|
| | QuotientRing (const EuclideanDomain &domain, const Element &modulus) |
| |
| const EuclideanDomain & | GetDomain () const |
| |
| const Element & | GetModulus () const |
| |
| bool | Equal (const Element &a, const Element &b) const |
| |
| const Element & | Identity () const |
| | Provides the Identity element.
|
| |
| const Element & | Add (const Element &a, const Element &b) const |
| |
| Element & | Accumulate (Element &a, const Element &b) const |
| |
| const Element & | Inverse (const Element &a) const |
| |
| const Element & | Subtract (const Element &a, const Element &b) const |
| |
| Element & | Reduce (Element &a, const Element &b) const |
| |
| const Element & | Double (const Element &a) const |
| |
| bool | IsUnit (const Element &a) const |
| |
| const Element & | MultiplicativeIdentity () const |
| | Retrieves the multiplicative identity.
|
| |
| const Element & | Multiply (const Element &a, const Element &b) const |
| |
| const Element & | Square (const Element &a) const |
| |
| const Element & | MultiplicativeInverse (const Element &a) const |
| |
| bool | operator== (const QuotientRing< T > &rhs) const |
| |
| | AbstractRing () |
| | Construct an AbstractRing.
|
| |
| | AbstractRing (const AbstractRing &source) |
| | Copy construct an AbstractRing.
|
| |
| AbstractRing & | operator= (const AbstractRing &source) |
| | Assign an AbstractRing.
|
| |
| virtual bool | IsUnit (const Element &a) const=0 |
| | Determines whether an element is a unit in the group.
|
| |
| virtual const Element & | Multiply (const Element &a, const Element &b) const=0 |
| | Multiplies elements in the group.
|
| |
| virtual const Element & | MultiplicativeInverse (const Element &a) const=0 |
| | Calculate the multiplicative inverse of an element in the group.
|
| |
| virtual const Element & | Square (const Element &a) const |
| | Square an element in the group.
|
| |
| virtual const Element & | Divide (const Element &a, const Element &b) const |
| | Divides elements in the group.
|
| |
| virtual Element | Exponentiate (const Element &a, const Integer &e) const |
| | Raises a base to an exponent in the group.
|
| |
| virtual Element | CascadeExponentiate (const Element &x, const Integer &e1, const Element &y, const Integer &e2) const |
| | TODO.
|
| |
| virtual void | SimultaneousExponentiate (Element *results, const Element &base, const Integer *exponents, unsigned int exponentsCount) const |
| | Exponentiates a base to multiple exponents in the Ring.
|
| |
| virtual const AbstractGroup< T > & | MultiplicativeGroup () const |
| | Retrieves the multiplicative group.
|
| |
| virtual bool | Equal (const Element &a, const Element &b) const =0 |
| | Compare two elements for equality.
|
| |
| virtual const Element & | Add (const Element &a, const Element &b) const =0 |
| | Adds elements in the group.
|
| |
| virtual const Element & | Inverse (const Element &a) const =0 |
| | Inverts the element in the group.
|
| |
| virtual bool | InversionIsFast () const |
| | Determine if inversion is fast.
|
| |
| virtual const Element & | Double (const Element &a) const |
| | Doubles an element in the group.
|
| |
| virtual const Element & | Subtract (const Element &a, const Element &b) const |
| | Subtracts elements in the group.
|
| |
| virtual Element & | Accumulate (Element &a, const Element &b) const |
| | TODO.
|
| |
| virtual Element & | Reduce (Element &a, const Element &b) const |
| | Reduces an element in the congruence class.
|
| |
| virtual Element | ScalarMultiply (const Element &a, const Integer &e) const |
| | Performs a scalar multiplication.
|
| |
| virtual Element | CascadeScalarMultiply (const Element &x, const Integer &e1, const Element &y, const Integer &e2) const |
| | TODO.
|
| |
| virtual void | SimultaneousMultiply (Element *results, const Element &base, const Integer *exponents, unsigned int exponentsCount) const |
| | Multiplies a base to multiple exponents in a group.
|
| |
template<class T>
class QuotientRing< T >
Quotient ring.
- Template Parameters
-
const Element& returned by member functions are references to internal data members. Since each object may have only one such data member for holding results, the following code will produce incorrect results:
abcd = group.Add(group.Add(a,b), group.Add(c,d));
But this should be fine:
abcd = group.Add(a, group.Add(b, group.Add(c,d));
Definition at line 386 of file algebra.h.