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Branches: main Add support for `try' goals, syntactic sugar on top of the exception handling predicates in the standard library. The syntax is documented in the reference manual. Currently one of the proposed try parameters, io(!IO), is implemented. Try goals are implemented by *two* source-to-source transformations, one at the parse tree level, then a later one on the HLDS. The reason for this is given in try_expand.m. library/ops.m: Add three new operators: try, catch, catch_any. library/exception.m: Add forwarding predicates so that code generated by the try goal transformation doesn't need to import `univ'. compiler/prog_item.m: Add representations of try goals to parse tree. compiler/prog_io_goal.m: Parse try goals. Unrelated: fix spelling of "parameter". compiler/add_clause.m: Perform the initial transformation on try goals. compiler/hlds_goal.m: Add try goals to HLDS, as shorthand goals. compiler/try_expand.m: New module to perform the latter transformation on try goals. compiler/check_hlds.m: Import the new module. compiler/mercury_compile.m: Call the try_expand pass near the end of the front-end pass. compiler/module_imports.m: Implicitly import `exception' if a `try' goal is seen. compiler/det_analysis.m: Conform to addition of try goals in HLDS. Make it not wrap a commit scope around the intermediate try goal (as it might if there are no outputs) as it is inappropriate. compiler/prog_util.m: Conform to parse tree changes. compiler/assertion.m: compiler/build_mode_constraints.m: compiler/cse_detection.m: compiler/delay_partial_inst.m: compiler/dependency_graph.m: compiler/det_report.m: compiler/equiv_type_hlds.m: compiler/format_call.m: compiler/goal_form.m: compiler/goal_path.m: compiler/goal_util.m: compiler/hlds_out.m: compiler/intermod.m: compiler/lambda.m: compiler/make_hlds_warn.m: compiler/mercury_to_mercury.m: compiler/mode_util.m: compiler/modes.m: compiler/module_qual.m: compiler/ordering_mode_constraints.m: compiler/polymorphism.m: compiler/post_typecheck.m: compiler/prop_mode_constraints.m: compiler/purity.m: compiler/quantification.m: compiler/simplify.m: compiler/stm_expand.m: compiler/stratify.m: compiler/structure_reuse.lfu.m: compiler/switch_detection.m: compiler/type_constraints.m: compiler/typecheck.m: compiler/unique_modes.m: compiler/unused_imports.m: Conform to changes in HLDS. compiler/il_peephole.m: compiler/ilasm.m: compiler/ilds.m: compiler/mlds_to_il.m: Rename some symbols to avoid the new keywords. library/exception.m: Add two helper predicates for the try goal transformations. doc/reference_manual.texi: NEWS: Document and announce the new language feature. compiler/notes/compiler_design.html: Note new compiler module. tests/hard_coded/Mmakefile: tests/hard_coded/try_syntax_1.exp: tests/hard_coded/try_syntax_1.m: tests/hard_coded/try_syntax_2.exp: tests/hard_coded/try_syntax_2.m: tests/hard_coded/try_syntax_3.exp: tests/hard_coded/try_syntax_3.m: tests/hard_coded/try_syntax_4.exp: tests/hard_coded/try_syntax_4.m: tests/hard_coded/try_syntax_5.exp: tests/hard_coded/try_syntax_5.m: tests/hard_coded/try_syntax_6.exp: tests/hard_coded/try_syntax_6.m: tests/hard_coded/try_syntax_7.exp: tests/hard_coded/try_syntax_7.m: tests/invalid/Mmakefile: tests/invalid/try_bad_params.err_exp: tests/invalid/try_bad_params.m: tests/invalid/try_io_else.err_exp: tests/invalid/try_io_else.m: Add test cases. tests/debugger/declarative/catch.m: The module name is now a keyword so requires brackets. tests/invalid/trace_goal_env.err_exp: Update test case for fixed spelling for "parameter". vim/syntax/mercury.vim: Add try, catch, catch_any as keywords.
786 lines
30 KiB
Mathematica
786 lines
30 KiB
Mathematica
%-----------------------------------------------------------------------------%
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% vim: ft=mercury ts=4 sw=4 et
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%-----------------------------------------------------------------------------%
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% Copyright (C) 1994-2001, 2003-2008 The University of Melbourne.
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% This file may only be copied under the terms of the GNU General
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% Public License - see the file COPYING in the Mercury distribution.
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%-----------------------------------------------------------------------------%
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%
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% File: prog_util.
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% Main author: fjh.
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%
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% Various utility predicates acting on the parse tree data structure defined
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% in prog_data.m and prog_item.m
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%
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%-----------------------------------------------------------------------------%
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:- module parse_tree.prog_util.
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:- interface.
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:- import_module mdbcomp.prim_data.
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:- import_module parse_tree.prog_data.
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:- import_module parse_tree.prog_item.
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:- import_module list.
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:- import_module maybe.
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:- import_module term.
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:- import_module varset.
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%-----------------------------------------------------------------------------%
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% Given a possible module qualified sym_name and a list of
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% argument types and a context, construct a term. This is
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% used to construct types.
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%
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:- pred construct_qualified_term(sym_name::in, list(term(T))::in,
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term(T)::out) is det.
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:- pred construct_qualified_term(sym_name::in, list(term(T))::in,
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prog_context::in, term(T)::out) is det.
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%-----------------------------------------------------------------------------%
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% adjust_func_arity(PredOrFunc, FuncArity, PredArity).
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%
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% We internally store the arity as the length of the argument
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% list including the return value, which is one more than the
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% arity of the function reported in error messages.
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%
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:- pred adjust_func_arity(pred_or_func, int, int).
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:- mode adjust_func_arity(in, in, out) is det.
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:- mode adjust_func_arity(in, out, in) is det.
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%-----------------------------------------------------------------------------%
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% make_pred_name_with_context(ModuleName, Prefix, PredOrFunc, PredName,
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% Line, Counter, SymName).
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%
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% Create a predicate name with context, e.g. for introduced
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% lambda or deforestation predicates.
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%
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:- pred make_pred_name(module_name::in, string::in, maybe(pred_or_func)::in,
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string::in, new_pred_id::in, sym_name::out) is det.
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% make_pred_name_with_context(ModuleName, Prefix, PredOrFunc, PredName,
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% Line, Counter, SymName).
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%
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% Create a predicate name with context, e.g. for introduced
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% lambda or deforestation predicates.
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%
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:- pred make_pred_name_with_context(module_name::in, string::in,
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pred_or_func::in, string::in, int::in, int::in, sym_name::out) is det.
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:- type new_pred_id
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---> newpred_counter(int, int) % Line number, Counter
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; newpred_type_subst(tvarset, type_subst)
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; newpred_unused_args(list(int))
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; newpred_parallel_args(list(int))
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; newpred_structure_reuse(int, list(int)) % Mode, no-clobber
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% arguments.
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; newpred_distance_granularity(int). % Distance
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%-----------------------------------------------------------------------------%
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% A pred declaration may contains just types, as in
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% :- pred list.append(list(T), list(T), list(T)).
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% or it may contain both types and modes, as in
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% :- pred list.append(list(T)::in, list(T)::in, list(T)::output).
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%
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% This predicate takes the argument list of a pred declaration, splits it
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% into two separate lists for the types and (if present) the modes.
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:- type maybe_modes == maybe(list(mer_mode)).
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:- pred split_types_and_modes(list(type_and_mode)::in, list(mer_type)::out,
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maybe_modes::out) is det.
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:- pred split_type_and_mode(type_and_mode::in, mer_type::out,
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maybe(mer_mode)::out) is det.
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%-----------------------------------------------------------------------------%
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% Perform a substitution on a goal.
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%
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:- pred rename_in_goal(prog_var::in, prog_var::in, goal::in, goal::out) is det.
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%-----------------------------------------------------------------------------%
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% Various predicates for accessing the cons_id type.
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% Given a cons_id and a list of argument terms, convert it into a
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% term. Fails if the cons_id is a pred_const, or type_ctor_info_const.
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%
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:- pred cons_id_and_args_to_term(cons_id::in, list(term(T))::in, term(T)::out)
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is semidet.
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% Get the arity of a cons_id, aborting on pred_const and
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% type_ctor_info_const.
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%
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:- func cons_id_arity(cons_id) = arity.
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% Get the arity of a cons_id. Return a `no' on those cons_ids
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% where cons_id_arity/2 would normally abort.
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%
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:- func cons_id_maybe_arity(cons_id) = maybe(arity).
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% The reverse conversion - make a cons_id for a functor.
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% Given a const and an arity for the functor, create a cons_id.
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%
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:- func make_functor_cons_id(const, arity) = cons_id.
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% Another way of making a cons_id from a functor.
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% Given the name, argument types, and type_ctor of a functor,
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% create a cons_id for that functor.
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%
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:- func make_cons_id(sym_name, list(constructor_arg), type_ctor) = cons_id.
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% Another way of making a cons_id from a functor.
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% Given the name, argument types, and type_ctor of a functor,
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% create a cons_id for that functor.
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%
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% Differs from make_cons_id in that (a) it requires the sym_name
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% to be already module qualified, which means that it does not
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% need the module qualification of the type, (b) it can compute the
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% arity from any list of the right length.
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%
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:- func make_cons_id_from_qualified_sym_name(sym_name, list(_)) = cons_id.
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%-----------------------------------------------------------------------------%
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% make_n_fresh_vars(Name, N, VarSet0, Vars, VarSet):
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% `Vars' is a list of `N' fresh variables allocated from
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% `VarSet0'. The variables will be named "<Name>1", "<Name>2",
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% "<Name>3", and so on, where <Name> is the value of `Name'.
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% `VarSet' is the resulting varset.
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%
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:- pred make_n_fresh_vars(string::in, int::in, list(var(T))::out,
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varset(T)::in, varset(T)::out) is det.
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% Given the list of predicate arguments for a predicate that
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% is really a function, split that list into the function arguments
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% and the function return type.
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%
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:- pred pred_args_to_func_args(list(T)::in, list(T)::out, T::out) is det.
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% Get the last two arguments from the list, failing if there
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% aren't at least two arguments.
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%
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:- pred get_state_args(list(T)::in, list(T)::out, T::out, T::out) is semidet.
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% Get the last two arguments from the list, aborting if there
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% aren't at least two arguments.
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%
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:- pred get_state_args_det(list(T)::in, list(T)::out, T::out, T::out) is det.
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% Parse a term of the form `Head :- Body', treating a term not in that form
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% as `Head :- true'.
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%
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:- pred parse_rule_term(term.context::in, term(T)::in, term(T)::out,
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term(T)::out) is det.
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%-----------------------------------------------------------------------------%
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% Add new type variables for those introduced by a type qualification.
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%
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:- pred get_new_tvars(list(tvar)::in, tvarset::in, tvarset::in, tvarset::out,
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tvar_name_map::in, tvar_name_map::out,
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tvar_renaming::in, tvar_renaming::out) is det.
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%-----------------------------------------------------------------------------%
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% We need to "unparse" the sym_name to construct the properly
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% module qualified term.
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%
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:- func sym_name_and_args_to_term(sym_name, list(term(T)), prog_context) =
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term(T).
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%-----------------------------------------------------------------------------%
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% Convert a list of goals into a conjunction.
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%
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:- func goal_list_to_conj(prog_context, list(goal)) = goal.
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%-----------------------------------------------------------------------------%
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%-----------------------------------------------------------------------------%
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:- implementation.
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:- import_module libs.compiler_util.
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:- import_module parse_tree.mercury_to_mercury.
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:- import_module parse_tree.prog_out.
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:- import_module bool.
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:- import_module int.
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:- import_module map.
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:- import_module pair.
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:- import_module string.
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:- import_module svmap.
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:- import_module varset.
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%-----------------------------------------------------------------------------%
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%-----------------------------------------------------------------------------%
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construct_qualified_term(qualified(Module, Name), Args, Context, Term) :-
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construct_qualified_term(Module, [], Context, ModuleTerm),
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UnqualifiedTerm = term.functor(term.atom(Name), Args, Context),
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Term = term.functor(term.atom("."),
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[ModuleTerm, UnqualifiedTerm], Context).
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construct_qualified_term(unqualified(Name), Args, Context, Term) :-
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Term = term.functor(term.atom(Name), Args, Context).
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construct_qualified_term(SymName, Args, Term) :-
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term.context_init(Context),
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construct_qualified_term(SymName, Args, Context, Term).
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%-----------------------------------------------------------------------------%
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adjust_func_arity(pf_predicate, Arity, Arity).
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adjust_func_arity(pf_function, Arity - 1, Arity).
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%-----------------------------------------------------------------------------%
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%-----------------------------------------------------------------------------%
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split_types_and_modes(TypesAndModes, Types, MaybeModes) :-
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split_types_and_modes_2(TypesAndModes, yes, Types, Modes, Result),
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(
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Result = yes,
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MaybeModes = yes(Modes)
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;
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Result = no,
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MaybeModes = no
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).
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:- pred split_types_and_modes_2(list(type_and_mode)::in, bool::in,
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list(mer_type)::out, list(mer_mode)::out, bool::out) is det.
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% T = type, M = mode, TM = combined type and mode
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split_types_and_modes_2([], Result, [], [], Result).
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split_types_and_modes_2([TM|TMs], Result0, [T|Ts], [M|Ms], Result) :-
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split_type_and_mode(TM, Result0, T, M, Result1),
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split_types_and_modes_2(TMs, Result1, Ts, Ms, Result).
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% If a pred declaration specifies modes for some but not all of the
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% arguments, then the modes are ignored - should this be an error instead?
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% trd: this should never happen because prog_io.m will detect these cases.
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%
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:- pred split_type_and_mode(type_and_mode::in, bool::in,
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mer_type::out, mer_mode::out, bool::out) is det.
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split_type_and_mode(type_only(T), _, T, (free -> free), no).
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split_type_and_mode(type_and_mode(T,M), R, T, M, R).
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split_type_and_mode(type_only(T), T, no).
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split_type_and_mode(type_and_mode(T,M), T, yes(M)).
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%-----------------------------------------------------------------------------%
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rename_in_goal(OldVar, NewVar, Goal0 - Context, Goal - Context) :-
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rename_in_goal_expr(OldVar, NewVar, Goal0, Goal).
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:- pred rename_in_goal_expr(prog_var::in, prog_var::in,
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goal_expr::in, goal_expr::out) is det.
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rename_in_goal_expr(OldVar, NewVar,
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conj_expr(GoalA0, GoalB0),
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conj_expr(GoalA, GoalB)) :-
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rename_in_goal(OldVar, NewVar, GoalA0, GoalA),
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rename_in_goal(OldVar, NewVar, GoalB0, GoalB).
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rename_in_goal_expr(OldVar, NewVar,
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par_conj_expr(GoalA0, GoalB0),
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par_conj_expr(GoalA, GoalB)) :-
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rename_in_goal(OldVar, NewVar, GoalA0, GoalA),
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rename_in_goal(OldVar, NewVar, GoalB0, GoalB).
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rename_in_goal_expr(_OldVar, _NewVar, true_expr, true_expr).
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rename_in_goal_expr(OldVar, NewVar,
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disj_expr(GoalA0, GoalB0),
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disj_expr(GoalA, GoalB)) :-
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rename_in_goal(OldVar, NewVar, GoalA0, GoalA),
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rename_in_goal(OldVar, NewVar, GoalB0, GoalB).
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rename_in_goal_expr(_Var, _NewVar, fail_expr, fail_expr).
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rename_in_goal_expr(OldVar, NewVar, not_expr(Goal0), not_expr(Goal)) :-
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rename_in_goal(OldVar, NewVar, Goal0, Goal).
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rename_in_goal_expr(OldVar, NewVar,
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some_expr(Vars0, Goal0),
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some_expr(Vars, Goal)) :-
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rename_in_vars(OldVar, NewVar, Vars0, Vars),
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rename_in_goal(OldVar, NewVar, Goal0, Goal).
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rename_in_goal_expr(OldVar, NewVar,
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some_state_vars_expr(Vars0, Goal0),
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some_state_vars_expr(Vars, Goal)) :-
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rename_in_vars(OldVar, NewVar, Vars0, Vars),
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rename_in_goal(OldVar, NewVar, Goal0, Goal).
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rename_in_goal_expr(OldVar, NewVar,
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all_expr(Vars0, Goal0),
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all_expr(Vars, Goal)) :-
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rename_in_vars(OldVar, NewVar, Vars0, Vars),
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rename_in_goal(OldVar, NewVar, Goal0, Goal).
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rename_in_goal_expr(OldVar, NewVar,
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all_state_vars_expr(Vars0, Goal0),
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all_state_vars_expr(Vars, Goal)) :-
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rename_in_vars(OldVar, NewVar, Vars0, Vars),
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rename_in_goal(OldVar, NewVar, Goal0, Goal).
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rename_in_goal_expr(OldVar, NewVar,
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promise_purity_expr(Purity, Goal0),
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promise_purity_expr(Purity, Goal)) :-
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rename_in_goal(OldVar, NewVar, Goal0, Goal).
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rename_in_goal_expr(OldVar, NewVar,
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promise_equivalent_solutions_expr(Vars0, DotSVars0, ColonSVars0,
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Goal0),
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promise_equivalent_solutions_expr(Vars, DotSVars, ColonSVars,
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Goal)) :-
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rename_in_vars(OldVar, NewVar, Vars0, Vars),
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rename_in_vars(OldVar, NewVar, DotSVars0, DotSVars),
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rename_in_vars(OldVar, NewVar, ColonSVars0, ColonSVars),
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rename_in_goal(OldVar, NewVar, Goal0, Goal).
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rename_in_goal_expr(OldVar, NewVar,
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promise_equivalent_solution_sets_expr(Vars0, DotSVars0, ColonSVars0,
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Goal0),
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promise_equivalent_solution_sets_expr(Vars, DotSVars, ColonSVars,
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Goal)) :-
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rename_in_vars(OldVar, NewVar, Vars0, Vars),
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rename_in_vars(OldVar, NewVar, DotSVars0, DotSVars),
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rename_in_vars(OldVar, NewVar, ColonSVars0, ColonSVars),
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rename_in_goal(OldVar, NewVar, Goal0, Goal).
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rename_in_goal_expr(OldVar, NewVar,
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promise_equivalent_solution_arbitrary_expr(Vars0,
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DotSVars0, ColonSVars0, Goal0),
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promise_equivalent_solution_arbitrary_expr(Vars,
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DotSVars, ColonSVars, Goal)) :-
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rename_in_vars(OldVar, NewVar, Vars0, Vars),
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rename_in_vars(OldVar, NewVar, DotSVars0, DotSVars),
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rename_in_vars(OldVar, NewVar, ColonSVars0, ColonSVars),
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rename_in_goal(OldVar, NewVar, Goal0, Goal).
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rename_in_goal_expr(OldVar, NewVar,
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trace_expr(CompileTime, RunTime, MaybeIO0, Mutables0, Goal0),
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trace_expr(CompileTime, RunTime, MaybeIO, Mutables, Goal)) :-
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(
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MaybeIO0 = no,
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MaybeIO = no
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;
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MaybeIO0 = yes(IOStateVar0),
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rename_in_var(OldVar, NewVar, IOStateVar0, IOStateVar),
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MaybeIO = yes(IOStateVar)
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),
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list.map(rename_in_trace_mutable_var(OldVar, NewVar),
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Mutables0, Mutables),
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rename_in_goal(OldVar, NewVar, Goal0, Goal).
|
|
rename_in_goal_expr(OldVar, NewVar,
|
|
atomic_expr(InVars0, OutVars0, MaybeVars0, MainExpr0, OrElseExpr0),
|
|
atomic_expr(InVars, OutVars, MaybeVars, MainExpr, OrElseExpr)) :-
|
|
rename_in_atomic_varlist(OldVar, NewVar, InVars0, InVars),
|
|
rename_in_atomic_varlist(OldVar, NewVar, OutVars0, OutVars),
|
|
(
|
|
MaybeVars0 = no,
|
|
MaybeVars = no
|
|
;
|
|
MaybeVars0 = yes(TransVars0),
|
|
list.map(rename_in_var(OldVar, NewVar),
|
|
TransVars0, TransVars),
|
|
MaybeVars = yes(TransVars)
|
|
),
|
|
rename_in_goal(OldVar, NewVar, MainExpr0, MainExpr),
|
|
list.map(rename_in_goal(OldVar, NewVar), OrElseExpr0, OrElseExpr).
|
|
rename_in_goal_expr(OldVar, NewVar,
|
|
try_expr(MaybeIO0, SubGoal0, Then0, MaybeElse0, Catches0,
|
|
MaybeCatchAny0),
|
|
try_expr(MaybeIO, SubGoal, Then, MaybeElse, Catches, MaybeCatchAny)) :-
|
|
rename_in_maybe_var(OldVar, NewVar, MaybeIO0, MaybeIO),
|
|
rename_in_goal(OldVar, NewVar, SubGoal0, SubGoal),
|
|
rename_in_goal(OldVar, NewVar, Then0, Then),
|
|
(
|
|
MaybeElse0 = yes(Else0),
|
|
rename_in_goal(OldVar, NewVar, Else0, Else),
|
|
MaybeElse = yes(Else)
|
|
;
|
|
MaybeElse0 = no,
|
|
MaybeElse = no
|
|
),
|
|
list.map(rename_in_catch_expr(OldVar, NewVar), Catches0, Catches),
|
|
(
|
|
MaybeCatchAny0 = yes(catch_any_expr(CatchAnyVar0, CatchAnyGoal0)),
|
|
rename_in_var(OldVar, NewVar, CatchAnyVar0, CatchAnyVar),
|
|
rename_in_goal(OldVar, NewVar, CatchAnyGoal0, CatchAnyGoal),
|
|
MaybeCatchAny = yes(catch_any_expr(CatchAnyVar, CatchAnyGoal))
|
|
;
|
|
MaybeCatchAny0 = no,
|
|
MaybeCatchAny = no
|
|
).
|
|
rename_in_goal_expr(OldVar, NewVar,
|
|
implies_expr(GoalA0, GoalB0),
|
|
implies_expr(GoalA, GoalB)) :-
|
|
rename_in_goal(OldVar, NewVar, GoalA0, GoalA),
|
|
rename_in_goal(OldVar, NewVar, GoalB0, GoalB).
|
|
rename_in_goal_expr(OldVar, NewVar,
|
|
equivalent_expr(GoalA0, GoalB0),
|
|
equivalent_expr(GoalA, GoalB)) :-
|
|
rename_in_goal(OldVar, NewVar, GoalA0, GoalA),
|
|
rename_in_goal(OldVar, NewVar, GoalB0, GoalB).
|
|
rename_in_goal_expr(OldVar, NewVar,
|
|
if_then_else_expr(Vars0, StateVars0, Cond0, Then0, Else0),
|
|
if_then_else_expr(Vars, StateVars, Cond, Then, Else)) :-
|
|
rename_in_vars(OldVar, NewVar, Vars0, Vars),
|
|
rename_in_vars(OldVar, NewVar, StateVars0, StateVars),
|
|
rename_in_goal(OldVar, NewVar, Cond0, Cond),
|
|
rename_in_goal(OldVar, NewVar, Then0, Then),
|
|
rename_in_goal(OldVar, NewVar, Else0, Else).
|
|
rename_in_goal_expr(OldVar, NewVar,
|
|
event_expr(Name, Terms0),
|
|
event_expr(Name, Terms)) :-
|
|
term.substitute_list(Terms0, OldVar, variable(NewVar, context_init), Terms).
|
|
rename_in_goal_expr(OldVar, NewVar,
|
|
call_expr(SymName, Terms0, Purity),
|
|
call_expr(SymName, Terms, Purity)) :-
|
|
term.substitute_list(Terms0, OldVar, variable(NewVar, context_init), Terms).
|
|
rename_in_goal_expr(OldVar, NewVar,
|
|
unify_expr(TermA0, TermB0, Purity),
|
|
unify_expr(TermA, TermB, Purity)) :-
|
|
term.substitute(TermA0, OldVar, term.variable(NewVar, context_init), TermA),
|
|
term.substitute(TermB0, OldVar, term.variable(NewVar, context_init), TermB).
|
|
|
|
:- pred rename_in_atomic_varlist(prog_var::in, prog_var::in,
|
|
atomic_component_state::in, atomic_component_state::out) is det.
|
|
|
|
rename_in_atomic_varlist(OldVar, NewVar, Comp0, Comp) :-
|
|
(
|
|
Comp0 = atomic_state_var(SVar0),
|
|
rename_in_var(OldVar, NewVar, SVar0, SVar),
|
|
Comp = atomic_state_var(SVar)
|
|
;
|
|
Comp0 = atomic_var_pair(IVar0, OVar0),
|
|
rename_in_var(OldVar, NewVar, IVar0, IVar),
|
|
rename_in_var(OldVar, NewVar, OVar0, OVar),
|
|
Comp = atomic_var_pair(IVar, OVar)
|
|
).
|
|
|
|
:- pred rename_in_trace_mutable_var(prog_var::in, prog_var::in,
|
|
trace_mutable_var::in, trace_mutable_var::out) is det.
|
|
|
|
rename_in_trace_mutable_var(OldVar, NewVar, TMV0, TMV) :-
|
|
TMV0 = trace_mutable_var(MutableName, StateVar0),
|
|
rename_in_var(OldVar, NewVar, StateVar0, StateVar),
|
|
TMV = trace_mutable_var(MutableName, StateVar).
|
|
|
|
:- pred rename_in_vars(prog_var::in, prog_var::in,
|
|
list(prog_var)::in, list(prog_var)::out) is det.
|
|
|
|
rename_in_vars(_, _, [], []).
|
|
rename_in_vars(OldVar, NewVar, [Var0 | Vars0], [Var | Vars]) :-
|
|
rename_in_var(OldVar, NewVar, Var0, Var),
|
|
rename_in_vars(OldVar, NewVar, Vars0, Vars).
|
|
|
|
:- pred rename_in_var(prog_var::in, prog_var::in,
|
|
prog_var::in, prog_var::out) is det.
|
|
|
|
rename_in_var(OldVar, NewVar, Var0, Var) :-
|
|
( Var0 = OldVar ->
|
|
Var = NewVar
|
|
;
|
|
Var = Var0
|
|
).
|
|
|
|
:- pred rename_in_maybe_var(prog_var::in, prog_var::in,
|
|
maybe(prog_var)::in, maybe(prog_var)::out) is det.
|
|
|
|
rename_in_maybe_var(OldVar, NewVar, MaybeVar0, MaybeVar) :-
|
|
(
|
|
MaybeVar0 = yes(Var0),
|
|
rename_in_var(OldVar, NewVar, Var0, Var),
|
|
MaybeVar = yes(Var)
|
|
;
|
|
MaybeVar0 = no,
|
|
MaybeVar = no
|
|
).
|
|
|
|
:- pred rename_in_catch_expr(prog_var::in, prog_var::in,
|
|
catch_expr::in, catch_expr::out) is det.
|
|
|
|
rename_in_catch_expr(OldVar, NewVar, Catch0, Catch) :-
|
|
Catch0 = catch_expr(Term0, Goal0),
|
|
term.substitute(Term0, OldVar, term.variable(NewVar, context_init), Term),
|
|
rename_in_goal(OldVar, NewVar, Goal0, Goal),
|
|
Catch = catch_expr(Term, Goal).
|
|
|
|
%-----------------------------------------------------------------------------%
|
|
|
|
make_pred_name_with_context(ModuleName, Prefix,
|
|
PredOrFunc, PredName, Line, Counter, SymName) :-
|
|
make_pred_name(ModuleName, Prefix, yes(PredOrFunc), PredName,
|
|
newpred_counter(Line, Counter), SymName).
|
|
|
|
make_pred_name(ModuleName, Prefix, MaybePredOrFunc, PredName,
|
|
NewPredId, SymName) :-
|
|
(
|
|
MaybePredOrFunc = yes(PredOrFunc),
|
|
PFS = pred_or_func_to_str(PredOrFunc)
|
|
;
|
|
MaybePredOrFunc = no,
|
|
PFS = "pred_or_func"
|
|
),
|
|
(
|
|
NewPredId = newpred_counter(Line, Counter),
|
|
string.format("%d__%d", [i(Line), i(Counter)], PredIdStr)
|
|
;
|
|
NewPredId = newpred_type_subst(VarSet, TypeSubst),
|
|
SubstToString = (pred(SubstElem::in, SubstStr::out) is det :-
|
|
SubstElem = Var - Type,
|
|
varset.lookup_name(VarSet, Var, VarName),
|
|
TypeString = mercury_type_to_string(VarSet, no, Type),
|
|
string.append_list([VarName, " = ", TypeString], SubstStr)
|
|
),
|
|
list_to_string(SubstToString, TypeSubst, PredIdStr)
|
|
;
|
|
( NewPredId = newpred_unused_args(Args)
|
|
; NewPredId = newpred_parallel_args(Args)
|
|
),
|
|
list_to_string(int_to_string, Args, PredIdStr)
|
|
;
|
|
NewPredId = newpred_structure_reuse(ModeNum, Args),
|
|
int_to_string(ModeNum, ModeStr),
|
|
list_to_string(int_to_string, Args, ArgsStr),
|
|
PredIdStr = ModeStr ++ "__" ++ ArgsStr
|
|
;
|
|
NewPredId = newpred_distance_granularity(Distance),
|
|
int_to_string(Distance, PredIdStr)
|
|
),
|
|
|
|
string.format("%s__%s__%s__%s",
|
|
[s(Prefix), s(PFS), s(PredName), s(PredIdStr)], Name),
|
|
SymName = qualified(ModuleName, Name).
|
|
|
|
:- pred list_to_string(pred(T, string)::in(pred(in, out) is det),
|
|
list(T)::in, string::out) is det.
|
|
|
|
list_to_string(Pred, List, String) :-
|
|
list_to_string_2(Pred, List, ["]"], Strings),
|
|
string.append_list(["[" | Strings], String).
|
|
|
|
:- pred list_to_string_2(pred(T, string)::in(pred(in, out) is det),
|
|
list(T)::in, list(string)::in, list(string)::out) is det.
|
|
|
|
list_to_string_2(_, [], !Strings).
|
|
list_to_string_2(Pred, [T | Ts], !Strings) :-
|
|
(
|
|
Ts = []
|
|
;
|
|
Ts = [_ | _],
|
|
list_to_string_2(Pred, Ts, !Strings),
|
|
!:Strings = [", " | !.Strings]
|
|
),
|
|
call(Pred, T, String),
|
|
!:Strings = [String | !.Strings].
|
|
|
|
%-----------------------------------------------------------------------------%
|
|
|
|
cons_id_and_args_to_term(int_const(Int), [], Term) :-
|
|
term.context_init(Context),
|
|
Term = term.functor(term.integer(Int), [], Context).
|
|
cons_id_and_args_to_term(float_const(Float), [], Term) :-
|
|
term.context_init(Context),
|
|
Term = term.functor(term.float(Float), [], Context).
|
|
cons_id_and_args_to_term(string_const(String), [], Term) :-
|
|
term.context_init(Context),
|
|
Term = term.functor(term.string(String), [], Context).
|
|
cons_id_and_args_to_term(cons(SymName, _Arity), Args, Term) :-
|
|
construct_qualified_term(SymName, Args, Term).
|
|
|
|
cons_id_arity(cons(_, Arity)) = Arity.
|
|
cons_id_arity(int_const(_)) = 0.
|
|
cons_id_arity(string_const(_)) = 0.
|
|
cons_id_arity(float_const(_)) = 0.
|
|
cons_id_arity(implementation_defined_const(_)) = 0.
|
|
cons_id_arity(pred_const(_, _)) =
|
|
unexpected(this_file, "cons_id_arity: can't get arity of pred_const").
|
|
cons_id_arity(type_ctor_info_const(_, _, _)) =
|
|
unexpected(this_file,
|
|
"cons_id_arity: can't get arity of type_ctor_info_const").
|
|
cons_id_arity(base_typeclass_info_const(_, _, _, _)) =
|
|
unexpected(this_file, "cons_id_arity: " ++
|
|
"can't get arity of base_typeclass_info_const").
|
|
cons_id_arity(type_info_cell_constructor(_)) =
|
|
unexpected(this_file, "cons_id_arity: " ++
|
|
"can't get arity of type_info_cell_constructor").
|
|
cons_id_arity(typeclass_info_cell_constructor) =
|
|
unexpected(this_file, "cons_id_arity: " ++
|
|
"can't get arity of typeclass_info_cell_constructor").
|
|
cons_id_arity(tabling_info_const(_)) =
|
|
unexpected(this_file,
|
|
"cons_id_arity: can't get arity of tabling_info_const").
|
|
cons_id_arity(deep_profiling_proc_layout(_)) =
|
|
unexpected(this_file, "cons_id_arity: " ++
|
|
"can't get arity of deep_profiling_proc_layout").
|
|
cons_id_arity(table_io_decl(_)) =
|
|
unexpected(this_file, "cons_id_arity: can't get arity of table_io_decl").
|
|
|
|
cons_id_maybe_arity(cons(_, Arity)) = yes(Arity).
|
|
cons_id_maybe_arity(int_const(_)) = yes(0).
|
|
cons_id_maybe_arity(string_const(_)) = yes(0).
|
|
cons_id_maybe_arity(float_const(_)) = yes(0).
|
|
cons_id_maybe_arity(implementation_defined_const(_)) = yes(0).
|
|
cons_id_maybe_arity(pred_const(_, _)) = no.
|
|
cons_id_maybe_arity(type_ctor_info_const(_, _, _)) = no.
|
|
cons_id_maybe_arity(base_typeclass_info_const(_, _, _, _)) = no.
|
|
cons_id_maybe_arity(type_info_cell_constructor(_)) = no.
|
|
cons_id_maybe_arity(typeclass_info_cell_constructor) = no.
|
|
cons_id_maybe_arity(tabling_info_const(_)) = no.
|
|
cons_id_maybe_arity(deep_profiling_proc_layout(_)) = no.
|
|
cons_id_maybe_arity(table_io_decl(_)) = no.
|
|
|
|
make_functor_cons_id(term.atom(Name), Arity) = cons(unqualified(Name), Arity).
|
|
make_functor_cons_id(term.integer(Int), _) = int_const(Int).
|
|
make_functor_cons_id(term.string(String), _) = string_const(String).
|
|
make_functor_cons_id(term.float(Float), _) = float_const(Float).
|
|
make_functor_cons_id(term.implementation_defined(Name), _) =
|
|
implementation_defined_const(Name).
|
|
|
|
make_cons_id(SymName0, Args, TypeCtor) = cons(SymName, Arity) :-
|
|
% Use the module qualifier on the SymName, if there is one,
|
|
% otherwise use the module qualifier on the Type, if there is one,
|
|
% otherwise leave it unqualified.
|
|
% XXX is that the right thing to do?
|
|
(
|
|
SymName0 = qualified(_, _),
|
|
SymName = SymName0
|
|
;
|
|
SymName0 = unqualified(ConsName),
|
|
(
|
|
TypeCtor = type_ctor(unqualified(_), _),
|
|
SymName = SymName0
|
|
;
|
|
TypeCtor = type_ctor(qualified(TypeModule, _), _),
|
|
SymName = qualified(TypeModule, ConsName)
|
|
)
|
|
),
|
|
list.length(Args, Arity).
|
|
|
|
make_cons_id_from_qualified_sym_name(SymName, Args) = cons(SymName, Arity) :-
|
|
list.length(Args, Arity).
|
|
|
|
%-----------------------------------------------------------------------------%
|
|
|
|
make_n_fresh_vars(BaseName, N, Vars, VarSet0, VarSet) :-
|
|
make_n_fresh_vars_2(BaseName, 0, N, Vars, VarSet0, VarSet).
|
|
|
|
:- pred make_n_fresh_vars_2(string::in, int::in, int::in, list(var(T))::out,
|
|
varset(T)::in, varset(T)::out) is det.
|
|
|
|
make_n_fresh_vars_2(BaseName, N, Max, Vars, !VarSet) :-
|
|
( N = Max ->
|
|
Vars = []
|
|
;
|
|
N1 = N + 1,
|
|
varset.new_var(!.VarSet, Var, !:VarSet),
|
|
string.int_to_string(N1, Num),
|
|
string.append(BaseName, Num, VarName),
|
|
varset.name_var(!.VarSet, Var, VarName, !:VarSet),
|
|
Vars = [Var | Vars1],
|
|
make_n_fresh_vars_2(BaseName, N1, Max, Vars1, !VarSet)
|
|
).
|
|
|
|
pred_args_to_func_args(PredArgs, FuncArgs, FuncReturn) :-
|
|
list.length(PredArgs, NumPredArgs),
|
|
NumFuncArgs = NumPredArgs - 1,
|
|
( list.split_list(NumFuncArgs, PredArgs, FuncArgs0, [FuncReturn0]) ->
|
|
FuncArgs = FuncArgs0,
|
|
FuncReturn = FuncReturn0
|
|
;
|
|
unexpected(this_file,
|
|
"pred_args_to_func_args: function missing return value?")
|
|
).
|
|
|
|
get_state_args(Args0, Args, State0, State) :-
|
|
list.reverse(Args0, RevArgs0),
|
|
RevArgs0 = [State, State0 | RevArgs],
|
|
list.reverse(RevArgs, Args).
|
|
|
|
get_state_args_det(Args0, Args, State0, State) :-
|
|
( get_state_args(Args0, Args1, State0A, StateA) ->
|
|
Args = Args1,
|
|
State0 = State0A,
|
|
State = StateA
|
|
;
|
|
unexpected(this_file, "get_state_args_det")
|
|
).
|
|
|
|
%-----------------------------------------------------------------------------%
|
|
|
|
parse_rule_term(Context, RuleTerm, HeadTerm, GoalTerm) :-
|
|
( RuleTerm = term.functor(term.atom(":-"), [HeadTerm0, GoalTerm0], _) ->
|
|
HeadTerm = HeadTerm0,
|
|
GoalTerm = GoalTerm0
|
|
;
|
|
HeadTerm = RuleTerm,
|
|
GoalTerm = term.functor(term.atom("true"), [], Context)
|
|
).
|
|
|
|
get_new_tvars([], _, !TVarSet, !TVarNameMap, !TVarRenaming).
|
|
get_new_tvars([TVar | TVars], VarSet, !TVarSet, !TVarNameMap, !TVarRenaming) :-
|
|
( map.contains(!.TVarRenaming, TVar) ->
|
|
true
|
|
;
|
|
( varset.search_name(VarSet, TVar, TVarName) ->
|
|
( map.search(!.TVarNameMap, TVarName, TVarSetVar) ->
|
|
svmap.det_insert(TVar, TVarSetVar, !TVarRenaming)
|
|
;
|
|
varset.new_var(!.TVarSet, NewTVar, !:TVarSet),
|
|
varset.name_var(!.TVarSet, NewTVar, TVarName, !:TVarSet),
|
|
svmap.det_insert(TVarName, NewTVar, !TVarNameMap),
|
|
svmap.det_insert(TVar, NewTVar, !TVarRenaming)
|
|
)
|
|
;
|
|
varset.new_var(!.TVarSet, NewTVar, !:TVarSet),
|
|
svmap.det_insert(TVar, NewTVar, !TVarRenaming)
|
|
)
|
|
),
|
|
get_new_tvars(TVars, VarSet, !TVarSet, !TVarNameMap, !TVarRenaming).
|
|
|
|
%-----------------------------------------------------------------------------%
|
|
|
|
sym_name_and_args_to_term(unqualified(Name), Xs, Context) =
|
|
term.functor(term.atom(Name), Xs, Context).
|
|
|
|
sym_name_and_args_to_term(qualified(ModuleNames, Name), Xs, Context) =
|
|
sym_name_and_term_to_term(ModuleNames,
|
|
term.functor(term.atom(Name), Xs, Context), Context).
|
|
|
|
:- func sym_name_and_term_to_term(module_specifier, term(T), prog_context) =
|
|
term(T).
|
|
|
|
sym_name_and_term_to_term(unqualified(ModuleName), Term, Context) =
|
|
term.functor(
|
|
term.atom("."),
|
|
[term.functor(term.atom(ModuleName), [], Context), Term],
|
|
Context
|
|
).
|
|
sym_name_and_term_to_term(qualified(ModuleNames, ModuleName), Term, Context) =
|
|
term.functor(
|
|
term.atom("."),
|
|
[sym_name_and_term_to_term(
|
|
ModuleNames,
|
|
term.functor(term.atom(ModuleName), [], Context),
|
|
Context),
|
|
Term],
|
|
Context
|
|
).
|
|
|
|
%-----------------------------------------------------------------------------%
|
|
|
|
goal_list_to_conj(Context, []) = true_expr - Context.
|
|
goal_list_to_conj(Context, [Goal | Goals]) =
|
|
goal_list_to_conj_2(Context, Goal, Goals).
|
|
|
|
:- func goal_list_to_conj_2(prog_context, goal, list(goal)) = goal.
|
|
|
|
goal_list_to_conj_2(_, Goal, []) = Goal.
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goal_list_to_conj_2(Context, Goal0, [Goal1 | Goals]) =
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conj_expr(Goal0, goal_list_to_conj_2(Context, Goal1, Goals)) - Context.
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%-----------------------------------------------------------------------------%
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:- func this_file = string.
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this_file = "prog_util.m".
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%-----------------------------------------------------------------------------%
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:- end_module prog_util.
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%-----------------------------------------------------------------------------%
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