Files
sdk/runtime/bin/utils_linux.cc
T
Ryan Macnak 9387fead15 Use a monotonic clock in the implementation of Timer.
Ask the embedder for the current time, since it is the embedder who later compares the deadline with current time when deciding when to send a wake up message.

BUG=http://dartbug.com/25055
BUG=http://dartbug.com/25216
R=iposva@google.com, zra@google.com

Review URL: https://codereview.chromium.org/1519563003 .
2015-12-11 12:39:56 -08:00

114 lines
2.8 KiB
C++

// Copyright (c) 2012, 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 "platform/globals.h"
#if defined(TARGET_OS_LINUX)
#include <errno.h> // NOLINT
#include <netdb.h> // NOLINT
#include <sys/time.h> // NOLINT
#include <time.h> // NOLINT
#include "bin/utils.h"
#include "platform/assert.h"
#include "platform/utils.h"
namespace dart {
namespace bin {
OSError::OSError() : sub_system_(kSystem), code_(0), message_(NULL) {
set_sub_system(kSystem);
set_code(errno);
const int kBufferSize = 1024;
char error_buf[kBufferSize];
SetMessage(Utils::StrError(errno, error_buf, kBufferSize));
}
void OSError::SetCodeAndMessage(SubSystem sub_system, int code) {
set_sub_system(sub_system);
set_code(code);
if (sub_system == kSystem) {
const int kBufferSize = 1024;
char error_buf[kBufferSize];
SetMessage(Utils::StrError(code, error_buf, kBufferSize));
} else if (sub_system == kGetAddressInfo) {
SetMessage(gai_strerror(code));
} else {
UNREACHABLE();
}
}
const char* StringUtils::ConsoleStringToUtf8(
const char* str, intptr_t len, intptr_t* result_len) {
UNIMPLEMENTED();
return NULL;
}
const char* StringUtils::Utf8ToConsoleString(
const char* utf8, intptr_t len, intptr_t* result_len) {
UNIMPLEMENTED();
return NULL;
}
char* StringUtils::ConsoleStringToUtf8(
char* str, intptr_t len, intptr_t* result_len) {
UNIMPLEMENTED();
return NULL;
}
char* StringUtils::Utf8ToConsoleString(
char* utf8, intptr_t len, intptr_t* result_len) {
UNIMPLEMENTED();
return NULL;
}
bool ShellUtils::GetUtf8Argv(int argc, char** argv) {
return false;
}
int64_t TimerUtils::GetCurrentMonotonicMillis() {
return GetCurrentMonotonicMicros() / 1000;
}
int64_t TimerUtils::GetCurrentMonotonicMicros() {
struct timespec ts;
if (clock_gettime(CLOCK_MONOTONIC, &ts) != 0) {
UNREACHABLE();
return 0;
}
// Convert to microseconds.
int64_t result = ts.tv_sec;
result *= kMicrosecondsPerSecond;
result += (ts.tv_nsec / kNanosecondsPerMicrosecond);
return result;
}
void TimerUtils::Sleep(int64_t millis) {
struct timespec req; // requested.
struct timespec rem; // remainder.
int64_t micros = millis * kMicrosecondsPerMillisecond;
int64_t seconds = micros / kMicrosecondsPerSecond;
micros = micros - seconds * kMicrosecondsPerSecond;
int64_t nanos = micros * kNanosecondsPerMicrosecond;
req.tv_sec = seconds;
req.tv_nsec = nanos;
while (true) {
int r = nanosleep(&req, &rem);
if (r == 0) {
break;
}
// We should only ever see an interrupt error.
ASSERT(errno == EINTR);
// Copy remainder into requested and repeat.
req = rem;
}
}
} // namespace bin
} // namespace dart
#endif // defined(TARGET_OS_LINUX)