# Copyright 2010-2018 Google LLC # Licensed under the Apache License, Version 2.0 (the "License"); # you may not use this file except in compliance with the License. # You may obtain a copy of the License at # # http://www.apache.org/licenses/LICENSE-2.0 # # Unless required by applicable law or agreed to in writing, software # distributed under the License is distributed on an "AS IS" BASIS, # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. # See the License for the specific language governing permissions and # limitations under the License. """helpers methods for the cp_model module.""" from __future__ import absolute_import from __future__ import division from __future__ import print_function import numbers INT_MIN = -9223372036854775808 # hardcoded to be platform independent. INT_MAX = 9223372036854775807 INT32_MIN = -2147483648 INT32_MAX = 2147483647 def AssertIsInt64(x): """Asserts that x is integer and x is in [min_int_64, max_int_64].""" if not isinstance(x, numbers.Integral): raise TypeError('Not an integer: %s' % x) if x < INT_MIN or x > INT_MAX: raise OverflowError('Does not fit in an int64: %s' % x) def AssertIsInt32(x): """Asserts that x is integer and x is in [min_int_32, max_int_32].""" if not isinstance(x, numbers.Integral): raise TypeError('Not an integer: %s' % x) if x < INT32_MIN or x > INT32_MAX: raise OverflowError('Does not fit in an int32: %s' % x) def AssertIsBoolean(x): """Asserts that x is 0 or 1.""" if not isinstance(x, numbers.Integral) or x < 0 or x > 1: raise TypeError('Not an boolean: %s' % x) def CapInt64(v): """Restrict v within [INT_MIN..INT_MAX] range.""" if v > INT_MAX: return INT_MAX if v < INT_MIN: return INT_MIN return v def CapSub(x, y): """Saturated arithmetics. Returns x - y truncated to the int64 range.""" if not isinstance(x, numbers.Integral): raise TypeError('Not integral: ' + str(x)) if not isinstance(y, numbers.Integral): raise TypeError('Not integral: ' + str(y)) AssertIsInt64(x) AssertIsInt64(y) if y == 0: return x if x == y: if x == INT_MAX or x == INT_MIN: raise OverflowError( 'Integer NaN: subtracting INT_MAX or INT_MIN to itself') return 0 if x == INT_MAX or x == INT_MIN: return x if y == INT_MAX: return INT_MIN if y == INT_MIN: return INT_MAX return CapInt64(x - y)