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z3/lib/mpn.h
Leonardo de Moura e9eab22e5c Z3 sources
Signed-off-by: Leonardo de Moura <leonardo@microsoft.com>
2012-10-02 11:35:25 -07:00

197 lines
6.1 KiB
C++

/*++
Copyright (c) 2011 Microsoft Corporation
Module Name:
mpn.h
Abstract:
Multi Precision Natural Numbers
Author:
Christoph Wintersteiger (cwinter) 2011-11-16.
Revision History:
--*/
#ifndef _MPN_H_
#define _MPN_H_
#include<ostream>
#include"util.h"
#include"buffer.h"
// we supply a definition of a basic max because mpz relies on it.
#define max(a,b) (((a) > (b)) ? (a) : (b))
typedef unsigned int mpn_digit;
class mpn_manager {
public:
mpn_manager();
~mpn_manager();
int compare(mpn_digit const * a, size_t const lnga,
mpn_digit const * b, size_t const lngb) const;
bool add(mpn_digit const * a, size_t const lnga,
mpn_digit const * b, size_t const lngb,
mpn_digit *c, size_t const lngc_alloc,
size_t * plngc) const;
bool sub(mpn_digit const * a, size_t const lnga,
mpn_digit const * b, size_t const lngb,
mpn_digit * c, mpn_digit * pborrow) const;
bool mul(mpn_digit const * a, size_t const lnga,
mpn_digit const * b, size_t const lngb,
mpn_digit * c) const;
bool div(mpn_digit const * numer, size_t const lnum,
mpn_digit const * denom, size_t const lden,
mpn_digit * quot,
mpn_digit * rem);
char * to_string(mpn_digit const * a, size_t const lng,
char * buf, size_t const lbuf) const;
private:
#ifdef _AMD64_
class mpn_sbuffer : public sbuffer<mpn_digit> {
public:
mpn_sbuffer() : sbuffer<mpn_digit>() {}
mpn_sbuffer(size_t nsz, const mpn_digit & elem = 0) :
sbuffer<mpn_digit>(static_cast<unsigned>(nsz), elem)
{
}
void resize(size_t nsz, const mpn_digit & elem = 0) {
sbuffer<mpn_digit>::resize(static_cast<unsigned>(nsz), elem);
}
mpn_digit & operator[](size_t idx) {
return sbuffer<mpn_digit>::operator[](static_cast<unsigned>(idx));
}
const mpn_digit & operator[](size_t idx) const {
return sbuffer<mpn_digit>::operator[](static_cast<unsigned>(idx));
}
};
#else
typedef sbuffer<mpn_digit> mpn_sbuffer;
#endif
static const mpn_digit zero;
mpn_sbuffer u, v, t_ms, t_ab;
void display_raw(std::ostream & out, mpn_digit const * a, size_t const lng) const;
size_t div_normalize(mpn_digit const * numer, size_t const lnum,
mpn_digit const * denom, size_t const lden,
mpn_sbuffer & n_numer,
mpn_sbuffer & n_denom) const;
void div_unnormalize(mpn_sbuffer & numer, mpn_sbuffer & denom,
size_t const d, mpn_digit * rem) const;
bool div_1(mpn_sbuffer & numer, mpn_digit const denom,
mpn_digit * quot) const;
bool div_n(mpn_sbuffer & numer, mpn_sbuffer const & denom,
mpn_digit * quot, mpn_digit * rem);
#ifdef _DEBUG
mutable char char_buf[4096];
bool trace_enabled;
#endif
void trace(mpn_digit const * a, size_t const lnga,
mpn_digit const * b, size_t const lngb,
const char * op) const;
void trace(mpn_digit const * a, size_t const lnga) const;
void trace_nl(mpn_digit const * a, size_t const lnga) const;
public:
// This function is needed because of the static_mpn_manager global variable.
// It must be invoked by the memory_manager during finalization.
// After we remove MSBignum from the code base, the global variable will
// not be needed anymore, and we will be able to eliminate this function.
void finalize() {
u.finalize();
v.finalize();
t_ms.finalize();
t_ab.finalize();
}
};
// MSBignum compatible interface
// Note: The `owner' parameter is ignored. We use separate mpn_manager objects for the
// same purpose. Multiple owners are not supported in these compatibility functions,
// instead a static mpn_manager is used.
extern mpn_manager static_mpn_manager;
typedef unsigned int digit_t;
typedef struct {
mpn_digit multiplier;
size_t shiftamt;
} reciprocal_1_t;
#define reciprocal_1_NULL ((reciprocal_1_t*)0)
inline int compare_diff(digit_t const * a, size_t const lnga,
digit_t const * b, size_t const lngb)
{
return static_mpn_manager.compare(a, lnga, b, lngb);
}
inline char * mp_decimal(digit_t const * a, size_t const lng, // Number to be converted and its length
char * buf, size_t const lbuf, // output buffer and its length
int owner)
{
return static_mpn_manager.to_string(a, lng, buf, lbuf);
}
inline bool add_full(digit_t const * a, size_t const lnga,
digit_t const * b, size_t const lngb,
digit_t *c, size_t const lngc_alloc,
size_t * plngc,
int owner)
{
return static_mpn_manager.add(a, lnga, b, lngb, c, lngc_alloc, plngc);
}
inline bool sub_diff(digit_t const * a, size_t const lnga,
digit_t const * b, size_t const lngb,
digit_t * c, digit_t * pborrow,
int owner)
{
return static_mpn_manager.sub(a, lnga, b, lngb, c, pborrow);
}
inline bool multiply(digit_t const * a, size_t const lnga,
digit_t const * b, size_t const lngb,
digit_t * c,
int owner)
{
return static_mpn_manager.mul(a, lnga, b, lngb, c);
}
inline bool divide(digit_t const * numer, size_t const lnum,
digit_t const * denom, size_t const lden,
reciprocal_1_t const * supplied_reciprocal, /* reciprocal_t struct for this denominator,
or reciprocal_1_NULL
if not previously precomputed */
digit_t * quot, /* Quotient -- length MAX(lnum - lden + 1, 0) */
digit_t * rem, /* Remainder -- length lden */
int owner)
{
return static_mpn_manager.div(numer, lnum, denom, lden, quot, rem);
}
#endif