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Kirill Smelkov
cpython
Commits
9ae47dfb
Commit
9ae47dfb
authored
Sep 09, 2015
by
Victor Stinner
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pytime: add _PyTime_Round() helper to factorize code
parent
ce6aa749
Changes
1
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1 changed file
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20 additions
and
25 deletions
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-25
Python/pytime.c
Python/pytime.c
+20
-25
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Python/pytime.c
View file @
9ae47dfb
...
...
@@ -72,6 +72,17 @@ _PyTime_RoundHalfEven(double x)
return
rounded
;
}
static
double
_PyTime_Round
(
double
x
,
_PyTime_round_t
round
)
{
if
(
round
==
_PyTime_ROUND_HALF_EVEN
)
return
_PyTime_RoundHalfEven
(
x
);
else
if
(
round
==
_PyTime_ROUND_CEILING
)
return
ceil
(
x
);
else
return
floor
(
x
);
}
static
int
_PyTime_DoubleToDenominator
(
double
d
,
time_t
*
sec
,
long
*
numerator
,
double
denominator
,
_PyTime_round_t
round
)
...
...
@@ -83,12 +94,7 @@ _PyTime_DoubleToDenominator(double d, time_t *sec, long *numerator,
floatpart
=
modf
(
d
,
&
intpart
);
floatpart
*=
denominator
;
if
(
round
==
_PyTime_ROUND_HALF_EVEN
)
floatpart
=
_PyTime_RoundHalfEven
(
floatpart
);
else
if
(
round
==
_PyTime_ROUND_CEILING
)
floatpart
=
ceil
(
floatpart
);
else
floatpart
=
floor
(
floatpart
);
floatpart
=
_PyTime_Round
(
floatpart
,
round
);
if
(
floatpart
>=
denominator
)
{
floatpart
-=
denominator
;
intpart
+=
1
.
0
;
...
...
@@ -139,12 +145,7 @@ _PyTime_ObjectToTime_t(PyObject *obj, time_t *sec, _PyTime_round_t round)
volatile
double
d
;
d
=
PyFloat_AsDouble
(
obj
);
if
(
round
==
_PyTime_ROUND_HALF_EVEN
)
d
=
_PyTime_RoundHalfEven
(
d
);
else
if
(
round
==
_PyTime_ROUND_CEILING
)
d
=
ceil
(
d
);
else
d
=
floor
(
d
);
d
=
_PyTime_Round
(
d
,
round
);
(
void
)
modf
(
d
,
&
intpart
);
*
sec
=
(
time_t
)
intpart
;
...
...
@@ -255,7 +256,7 @@ _PyTime_FromTimeval(_PyTime_t *tp, struct timeval *tv, int raise)
static
int
_PyTime_FromFloatObject
(
_PyTime_t
*
t
,
double
value
,
_PyTime_round_t
round
,
long
to_nanosecond
s
)
long
unit_to_n
s
)
{
double
err
;
/* volatile avoids optimization changing how numbers are rounded */
...
...
@@ -263,14 +264,8 @@ _PyTime_FromFloatObject(_PyTime_t *t, double value, _PyTime_round_t round,
/* convert to a number of nanoseconds */
d
=
value
;
d
*=
to_nanoseconds
;
if
(
round
==
_PyTime_ROUND_HALF_EVEN
)
d
=
_PyTime_RoundHalfEven
(
d
);
else
if
(
round
==
_PyTime_ROUND_CEILING
)
d
=
ceil
(
d
);
else
d
=
floor
(
d
);
d
*=
(
double
)
unit_to_ns
;
d
=
_PyTime_Round
(
d
,
round
);
*
t
=
(
_PyTime_t
)
d
;
err
=
d
-
(
double
)
*
t
;
...
...
@@ -283,12 +278,12 @@ _PyTime_FromFloatObject(_PyTime_t *t, double value, _PyTime_round_t round,
static
int
_PyTime_FromObject
(
_PyTime_t
*
t
,
PyObject
*
obj
,
_PyTime_round_t
round
,
long
to_nanosecond
s
)
long
unit_to_n
s
)
{
if
(
PyFloat_Check
(
obj
))
{
double
d
;
d
=
PyFloat_AsDouble
(
obj
);
return
_PyTime_FromFloatObject
(
t
,
d
,
round
,
to_nanosecond
s
);
return
_PyTime_FromFloatObject
(
t
,
d
,
round
,
unit_to_n
s
);
}
else
{
#ifdef HAVE_LONG_LONG
...
...
@@ -305,8 +300,8 @@ _PyTime_FromObject(_PyTime_t *t, PyObject *obj, _PyTime_round_t round,
_PyTime_overflow
();
return
-
1
;
}
*
t
=
sec
*
to_nanosecond
s
;
if
(
*
t
/
to_nanosecond
s
!=
sec
)
{
*
t
=
sec
*
unit_to_n
s
;
if
(
*
t
/
unit_to_n
s
!=
sec
)
{
_PyTime_overflow
();
return
-
1
;
}
...
...
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