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Branches: main
Fix the failure of the tabling/unused_args test case in grade hlc.gc. The root
cause of the failure was that the MLDS backend used the same template for
generating code for foreign_procs with determinism failure as it did for
foreign_procs with determinism semidet and cc_multi. The former aren't
supposed to assign to SUCCESS_INDICATOR, since their success is not in doubt,
but the code template assumed they did, and tested the value of this undefined
variable.
The manifestation of this error was that the predicate mark_as_failed in
table_builtin.m had an undefined success value.
Also, improve performance by passing foreign types as Mercury types if they
have the can_pass_as_mercury_type assertion.
compiler/ml_code_gen.m:
Fix this error for the MLDS C backend, and put a XXX next to the
relevant code for the other MLDS backends.
Pass foreign types with the can_pass_as_mercury_type assertion as
Mercury types.
compiler/foreign.m:
In the data structure recording information about foreign types,
record not only their names but also the assertions about them.
Return this extra information in the outputs of the relevant
predicates, for use in ml_code_gen.m.
Remove module qualifications from predicate names, since the
inconsistencies between predicate declarations and definitions
(some had module qualifications, some didn't) were confusing mtags.
compiler/export.m:
Minor diffs to conform to the changed interface of foreign.m.
tests/tabling/unused_argument.{m,exp}*:
Make this test case tougher by testing not just unused arguments,
but also a tabled predicate without inputs (which are handled specially
in table_gen.m).
744 lines
24 KiB
Mathematica
744 lines
24 KiB
Mathematica
%-----------------------------------------------------------------------------%)
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% Copyright (C) 1996-2004 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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% This module defines predicates to produce the functions which are
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% exported to a foreign language via a `pragma export' declaration.
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% Note: any changes here might also require similar changes to the handling
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% of `pragma import' declarations, which are handled in make_hlds.m.
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% Main authors: dgj.
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%-----------------------------------------------------------------------------%
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:- module backend_libs__export.
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:- interface.
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:- import_module backend_libs__foreign.
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:- import_module hlds__hlds_module.
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:- import_module parse_tree__prog_data.
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:- import_module io.
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% From the module_info, get a list of foreign_export_decls,
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% each of which holds information about the declaration
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% of a foreign function named in a `pragma export' declaration,
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% which is used to allow a call to be made to a Mercury
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% procedure from the foreign language.
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:- pred export__get_foreign_export_decls(module_info::in,
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foreign_export_decls::out) is det.
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% From the module_info, get a list of foreign_export_defns,
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% each of which is a string containing the foreign code
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% for defining a foreign function named in a `pragma export' decl.
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:- pred export__get_foreign_export_defns(module_info::in,
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foreign_export_defns::out) is det.
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% Produce an interface file containing declarations for the
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% exported foreign functions (if required in this foreign
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% language).
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:- pred export__produce_header_file(foreign_export_decls::in, module_name::in,
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io::di, io::uo) is det.
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%-----------------------------------------------------------------------------%
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% Utilities for generating C code which interfaces with Mercury.
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% The {MLDS,LLDS}->C backends and fact tables use this code.
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% Generate C code to convert an rval (represented as a string), from
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% a C type to a mercury C type (ie. convert strings and floats to
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% words) and return the resulting C code as a string.
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:- pred convert_type_to_mercury(string::in, (type)::in, string::out) is det.
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% Generate C code to convert an rval (represented as a string), from
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% a mercury C type to a C type. (ie. convert words to strings and
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% floats if required) and return the resulting C code as a string.
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:- pred convert_type_from_mercury(string::in, (type)::in, string::out) is det.
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% Succeeds iff the given C type is known by the compiler to be
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% an integer or pointer type the same size as MR_Word.
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:- pred c_type_is_word_sized_int_or_ptr(string::in) is semidet.
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%-----------------------------------------------------------------------------%
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%-----------------------------------------------------------------------------%
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:- implementation.
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:- import_module backend_libs__c_util.
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:- import_module backend_libs__foreign.
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:- import_module backend_libs__name_mangle.
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:- import_module backend_libs__proc_label.
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:- import_module check_hlds__type_util.
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:- import_module hlds__arg_info.
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:- import_module hlds__code_model.
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:- import_module hlds__hlds_pred.
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:- import_module libs__globals.
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:- import_module libs__options.
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:- import_module parse_tree__error_util.
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:- import_module parse_tree__modules.
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:- import_module parse_tree__prog_util.
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:- import_module term, varset.
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:- import_module library, map, int, string, std_util, assoc_list, require.
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:- import_module list, bool.
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%-----------------------------------------------------------------------------%
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export__get_foreign_export_decls(HLDS, ForeignExportDecls) :-
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module_info_get_predicate_table(HLDS, PredicateTable),
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predicate_table_get_preds(PredicateTable, Preds),
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module_info_get_foreign_decl(HLDS, RevForeignDecls),
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ForeignDecls = list__reverse(RevForeignDecls),
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module_info_get_pragma_exported_procs(HLDS, ExportedProcs),
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module_info_globals(HLDS, Globals),
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export__get_foreign_export_decls_2(Preds, ExportedProcs, Globals,
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HLDS, C_ExportDecls),
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ForeignExportDecls = foreign_export_decls(ForeignDecls, C_ExportDecls).
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:- pred export__get_foreign_export_decls_2(pred_table::in,
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list(pragma_exported_proc)::in, globals::in, module_info::in,
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list(foreign_export_decl)::out) is det.
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export__get_foreign_export_decls_2(_Preds, [], _, _, []).
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export__get_foreign_export_decls_2(Preds, [E | ExportedProcs], Globals, Module,
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C_ExportDecls) :-
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E = pragma_exported_proc(PredId, ProcId, C_Function, _Ctxt),
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get_export_info(Preds, PredId, ProcId, Globals, Module, _HowToDeclare,
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C_RetType, _DeclareReturnVal, _FailureAction, _SuccessAction,
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HeadArgInfoTypes),
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get_argument_declarations(HeadArgInfoTypes, no, Module, ArgDecls),
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C_ExportDecl = foreign_export_decl(c, C_RetType, C_Function, ArgDecls),
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export__get_foreign_export_decls_2(Preds, ExportedProcs, Globals,
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Module, C_ExportDecls0),
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C_ExportDecls = [C_ExportDecl | C_ExportDecls0].
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%-----------------------------------------------------------------------------%
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export__get_foreign_export_defns(Module, ExportedProcsCode) :-
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module_info_get_pragma_exported_procs(Module, ExportedProcs),
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module_info_get_predicate_table(Module, PredicateTable),
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predicate_table_get_preds(PredicateTable, Preds),
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export__to_c(Preds, ExportedProcs, Module, ExportedProcsCode).
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% For each exported procedure, produce a C function.
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% The code we generate is in the form
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%
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% MR_declare_entry(<label of called proc>); /* or MR_declare_static */
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%
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% #if SEMIDET
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% MR_bool
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% #elif FUNCTION
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% MR_Word
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% #else
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% void
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% #endif
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% <function name>(MR_Word Mercury__Argument1,
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% MR_Word *Mercury__Argument2...)
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% /* Word for input, Word* for output */
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% {
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% #if MR_NUM_REAL_REGS > 0
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% MR_Word c_regs[MR_NUM_REAL_REGS];
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% #endif
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% #if FUNCTION
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% MR_Word retval;
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% #endif
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% #if MR_THREAD_SAFE
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% MR_bool must_finalize_engine;
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% #endif
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% #if MR_DEEP_PROFILING
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% MR_CallSiteDynamic *saved_call_site_addr
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% = MR_current_callback_site;
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% MR_CallSiteDynamic *saved_csd;
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% #endif
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%
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% /* save the registers that our C caller may be using */
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% MR_save_regs_to_mem(c_regs);
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%
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% /*
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% ** start a new Mercury engine inside this POSIX
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% ** thread, if necessary (the C code may be
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% ** multi-threaded itself).
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% */
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%
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% #if MR_THREAD_SAFE
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% must_finalize_engine = MR_init_thread(MR_use_now);
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% #endif
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%
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% #if MR_DEEP_PROFILING
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% saved_csd = MR_current_call_site_dynamic;
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% MR_setup_callback(MR_ENTRY(<label of called proc>));
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% #endif
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% /*
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% ** restore Mercury's registers that were saved as
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% ** we entered C from Mercury. For single threaded
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% ** programs the process must always start in Mercury
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% ** so that we can MR_init_engine() etc. For
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% ** multi-threaded MR_init_thread (above) takes care
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% ** of making a new engine if required.
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% */
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% MR_restore_registers();
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% <copy input arguments from Mercury__Arguments into registers>
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% /* save the registers which may be clobbered */
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% /* by the C function call MR_call_engine(). */
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% MR_save_transient_registers();
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%
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% (void) MR_call_engine(MR_ENTRY(<label of called proc>),
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% MR_FALSE);
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%
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% /* restore the registers which may have been */
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% /* clobbered by the return from the C function */
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% /* MR_call_engine() */
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% MR_restore_transient_registers();
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% #if MR_DEEP_PROFILING
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% MR_current_call_site_dynamic = saved_csd;
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% MR_current_callback_site = saved_call_site_addr;
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% #endif
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% #if SEMIDET
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% if (!MR_r1) {
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% MR_restore_regs_from_mem(c_regs);
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% return MR_FALSE;
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% }
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% #elif FUNCTION
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% <copy return value register into retval>
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% #endif
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% <copy output args from registers into *Mercury__Arguments>
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% #if MR_THREAD_SAFE
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% if (must_finalize_engine) {
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% MR_finalize_thread_engine();
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% }
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% #endif
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% MR_restore_regs_from_mem(c_regs);
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% #if SEMIDET
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% return MR_TRUE;
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% #elif FUNCTION
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% return retval;
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% #endif
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% }
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:- pred export__to_c(pred_table::in, list(pragma_exported_proc)::in,
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module_info::in, list(string)::out) is det.
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export__to_c(_Preds, [], _Module, []).
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export__to_c(Preds, [E|ExportedProcs], Module, ExportedProcsCode) :-
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E = pragma_exported_proc(PredId, ProcId, C_Function, _Ctxt),
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module_info_globals(Module, Globals),
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get_export_info(Preds, PredId, ProcId, Globals, Module, DeclareString,
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C_RetType, MaybeDeclareRetval, MaybeFail, MaybeSucceed,
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ArgInfoTypes),
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get_argument_declarations(ArgInfoTypes, yes, Module, ArgDecls),
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% work out which arguments are input, and which are output,
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% and copy to/from the mercury registers.
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get_input_args(ArgInfoTypes, 0, Module, InputArgs),
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copy_output_args(ArgInfoTypes, 0, Module, OutputArgs),
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ProcLabel = make_proc_label(Module, PredId, ProcId),
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ProcLabelString = proc_label_to_c_string(ProcLabel, yes),
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string__append_list([
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"\n",
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DeclareString, "(", ProcLabelString, ");\n",
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"\n",
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C_RetType, "\n",
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C_Function, "(", ArgDecls, ")\n{\n",
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"#if MR_NUM_REAL_REGS > 0\n",
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"\tMR_Word c_regs[MR_NUM_REAL_REGS];\n",
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"#endif\n",
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"#if MR_THREAD_SAFE\n",
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"\tMR_bool must_finalize_engine;\n",
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"#endif\n",
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"#if MR_DEEP_PROFILING\n",
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"\tMR_CallSiteDynList **saved_cur_callback;\n",
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"\tMR_CallSiteDynamic *saved_cur_csd;\n",
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"#endif\n",
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MaybeDeclareRetval,
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"\n",
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"\tMR_save_regs_to_mem(c_regs);\n",
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"#if MR_THREAD_SAFE\n",
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"\tmust_finalize_engine = MR_init_thread(MR_use_now);\n",
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"#endif\n",
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"#if MR_DEEP_PROFILING\n",
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"\tsaved_cur_callback = MR_current_callback_site;\n",
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"\tsaved_cur_csd = MR_current_call_site_dynamic;\n",
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"\tMR_setup_callback(MR_ENTRY(", ProcLabelString, "));\n",
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"#endif\n",
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"\tMR_restore_registers();\n",
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InputArgs,
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"\tMR_save_transient_registers();\n",
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"\t(void) MR_call_engine(MR_ENTRY(",
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ProcLabelString, "), MR_FALSE);\n",
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"\tMR_restore_transient_registers();\n",
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"#if MR_DEEP_PROFILING\n",
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"\tMR_current_call_site_dynamic = saved_cur_csd;\n",
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"\tMR_current_callback_site = saved_cur_callback;\n",
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"#endif\n",
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MaybeFail,
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OutputArgs,
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"#if MR_THREAD_SAFE\n",
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"\tif (must_finalize_engine) {\n",
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"\t\t MR_finalize_thread_engine();\n",
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"\t}\n",
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"#endif\n",
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"\tMR_restore_regs_from_mem(c_regs);\n",
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MaybeSucceed,
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"}\n\n"],
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Code),
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export__to_c(Preds, ExportedProcs, Module, TheRest),
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ExportedProcsCode = [Code|TheRest].
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% get_export_info(Preds, PredId, ProcId, Globals, DeclareString,
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% C_RetType, MaybeDeclareRetval, MaybeFail, MaybeSuccess,
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% ArgInfoTypes):
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% For a given procedure, figure out the information about
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% that procedure that is needed to export it:
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% - how to declare the procedure's entry label,
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% - the C return type, and the C declaration for the variable
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% holding the return value (if any),
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% - the actions on success and failure, and
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% - the argument locations/modes/types.
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:- pred get_export_info(pred_table::in, pred_id::in, proc_id::in, globals::in,
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module_info::in, string::out, string::out, string::out, string::out,
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string::out, assoc_list(arg_info, type)::out) is det.
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get_export_info(Preds, PredId, ProcId, Globals, Module,
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HowToDeclareLabel, C_RetType, MaybeDeclareRetval,
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MaybeFail, MaybeSucceed, ArgInfoTypes) :-
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map__lookup(Preds, PredId, PredInfo),
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pred_info_import_status(PredInfo, Status),
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(
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( procedure_is_exported(Module, PredInfo, ProcId)
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; status_defined_in_this_module(Status, no)
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% for --split-c-files, we need to treat
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% all procedures as if they were exported
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; globals__lookup_bool_option(Globals, split_c_files, yes)
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)
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->
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HowToDeclareLabel = "MR_declare_entry"
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;
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HowToDeclareLabel = "MR_declare_static"
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),
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PredOrFunc = pred_info_is_pred_or_func(PredInfo),
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pred_info_procedures(PredInfo, ProcTable),
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map__lookup(ProcTable, ProcId, ProcInfo),
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proc_info_maybe_arg_info(ProcInfo, MaybeArgInfos),
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pred_info_arg_types(PredInfo, ArgTypes),
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( MaybeArgInfos = yes(ArgInfos0) ->
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ArgInfos = ArgInfos0
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;
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generate_proc_arg_info(ArgTypes, Module,
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ProcInfo, NewProcInfo),
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proc_info_arg_info(NewProcInfo, ArgInfos)
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),
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proc_info_interface_code_model(ProcInfo, CodeModel),
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assoc_list__from_corresponding_lists(ArgInfos, ArgTypes,
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ArgInfoTypes0),
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% figure out what the C return type should be,
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% and build the `return' instructions (if any)
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( CodeModel = model_det,
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(
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PredOrFunc = function,
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pred_args_to_func_args(ArgInfoTypes0, ArgInfoTypes1,
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arg_info(RetArgLoc, RetArgMode) - RetType),
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RetArgMode = top_out,
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\+ type_util__is_dummy_argument_type(RetType)
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->
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Export_RetType = foreign__to_exported_type(Module,
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RetType),
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C_RetType = foreign__to_type_string(c, Export_RetType),
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argloc_to_string(RetArgLoc, RetArgString0),
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convert_type_from_mercury(RetArgString0, RetType,
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RetArgString),
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string__append_list(["\t", C_RetType,
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" return_value;\n"],
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MaybeDeclareRetval),
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% We need to unbox non-word-sized foreign types
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% before returning them to C code
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( foreign__is_foreign_type(Export_RetType) = yes(_) ->
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string__append_list(
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["\tMR_MAYBE_UNBOX_FOREIGN_TYPE(",
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C_RetType, ", ", RetArgString,
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", return_value);\n"], SetReturnValue)
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;
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string__append_list(["\treturn_value = ",
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RetArgString, ";\n"], SetReturnValue)
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),
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MaybeFail = SetReturnValue,
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string__append_list(["\treturn return_value;\n"],
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MaybeSucceed),
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ArgInfoTypes2 = ArgInfoTypes1
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;
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C_RetType = "void",
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MaybeDeclareRetval = "",
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MaybeFail = "",
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MaybeSucceed = "",
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ArgInfoTypes2 = ArgInfoTypes0
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)
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; CodeModel = model_semi,
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% we treat semidet functions the same as semidet predicates,
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% which means that for Mercury functions the Mercury return
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% value becomes the last argument, and the C return value
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% is a bool that is used to indicate success or failure.
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C_RetType = "MR_bool",
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MaybeDeclareRetval = "",
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string__append_list([
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"\tif (!MR_r1) {\n",
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"\t\tMR_restore_regs_from_mem(c_regs);\n",
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"\treturn MR_FALSE;\n",
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"\t}\n"
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], MaybeFail),
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MaybeSucceed = "\treturn MR_TRUE;\n",
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ArgInfoTypes2 = ArgInfoTypes0
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; CodeModel = model_non,
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% we should probably check this earlier, e.g. in make_hlds.m,
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% but better we catch this error late than never...
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C_RetType = "\n#error ""cannot export nondet procedure""\n",
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MaybeDeclareRetval = "",
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MaybeFail = "",
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MaybeSucceed = "",
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ArgInfoTypes2 = ArgInfoTypes0
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),
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list__filter(export__include_arg, ArgInfoTypes2, ArgInfoTypes).
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% export__include_arg(ArgInfoType):
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% Succeeds iff the specified argument should be included in
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% the arguments of the exported C function.
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%
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:- pred export__include_arg(pair(arg_info, type)::in) is semidet.
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export__include_arg(arg_info(_Loc, Mode) - Type) :-
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Mode \= top_unused,
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\+ type_util__is_dummy_argument_type(Type).
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% get_argument_declarations(Args, NameThem, DeclString):
|
|
% build a string to declare the argument types (and if
|
|
% NameThem = yes, the argument names) of a C function.
|
|
|
|
:- pred get_argument_declarations(assoc_list(arg_info, type)::in, bool::in,
|
|
module_info::in, string::out) is det.
|
|
|
|
get_argument_declarations([], _, _, "void").
|
|
get_argument_declarations([X|Xs], NameThem, Module, Result) :-
|
|
get_argument_declarations_2([X|Xs], 0, NameThem, Module, Result).
|
|
|
|
:- pred get_argument_declarations_2(assoc_list(arg_info, type)::in, int::in,
|
|
bool::in, module_info::in, string::out) is det.
|
|
|
|
get_argument_declarations_2([], _, _, _, "").
|
|
get_argument_declarations_2([AT|ATs], Num0, NameThem, Module, Result) :-
|
|
AT = ArgInfo - Type,
|
|
Num = Num0 + 1,
|
|
get_argument_declaration(ArgInfo, Type, Num, NameThem, Module,
|
|
TypeString, ArgName),
|
|
(
|
|
ATs = []
|
|
->
|
|
string__append(TypeString, ArgName, Result)
|
|
;
|
|
get_argument_declarations_2(ATs, Num, NameThem, Module,
|
|
TheRest),
|
|
string__append_list([TypeString, ArgName, ", ", TheRest],
|
|
Result)
|
|
).
|
|
|
|
:- pred get_argument_declaration(arg_info::in, (type)::in, int::in, bool::in,
|
|
module_info::in, string::out, string::out) is det.
|
|
|
|
get_argument_declaration(ArgInfo, Type, Num, NameThem, Module,
|
|
TypeString, ArgName) :-
|
|
ArgInfo = arg_info(_Loc, Mode),
|
|
( NameThem = yes ->
|
|
string__int_to_string(Num, NumString),
|
|
string__append(" Mercury__argument", NumString, ArgName)
|
|
;
|
|
ArgName = ""
|
|
),
|
|
TypeString0 = foreign__to_type_string(c, Module, Type),
|
|
(
|
|
Mode = top_out
|
|
->
|
|
% output variables are passed as pointers
|
|
string__append(TypeString0, " *", TypeString)
|
|
;
|
|
TypeString = TypeString0
|
|
).
|
|
|
|
:- pred get_input_args(assoc_list(arg_info, type), int, module_info, string).
|
|
:- mode get_input_args(in, in, in, out) is det.
|
|
|
|
get_input_args([], _, _, "").
|
|
get_input_args([AT|ATs], Num0, ModuleInfo, Result) :-
|
|
AT = ArgInfo - Type,
|
|
ArgInfo = arg_info(ArgLoc, Mode),
|
|
Num = Num0 + 1,
|
|
(
|
|
Mode = top_in,
|
|
|
|
string__int_to_string(Num, NumString),
|
|
string__append("Mercury__argument", NumString, ArgName0),
|
|
convert_type_to_mercury(ArgName0, Type, ArgName),
|
|
argloc_to_string(ArgLoc, ArgLocString),
|
|
Export_Type = foreign__to_exported_type(ModuleInfo, Type),
|
|
% We need to box non-word-sized foreign types
|
|
% before passing them to Mercury code
|
|
( foreign__is_foreign_type(Export_Type) = yes(_) ->
|
|
C_Type = foreign__to_type_string(c, Export_Type),
|
|
string__append_list(
|
|
["\tMR_MAYBE_BOX_FOREIGN_TYPE(",
|
|
C_Type, ", ", ArgName, ", ",
|
|
ArgLocString, ");\n"], InputArg)
|
|
;
|
|
string__append_list(
|
|
["\t", ArgLocString, " = ", ArgName, ";\n" ],
|
|
InputArg)
|
|
)
|
|
;
|
|
Mode = top_out,
|
|
InputArg = ""
|
|
;
|
|
Mode = top_unused,
|
|
InputArg = ""
|
|
),
|
|
get_input_args(ATs, Num, ModuleInfo, TheRest),
|
|
string__append(InputArg, TheRest, Result).
|
|
|
|
:- pred copy_output_args(assoc_list(arg_info, type)::in, int::in,
|
|
module_info::in, string::out) is det.
|
|
|
|
copy_output_args([], _, _, "").
|
|
copy_output_args([AT|ATs], Num0, ModuleInfo, Result) :-
|
|
AT = ArgInfo - Type,
|
|
ArgInfo = arg_info(ArgLoc, Mode),
|
|
Num = Num0 + 1,
|
|
(
|
|
Mode = top_in,
|
|
OutputArg = ""
|
|
;
|
|
Mode = top_out,
|
|
string__int_to_string(Num, NumString),
|
|
string__append("Mercury__argument", NumString, ArgName),
|
|
argloc_to_string(ArgLoc, ArgLocString0),
|
|
convert_type_from_mercury(ArgLocString0, Type, ArgLocString),
|
|
Export_Type = foreign__to_exported_type(ModuleInfo, Type),
|
|
% We need to unbox non-word-sized foreign types
|
|
% before returning them to C code
|
|
( foreign__is_foreign_type(Export_Type) = yes(_) ->
|
|
C_Type = foreign__to_type_string(c, Export_Type),
|
|
string__append_list(
|
|
["\tMR_MAYBE_UNBOX_FOREIGN_TYPE(",
|
|
C_Type, ", ", ArgLocString, ", * ",
|
|
ArgName, ");\n"], OutputArg)
|
|
;
|
|
string__append_list(
|
|
["\t*", ArgName, " = ", ArgLocString, ";\n" ],
|
|
OutputArg)
|
|
)
|
|
;
|
|
Mode = top_unused,
|
|
OutputArg = ""
|
|
),
|
|
copy_output_args(ATs, Num, ModuleInfo, TheRest),
|
|
string__append(OutputArg, TheRest, Result).
|
|
|
|
% convert an argument location (currently just a register number)
|
|
% to a string representing a C code fragment that names it.
|
|
:- pred argloc_to_string(arg_loc::in, string::out) is det.
|
|
|
|
argloc_to_string(RegNum, RegName) :-
|
|
string__int_to_string(RegNum, RegNumString),
|
|
(
|
|
% XXX We should handle float registers
|
|
% XXX This magic number can't be good
|
|
RegNum > 32
|
|
->
|
|
string__append_list(["MR_r(", RegNumString, ")"], RegName)
|
|
;
|
|
string__append("MR_r", RegNumString, RegName)
|
|
).
|
|
|
|
convert_type_to_mercury(Rval, Type, ConvertedRval) :-
|
|
(
|
|
Type = term__functor(term__atom("string"), [], _)
|
|
->
|
|
string__append("(MR_Word) ", Rval, ConvertedRval)
|
|
;
|
|
Type = term__functor(term__atom("float"), [], _)
|
|
->
|
|
string__append_list(["MR_float_to_word(", Rval, ")" ],
|
|
ConvertedRval)
|
|
;
|
|
Type = term__functor(term__atom("character"), [], _)
|
|
->
|
|
% We need to explicitly cast to UnsignedChar
|
|
% to avoid problems with C compilers for which `char'
|
|
% is signed.
|
|
string__append("(UnsignedChar) ", Rval, ConvertedRval)
|
|
;
|
|
ConvertedRval = Rval
|
|
).
|
|
|
|
convert_type_from_mercury(Rval, Type, ConvertedRval) :-
|
|
(
|
|
Type = term__functor(term__atom("string"), [], _)
|
|
->
|
|
string__append("(MR_String) ", Rval, ConvertedRval)
|
|
;
|
|
Type = term__functor(term__atom("float"), [], _)
|
|
->
|
|
string__append_list(["MR_word_to_float(", Rval, ")" ],
|
|
ConvertedRval)
|
|
;
|
|
ConvertedRval = Rval
|
|
).
|
|
|
|
%-----------------------------------------------------------------------------%
|
|
|
|
% This procedure is used for both the MLDS and LLDS back-ends.
|
|
|
|
export__produce_header_file(ForeignExportDecls, ModuleName, !IO) :-
|
|
% We always produce a .mh file because with intermodule
|
|
% optimization enabled the .o file depends on all the
|
|
% .mh files of the imported modules so we always need to
|
|
% produce a .mh file even if it contains nothing.
|
|
ForeignExportDecls = foreign_export_decls(ForeignDecls,
|
|
C_ExportDecls),
|
|
HeaderExt = ".mh",
|
|
module_name_to_file_name(ModuleName, HeaderExt, yes, FileName, !IO),
|
|
io__open_output(FileName ++ ".tmp", Result, !IO),
|
|
(
|
|
Result = ok(FileStream)
|
|
->
|
|
io__set_output_stream(FileStream, OutputStream, !IO),
|
|
module_name_to_file_name(ModuleName, ".m", no, SourceFileName,
|
|
!IO),
|
|
library__version(Version),
|
|
io__write_strings([
|
|
"/*\n",
|
|
"** Automatically generated from `",
|
|
SourceFileName, "'\n",
|
|
"** by the Mercury compiler,\n",
|
|
"** version ", Version, ".\n",
|
|
"** Do not edit.\n",
|
|
"*/\n"], !IO),
|
|
MangledModuleName = sym_name_mangle(ModuleName),
|
|
string__to_upper(MangledModuleName, UppercaseModuleName),
|
|
string__append(UppercaseModuleName, "_H", GuardMacroName),
|
|
io__write_strings([
|
|
"#ifndef ", GuardMacroName, "\n",
|
|
"#define ", GuardMacroName, "\n",
|
|
"\n",
|
|
"#ifdef __cplusplus\n",
|
|
"extern ""C"" {\n",
|
|
"#endif\n",
|
|
"\n",
|
|
"#ifdef MR_HIGHLEVEL_CODE\n",
|
|
"#include ""mercury.h""\n",
|
|
"#else\n",
|
|
" #ifndef MERCURY_HDR_EXCLUDE_IMP_H\n",
|
|
" #include ""mercury_imp.h""\n",
|
|
" #endif\n",
|
|
"#endif\n",
|
|
"#ifdef MR_DEEP_PROFILING\n",
|
|
"#include ""mercury_deep_profiling.h""\n",
|
|
"#endif\n",
|
|
"\n"], !IO),
|
|
|
|
io__write_strings([
|
|
"#ifndef ", decl_guard(ModuleName), "\n",
|
|
"#define ", decl_guard(ModuleName), "\n"],
|
|
!IO),
|
|
list__foldl(output_foreign_decl(yes(foreign_decl_is_exported)),
|
|
ForeignDecls, !IO),
|
|
io__write_string("\n#endif\n", !IO),
|
|
|
|
export__produce_header_file_2(C_ExportDecls, !IO),
|
|
io__write_strings([
|
|
"\n",
|
|
"#ifdef __cplusplus\n",
|
|
"}\n",
|
|
"#endif\n",
|
|
"\n",
|
|
"#endif /* ", GuardMacroName, " */\n"], !IO),
|
|
io__set_output_stream(OutputStream, _, !IO),
|
|
io__close_output(FileStream, !IO),
|
|
% rename "<ModuleName>.mh.tmp" to "<ModuleName>.mh".
|
|
update_interface(FileName, !IO)
|
|
;
|
|
io__progname_base("export.m", ProgName, !IO),
|
|
io__write_string("\n", !IO),
|
|
io__write_string(ProgName, !IO),
|
|
io__write_string(": can't open `", !IO),
|
|
io__write_string(FileName ++ ".tmp", !IO),
|
|
io__write_string("' for output\n", !IO),
|
|
io__set_exit_status(1, !IO)
|
|
).
|
|
|
|
:- pred export__produce_header_file_2(list(foreign_export_decl)::in,
|
|
io::di, io::uo) is det.
|
|
|
|
export__produce_header_file_2([]) --> [].
|
|
export__produce_header_file_2([E|ExportedProcs]) -->
|
|
{ E = foreign_export_decl(Lang, C_RetType, C_Function, ArgDecls) },
|
|
(
|
|
{ Lang = c }
|
|
->
|
|
% output the function header
|
|
io__write_string(C_RetType),
|
|
io__write_string(" "),
|
|
io__write_string(C_Function),
|
|
io__write_string("("),
|
|
io__write_string(ArgDecls),
|
|
io__write_string(");\n")
|
|
;
|
|
{ sorry(this_file,
|
|
"foreign languages other than C unimplemented") }
|
|
),
|
|
export__produce_header_file_2(ExportedProcs).
|
|
|
|
:- pred output_foreign_decl(maybe(foreign_decl_is_local)::in,
|
|
foreign_decl_code::in, io::di, io::uo) is det.
|
|
|
|
output_foreign_decl(MaybeDesiredIsLocal, DeclCode, !IO) :-
|
|
DeclCode = foreign_decl_code(Lang, IsLocal, Code, Context),
|
|
(
|
|
Lang = c,
|
|
(
|
|
MaybeDesiredIsLocal = no
|
|
;
|
|
MaybeDesiredIsLocal = yes(DesiredIsLocal),
|
|
DesiredIsLocal = IsLocal
|
|
)
|
|
->
|
|
term__context_file(Context, File),
|
|
term__context_line(Context, Line),
|
|
c_util__set_line_num(File, Line, !IO),
|
|
io__write_string(Code, !IO),
|
|
io__nl(!IO),
|
|
c_util__reset_line_num(!IO)
|
|
;
|
|
true
|
|
).
|
|
|
|
%-----------------------------------------------------------------------------%
|
|
|
|
c_type_is_word_sized_int_or_ptr("MR_Word").
|
|
c_type_is_word_sized_int_or_ptr("MR_TypeInfo").
|
|
c_type_is_word_sized_int_or_ptr("MR_TypeCtorInfo").
|
|
c_type_is_word_sized_int_or_ptr("MR_TypeClassInfo").
|
|
c_type_is_word_sized_int_or_ptr("MR_BaseTypeclassInfo").
|
|
|
|
%-----------------------------------------------------------------------------%
|
|
|
|
:- func this_file = string.
|
|
this_file = "export.m".
|
|
|
|
%-----------------------------------------------------------------------------%
|