basis_reduction_tab.c revision 1.1 1 1.1 mrg /*
2 1.1 mrg * Copyright 2008-2009 Katholieke Universiteit Leuven
3 1.1 mrg *
4 1.1 mrg * Use of this software is governed by the MIT license
5 1.1 mrg *
6 1.1 mrg * Written by Sven Verdoolaege, K.U.Leuven, Departement
7 1.1 mrg * Computerwetenschappen, Celestijnenlaan 200A, B-3001 Leuven, Belgium
8 1.1 mrg */
9 1.1 mrg
10 1.1 mrg #include <assert.h>
11 1.1 mrg #include <isl_map_private.h>
12 1.1 mrg #include <isl_seq.h>
13 1.1 mrg #include "isl_tab.h"
14 1.1 mrg #include <isl_int.h>
15 1.1 mrg #include <isl_config.h>
16 1.1 mrg
17 1.1 mrg struct tab_lp {
18 1.1 mrg struct isl_ctx *ctx;
19 1.1 mrg struct isl_vec *row;
20 1.1 mrg struct isl_tab *tab;
21 1.1 mrg struct isl_tab_undo **stack;
22 1.1 mrg isl_int *obj;
23 1.1 mrg isl_int opt;
24 1.1 mrg isl_int opt_denom;
25 1.1 mrg isl_int tmp;
26 1.1 mrg isl_int tmp2;
27 1.1 mrg int neq;
28 1.1 mrg unsigned dim;
29 1.1 mrg /* number of constraints in initial product tableau */
30 1.1 mrg int con_offset;
31 1.1 mrg /* objective function has fixed or no integer value */
32 1.1 mrg int is_fixed;
33 1.1 mrg };
34 1.1 mrg
35 1.1 mrg #ifdef USE_GMP_FOR_MP
36 1.1 mrg #define GBR_type mpq_t
37 1.1 mrg #define GBR_init(v) mpq_init(v)
38 1.1 mrg #define GBR_clear(v) mpq_clear(v)
39 1.1 mrg #define GBR_set(a,b) mpq_set(a,b)
40 1.1 mrg #define GBR_set_ui(a,b) mpq_set_ui(a,b,1)
41 1.1 mrg #define GBR_mul(a,b,c) mpq_mul(a,b,c)
42 1.1 mrg #define GBR_lt(a,b) (mpq_cmp(a,b) < 0)
43 1.1 mrg #define GBR_is_zero(a) (mpq_sgn(a) == 0)
44 1.1 mrg #define GBR_numref(a) mpq_numref(a)
45 1.1 mrg #define GBR_denref(a) mpq_denref(a)
46 1.1 mrg #define GBR_floor(a,b) mpz_fdiv_q(a,GBR_numref(b),GBR_denref(b))
47 1.1 mrg #define GBR_ceil(a,b) mpz_cdiv_q(a,GBR_numref(b),GBR_denref(b))
48 1.1 mrg #define GBR_set_num_neg(a, b) mpz_neg(GBR_numref(*a), b);
49 1.1 mrg #define GBR_set_den(a, b) mpz_set(GBR_denref(*a), b);
50 1.1 mrg #endif /* USE_GMP_FOR_MP */
51 1.1 mrg
52 1.1 mrg #ifdef USE_IMATH_FOR_MP
53 1.1 mrg #include <imrat.h>
54 1.1 mrg
55 1.1 mrg #define GBR_type mp_rat
56 1.1 mrg #define GBR_init(v) v = mp_rat_alloc()
57 1.1 mrg #define GBR_clear(v) mp_rat_free(v)
58 1.1 mrg #define GBR_set(a,b) mp_rat_copy(b,a)
59 1.1 mrg #define GBR_set_ui(a,b) mp_rat_set_uvalue(a,b,1)
60 1.1 mrg #define GBR_mul(a,b,c) mp_rat_mul(b,c,a)
61 1.1 mrg #define GBR_lt(a,b) (mp_rat_compare(a,b) < 0)
62 1.1 mrg #define GBR_is_zero(a) (mp_rat_compare_zero(a) == 0)
63 1.1 mrg #ifdef USE_SMALL_INT_OPT
64 1.1 mrg #define GBR_numref(a) isl_sioimath_encode_big(mp_rat_numer_ref(a))
65 1.1 mrg #define GBR_denref(a) isl_sioimath_encode_big(mp_rat_denom_ref(a))
66 1.1 mrg #define GBR_floor(a, b) isl_sioimath_fdiv_q((a), GBR_numref(b), GBR_denref(b))
67 1.1 mrg #define GBR_ceil(a, b) isl_sioimath_cdiv_q((a), GBR_numref(b), GBR_denref(b))
68 1.1 mrg #define GBR_set_num_neg(a, b) \
69 1.1 mrg do { \
70 1.1 mrg isl_sioimath_scratchspace_t scratch; \
71 1.1 mrg impz_neg(mp_rat_numer_ref(*a), \
72 1.1 mrg isl_sioimath_bigarg_src(*b, &scratch));\
73 1.1 mrg } while (0)
74 1.1 mrg #define GBR_set_den(a, b) \
75 1.1 mrg do { \
76 1.1 mrg isl_sioimath_scratchspace_t scratch; \
77 1.1 mrg impz_set(mp_rat_denom_ref(*a), \
78 1.1 mrg isl_sioimath_bigarg_src(*b, &scratch));\
79 1.1 mrg } while (0)
80 1.1 mrg #else /* USE_SMALL_INT_OPT */
81 1.1 mrg #define GBR_numref(a) mp_rat_numer_ref(a)
82 1.1 mrg #define GBR_denref(a) mp_rat_denom_ref(a)
83 1.1 mrg #define GBR_floor(a,b) impz_fdiv_q(a,GBR_numref(b),GBR_denref(b))
84 1.1 mrg #define GBR_ceil(a,b) impz_cdiv_q(a,GBR_numref(b),GBR_denref(b))
85 1.1 mrg #define GBR_set_num_neg(a, b) impz_neg(GBR_numref(*a), b)
86 1.1 mrg #define GBR_set_den(a, b) impz_set(GBR_denref(*a), b)
87 1.1 mrg #endif /* USE_SMALL_INT_OPT */
88 1.1 mrg #endif /* USE_IMATH_FOR_MP */
89 1.1 mrg
90 1.1 mrg static struct tab_lp *init_lp(struct isl_tab *tab);
91 1.1 mrg static void set_lp_obj(struct tab_lp *lp, isl_int *row, int dim);
92 1.1 mrg static int solve_lp(struct tab_lp *lp);
93 1.1 mrg static void get_obj_val(struct tab_lp* lp, GBR_type *F);
94 1.1 mrg static void delete_lp(struct tab_lp *lp);
95 1.1 mrg static int add_lp_row(struct tab_lp *lp, isl_int *row, int dim);
96 1.1 mrg static void get_alpha(struct tab_lp* lp, int row, GBR_type *alpha);
97 1.1 mrg static int del_lp_row(struct tab_lp *lp) WARN_UNUSED;
98 1.1 mrg static int cut_lp_to_hyperplane(struct tab_lp *lp, isl_int *row);
99 1.1 mrg
100 1.1 mrg #define GBR_LP struct tab_lp
101 1.1 mrg #define GBR_lp_init(P) init_lp(P)
102 1.1 mrg #define GBR_lp_set_obj(lp, obj, dim) set_lp_obj(lp, obj, dim)
103 1.1 mrg #define GBR_lp_solve(lp) solve_lp(lp)
104 1.1 mrg #define GBR_lp_get_obj_val(lp, F) get_obj_val(lp, F)
105 1.1 mrg #define GBR_lp_delete(lp) delete_lp(lp)
106 1.1 mrg #define GBR_lp_next_row(lp) lp->neq
107 1.1 mrg #define GBR_lp_add_row(lp, row, dim) add_lp_row(lp, row, dim)
108 1.1 mrg #define GBR_lp_get_alpha(lp, row, alpha) get_alpha(lp, row, alpha)
109 1.1 mrg #define GBR_lp_del_row(lp) del_lp_row(lp)
110 1.1 mrg #define GBR_lp_is_fixed(lp) (lp)->is_fixed
111 1.1 mrg #define GBR_lp_cut(lp, obj) cut_lp_to_hyperplane(lp, obj)
112 1.1 mrg #include "basis_reduction_templ.c"
113 1.1 mrg
114 1.1 mrg /* Set up a tableau for the Cartesian product of bset with itself.
115 1.1 mrg * This could be optimized by first setting up a tableau for bset
116 1.1 mrg * and then performing the Cartesian product on the tableau.
117 1.1 mrg */
118 1.1 mrg static struct isl_tab *gbr_tab(struct isl_tab *tab, struct isl_vec *row)
119 1.1 mrg {
120 1.1 mrg unsigned dim;
121 1.1 mrg struct isl_tab *prod;
122 1.1 mrg
123 1.1 mrg if (!tab || !row)
124 1.1 mrg return NULL;
125 1.1 mrg
126 1.1 mrg dim = tab->n_var;
127 1.1 mrg prod = isl_tab_product(tab, tab);
128 1.1 mrg if (isl_tab_extend_cons(prod, 3 * dim + 1) < 0) {
129 1.1 mrg isl_tab_free(prod);
130 1.1 mrg return NULL;
131 1.1 mrg }
132 1.1 mrg return prod;
133 1.1 mrg }
134 1.1 mrg
135 1.1 mrg static struct tab_lp *init_lp(struct isl_tab *tab)
136 1.1 mrg {
137 1.1 mrg struct tab_lp *lp = NULL;
138 1.1 mrg
139 1.1 mrg if (!tab)
140 1.1 mrg return NULL;
141 1.1 mrg
142 1.1 mrg lp = isl_calloc_type(tab->mat->ctx, struct tab_lp);
143 1.1 mrg if (!lp)
144 1.1 mrg return NULL;
145 1.1 mrg
146 1.1 mrg isl_int_init(lp->opt);
147 1.1 mrg isl_int_init(lp->opt_denom);
148 1.1 mrg isl_int_init(lp->tmp);
149 1.1 mrg isl_int_init(lp->tmp2);
150 1.1 mrg
151 1.1 mrg lp->dim = tab->n_var;
152 1.1 mrg
153 1.1 mrg lp->ctx = tab->mat->ctx;
154 1.1 mrg isl_ctx_ref(lp->ctx);
155 1.1 mrg
156 1.1 mrg lp->stack = isl_alloc_array(lp->ctx, struct isl_tab_undo *, lp->dim);
157 1.1 mrg
158 1.1 mrg lp->row = isl_vec_alloc(lp->ctx, 1 + 2 * lp->dim);
159 1.1 mrg if (!lp->row)
160 1.1 mrg goto error;
161 1.1 mrg lp->tab = gbr_tab(tab, lp->row);
162 1.1 mrg if (!lp->tab)
163 1.1 mrg goto error;
164 1.1 mrg lp->con_offset = lp->tab->n_con;
165 1.1 mrg lp->obj = NULL;
166 1.1 mrg lp->neq = 0;
167 1.1 mrg
168 1.1 mrg return lp;
169 1.1 mrg error:
170 1.1 mrg delete_lp(lp);
171 1.1 mrg return NULL;
172 1.1 mrg }
173 1.1 mrg
174 1.1 mrg static void set_lp_obj(struct tab_lp *lp, isl_int *row, int dim)
175 1.1 mrg {
176 1.1 mrg lp->obj = row;
177 1.1 mrg }
178 1.1 mrg
179 1.1 mrg static int solve_lp(struct tab_lp *lp)
180 1.1 mrg {
181 1.1 mrg enum isl_lp_result res;
182 1.1 mrg unsigned flags = 0;
183 1.1 mrg
184 1.1 mrg lp->is_fixed = 0;
185 1.1 mrg
186 1.1 mrg isl_int_set_si(lp->row->el[0], 0);
187 1.1 mrg isl_seq_cpy(lp->row->el + 1, lp->obj, lp->dim);
188 1.1 mrg isl_seq_neg(lp->row->el + 1 + lp->dim, lp->obj, lp->dim);
189 1.1 mrg if (lp->neq)
190 1.1 mrg flags = ISL_TAB_SAVE_DUAL;
191 1.1 mrg res = isl_tab_min(lp->tab, lp->row->el, lp->ctx->one,
192 1.1 mrg &lp->opt, &lp->opt_denom, flags);
193 1.1 mrg isl_int_mul_ui(lp->opt_denom, lp->opt_denom, 2);
194 1.1 mrg if (isl_int_abs_lt(lp->opt, lp->opt_denom)) {
195 1.1 mrg struct isl_vec *sample = isl_tab_get_sample_value(lp->tab);
196 1.1 mrg if (!sample)
197 1.1 mrg return -1;
198 1.1 mrg isl_seq_inner_product(lp->obj, sample->el + 1, lp->dim, &lp->tmp);
199 1.1 mrg isl_seq_inner_product(lp->obj, sample->el + 1 + lp->dim, lp->dim, &lp->tmp2);
200 1.1 mrg isl_int_cdiv_q(lp->tmp, lp->tmp, sample->el[0]);
201 1.1 mrg isl_int_fdiv_q(lp->tmp2, lp->tmp2, sample->el[0]);
202 1.1 mrg if (isl_int_ge(lp->tmp, lp->tmp2))
203 1.1 mrg lp->is_fixed = 1;
204 1.1 mrg isl_vec_free(sample);
205 1.1 mrg }
206 1.1 mrg isl_int_divexact_ui(lp->opt_denom, lp->opt_denom, 2);
207 1.1 mrg if (res < 0)
208 1.1 mrg return -1;
209 1.1 mrg if (res != isl_lp_ok)
210 1.1 mrg isl_die(lp->ctx, isl_error_internal,
211 1.1 mrg "unexpected missing (bounded) solution", return -1);
212 1.1 mrg return 0;
213 1.1 mrg }
214 1.1 mrg
215 1.1 mrg /* The current objective function has a fixed (or no) integer value.
216 1.1 mrg * Cut the tableau to the hyperplane that fixes this value in
217 1.1 mrg * both halves of the tableau.
218 1.1 mrg * Return 1 if the resulting tableau is empty.
219 1.1 mrg */
220 1.1 mrg static int cut_lp_to_hyperplane(struct tab_lp *lp, isl_int *row)
221 1.1 mrg {
222 1.1 mrg enum isl_lp_result res;
223 1.1 mrg
224 1.1 mrg isl_int_set_si(lp->row->el[0], 0);
225 1.1 mrg isl_seq_cpy(lp->row->el + 1, row, lp->dim);
226 1.1 mrg isl_seq_clr(lp->row->el + 1 + lp->dim, lp->dim);
227 1.1 mrg res = isl_tab_min(lp->tab, lp->row->el, lp->ctx->one,
228 1.1 mrg &lp->tmp, NULL, 0);
229 1.1 mrg if (res != isl_lp_ok)
230 1.1 mrg return -1;
231 1.1 mrg
232 1.1 mrg isl_int_neg(lp->row->el[0], lp->tmp);
233 1.1 mrg if (isl_tab_add_eq(lp->tab, lp->row->el) < 0)
234 1.1 mrg return -1;
235 1.1 mrg
236 1.1 mrg isl_seq_cpy(lp->row->el + 1 + lp->dim, row, lp->dim);
237 1.1 mrg isl_seq_clr(lp->row->el + 1, lp->dim);
238 1.1 mrg if (isl_tab_add_eq(lp->tab, lp->row->el) < 0)
239 1.1 mrg return -1;
240 1.1 mrg
241 1.1 mrg lp->con_offset += 2;
242 1.1 mrg
243 1.1 mrg return lp->tab->empty;
244 1.1 mrg }
245 1.1 mrg
246 1.1 mrg static void get_obj_val(struct tab_lp* lp, GBR_type *F)
247 1.1 mrg {
248 1.1 mrg GBR_set_num_neg(F, lp->opt);
249 1.1 mrg GBR_set_den(F, lp->opt_denom);
250 1.1 mrg }
251 1.1 mrg
252 1.1 mrg static void delete_lp(struct tab_lp *lp)
253 1.1 mrg {
254 1.1 mrg if (!lp)
255 1.1 mrg return;
256 1.1 mrg
257 1.1 mrg isl_int_clear(lp->opt);
258 1.1 mrg isl_int_clear(lp->opt_denom);
259 1.1 mrg isl_int_clear(lp->tmp);
260 1.1 mrg isl_int_clear(lp->tmp2);
261 1.1 mrg isl_vec_free(lp->row);
262 1.1 mrg free(lp->stack);
263 1.1 mrg isl_tab_free(lp->tab);
264 1.1 mrg isl_ctx_deref(lp->ctx);
265 1.1 mrg free(lp);
266 1.1 mrg }
267 1.1 mrg
268 1.1 mrg static int add_lp_row(struct tab_lp *lp, isl_int *row, int dim)
269 1.1 mrg {
270 1.1 mrg lp->stack[lp->neq] = isl_tab_snap(lp->tab);
271 1.1 mrg
272 1.1 mrg isl_int_set_si(lp->row->el[0], 0);
273 1.1 mrg isl_seq_cpy(lp->row->el + 1, row, lp->dim);
274 1.1 mrg isl_seq_neg(lp->row->el + 1 + lp->dim, row, lp->dim);
275 1.1 mrg
276 1.1 mrg if (isl_tab_add_valid_eq(lp->tab, lp->row->el) < 0)
277 1.1 mrg return -1;
278 1.1 mrg
279 1.1 mrg return lp->neq++;
280 1.1 mrg }
281 1.1 mrg
282 1.1 mrg static void get_alpha(struct tab_lp* lp, int row, GBR_type *alpha)
283 1.1 mrg {
284 1.1 mrg row += lp->con_offset;
285 1.1 mrg GBR_set_num_neg(alpha, lp->tab->dual->el[1 + row]);
286 1.1 mrg GBR_set_den(alpha, lp->tab->dual->el[0]);
287 1.1 mrg }
288 1.1 mrg
289 1.1 mrg static int del_lp_row(struct tab_lp *lp)
290 1.1 mrg {
291 1.1 mrg lp->neq--;
292 1.1 mrg return isl_tab_rollback(lp->tab, lp->stack[lp->neq]);
293 1.1 mrg }
294