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b463d6164a
home page instead of bundling the full code
357 lines
11 KiB
C
357 lines
11 KiB
C
/*
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nslcd-prot.h - helper macros for reading and writing in protocol streams
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Copyright (C) 2006 West Consulting
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Copyright (C) 2006, 2007, 2009 Arthur de Jong
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with this library; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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02110-1301 USA
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*/
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#ifndef _NSLCD_PROT_H
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#define _NSLCD_PROT_H 1
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#include "tio.h"
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/* If you use these macros you should define the following macros to
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handle error conditions (these marcos should clean up and return from the
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function):
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ERROR_OUT_WRITEERROR(fp)
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ERROR_OUT_READERROR(fp)
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ERROR_OUT_BUFERROR(fp)
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ERROR_OUT_NOSUCCESS(fp) */
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/* Debugging marcos that can be used to enable detailed protocol logging,
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pass -DDEBUG_PROT to do overall protocol debugging, and -DDEBUG_PROT_DUMP
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to dump the actual bytestream. */
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#ifdef DEBUG_PROT
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/* define a debugging macro to output logging */
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#include <string.h>
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#include <errno.h>
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#define DEBUG_PRINT(fmt,arg) \
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fprintf(stderr,"%s:%d:%s: " fmt "\n",__FILE__,__LINE__,__PRETTY_FUNCTION__,arg);
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#else /* DEBUG_PROT */
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/* define an empty debug macro to disable logging */
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#define DEBUG_PRINT(fmt,arg)
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#endif /* not DEBUG_PROT */
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#ifdef DEBUG_PROT_DUMP
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/* define a debugging macro to output detailed logging */
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#ifdef HAVE_STDINT_H
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#include <stdint.h>
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#endif /* HAVE_STDINT_H */
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static void debug_dump(const void *ptr,size_t size)
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{
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int i;
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for (i=0;i<size;i++)
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fprintf(stderr," %02x",((const uint8_t *)ptr)[i]);
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fprintf(stderr,"\n");
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}
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#define DEBUG_DUMP(ptr,size) \
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fprintf(stderr,"%s:%d:%s:",__FILE__,__LINE__,__PRETTY_FUNCTION__); \
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debug_dump(ptr,size);
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#else /* DEBUG_PROT_DUMP */
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/* define an empty debug macro to disable logging */
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#define DEBUG_DUMP(ptr,size)
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#endif /* not DEBUG_PROT_DUMP */
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/* WRITE marcos, used for writing data, on write error they will
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call the ERROR_OUT_WRITEERROR macro
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these macros may require the availability of the following
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variables:
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int32_t tmpint32; - temporary variable
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*/
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#define WRITE(fp,ptr,size) \
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DEBUG_PRINT("WRITE : var="__STRING(ptr)" size=%d",(int)size); \
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DEBUG_DUMP(ptr,size); \
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if (tio_write(fp,ptr,(size_t)size)) \
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{ \
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DEBUG_PRINT("WRITE : var="__STRING(ptr)" error: %s",strerror(errno)); \
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ERROR_OUT_WRITEERROR(fp); \
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}
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#define WRITE_TYPE(fp,field,type) \
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WRITE(fp,&(field),sizeof(type))
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#define WRITE_INT32(fp,i) \
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DEBUG_PRINT("WRITE_INT32 : var="__STRING(i)" int32=%d",(int)i); \
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tmpint32=(int32_t)(i); \
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WRITE_TYPE(fp,tmpint32,int32_t)
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#define WRITE_STRING(fp,str) \
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DEBUG_PRINT("WRITE_STRING: var="__STRING(str)" string=\"%s\"",(str)); \
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if ((str)==NULL) \
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{ \
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WRITE_INT32(fp,0); \
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} \
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else \
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{ \
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WRITE_INT32(fp,strlen(str)); \
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if (tmpint32>0) \
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{ WRITE(fp,(str),tmpint32); } \
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}
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#define WRITE_STRINGLIST(fp,arr) \
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if ((arr)==NULL) \
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{ \
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DEBUG_PRINT("WRITE_STRLST: var="__STRING(arr)" num=%d",0); \
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WRITE_INT32(fp,0); \
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} \
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else \
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{ \
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/* first determin length of array */ \
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for (tmp3int32=0;(arr)[tmp3int32]!=NULL;tmp3int32++) \
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/*noting*/ ; \
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/* write number of strings */ \
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DEBUG_PRINT("WRITE_STRLST: var="__STRING(arr)" num=%d",(int)tmp3int32); \
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WRITE_TYPE(fp,tmp3int32,int32_t); \
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/* write strings */ \
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for (tmp2int32=0;tmp2int32<tmp3int32;tmp2int32++) \
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{ \
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WRITE_STRING(fp,(arr)[tmp2int32]); \
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} \
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}
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#define WRITE_STRINGLIST_EXCEPT(fp,arr,not) \
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/* first determin length of array */ \
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tmp3int32=0; \
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for (tmp2int32=0;(arr)[tmp2int32]!=NULL;tmp2int32++) \
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if (strcmp((arr)[tmp2int32],(not))!=0) \
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tmp3int32++; \
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/* write number of strings (mius one because we intend to skip one) */ \
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DEBUG_PRINT("WRITE_STRLST: var="__STRING(arr)" num=%d",(int)tmp3int32); \
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WRITE_TYPE(fp,tmp3int32,int32_t); \
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/* write strings */ \
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for (tmp2int32=0;(arr)[tmp2int32]!=NULL;tmp2int32++) \
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{ \
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if (strcmp((arr)[tmp2int32],(not))!=0) \
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{ \
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WRITE_STRING(fp,(arr)[tmp2int32]); \
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} \
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}
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/* READ macros, used for reading data, on read error they will
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call the ERROR_OUT_READERROR or ERROR_OUT_BUFERROR macro
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these macros may require the availability of the following
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variables:
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int32_t tmpint32; - temporary variable
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*/
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#define READ(fp,ptr,size) \
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if (tio_read(fp,ptr,(size_t)size)) \
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{ \
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DEBUG_PRINT("READ : var="__STRING(ptr)" error: %s",strerror(errno)); \
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ERROR_OUT_READERROR(fp); \
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} \
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DEBUG_PRINT("READ : var="__STRING(ptr)" size=%d",(int)size); \
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DEBUG_DUMP(ptr,size);
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#define READ_TYPE(fp,field,type) \
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READ(fp,&(field),sizeof(type))
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#define READ_INT32(fp,i) \
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READ_TYPE(fp,tmpint32,int32_t); \
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i=tmpint32; \
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DEBUG_PRINT("READ_INT32 : var="__STRING(i)" int32=%d",(int)i);
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/* read a string in a fixed-size "normal" buffer */
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#define READ_STRING(fp,buffer) \
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/* read the size of the string */ \
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READ_TYPE(fp,tmpint32,int32_t); \
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DEBUG_PRINT("READ_STRING: var="__STRING(buffer)" strlen=%d",tmpint32); \
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/* check if read would fit */ \
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if (((size_t)tmpint32)>=sizeof(buffer)) \
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{ \
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/* will not fit */ \
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DEBUG_PRINT("READ : buffer error: %d bytes too large",(tmpint32-sizeof(buffer))+1); \
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ERROR_OUT_BUFERROR(fp); \
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} \
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/* read string from the stream */ \
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if (tmpint32>0) \
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{ READ(fp,buffer,(size_t)tmpint32); } \
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/* null-terminate string in buffer */ \
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buffer[tmpint32]='\0'; \
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DEBUG_PRINT("READ_STRING: var="__STRING(buffer)" string=\"%s\"",buffer);
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/* READ BUF macros that read data into a pre-allocated buffer.
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these macros may require the availability of the following
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variables:
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int32_t tmpint32; - temporary variable
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char *buffer; - pointer to a buffer for reading strings
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size_t buflen; - the size of the buffer
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size_t bufptr; - the current position in the buffer
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*/
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/* current position in the buffer */
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#define BUF_CUR \
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(buffer+bufptr)
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/* check that the buffer has sz bytes left in it */
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#define BUF_CHECK(fp,sz) \
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if ((bufptr+(size_t)(sz))>buflen) \
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{ \
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/* will not fit */ \
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DEBUG_PRINT("READ : buffer error: %d bytes too small",(bufptr+(sz)-(buflen))); \
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ERROR_OUT_BUFERROR(fp); \
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}
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/* move the buffer pointer */
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#define BUF_SKIP(sz) \
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bufptr+=(size_t)(sz);
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/* move BUF_CUR foreward so that it is aligned to the specified
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type width */
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#define BUF_ALIGN(fp,type) \
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/* figure out number of bytes to skip foreward */ \
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tmp2int32=(sizeof(type)-((BUF_CUR-(char *)NULL)%sizeof(type)))%sizeof(type); \
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/* check and skip */ \
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BUF_CHECK(fp,tmp2int32); \
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BUF_SKIP(tmp2int32);
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/* allocate a piece of the buffer to store an array in */
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#define BUF_ALLOC(fp,ptr,type,num) \
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/* align to the specified type width */ \
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BUF_ALIGN(fp,type); \
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/* check that we have enough room */ \
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BUF_CHECK(fp,(size_t)(num)*sizeof(type)); \
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/* store the pointer */ \
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(ptr)=(type *)BUF_CUR; \
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/* reserve the space */ \
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BUF_SKIP((size_t)(num)*sizeof(type));
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/* read a binary blob into the buffer */
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#define READ_BUF(fp,ptr,sz) \
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/* check that there is enough room and read */ \
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BUF_CHECK(fp,sz); \
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READ(fp,BUF_CUR,(size_t)sz); \
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/* store pointer and skip */ \
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(ptr)=BUF_CUR; \
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BUF_SKIP(sz);
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/* read string in the buffer (using buffer, buflen and bufptr)
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and store the actual location of the string in field */
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#define READ_BUF_STRING(fp,field) \
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/* read the size of the string */ \
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READ_TYPE(fp,tmpint32,int32_t); \
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DEBUG_PRINT("READ_BUF_STRING: var="__STRING(field)" strlen=%d",tmpint32); \
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/* check if read would fit */ \
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BUF_CHECK(fp,tmpint32+1); \
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/* read string from the stream */ \
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if (tmpint32>0) \
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{ READ(fp,BUF_CUR,(size_t)tmpint32); } \
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/* null-terminate string in buffer */ \
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BUF_CUR[tmpint32]='\0'; \
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DEBUG_PRINT("READ_BUF_STRING: var="__STRING(field)" string=\"%s\"",BUF_CUR); \
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/* prepare result */ \
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(field)=BUF_CUR; \
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BUF_SKIP(tmpint32+1);
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/* read an array from a stram and store it as a null-terminated
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array list (size for the array is allocated) */
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#define READ_BUF_STRINGLIST(fp,arr) \
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/* read the number of entries */ \
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READ_TYPE(fp,tmp3int32,int32_t); \
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DEBUG_PRINT("READ_STRLST: var="__STRING(arr)" num=%d",(int)tmp3int32); \
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/* allocate room for *char[num+1] */ \
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BUF_ALLOC(fp,arr,char *,tmp3int32+1); \
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/* read all entries */ \
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for (tmp2int32=0;tmp2int32<tmp3int32;tmp2int32++) \
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{ \
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READ_BUF_STRING(fp,(arr)[tmp2int32]); \
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} \
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/* set last entry to NULL */ \
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(arr)[tmp2int32]=NULL;
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/* SKIP macros for skipping over certain parts of the protocol stream. */
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/* skip a number of bytes foreward */
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#define SKIP(fp,sz) \
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DEBUG_PRINT("READ : skip %d bytes",(int)(sz)); \
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/* read (skip) the specified number of bytes */ \
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if (tio_skip(fp,sz)) \
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{ \
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DEBUG_PRINT("READ : skip error: %s",strerror(errno)); \
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ERROR_OUT_READERROR(fp); \
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}
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/* read a string from the stream but don't do anything with the result */
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#define SKIP_STRING(fp) \
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/* read the size of the string */ \
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READ_TYPE(fp,tmpint32,int32_t); \
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DEBUG_PRINT("READ_STRING: skip %d bytes",(int)tmpint32); \
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/* read (skip) the specified number of bytes */ \
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SKIP(fp,tmpint32);
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/* skip a list of strings */
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#define SKIP_STRINGLIST(fp) \
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/* read the number of entries */ \
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READ_TYPE(fp,tmp3int32,int32_t); \
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DEBUG_PRINT("READ_STRLST: skip %d strings",(int)tmp3int32); \
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/* read all entries */ \
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for (tmp2int32=0;tmp2int32<tmp3int32;tmp2int32++) \
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{ \
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SKIP_STRING(fp); \
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}
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/* These are functions and macors for performing common operations in
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the nslcd request/response protocol. */
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/* returns a socket to the server or NULL on error (see errno),
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socket should be closed with tio_close() */
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TFILE *nslcd_client_open(void)
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MUST_USE;
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/* generic request code */
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#define NSLCD_REQUEST(fp,action,writefn) \
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/* open a client socket */ \
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if ((fp=nslcd_client_open())==NULL) \
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{ ERROR_OUT_OPENERROR } \
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/* write a request header with a request code */ \
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WRITE_INT32(fp,(int32_t)NSLCD_VERSION) \
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WRITE_INT32(fp,(int32_t)action) \
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/* write the request parameters (if any) */ \
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writefn; \
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/* flush the stream */ \
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if (tio_flush(fp)<0) \
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{ \
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DEBUG_PRINT("WRITE_FLUSH : error: %s",strerror(errno)); \
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ERROR_OUT_WRITEERROR(fp); \
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} \
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/* read and check response version number */ \
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READ_TYPE(fp,tmpint32,int32_t); \
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if (tmpint32!=(int32_t)NSLCD_VERSION) \
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{ ERROR_OUT_READERROR(fp) } \
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/* read and check response request number */ \
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READ_TYPE(fp,tmpint32,int32_t); \
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if (tmpint32!=(int32_t)(action)) \
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{ ERROR_OUT_READERROR(fp) }
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/* Read the response code (the result code of the query) from
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the stream. */
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#define READ_RESPONSE_CODE(fp) \
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READ_TYPE(fp,tmpint32,int32_t); \
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if (tmpint32!=(int32_t)NSLCD_RESULT_BEGIN) \
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{ ERROR_OUT_NOSUCCESS(fp) }
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#endif /* not _NSLCD_PROT_H */
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