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Side by Side Diff: runtime/bin/utils_win.cc

Issue 1781883002: Fixes some memory leaks in //runtime/bin (Closed) Base URL: git@github.com:dart-lang/sdk.git@master
Patch Set: Fix tests on Windows Created 4 years, 9 months ago
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1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file 1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
2 // for details. All rights reserved. Use of this source code is governed by a 2 // for details. All rights reserved. Use of this source code is governed by a
3 // BSD-style license that can be found in the LICENSE file. 3 // BSD-style license that can be found in the LICENSE file.
4 4
5 #include "platform/globals.h" 5 #include "platform/globals.h"
6 #if defined(TARGET_OS_WINDOWS) 6 #if defined(TARGET_OS_WINDOWS)
7 7
8 #include <errno.h> // NOLINT 8 #include <errno.h> // NOLINT
9 #include <time.h> // NOLINT 9 #include <time.h> // NOLINT
10 10
(...skipping 29 matching lines...) Expand all
40 40
41 41
42 OSError::OSError() : sub_system_(kSystem), code_(0), message_(NULL) { 42 OSError::OSError() : sub_system_(kSystem), code_(0), message_(NULL) {
43 set_code(GetLastError()); 43 set_code(GetLastError());
44 44
45 static const int kMaxMessageLength = 256; 45 static const int kMaxMessageLength = 256;
46 wchar_t message[kMaxMessageLength]; 46 wchar_t message[kMaxMessageLength];
47 FormatMessageIntoBuffer(code_, message, kMaxMessageLength); 47 FormatMessageIntoBuffer(code_, message, kMaxMessageLength);
48 char* utf8 = StringUtilsWin::WideToUtf8(message); 48 char* utf8 = StringUtilsWin::WideToUtf8(message);
49 SetMessage(utf8); 49 SetMessage(utf8);
50 free(utf8);
51 } 50 }
52 51
52
53 void OSError::SetCodeAndMessage(SubSystem sub_system, int code) { 53 void OSError::SetCodeAndMessage(SubSystem sub_system, int code) {
54 set_sub_system(sub_system); 54 set_sub_system(sub_system);
55 set_code(code); 55 set_code(code);
56 56
57 static const int kMaxMessageLength = 256; 57 static const int kMaxMessageLength = 256;
58 wchar_t message[kMaxMessageLength]; 58 wchar_t message[kMaxMessageLength];
59 FormatMessageIntoBuffer(code_, message, kMaxMessageLength); 59 FormatMessageIntoBuffer(code_, message, kMaxMessageLength);
60 char* utf8 = StringUtilsWin::WideToUtf8(message); 60 char* utf8 = StringUtilsWin::WideToUtf8(message);
61 SetMessage(utf8); 61 SetMessage(utf8);
62 free(utf8);
63 } 62 }
64 63
64
65 char* StringUtils::ConsoleStringToUtf8(char* str, 65 char* StringUtils::ConsoleStringToUtf8(char* str,
66 intptr_t len, 66 intptr_t len,
67 intptr_t* result_len) { 67 intptr_t* result_len) {
68 int wide_len = MultiByteToWideChar(CP_ACP, 0, str, len, NULL, 0); 68 int wide_len = MultiByteToWideChar(CP_ACP, 0, str, len, NULL, 0);
69 wchar_t* wide = new wchar_t[wide_len]; 69 wchar_t* wide;
70 wide =
71 reinterpret_cast<wchar_t*>(Dart_ScopeAllocate(wide_len * sizeof(*wide)));
70 MultiByteToWideChar(CP_ACP, 0, str, len, wide, wide_len); 72 MultiByteToWideChar(CP_ACP, 0, str, len, wide, wide_len);
71 char* utf8 = StringUtilsWin::WideToUtf8(wide, wide_len, result_len); 73 char* utf8 = StringUtilsWin::WideToUtf8(wide, wide_len, result_len);
72 delete[] wide;
73 return utf8; 74 return utf8;
74 } 75 }
75 76
77
76 char* StringUtils::Utf8ToConsoleString(char* utf8, 78 char* StringUtils::Utf8ToConsoleString(char* utf8,
77 intptr_t len, 79 intptr_t len,
78 intptr_t* result_len) { 80 intptr_t* result_len) {
79 intptr_t wide_len; 81 intptr_t wide_len;
80 wchar_t* wide = StringUtilsWin::Utf8ToWide(utf8, len, &wide_len); 82 wchar_t* wide = StringUtilsWin::Utf8ToWide(utf8, len, &wide_len);
81 int system_len = WideCharToMultiByte( 83 int system_len = WideCharToMultiByte(
82 CP_ACP, 0, wide, wide_len, NULL, 0, NULL, NULL); 84 CP_ACP, 0, wide, wide_len, NULL, 0, NULL, NULL);
83 char* ansi = reinterpret_cast<char*>(malloc(system_len)); 85 char* ansi;
86 ansi =
87 reinterpret_cast<char*>(Dart_ScopeAllocate(system_len * sizeof(*ansi)));
84 if (ansi == NULL) { 88 if (ansi == NULL) {
85 free(wide);
86 return NULL; 89 return NULL;
87 } 90 }
88 WideCharToMultiByte(CP_ACP, 0, wide, wide_len, ansi, system_len, NULL, NULL); 91 WideCharToMultiByte(CP_ACP, 0, wide, wide_len, ansi, system_len, NULL, NULL);
89 free(wide);
90 if (result_len != NULL) { 92 if (result_len != NULL) {
91 *result_len = system_len; 93 *result_len = system_len;
92 } 94 }
93 return ansi; 95 return ansi;
94 } 96 }
95 97
98
96 char* StringUtilsWin::WideToUtf8(wchar_t* wide, 99 char* StringUtilsWin::WideToUtf8(wchar_t* wide,
97 intptr_t len, 100 intptr_t len,
98 intptr_t* result_len) { 101 intptr_t* result_len) {
99 // If len is -1 then WideCharToMultiByte will include the terminating 102 // If len is -1 then WideCharToMultiByte will include the terminating
100 // NUL byte in the length. 103 // NUL byte in the length.
101 int utf8_len = WideCharToMultiByte( 104 int utf8_len = WideCharToMultiByte(
102 CP_UTF8, 0, wide, len, NULL, 0, NULL, NULL); 105 CP_UTF8, 0, wide, len, NULL, 0, NULL, NULL);
103 char* utf8 = reinterpret_cast<char*>(malloc(utf8_len)); 106 char* utf8;
107 utf8 = reinterpret_cast<char*>(Dart_ScopeAllocate(utf8_len * sizeof(*utf8)));
104 WideCharToMultiByte(CP_UTF8, 0, wide, len, utf8, utf8_len, NULL, NULL); 108 WideCharToMultiByte(CP_UTF8, 0, wide, len, utf8, utf8_len, NULL, NULL);
105 if (result_len != NULL) { 109 if (result_len != NULL) {
106 *result_len = utf8_len; 110 *result_len = utf8_len;
107 } 111 }
108 return utf8; 112 return utf8;
109 } 113 }
110 114
111 115
112 wchar_t* StringUtilsWin::Utf8ToWide(char* utf8, 116 wchar_t* StringUtilsWin::Utf8ToWide(char* utf8,
113 intptr_t len, 117 intptr_t len,
114 intptr_t* result_len) { 118 intptr_t* result_len) {
115 // If len is -1 then MultiByteToWideChar will include the terminating 119 // If len is -1 then MultiByteToWideChar will include the terminating
116 // NUL byte in the length. 120 // NUL byte in the length.
117 int wide_len = MultiByteToWideChar(CP_UTF8, 0, utf8, len, NULL, 0); 121 int wide_len = MultiByteToWideChar(CP_UTF8, 0, utf8, len, NULL, 0);
118 wchar_t* wide = 122 wchar_t* wide;
119 reinterpret_cast<wchar_t*>(malloc((wide_len) * sizeof(wchar_t))); 123 wide =
124 reinterpret_cast<wchar_t*>(Dart_ScopeAllocate(wide_len * sizeof(*wide)));
120 MultiByteToWideChar(CP_UTF8, 0, utf8, len, wide, wide_len); 125 MultiByteToWideChar(CP_UTF8, 0, utf8, len, wide, wide_len);
121 if (result_len != NULL) { 126 if (result_len != NULL) {
122 *result_len = wide_len; 127 *result_len = wide_len;
123 } 128 }
124 return wide; 129 return wide;
125 } 130 }
126 131
132
127 const char* StringUtils::Utf8ToConsoleString( 133 const char* StringUtils::Utf8ToConsoleString(
128 const char* utf8, intptr_t len, intptr_t* result_len) { 134 const char* utf8, intptr_t len, intptr_t* result_len) {
129 return const_cast<const char*>( 135 return const_cast<const char*>(
130 StringUtils::Utf8ToConsoleString( 136 StringUtils::Utf8ToConsoleString(
131 const_cast<char*>(utf8), len, result_len)); 137 const_cast<char*>(utf8), len, result_len));
132 } 138 }
133 139
140
134 const char* StringUtils::ConsoleStringToUtf8( 141 const char* StringUtils::ConsoleStringToUtf8(
135 const char* str, intptr_t len, intptr_t* result_len) { 142 const char* str, intptr_t len, intptr_t* result_len) {
136 return const_cast<const char*>( 143 return const_cast<const char*>(
137 StringUtils::ConsoleStringToUtf8( 144 StringUtils::ConsoleStringToUtf8(
138 const_cast<char*>(str), len, result_len)); 145 const_cast<char*>(str), len, result_len));
139 } 146 }
140 147
148
141 const char* StringUtilsWin::WideToUtf8( 149 const char* StringUtilsWin::WideToUtf8(
142 const wchar_t* wide, intptr_t len, intptr_t* result_len) { 150 const wchar_t* wide, intptr_t len, intptr_t* result_len) {
143 return const_cast<const char*>( 151 return const_cast<const char*>(
144 StringUtilsWin::WideToUtf8(const_cast<wchar_t*>(wide), len, result_len)); 152 StringUtilsWin::WideToUtf8(const_cast<wchar_t*>(wide), len, result_len));
145 } 153 }
146 154
155
147 const wchar_t* StringUtilsWin::Utf8ToWide( 156 const wchar_t* StringUtilsWin::Utf8ToWide(
148 const char* utf8, intptr_t len, intptr_t* result_len) { 157 const char* utf8, intptr_t len, intptr_t* result_len) {
149 return const_cast<const wchar_t*>( 158 return const_cast<const wchar_t*>(
150 StringUtilsWin::Utf8ToWide(const_cast<char*>(utf8), len, result_len)); 159 StringUtilsWin::Utf8ToWide(const_cast<char*>(utf8), len, result_len));
151 } 160 }
152 161
162
153 bool ShellUtils::GetUtf8Argv(int argc, char** argv) { 163 bool ShellUtils::GetUtf8Argv(int argc, char** argv) {
154 wchar_t* command_line = GetCommandLineW(); 164 wchar_t* command_line = GetCommandLineW();
155 int unicode_argc; 165 int unicode_argc;
156 wchar_t** unicode_argv = CommandLineToArgvW(command_line, &unicode_argc); 166 wchar_t** unicode_argv = CommandLineToArgvW(command_line, &unicode_argc);
157 if (unicode_argv == NULL) return false; 167 if (unicode_argv == NULL) {
168 return false;
169 }
158 // The argc passed to main should have the same argc as we get here. 170 // The argc passed to main should have the same argc as we get here.
159 ASSERT(argc == unicode_argc); 171 ASSERT(argc == unicode_argc);
160 if (argc < unicode_argc) { 172 if (argc < unicode_argc) {
161 unicode_argc = argc; 173 unicode_argc = argc;
162 } 174 }
163 for (int i = 0; i < unicode_argc; i++) { 175 for (int i = 0; i < unicode_argc; i++) {
164 wchar_t* arg = unicode_argv[i]; 176 wchar_t* arg = unicode_argv[i];
165 argv[i] = StringUtilsWin::WideToUtf8(arg); 177 int arg_len =
178 WideCharToMultiByte(CP_UTF8, 0, arg, -1, NULL, 0, NULL, NULL);
179 char* utf8_arg = reinterpret_cast<char*>(malloc(arg_len));
180 WideCharToMultiByte(CP_UTF8, 0, arg, -1, utf8_arg, arg_len, NULL, NULL);
181 argv[i] = utf8_arg;
166 } 182 }
167 LocalFree(unicode_argv); 183 LocalFree(unicode_argv);
168 return true; 184 return true;
169 } 185 }
170 186
187
171 static int64_t GetCurrentTimeMicros() { 188 static int64_t GetCurrentTimeMicros() {
172 static const int64_t kTimeEpoc = 116444736000000000LL; 189 static const int64_t kTimeEpoc = 116444736000000000LL;
173 static const int64_t kTimeScaler = 10; // 100 ns to us. 190 static const int64_t kTimeScaler = 10; // 100 ns to us.
174 191
175 // Although win32 uses 64-bit integers for representing timestamps, 192 // Although win32 uses 64-bit integers for representing timestamps,
176 // these are packed into a FILETIME structure. The FILETIME 193 // these are packed into a FILETIME structure. The FILETIME
177 // structure is just a struct representing a 64-bit integer. The 194 // structure is just a struct representing a 64-bit integer. The
178 // TimeStamp union allows access to both a FILETIME and an integer 195 // TimeStamp union allows access to both a FILETIME and an integer
179 // representation of the timestamp. The Windows timestamp is in 196 // representation of the timestamp. The Windows timestamp is in
180 // 100-nanosecond intervals since January 1, 1601. 197 // 100-nanosecond intervals since January 1, 1601.
181 union TimeStamp { 198 union TimeStamp {
182 FILETIME ft_; 199 FILETIME ft_;
183 int64_t t_; 200 int64_t t_;
184 }; 201 };
185 TimeStamp time; 202 TimeStamp time;
186 GetSystemTimeAsFileTime(&time.ft_); 203 GetSystemTimeAsFileTime(&time.ft_);
187 return (time.t_ - kTimeEpoc) / kTimeScaler; 204 return (time.t_ - kTimeEpoc) / kTimeScaler;
188 } 205 }
189 206
207
190 static int64_t qpc_ticks_per_second = 0; 208 static int64_t qpc_ticks_per_second = 0;
191 209
192 void TimerUtils::InitOnce() { 210 void TimerUtils::InitOnce() {
193 LARGE_INTEGER ticks_per_sec; 211 LARGE_INTEGER ticks_per_sec;
194 if (!QueryPerformanceFrequency(&ticks_per_sec)) { 212 if (!QueryPerformanceFrequency(&ticks_per_sec)) {
195 qpc_ticks_per_second = 0; 213 qpc_ticks_per_second = 0;
196 } else { 214 } else {
197 qpc_ticks_per_second = static_cast<int64_t>(ticks_per_sec.QuadPart); 215 qpc_ticks_per_second = static_cast<int64_t>(ticks_per_sec.QuadPart);
198 } 216 }
199 } 217 }
200 218
219
201 int64_t TimerUtils::GetCurrentMonotonicMillis() { 220 int64_t TimerUtils::GetCurrentMonotonicMillis() {
202 return GetCurrentMonotonicMicros() / 1000; 221 return GetCurrentMonotonicMicros() / 1000;
203 } 222 }
204 223
224
205 int64_t TimerUtils::GetCurrentMonotonicMicros() { 225 int64_t TimerUtils::GetCurrentMonotonicMicros() {
206 if (qpc_ticks_per_second == 0) { 226 if (qpc_ticks_per_second == 0) {
207 // QueryPerformanceCounter not supported, fallback. 227 // QueryPerformanceCounter not supported, fallback.
208 return GetCurrentTimeMicros(); 228 return GetCurrentTimeMicros();
209 } 229 }
210 // Grab performance counter value. 230 // Grab performance counter value.
211 LARGE_INTEGER now; 231 LARGE_INTEGER now;
212 QueryPerformanceCounter(&now); 232 QueryPerformanceCounter(&now);
213 int64_t qpc_value = static_cast<int64_t>(now.QuadPart); 233 int64_t qpc_value = static_cast<int64_t>(now.QuadPart);
214 // Convert to microseconds. 234 // Convert to microseconds.
215 int64_t seconds = qpc_value / qpc_ticks_per_second; 235 int64_t seconds = qpc_value / qpc_ticks_per_second;
216 int64_t leftover_ticks = qpc_value - (seconds * qpc_ticks_per_second); 236 int64_t leftover_ticks = qpc_value - (seconds * qpc_ticks_per_second);
217 int64_t result = seconds * kMicrosecondsPerSecond; 237 int64_t result = seconds * kMicrosecondsPerSecond;
218 result += ((leftover_ticks * kMicrosecondsPerSecond) / qpc_ticks_per_second); 238 result += ((leftover_ticks * kMicrosecondsPerSecond) / qpc_ticks_per_second);
219 return result; 239 return result;
220 } 240 }
221 241
242
222 void TimerUtils::Sleep(int64_t millis) { 243 void TimerUtils::Sleep(int64_t millis) {
223 ::Sleep(millis); 244 ::Sleep(millis);
224 } 245 }
225 246
226 } // namespace bin 247 } // namespace bin
227 } // namespace dart 248 } // namespace dart
228 249
229 #endif // defined(TARGET_OS_WINDOWS) 250 #endif // defined(TARGET_OS_WINDOWS)
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