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jeremybenn |
/* Gimple Represented as Polyhedra.
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Copyright (C) 2009, 2010 Free Software Foundation, Inc.
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Contributed by Sebastian Pop <sebastian.pop@inria.fr>
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and Tobias Grosser <grosser@fim.uni-passau.de>.
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This file is part of GCC.
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GCC is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3, or (at your option)
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any later version.
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GCC is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with GCC; see the file COPYING3. If not see
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<http://www.gnu.org/licenses/>. */
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#include "config.h"
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#include "system.h"
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#include "coretypes.h"
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#ifdef HAVE_cloog
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#include "ppl_c.h"
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#include "cloog/cloog.h"
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#include "graphite-cloog-util.h"
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#include "graphite-cloog-compat.h"
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/* Counts the number of constraints in PCS. */
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static int
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ppl_Constrain_System_number_of_constraints (ppl_const_Constraint_System_t pcs)
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{
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ppl_Constraint_System_const_iterator_t cit, end;
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int num = 0;
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ppl_new_Constraint_System_const_iterator (&cit);
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ppl_new_Constraint_System_const_iterator (&end);
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for (ppl_Constraint_System_begin (pcs, cit),
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ppl_Constraint_System_end (pcs, end);
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!ppl_Constraint_System_const_iterator_equal_test (cit, end);
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ppl_Constraint_System_const_iterator_increment (cit))
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num++;
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ppl_delete_Constraint_System_const_iterator (cit);
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ppl_delete_Constraint_System_const_iterator (end);
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return num;
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}
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static void
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oppose_constraint (CloogMatrix *m, int row)
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{
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int k;
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/* Do not oppose the first column: it is the eq/ineq one. */
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/* Cast needed to remove warning that is generated as CLooG isl
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is using an unsigned int for NbColumns and CLooG PPL is
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using a signed int for NBColumns. */
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for (k = 1; k < (int)m->NbColumns; k++)
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mpz_neg (m->p[row][k], m->p[row][k]);
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}
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/* Inserts constraint CSTR at row ROW of matrix M. */
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static void
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insert_constraint_into_matrix (CloogMatrix *m, int row,
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ppl_const_Constraint_t cstr)
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{
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ppl_Coefficient_t c;
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ppl_dimension_type i, dim, nb_cols = m->NbColumns;
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ppl_Constraint_space_dimension (cstr, &dim);
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ppl_new_Coefficient (&c);
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for (i = 0; i < dim; i++)
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{
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ppl_Constraint_coefficient (cstr, i, c);
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ppl_Coefficient_to_mpz_t (c, m->p[row][i + 1]);
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}
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for (i = dim; i < nb_cols - 1; i++)
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mpz_set_si (m->p[row][i + 1], 0);
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ppl_Constraint_inhomogeneous_term (cstr, c);
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ppl_Coefficient_to_mpz_t (c, m->p[row][nb_cols - 1]);
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mpz_set_si (m->p[row][0], 1);
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switch (ppl_Constraint_type (cstr))
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{
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case PPL_CONSTRAINT_TYPE_LESS_THAN:
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oppose_constraint (m, row);
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case PPL_CONSTRAINT_TYPE_GREATER_THAN:
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mpz_sub_ui (m->p[row][nb_cols - 1],
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m->p[row][nb_cols - 1], 1);
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break;
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case PPL_CONSTRAINT_TYPE_LESS_OR_EQUAL:
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oppose_constraint (m, row);
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case PPL_CONSTRAINT_TYPE_GREATER_OR_EQUAL:
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break;
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case PPL_CONSTRAINT_TYPE_EQUAL:
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mpz_set_si (m->p[row][0], 0);
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break;
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default:
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/* Not yet implemented. */
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gcc_unreachable();
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}
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ppl_delete_Coefficient (c);
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}
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/* Creates a CloogMatrix from constraint system PCS. */
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static CloogMatrix *
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new_Cloog_Matrix_from_ppl_Constraint_System (ppl_const_Constraint_System_t pcs)
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{
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CloogMatrix *matrix;
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ppl_Constraint_System_const_iterator_t cit, end;
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ppl_dimension_type dim;
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int rows;
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int row = 0;
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rows = ppl_Constrain_System_number_of_constraints (pcs);
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ppl_Constraint_System_space_dimension (pcs, &dim);
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matrix = cloog_matrix_alloc (rows, dim + 2);
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ppl_new_Constraint_System_const_iterator (&cit);
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ppl_new_Constraint_System_const_iterator (&end);
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for (ppl_Constraint_System_begin (pcs, cit),
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ppl_Constraint_System_end (pcs, end);
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!ppl_Constraint_System_const_iterator_equal_test (cit, end);
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ppl_Constraint_System_const_iterator_increment (cit))
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{
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ppl_const_Constraint_t c;
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ppl_Constraint_System_const_iterator_dereference (cit, &c);
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insert_constraint_into_matrix (matrix, row, c);
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row++;
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}
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ppl_delete_Constraint_System_const_iterator (cit);
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ppl_delete_Constraint_System_const_iterator (end);
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return matrix;
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}
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/* Creates a CloogMatrix from polyhedron PH. */
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CloogMatrix *
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new_Cloog_Matrix_from_ppl_Polyhedron (ppl_const_Polyhedron_t ph)
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{
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ppl_const_Constraint_System_t pcs;
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CloogMatrix *res;
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ppl_Polyhedron_get_constraints (ph, &pcs);
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res = new_Cloog_Matrix_from_ppl_Constraint_System (pcs);
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return res;
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}
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/* Translates row ROW of the CloogMatrix MATRIX to a PPL Constraint. */
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static ppl_Constraint_t
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cloog_matrix_to_ppl_constraint (CloogMatrix *matrix, int row)
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{
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int j;
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ppl_Constraint_t cstr;
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ppl_Coefficient_t coef;
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ppl_Linear_Expression_t expr;
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ppl_dimension_type dim = matrix->NbColumns - 2;
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ppl_new_Coefficient (&coef);
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ppl_new_Linear_Expression_with_dimension (&expr, dim);
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/* Cast needed to remove warning that is generated as CLooG isl
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is using an unsigned int for NbColumns and CLooG PPL is
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using a signed int for NBColumns. */
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for (j = 1; j < (int)matrix->NbColumns - 1; j++)
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{
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ppl_assign_Coefficient_from_mpz_t (coef, matrix->p[row][j]);
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ppl_Linear_Expression_add_to_coefficient (expr, j - 1, coef);
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}
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ppl_assign_Coefficient_from_mpz_t (coef,
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matrix->p[row][matrix->NbColumns - 1]);
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ppl_Linear_Expression_add_to_inhomogeneous (expr, coef);
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ppl_delete_Coefficient (coef);
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if (mpz_sgn (matrix->p[row][0]) == 0)
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ppl_new_Constraint (&cstr, expr, PPL_CONSTRAINT_TYPE_EQUAL);
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else
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ppl_new_Constraint (&cstr, expr, PPL_CONSTRAINT_TYPE_GREATER_OR_EQUAL);
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ppl_delete_Linear_Expression (expr);
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return cstr;
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}
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/* Creates a PPL constraint system from MATRIX. */
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static void
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new_Constraint_System_from_Cloog_Matrix (ppl_Constraint_System_t *pcs,
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CloogMatrix *matrix)
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{
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int i;
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ppl_new_Constraint_System (pcs);
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/* Cast needed to remove warning that is generated as CLooG isl
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is using an unsigned int for NbColumns and CLooG PPL is
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using a signed int for NBColumns. */
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for (i = 0; i < (int)matrix->NbRows; i++)
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{
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ppl_Constraint_t c = cloog_matrix_to_ppl_constraint (matrix, i);
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ppl_Constraint_System_insert_Constraint (*pcs, c);
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ppl_delete_Constraint (c);
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}
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}
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/* Creates a PPL Polyhedron from MATRIX. */
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void
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new_C_Polyhedron_from_Cloog_Matrix (ppl_Polyhedron_t *ph,
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CloogMatrix *matrix)
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{
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ppl_Constraint_System_t cs;
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new_Constraint_System_from_Cloog_Matrix (&cs, matrix);
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ppl_new_C_Polyhedron_recycle_Constraint_System (ph, cs);
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}
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/* Creates a CloogDomain from polyhedron PH. */
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CloogDomain *
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new_Cloog_Domain_from_ppl_Polyhedron (ppl_const_Polyhedron_t ph, int nb_params,
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CloogState *state ATTRIBUTE_UNUSED)
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{
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CloogMatrix *mat = new_Cloog_Matrix_from_ppl_Polyhedron (ph);
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CloogDomain *res = cloog_domain_from_cloog_matrix (state, mat, nb_params);
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cloog_matrix_free (mat);
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return res;
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}
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/* Create a CloogScattering from polyhedron PH. */
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CloogScattering *
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new_Cloog_Scattering_from_ppl_Polyhedron (ppl_const_Polyhedron_t ph,
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int nb_params ATTRIBUTE_UNUSED,
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int nb_scatt ATTRIBUTE_UNUSED,
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CloogState *state ATTRIBUTE_UNUSED)
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{
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#ifdef CLOOG_ORG
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CloogMatrix *mat = new_Cloog_Matrix_from_ppl_Polyhedron (ph);
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CloogScattering *res = cloog_scattering_from_cloog_matrix (state, mat,
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nb_scatt,
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nb_params);
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cloog_matrix_free (mat);
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return res;
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#else
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return new_Cloog_Domain_from_ppl_Polyhedron (ph, nb_params, state);
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#endif
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}
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/* Creates a CloogDomain from a pointset powerset PS. */
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CloogDomain *
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new_Cloog_Domain_from_ppl_Pointset_Powerset
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(ppl_Pointset_Powerset_C_Polyhedron_t ps, int nb_params,
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CloogState *state ATTRIBUTE_UNUSED)
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{
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CloogDomain *res = NULL;
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ppl_Pointset_Powerset_C_Polyhedron_iterator_t it, end;
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ppl_new_Pointset_Powerset_C_Polyhedron_iterator (&it);
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ppl_new_Pointset_Powerset_C_Polyhedron_iterator (&end);
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for (ppl_Pointset_Powerset_C_Polyhedron_iterator_begin (ps, it),
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ppl_Pointset_Powerset_C_Polyhedron_iterator_end (ps, end);
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!ppl_Pointset_Powerset_C_Polyhedron_iterator_equal_test (it, end);
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ppl_Pointset_Powerset_C_Polyhedron_iterator_increment (it))
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{
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ppl_const_Polyhedron_t ph;
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CloogDomain *tmp;
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ppl_Pointset_Powerset_C_Polyhedron_iterator_dereference (it, &ph);
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tmp = new_Cloog_Domain_from_ppl_Polyhedron (ph, nb_params, state);
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if (res == NULL)
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res = tmp;
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else
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res = cloog_domain_union (res, tmp);
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}
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ppl_delete_Pointset_Powerset_C_Polyhedron_iterator (it);
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ppl_delete_Pointset_Powerset_C_Polyhedron_iterator (end);
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gcc_assert (res != NULL);
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return res;
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}
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307 |
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/* Print to FILE the matrix MAT in OpenScop format. OUTPUT is the number
|
308 |
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of output dimensions, INPUT is the number of input dimensions, LOCALS
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is the number of existentially quantified variables and PARAMS is the
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number of parameters. */
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311 |
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312 |
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static void
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313 |
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openscop_print_cloog_matrix (FILE *file, CloogMatrix *mat,
|
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int output, int input, int locals,
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int params)
|
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{
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int i, j;
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fprintf (file, "%d %d %d %d %d %d \n", cloog_matrix_nrows (mat),
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cloog_matrix_ncolumns (mat), output, input, locals, params);
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322 |
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for (i = 0; i < cloog_matrix_nrows (mat); i++)
|
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{
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for (j = 0; j < cloog_matrix_ncolumns (mat); j++)
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if (j == 0)
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fprintf (file, "%ld ", mpz_get_si (mat->p[i][j]));
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else
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fprintf (file, "%6ld ", mpz_get_si (mat->p[i][j]));
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fprintf (file, "\n");
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331 |
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}
|
332 |
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}
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333 |
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334 |
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/* Print to FILE the polyhedron PH in OpenScop format. OUTPUT is the number
|
335 |
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of output dimensions, INPUT is the number of input dimensions, LOCALS is
|
336 |
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the number of existentially quantified variables and PARAMS is the number
|
337 |
|
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of parameters. */
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338 |
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339 |
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void
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340 |
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openscop_print_polyhedron_matrix (FILE *file, ppl_const_Polyhedron_t ph,
|
341 |
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int output, int input, int locals,
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342 |
|
|
int params)
|
343 |
|
|
{
|
344 |
|
|
CloogMatrix *mat = new_Cloog_Matrix_from_ppl_Polyhedron (ph);
|
345 |
|
|
openscop_print_cloog_matrix (file, mat, output, input, locals, params);
|
346 |
|
|
cloog_matrix_free (mat);
|
347 |
|
|
}
|
348 |
|
|
|
349 |
|
|
/* Read from FILE a matrix in OpenScop format. OUTPUT is the number of
|
350 |
|
|
output dimensions, INPUT is the number of input dimensions, LOCALS
|
351 |
|
|
is the number of existentially quantified variables and PARAMS is the
|
352 |
|
|
number of parameters. */
|
353 |
|
|
|
354 |
|
|
static CloogMatrix *
|
355 |
|
|
openscop_read_cloog_matrix (FILE *file, int *output, int *input, int *locals,
|
356 |
|
|
int *params)
|
357 |
|
|
{
|
358 |
|
|
int nb_rows, nb_cols, i, j;
|
359 |
|
|
CloogMatrix *mat;
|
360 |
|
|
int *openscop_matrix_header, *matrix_line;
|
361 |
|
|
|
362 |
|
|
openscop_matrix_header = openscop_read_N_int (file, 6);
|
363 |
|
|
|
364 |
|
|
nb_rows = openscop_matrix_header[0];
|
365 |
|
|
nb_cols = openscop_matrix_header[1];
|
366 |
|
|
*output = openscop_matrix_header[2];
|
367 |
|
|
*input = openscop_matrix_header[3];
|
368 |
|
|
*locals = openscop_matrix_header[4];
|
369 |
|
|
*params = openscop_matrix_header[5];
|
370 |
|
|
|
371 |
|
|
free (openscop_matrix_header);
|
372 |
|
|
|
373 |
|
|
if (nb_rows == 0 || nb_cols == 0)
|
374 |
|
|
return NULL;
|
375 |
|
|
|
376 |
|
|
mat = cloog_matrix_alloc (nb_rows, nb_cols);
|
377 |
|
|
mat->NbRows = nb_rows;
|
378 |
|
|
mat->NbColumns = nb_cols;
|
379 |
|
|
|
380 |
|
|
for (i = 0; i < nb_rows; i++)
|
381 |
|
|
{
|
382 |
|
|
matrix_line = openscop_read_N_int (file, nb_cols);
|
383 |
|
|
|
384 |
|
|
for (j = 0; j < nb_cols; j++)
|
385 |
|
|
mpz_set_si (mat->p[i][j], matrix_line[j]);
|
386 |
|
|
}
|
387 |
|
|
|
388 |
|
|
return mat;
|
389 |
|
|
}
|
390 |
|
|
|
391 |
|
|
/* Read from FILE the polyhedron PH in OpenScop format. OUTPUT is the number
|
392 |
|
|
of output dimensions, INPUT is the number of input dimensions, LOCALS is
|
393 |
|
|
the number of existentially quantified variables and PARAMS is the number
|
394 |
|
|
of parameters. */
|
395 |
|
|
|
396 |
|
|
void
|
397 |
|
|
openscop_read_polyhedron_matrix (FILE *file, ppl_Polyhedron_t *ph,
|
398 |
|
|
int *output, int *input, int *locals,
|
399 |
|
|
int *params)
|
400 |
|
|
{
|
401 |
|
|
CloogMatrix *mat;
|
402 |
|
|
|
403 |
|
|
mat = openscop_read_cloog_matrix (file, output, input, locals, params);
|
404 |
|
|
|
405 |
|
|
if (!mat)
|
406 |
|
|
*ph = NULL;
|
407 |
|
|
else
|
408 |
|
|
{
|
409 |
|
|
new_C_Polyhedron_from_Cloog_Matrix (ph, mat);
|
410 |
|
|
cloog_matrix_free (mat);
|
411 |
|
|
}
|
412 |
|
|
}
|
413 |
|
|
|
414 |
|
|
#endif
|