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428 lines
15 KiB
428 lines
15 KiB
/*
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* Copyright (C) 2008 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef ART_LIBARTBASE_BASE_MEM_MAP_H_
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#define ART_LIBARTBASE_BASE_MEM_MAP_H_
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#include <stddef.h>
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#include <sys/types.h>
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#include <map>
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#include <mutex>
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#include <string>
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#include "android-base/thread_annotations.h"
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#include "macros.h"
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namespace art {
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#if defined(__LP64__) && !defined(__Fuchsia__) && (defined(__aarch64__) || defined(__APPLE__))
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#define USE_ART_LOW_4G_ALLOCATOR 1
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#else
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#if defined(__LP64__) && !defined(__Fuchsia__) && !defined(__x86_64__)
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#error "Unrecognized 64-bit architecture."
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#endif
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#define USE_ART_LOW_4G_ALLOCATOR 0
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#endif
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#ifdef __linux__
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static constexpr bool kMadviseZeroes = true;
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#define HAVE_MREMAP_SYSCALL true
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#else
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static constexpr bool kMadviseZeroes = false;
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// We cannot ever perform MemMap::ReplaceWith on non-linux hosts since the syscall is not
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// present.
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#define HAVE_MREMAP_SYSCALL false
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#endif
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// Used to keep track of mmap segments.
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//
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// On 64b systems not supporting MAP_32BIT, the implementation of MemMap will do a linear scan
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// for free pages. For security, the start of this scan should be randomized. This requires a
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// dynamic initializer.
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// For this to work, it is paramount that there are no other static initializers that access MemMap.
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// Otherwise, calls might see uninitialized values.
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class MemMap {
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public:
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static constexpr bool kCanReplaceMapping = HAVE_MREMAP_SYSCALL;
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// Creates an invalid mapping.
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MemMap() {}
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// Creates an invalid mapping. Used when we want to be more explicit than MemMap().
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static MemMap Invalid() {
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return MemMap();
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}
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MemMap(MemMap&& other) noexcept REQUIRES(!MemMap::mem_maps_lock_);
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MemMap& operator=(MemMap&& other) noexcept REQUIRES(!MemMap::mem_maps_lock_) {
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Reset();
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swap(other);
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return *this;
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}
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// Releases the memory mapping.
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~MemMap() REQUIRES(!MemMap::mem_maps_lock_);
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// Swap two MemMaps.
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void swap(MemMap& other);
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void Reset() {
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if (IsValid()) {
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DoReset();
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}
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}
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bool IsValid() const {
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return base_size_ != 0u;
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}
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// Replace the data in this memmmap with the data in the memmap pointed to by source. The caller
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// relinquishes ownership of the source mmap.
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//
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// For the call to be successful:
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// * The range [dest->Begin, dest->Begin() + source->Size()] must not overlap with
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// [source->Begin(), source->End()].
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// * Neither source nor dest may be 'reused' mappings (they must own all the pages associated
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// with them.
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// * kCanReplaceMapping must be true.
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// * Neither source nor dest may use manual redzones.
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// * Both source and dest must have the same offset from the nearest page boundary.
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// * mremap must succeed when called on the mappings.
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//
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// If this call succeeds it will return true and:
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// * Invalidate *source
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// * The protection of this will remain the same.
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// * The size of this will be the size of the source
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// * The data in this will be the data from source.
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//
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// If this call fails it will return false and make no changes to *source or this. The ownership
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// of the source mmap is returned to the caller.
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bool ReplaceWith(/*in-out*/MemMap* source, /*out*/std::string* error);
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// Set a debug friendly name for a map. It will be prefixed with "dalvik-".
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static void SetDebugName(void* map_ptr, const char* name, size_t size);
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// Request an anonymous region of length 'byte_count' and a requested base address.
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// Use null as the requested base address if you don't care.
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//
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// `reuse` allows re-mapping an address range from an existing mapping which retains the
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// ownership of the memory. Alternatively, `reservation` allows re-mapping the start of an
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// existing reservation mapping, transferring the ownership of the memory to the new MemMap.
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//
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// The word "anonymous" in this context means "not backed by a file". The supplied
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// 'name' will be used -- on systems that support it -- to give the mapping
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// a name.
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//
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// On success, returns returns a valid MemMap. On failure, returns an invalid MemMap.
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static MemMap MapAnonymous(const char* name,
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uint8_t* addr,
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size_t byte_count,
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int prot,
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bool low_4gb,
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bool reuse,
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/*inout*/MemMap* reservation,
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/*out*/std::string* error_msg,
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bool use_debug_name = true);
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static MemMap MapAnonymous(const char* name,
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size_t byte_count,
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int prot,
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bool low_4gb,
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/*out*/std::string* error_msg) {
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return MapAnonymous(name,
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/*addr=*/ nullptr,
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byte_count,
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prot,
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low_4gb,
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/*reuse=*/ false,
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/*reservation=*/ nullptr,
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error_msg);
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}
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static MemMap MapAnonymous(const char* name,
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size_t byte_count,
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int prot,
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bool low_4gb,
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MemMap* reservation,
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/*out*/std::string* error_msg) {
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return MapAnonymous(name,
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/*addr=*/ (reservation != nullptr) ? reservation->Begin() : nullptr,
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byte_count,
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prot,
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low_4gb,
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/*reuse=*/ false,
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reservation,
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error_msg);
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}
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// Create placeholder for a region allocated by direct call to mmap.
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// This is useful when we do not have control over the code calling mmap,
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// but when we still want to keep track of it in the list.
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// The region is not considered to be owned and will not be unmmaped.
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static MemMap MapPlaceholder(const char* name, uint8_t* addr, size_t byte_count);
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// Map part of a file, taking care of non-page aligned offsets. The
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// "start" offset is absolute, not relative.
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//
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// On success, returns returns a valid MemMap. On failure, returns an invalid MemMap.
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static MemMap MapFile(size_t byte_count,
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int prot,
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int flags,
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int fd,
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off_t start,
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bool low_4gb,
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const char* filename,
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std::string* error_msg) {
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return MapFileAtAddress(nullptr,
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byte_count,
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prot,
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flags,
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fd,
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start,
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/*low_4gb=*/ low_4gb,
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filename,
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/*reuse=*/ false,
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/*reservation=*/ nullptr,
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error_msg);
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}
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// Map part of a file, taking care of non-page aligned offsets. The "start" offset is absolute,
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// not relative. This version allows requesting a specific address for the base of the mapping.
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//
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// `reuse` allows re-mapping an address range from an existing mapping which retains the
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// ownership of the memory. Alternatively, `reservation` allows re-mapping the start of an
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// existing reservation mapping, transferring the ownership of the memory to the new MemMap.
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//
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// If error_msg is null then we do not print /proc/maps to the log if MapFileAtAddress fails.
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// This helps improve performance of the fail case since reading and printing /proc/maps takes
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// several milliseconds in the worst case.
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//
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// On success, returns returns a valid MemMap. On failure, returns an invalid MemMap.
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static MemMap MapFileAtAddress(uint8_t* addr,
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size_t byte_count,
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int prot,
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int flags,
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int fd,
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off_t start,
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bool low_4gb,
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const char* filename,
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bool reuse,
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/*inout*/MemMap* reservation,
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/*out*/std::string* error_msg);
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const std::string& GetName() const {
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return name_;
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}
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bool Sync();
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bool Protect(int prot);
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void MadviseDontNeedAndZero();
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int MadviseDontFork();
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int GetProtect() const {
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return prot_;
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}
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uint8_t* Begin() const {
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return begin_;
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}
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size_t Size() const {
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return size_;
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}
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// Resize the mem-map by unmapping pages at the end. Currently only supports shrinking.
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void SetSize(size_t new_size);
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uint8_t* End() const {
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return Begin() + Size();
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}
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void* BaseBegin() const {
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return base_begin_;
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}
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size_t BaseSize() const {
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return base_size_;
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}
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void* BaseEnd() const {
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return reinterpret_cast<uint8_t*>(BaseBegin()) + BaseSize();
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}
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bool HasAddress(const void* addr) const {
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return Begin() <= addr && addr < End();
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}
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// Unmap the pages at end and remap them to create another memory map.
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MemMap RemapAtEnd(uint8_t* new_end,
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const char* tail_name,
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int tail_prot,
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std::string* error_msg,
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bool use_debug_name = true);
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// Unmap the pages of a file at end and remap them to create another memory map.
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MemMap RemapAtEnd(uint8_t* new_end,
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const char* tail_name,
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int tail_prot,
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int tail_flags,
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int fd,
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off_t offset,
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std::string* error_msg,
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bool use_debug_name = true);
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// Take ownership of pages at the beginning of the mapping. The mapping must be an
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// anonymous reservation mapping, owning entire pages. The `byte_count` must not
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// exceed the size of this reservation.
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//
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// Returns a mapping owning `byte_count` bytes rounded up to entire pages
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// with size set to the passed `byte_count`.
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MemMap TakeReservedMemory(size_t byte_count);
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static bool CheckNoGaps(MemMap& begin_map, MemMap& end_map)
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REQUIRES(!MemMap::mem_maps_lock_);
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static void DumpMaps(std::ostream& os, bool terse = false)
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REQUIRES(!MemMap::mem_maps_lock_);
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// Init and Shutdown are NOT thread safe.
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// Both may be called multiple times and MemMap objects may be created any
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// time after the first call to Init and before the first call to Shutodwn.
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static void Init() REQUIRES(!MemMap::mem_maps_lock_);
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static void Shutdown() REQUIRES(!MemMap::mem_maps_lock_);
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// If the map is PROT_READ, try to read each page of the map to check it is in fact readable (not
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// faulting). This is used to diagnose a bug b/19894268 where mprotect doesn't seem to be working
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// intermittently.
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void TryReadable();
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// Align the map by unmapping the unaligned parts at the lower and the higher ends.
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void AlignBy(size_t size);
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// For annotation reasons.
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static std::mutex* GetMemMapsLock() RETURN_CAPABILITY(mem_maps_lock_) {
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return nullptr;
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}
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// Reset in a forked process the MemMap whose memory has been madvised MADV_DONTFORK
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// in the parent process.
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void ResetInForkedProcess();
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private:
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MemMap(const std::string& name,
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uint8_t* begin,
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size_t size,
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void* base_begin,
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size_t base_size,
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int prot,
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bool reuse,
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size_t redzone_size = 0) REQUIRES(!MemMap::mem_maps_lock_);
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void DoReset();
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void Invalidate();
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void SwapMembers(MemMap& other);
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static void DumpMapsLocked(std::ostream& os, bool terse)
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REQUIRES(MemMap::mem_maps_lock_);
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static bool HasMemMap(MemMap& map)
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REQUIRES(MemMap::mem_maps_lock_);
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static MemMap* GetLargestMemMapAt(void* address)
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REQUIRES(MemMap::mem_maps_lock_);
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static bool ContainedWithinExistingMap(uint8_t* ptr, size_t size, std::string* error_msg)
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REQUIRES(!MemMap::mem_maps_lock_);
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// Internal version of mmap that supports low 4gb emulation.
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static void* MapInternal(void* addr,
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size_t length,
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int prot,
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int flags,
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int fd,
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off_t offset,
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bool low_4gb)
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REQUIRES(!MemMap::mem_maps_lock_);
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static void* MapInternalArtLow4GBAllocator(size_t length,
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int prot,
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int flags,
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int fd,
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off_t offset)
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REQUIRES(!MemMap::mem_maps_lock_);
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// Release memory owned by a reservation mapping.
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void ReleaseReservedMemory(size_t byte_count);
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// member function to access real_munmap
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static bool CheckMapRequest(uint8_t* expected_ptr,
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void* actual_ptr,
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size_t byte_count,
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std::string* error_msg);
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static bool CheckReservation(uint8_t* expected_ptr,
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size_t byte_count,
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const char* name,
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const MemMap& reservation,
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/*out*/std::string* error_msg);
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std::string name_;
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uint8_t* begin_ = nullptr; // Start of data. May be changed by AlignBy.
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size_t size_ = 0u; // Length of data.
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void* base_begin_ = nullptr; // Page-aligned base address. May be changed by AlignBy.
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size_t base_size_ = 0u; // Length of mapping. May be changed by RemapAtEnd (ie Zygote).
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int prot_ = 0; // Protection of the map.
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// When reuse_ is true, this is just a view of an existing mapping
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// and we do not take ownership and are not responsible for
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// unmapping.
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bool reuse_ = false;
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// When already_unmapped_ is true the destructor will not call munmap.
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bool already_unmapped_ = false;
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size_t redzone_size_ = 0u;
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#if USE_ART_LOW_4G_ALLOCATOR
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static uintptr_t next_mem_pos_; // Next memory location to check for low_4g extent.
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static void* TryMemMapLow4GB(void* ptr,
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size_t page_aligned_byte_count,
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int prot,
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int flags,
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int fd,
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off_t offset);
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#endif
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static void TargetMMapInit();
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static void* TargetMMap(void* start, size_t len, int prot, int flags, int fd, off_t fd_off);
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static int TargetMUnmap(void* start, size_t len);
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static std::mutex* mem_maps_lock_;
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friend class MemMapTest; // To allow access to base_begin_ and base_size_.
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};
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inline void swap(MemMap& lhs, MemMap& rhs) {
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lhs.swap(rhs);
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}
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std::ostream& operator<<(std::ostream& os, const MemMap& mem_map);
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// Zero and release pages if possible, no requirements on alignments.
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void ZeroAndReleasePages(void* address, size_t length);
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} // namespace art
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#endif // ART_LIBARTBASE_BASE_MEM_MAP_H_
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