8sa1-gcc/gcc/coverage.c
Aldy Hernandez c2255bc488 java-gimplify.c (java_gimplify_block): New argument to build_empty_stmt.
gcc/java/
	* java-gimplify.c (java_gimplify_block): New argument to
	build_empty_stmt.
	* expr.c (force_evaluation_order): Same.
	* typeck.c: Add location to build_decl or PUSH_FIELD calls.
	* class.c: Same.
	* decl.c: Same.
	* jcf-parse.c: Same.
	* constants.c: Same.
	* resource.c: Same.
	* except.c: Same.
	* builtins.c: Same.
	* expr.c: Same.
	* java-tree.h (PUSH_FIELD): Add location field.
gcc/objc/
	* objc-act.c (finish_var_decl): Pass location to finish_decl.
	(objc_get_parm_info): Same.
	(get_super_receiver): Same.
	* objc-act.c (objc_build_component_ref): Pass location to
	build_compound_ref.
	(build_module_initializer_routine): Pass location to
	c_end_compound_stmt.
	(objc_generate_static_init_call): Pass location to build_stmt.
	(build_typed_selector_reference): New location argument.
	(build_selector_reference): Same.
	(objc_substitute_decl): Pass location to build_array_ref.
	(next_sjlj_build_try_catch_finally): Pass location to build_stmt.
	(objc_begin_catch_clause): Same.
	(objc_finish_try_stmt): Same.
	(objc_finish_catch_clause): Pass location to c_end_compound_stmt.
	(objc_build_throw_stmt): New argument.
	(generate_shared_structures): Pass location to build_c_cast.
	(objc_build_message_expr): Use local location.
	(objc_finish_message_expr): Use input_location.
	(build_objc_method_call): New argument.
	(objc_build_selector_expr): Same.
	(get_super_receiver): Pass location to build_c_cast,
	build_modify_expr, build_compound_expr.
	* objc-act.c: Add location to all calls to start_struct, build_decl,
	finish_struct.
gcc/
	* tree-pretty-print.c (dump_generic_node): Dump column numbers.
	* gimple-pretty-print.c (dump_gimple_stmt): Same.
	* gimplify.c (gimplify_modify_expr): Set location for GIMPLE_ASSIGNs
	created.
	* c-parser.c (c_parser_binary_expression): Use current column while
	building binary operations.
	* common.opt (fshow-column): Enable by default.
	* tree-vrp.c (check_array_ref): Use warning_at.
	(check_array_bounds): Use location from call back if expr has no
	location.
	* tree.h: Add location argument to maybe_fold_*.
	* tree-ssa-ccp.c (ccp_fold): Pass location to maybe_fold_*.
	(maybe_fold_offset_to_array_ref): Add location argument and use it.
	(maybe_fold_offset_to_component_ref): Same.
	(maybe_fold_offset_to_reference): Same.
	(maybe_fold_offset_to_address): Same.
	(maybe_fold_stmt_indirect): Same.
	(maybe_fold_stmt_addition): Same.
	(fold_stmt_r): Pass location to maybe_fold_*.
	(fold_gimple_assign): Same.
	* c-tree.h: Add location argument to finish_decl,
	default_function_array_conversion, store_init_value.
	* c-decl.c (define_label): Use error_at.
	(c_make_fname_decl): Pass location to finish_decl.
	(finish_decl): New location argument.
	(build_compound_literal): Pass location to store_init_value.
	(grokdeclarator): Pass location to finish_decl.
	(grokfield): Same.
	* c-typeck.c (array_to_pointer_conversion): New location argument.
	(function_to_pointer_conversion): Same.
	(default_function_array_conversion): Same.
	(parser_build_unary_op): Pass location to overflow_warning.
	(parser_build_binary_op): Same.  Use warning_at.
	(build_unary_op): Pass location to array_to_pointer_conversion.
	(build_c_cast): Pass location to digest_init.
	(build_modify_expr): New location argument.
	(convert_for_assignment): Same.
	(store_init_value): Same.
	(digest_init): Same.
	(output_init_element): Pass location to digest_init and
	array_to_pointer_conversion.
	(c_finish_return): Pass location to convert_for_assignment.
	* gimplify.c (gimplify_conversion): Pass location to
	maybe_fold_offset_to_address.
	* tree-ssa-forwprop.c (forward_propagate_addr_expr_1): Pass location
	to maybe_fold_stmt_addition.
	* c-omp.c (c_finish_omp_atomic): Pass new location to
	build_modify_expr.
	(c_finish_omp_for): Same.
	* c-common.c (overflow_warning): New argument.
	* c-common.h: New argument to build_modify_expr, overflow_warning.
	* c-parser.c (c_parser_declaration_or_fndef): Pass location to
	finish_decl.
	(c_parser_initializer): Pass location to
	default_function_array_conversion.
	(c_parser_initelt): Same.
	(c_parser_initval): Same.
	(c_parser_asm_operands): Same.
	(c_parser_expr_no_commas): Same.  Pass location to build_modify_expr.
	(c_parser_conditional_expression): Same.
	(c_parser_binary_expression): Add location info to stack.  Use it.
	(c_parser_unary_expression): Pass location to
	default_function_array_conversion, parser_build_unary_op,
	build_indirect_ref, c_parser_postfix_expression_after_primary.
	(c_parser_postfix_expression_after_primary): New location argument.
	Use it.
	(c_parser_expression_conv): Pass location to
	default_function_array_conversion.
	(c_parser_expr_list): Same.
	(c_parser_omp_atomic): Same.
	(c_parser_omp_for_loop): Same.
	* c-tree.h: (struct c_declarator): Add comment to id_loc.
	(build_array_declarator): New argument.
	* c-decl.c (build_array_declarator): Add location argument.
	(grokdeclarator): Set id_loc for cdk_array.
	* c-parser.c (c_parser_direct_declarator_inner): Pass location to
	build_array_declarator.
	* tree.c (build_omp_clause): Add location argument.
	* tree.h (OMP_CLAUSE_HAS_LOCATION): New macro.
	(OMP_CLAUSE_LOCATION): New macro.
	(struct tree_omp_clause): Add location field.
	(build_omp_clause): Add argument.
	* testsuite/gcc.dg/gomp/for-1.c: Fix column.
	* cp/pt.c (tsubst_omp_for_iterator): Pass location to
	build_omp_clause.
	* cp/parser.c (cp_parser_omp_var_list_no_open): Same.
	(cp_parser_omp_clause_collapse): Same.
	(cp_parser_omp_clause_default): Same.
	(cp_parser_omp_clause_if): Same.
	(cp_parser_omp_clause_nowait): Same.
	(cp_parser_omp_clause_num_threads): Same.
	(cp_parser_omp_clause_ordered): Same.
	(cp_parser_omp_clause_schedule): Same.
	(cp_parser_omp_clause_untied): Same.
	(cp_parser_omp_for_loop): Same.
	(cp_parser_omp_parallel): Pass location to c_split_parallel_clauses.
	* c-tree.h (c_start_case): Add location argument.
	(c_process_expr_stmt): Same.
	(c_finish_goto_*): Same.
	* tree-parloops.c (initialize_reductions): Pass location to
	build_omp_clause.
	(create_parallel_loop): Same.
	* fortran/trans-openmp.c (gfc_trans_omp_variable_list): Same.
	(gfc_trans_omp_reduction_list): Same.
	(gfc_trans_omp_clauses): Same.
	(gfc_trans_omp_do): Same.
	* c-typeck.c (c_finish_goto_label): Same.
	(c_finish_goto_ptr): New location argument.
	(c_start_case): Same.
	(emit_side_effect_warnings): Same.
	(c_process_expr_stmt): Same.
	(c_finish_stmt_expr): Same.
	(c_finish_omp_clauses): Use error_at instead of error.
	* gimplify.c (gimplify_adjust_omp_clauses_1): Pass location to
	build_omp_clause.
	* c-omp.c (c_split_parallel_clauses): New location argument.
	* tree-nested.c (convert_nonlocal_reference_stmt): Pass location
	to build_omp_clause.
	(convert_local_reference_stmt): Same.
	(convert_gimple_call): Same.
	* c-common.h (c_split_parallel_clauses): New argument.
	* c-parser.c (c_parser_statement_after_labels): Pass location to
	c_finish_goto_label.
	(c_parser_switch_statement): Pass location to c_start_case.
	(c_parser_for_statement): Pass location to c_finish_expr_stmt,
	and c_process_expr_stmt.
	(c_parser_omp_variable_list): Add location argument.
	(c_parser_omp_clause_collapse): Pass location to
	build_omp_clause.
	(c_parser_omp_clause_default): Same.
	(c_parser_omp_clause_if): Same.
	(c_parser_omp_clause_num_threads): Same.
	(-c_parser_omp_clause_ordered): Same.
	(c_parser_omp_clause_reduction): Pass location to
	c_parser_omp_variable_list.
	(c_parser_omp_clause_schedule): Pass location to build_omp_clause.
	(c_parser_omp_clause_untied): Same.
	(c_parser_omp_for_loop): Pass location to c_process_expr_stmt.
	(c_parser_omp_parallel): Pass location to
	c_split_parallel_clauses.
	* c-tree.h (check_for_loop_decls, undeclared_variable,
	build_component_ref, build_array_ref, build_external_ref,
	c_expr_sizeof_expr, c_expr_sizeof_type, parser_build_unary_op,
	build_conditional_expr, build_compound_expr, c_cast_expr,
	build_c_cast, build_asm_expr, c_end_compound_stmt, c_finish_stmt_expr,
	c_finish_return, c_finish_omp_parallel, c_finish_omp_task): New
	argument.
	* c-semantics.c (build_stmt): Same.
	(build_case_label): Same.
	* c-decl.c (c_finish_incomplete_decl): Pass location on down.
	(undeclared_variable): New argument.
	(make_label): Same.
	(lookup_label): Pass location on down.
	(define_label): Same.
	(finish_decl): Same.
	(build_compound_literal): Same.
	(finish_struct): Same.
	(finish_function): Do not set location here.
	(check_for_loop_decls): New argument.
	* tree.c (save_expr): Set location.
	(build_empty_stmt): New argument.
	* tree.h (build_empty_stmt): New argument to build_empty_stmt.
	(CAN_HAVE_LOCATION_P): Make sure we have a non empty node.
	* builtins.c (gimplify_va_arg_expr): Use locations.
	(expand_builtin_sync_operation): Same.
	* c-typeck.c (build_component_ref): New argument.
	(build_array_ref): Same.
	(build_external_ref): Same.
	(c_expr_sizeof_expr): Same.
	(c_expr_sizeof_type): Same.
	(parser_build_unary_op): Same.
	(build_conditional_expr): Same.
	(build_compound_expr): Pass location on down.
	(build_compound_expr): New argument.
	(build_c_cast): Same.
	(c_cast_expr): Same.
	(build_asm_expr): Same.
	(c_finish_return): Same.
	(c_process_expr_stmt): Pass location on down.
	(c_finish_stmt_expr): New argument.
	(push_clenaup): Same.
	(c_finish_omp_parallel): Same.
	(c_finish_omp_task): Same.
	* gimplify.c (gimplify_call_expr): Pass location on down.
	* c-omp.c (c_finish_omp_master): New argument.
	(c_finish_omp_critical): Same.
	(c_finish_omp_ordered): Same.
	(c_finish_omp_barrier): Same.
	(-c_finish_omp_taskwait): Same.
	(c_finish_omp_atomic): Same.
	(c_finish_omp_flush): Same.
	* tree-inline.c (copy_tree_body_r): Pass location on down.
	(inline_forbidden_p): Remove use of input_location.
	* c-gimplify.c (c_build_bind_expr): New argument.
	* c-common.c (c_common_truthvalue_conversion): Pass location on down.
	(c_sizeof_or_alignof_type): New argument.
	(c_alignof_expr): Same.
	(build_va_arg): Same.
	(c_add_case_label): Same.
	* c-common.h (c_sizeof_or_alignof_type, c_alignof_expr,
	c_sizeof, c_alignof, build_va_arg, build_stmt, build_case_label,
	c_build_bind_expr, objc_build_selector_expr, objc_build_throw_stmt,
	c_finish_omp_master, c_finish_omp_critical, c_finish_omp_ordered,
	c_finish_omp_barrier, c_finish_omp_atomic, c_finish_omp_flush,
	c_finish_omp_taskwait, c_finish_omp_for, c_split_parallel_clauses):
	New argument.
	* stub-objc.c (objc_build_selector_expr): Same.
	(objc_build_throw_stmt): Same.
	* c-parser.c (c_parser_declaration_or_fndef): Pass location on down.
	(c_parser_initelt): Same.
	(c_parser_compound_statement): Same.
	(c_parser_compound_statement_nostart): Same.
	(c_parser_label): Same.
	(c_parser_statement_after_labels): Same.
	(c_parser_if_body): Same.
	(c_parser_else_body): Same.
	(c_parser_if_statement): Same.
	(c_parser_switch_statement): Same.
	(c_parser_while_statement): Same.
	(c_parser_do_statement): Same.
	(c_parser_for_statement): Same.
	(c_parser_asm_statement): Same.
	(c_parser_conditional_expression): Same.
	(c_parser_binary_expression): Same.
	(c_parser_cast_expression): Same.
	(c_parser_unary_expression): Same.
	(c_parser_sizeof_expression): Same.
	(c_parser_alignof_expression): Same.
	(c_parser_postfix_expression): Same.
	(c_parser_expression): Same.
	(c_parser_objc_receiver): Same.
	(c_parser_omp_variable_list): Same.
	(c_parser_omp_structured_block): Same.
	(c_parser_omp_atomic): New argument.
	(c_parser_omp_barrier): Same.
	(c_parser_omp_critical): Same.
	(c_parser_omp_flush): Pass location on down.
	(c_parser_omp_for_loop): New argument.
	(c_parser_omp_for): Same.
	(c_parser_omp_master): Same.
	(c_parser_omp_ordered): Same.
	(c_parser_omp_sections_scope): Same.
	(c_parser_omp_sections): Same.
	(c_parser_omp_parallel): Same.
	(c_parser_omp_single): Same.
	(c_parser_omp_task): Same.
	(c_parser_omp_taskwait): Pass location on down.
	(c_parser_omp_construct): Same.
	(c_parser_omp_threadprivate): Same.
	* dwarf2asm.c, targhooks.c, optabs.c, tree.c, tree.h, target.h,
	builtins.c, omp-low.c, cgraphunit.c, tree-call-cdce.c,
	tree-ssa-alias.c, gimple-low.c, c-tree.h, expr.c, tree-parloops.c,
	c-decl.c, tree-eh.c, langhooks.c, function.c, stor-layout.c,
	c-typeck.c, gimplify.c, c-pragma.c, expmed.c, except.c, coverage.c,
	emit-rtl.c, cfgexpand.c, tree-mudflap.c, varasm.c, tree-nested.c,
	rtl.h, tree-inline.c, tree-profile.c, c-common.c, c-common.h,
	tree-switch-conversion.c, tree-cfg.c, ipa-struct-reorg.c, c-parser.c,
	config/i386/i386.c, stmt.c:
	Add location argument to the following function definitions and/or
	function calls: build_decl, objcp_start_struct, objcp_finish_struct,
	start_struct, finish_struct, PUSH_FIELD, create_artificial_label,
	cp_make_fname_decl, pushtag, implicitly_declare, c_make_fname_decl,
	build_compound_literal, parser_xref_tag, resolve_overloaded_builtin,
	do_case, c_finish_bc_stmt, build_compound_literal,
	build_function_call.
	* c-decl.c (build_compound_literal): Add location argument.
	Make all diagnostic calls use location.
	(start_struct): Same.
	(finish_struct): Same.
	(start_enum): Same.
	(build_enumerator): Same.
	(start_function): Same.
	(grokdeclarator): Make all diagnostic calls use location.
	(store_parm_decls_oldstyle): Same.
	* c-typeck.c (build_function_call): Add location argument.
	Make all diagnostic calls use location.
	(do_case): Same.
	(c_finish_bc_stmt): Same.
	* tree-nested.c (get_trampoline_type): Add argument.
	Pass location to build_decl.
	(lookup_tramp_for_decl): Pass location to get_trampoline_type.
	* rtl.h (RTL_LOCATION): New.
	* c-common.c (c_add_case_label): Add location argument.
	Make all diagnostic calls use location.
	* c-common.h: Add location argument to make_fname_decl, do_case,
	c_add_case_label, build_function_call, resolve_overloaded_builtin.
	* c-parser.c (c_parser_enum_specifier): Rename ident_loc to enum_loc.
	Set it appropriately for every case.  Pass enum_loc to start_enum
	call.  Pass value_loc first to build_enumerator.  Pass enum_loc to
	parser_xref_tag.
	(c_parser_struct_or_union_specifier): Save location.  Use it for
	start_struct, finish_struct, and parser_xref_tag.
gcc/testsuite/
	* gcc.dg/old-style-prom-3.c: Add column info.
	* gcc.dg/overflow-warn-1.c
	* gcc.dg/gomp/pr27415.c
	* gcc.dg/gomp/for-1.c: Same.
	* gcc.dg/enum-compat-1.c: Same.
	* gcc.dg/c99-tag-3.c: Same.
	* gcc.dg/Wredundant-decls-2.c: Same.
	* gcc.dg/func-ptr-conv-1.c: Same.
	* gcc.dg/asm-wide-1.c: Same.
	* gcc.dg/nofixed-point-2.c: Same.
	* gcc.dg/cpp/line3.c: Same.
	* gcc.dg/array-10.c: Same.
	* gcc.dg/c99-vla-jump-1.c: Same.
	* gcc.dg/pr20368-1.c: Same.
	* gcc.dg/Wshadow-3.c: Same.
	* gcc.dg/c90-const-expr-8.c: Same.
	* gcc.dg/label-decl-2.c: Same.
	* gcc.dg/dremf-type-compat-2.c: Same.
	* gcc.dg/c90-const-expr-5.c: Same.
	* gcc.dg/builtins-30.c: Same.
	* gcc.dg/Warray-bounds.c: Same.
	* gcc.dg/Wcxx-compat-2.c: Same.
	* gcc.dg/tree-ssa/col-1.c: Same.
	* gcc.dg/old-style-prom-2.c: Same.
	* gcc.dg/cast-function-1.c: Same.
	* gcc.dg/pr15698-1.c: Same.
	* gcc.dg/dremf-type-compat-3.c: Same.
	* gcc.dg/vla-8.c: Same.
	* gcc.dg/gomp/pr27415.c: Move firstprivate diagnostics to correct
	line.
	* gcc.dg/label-decl-2.c: Move label diagnostic to correct line.
	* gcc.dg/old-style-prom-3.c: Check for error on the correct line.
	* gcc.dg/enum-compat-1.c: Same.
	* gcc.dg/dremf-type-compat-2.c: Same.
	* gcc.dg/old-style-prom-2.c: Same.
	* gcc.dg/pr15698-1.c: Same.
	* gcc.dg/pr20368-1.c: Same.
	* gcc.dg/dremf-type-compat-3.c: Same.
	* gcc.dg/builtins-30.c: Same.  Test for columns.
gcc/objcp/
	* objcp-decl.h (c_end_compound_stmt): New argument.
	* objcp-decl.c (objcp_start_struct): Add argument.
	(objcp_finish_struct): Same.
gcc/cp/
	* typeck.c (cp_build_binary_op): Pass location to overflow_warning.
	(build_modify_expr): New arg.
	* semantics.c (finish_unary_op_expr): Pass location to
	overflow_warning.
	(handle_omp_for_class_iterator): Pass location to build_modify_expr.
	* typeck.c (cxx_sizeof_or_alignof_type): Pass location to
	c_sizeof_or_alignof_type.
	(build_array_ref): New argument.
	(build_compound_expr): Same.
	(build_const_cast): Same.
	(build_ptrmemfunc): Pass location to build_c_cast.
	* init.c (avoid_placement_new_aliasing): Pass location to
	build_stmt.
	(build_vec_delete_1): Pass location to cp_build_modify_expr,
	build_compound_expr.
	* class.c (build_vtbl_ref_1): Pass location to build_array_ref.
	* decl.c (poplevel): Pass location to c_build_bind_expr.
	(finish_case_label): Pass location to build_case_label.
	(finish_constructor_body): Same.
	(finish_destructor_body): Pass location to build_stmt.
	(cxx_maybe_build_cleanup): Same, but to build_compound_expr.
	* call.c (build_new_op): Pass location to build_array_ref.
	(build_x_va_arg): Pass location to build_va_arg.
	* except.c (expand_end_catch_block): Pass location to
	build_stmt.
	* cp-tree.h (build_array_ref): New argument.
	(build_compound_expr): Same.
	(build_c_cast): Same.
	* cp-gimplify.c (gimplify_if_stmt): Pass location on down.
	(gimplify_switch_stmt): Same.
	* typeck2.c (split_nonconstant_init_1): Same.
	* pt.c (tsubst_copy): Same.
	* semantics.c (add_decl_expr): Same.
	(do_poplevel): Same.
	(push_cleanup): Same.
	(finish_goto_stmt): Same.
	(finish_expr_stmt): Same.
	(begin_if_stmt): Same.
	(begin_while_stmt): Same.
	(begin_do_stmt): Same.
	(finish_return_stmt): Same.
	(begin_for_stmt): Same.
	(finish_break_stmt): Same.
	(finish_continue_stmt): Same.
	(begin_switch_stmt): Same.
	(begin_try_block): Same.
	(begin_handler): Same.
	(finish_asm_stmt): Same.
	(finish_label_stmt): Same.
	(finish_stmt_expr_expr): Same.
	(finalize_nrv_r): Same.
	(finish_omp_atomic): Same.
	* name-lookup.c (do_using_directive): Same.
	* decl2.c (grok_array_decl): Same.
	* parser.c (cp_parser_cast_expression): Same.
	(cp_parser_selection_statement): Same.
	(cp_parser_implicitly_scoped_statement): Same.
	(cp_parser_objc_selector_expression): Same.
	(cp_parser_objc_synchronized_statement): Same.
	(cp_parser_objc_throw_statement): Same.
	(cp_parser_omp_critical): Same.
	(cp_parser_omp_master): Same.
	* typeck.c (build_function_call): Add location argument.
	* init.c: Add location argument to all build_decl calls.
	* class.c: Same.
	* method.c: Same.
	* rtti.c: Same.
	* tree.c: Same.
	* pt.c: Same.
	* semantics.c: Same.
	* lex.c: Same.
	* decl2.c: Same.
	* cp-gimplify.c: Same.
	* decl.c: Same.
	(cp_make_fname_decl): Add location argument.  Pass location ot
	build_decl.
	(finish_case_label): Same.
	* cp-tree.h (finish_case_label): Add location argument.
	* parser.c (cp_parser_label_for_labeled_statement): Pass location to
	finish_case_label.
gcc/fortran/
	* trans-array.c (gfc_trans_allocate_array_storage): Pass
	location on down.
	(gfc_trans_array_constructor_value): Same.
	(gfc_trans_scalarized_loop_end): Same.
	(gfc_conv_ss_startstride): Same.
	(gfc_trans_g77_array): Same.
	(gfc_trans_dummy_array_bias): Same.
	(gfc_conv_array_parameter): Same.
	(structure_alloc_comps): Same.
	* trans-expr.c (gfc_conv_function_call): Same.
	(fill_with_spaces): Same.
	(gfc_trans_string_copy): Same.
	(gfc_trans_scalar_assign): Same.
	* trans-stmt.c (gfc_trans_goto): Same.
	(gfc_trans_if_1): Same.
	(gfc_trans_simple_do): Same.
	(gfc_trans_do): Same.
	(gfc_trans_do_while): Same.
	(gfc_trans_logical_select): Same.
	(gfc_trans_select): Same.
	(gfc_trans_forall_loop): Same.
	(gfc_trans_nested_forall_loop): Same.
	(generate_loop_for_temp_to_lhs): Same.
	(generate_loop_for_rhs_to_temp): Same.
	(gfc_trans_forall_1): Same.
	(gfc_trans_where_assign): Same.
	(gfc_trans_where_3): Same.
	(gfc_trans_allocate): Same.
	* trans.c (gfc_finish_block): Same.
	(gfc_trans_runtime_check): Same.
	(gfc_call_malloc): Same.
	(gfc_allocate_with_status): Same.
	(gfc_call_free): Same.
	(gfc_deallocate_with_status): Same.
	(gfc_call_realloc): Same.
	(gfc_trans_code): Same.
	* trans-decl.c (gfc_init_default_dt): Same.
	(gfc_generate_constructors): Same.
	* trans-io.c (gfc_trans_io_runtime_check): Same.
	* trans-intrinsic.c (gfc_conv_intrinsic_ctime): Same.
	(gfc_conv_intrinsic_fdate): Same.
	(gfc_conv_intrinsic_ttynam): Same.
	(gfc_conv_intrinsic_minmax): Same.
	(gfc_conv_intrinsic_minmax_char): Same.
	(gfc_conv_intrinsic_anyall): Same.
	(gfc_conv_intrinsic_count): Same.
	(gfc_conv_intrinsic_arith): Same.
	(gfc_conv_intrinsic_minmaxloc): Same.
	(gfc_conv_intrinsic_minmaxval): Same.
	(gfc_conv_intrinsic_rrspacing): Same.
	(gfc_conv_intrinsic_array_transfer): Same.
	(gfc_conv_intrinsic_trim): Same.
	(gfc_conv_intrinsic_repeat): Same.

From-SVN: r148442
2009-06-12 22:06:47 +00:00

1055 lines
29 KiB
C
Raw Blame History

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/* Read and write coverage files, and associated functionality.
Copyright (C) 1990, 1991, 1992, 1993, 1994, 1996, 1997, 1998, 1999,
2000, 2001, 2003, 2004, 2005, 2007, 2008 Free Software Foundation,
Inc.
Contributed by James E. Wilson, UC Berkeley/Cygnus Support;
based on some ideas from Dain Samples of UC Berkeley.
Further mangling by Bob Manson, Cygnus Support.
Further mangled by Nathan Sidwell, CodeSourcery
This file is part of GCC.
GCC is free software; you can redistribute it and/or modify it under
the terms of the GNU General Public License as published by the Free
Software Foundation; either version 3, or (at your option) any later
version.
GCC is distributed in the hope that it will be useful, but WITHOUT ANY
WARRANTY; without even the implied warranty of MERCHANTABILITY or
FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
for more details.
You should have received a copy of the GNU General Public License
along with GCC; see the file COPYING3. If not see
<http://www.gnu.org/licenses/>. */
#define GCOV_LINKAGE
#include "config.h"
#include "system.h"
#include "coretypes.h"
#include "tm.h"
#include "rtl.h"
#include "tree.h"
#include "flags.h"
#include "output.h"
#include "regs.h"
#include "expr.h"
#include "function.h"
#include "toplev.h"
#include "tm_p.h"
#include "ggc.h"
#include "coverage.h"
#include "langhooks.h"
#include "hashtab.h"
#include "tree-iterator.h"
#include "cgraph.h"
#include "tree-pass.h"
#include "gcov-io.c"
struct function_list
{
struct function_list *next; /* next function */
unsigned ident; /* function ident */
unsigned checksum; /* function checksum */
unsigned n_ctrs[GCOV_COUNTERS];/* number of counters. */
};
/* Counts information for a function. */
typedef struct counts_entry
{
/* We hash by */
unsigned ident;
unsigned ctr;
/* Store */
unsigned checksum;
gcov_type *counts;
struct gcov_ctr_summary summary;
/* Workspace */
struct counts_entry *chain;
} counts_entry_t;
static struct function_list *functions_head = 0;
static struct function_list **functions_tail = &functions_head;
static unsigned no_coverage = 0;
/* Cumulative counter information for whole program. */
static unsigned prg_ctr_mask; /* Mask of counter types generated. */
static unsigned prg_n_ctrs[GCOV_COUNTERS]; /* Total counters allocated. */
/* Counter information for current function. */
static unsigned fn_ctr_mask; /* Mask of counters used. */
static unsigned fn_n_ctrs[GCOV_COUNTERS]; /* Counters allocated. */
static unsigned fn_b_ctrs[GCOV_COUNTERS]; /* Allocation base. */
/* Name of the output file for coverage output file. */
static char *bbg_file_name;
static unsigned bbg_file_opened;
static int bbg_function_announced;
/* Name of the count data file. */
static char *da_file_name;
/* Hash table of count data. */
static htab_t counts_hash = NULL;
/* Trees representing the counter table arrays. */
static GTY(()) tree tree_ctr_tables[GCOV_COUNTERS];
/* The names of the counter tables. Not used if we're
generating counters at tree level. */
static GTY(()) rtx ctr_labels[GCOV_COUNTERS];
/* The names of merge functions for counters. */
static const char *const ctr_merge_functions[GCOV_COUNTERS] = GCOV_MERGE_FUNCTIONS;
static const char *const ctr_names[GCOV_COUNTERS] = GCOV_COUNTER_NAMES;
/* Forward declarations. */
static hashval_t htab_counts_entry_hash (const void *);
static int htab_counts_entry_eq (const void *, const void *);
static void htab_counts_entry_del (void *);
static void read_counts_file (void);
static unsigned compute_checksum (void);
static unsigned coverage_checksum_string (unsigned, const char *);
static tree build_fn_info_type (unsigned);
static tree build_fn_info_value (const struct function_list *, tree);
static tree build_ctr_info_type (void);
static tree build_ctr_info_value (unsigned, tree);
static tree build_gcov_info (void);
static void create_coverage (void);
/* Return the type node for gcov_type. */
tree
get_gcov_type (void)
{
return lang_hooks.types.type_for_size (GCOV_TYPE_SIZE, false);
}
/* Return the type node for gcov_unsigned_t. */
static tree
get_gcov_unsigned_t (void)
{
return lang_hooks.types.type_for_size (32, true);
}
static hashval_t
htab_counts_entry_hash (const void *of)
{
const counts_entry_t *const entry = (const counts_entry_t *) of;
return entry->ident * GCOV_COUNTERS + entry->ctr;
}
static int
htab_counts_entry_eq (const void *of1, const void *of2)
{
const counts_entry_t *const entry1 = (const counts_entry_t *) of1;
const counts_entry_t *const entry2 = (const counts_entry_t *) of2;
return entry1->ident == entry2->ident && entry1->ctr == entry2->ctr;
}
static void
htab_counts_entry_del (void *of)
{
counts_entry_t *const entry = (counts_entry_t *) of;
free (entry->counts);
free (entry);
}
/* Read in the counts file, if available. */
static void
read_counts_file (void)
{
gcov_unsigned_t fn_ident = 0;
gcov_unsigned_t checksum = -1;
counts_entry_t *summaried = NULL;
unsigned seen_summary = 0;
gcov_unsigned_t tag;
int is_error = 0;
if (!gcov_open (da_file_name, 1))
return;
if (!gcov_magic (gcov_read_unsigned (), GCOV_DATA_MAGIC))
{
warning (0, "%qs is not a gcov data file", da_file_name);
gcov_close ();
return;
}
else if ((tag = gcov_read_unsigned ()) != GCOV_VERSION)
{
char v[4], e[4];
GCOV_UNSIGNED2STRING (v, tag);
GCOV_UNSIGNED2STRING (e, GCOV_VERSION);
warning (0, "%qs is version %q.*s, expected version %q.*s",
da_file_name, 4, v, 4, e);
gcov_close ();
return;
}
/* Read and discard the stamp. */
gcov_read_unsigned ();
counts_hash = htab_create (10,
htab_counts_entry_hash, htab_counts_entry_eq,
htab_counts_entry_del);
while ((tag = gcov_read_unsigned ()))
{
gcov_unsigned_t length;
gcov_position_t offset;
length = gcov_read_unsigned ();
offset = gcov_position ();
if (tag == GCOV_TAG_FUNCTION)
{
fn_ident = gcov_read_unsigned ();
checksum = gcov_read_unsigned ();
if (seen_summary)
{
/* We have already seen a summary, this means that this
new function begins a new set of program runs. We
must unlink the summaried chain. */
counts_entry_t *entry, *chain;
for (entry = summaried; entry; entry = chain)
{
chain = entry->chain;
entry->chain = NULL;
}
summaried = NULL;
seen_summary = 0;
}
}
else if (tag == GCOV_TAG_PROGRAM_SUMMARY)
{
counts_entry_t *entry;
struct gcov_summary summary;
gcov_read_summary (&summary);
seen_summary = 1;
for (entry = summaried; entry; entry = entry->chain)
{
struct gcov_ctr_summary *csum = &summary.ctrs[entry->ctr];
entry->summary.runs += csum->runs;
entry->summary.sum_all += csum->sum_all;
if (entry->summary.run_max < csum->run_max)
entry->summary.run_max = csum->run_max;
entry->summary.sum_max += csum->sum_max;
}
}
else if (GCOV_TAG_IS_COUNTER (tag) && fn_ident)
{
counts_entry_t **slot, *entry, elt;
unsigned n_counts = GCOV_TAG_COUNTER_NUM (length);
unsigned ix;
elt.ident = fn_ident;
elt.ctr = GCOV_COUNTER_FOR_TAG (tag);
slot = (counts_entry_t **) htab_find_slot
(counts_hash, &elt, INSERT);
entry = *slot;
if (!entry)
{
*slot = entry = XCNEW (counts_entry_t);
entry->ident = elt.ident;
entry->ctr = elt.ctr;
entry->checksum = checksum;
entry->summary.num = n_counts;
entry->counts = XCNEWVEC (gcov_type, n_counts);
}
else if (entry->checksum != checksum)
{
error ("coverage mismatch for function %u while reading execution counters",
fn_ident);
error ("checksum is %x instead of %x", entry->checksum, checksum);
htab_delete (counts_hash);
break;
}
else if (entry->summary.num != n_counts)
{
error ("coverage mismatch for function %u while reading execution counters",
fn_ident);
error ("number of counters is %d instead of %d", entry->summary.num, n_counts);
htab_delete (counts_hash);
break;
}
else if (elt.ctr >= GCOV_COUNTERS_SUMMABLE)
{
error ("cannot merge separate %s counters for function %u",
ctr_names[elt.ctr], fn_ident);
goto skip_merge;
}
if (elt.ctr < GCOV_COUNTERS_SUMMABLE
/* This should always be true for a just allocated entry,
and always false for an existing one. Check this way, in
case the gcov file is corrupt. */
&& (!entry->chain || summaried != entry))
{
entry->chain = summaried;
summaried = entry;
}
for (ix = 0; ix != n_counts; ix++)
entry->counts[ix] += gcov_read_counter ();
skip_merge:;
}
gcov_sync (offset, length);
if ((is_error = gcov_is_error ()))
{
error (is_error < 0 ? "%qs has overflowed" : "%qs is corrupted",
da_file_name);
htab_delete (counts_hash);
break;
}
}
gcov_close ();
}
/* Returns the counters for a particular tag. */
gcov_type *
get_coverage_counts (unsigned counter, unsigned expected,
const struct gcov_ctr_summary **summary)
{
counts_entry_t *entry, elt;
gcov_unsigned_t checksum = -1;
/* No hash table, no counts. */
if (!counts_hash)
{
static int warned = 0;
if (!warned++)
inform (input_location, (flag_guess_branch_prob
? "file %s not found, execution counts estimated"
: "file %s not found, execution counts assumed to be zero"),
da_file_name);
return NULL;
}
elt.ident = current_function_funcdef_no + 1;
elt.ctr = counter;
entry = (counts_entry_t *) htab_find (counts_hash, &elt);
if (!entry)
{
warning (0, "no coverage for function %qE found",
DECL_ASSEMBLER_NAME (current_function_decl));
return NULL;
}
checksum = compute_checksum ();
if (entry->checksum != checksum
|| entry->summary.num != expected)
{
static int warned = 0;
tree id = DECL_ASSEMBLER_NAME (current_function_decl);
if (warn_coverage_mismatch)
warning (OPT_Wcoverage_mismatch, "coverage mismatch for function "
"%qE while reading counter %qs", id, ctr_names[counter]);
else
error ("coverage mismatch for function %qE while reading counter %qs",
id, ctr_names[counter]);
if (!inhibit_warnings)
{
if (entry->checksum != checksum)
inform (input_location, "checksum is %x instead of %x", entry->checksum, checksum);
else
inform (input_location, "number of counters is %d instead of %d",
entry->summary.num, expected);
}
if (warn_coverage_mismatch
&& !inhibit_warnings
&& !warned++)
{
inform (input_location, "coverage mismatch ignored due to -Wcoverage-mismatch");
inform (input_location, flag_guess_branch_prob
? "execution counts estimated"
: "execution counts assumed to be zero");
if (!flag_guess_branch_prob)
inform (input_location, "this can result in poorly optimized code");
}
return NULL;
}
if (summary)
*summary = &entry->summary;
return entry->counts;
}
/* Allocate NUM counters of type COUNTER. Returns nonzero if the
allocation succeeded. */
int
coverage_counter_alloc (unsigned counter, unsigned num)
{
if (no_coverage)
return 0;
if (!num)
return 1;
if (!tree_ctr_tables[counter])
{
/* Generate and save a copy of this so it can be shared. Leave
the index type unspecified for now; it will be set after all
functions have been compiled. */
char buf[20];
tree gcov_type_node = get_gcov_type ();
tree gcov_type_array_type
= build_array_type (gcov_type_node, NULL_TREE);
tree_ctr_tables[counter]
= build_decl (BUILTINS_LOCATION,
VAR_DECL, NULL_TREE, gcov_type_array_type);
TREE_STATIC (tree_ctr_tables[counter]) = 1;
ASM_GENERATE_INTERNAL_LABEL (buf, "LPBX", counter + 1);
DECL_NAME (tree_ctr_tables[counter]) = get_identifier (buf);
DECL_ALIGN (tree_ctr_tables[counter]) = TYPE_ALIGN (gcov_type_node);
if (dump_file)
fprintf (dump_file, "Using data file %s\n", da_file_name);
}
fn_b_ctrs[counter] = fn_n_ctrs[counter];
fn_n_ctrs[counter] += num;
fn_ctr_mask |= 1 << counter;
return 1;
}
/* Generate a tree to access COUNTER NO. */
tree
tree_coverage_counter_ref (unsigned counter, unsigned no)
{
tree gcov_type_node = get_gcov_type ();
gcc_assert (no < fn_n_ctrs[counter] - fn_b_ctrs[counter]);
no += prg_n_ctrs[counter] + fn_b_ctrs[counter];
/* "no" here is an array index, scaled to bytes later. */
return build4 (ARRAY_REF, gcov_type_node, tree_ctr_tables[counter],
build_int_cst (NULL_TREE, no), NULL, NULL);
}
/* Generate a tree to access the address of COUNTER NO. */
tree
tree_coverage_counter_addr (unsigned counter, unsigned no)
{
tree gcov_type_node = get_gcov_type ();
gcc_assert (no < fn_n_ctrs[counter] - fn_b_ctrs[counter]);
no += prg_n_ctrs[counter] + fn_b_ctrs[counter];
TREE_ADDRESSABLE (tree_ctr_tables[counter]) = 1;
/* "no" here is an array index, scaled to bytes later. */
return build_fold_addr_expr (build4 (ARRAY_REF, gcov_type_node,
tree_ctr_tables[counter],
build_int_cst (NULL_TREE, no),
NULL, NULL));
}
/* Generate a checksum for a string. CHKSUM is the current
checksum. */
static unsigned
coverage_checksum_string (unsigned chksum, const char *string)
{
int i;
char *dup = NULL;
/* Look for everything that looks if it were produced by
get_file_function_name and zero out the second part
that may result from flag_random_seed. This is not critical
as the checksums are used only for sanity checking. */
for (i = 0; string[i]; i++)
{
int offset = 0;
if (!strncmp (string + i, "_GLOBAL__N_", 11))
offset = 11;
if (!strncmp (string + i, "_GLOBAL__", 9))
offset = 9;
/* C++ namespaces do have scheme:
_GLOBAL__N_<filename>_<wrongmagicnumber>_<magicnumber>functionname
since filename might contain extra underscores there seems
to be no better chance then walk all possible offsets looking
for magicnumber. */
if (offset)
{
for (i = i + offset; string[i]; i++)
if (string[i]=='_')
{
int y;
for (y = 1; y < 9; y++)
if (!(string[i + y] >= '0' && string[i + y] <= '9')
&& !(string[i + y] >= 'A' && string[i + y] <= 'F'))
break;
if (y != 9 || string[i + 9] != '_')
continue;
for (y = 10; y < 18; y++)
if (!(string[i + y] >= '0' && string[i + y] <= '9')
&& !(string[i + y] >= 'A' && string[i + y] <= 'F'))
break;
if (y != 18)
continue;
if (!dup)
string = dup = xstrdup (string);
for (y = 10; y < 18; y++)
dup[i + y] = '0';
}
break;
}
}
chksum = crc32_string (chksum, string);
if (dup)
free (dup);
return chksum;
}
/* Compute checksum for the current function. We generate a CRC32. */
static unsigned
compute_checksum (void)
{
expanded_location xloc
= expand_location (DECL_SOURCE_LOCATION (current_function_decl));
unsigned chksum = xloc.line;
chksum = coverage_checksum_string (chksum, xloc.file);
chksum = coverage_checksum_string
(chksum, IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (current_function_decl)));
return chksum;
}
/* Begin output to the graph file for the current function.
Opens the output file, if not already done. Writes the
function header, if not already done. Returns nonzero if data
should be output. */
int
coverage_begin_output (void)
{
/* We don't need to output .gcno file unless we're under -ftest-coverage
(e.g. -fprofile-arcs/generate/use don't need .gcno to work). */
if (no_coverage || !flag_test_coverage || flag_compare_debug)
return 0;
if (!bbg_function_announced)
{
expanded_location xloc
= expand_location (DECL_SOURCE_LOCATION (current_function_decl));
unsigned long offset;
if (!bbg_file_opened)
{
if (!gcov_open (bbg_file_name, -1))
error ("cannot open %s", bbg_file_name);
else
{
gcov_write_unsigned (GCOV_NOTE_MAGIC);
gcov_write_unsigned (GCOV_VERSION);
gcov_write_unsigned (local_tick);
}
bbg_file_opened = 1;
}
/* Announce function */
offset = gcov_write_tag (GCOV_TAG_FUNCTION);
gcov_write_unsigned (current_function_funcdef_no + 1);
gcov_write_unsigned (compute_checksum ());
gcov_write_string (IDENTIFIER_POINTER
(DECL_ASSEMBLER_NAME (current_function_decl)));
gcov_write_string (xloc.file);
gcov_write_unsigned (xloc.line);
gcov_write_length (offset);
bbg_function_announced = 1;
}
return !gcov_is_error ();
}
/* Finish coverage data for the current function. Verify no output
error has occurred. Save function coverage counts. */
void
coverage_end_function (void)
{
unsigned i;
if (bbg_file_opened > 1 && gcov_is_error ())
{
warning (0, "error writing %qs", bbg_file_name);
bbg_file_opened = -1;
}
if (fn_ctr_mask)
{
struct function_list *item;
item = XNEW (struct function_list);
*functions_tail = item;
functions_tail = &item->next;
item->next = 0;
item->ident = current_function_funcdef_no + 1;
item->checksum = compute_checksum ();
for (i = 0; i != GCOV_COUNTERS; i++)
{
item->n_ctrs[i] = fn_n_ctrs[i];
prg_n_ctrs[i] += fn_n_ctrs[i];
fn_n_ctrs[i] = fn_b_ctrs[i] = 0;
}
prg_ctr_mask |= fn_ctr_mask;
fn_ctr_mask = 0;
}
bbg_function_announced = 0;
}
/* Creates the gcov_fn_info RECORD_TYPE. */
static tree
build_fn_info_type (unsigned int counters)
{
tree type = lang_hooks.types.make_type (RECORD_TYPE);
tree field, fields;
tree array_type;
/* ident */
fields = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
/* checksum */
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
TREE_CHAIN (field) = fields;
fields = field;
array_type = build_int_cst (NULL_TREE, counters - 1);
array_type = build_index_type (array_type);
array_type = build_array_type (get_gcov_unsigned_t (), array_type);
/* counters */
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, array_type);
TREE_CHAIN (field) = fields;
fields = field;
finish_builtin_struct (type, "__gcov_fn_info", fields, NULL_TREE);
return type;
}
/* Creates a CONSTRUCTOR for a gcov_fn_info. FUNCTION is
the function being processed and TYPE is the gcov_fn_info
RECORD_TYPE. */
static tree
build_fn_info_value (const struct function_list *function, tree type)
{
tree value = NULL_TREE;
tree fields = TYPE_FIELDS (type);
unsigned ix;
tree array_value = NULL_TREE;
/* ident */
value = tree_cons (fields, build_int_cstu (get_gcov_unsigned_t (),
function->ident), value);
fields = TREE_CHAIN (fields);
/* checksum */
value = tree_cons (fields, build_int_cstu (get_gcov_unsigned_t (),
function->checksum), value);
fields = TREE_CHAIN (fields);
/* counters */
for (ix = 0; ix != GCOV_COUNTERS; ix++)
if (prg_ctr_mask & (1 << ix))
{
tree counters = build_int_cstu (get_gcov_unsigned_t (),
function->n_ctrs[ix]);
array_value = tree_cons (NULL_TREE, counters, array_value);
}
/* FIXME: use build_constructor directly. */
array_value = build_constructor_from_list (TREE_TYPE (fields),
nreverse (array_value));
value = tree_cons (fields, array_value, value);
/* FIXME: use build_constructor directly. */
value = build_constructor_from_list (type, nreverse (value));
return value;
}
/* Creates the gcov_ctr_info RECORD_TYPE. */
static tree
build_ctr_info_type (void)
{
tree type = lang_hooks.types.make_type (RECORD_TYPE);
tree field, fields = NULL_TREE;
tree gcov_ptr_type = build_pointer_type (get_gcov_type ());
tree gcov_merge_fn_type;
/* counters */
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
TREE_CHAIN (field) = fields;
fields = field;
/* values */
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, gcov_ptr_type);
TREE_CHAIN (field) = fields;
fields = field;
/* merge */
gcov_merge_fn_type =
build_function_type_list (void_type_node,
gcov_ptr_type, get_gcov_unsigned_t (),
NULL_TREE);
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE,
build_pointer_type (gcov_merge_fn_type));
TREE_CHAIN (field) = fields;
fields = field;
finish_builtin_struct (type, "__gcov_ctr_info", fields, NULL_TREE);
return type;
}
/* Creates a CONSTRUCTOR for a gcov_ctr_info. COUNTER is
the counter being processed and TYPE is the gcov_ctr_info
RECORD_TYPE. */
static tree
build_ctr_info_value (unsigned int counter, tree type)
{
tree value = NULL_TREE;
tree fields = TYPE_FIELDS (type);
tree fn;
/* counters */
value = tree_cons (fields,
build_int_cstu (get_gcov_unsigned_t (),
prg_n_ctrs[counter]),
value);
fields = TREE_CHAIN (fields);
if (prg_n_ctrs[counter])
{
tree array_type;
array_type = build_int_cstu (get_gcov_unsigned_t (),
prg_n_ctrs[counter] - 1);
array_type = build_index_type (array_type);
array_type = build_array_type (TREE_TYPE (TREE_TYPE (fields)),
array_type);
TREE_TYPE (tree_ctr_tables[counter]) = array_type;
DECL_SIZE (tree_ctr_tables[counter]) = TYPE_SIZE (array_type);
DECL_SIZE_UNIT (tree_ctr_tables[counter]) = TYPE_SIZE_UNIT (array_type);
assemble_variable (tree_ctr_tables[counter], 0, 0, 0);
value = tree_cons (fields,
build1 (ADDR_EXPR, TREE_TYPE (fields),
tree_ctr_tables[counter]),
value);
}
else
value = tree_cons (fields, null_pointer_node, value);
fields = TREE_CHAIN (fields);
fn = build_decl (BUILTINS_LOCATION,
FUNCTION_DECL,
get_identifier (ctr_merge_functions[counter]),
TREE_TYPE (TREE_TYPE (fields)));
DECL_EXTERNAL (fn) = 1;
TREE_PUBLIC (fn) = 1;
DECL_ARTIFICIAL (fn) = 1;
TREE_NOTHROW (fn) = 1;
value = tree_cons (fields,
build1 (ADDR_EXPR, TREE_TYPE (fields), fn),
value);
/* FIXME: use build_constructor directly. */
value = build_constructor_from_list (type, nreverse (value));
return value;
}
/* Creates the gcov_info RECORD_TYPE and initializer for it. Returns a
CONSTRUCTOR. */
static tree
build_gcov_info (void)
{
unsigned n_ctr_types, ix;
tree type, const_type;
tree fn_info_type, fn_info_value = NULL_TREE;
tree fn_info_ptr_type;
tree ctr_info_type, ctr_info_ary_type, ctr_info_value = NULL_TREE;
tree field, fields = NULL_TREE;
tree value = NULL_TREE;
tree filename_string;
int da_file_name_len;
unsigned n_fns;
const struct function_list *fn;
tree string_type;
/* Count the number of active counters. */
for (n_ctr_types = 0, ix = 0; ix != GCOV_COUNTERS; ix++)
if (prg_ctr_mask & (1 << ix))
n_ctr_types++;
type = lang_hooks.types.make_type (RECORD_TYPE);
const_type = build_qualified_type (type, TYPE_QUAL_CONST);
/* Version ident */
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
TREE_CHAIN (field) = fields;
fields = field;
value = tree_cons (field, build_int_cstu (TREE_TYPE (field), GCOV_VERSION),
value);
/* next -- NULL */
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, build_pointer_type (const_type));
TREE_CHAIN (field) = fields;
fields = field;
value = tree_cons (field, null_pointer_node, value);
/* stamp */
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
TREE_CHAIN (field) = fields;
fields = field;
value = tree_cons (field, build_int_cstu (TREE_TYPE (field), local_tick),
value);
/* Filename */
string_type = build_pointer_type (build_qualified_type (char_type_node,
TYPE_QUAL_CONST));
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, string_type);
TREE_CHAIN (field) = fields;
fields = field;
da_file_name_len = strlen (da_file_name);
filename_string = build_string (da_file_name_len + 1, da_file_name);
TREE_TYPE (filename_string) = build_array_type
(char_type_node, build_index_type
(build_int_cst (NULL_TREE, da_file_name_len)));
value = tree_cons (field, build1 (ADDR_EXPR, string_type, filename_string),
value);
/* Build the fn_info type and initializer. */
fn_info_type = build_fn_info_type (n_ctr_types);
fn_info_ptr_type = build_pointer_type (build_qualified_type
(fn_info_type, TYPE_QUAL_CONST));
for (fn = functions_head, n_fns = 0; fn; fn = fn->next, n_fns++)
fn_info_value = tree_cons (NULL_TREE,
build_fn_info_value (fn, fn_info_type),
fn_info_value);
if (n_fns)
{
tree array_type;
array_type = build_index_type (build_int_cst (NULL_TREE, n_fns - 1));
array_type = build_array_type (fn_info_type, array_type);
/* FIXME: use build_constructor directly. */
fn_info_value = build_constructor_from_list (array_type,
nreverse (fn_info_value));
fn_info_value = build1 (ADDR_EXPR, fn_info_ptr_type, fn_info_value);
}
else
fn_info_value = null_pointer_node;
/* number of functions */
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
TREE_CHAIN (field) = fields;
fields = field;
value = tree_cons (field,
build_int_cstu (get_gcov_unsigned_t (), n_fns),
value);
/* fn_info table */
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, fn_info_ptr_type);
TREE_CHAIN (field) = fields;
fields = field;
value = tree_cons (field, fn_info_value, value);
/* counter_mask */
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, get_gcov_unsigned_t ());
TREE_CHAIN (field) = fields;
fields = field;
value = tree_cons (field,
build_int_cstu (get_gcov_unsigned_t (), prg_ctr_mask),
value);
/* counters */
ctr_info_type = build_ctr_info_type ();
ctr_info_ary_type = build_index_type (build_int_cst (NULL_TREE,
n_ctr_types));
ctr_info_ary_type = build_array_type (ctr_info_type, ctr_info_ary_type);
for (ix = 0; ix != GCOV_COUNTERS; ix++)
if (prg_ctr_mask & (1 << ix))
ctr_info_value = tree_cons (NULL_TREE,
build_ctr_info_value (ix, ctr_info_type),
ctr_info_value);
/* FIXME: use build_constructor directly. */
ctr_info_value = build_constructor_from_list (ctr_info_ary_type,
nreverse (ctr_info_value));
field = build_decl (BUILTINS_LOCATION,
FIELD_DECL, NULL_TREE, ctr_info_ary_type);
TREE_CHAIN (field) = fields;
fields = field;
value = tree_cons (field, ctr_info_value, value);
finish_builtin_struct (type, "__gcov_info", fields, NULL_TREE);
/* FIXME: use build_constructor directly. */
value = build_constructor_from_list (type, nreverse (value));
return value;
}
/* Write out the structure which libgcov uses to locate all the
counters. The structures used here must match those defined in
gcov-io.h. Write out the constructor to call __gcov_init. */
static void
create_coverage (void)
{
tree gcov_info, gcov_init, body, t;
char name_buf[32];
no_coverage = 1; /* Disable any further coverage. */
if (!prg_ctr_mask)
return;
t = build_gcov_info ();
gcov_info = build_decl (BUILTINS_LOCATION,
VAR_DECL, NULL_TREE, TREE_TYPE (t));
TREE_STATIC (gcov_info) = 1;
ASM_GENERATE_INTERNAL_LABEL (name_buf, "LPBX", 0);
DECL_NAME (gcov_info) = get_identifier (name_buf);
DECL_INITIAL (gcov_info) = t;
/* Build structure. */
assemble_variable (gcov_info, 0, 0, 0);
/* Build a decl for __gcov_init. */
t = build_pointer_type (TREE_TYPE (gcov_info));
t = build_function_type_list (void_type_node, t, NULL);
t = build_decl (BUILTINS_LOCATION,
FUNCTION_DECL, get_identifier ("__gcov_init"), t);
TREE_PUBLIC (t) = 1;
DECL_EXTERNAL (t) = 1;
gcov_init = t;
/* Generate a call to __gcov_init(&gcov_info). */
body = NULL;
t = build_fold_addr_expr (gcov_info);
t = build_call_expr (gcov_init, 1, t);
append_to_statement_list (t, &body);
/* Generate a constructor to run it. */
cgraph_build_static_cdtor ('I', body, DEFAULT_INIT_PRIORITY);
}
/* Perform file-level initialization. Read in data file, generate name
of graph file. */
void
coverage_init (const char *filename)
{
int len = strlen (filename);
/* + 1 for extra '/', in case prefix doesn't end with /. */
int prefix_len;
if (profile_data_prefix == 0 && filename[0] != '/')
profile_data_prefix = getpwd ();
prefix_len = (profile_data_prefix) ? strlen (profile_data_prefix) + 1 : 0;
/* Name of da file. */
da_file_name = XNEWVEC (char, len + strlen (GCOV_DATA_SUFFIX)
+ prefix_len + 1);
if (profile_data_prefix)
{
strcpy (da_file_name, profile_data_prefix);
da_file_name[prefix_len - 1] = '/';
da_file_name[prefix_len] = 0;
}
else
da_file_name[0] = 0;
strcat (da_file_name, filename);
strcat (da_file_name, GCOV_DATA_SUFFIX);
/* Name of bbg file. */
bbg_file_name = XNEWVEC (char, len + strlen (GCOV_NOTE_SUFFIX) + 1);
strcpy (bbg_file_name, filename);
strcat (bbg_file_name, GCOV_NOTE_SUFFIX);
if (flag_profile_use)
read_counts_file ();
}
/* Performs file-level cleanup. Close graph file, generate coverage
variables and constructor. */
void
coverage_finish (void)
{
create_coverage ();
if (bbg_file_opened)
{
int error = gcov_close ();
if (error)
unlink (bbg_file_name);
if (!local_tick)
/* Only remove the da file, if we cannot stamp it. If we can
stamp it, libgcov will DTRT. */
unlink (da_file_name);
}
}
#include "gt-coverage.h"