mirror of
https://gitlab.freedesktop.org/gstreamer/gstreamer.git
synced 2024-12-25 01:30:38 +00:00
0b09573bbe
Previously GStreamer got access to the libcheck interface by including libs/gst/check/check.h which in turn included internal-check.h in the same directory. internal-check.h was generated by copying libs/gst/check/libcheck/check.h which in turn was generated from check.h.in in the same directory. In this case generating libs/gst/check/libcheck/check.h is unnecessary, in addition this file was accidentally distributed in generated project tarballs. Now libs/gst/check/internal-check.h is generated directly from libs/gst/check/libcheck/check.h.in by configure. This means that the libcheck source must include internal-check.h instead of the previously generated libs/gst/check/libcheck/check.h. However the unnecessary intermediate step is now skipped. Fixes https://bugzilla.gnome.org/show_bug.cgi?id=741359
491 lines
10 KiB
C
491 lines
10 KiB
C
/*
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* Check: a unit test framework for C
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* Copyright (C) 2001, 2002 Arien Malec
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*
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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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*
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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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*
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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
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* Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
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* Boston, MA 02110-1301, USA.
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*/
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#include "libcompat.h"
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#include <stdlib.h>
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#include <string.h>
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#include <stdio.h>
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#include "internal-check.h"
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#include "check_error.h"
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#include "check_list.h"
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#include "check_impl.h"
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#include "check_pack.h"
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#ifndef HAVE_PTHREAD
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#define pthread_mutex_lock(arg)
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#define pthread_mutex_unlock(arg)
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#define pthread_cleanup_push(f,a) {
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#define pthread_cleanup_pop(e) }
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#endif
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/* Maximum size for one message in the message stream. */
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#define CK_MAX_MSG_SIZE 8192
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/* This is used to implement a sliding window on the receiving
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* side. When sending messages, we assure that no single message
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* is bigger than this (actually we check against CK_MAX_MSG_SIZE/2).
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* The usual size for a message is less than 80 bytes.
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* All this is done instead of the previous approach to allocate (actually
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* continuously reallocate) one big chunk for the whole message stream.
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* Problems were seen in the wild with up to 4 GB reallocations.
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*/
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/* typedef an unsigned int that has at least 4 bytes */
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typedef uint32_t ck_uint32;
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static void pack_int (char **buf, int val);
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static int upack_int (char **buf);
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static void pack_str (char **buf, const char *str);
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static char *upack_str (char **buf);
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static int pack_ctx (char **buf, CtxMsg * cmsg);
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static int pack_loc (char **buf, LocMsg * lmsg);
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static int pack_fail (char **buf, FailMsg * fmsg);
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static int pack_duration (char **buf, DurationMsg * fmsg);
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static void upack_ctx (char **buf, CtxMsg * cmsg);
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static void upack_loc (char **buf, LocMsg * lmsg);
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static void upack_fail (char **buf, FailMsg * fmsg);
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static void upack_duration (char **buf, DurationMsg * fmsg);
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static void check_type (int type, const char *file, int line);
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static enum ck_msg_type upack_type (char **buf);
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static void pack_type (char **buf, enum ck_msg_type type);
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static int read_buf (FILE * fdes, int size, char *buf);
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static int get_result (char *buf, RcvMsg * rmsg);
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static void rcvmsg_update_ctx (RcvMsg * rmsg, enum ck_result_ctx ctx);
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static void rcvmsg_update_loc (RcvMsg * rmsg, const char *file, int line);
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static RcvMsg *rcvmsg_create (void);
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void rcvmsg_free (RcvMsg * rmsg);
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typedef int (*pfun) (char **, CheckMsg *);
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typedef void (*upfun) (char **, CheckMsg *);
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static pfun pftab[] = {
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(pfun) pack_ctx,
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(pfun) pack_fail,
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(pfun) pack_loc,
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(pfun) pack_duration
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};
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static upfun upftab[] = {
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(upfun) upack_ctx,
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(upfun) upack_fail,
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(upfun) upack_loc,
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(upfun) upack_duration
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};
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int
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pack (enum ck_msg_type type, char **buf, CheckMsg * msg)
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{
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if (buf == NULL)
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return -1;
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if (msg == NULL)
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return 0;
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check_type (type, __FILE__, __LINE__);
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return pftab[type] (buf, msg);
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}
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int
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upack (char *buf, CheckMsg * msg, enum ck_msg_type *type)
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{
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char *obuf;
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if (buf == NULL)
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return -1;
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obuf = buf;
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*type = upack_type (&buf);
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check_type (*type, __FILE__, __LINE__);
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upftab[*type] (&buf, msg);
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return buf - obuf;
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}
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static void
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pack_int (char **buf, int val)
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{
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unsigned char *ubuf = (unsigned char *) *buf;
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ck_uint32 uval = val;
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ubuf[0] = (unsigned char) ((uval >> 24) & 0xFF);
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ubuf[1] = (unsigned char) ((uval >> 16) & 0xFF);
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ubuf[2] = (unsigned char) ((uval >> 8) & 0xFF);
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ubuf[3] = (unsigned char) (uval & 0xFF);
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*buf += 4;
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}
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static int
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upack_int (char **buf)
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{
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unsigned char *ubuf = (unsigned char *) *buf;
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ck_uint32 uval;
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uval =
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(ck_uint32) ((ubuf[0] << 24) | (ubuf[1] << 16) | (ubuf[2] << 8) |
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ubuf[3]);
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*buf += 4;
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return (int) uval;
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}
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static void
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pack_str (char **buf, const char *val)
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{
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int strsz;
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if (val == NULL)
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strsz = 0;
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else
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strsz = strlen (val);
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pack_int (buf, strsz);
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if (strsz > 0) {
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memcpy (*buf, val, strsz);
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*buf += strsz;
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}
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}
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static char *
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upack_str (char **buf)
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{
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char *val;
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int strsz;
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strsz = upack_int (buf);
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if (strsz > 0) {
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val = (char *) emalloc (strsz + 1);
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memcpy (val, *buf, strsz);
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val[strsz] = 0;
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*buf += strsz;
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} else {
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val = (char *) emalloc (1);
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*val = 0;
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}
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return val;
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}
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static void
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pack_type (char **buf, enum ck_msg_type type)
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{
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pack_int (buf, (int) type);
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}
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static enum ck_msg_type
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upack_type (char **buf)
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{
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return (enum ck_msg_type) upack_int (buf);
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}
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static int
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pack_ctx (char **buf, CtxMsg * cmsg)
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{
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char *ptr;
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int len;
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len = 4 + 4;
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*buf = ptr = (char *) emalloc (len);
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pack_type (&ptr, CK_MSG_CTX);
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pack_int (&ptr, (int) cmsg->ctx);
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return len;
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}
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static void
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upack_ctx (char **buf, CtxMsg * cmsg)
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{
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cmsg->ctx = (enum ck_result_ctx) upack_int (buf);
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}
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static int
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pack_duration (char **buf, DurationMsg * cmsg)
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{
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char *ptr;
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int len;
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len = 4 + 4;
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*buf = ptr = (char *) emalloc (len);
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pack_type (&ptr, CK_MSG_DURATION);
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pack_int (&ptr, cmsg->duration);
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return len;
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}
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static void
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upack_duration (char **buf, DurationMsg * cmsg)
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{
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cmsg->duration = upack_int (buf);
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}
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static int
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pack_loc (char **buf, LocMsg * lmsg)
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{
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char *ptr;
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int len;
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len = 4 + 4 + (lmsg->file ? strlen (lmsg->file) : 0) + 4;
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*buf = ptr = (char *) emalloc (len);
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pack_type (&ptr, CK_MSG_LOC);
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pack_str (&ptr, lmsg->file);
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pack_int (&ptr, lmsg->line);
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return len;
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}
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static void
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upack_loc (char **buf, LocMsg * lmsg)
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{
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lmsg->file = upack_str (buf);
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lmsg->line = upack_int (buf);
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}
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static int
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pack_fail (char **buf, FailMsg * fmsg)
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{
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char *ptr;
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int len;
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len = 4 + 4 + (fmsg->msg ? strlen (fmsg->msg) : 0);
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*buf = ptr = (char *) emalloc (len);
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pack_type (&ptr, CK_MSG_FAIL);
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pack_str (&ptr, fmsg->msg);
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return len;
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}
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static void
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upack_fail (char **buf, FailMsg * fmsg)
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{
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fmsg->msg = upack_str (buf);
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}
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static void
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check_type (int type, const char *file, int line)
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{
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if (type < 0 || type >= CK_MSG_LAST)
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eprintf ("Bad message type arg %d", file, line, type);
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}
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#ifdef HAVE_PTHREAD
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static pthread_mutex_t ck_mutex_lock = PTHREAD_MUTEX_INITIALIZER;
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static void
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ppack_cleanup (void *mutex)
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{
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pthread_mutex_unlock ((pthread_mutex_t *) mutex);
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}
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#endif
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void
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ppack (FILE * fdes, enum ck_msg_type type, CheckMsg * msg)
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{
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char *buf = NULL;
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int n;
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ssize_t r;
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n = pack (type, &buf, msg);
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/* Keep it on the safe side to not send too much data. */
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if (n > (CK_MAX_MSG_SIZE / 2))
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eprintf ("Message string too long", __FILE__, __LINE__ - 2);
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pthread_cleanup_push (ppack_cleanup, &ck_mutex_lock);
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pthread_mutex_lock (&ck_mutex_lock);
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r = fwrite (buf, 1, n, fdes);
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fflush (fdes);
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pthread_mutex_unlock (&ck_mutex_lock);
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pthread_cleanup_pop (0);
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if (r != n)
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eprintf ("Error in call to fwrite:", __FILE__, __LINE__ - 2);
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free (buf);
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}
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static int
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read_buf (FILE * fdes, int size, char *buf)
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{
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int n;
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n = fread (buf, 1, size, fdes);
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if (ferror (fdes)) {
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eprintf ("Error in call to fread:", __FILE__, __LINE__ - 4);
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}
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return n;
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}
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static int
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get_result (char *buf, RcvMsg * rmsg)
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{
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enum ck_msg_type type;
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CheckMsg msg;
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int n;
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n = upack (buf, &msg, &type);
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if (n == -1)
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eprintf ("Error in call to upack", __FILE__, __LINE__ - 2);
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if (type == CK_MSG_CTX) {
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CtxMsg *cmsg = (CtxMsg *) & msg;
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rcvmsg_update_ctx (rmsg, cmsg->ctx);
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} else if (type == CK_MSG_LOC) {
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LocMsg *lmsg = (LocMsg *) & msg;
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if (rmsg->failctx == CK_CTX_INVALID) {
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rcvmsg_update_loc (rmsg, lmsg->file, lmsg->line);
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}
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free (lmsg->file);
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} else if (type == CK_MSG_FAIL) {
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FailMsg *fmsg = (FailMsg *) & msg;
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if (rmsg->msg == NULL) {
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rmsg->msg = strdup (fmsg->msg);
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rmsg->failctx = rmsg->lastctx;
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} else {
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/* Skip subsequent failure messages, only happens for CK_NOFORK */
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}
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free (fmsg->msg);
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} else if (type == CK_MSG_DURATION) {
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DurationMsg *cmsg = (DurationMsg *) & msg;
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rmsg->duration = cmsg->duration;
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} else
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check_type (type, __FILE__, __LINE__);
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return n;
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}
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static void
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reset_rcv_test (RcvMsg * rmsg)
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{
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rmsg->test_line = -1;
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rmsg->test_file = NULL;
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}
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static void
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reset_rcv_fixture (RcvMsg * rmsg)
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{
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rmsg->fixture_line = -1;
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rmsg->fixture_file = NULL;
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}
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static RcvMsg *
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rcvmsg_create (void)
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{
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RcvMsg *rmsg;
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rmsg = (RcvMsg *) emalloc (sizeof (RcvMsg));
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rmsg->lastctx = CK_CTX_INVALID;
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rmsg->failctx = CK_CTX_INVALID;
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rmsg->msg = NULL;
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rmsg->duration = -1;
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reset_rcv_test (rmsg);
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reset_rcv_fixture (rmsg);
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return rmsg;
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}
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void
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rcvmsg_free (RcvMsg * rmsg)
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{
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free (rmsg->fixture_file);
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free (rmsg->test_file);
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free (rmsg->msg);
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free (rmsg);
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}
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static void
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rcvmsg_update_ctx (RcvMsg * rmsg, enum ck_result_ctx ctx)
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{
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if (rmsg->lastctx != CK_CTX_INVALID) {
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free (rmsg->fixture_file);
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reset_rcv_fixture (rmsg);
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}
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rmsg->lastctx = ctx;
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}
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static void
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rcvmsg_update_loc (RcvMsg * rmsg, const char *file, int line)
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{
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if (rmsg->lastctx == CK_CTX_TEST) {
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free (rmsg->test_file);
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rmsg->test_line = line;
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rmsg->test_file = strdup (file);
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} else {
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free (rmsg->fixture_file);
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rmsg->fixture_line = line;
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rmsg->fixture_file = strdup (file);
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}
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}
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RcvMsg *
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punpack (FILE * fdes)
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{
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int nread, nparse, n;
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char *buf;
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RcvMsg *rmsg;
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rmsg = rcvmsg_create ();
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/* Allcate a buffer */
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buf = (char *) emalloc (CK_MAX_MSG_SIZE);
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/* Fill the buffer from the file */
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nread = read_buf (fdes, CK_MAX_MSG_SIZE, buf);
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nparse = nread;
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/* While not all parsed */
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while (nparse > 0) {
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/* Parse one message */
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n = get_result (buf, rmsg);
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nparse -= n;
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/* Move remaining data in buffer to the beginning */
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memmove (buf, buf + n, nparse);
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/* If EOF has not been seen */
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if (nread > 0) {
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/* Read more data into empty space at end of the buffer */
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nread = read_buf (fdes, n, buf + nparse);
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nparse += nread;
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}
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}
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free (buf);
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if (rmsg->lastctx == CK_CTX_INVALID) {
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free (rmsg);
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rmsg = NULL;
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}
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return rmsg;
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}
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