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Annotation of OpenXM_contrib2/asir2000/builtin/reduct.c, Revision 1.5

1.2       noro        1: /*
                      2:  * Copyright (c) 1994-2000 FUJITSU LABORATORIES LIMITED
                      3:  * All rights reserved.
                      4:  *
                      5:  * FUJITSU LABORATORIES LIMITED ("FLL") hereby grants you a limited,
                      6:  * non-exclusive and royalty-free license to use, copy, modify and
                      7:  * redistribute, solely for non-commercial and non-profit purposes, the
                      8:  * computer program, "Risa/Asir" ("SOFTWARE"), subject to the terms and
                      9:  * conditions of this Agreement. For the avoidance of doubt, you acquire
                     10:  * only a limited right to use the SOFTWARE hereunder, and FLL or any
                     11:  * third party developer retains all rights, including but not limited to
                     12:  * copyrights, in and to the SOFTWARE.
                     13:  *
                     14:  * (1) FLL does not grant you a license in any way for commercial
                     15:  * purposes. You may use the SOFTWARE only for non-commercial and
                     16:  * non-profit purposes only, such as academic, research and internal
                     17:  * business use.
                     18:  * (2) The SOFTWARE is protected by the Copyright Law of Japan and
                     19:  * international copyright treaties. If you make copies of the SOFTWARE,
                     20:  * with or without modification, as permitted hereunder, you shall affix
                     21:  * to all such copies of the SOFTWARE the above copyright notice.
                     22:  * (3) An explicit reference to this SOFTWARE and its copyright owner
                     23:  * shall be made on your publication or presentation in any form of the
                     24:  * results obtained by use of the SOFTWARE.
                     25:  * (4) In the event that you modify the SOFTWARE, you shall notify FLL by
1.3       noro       26:  * e-mail at risa-admin@sec.flab.fujitsu.co.jp of the detailed specification
1.2       noro       27:  * for such modification or the source code of the modified part of the
                     28:  * SOFTWARE.
                     29:  *
                     30:  * THE SOFTWARE IS PROVIDED AS IS WITHOUT ANY WARRANTY OF ANY KIND. FLL
                     31:  * MAKES ABSOLUTELY NO WARRANTIES, EXPRESSED, IMPLIED OR STATUTORY, AND
                     32:  * EXPRESSLY DISCLAIMS ANY IMPLIED WARRANTY OF MERCHANTABILITY, FITNESS
                     33:  * FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT OF THIRD PARTIES'
                     34:  * RIGHTS. NO FLL DEALER, AGENT, EMPLOYEES IS AUTHORIZED TO MAKE ANY
                     35:  * MODIFICATIONS, EXTENSIONS, OR ADDITIONS TO THIS WARRANTY.
                     36:  * UNDER NO CIRCUMSTANCES AND UNDER NO LEGAL THEORY, TORT, CONTRACT,
                     37:  * OR OTHERWISE, SHALL FLL BE LIABLE TO YOU OR ANY OTHER PERSON FOR ANY
                     38:  * DIRECT, INDIRECT, SPECIAL, INCIDENTAL, PUNITIVE OR CONSEQUENTIAL
                     39:  * DAMAGES OF ANY CHARACTER, INCLUDING, WITHOUT LIMITATION, DAMAGES
                     40:  * ARISING OUT OF OR RELATING TO THE SOFTWARE OR THIS AGREEMENT, DAMAGES
                     41:  * FOR LOSS OF GOODWILL, WORK STOPPAGE, OR LOSS OF DATA, OR FOR ANY
                     42:  * DAMAGES, EVEN IF FLL SHALL HAVE BEEN INFORMED OF THE POSSIBILITY OF
                     43:  * SUCH DAMAGES, OR FOR ANY CLAIM BY ANY OTHER PARTY. EVEN IF A PART
                     44:  * OF THE SOFTWARE HAS BEEN DEVELOPED BY A THIRD PARTY, THE THIRD PARTY
                     45:  * DEVELOPER SHALL HAVE NO LIABILITY IN CONNECTION WITH THE USE,
                     46:  * PERFORMANCE OR NON-PERFORMANCE OF THE SOFTWARE.
                     47:  *
1.5     ! noro       48:  * $OpenXM: OpenXM_contrib2/asir2000/builtin/reduct.c,v 1.4 2017/08/31 02:36:20 noro Exp $
1.2       noro       49: */
1.1       noro       50: #include "ca.h"
                     51: #include "parse.h"
                     52:
                     53: void Pred(), Predc(), Pprim();
                     54:
                     55: struct ftab reduct_tab[] = {
1.5     ! noro       56:   {"red",Pred,1},
        !            57:   {"redc",Predc,2},
        !            58:   {"prim",Pprim,-2},
        !            59:   {0,0,0},
1.1       noro       60: };
                     61:
1.4       noro       62: void Pred(NODE arg,Obj *rp)
1.1       noro       63: {
1.5     ! noro       64:   Obj a,b,t;
        !            65:   LIST l;
        !            66:   V v;
        !            67:   int row,col,len;
        !            68:   VECT vect;
        !            69:   MAT mat;
        !            70:   int i,j;
        !            71:   NODE n0,n,nd;
        !            72:   struct oNODE arg0;
        !            73:   MP m,mp,mp0;
        !            74:   DP d;
        !            75:
        !            76:   a = (Obj)ARG0(arg);
        !            77:   if ( !a ) {
        !            78:     *rp = 0;
        !            79:     return;
        !            80:   }
        !            81:   switch ( OID(a) ) {
        !            82:     case O_N: case O_P: case O_R:
        !            83:       reductr(CO,(Obj)ARG0(arg),rp);
        !            84:       break;
        !            85:     case O_LIST:
        !            86:       n0 = 0;
        !            87:       for ( nd = BDY((LIST)a); nd; nd = NEXT(nd) ) {
        !            88:         NEXTNODE(n0,n);
        !            89:         arg0.body = (pointer)BDY(nd);
        !            90:         arg0.next = 0;
        !            91:         Pred(&arg0,&b);
        !            92:         BDY(n) = (pointer)b;
        !            93:       }
        !            94:       if ( n0 )
        !            95:         NEXT(n) = 0;
        !            96:       MKLIST(l,n0);
        !            97:       *rp = (Obj)l;
        !            98:       break;
        !            99:     case O_VECT:
        !           100:       len = ((VECT)a)->len;
        !           101:       MKVECT(vect,len);
        !           102:       for ( i = 0; i < len; i++ ) {
        !           103:         arg0.body = (pointer)BDY((VECT)a)[i];
        !           104:         arg0.next = 0;
        !           105:         Pred(&arg0,&b);
        !           106:         BDY(vect)[i] = (pointer)b;
        !           107:       }
        !           108:       *rp = (Obj)vect;
        !           109:       break;
        !           110:     case O_MAT:
        !           111:       row = ((MAT)a)->row;
        !           112:       col = ((MAT)a)->col;
        !           113:       MKMAT(mat,row,col);
        !           114:       for ( i = 0; i < row; i++ )
        !           115:         for ( j = 0; j < col; j++ ) {
        !           116:           arg0.body = (pointer)BDY((MAT)a)[i][j];
        !           117:           arg0.next = 0;
        !           118:           Pred(&arg0,&b);
        !           119:           BDY(mat)[i][j] = (pointer)b;
        !           120:         }
        !           121:       *rp = (Obj)mat;
        !           122:       break;
        !           123:     case O_DP:
        !           124:       mp0 = 0;
        !           125:       for ( m = BDY((DP)a); m; m = NEXT(m) ) {
        !           126:         arg0.body = (pointer)C(m);
        !           127:         arg0.next = 0;
        !           128:         Pred(&arg0,&b);
        !           129:         if ( b ) {
        !           130:           NEXTMP(mp0,mp);
        !           131:           C(mp) = b;
        !           132:           mp->dl = m->dl;
        !           133:         }
        !           134:       }
        !           135:       if ( mp0 ) {
        !           136:         MKDP(NV((DP)a),mp0,d);
        !           137:         d->sugar = ((DP)a)->sugar;
        !           138:         *rp = (Obj)d;
        !           139:       } else
        !           140:         *rp = 0;
        !           141:
        !           142:       break;
        !           143:     default:
        !           144:       error("red : invalid argument");
        !           145:   }
1.1       noro      146: }
                    147:
1.4       noro      148: void Predc(NODE arg,P *rp)
1.1       noro      149: {
1.5     ! noro      150:   asir_assert(ARG0(arg),O_P,"redc");
        !           151:   asir_assert(ARG1(arg),O_P,"redc");
        !           152:   remsdcp(CO,(P)ARG0(arg),(P)ARG1(arg),rp);
1.1       noro      153: }
                    154:
1.4       noro      155: void Pprim(NODE arg,P *rp)
1.1       noro      156: {
1.5     ! noro      157:   P t,p,p1,r;
        !           158:   V v;
        !           159:   VL vl;
        !           160:
        !           161:   asir_assert(ARG0(arg),O_P,"prim");
        !           162:   p = (P)ARG0(arg);
        !           163:   if ( NUM(p) )
        !           164:     *rp = (P)ONE;
        !           165:   else {
        !           166:     if ( argc(arg) == 2 ) {
        !           167:       v = VR((P)ARG1(arg));
        !           168:       change_mvar(CO,p,v,&p1);
        !           169:       if ( VR(p1) != v ) {
        !           170:         *rp = (P)ONE; return;
        !           171:       } else {
        !           172:         reordvar(CO,v,&vl); pcp(vl,p1,&r,&t);
        !           173:         restore_mvar(CO,r,v,rp);
        !           174:       }
        !           175:     } else
        !           176:       pcp(CO,p,rp,&t);
        !           177:   }
1.1       noro      178: }

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