mirror of
https://github.com/samba-team/samba.git
synced 2024-12-28 07:21:54 +03:00
2e783a4707
many possible mem leaks, and segfaults fixed.
someone should port this fix to 2.2 also.
(This used to be commit fa8e55b8b4
)
472 lines
12 KiB
C
472 lines
12 KiB
C
#include "parser.h"
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/*******************************************************************
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Attempt, if needed, to grow a data buffer.
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Also depends on the data stream mode (io).
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********************************************************************/
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BOOL io_grow(io_struct *ps, uint32 extra_space)
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{
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uint32 new_size;
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char *new_data;
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ps->grow_size = MAX(ps->grow_size, ps->data_offset + extra_space);
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if(ps->data_offset + extra_space <= ps->buffer_size)
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return True;
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/*
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* We cannot grow the buffer if we're not reading
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* into the io_struct, or if we don't own the memory.
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*/
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if(UNMARSHALLING(ps) || !ps->is_dynamic) {
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DEBUG(0,("io_grow: Buffer overflow - unable to expand buffer by %u bytes.\n",
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(unsigned int)extra_space));
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return False;
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}
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/*
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* Decide how much extra space we really need.
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*/
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extra_space -= (ps->buffer_size - ps->data_offset);
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if(ps->buffer_size == 0) {
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new_size = extra_space;
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if((new_data = malloc(new_size)) == NULL) {
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DEBUG(0,("io_grow: Malloc failure for size %u.\n", (unsigned int)new_size));
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return False;
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}
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memset(new_data, '\0', new_size );
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} else {
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/*
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* If the current buffer size is bigger than the space needed, just
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* double it, else add extra_space.
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*/
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new_size = MAX(ps->buffer_size*2, ps->buffer_size + extra_space);
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if ((new_data = Realloc(ps->data_p, new_size)) == NULL) {
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DEBUG(0,("io_grow: Realloc failure for size %u.\n",
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(unsigned int)new_size));
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return False;
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}
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}
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ps->buffer_size = new_size;
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ps->data_p = new_data;
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return True;
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}
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/*******************************************************************
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Ensure we can read/write to a given offset.
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********************************************************************/
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char *io_mem_get(io_struct *ps, uint32 extra_size)
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{
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if(UNMARSHALLING(ps)) {
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/*
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* If reading, ensure that we can read the requested size item.
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*/
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if (ps->data_offset + extra_size > ps->buffer_size) {
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DEBUG(0,("io_mem_get: reading data of size %u would overrun buffer.\n",
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(unsigned int)extra_size ));
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return NULL;
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}
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} else {
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/*
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* Writing - grow the buffer if needed.
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*/
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if(!io_grow(ps, extra_size))
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return False;
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}
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return &ps->data_p[ps->data_offset];
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}
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/*******************************************************************
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Initialise a parse structure - malloc the data if requested.
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********************************************************************/
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BOOL io_init(io_struct *ps, uint32 size, BOOL io)
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{
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ZERO_STRUCTP(ps);
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ps->io = io;
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ps->bigendian_data = False;
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ps->is_dynamic = False;
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ps->data_offset = 0;
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ps->buffer_size = 0;
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ps->data_p = NULL;
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if (size != 0) {
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ps->buffer_size = size;
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if((ps->data_p = (char *)malloc((size_t)size)) == NULL) {
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DEBUG(0,("io_init: malloc fail for %u bytes.\n", (unsigned int)size));
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return False;
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}
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ps->is_dynamic = True; /* We own this memory. */
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}
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return True;
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}
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/*******************************************************************
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debug output for parsing info.
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XXXX side-effect of this function is to increase the debug depth XXXX
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********************************************************************/
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void io_debug(io_struct *ps, int depth, char *desc, char *fn_name)
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{
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DEBUG(5+depth, ("%s%06x %s %s\n", tab_depth(depth), ps->data_offset, fn_name, desc));
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}
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/*******************************************************************
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Align a the data_len to a multiple of align bytes - filling with
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zeros.
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********************************************************************/
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BOOL io_align2(io_struct *ps, int offset)
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{
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uint32 mod = (ps->data_offset + offset) & (2-1);
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if (mod != 0) {
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uint32 extra_space = (2 - mod);
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if(!io_grow(ps, extra_space))
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return False;
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memset(&ps->data_p[ps->data_offset], '\0', (size_t)extra_space);
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ps->data_offset += extra_space;
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}
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return True;
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}
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BOOL io_align4(io_struct *ps, int offset)
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{
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uint32 mod = (ps->data_offset + offset) & (4-1);
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if (mod != 0) {
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uint32 extra_space = (4 - mod);
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if(!io_grow(ps, extra_space))
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return False;
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memset(&ps->data_p[ps->data_offset], '\0', (size_t)extra_space);
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ps->data_offset += extra_space;
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}
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return True;
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}
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/*******************************************************************
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Align a the data_len to a multiple of align bytes - filling with
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zeros.
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********************************************************************/
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BOOL io_align(io_struct *ps, int align)
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{
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uint32 mod;
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if (!ps->autoalign) return True;
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mod = ps->data_offset & (align-1);
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if (align != 0 && mod != 0) {
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uint32 extra_space = (align - mod);
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if(!io_grow(ps, extra_space))
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return False;
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memset(&ps->data_p[ps->data_offset], '\0', (size_t)extra_space);
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ps->data_offset += extra_space;
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}
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return True;
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}
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/*******************************************************************
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read from a socket into memory.
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********************************************************************/
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BOOL io_read(io_struct *ps, int fd, size_t len, int timeout)
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{
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BOOL ok;
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size_t prev_size = ps->buffer_size;
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if (!io_grow(ps, len))
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{
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return False;
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}
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if (timeout > 0)
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{
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ok = (read(fd, &ps->data_p[prev_size], len) == len);
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}
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else
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{
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ok = (read(fd, &ps->data_p[prev_size], len) == len);
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}
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return ok;
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}
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/*******************************************************************
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do IO on a uint32.
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********************************************************************/
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BOOL io_uint32(char *name, io_struct *ps, int depth, uint32 *data32, unsigned flags)
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{
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char *q;
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if (!(flags & PARSE_SCALARS)) return True;
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if (!io_align(ps, 4)) return False;
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q = io_mem_get(ps, sizeof(uint32));
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if (q == NULL) return False;
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DBG_RW_IVAL(name, depth, ps->data_offset, ps->io, ps->bigendian_data, q, *data32)
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ps->data_offset += sizeof(uint32);
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return True;
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}
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/*******************************************************************
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do IO on a uint16.
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********************************************************************/
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BOOL io_uint16(char *name, io_struct *ps, int depth, uint16 *data16, unsigned flags)
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{
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char *q;
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if (!(flags & PARSE_SCALARS)) return True;
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if (!io_align(ps, 2)) return False;
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q = io_mem_get(ps, sizeof(uint16));
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if (q == NULL) return False;
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DBG_RW_SVAL(name, depth, ps->data_offset, ps->io, ps->bigendian_data, q, *data16)
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ps->data_offset += sizeof(uint16);
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return True;
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}
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/*******************************************************************
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do IO on a uint8.
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********************************************************************/
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BOOL io_uint8(char *name, io_struct *ps, int depth, uint8 *data8, unsigned flags)
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{
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char *q;
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if (!(flags & PARSE_SCALARS)) return True;
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q = io_mem_get(ps, sizeof(uint8));
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if (q == NULL) return False;
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DBG_RW_IVAL(name, depth, ps->data_offset, ps->io, ps->bigendian_data, q, *data8)
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ps->data_offset += sizeof(uint8);
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return True;
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}
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/*******************************************************************
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do IO on a pointer
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********************************************************************/
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BOOL io_pointer(char *desc, io_struct *ps, int depth, void **p, unsigned flags)
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{
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uint32 v;
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if (!(flags & PARSE_SCALARS)) return True;
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v = (*p) ? 0xdeadbeef : 0;
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if (!io_uint32(desc, ps, depth, &v, flags)) return False;
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*p = (void *) (v ? 0xdeadbeef : 0);
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return True;
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}
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/*******************************************************************
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Stream a null-terminated string.
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********************************************************************/
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BOOL io_SMBSTR(char *name, io_struct *ps, int depth, char **str, unsigned flags)
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{
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char *q;
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uint8 *start;
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int i;
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size_t len;
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int start_offset = ps->data_offset;
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if (!(flags & PARSE_SCALARS)) return True;
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if (UNMARSHALLING(ps)) {
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*str = io_mem_get(ps, 0);
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if (*str == NULL)
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return False;
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len = strlen(*str);
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ps->data_offset += len + 1;
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}
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else
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{
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len = strlen(*str)+1;
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start = (uint8*)q;
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for(i = 0; i < len; i++) {
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q = io_mem_get(ps, 1);
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if (q == NULL)
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return False;
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RW_CVAL(ps->io, q, (*str)[i],0);
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ps->data_offset++;
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}
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}
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DEBUG(5,("%s%04x %s: %s\n", tab_depth(depth),
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start_offset, name, *str));
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return True;
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}
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/******************************************************************
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do IO on a byte array
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********************************************************************/
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BOOL io_uint8s(char *name, io_struct *ps, int depth, uint8 **data8s, int len, unsigned flags)
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{
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char *q;
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size_t num_bytes = len * sizeof(uint8);
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if (!(flags & PARSE_SCALARS)) return True;
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q = io_mem_get(ps, num_bytes);
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if (q == NULL) return False;
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if (MARSHALLING(ps))
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{
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DBG_RW_PCVAL(True, name, depth, ps->data_offset, ps->io, q, *data8s, len)
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}
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else
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{
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*data8s = q;
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dump_data(depth+5, *data8s, num_bytes);
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}
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ps->data_offset += num_bytes;
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return True;
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}
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/******************************************************************
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do IO on a fixed-size byte array
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********************************************************************/
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BOOL io_uint8s_fixed(char *name, io_struct *ps, int depth, uint8 *data8s, int len, unsigned flags)
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{
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char *q;
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size_t num_bytes = len * sizeof(uint8);
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if (!(flags & PARSE_SCALARS)) return True;
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q = io_mem_get(ps, num_bytes);
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if (q == NULL) return False;
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DBG_RW_PCVAL(True, name, depth, ps->data_offset, ps->io, q, data8s, len)
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ps->data_offset += num_bytes;
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return True;
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}
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/******************************************************************
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do IO on an io (eh?? :)
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********************************************************************/
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BOOL io_io_struct(char *name, io_struct *ps, int depth, io_struct *io, unsigned flags)
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{
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char *q;
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uint16 len;
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if (!(flags & PARSE_SCALARS)) return True;
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q = io_mem_get(ps, sizeof(uint16));
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if (q == NULL) return False;
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/* length first */
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if (MARSHALLING(ps))
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{
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len = io->data_offset;
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}
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if (!io_uint16("len", ps, depth+1, &len, flags))
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{
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return False;
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}
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if (UNMARSHALLING(ps))
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{
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if (!io_init(io, len, UNMARSHALL))
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{
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return False;
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}
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}
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/* now data */
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q = io_mem_get(ps, len * sizeof(uint8));
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if (q == NULL) return False;
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if (MARSHALLING(ps))
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{
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DBG_RW_PCVAL(False, name, depth+1, ps->data_offset, ps->io, q, io->data_p, len)
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}
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else
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{
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io->data_p = q;
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dump_data(depth+5, q, len);
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}
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ps->data_offset += len;
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return True;
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}
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/******************************************************************
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do IO on a unicode array
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********************************************************************/
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BOOL io_wstring(char *name, io_struct *ps, int depth, uint16 *data16s, int len, unsigned flags)
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{
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char *q;
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if (!(flags & PARSE_SCALARS)) return True;
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if (!io_align(ps, 2)) return False;
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q = io_mem_get(ps, len * sizeof(uint16));
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if (q == NULL) return False;
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DBG_RW_PSVAL(True, name, depth, ps->data_offset, ps->io, ps->bigendian_data, q, data16s, len)
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ps->data_offset += (len * sizeof(uint16));
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return True;
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}
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/******************************************************************
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allocate some memory for a parse structure
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********************************************************************/
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void io_free(io_struct *ps)
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{
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if (ps->is_dynamic && ps->data_p)
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{
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free(ps->data_p);
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ps->data_p = NULL;
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}
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}
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/******************************************************************
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allocate some memory for a parse structure
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********************************************************************/
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BOOL io_alloc(char *name, io_struct *ps, void **ptr, unsigned size)
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{
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(*ptr) = (void *)malloc(size);
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if (*ptr) return True;
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return False;
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}
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/******************************************************************
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realloc some memory for a parse structure
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********************************************************************/
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BOOL io_realloc(char *name, io_struct *ps, void **ptr, unsigned size)
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{
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BOOL ret = True;
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void *tp;
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tp = (void *)Realloc(*ptr, size);
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if (tp) *ptr = tp;
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else ret = False;
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return ret;
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}
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