Files
palemoon27/dom/cache/ReadStream.cpp
T
roytam1 56aad8a83e import change from rmottola/Arctic-Fox:
- Bug 1149987 - Part 2: Make ErrorResult unassignable; r=bzbarsky (32661559b)
- Bug 1149987 - Part 3: Give ErrorResult a move constructor and a move assignment operator; (27f4c6125)
- Bug 1149987 - Part 4: Do not attempt to delete ErrorResult::mMessage when deserializing the object from IPDL; r=bzbarsky (0f9dcc603)
- Bug 1110485 P0 Add an ErrorResult constructor that takes nsresult. (72a779666)
- Bug 1110485 P1 Refactor Cache IPC requests to use a separate actor. (a7e4c1959)
- Bug 1127914 - Part 1 - Duplicate keyed histograms for double submission. (78673277f)
- Bug 1127914 - Part 2 - Duplicate normal histograms for double submission. (55c302057)
- Bug 1127914 - Part 3 - Submit duplicate histogram data for 'non-classic' telemetry sessions. r=vladan (bb3e49c43)
- Bug 1120362 - Part 1 - Enable snapshotting and clearing subsession histograms. (14378a6e5)
- Bug 1120362 - Part 2 - Enable snapshotting and clearing keyed subsession histograms. r=vladan (c0e0bfb3e)
- partial apply of Bug 1119281 - Fix missing telemetry client id (ae0dc0194)
- Bug 1122047 - Part 1 - Sketch out Telemetry environment module. (0419391b0)
- Bug 1122047 - Part 2 - Make TelemetryPing shutdown properly on delayed initialization (0102cef09)
- Bug 1122061 - Give TelemetryPing a common API for sending pings. (999cb825d)
- Bug 1122061 - Move TelemetrySession tests out of test_telemetryPing.js. (2d5b61de1)
- Bug 1120362 - Part 3 - Reset subsession histograms on telemetry payload collections. r=vladan (0d3f04df1)
- Bug 1120362 - Part 4 - Start new telemetry subsessions on local midnight. r=vladan (93eb9ca21)
- Bug 1120363 - Break up Telemetry sessions on environment changes. (a7c8d70c7)
- Bug 1122052 - Remove duplicated data from TelemetrySession. (bb905d602)
- Bug 1122050 - Remove persona and experiment data from TelemetrySession. (40ca59a9e)
- Bug 1134268 - Part 1 - Fix and order Telemetry shutdown for TelemetryPing and TelemetrySession. r=yoric (30d0f0656)
- Bug 1134268 - Part 2 - Fixup TelemetryEnvironment shutdown if the module wasnt initialized. r=vladan (ec2875fea)
- Bug 1135076 - Missing histograms in childPayloads. r=vladan (9f317cf9d)
- Bug 1134279 - Make TelemetryPing and TelemetrySession code use the "FHR enabled" & "Telemetry enabled" prefs properly. r=vladan (4050d7f24)
- Bug 1128768: Part 1 - Modify IPC to allow retrieval of topmost routing id on the stack; (cd2e8a2f0)
- Bug 1129249 - Add a "restyle" feature to profiler and split the style label in Cleopatra based on the restyleSource, r=dholbert,mstange (b37df94d1)
- Bug 1150684: Remove XPCOM.h from IOInterposer.h (5b7e1cef3)
- Bug 1093934 - Create a XPCOM library that can be used to support standalone WebRTC. (9ec8a819f)
- Merge branch 'master' of https://github.com/rmottola/Arctic-Fox (d0f05eea4)
- Bug 1128768: Part 2,3,4 - Refactor hang annotation code; (f5086aba9) (with xpcom/threads/ fixes for my tele-removed tree)
- Bug 1128768: Part 5 - Update plugin code to retrieve SWF file for hang annotations; (774a47aec)
- Bug 1110485 P2 Remove 'P' prefix from non-protocol IPC types in Cache API. r=baku (ea29a10cf)
- Bug 1110485 P3 Move Fetch IPC PHeaderEntry type to Cache. Rename HeadesEntry. (9eba0aca0)
- Bug 1110485 P4 Keep Cache Actors alive during async operations. (eb75f2316)
- Bug 1110485 P5 Replace useless DBSchema class type with namespace. (159b902db)
- Bug 1110485 P6 Remove useless cache::FileUtils type (1bdf00fc3)
- Bug 1110485 P7 Rename DeleteCache() to DeleteCacheId() better distinguish it from CacheDelete(). (5199f9d6f)
- Bug 1110485 P8 Correctly set the Feature on the stream control child actor. (c8673cb13)
- Bug 1150691 Fix Cache API race with storage invalidation. (2723dff50)
- Bug 1151892 Refactor Cache Manager Context usage to be more sane and fix shutdown assert. r=ehsan (ea96381cf)
- Bug 1136331 - OdinMonkey: allow stdlib calls in heap expressions (2fc5e2bfd)
- Bug 1141439 - Exit with an error code instead of falling through the REMOTE_NOT_FOUND code path when the X-remote returns an explicit command line handler error. (afcf9b1aa)
- Bug 1135825: Add missing MOZ_OVERRIDE annotation in RTCIdentityProviderRegistrar.h (e8beec4e8)
- (Bug 1135138 is not merged due to broken build)
2019-07-25 21:33:11 +08:00

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/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
/* vim: set ts=8 sts=2 et sw=2 tw=80: */
/* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
#include "mozilla/dom/cache/ReadStream.h"
#include "mozilla/unused.h"
#include "mozilla/dom/cache/CacheStreamControlChild.h"
#include "mozilla/dom/cache/CacheStreamControlParent.h"
#include "mozilla/dom/cache/CacheTypes.h"
#include "mozilla/ipc/FileDescriptor.h"
#include "mozilla/ipc/InputStreamUtils.h"
#include "mozilla/SnappyUncompressInputStream.h"
#include "nsIAsyncInputStream.h"
#include "nsTArray.h"
namespace mozilla {
namespace dom {
namespace cache {
using mozilla::unused;
using mozilla::ipc::FileDescriptor;
// ----------------------------------------------------------------------------
// The inner stream class. This is where all of the real work is done. As
// an invariant Inner::Close() must be called before ~Inner(). This is
// guaranteed by our outer ReadStream class.
class ReadStream::Inner final : public ReadStream::Controllable
{
public:
Inner(StreamControl* aControl, const nsID& aId,
nsIInputStream* aStream);
void
Serialize(CacheReadStreamOrVoid* aReadStreamOut);
void
Serialize(CacheReadStream* aReadStreamOut);
// ReadStream::Controllable methods
virtual void
CloseStream() override;
virtual void
CloseStreamWithoutReporting() override;
virtual bool
MatchId(const nsID& aId) const override;
virtual bool
HasEverBeenRead() const override;
// Simulate nsIInputStream methods, but we don't actually inherit from it
NS_METHOD
Close();
NS_METHOD
Available(uint64_t *aNumAvailableOut);
NS_METHOD
Read(char *aBuf, uint32_t aCount, uint32_t *aNumReadOut);
NS_METHOD
ReadSegments(nsWriteSegmentFun aWriter, void *aClosure, uint32_t aCount,
uint32_t *aNumReadOut);
NS_METHOD
IsNonBlocking(bool *aNonBlockingOut);
private:
class NoteClosedRunnable;
class ForgetRunnable;
~Inner();
void
NoteClosed();
void
Forget();
void
NoteClosedOnOwningThread();
void
ForgetOnOwningThread();
// Weak ref to the stream control actor. The actor will always call either
// CloseStream() or CloseStreamWithoutReporting() before it's destroyed. The
// weak ref is cleared in the resulting NoteClosedOnOwningThread() or
// ForgetOnOwningThread() method call.
StreamControl* mControl;
const nsID mId;
nsCOMPtr<nsIInputStream> mStream;
nsCOMPtr<nsIInputStream> mSnappyStream;
nsCOMPtr<nsIThread> mOwningThread;
enum State
{
Open,
Closed,
NumStates
};
Atomic<State> mState;
Atomic<bool> mHasEverBeenRead;
NS_INLINE_DECL_THREADSAFE_REFCOUNTING(cache::ReadStream::Inner)
};
// ----------------------------------------------------------------------------
// Runnable to notify actors that the ReadStream has closed. This must
// be done on the thread associated with the PBackground actor. Must be
// cancelable to execute on Worker threads (which can occur when the
// ReadStream is constructed on a child process Worker thread).
class ReadStream::Inner::NoteClosedRunnable final : public nsCancelableRunnable
{
public:
explicit NoteClosedRunnable(ReadStream::Inner* aStream)
: mStream(aStream)
{ }
NS_IMETHOD Run()
{
mStream->NoteClosedOnOwningThread();
mStream = nullptr;
return NS_OK;
}
// Note, we must proceed with the Run() method since our actor will not
// clean itself up until we note that the stream is closed.
NS_IMETHOD Cancel()
{
Run();
return NS_OK;
}
private:
~NoteClosedRunnable() { }
nsRefPtr<ReadStream::Inner> mStream;
};
// ----------------------------------------------------------------------------
// Runnable to clear actors without reporting that the ReadStream has
// closed. Since this can trigger actor destruction, we need to do
// it on the thread associated with the PBackground actor. Must be
// cancelable to execute on Worker threads (which can occur when the
// ReadStream is constructed on a child process Worker thread).
class ReadStream::Inner::ForgetRunnable final : public nsCancelableRunnable
{
public:
explicit ForgetRunnable(ReadStream::Inner* aStream)
: mStream(aStream)
{ }
NS_IMETHOD Run()
{
mStream->ForgetOnOwningThread();
mStream = nullptr;
return NS_OK;
}
// Note, we must proceed with the Run() method so that we properly
// call RemoveListener on the actor.
NS_IMETHOD Cancel()
{
Run();
return NS_OK;
}
private:
~ForgetRunnable() { }
nsRefPtr<ReadStream::Inner> mStream;
};
// ----------------------------------------------------------------------------
ReadStream::Inner::Inner(StreamControl* aControl, const nsID& aId,
nsIInputStream* aStream)
: mControl(aControl)
, mId(aId)
, mStream(aStream)
, mSnappyStream(new SnappyUncompressInputStream(aStream))
, mOwningThread(NS_GetCurrentThread())
, mState(Open)
{
MOZ_ASSERT(mStream);
MOZ_ASSERT(mControl);
mControl->AddReadStream(this);
}
void
ReadStream::Inner::Serialize(CacheReadStreamOrVoid* aReadStreamOut)
{
MOZ_ASSERT(NS_GetCurrentThread() == mOwningThread);
MOZ_ASSERT(aReadStreamOut);
CacheReadStream stream;
Serialize(&stream);
*aReadStreamOut = stream;
}
void
ReadStream::Inner::Serialize(CacheReadStream* aReadStreamOut)
{
MOZ_ASSERT(NS_GetCurrentThread() == mOwningThread);
MOZ_ASSERT(aReadStreamOut);
MOZ_ASSERT(mState == Open);
MOZ_ASSERT(mControl);
// If we are sending a ReadStream, then we never want to set the
// pushStream actors at the same time.
aReadStreamOut->pushStreamChild() = nullptr;
aReadStreamOut->pushStreamParent() = nullptr;
aReadStreamOut->id() = mId;
mControl->SerializeControl(aReadStreamOut);
nsAutoTArray<FileDescriptor, 4> fds;
SerializeInputStream(mStream, aReadStreamOut->params(), fds);
mControl->SerializeFds(aReadStreamOut, fds);
// We're passing ownership across the IPC barrier with the control, so
// do not signal that the stream is closed here.
Forget();
}
void
ReadStream::Inner::CloseStream()
{
MOZ_ASSERT(NS_GetCurrentThread() == mOwningThread);
Close();
}
void
ReadStream::Inner::CloseStreamWithoutReporting()
{
MOZ_ASSERT(NS_GetCurrentThread() == mOwningThread);
Forget();
}
bool
ReadStream::Inner::MatchId(const nsID& aId) const
{
MOZ_ASSERT(NS_GetCurrentThread() == mOwningThread);
return mId.Equals(aId);
}
bool
ReadStream::Inner::HasEverBeenRead() const
{
MOZ_ASSERT(NS_GetCurrentThread() == mOwningThread);
return mHasEverBeenRead;
}
NS_IMETHODIMP
ReadStream::Inner::Close()
{
// stream ops can happen on any thread
nsresult rv = mStream->Close();
NoteClosed();
return rv;
}
NS_IMETHODIMP
ReadStream::Inner::Available(uint64_t* aNumAvailableOut)
{
// stream ops can happen on any thread
nsresult rv = mSnappyStream->Available(aNumAvailableOut);
if (NS_FAILED(rv)) {
Close();
}
return rv;
}
NS_IMETHODIMP
ReadStream::Inner::Read(char* aBuf, uint32_t aCount, uint32_t* aNumReadOut)
{
// stream ops can happen on any thread
MOZ_ASSERT(aNumReadOut);
nsresult rv = mSnappyStream->Read(aBuf, aCount, aNumReadOut);
if ((NS_FAILED(rv) && rv != NS_BASE_STREAM_WOULD_BLOCK) ||
*aNumReadOut == 0) {
Close();
}
mHasEverBeenRead = true;
return rv;
}
NS_IMETHODIMP
ReadStream::Inner::ReadSegments(nsWriteSegmentFun aWriter, void* aClosure,
uint32_t aCount, uint32_t* aNumReadOut)
{
// stream ops can happen on any thread
MOZ_ASSERT(aNumReadOut);
if (aCount) {
mHasEverBeenRead = true;
}
nsresult rv = mSnappyStream->ReadSegments(aWriter, aClosure, aCount,
aNumReadOut);
if ((NS_FAILED(rv) && rv != NS_BASE_STREAM_WOULD_BLOCK &&
rv != NS_ERROR_NOT_IMPLEMENTED) || *aNumReadOut == 0) {
Close();
}
// Verify bytes were actually read before marking as being ever read. For
// example, code can test if the stream supports ReadSegments() by calling
// this method with a dummy callback which doesn't read anything. We don't
// want to trigger on that.
if (*aNumReadOut) {
mHasEverBeenRead = true;
}
return rv;
}
NS_IMETHODIMP
ReadStream::Inner::IsNonBlocking(bool* aNonBlockingOut)
{
// stream ops can happen on any thread
return mSnappyStream->IsNonBlocking(aNonBlockingOut);
}
ReadStream::Inner::~Inner()
{
// Any thread
MOZ_ASSERT(mState == Closed);
MOZ_ASSERT(!mControl);
}
void
ReadStream::Inner::NoteClosed()
{
// Any thread
if (mState == Closed) {
return;
}
if (NS_GetCurrentThread() == mOwningThread) {
NoteClosedOnOwningThread();
return;
}
nsCOMPtr<nsIRunnable> runnable = new NoteClosedRunnable(this);
MOZ_ALWAYS_TRUE(NS_SUCCEEDED(
mOwningThread->Dispatch(runnable, nsIThread::DISPATCH_NORMAL)));
}
void
ReadStream::Inner::Forget()
{
// Any thread
if (mState == Closed) {
return;
}
if (NS_GetCurrentThread() == mOwningThread) {
ForgetOnOwningThread();
return;
}
nsCOMPtr<nsIRunnable> runnable = new ForgetRunnable(this);
MOZ_ALWAYS_TRUE(NS_SUCCEEDED(
mOwningThread->Dispatch(runnable, nsIThread::DISPATCH_NORMAL)));
}
void
ReadStream::Inner::NoteClosedOnOwningThread()
{
MOZ_ASSERT(NS_GetCurrentThread() == mOwningThread);
// Mark closed and do nothing if we were already closed
if (!mState.compareExchange(Open, Closed)) {
return;
}
MOZ_ASSERT(mControl);
mControl->NoteClosed(this, mId);
mControl = nullptr;
}
void
ReadStream::Inner::ForgetOnOwningThread()
{
MOZ_ASSERT(NS_GetCurrentThread() == mOwningThread);
// Mark closed and do nothing if we were already closed
if (!mState.compareExchange(Open, Closed)) {
return;
}
MOZ_ASSERT(mControl);
mControl->ForgetReadStream(this);
mControl = nullptr;
}
// ----------------------------------------------------------------------------
NS_IMPL_ISUPPORTS(cache::ReadStream, nsIInputStream, ReadStream);
// static
already_AddRefed<ReadStream>
ReadStream::Create(const CacheReadStreamOrVoid& aReadStreamOrVoid)
{
if (aReadStreamOrVoid.type() == CacheReadStreamOrVoid::Tvoid_t) {
return nullptr;
}
return Create(aReadStreamOrVoid.get_CacheReadStream());
}
// static
already_AddRefed<ReadStream>
ReadStream::Create(const CacheReadStream& aReadStream)
{
// The parameter may or may not be for a Cache created stream. The way we
// tell is by looking at the stream control actor. If the actor exists,
// then we know the Cache created it.
if (!aReadStream.controlChild() && !aReadStream.controlParent()) {
return nullptr;
}
MOZ_ASSERT(!aReadStream.pushStreamChild());
MOZ_ASSERT(!aReadStream.pushStreamParent());
// Control is guaranteed to survive this method as ActorDestroy() cannot
// run on this thread until we complete.
StreamControl* control;
if (aReadStream.controlChild()) {
auto actor = static_cast<CacheStreamControlChild*>(aReadStream.controlChild());
control = actor;
} else {
auto actor = static_cast<CacheStreamControlParent*>(aReadStream.controlParent());
control = actor;
}
MOZ_ASSERT(control);
nsAutoTArray<FileDescriptor, 4> fds;
control->DeserializeFds(aReadStream, fds);
nsCOMPtr<nsIInputStream> stream =
DeserializeInputStream(aReadStream.params(), fds);
MOZ_ASSERT(stream);
// Currently we expect all cache read streams to be blocking file streams.
#ifdef DEBUG
nsCOMPtr<nsIAsyncInputStream> asyncStream = do_QueryInterface(stream);
MOZ_ASSERT(!asyncStream);
#endif
nsRefPtr<Inner> inner = new Inner(control, aReadStream.id(), stream);
nsRefPtr<ReadStream> ref = new ReadStream(inner);
return ref.forget();
}
// static
already_AddRefed<ReadStream>
ReadStream::Create(PCacheStreamControlParent* aControl, const nsID& aId,
nsIInputStream* aStream)
{
MOZ_ASSERT(aControl);
auto actor = static_cast<CacheStreamControlParent*>(aControl);
nsRefPtr<Inner> inner = new Inner(actor, aId, aStream);
nsRefPtr<ReadStream> ref = new ReadStream(inner);
return ref.forget();
}
void
ReadStream::Serialize(CacheReadStreamOrVoid* aReadStreamOut)
{
mInner->Serialize(aReadStreamOut);
}
void
ReadStream::Serialize(CacheReadStream* aReadStreamOut)
{
mInner->Serialize(aReadStreamOut);
}
ReadStream::ReadStream(ReadStream::Inner* aInner)
: mInner(aInner)
{
MOZ_ASSERT(mInner);
}
ReadStream::~ReadStream()
{
// Explicitly close the inner stream so that it does not have to
// deal with implicitly closing at destruction time.
mInner->Close();
}
NS_IMETHODIMP
ReadStream::Close()
{
return mInner->Close();
}
NS_IMETHODIMP
ReadStream::Available(uint64_t* aNumAvailableOut)
{
return mInner->Available(aNumAvailableOut);
}
NS_IMETHODIMP
ReadStream::Read(char* aBuf, uint32_t aCount, uint32_t* aNumReadOut)
{
return mInner->Read(aBuf, aCount, aNumReadOut);
}
NS_IMETHODIMP
ReadStream::ReadSegments(nsWriteSegmentFun aWriter, void* aClosure,
uint32_t aCount, uint32_t* aNumReadOut)
{
return mInner->ReadSegments(aWriter, aClosure, aCount, aNumReadOut);
}
NS_IMETHODIMP
ReadStream::IsNonBlocking(bool* aNonBlockingOut)
{
return mInner->IsNonBlocking(aNonBlockingOut);
}
} // namespace cache
} // namespace dom
} // namespace mozilla