[13] | 1 | /* |
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| 2 | * $Id: mdd.h,v 1.33 2009/01/18 02:26:49 fabio Exp $ |
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| 3 | */ |
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| 4 | |
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| 5 | #ifndef MDD_DEFINED |
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| 6 | #define MDD_DEFINED |
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| 7 | |
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| 8 | |
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| 9 | #include "util.h" |
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| 10 | #include "array.h" |
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| 11 | #include "st.h" |
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| 12 | #include "var_set.h" |
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| 13 | |
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| 14 | #include "bdd.h" |
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| 15 | |
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| 16 | /* #include "bdd_int.h" */ |
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| 17 | |
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| 18 | /************************************************************************/ |
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| 19 | #define str_len 10 |
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| 20 | #define MONITOR 0 |
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| 21 | #define MDD_VERBOSE 0 |
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| 22 | #define SOLUTION 0 |
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| 23 | #define BDD_SIZE 1 |
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| 24 | #define USE_ITE 1 |
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| 25 | #define BYPASS 1 |
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| 26 | /* code may not be fully debugged for interleaving */ |
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| 27 | #define INTERLEAVE 0 |
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| 28 | |
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| 29 | #define mdd_and bdd_and |
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| 30 | #define mdd_and_with_limit bdd_and_with_limit |
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| 31 | #define mdd_and_array bdd_and_array |
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| 32 | #define mdd_cofactor_minterm bdd_cofactor |
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| 33 | #define mdd_constant bdd_constant |
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| 34 | #define mdd_dup bdd_dup |
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| 35 | /* mdd_equal returns 1 if two MDD's are identical */ |
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| 36 | /* mdd_eq is a totally different function */ |
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| 37 | /* which returns an MDD instead */ |
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| 38 | #define mdd_equal bdd_equal |
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| 39 | #define mdd_equal_mod_care_set bdd_equal_mod_care_set |
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| 40 | #define mdd_closest_cube bdd_closest_cube |
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| 41 | #define mdd_free bdd_free |
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| 42 | #define mdd_get_manager bdd_get_manager |
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| 43 | #define mdd_is_tautology bdd_is_tautology |
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| 44 | #define mdd_ite bdd_ite |
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| 45 | /* mdd_lequal checks for implication, */ |
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| 46 | /* mdd_lequal(f,g,1,0) returns the value of (f => g') */ |
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| 47 | /* mdd_leq is a totally different function */ |
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| 48 | #define mdd_lequal bdd_leq |
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| 49 | #define mdd_lequal_mod_care_set bdd_lequal_mod_care_set |
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| 50 | #define mdd_lequal_array bdd_leq_array |
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| 51 | #define mdd_multiway_and bdd_multiway_and |
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| 52 | #define mdd_multiway_or bdd_multiway_or |
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| 53 | #define mdd_multiway_xor bdd_multiway_xor |
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| 54 | #define mdd_not bdd_not |
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| 55 | #define mdd_one bdd_one |
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| 56 | #define mdd_or bdd_or |
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| 57 | #define mdd_size bdd_size |
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| 58 | #define mdd_size_multiple bdd_size_multiple |
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| 59 | #define mdd_top_var_id bdd_top_var_id |
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| 60 | #define mdd_xor bdd_xor |
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| 61 | #define mdd_xnor bdd_xnor |
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| 62 | #define mdd_zero bdd_zero |
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| 63 | #define mdd_EMPTY bdd_EMPTY |
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| 64 | |
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| 65 | #define mdd_first_solution mdd_first_cube |
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| 66 | #define mdd_next_solution mdd_next_cube |
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| 67 | |
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| 68 | #define mdd_eq_c(m,a,b) mdd_func1c(m,a,b,eq2) |
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| 69 | #define mdd_geq_c(m,a,b) mdd_func1c(m,a,b,geq2) |
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| 70 | #define mdd_gt_c(m,a,b) mdd_func1c(m,a,b,gt2) |
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| 71 | #define mdd_leq_c(m,a,b) mdd_func1c(m,a,b,leq2) |
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| 72 | #define mdd_lt_c(m,a,b) mdd_func1c(m,a,b,lt2) |
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| 73 | #define mdd_neq_c(m,a,b) mdd_func1c(m,a,b,neq2) |
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| 74 | |
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| 75 | #define mdd_eq(m,a,b) mdd_func2(m,a,b,eq2) |
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| 76 | #define mdd_geq(m,a,b) mdd_func2(m,a,b,geq2) |
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| 77 | #define mdd_gt(m,a,b) mdd_func2(m,a,b,gt2) |
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| 78 | #define mdd_leq(m,a,b) mdd_func2(m,a,b,leq2) |
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| 79 | #define mdd_lt(m,a,b) mdd_func2(m,a,b,lt2) |
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| 80 | #define mdd_neq(m,a,b) mdd_func2(m,a,b,neq2) |
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| 81 | #define mdd_unary_minus(m,a,b) mdd_func2(m,a,b,unary_minus2) |
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| 82 | |
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| 83 | #define mdd_eq_plus(m,a,b,c) mdd_func3(m,a,b,c,eq_plus3) |
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| 84 | #define mdd_geq_plus(m,a,b,c) mdd_func3(m,a,b,c,geq_plus3) |
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| 85 | #define mdd_gt_plus(m,a,b,c) mdd_func3(m,a,b,c,gt_plus3) |
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| 86 | #define mdd_leq_plus(m,a,b,c) mdd_func3(m,a,b,c,leq_plus3) |
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| 87 | #define mdd_lt_plus(m,a,b,c) mdd_func3(m,a,b,c,lt_plus3) |
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| 88 | #define mdd_neq_plus(m,a,b,c) mdd_func3(m,a,b,c,neq_plus3) |
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| 89 | |
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| 90 | #define mdd_eq_minus(m,a,b,c) mdd_func3(m,a,b,c,eq_minus3) |
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| 91 | #define mdd_geq_minus(m,a,b,c) mdd_func3(m,a,b,c,geq_minus3) |
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| 92 | #define mdd_gt_minus(m,a,b,c) mdd_func3(m,a,b,c,gt_minus3) |
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| 93 | #define mdd_leq_minus(m,a,b,c) mdd_func3(m,a,b,c,leq_minus3) |
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| 94 | #define mdd_lt_minus(m,a,b,c) mdd_func3(m,a,b,c,lt_minus3) |
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| 95 | #define mdd_neq_minus(m,a,b,c) mdd_func3(m,a,b,c,neq_minus3) |
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| 96 | |
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| 97 | #define mdd_eq_plus_c(m,a,b,c) mdd_func2c(m,a,b,c,eq_plus3) |
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| 98 | #define mdd_geq_plus_c(m,a,b,c) mdd_func2c(m,a,b,c,geq_plus3) |
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| 99 | #define mdd_gt_plus_c(m,a,b,c) mdd_func2c(m,a,b,c,gt_plus3) |
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| 100 | #define mdd_leq_plus_c(m,a,b,c) mdd_func2c(m,a,b,c,leq_plus3) |
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| 101 | #define mdd_lt_plus_c(m,a,b,c) mdd_func2c(m,a,b,c,lt_plus3) |
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| 102 | #define mdd_neq_plus_c(m,a,b,c) mdd_func2c(m,a,b,c,neq_plus3) |
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| 103 | |
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| 104 | |
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| 105 | #define mdd_eq_plus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,eq_plus3mod) |
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| 106 | #define mdd_geq_plus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,geq_plus3mod) |
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| 107 | #define mdd_gt_plus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,gt_plus3mod) |
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| 108 | #define mdd_leq_plus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,leq_plus3mod) |
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| 109 | #define mdd_lt_plus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,lt_plus3mod) |
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| 110 | #define mdd_neq_plus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,neq_plus3mod) |
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| 111 | |
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| 112 | #define mdd_eq_minus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,eq_minus3mod) |
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| 113 | #define mdd_geq_minus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,geq_minus3mod) |
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| 114 | #define mdd_gt_minus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,gt_minus3mod) |
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| 115 | #define mdd_leq_minus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,leq_minus3mod) |
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| 116 | #define mdd_lt_minus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,lt_minus3mod) |
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| 117 | #define mdd_neq_minus_c_mod(m,a,b,c) mdd_func2c_mod(m,a,b,c,neq_minus3mod) |
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| 118 | |
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| 119 | #define mdd_eq_s(m,a,b) mdd_ineq_template_s(m,a,b,0,0,1) |
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| 120 | #define mdd_geq_s(m,a,b) mdd_ineq_template_s(m,a,b,0,1,1) |
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| 121 | #define mdd_gt_s(m,a,b) mdd_ineq_template_s(m,a,b,0,1,0) |
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| 122 | #define mdd_neq_s(m,a,b) mdd_ineq_template_s(m,a,b,1,1,0) |
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| 123 | #define mdd_leq_s(m,a,b) mdd_ineq_template_s(m,a,b,1,0,1) |
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| 124 | #define mdd_lt_s(m,a,b) mdd_ineq_template_s(m,a,b,1,0,0) |
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| 125 | |
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| 126 | /**** for backward compatibility only ****/ |
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| 127 | #define mdd_eq_g(m,a,b) mdd_func2(m,a,b,eq2) |
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| 128 | #define mdd_geq_g(m,a,b) mdd_func2(m,a,b,geq2) |
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| 129 | #define mdd_gt_g(m,a,b) mdd_func2(m,a,b,gt2) |
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| 130 | #define mdd_leq_g(m,a,b) mdd_func2(m,a,b,leq2) |
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| 131 | #define mdd_lt_g(m,a,b) mdd_func2(m,a,b,lt2) |
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| 132 | #define mdd_neq_g(m,a,b) mdd_func2(m,a,b,neq2) |
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| 133 | #define mdd_init_name(v,n,s) mdd_init(v,n,s) |
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| 134 | |
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| 135 | /* mdd_int.h */ |
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| 136 | #define MDD_NOT(node) ((bdd_node *) ((int) (node) ^ 01)) |
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| 137 | #define MDD_REGULAR(node) ((bdd_node *) ((int) (node) & ~01)) |
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| 138 | #define MDD_IS_COMPLEMENT(node) ((int) (node) & 01) |
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| 139 | |
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| 140 | #define MDD_ONE(bdd) (bdd)->one |
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| 141 | #define MDD_ZERO(bdd) (MDD_NOT(MDD_ONE(bdd))) |
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| 142 | |
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| 143 | #ifndef MAX |
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| 144 | #define MAX(a,b) (a) > (b) ? (a) : (b) |
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| 145 | #endif |
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| 146 | |
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| 147 | #ifndef MIN |
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| 148 | #define MIN(a,b) (a) < (b) ? (a) : (b) |
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| 149 | #endif |
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| 150 | |
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| 151 | typedef bdd_t mdd_t; |
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| 152 | typedef bdd_manager mdd_manager; |
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| 153 | |
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| 154 | typedef enum { |
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| 155 | MDD_ACTIVE, |
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| 156 | MDD_BUNDLED |
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| 157 | } mvar_status; |
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| 158 | |
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| 159 | struct mvar_type { |
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| 160 | int mvar_id; /* mvar id */ |
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| 161 | mvar_status status; /* Whether the mvar is currently being used or |
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| 162 | has been bundled into another mvar */ |
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| 163 | char *name; /* name of mvar */ |
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| 164 | int values; /* no. of values mvar can take */ |
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| 165 | int encode_length; /* no. of binary variables, bvar's, */ |
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| 166 | /* needed to encode mvar */ |
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| 167 | array_t *bvars; /* array of bvar_id's from most significant bit to least |
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| 168 | significant bit, has size encode_length */ |
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| 169 | int *encoding; /* internal use only */ |
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| 170 | }; |
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| 171 | typedef struct mvar_type mvar_type; |
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| 172 | |
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| 173 | struct bvar_type { |
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| 174 | mdd_t *node; |
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| 175 | int mvar_id; |
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| 176 | }; |
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| 177 | typedef struct bvar_type bvar_type; |
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| 178 | |
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| 179 | struct mdd_hook_type { |
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| 180 | array_t *mvar_list; |
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| 181 | array_t *bvar_list; |
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| 182 | }; |
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| 183 | |
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| 184 | typedef struct mdd_hook_type mdd_hook_type; |
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| 185 | |
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| 186 | struct mdd_gen { |
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| 187 | mdd_manager *manager; |
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| 188 | bdd_gen *bdd_generator; |
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| 189 | bdd_gen_status status; |
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| 190 | array_t *cube; /* array of literals {0,1,2} of all vars */ |
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| 191 | array_t *minterm; /* current minterm */ |
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| 192 | array_t *var_list; /* list of var id's */ |
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| 193 | boolean out_of_range; |
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| 194 | }; |
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| 195 | |
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| 196 | typedef struct mdd_gen mdd_gen; |
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| 197 | |
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| 198 | #define foreach_mdd_minterm(fn, gen, minterm, var_list)\ |
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| 199 | for((gen) = mdd_first_minterm(fn, &minterm, var_list);\ |
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| 200 | ((gen)->status != bdd_EMPTY) ? TRUE: mdd_gen_free(gen);\ |
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| 201 | (void) mdd_next_minterm(gen, &minterm)) |
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| 202 | |
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| 203 | |
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| 204 | extern mdd_hook_type mdd_hook; |
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| 205 | |
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| 206 | |
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| 207 | /*---------------------------------------------------------------------------*/ |
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| 208 | /* Function prototypes */ |
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| 209 | /*---------------------------------------------------------------------------*/ |
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| 210 | |
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| 211 | EXTERN mdd_manager *mdd_init ARGS((array_t *mvar_values, array_t *mvar_names, array_t *mvar_strides)); |
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| 212 | EXTERN mdd_manager *mdd_init_empty ARGS((void)); |
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| 213 | EXTERN unsigned int mdd_create_variables ARGS((mdd_manager *mgr, array_t *mvar_values, array_t *mvar_names, array_t *mvar_strides)); |
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| 214 | EXTERN unsigned int mdd_create_variables_after ARGS((mdd_manager*, int, array_t*, array_t*, array_t* )); |
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| 215 | EXTERN unsigned int mdd_create_variables_interleaved ARGS((mdd_manager*, int, int, array_t*)); |
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| 216 | EXTERN void mdd_quit ARGS((mdd_manager *mgr)); |
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| 217 | EXTERN void mdd_restart ARGS((mdd_manager *mgr)); |
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| 218 | EXTERN void mdd_var_expunge_bdd_variable ARGS((mdd_manager *mgr, int bddId, int val)); |
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| 219 | EXTERN mdd_t *mdd_case ARGS((mdd_manager *mgr, int mvar, array_t *child_list)); |
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| 220 | EXTERN mdd_t *mdd_consensus ARGS((mdd_manager *mgr, mdd_t *fn, array_t *mvars)); |
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| 221 | EXTERN mdd_t *mdd_encode ARGS((mdd_manager *mgr, array_t *child_list, mvar_type *mv_ptr, int index)); |
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| 222 | EXTERN mdd_t *mdd_literal ARGS((mdd_manager *mgr, int mddid, array_t *values)); |
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| 223 | EXTERN void mdd_search ARGS((mdd_manager *mgr, bdd_t *top, int phase, boolean minterms)); |
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| 224 | EXTERN mdd_t *mdd_cofactor ARGS((mdd_manager *mgr, mdd_t *fn, mdd_t *cube)); |
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| 225 | EXTERN mdd_t *mdd_smooth ARGS((mdd_manager *mgr, mdd_t *fn, array_t *mvars)); |
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| 226 | EXTERN mdd_t *mdd_and_smooth ARGS((mdd_manager *mgr, mdd_t *f, mdd_t *g, array_t *mvars)); |
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| 227 | EXTERN mdd_t *mdd_and_smooth_with_limit ARGS((mdd_manager *mgr, mdd_t *f, mdd_t *g, array_t *mvars, unsigned int limit)); |
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| 228 | EXTERN mdd_t *mdd_substitute ARGS((mdd_manager *mgr, mdd_t *fn, array_t *old_mvars, array_t *new_mvars)); |
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| 229 | EXTERN array_t *mdd_substitute_array ARGS((mdd_manager *mgr, array_t *fn_array, array_t *old_mvars, array_t *new_mvars)); |
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| 230 | EXTERN array_t *mdd_get_support ARGS((mdd_manager *mdd_mgr, mdd_t *f)); |
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| 231 | EXTERN array_t *mdd_get_bdd_support_ids ARGS((mdd_manager *mdd_mgr, mdd_t *f)); |
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| 232 | EXTERN array_t *mdd_get_bdd_support_vars ARGS((mdd_manager *mdd_mgr, mdd_t *f)); |
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| 233 | EXTERN mdd_t *mdd_interval ARGS((mdd_manager *mgr, int mvar_id, int low, int high)); |
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| 234 | EXTERN double mdd_count_onset ARGS((mdd_manager *mddMgr, mdd_t *aMdd, array_t *mddIdArr)); |
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| 235 | EXTERN mdd_t *mdd_onset_bdd ARGS((mdd_manager *mddMgr, mdd_t *aMdd, array_t *mddIdArr)); |
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| 236 | EXTERN int mdd_epd_count_onset ARGS((mdd_manager *mddMgr, mdd_t *aMdd, array_t *mddIdArr, EpDouble *epd)); |
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| 237 | EXTERN array_t * mdd_ret_bvars_of_mvar ARGS((mvar_type *mvar_ptr)); |
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| 238 | EXTERN mdd_t *mdd_cproject ARGS((mdd_manager *mgr, mdd_t *T, array_t *mvars)); |
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| 239 | EXTERN mdd_t *mdd_mod ARGS((mdd_manager *mgr, int a_mvar_id, int b_mvar_id, int M)); |
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| 240 | EXTERN mdd_t *mdd_ineq_template_s ARGS((mdd_manager *mgr, int mvar1, int mvar2, int zero_then_val, int one_else_val, int bottom_val)); |
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| 241 | EXTERN mdd_t *mdd_add_s ARGS((mdd_manager *mgr, int sum_id, int mvar_id1, int mvar_id2 )); |
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| 242 | /* mdd_iter.c */ |
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| 243 | EXTERN mdd_gen *mdd_first_minterm ARGS((mdd_t *f, array_t **minterm_p, array_t *var_list)); |
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| 244 | EXTERN boolean mdd_next_minterm ARGS((mdd_gen *mgen, array_t **minterm_p)); |
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| 245 | EXTERN void mdd_print_array ARGS((array_t *array)); |
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| 246 | EXTERN int mdd_gen_free ARGS((mdd_gen *mgen)); |
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| 247 | EXTERN mdd_t *mdd_func1c ARGS((mdd_manager *mgr, int mvar1, int mvar2, boolean (*func1c) (int, int))); |
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| 248 | EXTERN mdd_t *mdd_func2 ARGS((mdd_manager *mgr, int mvar1, int mvar2, boolean (*func2) (int, int))); |
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| 249 | /* functions of 2 variables used by mdd_func2 ARGS(()) */ |
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| 250 | EXTERN boolean eq2 ARGS((int x, int y)); |
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| 251 | EXTERN boolean geq2 ARGS((int x, int y)); |
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| 252 | EXTERN boolean gt2 ARGS((int x, int y)); |
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| 253 | EXTERN boolean leq2 ARGS((int x, int y)); |
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| 254 | EXTERN boolean lt2 ARGS((int x, int y)); |
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| 255 | EXTERN boolean neq2 ARGS((int x, int y)); |
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| 256 | EXTERN boolean unary_minus2 ARGS((int x, int y)); |
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| 257 | EXTERN mdd_t *mdd_func2c ARGS((mdd_manager *mgr,int mvar1, int mvar2, int constant, boolean (*func3)(int, int, int))); |
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| 258 | EXTERN mdd_t *mdd_func2c_mod ARGS((mdd_manager *mgr,int mvar1, int mvar2, int constant, boolean (*func4)(int, int, int, int))); |
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| 259 | |
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| 260 | /* should be in ../test */ |
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| 261 | EXTERN mdd_t *mdd_func3 ARGS((mdd_manager *mgr, int mvar1, int mvar2, int mvar3, boolean (*func3)(int, int, int))); |
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| 262 | /* functions of 3 variables used by mdd_func3 ARGS(()) */ |
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| 263 | EXTERN boolean eq_plus3 ARGS((int x, int y, int z)); |
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| 264 | EXTERN boolean geq_plus3 ARGS((int x, int y, int z)); |
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| 265 | EXTERN boolean gt_plus3 ARGS((int x, int y, int z)); |
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| 266 | EXTERN boolean leq_plus3 ARGS((int x, int y, int z)); |
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| 267 | EXTERN boolean lt_plus3 ARGS((int x, int y, int z)); |
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| 268 | EXTERN boolean neq_plus3 ARGS((int x, int y, int z)); |
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| 269 | /* actually functions below can be obtained from the set above */ |
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| 270 | /* by just suppling the negation of the constant value */ |
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| 271 | EXTERN boolean eq_minus3 ARGS((int x, int y, int z)); |
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| 272 | EXTERN boolean geq_minus3 ARGS((int x, int y, int z)); |
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| 273 | EXTERN boolean gt_minus3 ARGS((int x, int y, int z)); |
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| 274 | EXTERN boolean leq_minus3 ARGS((int x, int y, int z)); |
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| 275 | EXTERN boolean lt_minus3 ARGS((int x, int y, int z)); |
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| 276 | EXTERN boolean neq_minus3 ARGS((int x, int y, int z)); |
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| 277 | |
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| 278 | EXTERN array_t *mdd_id_to_bdd_id_array ARGS((mdd_manager *mddManager, int mddId)); |
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| 279 | EXTERN array_t *mdd_id_to_bdd_array ARGS((mdd_manager *mddManager, int mddId)); |
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| 280 | EXTERN array_t *mdd_id_array_to_bdd_array ARGS((mdd_manager *mddManager, array_t *mddIdArray)); |
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| 281 | EXTERN array_t *mdd_id_array_to_bdd_id_array ARGS((mdd_manager *mddManager, array_t *mddIdArray)); |
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| 282 | EXTERN mdd_t *mdd_id_array_to_bdd_cube ARGS((mdd_manager *mddManager, array_t *mddIdArray)); |
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| 283 | EXTERN int mdd_get_number_of_bdd_vars ARGS((mdd_manager *mddManager, array_t *mddIdArray)); |
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| 284 | EXTERN int mdd_get_number_of_bdd_support ARGS((mdd_manager *mddManager, mdd_t *f)); |
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| 285 | EXTERN array_t *mdd_fn_array_to_bdd_rel_array ARGS((mdd_manager *mddManager, int mddId, array_t *mddFnArray)); |
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| 286 | EXTERN array_t *mdd_fn_array_to_bdd_fn_array ARGS((mdd_manager *mddManager, int mddId, array_t *mddFnArray)); |
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| 287 | EXTERN array_t *mdd_pick_arbitrary_minterms ARGS((mdd_manager *mgr, mdd_t *f, array_t *mddIdArr, int n)); |
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| 288 | EXTERN mdd_t *mdd_subset_with_mask_vars ARGS((mdd_manager *mgr, mdd_t *f, array_t *mddIdArr, array_t *maskIdArr)); |
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| 289 | EXTERN mvar_type mdd_get_var_by_id ARGS((mdd_manager *mddMgr, int id)); |
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| 290 | EXTERN void mdd_print_support ARGS((mdd_t *f)); |
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| 291 | EXTERN void mdd_print_support_to_file ARGS((FILE *fout, char *format, mdd_t *f)); |
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| 292 | EXTERN char *mdd_read_var_name ARGS((mdd_t *f)); |
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| 293 | EXTERN int mdd_read_mdd_id ARGS((mdd_t *f)); |
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| 294 | EXTERN int mdd_check_support ARGS((mdd_manager *mddMgr, mdd_t *mdd, array_t *supportIdArray)); |
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| 295 | EXTERN int mdd_equal_mod_care_set_array ARGS((mdd_t *aSet, mdd_t *bSet, array_t *CareSetArray)); |
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| 296 | EXTERN int mdd_lequal_mod_care_set_array ARGS((mdd_t *aSet, mdd_t *bSet, boolean aPhase, boolean bPhase, array_t *CareSetArray)); |
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| 297 | |
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| 298 | EXTERN boolean eq_plus3mod ARGS((int x, int y, int z, int range)); |
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| 299 | EXTERN boolean geq_plus3mod ARGS((int x, int y, int z, int range)); |
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| 300 | EXTERN boolean gt_plus3mod ARGS((int x, int y, int z, int range)); |
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| 301 | EXTERN boolean leq_plus3mod ARGS((int x, int y, int z, int range)); |
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| 302 | EXTERN boolean lt_plus3mod ARGS((int x, int y, int z, int range)); |
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| 303 | EXTERN boolean neq_plus3mod ARGS((int x, int y, int z, int range)); |
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| 304 | /* actually functions below can be obtained from the set above */ |
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| 305 | /* by just suppling the negation of the constant value */ |
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| 306 | EXTERN boolean eq_minus3mod ARGS((int x, int y, int z, int range)); |
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| 307 | EXTERN boolean geq_minus3mod ARGS((int x, int y, int z, int range)); |
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| 308 | EXTERN boolean gt_minus3mod ARGS((int x, int y, int z, int range)); |
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| 309 | EXTERN boolean leq_minus3mod ARGS((int x, int y, int z, int range)); |
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| 310 | EXTERN boolean lt_minus3mod ARGS((int x, int y, int z, int range)); |
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| 311 | EXTERN boolean neq_minus3mod ARGS((int x, int y, int z, int range)); |
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| 312 | EXTERN void mdd_array_dump_dot ARGS((array_t *mdds, char *name, FILE *fp)); |
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| 313 | EXTERN void mdd_dump_dot ARGS((mdd_t *mdd, char *name, FILE *fp)); |
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| 314 | EXTERN void mdd_array_print_cover ARGS((array_t *mdds, char *name, boolean disjoint)); |
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| 315 | EXTERN void mdd_print_cover ARGS((mdd_t *f, char *name, boolean disjoint)); |
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| 316 | |
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| 317 | /* should be in mdd_int.h */ |
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| 318 | EXTERN int toggle ARGS((int x)); |
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| 319 | EXTERN int no_bit_encode ARGS((int n)); |
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| 320 | EXTERN void print_strides ARGS((array_t *mvar_strides)); |
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| 321 | EXTERN void print_mvar_list ARGS((mdd_manager *mgr)); |
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| 322 | EXTERN void print_bdd_list_id ARGS((array_t *bdd_list)); |
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| 323 | EXTERN void print_bvar_list_id ARGS((mdd_manager *mgr)); |
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| 324 | EXTERN void print_bdd ARGS((bdd_manager *mgr, bdd_t *top)); |
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| 325 | EXTERN mvar_type find_mvar_id ARGS((mdd_manager *mgr, unsigned short id)); |
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| 326 | EXTERN void clear_all_marks ARGS((mdd_manager *mgr)); |
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| 327 | EXTERN void mdd_mark ARGS((mdd_manager *mgr, bdd_t *top, int phase)); |
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| 328 | EXTERN void mdd_unmark ARGS((mdd_manager *mgr, bdd_t *top)); |
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| 329 | EXTERN mvar_type find_mvar ARGS((mdd_manager *mgr, char *name)); |
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| 330 | EXTERN array_t *mdd_ret_mvar_list ARGS((mdd_manager *mgr)); |
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| 331 | EXTERN void mdd_set_mvar_list ARGS((mdd_manager *mgr, array_t *mvar_list)); |
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| 332 | EXTERN array_t *mdd_ret_bvar_list ARGS((mdd_manager *mgr)); |
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| 333 | EXTERN void mdd_set_bvar_list ARGS((mdd_manager *mgr, array_t *bvar_list)); |
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| 334 | EXTERN mdd_t *build_lt_c ARGS((mdd_manager *mgr, int mvar_id, int c)); |
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| 335 | EXTERN mdd_t *build_leq_c ARGS((mdd_manager *mgr, int mvar_id, int c)); |
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| 336 | EXTERN mdd_t *build_gt_c ARGS((mdd_manager *mgr, int mvar_id, int c)); |
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| 337 | EXTERN mdd_t *build_geq_c ARGS((mdd_manager *mgr, int mvar_id, int c)); |
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| 338 | EXTERN int getbit ARGS((int number, int position)); |
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| 339 | EXTERN int integer_get_num_of_digits ARGS((int value)); |
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| 340 | EXTERN int mdd_ret_bvar_id ARGS((mvar_type *mvar_ptr, int i)); |
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| 341 | EXTERN bvar_type mdd_ret_bvar ARGS((mvar_type *mvar_ptr, int i, array_t *bvar_list)); |
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| 342 | EXTERN void mdd_array_free ARGS((array_t *mddArray)); |
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| 343 | EXTERN void mdd_array_array_free ARGS((array_t *arrayBddArray)); |
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| 344 | EXTERN array_t *mdd_array_duplicate ARGS((array_t *mddArray)); |
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| 345 | EXTERN boolean mdd_array_equal ARGS((array_t *array1, array_t *array2)); |
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| 346 | EXTERN mdd_t *mdd_range_mdd ARGS((mdd_manager *mgr, array_t *support)); |
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| 347 | |
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| 348 | /* unsupported */ |
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| 349 | EXTERN int mdd_bundle_variables ARGS((mdd_manager *mgr, array_t *bundle_vars, char *mdd_var_name, int *mdd_id)); |
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| 350 | EXTERN mdd_t * mdd_unary_minus_s ARGS((mdd_manager *mgr, int mvar1, int mvar2)); |
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| 351 | EXTERN array_t * mvar2bdds ARGS((mdd_manager *mgr, array_t *mvars)); |
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| 352 | #endif |
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