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tessesframework/src/Filesystem/RelativeFilesystem.cpp
Mike Nolan 313e75b14c
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Fix license compliance and fix things up
2026-07-31 18:51:17 -05:00

184 lines
6.4 KiB
C++

/*
TessesFramework a library to make C++ easier for me, used in CrossLang:
https://git.tesses.org/tesses50/crosslang
Copyright (C) 2026 Mike Nolan
SPDX-License-Identifier: GPL-3.0-or-later WITH TessesFramework-Exception-1.0
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <https://www.gnu.org/licenses/>.
*/
#include "TessesFramework/Filesystem/RelativeFilesystem.hpp"
namespace Tesses::Framework::Filesystem {
VFSPath RelativeFilesystem::ToParent(VFSPath path) {
if (path.relative) {
return path.MakeAbsolute(GetWorking());
} else {
return path;
}
}
RelativeFilesystem::RelativeFilesystem(std::shared_ptr<VFS> vfs,
VFSPath working)
: vfs(vfs), working(working) {}
VFSPath RelativeFilesystem::GetWorking() {
mtx.Lock();
auto p = this->working;
mtx.Unlock();
return p;
}
void RelativeFilesystem::SetWorking(VFSPath path) {
mtx.Lock();
this->working = path;
mtx.Unlock();
}
std::shared_ptr<VFS> RelativeFilesystem::GetVFS() { return vfs; }
std::shared_ptr<Tesses::Framework::Streams::Stream>
RelativeFilesystem::OpenFile(VFSPath path, std::string mode) {
return this->vfs->OpenFile(ToParent(path), mode);
}
void RelativeFilesystem::CreateDirectory(VFSPath path) {
this->vfs->CreateDirectory(ToParent(path));
}
void RelativeFilesystem::DeleteDirectory(VFSPath path) {
this->vfs->DeleteDirectory(ToParent(path));
}
void RelativeFilesystem::DeleteFile(VFSPath path) {
this->vfs->DeleteFile(ToParent(path));
}
void RelativeFilesystem::CreateSymlink(VFSPath existingFile,
VFSPath symlinkFile) {
this->vfs->CreateSymlink(existingFile, ToParent(symlinkFile));
}
VFSPathEnumerator RelativeFilesystem::EnumeratePaths(VFSPath path) {
VFSPathEnumerator *enumerator =
this->vfs->EnumeratePaths(ToParent(path)).MakePointer();
return VFSPathEnumerator(
[enumerator, path, this](VFSPath &path0) -> bool {
if (enumerator->MoveNext()) {
path0 = path / enumerator->Current.GetFileName();
return true;
}
return false;
},
[enumerator]() -> void { delete enumerator; });
}
void RelativeFilesystem::CreateHardlink(VFSPath existingFile, VFSPath newName) {
if (existingFile.relative || newName.relative) {
auto working = GetWorking();
if (existingFile.relative)
existingFile = existingFile.MakeAbsolute(working);
if (newName.relative)
newName = newName.MakeAbsolute(working);
}
vfs->CreateHardlink(existingFile, newName);
}
void RelativeFilesystem::MoveFile(VFSPath src, VFSPath dest) {
if (src.relative || dest.relative) {
auto working = GetWorking();
if (src.relative)
src = src.MakeAbsolute(working);
if (dest.relative)
dest = dest.MakeAbsolute(working);
}
vfs->MoveFile(src, dest);
}
void RelativeFilesystem::MoveDirectory(VFSPath src, VFSPath dest) {
if (src.relative || dest.relative) {
auto working = GetWorking();
if (src.relative)
src = src.MakeAbsolute(working);
if (dest.relative)
dest = dest.MakeAbsolute(working);
}
vfs->MoveDirectory(src, dest);
}
void RelativeFilesystem::DeleteDirectoryRecurse(VFSPath path) {
vfs->DeleteDirectoryRecurse(ToParent(path));
}
VFSPath RelativeFilesystem::ReadLink(VFSPath path) {
return vfs->ReadLink(ToParent(path));
}
std::string RelativeFilesystem::VFSPathToSystem(VFSPath path) {
return vfs->VFSPathToSystem(path);
}
VFSPath RelativeFilesystem::SystemToVFSPath(std::string path) {
return vfs->SystemToVFSPath(path);
}
void RelativeFilesystem::SetDate(VFSPath path, Date::DateTime lastWrite,
Date::DateTime lastAccess) {
vfs->SetDate(ToParent(path), lastWrite, lastAccess);
}
bool RelativeFilesystem::StatVFS(VFSPath path, StatVFSData &vfsData) {
return vfs->StatVFS(ToParent(path), vfsData);
}
bool RelativeFilesystem::Stat(VFSPath path, StatData &data) {
return vfs->Stat(ToParent(path), data);
}
void RelativeFilesystem::Chown(VFSPath path, uint32_t uid, uint32_t gid) {
vfs->Chown(ToParent(path), uid, gid);
}
void RelativeFilesystem::Chmod(VFSPath path, uint32_t mode) {
vfs->Chmod(ToParent(path), mode);
}
FIFOCreationResult RelativeFilesystem::CreateFIFO(VFSPath path, uint32_t mode) {
return vfs->CreateFIFO(ToParent(path), mode);
}
void RelativeFilesystem::Lock(VFSPath path) { vfs->Lock(ToParent(path)); }
void RelativeFilesystem::Unlock(VFSPath path) { vfs->Unlock(ToParent(path)); }
RelativeFilesystem::Watcher::Watcher(std::shared_ptr<RelativeFilesystem> vfs,
VFSPath path)
: FSWatcher(vfs, path) {
this->watcher = FSWatcher::Create(vfs->vfs, vfs->ToParent(path));
this->watcher->event = [vfs, this, path](FSWatcherEvent &evt) -> void {
if (path.relative) {
auto working = vfs->GetWorking();
FSWatcherEvent e2 = evt;
if (evt.IsEvent(FSWatcherEventType::Moved)) {
e2.dest = e2.dest.MakeRelative(working);
}
e2.src = e2.src.MakeRelative(working);
if (this->event)
this->event(e2);
} else {
if (this->event)
this->event(evt);
}
};
}
void RelativeFilesystem::Watcher::SetEnabledImpl(bool enabled) {
this->enabled = enabled;
this->watcher->events = this->events;
this->watcher->SetEnabled(enabled);
}
RelativeFilesystem::Watcher::~Watcher() { this->watcher->SetEnabled(false); }
std::shared_ptr<FSWatcher>
RelativeFilesystem::CreateWatcher(std::shared_ptr<VFS> vfs, VFSPath path) {
auto sdfs = std::dynamic_pointer_cast<RelativeFilesystem>(vfs);
if (sdfs) {
return std::make_shared<Watcher>(sdfs, path);
}
return VFS::CreateWatcher(vfs, path);
}
} // namespace Tesses::Framework::Filesystem