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Consolidate logic for creating NaNs. Silence compiler warning.
llvm-svn: 42966
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parent
138d8ef4a7
commit
1463947f03
@ -268,6 +268,7 @@ namespace llvm {
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opStatus multiplySpecials(const APFloat &);
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/* Miscellany. */
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void makeNaN(void);
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opStatus normalize(roundingMode, lostFraction);
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opStatus addOrSubtract(const APFloat &, roundingMode, bool subtract);
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cmpResult compareAbsoluteValue(const APFloat &) const;
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@ -586,6 +586,15 @@ APFloat::copySignificand(const APFloat &rhs)
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partCount());
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}
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/* Make this number a NaN, with an arbitrary but deterministic value
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for the significand. */
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void
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APFloat::makeNaN(void)
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{
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category = fcNaN;
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APInt::tcSet(significandParts(), ~0U, partCount());
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}
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APFloat &
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APFloat::operator=(const APFloat &rhs)
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{
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@ -650,6 +659,8 @@ APFloat::APFloat(const fltSemantics &ourSemantics,
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sign = negative;
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if(category == fcNormal)
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category = fcZero;
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else if (ourCategory == fcNaN)
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makeNaN();
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}
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APFloat::APFloat(const fltSemantics &ourSemantics, const char *text)
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@ -1210,9 +1221,7 @@ APFloat::addOrSubtractSpecials(const APFloat &rhs, bool subtract)
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/* Differently signed infinities can only be validly
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subtracted. */
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if(sign ^ rhs.sign != subtract) {
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category = fcNaN;
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// Arbitrary but deterministic value for significand
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APInt::tcSet(significandParts(), ~0U, partCount());
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makeNaN();
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return opInvalidOp;
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}
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@ -1328,9 +1337,7 @@ APFloat::multiplySpecials(const APFloat &rhs)
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case convolve(fcZero, fcInfinity):
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case convolve(fcInfinity, fcZero):
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category = fcNaN;
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// Arbitrary but deterministic value for significand
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APInt::tcSet(significandParts(), ~0U, partCount());
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makeNaN();
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return opInvalidOp;
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case convolve(fcNormal, fcNormal):
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@ -1372,9 +1379,7 @@ APFloat::divideSpecials(const APFloat &rhs)
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case convolve(fcInfinity, fcInfinity):
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case convolve(fcZero, fcZero):
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category = fcNaN;
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// Arbitrary but deterministic value for significand
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APInt::tcSet(significandParts(), ~0U, partCount());
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makeNaN();
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return opInvalidOp;
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case convolve(fcNormal, fcNormal):
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@ -1769,7 +1774,7 @@ APFloat::convertToInteger(integerPart *parts, unsigned int width,
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if(bits > 0) {
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lost_fraction = tmp.shiftSignificandRight(bits);
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} else {
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if (-bits >= semantics->precision) {
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if ((unsigned) -bits >= semantics->precision) {
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// Unrepresentably large.
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if (!sign && isSigned)
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APInt::tcSetLeastSignificantBits(parts, partsCount, width-1);
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