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softfloat: Define misc operations for bfloat16
Signed-off-by: LIU Zhiwei <zhiwei_liu@c-sky.com> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-Id: <20200813071421.2509-4-zhiwei_liu@c-sky.com> [rth: Fix merge conflict with NO_SIGNALING_NANS; use bool for predicates.] Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
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@ -265,6 +265,25 @@ bool float16_is_quiet_nan(float16 a_, float_status *status)
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}
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}
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/*----------------------------------------------------------------------------
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| Returns 1 if the bfloat16 value `a' is a quiet
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| NaN; otherwise returns 0.
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*----------------------------------------------------------------------------*/
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bool bfloat16_is_quiet_nan(bfloat16 a_, float_status *status)
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{
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if (no_signaling_nans(status)) {
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return bfloat16_is_any_nan(a_);
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} else {
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uint16_t a = a_;
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if (snan_bit_is_one(status)) {
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return (((a >> 6) & 0x1FF) == 0x1FE) && (a & 0x3F);
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} else {
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return ((a >> 6) & 0x1FF) == 0x1FF;
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}
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}
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}
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/*----------------------------------------------------------------------------
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| Returns 1 if the half-precision floating-point value `a' is a signaling
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| NaN; otherwise returns 0.
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@ -284,6 +303,25 @@ bool float16_is_signaling_nan(float16 a_, float_status *status)
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}
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}
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/*----------------------------------------------------------------------------
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| Returns 1 if the bfloat16 value `a' is a signaling
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| NaN; otherwise returns 0.
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*----------------------------------------------------------------------------*/
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bool bfloat16_is_signaling_nan(bfloat16 a_, float_status *status)
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{
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if (no_signaling_nans(status)) {
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return 0;
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} else {
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uint16_t a = a_;
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if (snan_bit_is_one(status)) {
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return ((a >> 6) & 0x1FF) == 0x1FF;
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} else {
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return (((a >> 6) & 0x1FF) == 0x1FE) && (a & 0x3F);
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}
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}
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}
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/*----------------------------------------------------------------------------
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| Returns 1 if the single-precision floating-point value `a' is a quiet
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| NaN; otherwise returns 0.
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@ -423,9 +423,57 @@ bfloat16 bfloat16_sqrt(bfloat16, float_status *status);
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FloatRelation bfloat16_compare(bfloat16, bfloat16, float_status *status);
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FloatRelation bfloat16_compare_quiet(bfloat16, bfloat16, float_status *status);
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bool bfloat16_is_quiet_nan(bfloat16, float_status *status);
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bool bfloat16_is_signaling_nan(bfloat16, float_status *status);
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bfloat16 bfloat16_silence_nan(bfloat16, float_status *status);
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bfloat16 bfloat16_default_nan(float_status *status);
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static inline bool bfloat16_is_any_nan(bfloat16 a)
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{
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return ((a & ~0x8000) > 0x7F80);
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}
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static inline bool bfloat16_is_neg(bfloat16 a)
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{
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return a >> 15;
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}
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static inline bool bfloat16_is_infinity(bfloat16 a)
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{
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return (a & 0x7fff) == 0x7F80;
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}
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static inline bool bfloat16_is_zero(bfloat16 a)
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{
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return (a & 0x7fff) == 0;
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}
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static inline bool bfloat16_is_zero_or_denormal(bfloat16 a)
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{
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return (a & 0x7F80) == 0;
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}
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static inline bool bfloat16_is_normal(bfloat16 a)
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{
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return (((a >> 7) + 1) & 0xff) >= 2;
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}
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static inline bfloat16 bfloat16_abs(bfloat16 a)
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{
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/* Note that abs does *not* handle NaN specially, nor does
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* it flush denormal inputs to zero.
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*/
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return a & 0x7fff;
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}
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static inline bfloat16 bfloat16_chs(bfloat16 a)
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{
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/* Note that chs does *not* handle NaN specially, nor does
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* it flush denormal inputs to zero.
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*/
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return a ^ 0x8000;
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}
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static inline bfloat16 bfloat16_set_sign(bfloat16 a, int sign)
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{
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return (a & 0x7fff) | (sign << 15);
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