mirror of
https://github.com/LadybirdBrowser/ladybird.git
synced 2024-11-26 09:30:24 +00:00
554 lines
21 KiB
C++
554 lines
21 KiB
C++
/*
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* Copyright (c) 2021, Liav A. <liavalb@hotmail.co.il>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/JsonArraySerializer.h>
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#include <AK/JsonObjectSerializer.h>
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#include <AK/JsonValue.h>
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#include <Kernel/Arch/x86/InterruptDisabler.h>
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#include <Kernel/FileSystem/Custody.h>
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#include <Kernel/KBufferBuilder.h>
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#include <Kernel/ProcessExposed.h>
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#include <Kernel/VM/AnonymousVMObject.h>
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#include <Kernel/VM/MemoryManager.h>
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namespace Kernel {
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class ProcFSProcessStacks;
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class ProcFSThreadStack final : public ProcFSProcessInformation {
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public:
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// Note: We pass const ProcFSProcessStacks& to enforce creation with this type of folder
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static NonnullRefPtr<ProcFSThreadStack> create(const ProcFSProcessFolder& process_folder, const ProcFSProcessStacks&, const Thread& thread)
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{
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return adopt_ref(*new (nothrow) ProcFSThreadStack(process_folder, thread));
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}
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private:
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explicit ProcFSThreadStack(const ProcFSProcessFolder& process_folder, const Thread& thread)
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: ProcFSProcessInformation(String::formatted("{}", thread.tid()), process_folder)
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, m_associated_thread(thread)
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{
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}
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virtual bool output(KBufferBuilder& builder) override
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{
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JsonArraySerializer array { builder };
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bool show_kernel_addresses = Process::current()->is_superuser();
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bool kernel_address_added = false;
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for (auto address : Processor::capture_stack_trace(*m_associated_thread, 1024)) {
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if (!show_kernel_addresses && !is_user_address(VirtualAddress { address })) {
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if (kernel_address_added)
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continue;
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address = 0xdeadc0de;
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kernel_address_added = true;
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}
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array.add(address);
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}
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array.finish();
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return true;
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}
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NonnullRefPtr<Thread> m_associated_thread;
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};
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class ProcFSProcessStacks final : public ProcFSExposedFolder {
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// Note: This folder is special, because everything that is created here is dynamic!
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// This means we don't register anything in the m_components Vector, and every inode
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// is created in runtime when called to get it
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// Every ProcFSThreadStack (that represents a thread stack) is created only as a temporary object
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// therefore, we don't use m_components so when we are done with the ProcFSThreadStack object,
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// It should be deleted (as soon as possible)
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public:
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virtual KResultOr<size_t> entries_count() const override;
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virtual KResult traverse_as_directory(unsigned, Function<bool(const FS::DirectoryEntryView&)>) const override;
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virtual RefPtr<ProcFSExposedComponent> lookup(StringView name) override;
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static NonnullRefPtr<ProcFSProcessStacks> create(const ProcFSProcessFolder& parent_folder)
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{
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auto folder = adopt_ref(*new (nothrow) ProcFSProcessStacks(parent_folder));
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return folder;
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}
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virtual void prepare_for_deletion() override
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{
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ProcFSExposedFolder::prepare_for_deletion();
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m_process_folder.clear();
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}
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private:
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ProcFSProcessStacks(const ProcFSProcessFolder& parent_folder)
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: ProcFSExposedFolder("stacks"sv, parent_folder)
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, m_process_folder(parent_folder)
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{
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}
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WeakPtr<ProcFSProcessFolder> m_process_folder;
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mutable Lock m_lock;
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};
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KResultOr<size_t> ProcFSProcessStacks::entries_count() const
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{
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Locker locker(m_lock);
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auto parent_folder = m_process_folder.strong_ref();
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if (parent_folder.is_null())
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return KResult(EINVAL);
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return parent_folder->m_associated_process->thread_count();
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}
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KResult ProcFSProcessStacks::traverse_as_directory(unsigned fsid, Function<bool(const FS::DirectoryEntryView&)> callback) const
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{
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Locker locker(m_lock);
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auto parent_folder = m_process_folder.strong_ref();
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if (parent_folder.is_null())
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return KResult(EINVAL);
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callback({ ".", { fsid, component_index() }, 0 });
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callback({ "..", { fsid, parent_folder->component_index() }, 0 });
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auto process = parent_folder->m_associated_process;
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process->for_each_thread([&](const Thread& thread) {
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int tid = thread.tid().value();
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InodeIdentifier identifier = { fsid, thread.global_procfs_inode_index() };
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callback({ String::number(tid), identifier, 0 });
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});
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return KSuccess;
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}
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RefPtr<ProcFSExposedComponent> ProcFSProcessStacks::lookup(StringView name)
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{
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Locker locker(m_lock);
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auto parent_folder = m_process_folder.strong_ref();
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if (parent_folder.is_null())
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return nullptr;
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auto process = parent_folder->m_associated_process;
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RefPtr<ProcFSThreadStack> procfd_stack;
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// FIXME: Try to exit the loop earlier
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process->for_each_thread([&](const Thread& thread) {
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int tid = thread.tid().value();
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if (name == String::number(tid)) {
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procfd_stack = ProcFSThreadStack::create(*parent_folder, *this, thread);
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}
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});
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return procfd_stack;
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}
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class ProcFSProcessFileDescriptions;
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class ProcFSProcessFileDescription final : public ProcFSExposedLink {
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public:
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// Note: we pass const ProcFSProcessFileDescriptions& just to enforce creation of this in the correct folder.
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static NonnullRefPtr<ProcFSProcessFileDescription> create(unsigned fd_number, const FileDescription& fd, InodeIndex preallocated_index, const ProcFSProcessFileDescriptions&)
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{
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return adopt_ref(*new (nothrow) ProcFSProcessFileDescription(fd_number, fd, preallocated_index));
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}
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private:
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explicit ProcFSProcessFileDescription(unsigned fd_number, const FileDescription& fd, InodeIndex preallocated_index)
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: ProcFSExposedLink(String::formatted("{}", fd_number), preallocated_index)
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, m_associated_file_description(fd)
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{
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}
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virtual bool acquire_link(KBufferBuilder& builder) override
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{
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builder.append_bytes(m_associated_file_description->absolute_path().bytes());
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return true;
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}
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NonnullRefPtr<FileDescription> m_associated_file_description;
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};
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class ProcFSProcessFileDescriptions final : public ProcFSExposedFolder {
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// Note: This folder is special, because everything that is created here is dynamic!
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// This means we don't register anything in the m_components Vector, and every inode
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// is created in runtime when called to get it
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// Every ProcFSProcessFileDescription (that represents a file descriptor) is created only as a temporary object
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// therefore, we don't use m_components so when we are done with the ProcFSProcessFileDescription object,
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// It should be deleted (as soon as possible)
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public:
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virtual KResultOr<size_t> entries_count() const override;
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virtual KResult traverse_as_directory(unsigned, Function<bool(const FS::DirectoryEntryView&)>) const override;
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virtual RefPtr<ProcFSExposedComponent> lookup(StringView name) override;
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static NonnullRefPtr<ProcFSProcessFileDescriptions> create(const ProcFSProcessFolder& parent_folder)
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{
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return adopt_ref(*new (nothrow) ProcFSProcessFileDescriptions(parent_folder));
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}
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virtual void prepare_for_deletion() override
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{
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ProcFSExposedFolder::prepare_for_deletion();
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m_process_folder.clear();
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}
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private:
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explicit ProcFSProcessFileDescriptions(const ProcFSProcessFolder& parent_folder)
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: ProcFSExposedFolder("fd"sv, parent_folder)
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, m_process_folder(parent_folder)
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{
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}
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WeakPtr<ProcFSProcessFolder> m_process_folder;
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mutable Lock m_lock;
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};
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KResultOr<size_t> ProcFSProcessFileDescriptions::entries_count() const
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{
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Locker locker(m_lock);
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auto parent_folder = m_process_folder.strong_ref();
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if (parent_folder.is_null())
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return KResult(EINVAL);
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return parent_folder->m_associated_process->fds().open_count();
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}
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KResult ProcFSProcessFileDescriptions::traverse_as_directory(unsigned fsid, Function<bool(const FS::DirectoryEntryView&)> callback) const
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{
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Locker locker(m_lock);
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auto parent_folder = m_process_folder.strong_ref();
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if (parent_folder.is_null())
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return KResult(EINVAL);
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callback({ ".", { fsid, component_index() }, 0 });
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callback({ "..", { fsid, parent_folder->component_index() }, 0 });
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auto process = parent_folder->m_associated_process;
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size_t count = 0;
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process->fds().enumerate([&](auto& file_description_metadata) {
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if (!file_description_metadata.is_valid()) {
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count++;
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return;
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}
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InodeIdentifier identifier = { fsid, file_description_metadata.global_procfs_inode_index() };
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callback({ String::number(count), identifier, 0 });
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count++;
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});
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return KSuccess;
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}
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RefPtr<ProcFSExposedComponent> ProcFSProcessFileDescriptions::lookup(StringView name)
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{
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Locker locker(m_lock);
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auto parent_folder = m_process_folder.strong_ref();
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if (parent_folder.is_null())
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return nullptr;
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auto process = parent_folder->m_associated_process;
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RefPtr<ProcFSProcessFileDescription> procfd_fd;
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// FIXME: Try to exit the loop earlier
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size_t count = 0;
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process->fds().enumerate([&](auto& file_description_metadata) {
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if (!file_description_metadata.is_valid()) {
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count++;
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return;
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}
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if (name == String::number(count)) {
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procfd_fd = ProcFSProcessFileDescription::create(count, *file_description_metadata.description(), file_description_metadata.global_procfs_inode_index(), *this);
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}
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count++;
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});
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return procfd_fd;
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}
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class ProcFSProcessUnveil final : public ProcFSProcessInformation {
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public:
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static NonnullRefPtr<ProcFSProcessUnveil> create(const ProcFSProcessFolder& parent_folder)
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{
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return adopt_ref(*new (nothrow) ProcFSProcessUnveil(parent_folder));
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}
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private:
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explicit ProcFSProcessUnveil(const ProcFSProcessFolder& parent_folder)
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: ProcFSProcessInformation("unveil"sv, parent_folder)
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{
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}
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virtual bool output(KBufferBuilder& builder) override
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{
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auto parent_folder = m_parent_folder.strong_ref();
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if (parent_folder.is_null())
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return false;
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JsonArraySerializer array { builder };
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for (auto& unveiled_path : parent_folder->m_associated_process->unveiled_paths()) {
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if (!unveiled_path.was_explicitly_unveiled())
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continue;
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auto obj = array.add_object();
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obj.add("path", unveiled_path.path());
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StringBuilder permissions_builder;
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if (unveiled_path.permissions() & UnveilAccess::Read)
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permissions_builder.append('r');
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if (unveiled_path.permissions() & UnveilAccess::Write)
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permissions_builder.append('w');
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if (unveiled_path.permissions() & UnveilAccess::Execute)
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permissions_builder.append('x');
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if (unveiled_path.permissions() & UnveilAccess::CreateOrRemove)
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permissions_builder.append('c');
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if (unveiled_path.permissions() & UnveilAccess::Browse)
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permissions_builder.append('b');
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obj.add("permissions", permissions_builder.to_string());
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}
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array.finish();
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return true;
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}
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};
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class ProcFSProcessPerformanceEvents final : public ProcFSProcessInformation {
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public:
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static NonnullRefPtr<ProcFSProcessPerformanceEvents> create(const ProcFSProcessFolder& parent_folder)
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{
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return adopt_ref(*new (nothrow) ProcFSProcessPerformanceEvents(parent_folder));
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}
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private:
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explicit ProcFSProcessPerformanceEvents(const ProcFSProcessFolder& parent_folder)
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: ProcFSProcessInformation("perf_events"sv, parent_folder)
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{
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}
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virtual bool output(KBufferBuilder& builder) override
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{
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InterruptDisabler disabler;
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auto parent_folder = m_parent_folder.strong_ref();
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if (parent_folder.is_null())
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return false;
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auto process = parent_folder->m_associated_process;
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if (!process->perf_events()) {
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dbgln("ProcFS: No perf events for {}", process->pid());
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return false;
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}
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return process->perf_events()->to_json(builder);
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}
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};
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class ProcFSProcessOverallFileDescriptions final : public ProcFSProcessInformation {
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public:
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static NonnullRefPtr<ProcFSProcessOverallFileDescriptions> create(const ProcFSProcessFolder& parent_folder)
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{
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return adopt_ref(*new (nothrow) ProcFSProcessOverallFileDescriptions(parent_folder));
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}
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private:
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explicit ProcFSProcessOverallFileDescriptions(const ProcFSProcessFolder& parent_folder)
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: ProcFSProcessInformation("fds"sv, parent_folder)
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{
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}
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virtual bool output(KBufferBuilder& builder) override
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{
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auto parent_folder = m_parent_folder.strong_ref();
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if (parent_folder.is_null())
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return false;
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JsonArraySerializer array { builder };
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auto process = parent_folder->m_associated_process;
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if (process->fds().open_count() == 0) {
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array.finish();
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return true;
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}
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size_t count = 0;
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process->fds().enumerate([&](auto& file_description_metadata) {
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if (!file_description_metadata.is_valid()) {
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count++;
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return;
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}
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bool cloexec = file_description_metadata.flags() & FD_CLOEXEC;
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RefPtr<FileDescription> description = file_description_metadata.description();
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auto description_object = array.add_object();
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description_object.add("fd", count);
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description_object.add("absolute_path", description->absolute_path());
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description_object.add("seekable", description->file().is_seekable());
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description_object.add("class", description->file().class_name());
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description_object.add("offset", description->offset());
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description_object.add("cloexec", cloexec);
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description_object.add("blocking", description->is_blocking());
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description_object.add("can_read", description->can_read());
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description_object.add("can_write", description->can_write());
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count++;
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});
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array.finish();
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return true;
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}
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};
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class ProcFSProcessRoot final : public ProcFSExposedLink {
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public:
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static NonnullRefPtr<ProcFSProcessRoot> create(const ProcFSProcessFolder& parent_folder)
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{
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return adopt_ref(*new (nothrow) ProcFSProcessRoot(parent_folder));
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}
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private:
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explicit ProcFSProcessRoot(const ProcFSProcessFolder& parent_folder)
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: ProcFSExposedLink("root"sv)
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, m_parent_process_directory(parent_folder)
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{
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}
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virtual bool acquire_link(KBufferBuilder& builder) override
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{
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auto parent_folder = m_parent_process_directory.strong_ref();
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if (parent_folder.is_null())
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return false;
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builder.append_bytes(parent_folder->m_associated_process->root_directory_relative_to_global_root().absolute_path().to_byte_buffer());
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return true;
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}
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WeakPtr<ProcFSProcessFolder> m_parent_process_directory;
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};
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class ProcFSProcessVirtualMemory final : public ProcFSProcessInformation {
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public:
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static NonnullRefPtr<ProcFSProcessRoot> create(const ProcFSProcessFolder& parent_folder)
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{
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return adopt_ref(*new (nothrow) ProcFSProcessVirtualMemory(parent_folder));
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}
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private:
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explicit ProcFSProcessVirtualMemory(const ProcFSProcessFolder& parent_folder)
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: ProcFSProcessInformation("vm"sv, parent_folder)
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{
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}
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virtual bool output(KBufferBuilder& builder) override
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{
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auto parent_folder = m_parent_folder.strong_ref();
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if (parent_folder.is_null())
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return false;
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auto process = parent_folder->m_associated_process;
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JsonArraySerializer array { builder };
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{
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ScopedSpinLock lock(process->space().get_lock());
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for (auto& region : process->space().regions()) {
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if (!region->is_user() && !Process::current()->is_superuser())
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continue;
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auto region_object = array.add_object();
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region_object.add("readable", region->is_readable());
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region_object.add("writable", region->is_writable());
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region_object.add("executable", region->is_executable());
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region_object.add("stack", region->is_stack());
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region_object.add("shared", region->is_shared());
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region_object.add("syscall", region->is_syscall_region());
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region_object.add("purgeable", region->vmobject().is_anonymous());
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if (region->vmobject().is_anonymous()) {
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region_object.add("volatile", static_cast<const AnonymousVMObject&>(region->vmobject()).is_any_volatile());
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}
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region_object.add("cacheable", region->is_cacheable());
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region_object.add("address", region->vaddr().get());
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region_object.add("size", region->size());
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region_object.add("amount_resident", region->amount_resident());
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region_object.add("amount_dirty", region->amount_dirty());
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region_object.add("cow_pages", region->cow_pages());
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region_object.add("name", region->name());
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region_object.add("vmobject", region->vmobject().class_name());
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StringBuilder pagemap_builder;
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for (size_t i = 0; i < region->page_count(); ++i) {
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auto* page = region->physical_page(i);
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if (!page)
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pagemap_builder.append('N');
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else if (page->is_shared_zero_page() || page->is_lazy_committed_page())
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pagemap_builder.append('Z');
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else
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pagemap_builder.append('P');
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}
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region_object.add("pagemap", pagemap_builder.to_string());
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}
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}
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array.finish();
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return true;
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}
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};
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class ProcFSProcessCurrentWorkDirectory final : public ProcFSExposedLink {
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public:
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static NonnullRefPtr<ProcFSProcessCurrentWorkDirectory> create(const ProcFSProcessFolder& parent_folder)
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{
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return adopt_ref(*new (nothrow) ProcFSProcessCurrentWorkDirectory(parent_folder));
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}
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private:
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explicit ProcFSProcessCurrentWorkDirectory(const ProcFSProcessFolder& parent_folder)
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: ProcFSExposedLink("cwd"sv)
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, m_parent_process_directory(parent_folder)
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{
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}
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virtual bool acquire_link(KBufferBuilder& builder) override
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{
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auto parent_folder = m_parent_process_directory.strong_ref();
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if (parent_folder.is_null())
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return false;
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builder.append_bytes(parent_folder->m_associated_process->current_directory().absolute_path().bytes());
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return true;
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}
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WeakPtr<ProcFSProcessFolder> m_parent_process_directory;
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};
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class ProcFSProcessBinary final : public ProcFSExposedLink {
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public:
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static NonnullRefPtr<ProcFSProcessBinary> create(const ProcFSProcessFolder& parent_folder)
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{
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return adopt_ref(*new (nothrow) ProcFSProcessBinary(parent_folder));
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}
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virtual mode_t required_mode() const override
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{
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auto parent_folder = m_parent_process_directory.strong_ref();
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if (parent_folder.is_null())
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return false;
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if (!parent_folder->m_associated_process->executable())
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return 0;
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return ProcFSExposedComponent::required_mode();
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}
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private:
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explicit ProcFSProcessBinary(const ProcFSProcessFolder& parent_folder)
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: ProcFSExposedLink("exe"sv)
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, m_parent_process_directory(parent_folder)
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{
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}
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virtual bool acquire_link(KBufferBuilder& builder) override
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{
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auto parent_folder = m_parent_process_directory.strong_ref();
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if (parent_folder.is_null())
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return false;
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auto* custody = parent_folder->m_associated_process->executable();
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if (!custody)
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return false;
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builder.append(custody->absolute_path().bytes());
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return true;
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}
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WeakPtr<ProcFSProcessFolder> m_parent_process_directory;
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};
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void ProcFSProcessFolder::on_attach()
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{
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VERIFY(m_components.size() == 0);
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m_components.append(ProcFSProcessUnveil::create(*this));
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m_components.append(ProcFSProcessPerformanceEvents::create(*this));
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m_components.append(ProcFSProcessFileDescriptions::create(*this));
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m_components.append(ProcFSProcessOverallFileDescriptions::create(*this));
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m_components.append(ProcFSProcessRoot::create(*this));
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m_components.append(ProcFSProcessVirtualMemory::create(*this));
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m_components.append(ProcFSProcessCurrentWorkDirectory::create(*this));
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m_components.append(ProcFSProcessBinary::create(*this));
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m_components.append(ProcFSProcessStacks::create(*this));
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}
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RefPtr<ProcFSExposedComponent> ProcFSProcessFolder::lookup(StringView name)
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{
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// Note: we need to allocate all sub components when doing a lookup, because
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// for some reason, the caller may not call ProcFSInode::attach method before calling this.
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if (m_components.size() == 0)
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on_attach();
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return ProcFSExposedFolder::lookup(name);
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}
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KResult ProcFSProcessFolder::refresh_data(FileDescription&) const
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{
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if (m_components.size() != 0)
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return KSuccess;
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const_cast<ProcFSProcessFolder&>(*this).on_attach();
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return KSuccess;
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}
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NonnullRefPtr<ProcFSProcessFolder> ProcFSProcessFolder::create(const Process& process)
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{
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return adopt_ref_if_nonnull(new (nothrow) ProcFSProcessFolder(process)).release_nonnull();
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}
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ProcFSProcessFolder::ProcFSProcessFolder(const Process& process)
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: ProcFSExposedFolder(String::formatted("{:d}", process.pid().value()), ProcFSComponentsRegistrar::the().root_folder())
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, m_associated_process(process)
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{
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}
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}
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