RTCDataChannel.cpp   [plain text]


/*
 * Copyright (C) 2012 Google Inc. All rights reserved.
 * Copyright (C) 2017 Apple Inc. All rights reserved.
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions
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 *     notice, this list of conditions and the following disclaimer.
 * 2.  Redistributions in binary form must reproduce the above copyright
 *     notice, this list of conditions and the following disclaimer in the
 *     documentation and/or other materials provided with the distribution.
 *
 * THIS SOFTWARE IS PROVIDED BY APPLE INC. AND ITS CONTRIBUTORS ``AS IS'' AND ANY
 * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
 * DISCLAIMED. IN NO EVENT SHALL APPLE INC. OR ITS CONTRIBUTORS BE LIABLE FOR ANY
 * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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#include "config.h"
#include "RTCDataChannel.h"

#if ENABLE(WEB_RTC)

#include "Blob.h"
#include "Event.h"
#include "EventNames.h"
#include "MessageEvent.h"
#include "RTCDataChannelHandler.h"
#include "ScriptExecutionContext.h"
#include <JavaScriptCore/ArrayBuffer.h>
#include <JavaScriptCore/ArrayBufferView.h>
#include <wtf/NeverDestroyed.h>

namespace WebCore {

static const AtomicString& blobKeyword()
{
    static NeverDestroyed<AtomicString> blob("blob", AtomicString::ConstructFromLiteral);
    return blob;
}

static const AtomicString& arraybufferKeyword()
{
    static NeverDestroyed<AtomicString> arraybuffer("arraybuffer", AtomicString::ConstructFromLiteral);
    return arraybuffer;
}

Ref<RTCDataChannel> RTCDataChannel::create(ScriptExecutionContext& context, std::unique_ptr<RTCDataChannelHandler>&& handler, String&& label, RTCDataChannelInit&& options)
{
    ASSERT(handler);
    auto channel = adoptRef(*new RTCDataChannel(context, WTFMove(handler), WTFMove(label), WTFMove(options)));
    channel->suspendIfNeeded();
    channel->m_handler->setClient(channel.get());
    channel->setPendingActivity(channel.ptr());
    return channel;
}

RTCDataChannel::RTCDataChannel(ScriptExecutionContext& context, std::unique_ptr<RTCDataChannelHandler>&& handler, String&& label, RTCDataChannelInit&& options)
    : ActiveDOMObject(&context)
    , m_handler(WTFMove(handler))
    , m_scheduledEventTimer(*this, &RTCDataChannel::scheduledEventTimerFired)
    , m_label(WTFMove(label))
    , m_options(WTFMove(options))
{
}

size_t RTCDataChannel::bufferedAmount() const
{
    // FIXME: We should compute our own bufferedAmount and not count on m_handler which is made null at closing time.
    if (m_stopped)
        return 0;
    return m_handler->bufferedAmount();
}

const AtomicString& RTCDataChannel::binaryType() const
{
    switch (m_binaryType) {
    case BinaryType::Blob:
        return blobKeyword();
    case BinaryType::ArrayBuffer:
        return arraybufferKeyword();
    }

    ASSERT_NOT_REACHED();
    return emptyAtom();
}

ExceptionOr<void> RTCDataChannel::setBinaryType(const AtomicString& binaryType)
{
    if (binaryType == blobKeyword())
        return Exception { NotSupportedError };
    if (binaryType == arraybufferKeyword()) {
        m_binaryType = BinaryType::ArrayBuffer;
        return { };
    }
    return Exception { TypeMismatchError };
}

ExceptionOr<void> RTCDataChannel::send(const String& data)
{
    if (m_readyState != RTCDataChannelState::Open)
        return Exception { InvalidStateError };

    if (!m_handler->sendStringData(data)) {
        // FIXME: Decide what the right exception here is.
        return Exception { SyntaxError };
    }

    return { };
}

ExceptionOr<void> RTCDataChannel::sendRawData(const char* data, size_t length)
{
    if (m_readyState != RTCDataChannelState::Open)
        return Exception { InvalidStateError };

    if (!length)
        return { };

    if (!m_handler->sendRawData(data, length)) {
        // FIXME: Decide what the right exception here is.
        return Exception { SyntaxError };
    }

    return { };
}


ExceptionOr<void> RTCDataChannel::send(ArrayBuffer& data)
{
    return sendRawData(static_cast<const char*>(data.data()), data.byteLength());
}

ExceptionOr<void> RTCDataChannel::send(ArrayBufferView& data)
{
    return sendRawData(static_cast<const char*>(data.baseAddress()), data.byteLength());
}

ExceptionOr<void> RTCDataChannel::send(Blob&)
{
    // FIXME: Implement.
    return Exception { NotSupportedError };
}

void RTCDataChannel::close()
{
    if (m_stopped)
        return;

    m_stopped = true;
    m_readyState = RTCDataChannelState::Closed;

    m_handler->close();
    m_handler = nullptr;
    unsetPendingActivity(this);
}

void RTCDataChannel::didChangeReadyState(RTCDataChannelState newState)
{
    if (m_stopped || m_readyState == RTCDataChannelState::Closed || m_readyState == newState)
        return;

    m_readyState = newState;

    switch (m_readyState) {
    case RTCDataChannelState::Open:
        scheduleDispatchEvent(Event::create(eventNames().openEvent, Event::CanBubble::No, Event::IsCancelable::No));
        break;
    case RTCDataChannelState::Closed:
        scheduleDispatchEvent(Event::create(eventNames().closeEvent, Event::CanBubble::No, Event::IsCancelable::No));
        break;
    default:
        break;
    }
}

void RTCDataChannel::didReceiveStringData(const String& text)
{
    if (m_stopped)
        return;

    scheduleDispatchEvent(MessageEvent::create(text));
}

void RTCDataChannel::didReceiveRawData(const char* data, size_t dataLength)
{
    if (m_stopped)
        return;

    if (m_binaryType == BinaryType::Blob) {
        // FIXME: Implement.
        return;
    }

    if (m_binaryType == BinaryType::ArrayBuffer) {
        scheduleDispatchEvent(MessageEvent::create(ArrayBuffer::create(data, dataLength)));
        return;
    }
    ASSERT_NOT_REACHED();
}

void RTCDataChannel::didDetectError()
{
    if (m_stopped)
        return;

    scheduleDispatchEvent(Event::create(eventNames().errorEvent, Event::CanBubble::No, Event::IsCancelable::No));
}

void RTCDataChannel::bufferedAmountIsDecreasing(size_t amount)
{
    if (m_stopped)
        return;

    if (amount <= m_bufferedAmountLowThreshold)
        scheduleDispatchEvent(Event::create(eventNames().bufferedamountlowEvent, Event::CanBubble::No, Event::IsCancelable::No));
}

void RTCDataChannel::stop()
{
    close();
}

void RTCDataChannel::scheduleDispatchEvent(Ref<Event>&& event)
{
    m_scheduledEvents.append(WTFMove(event));

    if (!m_scheduledEventTimer.isActive())
        m_scheduledEventTimer.startOneShot(0_s);
}

void RTCDataChannel::scheduledEventTimerFired()
{
    if (m_stopped)
        return;

    Vector<Ref<Event>> events;
    events.swap(m_scheduledEvents);

    for (auto& event : events)
        dispatchEvent(event);
}

} // namespace WebCore

#endif // ENABLE(WEB_RTC)