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498 lines
12 KiB
C
498 lines
12 KiB
C
/* Test for libio vtables and their validation. Common code.
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Copyright (C) 2018-2020 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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The GNU C 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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The GNU C 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 the GNU C Library; if not, see
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<https://www.gnu.org/licenses/>. */
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/* This test provides some coverage for how various stdio functions
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use the vtables in FILE * objects. The focus is mostly on which
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functions call which methods, not so much on validating data
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processing. An initial series of tests check that custom vtables
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do not work without activation through _IO_init.
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Note: libio vtables are deprecated feature. Do not use this test
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as a documentation source for writing custom vtables. See
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fopencookie for a different way of creating custom stdio
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streams. */
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#include <stdbool.h>
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#include <string.h>
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#include <support/capture_subprocess.h>
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#include <support/check.h>
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#include <support/namespace.h>
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#include <support/support.h>
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#include <support/test-driver.h>
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#include <support/xunistd.h>
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#include "libioP.h"
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/* Data shared between the test subprocess and the test driver in the
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parent. Note that *shared is reset at the start of the check_call
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function. */
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struct shared
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{
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/* Expected file pointer for method calls. */
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FILE *fp;
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/* If true, assume that a call to _IO_init is needed to enable
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custom vtables. */
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bool initially_disabled;
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/* Requested return value for the methods which have one. */
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int return_value;
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/* A value (usually a character) recorded by some of the methods
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below. */
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int value;
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/* Likewise, for some data. */
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char buffer[16];
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size_t buffer_length;
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/* Total number of method calls. */
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unsigned int calls;
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/* Individual method call counts. */
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unsigned int calls_finish;
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unsigned int calls_overflow;
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unsigned int calls_underflow;
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unsigned int calls_uflow;
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unsigned int calls_pbackfail;
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unsigned int calls_xsputn;
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unsigned int calls_xsgetn;
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unsigned int calls_seekoff;
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unsigned int calls_seekpos;
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unsigned int calls_setbuf;
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unsigned int calls_sync;
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unsigned int calls_doallocate;
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unsigned int calls_read;
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unsigned int calls_write;
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unsigned int calls_seek;
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unsigned int calls_close;
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unsigned int calls_stat;
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unsigned int calls_showmanyc;
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unsigned int calls_imbue;
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} *shared;
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/* Method implementations which increment the counters in *shared. */
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static void
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log_method (FILE *fp, const char *name)
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{
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if (test_verbose > 0)
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printf ("info: %s (%p) called\n", name, fp);
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}
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static void
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method_finish (FILE *fp, int dummy)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_finish;
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}
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static int
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method_overflow (FILE *fp, int ch)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_overflow;
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shared->value = ch;
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return shared->return_value;
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}
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static int
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method_underflow (FILE *fp)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_underflow;
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return shared->return_value;
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}
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static int
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method_uflow (FILE *fp)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_uflow;
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return shared->return_value;
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}
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static int
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method_pbackfail (FILE *fp, int ch)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_pbackfail;
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shared->value = ch;
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return shared->return_value;
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}
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static size_t
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method_xsputn (FILE *fp, const void *data, size_t n)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_xsputn;
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size_t to_copy = n;
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if (n > sizeof (shared->buffer))
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to_copy = sizeof (shared->buffer);
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memcpy (shared->buffer, data, to_copy);
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shared->buffer_length = to_copy;
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return to_copy;
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}
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static size_t
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method_xsgetn (FILE *fp, void *data, size_t n)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_xsgetn;
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return 0;
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}
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static off64_t
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method_seekoff (FILE *fp, off64_t offset, int dir, int mode)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_seekoff;
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return shared->return_value;
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}
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static off64_t
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method_seekpos (FILE *fp, off64_t offset, int mode)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_seekpos;
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return shared->return_value;
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}
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static FILE *
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method_setbuf (FILE *fp, char *buffer, ssize_t length)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_setbuf;
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return fp;
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}
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static int
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method_sync (FILE *fp)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_sync;
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return shared->return_value;
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}
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static int
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method_doallocate (FILE *fp)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_doallocate;
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return shared->return_value;
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}
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static ssize_t
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method_read (FILE *fp, void *data, ssize_t length)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_read;
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return shared->return_value;
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}
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static ssize_t
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method_write (FILE *fp, const void *data, ssize_t length)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_write;
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return shared->return_value;
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}
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static off64_t
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method_seek (FILE *fp, off64_t offset, int mode)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_seek;
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return shared->return_value;
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}
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static int
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method_close (FILE *fp)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_close;
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return shared->return_value;
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}
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static int
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method_stat (FILE *fp, void *buffer)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_stat;
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return shared->return_value;
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}
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static int
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method_showmanyc (FILE *fp)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_showmanyc;
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return shared->return_value;
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}
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static void
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method_imbue (FILE *fp, void *locale)
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{
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log_method (fp, __func__);
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TEST_VERIFY (fp == shared->fp);
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++shared->calls;
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++shared->calls_imbue;
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}
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/* Our custom vtable. */
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static const struct _IO_jump_t jumps =
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{
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JUMP_INIT_DUMMY,
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JUMP_INIT (finish, method_finish),
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JUMP_INIT (overflow, method_overflow),
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JUMP_INIT (underflow, method_underflow),
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JUMP_INIT (uflow, method_uflow),
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JUMP_INIT (pbackfail, method_pbackfail),
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JUMP_INIT (xsputn, method_xsputn),
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JUMP_INIT (xsgetn, method_xsgetn),
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JUMP_INIT (seekoff, method_seekoff),
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JUMP_INIT (seekpos, method_seekpos),
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JUMP_INIT (setbuf, method_setbuf),
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JUMP_INIT (sync, method_sync),
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JUMP_INIT (doallocate, method_doallocate),
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JUMP_INIT (read, method_read),
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JUMP_INIT (write, method_write),
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JUMP_INIT (seek, method_seek),
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JUMP_INIT (close, method_close),
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JUMP_INIT (stat, method_stat),
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JUMP_INIT (showmanyc, method_showmanyc),
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JUMP_INIT (imbue, method_imbue)
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};
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/* Our file implementation. */
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struct my_file
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{
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FILE f;
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const struct _IO_jump_t *vtable;
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};
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struct my_file
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my_file_create (void)
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{
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return (struct my_file)
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{
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/* Disable locking, so that we do not have to set up a lock
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pointer. */
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.f._flags = _IO_USER_LOCK,
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/* Copy the offset from the an initialized handle, instead of
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figuring it out from scratch. */
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.f._vtable_offset = stdin->_vtable_offset,
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.vtable = &jumps,
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};
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}
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/* Initial tests which do not enable vtable compatibility. */
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/* Inhibit GCC optimization of fprintf. */
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typedef int (*fprintf_type) (FILE *, const char *, ...);
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static const volatile fprintf_type fprintf_ptr = &fprintf;
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static void
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without_compatibility_fprintf (void *closure)
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{
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/* This call should abort. */
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fprintf_ptr (shared->fp, " ");
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_exit (1);
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}
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static void
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without_compatibility_fputc (void *closure)
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{
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/* This call should abort. */
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fputc (' ', shared->fp);
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_exit (1);
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}
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static void
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without_compatibility_fgetc (void *closure)
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{
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/* This call should abort. */
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fgetc (shared->fp);
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_exit (1);
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}
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static void
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without_compatibility_fflush (void *closure)
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{
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/* This call should abort. */
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fflush (shared->fp);
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_exit (1);
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}
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static void
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check_for_termination (const char *name, void (*callback) (void *))
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{
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struct my_file file = my_file_create ();
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shared->fp = &file.f;
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shared->return_value = -1;
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shared->calls = 0;
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struct support_capture_subprocess proc
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= support_capture_subprocess (callback, NULL);
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support_capture_subprocess_check (&proc, name, -SIGABRT,
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sc_allow_stderr);
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const char *message
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= "Fatal error: glibc detected an invalid stdio handle\n";
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TEST_COMPARE_BLOB (proc.err.buffer, proc.err.length,
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message, strlen (message));
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TEST_COMPARE (shared->calls, 0);
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support_capture_subprocess_free (&proc);
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}
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/* The test with vtable validation disabled. */
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/* This function does not have a prototype in libioP.h to prevent
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accidental use from within the library (which would disable vtable
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verification). */
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void _IO_init (FILE *fp, int flags);
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static void
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with_compatibility_fprintf (void *closure)
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{
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TEST_COMPARE (fprintf_ptr (shared->fp, "A%sCD", "B"), 4);
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TEST_COMPARE (shared->calls, 3);
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TEST_COMPARE (shared->calls_xsputn, 3);
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TEST_COMPARE_BLOB (shared->buffer, shared->buffer_length,
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"CD", 2);
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}
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static void
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with_compatibility_fputc (void *closure)
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{
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shared->return_value = '@';
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TEST_COMPARE (fputc ('@', shared->fp), '@');
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TEST_COMPARE (shared->calls, 1);
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TEST_COMPARE (shared->calls_overflow, 1);
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TEST_COMPARE (shared->value, '@');
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}
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static void
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with_compatibility_fgetc (void *closure)
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{
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shared->return_value = 'X';
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TEST_COMPARE (fgetc (shared->fp), 'X');
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TEST_COMPARE (shared->calls, 1);
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TEST_COMPARE (shared->calls_uflow, 1);
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}
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static void
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with_compatibility_fflush (void *closure)
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{
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TEST_COMPARE (fflush (shared->fp), 0);
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TEST_COMPARE (shared->calls, 1);
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TEST_COMPARE (shared->calls_sync, 1);
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}
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/* Call CALLBACK in a subprocess, after setting up a custom file
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object and updating shared->fp. */
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static void
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check_call (const char *name, void (*callback) (void *),
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bool initially_disabled)
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{
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*shared = (struct shared)
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{
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.initially_disabled = initially_disabled,
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};
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/* Set up a custom file object. */
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struct my_file file = my_file_create ();
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shared->fp = &file.f;
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if (shared->initially_disabled)
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_IO_init (shared->fp, file.f._flags);
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if (test_verbose > 0)
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printf ("info: calling test %s\n", name);
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support_isolate_in_subprocess (callback, NULL);
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}
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/* Run the tests. INITIALLY_DISABLED indicates whether custom vtables
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are disabled when the test starts. */
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static int
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run_tests (bool initially_disabled)
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{
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/* The test relies on fatal error messages being printed to standard
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error. */
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setenv ("LIBC_FATAL_STDERR_", "1", 1);
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shared = support_shared_allocate (sizeof (*shared));
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shared->initially_disabled = initially_disabled;
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if (initially_disabled)
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{
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check_for_termination ("fprintf", without_compatibility_fprintf);
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check_for_termination ("fputc", without_compatibility_fputc);
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check_for_termination ("fgetc", without_compatibility_fgetc);
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check_for_termination ("fflush", without_compatibility_fflush);
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}
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check_call ("fprintf", with_compatibility_fprintf, initially_disabled);
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check_call ("fputc", with_compatibility_fputc, initially_disabled);
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check_call ("fgetc", with_compatibility_fgetc, initially_disabled);
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check_call ("fflush", with_compatibility_fflush, initially_disabled);
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support_shared_free (shared);
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shared = NULL;
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return 0;
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}
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