git-subtree-dir: software/gecode_on_record git-subtree-split: 37ed9bda495ea87e63217c19a374b5a93bb0078e
204 lines
5.1 KiB
C++
204 lines
5.1 KiB
C++
/* -*- mode: C++; c-basic-offset: 2; indent-tabs-mode: nil -*- */
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/*
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* Main authors:
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* Christian Schulte <schulte@gecode.org>
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*
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* Copyright:
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* Christian Schulte, 2011
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*
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* This file is part of Gecode, the generic constraint
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* development environment:
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* http://www.gecode.org
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*
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* Permission is hereby granted, free of charge, to any person obtaining
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* a copy of this software and associated documentation files (the
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* "Software"), to deal in the Software without restriction, including
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* without limitation the rights to use, copy, modify, merge, publish,
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* distribute, sublicense, and/or sell copies of the Software, and to
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* permit persons to whom the Software is furnished to do so, subject to
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* the following conditions:
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*
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* The above copyright notice and this permission notice shall be
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* included in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
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* LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
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* OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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* WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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*
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*/
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namespace Gecode { namespace Int { namespace NoOverlap {
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/*
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* Dimension with integer size
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*
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*/
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forceinline
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FixDim::FixDim(void)
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: s(0) {}
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forceinline
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FixDim::FixDim(IntView c0, int s0)
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: c(c0), s(s0) {}
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forceinline int
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FixDim::ssc(void) const {
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return c.min();
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}
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forceinline int
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FixDim::lsc(void) const {
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return c.max();
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}
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forceinline int
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FixDim::sec(void) const {
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return c.min() + s;
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}
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forceinline int
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FixDim::lec(void) const {
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return c.max() + s;
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}
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forceinline ExecStatus
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FixDim::ssc(Space& home, int n) {
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GECODE_ME_CHECK(c.gq(home, n));
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return ES_OK;
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}
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forceinline ExecStatus
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FixDim::lec(Space& home, int n) {
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GECODE_ME_CHECK(c.lq(home, n - s));
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return ES_OK;
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}
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forceinline ExecStatus
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FixDim::nooverlap(Space& home, int n, int m) {
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if (n <= m) {
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Iter::Ranges::Singleton r(n-s+1,m);
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GECODE_ME_CHECK(c.minus_r(home,r,false));
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}
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return ES_OK;
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}
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forceinline ExecStatus
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FixDim::nooverlap(Space& home, FixDim& d) {
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if (d.sec() > lsc()) {
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// Propagate that d must be after this
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GECODE_ES_CHECK(lec(home,d.lsc()));
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GECODE_ES_CHECK(d.ssc(home,sec()));
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} else {
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nooverlap(home, d.lsc(), d.sec()-1);
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}
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return ES_OK;
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}
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forceinline void
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FixDim::update(Space& home, FixDim& d) {
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c.update(home,d.c);
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s = d.s;
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}
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forceinline void
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FixDim::subscribe(Space& home, Propagator& p) {
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c.subscribe(home,p,PC_INT_DOM);
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}
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forceinline void
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FixDim::cancel(Space& home, Propagator& p) {
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c.cancel(home,p,PC_INT_DOM);
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}
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forceinline void
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FixDim::reschedule(Space& home, Propagator& p) {
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c.reschedule(home,p,PC_INT_DOM);
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}
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/*
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* Dimension with integer view size
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*
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*/
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forceinline
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FlexDim::FlexDim(void) {}
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forceinline
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FlexDim::FlexDim(IntView c00, IntView s0, IntView c10)
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: c0(c00), s(s0), c1(c10) {}
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forceinline int
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FlexDim::ssc(void) const {
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return c0.min();
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}
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forceinline int
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FlexDim::lsc(void) const {
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return c0.max();
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}
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forceinline int
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FlexDim::sec(void) const {
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return c1.min();
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}
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forceinline int
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FlexDim::lec(void) const {
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return c1.max();
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}
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forceinline ExecStatus
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FlexDim::ssc(Space& home, int n) {
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GECODE_ME_CHECK(c0.gq(home, n));
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return ES_OK;
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}
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forceinline ExecStatus
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FlexDim::lec(Space& home, int n) {
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GECODE_ME_CHECK(c1.lq(home, n));
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return ES_OK;
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}
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forceinline ExecStatus
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FlexDim::nooverlap(Space& home, int n, int m) {
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if (n <= m) {
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Iter::Ranges::Singleton r0(n-s.min()+1,m);
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GECODE_ME_CHECK(c0.minus_r(home,r0,false));
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Iter::Ranges::Singleton r1(n+1,s.min()+m);
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GECODE_ME_CHECK(c1.minus_r(home,r1,false));
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}
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return ES_OK;
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}
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forceinline ExecStatus
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FlexDim::nooverlap(Space& home, FlexDim& d) {
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if (d.sec() > lsc()) {
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// Propagate that d must be after this
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GECODE_ES_CHECK(lec(home,d.lsc()));
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GECODE_ES_CHECK(d.ssc(home,sec()));
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} else {
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nooverlap(home, d.lsc(), d.sec()-1);
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}
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return ES_OK;
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}
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forceinline void
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FlexDim::update(Space& home, FlexDim& d) {
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c0.update(home,d.c0);
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s.update(home,d.s);
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c1.update(home,d.c1);
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}
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forceinline void
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FlexDim::subscribe(Space& home, Propagator& p) {
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c0.subscribe(home,p,PC_INT_DOM);
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s.subscribe(home,p,PC_INT_BND);
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c1.subscribe(home,p,PC_INT_DOM);
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}
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forceinline void
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FlexDim::cancel(Space& home, Propagator& p) {
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c0.cancel(home,p,PC_INT_DOM);
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s.cancel(home,p,PC_INT_BND);
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c1.cancel(home,p,PC_INT_DOM);
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}
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forceinline void
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FlexDim::reschedule(Space& home, Propagator& p) {
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c0.reschedule(home,p,PC_INT_DOM);
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s.reschedule(home,p,PC_INT_BND);
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c1.reschedule(home,p,PC_INT_DOM);
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}
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}}}
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// STATISTICS: int-prop
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