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-rw-r--r--generic/tclStrToD.c8
1 files changed, 4 insertions, 4 deletions
diff --git a/generic/tclStrToD.c b/generic/tclStrToD.c
index 77e1839..57c24ac 100644
--- a/generic/tclStrToD.c
+++ b/generic/tclStrToD.c
@@ -539,7 +539,7 @@ TclParseNumber(
*/
if (bytes == NULL) {
- if (endPtrPtr == NULL) {
+ if (interp == NULL && endPtrPtr == NULL) {
if (objPtr->typePtr == &tclDictType) {
/* A dict can never be a (single) number */
return TCL_ERROR;
@@ -1190,9 +1190,9 @@ TclParseNumber(
case sNA:
case sNANPAREN:
case sNANHEX:
+#endif
Tcl_Panic("TclParseNumber: bad acceptState %d parsing '%s'",
acceptState, bytes);
-#endif
case BINARY:
shift = numTrailZeros;
if (!significandOverflow && significandWide != 0 &&
@@ -3805,7 +3805,7 @@ ShorteningBignumConversion(
--s5;
/*
- * IDEA: It might possibly be a win to fall back to int64
+ * IDEA: It might possibly be a win to fall back to int64_t
* arithmetic here if S < 2**64/10. But it's a win only for
* a fairly narrow range of magnitudes so perhaps not worth
* bothering. We already know that we shorten the
@@ -3970,7 +3970,7 @@ StrictBignumConversion(
* As with the shortening bignum conversion, it's possible at this
* point that we will have reduced the denominator to less than
* 2**64/10, at which point it would be possible to fall back to
- * to int64 arithmetic. But the potential payoff is tremendously
+ * to int64_t arithmetic. But the potential payoff is tremendously
* less - unless we're working in F format - because we know that
* three groups of digits will always suffice for %#.17e, the
* longest format that doesn't introduce empty precision.