2004-09-24 Ben Elliston <bje@au.ibm.com> Steven Bosscher <stevenb@suse.de> Andrew Pinski <pinskia@physics.uc.edu> Merge from edge-vector-branch: * basic-block.h: Include vec.h, errors.h. Instantiate a VEC(edge). (struct edge_def): Remove pred_next, succ_next members. (struct basic_block_def): Remove pred, succ members. Add preds and succs members of type VEC(edge). (FALLTHRU_EDGE): Redefine using EDGE_SUCC. (BRANCH_EDGE): Likewise. (EDGE_CRITICAL_P): Redefine using EDGE_COUNT. (EDGE_COUNT, EDGE_I, EDGE_PRED, EDGE_SUCC): New. (edge_iterator): New. (ei_start, ei_last, ei_end_p, ei_one_before_end_p): New. (ei_next, ei_prev, ei_edge, ei_safe_edge): Likewise. (FOR_EACH_EDGE): New. * bb-reorder.c (find_traces): Use FOR_EACH_EDGE and EDGE_* macros where applicable. (rotate_loop): Likewise. (find_traces_1_route): Likewise. (bb_to_key): Likewise. (connect_traces): Likewise. (copy_bb_p): Likewise. (find_rarely_executed_basic_blocks_and_crossing_edges): Likewise. (add_labels_and_missing_jumps): Likewise. (fix_up_fall_thru_edges): Likewise. (find_jump_block): Likewise. (fix_crossing_conditional_branches): Likewise. (fix_crossing_unconditional_branches): Likewise. (add_reg_crossing_jump_notes): Likewise. * bt-load.c (augment_live_range): Likewise. * cfg.c (clear_edges): Likewise. (unchecked_make_edge): Likewise. (cached_make_edge): Likewise. (make_single_succ_edge): Likewise. (remove_edge): Likewise. (redirect_edge_succ_nodup): Likewise. (check_bb_profile): Likewise. (dump_flow_info): Likewise. (alloc_aux_for_edges): Likewise. (clear_aux_for_edges): Likewise. (dump_cfg_bb_info): Likewise. * cfganal.c (forwarder_block_p): Likewise. (can_fallthru): Likewise. (could_fall_through): Likewise. (mark_dfs_back_edges): Likewise. (set_edge_can_fallthru_flag): Likewise. (find_unreachable_blocks): Likewise. (create_edge_list): Likewise. (verify_edge_list): Likewise. (add_noreturn_fake_exit_edges): Likewise. (connect_infinite_loops_to_exit): Likewise. (flow_reverse_top_sort_order_compute): Likewise. (flow_depth_first_order_compute): Likewise. (flow_preorder_transversal_compute): Likewise. (flow_dfs_compute_reverse_execute): Likewise. (dfs_enumerate_from): Likewise. (compute_dominance_frontiers_1): Likewise. * cfgbuild.c (make_edges): Likewise. (compute_outgoing_frequencies): Likewise. (find_many_sub_basic_blocks): Likewise. (find_sub_basic_blocks): Likewise. * cfgcleanup.c (try_simplify_condjump): Likewise. (thread_jump): Likewise. (try_forward_edges): Likewise. (merge_blocks_move): Likewise. (outgoing_edges_match): Likewise. (try_crossjump_to_edge): Likewise. (try_crossjump_bb): Likewise. (try_optimize_cfg): Likewise. (merge_seq_blocks): Likewise. * cfgexpand.c (expand_gimple_tailcall): Likewise. (expand_gimple_basic_block): Likewise. (construct_init_block): Likewise. (construct_exit_block): Likewise. * cfghooks.c (verify_flow_info): Likewise. (dump_bb): Likewise. (delete_basic_block): Likewise. (split_edge): Likewise. (merge_blocks): Likewise. (make_forwarder_block): Likewise. (tidy_fallthru_edges): Likewise. (can_duplicate_block_p): Likewise. (duplicate_block): Likewise. * cfglayout.c (fixup_reorder_chain): Likewise. (fixup_fallthru_exit_predecessor): Likewise. (can_copy_bbs_p): Likewise. (copy_bbs): Likewise. * cfgloop.c (flow_loops_cfg_dump): Likewise. (flow_loop_entry_edges_find): Likewise. (flow_loop_exit_edges_find): Likewise. (flow_loop_nodes_find): Likewise. (mark_single_exit_loops): Likewise. (flow_loop_pre_header_scan): Likewise. (flow_loop_pre_header_find): Likewise. (update_latch_info): Likewise. (canonicalize_loop_headers): Likewise. (flow_loops_find): Likewise. (get_loop_body_in_bfs_order): Likewise. (get_loop_exit_edges): Likewise. (num_loop_branches): Likewise. (verify_loop_structure): Likewise. (loop_latch_edge): Likewise. (loop_preheader_edge): Likewise. * cfgloopanal.c (mark_irreducible_loops): Likewise. (expected_loop_iterations): Likewise. * cfgloopmanip.c (remove_bbs): Likewise. (fix_bb_placement): Likewise. (fix_irreducible_loops): Likewise. (remove_path): Likewise. (scale_bbs_frequencies): Likewise. (loopify): Likewise. (unloop): Likewise. (fix_loop_placement): Likewise. (loop_delete_branch_edge): Likewise. (duplicate_loop_to_header_edge): Likewise. (mfb_keep_just): Likewise. (create_preheader): Likewise. (force_single_succ_latches): Likewise. (loop_split_edge_with): Likewise. (create_loop_notes): Likewise. * cfgrtl.c (rtl_split_block): Likewise. (rtl_merge_blocks): Likewise. (rtl_can_merge_blocks): Likewise. (try_redirect_by_replacing_jump): Likewise. (force_nonfallthru_and_redirect): Likewise. (rtl_tidy_fallthru_edge): Likewise. (commit_one_edge_insertion): Likewise. (commit_edge_insertions): Likewise. (commit_edge_insertions_watch_calls): Likewise. (rtl_verify_flow_info_1): Likewise. (rtl_verify_flow_info): Likewise. (purge_dead_edges): Likewise. (cfg_layout_redirect_edge_and_branch): Likewise. (cfg_layout_can_merge_blocks_p): Likewise. (rtl_flow_call_edges_add): Likewise. * cse.c (cse_cc_succs): Likewise. * df.c (hybrid_search): Likewise. * dominance.c (calc_dfs_tree_nonrec): Likewise. (calc_dfs_tree): Likewise. (calc_idoms): Likewise. (recount_dominator): Likewise. * domwalk.c (walk_dominator_tree): Likewise. * except.c (emit_to_new_bb_before): Likewise. (connect_post_landing_pads): Likewise. (sjlj_emit_function_enter): Likewise. (sjlj_emit_function_exit): Likewise. (finish_eh_generation): Likewise. * final.c (compute_alignments): Likewise. * flow.c (calculate_global_regs_live): Likewise. (initialize_uninitialized_subregs): Likewise. (init_propagate_block_info): Likewise. * function.c (thread_prologue_and_epilogue_insns): Likewise. * gcse.c (find_implicit_sets): Likewise. (bypass_block): Likewise. (bypass_conditional_jumps): Likewise. (compute_pre_data): Likewise. (insert_insn_end_bb): Likewise. (insert_store): Likewise. (remove_reachable_equiv_notes): Likewise. * global.c (global_conflicts): Likewise. (calculate_reg_pav): Likewise. * graph.c (print_rtl_graph_with_bb): Likewise. * ifcvt.c (mark_loop_exit_edges): Likewise. (merge_if_block): Likewise. (find_if_header): Likewise. (block_jumps_and_fallthru_p): Likewise. (find_if_block): Likewise. (find_cond_trap): Likewise. (block_has_only_trap): Likewise. (find_if_case1): Likewise. (find_if_case_2): Likewise. * lambda-code.c (lambda_loopnest_to_gcc_loopnest): Likewise. (perfect_nestify): Likewise. * lcm.c (compute_antinout_edge): Likewise. (compute_laterin): Likewise. (compute_available): Likewise. (compute_nearerout): Likewise. * loop-doloop.c (doloop_modify): Likewise. * loop-init.c (loop_optimizer_init): Likewise. * loop-invariant.c (find_exits): Likewise. * loop-iv.c (simplify_using_initial_values): Likewise. (check_simple_exit): Likewise. (find_simple_exit): Likewise. * loop-unroll.c (peel_loop_completely): Likewise. (unroll_loop_constant_iterations): Likewise. (unroll_loop_runtime_iterations): Likewise. * loop-unswitch.c (may_unswitch_on): Likewise. (unswitch_loop): Likewise. * modulo-sched.c (generate_prolog_epilog): Likewise. (sms_schedule): Likewise. * postreload-gcse.c (eliminate_partially_redundant_load): Likewise. * predict.c (can_predict_insn_p): Likewise. (set_even_probabilities): Likewise. (combine_predictions_for_bb): Likewise. (predict_loops): Likewise. (estimate_probability): Likewise. (tree_predict_by_opcode): Likewise. (tree_estimate_probability): Likewise. (last_basic_block_p): Likewise. (propagate_freq): Likewise. (estimate_loops_at_level): Likewise. (estimate_bb_frequencies): Likewise. * profile.c (instrument_edges): Likewise. (get_exec_counts): Likewise. (compute_branch_probabilities): Likewise. (branch_prob): Likewise. * ra-build.c (live_in): Likewise. * ra-rewrite.c (rewrite_program2): Likewise. * ra.c (reg_alloc): Likewise. * reg-stack.c (reg_to_stack): Likewise. (convert_regs_entry): Likewise. (compensate_edge): Likewise. (convert_regs_1): Likewise, (convert_regs_2): Likewise. (convert_regs): Likewise. * regrename.c (copyprop_hardreg_forward): Likewise. * reload1.c (fixup_abnormal_edges): Likewise. * sbitmap.c (sbitmap_intersection_of_succs): Likewise. (sbitmap_insersection_of_preds): Likewise. (sbitmap_union_of_succs): Likewise. (sbitmap_union_of_preds): Likewise. * sched-ebb.c (compute_jump_reg_dependencies): Likewise. (fix_basic_block_boundaries): Likewise. (sched_ebbs): Likewise. * sched-rgn.c (build_control_flow): Likewise. (find_rgns): Likewise. * tracer.c (find_best_successor): Likewise. (find_best_predecessor): Likewise. (tail_duplicate): Likewise. * tree-cfg.c (make_edges): Likewise. (make_ctrl_stmt_edges): Likewise. (make_goto_expr_edges): Likewise. (tree_can_merge_blocks_p): Likewise. (tree_merge_blocks): Likewise. (cfg_remove_useless_stmts_bb): Likewise. (remove_phi_nodes_and_edges_for_unreachable_block): Likewise. (tree_block_forwards_to): Likewise. (cleanup_control_expr_graph): Likewise. (find_taken_edge): Likewise. (dump_cfg_stats): Likewise. (tree_cfg2vcg): Likewise. (disband_implicit_edges): Likewise. (tree_find_edge_insert_loc): Likewise. (bsi_commit_edge_inserts): Likewise. (tree_split_edge): Likewise. (tree_verify_flow_info): Likewise. (tree_make_forwarder_block): Likewise. (tree_forwarder_block_p): Likewise. (thread_jumps): Likewise. (tree_try_redirect_by_replacing_jump): Likewise. (tree_split_block): Likewise. (add_phi_args_after_copy_bb): Likewise. (rewrite_to_new_ssa_names_bb): Likewise. (dump_function_to_file): Likewise. (print_pred_bbs): Likewise. (print_loop): Likewise. (tree_flow_call_edges_add): Likewise. (split_critical_edges): Likewise. (execute_warn_function_return): Likewise. (extract_true_false_edges_from_block): Likewise. * tree-if-conv.c (tree_if_conversion): Likewise. (if_convertable_bb_p): Likewise. (find_phi_replacement_condition): Likewise. (combine_blocks): Likewise. * tree-into-ssa.c (compute_global_livein): Likewise. (ssa_mark_phi_uses): Likewise. (ssa_rewrite_initialize_block): Likewise. (rewrite_add_phi_arguments): Likewise. (ssa_rewrite_phi_arguments): Likewise. (insert_phi_nodes_for): Likewise. (rewrite_into_ssa): Likewise. (rewrite_ssa_into_ssa): Likewise. * tree-mudflap.c (mf_build_check_statement_for): Likewise. * tree-outof-ssa.c (coalesce_abnormal_edges): Likewise. (rewrite_trees): Likewise. * tree-pretty-print.c (dump_bb_header): Likewise. (dump_implicit_edges): Likewise. * tree-sra.c (insert_edge_copies): Likewise. (find_obviously_necessary_stmts): Likewise. (remove_data_stmt): Likewise. * tree-ssa-dom.c (thread_across_edge): Likewise. (dom_opt_finalize_block): Likewise. (single_incoming_edge_ignoring_loop_edges): Likewise. (record_equivalences_from_incoming_edges): Likewise. (cprop_into_successor_phis): Likewise. * tree-ssa-live.c (live_worklist): Likewise. (calculate_live_on_entry): Likewise. (calculate_live_on_exit): Likewise. * tree-ssa-loop-ch.c (should_duplicate_loop_header_p): Likewise. (copy_loop_headers): Likewise. * tree-ssa-loop-im.c (loop_commit_inserts): Likewise. (fill_always_executed_in): Likewise. * tree-ssa-loop-ivcanon.c (create_canonical_iv): Likewise. * tree-ssa-loop-ivopts.c (find_interesting_uses): Likewise. (compute_phi_arg_on_exit): Likewise. * tree-ssa-loop-manip.c (add_exit_phis_edge): Likewise. (get_loops_exit): Likewise. (split_loop_exit_edge): Likewise. (ip_normal_pos): Likewise. * tree-ssa-loop-niter.c (simplify_using_initial_conditions): Likewise. * tree-ssa-phiopt.c (candidate_bb_for_phi_optimization): Likewise. (replace_phi_with_stmt): Likewise. (value_replacement): Likewise. * tree-ssa-pre.c (compute_antic_aux): Likewise. (insert_aux): Likewise. (init_pre): Likewise. * tree-ssa-propagate.c (simulate_stmt): Likewise. (simulate_block): Likewise. (ssa_prop_init): Likewise. * tree-ssa-threadupdate.c (thread_block): Likewise. (create_block_for_threading): Likewise. (remove_last_stmt_and_useless_edges): Likewise. * tree-ssa.c (verify_phi_args): Likewise. (verify_ssa): Likewise. * tree_tailcall.c (independent_of_stmt_p): Likewise. (find_tail_calls): Likewise. (eliminate_tail_call): Likewise. (tree_optimize_tail_calls_1): Likewise. * tree-vectorizer.c (vect_transform_loop): Likewise. * var-tracking.c (prologue_stack_adjust): Likewise. (vt_stack_adjustments): Likewise. (vt_find_locations): Likewise. * config/frv/frv.c (frv_ifcvt_modify_tests): Likewise. * config/i386/i386.c (ix86_pad_returns): Likewise. * config/ia64/ia64.c (ia64_expand_prologue): Likewise. * config/rs6000/rs6000.c (rs6000_emit_prologue): Likewise. Co-Authored-By: Andrew Pinski <pinskia@physics.uc.edu> Co-Authored-By: Steven Bosscher <stevenb@suse.de> From-SVN: r88222
561 lines
16 KiB
C
561 lines
16 KiB
C
/* Perform doloop optimizations
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Copyright (C) 2004 Free Software Foundation, Inc.
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Based on code by Michael P. Hayes (m.hayes@elec.canterbury.ac.nz)
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This file is part of GCC.
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GCC is free software; you can redistribute it and/or modify it under
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the terms of the GNU General Public License as published by the Free
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Software Foundation; either version 2, or (at your option) any later
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version.
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GCC is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with GCC; see the file COPYING. If not, write to the Free
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Software Foundation, 59 Temple Place - Suite 330, Boston, MA
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02111-1307, USA. */
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#include "config.h"
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#include "system.h"
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#include "coretypes.h"
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#include "tm.h"
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#include "rtl.h"
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#include "flags.h"
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#include "expr.h"
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#include "hard-reg-set.h"
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#include "basic-block.h"
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#include "toplev.h"
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#include "tm_p.h"
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#include "cfgloop.h"
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#include "output.h"
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#include "params.h"
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/* This module is used to modify loops with a determinable number of
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iterations to use special low-overhead looping instructions.
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It first validates whether the loop is well behaved and has a
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determinable number of iterations (either at compile or run-time).
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It then modifies the loop to use a low-overhead looping pattern as
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follows:
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1. A pseudo register is allocated as the loop iteration counter.
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2. The number of loop iterations is calculated and is stored
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in the loop counter.
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3. At the end of the loop, the jump insn is replaced by the
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doloop_end pattern. The compare must remain because it might be
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used elsewhere. If the loop-variable or condition register are
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used elsewhere, they will be eliminated by flow.
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4. An optional doloop_begin pattern is inserted at the top of the
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loop.
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TODO The optimization should only performed when either the biv used for exit
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condition is unused at all except for the exit test, or if we do not have to
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change its value, since otherwise we have to add a new induction variable,
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which usually will not pay up (unless the cost of the doloop pattern is
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somehow extremely lower than the cost of compare & jump, or unless the bct
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register cannot be used for anything else but doloop -- ??? detect these
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cases). */
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#ifdef HAVE_doloop_end
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/* Return the loop termination condition for PATTERN or zero
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if it is not a decrement and branch jump insn. */
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static rtx
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doloop_condition_get (rtx pattern)
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{
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rtx cmp;
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rtx inc;
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rtx reg;
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rtx condition;
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/* The canonical doloop pattern we expect is:
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(parallel [(set (pc) (if_then_else (condition)
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(label_ref (label))
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(pc)))
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(set (reg) (plus (reg) (const_int -1)))
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(additional clobbers and uses)])
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Some machines (IA-64) make the decrement conditional on
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the condition as well, so we don't bother verifying the
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actual decrement. In summary, the branch must be the
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first entry of the parallel (also required by jump.c),
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and the second entry of the parallel must be a set of
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the loop counter register. */
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if (GET_CODE (pattern) != PARALLEL)
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return 0;
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cmp = XVECEXP (pattern, 0, 0);
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inc = XVECEXP (pattern, 0, 1);
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/* Check for (set (reg) (something)). */
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if (GET_CODE (inc) != SET || ! REG_P (SET_DEST (inc)))
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return 0;
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/* Extract loop counter register. */
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reg = SET_DEST (inc);
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/* Check for (set (pc) (if_then_else (condition)
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(label_ref (label))
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(pc))). */
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if (GET_CODE (cmp) != SET
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|| SET_DEST (cmp) != pc_rtx
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|| GET_CODE (SET_SRC (cmp)) != IF_THEN_ELSE
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|| GET_CODE (XEXP (SET_SRC (cmp), 1)) != LABEL_REF
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|| XEXP (SET_SRC (cmp), 2) != pc_rtx)
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return 0;
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/* Extract loop termination condition. */
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condition = XEXP (SET_SRC (cmp), 0);
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if ((GET_CODE (condition) != GE && GET_CODE (condition) != NE)
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|| GET_CODE (XEXP (condition, 1)) != CONST_INT)
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return 0;
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if (XEXP (condition, 0) == reg)
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return condition;
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if (GET_CODE (XEXP (condition, 0)) == PLUS
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&& XEXP (XEXP (condition, 0), 0) == reg)
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return condition;
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/* ??? If a machine uses a funny comparison, we could return a
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canonicalized form here. */
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return 0;
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}
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/* Return nonzero if the loop specified by LOOP is suitable for
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the use of special low-overhead looping instructions. DESC
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describes the number of iterations of the loop. */
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static bool
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doloop_valid_p (struct loop *loop, struct niter_desc *desc)
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{
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basic_block *body = get_loop_body (loop), bb;
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rtx insn;
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unsigned i;
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bool result = true;
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/* Check for loops that may not terminate under special conditions. */
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if (!desc->simple_p
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|| desc->assumptions
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|| desc->infinite)
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{
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/* There are some cases that would require a special attention.
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For example if the comparison is LEU and the comparison value
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is UINT_MAX then the loop will not terminate. Similarly, if the
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comparison code is GEU and the comparison value is 0, the
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loop will not terminate.
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If the absolute increment is not 1, the loop can be infinite
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even with LTU/GTU, e.g. for (i = 3; i > 0; i -= 2)
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??? We could compute these conditions at run-time and have a
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additional jump around the loop to ensure an infinite loop.
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However, it is very unlikely that this is the intended
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behavior of the loop and checking for these rare boundary
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conditions would pessimize all other code.
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If the loop is executed only a few times an extra check to
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restart the loop could use up most of the benefits of using a
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count register loop. Note however, that normally, this
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restart branch would never execute, so it could be predicted
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well by the CPU. We should generate the pessimistic code by
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default, and have an option, e.g. -funsafe-loops that would
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enable count-register loops in this case. */
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if (dump_file)
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fprintf (dump_file, "Doloop: Possible infinite iteration case.\n");
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result = false;
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goto cleanup;
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}
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for (i = 0; i < loop->num_nodes; i++)
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{
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bb = body[i];
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for (insn = BB_HEAD (bb);
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insn != NEXT_INSN (BB_END (bb));
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insn = NEXT_INSN (insn))
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{
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/* A called function may clobber any special registers required for
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low-overhead looping. */
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if (CALL_P (insn))
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{
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if (dump_file)
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fprintf (dump_file, "Doloop: Function call in loop.\n");
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result = false;
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goto cleanup;
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}
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/* Some targets (eg, PPC) use the count register for branch on table
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instructions. ??? This should be a target specific check. */
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if (JUMP_P (insn)
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&& (GET_CODE (PATTERN (insn)) == ADDR_DIFF_VEC
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|| GET_CODE (PATTERN (insn)) == ADDR_VEC))
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{
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if (dump_file)
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fprintf (dump_file, "Doloop: Computed branch in the loop.\n");
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result = false;
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goto cleanup;
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}
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}
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}
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result = true;
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cleanup:
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free (body);
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return result;
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}
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/* Adds test of COND jumping to DEST to the end of BB. */
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static void
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add_test (rtx cond, basic_block bb, basic_block dest)
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{
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rtx seq, jump, label;
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enum machine_mode mode;
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rtx op0 = XEXP (cond, 0), op1 = XEXP (cond, 1);
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enum rtx_code code = GET_CODE (cond);
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mode = GET_MODE (XEXP (cond, 0));
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if (mode == VOIDmode)
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mode = GET_MODE (XEXP (cond, 1));
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start_sequence ();
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op0 = force_operand (op0, NULL_RTX);
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op1 = force_operand (op1, NULL_RTX);
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label = block_label (dest);
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do_compare_rtx_and_jump (op0, op1, code, 0, mode, NULL_RTX, NULL_RTX, label);
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jump = get_last_insn ();
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JUMP_LABEL (jump) = label;
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/* The jump is supposed to handle an unlikely special case. */
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REG_NOTES (jump)
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= gen_rtx_EXPR_LIST (REG_BR_PROB,
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const0_rtx, REG_NOTES (jump));
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LABEL_NUSES (label)++;
|
|
|
|
seq = get_insns ();
|
|
end_sequence ();
|
|
emit_insn_after (seq, BB_END (bb));
|
|
}
|
|
|
|
/* Modify the loop to use the low-overhead looping insn where LOOP
|
|
describes the loop, DESC describes the number of iterations of the
|
|
loop, and DOLOOP_INSN is the low-overhead looping insn to emit at the
|
|
end of the loop. CONDITION is the condition separated from the
|
|
DOLOOP_SEQ. */
|
|
|
|
static void
|
|
doloop_modify (struct loop *loop, struct niter_desc *desc,
|
|
rtx doloop_seq, rtx condition)
|
|
{
|
|
rtx counter_reg;
|
|
rtx count, tmp, noloop = NULL_RTX;
|
|
rtx sequence;
|
|
rtx jump_insn;
|
|
rtx jump_label;
|
|
int nonneg = 0, irr;
|
|
bool increment_count;
|
|
basic_block loop_end = desc->out_edge->src;
|
|
|
|
jump_insn = BB_END (loop_end);
|
|
|
|
if (dump_file)
|
|
{
|
|
fprintf (dump_file, "Doloop: Inserting doloop pattern (");
|
|
if (desc->const_iter)
|
|
fprintf (dump_file, HOST_WIDEST_INT_PRINT_DEC, desc->niter);
|
|
else
|
|
fputs ("runtime", dump_file);
|
|
fputs (" iterations).\n", dump_file);
|
|
}
|
|
|
|
/* Discard original jump to continue loop. The original compare
|
|
result may still be live, so it cannot be discarded explicitly. */
|
|
delete_insn (jump_insn);
|
|
|
|
counter_reg = XEXP (condition, 0);
|
|
if (GET_CODE (counter_reg) == PLUS)
|
|
counter_reg = XEXP (counter_reg, 0);
|
|
|
|
count = copy_rtx (desc->niter_expr);
|
|
increment_count = false;
|
|
switch (GET_CODE (condition))
|
|
{
|
|
case NE:
|
|
/* Currently only NE tests against zero and one are supported. */
|
|
if (XEXP (condition, 1) == const1_rtx)
|
|
{
|
|
increment_count = true;
|
|
noloop = const1_rtx;
|
|
}
|
|
else if (XEXP (condition, 1) == const0_rtx)
|
|
noloop = const0_rtx;
|
|
else
|
|
abort ();
|
|
break;
|
|
|
|
case GE:
|
|
/* Currently only GE tests against zero are supported. */
|
|
if (XEXP (condition, 1) != const0_rtx)
|
|
abort ();
|
|
|
|
noloop = constm1_rtx;
|
|
|
|
/* The iteration count does not need incrementing for a GE test. */
|
|
increment_count = false;
|
|
|
|
/* Determine if the iteration counter will be non-negative.
|
|
Note that the maximum value loaded is iterations_max - 1. */
|
|
if (desc->niter_max
|
|
<= ((unsigned HOST_WIDEST_INT) 1
|
|
<< (GET_MODE_BITSIZE (GET_MODE (counter_reg)) - 1)))
|
|
nonneg = 1;
|
|
break;
|
|
|
|
/* Abort if an invalid doloop pattern has been generated. */
|
|
default:
|
|
abort ();
|
|
}
|
|
|
|
if (increment_count)
|
|
count = simplify_gen_binary (PLUS, desc->mode, count, const1_rtx);
|
|
|
|
/* Insert initialization of the count register into the loop header. */
|
|
start_sequence ();
|
|
tmp = force_operand (count, counter_reg);
|
|
convert_move (counter_reg, tmp, 1);
|
|
sequence = get_insns ();
|
|
end_sequence ();
|
|
emit_insn_after (sequence, BB_END (loop_preheader_edge (loop)->src));
|
|
|
|
if (desc->noloop_assumptions)
|
|
{
|
|
rtx ass = copy_rtx (desc->noloop_assumptions);
|
|
basic_block preheader = loop_preheader_edge (loop)->src;
|
|
basic_block set_zero
|
|
= loop_split_edge_with (loop_preheader_edge (loop), NULL_RTX);
|
|
basic_block new_preheader
|
|
= loop_split_edge_with (loop_preheader_edge (loop), NULL_RTX);
|
|
basic_block bb;
|
|
edge te;
|
|
gcov_type cnt;
|
|
|
|
/* Expand the condition testing the assumptions and if it does not pass,
|
|
reset the count register to 0. */
|
|
add_test (XEXP (ass, 0), preheader, set_zero);
|
|
EDGE_SUCC (preheader, 0)->flags &= ~EDGE_FALLTHRU;
|
|
cnt = EDGE_SUCC (preheader, 0)->count;
|
|
EDGE_SUCC (preheader, 0)->probability = 0;
|
|
EDGE_SUCC (preheader, 0)->count = 0;
|
|
irr = EDGE_SUCC (preheader, 0)->flags & EDGE_IRREDUCIBLE_LOOP;
|
|
te = make_edge (preheader, new_preheader, EDGE_FALLTHRU | irr);
|
|
te->probability = REG_BR_PROB_BASE;
|
|
te->count = cnt;
|
|
set_immediate_dominator (CDI_DOMINATORS, new_preheader, preheader);
|
|
|
|
set_zero->count = 0;
|
|
set_zero->frequency = 0;
|
|
|
|
for (ass = XEXP (ass, 1); ass; ass = XEXP (ass, 1))
|
|
{
|
|
bb = loop_split_edge_with (te, NULL_RTX);
|
|
te = EDGE_SUCC (bb, 0);
|
|
add_test (XEXP (ass, 0), bb, set_zero);
|
|
make_edge (bb, set_zero, irr);
|
|
}
|
|
|
|
start_sequence ();
|
|
convert_move (counter_reg, noloop, 0);
|
|
sequence = get_insns ();
|
|
end_sequence ();
|
|
emit_insn_after (sequence, BB_END (set_zero));
|
|
}
|
|
|
|
/* Some targets (eg, C4x) need to initialize special looping
|
|
registers. */
|
|
#ifdef HAVE_doloop_begin
|
|
{
|
|
rtx init;
|
|
unsigned level = get_loop_level (loop) + 1;
|
|
init = gen_doloop_begin (counter_reg,
|
|
desc->const_iter ? desc->niter_expr : const0_rtx,
|
|
desc->niter_max,
|
|
GEN_INT (level));
|
|
if (init)
|
|
{
|
|
start_sequence ();
|
|
emit_insn (init);
|
|
sequence = get_insns ();
|
|
end_sequence ();
|
|
emit_insn_after (sequence, BB_END (loop_preheader_edge (loop)->src));
|
|
}
|
|
}
|
|
#endif
|
|
|
|
/* Insert the new low-overhead looping insn. */
|
|
emit_jump_insn_after (doloop_seq, BB_END (loop_end));
|
|
jump_insn = BB_END (loop_end);
|
|
jump_label = block_label (desc->in_edge->dest);
|
|
JUMP_LABEL (jump_insn) = jump_label;
|
|
LABEL_NUSES (jump_label)++;
|
|
|
|
/* Ensure the right fallthru edge is marked, for case we have reversed
|
|
the condition. */
|
|
desc->in_edge->flags &= ~EDGE_FALLTHRU;
|
|
desc->out_edge->flags |= EDGE_FALLTHRU;
|
|
|
|
/* Add a REG_NONNEG note if the actual or estimated maximum number
|
|
of iterations is non-negative. */
|
|
if (nonneg)
|
|
{
|
|
REG_NOTES (jump_insn)
|
|
= gen_rtx_EXPR_LIST (REG_NONNEG, NULL_RTX, REG_NOTES (jump_insn));
|
|
}
|
|
}
|
|
|
|
/* Process loop described by LOOP validating that the loop is suitable for
|
|
conversion to use a low overhead looping instruction, replacing the jump
|
|
insn where suitable. Returns true if the loop was successfully
|
|
modified. */
|
|
|
|
static bool
|
|
doloop_optimize (struct loop *loop)
|
|
{
|
|
enum machine_mode mode;
|
|
rtx doloop_seq, doloop_pat, doloop_reg;
|
|
rtx iterations;
|
|
rtx iterations_max;
|
|
rtx start_label;
|
|
rtx condition;
|
|
unsigned level, est_niter;
|
|
struct niter_desc *desc;
|
|
|
|
if (dump_file)
|
|
fprintf (dump_file, "Doloop: Processing loop %d.\n", loop->num);
|
|
|
|
iv_analysis_loop_init (loop);
|
|
|
|
/* Find the simple exit of a LOOP. */
|
|
desc = get_simple_loop_desc (loop);
|
|
|
|
/* Check that loop is a candidate for a low-overhead looping insn. */
|
|
if (!doloop_valid_p (loop, desc))
|
|
{
|
|
if (dump_file)
|
|
fprintf (dump_file,
|
|
"Doloop: The loop is not suitable.\n");
|
|
return false;
|
|
}
|
|
mode = desc->mode;
|
|
|
|
est_niter = 3;
|
|
if (desc->const_iter)
|
|
est_niter = desc->niter;
|
|
/* If the estimate on number of iterations is reliable (comes from profile
|
|
feedback), use it. Do not use it normally, since the expected number
|
|
of iterations of an unrolled loop is 2. */
|
|
if (loop->header->count)
|
|
est_niter = expected_loop_iterations (loop);
|
|
|
|
if (est_niter < 3)
|
|
{
|
|
if (dump_file)
|
|
fprintf (dump_file,
|
|
"Doloop: Too few iterations (%u) to be profitable.\n",
|
|
est_niter);
|
|
return false;
|
|
}
|
|
|
|
iterations = desc->const_iter ? desc->niter_expr : const0_rtx;
|
|
iterations_max = GEN_INT (desc->niter_max);
|
|
level = get_loop_level (loop) + 1;
|
|
|
|
/* Generate looping insn. If the pattern FAILs then give up trying
|
|
to modify the loop since there is some aspect the back-end does
|
|
not like. */
|
|
start_label = block_label (desc->in_edge->dest);
|
|
doloop_reg = gen_reg_rtx (mode);
|
|
doloop_seq = gen_doloop_end (doloop_reg, iterations, iterations_max,
|
|
GEN_INT (level), start_label);
|
|
if (! doloop_seq && mode != word_mode)
|
|
{
|
|
PUT_MODE (doloop_reg, word_mode);
|
|
doloop_seq = gen_doloop_end (doloop_reg, iterations, iterations_max,
|
|
GEN_INT (level), start_label);
|
|
}
|
|
if (! doloop_seq)
|
|
{
|
|
if (dump_file)
|
|
fprintf (dump_file,
|
|
"Doloop: Target unwilling to use doloop pattern!\n");
|
|
return false;
|
|
}
|
|
|
|
/* If multiple instructions were created, the last must be the
|
|
jump instruction. Also, a raw define_insn may yield a plain
|
|
pattern. */
|
|
doloop_pat = doloop_seq;
|
|
if (INSN_P (doloop_pat))
|
|
{
|
|
while (NEXT_INSN (doloop_pat) != NULL_RTX)
|
|
doloop_pat = NEXT_INSN (doloop_pat);
|
|
if (JUMP_P (doloop_pat))
|
|
doloop_pat = PATTERN (doloop_pat);
|
|
else
|
|
doloop_pat = NULL_RTX;
|
|
}
|
|
|
|
if (! doloop_pat
|
|
|| ! (condition = doloop_condition_get (doloop_pat)))
|
|
{
|
|
if (dump_file)
|
|
fprintf (dump_file, "Doloop: Unrecognizable doloop pattern!\n");
|
|
return false;
|
|
}
|
|
|
|
doloop_modify (loop, desc, doloop_seq, condition);
|
|
return true;
|
|
}
|
|
|
|
/* This is the main entry point. Process all LOOPS using doloop_optimize. */
|
|
|
|
void
|
|
doloop_optimize_loops (struct loops *loops)
|
|
{
|
|
unsigned i;
|
|
struct loop *loop;
|
|
|
|
for (i = 1; i < loops->num; i++)
|
|
{
|
|
loop = loops->parray[i];
|
|
if (!loop)
|
|
continue;
|
|
|
|
doloop_optimize (loop);
|
|
}
|
|
|
|
iv_analysis_done ();
|
|
|
|
#ifdef ENABLE_CHECKING
|
|
verify_dominators (CDI_DOMINATORS);
|
|
verify_loop_structure (loops);
|
|
#endif
|
|
}
|
|
#endif /* HAVE_doloop_end */
|
|
|