Move assertion inside _PyTime_ObjectToTimeval()
Change also _PyTime_FromSeconds() assertion to ensure that the _PyTime_t type is used.
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@ -4100,7 +4100,6 @@ datetime_from_timestamp(PyObject *cls, TM_FUNC f, PyObject *timestamp,
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if (_PyTime_ObjectToTimeval(timestamp,
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&timet, &us, _PyTime_ROUND_FLOOR) == -1)
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return NULL;
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assert(0 <= us && us <= 999999);
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return datetime_from_timet_and_us(cls, f, timet, (int)us, tzinfo);
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}
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@ -101,7 +101,8 @@ static int
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_PyTime_ObjectToDenominator(PyObject *obj, time_t *sec, long *numerator,
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double denominator, _PyTime_round_t round)
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{
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assert(denominator <= LONG_MAX);
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assert(denominator <= (double)LONG_MAX);
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if (PyFloat_Check(obj)) {
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double d = PyFloat_AsDouble(obj);
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return _PyTime_DoubleToDenominator(d, sec, numerator,
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@ -149,14 +150,20 @@ int
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_PyTime_ObjectToTimespec(PyObject *obj, time_t *sec, long *nsec,
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_PyTime_round_t round)
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{
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return _PyTime_ObjectToDenominator(obj, sec, nsec, 1e9, round);
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int res;
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res = _PyTime_ObjectToDenominator(obj, sec, nsec, 1e9, round);
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assert(0 <= *nsec && *nsec < SEC_TO_NS );
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return res;
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}
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int
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_PyTime_ObjectToTimeval(PyObject *obj, time_t *sec, long *usec,
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_PyTime_round_t round)
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{
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return _PyTime_ObjectToDenominator(obj, sec, usec, 1e6, round);
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int res;
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res = _PyTime_ObjectToDenominator(obj, sec, usec, 1e6, round);
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assert(0 <= *usec && *usec < SEC_TO_US );
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return res;
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}
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static void
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@ -170,12 +177,13 @@ _PyTime_t
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_PyTime_FromSeconds(int seconds)
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{
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_PyTime_t t;
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t = (_PyTime_t)seconds;
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/* ensure that integer overflow cannot happen, int type should have 32
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bits, whereas _PyTime_t type has at least 64 bits (SEC_TO_MS takes 30
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bits). */
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assert((seconds >= 0 && seconds <= _PyTime_MAX / SEC_TO_NS)
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|| (seconds < 0 && seconds >= _PyTime_MIN / SEC_TO_NS));
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t = (_PyTime_t)seconds * SEC_TO_NS;
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assert((t >= 0 && t <= _PyTime_MAX / SEC_TO_NS)
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|| (t < 0 && t >= _PyTime_MIN / SEC_TO_NS));
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t *= SEC_TO_NS;
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return t;
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}
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