2006-05-12 22:17:48 +02:00
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#include "stdafx.h"
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#include "defs.h"
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void
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eval_decomp(void)
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{
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int h = tos;
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push(symbol(NIL));
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push(cadr(p1));
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eval();
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push(caddr(p1));
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eval();
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p1 = pop();
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if (p1 == symbol(NIL))
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guess();
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else
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push(p1);
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decomp();
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list(tos - h);
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}
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// returns constant expresions on the stack
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void
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decomp(void)
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{
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save();
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p2 = pop();
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p1 = pop();
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// is the entire expression constant?
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if (find(p1, p2) == 0) {
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push(p1);
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//push(p1); // may need later for pushing both +a, -a
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//negate();
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restore();
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return;
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}
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// sum?
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if (isadd(p1)) {
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decomp_sum();
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restore();
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return;
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}
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// product?
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if (car(p1) == symbol(MULTIPLY)) {
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decomp_product();
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restore();
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return;
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}
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// naive decomp if not sum or product
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p3 = cdr(p1);
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while (iscons(p3)) {
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push(car(p3));
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push(p2);
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decomp();
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p3 = cdr(p3);
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}
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restore();
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}
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void
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decomp_sum(void)
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{
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int h;
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// decomp terms involving x
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p3 = cdr(p1);
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while (iscons(p3)) {
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if (find(car(p3), p2)) {
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push(car(p3));
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push(p2);
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decomp();
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}
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p3 = cdr(p3);
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}
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// add together all constant terms
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h = tos;
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p3 = cdr(p1);
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while (iscons(p3)) {
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if (find(car(p3), p2) == 0)
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push(car(p3));
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p3 = cdr(p3);
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}
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if (tos - h) {
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2006-08-23 16:42:43 +02:00
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add_all(tos - h);
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2006-05-12 22:17:48 +02:00
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p3 = pop();
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push(p3);
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push(p3);
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negate(); // need both +a, -a for some integrals
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}
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}
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void
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decomp_product(void)
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{
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int h;
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// decomp factors involving x
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p3 = cdr(p1);
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while (iscons(p3)) {
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if (find(car(p3), p2)) {
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push(car(p3));
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push(p2);
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decomp();
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}
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p3 = cdr(p3);
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}
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// multiply together all constant factors
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h = tos;
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p3 = cdr(p1);
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while (iscons(p3)) {
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if (find(car(p3), p2) == 0)
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push(car(p3));
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p3 = cdr(p3);
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}
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if (tos - h) {
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multiply_all(tos - h);
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//p3 = pop(); // may need later for pushing both +a, -a
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//push(p3);
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//push(p3);
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//negate();
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}
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}
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