331 lines
12 KiB
C
331 lines
12 KiB
C
/****************************************************************************
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** gmio
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** Copyright Fougue (2 Mar. 2015)
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** contact@fougue.pro
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**
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** This software is a reusable library whose purpose is to provide complete
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** I/O support for various CAD file formats (eg. STL)
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**
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** This software is governed by the CeCILL-B license under French law and
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** abiding by the rules of distribution of free software. You can use,
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** modify and/ or redistribute the software under the terms of the CeCILL-B
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** license as circulated by CEA, CNRS and INRIA at the following URL
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** "http://www.cecill.info/licences/Licence_CeCILL-B_V1-en.html".
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****************************************************************************/
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#include "utest_assert.h"
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#include "stream_buffer.h"
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#include "../src/gmio_core/internal/byte_codec.h"
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#include "../src/gmio_core/internal/byte_swap.h"
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#include "../src/gmio_core/internal/convert.h"
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#include "../src/gmio_core/internal/fast_atof.h"
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#include "../src/gmio_core/internal/numeric_utils.h"
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#include "../src/gmio_core/internal/safe_cast.h"
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#include "../src/gmio_core/internal/stringstream.h"
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#include "../src/gmio_core/internal/stringstream_fast_atof.h"
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#include "../src/gmio_core/internal/string_ascii_utils.h"
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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static const char* test_internal__byte_swap()
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{
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UTEST_ASSERT(gmio_uint16_bswap(0x1122) == 0x2211);
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UTEST_ASSERT(gmio_uint32_bswap(0x11223344) == 0x44332211);
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return NULL;
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}
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static const char* test_internal__byte_codec()
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{
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{ /* decode */
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const uint8_t data[] = { 0x11, 0x22, 0x33, 0x44 };
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UTEST_ASSERT(gmio_decode_uint16_le(data) == 0x2211);
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UTEST_ASSERT(gmio_decode_uint16_be(data) == 0x1122);
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UTEST_ASSERT(gmio_decode_uint32_le(data) == 0x44332211);
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UTEST_ASSERT(gmio_decode_uint32_be(data) == 0x11223344);
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}
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{ /* encode */
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uint8_t data[] = { 0, 0, 0, 0 };
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gmio_encode_uint16_le(0x1122, data);
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UTEST_ASSERT(data[0] == 0x22 && data[1] == 0x11);
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gmio_encode_uint32_le(0x11223344, data);
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UTEST_ASSERT(data[0] == 0x44 && data[1] == 0x33 && data[2] == 0x22 && data[3] == 0x11);
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gmio_encode_uint32_be(0x11223344, data);
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UTEST_ASSERT(data[3] == 0x44 && data[2] == 0x33 && data[1] == 0x22 && data[0] == 0x11);
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}
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return NULL;
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}
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static void __tc__fprintf_atof_err(
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const char* func_fast_atof_str,
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const char* val_str,
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float fast_val,
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float std_val)
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{
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fprintf(stderr,
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"*** ERROR: %s() less accurate than strtod()\n"
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" value_str : \"%s\"\n"
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" fast_value: %.12f (%s) as_int: 0x%x\n"
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" std_value : %.12f (%s) as_int: 0x%x\n"
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" ulp_diff : %u\n",
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func_fast_atof_str,
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val_str,
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fast_val,
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gmio_float32_sign(fast_val) > 0 ? "+" : "-",
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gmio_convert_uint32(fast_val),
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std_val,
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gmio_float32_sign(std_val) > 0 ? "+" : "-",
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gmio_convert_uint32(std_val),
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gmio_float32_ulp_diff(fast_val, std_val));
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}
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static bool __tc__check_calculation_atof(const char* val_str)
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{
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const float std_val = (float)strtod(val_str, NULL);
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int accurate_count = 0;
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{ /* Test fast_atof() */
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const float fast_val = fast_atof(val_str);
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if (gmio_float32_ulp_equals(fast_val, std_val, 1))
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++accurate_count;
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else
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__tc__fprintf_atof_err("fast_atof", val_str, fast_val, std_val);
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}
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{ /* Test gmio_stringstream_fast_atof() */
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char iobuff[512] = {0};
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struct gmio_ro_buffer ibuff =
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gmio_ro_buffer(val_str, strlen(val_str), 0);
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struct gmio_stringstream sstream =
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gmio_stringstream(
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gmio_istream_buffer(&ibuff),
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gmio_string(iobuff, 0, sizeof(iobuff)));
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const float fast_val = gmio_stringstream_fast_atof(&sstream);
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if (gmio_float32_ulp_equals(fast_val, std_val, 1)) {
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++accurate_count;
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}
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else {
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__tc__fprintf_atof_err(
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"gmio_stringstream_fast_atof", val_str, fast_val, std_val);
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}
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}
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return accurate_count == 2;
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}
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static const char* test_internal__fast_atof()
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{
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bool ok = true;
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ok = ok && __tc__check_calculation_atof("340282346638528859811704183484516925440.000000");
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ok = ok && __tc__check_calculation_atof("3.402823466e+38F");
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ok = ok && __tc__check_calculation_atof("3402823466e+29F");
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ok = ok && __tc__check_calculation_atof("-340282346638528859811704183484516925440.000000");
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ok = ok && __tc__check_calculation_atof("-3.402823466e+38F");
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ok = ok && __tc__check_calculation_atof("-3402823466e+29F");
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ok = ok && __tc__check_calculation_atof("34028234663852885981170418348451692544.000000");
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ok = ok && __tc__check_calculation_atof("3.402823466e+37F");
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ok = ok && __tc__check_calculation_atof("3402823466e+28F");
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ok = ok && __tc__check_calculation_atof("-34028234663852885981170418348451692544.000000");
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ok = ok && __tc__check_calculation_atof("-3.402823466e+37F");
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ok = ok && __tc__check_calculation_atof("-3402823466e+28F");
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ok = ok && __tc__check_calculation_atof(".00234567");
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ok = ok && __tc__check_calculation_atof("-.00234567");
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ok = ok && __tc__check_calculation_atof("0.00234567");
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ok = ok && __tc__check_calculation_atof("-0.00234567");
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ok = ok && __tc__check_calculation_atof("1.175494351e-38F");
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#if 0
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/* This check fails */
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ok = ok && __tc__check_calculation_atof("1175494351e-47F");
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#endif
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ok = ok && __tc__check_calculation_atof("1.175494351e-37F");
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ok = ok && __tc__check_calculation_atof("1.175494351e-36F");
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ok = ok && __tc__check_calculation_atof("-1.175494351e-36F");
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ok = ok && __tc__check_calculation_atof("123456.789");
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ok = ok && __tc__check_calculation_atof("-123456.789");
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ok = ok && __tc__check_calculation_atof("0000123456.789");
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ok = ok && __tc__check_calculation_atof("-0000123456.789");
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ok = ok && __tc__check_calculation_atof("-0.0690462109446526");
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UTEST_ASSERT(ok);
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return NULL;
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}
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static const char* test_internal__safe_cast()
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{
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#if GMIO_TARGET_ARCH_BIT_SIZE > 32
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const size_t maxUInt32 = 0xFFFFFFFF;
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UTEST_ASSERT(gmio_size_to_uint32(maxUInt32 + 1) == 0xFFFFFFFF);
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UTEST_ASSERT(gmio_size_to_uint32(0xFFFFFFFF) == 0xFFFFFFFF);
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UTEST_ASSERT(gmio_size_to_uint32(100) == 100);
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#endif
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UTEST_ASSERT(gmio_streamsize_to_size(-1) == ((size_t)-1));
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#ifdef GMIO_HAVE_INT64_TYPE
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# if GMIO_TARGET_ARCH_BIT_SIZE < 64
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const gmio_streamsize_t overMaxSizet =
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((gmio_streamsize_t)GMIO_MAX_SIZET) + 1;
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UTEST_ASSERT(gmio_streamsize_to_size(overMaxSizet) == GMIO_MAX_SIZET);
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# endif
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UTEST_ASSERT(gmio_streamsize_to_size(GMIO_MAX_SIZET) == GMIO_MAX_SIZET);
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UTEST_ASSERT(gmio_streamsize_to_size(150) == 150);
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#endif
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return NULL;
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}
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static const char* test_internal__stringstream()
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{
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static const char text[] =
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"Une citation,\to je crois qu'elle est de moi :"
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"Parfois le chemin est rude.\n"
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"pi : 3.1415926535897932384626433832795";
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{
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struct gmio_ro_buffer buff =
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gmio_ro_buffer(text, sizeof(text) - 1, 0);
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char cstr_small[4];
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char cstr[32];
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struct gmio_stringstream sstream =
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gmio_stringstream(
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gmio_istream_buffer(&buff),
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gmio_string(cstr, 0, sizeof(cstr)));
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char cstr_copy[128];
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struct gmio_string str_copy =
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gmio_string(cstr_copy, 0, sizeof(cstr_copy));
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UTEST_ASSERT(gmio_stringstream_current_char(&sstream) != NULL);
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UTEST_ASSERT(*gmio_stringstream_current_char(&sstream) == 'U');
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str_copy.len = 0;
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UTEST_ASSERT(gmio_stringstream_eat_word(&sstream, &str_copy) == 0);
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/* printf("\ncopy_strbuff.ptr = \"%s\"\n", copy_strbuff.ptr); */
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UTEST_ASSERT(strcmp(str_copy.ptr, "Une") == 0);
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str_copy.len = 0;
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UTEST_ASSERT(gmio_stringstream_eat_word(&sstream, &str_copy) == 0);
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UTEST_ASSERT(strcmp(str_copy.ptr, "citation,") == 0);
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str_copy.len = 0;
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UTEST_ASSERT(gmio_stringstream_eat_word(&sstream, &str_copy) == 0);
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UTEST_ASSERT(strcmp(str_copy.ptr, "o") == 0);
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str_copy.len = 0;
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UTEST_ASSERT(gmio_stringstream_eat_word(&sstream, &str_copy) == 0);
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UTEST_ASSERT(strcmp(str_copy.ptr, "je") == 0);
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gmio_stringstream_skip_ascii_spaces(&sstream);
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UTEST_ASSERT(gmio_stringstream_next_char(&sstream) != NULL);
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UTEST_ASSERT(*gmio_stringstream_current_char(&sstream) == 'r');
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/* Test with very small string buffer */
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buff.pos = 0;
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sstream.strbuff = gmio_string(cstr_small, 0, sizeof(cstr_small));
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gmio_stringstream_init_pos(&sstream);
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UTEST_ASSERT(*gmio_stringstream_current_char(&sstream) == 'U');
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str_copy.len = 0;
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UTEST_ASSERT(gmio_stringstream_eat_word(&sstream, &str_copy) == 0);
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str_copy.len = 0;
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UTEST_ASSERT(gmio_stringstream_eat_word(&sstream, &str_copy) == 0);
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UTEST_ASSERT(strcmp(str_copy.ptr, "citation,") == 0);
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}
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{
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struct gmio_ro_buffer buff =
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gmio_ro_buffer(text, sizeof(text) - 1, 0);
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char cstr[32];
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struct gmio_stringstream sstream =
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gmio_stringstream(
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gmio_istream_buffer(&buff),
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gmio_string(cstr, 0, sizeof(cstr)));
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char cstr_copy[128];
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struct gmio_string str_copy =
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gmio_string(cstr_copy, 0, sizeof(cstr_copy));
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UTEST_ASSERT(gmio_stringstream_eat_word(&sstream, &str_copy) == 0);
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UTEST_ASSERT(strcmp(str_copy.ptr, "Une") == 0);
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UTEST_ASSERT(gmio_stringstream_eat_word(&sstream, &str_copy) == 0);
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UTEST_ASSERT(strcmp(str_copy.ptr, "Unecitation,") == 0);
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UTEST_ASSERT(gmio_stringstream_eat_word(&sstream, &str_copy) == 0);
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UTEST_ASSERT(strcmp(str_copy.ptr, "Unecitation,o") == 0);
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}
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return NULL;
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}
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static const char* test_internal__string_utils()
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{
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char c; /* for loop counter */
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UTEST_ASSERT(gmio_ascii_isspace(' '));
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UTEST_ASSERT(gmio_ascii_isspace('\t'));
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UTEST_ASSERT(gmio_ascii_isspace('\n'));
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UTEST_ASSERT(gmio_ascii_isspace('\r'));
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for (c = 0; 0 <= c && c <= 127; ++c) {
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if (65 <= c && c <= 90) {
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UTEST_ASSERT(gmio_ascii_isupper(c));
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}
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else if (97 <= c && c <= 122) {
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UTEST_ASSERT(gmio_ascii_islower(c));
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}
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else if (c == 0x20 || (0x09 <= c && c <= 0x0d)) {
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UTEST_ASSERT(gmio_ascii_isspace(c));
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}
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else if (48 <= c && c <= 57) {
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UTEST_ASSERT(gmio_ascii_isdigit(c));
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}
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else {
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UTEST_ASSERT(!gmio_ascii_isupper(c));
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UTEST_ASSERT(!gmio_ascii_islower(c));
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UTEST_ASSERT(!gmio_ascii_isspace(c));
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UTEST_ASSERT(!gmio_ascii_isdigit(c));
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}
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}
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UTEST_ASSERT(gmio_ascii_tolower('A') == 'a');
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UTEST_ASSERT(gmio_ascii_tolower('Z') == 'z');
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UTEST_ASSERT(gmio_ascii_tolower('(') == '(');
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UTEST_ASSERT(gmio_ascii_toupper('a') == 'A');
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UTEST_ASSERT(gmio_ascii_toupper('z') == 'Z');
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UTEST_ASSERT(gmio_ascii_toupper('(') == '(');
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UTEST_ASSERT(gmio_ascii_char_iequals('a', 'a'));
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UTEST_ASSERT(gmio_ascii_char_iequals('a', 'A'));
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UTEST_ASSERT(gmio_ascii_char_iequals('A', 'a'));
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UTEST_ASSERT(gmio_ascii_char_iequals('{', '{'));
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UTEST_ASSERT(!gmio_ascii_char_iequals('{', '['));
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UTEST_ASSERT(gmio_ascii_stricmp("FACET", "facet") == 0);
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UTEST_ASSERT(gmio_ascii_stricmp("facet", "FACET") == 0);
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UTEST_ASSERT(gmio_ascii_stricmp("facet", "facet") == 0);
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UTEST_ASSERT(gmio_ascii_stricmp("FACET", "FACET") == 0);
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UTEST_ASSERT(gmio_ascii_stricmp("", "") == 0);
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UTEST_ASSERT(gmio_ascii_stricmp("", "facet") != 0);
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UTEST_ASSERT(gmio_ascii_stricmp("facet", "facet_") != 0);
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UTEST_ASSERT(gmio_ascii_stricmp("facet_", "facet") != 0);
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UTEST_ASSERT(gmio_ascii_istarts_with("facet", ""));
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UTEST_ASSERT(gmio_ascii_istarts_with("facet", "f"));
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UTEST_ASSERT(gmio_ascii_istarts_with("facet", "fa"));
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UTEST_ASSERT(gmio_ascii_istarts_with("facet", "facet"));
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UTEST_ASSERT(!gmio_ascii_istarts_with("facet", "a"));
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UTEST_ASSERT(!gmio_ascii_istarts_with("facet", " facet"));
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UTEST_ASSERT(gmio_ascii_istarts_with("facet", "F"));
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UTEST_ASSERT(gmio_ascii_istarts_with("FACET", "f"));
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UTEST_ASSERT(gmio_ascii_istarts_with("FACET", "fa"));
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return NULL;
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}
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