b8698a0f37
2009-11-25 H.J. Lu <hongjiu.lu@intel.com> * alias.c: Remove trailing white spaces. * alloc-pool.c: Likewise. * alloc-pool.h: Likewise. * attribs.c: Likewise. * auto-inc-dec.c: Likewise. * basic-block.h: Likewise. * bb-reorder.c: Likewise. * bt-load.c: Likewise. * builtins.c: Likewise. * builtins.def: Likewise. * c-common.c: Likewise. * c-common.h: Likewise. * c-cppbuiltin.c: Likewise. * c-decl.c: Likewise. * c-format.c: Likewise. * c-lex.c: Likewise. * c-omp.c: Likewise. * c-opts.c: Likewise. * c-parser.c: Likewise. * c-pretty-print.c: Likewise. * c-tree.h: Likewise. * c-typeck.c: Likewise. * caller-save.c: Likewise. * calls.c: Likewise. * cfg.c: Likewise. * cfganal.c: Likewise. * cfgexpand.c: Likewise. * cfghooks.c: Likewise. * cfghooks.h: Likewise. * cfglayout.c: Likewise. * cfgloop.c: Likewise. * cfgloop.h: Likewise. * cfgloopmanip.c: Likewise. * cfgrtl.c: Likewise. * cgraph.c: Likewise. * cgraph.h: Likewise. * cgraphbuild.c: Likewise. * cgraphunit.c: Likewise. * cif-code.def: Likewise. * collect2.c: Likewise. * combine.c: Likewise. * convert.c: Likewise. * coverage.c: Likewise. * crtstuff.c: Likewise. * cse.c: Likewise. * cselib.c: Likewise. * dbgcnt.c: Likewise. * dbgcnt.def: Likewise. * dbgcnt.h: Likewise. * dbxout.c: Likewise. * dce.c: Likewise. * ddg.c: Likewise. * ddg.h: Likewise. * defaults.h: Likewise. * df-byte-scan.c: Likewise. * df-core.c: Likewise. * df-problems.c: Likewise. * df-scan.c: Likewise. * df.h: Likewise. * dfp.c: Likewise. * diagnostic.c: Likewise. * diagnostic.h: Likewise. * dominance.c: Likewise. * domwalk.c: Likewise. * double-int.c: Likewise. * double-int.h: Likewise. * dse.c: Likewise. * dwarf2asm.c: Likewise. * dwarf2asm.h: Likewise. * dwarf2out.c: Likewise. * ebitmap.c: Likewise. * ebitmap.h: Likewise. * emit-rtl.c: Likewise. * et-forest.c: Likewise. * except.c: Likewise. * except.h: Likewise. * expmed.c: Likewise. * expr.c: Likewise. * expr.h: Likewise. * final.c: Likewise. * flags.h: Likewise. * fold-const.c: Likewise. * function.c: Likewise. * function.h: Likewise. * fwprop.c: Likewise. * gcc.c: Likewise. * gcov-dump.c: Likewise. * gcov-io.c: Likewise. * gcov-io.h: Likewise. * gcov.c: Likewise. * gcse.c: Likewise. * genattr.c: Likewise. * genattrtab.c: Likewise. * genautomata.c: Likewise. * genchecksum.c: Likewise. * genconfig.c: Likewise. * genflags.c: Likewise. * gengtype-parse.c: Likewise. * gengtype.c: Likewise. * gengtype.h: Likewise. * genmddeps.c: Likewise. * genmodes.c: Likewise. * genopinit.c: Likewise. * genpreds.c: Likewise. * gensupport.c: Likewise. * ggc-common.c: Likewise. * ggc-page.c: Likewise. * ggc-zone.c: Likewise. * ggc.h: Likewise. * gimple-iterator.c: Likewise. * gimple-low.c: Likewise. * gimple-pretty-print.c: Likewise. * gimple.c: Likewise. * gimple.def: Likewise. * gimple.h: Likewise. * gimplify.c: Likewise. * graphds.c: Likewise. * graphite-clast-to-gimple.c: Likewise. * gthr-nks.h: Likewise. * gthr-posix.c: Likewise. * gthr-posix.h: Likewise. * gthr-posix95.h: Likewise. * gthr-single.h: 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* stringpool.c: Likewise. * stub-objc.c: Likewise. * sync-builtins.def: Likewise. * target-def.h: Likewise. * target.h: Likewise. * targhooks.c: Likewise. * targhooks.h: Likewise. * timevar.c: Likewise. * tlink.c: Likewise. * toplev.c: Likewise. * toplev.h: Likewise. * tracer.c: Likewise. * tree-affine.c: Likewise. * tree-affine.h: Likewise. * tree-browser.def: Likewise. * tree-call-cdce.c: Likewise. * tree-cfg.c: Likewise. * tree-cfgcleanup.c: Likewise. * tree-chrec.c: Likewise. * tree-chrec.h: Likewise. * tree-complex.c: Likewise. * tree-data-ref.c: Likewise. * tree-data-ref.h: Likewise. * tree-dfa.c: Likewise. * tree-dump.c: Likewise. * tree-dump.h: Likewise. * tree-eh.c: Likewise. * tree-flow-inline.h: Likewise. * tree-flow.h: Likewise. * tree-if-conv.c: Likewise. * tree-inline.c: Likewise. * tree-into-ssa.c: Likewise. * tree-loop-distribution.c: Likewise. * tree-loop-linear.c: Likewise. * tree-mudflap.c: Likewise. * tree-nested.c: Likewise. * tree-nomudflap.c: Likewise. * tree-nrv.c: Likewise. * tree-object-size.c: Likewise. * tree-optimize.c: Likewise. * tree-outof-ssa.c: Likewise. * tree-parloops.c: Likewise. * tree-pass.h: Likewise. * tree-phinodes.c: Likewise. * tree-predcom.c: Likewise. * tree-pretty-print.c: Likewise. * tree-profile.c: Likewise. * tree-scalar-evolution.c: Likewise. * tree-ssa-address.c: Likewise. * tree-ssa-alias.c: Likewise. * tree-ssa-ccp.c: Likewise. * tree-ssa-coalesce.c: Likewise. * tree-ssa-copy.c: Likewise. * tree-ssa-copyrename.c: Likewise. * tree-ssa-dce.c: Likewise. * tree-ssa-dom.c: Likewise. * tree-ssa-dse.c: Likewise. * tree-ssa-forwprop.c: Likewise. * tree-ssa-ifcombine.c: Likewise. * tree-ssa-live.c: Likewise. * tree-ssa-live.h: Likewise. * tree-ssa-loop-ch.c: Likewise. * tree-ssa-loop-im.c: Likewise. * tree-ssa-loop-ivcanon.c: Likewise. * tree-ssa-loop-ivopts.c: Likewise. * tree-ssa-loop-manip.c: Likewise. * tree-ssa-loop-niter.c: Likewise. * tree-ssa-loop-prefetch.c: Likewise. * tree-ssa-loop-unswitch.c: Likewise. * tree-ssa-loop.c: Likewise. * tree-ssa-math-opts.c: Likewise. * tree-ssa-operands.c: Likewise. * tree-ssa-operands.h: Likewise. * tree-ssa-phiopt.c: Likewise. * tree-ssa-phiprop.c: Likewise. * tree-ssa-pre.c: Likewise. * tree-ssa-propagate.c: Likewise. * tree-ssa-reassoc.c: Likewise. * tree-ssa-sccvn.c: Likewise. * tree-ssa-sink.c: Likewise. * tree-ssa-structalias.c: Likewise. * tree-ssa-ter.c: Likewise. * tree-ssa-threadedge.c: Likewise. * tree-ssa-threadupdate.c: Likewise. * tree-ssa-uncprop.c: Likewise. * tree-ssa.c: Likewise. * tree-ssanames.c: Likewise. * tree-switch-conversion.c: Likewise. * tree-tailcall.c: Likewise. * tree-vect-data-refs.c: Likewise. * tree-vect-generic.c: Likewise. * tree-vect-loop-manip.c: Likewise. * tree-vect-loop.c: Likewise. * tree-vect-patterns.c: Likewise. * tree-vect-slp.c: Likewise. * tree-vect-stmts.c: Likewise. * tree-vectorizer.c: Likewise. * tree-vectorizer.h: Likewise. * tree-vrp.c: Likewise. * tree.c: Likewise. * tree.def: Likewise. * tree.h: Likewise. * treestruct.def: Likewise. * unwind-compat.c: Likewise. * unwind-dw2-fde-glibc.c: Likewise. * unwind-dw2.c: Likewise. * value-prof.c: Likewise. * value-prof.h: Likewise. * var-tracking.c: Likewise. * varasm.c: Likewise. * varpool.c: Likewise. * vec.c: Likewise. * vec.h: Likewise. * vmsdbgout.c: Likewise. * web.c: Likewise. * xcoffout.c: Likewise. From-SVN: r154645
606 lines
16 KiB
C
606 lines
16 KiB
C
/* Code sinking for trees
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Copyright (C) 2001, 2002, 2003, 2004, 2007, 2008, 2009
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Free Software Foundation, Inc.
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Contributed by Daniel Berlin <dan@dberlin.org>
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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
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3, or (at your option)
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any later version.
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GCC is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License 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 COPYING3. If not see
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<http://www.gnu.org/licenses/>. */
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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 "ggc.h"
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#include "tree.h"
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#include "basic-block.h"
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#include "diagnostic.h"
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#include "tree-inline.h"
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#include "tree-flow.h"
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#include "gimple.h"
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#include "tree-dump.h"
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#include "timevar.h"
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#include "fibheap.h"
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#include "hashtab.h"
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#include "tree-iterator.h"
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#include "real.h"
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#include "alloc-pool.h"
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#include "tree-pass.h"
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#include "flags.h"
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#include "bitmap.h"
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#include "langhooks.h"
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#include "cfgloop.h"
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/* TODO:
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1. Sinking store only using scalar promotion (IE without moving the RHS):
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*q = p;
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p = p + 1;
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if (something)
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*q = <not p>;
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else
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y = *q;
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should become
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sinktemp = p;
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p = p + 1;
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if (something)
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*q = <not p>;
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else
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{
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*q = sinktemp;
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y = *q
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}
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Store copy propagation will take care of the store elimination above.
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2. Sinking using Partial Dead Code Elimination. */
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static struct
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{
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/* The number of statements sunk down the flowgraph by code sinking. */
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int sunk;
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} sink_stats;
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/* Given a PHI, and one of its arguments (DEF), find the edge for
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that argument and return it. If the argument occurs twice in the PHI node,
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we return NULL. */
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static basic_block
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find_bb_for_arg (gimple phi, tree def)
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{
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size_t i;
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bool foundone = false;
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basic_block result = NULL;
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for (i = 0; i < gimple_phi_num_args (phi); i++)
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if (PHI_ARG_DEF (phi, i) == def)
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{
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if (foundone)
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return NULL;
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foundone = true;
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result = gimple_phi_arg_edge (phi, i)->src;
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}
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return result;
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}
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/* When the first immediate use is in a statement, then return true if all
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immediate uses in IMM are in the same statement.
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We could also do the case where the first immediate use is in a phi node,
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and all the other uses are in phis in the same basic block, but this
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requires some expensive checking later (you have to make sure no def/vdef
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in the statement occurs for multiple edges in the various phi nodes it's
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used in, so that you only have one place you can sink it to. */
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static bool
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all_immediate_uses_same_place (gimple stmt)
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{
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gimple firstuse = NULL;
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ssa_op_iter op_iter;
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imm_use_iterator imm_iter;
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use_operand_p use_p;
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tree var;
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FOR_EACH_SSA_TREE_OPERAND (var, stmt, op_iter, SSA_OP_ALL_DEFS)
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{
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FOR_EACH_IMM_USE_FAST (use_p, imm_iter, var)
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{
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if (is_gimple_debug (USE_STMT (use_p)))
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continue;
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if (firstuse == NULL)
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firstuse = USE_STMT (use_p);
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else
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if (firstuse != USE_STMT (use_p))
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return false;
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}
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}
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return true;
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}
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/* Some global stores don't necessarily have VDEF's of global variables,
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but we still must avoid moving them around. */
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bool
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is_hidden_global_store (gimple stmt)
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{
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/* Check virtual definitions. If we get here, the only virtual
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definitions we should see are those generated by assignment or call
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statements. */
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if (gimple_vdef (stmt))
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{
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tree lhs;
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gcc_assert (is_gimple_assign (stmt) || is_gimple_call (stmt));
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/* Note that we must not check the individual virtual operands
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here. In particular, if this is an aliased store, we could
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end up with something like the following (SSA notation
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redacted for brevity):
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foo (int *p, int i)
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{
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int x;
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p_1 = (i_2 > 3) ? &x : p;
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# x_4 = VDEF <x_3>
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*p_1 = 5;
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return 2;
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}
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Notice that the store to '*p_1' should be preserved, if we
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were to check the virtual definitions in that store, we would
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not mark it needed. This is because 'x' is not a global
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variable.
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Therefore, we check the base address of the LHS. If the
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address is a pointer, we check if its name tag or symbol tag is
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a global variable. Otherwise, we check if the base variable
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is a global. */
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lhs = gimple_get_lhs (stmt);
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if (REFERENCE_CLASS_P (lhs))
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lhs = get_base_address (lhs);
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if (lhs == NULL_TREE)
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{
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/* If LHS is NULL, it means that we couldn't get the base
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address of the reference. In which case, we should not
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move this store. */
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return true;
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}
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else if (DECL_P (lhs))
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{
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/* If the store is to a global symbol, we need to keep it. */
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if (is_global_var (lhs))
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return true;
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}
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else if (INDIRECT_REF_P (lhs))
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return ptr_deref_may_alias_global_p (TREE_OPERAND (lhs, 0));
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else
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gcc_unreachable ();
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}
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return false;
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}
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/* Find the nearest common dominator of all of the immediate uses in IMM. */
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static basic_block
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nearest_common_dominator_of_uses (gimple stmt, bool *debug_stmts)
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{
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bitmap blocks = BITMAP_ALLOC (NULL);
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basic_block commondom;
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unsigned int j;
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bitmap_iterator bi;
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ssa_op_iter op_iter;
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imm_use_iterator imm_iter;
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use_operand_p use_p;
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tree var;
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bitmap_clear (blocks);
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FOR_EACH_SSA_TREE_OPERAND (var, stmt, op_iter, SSA_OP_ALL_DEFS)
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{
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FOR_EACH_IMM_USE_FAST (use_p, imm_iter, var)
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{
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gimple usestmt = USE_STMT (use_p);
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basic_block useblock;
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if (gimple_code (usestmt) == GIMPLE_PHI)
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{
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int idx = PHI_ARG_INDEX_FROM_USE (use_p);
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useblock = gimple_phi_arg_edge (usestmt, idx)->src;
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}
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else if (is_gimple_debug (usestmt))
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{
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*debug_stmts = true;
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continue;
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}
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else
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{
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useblock = gimple_bb (usestmt);
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}
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/* Short circuit. Nothing dominates the entry block. */
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if (useblock == ENTRY_BLOCK_PTR)
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{
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BITMAP_FREE (blocks);
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return NULL;
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}
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bitmap_set_bit (blocks, useblock->index);
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}
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}
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commondom = BASIC_BLOCK (bitmap_first_set_bit (blocks));
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EXECUTE_IF_SET_IN_BITMAP (blocks, 0, j, bi)
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commondom = nearest_common_dominator (CDI_DOMINATORS, commondom,
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BASIC_BLOCK (j));
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BITMAP_FREE (blocks);
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return commondom;
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}
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/* Given a statement (STMT) and the basic block it is currently in (FROMBB),
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determine the location to sink the statement to, if any.
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Returns true if there is such location; in that case, TOGSI points to the
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statement before that STMT should be moved. */
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static bool
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statement_sink_location (gimple stmt, basic_block frombb,
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gimple_stmt_iterator *togsi)
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{
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gimple use;
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tree def;
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use_operand_p one_use = NULL_USE_OPERAND_P;
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basic_block sinkbb;
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use_operand_p use_p;
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def_operand_p def_p;
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ssa_op_iter iter;
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imm_use_iterator imm_iter;
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enum tree_code code;
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FOR_EACH_SSA_TREE_OPERAND (def, stmt, iter, SSA_OP_ALL_DEFS)
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{
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FOR_EACH_IMM_USE_FAST (one_use, imm_iter, def)
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{
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if (is_gimple_debug (USE_STMT (one_use)))
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continue;
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break;
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}
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if (one_use != NULL_USE_OPERAND_P)
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break;
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}
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/* Return if there are no immediate uses of this stmt. */
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if (one_use == NULL_USE_OPERAND_P)
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return false;
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if (gimple_code (stmt) != GIMPLE_ASSIGN)
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return false;
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/* There are a few classes of things we can't or don't move, some because we
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don't have code to handle it, some because it's not profitable and some
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because it's not legal.
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We can't sink things that may be global stores, at least not without
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calculating a lot more information, because we may cause it to no longer
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be seen by an external routine that needs it depending on where it gets
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moved to.
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|
We don't want to sink loads from memory.
|
|
|
|
We can't sink statements that end basic blocks without splitting the
|
|
incoming edge for the sink location to place it there.
|
|
|
|
We can't sink statements that have volatile operands.
|
|
|
|
We don't want to sink dead code, so anything with 0 immediate uses is not
|
|
sunk.
|
|
|
|
Don't sink BLKmode assignments if current function has any local explicit
|
|
register variables, as BLKmode assignments may involve memcpy or memset
|
|
calls or, on some targets, inline expansion thereof that sometimes need
|
|
to use specific hard registers.
|
|
|
|
*/
|
|
code = gimple_assign_rhs_code (stmt);
|
|
if (stmt_ends_bb_p (stmt)
|
|
|| gimple_has_side_effects (stmt)
|
|
|| is_hidden_global_store (stmt)
|
|
|| gimple_has_volatile_ops (stmt)
|
|
|| gimple_vuse (stmt)
|
|
|| (cfun->has_local_explicit_reg_vars
|
|
&& TYPE_MODE (TREE_TYPE (gimple_assign_lhs (stmt))) == BLKmode))
|
|
return false;
|
|
|
|
FOR_EACH_SSA_DEF_OPERAND (def_p, stmt, iter, SSA_OP_ALL_DEFS)
|
|
{
|
|
tree def = DEF_FROM_PTR (def_p);
|
|
if (is_global_var (SSA_NAME_VAR (def))
|
|
|| SSA_NAME_OCCURS_IN_ABNORMAL_PHI (def))
|
|
return false;
|
|
}
|
|
|
|
FOR_EACH_SSA_USE_OPERAND (use_p, stmt, iter, SSA_OP_ALL_USES)
|
|
{
|
|
tree use = USE_FROM_PTR (use_p);
|
|
if (SSA_NAME_OCCURS_IN_ABNORMAL_PHI (use))
|
|
return false;
|
|
}
|
|
|
|
/* If all the immediate uses are not in the same place, find the nearest
|
|
common dominator of all the immediate uses. For PHI nodes, we have to
|
|
find the nearest common dominator of all of the predecessor blocks, since
|
|
that is where insertion would have to take place. */
|
|
if (!all_immediate_uses_same_place (stmt))
|
|
{
|
|
bool debug_stmts = false;
|
|
basic_block commondom = nearest_common_dominator_of_uses (stmt,
|
|
&debug_stmts);
|
|
|
|
if (commondom == frombb)
|
|
return false;
|
|
|
|
/* Our common dominator has to be dominated by frombb in order to be a
|
|
trivially safe place to put this statement, since it has multiple
|
|
uses. */
|
|
if (!dominated_by_p (CDI_DOMINATORS, commondom, frombb))
|
|
return false;
|
|
|
|
/* It doesn't make sense to move to a dominator that post-dominates
|
|
frombb, because it means we've just moved it into a path that always
|
|
executes if frombb executes, instead of reducing the number of
|
|
executions . */
|
|
if (dominated_by_p (CDI_POST_DOMINATORS, frombb, commondom))
|
|
{
|
|
if (dump_file && (dump_flags & TDF_DETAILS))
|
|
fprintf (dump_file, "Not moving store, common dominator post-dominates from block.\n");
|
|
return false;
|
|
}
|
|
|
|
if (commondom == frombb || commondom->loop_depth > frombb->loop_depth)
|
|
return false;
|
|
if (dump_file && (dump_flags & TDF_DETAILS))
|
|
{
|
|
fprintf (dump_file, "Common dominator of all uses is %d\n",
|
|
commondom->index);
|
|
}
|
|
|
|
*togsi = gsi_after_labels (commondom);
|
|
|
|
return true;
|
|
}
|
|
|
|
use = USE_STMT (one_use);
|
|
if (gimple_code (use) != GIMPLE_PHI)
|
|
{
|
|
sinkbb = gimple_bb (use);
|
|
if (sinkbb == frombb || sinkbb->loop_depth > frombb->loop_depth
|
|
|| sinkbb->loop_father != frombb->loop_father)
|
|
return false;
|
|
|
|
/* Move the expression to a post dominator can't reduce the number of
|
|
executions. */
|
|
if (dominated_by_p (CDI_POST_DOMINATORS, frombb, sinkbb))
|
|
return false;
|
|
|
|
*togsi = gsi_for_stmt (use);
|
|
|
|
return true;
|
|
}
|
|
|
|
/* Note that at this point, all uses must be in the same statement, so it
|
|
doesn't matter which def op we choose, pick the first one. */
|
|
FOR_EACH_SSA_TREE_OPERAND (def, stmt, iter, SSA_OP_ALL_DEFS)
|
|
break;
|
|
|
|
sinkbb = find_bb_for_arg (use, def);
|
|
if (!sinkbb)
|
|
return false;
|
|
|
|
/* This will happen when you have
|
|
a_3 = PHI <a_13, a_26>
|
|
|
|
a_26 = VDEF <a_3>
|
|
|
|
If the use is a phi, and is in the same bb as the def,
|
|
we can't sink it. */
|
|
|
|
if (gimple_bb (use) == frombb)
|
|
return false;
|
|
if (sinkbb == frombb || sinkbb->loop_depth > frombb->loop_depth
|
|
|| sinkbb->loop_father != frombb->loop_father)
|
|
return false;
|
|
|
|
/* Move the expression to a post dominator can't reduce the number of
|
|
executions. */
|
|
if (dominated_by_p (CDI_POST_DOMINATORS, frombb, sinkbb))
|
|
return false;
|
|
|
|
*togsi = gsi_after_labels (sinkbb);
|
|
|
|
return true;
|
|
}
|
|
|
|
/* Perform code sinking on BB */
|
|
|
|
static void
|
|
sink_code_in_bb (basic_block bb)
|
|
{
|
|
basic_block son;
|
|
gimple_stmt_iterator gsi;
|
|
edge_iterator ei;
|
|
edge e;
|
|
bool last = true;
|
|
|
|
/* If this block doesn't dominate anything, there can't be any place to sink
|
|
the statements to. */
|
|
if (first_dom_son (CDI_DOMINATORS, bb) == NULL)
|
|
goto earlyout;
|
|
|
|
/* We can't move things across abnormal edges, so don't try. */
|
|
FOR_EACH_EDGE (e, ei, bb->succs)
|
|
if (e->flags & EDGE_ABNORMAL)
|
|
goto earlyout;
|
|
|
|
for (gsi = gsi_last_bb (bb); !gsi_end_p (gsi);)
|
|
{
|
|
gimple stmt = gsi_stmt (gsi);
|
|
gimple_stmt_iterator togsi;
|
|
|
|
if (!statement_sink_location (stmt, bb, &togsi))
|
|
{
|
|
if (!gsi_end_p (gsi))
|
|
gsi_prev (&gsi);
|
|
last = false;
|
|
continue;
|
|
}
|
|
if (dump_file)
|
|
{
|
|
fprintf (dump_file, "Sinking ");
|
|
print_gimple_stmt (dump_file, stmt, 0, TDF_VOPS);
|
|
fprintf (dump_file, " from bb %d to bb %d\n",
|
|
bb->index, (gsi_bb (togsi))->index);
|
|
}
|
|
|
|
/* If this is the end of the basic block, we need to insert at the end
|
|
of the basic block. */
|
|
if (gsi_end_p (togsi))
|
|
gsi_move_to_bb_end (&gsi, gsi_bb (togsi));
|
|
else
|
|
gsi_move_before (&gsi, &togsi);
|
|
|
|
sink_stats.sunk++;
|
|
|
|
/* If we've just removed the last statement of the BB, the
|
|
gsi_end_p() test below would fail, but gsi_prev() would have
|
|
succeeded, and we want it to succeed. So we keep track of
|
|
whether we're at the last statement and pick up the new last
|
|
statement. */
|
|
if (last)
|
|
{
|
|
gsi = gsi_last_bb (bb);
|
|
continue;
|
|
}
|
|
|
|
last = false;
|
|
if (!gsi_end_p (gsi))
|
|
gsi_prev (&gsi);
|
|
|
|
}
|
|
earlyout:
|
|
for (son = first_dom_son (CDI_POST_DOMINATORS, bb);
|
|
son;
|
|
son = next_dom_son (CDI_POST_DOMINATORS, son))
|
|
{
|
|
sink_code_in_bb (son);
|
|
}
|
|
}
|
|
|
|
/* Perform code sinking.
|
|
This moves code down the flowgraph when we know it would be
|
|
profitable to do so, or it wouldn't increase the number of
|
|
executions of the statement.
|
|
|
|
IE given
|
|
|
|
a_1 = b + c;
|
|
if (<something>)
|
|
{
|
|
}
|
|
else
|
|
{
|
|
foo (&b, &c);
|
|
a_5 = b + c;
|
|
}
|
|
a_6 = PHI (a_5, a_1);
|
|
USE a_6.
|
|
|
|
we'll transform this into:
|
|
|
|
if (<something>)
|
|
{
|
|
a_1 = b + c;
|
|
}
|
|
else
|
|
{
|
|
foo (&b, &c);
|
|
a_5 = b + c;
|
|
}
|
|
a_6 = PHI (a_5, a_1);
|
|
USE a_6.
|
|
|
|
Note that this reduces the number of computations of a = b + c to 1
|
|
when we take the else edge, instead of 2.
|
|
*/
|
|
static void
|
|
execute_sink_code (void)
|
|
{
|
|
loop_optimizer_init (LOOPS_NORMAL);
|
|
|
|
connect_infinite_loops_to_exit ();
|
|
memset (&sink_stats, 0, sizeof (sink_stats));
|
|
calculate_dominance_info (CDI_DOMINATORS);
|
|
calculate_dominance_info (CDI_POST_DOMINATORS);
|
|
sink_code_in_bb (EXIT_BLOCK_PTR);
|
|
statistics_counter_event (cfun, "Sunk statements", sink_stats.sunk);
|
|
free_dominance_info (CDI_POST_DOMINATORS);
|
|
remove_fake_exit_edges ();
|
|
loop_optimizer_finalize ();
|
|
}
|
|
|
|
/* Gate and execute functions for PRE. */
|
|
|
|
static unsigned int
|
|
do_sink (void)
|
|
{
|
|
execute_sink_code ();
|
|
return 0;
|
|
}
|
|
|
|
static bool
|
|
gate_sink (void)
|
|
{
|
|
return flag_tree_sink != 0;
|
|
}
|
|
|
|
struct gimple_opt_pass pass_sink_code =
|
|
{
|
|
{
|
|
GIMPLE_PASS,
|
|
"sink", /* name */
|
|
gate_sink, /* gate */
|
|
do_sink, /* execute */
|
|
NULL, /* sub */
|
|
NULL, /* next */
|
|
0, /* static_pass_number */
|
|
TV_TREE_SINK, /* tv_id */
|
|
PROP_no_crit_edges | PROP_cfg
|
|
| PROP_ssa, /* properties_required */
|
|
0, /* properties_provided */
|
|
0, /* properties_destroyed */
|
|
0, /* todo_flags_start */
|
|
TODO_update_ssa
|
|
| TODO_dump_func
|
|
| TODO_ggc_collect
|
|
| TODO_verify_ssa /* todo_flags_finish */
|
|
}
|
|
};
|