001343ce06
Change-Id: Id44de869e9c6823baf63a80caa10ceff9758dc31 Reviewed-on: https://dart-review.googlesource.com/c/79148 Reviewed-by: Alexander Markov <alexmarkov@google.com> Commit-Queue: Ryan Macnak <rmacnak@google.com>
220 lines
7.2 KiB
C++
220 lines
7.2 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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#include "vm/globals.h"
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#if defined(HOST_OS_FUCHSIA)
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#include "vm/virtual_memory.h"
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#include <sys/mman.h>
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#include <unistd.h>
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#include <zircon/process.h>
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#include <zircon/status.h>
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#include <zircon/syscalls.h>
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#include "platform/assert.h"
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#include "vm/allocation.h"
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#include "vm/growable_array.h"
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#include "vm/isolate.h"
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#include "vm/lockers.h"
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#include "vm/memory_region.h"
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#include "vm/os.h"
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#include "vm/os_thread.h"
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// #define VIRTUAL_MEMORY_LOGGING 1
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#if defined(VIRTUAL_MEMORY_LOGGING)
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#define LOG_ERR(msg, ...) \
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OS::PrintErr("VMVM: %s:%d: " msg, __FILE__, __LINE__, ##__VA_ARGS__)
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#define LOG_INFO(msg, ...) \
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OS::PrintErr("VMVM: %s:%d: " msg, __FILE__, __LINE__, ##__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(VIRTUAL_MEMORY_LOGGING)
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namespace dart {
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uword VirtualMemory::page_size_ = 0;
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void VirtualMemory::Init() {
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page_size_ = getpagesize();
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}
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VirtualMemory* VirtualMemory::Allocate(intptr_t size,
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bool is_executable,
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const char* name) {
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ASSERT(Utils::IsAligned(size, page_size_));
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zx_handle_t vmo = ZX_HANDLE_INVALID;
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zx_status_t status = zx_vmo_create(size, 0u, &vmo);
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if (status != ZX_OK) {
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LOG_ERR("zx_vmo_create(%ld) failed: %s\n", size,
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zx_status_get_string(status));
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return NULL;
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}
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if (name != NULL) {
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zx_object_set_property(vmo, ZX_PROP_NAME, name, strlen(name));
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}
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if (is_executable) {
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// Add ZX_PERM_EXECUTE permission to VMO, so it can be mapped
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// into memory as executable.
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status = zx_vmo_replace_as_executable(vmo, ZX_HANDLE_INVALID, &vmo);
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if (status != ZX_OK) {
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LOG_ERR("zx_vmo_replace_as_executable() failed: %s\n",
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zx_status_get_string(status));
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return NULL;
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}
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}
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const uint32_t flags = ZX_VM_PERM_READ | ZX_VM_PERM_WRITE |
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(is_executable ? ZX_VM_PERM_EXECUTE : 0);
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uword address;
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status = zx_vmar_map(zx_vmar_root_self(), flags, 0, vmo, 0, size, &address);
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zx_handle_close(vmo);
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if (status != ZX_OK) {
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LOG_ERR("zx_vmar_map(%u, %ld) failed: %s\n", flags, size,
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zx_status_get_string(status));
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return NULL;
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}
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LOG_INFO("zx_vmar_map(%u,%ld) success\n", flags, size);
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MemoryRegion region(reinterpret_cast<void*>(address), size);
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return new VirtualMemory(region, region);
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}
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VirtualMemory* VirtualMemory::AllocateAligned(intptr_t size,
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intptr_t alignment,
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bool is_executable,
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const char* name) {
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ASSERT(Utils::IsAligned(size, page_size_));
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ASSERT(Utils::IsAligned(alignment, page_size_));
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intptr_t allocated_size = size + alignment;
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zx_handle_t vmar = zx_vmar_root_self();
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zx_handle_t vmo = ZX_HANDLE_INVALID;
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zx_status_t status = zx_vmo_create(allocated_size, 0u, &vmo);
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if (status != ZX_OK) {
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LOG_ERR("zx_vmo_create(%ld) failed: %s\n", size,
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zx_status_get_string(status));
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return NULL;
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}
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if (name != NULL) {
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zx_object_set_property(vmo, ZX_PROP_NAME, name, strlen(name));
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}
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if (is_executable) {
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// Add ZX_PERM_EXECUTE permission to VMO, so it can be mapped
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// into memory as executable.
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status = zx_vmo_replace_as_executable(vmo, ZX_HANDLE_INVALID, &vmo);
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if (status != ZX_OK) {
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LOG_ERR("zx_vmo_replace_as_executable() failed: %s\n",
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zx_status_get_string(status));
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return NULL;
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}
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}
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const zx_vm_option_t options = ZX_VM_PERM_READ | ZX_VM_PERM_WRITE |
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(is_executable ? ZX_VM_PERM_EXECUTE : 0);
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uword base;
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status = zx_vmar_map(vmar, options, 0u, vmo, 0u, allocated_size, &base);
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zx_handle_close(vmo);
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if (status != ZX_OK) {
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LOG_ERR("zx_vmar_map(%u, %ld) failed: %s\n", flags, size,
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zx_status_get_string(status));
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return NULL;
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}
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uword aligned_base = Utils::RoundUp(base, alignment);
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ASSERT(base <= aligned_base);
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if (base != aligned_base) {
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uword extra_leading_size = aligned_base - base;
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status = zx_vmar_unmap(vmar, base, extra_leading_size);
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if (status != ZX_OK) {
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FATAL1("zx_vmar_unmap failed: %s\n", zx_status_get_string(status));
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}
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allocated_size -= extra_leading_size;
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}
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if (allocated_size != size) {
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uword extra_trailing_size = allocated_size - size;
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status = zx_vmar_unmap(vmar, aligned_base + size, extra_trailing_size);
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if (status != ZX_OK) {
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FATAL1("zx_vmar_unmap failed: %s\n", zx_status_get_string(status));
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}
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}
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MemoryRegion region(reinterpret_cast<void*>(aligned_base), size);
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return new VirtualMemory(region, region);
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}
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VirtualMemory::~VirtualMemory() {
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// Reserved region may be empty due to VirtualMemory::Truncate.
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if (vm_owns_region() && reserved_.size() != 0) {
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zx_status_t status =
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zx_vmar_unmap(zx_vmar_root_self(), reserved_.start(), reserved_.size());
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if (status != ZX_OK) {
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FATAL3("zx_vmar_unmap(%lx, %lx) failed: %s\n", reserved_.start(),
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reserved_.size(), zx_status_get_string(status));
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}
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LOG_INFO("zx_vmar_unmap(%lx, %lx) success\n", reserved_.start(),
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reserved_.size());
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}
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}
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bool VirtualMemory::FreeSubSegment(void* address, intptr_t size) {
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zx_status_t status = zx_vmar_unmap(
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zx_vmar_root_self(), reinterpret_cast<uintptr_t>(address), size);
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if (status != ZX_OK) {
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LOG_ERR("zx_vmar_unmap(%p, %lx) failed: %s\n", address, size,
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zx_status_get_string(status));
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return false;
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}
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LOG_INFO("zx_vmar_unmap(%p, %lx) success\n", address, size);
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return true;
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}
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void VirtualMemory::Protect(void* address, intptr_t size, Protection mode) {
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#if defined(DEBUG)
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Thread* thread = Thread::Current();
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ASSERT((thread == nullptr) || thread->IsMutatorThread() ||
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thread->isolate()->mutator_thread()->IsAtSafepoint());
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#endif
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const uword start_address = reinterpret_cast<uword>(address);
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const uword end_address = start_address + size;
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const uword page_address = Utils::RoundDown(start_address, PageSize());
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uint32_t prot = 0;
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switch (mode) {
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case kNoAccess:
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prot = 0;
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break;
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case kReadOnly:
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prot = ZX_VM_PERM_READ;
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break;
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case kReadWrite:
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prot = ZX_VM_PERM_READ | ZX_VM_PERM_WRITE;
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break;
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case kReadExecute:
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prot = ZX_VM_PERM_READ | ZX_VM_PERM_EXECUTE;
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break;
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case kReadWriteExecute:
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prot = ZX_VM_PERM_READ | ZX_VM_PERM_WRITE | ZX_VM_PERM_EXECUTE;
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break;
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}
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zx_status_t status = zx_vmar_protect(zx_vmar_root_self(), prot, page_address,
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end_address - page_address);
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if (status != ZX_OK) {
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FATAL3("zx_vmar_protect(%lx, %lx) failed: %s\n", page_address,
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end_address - page_address, zx_status_get_string(status));
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}
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LOG_INFO("zx_vmar_protect(%lx, %lx, %x) success\n", page_address,
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end_address - page_address, prot);
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}
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} // namespace dart
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#endif // defined(HOST_OS_FUCHSIA)
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