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5582a0a254
Since we know who's holding the lock, and we're gonna have to yield anyway, we can just ask the scheduler to donate any remaining ticks to that process.
318 lines
8.3 KiB
C++
318 lines
8.3 KiB
C++
#include "SyntheticFileSystem.h"
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#include "FileDescriptor.h"
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#include <LibC/errno_numbers.h>
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#include <AK/StdLibExtras.h>
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//#define SYNTHFS_DEBUG
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RetainPtr<SynthFS> SynthFS::create()
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{
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return adopt(*new SynthFS);
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}
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SynthFS::SynthFS()
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: m_lock("SynthFS")
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{
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}
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SynthFS::~SynthFS()
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{
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}
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bool SynthFS::initialize()
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{
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// Add a File for the root directory.
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// FIXME: This needs work.
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auto root = adopt(*new SynthFSInode(*this, RootInodeIndex));
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root->m_parent = { fsid(), RootInodeIndex };
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root->m_metadata.mode = 0040555;
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root->m_metadata.uid = 0;
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root->m_metadata.gid = 0;
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root->m_metadata.size = 0;
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root->m_metadata.mtime = mepoch;
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m_inodes.set(RootInodeIndex, move(root));
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return true;
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}
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RetainPtr<SynthFSInode> SynthFS::create_directory(String&& name)
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{
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auto file = adopt(*new SynthFSInode(*this, generate_inode_index()));
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file->m_name = move(name);
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file->m_metadata.size = 0;
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file->m_metadata.uid = 0;
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file->m_metadata.gid = 0;
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file->m_metadata.mode = 0040555;
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file->m_metadata.mtime = mepoch;
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return file;
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}
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RetainPtr<SynthFSInode> SynthFS::create_text_file(String&& name, ByteBuffer&& contents, mode_t mode)
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{
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auto file = adopt(*new SynthFSInode(*this, generate_inode_index()));
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file->m_data = contents;
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file->m_name = move(name);
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file->m_metadata.size = file->m_data.size();
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file->m_metadata.uid = 100;
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file->m_metadata.gid = 200;
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file->m_metadata.mode = mode;
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file->m_metadata.mtime = mepoch;
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return file;
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}
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RetainPtr<SynthFSInode> SynthFS::create_generated_file(String&& name, Function<ByteBuffer(SynthFSInode&)>&& generator, mode_t mode)
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{
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auto file = adopt(*new SynthFSInode(*this, generate_inode_index()));
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file->m_generator = move(generator);
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file->m_name = move(name);
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file->m_metadata.size = 0;
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file->m_metadata.uid = 0;
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file->m_metadata.gid = 0;
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file->m_metadata.mode = mode;
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file->m_metadata.mtime = mepoch;
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return file;
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}
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RetainPtr<SynthFSInode> SynthFS::create_generated_file(String&& name, Function<ByteBuffer(SynthFSInode&)>&& read_callback, Function<ssize_t(SynthFSInode&, const ByteBuffer&)>&& write_callback, mode_t mode)
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{
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auto file = adopt(*new SynthFSInode(*this, generate_inode_index()));
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file->m_generator = move(read_callback);
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file->m_write_callback = move(write_callback);
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file->m_name = move(name);
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file->m_metadata.size = 0;
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file->m_metadata.uid = 0;
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file->m_metadata.gid = 0;
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file->m_metadata.mode = mode;
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file->m_metadata.mtime = mepoch;
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return file;
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}
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InodeIdentifier SynthFS::add_file(RetainPtr<SynthFSInode>&& file, InodeIndex parent)
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{
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LOCKER(m_lock);
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ASSERT(file);
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auto it = m_inodes.find(parent);
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ASSERT(it != m_inodes.end());
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auto new_inode_id = file->identifier();
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file->m_metadata.inode = new_inode_id;
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file->m_parent = { fsid(), parent };
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(*it).value->m_children.append(file.ptr());
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m_inodes.set(new_inode_id.index(), move(file));
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return new_inode_id;
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}
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bool SynthFS::remove_file(InodeIndex inode)
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{
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LOCKER(m_lock);
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auto it = m_inodes.find(inode);
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if (it == m_inodes.end())
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return false;
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auto& file = *(*it).value;
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auto pit = m_inodes.find(file.m_parent.index());
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if (pit == m_inodes.end())
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return false;
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auto& parent = *(*pit).value;
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for (size_t i = 0; i < parent.m_children.size(); ++i) {
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if (parent.m_children[i]->m_metadata.inode.index() != inode) {
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continue;
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}
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parent.m_children.remove(i);
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break;
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}
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Vector<InodeIndex> indices_to_remove;
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indices_to_remove.ensure_capacity(file.m_children.size());
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for (auto& child : file.m_children)
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indices_to_remove.unchecked_append(child->m_metadata.inode.index());
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for (auto& index : indices_to_remove)
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remove_file(index);
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m_inodes.remove(inode);
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return true;
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}
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const char* SynthFS::class_name() const
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{
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return "synthfs";
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}
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InodeIdentifier SynthFS::root_inode() const
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{
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return { fsid(), 1 };
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}
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RetainPtr<Inode> SynthFS::create_inode(InodeIdentifier parentInode, const String& name, mode_t mode, unsigned size, int& error)
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{
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(void) parentInode;
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(void) name;
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(void) mode;
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(void) size;
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(void) error;
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kprintf("FIXME: Implement SyntheticFileSystem::create_inode().\n");
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return { };
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}
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RetainPtr<Inode> SynthFS::create_directory(InodeIdentifier, const String&, mode_t, int& error)
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{
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error = -EROFS;
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return nullptr;
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}
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auto SynthFS::generate_inode_index() -> InodeIndex
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{
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LOCKER(m_lock);
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return m_next_inode_index++;
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}
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RetainPtr<Inode> SynthFSInode::parent() const
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{
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LOCKER(m_lock);
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return fs().get_inode(m_parent);
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}
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RetainPtr<Inode> SynthFS::get_inode(InodeIdentifier inode) const
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{
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LOCKER(m_lock);
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auto it = m_inodes.find(inode.index());
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if (it == m_inodes.end())
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return { };
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return (*it).value;
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}
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SynthFSInode::SynthFSInode(SynthFS& fs, unsigned index)
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: Inode(fs, index)
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{
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m_metadata.inode = { fs.fsid(), index };
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}
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SynthFSInode::~SynthFSInode()
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{
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}
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InodeMetadata SynthFSInode::metadata() const
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{
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return m_metadata;
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}
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ssize_t SynthFSInode::read_bytes(off_t offset, size_t count, byte* buffer, FileDescriptor* descriptor) const
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{
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LOCKER(m_lock);
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#ifdef SYNTHFS_DEBUG
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kprintf("SynthFS: read_bytes %u\n", index());
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#endif
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ASSERT(offset >= 0);
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ASSERT(buffer);
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ByteBuffer generated_data;
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if (m_generator) {
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if (!descriptor) {
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generated_data = m_generator(const_cast<SynthFSInode&>(*this));
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} else {
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if (!descriptor->generator_cache())
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descriptor->generator_cache() = m_generator(const_cast<SynthFSInode&>(*this));
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generated_data = descriptor->generator_cache();
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}
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}
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auto* data = generated_data ? &generated_data : &m_data;
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ssize_t nread = min(static_cast<off_t>(data->size() - offset), static_cast<off_t>(count));
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memcpy(buffer, data->pointer() + offset, nread);
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if (nread == 0 && descriptor && descriptor->generator_cache())
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descriptor->generator_cache().clear();
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return nread;
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}
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bool SynthFSInode::traverse_as_directory(Function<bool(const FS::DirectoryEntry&)> callback) const
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{
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LOCKER(m_lock);
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#ifdef SYNTHFS_DEBUG
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kprintf("SynthFS: traverse_as_directory %u\n", index());
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#endif
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if (!m_metadata.is_directory())
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return false;
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callback({ ".", 1, m_metadata.inode, 2 });
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callback({ "..", 2, m_parent, 2 });
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for (auto& child : m_children)
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callback({ child->m_name.characters(), child->m_name.length(), child->m_metadata.inode, child->m_metadata.is_directory() ? (byte)2 : (byte)1 });
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return true;
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}
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InodeIdentifier SynthFSInode::lookup(const String& name)
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{
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LOCKER(m_lock);
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ASSERT(is_directory());
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if (name == ".")
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return identifier();
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if (name == "..")
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return m_parent;
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for (auto& child : m_children) {
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if (child->m_name == name)
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return child->identifier();
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}
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return { };
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}
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String SynthFSInode::reverse_lookup(InodeIdentifier child_id)
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{
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LOCKER(m_lock);
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ASSERT(is_directory());
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for (auto& child : m_children) {
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if (child->identifier() == child_id)
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return child->m_name;
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}
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return { };
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}
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void SynthFSInode::flush_metadata()
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{
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}
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ssize_t SynthFSInode::write_bytes(off_t offset, size_t size, const byte* buffer, FileDescriptor*)
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{
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LOCKER(m_lock);
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if (!m_write_callback)
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return -EPERM;
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// FIXME: Being able to write into SynthFS at a non-zero offset seems like something we should support..
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ASSERT(offset == 0);
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bool success = m_write_callback(*this, ByteBuffer::wrap((byte*)buffer, size));
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ASSERT(success);
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return 0;
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}
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bool SynthFSInode::add_child(InodeIdentifier child_id, const String& name, byte file_type, int& error)
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{
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(void) child_id;
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(void) name;
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(void) file_type;
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(void) error;
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ASSERT_NOT_REACHED();
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return false;
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}
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bool SynthFSInode::remove_child(const String& name, int& error)
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{
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(void) name;
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(void) error;
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ASSERT_NOT_REACHED();
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return false;
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}
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SynthFSInodeCustomData::~SynthFSInodeCustomData()
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{
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}
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size_t SynthFSInode::directory_entry_count() const
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{
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LOCKER(m_lock);
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ASSERT(is_directory());
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// NOTE: The 2 is for '.' and '..'
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return m_children.size() + 2;
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}
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bool SynthFSInode::chmod(mode_t, int& error)
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{
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error = -EPERM;
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return false;
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}
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