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00022 #ifndef LAMBDA_H
00023 #define LAMBDA_H
00024
00025 #include "vec.h"
00026
00027
00028
00029
00030
00031 typedef int *lambda_vector;
00032
00033
00034
00035 typedef lambda_vector *lambda_matrix;
00036
00037
00038
00039
00040 typedef struct
00041 {
00042 lambda_matrix matrix;
00043 int rowsize;
00044 int colsize;
00045 int denominator;
00046 } *lambda_trans_matrix;
00047 #define LTM_MATRIX(T) ((T)->matrix)
00048 #define LTM_ROWSIZE(T) ((T)->rowsize)
00049 #define LTM_COLSIZE(T) ((T)->colsize)
00050 #define LTM_DENOMINATOR(T) ((T)->denominator)
00051
00052
00053
00054
00055
00056
00057
00058
00059
00060
00061 typedef struct
00062 {
00063 lambda_vector coefficients;
00064 int size;
00065 int denominator;
00066 } *lambda_body_vector;
00067 #define LBV_COEFFICIENTS(T) ((T)->coefficients)
00068 #define LBV_SIZE(T) ((T)->size)
00069 #define LBV_DENOMINATOR(T) ((T)->denominator)
00070
00071
00072
00073
00074
00075
00076
00077
00078
00079
00080
00081
00082
00083 typedef struct lambda_linear_expression_s
00084 {
00085 lambda_vector coefficients;
00086 int constant;
00087 lambda_vector invariant_coefficients;
00088 int denominator;
00089 struct lambda_linear_expression_s *next;
00090 } *lambda_linear_expression;
00091
00092 #define LLE_COEFFICIENTS(T) ((T)->coefficients)
00093 #define LLE_CONSTANT(T) ((T)->constant)
00094 #define LLE_INVARIANT_COEFFICIENTS(T) ((T)->invariant_coefficients)
00095 #define LLE_DENOMINATOR(T) ((T)->denominator)
00096 #define LLE_NEXT(T) ((T)->next)
00097
00098 lambda_linear_expression lambda_linear_expression_new (int, int);
00099 void print_lambda_linear_expression (FILE *, lambda_linear_expression, int,
00100 int, char);
00101
00102
00103
00104
00105
00106
00107
00108 typedef struct lambda_loop_s
00109 {
00110 lambda_linear_expression lower_bound;
00111 lambda_linear_expression upper_bound;
00112 lambda_linear_expression linear_offset;
00113 int step;
00114 } *lambda_loop;
00115
00116 #define LL_LOWER_BOUND(T) ((T)->lower_bound)
00117 #define LL_UPPER_BOUND(T) ((T)->upper_bound)
00118 #define LL_LINEAR_OFFSET(T) ((T)->linear_offset)
00119 #define LL_STEP(T) ((T)->step)
00120
00121
00122
00123
00124
00125
00126
00127 typedef struct
00128 {
00129 lambda_loop *loops;
00130 int depth;
00131 int invariants;
00132 } *lambda_loopnest;
00133
00134 #define LN_LOOPS(T) ((T)->loops)
00135 #define LN_DEPTH(T) ((T)->depth)
00136 #define LN_INVARIANTS(T) ((T)->invariants)
00137
00138 lambda_loopnest lambda_loopnest_new (int, int);
00139 lambda_loopnest lambda_loopnest_transform (lambda_loopnest, lambda_trans_matrix);
00140 struct loop;
00141 struct loops;
00142 bool perfect_nest_p (struct loop *);
00143 bool lambda_transform_legal_p (lambda_trans_matrix, int, varray_type);
00144 void print_lambda_loopnest (FILE *, lambda_loopnest, char);
00145
00146 #define lambda_loop_new() (lambda_loop) ggc_alloc_cleared (sizeof (struct lambda_loop_s))
00147
00148 void print_lambda_loop (FILE *, lambda_loop, int, int, char);
00149
00150 lambda_matrix lambda_matrix_new (int, int);
00151
00152 void lambda_matrix_id (lambda_matrix, int);
00153 bool lambda_matrix_id_p (lambda_matrix, int);
00154 void lambda_matrix_copy (lambda_matrix, lambda_matrix, int, int);
00155 void lambda_matrix_negate (lambda_matrix, lambda_matrix, int, int);
00156 void lambda_matrix_transpose (lambda_matrix, lambda_matrix, int, int);
00157 void lambda_matrix_add (lambda_matrix, lambda_matrix, lambda_matrix, int,
00158 int);
00159 void lambda_matrix_add_mc (lambda_matrix, int, lambda_matrix, int,
00160 lambda_matrix, int, int);
00161 void lambda_matrix_mult (lambda_matrix, lambda_matrix, lambda_matrix,
00162 int, int, int);
00163 void lambda_matrix_delete_rows (lambda_matrix, int, int, int);
00164 void lambda_matrix_row_exchange (lambda_matrix, int, int);
00165 void lambda_matrix_row_add (lambda_matrix, int, int, int, int);
00166 void lambda_matrix_row_negate (lambda_matrix mat, int, int);
00167 void lambda_matrix_row_mc (lambda_matrix, int, int, int);
00168 void lambda_matrix_col_exchange (lambda_matrix, int, int, int);
00169 void lambda_matrix_col_add (lambda_matrix, int, int, int, int);
00170 void lambda_matrix_col_negate (lambda_matrix, int, int);
00171 void lambda_matrix_col_mc (lambda_matrix, int, int, int);
00172 int lambda_matrix_inverse (lambda_matrix, lambda_matrix, int);
00173 void lambda_matrix_hermite (lambda_matrix, int, lambda_matrix, lambda_matrix);
00174 void lambda_matrix_left_hermite (lambda_matrix, int, int, lambda_matrix, lambda_matrix);
00175 void lambda_matrix_right_hermite (lambda_matrix, int, int, lambda_matrix, lambda_matrix);
00176 int lambda_matrix_first_nz_vec (lambda_matrix, int, int, int);
00177 void lambda_matrix_project_to_null (lambda_matrix, int, int, int,
00178 lambda_vector);
00179 void print_lambda_matrix (FILE *, lambda_matrix, int, int);
00180
00181 lambda_trans_matrix lambda_trans_matrix_new (int, int);
00182 bool lambda_trans_matrix_nonsingular_p (lambda_trans_matrix);
00183 bool lambda_trans_matrix_fullrank_p (lambda_trans_matrix);
00184 int lambda_trans_matrix_rank (lambda_trans_matrix);
00185 lambda_trans_matrix lambda_trans_matrix_basis (lambda_trans_matrix);
00186 lambda_trans_matrix lambda_trans_matrix_padding (lambda_trans_matrix);
00187 lambda_trans_matrix lambda_trans_matrix_inverse (lambda_trans_matrix);
00188 void print_lambda_trans_matrix (FILE *, lambda_trans_matrix);
00189 void lambda_matrix_vector_mult (lambda_matrix, int, int, lambda_vector,
00190 lambda_vector);
00191 bool lambda_trans_matrix_id_p (lambda_trans_matrix);
00192
00193 lambda_body_vector lambda_body_vector_new (int);
00194 lambda_body_vector lambda_body_vector_compute_new (lambda_trans_matrix,
00195 lambda_body_vector);
00196 void print_lambda_body_vector (FILE *, lambda_body_vector);
00197 lambda_loopnest gcc_loopnest_to_lambda_loopnest (struct loops *,
00198 struct loop *,
00199 VEC(tree) **,
00200 VEC(tree) **,
00201 bool);
00202 void lambda_loopnest_to_gcc_loopnest (struct loop *, VEC(tree) *,
00203 VEC(tree) *,
00204 lambda_loopnest,
00205 lambda_trans_matrix);
00206
00207
00208 static inline void lambda_vector_negate (lambda_vector, lambda_vector, int);
00209 static inline void lambda_vector_mult_const (lambda_vector, lambda_vector, int, int);
00210 static inline void lambda_vector_add (lambda_vector, lambda_vector,
00211 lambda_vector, int);
00212 static inline void lambda_vector_add_mc (lambda_vector, int, lambda_vector, int,
00213 lambda_vector, int);
00214 static inline void lambda_vector_copy (lambda_vector, lambda_vector, int);
00215 static inline bool lambda_vector_zerop (lambda_vector, int);
00216 static inline void lambda_vector_clear (lambda_vector, int);
00217 static inline bool lambda_vector_equal (lambda_vector, lambda_vector, int);
00218 static inline int lambda_vector_min_nz (lambda_vector, int, int);
00219 static inline int lambda_vector_first_nz (lambda_vector, int, int);
00220 static inline void print_lambda_vector (FILE *, lambda_vector, int);
00221
00222
00223
00224 static inline lambda_vector
00225 lambda_vector_new (int size)
00226 {
00227 return ggc_alloc_cleared (size * sizeof(int));
00228 }
00229
00230
00231
00232
00233
00234
00235 static inline void
00236 lambda_vector_mult_const (lambda_vector vec1, lambda_vector vec2,
00237 int size, int const1)
00238 {
00239 int i;
00240
00241 if (const1 == 0)
00242 lambda_vector_clear (vec2, size);
00243 else
00244 for (i = 0; i < size; i++)
00245 vec2[i] = const1 * vec1[i];
00246 }
00247
00248
00249
00250 static inline void
00251 lambda_vector_negate (lambda_vector vec1, lambda_vector vec2,
00252 int size)
00253 {
00254 lambda_vector_mult_const (vec1, vec2, size, -1);
00255 }
00256
00257
00258
00259 static inline void
00260 lambda_vector_add (lambda_vector vec1, lambda_vector vec2,
00261 lambda_vector vec3, int size)
00262 {
00263 int i;
00264 for (i = 0; i < size; i++)
00265 vec3[i] = vec1[i] + vec2[i];
00266 }
00267
00268
00269
00270 static inline void
00271 lambda_vector_add_mc (lambda_vector vec1, int const1,
00272 lambda_vector vec2, int const2,
00273 lambda_vector vec3, int size)
00274 {
00275 int i;
00276 for (i = 0; i < size; i++)
00277 vec3[i] = const1 * vec1[i] + const2 * vec2[i];
00278 }
00279
00280
00281
00282 static inline void
00283 lambda_vector_copy (lambda_vector vec1, lambda_vector vec2,
00284 int size)
00285 {
00286 memcpy (vec2, vec1, size * sizeof (*vec1));
00287 }
00288
00289
00290
00291 static inline bool
00292 lambda_vector_zerop (lambda_vector vec1, int size)
00293 {
00294 int i;
00295 for (i = 0; i < size; i++)
00296 if (vec1[i] != 0)
00297 return false;
00298 return true;
00299 }
00300
00301
00302
00303 static inline void
00304 lambda_vector_clear (lambda_vector vec1, int size)
00305 {
00306 memset (vec1, 0, size * sizeof (*vec1));
00307 }
00308
00309
00310
00311 static inline bool
00312 lambda_vector_equal (lambda_vector vec1, lambda_vector vec2, int size)
00313 {
00314 int i;
00315 for (i = 0; i < size; i++)
00316 if (vec1[i] != vec2[i])
00317 return false;
00318 return true;
00319 }
00320
00321
00322
00323
00324 static inline int
00325 lambda_vector_min_nz (lambda_vector vec1, int n, int start)
00326 {
00327 int j;
00328 int min = -1;
00329 #ifdef ENABLE_CHECKING
00330 if (start > n)
00331 abort ();
00332 #endif
00333 for (j = start; j < n; j++)
00334 {
00335 if (vec1[j])
00336 if (min < 0 || vec1[j] < vec1[min])
00337 min = j;
00338 }
00339
00340 if (min < 0)
00341 abort ();
00342
00343 return min;
00344 }
00345
00346
00347
00348
00349 static inline int
00350 lambda_vector_first_nz (lambda_vector vec1, int n, int start)
00351 {
00352 int j = start;
00353 while (j < n && vec1[j] == 0)
00354 j++;
00355 return j;
00356 }
00357
00358
00359
00360
00361 static inline void
00362 lambda_vector_matrix_mult (lambda_vector vect, int m, lambda_matrix mat,
00363 int n, lambda_vector dest)
00364 {
00365 int i, j;
00366 lambda_vector_clear (dest, n);
00367 for (i = 0; i < n; i++)
00368 for (j = 0; j < m; j++)
00369 dest[i] += mat[j][i] * vect[j];
00370 }
00371
00372
00373
00374
00375 static inline void
00376 print_lambda_vector (FILE * outfile, lambda_vector vector, int n)
00377 {
00378 int i;
00379
00380 for (i = 0; i < n; i++)
00381 fprintf (outfile, "%3d ", vector[i]);
00382 fprintf (outfile, "\n");
00383 }
00384 #endif
00385