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physfs.c

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3401 lines (2730 loc) · 95.9 KB
 
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/**
* PhysicsFS; a portable, flexible file i/o abstraction.
*
* Documentation is in physfs.h. It's verbose, honest. :)
*
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* Please see the file LICENSE.txt in the source's root directory.
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*
* This file written by Ryan C. Gordon.
*/
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#define __PHYSICSFS_INTERNAL__
#include "physfs_internal.h"
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#if defined(_MSC_VER)
#include <stdarg.h>
/* this code came from https://stackoverflow.com/a/8712996 */
int __PHYSFS_msvc_vsnprintf(char *outBuf, size_t size, const char *format, va_list ap)
{
int count = -1;
if (size != 0)
count = _vsnprintf_s(outBuf, size, _TRUNCATE, format, ap);
if (count == -1)
count = _vscprintf(format, ap);
return count;
}
int __PHYSFS_msvc_snprintf(char *outBuf, size_t size, const char *format, ...)
{
int count;
va_list ap;
va_start(ap, format);
count = __PHYSFS_msvc_vsnprintf(outBuf, size, format, ap);
va_end(ap);
return count;
}
#endif
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typedef struct __PHYSFS_DIRHANDLE__
{
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void *opaque; /* Instance data unique to the archiver. */
char *dirName; /* Path to archive in platform-dependent notation. */
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char *mountPoint; /* Mountpoint in virtual file tree. */
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char *root; /* subdirectory of archiver to use as root of archive (NULL for actual root) */
size_t rootlen; /* subdirectory of archiver to use as root of archive (NULL for actual root) */
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const PHYSFS_Archiver *funcs; /* Ptr to archiver info for this handle. */
struct __PHYSFS_DIRHANDLE__ *next; /* linked list stuff. */
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} DirHandle;
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typedef struct __PHYSFS_FILEHANDLE__
{
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PHYSFS_Io *io; /* Instance data unique to the archiver for this file. */
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PHYSFS_uint8 forReading; /* Non-zero if reading, zero if write/append */
const DirHandle *dirHandle; /* Archiver instance that created this */
PHYSFS_uint8 *buffer; /* Buffer, if set (NULL otherwise). Don't touch! */
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size_t bufsize; /* Bufsize, if set (0 otherwise). Don't touch! */
size_t buffill; /* Buffer fill size. Don't touch! */
size_t bufpos; /* Buffer position. Don't touch! */
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struct __PHYSFS_FILEHANDLE__ *next; /* linked list stuff. */
} FileHandle;
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typedef struct __PHYSFS_ERRSTATETYPE__
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void *tid;
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PHYSFS_ErrorCode code;
struct __PHYSFS_ERRSTATETYPE__ *next;
} ErrState;
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/* General PhysicsFS state ... */
static int initialized = 0;
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static ErrState *errorStates = NULL;
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static DirHandle *searchPath = NULL;
static DirHandle *writeDir = NULL;
static FileHandle *openWriteList = NULL;
static FileHandle *openReadList = NULL;
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static char *baseDir = NULL;
static char *userDir = NULL;
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static char *prefDir = NULL;
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static int allowSymLinks = 0;
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static PHYSFS_Archiver **archivers = NULL;
static PHYSFS_ArchiveInfo **archiveInfo = NULL;
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static volatile size_t numArchivers = 0;
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static int longest_root = 0;
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/* mutexes ... */
static void *errorLock = NULL; /* protects error message list. */
static void *stateLock = NULL; /* protects other PhysFS static state. */
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/* allocator ... */
static int externalAllocator = 0;
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PHYSFS_Allocator allocator;
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#ifdef PHYSFS_NEED_ATOMIC_OP_FALLBACK
static inline int __PHYSFS_atomicAdd(int *ptrval, const int val)
{
int retval;
__PHYSFS_platformGrabMutex(stateLock);
retval = *ptrval;
*ptrval = retval + val;
__PHYSFS_platformReleaseMutex(stateLock);
return retval;
} /* __PHYSFS_atomicAdd */
int __PHYSFS_ATOMIC_INCR(int *ptrval)
{
return __PHYSFS_atomicAdd(ptrval, 1);
} /* __PHYSFS_ATOMIC_INCR */
int __PHYSFS_ATOMIC_DECR(int *ptrval)
{
return __PHYSFS_atomicAdd(ptrval, -1);
} /* __PHYSFS_ATOMIC_DECR */
#endif
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/* PHYSFS_Io implementation for i/o to physical filesystem... */
/* !!! FIXME: maybe refcount the paths in a string pool? */
typedef struct __PHYSFS_NativeIoInfo
{
void *handle;
const char *path;
int mode; /* 'r', 'w', or 'a' */
} NativeIoInfo;
static PHYSFS_sint64 nativeIo_read(PHYSFS_Io *io, void *buf, PHYSFS_uint64 len)
{
NativeIoInfo *info = (NativeIoInfo *) io->opaque;
return __PHYSFS_platformRead(info->handle, buf, len);
} /* nativeIo_read */
static PHYSFS_sint64 nativeIo_write(PHYSFS_Io *io, const void *buffer,
PHYSFS_uint64 len)
{
NativeIoInfo *info = (NativeIoInfo *) io->opaque;
return __PHYSFS_platformWrite(info->handle, buffer, len);
} /* nativeIo_write */
static int nativeIo_seek(PHYSFS_Io *io, PHYSFS_uint64 offset)
{
NativeIoInfo *info = (NativeIoInfo *) io->opaque;
return __PHYSFS_platformSeek(info->handle, offset);
} /* nativeIo_seek */
static PHYSFS_sint64 nativeIo_tell(PHYSFS_Io *io)
{
NativeIoInfo *info = (NativeIoInfo *) io->opaque;
return __PHYSFS_platformTell(info->handle);
} /* nativeIo_tell */
static PHYSFS_sint64 nativeIo_length(PHYSFS_Io *io)
{
NativeIoInfo *info = (NativeIoInfo *) io->opaque;
return __PHYSFS_platformFileLength(info->handle);
} /* nativeIo_length */
static PHYSFS_Io *nativeIo_duplicate(PHYSFS_Io *io)
{
NativeIoInfo *info = (NativeIoInfo *) io->opaque;
return __PHYSFS_createNativeIo(info->path, info->mode);
} /* nativeIo_duplicate */
static int nativeIo_flush(PHYSFS_Io *io)
{
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NativeIoInfo *info = (NativeIoInfo *) io->opaque;
return __PHYSFS_platformFlush(info->handle);
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} /* nativeIo_flush */
static void nativeIo_destroy(PHYSFS_Io *io)
{
NativeIoInfo *info = (NativeIoInfo *) io->opaque;
__PHYSFS_platformClose(info->handle);
allocator.Free((void *) info->path);
allocator.Free(info);
allocator.Free(io);
} /* nativeIo_destroy */
static const PHYSFS_Io __PHYSFS_nativeIoInterface =
{
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CURRENT_PHYSFS_IO_API_VERSION, NULL,
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nativeIo_read,
nativeIo_write,
nativeIo_seek,
nativeIo_tell,
nativeIo_length,
nativeIo_duplicate,
nativeIo_flush,
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nativeIo_destroy
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};
PHYSFS_Io *__PHYSFS_createNativeIo(const char *path, const int mode)
{
PHYSFS_Io *io = NULL;
NativeIoInfo *info = NULL;
void *handle = NULL;
char *pathdup = NULL;
assert((mode == 'r') || (mode == 'w') || (mode == 'a'));
io = (PHYSFS_Io *) allocator.Malloc(sizeof (PHYSFS_Io));
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GOTO_IF(!io, PHYSFS_ERR_OUT_OF_MEMORY, createNativeIo_failed);
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info = (NativeIoInfo *) allocator.Malloc(sizeof (NativeIoInfo));
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GOTO_IF(!info, PHYSFS_ERR_OUT_OF_MEMORY, createNativeIo_failed);
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pathdup = (char *) allocator.Malloc(strlen(path) + 1);
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GOTO_IF(!pathdup, PHYSFS_ERR_OUT_OF_MEMORY, createNativeIo_failed);
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if (mode == 'r')
handle = __PHYSFS_platformOpenRead(path);
else if (mode == 'w')
handle = __PHYSFS_platformOpenWrite(path);
else if (mode == 'a')
handle = __PHYSFS_platformOpenAppend(path);
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GOTO_IF_ERRPASS(!handle, createNativeIo_failed);
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strcpy(pathdup, path);
info->handle = handle;
info->path = pathdup;
info->mode = mode;
memcpy(io, &__PHYSFS_nativeIoInterface, sizeof (*io));
io->opaque = info;
return io;
createNativeIo_failed:
if (handle != NULL) __PHYSFS_platformClose(handle);
if (pathdup != NULL) allocator.Free(pathdup);
if (info != NULL) allocator.Free(info);
if (io != NULL) allocator.Free(io);
return NULL;
} /* __PHYSFS_createNativeIo */
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/* PHYSFS_Io implementation for i/o to a memory buffer... */
typedef struct __PHYSFS_MemoryIoInfo
{
const PHYSFS_uint8 *buf;
PHYSFS_uint64 len;
PHYSFS_uint64 pos;
PHYSFS_Io *parent;
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int refcount;
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void (*destruct)(void *);
} MemoryIoInfo;
static PHYSFS_sint64 memoryIo_read(PHYSFS_Io *io, void *buf, PHYSFS_uint64 len)
{
MemoryIoInfo *info = (MemoryIoInfo *) io->opaque;
const PHYSFS_uint64 avail = info->len - info->pos;
assert(avail <= info->len);
if (avail == 0)
return 0; /* we're at EOF; nothing to do. */
if (len > avail)
len = avail;
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memcpy(buf, info->buf + info->pos, (size_t) len);
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info->pos += len;
return len;
} /* memoryIo_read */
static PHYSFS_sint64 memoryIo_write(PHYSFS_Io *io, const void *buffer,
PHYSFS_uint64 len)
{
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BAIL(PHYSFS_ERR_OPEN_FOR_READING, -1);
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} /* memoryIo_write */
static int memoryIo_seek(PHYSFS_Io *io, PHYSFS_uint64 offset)
{
MemoryIoInfo *info = (MemoryIoInfo *) io->opaque;
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BAIL_IF(offset > info->len, PHYSFS_ERR_PAST_EOF, 0);
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info->pos = offset;
return 1;
} /* memoryIo_seek */
static PHYSFS_sint64 memoryIo_tell(PHYSFS_Io *io)
{
const MemoryIoInfo *info = (MemoryIoInfo *) io->opaque;
return (PHYSFS_sint64) info->pos;
} /* memoryIo_tell */
static PHYSFS_sint64 memoryIo_length(PHYSFS_Io *io)
{
const MemoryIoInfo *info = (MemoryIoInfo *) io->opaque;
return (PHYSFS_sint64) info->len;
} /* memoryIo_length */
static PHYSFS_Io *memoryIo_duplicate(PHYSFS_Io *io)
{
MemoryIoInfo *info = (MemoryIoInfo *) io->opaque;
MemoryIoInfo *newinfo = NULL;
PHYSFS_Io *parent = info->parent;
PHYSFS_Io *retval = NULL;
/* avoid deep copies. */
assert((!parent) || (!((MemoryIoInfo *) parent->opaque)->parent) );
/* share the buffer between duplicates. */
if (parent != NULL) /* dup the parent, increment its refcount. */
return parent->duplicate(parent);
/* we're the parent. */
retval = (PHYSFS_Io *) allocator.Malloc(sizeof (PHYSFS_Io));
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BAIL_IF(!retval, PHYSFS_ERR_OUT_OF_MEMORY, NULL);
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newinfo = (MemoryIoInfo *) allocator.Malloc(sizeof (MemoryIoInfo));
if (!newinfo)
{
allocator.Free(retval);
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BAIL(PHYSFS_ERR_OUT_OF_MEMORY, NULL);
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} /* if */
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__PHYSFS_ATOMIC_INCR(&info->refcount);
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memset(newinfo, '\0', sizeof (*info));
newinfo->buf = info->buf;
newinfo->len = info->len;
newinfo->pos = 0;
newinfo->parent = io;
newinfo->refcount = 0;
newinfo->destruct = NULL;
memcpy(retval, io, sizeof (*retval));
retval->opaque = newinfo;
return retval;
} /* memoryIo_duplicate */
static int memoryIo_flush(PHYSFS_Io *io) { return 1; /* it's read-only. */ }
static void memoryIo_destroy(PHYSFS_Io *io)
{
MemoryIoInfo *info = (MemoryIoInfo *) io->opaque;
PHYSFS_Io *parent = info->parent;
if (parent != NULL)
{
assert(info->buf == ((MemoryIoInfo *) info->parent->opaque)->buf);
assert(info->len == ((MemoryIoInfo *) info->parent->opaque)->len);
assert(info->refcount == 0);
assert(info->destruct == NULL);
allocator.Free(info);
allocator.Free(io);
parent->destroy(parent); /* decrements refcount. */
return;
} /* if */
/* we _are_ the parent. */
assert(info->refcount > 0); /* even in a race, we hold a reference. */
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if (__PHYSFS_ATOMIC_DECR(&info->refcount) == 0)
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{
void (*destruct)(void *) = info->destruct;
void *buf = (void *) info->buf;
io->opaque = NULL; /* kill this here in case of race. */
allocator.Free(info);
allocator.Free(io);
if (destruct != NULL)
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destruct(buf);
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} /* if */
} /* memoryIo_destroy */
static const PHYSFS_Io __PHYSFS_memoryIoInterface =
{
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CURRENT_PHYSFS_IO_API_VERSION, NULL,
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memoryIo_read,
memoryIo_write,
memoryIo_seek,
memoryIo_tell,
memoryIo_length,
memoryIo_duplicate,
memoryIo_flush,
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memoryIo_destroy
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};
PHYSFS_Io *__PHYSFS_createMemoryIo(const void *buf, PHYSFS_uint64 len,
void (*destruct)(void *))
{
PHYSFS_Io *io = NULL;
MemoryIoInfo *info = NULL;
io = (PHYSFS_Io *) allocator.Malloc(sizeof (PHYSFS_Io));
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GOTO_IF(!io, PHYSFS_ERR_OUT_OF_MEMORY, createMemoryIo_failed);
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info = (MemoryIoInfo *) allocator.Malloc(sizeof (MemoryIoInfo));
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GOTO_IF(!info, PHYSFS_ERR_OUT_OF_MEMORY, createMemoryIo_failed);
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memset(info, '\0', sizeof (*info));
info->buf = (const PHYSFS_uint8 *) buf;
info->len = len;
info->pos = 0;
info->parent = NULL;
info->refcount = 1;
info->destruct = destruct;
memcpy(io, &__PHYSFS_memoryIoInterface, sizeof (*io));
io->opaque = info;
return io;
createMemoryIo_failed:
if (info != NULL) allocator.Free(info);
if (io != NULL) allocator.Free(io);
return NULL;
} /* __PHYSFS_createMemoryIo */
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/* PHYSFS_Io implementation for i/o to a PHYSFS_File... */
static PHYSFS_sint64 handleIo_read(PHYSFS_Io *io, void *buf, PHYSFS_uint64 len)
{
return PHYSFS_readBytes((PHYSFS_File *) io->opaque, buf, len);
} /* handleIo_read */
static PHYSFS_sint64 handleIo_write(PHYSFS_Io *io, const void *buffer,
PHYSFS_uint64 len)
{
return PHYSFS_writeBytes((PHYSFS_File *) io->opaque, buffer, len);
} /* handleIo_write */
static int handleIo_seek(PHYSFS_Io *io, PHYSFS_uint64 offset)
{
return PHYSFS_seek((PHYSFS_File *) io->opaque, offset);
} /* handleIo_seek */
static PHYSFS_sint64 handleIo_tell(PHYSFS_Io *io)
{
return PHYSFS_tell((PHYSFS_File *) io->opaque);
} /* handleIo_tell */
static PHYSFS_sint64 handleIo_length(PHYSFS_Io *io)
{
return PHYSFS_fileLength((PHYSFS_File *) io->opaque);
} /* handleIo_length */
static PHYSFS_Io *handleIo_duplicate(PHYSFS_Io *io)
{
/*
* There's no duplicate at the PHYSFS_File level, so we break the
* abstraction. We're allowed to: we're physfs.c!
*/
FileHandle *origfh = (FileHandle *) io->opaque;
FileHandle *newfh = (FileHandle *) allocator.Malloc(sizeof (FileHandle));
PHYSFS_Io *retval = NULL;
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GOTO_IF(!newfh, PHYSFS_ERR_OUT_OF_MEMORY, handleIo_dupe_failed);
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memset(newfh, '\0', sizeof (*newfh));
retval = (PHYSFS_Io *) allocator.Malloc(sizeof (PHYSFS_Io));
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GOTO_IF(!retval, PHYSFS_ERR_OUT_OF_MEMORY, handleIo_dupe_failed);
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#if 0 /* we don't buffer the duplicate, at least not at the moment. */
if (origfh->buffer != NULL)
{
newfh->buffer = (PHYSFS_uint8 *) allocator.Malloc(origfh->bufsize);
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if (!newfh->buffer)
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GOTO(PHYSFS_ERR_OUT_OF_MEMORY, handleIo_dupe_failed);
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newfh->bufsize = origfh->bufsize;
} /* if */
#endif
newfh->io = origfh->io->duplicate(origfh->io);
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GOTO_IF_ERRPASS(!newfh->io, handleIo_dupe_failed);
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newfh->forReading = origfh->forReading;
newfh->dirHandle = origfh->dirHandle;
__PHYSFS_platformGrabMutex(stateLock);
if (newfh->forReading)
{
newfh->next = openReadList;
openReadList = newfh;
} /* if */
else
{
newfh->next = openWriteList;
openWriteList = newfh;
} /* else */
__PHYSFS_platformReleaseMutex(stateLock);
memcpy(retval, io, sizeof (PHYSFS_Io));
retval->opaque = newfh;
return retval;
handleIo_dupe_failed:
if (newfh)
{
if (newfh->io != NULL) newfh->io->destroy(newfh->io);
if (newfh->buffer != NULL) allocator.Free(newfh->buffer);
allocator.Free(newfh);
} /* if */
return NULL;
} /* handleIo_duplicate */
static int handleIo_flush(PHYSFS_Io *io)
{
return PHYSFS_flush((PHYSFS_File *) io->opaque);
} /* handleIo_flush */
static void handleIo_destroy(PHYSFS_Io *io)
{
if (io->opaque != NULL)
PHYSFS_close((PHYSFS_File *) io->opaque);
allocator.Free(io);
} /* handleIo_destroy */
static const PHYSFS_Io __PHYSFS_handleIoInterface =
{
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handleIo_read,
handleIo_write,
handleIo_seek,
handleIo_tell,
handleIo_length,
handleIo_duplicate,
handleIo_flush,
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handleIo_destroy
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527
528
529
530
531
};
static PHYSFS_Io *__PHYSFS_createHandleIo(PHYSFS_File *f)
{
PHYSFS_Io *io = (PHYSFS_Io *) allocator.Malloc(sizeof (PHYSFS_Io));
Jul 6, 2017
Jul 6, 2017
532
BAIL_IF(!io, PHYSFS_ERR_OUT_OF_MEMORY, NULL);
Aug 30, 2010
Aug 30, 2010
533
534
535
536
537
memcpy(io, &__PHYSFS_handleIoInterface, sizeof (*io));
io->opaque = f;
return io;
} /* __PHYSFS_createHandleIo */
Aug 30, 2010
Aug 30, 2010
538
Jul 6, 2001
Jul 6, 2001
539
540
/* functions ... */
Sep 29, 2004
Sep 29, 2004
541
542
543
544
typedef struct
{
char **list;
PHYSFS_uint32 size;
Mar 20, 2012
Mar 20, 2012
545
PHYSFS_ErrorCode errcode;
Sep 29, 2004
Sep 29, 2004
546
547
548
549
550
551
552
553
} EnumStringListCallbackData;
static void enumStringListCallback(void *data, const char *str)
{
void *ptr;
char *newstr;
EnumStringListCallbackData *pecd = (EnumStringListCallbackData *) data;
Mar 20, 2012
Mar 20, 2012
554
if (pecd->errcode)
Sep 29, 2004
Sep 29, 2004
555
556
return;
Mar 14, 2005
Mar 14, 2005
557
558
ptr = allocator.Realloc(pecd->list, (pecd->size + 2) * sizeof (char *));
newstr = (char *) allocator.Malloc(strlen(str) + 1);
Sep 29, 2004
Sep 29, 2004
559
560
561
562
563
if (ptr != NULL)
pecd->list = (char **) ptr;
if ((ptr == NULL) || (newstr == NULL))
{
Mar 20, 2012
Mar 20, 2012
564
pecd->errcode = PHYSFS_ERR_OUT_OF_MEMORY;
Sep 29, 2004
Sep 29, 2004
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
pecd->list[pecd->size] = NULL;
PHYSFS_freeList(pecd->list);
return;
} /* if */
strcpy(newstr, str);
pecd->list[pecd->size] = newstr;
pecd->size++;
} /* enumStringListCallback */
static char **doEnumStringList(void (*func)(PHYSFS_StringCallback, void *))
{
EnumStringListCallbackData ecd;
memset(&ecd, '\0', sizeof (ecd));
Mar 14, 2005
Mar 14, 2005
580
ecd.list = (char **) allocator.Malloc(sizeof (char *));
Jul 6, 2017
Jul 6, 2017
581
BAIL_IF(!ecd.list, PHYSFS_ERR_OUT_OF_MEMORY, NULL);
Sep 29, 2004
Sep 29, 2004
582
func(enumStringListCallback, &ecd);
Mar 20, 2012
Mar 20, 2012
583
584
585
if (ecd.errcode)
{
Nov 30, 2012
Nov 30, 2012
586
PHYSFS_setErrorCode(ecd.errcode);
Mar 20, 2012
Mar 20, 2012
587
588
589
return NULL;
} /* if */
Sep 29, 2004
Sep 29, 2004
590
ecd.list[ecd.size] = NULL;
Jan 28, 2010
Jan 28, 2010
591
return ecd.list;
Sep 29, 2004
Sep 29, 2004
592
593
594
} /* doEnumStringList */
Jun 1, 2012
Jun 1, 2012
595
596
597
static void __PHYSFS_bubble_sort(void *a, size_t lo, size_t hi,
int (*cmpfn)(void *, size_t, size_t),
void (*swapfn)(void *, size_t, size_t))
Aug 20, 2002
Aug 20, 2002
598
{
Jun 1, 2012
Jun 1, 2012
599
size_t i;
Aug 20, 2002
Aug 20, 2002
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
int sorted;
do
{
sorted = 1;
for (i = lo; i < hi; i++)
{
if (cmpfn(a, i, i + 1) > 0)
{
swapfn(a, i, i + 1);
sorted = 0;
} /* if */
} /* for */
} while (!sorted);
} /* __PHYSFS_bubble_sort */
Jun 1, 2012
Jun 1, 2012
617
618
619
static void __PHYSFS_quick_sort(void *a, size_t lo, size_t hi,
int (*cmpfn)(void *, size_t, size_t),
void (*swapfn)(void *, size_t, size_t))
Aug 20, 2002
Aug 20, 2002
620
{
Jun 1, 2012
Jun 1, 2012
621
622
623
size_t i;
size_t j;
size_t v;
Aug 20, 2002
Aug 20, 2002
624
Jul 20, 2003
Jul 20, 2003
625
if ((hi - lo) <= PHYSFS_QUICKSORT_THRESHOLD)
Aug 20, 2002
Aug 20, 2002
626
627
__PHYSFS_bubble_sort(a, lo, hi, cmpfn, swapfn);
else
Jul 20, 2003
Jul 20, 2003
628
629
{
i = (hi + lo) / 2;
Aug 20, 2002
Aug 20, 2002
630
631
if (cmpfn(a, lo, i) > 0) swapfn(a, lo, i);
Jul 20, 2003
Jul 20, 2003
632
633
634
635
636
637
638
639
640
641
642
643
if (cmpfn(a, lo, hi) > 0) swapfn(a, lo, hi);
if (cmpfn(a, i, hi) > 0) swapfn(a, i, hi);
j = hi - 1;
swapfn(a, i, j);
i = lo;
v = j;
while (1)
{
while(cmpfn(a, ++i, v) < 0) { /* do nothing */ }
while(cmpfn(a, --j, v) > 0) { /* do nothing */ }
if (j < i)
Aug 20, 2002
Aug 20, 2002
644
break;
Jul 20, 2003
Jul 20, 2003
645
646
swapfn(a, i, j);
} /* while */
Feb 28, 2009
Feb 28, 2009
647
648
if (i != (hi-1))
swapfn(a, i, hi-1);
Jul 20, 2003
Jul 20, 2003
649
650
651
__PHYSFS_quick_sort(a, lo, j, cmpfn, swapfn);
__PHYSFS_quick_sort(a, i+1, hi, cmpfn, swapfn);
} /* else */
Aug 20, 2002
Aug 20, 2002
652
653
654
} /* __PHYSFS_quick_sort */
Jun 1, 2012
Jun 1, 2012
655
656
657
void __PHYSFS_sort(void *entries, size_t max,
int (*cmpfn)(void *, size_t, size_t),
void (*swapfn)(void *, size_t, size_t))
Aug 20, 2002
Aug 20, 2002
658
659
660
{
/*
* Quicksort w/ Bubblesort fallback algorithm inspired by code from here:
Feb 25, 2016
Feb 25, 2016
661
* https://www.cs.ubc.ca/spider/harrison/Java/sorting-demo.html
Aug 20, 2002
Aug 20, 2002
662
*/
Jun 7, 2012
Jun 7, 2012
663
664
if (max > 0)
__PHYSFS_quick_sort(entries, 0, max - 1, cmpfn, swapfn);
Aug 20, 2002
Aug 20, 2002
665
666
667
} /* __PHYSFS_sort */
Mar 20, 2012
Mar 20, 2012
668
static ErrState *findErrorForCurrentThread(void)
Mar 20, 2012
Mar 20, 2012
670
ErrState *i;
Sep 6, 2009
Sep 6, 2009
671
void *tid;
Jun 8, 2002
Jun 8, 2002
673
if (errorLock != NULL)
Apr 8, 2002
Apr 8, 2002
674
675
__PHYSFS_platformGrabMutex(errorLock);
Mar 20, 2012
Mar 20, 2012
676
if (errorStates != NULL)
Apr 3, 2002
Apr 3, 2002
678
tid = __PHYSFS_platformGetThreadID();
Mar 20, 2012
Mar 20, 2012
680
for (i = errorStates; i != NULL; i = i->next)
681
682
{
if (i->tid == tid)
Mar 30, 2002
Mar 30, 2002
683
{
Jun 8, 2002
Jun 8, 2002
684
685
if (errorLock != NULL)
__PHYSFS_platformReleaseMutex(errorLock);
Jan 28, 2010
Jan 28, 2010
686
return i;
Mar 30, 2002
Mar 30, 2002
687
} /* if */
688
689
} /* for */
} /* if */
Apr 8, 2002
Apr 8, 2002
690
Jun 8, 2002
Jun 8, 2002
691
if (errorLock != NULL)
Apr 8, 2002
Apr 8, 2002
692
__PHYSFS_platformReleaseMutex(errorLock);
Jan 28, 2010
Jan 28, 2010
694
return NULL; /* no error available. */
695
696
697
} /* findErrorForCurrentThread */
Nov 30, 2012
Nov 30, 2012
698
699
700
701
702
703
704
705
/* this doesn't reset the error state. */
static inline PHYSFS_ErrorCode currentErrorCode(void)
{
const ErrState *err = findErrorForCurrentThread();
return err ? err->code : PHYSFS_ERR_OK;
} /* currentErrorCode */
Mar 20, 2012
Mar 20, 2012
706
PHYSFS_ErrorCode PHYSFS_getLastErrorCode(void)
Mar 30, 2002
Mar 30, 2002
707
{
Mar 20, 2012
Mar 20, 2012
708
709
710
711
712
713
714
715
716
717
718
719
720
721
722
723
724
725
726
727
728
729
730
ErrState *err = findErrorForCurrentThread();
const PHYSFS_ErrorCode retval = (err) ? err->code : PHYSFS_ERR_OK;
if (err)
err->code = PHYSFS_ERR_OK;
return retval;
} /* PHYSFS_getLastErrorCode */
PHYSFS_DECL const char *PHYSFS_getErrorByCode(PHYSFS_ErrorCode code)
{
switch (code)
{
case PHYSFS_ERR_OK: return "no error";
case PHYSFS_ERR_OTHER_ERROR: return "unknown error";
case PHYSFS_ERR_OUT_OF_MEMORY: return "out of memory";
case PHYSFS_ERR_NOT_INITIALIZED: return "not initialized";
case PHYSFS_ERR_IS_INITIALIZED: return "already initialized";
case PHYSFS_ERR_ARGV0_IS_NULL: return "argv[0] is NULL";
case PHYSFS_ERR_UNSUPPORTED: return "unsupported";
case PHYSFS_ERR_PAST_EOF: return "past end of file";
case PHYSFS_ERR_FILES_STILL_OPEN: return "files still open";
case PHYSFS_ERR_INVALID_ARGUMENT: return "invalid argument";
case PHYSFS_ERR_NOT_MOUNTED: return "not mounted";
Nov 28, 2012
Nov 28, 2012
731
case PHYSFS_ERR_NOT_FOUND: return "not found";
Mar 20, 2012
Mar 20, 2012
732
733
734
735
736
737
738
739
740
741
742
743
744
745
746
case PHYSFS_ERR_SYMLINK_FORBIDDEN: return "symlinks are forbidden";
case PHYSFS_ERR_NO_WRITE_DIR: return "write directory is not set";
case PHYSFS_ERR_OPEN_FOR_READING: return "file open for reading";
case PHYSFS_ERR_OPEN_FOR_WRITING: return "file open for writing";
case PHYSFS_ERR_NOT_A_FILE: return "not a file";
case PHYSFS_ERR_READ_ONLY: return "read-only filesystem";
case PHYSFS_ERR_CORRUPT: return "corrupted";
case PHYSFS_ERR_SYMLINK_LOOP: return "infinite symbolic link loop";
case PHYSFS_ERR_IO: return "i/o error";
case PHYSFS_ERR_PERMISSION: return "permission denied";
case PHYSFS_ERR_NO_SPACE: return "no space available for writing";
case PHYSFS_ERR_BAD_FILENAME: return "filename is illegal or insecure";
case PHYSFS_ERR_BUSY: return "tried to modify a file the OS needs";
case PHYSFS_ERR_DIR_NOT_EMPTY: return "directory isn't empty";
case PHYSFS_ERR_OS_ERROR: return "OS reported an error";
Nov 28, 2012
Nov 28, 2012
747
case PHYSFS_ERR_DUPLICATE: return "duplicate resource";
Sep 12, 2016
Sep 12, 2016
748
case PHYSFS_ERR_BAD_PASSWORD: return "bad password";
Aug 12, 2017
Aug 12, 2017
749
case PHYSFS_ERR_APP_CALLBACK: return "app callback reported error";
Mar 20, 2012
Mar 20, 2012
750
751
752
753
754
755
} /* switch */
return NULL; /* don't know this error code. */
} /* PHYSFS_getErrorByCode */
Nov 30, 2012
Nov 30, 2012
756
void PHYSFS_setErrorCode(PHYSFS_ErrorCode errcode)
Mar 20, 2012
Mar 20, 2012
757
{
Nov 30, 2012
Nov 30, 2012
758
759
760
761
762
763
764
765
766
767
768
769
770
771
772
773
774
775
776
777
778
779
780
781
782
783
ErrState *err;
if (!errcode)
return;
err = findErrorForCurrentThread();
if (err == NULL)
{
err = (ErrState *) allocator.Malloc(sizeof (ErrState));
if (err == NULL)
return; /* uhh...? */
memset(err, '\0', sizeof (ErrState));
err->tid = __PHYSFS_platformGetThreadID();
if (errorLock != NULL)
__PHYSFS_platformGrabMutex(errorLock);
err->next = errorStates;
errorStates = err;
if (errorLock != NULL)
__PHYSFS_platformReleaseMutex(errorLock);
} /* if */
err->code = errcode;
Mar 20, 2012
Mar 20, 2012
784
} /* PHYSFS_setErrorCode */
Mar 30, 2002
Mar 30, 2002
785
786
Mar 20, 2012
Mar 20, 2012
787
788
789
790
const char *PHYSFS_getLastError(void)
{
const PHYSFS_ErrorCode err = PHYSFS_getLastErrorCode();
return (err) ? PHYSFS_getErrorByCode(err) : NULL;
Mar 30, 2002
Mar 30, 2002
791
792
793
794
} /* PHYSFS_getLastError */
/* MAKE SURE that errorLock is held before calling this! */
Mar 20, 2012
Mar 20, 2012
795
static void freeErrorStates(void)
Jul 7, 2001
Jul 7, 2001
796
{
Mar 20, 2012
Mar 20, 2012
797
798
ErrState *i;
ErrState *next;
Jul 7, 2001
Jul 7, 2001
799
Mar 20, 2012
Mar 20, 2012
800
for (i = errorStates; i != NULL; i = next)
Jul 7, 2001
Jul 7, 2001
801
{
Jul 9, 2001
Jul 9, 2001
802
next = i->next;
Mar 14, 2005
Mar 14, 2005
803
allocator.Free(i);
Jul 7, 2001
Jul 7, 2001
804
} /* for */
Jun 8, 2002
Jun 8, 2002
805
Mar 20, 2012
Mar 20, 2012
806
807
errorStates = NULL;
} /* freeErrorStates */
Jul 7, 2001
Jul 7, 2001
808
809
810
811
812
813
814
815
816
817
818
819
820
void PHYSFS_getLinkedVersion(PHYSFS_Version *ver)
{
if (ver != NULL)
{
ver->major = PHYSFS_VER_MAJOR;
ver->minor = PHYSFS_VER_MINOR;
ver->patch = PHYSFS_VER_PATCH;
} /* if */
} /* PHYSFS_getLinkedVersion */
Jul 26, 2002
Jul 26, 2002
821
822
static const char *find_filename_extension(const char *fname)
{
Aug 30, 2010
Aug 30, 2010
823
824
const char *retval = NULL;
if (fname != NULL)
Jul 26, 2002
Jul 26, 2002
825
{
Jan 21, 2011
Jan 21, 2011
826
827
const char *p = strchr(fname, '.');
retval = p;
Jul 26, 2002
Jul 26, 2002
828
Aug 30, 2010
Aug 30, 2010
829
830
831
832
833
834
835
836
837
838
while (p != NULL)
{
p = strchr(p + 1, '.');
if (p != NULL)
retval = p;
} /* while */
if (retval != NULL)
retval++; /* skip '.' */
} /* if */
Jul 26, 2002
Jul 26, 2002
839
Jan 28, 2010
Jan 28, 2010
840
return retval;
Jul 26, 2002
Jul 26, 2002
841
842
843
} /* find_filename_extension */
Aug 30, 2010
Aug 30, 2010
844
static DirHandle *tryOpenDir(PHYSFS_Io *io, const PHYSFS_Archiver *funcs,
Aug 14, 2017
Aug 14, 2017
845
const char *d, int forWriting, int *_claimed)
Sep 26, 2004
Sep 26, 2004
846
847
{
DirHandle *retval = NULL;
Aug 30, 2010
Aug 30, 2010
848
849
850
void *opaque = NULL;
if (io != NULL)
Jul 6, 2017
Jul 6, 2017
851
BAIL_IF_ERRPASS(!io->seek(io, 0), NULL);
Aug 30, 2010
Aug 30, 2010
852
Aug 14, 2017
Aug 14, 2017
853
opaque = funcs->openArchive(io, d, forWriting, _claimed);
Aug 24, 2010
Aug 24, 2010
854
if (opaque != NULL)
Sep 26, 2004
Sep 26, 2004
855
{
Aug 24, 2010
Aug 24, 2010
856
857
retval = (DirHandle *) allocator.Malloc(sizeof (DirHandle));
if (retval == NULL)
Mar 24, 2012
Mar 24, 2012
858
funcs->closeArchive(opaque);
Aug 24, 2010
Aug 24, 2010
859
else
Sep 26, 2004
Sep 26, 2004
860
{
Aug 24, 2010
Aug 24, 2010
861
862
863
864
865
memset(retval, '\0', sizeof (DirHandle));
retval->mountPoint = NULL;
retval->funcs = funcs;
retval->opaque = opaque;
} /* else */
Sep 26, 2004
Sep 26, 2004
866
867
} /* if */
Jan 28, 2010
Jan 28, 2010
868
return retval;
Sep 26, 2004
Sep 26, 2004
869
870
871
} /* tryOpenDir */
Aug 30, 2010
Aug 30, 2010
872
static DirHandle *openDirectory(PHYSFS_Io *io, const char *d, int forWriting)
Jul 7, 2001
Jul 7, 2001
873
{
Sep 26, 2004
Sep 26, 2004
874
DirHandle *retval = NULL;
Jul 13, 2017
Jul 13, 2017
875
PHYSFS_Archiver **i;
Jul 26, 2002
Jul 26, 2002
876
const char *ext;
Aug 19, 2014
Aug 19, 2014
877
int created_io = 0;
Aug 14, 2017
Aug 14, 2017
878
879
int claimed = 0;
PHYSFS_ErrorCode errcode;
Jul 7, 2001
Jul 7, 2001
880
Aug 30, 2010
Aug 30, 2010
881
assert((io != NULL) || (d != NULL));
Jul 23, 2001
Jul 23, 2001
882
Aug 30, 2010
Aug 30, 2010
883
884
if (io == NULL)
{
May 16, 2018
May 16, 2018
885
886
887
888
/* file doesn't exist, etc? Just fail out. */
PHYSFS_Stat statbuf;
BAIL_IF_ERRPASS(!__PHYSFS_platformStat(d, &statbuf, 1), NULL);
Aug 30, 2010
Aug 30, 2010
889
/* DIR gets first shot (unlike the rest, it doesn't deal with files). */
May 16, 2018
May 16, 2018
890
891
892
893
894
895
if (statbuf.filetype == PHYSFS_FILETYPE_DIRECTORY)
{
retval = tryOpenDir(io, &__PHYSFS_Archiver_DIR, d, forWriting, &claimed);
if (retval || claimed)
return retval;
} /* if */
Aug 30, 2010
Aug 30, 2010
896
897
io = __PHYSFS_createNativeIo(d, forWriting ? 'w' : 'r');
May 16, 2018
May 16, 2018
898
BAIL_IF_ERRPASS(!io, NULL);
Aug 19, 2014
Aug 19, 2014
899
created_io = 1;
Aug 30, 2010
Aug 30, 2010
900
} /* if */
Aug 24, 2010
Aug 24, 2010
901
Jul 26, 2002
Jul 26, 2002
902
903
ext = find_filename_extension(d);
if (ext != NULL)
Jul 7, 2001
Jul 7, 2001
904
{
Jul 26, 2002
Jul 26, 2002
905
/* Look for archivers with matching file extensions first... */
Aug 14, 2017
Aug 14, 2017
906
for (i = archivers; (*i != NULL) && (retval == NULL) && !claimed; i++)
Jul 26, 2002
Jul 26, 2002
907
{
Aug 11, 2017
Aug 11, 2017
908
if (PHYSFS_utf8stricmp(ext, (*i)->info.extension) == 0)
Aug 14, 2017
Aug 14, 2017
909
retval = tryOpenDir(io, *i, d, forWriting, &claimed);
Jul 26, 2002
Jul 26, 2002
910
911
912
} /* for */
/* failing an exact file extension match, try all the others... */
Aug 14, 2017
Aug 14, 2017
913
for (i = archivers; (*i != NULL) && (retval == NULL) && !claimed; i++)
Jul 26, 2002
Jul 26, 2002
914
{
Aug 11, 2017
Aug 11, 2017
915
if (PHYSFS_utf8stricmp(ext, (*i)->info.extension) != 0)
Aug 14, 2017
Aug 14, 2017
916
retval = tryOpenDir(io, *i, d, forWriting, &claimed);
Jul 26, 2002
Jul 26, 2002
917
918
919
920
921
} /* for */
} /* if */
else /* no extension? Try them all. */
{
Aug 14, 2017
Aug 14, 2017
922
923
for (i = archivers; (*i != NULL) && (retval == NULL) && !claimed; i++)
retval = tryOpenDir(io, *i, d, forWriting, &claimed);
Jul 26, 2002
Jul 26, 2002
924
} /* else */
Jul 7, 2001
Jul 7, 2001
925
Aug 14, 2017
Aug 14, 2017
926
927
errcode = currentErrorCode();
Aug 19, 2014
Aug 19, 2014
928
929
930
if ((!retval) && (created_io))
io->destroy(io);
Aug 14, 2017
Aug 14, 2017
931
BAIL_IF(!retval, claimed ? errcode : PHYSFS_ERR_UNSUPPORTED, NULL);
Jan 28, 2010
Jan 28, 2010
932
return retval;
Jul 7, 2001
Jul 7, 2001
933
934
935
} /* openDirectory */
Mar 13, 2005
Mar 13, 2005
936
937
938
939
940
941
942
943
944
945
946
947
948
949
950
951
/*
* Make a platform-independent path string sane. Doesn't actually check the
* file hierarchy, it just cleans up the string.
* (dst) must be a buffer at least as big as (src), as this is where the
* cleaned up string is deposited.
* If there are illegal bits in the path (".." entries, etc) then we
* return zero and (dst) is undefined. Non-zero if the path was sanitized.
*/
static int sanitizePlatformIndependentPath(const char *src, char *dst)
{
char *prev;
char ch;
while (*src == '/') /* skip initial '/' chars... */
src++;
Oct 26, 2017
Oct 26, 2017
952
953
954
955
/* Make sure the entire string isn't "." or ".." */
if ((strcmp(src, ".") == 0) || (strcmp(src, "..") == 0))
BAIL(PHYSFS_ERR_BAD_FILENAME, 0);
Mar 13, 2005
Mar 13, 2005
956
957
958
959
960
961
prev = dst;
do
{
ch = *(src++);
if ((ch == ':') || (ch == '\\')) /* illegal chars in a physfs path. */
Jul 6, 2017
Jul 6, 2017
962
BAIL(PHYSFS_ERR_BAD_FILENAME, 0);
Mar 13, 2005
Mar 13, 2005
963
964
965
966
967
if (ch == '/') /* path separator. */
{
*dst = '\0'; /* "." and ".." are illegal pathnames. */
if ((strcmp(prev, ".") == 0) || (strcmp(prev, "..") == 0))
Jul 6, 2017
Jul 6, 2017
968
BAIL(PHYSFS_ERR_BAD_FILENAME, 0);
Mar 13, 2005
Mar 13, 2005
969
970
971
972
973
974
975
976
977
978
979
980
981
while (*src == '/') /* chop out doubles... */
src++;
if (*src == '\0') /* ends with a pathsep? */
break; /* we're done, don't add final pathsep to dst. */
prev = dst + 1;
} /* if */
*(dst++) = ch;
} while (ch != '\0');
Jan 28, 2010
Jan 28, 2010
982
return 1;
Mar 13, 2005
Mar 13, 2005
983
984
985
} /* sanitizePlatformIndependentPath */
Oct 18, 2018
Oct 18, 2018
986
987
988
989
990
991
992
993
994
995
996
997
static inline size_t dirHandleRootLen(const DirHandle *h)
{
return h ? h->rootlen : 0;
} /* dirHandleRootLen */
static inline int sanitizePlatformIndependentPathWithRoot(const DirHandle *h, const char *src, char *dst)
{
return sanitizePlatformIndependentPath(src, dst + dirHandleRootLen(h));
} /* sanitizePlatformIndependentPathWithRoot */
Mar 14, 2005
Mar 14, 2005
998
999
1000
/*
* Figure out if (fname) is part of (h)'s mountpoint. (fname) must be an
* output from sanitizePlatformIndependentPath(), so that it is in a known