mirror of
https://github.com/RPCS3/rpcs3.git
synced 2025-07-04 22:11:26 +12:00
738 lines
No EOL
18 KiB
C++
738 lines
No EOL
18 KiB
C++
#include "stdafx.h"
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#include "SC_FileSystem.h"
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#include "Emu/SysCalls/SysCalls.h"
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extern Module sys_fs;
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enum
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{
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IDFlag_File = 1,
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IDFlag_Dir = 2,
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};
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struct FsRingBuffer
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{
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u64 m_ringbuf_size;
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u64 m_block_size;
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u64 m_transfer_rate;
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u32 m_copy;
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};
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struct FsRingBufferConfig
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{
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FsRingBuffer m_ring_buffer;
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u32 m_buffer;
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u64 m_fs_status;
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u64 m_regid;
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u32 m_alloc_mem_size;
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u32 m_current_addr;
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FsRingBufferConfig()
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: m_fs_status(CELL_FS_ST_NOT_INITIALIZED)
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, m_regid(0)
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, m_alloc_mem_size(0)
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, m_current_addr(0)
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{
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memset(&m_ring_buffer, 0, sizeof(FsRingBuffer));
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}
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~FsRingBufferConfig()
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{
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memset(&m_ring_buffer, 0, sizeof(FsRingBuffer));
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}
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} m_fs_config;
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int cellFsOpen(u32 path_addr, int flags, mem32_t fd, mem32_t arg, u64 size)
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{
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const std::string& path = Memory.ReadString(path_addr);
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sys_fs.Log("cellFsOpen(path=\"%s\", flags=0x%x, fd_addr=0x%x, arg_addr=0x%x, size=0x%llx)",
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path.c_str(), flags, fd.GetAddr(), arg.GetAddr(), size);
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const std::string& ppath = path;
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//ConLog.Warning("path: %s [%s]", ppath.c_str(), path.c_str());
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s32 _oflags = flags;
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if(flags & CELL_O_CREAT)
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{
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_oflags &= ~CELL_O_CREAT;
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Emu.GetVFS().CreateFile(ppath);
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}
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vfsOpenMode o_mode;
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switch(flags & CELL_O_ACCMODE)
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{
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case CELL_O_RDONLY:
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_oflags &= ~CELL_O_RDONLY;
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o_mode = vfsRead;
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break;
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case CELL_O_WRONLY:
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_oflags &= ~CELL_O_WRONLY;
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if(flags & CELL_O_APPEND)
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{
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_oflags &= ~CELL_O_APPEND;
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o_mode = vfsWriteAppend;
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}
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else if(flags & CELL_O_EXCL)
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{
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_oflags &= ~CELL_O_EXCL;
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o_mode = vfsWriteExcl;
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}
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else //if (flags & CELL_O_TRUNC)
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{
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_oflags &= ~CELL_O_TRUNC;
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o_mode = vfsWrite;
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}
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break;
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case CELL_O_RDWR:
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_oflags &= ~CELL_O_RDWR;
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if (flags & CELL_O_TRUNC)
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{
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_oflags &= ~CELL_O_TRUNC;
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//truncate file before opening it as read/write
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Emu.GetVFS().OpenFile(ppath, vfsWrite);
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}
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o_mode = vfsReadWrite;
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break;
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}
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if(_oflags != 0)
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{
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sys_fs.Error("\"%s\" has unknown flags! flags: 0x%08x", ppath.c_str(), flags);
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return CELL_EINVAL;
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}
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vfsFileBase* stream = Emu.GetVFS().OpenFile(ppath, o_mode);
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if(!stream || !stream->IsOpened())
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{
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sys_fs.Error("\"%s\" not found! flags: 0x%08x", ppath.c_str(), flags);
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return CELL_ENOENT;
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}
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fd = sys_fs.GetNewId(stream, IDFlag_File);
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ConLog.Warning("*** cellFsOpen(path=\"%s\"): fd = %d", path.c_str(), fd.GetValue());
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return CELL_OK;
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}
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int cellFsRead(u32 fd, u32 buf_addr, u64 nbytes, mem64_t nread)
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{
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sys_fs.Log("cellFsRead(fd=%d, buf_addr=0x%x, nbytes=0x%llx, nread_addr=0x%x)",
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fd, buf_addr, nbytes, nread.GetAddr());
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vfsStream* file;
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if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
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if (nread.GetAddr() && !nread.IsGood()) return CELL_EFAULT;
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u32 res = 0;
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u32 count = nbytes;
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if (nbytes != (u64)count) return CELL_ENOMEM;
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if (!Memory.IsGoodAddr(buf_addr)) return CELL_EFAULT;
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if (count) if (u32 frag = buf_addr & 4095) // memory page fragment
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{
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u32 req = min(count, 4096 - frag);
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u32 read = file->Read(Memory + buf_addr, req);
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buf_addr += req;
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res += read;
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count -= req;
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if (read < req) goto fin;
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}
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for (u32 pages = count / 4096; pages > 0; pages--) // full pages
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{
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if (!Memory.IsGoodAddr(buf_addr)) goto fin; // ??? (probably EFAULT)
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u32 read = file->Read(Memory + buf_addr, 4096);
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buf_addr += 4096;
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res += read;
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count -= 4096;
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if (read < 4096) goto fin;
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}
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if (count) // last fragment
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{
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if (!Memory.IsGoodAddr(buf_addr)) goto fin;
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res += file->Read(Memory + buf_addr, count);
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}
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fin:
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if (nread.GetAddr()) nread = res; // write value if not NULL
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return CELL_OK;
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}
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int cellFsWrite(u32 fd, u32 buf_addr, u64 nbytes, mem64_t nwrite)
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{
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sys_fs.Log("cellFsWrite(fd=%d, buf_addr=0x%x, nbytes=0x%llx, nwrite_addr=0x%x)",
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fd, buf_addr, nbytes, nwrite.GetAddr());
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vfsStream* file;
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if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
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if(Memory.IsGoodAddr(buf_addr) && !Memory.IsGoodAddr(buf_addr, nbytes))
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{
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MemoryBlock& block = Memory.GetMemByAddr(buf_addr);
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nbytes = block.GetSize() - (buf_addr - block.GetStartAddr());
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}
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const u64 res = nbytes ? file->Write(Memory.GetMemFromAddr(buf_addr), nbytes) : 0;
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if(nwrite.IsGood())
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nwrite = res;
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return CELL_OK;
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}
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int cellFsClose(u32 fd)
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{
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sys_fs.Warning("cellFsClose(fd=%d)", fd);
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if(!Emu.GetIdManager().RemoveID(fd))
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return CELL_ESRCH;
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return CELL_OK;
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}
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int cellFsOpendir(u32 path_addr, mem32_t fd)
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{
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const std::string& path = Memory.ReadString(path_addr);
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sys_fs.Warning("cellFsOpendir(path=\"%s\", fd_addr=0x%x)", path.c_str(), fd.GetAddr());
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if(!Memory.IsGoodAddr(path_addr) || !fd.IsGood())
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return CELL_EFAULT;
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vfsDirBase* dir = Emu.GetVFS().OpenDir(path);
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if(!dir || !dir->IsOpened())
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{
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delete dir;
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return CELL_ENOENT;
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}
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fd = sys_fs.GetNewId(dir, IDFlag_Dir);
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return CELL_OK;
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}
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int cellFsReaddir(u32 fd, mem_ptr_t<CellFsDirent> dir, mem64_t nread)
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{
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sys_fs.Log("cellFsReaddir(fd=%d, dir_addr=0x%x, nread_addr=0x%x)", fd, dir.GetAddr(), nread.GetAddr());
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vfsDirBase* directory;
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if(!sys_fs.CheckId(fd, directory))
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return CELL_ESRCH;
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if(!dir.IsGood() || !nread.IsGood())
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return CELL_EFAULT;
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const DirEntryInfo* info = directory->Read();
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if(info)
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{
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nread = 1;
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Memory.WriteString(dir.GetAddr()+2, info->name);
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dir->d_namlen = info->name.length();
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dir->d_type = (info->flags & DirEntry_TypeFile) ? CELL_FS_TYPE_REGULAR : CELL_FS_TYPE_DIRECTORY;
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}
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else
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{
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nread = 0;
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}
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return CELL_OK;
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}
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int cellFsClosedir(u32 fd)
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{
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sys_fs.Log("cellFsClosedir(fd=%d)", fd);
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if(!Emu.GetIdManager().RemoveID(fd))
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return CELL_ESRCH;
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return CELL_OK;
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}
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int cellFsStat(const u32 path_addr, mem_ptr_t<CellFsStat> sb)
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{
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const std::string& path = Memory.ReadString(path_addr);
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sys_fs.Log("cellFsStat(path=\"%s\", sb_addr: 0x%x)", path.c_str(), sb.GetAddr());
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sb->st_mode =
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CELL_FS_S_IRUSR | CELL_FS_S_IWUSR | CELL_FS_S_IXUSR |
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CELL_FS_S_IRGRP | CELL_FS_S_IWGRP | CELL_FS_S_IXGRP |
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CELL_FS_S_IROTH | CELL_FS_S_IWOTH | CELL_FS_S_IXOTH;
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sb->st_uid = 0;
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sb->st_gid = 0;
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sb->st_atime_ = 0; //TODO
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sb->st_mtime_ = 0; //TODO
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sb->st_ctime_ = 0; //TODO
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sb->st_blksize = 4096;
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{
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vfsDir dir(path);
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if(dir.IsOpened())
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{
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sb->st_mode |= CELL_FS_S_IFDIR;
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return CELL_OK;
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}
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}
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{
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vfsFile f(path);
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if(f.IsOpened())
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{
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sb->st_mode |= CELL_FS_S_IFREG;
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sb->st_size = f.GetSize();
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return CELL_OK;
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}
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}
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sys_fs.Warning("cellFsStat: \"%s\" not found.", path.c_str());
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return CELL_ENOENT;
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}
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int cellFsFstat(u32 fd, mem_ptr_t<CellFsStat> sb)
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{
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sys_fs.Log("cellFsFstat(fd=%d, sb_addr: 0x%x)", fd, sb.GetAddr());
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u32 attr;
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vfsStream* file;
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if(!sys_fs.CheckId(fd, file, attr) || attr != IDFlag_File) return CELL_ESRCH;
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sb->st_mode =
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CELL_FS_S_IRUSR | CELL_FS_S_IWUSR | CELL_FS_S_IXUSR |
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CELL_FS_S_IRGRP | CELL_FS_S_IWGRP | CELL_FS_S_IXGRP |
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CELL_FS_S_IROTH | CELL_FS_S_IWOTH | CELL_FS_S_IXOTH;
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sb->st_mode |= CELL_FS_S_IFREG; //TODO: dir CELL_FS_S_IFDIR
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sb->st_uid = 0;
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sb->st_gid = 0;
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sb->st_atime_ = 0; //TODO
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sb->st_mtime_ = 0; //TODO
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sb->st_ctime_ = 0; //TODO
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sb->st_size = file->GetSize();
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sb->st_blksize = 4096;
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return CELL_OK;
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}
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int cellFsMkdir(u32 path_addr, u32 mode)
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{
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const std::string& ps3_path = Memory.ReadString(path_addr);
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sys_fs.Log("cellFsMkdir(path=\"%s\", mode=0x%x)", ps3_path.c_str(), mode);
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/*vfsDir dir;
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if(dir.IsExists(ps3_path))
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return CELL_EEXIST;
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if(!dir.Create(ps3_path))
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return CELL_EBUSY;*/
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if(Emu.GetVFS().ExistsDir(ps3_path))
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return CELL_EEXIST;
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if(!Emu.GetVFS().CreateDir(ps3_path))
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return CELL_EBUSY;
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return CELL_OK;
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}
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int cellFsRename(u32 from_addr, u32 to_addr)
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{
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const std::string& ps3_from = Memory.ReadString(from_addr);
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const std::string& ps3_to = Memory.ReadString(to_addr);
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{
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vfsDir dir;
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if(dir.IsExists(ps3_from))
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{
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if(!dir.Rename(ps3_from, ps3_to))
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return CELL_EBUSY;
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return CELL_OK;
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}
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}
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{
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vfsFile f;
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if(f.Exists(ps3_from))
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{
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if(!f.Rename(ps3_from, ps3_to))
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return CELL_EBUSY;
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return CELL_OK;
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}
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}
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return CELL_ENOENT;
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}
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int cellFsRmdir(u32 path_addr)
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{
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const std::string& ps3_path = Memory.ReadString(path_addr);
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sys_fs.Log("cellFsRmdir(path=\"%s\")", ps3_path.c_str());
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vfsDir d;
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if(!d.IsExists(ps3_path))
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return CELL_ENOENT;
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if(!d.Remove(ps3_path))
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return CELL_EBUSY;
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return CELL_OK;
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}
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int cellFsUnlink(u32 path_addr)
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{
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const std::string& ps3_path = Memory.ReadString(path_addr);
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sys_fs.Warning("cellFsUnlink(path=\"%s\")", ps3_path.c_str());
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if (ps3_path.empty())
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return CELL_EFAULT;
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if (Emu.GetVFS().ExistsDir(ps3_path))
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return CELL_EISDIR;
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if (!Emu.GetVFS().ExistsFile(ps3_path))
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return CELL_ENOENT;
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if (!Emu.GetVFS().RemoveFile(ps3_path))
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return CELL_EACCES;
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return CELL_OK;
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}
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int cellFsLseek(u32 fd, s64 offset, u32 whence, mem64_t pos)
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{
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vfsSeekMode seek_mode;
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sys_fs.Log("cellFsLseek(fd=%d, offset=0x%llx, whence=0x%x, pos_addr=0x%x)", fd, offset, whence, pos.GetAddr());
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switch(whence)
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{
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case CELL_SEEK_SET: seek_mode = vfsSeekSet; break;
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case CELL_SEEK_CUR: seek_mode = vfsSeekCur; break;
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case CELL_SEEK_END: seek_mode = vfsSeekEnd; break;
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default:
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sys_fs.Error(fd, "Unknown seek whence! (0x%x)", whence);
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return CELL_EINVAL;
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}
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u32 attr;
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vfsStream* file;
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if(!sys_fs.CheckId(fd, file, attr) || attr != IDFlag_File) return CELL_ESRCH;
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pos = file->Seek(offset, seek_mode);
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return CELL_OK;
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}
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int cellFsFtruncate(u32 fd, u64 size)
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{
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sys_fs.Log("cellFsFtruncate(fd=%d, size=%lld)", fd, size);
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u32 attr;
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vfsStream* file;
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if(!sys_fs.CheckId(fd, file, attr) || attr != IDFlag_File) return CELL_ESRCH;
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u64 initialSize = file->GetSize();
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if (initialSize < size)
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{
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u64 last_pos = file->Tell();
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file->Seek(0, vfsSeekEnd);
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static const char nullbyte = 0;
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file->Seek(size-initialSize-1, vfsSeekCur);
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file->Write(&nullbyte, sizeof(char));
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file->Seek(last_pos, vfsSeekSet);
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}
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if (initialSize > size)
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{
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// (TODO)
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}
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return CELL_OK;
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}
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int cellFsTruncate(u32 path_addr, u64 size)
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{
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const std::string& path = Memory.ReadString(path_addr);
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sys_fs.Log("cellFsTruncate(path=\"%s\", size=%lld)", path.c_str(), size);
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vfsFile f(path, vfsReadWrite);
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if(!f.IsOpened())
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{
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sys_fs.Warning("cellFsTruncate: \"%s\" not found.", path.c_str());
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return CELL_ENOENT;
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}
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u64 initialSize = f.GetSize();
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if (initialSize < size)
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{
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u64 last_pos = f.Tell();
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f.Seek(0, vfsSeekEnd);
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static const char nullbyte = 0;
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f.Seek(size-initialSize-1, vfsSeekCur);
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f.Write(&nullbyte, sizeof(char));
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f.Seek(last_pos, vfsSeekSet);
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}
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if (initialSize > size)
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{
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// (TODO)
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}
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return CELL_OK;
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}
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int cellFsFGetBlockSize(u32 fd, mem64_t sector_size, mem64_t block_size)
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{
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sys_fs.Log("cellFsFGetBlockSize(fd=%d, sector_size_addr: 0x%x, block_size_addr: 0x%x)", fd, sector_size.GetAddr(), block_size.GetAddr());
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vfsStream* file;
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if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
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sector_size = 4096; // ?
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block_size = 4096; // ?
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return CELL_OK;
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}
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int cellFsGetBlockSize(u32 path_addr, mem64_t sector_size, mem64_t block_size)
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{
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sys_fs.Log("cellFsGetBlockSize(file: %s, sector_size_addr: 0x%x, block_size_addr: 0x%x)", Memory.ReadString(path_addr).c_str(), sector_size.GetAddr(), block_size.GetAddr());
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sector_size = 4096; // ?
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block_size = 4096; // ?
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return CELL_OK;
|
|
}
|
|
|
|
int cellFsGetFreeSize(u32 path_addr, mem32_t block_size, mem64_t block_count)
|
|
{
|
|
const std::string& ps3_path = Memory.ReadString(path_addr);
|
|
sys_fs.Warning("cellFsGetFreeSize(path=\"%s\", block_size_addr=0x%x, block_count_addr=0x%x)",
|
|
ps3_path.c_str(), block_size.GetAddr(), block_count.GetAddr());
|
|
|
|
if (!Memory.IsGoodAddr(path_addr) || !block_size.IsGood() || !block_count.IsGood())
|
|
return CELL_EFAULT;
|
|
|
|
if (ps3_path.empty())
|
|
return CELL_EINVAL;
|
|
|
|
// TODO: Get real values. Currently, it always returns 40 GB of free space divided in 4 KB blocks
|
|
block_size = 4096; // ?
|
|
block_count = 10485760; // ?
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsGetDirectoryEntries(u32 fd, mem_ptr_t<CellFsDirectoryEntry> entries, u32 entries_size, mem32_t data_count)
|
|
{
|
|
sys_fs.Log("cellFsGetDirectoryEntries(fd=%d, entries_addr=0x%x, entries_size = 0x%x, data_count_addr=0x%x)", fd, entries.GetAddr(), entries_size, data_count.GetAddr());
|
|
|
|
vfsDirBase* directory;
|
|
if(!sys_fs.CheckId(fd, directory))
|
|
return CELL_ESRCH;
|
|
if(!entries.IsGood() || !data_count.IsGood())
|
|
return CELL_EFAULT;
|
|
|
|
const DirEntryInfo* info = directory->Read();
|
|
if(info)
|
|
{
|
|
data_count = 1;
|
|
Memory.WriteString(entries.GetAddr()+2, info->name);
|
|
entries->entry_name.d_namlen = info->name.length();
|
|
entries->entry_name.d_type = (info->flags & DirEntry_TypeFile) ? CELL_FS_TYPE_REGULAR : CELL_FS_TYPE_DIRECTORY;
|
|
|
|
entries->attribute.st_mode =
|
|
CELL_FS_S_IRUSR | CELL_FS_S_IWUSR | CELL_FS_S_IXUSR |
|
|
CELL_FS_S_IRGRP | CELL_FS_S_IWGRP | CELL_FS_S_IXGRP |
|
|
CELL_FS_S_IROTH | CELL_FS_S_IWOTH | CELL_FS_S_IXOTH;
|
|
|
|
entries->attribute.st_uid = 0;
|
|
entries->attribute.st_gid = 0;
|
|
entries->attribute.st_atime_ = 0; //TODO
|
|
entries->attribute.st_mtime_ = 0; //TODO
|
|
entries->attribute.st_ctime_ = 0; //TODO
|
|
entries->attribute.st_blksize = 4096;
|
|
}
|
|
else
|
|
{
|
|
data_count = 0;
|
|
}
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadInit(u32 fd, mem_ptr_t<CellFsRingBuffer> ringbuf)
|
|
{
|
|
sys_fs.Warning("cellFsStReadInit(fd=%d, ringbuf_addr=0x%x)", fd, ringbuf.GetAddr());
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
if(!ringbuf.IsGood())
|
|
return CELL_EFAULT;
|
|
|
|
FsRingBuffer& buffer = m_fs_config.m_ring_buffer;
|
|
|
|
buffer.m_block_size = ringbuf->block_size;
|
|
buffer.m_copy = ringbuf->copy;
|
|
buffer.m_ringbuf_size = ringbuf->ringbuf_size;
|
|
buffer.m_transfer_rate = ringbuf->transfer_rate;
|
|
|
|
if(buffer.m_ringbuf_size < 0x40000000) // If the size is less than 1MB
|
|
m_fs_config.m_alloc_mem_size = ((ringbuf->ringbuf_size + 64 * 1024 - 1) / (64 * 1024)) * (64 * 1024);
|
|
m_fs_config.m_alloc_mem_size = ((ringbuf->ringbuf_size + 1024 * 1024 - 1) / (1024 * 1024)) * (1024 * 1024);
|
|
|
|
// alloc memory
|
|
m_fs_config.m_buffer = Memory.Alloc(m_fs_config.m_alloc_mem_size, 1024);
|
|
memset(Memory + m_fs_config.m_buffer, 0, m_fs_config.m_alloc_mem_size);
|
|
|
|
m_fs_config.m_fs_status = CELL_FS_ST_INITIALIZED;
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadFinish(u32 fd)
|
|
{
|
|
sys_fs.Warning("cellFsStReadFinish(fd=%d)", fd);
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
Memory.Free(m_fs_config.m_buffer);
|
|
m_fs_config.m_fs_status = CELL_FS_ST_NOT_INITIALIZED;
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadGetRingBuf(u32 fd, mem_ptr_t<CellFsRingBuffer> ringbuf)
|
|
{
|
|
sys_fs.Warning("cellFsStReadGetRingBuf(fd=%d, ringbuf_addr=0x%x)", fd, ringbuf.GetAddr());
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
if(!ringbuf.IsGood())
|
|
return CELL_EFAULT;
|
|
|
|
FsRingBuffer& buffer = m_fs_config.m_ring_buffer;
|
|
|
|
ringbuf->block_size = buffer.m_block_size;
|
|
ringbuf->copy = buffer.m_copy;
|
|
ringbuf->ringbuf_size = buffer.m_ringbuf_size;
|
|
ringbuf->transfer_rate = buffer.m_transfer_rate;
|
|
|
|
sys_fs.Warning("*** fs stream config: block_size=0x%llx, copy=%d, ringbuf_size = 0x%llx, transfer_rate = 0x%llx", ringbuf->block_size, ringbuf->copy,
|
|
ringbuf->ringbuf_size, ringbuf->transfer_rate);
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadGetStatus(u32 fd, mem64_t status)
|
|
{
|
|
sys_fs.Warning("cellFsStReadGetRingBuf(fd=%d, status_addr=0x%x)", fd, status.GetAddr());
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
status = m_fs_config.m_fs_status;
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadGetRegid(u32 fd, mem64_t regid)
|
|
{
|
|
sys_fs.Warning("cellFsStReadGetRingBuf(fd=%d, regid_addr=0x%x)", fd, regid.GetAddr());
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
regid = m_fs_config.m_regid;
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadStart(u32 fd, u64 offset, u64 size)
|
|
{
|
|
sys_fs.Warning("TODO: cellFsStReadStart(fd=%d, offset=0x%llx, size=0x%llx)", fd, offset, size);
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
m_fs_config.m_current_addr = m_fs_config.m_buffer + (u32)offset;
|
|
m_fs_config.m_fs_status = CELL_FS_ST_PROGRESS;
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadStop(u32 fd)
|
|
{
|
|
sys_fs.Warning("cellFsStReadStop(fd=%d)", fd);
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
m_fs_config.m_fs_status = CELL_FS_ST_STOP;
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStRead(u32 fd, u32 buf_addr, u64 size, mem64_t rsize)
|
|
{
|
|
sys_fs.Warning("TODO: cellFsStRead(fd=%d, buf_addr=0x%x, size=0x%llx, rsize_addr = 0x%x)", fd, buf_addr, size, rsize.GetAddr());
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
if (rsize.GetAddr() && !rsize.IsGood()) return CELL_EFAULT;
|
|
|
|
m_fs_config.m_regid += size;
|
|
rsize = m_fs_config.m_regid;
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadGetCurrentAddr(u32 fd, mem32_t addr_addr, mem64_t size)
|
|
{
|
|
sys_fs.Warning("TODO: cellFsStReadGetCurrentAddr(fd=%d, addr_addr=0x%x, size_addr = 0x%x)", fd, addr_addr.GetAddr(), size.GetAddr());
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
if (!addr_addr.IsGood() && !size.IsGood()) return CELL_EFAULT;
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadPutCurrentAddr(u32 fd, u32 addr_addr, u64 size)
|
|
{
|
|
sys_fs.Warning("TODO: cellFsStReadPutCurrentAddr(fd=%d, addr_addr=0x%x, size = 0x%llx)", fd, addr_addr, size);
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
if (!Memory.IsGoodAddr(addr_addr)) return CELL_EFAULT;
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadWait(u32 fd, u64 size)
|
|
{
|
|
sys_fs.Warning("TODO: cellFsStReadWait(fd=%d, size = 0x%llx)", fd, size);
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
return CELL_OK;
|
|
}
|
|
|
|
int cellFsStReadWaitCallback(u32 fd, u64 size, mem_func_ptr_t<void (*)(int xfd, u64 xsize)> func)
|
|
{
|
|
sys_fs.Warning("TODO: cellFsStReadWaitCallback(fd=%d, size = 0x%llx, func_addr = 0x%x)", fd, size, func.GetAddr());
|
|
|
|
if (!func.IsGood())
|
|
return CELL_EFAULT;
|
|
|
|
vfsStream* file;
|
|
if(!sys_fs.CheckId(fd, file)) return CELL_ESRCH;
|
|
|
|
return CELL_OK;
|
|
} |