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193 lines
8.2 KiB
C++
193 lines
8.2 KiB
C++
// Copyright 2013 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#ifndef MOJO_EDK_SYSTEM_CORE_H_
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#define MOJO_EDK_SYSTEM_CORE_H_
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#include <stdint.h>
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#include "base/callback.h"
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#include "base/memory/ref_counted.h"
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#include "base/memory/scoped_ptr.h"
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#include "mojo/edk/system/handle_table.h"
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#include "mojo/edk/system/mapping_table.h"
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#include "mojo/edk/system/memory.h"
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#include "mojo/edk/system/mutex.h"
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#include "mojo/edk/system/system_impl_export.h"
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#include "mojo/public/c/system/buffer.h"
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#include "mojo/public/c/system/data_pipe.h"
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#include "mojo/public/c/system/message_pipe.h"
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#include "mojo/public/c/system/types.h"
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#include "mojo/public/cpp/system/macros.h"
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namespace mojo {
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namespace embedder {
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class PlatformSupport;
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}
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namespace system {
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class Dispatcher;
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struct HandleSignalsState;
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// |Core| is an object that implements the Mojo system calls. All public methods
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// are thread-safe.
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class MOJO_SYSTEM_IMPL_EXPORT Core {
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public:
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// ---------------------------------------------------------------------------
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// These methods are only to be used by via the embedder API (and internally):
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// |*platform_support| must outlive this object.
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explicit Core(embedder::PlatformSupport* platform_support);
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virtual ~Core();
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// Adds |dispatcher| to the handle table, returning the handle for it. Returns
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// |MOJO_HANDLE_INVALID| on failure, namely if the handle table is full.
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MojoHandle AddDispatcher(const scoped_refptr<Dispatcher>& dispatcher);
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// Looks up the dispatcher for the given handle. Returns null if the handle is
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// invalid.
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scoped_refptr<Dispatcher> GetDispatcher(MojoHandle handle);
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// Like |GetDispatcher()|, but also removes the handle from the handle table.
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// On success, gets the dispatcher for a given handle (which should not be
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// |MOJO_HANDLE_INVALID|) and removes it. (On failure, returns an appropriate
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// result (and leaves |dispatcher| alone), namely
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// |MOJO_RESULT_INVALID_ARGUMENT| if there's no dispatcher for the given
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// handle or |MOJO_RESULT_BUSY| if the handle is marked as busy.)
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MojoResult GetAndRemoveDispatcher(MojoHandle handle,
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scoped_refptr<Dispatcher>* dispatcher);
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// Watches on the given handle for the given signals, calling |callback| when
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// a signal is satisfied or when all signals become unsatisfiable. |callback|
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// must satisfy stringent requirements -- see |Awakable::Awake()| in
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// awakable.h. In particular, it must not call any Mojo system functions.
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MojoResult AsyncWait(MojoHandle handle,
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MojoHandleSignals signals,
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const base::Callback<void(MojoResult)>& callback);
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embedder::PlatformSupport* platform_support() const {
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return platform_support_;
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}
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// ---------------------------------------------------------------------------
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// The following methods are essentially implementations of the Mojo Core
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// functions of the Mojo API, with the C interface translated to C++ by
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// "mojo/edk/embedder/entrypoints.cc". The best way to understand the contract
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// of these methods is to look at the header files defining the corresponding
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// API functions, referenced below.
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// These methods correspond to the API functions defined in
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// "mojo/public/c/system/functions.h":
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MojoTimeTicks GetTimeTicksNow();
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MojoResult Close(MojoHandle handle);
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MojoResult Wait(MojoHandle handle,
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MojoHandleSignals signals,
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MojoDeadline deadline,
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UserPointer<MojoHandleSignalsState> signals_state);
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MojoResult WaitMany(UserPointer<const MojoHandle> handles,
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UserPointer<const MojoHandleSignals> signals,
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uint32_t num_handles,
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MojoDeadline deadline,
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UserPointer<uint32_t> result_index,
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UserPointer<MojoHandleSignalsState> signals_states);
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// These methods correspond to the API functions defined in
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// "mojo/public/c/system/message_pipe.h":
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MojoResult CreateMessagePipe(
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UserPointer<const MojoCreateMessagePipeOptions> options,
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UserPointer<MojoHandle> message_pipe_handle0,
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UserPointer<MojoHandle> message_pipe_handle1);
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MojoResult WriteMessage(MojoHandle message_pipe_handle,
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UserPointer<const void> bytes,
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uint32_t num_bytes,
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UserPointer<const MojoHandle> handles,
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uint32_t num_handles,
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MojoWriteMessageFlags flags);
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MojoResult ReadMessage(MojoHandle message_pipe_handle,
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UserPointer<void> bytes,
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UserPointer<uint32_t> num_bytes,
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UserPointer<MojoHandle> handles,
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UserPointer<uint32_t> num_handles,
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MojoReadMessageFlags flags);
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// These methods correspond to the API functions defined in
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// "mojo/public/c/system/data_pipe.h":
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MojoResult CreateDataPipe(
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UserPointer<const MojoCreateDataPipeOptions> options,
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UserPointer<MojoHandle> data_pipe_producer_handle,
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UserPointer<MojoHandle> data_pipe_consumer_handle);
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MojoResult WriteData(MojoHandle data_pipe_producer_handle,
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UserPointer<const void> elements,
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UserPointer<uint32_t> num_bytes,
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MojoWriteDataFlags flags);
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MojoResult BeginWriteData(MojoHandle data_pipe_producer_handle,
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UserPointer<void*> buffer,
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UserPointer<uint32_t> buffer_num_bytes,
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MojoWriteDataFlags flags);
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MojoResult EndWriteData(MojoHandle data_pipe_producer_handle,
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uint32_t num_bytes_written);
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MojoResult ReadData(MojoHandle data_pipe_consumer_handle,
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UserPointer<void> elements,
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UserPointer<uint32_t> num_bytes,
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MojoReadDataFlags flags);
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MojoResult BeginReadData(MojoHandle data_pipe_consumer_handle,
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UserPointer<const void*> buffer,
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UserPointer<uint32_t> buffer_num_bytes,
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MojoReadDataFlags flags);
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MojoResult EndReadData(MojoHandle data_pipe_consumer_handle,
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uint32_t num_bytes_read);
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// These methods correspond to the API functions defined in
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// "mojo/public/c/system/buffer.h":
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MojoResult CreateSharedBuffer(
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UserPointer<const MojoCreateSharedBufferOptions> options,
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uint64_t num_bytes,
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UserPointer<MojoHandle> shared_buffer_handle);
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MojoResult DuplicateBufferHandle(
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MojoHandle buffer_handle,
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UserPointer<const MojoDuplicateBufferHandleOptions> options,
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UserPointer<MojoHandle> new_buffer_handle);
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MojoResult MapBuffer(MojoHandle buffer_handle,
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uint64_t offset,
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uint64_t num_bytes,
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UserPointer<void*> buffer,
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MojoMapBufferFlags flags);
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MojoResult UnmapBuffer(UserPointer<void> buffer);
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private:
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friend bool internal::ShutdownCheckNoLeaks(Core*);
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// Internal implementation of |Wait()| and |WaitMany()|; doesn't do basic
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// validation of arguments. |*result_index| is only set if the result (whether
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// success or failure) applies to a specific handle, so its value should be
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// preinitialized to |static_cast<uint32_t>(-1)|.
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MojoResult WaitManyInternal(const MojoHandle* handles,
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const MojoHandleSignals* signals,
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uint32_t num_handles,
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MojoDeadline deadline,
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uint32_t* result_index,
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HandleSignalsState* signals_states);
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embedder::PlatformSupport* const platform_support_;
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// TODO(vtl): |handle_table_mutex_| should be a reader-writer lock (if only we
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// had them).
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Mutex handle_table_mutex_;
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HandleTable handle_table_ MOJO_GUARDED_BY(handle_table_mutex_);
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Mutex mapping_table_mutex_;
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MappingTable mapping_table_ MOJO_GUARDED_BY(mapping_table_mutex_);
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MOJO_DISALLOW_COPY_AND_ASSIGN(Core);
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};
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} // namespace system
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} // namespace mojo
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#endif // MOJO_EDK_SYSTEM_CORE_H_
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