSize = 0; #endif // !defined(EXCLUDE_CFE_AND_KERNEL_PLATFORM) } namespace dart { namespace bin { #if !defined(DART_PRECOMPILED_RUNTIME) DFE dfe; #endif const char kKernelServiceSnapshot[] = "kernel-service.dart.snapshot"; const char kSnapshotsDirectory[] = "snapshots"; static char* GetDirectoryPrefixFromExeName() { const char* name = Platform::GetExecutableName(); const char* sep = File::PathSeparator(); const intptr_t sep_length = strlen(sep); for (intptr_t i = strlen(name) - 1; i >= 0; --i) { const char* str = name + i; if (strncmp(str, sep, sep_length) == 0 #if defined(HOST_OS_WINDOWS) // TODO(aam): GetExecutableName doesn't work reliably on Windows, // the code below is a workaround for that (we would be using // just single Platform::Separator instead of both slashes if it did). || *str == '/' #endif ) { return Utils::StrNDup(name, i + 1); } } return strdup(""); } DFE::DFE() : use_dfe_(false), use_incremental_compiler_(false), frontend_filename_(NULL), application_kernel_buffer_(NULL), application_kernel_buffer_size_(0) { // The run_vm_tests binary has the DART_PRECOMPILER set in order to allow unit // tests to exercise JIT and AOT pipeline. // // Only on X64 do we have kernel-service.dart.snapshot available otherwise we // need to fall back to the built-in one (if we have it). #if defined(EXCLUDE_CFE_AND_KERNEL_PLATFORM) || defined(DART_NO_SNAPSHOT) || \ (defined(DART_PRECOMPILER) && defined(TARGET_ARCH_X64)) kernel_service_dill_ = NULL; kernel_service_dill_size_ = 0; platform_strong_dill_ = NULL; platform_strong_dill_size_ = 0; #else kernel_service_dill_ = kKernelServiceDill; kernel_service_dill_size_ = kKernelServiceDillSize; platform_strong_dill_ = kPlatformStrongDill; platform_strong_dill_size_ = kPlatformStrongDillSize; #endif } DFE::~DFE() { if (frontend_filename_ != NULL) { free(frontend_filename_); } frontend_filename_ = NULL; free(application_kernel_buffer_); application_kernel_buffer_ = NULL; application_kernel_buffer_size_ = 0; } void DFE::Init() { Init(Options::kAbiVersionUnset); } void DFE::Init(int target_abi_version) { if (platform_strong_dill_ == NULL) { return; } if (!InitKernelServiceAndPlatformDills(target_abi_version)) { return; } Dart_SetDartLibrarySourcesKernel(platform_strong_dill_, platform_strong_dill_size_); } bool DFE::InitKernelServiceAndPlatformDills(int target_abi_version) { const char kAbiVersionsDir[] = "dart-sdk/lib/_internal/abiversions"; const char kKernelServiceDillFile[] = "kernel_service.dill"; const char kPlatformStrongDillFile[] = "vm_platform_strong.dill"; if (frontend_filename_ != NULL) { return true; } // |dir_prefix| includes the last path seperator. auto dir_prefix = std::unique_ptr( GetDirectoryPrefixFromExeName(), free); if (target_abi_version != Options::kAbiVersionUnset) { kernel_service_dill_ = NULL; kernel_service_dill_size_ = 0; platform_strong_dill_ = NULL; platform_strong_dill_size_ = 0; // Look in the old abi version directory. char* script_uri = Utils::SCreate("%s%s/%d/%s", dir_prefix.get(), kAbiVersionsDir, target_abi_version, kPlatformStrongDillFile); if (!TryReadKernelFile(script_uri, const_cast(&platform_strong_dill_), &platform_strong_dill_size_)) { Syslog::PrintErr("Can't find old ABI dill file: %s\n", script_uri); free(script_uri); return false; } free(script_uri); script_uri = Utils::SCreate("%s%s/%d/%s", dir_prefix.get(), kAbiVersionsDir, target_abi_version, kKernelServiceDillFile); if (!TryReadKernelFile(script_uri, const_cast(&kernel_service_dill_), &kernel_service_dill_size_)) { Syslog::PrintErr("Can't find old ABI dill file: %s\n", script_uri); free(script_uri); return false; } else { frontend_filename_ = script_uri; return true; } } // Look for the frontend snapshot next to the executable. frontend_filename_ = Utils::SCreate("%s%s", dir_prefix.get(), kKernelServiceSnapshot); if (File::Exists(NULL, frontend_filename_)) { return true; } free(frontend_filename_); frontend_filename_ = NULL; // If the frontend snapshot is not found next to the executable, then look for // it in the "snapshots" directory. frontend_filename_ = Utils::SCreate("%s%s%s%s", dir_prefix.get(), kSnapshotsDirectory, File::PathSeparator(), kKernelServiceSnapshot); if (File::Exists(NULL, frontend_filename_)) { return true; } free(frontend_filename_); frontend_filename_ = NULL; return true; } bool DFE::KernelServiceDillAvailable() const { return kernel_service_dill_ != NULL; } void DFE::LoadKernelService(const uint8_t** kernel_service_buffer, intptr_t* kernel_service_buffer_size) { *kernel_service_buffer = kernel_service_dill_; *kernel_service_buffer_size = kernel_service_dill_size_; } void DFE::LoadPlatform(const uint8_t** kernel_buffer, intptr_t* kernel_buffer_size) { *kernel_buffer = platform_strong_dill_; *kernel_buffer_size = platform_strong_dill_size_; } bool DFE::CanUseDartFrontend() const { return (platform_strong_dill_ != NULL) && (KernelServiceDillAvailable() || (frontend_filename() != NULL)); } class WindowsPathSanitizer { public: explicit WindowsPathSanitizer(const char* path) { // For Windows we need to massage the paths a bit according to // http://blogs.msdn.com/b/ie/archive/2006/12/06/file-uris-in-windows.aspx // // Convert // C:\one\two\three // to // /C:/one/two/three // // (see builtin.dart#_sanitizeWindowsPath) intptr_t len = strlen(path); sanitized_uri_ = reinterpret_cast(malloc(len + 1 + 1)); if (sanitized_uri_ == NULL) { OUT_OF_MEMORY(); } char* s = sanitized_uri_; if (len > 2 && path[1] == ':') { *s++ = '/'; } for (const char *p = path; *p; ++p, ++s) { *s = *p == '\\' ? '/' : *p; } *s = '\0'; } ~WindowsPathSanitizer() { free(sanitized_uri_); } const char* sanitized_uri() { return sanitized_uri_; } private: char* sanitized_uri_; DISALLOW_COPY_AND_ASSIGN(WindowsPathSanitizer); }; Dart_KernelCompilationResult DFE::CompileScript(const char* script_uri, bool incremental, const char* package_config) { // TODO(aam): When Frontend is ready, VM should be passing vm_outline.dill // instead of vm_platform.dill to Frontend for compilation. #if defined(HOST_OS_WINDOWS) WindowsPathSanitizer path_sanitizer(script_uri); const char* sanitized_uri = path_sanitizer.sanitized_uri(); #else const char* sanitized_uri = script_uri; #endif return Dart_CompileToKernel(sanitized_uri, platform_strong_dill_, platform_strong_dill_size_, incremental, package_config); } void DFE::CompileAndReadScript(const char* script_uri, uint8_t** kernel_buffer, intptr_t* kernel_buffer_size, char** error, int* exit_code, const char* package_config) { Dart_KernelCompilationResult result = CompileScript(script_uri, use_incremental_compiler(), package_config); switch (result.status) { case Dart_KernelCompilationStatus_Ok: *kernel_buffer = result.kernel; *kernel_buffer_size = result.kernel_size; *error = NULL; *exit_code = 0; break; case Dart_KernelCompilationStatus_Error: free(result.kernel); *error = result.error; // Copy error message. *exit_code = kCompilationErrorExitCode; break; case Dart_KernelCompilationStatus_Crash: free(result.kernel); *error = result.error; // Copy error message. *exit_code = kDartFrontendErrorExitCode; break; case Dart_KernelCompilationStatus_Unknown: free(result.kernel); *error = result.error; // Copy error message. *exit_code = kErrorExitCode; break; } } void DFE::ReadScript(const char* script_uri, uint8_t** kernel_buffer, intptr_t* kernel_buffer_size) const { int64_t start = Dart_TimelineGetMicros(); if (!TryReadKernelFile(script_uri, kernel_buffer, kernel_buffer_size)) { return; } if (!Dart_IsKernel(*kernel_buffer, *kernel_buffer_size)) { free(*kernel_buffer); *kernel_buffer = NULL; *kernel_buffer_size = -1; } int64_t end = Dart_TimelineGetMicros(); Dart_TimelineEvent("DFE::ReadScript", start, end, Dart_Timeline_Event_Duration, 0, NULL, NULL); } // Attempts to treat [buffer] as a in-memory kernel byte representation. // If successful, returns [true] and places [buffer] into [kernel_ir], byte size // into [kernel_ir_size]. // If unsuccessful, returns [false], puts [NULL] into [kernel_ir], -1 into // [kernel_ir_size]. static bool TryReadSimpleKernelBuffer(uint8_t* buffer, uint8_t** p_kernel_ir, intptr_t* p_kernel_ir_size) { DartUtils::MagicNumber magic_number = DartUtils::SniffForMagicNumber(buffer, *p_kernel_ir_size); if (magic_number == DartUtils::kKernelMagicNumber) { // Do not free buffer if this is a kernel file - kernel_file will be // backed by the same memory as the buffer and caller will own it. // Caller is responsible for freeing the buffer when this function // returns true. *p_kernel_ir = buffer; return true; } free(buffer); *p_kernel_ir = NULL; *p_kernel_ir_size = -1; return false; } /// Reads [script_uri] file, returns [true] if successful, [false] otherwise. /// /// If successful, newly allocated buffer with file contents is returned in /// [buffer], file contents byte count - in [size]. static bool TryReadFile(const char* script_uri, uint8_t** buffer, intptr_t* size) { void* script_file = DartUtils::OpenFileUri(script_uri, false); if (script_file == NULL) { return false; } DartUtils::ReadFile(buffer, size, script_file); DartUtils::CloseFile(script_file); if (*size <= 0 || buffer == NULL) { return false; } return true; } class KernelIRNode { public: KernelIRNode(uint8_t* kernel_ir, intptr_t kernel_size) : kernel_ir_(kernel_ir), kernel_size_(kernel_size) {} ~KernelIRNode() { free(kernel_ir_); } static void Add(KernelIRNode** p_head, KernelIRNode** p_tail, KernelIRNode* node) { if (*p_head == NULL) { *p_head = node; } else { (*p_tail)->next_ = node; } *p_tail = node; } static void Merge(KernelIRNode* head, uint8_t** p_bytes, intptr_t* p_size) { intptr_t size = 0; for (KernelIRNode* node = head; node != NULL; node = node->next_) { size = size + node->kernel_size_; } *p_bytes = reinterpret_cast(malloc(size)); if (*p_bytes == NULL) { OUT_OF_MEMORY(); } uint8_t* p = *p_bytes; KernelIRNode* node = head; while (node != NULL) { memmove(p, node->kernel_ir_, node->kernel_size_); p += node->kernel_size_; KernelIRNode* next = node->next_; node = next; } *p_size = size; } static void Delete(KernelIRNode* head) { KernelIRNode* node = head; while (node != NULL) { KernelIRNode* next = node->next_; delete (node); node = next; } } private: uint8_t* kernel_ir_; intptr_t kernel_size_; KernelIRNode* next_ = NULL; DISALLOW_COPY_AND_ASSIGN(KernelIRNode); }; class StringPointer { public: explicit StringPointer(char* c_str) : c_str_(c_str) {} ~StringPointer() { free(c_str_); } const char* c_str() { return c_str_; } private: char* c_str_; DISALLOW_COPY_AND_ASSIGN(StringPointer); }; // Supports "kernel list" files as input. // Those are text files that start with '#@dill' on new line, followed // by absolute paths to kernel files or relative paths, that are relative // to [script_uri] "kernel list" file. // Below is an example of valid kernel list file: // ``` // #@dill // /projects/mytest/build/bin/main.vm.dill // /projects/mytest/build/packages/mytest/lib.vm.dill // ``` static bool TryReadKernelListBuffer(const char* script_uri, uint8_t* buffer, intptr_t buffer_size, uint8_t** kernel_ir, intptr_t* kernel_ir_size) { const char* kernel_list_dirname = DartUtils::DirName(script_uri); KernelIRNode* kernel_ir_head = NULL; KernelIRNode* kernel_ir_tail = NULL; // Add all kernels to the linked list char* filename = reinterpret_cast(buffer + kernel_list_magic_number.length); intptr_t filename_size = buffer_size - kernel_list_magic_number.length; char* tail = reinterpret_cast(memchr(filename, '\n', filename_size)); while (tail != NULL) { *tail = '\0'; intptr_t this_kernel_size; uint8_t* this_buffer; StringPointer absolute_filename( File::IsAbsolutePath(filename) ? strdup(filename) : Utils::SCreate("%s%s", kernel_list_dirname, filename)); if (!TryReadFile(absolute_filename.c_str(), &this_buffer, &this_kernel_size)) { return false; } uint8_t* this_kernel_ir; if (!TryReadSimpleKernelBuffer(this_buffer, &this_kernel_ir, &this_kernel_size)) { // Abandon read if any of the files in the list are invalid. KernelIRNode::Delete(kernel_ir_head); *kernel_ir = NULL; *kernel_ir_size = -1; return false; } KernelIRNode::Add(&kernel_ir_head, &kernel_ir_tail, new KernelIRNode(this_kernel_ir, this_kernel_size)); filename_size -= tail + 1 - filename; filename = tail + 1; tail = reinterpret_cast(memchr(filename, '\n', filename_size)); } free(buffer); KernelIRNode::Merge(kernel_ir_head, kernel_ir, kernel_ir_size); KernelIRNode::Delete(kernel_ir_head); return true; } bool DFE::TryReadKernelFile(const char* script_uri, uint8_t** kernel_ir, intptr_t* kernel_ir_size) { *kernel_ir = NULL; *kernel_ir_size = -1; uint8_t* buffer; if (!TryReadFile(script_uri, &buffer, kernel_ir_size)) { return false; } DartUtils::MagicNumber magic_number = DartUtils::SniffForMagicNumber(buffer, *kernel_ir_size); if (magic_number == DartUtils::kKernelListMagicNumber) { return TryReadKernelListBuffer(script_uri, buffer, *kernel_ir_size, kernel_ir, kernel_ir_size); } return TryReadSimpleKernelBuffer(buffer, kernel_ir, kernel_ir_size); } } // namespace bin } // namespace dart