Files
sdk/runtime/bin/eventhandler_linux.cc
T
dgrove@google.com 4c0f559d23 Initial checkin.
git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@15 260f80e4-7a28-3924-810f-c04153c831b5
2011-10-05 05:20:07 +00:00

328 lines
9.0 KiB
C++

// Copyright (c) 2011, 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 <errno.h>
#include <poll.h>
#include <pthread.h>
#include <stdio.h>
#include <string.h>
#include <sys/time.h>
#include <unistd.h>
#include "bin/eventhandler.h"
#include "bin/fdutils.h"
int64_t GetCurrentTimeMilliseconds() {
struct timeval tv;
if (gettimeofday(&tv, NULL) < 0) {
UNREACHABLE();
return 0;
}
return ((static_cast<int64_t>(tv.tv_sec) * 1000000) + tv.tv_usec) / 1000;
}
static const int kInitialPortMapSize = 128;
static const int kPortMapGrowingFactor = 2;
static const int kInterruptMessageSize = sizeof(InterruptMessage);
static const int kInfinityTimeout = -1;
static const int kTimerId = -1;
EventHandlerImplementation::EventHandlerImplementation() {
intptr_t result;
port_map_entries_ = 0;
port_map_size_ = kInitialPortMapSize;
port_map_ = reinterpret_cast<PortData*>(calloc(port_map_size_,
sizeof(PortData)));
ASSERT(port_map_ != NULL);
result = pipe(interrupt_fds_);
if (result != 0) {
FATAL("Pipe creation failed");
}
FDUtils::SetNonBlocking(interrupt_fds_[0]);
FDUtils::SetNonBlocking(interrupt_fds_[1]);
timeout_ = kInfinityTimeout;
timeout_port_ = 0;
}
EventHandlerImplementation::~EventHandlerImplementation() {
free(port_map_);
close(interrupt_fds_[0]);
close(interrupt_fds_[1]);
}
// TODO(hpayer): Use hash table instead of array.
void EventHandlerImplementation::SetPort(intptr_t fd,
Dart_Port dart_port,
intptr_t mask) {
assert(fd >= 0);
if (fd >= port_map_size_) {
intptr_t new_port_map_size = port_map_size_;
do {
new_port_map_size = new_port_map_size * kPortMapGrowingFactor;
} while (fd >= new_port_map_size);
size_t new_port_map_bytes = new_port_map_size * sizeof(PortData);
port_map_ = reinterpret_cast<PortData*>(realloc(port_map_,
new_port_map_bytes));
ASSERT(port_map_ != NULL);
size_t port_map_bytes = port_map_size_ * sizeof(PortData);
memset(port_map_ + port_map_bytes,
0,
new_port_map_bytes - port_map_bytes);
port_map_size_ = new_port_map_size;
}
/*
* Only change the port map entries count if SetPort changes
* the port map state.
*/
if (dart_port == 0 && PortFor(fd) != 0) {
port_map_entries_--;
} else if (dart_port != 0 && PortFor(fd) == 0) {
port_map_entries_++;
}
port_map_[fd].dart_port = dart_port;
port_map_[fd].mask = mask;
}
Dart_Port EventHandlerImplementation::PortFor(intptr_t fd) {
return port_map_[fd].dart_port;
}
void EventHandlerImplementation::RegisterFdWakeup(intptr_t id,
Dart_Port dart_port,
intptr_t data) {
WakeupHandler(id, dart_port, data);
}
void EventHandlerImplementation::CloseFd(intptr_t id) {
SetPort(id, 0, 0);
close(id);
}
void EventHandlerImplementation::UnregisterFdWakeup(intptr_t id) {
WakeupHandler(id, 0, 0);
}
void EventHandlerImplementation::UnregisterFd(intptr_t id) {
SetPort(id, 0, 0);
}
void EventHandlerImplementation::WakeupHandler(intptr_t id,
Dart_Port dart_port,
int64_t data) {
InterruptMessage msg;
msg.id = id;
msg.dart_port = dart_port;
msg.data = data;
intptr_t result =
write(interrupt_fds_[1], &msg, kInterruptMessageSize);
if (result != kInterruptMessageSize) {
perror("Interrupt message failure");
}
}
void EventHandlerImplementation::SetPollEvents(struct pollfd* pollfds,
intptr_t mask) {
/*
* We do not set POLLERR and POLLHUP explicitly since they are triggered
* anyway.
*/
pollfds->events |= POLLRDHUP;
if ((mask & (1 << kInEvent)) != 0) {
pollfds->events |= POLLIN;
}
if ((mask & (1 << kOutEvent)) != 0) {
pollfds->events |= POLLOUT;
}
}
struct pollfd* EventHandlerImplementation::GetPollFds(intptr_t* pollfds_size) {
struct pollfd* pollfds;
intptr_t numPollfds = 1 + port_map_entries_;
pollfds = reinterpret_cast<struct pollfd*>(calloc(sizeof(struct pollfd),
numPollfds));
pollfds[0].fd = interrupt_fds_[0];
pollfds[0].events |= POLLIN;
// TODO(hpayer): optimize the following iteration over the hash map
int j = 1;
for (int i = 0; i < port_map_size_; i++) {
if (port_map_[i].dart_port != 0) {
// Fd is added to the poll set.
pollfds[j].fd = i;
SetPollEvents(&pollfds[j], port_map_[i].mask);
j++;
}
}
*pollfds_size = numPollfds;
return pollfds;
}
bool EventHandlerImplementation::GetInterruptMessage(InterruptMessage* msg) {
int total_read = 0;
int bytes_read = read(interrupt_fds_[0], msg, kInterruptMessageSize);
if (bytes_read < 0) {
return false;
}
total_read = bytes_read;
while (total_read < kInterruptMessageSize) {
bytes_read = read(interrupt_fds_[0],
msg + total_read,
kInterruptMessageSize - total_read);
if (bytes_read > 0) {
total_read = total_read + bytes_read;
}
}
return (total_read == kInterruptMessageSize) ? true : false;
}
void EventHandlerImplementation::HandleInterruptFd() {
InterruptMessage msg;
while (GetInterruptMessage(&msg)) {
if (msg.id == kTimerId) {
timeout_ = msg.data;
timeout_port_ = msg.dart_port;
} else if ((msg.data & (1 << kCloseCommand)) != 0) {
/*
* A close event happened in dart, we have to explicitly unregister
* the fd and close the fd.
*/
CloseFd(msg.id);
} else {
SetPort(msg.id, msg.dart_port, msg.data);
}
}
}
intptr_t EventHandlerImplementation::GetPollEvents(struct pollfd* pollfd) {
intptr_t event_mask = 0;
/*
* We prioritize the events in the following order.
*/
if ((pollfd->revents & POLLIN) != 0) {
if (FDUtils::AvailableBytes(pollfd->fd) != 0) {
event_mask = (1 << kInEvent);
} else if (((pollfd->revents & POLLHUP) != 0) ||
((pollfd->revents & POLLRDHUP) != 0)) {
event_mask = (1 << kCloseEvent);
} else if ((pollfd->revents & POLLERR) != 0) {
event_mask = (1 << kErrorEvent);
} else {
/*
* Accept event.
*/
event_mask = (1 << kInEvent);
}
}
if ((pollfd->revents & POLLOUT) != 0) {
event_mask |= (1 << kOutEvent);
}
return event_mask;
}
void EventHandlerImplementation::HandleEvents(struct pollfd* pollfds,
int pollfds_size,
int result_size) {
if ((pollfds[0].revents & POLLIN) != 0) {
result_size -= 1;
}
if (result_size > 0) {
for (int i = 1; i < pollfds_size; i++) {
/*
* The fd is unregistered. It gets re-registered when the request
* was handled by dart.
*/
intptr_t event_mask = GetPollEvents(&pollfds[i]);
if (event_mask != 0) {
intptr_t fd = pollfds[i].fd;
Dart_Port port = PortFor(fd);
assert(port != 0);
UnregisterFd(fd);
Dart_PostIntArray(port, 1, &event_mask);
}
}
}
HandleInterruptFd();
}
intptr_t EventHandlerImplementation::GetTimeout() {
if (timeout_ == kInfinityTimeout) {
return kInfinityTimeout;
}
intptr_t millis = timeout_ - GetCurrentTimeMilliseconds();
return (millis < 0) ? 0 : millis;
}
void EventHandlerImplementation::HandleTimeout() {
if (timeout_ != kInfinityTimeout) {
intptr_t millis = timeout_ - GetCurrentTimeMilliseconds();
if (millis <= 0) {
Dart_PostIntArray(timeout_port_, 0, NULL);
timeout_ = kInfinityTimeout;
timeout_port_ = 0;
}
}
}
void* EventHandlerImplementation::Poll(void* args) {
intptr_t pollfds_size;
struct pollfd* pollfds;
EventHandlerImplementation* handler =
reinterpret_cast<EventHandlerImplementation*>(args);
while (1) {
pollfds = handler->GetPollFds(&pollfds_size);
intptr_t millis = handler->GetTimeout();
intptr_t result = poll(pollfds, pollfds_size, millis);
if (result == -1) {
perror("Poll failed");
} else {
handler->HandleTimeout();
handler->HandleEvents(pollfds, pollfds_size, result);
}
free(pollfds);
}
return NULL;
}
void EventHandlerImplementation::StartEventHandler() {
pthread_t handler_thread;
int result = pthread_create(&handler_thread,
NULL,
&EventHandlerImplementation::Poll,
this);
if (result != 0) {
FATAL("Create start event handler thread");
}
}
void EventHandlerImplementation::SendData(intptr_t id,
Dart_Port dart_port,
intptr_t data) {
RegisterFdWakeup(id, dart_port, data);
}