mirror of
https://github.com/jart/cosmopolitan.git
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fa20edc44d
- Remove most __ASSEMBLER__ __LINKER__ ifdefs - Rename libc/intrin/bits.h to libc/serialize.h - Block pthread cancelation in fchmodat() polyfill - Remove `clang-format off` statements in third_party
503 lines
16 KiB
C++
503 lines
16 KiB
C++
// Copyright 2010 the V8 project authors. All rights reserved.
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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//
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// * Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// * Redistributions in binary form must reproduce the above
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// copyright notice, this list of conditions and the following
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// disclaimer in the documentation and/or other materials provided
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// with the distribution.
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// * Neither the name of Google Inc. nor the names of its
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// contributors may be used to endorse or promote products derived
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// from this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#include "third_party/double-conversion/double-conversion.h"
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#include "third_party/double-conversion/ieee.h"
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#include "third_party/double-conversion/test/cctest.h"
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#include "third_party/double-conversion/test/gay-fixed.h"
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#include "third_party/double-conversion/test/gay-precision.h"
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#include "third_party/double-conversion/test/gay-shortest-single.h"
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#include "third_party/double-conversion/test/gay-shortest.h"
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using namespace double_conversion;
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enum DtoaMode {
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SHORTEST,
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SHORTEST_SINGLE,
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FIXED,
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PRECISION
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};
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static void DoubleToAscii(double v, DtoaMode test_mode, int requested_digits,
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Vector<char> buffer, bool* sign, int* length,
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int* point) {
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DoubleToStringConverter::DtoaMode mode = DoubleToStringConverter::SHORTEST;
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switch (test_mode) {
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case SHORTEST: mode = DoubleToStringConverter::SHORTEST; break;
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case SHORTEST_SINGLE:
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mode = DoubleToStringConverter::SHORTEST_SINGLE;
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break;
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case FIXED: mode = DoubleToStringConverter::FIXED; break;
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case PRECISION: mode = DoubleToStringConverter::PRECISION; break;
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}
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DoubleToStringConverter::DoubleToAscii(v, mode, requested_digits,
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buffer.start(), buffer.length(),
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sign, length, point);
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}
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// Removes trailing '0' digits.
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static void TrimRepresentation(Vector<char> representation) {
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int len = strlen(representation.start());
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int i;
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for (i = len - 1; i >= 0; --i) {
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if (representation[i] != '0') break;
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}
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representation[i + 1] = '\0';
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}
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static const int kBufferSize = 100;
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TEST(DtoaVariousDoubles) {
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char buffer_container[kBufferSize];
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Vector<char> buffer(buffer_container, kBufferSize);
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int length;
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int point;
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bool sign;
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DoubleToAscii(0.0, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK_EQ("0", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(0.0f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK_EQ("0", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(0.0, FIXED, 2, buffer, &sign, &length, &point);
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CHECK_EQ(1, length);
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CHECK_EQ("0", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(0.0, PRECISION, 3, buffer, &sign, &length, &point);
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CHECK_EQ(1, length);
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CHECK_EQ("0", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(1.0, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK_EQ("1", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(1.0f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK_EQ("1", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(1.0, FIXED, 3, buffer, &sign, &length, &point);
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CHECK_GE(3, length - point);
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TrimRepresentation(buffer);
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CHECK_EQ("1", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(1.0, PRECISION, 3, buffer, &sign, &length, &point);
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CHECK_GE(3, length);
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TrimRepresentation(buffer);
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CHECK_EQ("1", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(1.5, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK_EQ("15", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(1.5f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK_EQ("15", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(1.5, FIXED, 10, buffer, &sign, &length, &point);
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CHECK_GE(10, length - point);
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TrimRepresentation(buffer);
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CHECK_EQ("15", buffer.start());
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CHECK_EQ(1, point);
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DoubleToAscii(1.5, PRECISION, 10, buffer, &sign, &length, &point);
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CHECK_GE(10, length);
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TrimRepresentation(buffer);
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CHECK_EQ("15", buffer.start());
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CHECK_EQ(1, point);
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double min_double = 5e-324;
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DoubleToAscii(min_double, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK_EQ("5", buffer.start());
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CHECK_EQ(-323, point);
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float min_float = 1e-45f;
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DoubleToAscii(min_float, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK_EQ("1", buffer.start());
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CHECK_EQ(-44, point);
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DoubleToAscii(min_double, FIXED, 5, buffer, &sign, &length, &point);
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CHECK_GE(5, length - point);
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TrimRepresentation(buffer);
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CHECK_EQ("", buffer.start());
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CHECK_GE(-5, point);
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DoubleToAscii(min_double, PRECISION, 5, buffer, &sign, &length, &point);
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CHECK_GE(5, length);
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TrimRepresentation(buffer);
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CHECK_EQ("49407", buffer.start());
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CHECK_EQ(-323, point);
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double max_double = 1.7976931348623157e308;
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DoubleToAscii(max_double, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK_EQ("17976931348623157", buffer.start());
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CHECK_EQ(309, point);
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float max_float = 3.4028234e38f;
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DoubleToAscii(max_float, SHORTEST_SINGLE, 0,
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buffer, &sign, &length, &point);
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CHECK_EQ("34028235", buffer.start());
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CHECK_EQ(39, point);
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DoubleToAscii(max_double, PRECISION, 7, buffer, &sign, &length, &point);
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CHECK_GE(7, length);
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TrimRepresentation(buffer);
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CHECK_EQ("1797693", buffer.start());
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CHECK_EQ(309, point);
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DoubleToAscii(4294967272.0, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK_EQ("4294967272", buffer.start());
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CHECK_EQ(10, point);
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DoubleToAscii(4294967272.0f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK_EQ("42949673", buffer.start());
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CHECK_EQ(10, point);
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DoubleToAscii(4294967272.0, FIXED, 5, buffer, &sign, &length, &point);
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CHECK_GE(5, length - point);
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TrimRepresentation(buffer);
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CHECK_EQ("4294967272", buffer.start());
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CHECK_EQ(10, point);
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DoubleToAscii(4294967272.0, PRECISION, 14,
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buffer, &sign, &length, &point);
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CHECK_GE(14, length);
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TrimRepresentation(buffer);
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CHECK_EQ("4294967272", buffer.start());
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CHECK_EQ(10, point);
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DoubleToAscii(4.1855804968213567e298, SHORTEST, 0,
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buffer, &sign, &length, &point);
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CHECK_EQ("4185580496821357", buffer.start());
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CHECK_EQ(299, point);
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DoubleToAscii(4.1855804968213567e298, PRECISION, 20,
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buffer, &sign, &length, &point);
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CHECK_GE(20, length);
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TrimRepresentation(buffer);
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CHECK_EQ("41855804968213567225", buffer.start());
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CHECK_EQ(299, point);
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DoubleToAscii(5.5626846462680035e-309, SHORTEST, 0,
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buffer, &sign, &length, &point);
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CHECK_EQ("5562684646268003", buffer.start());
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CHECK_EQ(-308, point);
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DoubleToAscii(5.5626846462680035e-309, PRECISION, 1,
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buffer, &sign, &length, &point);
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CHECK_GE(1, length);
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TrimRepresentation(buffer);
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CHECK_EQ("6", buffer.start());
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CHECK_EQ(-308, point);
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DoubleToAscii(-2147483648.0, SHORTEST, 0,
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buffer, &sign, &length, &point);
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CHECK_EQ(1, sign);
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CHECK_EQ("2147483648", buffer.start());
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CHECK_EQ(10, point);
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DoubleToAscii(-2147483648.0, SHORTEST_SINGLE, 0,
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buffer, &sign, &length, &point);
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CHECK_EQ(1, sign);
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CHECK_EQ("21474836", buffer.start());
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CHECK_EQ(10, point);
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DoubleToAscii(-2147483648.0, FIXED, 2, buffer, &sign, &length, &point);
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CHECK_GE(2, length - point);
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TrimRepresentation(buffer);
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CHECK_EQ(1, sign);
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CHECK_EQ("2147483648", buffer.start());
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CHECK_EQ(10, point);
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DoubleToAscii(-2147483648.0, PRECISION, 5,
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buffer, &sign, &length, &point);
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CHECK_GE(5, length);
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TrimRepresentation(buffer);
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CHECK_EQ(1, sign);
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CHECK_EQ("21475", buffer.start());
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CHECK_EQ(10, point);
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DoubleToAscii(-3.5844466002796428e+298, SHORTEST, 0,
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buffer, &sign, &length, &point);
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CHECK_EQ(1, sign);
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CHECK_EQ("35844466002796428", buffer.start());
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CHECK_EQ(299, point);
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DoubleToAscii(-3.5844466002796428e+298, PRECISION, 10,
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buffer, &sign, &length, &point);
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CHECK_EQ(1, sign);
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CHECK_GE(10, length);
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TrimRepresentation(buffer);
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CHECK_EQ("35844466", buffer.start());
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CHECK_EQ(299, point);
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uint64_t smallest_normal64 = DOUBLE_CONVERSION_UINT64_2PART_C(0x00100000, 00000000);
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double v = Double(smallest_normal64).value();
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DoubleToAscii(v, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK_EQ("22250738585072014", buffer.start());
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CHECK_EQ(-307, point);
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uint32_t smallest_normal32 = 0x00800000;
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float f = Single(smallest_normal32).value();
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DoubleToAscii(f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK_EQ("11754944", buffer.start());
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CHECK_EQ(-37, point);
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DoubleToAscii(v, PRECISION, 20, buffer, &sign, &length, &point);
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CHECK_GE(20, length);
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TrimRepresentation(buffer);
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CHECK_EQ("22250738585072013831", buffer.start());
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CHECK_EQ(-307, point);
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uint64_t largest_denormal64 = DOUBLE_CONVERSION_UINT64_2PART_C(0x000FFFFF, FFFFFFFF);
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v = Double(largest_denormal64).value();
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DoubleToAscii(v, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK_EQ("2225073858507201", buffer.start());
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CHECK_EQ(-307, point);
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uint32_t largest_denormal32 = 0x007FFFFF;
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f = Single(largest_denormal32).value();
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DoubleToAscii(f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK_EQ("11754942", buffer.start());
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CHECK_EQ(-37, point);
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DoubleToAscii(v, PRECISION, 20, buffer, &sign, &length, &point);
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CHECK_GE(20, length);
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TrimRepresentation(buffer);
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CHECK_EQ("2225073858507200889", buffer.start());
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CHECK_EQ(-307, point);
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DoubleToAscii(4128420500802942e-24, SHORTEST, 0,
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buffer, &sign, &length, &point);
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CHECK_EQ(0, sign);
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CHECK_EQ("4128420500802942", buffer.start());
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CHECK_EQ(-8, point);
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v = -3.9292015898194142585311918e-10;
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DoubleToAscii(v, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK_EQ("39292015898194143", buffer.start());
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f = -3.9292015898194142585311918e-10f;
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DoubleToAscii(f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK_EQ("39292017", buffer.start());
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v = 4194304.0;
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DoubleToAscii(v, FIXED, 5, buffer, &sign, &length, &point);
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CHECK_GE(5, length - point);
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TrimRepresentation(buffer);
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CHECK_EQ("4194304", buffer.start());
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v = 3.3161339052167390562200598e-237;
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DoubleToAscii(v, PRECISION, 19, buffer, &sign, &length, &point);
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CHECK_GE(19, length);
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TrimRepresentation(buffer);
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CHECK_EQ("3316133905216739056", buffer.start());
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CHECK_EQ(-236, point);
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}
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TEST(DtoaSign) {
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char buffer_container[kBufferSize];
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Vector<char> buffer(buffer_container, kBufferSize);
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bool sign;
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int length;
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int point;
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DoubleToAscii(0.0, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK(!sign);
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DoubleToAscii(-0.0, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK(sign);
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DoubleToAscii(1.0, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK(!sign);
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DoubleToAscii(-1.0, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK(sign);
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DoubleToAscii(0.0f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK(!sign);
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DoubleToAscii(-0.0f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK(sign);
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DoubleToAscii(1.0f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK(!sign);
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DoubleToAscii(-1.0f, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK(sign);
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DoubleToAscii(0.0, PRECISION, 1, buffer, &sign, &length, &point);
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CHECK(!sign);
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DoubleToAscii(-0.0, PRECISION, 1, buffer, &sign, &length, &point);
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CHECK(sign);
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DoubleToAscii(1.0, PRECISION, 1, buffer, &sign, &length, &point);
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CHECK(!sign);
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DoubleToAscii(-1.0, PRECISION, 1, buffer, &sign, &length, &point);
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CHECK(sign);
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DoubleToAscii(0.0, FIXED, 1, buffer, &sign, &length, &point);
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CHECK(!sign);
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DoubleToAscii(-0.0, FIXED, 1, buffer, &sign, &length, &point);
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CHECK(sign);
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DoubleToAscii(1.0, FIXED, 1, buffer, &sign, &length, &point);
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CHECK(!sign);
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DoubleToAscii(-1.0, FIXED, 1, buffer, &sign, &length, &point);
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CHECK(sign);
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}
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TEST(DtoaCorners) {
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char buffer_container[kBufferSize];
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Vector<char> buffer(buffer_container, kBufferSize);
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bool sign;
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int length;
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int point;
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DoubleToAscii(0.0, PRECISION, 0, buffer, &sign, &length, &point);
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CHECK_EQ(0, length);
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CHECK_EQ("", buffer.start());
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CHECK(!sign);
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DoubleToAscii(1.0, PRECISION, 0, buffer, &sign, &length, &point);
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CHECK_EQ(0, length);
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CHECK_EQ("", buffer.start());
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CHECK(!sign);
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DoubleToAscii(0.0, FIXED, 0, buffer, &sign, &length, &point);
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CHECK_EQ(1, length);
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CHECK_EQ("0", buffer.start());
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CHECK(!sign);
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DoubleToAscii(1.0, FIXED, 0, buffer, &sign, &length, &point);
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CHECK_EQ(1, length);
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CHECK_EQ("1", buffer.start());
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CHECK(!sign);
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}
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TEST(DtoaGayShortest) {
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char buffer_container[kBufferSize];
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Vector<char> buffer(buffer_container, kBufferSize);
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bool sign;
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int length;
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int point;
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Vector<const PrecomputedShortest> precomputed =
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PrecomputedShortestRepresentations();
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for (int i = 0; i < precomputed.length(); ++i) {
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const PrecomputedShortest current_test = precomputed[i];
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double v = current_test.v;
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DoubleToAscii(v, SHORTEST, 0, buffer, &sign, &length, &point);
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CHECK(!sign); // All precomputed numbers are positive.
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CHECK_EQ(current_test.decimal_point, point);
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CHECK_EQ(current_test.representation, buffer.start());
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}
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}
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TEST(DtoaGayShortestSingle) {
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char buffer_container[kBufferSize];
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Vector<char> buffer(buffer_container, kBufferSize);
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bool sign;
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int length;
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int point;
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Vector<const PrecomputedShortestSingle> precomputed =
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PrecomputedShortestSingleRepresentations();
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for (int i = 0; i < precomputed.length(); ++i) {
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const PrecomputedShortestSingle current_test = precomputed[i];
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float v = current_test.v;
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DoubleToAscii(v, SHORTEST_SINGLE, 0, buffer, &sign, &length, &point);
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CHECK(!sign); // All precomputed numbers are positive.
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CHECK_EQ(current_test.decimal_point, point);
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CHECK_EQ(current_test.representation, buffer.start());
|
|
}
|
|
}
|
|
|
|
|
|
TEST(DtoaGayFixed) {
|
|
char buffer_container[kBufferSize];
|
|
Vector<char> buffer(buffer_container, kBufferSize);
|
|
bool sign;
|
|
int length;
|
|
int point;
|
|
|
|
Vector<const PrecomputedFixed> precomputed =
|
|
PrecomputedFixedRepresentations();
|
|
for (int i = 0; i < precomputed.length(); ++i) {
|
|
const PrecomputedFixed current_test = precomputed[i];
|
|
double v = current_test.v;
|
|
int number_digits = current_test.number_digits;
|
|
DoubleToAscii(v, FIXED, number_digits, buffer, &sign, &length, &point);
|
|
CHECK(!sign); // All precomputed numbers are positive.
|
|
CHECK_EQ(current_test.decimal_point, point);
|
|
CHECK_GE(number_digits, length - point);
|
|
TrimRepresentation(buffer);
|
|
CHECK_EQ(current_test.representation, buffer.start());
|
|
}
|
|
}
|
|
|
|
|
|
TEST(DtoaGayPrecision) {
|
|
char buffer_container[kBufferSize];
|
|
Vector<char> buffer(buffer_container, kBufferSize);
|
|
bool sign;
|
|
int length;
|
|
int point;
|
|
|
|
Vector<const PrecomputedPrecision> precomputed =
|
|
PrecomputedPrecisionRepresentations();
|
|
for (int i = 0; i < precomputed.length(); ++i) {
|
|
const PrecomputedPrecision current_test = precomputed[i];
|
|
double v = current_test.v;
|
|
int number_digits = current_test.number_digits;
|
|
DoubleToAscii(v, PRECISION, number_digits,
|
|
buffer, &sign, &length, &point);
|
|
CHECK(!sign); // All precomputed numbers are positive.
|
|
CHECK_EQ(current_test.decimal_point, point);
|
|
CHECK_GE(number_digits, length);
|
|
TrimRepresentation(buffer);
|
|
CHECK_EQ(current_test.representation, buffer.start());
|
|
}
|
|
}
|