tint: Fix exactly representable check in lexer
This patch fix two implicit type conversion to make Kokoro green. Bug: tint:1473, tint:1502 Change-Id: I7f4d1d71e45a3d8e834625a9f71acc72a8816685 Reviewed-on: https://dawn-review.googlesource.com/c/dawn/+/93343 Reviewed-by: Ben Clayton <bclayton@google.com> Commit-Queue: Ben Clayton <bclayton@google.com> Kokoro: Kokoro <noreply+kokoro@google.com>
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@ -711,8 +711,12 @@ Token Lexer::try_hex_float() {
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// ...
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// 2^-147 > v >= 2^-148, binary32 s_00000000_0000000000000000000001x, 1 arbitrary bit.
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// 2^-148 > v >= 2^-149, binary32 s_00000000_00000000000000000000001, 0 arbitrary bit.
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int unbiased_exponent = signed_exponent - kExponentBias;
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TINT_ASSERT(Reader, (unbiased_exponent <= -127) && (unbiased_exponent >= -149));
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// signed_exponent must be in range -149 + 1023 = 874 to -127 + 1023 = 896, inclusive
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TINT_ASSERT(Reader, (874 <= signed_exponent) && (signed_exponent <= 896));
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int unbiased_exponent =
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static_cast<int>(signed_exponent) - static_cast<int>(kExponentBias);
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TINT_ASSERT(Reader, (-149 <= unbiased_exponent) && (unbiased_exponent <= -127));
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valid_mantissa_bits = unbiased_exponent + 149; // 0 for -149, and 22 for -127
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} else if (abs_result_f64 != 0.0) {
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// The result is smaller than the smallest subnormal f32 value, but not equal to zero.
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@ -758,8 +762,12 @@ Token Lexer::try_hex_float() {
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// ...
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// 2^-22 > v >= 2^-23, binary16 s_00000_000000001x, 1 arbitrary bits.
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// 2^-23 > v >= 2^-24, binary16 s_00000_0000000001, 0 arbitrary bits.
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int unbiased_exponent = signed_exponent - kExponentBias;
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TINT_ASSERT(Reader, (unbiased_exponent <= -15) && (unbiased_exponent >= -24));
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// signed_exponent must be in range -24 + 1023 = 999 to -15 + 1023 = 1008, inclusive
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TINT_ASSERT(Reader, (999 <= signed_exponent) && (signed_exponent <= 1008));
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int unbiased_exponent =
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static_cast<int>(signed_exponent) - static_cast<int>(kExponentBias);
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TINT_ASSERT(Reader, (-24 <= unbiased_exponent) && (unbiased_exponent <= -15));
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valid_mantissa_bits = unbiased_exponent + 24; // 0 for -24, and 9 for -15
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} else if (abs_result_f64 != 0.0) {
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// The result is smaller than the smallest subnormal f16 value, but not equal to zero.
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