mirror of
https://github.com/Z3Prover/z3
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649 lines
26 KiB
C++
649 lines
26 KiB
C++
/*++
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Copyright (c) 2012 Microsoft Corporation
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Module Name:
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gparams.cpp
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Abstract:
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Global parameter management.
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Author:
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Leonardo (leonardo) 2012-11-29
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Notes:
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--*/
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#include "util/gparams.h"
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#include "util/dictionary.h"
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#include "util/trace.h"
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extern void gparams_register_modules();
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static char const * g_old_params_names[] = {
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"arith_adaptive","arith_adaptive_assertion_threshold","arith_adaptive_gcd","arith_adaptive_propagation_threshold","arith_add_binary_bounds","arith_blands_rule_threshold","arith_branch_cut_ratio","arith_dump_lemmas","arith_eager_eq_axioms","arith_eager_gcd","arith_eq_bounds","arith_euclidean_solver","arith_expand_eqs","arith_force_simplex","arith_gcd_test","arith_ignore_int","arith_lazy_adapter","arith_lazy_pivoting","arith_max_lemma_size","arith_process_all_eqs","arith_propagate_eqs","arith_propagation_mode","arith_propagation_threshold","arith_prop_strategy","arith_random_initial_value","arith_random_lower","arith_random_seed","arith_random_upper","arith_reflect","arith_skip_big_coeffs","arith_small_lemma_size","arith_solver","arith_stronger_lemmas","array_always_prop_upward","array_canonize","array_cg","array_delay_exp_axiom","array_extensional","array_laziness","array_lazy_ieq","array_lazy_ieq_delay","array_solver","array_weak","async_commands","at_labels_cex","auto_config","bb_eager","bb_ext_gates","bb_quantifiers","bin_clauses","bit2int","bv2int_distribute","bv_blast_max_size","bv_cc","bv_enable_int2bv_propagation","bv_lazy_le","bv_max_sharing","bv_reflect","bv_solver","case_split","check_at_labels","check_proof","cnf_factor","cnf_mode","context_simplifier","dack","dack_eq","dack_factor","dack_gc","dack_gc_inv_decay","dack_threshold","default_qid","default_table","default_table_checked","delay_units","delay_units_threshold","der","display_config","display_dot_proof","display_error_for_visual_studio","display_features","display_proof","display_unsat_core","distribute_forall","dt_lazy_splits","dump_goal_as_smt","elim_and","elim_bounds","elim_nlarith_quantifiers","elim_quantifiers","elim_term_ite","ematching","engine","eq_propagation","hi_div0","ignore_bad_patterns","ignore_setparameter","instruction_max","inst_gen","interactive","internalizer_nnf","lemma_gc_factor","lemma_gc_half","lemma_gc_initial","lemma_gc_new_clause_activity","lemma_gc_new_clause_relevancy","lemma_gc_new_old_ratio","lemma_gc_old_clause_activity","lemma_gc_old_clause_relevancy","lemma_gc_strategy","lift_ite","lookahead_diseq","macro_finder","max_conflicts","max_counterexamples","mbqi","mbqi_force_template","mbqi_max_cexs","mbqi_max_cexs_incr","mbqi_max_iterations","mbqi_trace","minimize_lemmas","model","model_compact","model_completion","model_display_arg_sort","model_hide_unused_partitions","model_on_final_check","model_on_timeout","model_partial","model_v1","model_v2","model_validate","new_core2th_eq","ng_lift_ite","nl_arith","nl_arith_branching","nl_arith_gb","nl_arith_gb_eqs","nl_arith_gb_perturbate","nl_arith_gb_threshold","nl_arith_max_degree","nl_arith_rounds","nnf_factor","nnf_ignore_labels","nnf_mode","nnf_sk_hack","order","order_var_weight","order_weights","phase_selection","pi_arith","pi_arith_weight","pi_avoid_skolems","pi_block_looop_patterns","pi_max_multi_patterns","pi_non_nested_arith_weight","pi_nopat_weight","pi_pull_quantifiers","pi_use_database","pi_warnings","pp_bounded","pp_bv_literals","pp_bv_neg","pp_decimal","pp_decimal_precision","pp_fixed_indent","pp_flat_assoc","pp_max_depth","pp_max_indent","pp_max_num_lines","pp_max_ribbon","pp_max_width","pp_min_alias_size","pp_simplify_implies","pp_single_line","precedence","precedence_gen","pre_demodulator","pre_simplifier","pre_simplify_expr","profile_res_sub","progress_sampling_freq","proof_mode","propagate_booleans","propagate_values","pull_cheap_ite_trees","pull_nested_quantifiers","qi_conservative_final_check","qi_cost","qi_eager_threshold","qi_lazy_instantiation","qi_lazy_quick_checker","qi_lazy_threshold","qi_max_eager_multi_patterns","qi_max_instances","qi_max_lazy_multi_pattern_matching","qi_new_gen","qi_profile","qi_profile_freq","qi_promote_unsat","qi_quick_checker","quasi_macros","random_case_split_freq","random_initial_activity","random_seed","recent_lemma_threshold","reduce_args","refine_inj_axiom","relevancy","relevancy_lemma","rel_case_split_order","restart_adaptive","restart_agility_threshold","restart_factor","restart_initial","restart_strategy","restricted_quasi_macros","simplify_clauses","smtlib2_compliant","smtlib_category","smtlib_dump_lemmas","smtlib_logic","smtlib_source_info","smtlib_trace_path","soft_timeout","solver","spc_bs","spc_es","spc_factor_subsumption_index_opt","spc_initial_subsumption_index_opt","spc_max_subsumption_index_features","spc_min_func_freq_subsumption_index","spc_num_iterations","spc_trace","statistics","strong_context_simplifier","tick","trace","trace_file_name","type_check","user_theory_persist_axioms","user_theory_preprocess_axioms","verbose","warning","well_sorted_check","z3_solver_ll_pp","z3_solver_smt_pp", nullptr };
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bool is_old_param_name(symbol const & name) {
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char const * const * it = g_old_params_names;
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while (*it) {
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if (name == *it)
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return true;
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it++;
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}
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return false;
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}
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static char const * g_params_renames[] = {
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"proof_mode", "proof",
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"soft_timeout", "timeout",
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"mbqi", "smt.mbqi",
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"relevancy", "smt.relevancy",
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"ematching", "smt.ematching",
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"macro_finder", "smt.macro_finder",
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"delay_units", "smt.delay_units",
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"case_split", "smt.case_split",
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"phase_selection", "smt.phase_selection",
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"restart_strategy", "smt.restart_strategy",
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"restart_factor", "smt.restart_factor",
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"arith_random_initial_value", "smt.arith.random_initial_value",
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"bv_reflect", "smt.bv.reflect",
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"bv_enable_int2bv_propagation", "smt.bv.enable_int2bv",
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"qi_cost", "smt.qi.cost",
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"qi_eager_threshold", "smt.qi.eager_threshold",
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"nl_arith", "smt.arith.nl",
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"pull_nested_quantifiers", "smt.pull_nested_quantifiers",
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"nnf_sk_hack", "nnf.sk_hack",
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"model_v2", "model.v2",
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"pi_non_nested_arith_weight", "pi.non_nested_arith_weight",
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"pi_warnings", "pi.warnings",
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"pp_decimal", "pp.decimal",
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"pp_decimal", "pp.decimal_precision",
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"pp_bv_literals", "pp.bv_literals",
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"pp_bv_neg", "pp.bv_neg",
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"pp_max_depth", "pp.max_depth",
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"pp_min_alias_size", "pp.min_alias_size",
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nullptr };
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char const * get_new_param_name(symbol const & p) {
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char const * const * it = g_params_renames;
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while (*it) {
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if (p == *it) {
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it++;
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return *it;
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}
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it += 2;
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}
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return nullptr;
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}
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struct gparams::imp {
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bool m_modules_registered;
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dictionary<param_descrs*> m_module_param_descrs;
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dictionary<char const *> m_module_descrs;
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param_descrs m_param_descrs;
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dictionary<params_ref *> m_module_params;
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params_ref m_params;
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void check_registered() {
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if (m_modules_registered)
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return;
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m_modules_registered = true;
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gparams_register_modules();
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}
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dictionary<param_descrs*> & get_module_param_descrs() { check_registered(); return m_module_param_descrs; }
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dictionary<char const *> & get_module_descrs() { check_registered(); return m_module_descrs; }
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param_descrs & get_param_descrs() { check_registered(); return m_param_descrs; }
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public:
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imp():
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m_modules_registered(false) {
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}
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~imp() {
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reset();
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for (auto & kv : m_module_param_descrs) {
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dealloc(kv.m_value);
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}
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}
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void reset() {
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#pragma omp critical (gparams)
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{
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m_params.reset();
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for (auto & kv : m_module_params) {
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dealloc(kv.m_value);
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}
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m_module_params.reset();
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}
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}
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// -----------------------------------------------
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//
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// Module registration routines.
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// They are invoked when descriptions are initialized
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//
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// -----------------------------------------------
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void register_global(param_descrs & d) {
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// Don't need synchronization here, this method
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// is invoked from check_registered that is already protected.
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m_param_descrs.copy(d);
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}
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void register_module(char const * module_name, param_descrs * d) {
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// Don't need synchronization here, this method
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// is invoked from check_registered that is already protected.
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symbol s(module_name);
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param_descrs * old_d;
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if (m_module_param_descrs.find(s, old_d)) {
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old_d->copy(*d);
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dealloc(d);
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}
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else {
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m_module_param_descrs.insert(s, d);
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}
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}
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void register_module_descr(char const * module_name, char const * descr) {
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// Don't need synchronization here, this method
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// is invoked from check_registered that is already protected.
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m_module_descrs.insert(symbol(module_name), descr);
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}
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// -----------------------------------------------
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//
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// Parameter setting & retrieval
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//
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// -----------------------------------------------
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void normalize(char const * name, /* out */ symbol & mod_name, /* out */ symbol & param_name) {
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if (*name == ':')
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name++;
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std::string tmp = name;
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unsigned n = static_cast<unsigned>(tmp.size());
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for (unsigned i = 0; i < n; i++) {
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if (tmp[i] >= 'A' && tmp[i] <= 'Z')
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tmp[i] = tmp[i] - 'A' + 'a';
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else if (tmp[i] == '-')
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tmp[i] = '_';
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}
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for (unsigned i = 0; i < n; i++) {
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if (tmp[i] == '.') {
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param_name = tmp.substr(i+1).c_str();
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tmp.resize(i);
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mod_name = tmp.c_str();
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return;
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}
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}
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param_name = tmp.c_str();
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mod_name = symbol::null;
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}
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params_ref & get_params(symbol const & mod_name) {
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if (mod_name == symbol::null) {
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return m_params;
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}
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else {
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params_ref * p = nullptr;
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if (!m_module_params.find(mod_name, p)) {
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p = alloc(params_ref);
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m_module_params.insert(mod_name, p);
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}
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SASSERT(p != 0);
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return *p;
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}
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}
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void throw_unknown_parameter(symbol const & param_name, param_descrs const& d, symbol const & mod_name) {
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if (mod_name == symbol::null) {
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char const * new_name = get_new_param_name(param_name);
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if (new_name) {
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std::stringstream strm;
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strm << "the parameter '" << param_name
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<< "', invoke 'z3 -p' to obtain the new parameter list, and 'z3 -pp:" << new_name
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<< "' for the full description of the parameter";
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throw exception(strm.str());
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}
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else if (is_old_param_name(param_name)) {
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std::stringstream strm;
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strm << "unknown parameter '" << param_name
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<< "', this is an old parameter name, invoke 'z3 -p' to obtain the new parameter list";
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throw default_exception(strm.str());
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}
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else {
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std::stringstream strm;
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strm << "unknown parameter '" << param_name << "'\n";
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strm << "Legal parameters are:\n";
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d.display(strm, 2, false, false);
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throw default_exception(strm.str());
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}
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}
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else {
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std::stringstream strm;
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strm << "unknown parameter '" << param_name << "' ";
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strm << "at module '" << mod_name << "'\n";
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strm << "Legal parameters are:\n";
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d.display(strm, 2, false, false);
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throw default_exception(strm.str());
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}
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}
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void validate_type(symbol const& name, char const* value, param_descrs const& d) {
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param_kind k = d.get_kind(name);
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std::stringstream strm;
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char const* _value = value;
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switch (k) {
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case CPK_UINT:
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for (; *value; ++value) {
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if (!('0' <= *value && *value <= '9')) {
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strm << "Expected values for parameter " << name
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<< " is an unsigned integer. It was given argument '" << _value << "'";
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throw default_exception(strm.str());
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}
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}
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break;
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case CPK_DOUBLE:
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for (; *value; ++value) {
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if (!('0' <= *value && *value <= '9') && *value != '.' && *value != '-' && *value != '/') {
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strm << "Expected values for parameter " << name
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<< " is a double. It was given argument '" << _value << "'";
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throw default_exception(strm.str());
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}
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}
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break;
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case CPK_BOOL:
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if (strcmp(value, "true") != 0 && strcmp(value, "false") != 0) {
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strm << "Expected values for parameter " << name
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<< " are 'true' or 'false'. It was given argument '" << value << "'";
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throw default_exception(strm.str());
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}
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break;
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default:
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break;
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}
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}
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void set(param_descrs const & d, symbol const & param_name, char const * value, symbol const & mod_name) {
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param_kind k = d.get_kind(param_name);
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params_ref & ps = get_params(mod_name);
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if (k == CPK_INVALID) {
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throw_unknown_parameter(param_name, d, mod_name);
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}
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else if (k == CPK_UINT) {
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long val = strtol(value, nullptr, 10);
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ps.set_uint(param_name, static_cast<unsigned>(val));
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}
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else if (k == CPK_DOUBLE) {
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char * aux;
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double val = strtod(value, &aux);
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ps.set_double(param_name, val);
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}
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else if (k == CPK_BOOL) {
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if (strcmp(value, "true") == 0) {
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ps.set_bool(param_name, true);
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}
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else if (strcmp(value, "false") == 0) {
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ps.set_bool(param_name, false);
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}
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else {
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std::stringstream strm;
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strm << "invalid value '" << value << "' for Boolean parameter '" << param_name << "'";
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if (mod_name == symbol::null) {
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strm << " at module '" << mod_name << "'";
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}
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throw default_exception(strm.str());
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}
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}
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else if (k == CPK_SYMBOL) {
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ps.set_sym(param_name, symbol(value));
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}
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else if (k == CPK_STRING) {
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// There is no guarantee that (external) callers will not delete value after invoking gparams::set.
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// I see two solutions:
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// 1) Modify params_ref to create a copy of set_str parameters.
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// This solution is not nice since we create copies and move the params_ref around.
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// We would have to keep copying the strings.
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// Moreover, when we use params_ref internally, the value is usually a static value.
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// So, we would be paying this price for nothing.
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// 2) "Copy" value by transforming it into a symbol.
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// I'm using this solution for now.
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ps.set_str(param_name, symbol(value).bare_str());
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}
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else {
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std::stringstream strm;
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strm << "unsupported parameter type '" << param_name << "'";
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if (mod_name == symbol::null) {
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strm << " at module '" << mod_name << "'";
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}
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throw exception(strm.str());
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}
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}
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void set(char const * name, char const * value) {
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bool error = false;
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std::string error_msg;
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#pragma omp critical (gparams)
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{
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try {
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symbol m, p;
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normalize(name, m, p);
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if (m == symbol::null) {
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validate_type(p, value, get_param_descrs());
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set(get_param_descrs(), p, value, m);
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}
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else {
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param_descrs * d;
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if (get_module_param_descrs().find(m, d)) {
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validate_type(p, value, *d);
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set(*d, p, value, m);
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}
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else {
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std::stringstream strm;
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strm << "invalid parameter, unknown module '" << m << "'";
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throw exception(strm.str());
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}
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}
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}
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catch (z3_exception & ex) {
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// Exception cannot cross critical section boundaries.
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error = true;
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error_msg = ex.msg();
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}
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}
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if (error)
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throw exception(error_msg);
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}
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std::string get_value(params_ref const & ps, symbol const & p) {
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std::ostringstream buffer;
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ps.display(buffer, p);
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return buffer.str();
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}
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std::string get_default(param_descrs const & d, symbol const & p, symbol const & m) {
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if (!d.contains(p)) {
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throw_unknown_parameter(p, d, m);
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}
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char const * r = d.get_default(p);
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if (r == nullptr)
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return "default";
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return r;
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}
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std::string get_value(char const * name) {
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std::string r;
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bool error = false;
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std::string error_msg;
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#pragma omp critical (gparams)
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{
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try {
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symbol m, p;
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normalize(name, m, p);
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if (m == symbol::null) {
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if (m_params.contains(p)) {
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r = get_value(m_params, p);
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}
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else {
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r = get_default(get_param_descrs(), p, m);
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}
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}
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else {
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params_ref * ps = nullptr;
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if (m_module_params.find(m, ps) && ps->contains(p)) {
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r = get_value(*ps, p);
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}
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else {
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param_descrs * d;
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if (get_module_param_descrs().find(m, d)) {
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r = get_default(*d, p, m);
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}
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else {
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std::stringstream strm;
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strm << "unknown module '" << m << "'";
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throw exception(strm.str());
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}
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}
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}
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}
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catch (z3_exception & ex) {
|
|
// Exception cannot cross critical section boundaries.
|
|
error = true;
|
|
error_msg = ex.msg();
|
|
}
|
|
}
|
|
if (error)
|
|
throw exception(error_msg);
|
|
return r;
|
|
}
|
|
|
|
// unfortunately, params_ref is not thread safe
|
|
// so better create a local copy of the parameters.
|
|
params_ref get_module(symbol const & module_name) {
|
|
params_ref result;
|
|
params_ref * ps = nullptr;
|
|
#pragma omp critical (gparams)
|
|
{
|
|
if (m_module_params.find(module_name, ps)) {
|
|
result.copy(*ps);
|
|
}
|
|
}
|
|
return result;
|
|
}
|
|
|
|
params_ref const& get_ref() {
|
|
return m_params;
|
|
}
|
|
|
|
// -----------------------------------------------
|
|
//
|
|
// Pretty printing
|
|
//
|
|
// -----------------------------------------------
|
|
|
|
void display(std::ostream & out, unsigned indent, bool smt2_style, bool include_descr) {
|
|
#pragma omp critical (gparams)
|
|
{
|
|
out << "Global parameters\n";
|
|
get_param_descrs().display(out, indent + 4, smt2_style, include_descr);
|
|
out << "\n";
|
|
if (!smt2_style) {
|
|
out << "To set a module parameter, use <module-name>.<parameter-name>=value\n";
|
|
out << "Example: pp.decimal=true\n";
|
|
out << "\n";
|
|
}
|
|
for (auto & kv : get_module_param_descrs()) {
|
|
out << "[module] " << kv.m_key;
|
|
char const * descr = nullptr;
|
|
if (get_module_descrs().find(kv.m_key, descr)) {
|
|
out << ", description: " << descr;
|
|
}
|
|
out << "\n";
|
|
kv.m_value->display(out, indent + 4, smt2_style, include_descr);
|
|
}
|
|
}
|
|
}
|
|
|
|
void display_modules(std::ostream & out) {
|
|
#pragma omp critical (gparams)
|
|
{
|
|
for (auto & kv : get_module_param_descrs()) {
|
|
out << "[module] " << kv.m_key;
|
|
char const * descr = nullptr;
|
|
if (get_module_descrs().find(kv.m_key, descr)) {
|
|
out << ", description: " << descr;
|
|
}
|
|
out << "\n";
|
|
}
|
|
}
|
|
}
|
|
|
|
void display_module(std::ostream & out, symbol const & module_name) {
|
|
bool error = false;
|
|
std::string error_msg;
|
|
#pragma omp critical (gparams)
|
|
{
|
|
try {
|
|
param_descrs * d = nullptr;
|
|
if (!get_module_param_descrs().find(module_name, d)) {
|
|
std::stringstream strm;
|
|
strm << "unknown module '" << module_name << "'";
|
|
throw exception(strm.str());
|
|
}
|
|
out << "[module] " << module_name;
|
|
char const * descr = nullptr;
|
|
if (get_module_descrs().find(module_name, descr)) {
|
|
out << ", description: " << descr;
|
|
}
|
|
out << "\n";
|
|
d->display(out, 4, false);
|
|
}
|
|
catch (z3_exception & ex) {
|
|
// Exception cannot cross critical section boundaries.
|
|
error = true;
|
|
error_msg = ex.msg();
|
|
}
|
|
}
|
|
if (error)
|
|
throw exception(error_msg);
|
|
}
|
|
|
|
void display_parameter(std::ostream & out, char const * name) {
|
|
bool error = false;
|
|
std::string error_msg;
|
|
#pragma omp critical (gparams)
|
|
{
|
|
try {
|
|
symbol m, p;
|
|
normalize(name, m, p);
|
|
std::cout << name << " " << m << " " << p << "\n";
|
|
param_descrs * d;
|
|
if (m == symbol::null) {
|
|
d = &get_param_descrs();
|
|
}
|
|
else {
|
|
if (!get_module_param_descrs().find(m, d)) {
|
|
std::stringstream strm;
|
|
strm << "unknown module '" << m << "'";
|
|
throw exception(strm.str());
|
|
}
|
|
}
|
|
if (!d->contains(p))
|
|
throw_unknown_parameter(p, *d, m);
|
|
out << " name: " << p << "\n";
|
|
if (m != symbol::null) {
|
|
out << " module: " << m << "\n";
|
|
out << " qualified name: " << m << "." << p << "\n";
|
|
}
|
|
out << " type: " << d->get_kind(p) << "\n";
|
|
out << " description: " << d->get_descr(p) << "\n";
|
|
out << " default value: " << d->get_default(p) << "\n";
|
|
}
|
|
catch (z3_exception & ex) {
|
|
// Exception cannot cross critical section boundaries.
|
|
error = true;
|
|
error_msg = ex.msg();
|
|
}
|
|
}
|
|
if (error)
|
|
throw exception(error_msg);
|
|
}
|
|
};
|
|
|
|
gparams::imp * gparams::g_imp = nullptr;
|
|
|
|
void gparams::reset() {
|
|
SASSERT(g_imp != 0);
|
|
g_imp->reset();
|
|
}
|
|
|
|
void gparams::set(char const * name, char const * value) {
|
|
TRACE("gparams", tout << "setting [" << name << "] <- '" << value << "'\n";);
|
|
SASSERT(g_imp != 0);
|
|
g_imp->set(name, value);
|
|
}
|
|
|
|
void gparams::set(symbol const & name, char const * value) {
|
|
SASSERT(g_imp != 0);
|
|
g_imp->set(name.bare_str(), value);
|
|
}
|
|
|
|
std::string gparams::get_value(char const * name) {
|
|
SASSERT(g_imp != 0);
|
|
return g_imp->get_value(name);
|
|
}
|
|
|
|
std::string gparams::get_value(symbol const & name) {
|
|
SASSERT(g_imp != 0);
|
|
return g_imp->get_value(name.bare_str());
|
|
}
|
|
|
|
void gparams::register_global(param_descrs & d) {
|
|
SASSERT(g_imp != 0);
|
|
g_imp->register_global(d);
|
|
}
|
|
|
|
void gparams::register_module(char const * module_name, param_descrs * d) {
|
|
SASSERT(g_imp != 0);
|
|
g_imp->register_module(module_name, d);
|
|
}
|
|
|
|
void gparams::register_module_descr(char const * module_name, char const * descr) {
|
|
SASSERT(g_imp != 0);
|
|
g_imp->register_module_descr(module_name, descr);
|
|
}
|
|
|
|
params_ref gparams::get_module(char const * module_name) {
|
|
return get_module(symbol(module_name));
|
|
}
|
|
|
|
params_ref gparams::get_module(symbol const & module_name) {
|
|
SASSERT(g_imp != 0);
|
|
return g_imp->get_module(module_name);
|
|
}
|
|
|
|
params_ref const& gparams::get_ref() {
|
|
TRACE("gparams", tout << "gparams::get_ref()\n";);
|
|
SASSERT(g_imp != 0);
|
|
return g_imp->get_ref();
|
|
}
|
|
|
|
void gparams::display(std::ostream & out, unsigned indent, bool smt2_style, bool include_descr) {
|
|
SASSERT(g_imp != 0);
|
|
g_imp->display(out, indent, smt2_style, include_descr);
|
|
}
|
|
|
|
void gparams::display_modules(std::ostream & out) {
|
|
SASSERT(g_imp != 0);
|
|
g_imp->display_modules(out);
|
|
}
|
|
|
|
void gparams::display_module(std::ostream & out, char const * module_name) {
|
|
SASSERT(g_imp != 0);
|
|
g_imp->display_module(out, symbol(module_name));
|
|
}
|
|
|
|
void gparams::display_parameter(std::ostream & out, char const * name) {
|
|
SASSERT(g_imp != 0);
|
|
g_imp->display_parameter(out, name);
|
|
}
|
|
|
|
void gparams::init() {
|
|
TRACE("gparams", tout << "gparams::init()\n";);
|
|
g_imp = alloc(imp);
|
|
}
|
|
|
|
void gparams::finalize() {
|
|
TRACE("gparams", tout << "gparams::finalize()\n";);
|
|
if (g_imp != nullptr) {
|
|
dealloc(g_imp);
|
|
g_imp = nullptr;
|
|
}
|
|
}
|
|
|
|
|