cbe34bb5ed
From-SVN: r243994
298 lines
9.0 KiB
C
298 lines
9.0 KiB
C
/* Tree SCC value numbering
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Copyright (C) 2007-2017 Free Software Foundation, Inc.
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Contributed by Daniel Berlin <dberlin@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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under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) 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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#ifndef TREE_SSA_SCCVN_H
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#define TREE_SSA_SCCVN_H
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/* In tree-ssa-sccvn.c */
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bool expressions_equal_p (tree, tree);
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/* TOP of the VN lattice. */
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extern tree VN_TOP;
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/* N-ary operations in the hashtable consist of length operands, an
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opcode, and a type. Result is the value number of the operation,
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and hashcode is stored to avoid having to calculate it
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repeatedly. */
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typedef struct vn_nary_op_s
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{
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/* Unique identify that all expressions with the same value have. */
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unsigned int value_id;
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ENUM_BITFIELD(tree_code) opcode : 16;
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unsigned length : 16;
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hashval_t hashcode;
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tree result;
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tree type;
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tree op[1];
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} *vn_nary_op_t;
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typedef const struct vn_nary_op_s *const_vn_nary_op_t;
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/* Return the size of a vn_nary_op_t with LENGTH operands. */
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static inline size_t
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sizeof_vn_nary_op (unsigned int length)
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{
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return sizeof (struct vn_nary_op_s) + sizeof (tree) * length - sizeof (tree);
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}
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/* Phi nodes in the hashtable consist of their non-VN_TOP phi
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arguments, and the basic block the phi is in. Result is the value
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number of the operation, and hashcode is stored to avoid having to
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calculate it repeatedly. Phi nodes not in the same block are never
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considered equivalent. */
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typedef struct vn_phi_s
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{
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/* Unique identifier that all expressions with the same value have. */
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unsigned int value_id;
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hashval_t hashcode;
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vec<tree> phiargs;
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basic_block block;
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tree type;
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tree result;
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} *vn_phi_t;
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typedef const struct vn_phi_s *const_vn_phi_t;
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/* Reference operands only exist in reference operations structures.
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They consist of an opcode, type, and some number of operands. For
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a given opcode, some, all, or none of the operands may be used.
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The operands are there to store the information that makes up the
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portion of the addressing calculation that opcode performs. */
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typedef struct vn_reference_op_struct
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{
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ENUM_BITFIELD(tree_code) opcode : 16;
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/* Dependence info, used for [TARGET_]MEM_REF only. */
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unsigned short clique;
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unsigned short base;
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/* 1 for instrumented calls. */
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unsigned with_bounds : 1;
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unsigned reverse : 1;
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/* For storing TYPE_ALIGN for array ref element size computation. */
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unsigned align : 6;
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/* Constant offset this op adds or -1 if it is variable. */
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HOST_WIDE_INT off;
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tree type;
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tree op0;
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tree op1;
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tree op2;
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} vn_reference_op_s;
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typedef vn_reference_op_s *vn_reference_op_t;
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typedef const vn_reference_op_s *const_vn_reference_op_t;
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inline unsigned
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vn_ref_op_align_unit (vn_reference_op_t op)
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{
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return op->align ? ((unsigned)1 << (op->align - 1)) / BITS_PER_UNIT : 0;
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}
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/* A reference operation in the hashtable is representation as
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the vuse, representing the memory state at the time of
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the operation, and a collection of operands that make up the
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addressing calculation. If two vn_reference_t's have the same set
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of operands, they access the same memory location. We also store
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the resulting value number, and the hashcode. */
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typedef struct vn_reference_s
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{
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/* Unique identifier that all expressions with the same value have. */
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unsigned int value_id;
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hashval_t hashcode;
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tree vuse;
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alias_set_type set;
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tree type;
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vec<vn_reference_op_s> operands;
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tree result;
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tree result_vdef;
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} *vn_reference_t;
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typedef const struct vn_reference_s *const_vn_reference_t;
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typedef struct vn_constant_s
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{
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unsigned int value_id;
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hashval_t hashcode;
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tree constant;
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} *vn_constant_t;
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enum vn_kind { VN_NONE, VN_CONSTANT, VN_NARY, VN_REFERENCE, VN_PHI };
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enum vn_kind vn_get_stmt_kind (gimple *);
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/* Hash the type TYPE using bits that distinguishes it in the
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types_compatible_p sense. */
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static inline hashval_t
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vn_hash_type (tree type)
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{
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return (INTEGRAL_TYPE_P (type)
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+ (INTEGRAL_TYPE_P (type)
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? TYPE_PRECISION (type) + TYPE_UNSIGNED (type) : 0));
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}
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/* Hash the constant CONSTANT with distinguishing type incompatible
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constants in the types_compatible_p sense. */
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static inline hashval_t
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vn_hash_constant_with_type (tree constant)
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{
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inchash::hash hstate;
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inchash::add_expr (constant, hstate);
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hstate.merge_hash (vn_hash_type (TREE_TYPE (constant)));
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return hstate.end ();
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}
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/* Compare the constants C1 and C2 with distinguishing type incompatible
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constants in the types_compatible_p sense. */
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static inline bool
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vn_constant_eq_with_type (tree c1, tree c2)
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{
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return (expressions_equal_p (c1, c2)
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&& types_compatible_p (TREE_TYPE (c1), TREE_TYPE (c2)));
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}
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typedef struct vn_ssa_aux
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{
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/* Value number. This may be an SSA name or a constant. */
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tree valnum;
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/* Statements to insert if needs_insertion is true. */
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gimple_seq expr;
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/* Saved SSA name info. */
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tree_ssa_name::ssa_name_info_type info;
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/* Unique identifier that all expressions with the same value have. */
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unsigned int value_id;
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/* SCC information. */
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unsigned int dfsnum;
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unsigned int low;
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unsigned visited : 1;
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unsigned on_sccstack : 1;
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/* Whether the SSA_NAME has been value numbered already. This is
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only saying whether visit_use has been called on it at least
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once. It cannot be used to avoid visitation for SSA_NAME's
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involved in non-singleton SCC's. */
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unsigned use_processed : 1;
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/* Whether the SSA_NAME has no defining statement and thus an
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insertion of such with EXPR as definition is required before
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a use can be created of it. */
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unsigned needs_insertion : 1;
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/* Whether range-info is anti-range. */
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unsigned range_info_anti_range_p : 1;
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} *vn_ssa_aux_t;
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enum vn_lookup_kind { VN_NOWALK, VN_WALK, VN_WALKREWRITE };
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/* Return the value numbering info for an SSA_NAME. */
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extern vn_ssa_aux_t VN_INFO (tree);
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extern vn_ssa_aux_t VN_INFO_GET (tree);
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tree vn_get_expr_for (tree);
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bool run_scc_vn (vn_lookup_kind);
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void free_scc_vn (void);
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void scc_vn_restore_ssa_info (void);
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tree vn_nary_op_lookup (tree, vn_nary_op_t *);
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tree vn_nary_op_lookup_stmt (gimple *, vn_nary_op_t *);
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tree vn_nary_op_lookup_pieces (unsigned int, enum tree_code,
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tree, tree *, vn_nary_op_t *);
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vn_nary_op_t vn_nary_op_insert (tree, tree);
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vn_nary_op_t vn_nary_op_insert_pieces (unsigned int, enum tree_code,
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tree, tree *, tree, unsigned int);
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bool ao_ref_init_from_vn_reference (ao_ref *, alias_set_type, tree,
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vec<vn_reference_op_s> );
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vec<vn_reference_op_s> vn_reference_operands_for_lookup (tree);
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tree vn_reference_lookup_pieces (tree, alias_set_type, tree,
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vec<vn_reference_op_s> ,
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vn_reference_t *, vn_lookup_kind);
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tree vn_reference_lookup (tree, tree, vn_lookup_kind, vn_reference_t *, bool);
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void vn_reference_lookup_call (gcall *, vn_reference_t *, vn_reference_t);
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vn_reference_t vn_reference_insert_pieces (tree, alias_set_type, tree,
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vec<vn_reference_op_s> ,
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tree, unsigned int);
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bool vn_nary_op_eq (const_vn_nary_op_t const vno1,
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const_vn_nary_op_t const vno2);
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bool vn_nary_may_trap (vn_nary_op_t);
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bool vn_reference_eq (const_vn_reference_t const, const_vn_reference_t const);
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unsigned int get_max_value_id (void);
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unsigned int get_next_value_id (void);
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unsigned int get_constant_value_id (tree);
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unsigned int get_or_alloc_constant_value_id (tree);
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bool value_id_constant_p (unsigned int);
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tree fully_constant_vn_reference_p (vn_reference_t);
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tree vn_nary_simplify (vn_nary_op_t);
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/* Valueize NAME if it is an SSA name, otherwise just return it. */
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static inline tree
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vn_valueize (tree name)
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{
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if (TREE_CODE (name) == SSA_NAME)
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{
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tree tem = VN_INFO (name)->valnum;
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return tem == VN_TOP ? name : tem;
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}
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return name;
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}
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/* Get at the original range info for NAME. */
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inline range_info_def *
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VN_INFO_RANGE_INFO (tree name)
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{
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return (VN_INFO (name)->info.range_info
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? VN_INFO (name)->info.range_info
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: SSA_NAME_RANGE_INFO (name));
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}
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/* Whether the original range info of NAME is an anti-range. */
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inline bool
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VN_INFO_ANTI_RANGE_P (tree name)
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{
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return (VN_INFO (name)->info.range_info
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? VN_INFO (name)->range_info_anti_range_p
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: SSA_NAME_ANTI_RANGE_P (name));
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}
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/* Get at the original range info kind for NAME. */
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inline value_range_type
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VN_INFO_RANGE_TYPE (tree name)
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{
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return VN_INFO_ANTI_RANGE_P (name) ? VR_ANTI_RANGE : VR_RANGE;
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}
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/* Get at the original pointer info for NAME. */
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inline ptr_info_def *
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VN_INFO_PTR_INFO (tree name)
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{
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return (VN_INFO (name)->info.ptr_info
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? VN_INFO (name)->info.ptr_info
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: SSA_NAME_PTR_INFO (name));
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}
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#endif /* TREE_SSA_SCCVN_H */
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