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Suppress the floating point precision warning if an explicit cast is used
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e3887d7ead
commit
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@ -55,7 +55,7 @@
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static void DoConversion (ExprDesc* Expr, const Type* NewType)
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static void DoConversion (ExprDesc* Expr, const Type* NewType, int Explicit)
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/* Emit code to convert the given expression to a new type. */
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{
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const Type* OldType;
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@ -128,8 +128,9 @@ static void DoConversion (ExprDesc* Expr, const Type* NewType)
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*/
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if (IsClassFloat (OldType) && IsClassInt (NewType)) {
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long IVal = (long)Expr->V.FVal.V;
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if (Expr->V.FVal.V != FP_D_FromInt(IVal).V)
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if ((Expr->V.FVal.V != FP_D_FromInt(IVal).V) && !Explicit) {
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Warning ("Floating point constant (%f) converted to integer loses precision (%d)",Expr->V.FVal.V,IVal);
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}
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Expr->IVal = IVal;
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}
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@ -293,7 +294,7 @@ void TypeConversion (ExprDesc* Expr, const Type* NewType)
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/* Both types must be complete */
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if (!IsIncompleteESUType (NewType) && !IsIncompleteESUType (Expr->Type)) {
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/* Do the actual conversion */
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DoConversion (Expr, NewType);
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DoConversion (Expr, NewType, 0);
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} else {
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/* We should have already generated error elsewhere so that we
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** could just silently fail here to avoid excess errors, but to
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@ -340,7 +341,7 @@ void TypeCast (ExprDesc* Expr)
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ReplaceType (Expr, NewType);
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} else if (IsCastType (Expr->Type)) {
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/* Convert the value. The result has always the new type */
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DoConversion (Expr, NewType);
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DoConversion (Expr, NewType, 1);
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} else {
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TypeCompatibilityDiagnostic (NewType, Expr->Type, 1,
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"Cast to incompatible type '%s' from '%s'");
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