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1 // Copyright 2010 the V8 project authors. All rights reserved. | 1 // Copyright 2010 the V8 project authors. All rights reserved. |
2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
4 // met: | 4 // met: |
5 // | 5 // |
6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
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26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. | 26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
27 | 27 |
28 #ifndef DOUBLE_CONVERSION_BIGNUM_DTOA_H_ | 28 #ifndef DOUBLE_CONVERSION_BIGNUM_DTOA_H_ |
29 #define DOUBLE_CONVERSION_BIGNUM_DTOA_H_ | 29 #define DOUBLE_CONVERSION_BIGNUM_DTOA_H_ |
30 | 30 |
31 #include "utils.h" | 31 #include "utils.h" |
32 | 32 |
33 namespace WTF { | 33 namespace WTF { |
34 | 34 |
35 namespace double_conversion { | 35 namespace double_conversion { |
36 | 36 |
37 enum BignumDtoaMode { | 37 enum BignumDtoaMode { |
38 // Return the shortest correct representation. | 38 // Return the shortest correct representation. |
39 // For example the output of 0.299999999999999988897 is (the less accura
te but | 39 // For example the output of 0.299999999999999988897 is (the less accura
te but |
40 // correct) 0.3. | 40 // correct) 0.3. |
41 BIGNUM_DTOA_SHORTEST, | 41 BIGNUM_DTOA_SHORTEST, |
42 // Return a fixed number of digits after the decimal point. | 42 // Return a fixed number of digits after the decimal point. |
43 // For instance fixed(0.1, 4) becomes 0.1000 | 43 // For instance fixed(0.1, 4) becomes 0.1000 |
44 // If the input number is big, the output will be big. | 44 // If the input number is big, the output will be big. |
45 BIGNUM_DTOA_FIXED, | 45 BIGNUM_DTOA_FIXED, |
46 // Return a fixed number of digits, no matter what the exponent is. | 46 // Return a fixed number of digits, no matter what the exponent is. |
47 BIGNUM_DTOA_PRECISION | 47 BIGNUM_DTOA_PRECISION |
48 }; | 48 }; |
49 | 49 |
50 // Converts the given double 'v' to ascii. | 50 // Converts the given double 'v' to ascii. |
51 // The result should be interpreted as buffer * 10^(point-length). | 51 // The result should be interpreted as buffer * 10^(point-length). |
52 // The buffer will be null-terminated. | 52 // The buffer will be null-terminated. |
53 // | 53 // |
54 // The input v must be > 0 and different from NaN, and Infinity. | 54 // The input v must be > 0 and different from NaN, and Infinity. |
55 // | 55 // |
56 // The output depends on the given mode: | 56 // The output depends on the given mode: |
57 // - SHORTEST: produce the least amount of digits for which the internal | 57 // - SHORTEST: produce the least amount of digits for which the internal |
58 // identity requirement is still satisfied. If the digits are printed | 58 // identity requirement is still satisfied. If the digits are printed |
59 // (together with the correct exponent) then reading this number will give | 59 // (together with the correct exponent) then reading this number will give |
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71 // any other digit would not satisfy the internal identity requirement. | 71 // any other digit would not satisfy the internal identity requirement. |
72 // - PRECISION: produces 'requested_digits' where the first digit is not '0
'. | 72 // - PRECISION: produces 'requested_digits' where the first digit is not '0
'. |
73 // Even though the length of produced digits usually equals | 73 // Even though the length of produced digits usually equals |
74 // 'requested_digits', the function is allowed to return fewer digits, in | 74 // 'requested_digits', the function is allowed to return fewer digits, in |
75 // which case the caller has to fill the missing digits with '0's. | 75 // which case the caller has to fill the missing digits with '0's. |
76 // Halfway cases are again rounded up. | 76 // Halfway cases are again rounded up. |
77 // 'BignumDtoa' expects the given buffer to be big enough to hold all digits | 77 // 'BignumDtoa' expects the given buffer to be big enough to hold all digits |
78 // and a terminating null-character. | 78 // and a terminating null-character. |
79 void BignumDtoa(double v, BignumDtoaMode mode, int requested_digits, | 79 void BignumDtoa(double v, BignumDtoaMode mode, int requested_digits, |
80 Vector<char> buffer, int* length, int* point); | 80 Vector<char> buffer, int* length, int* point); |
81 | 81 |
82 } // namespace double_conversion | 82 } // namespace double_conversion |
83 | 83 |
84 } // namespace WTF | 84 } // namespace WTF |
85 | 85 |
86 #endif // DOUBLE_CONVERSION_BIGNUM_DTOA_H_ | 86 #endif // DOUBLE_CONVERSION_BIGNUM_DTOA_H_ |
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