6a0ea0d428
Review URL: https://chromiumcodereview.appspot.com//10911135 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@12085 260f80e4-7a28-3924-810f-c04153c831b5
670 lines
20 KiB
C++
670 lines
20 KiB
C++
// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#include <stdlib.h>
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#include <string.h>
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#include <stdio.h>
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#include "include/dart_api.h"
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#include "include/dart_debugger_api.h"
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#include "bin/builtin.h"
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#include "bin/dartutils.h"
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#include "bin/dbg_connection.h"
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#include "bin/directory.h"
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#include "bin/eventhandler.h"
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#include "bin/extensions.h"
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#include "bin/file.h"
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#include "bin/isolate_data.h"
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#include "bin/platform.h"
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#include "bin/process.h"
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#include "platform/globals.h"
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// snapshot_buffer points to a snapshot if we link in a snapshot otherwise
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// it is initialized to NULL.
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extern const uint8_t* snapshot_buffer;
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// Global state that indicates whether perf_events symbol information
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// is to be generated or not.
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static File* perf_events_symbols_file = NULL;
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// Global state that indicates whether pprof symbol information is
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// to be generated or not.
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static const char* generate_pprof_symbols_filename = NULL;
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// Global state that stores a pointer to the application script snapshot.
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static bool use_script_snapshot = false;
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static File* snapshot_file = NULL;
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// Global state that stores a file name for flow graph debugging output.
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// NULL if no output is generated.
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static File* flow_graph_file = NULL;
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// Global state that indicates whether there is a debug breakpoint.
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// This pointer points into an argv buffer and does not need to be
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// free'd.
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static const char* breakpoint_at = NULL;
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// Global state that indicates whether we should open a connection
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// and listen for a debugger to connect.
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static bool start_debugger = false;
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static const int DEFAULT_DEBUG_PORT = 5858;
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static const char* DEFAULT_DEBUG_IP = "127.0.0.1";
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static const char* debug_ip = DEFAULT_DEBUG_IP;
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static int debug_port = 0;
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// Value of the --package-root flag.
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// (This pointer points into an argv buffer and does not need to be
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// free'd.)
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static const char* package_root = NULL;
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// Global flag that is used to indicate that we want to compile all the
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// dart functions and not run anything.
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static bool has_compile_all = false;
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static bool IsValidFlag(const char* name,
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const char* prefix,
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intptr_t prefix_length) {
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intptr_t name_length = strlen(name);
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return ((name_length > prefix_length) &&
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(strncmp(name, prefix, prefix_length) == 0));
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}
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static void ProcessBreakpointOption(const char* funcname) {
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ASSERT(funcname != NULL);
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breakpoint_at = funcname;
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}
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static void ProcessPackageRootOption(const char* arg) {
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ASSERT(arg != NULL);
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package_root = arg;
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}
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static void ProcessCompileAllOption(const char* compile_all) {
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ASSERT(compile_all != NULL);
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has_compile_all = true;
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}
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static void ProcessDebugOption(const char* port) {
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// TODO(hausner): Add support for specifying an IP address on which
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// the debugger should listen.
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ASSERT(port != NULL);
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debug_port = 0;
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if (*port == '\0') {
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debug_port = DEFAULT_DEBUG_PORT;
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} else {
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if ((*port == '=') || (*port == ':')) {
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debug_port = atoi(port + 1);
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}
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}
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if (debug_port == 0) {
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fprintf(stderr, "unrecognized --debug option syntax. "
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"Use --debug[:<port number>]\n");
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return;
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}
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breakpoint_at = "main";
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start_debugger = true;
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}
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static void ProcessPerfEventsOption(const char* option) {
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ASSERT(option != NULL);
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if (perf_events_symbols_file == NULL) {
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// TODO(cshapiro): eliminate the #ifdef by moving this code to a
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// Linux specific source file.
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#if defined(TARGET_OS_LINUX)
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const char* format = "/tmp/perf-%ld.map";
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intptr_t pid = Process::CurrentProcessId();
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intptr_t len = snprintf(NULL, 0, format, pid);
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char* filename = new char[len + 1];
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snprintf(filename, len + 1, format, pid);
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perf_events_symbols_file = File::Open(filename, File::kWriteTruncate);
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ASSERT(perf_events_symbols_file != NULL);
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delete[] filename;
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#endif
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}
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}
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static void ProcessPprofOption(const char* filename) {
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ASSERT(filename != NULL);
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generate_pprof_symbols_filename = filename;
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}
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static void ProcessScriptSnapshotOption(const char* filename) {
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if (filename != NULL && strlen(filename) != 0) {
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use_script_snapshot = true;
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snapshot_file = File::Open(filename, File::kRead);
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}
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}
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static void ProcessFlowGraphOption(const char* flowgraph_option) {
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ASSERT(flowgraph_option != NULL);
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flow_graph_file = File::Open("flowgraph.cfg", File::kWriteTruncate);
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ASSERT(flow_graph_file != NULL);
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}
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static struct {
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const char* option_name;
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void (*process)(const char* option);
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} main_options[] = {
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{ "--break_at=", ProcessBreakpointOption },
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{ "--compile_all", ProcessCompileAllOption },
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{ "--debug", ProcessDebugOption },
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{ "--generate_flow_graph", ProcessFlowGraphOption },
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{ "--generate_perf_events_symbols", ProcessPerfEventsOption },
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{ "--generate_pprof_symbols=", ProcessPprofOption },
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{ "--package-root=", ProcessPackageRootOption },
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{ "--use_script_snapshot=", ProcessScriptSnapshotOption },
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{ NULL, NULL }
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};
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static bool ProcessMainOptions(const char* option) {
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int i = 0;
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const char* name = main_options[0].option_name;
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while (name != NULL) {
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int length = strlen(name);
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if (strncmp(option, name, length) == 0) {
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main_options[i].process(option + length);
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return true;
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}
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i += 1;
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name = main_options[i].option_name;
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}
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return false;
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}
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static void WriteToPerfEventsFile(const char* buffer, int64_t num_bytes) {
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ASSERT(perf_events_symbols_file != NULL);
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perf_events_symbols_file->WriteFully(buffer, num_bytes);
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}
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static void WriteToFlowGraphFile(const char* buffer, int64_t num_bytes) {
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ASSERT(flow_graph_file != NULL);
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flow_graph_file->WriteFully(buffer, num_bytes);
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}
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// Parse out the command line arguments. Returns -1 if the arguments
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// are incorrect, 0 otherwise.
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static int ParseArguments(int argc,
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char** argv,
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CommandLineOptions* vm_options,
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char** executable_name,
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char** script_name,
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CommandLineOptions* dart_options,
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bool* print_flags_seen) {
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const char* kPrefix = "--";
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const intptr_t kPrefixLen = strlen(kPrefix);
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// Get the executable name.
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*executable_name = argv[0];
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// Start the rest after the executable name.
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int i = 1;
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// Parse out the vm options.
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while ((i < argc) && IsValidFlag(argv[i], kPrefix, kPrefixLen)) {
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if (ProcessMainOptions(argv[i])) {
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i++;
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} else {
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const char* kPrintFlags1 = "--print-flags";
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const char* kPrintFlags2 = "--print_flags";
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if ((strncmp(argv[i], kPrintFlags1, strlen(kPrintFlags1)) == 0) ||
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(strncmp(argv[i], kPrintFlags2, strlen(kPrintFlags2)) == 0)) {
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*print_flags_seen = true;
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}
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vm_options->AddArgument(argv[i]);
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i++;
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}
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}
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if (perf_events_symbols_file != NULL) {
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Dart_InitPerfEventsSupport(&WriteToPerfEventsFile);
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}
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if (generate_pprof_symbols_filename != NULL) {
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Dart_InitPprofSupport();
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}
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if (flow_graph_file != NULL) {
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Dart_InitFlowGraphPrinting(&WriteToFlowGraphFile);
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}
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// Get the script name.
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if (i < argc) {
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*script_name = argv[i];
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i++;
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} else {
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return -1;
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}
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// Parse out options to be passed to dart main.
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while (i < argc) {
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dart_options->AddArgument(argv[i]);
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i++;
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}
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return 0;
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}
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static Dart_Handle SetupRuntimeOptions(CommandLineOptions* options,
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const char* executable_name,
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const char* script_name) {
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int options_count = options->count();
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Dart_Handle dart_executable = Dart_NewString(executable_name);
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if (Dart_IsError(dart_executable)) {
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return dart_executable;
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}
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Dart_Handle dart_script = Dart_NewString(script_name);
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if (Dart_IsError(dart_script)) {
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return dart_script;
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}
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Dart_Handle dart_arguments = Dart_NewList(options_count);
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if (Dart_IsError(dart_arguments)) {
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return dart_arguments;
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}
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for (int i = 0; i < options_count; i++) {
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Dart_Handle argument_value = Dart_NewString(options->GetArgument(i));
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if (Dart_IsError(argument_value)) {
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return argument_value;
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}
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Dart_Handle result = Dart_ListSetAt(dart_arguments, i, argument_value);
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if (Dart_IsError(result)) {
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return result;
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}
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}
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Dart_Handle core_lib_url = Dart_NewString("dart:coreimpl");
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if (Dart_IsError(core_lib_url)) {
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return core_lib_url;
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}
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Dart_Handle core_lib = Dart_LookupLibrary(core_lib_url);
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if (Dart_IsError(core_lib)) {
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return core_lib;
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}
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Dart_Handle runtime_options_class_name = Dart_NewString("RuntimeOptions");
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if (Dart_IsError(runtime_options_class_name)) {
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return runtime_options_class_name;
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}
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Dart_Handle runtime_options_class = Dart_GetClass(
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core_lib, runtime_options_class_name);
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if (Dart_IsError(runtime_options_class)) {
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return runtime_options_class;
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}
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Dart_Handle executable_name_name = Dart_NewString("_nativeExecutable");
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if (Dart_IsError(executable_name_name)) {
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return executable_name_name;
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}
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Dart_Handle set_executable_name =
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Dart_SetField(runtime_options_class,
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executable_name_name,
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dart_executable);
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if (Dart_IsError(set_executable_name)) {
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return set_executable_name;
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}
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Dart_Handle script_name_name = Dart_NewString("_nativeScript");
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if (Dart_IsError(script_name_name)) {
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return script_name_name;
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}
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Dart_Handle set_script_name =
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Dart_SetField(runtime_options_class, script_name_name, dart_script);
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if (Dart_IsError(set_script_name)) {
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return set_script_name;
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}
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Dart_Handle native_name = Dart_NewString("_nativeArguments");
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if (Dart_IsError(native_name)) {
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return native_name;
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}
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return Dart_SetField(runtime_options_class, native_name, dart_arguments);
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}
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static void DumpPprofSymbolInfo() {
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if (generate_pprof_symbols_filename != NULL) {
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Dart_EnterScope();
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File* pprof_file =
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File::Open(generate_pprof_symbols_filename, File::kWriteTruncate);
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ASSERT(pprof_file != NULL);
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void* buffer;
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int buffer_size;
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Dart_GetPprofSymbolInfo(&buffer, &buffer_size);
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if (buffer_size > 0) {
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ASSERT(buffer != NULL);
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pprof_file->WriteFully(buffer, buffer_size);
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}
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delete pprof_file; // Closes the file.
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Dart_ExitScope();
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}
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}
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#define CHECK_RESULT(result) \
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if (Dart_IsError(result)) { \
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*error = strdup(Dart_GetError(result)); \
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Dart_ExitScope(); \
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Dart_ShutdownIsolate(); \
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return false; \
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} \
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// Returns true on success, false on failure.
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static bool CreateIsolateAndSetupHelper(const char* script_uri,
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const char* main,
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bool resolve_script,
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void* data,
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char** error) {
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Dart_Isolate isolate =
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Dart_CreateIsolate(script_uri, main, snapshot_buffer, data, error);
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if (isolate == NULL) {
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return false;
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}
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Dart_EnterScope();
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if (snapshot_buffer != NULL) {
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// Setup the native resolver as the snapshot does not carry it.
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Builtin::SetNativeResolver(Builtin::kBuiltinLibrary);
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Builtin::SetNativeResolver(Builtin::kIOLibrary);
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}
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// Set up the library tag handler for this isolate.
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Dart_Handle result = Dart_SetLibraryTagHandler(DartUtils::LibraryTagHandler);
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CHECK_RESULT(result);
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// Load the specified application script into the newly created isolate.
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Dart_Handle library;
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if (use_script_snapshot) {
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if (snapshot_file == NULL) {
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use_script_snapshot = false;
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*error = strdup("Invalid script snapshot file name specified");
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Dart_ExitScope();
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Dart_ShutdownIsolate();
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return false;
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}
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size_t len = snapshot_file->Length();
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uint8_t* buffer = reinterpret_cast<uint8_t*>(malloc(len));
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if (buffer == NULL) {
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delete snapshot_file;
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snapshot_file = NULL;
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use_script_snapshot = false;
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*error = strdup("Unable to read contents of script snapshot file");
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Dart_ExitScope();
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Dart_ShutdownIsolate();
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return false;
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}
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// Prepare for script loading by setting up the 'print' and 'timer'
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// closures and setting up 'package root' for URI resolution.
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Dart_Handle builtin_lib =
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Builtin::LoadAndCheckLibrary(Builtin::kBuiltinLibrary);
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DartUtils::PrepareForScriptLoading(package_root, builtin_lib);
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snapshot_file->ReadFully(buffer, len);
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library = Dart_LoadScriptFromSnapshot(buffer);
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free(buffer);
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delete snapshot_file;
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snapshot_file = NULL;
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use_script_snapshot = false; // No further usage of script snapshots.
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} else {
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// Prepare builtin and its dependent libraries for use to resolve URIs.
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Dart_Handle uri_lib = Builtin::LoadAndCheckLibrary(Builtin::kUriLibrary);
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CHECK_RESULT(uri_lib);
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Dart_Handle builtin_lib =
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Builtin::LoadAndCheckLibrary(Builtin::kBuiltinLibrary);
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CHECK_RESULT(builtin_lib);
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// Prepare for script loading by setting up the 'print' and 'timer'
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// closures and setting up 'package root' for URI resolution.
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result = DartUtils::PrepareForScriptLoading(package_root, builtin_lib);
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CHECK_RESULT(result);
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library = DartUtils::LoadScript(script_uri, resolve_script, builtin_lib);
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}
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CHECK_RESULT(library);
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if (!Dart_IsLibrary(library)) {
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char errbuf[256];
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snprintf(errbuf, sizeof(errbuf),
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"Expected a library when loading script: %s",
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script_uri);
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*error = strdup(errbuf);
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Dart_ExitScope();
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Dart_ShutdownIsolate();
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return false;
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}
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Dart_ExitScope();
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return true;
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}
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static bool CreateIsolateAndSetup(const char* script_uri,
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const char* main,
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void* data, char** error) {
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return CreateIsolateAndSetupHelper(script_uri,
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main,
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false, // script_uri already canonical.
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new IsolateData(),
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error);
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}
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static void PrintUsage() {
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fprintf(stderr,
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"dart [<vm-flags>] <dart-script-file> [<dart-options>]\n");
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}
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static Dart_Handle SetBreakpoint(const char* breakpoint_at,
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Dart_Handle library) {
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Dart_Handle result;
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if (strchr(breakpoint_at, ':')) {
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char* bpt_line = strdup(breakpoint_at);
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char* colon = strchr(bpt_line, ':');
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ASSERT(colon != NULL);
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*colon = '\0';
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Dart_Handle url = Dart_NewString(bpt_line);
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Dart_Handle line_number = Dart_NewInteger(atoi(colon + 1));
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free(bpt_line);
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Dart_Breakpoint bpt;
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result = Dart_SetBreakpointAtLine(url, line_number, &bpt);
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} else {
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char* bpt_function = strdup(breakpoint_at);
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Dart_Handle class_name;
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Dart_Handle function_name;
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char* dot = strchr(bpt_function, '.');
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if (dot == NULL) {
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class_name = Dart_NewString("");
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function_name = Dart_NewString(breakpoint_at);
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} else {
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*dot = '\0';
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class_name = Dart_NewString(bpt_function);
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function_name = Dart_NewString(dot + 1);
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}
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free(bpt_function);
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Dart_Breakpoint bpt;
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result = Dart_SetBreakpointAtEntry(
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library, class_name, function_name, &bpt);
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}
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return result;
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}
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char* BuildIsolateName(const char* script_name,
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const char* func_name) {
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// Skip past any slashes in the script name.
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const char* last_slash = strrchr(script_name, '/');
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if (last_slash != NULL) {
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script_name = last_slash + 1;
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}
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const char* kFormat = "%s/%s";
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intptr_t len = strlen(script_name) + strlen(func_name) + 2;
|
|
char* buffer = new char[len];
|
|
ASSERT(buffer != NULL);
|
|
snprintf(buffer, len, kFormat, script_name, func_name);
|
|
return buffer;
|
|
}
|
|
|
|
|
|
static const int kErrorExitCode = 255; // Indicates we encountered an error.
|
|
|
|
|
|
static int ErrorExit(const char* format, ...) {
|
|
va_list arguments;
|
|
va_start(arguments, format);
|
|
vfprintf(stderr, format, arguments);
|
|
va_end(arguments);
|
|
|
|
Dart_ExitScope();
|
|
Dart_ShutdownIsolate();
|
|
|
|
return kErrorExitCode;
|
|
}
|
|
|
|
|
|
static void ShutdownIsolate(void* callback_data) {
|
|
IsolateData* isolate_data = reinterpret_cast<IsolateData*>(callback_data);
|
|
EventHandler* handler = isolate_data->event_handler;
|
|
if (handler != NULL) handler->Shutdown();
|
|
delete isolate_data;
|
|
}
|
|
|
|
|
|
int main(int argc, char** argv) {
|
|
char* executable_name;
|
|
char* script_name;
|
|
CommandLineOptions vm_options(argc);
|
|
CommandLineOptions dart_options(argc);
|
|
bool print_flags_seen = false;
|
|
|
|
// Perform platform specific initialization.
|
|
if (!Platform::Initialize()) {
|
|
fprintf(stderr, "Initialization failed\n");
|
|
}
|
|
|
|
// Parse command line arguments.
|
|
if (ParseArguments(argc,
|
|
argv,
|
|
&vm_options,
|
|
&executable_name,
|
|
&script_name,
|
|
&dart_options,
|
|
&print_flags_seen) < 0) {
|
|
if (print_flags_seen) {
|
|
// Will set the VM flags, print them out and then we exit as no
|
|
// script was specified on the command line.
|
|
Dart_SetVMFlags(vm_options.count(), vm_options.arguments());
|
|
return 0;
|
|
} else {
|
|
PrintUsage();
|
|
return kErrorExitCode;
|
|
}
|
|
}
|
|
|
|
Dart_SetVMFlags(vm_options.count(), vm_options.arguments());
|
|
|
|
// Initialize the Dart VM.
|
|
Dart_Initialize(CreateIsolateAndSetup,
|
|
NULL,
|
|
ShutdownIsolate);
|
|
|
|
DartUtils::SetOriginalWorkingDirectory();
|
|
|
|
// Call CreateIsolateAndSetup which creates an isolate and loads up
|
|
// the specified application script.
|
|
char* error = NULL;
|
|
char* isolate_name = BuildIsolateName(script_name, "main");
|
|
if (!CreateIsolateAndSetupHelper(script_name,
|
|
"main",
|
|
true, // Canonicalize the script name.
|
|
new IsolateData(),
|
|
&error)) {
|
|
fprintf(stderr, "%s\n", error);
|
|
free(error);
|
|
delete [] isolate_name;
|
|
return kErrorExitCode; // Indicates we encountered an error.
|
|
}
|
|
delete [] isolate_name;
|
|
|
|
Dart_Isolate isolate = Dart_CurrentIsolate();
|
|
ASSERT(isolate != NULL);
|
|
Dart_Handle result;
|
|
|
|
Dart_EnterScope();
|
|
|
|
if (has_compile_all) {
|
|
result = Dart_CompileAll();
|
|
if (Dart_IsError(result)) {
|
|
return ErrorExit("%s\n", Dart_GetError(result));
|
|
}
|
|
}
|
|
|
|
// Create a dart options object that can be accessed from dart code.
|
|
Dart_Handle options_result =
|
|
SetupRuntimeOptions(&dart_options, executable_name, script_name);
|
|
if (Dart_IsError(options_result)) {
|
|
return ErrorExit("%s\n", Dart_GetError(options_result));
|
|
}
|
|
// Lookup the library of the root script.
|
|
Dart_Handle library = Dart_RootLibrary();
|
|
if (Dart_IsNull(library)) {
|
|
return ErrorExit("Unable to find root library for '%s'\n",
|
|
script_name);
|
|
}
|
|
// Set debug breakpoint if specified on the command line.
|
|
if (breakpoint_at != NULL) {
|
|
result = SetBreakpoint(breakpoint_at, library);
|
|
if (Dart_IsError(result)) {
|
|
return ErrorExit("Error setting breakpoint at '%s': %s\n",
|
|
breakpoint_at,
|
|
Dart_GetError(result));
|
|
}
|
|
}
|
|
|
|
// Start the debugger wire protocol handler if necessary.
|
|
if (start_debugger) {
|
|
ASSERT(debug_port != 0);
|
|
DebuggerConnectionHandler::StartHandler(debug_ip, debug_port);
|
|
}
|
|
|
|
// Lookup and invoke the top level main function.
|
|
result = Dart_Invoke(library, Dart_NewString("main"), 0, NULL);
|
|
if (Dart_IsError(result)) {
|
|
return ErrorExit("%s\n", Dart_GetError(result));
|
|
}
|
|
// Keep handling messages until the last active receive port is closed.
|
|
result = Dart_RunLoop();
|
|
if (Dart_IsError(result)) {
|
|
return ErrorExit("%s\n", Dart_GetError(result));
|
|
}
|
|
|
|
Dart_ExitScope();
|
|
// Dump symbol information for the profiler.
|
|
DumpPprofSymbolInfo();
|
|
// Shutdown the isolate.
|
|
Dart_ShutdownIsolate();
|
|
// Terminate process exit-code handler.
|
|
Process::TerminateExitCodeHandler();
|
|
|
|
return 0;
|
|
}
|