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2000-08-14 Brent Verner <brent@rcfile.org> * testsuite/debug_assert.h: new file * testsuite/*/*.cc: s/test\s*&=([^;]+);/VERIFY($1);/g changed conditional #include <c?assert.?h?> to unconditional #include <debug_assert.h> * mkcheck.in: added $SRC_DIR/testsuite to include search path for testsuite compile command. From-SVN: r35682
548 lines
16 KiB
C++
548 lines
16 KiB
C++
// 990117 bkoz test functionality of basic_filebuf for char_type == char
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// Copyright (C) 1997-1999, 2000 Free Software Foundation, Inc.
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//
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// This file is part of the GNU ISO C++ Library. This library is free
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// software; you can redistribute it and/or modify it under the
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// terms of the GNU General Public License as published by the
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// Free Software Foundation; either version 2, or (at your option)
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// 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
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License along
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// with this library; see the file COPYING. If not, write to the Free
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// Software Foundation, 59 Temple Place - Suite 330, Boston, MA 02111-1307,
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// USA.
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// NB: this test assumes that _M_buf_size == 40, and not the usual
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// buffer_size length of 8092, so that overflow/underflow can be
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// simulated a bit more readily.
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#include <fstream>
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#include <debug_assert.h>
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const char carray_01[] = "santa cruz or sandiego?";
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const char carray_02[] = "memphis, new orleans, and savanah";
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const char name_01[] = "testsuite/filebuf-1.txt"; // file with data in it
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const char name_02[] = "testsuite/filebuf-2.txt"; // empty file, need to create
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const char name_03[] = "testsuite/filebuf-3.txt"; // empty file, need to create
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class derived_filebuf: public std::filebuf
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{
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public:
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void
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set_size(int_type __size) { _M_buf_size_opt = __size; }
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};
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derived_filebuf fb_01; // in
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derived_filebuf fb_02; // out
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derived_filebuf fb_03; // in | out
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const int buffer_size = 8192;
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// initialize filebufs to be the same size regardless of platform
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void test00()
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{
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fb_01.set_size(buffer_size);
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fb_02.set_size(buffer_size);
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fb_03.set_size(buffer_size);
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}
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// test the filebuf/stringbuf locale settings
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bool test01() {
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std::locale loc_tmp;
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loc_tmp = fb_01.getloc();
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fb_01.pubimbue(loc_tmp); //This should initialize _M_init to true
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fb_01.getloc(); //This should just return _M_locale
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return true;
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}
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// test member functions functions
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bool test02() {
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bool test = true;
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// bool is_open()
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VERIFY( !fb_01.is_open() );
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VERIFY( !fb_02.is_open() );
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VERIFY( !fb_03.is_open() );
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// filebuf_type* open(const char* __s, ios_base::openmode __mode)
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fb_01.open(name_01, std::ios_base::in | std::ios_base::ate);
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fb_02.open(name_02, std::ios_base::in | std::ios_base::out | std::ios_base::trunc);
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// Try to open two different files without closing the first:
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// Should keep the old file attached, and disregard attempt to overthrow.
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fb_02.open(name_03, std::ios_base::in | std::ios_base::out);
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fb_03.open(name_03, std::ios_base::out | std::ios_base::trunc);
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VERIFY( fb_01.is_open() );
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VERIFY( fb_02.is_open() );
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VERIFY( fb_03.is_open() );
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// filebuf_type* close()
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fb_01.close();
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fb_02.close();
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fb_03.close();
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VERIFY( !fb_01.is_open() );
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VERIFY( !fb_02.is_open() );
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VERIFY( !fb_03.is_open() );
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#ifdef DEBUG_ASSERT
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assert(test);
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#endif
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return test;
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}
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// test overloaded virtual functions
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bool test03() {
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typedef std::filebuf::int_type int_type;
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typedef std::filebuf::traits_type traits_type;
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typedef std::filebuf::pos_type pos_type;
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typedef std::filebuf::off_type off_type;
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typedef size_t size_type;
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bool test = true;
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std::filebuf f_tmp;
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std::streamsize strmsz_1, strmsz_2;
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std::streamoff strmof_1, strmof_2;
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int i = 0, j = 0, k = 0;
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// GET
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// int showmanyc()
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// returns an estimate of the numbers of chars in the seq, or -1.
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// if __retval > 0, then calls to underflow won't return
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// traits_type::eof() till at least __retval chars.
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// if __retval == -1, then calls to underflow or uflow will fail.
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// NB overriding def if it can determine more chars can be read from
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// the input sequence.
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// int in_avail()
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// if a read position is available, return _M_in_end - _M_in_cur.
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// else return showmanyc.
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strmof_1 = fb_01.in_avail();
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strmof_2 = fb_02.in_avail();
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VERIFY( strmof_1 == -1 );
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VERIFY( strmof_1 == strmof_2 ); //fail because not open
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strmof_1 = fb_03.in_avail();
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VERIFY( strmof_1 == strmof_2 );
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fb_01.open(name_01, std::ios_base::in);
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fb_02.open(name_02, std::ios_base::out | std::ios_base::trunc);
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fb_03.open(name_03, std::ios_base::out | std::ios_base::in | std::ios_base::trunc);
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strmof_1 = fb_01.in_avail();
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strmof_2 = fb_02.in_avail();
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VERIFY( strmof_1 != strmof_2 );
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VERIFY( strmof_1 >= 0 );
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VERIFY( strmof_2 == -1 ); // empty file
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strmof_1 = fb_03.in_avail();
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VERIFY( strmof_1 == -1 ); // empty file
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// int_type sbumpc()
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// if read_cur not avail returns uflow(), else return *read_cur & increment
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int_type c1 = fb_01.sbumpc();
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int_type c2 = fb_02.sbumpc();
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VERIFY( c1 != c2 );
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VERIFY( c1 == '/' );
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VERIFY( c2 == -1 );
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int_type c3 = fb_01.sbumpc();
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int_type c4 = fb_02.sbumpc();
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VERIFY( c3 != c4 );
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VERIFY( c1 == c3 ); // fluke, both happen to be '/'
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VERIFY( c2 == c4 );
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int_type c5 = fb_03.sbumpc();
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VERIFY( c5 == traits_type::eof() );
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// XXX should do some kind of test to make sure that internal
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// buffers point ot the same thing, to check consistancy.
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// int_type sgetc()
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// if read_cur not avail, return uflow(), else return *read_cur
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int_type c6 = fb_01.sgetc();
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int_type c7 = fb_02.sgetc();
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VERIFY( c6 != c3 );
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VERIFY( c7 == c4 ); // both -1
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int_type c8 = fb_01.sgetc();
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int_type c9 = fb_02.sgetc();
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VERIFY( c6 == c8 );
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VERIFY( c7 == c9 );
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c5 = fb_03.sgetc();
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VERIFY( c5 == traits_type::eof() );
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// int_type snextc()
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// calls sbumpc and if sbumpc != eof, return sgetc
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c6 = fb_01.snextc();
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c7 = fb_02.snextc();
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VERIFY( c6 != c8 );
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VERIFY( c7 == c9 ); // -1
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VERIFY( c6 == '9' );
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c6 = fb_01.snextc();
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c7 = fb_02.snextc();
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VERIFY( c6 != c8 );
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VERIFY( c7 == c9 ); // -1
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VERIFY( c6 == '9' );
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c5 = fb_03.snextc();
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VERIFY( c5 == traits_type::eof() );
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// streamsize sgetn(char_type *s, streamsize n)
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// streamsize xsgetn(char_type *s, streamsize n)
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// assign up to n chars to s from input sequence, indexing in_cur as
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// approp and returning the number of chars assigned
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strmsz_1 = fb_01.in_avail();
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strmsz_2 = fb_02.in_avail();
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test = strmsz_1 != strmsz_2;
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char carray1[13] = "";
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strmsz_1 = fb_01.sgetn(carray1, 10);
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char carray2[buffer_size] = "";
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strmsz_2 = fb_02.sgetn(carray2, 10);
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VERIFY( strmsz_1 != strmsz_2 );
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VERIFY( strmsz_1 == 10 );
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VERIFY( strmsz_2 == 0 );
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c1 = fb_01.sgetc();
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c2 = fb_02.sgetc();
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VERIFY( c1 == '\n' );
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VERIFY( c7 == c2 ); // n != i
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strmsz_1 = fb_03.sgetn(carray1, 10);
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VERIFY( !strmsz_1 ); //zero
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strmsz_1 = fb_01.in_avail();
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strmsz_2 = fb_01.sgetn(carray2, strmsz_1 + 5);
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VERIFY( strmsz_1 == strmsz_2 - 5 );
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c4 = fb_01.sgetc(); // buffer should have underflowed from above.
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VERIFY( c4 == 'i' );
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strmsz_1 = fb_01.in_avail();
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VERIFY( strmsz_1 > 0 );
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strmsz_2 = fb_01.sgetn(carray2, strmsz_1 + 5);
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VERIFY( strmsz_1 == strmsz_2 ); //at the end of the actual file
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strmsz_1 = fb_02.in_avail();
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strmsz_2 = fb_02.sgetn(carray2, strmsz_1 + 5);
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VERIFY( strmsz_1 == -1 );
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VERIFY( strmsz_2 == 0 );
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c4 = fb_02.sgetc(); // should be EOF
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VERIFY( c4 == traits_type::eof() );
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// PUT
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// int_type sputc(char_type c)
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// if out_cur not avail, return overflow(traits_type::to_int_type(c))
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// else, stores c at out_cur,
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// increments out_cur, and returns c as int_type
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// strmsz_1 = fb_03.in_avail(); // XXX valid for in|out??
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c1 = fb_02.sputc('a');
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c2 = fb_03.sputc('b');
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VERIFY( c1 != c2 );
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c1 = fb_02.sputc('c');
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c2 = fb_03.sputc('d');
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VERIFY( c1 != c2 );
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// strmsz_2 = fb_03.in_avail();
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// VERIFY( strmsz_1 != strmsz_2 );
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for (int i = 50; i <= 90; ++i)
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c2 = fb_02.sputc(char(i));
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// 27filebuf-2.txt == ac23456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWX
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// fb_02._M_out_cur = '2'
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strmsz_1 = fb_03.in_avail();
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for (int i = 50; i <= 90; ++i)
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c2 = fb_03.sputc(char(i));
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strmsz_2 = fb_03.in_avail();
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// VERIFY( strmsz_1 != strmsz_2 );
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// VERIFY( strmsz_1 > 0 );
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// VERIFY( strmsz_2 > 0 );
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// 27filebuf-2.txt == bd23456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWX
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// fb_02._M_out_cur = '2'
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c3 = fb_01.sputc('a'); // should be EOF because this is read-only
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VERIFY( c3 == traits_type::eof() );
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// streamsize sputn(const char_typs* s, streamsize n)
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// write up to n chars to out_cur from s, returning number assigned
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// NB *sputn will happily put '\0' into your stream if you give it a chance*
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strmsz_1 = fb_03.sputn("racadabras", 10);//"abracadabras or what?"
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VERIFY( strmsz_1 == 10 );
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strmsz_2 = fb_03.sputn(", i wanna reach out and", 10);
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VERIFY( strmsz_2 == 10 );
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VERIFY( strmsz_1 == strmsz_2 );
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// fb_03._M_out_beg = "YZracadabras, i wanna FGHIJKLMNOPQRSTUVW"
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// fb_03._M_out_cur = "FGHIJKLMNOPQRSTUVW"
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strmsz_1 = fb_02.sputn("racadabras", 10);
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VERIFY( strmsz_1 == 10 );
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// fb_02._M_out_beg = "YZracadabras<=>?@ABCDEFGHIJKLMNOPQRSTUVW"
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// fb_02._M_out_cur = "<=>?@ABCDEFGHIJKLMNOPQRSTUVW"
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strmsz_1 = fb_01.sputn("racadabra", 10);
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VERIFY( strmsz_1 == 0 );
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// PUTBACK
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// int_type pbfail(int_type c)
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// called when gptr() null, gptr() == eback(), or traits::eq(*gptr, c) false
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// "pending sequence" is:
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// 1) everything as defined in underflow
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// 2) + if (traits::eq_int_type(c, traits::eof()), then input
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// sequence is backed up one char before the pending sequence is
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// determined.
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// 3) + if (not 2) then c is prepended. Left unspecified is
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// whether the input sequence is backedup or modified in any way
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// returns traits::eof() for failure, unspecified other value for success
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// int_type sputbackc(char_type c)
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// if in_cur not avail || ! traits::eq(c, gptr() [-1]), return pbfail
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// otherwise decrements in_cur and returns *gptr()
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c1 = fb_03.sgetc(); // -1
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c2 = fb_03.sputbackc('z');
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strmsz_2 = fb_03.in_avail();
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c3 = fb_03.sgetc();
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VERIFY( c3 == c2 );
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VERIFY( c1 != c3 );
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VERIFY( 1 == strmsz_2 );
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//test for _in_cur == _in_beg
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// fb_03._M_out_beg = "bd23456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZracada" etc
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fb_03.pubseekoff(10, std::ios_base::beg,
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std::ios_base::in | std::ios_base::out);
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fb_03.sputc('m');
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strmsz_1 = fb_03.in_avail();
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c1 = fb_03.sgetc();
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fb_03.snextc();
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c2 = fb_03.sputbackc('z');
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strmsz_2 = fb_03.in_avail();
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c3 = fb_03.sgetc();
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VERIFY( c1 != c2 );
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VERIFY( c3 == c2 );
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VERIFY( c1 != c3 );
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VERIFY( c2 == 'z' );
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VERIFY( strmsz_1 == strmsz_2 );
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// test for replacing char with identical one
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fb_03.snextc();
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fb_03.sputc('u');
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fb_03.sputc('v');
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fb_03.sputc('a');
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strmsz_1 = fb_03.in_avail();
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c2 = fb_03.sputbackc('a');
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strmsz_2 = fb_03.in_avail();
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c3 = fb_03.sgetc();
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VERIFY( c3 == c2 );
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VERIFY( strmsz_1 + 1 == strmsz_2 );
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//test for ios_base::out
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c1 = fb_02.sgetc(); // undefined
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c2 = fb_02.sputbackc('a');
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VERIFY( c1 == c2 );
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VERIFY( c1 == -1 );
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// int_type sungetc()
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// if in_cur not avail, return pbackfail(), else decrement and
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// return to_int_type(*gptr())
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// fb_03._M_out_beg = "uvaacadabras, i wannaZ[\\]^_`abcdefghijkl"
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// fb_03._M_out_cur = "aacadabras, i wannaZ[\\]^_`abcdefghijkl"
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strmsz_1 = fb_03.in_avail();
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c2 = fb_03.sungetc(); // delete the 'a'
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strmsz_2 = fb_03.in_avail();
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VERIFY( c2 == 'v' ); // VERIFY( c2 != traits_type::eof() );
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VERIFY( strmsz_1 + 1 == strmsz_2 );
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//test for _in_cur == _in_beg
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for (int i = 50; i < 32 + 29; ++i)
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fb_02.sputc(char(i));
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fb_02.pubseekoff(0, std::ios_base::beg, std::ios_base::out);
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strmsz_1 = fb_02.in_avail();
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c1 = fb_02.sgetc();
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c2 = fb_02.sungetc();
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strmsz_2 = fb_02.in_avail();
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c3 = fb_02.sgetc();
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VERIFY( c1 == c2 );
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VERIFY( c3 == c2 );
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VERIFY( c1 == c3 );
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VERIFY( c2 == traits_type::eof() );
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VERIFY( strmsz_1 == strmsz_2 );
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//test for _in_cur == _in_end
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fb_03.pubseekoff(0, std::ios_base::end);
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strmsz_1 = fb_03.in_avail(); // -1 cuz at the end
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c1 = fb_03.sgetc();
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c2 = fb_03.sungetc();
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strmsz_2 = fb_03.in_avail(); // 1
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c3 = fb_03.sgetc();
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VERIFY( c1 != c2 );
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// VERIFY( c2 == c3 || c2 == traits_type::not_eof(int(c3)) );
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VERIFY( strmsz_2 != strmsz_1 );
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VERIFY( strmsz_2 == 1 );
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//test for ios_base::out
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// BUFFER MANAGEMENT & POSITIONING
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// int sync()
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// if a put area exists, overflow.
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// if a get area exists, do something undefined. (like, nothing)
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strmsz_1 = fb_01.in_avail();
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fb_01.pubsync();
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strmsz_2 = fb_01.in_avail();
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VERIFY( strmsz_2 == strmsz_1 );
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strmsz_1 = fb_02.in_avail();
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fb_02.pubsync();
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// 27filebuf-2.txt == 53 bytes after this.
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strmsz_2 = fb_02.in_avail();
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VERIFY( strmsz_2 == -1 );
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VERIFY( strmsz_2 == strmsz_1 );
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strmsz_1 = fb_03.in_avail();
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fb_03.pubsync();
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// 27filebuf-3.txt
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// bd23456789mzuva?@ABCDEFGHIJKLMNOPQRSTUVWXYZracadabras, i wannaz
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// 63 bytes.
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strmsz_2 = fb_03.in_avail();
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VERIFY( strmsz_1 == 1 );
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VERIFY( strmsz_2 == 1 );
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// setbuf
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// pubsetbuf(char_type* s, streamsize n)
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fb_01.pubsetbuf(0,0);
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fb_02.pubsetbuf(0,0);
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fb_03.pubsetbuf(0,0);
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// Need to test unbuffered output, which means calling this on some
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// things that have just been opened.
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// seekoff
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// pubseekoff(off_type off, ios_base::seekdir way, ios_base::openmode which)
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// alters the stream position to off
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pos_type pt_1(off_type(-1));
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pos_type pt_2(off_type(0));
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off_type off_1 = 0;
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off_type off_2 = 0;
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//IN|OUT
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// 27filebuf-3.txt = bd23456789:;<=>?...
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//beg
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strmsz_1 = fb_03.in_avail();
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pt_1 = fb_03.pubseekoff(2, std::ios_base::beg);
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strmsz_2 = fb_03.in_avail();
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off_1 = pt_1;
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VERIFY( off_1 > 0 );
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c1 = fb_03.snextc(); //current in pointer +1
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VERIFY( c1 == '3' );
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c2 = fb_03.sputc('\n'); //current in pointer +1
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c3 = fb_03.sgetc();
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VERIFY( c2 != c3 );
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VERIFY( c3 == '4' );
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fb_03.pubsync();
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c1 = fb_03.sgetc();
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VERIFY( c1 == c3 );
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//cur
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// 27filebuf-3.txt = bd2\n456789:;<=>?...
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pt_2 = fb_03.pubseekoff(2, std::ios_base::cur);
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off_2 = pt_2;
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VERIFY( (off_2 == (off_1 + 2 + 1 + 1)) );
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c1 = fb_03.snextc(); //current in pointer +1
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VERIFY( c1 == '7' );
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c2 = fb_03.sputc('x'); //test current out pointer
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c3 = fb_03.sputc('\n');
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c1 = fb_03.sgetc();
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fb_03.pubsync();
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c3 = fb_03.sgetc();
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VERIFY( c1 == c3 );
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//end
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// 27filebuf-3.txt = "bd2\n456x\n9"
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pt_2 = fb_03.pubseekoff(0, std::ios_base::end,
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std::ios_base::in|std::ios_base::out);
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off_1 = pt_2;
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VERIFY( off_1 > off_2 ); //weak, but don't know exactly where it ends
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c3 = fb_03.sputc('\n');
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strmsz_1 = fb_03.sputn("because because because. . .", 28);
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VERIFY( strmsz_1 == 28 );
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c1 = fb_03.sungetc();
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fb_03.pubsync();
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c3 = fb_03.sgetc();
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VERIFY( c1 == c3 );
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// IN
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// OUT
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// seekpos
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// pubseekpos(pos_type sp, ios_base::openmode)
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// alters the stream position to sp
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//IN|OUT
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//beg
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pt_1 = fb_03.pubseekoff(78, std::ios_base::beg);
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off_1 = pt_1;
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VERIFY( off_1 > 0 );
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c1 = fb_03.snextc(); //current in pointer +1
|
|
VERIFY( c1 == ' ' );
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|
c2 = fb_03.sputc('\n'); //test current out pointer
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|
c3 = fb_03.sgetc();
|
|
fb_03.pubsync(); //resets pointers
|
|
pt_2 = fb_03.pubseekpos(pt_1);
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|
off_2 = pt_2;
|
|
VERIFY( off_1 == off_2 );
|
|
c3 = fb_03.snextc(); //current in pointer +1
|
|
VERIFY( c2 == c3 );
|
|
pt_1 = fb_03.pubseekoff(0, std::ios_base::end);
|
|
off_1 = pt_1;
|
|
VERIFY( off_1 > off_2 );
|
|
fb_03.sputn("\nof the wonderful things he does!!\nok", 37);
|
|
fb_03.pubsync();
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|
|
|
// IN
|
|
// OUT
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|
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// VIRTUALS (indirectly tested)
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|
// underflow
|
|
// if read position avail, returns *gptr()
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|
|
// pbackfail(int_type c)
|
|
// put c back into input sequence
|
|
|
|
// overflow
|
|
// appends c to output seq
|
|
|
|
// NB Have to close these suckers. . .
|
|
// filebuf_type* close()
|
|
fb_01.close();
|
|
fb_02.close();
|
|
fb_03.close();
|
|
VERIFY( !fb_01.is_open() );
|
|
VERIFY( !fb_02.is_open() );
|
|
VERIFY( !fb_03.is_open() );
|
|
|
|
#ifdef DEBUG_ASSERT
|
|
assert(test);
|
|
#endif
|
|
|
|
return test;
|
|
}
|
|
|
|
bool test04()
|
|
{
|
|
using namespace std;
|
|
typedef istream::int_type int_type;
|
|
|
|
bool test = true;
|
|
ifstream ifs(name_02);
|
|
char buffer[] = "xxxxxxxxxx";
|
|
int_type len1 = ifs.rdbuf()->sgetn(buffer, sizeof(buffer));
|
|
VERIFY( len1 == sizeof(buffer) );
|
|
VERIFY( buffer[0] == 'a' );
|
|
|
|
#ifdef DEBUG_ASSERT
|
|
assert(test);
|
|
#endif
|
|
return test;
|
|
}
|
|
|
|
int main()
|
|
{
|
|
test00();
|
|
test01();
|
|
test02();
|
|
test03();
|
|
test04();
|
|
|
|
return 0;
|
|
}
|
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// more surf!!!
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