be11752b14
BUG= R=zra@google.com Review URL: https://codereview.chromium.org/2458703004 .
331 lines
10 KiB
C++
331 lines
10 KiB
C++
// Copyright (c) 2016, 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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#if !defined(DART_IO_DISABLED)
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#include "platform/globals.h"
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#if defined(TARGET_OS_FUCHSIA)
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#include "bin/eventhandler.h"
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#include "bin/eventhandler_fuchsia.h"
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#include <magenta/status.h>
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#include <magenta/syscalls.h>
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#include "bin/log.h"
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#include "bin/thread.h"
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#include "bin/utils.h"
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#if defined(EVENTHANDLER_LOGGING)
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#define LOG_ERR(msg, ...) Log::PrintErr(msg, ##__VA_ARGS__)
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#define LOG_INFO(msg, ...) Log::Print(msg, ##__VA_ARGS__)
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#else
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#define LOG_ERR(msg, ...)
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#define LOG_INFO(msg, ...)
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#endif // defined(EVENTHANDLER_LOGGING)
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namespace dart {
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namespace bin {
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MagentaWaitManyInfo::MagentaWaitManyInfo()
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: capacity_(kInitialCapacity),
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size_(0) {
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descriptor_infos_ = static_cast<DescriptorInfo**>(
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malloc(kInitialCapacity * sizeof(*descriptor_infos_)));
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if (descriptor_infos_ == NULL) {
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FATAL("Failed to allocate descriptor_infos array");
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}
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handles_ = static_cast<mx_handle_t*>(
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malloc(kInitialCapacity * sizeof(*handles_)));
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if (handles_ == NULL) {
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FATAL("Failed to allocate handles array");
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}
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signals_ = static_cast<mx_signals_t*>(
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malloc(kInitialCapacity * sizeof(*signals_)));
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if (signals_ == NULL) {
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FATAL("Failed to allocate signals array");
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}
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signals_states_ = static_cast<mx_signals_state_t*>(
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malloc(kInitialCapacity * sizeof(*signals_states_)));
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if (signals_states_ == NULL) {
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FATAL("Failed to allocate signals_states array");
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}
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}
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MagentaWaitManyInfo::~MagentaWaitManyInfo() {
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free(descriptor_infos_);
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free(handles_);
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free(signals_);
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free(signals_states_);
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}
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void MagentaWaitManyInfo::AddHandle(mx_handle_t handle,
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mx_signals_t signals,
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DescriptorInfo* di) {
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#if defined(DEBUG)
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// Check that the handle is not already in the list.
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for (intptr_t i = 0; i < size_; i++) {
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if (handles_[i] == handle) {
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FATAL("The handle is already in the list!");
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}
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}
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#endif
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intptr_t new_size = size_ + 1;
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GrowArraysIfNeeded(new_size);
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descriptor_infos_[size_] = di;
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handles_[size_] = handle;
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signals_[size_] = signals;
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signals_states_[size_].satisfied = MX_SIGNAL_NONE;
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signals_states_[size_].satisfiable = MX_SIGNAL_NONE;
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size_ = new_size;
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LOG_INFO("AddHandle(%ld, %ld, %p), size = %ld\n", handle, signals, di, size_);
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}
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void MagentaWaitManyInfo::RemoveHandle(mx_handle_t handle) {
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intptr_t idx;
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for (idx = 1; idx < size_; idx++) {
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if (handle == handles_[idx]) {
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break;
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}
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}
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if (idx == size_) {
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FATAL("Handle is not in the list!");
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}
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if (idx != (size_ - 1)) {
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descriptor_infos_[idx] = descriptor_infos_[size_ - 1];
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handles_[idx] = handles_[size_ - 1];
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signals_[idx] = signals_[size_ - 1];
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signals_states_[idx] = signals_states_[size_ - 1];
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}
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descriptor_infos_[size_ - 1] = NULL;
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handles_[size_ - 1] = MX_HANDLE_INVALID;
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signals_[size_ - 1] = MX_SIGNAL_NONE;
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signals_states_[size_ - 1].satisfied = MX_SIGNAL_NONE;
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signals_states_[size_ - 1].satisfiable = MX_SIGNAL_NONE;
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size_ = size_ - 1;
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LOG_INFO("RemoveHandle(%ld), size = %ld\n", handle, size_);
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}
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void MagentaWaitManyInfo::GrowArraysIfNeeded(intptr_t desired_size) {
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if (desired_size < capacity_) {
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return;
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}
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intptr_t new_capacity = desired_size + (desired_size >> 1);
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descriptor_infos_ = static_cast<DescriptorInfo**>(
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realloc(descriptor_infos_, new_capacity * sizeof(*descriptor_infos_)));
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if (descriptor_infos_ == NULL) {
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FATAL("Failed to grow descriptor_infos array");
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}
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handles_ = static_cast<mx_handle_t*>(
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realloc(handles_, new_capacity * sizeof(*handles_)));
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if (handles_ == NULL) {
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FATAL("Failed to grow handles array");
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}
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signals_ = static_cast<mx_signals_t*>(
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realloc(signals_, new_capacity * sizeof(*signals_)));
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if (signals_ == NULL) {
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FATAL("Failed to grow signals array");
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}
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signals_states_ = static_cast<mx_signals_state_t*>(
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realloc(signals_states_, new_capacity * sizeof(*signals_states_)));
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if (signals_states_ == NULL) {
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FATAL("Failed to grow signals_states array");
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}
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capacity_ = new_capacity;
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LOG_INFO("GrowArraysIfNeeded(%ld), capacity = %ld\n",
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desired_size, capacity_);
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}
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EventHandlerImplementation::EventHandlerImplementation() {
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mx_status_t status = mx_channel_create(0, &interrupt_handles_[0],
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&interrupt_handles_[1]);
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if (status != NO_ERROR) {
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FATAL1("mx_channel_create failed: %s\n", mx_status_get_string(status));
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}
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shutdown_ = false;
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info_.AddHandle(interrupt_handles_[0],
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MX_SIGNAL_READABLE | MX_SIGNAL_PEER_CLOSED,
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NULL);
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LOG_INFO("EventHandlerImplementation initialized\n");
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}
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EventHandlerImplementation::~EventHandlerImplementation() {
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mx_status_t status = mx_handle_close(interrupt_handles_[0]);
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if (status != NO_ERROR) {
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FATAL1("mx_handle_close failed: %s\n", mx_status_get_string(status));
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}
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status = mx_handle_close(interrupt_handles_[1]);
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if (status != NO_ERROR) {
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FATAL1("mx_handle_close failed: %s\n", mx_status_get_string(status));
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}
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LOG_INFO("EventHandlerImplementation destroyed\n");
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}
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void EventHandlerImplementation::WakeupHandler(intptr_t id,
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Dart_Port dart_port,
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int64_t data) {
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InterruptMessage msg;
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msg.id = id;
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msg.dart_port = dart_port;
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msg.data = data;
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mx_status_t status =
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mx_channel_write(interrupt_handles_[1], 0, &msg, sizeof(msg), NULL, 0);
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if (status != NO_ERROR) {
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FATAL1("mx_channel_write failed: %s\n", mx_status_get_string(status));
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}
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LOG_INFO("WakeupHandler(%ld, %ld, %lld)\n", id, dart_port, data);
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}
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void EventHandlerImplementation::HandleInterruptFd() {
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LOG_INFO("HandleInterruptFd entry\n");
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InterruptMessage msg;
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uint32_t bytes = kInterruptMessageSize;
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mx_status_t status;
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while (true) {
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status = mx_channel_read(
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interrupt_handles_[0], 0, &msg, bytes, &bytes, NULL, 0, NULL);
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if (status != NO_ERROR) {
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break;
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}
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ASSERT(bytes == kInterruptMessageSize);
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if (msg.id == kTimerId) {
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LOG_INFO("HandleInterruptFd read timer update\n");
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timeout_queue_.UpdateTimeout(msg.dart_port, msg.data);
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} else if (msg.id == kShutdownId) {
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LOG_INFO("HandleInterruptFd read shutdown\n");
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shutdown_ = true;
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} else {
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// TODO(zra): Handle commands to add and remove handles from the
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// MagentaWaitManyInfo.
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UNIMPLEMENTED();
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}
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}
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// status == ERR_SHOULD_WAIT when we try to read and there are no messages
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// available, so it is an error if we get here and status != ERR_SHOULD_WAIT.
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if (status != ERR_SHOULD_WAIT) {
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FATAL1("mx_channel_read failed: %s\n", mx_status_get_string(status));
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}
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LOG_INFO("HandleInterruptFd exit\n");
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}
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void EventHandlerImplementation::HandleEvents() {
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LOG_INFO("HandleEvents entry\n");
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for (intptr_t i = 1; i < info_.size(); i++) {
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if (info_.signals_states()[i].satisfied != MX_SIGNAL_NONE) {
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// Only the control handle has no descriptor info.
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ASSERT(info_.descriptor_infos()[i] != NULL);
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ASSERT(info_.handles()[i] != interrupt_handles_[0]);
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// TODO(zra): Handle events on other handles. At the moment we are
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// only interrupted when there is a message on interrupt_handles_[0].
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UNIMPLEMENTED();
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}
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}
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if ((info_.signals_states()[0].satisfied & MX_SIGNAL_PEER_CLOSED) != 0) {
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FATAL("EventHandlerImplementation::Poll: Unexpected peer closed\n");
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}
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if ((info_.signals_states()[0].satisfied & MX_SIGNAL_READABLE) != 0) {
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LOG_INFO("HandleEvents interrupt_handles_[0] readable\n");
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HandleInterruptFd();
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} else {
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LOG_INFO("HandleEvents interrupt_handles_[0] not readable\n");
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}
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}
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int64_t EventHandlerImplementation::GetTimeout() const {
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if (!timeout_queue_.HasTimeout()) {
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return kInfinityTimeout;
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}
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int64_t millis = timeout_queue_.CurrentTimeout() -
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TimerUtils::GetCurrentMonotonicMillis();
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return (millis < 0) ? 0 : millis;
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}
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void EventHandlerImplementation::HandleTimeout() {
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if (timeout_queue_.HasTimeout()) {
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int64_t millis = timeout_queue_.CurrentTimeout() -
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TimerUtils::GetCurrentMonotonicMillis();
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if (millis <= 0) {
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DartUtils::PostNull(timeout_queue_.CurrentPort());
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timeout_queue_.RemoveCurrent();
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}
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}
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}
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void EventHandlerImplementation::Poll(uword args) {
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EventHandler* handler = reinterpret_cast<EventHandler*>(args);
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EventHandlerImplementation* handler_impl = &handler->delegate_;
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ASSERT(handler_impl != NULL);
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while (!handler_impl->shutdown_) {
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int64_t millis = handler_impl->GetTimeout();
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ASSERT((millis == kInfinityTimeout) || (millis >= 0));
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mx_time_t timeout =
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millis * kMicrosecondsPerMillisecond * kNanosecondsPerMicrosecond;
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const MagentaWaitManyInfo& info = handler_impl->info();
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uint32_t result_index;
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LOG_INFO("mx_handle_wait_many(%ld, %p, %p, %lld, %p, %p)\n",
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info.size(), info.handles(), info.signals(), timeout, &result_index,
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info.signals_states());
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mx_status_t status = mx_handle_wait_many(
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info.size(),
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info.handles(),
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info.signals(),
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timeout,
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&result_index,
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info.signals_states());
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if ((status != NO_ERROR) && (status != ERR_TIMED_OUT)) {
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FATAL1("mx_handle_wait_many failed: %s\n", mx_status_get_string(status));
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} else {
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LOG_INFO("mx_handle_wait_many returned: %ld\n", status);
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handler_impl->HandleTimeout();
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handler_impl->HandleEvents();
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}
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}
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handler->NotifyShutdownDone();
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LOG_INFO("EventHandlerImplementation notifying about shutdown\n");
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}
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void EventHandlerImplementation::Start(EventHandler* handler) {
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int result = Thread::Start(&EventHandlerImplementation::Poll,
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reinterpret_cast<uword>(handler));
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if (result != 0) {
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FATAL1("Failed to start event handler thread %d", result);
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}
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}
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void EventHandlerImplementation::Shutdown() {
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SendData(kShutdownId, 0, 0);
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}
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void EventHandlerImplementation::SendData(intptr_t id,
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Dart_Port dart_port,
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int64_t data) {
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WakeupHandler(id, dart_port, data);
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}
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} // namespace bin
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} // namespace dart
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#endif // defined(TARGET_OS_FUCHSIA)
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#endif // !defined(DART_IO_DISABLED)
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