[40/46] Add vec_info::lookup_dr

This patch replaces DR_VECT_AUX and vect_dr_stmt with a new
vec_info::lookup_dr function, so that the lookup is relative
to a particular vec_info rather than to global state.

2018-07-31  Richard Sandiford  <richard.sandiford@arm.com>

gcc/
	* tree-vectorizer.h (vec_info::lookup_dr): New member function.
	(vect_dr_stmt): Delete.
	* tree-vectorizer.c (vec_info::lookup_dr): New function.
	* tree-vect-loop-manip.c (vect_update_inits_of_drs): Use it instead
	of DR_VECT_AUX.
	* tree-vect-data-refs.c (vect_analyze_possibly_independent_ddr)
	(vect_analyze_data_ref_dependence, vect_record_base_alignments)
	(vect_verify_datarefs_alignment, vect_peeling_supportable)
	(vect_analyze_data_ref_accesses, vect_prune_runtime_alias_test_list)
	(vect_analyze_data_refs): Likewise.
	(vect_slp_analyze_data_ref_dependence): Likewise.  Take a vec_info
	argument.
	(vect_find_same_alignment_drs): Likewise.
	(vect_slp_analyze_node_dependences): Update calls accordingly.
	(vect_analyze_data_refs_alignment): Likewise.  Use vec_info::lookup_dr
	instead of DR_VECT_AUX.
	(vect_get_peeling_costs_all_drs): Take a loop_vec_info instead
	of a vector data references.  Use vec_info::lookup_dr instead of
	DR_VECT_AUX.
	(vect_peeling_hash_get_lowest_cost): Update calls accordingly.
	(vect_enhance_data_refs_alignment): Likewise.  Use vec_info::lookup_dr
	instead of DR_VECT_AUX.

From-SVN: r263155
This commit is contained in:
Richard Sandiford 2018-07-31 14:26:14 +00:00 committed by Richard Sandiford
parent 1e5e6ff5e6
commit f5ae28565e
5 changed files with 84 additions and 61 deletions

View File

@ -1,3 +1,28 @@
2018-07-31 Richard Sandiford <richard.sandiford@arm.com>
* tree-vectorizer.h (vec_info::lookup_dr): New member function.
(vect_dr_stmt): Delete.
* tree-vectorizer.c (vec_info::lookup_dr): New function.
* tree-vect-loop-manip.c (vect_update_inits_of_drs): Use it instead
of DR_VECT_AUX.
* tree-vect-data-refs.c (vect_analyze_possibly_independent_ddr)
(vect_analyze_data_ref_dependence, vect_record_base_alignments)
(vect_verify_datarefs_alignment, vect_peeling_supportable)
(vect_analyze_data_ref_accesses, vect_prune_runtime_alias_test_list)
(vect_analyze_data_refs): Likewise.
(vect_slp_analyze_data_ref_dependence): Likewise. Take a vec_info
argument.
(vect_find_same_alignment_drs): Likewise.
(vect_slp_analyze_node_dependences): Update calls accordingly.
(vect_analyze_data_refs_alignment): Likewise. Use vec_info::lookup_dr
instead of DR_VECT_AUX.
(vect_get_peeling_costs_all_drs): Take a loop_vec_info instead
of a vector data references. Use vec_info::lookup_dr instead of
DR_VECT_AUX.
(vect_peeling_hash_get_lowest_cost): Update calls accordingly.
(vect_enhance_data_refs_alignment): Likewise. Use vec_info::lookup_dr
instead of DR_VECT_AUX.
2018-07-31 Richard Sandiford <richard.sandiford@arm.com> 2018-07-31 Richard Sandiford <richard.sandiford@arm.com>
* tree-vectorizer.h (_loop_vec_info::unaligned_dr): Change to * tree-vectorizer.h (_loop_vec_info::unaligned_dr): Change to

View File

@ -269,10 +269,10 @@ vect_analyze_possibly_independent_ddr (data_dependence_relation *ddr,
Note that the alias checks will be removed if the VF ends up Note that the alias checks will be removed if the VF ends up
being small enough. */ being small enough. */
return (!STMT_VINFO_GATHER_SCATTER_P dr_vec_info *dr_info_a = loop_vinfo->lookup_dr (DDR_A (ddr));
(vinfo_for_stmt (DR_STMT (DDR_A (ddr)))) dr_vec_info *dr_info_b = loop_vinfo->lookup_dr (DDR_B (ddr));
&& !STMT_VINFO_GATHER_SCATTER_P return (!STMT_VINFO_GATHER_SCATTER_P (dr_info_a->stmt)
(vinfo_for_stmt (DR_STMT (DDR_B (ddr)))) && !STMT_VINFO_GATHER_SCATTER_P (dr_info_b->stmt)
&& vect_mark_for_runtime_alias_test (ddr, loop_vinfo)); && vect_mark_for_runtime_alias_test (ddr, loop_vinfo));
} }
} }
@ -296,8 +296,8 @@ vect_analyze_data_ref_dependence (struct data_dependence_relation *ddr,
struct loop *loop = LOOP_VINFO_LOOP (loop_vinfo); struct loop *loop = LOOP_VINFO_LOOP (loop_vinfo);
struct data_reference *dra = DDR_A (ddr); struct data_reference *dra = DDR_A (ddr);
struct data_reference *drb = DDR_B (ddr); struct data_reference *drb = DDR_B (ddr);
dr_vec_info *dr_info_a = DR_VECT_AUX (dra); dr_vec_info *dr_info_a = loop_vinfo->lookup_dr (dra);
dr_vec_info *dr_info_b = DR_VECT_AUX (drb); dr_vec_info *dr_info_b = loop_vinfo->lookup_dr (drb);
stmt_vec_info stmtinfo_a = dr_info_a->stmt; stmt_vec_info stmtinfo_a = dr_info_a->stmt;
stmt_vec_info stmtinfo_b = dr_info_b->stmt; stmt_vec_info stmtinfo_b = dr_info_b->stmt;
lambda_vector dist_v; lambda_vector dist_v;
@ -604,17 +604,18 @@ vect_analyze_data_ref_dependences (loop_vec_info loop_vinfo,
/* Function vect_slp_analyze_data_ref_dependence. /* Function vect_slp_analyze_data_ref_dependence.
Return TRUE if there (might) exist a dependence between a memory-reference Return TRUE if there (might) exist a dependence between a memory-reference
DRA and a memory-reference DRB. When versioning for alias may check a DRA and a memory-reference DRB for VINFO. When versioning for alias
dependence at run-time, return FALSE. Adjust *MAX_VF according to may check a dependence at run-time, return FALSE. Adjust *MAX_VF
the data dependence. */ according to the data dependence. */
static bool static bool
vect_slp_analyze_data_ref_dependence (struct data_dependence_relation *ddr) vect_slp_analyze_data_ref_dependence (vec_info *vinfo,
struct data_dependence_relation *ddr)
{ {
struct data_reference *dra = DDR_A (ddr); struct data_reference *dra = DDR_A (ddr);
struct data_reference *drb = DDR_B (ddr); struct data_reference *drb = DDR_B (ddr);
dr_vec_info *dr_info_a = DR_VECT_AUX (dra); dr_vec_info *dr_info_a = vinfo->lookup_dr (dra);
dr_vec_info *dr_info_b = DR_VECT_AUX (drb); dr_vec_info *dr_info_b = vinfo->lookup_dr (drb);
/* We need to check dependences of statements marked as unvectorizable /* We need to check dependences of statements marked as unvectorizable
as well, they still can prohibit vectorization. */ as well, they still can prohibit vectorization. */
@ -726,7 +727,8 @@ vect_slp_analyze_node_dependences (slp_instance instance, slp_tree node,
data_reference *store_dr = STMT_VINFO_DATA_REF (store_info); data_reference *store_dr = STMT_VINFO_DATA_REF (store_info);
ddr_p ddr = initialize_data_dependence_relation ddr_p ddr = initialize_data_dependence_relation
(dr_a, store_dr, vNULL); (dr_a, store_dr, vNULL);
dependent = vect_slp_analyze_data_ref_dependence (ddr); dependent
= vect_slp_analyze_data_ref_dependence (vinfo, ddr);
free_dependence_relation (ddr); free_dependence_relation (ddr);
if (dependent) if (dependent)
break; break;
@ -736,7 +738,7 @@ vect_slp_analyze_node_dependences (slp_instance instance, slp_tree node,
{ {
ddr_p ddr = initialize_data_dependence_relation (dr_a, ddr_p ddr = initialize_data_dependence_relation (dr_a,
dr_b, vNULL); dr_b, vNULL);
dependent = vect_slp_analyze_data_ref_dependence (ddr); dependent = vect_slp_analyze_data_ref_dependence (vinfo, ddr);
free_dependence_relation (ddr); free_dependence_relation (ddr);
} }
if (dependent) if (dependent)
@ -848,7 +850,7 @@ vect_record_base_alignments (vec_info *vinfo)
unsigned int i; unsigned int i;
FOR_EACH_VEC_ELT (vinfo->shared->datarefs, i, dr) FOR_EACH_VEC_ELT (vinfo->shared->datarefs, i, dr)
{ {
dr_vec_info *dr_info = DR_VECT_AUX (dr); dr_vec_info *dr_info = vinfo->lookup_dr (dr);
stmt_vec_info stmt_info = dr_info->stmt; stmt_vec_info stmt_info = dr_info->stmt;
if (!DR_IS_CONDITIONAL_IN_STMT (dr) if (!DR_IS_CONDITIONAL_IN_STMT (dr)
&& STMT_VINFO_VECTORIZABLE (stmt_info) && STMT_VINFO_VECTORIZABLE (stmt_info)
@ -1172,7 +1174,7 @@ vect_verify_datarefs_alignment (loop_vec_info vinfo)
FOR_EACH_VEC_ELT (datarefs, i, dr) FOR_EACH_VEC_ELT (datarefs, i, dr)
{ {
dr_vec_info *dr_info = DR_VECT_AUX (dr); dr_vec_info *dr_info = vinfo->lookup_dr (dr);
stmt_vec_info stmt_info = dr_info->stmt; stmt_vec_info stmt_info = dr_info->stmt;
if (!STMT_VINFO_RELEVANT_P (stmt_info)) if (!STMT_VINFO_RELEVANT_P (stmt_info))
@ -1397,12 +1399,12 @@ vect_peeling_hash_get_most_frequent (_vect_peel_info **slot,
return 1; return 1;
} }
/* Get the costs of peeling NPEEL iterations checking data access costs /* Get the costs of peeling NPEEL iterations for LOOP_VINFO, checking
for all data refs. If UNKNOWN_MISALIGNMENT is true, we assume DR0_INFO's data access costs for all data refs. If UNKNOWN_MISALIGNMENT is true,
misalignment will be zero after peeling. */ we assume DR0_INFO's misalignment will be zero after peeling. */
static void static void
vect_get_peeling_costs_all_drs (vec<data_reference_p> datarefs, vect_get_peeling_costs_all_drs (loop_vec_info loop_vinfo,
dr_vec_info *dr0_info, dr_vec_info *dr0_info,
unsigned int *inside_cost, unsigned int *inside_cost,
unsigned int *outside_cost, unsigned int *outside_cost,
@ -1411,12 +1413,13 @@ vect_get_peeling_costs_all_drs (vec<data_reference_p> datarefs,
unsigned int npeel, unsigned int npeel,
bool unknown_misalignment) bool unknown_misalignment)
{ {
vec<data_reference_p> datarefs = LOOP_VINFO_DATAREFS (loop_vinfo);
unsigned i; unsigned i;
data_reference *dr; data_reference *dr;
FOR_EACH_VEC_ELT (datarefs, i, dr) FOR_EACH_VEC_ELT (datarefs, i, dr)
{ {
dr_vec_info *dr_info = DR_VECT_AUX (dr); dr_vec_info *dr_info = loop_vinfo->lookup_dr (dr);
stmt_vec_info stmt_info = dr_info->stmt; stmt_vec_info stmt_info = dr_info->stmt;
if (!STMT_VINFO_RELEVANT_P (stmt_info)) if (!STMT_VINFO_RELEVANT_P (stmt_info))
continue; continue;
@ -1466,10 +1469,9 @@ vect_peeling_hash_get_lowest_cost (_vect_peel_info **slot,
body_cost_vec.create (2); body_cost_vec.create (2);
epilogue_cost_vec.create (2); epilogue_cost_vec.create (2);
vect_get_peeling_costs_all_drs (LOOP_VINFO_DATAREFS (loop_vinfo), vect_get_peeling_costs_all_drs (loop_vinfo, elem->dr_info, &inside_cost,
elem->dr_info, &inside_cost, &outside_cost, &outside_cost, &body_cost_vec,
&body_cost_vec, &prologue_cost_vec, &prologue_cost_vec, elem->npeel, false);
elem->npeel, false);
body_cost_vec.release (); body_cost_vec.release ();
@ -1550,7 +1552,7 @@ vect_peeling_supportable (loop_vec_info loop_vinfo, dr_vec_info *dr0_info,
if (dr == dr0_info->dr) if (dr == dr0_info->dr)
continue; continue;
dr_vec_info *dr_info = DR_VECT_AUX (dr); dr_vec_info *dr_info = loop_vinfo->lookup_dr (dr);
stmt_vec_info stmt_info = dr_info->stmt; stmt_vec_info stmt_info = dr_info->stmt;
/* For interleaving, only the alignment of the first access /* For interleaving, only the alignment of the first access
matters. */ matters. */
@ -1732,7 +1734,7 @@ vect_enhance_data_refs_alignment (loop_vec_info loop_vinfo)
FOR_EACH_VEC_ELT (datarefs, i, dr) FOR_EACH_VEC_ELT (datarefs, i, dr)
{ {
dr_vec_info *dr_info = DR_VECT_AUX (dr); dr_vec_info *dr_info = loop_vinfo->lookup_dr (dr);
stmt_vec_info stmt_info = dr_info->stmt; stmt_vec_info stmt_info = dr_info->stmt;
if (!STMT_VINFO_RELEVANT_P (stmt_info)) if (!STMT_VINFO_RELEVANT_P (stmt_info))
@ -1896,7 +1898,7 @@ vect_enhance_data_refs_alignment (loop_vec_info loop_vinfo)
stmt_vector_for_cost dummy; stmt_vector_for_cost dummy;
dummy.create (2); dummy.create (2);
vect_get_peeling_costs_all_drs (datarefs, dr0_info, vect_get_peeling_costs_all_drs (loop_vinfo, dr0_info,
&load_inside_cost, &load_inside_cost,
&load_outside_cost, &load_outside_cost,
&dummy, &dummy, estimated_npeels, true); &dummy, &dummy, estimated_npeels, true);
@ -1905,7 +1907,7 @@ vect_enhance_data_refs_alignment (loop_vec_info loop_vinfo)
if (first_store) if (first_store)
{ {
dummy.create (2); dummy.create (2);
vect_get_peeling_costs_all_drs (datarefs, first_store, vect_get_peeling_costs_all_drs (loop_vinfo, first_store,
&store_inside_cost, &store_inside_cost,
&store_outside_cost, &store_outside_cost,
&dummy, &dummy, &dummy, &dummy,
@ -1996,7 +1998,7 @@ vect_enhance_data_refs_alignment (loop_vec_info loop_vinfo)
stmt_vector_for_cost dummy; stmt_vector_for_cost dummy;
dummy.create (2); dummy.create (2);
vect_get_peeling_costs_all_drs (datarefs, NULL, &nopeel_inside_cost, vect_get_peeling_costs_all_drs (loop_vinfo, NULL, &nopeel_inside_cost,
&nopeel_outside_cost, &dummy, &dummy, &nopeel_outside_cost, &dummy, &dummy,
0, false); 0, false);
dummy.release (); dummy.release ();
@ -2126,7 +2128,7 @@ vect_enhance_data_refs_alignment (loop_vec_info loop_vinfo)
{ {
/* Strided accesses perform only component accesses, alignment /* Strided accesses perform only component accesses, alignment
is irrelevant for them. */ is irrelevant for them. */
dr_vec_info *dr_info = DR_VECT_AUX (dr); dr_vec_info *dr_info = loop_vinfo->lookup_dr (dr);
stmt_info = dr_info->stmt; stmt_info = dr_info->stmt;
if (STMT_VINFO_STRIDED_P (stmt_info) if (STMT_VINFO_STRIDED_P (stmt_info)
&& !STMT_VINFO_GROUPED_ACCESS (stmt_info)) && !STMT_VINFO_GROUPED_ACCESS (stmt_info))
@ -2176,7 +2178,7 @@ vect_enhance_data_refs_alignment (loop_vec_info loop_vinfo)
{ {
FOR_EACH_VEC_ELT (datarefs, i, dr) FOR_EACH_VEC_ELT (datarefs, i, dr)
{ {
dr_vec_info *dr_info = DR_VECT_AUX (dr); dr_vec_info *dr_info = loop_vinfo->lookup_dr (dr);
stmt_vec_info stmt_info = dr_info->stmt; stmt_vec_info stmt_info = dr_info->stmt;
/* For interleaving, only the alignment of the first access /* For interleaving, only the alignment of the first access
@ -2291,16 +2293,16 @@ vect_enhance_data_refs_alignment (loop_vec_info loop_vinfo)
/* Function vect_find_same_alignment_drs. /* Function vect_find_same_alignment_drs.
Update group and alignment relations according to the chosen Update group and alignment relations in VINFO according to the chosen
vectorization factor. */ vectorization factor. */
static void static void
vect_find_same_alignment_drs (struct data_dependence_relation *ddr) vect_find_same_alignment_drs (vec_info *vinfo, data_dependence_relation *ddr)
{ {
struct data_reference *dra = DDR_A (ddr); struct data_reference *dra = DDR_A (ddr);
struct data_reference *drb = DDR_B (ddr); struct data_reference *drb = DDR_B (ddr);
dr_vec_info *dr_info_a = DR_VECT_AUX (dra); dr_vec_info *dr_info_a = vinfo->lookup_dr (dra);
dr_vec_info *dr_info_b = DR_VECT_AUX (drb); dr_vec_info *dr_info_b = vinfo->lookup_dr (drb);
stmt_vec_info stmtinfo_a = dr_info_a->stmt; stmt_vec_info stmtinfo_a = dr_info_a->stmt;
stmt_vec_info stmtinfo_b = dr_info_b->stmt; stmt_vec_info stmtinfo_b = dr_info_b->stmt;
@ -2367,7 +2369,7 @@ vect_analyze_data_refs_alignment (loop_vec_info vinfo)
unsigned int i; unsigned int i;
FOR_EACH_VEC_ELT (ddrs, i, ddr) FOR_EACH_VEC_ELT (ddrs, i, ddr)
vect_find_same_alignment_drs (ddr); vect_find_same_alignment_drs (vinfo, ddr);
vec<data_reference_p> datarefs = vinfo->shared->datarefs; vec<data_reference_p> datarefs = vinfo->shared->datarefs;
struct data_reference *dr; struct data_reference *dr;
@ -2375,7 +2377,7 @@ vect_analyze_data_refs_alignment (loop_vec_info vinfo)
vect_record_base_alignments (vinfo); vect_record_base_alignments (vinfo);
FOR_EACH_VEC_ELT (datarefs, i, dr) FOR_EACH_VEC_ELT (datarefs, i, dr)
{ {
dr_vec_info *dr_info = DR_VECT_AUX (dr); dr_vec_info *dr_info = vinfo->lookup_dr (dr);
if (STMT_VINFO_VECTORIZABLE (dr_info->stmt)) if (STMT_VINFO_VECTORIZABLE (dr_info->stmt))
vect_compute_data_ref_alignment (dr_info); vect_compute_data_ref_alignment (dr_info);
} }
@ -2941,7 +2943,7 @@ vect_analyze_data_ref_accesses (vec_info *vinfo)
for (i = 0; i < datarefs_copy.length () - 1;) for (i = 0; i < datarefs_copy.length () - 1;)
{ {
data_reference_p dra = datarefs_copy[i]; data_reference_p dra = datarefs_copy[i];
dr_vec_info *dr_info_a = DR_VECT_AUX (dra); dr_vec_info *dr_info_a = vinfo->lookup_dr (dra);
stmt_vec_info stmtinfo_a = dr_info_a->stmt; stmt_vec_info stmtinfo_a = dr_info_a->stmt;
stmt_vec_info lastinfo = NULL; stmt_vec_info lastinfo = NULL;
if (!STMT_VINFO_VECTORIZABLE (stmtinfo_a) if (!STMT_VINFO_VECTORIZABLE (stmtinfo_a)
@ -2953,7 +2955,7 @@ vect_analyze_data_ref_accesses (vec_info *vinfo)
for (i = i + 1; i < datarefs_copy.length (); ++i) for (i = i + 1; i < datarefs_copy.length (); ++i)
{ {
data_reference_p drb = datarefs_copy[i]; data_reference_p drb = datarefs_copy[i];
dr_vec_info *dr_info_b = DR_VECT_AUX (drb); dr_vec_info *dr_info_b = vinfo->lookup_dr (drb);
stmt_vec_info stmtinfo_b = dr_info_b->stmt; stmt_vec_info stmtinfo_b = dr_info_b->stmt;
if (!STMT_VINFO_VECTORIZABLE (stmtinfo_b) if (!STMT_VINFO_VECTORIZABLE (stmtinfo_b)
|| STMT_VINFO_GATHER_SCATTER_P (stmtinfo_b)) || STMT_VINFO_GATHER_SCATTER_P (stmtinfo_b))
@ -3078,7 +3080,7 @@ vect_analyze_data_ref_accesses (vec_info *vinfo)
FOR_EACH_VEC_ELT (datarefs_copy, i, dr) FOR_EACH_VEC_ELT (datarefs_copy, i, dr)
{ {
dr_vec_info *dr_info = DR_VECT_AUX (dr); dr_vec_info *dr_info = vinfo->lookup_dr (dr);
if (STMT_VINFO_VECTORIZABLE (dr_info->stmt) if (STMT_VINFO_VECTORIZABLE (dr_info->stmt)
&& !vect_analyze_data_ref_access (dr_info)) && !vect_analyze_data_ref_access (dr_info))
{ {
@ -3438,10 +3440,10 @@ vect_prune_runtime_alias_test_list (loop_vec_info loop_vinfo)
continue; continue;
} }
dr_vec_info *dr_info_a = DR_VECT_AUX (DDR_A (ddr)); dr_vec_info *dr_info_a = loop_vinfo->lookup_dr (DDR_A (ddr));
stmt_vec_info stmt_info_a = dr_info_a->stmt; stmt_vec_info stmt_info_a = dr_info_a->stmt;
dr_vec_info *dr_info_b = DR_VECT_AUX (DDR_B (ddr)); dr_vec_info *dr_info_b = loop_vinfo->lookup_dr (DDR_B (ddr));
stmt_vec_info stmt_info_b = dr_info_b->stmt; stmt_vec_info stmt_info_b = dr_info_b->stmt;
/* Skip the pair if inter-iteration dependencies are irrelevant /* Skip the pair if inter-iteration dependencies are irrelevant

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@ -1754,8 +1754,8 @@ vect_update_inits_of_drs (loop_vec_info loop_vinfo, tree niters,
FOR_EACH_VEC_ELT (datarefs, i, dr) FOR_EACH_VEC_ELT (datarefs, i, dr)
{ {
gimple *stmt = DR_STMT (dr); dr_vec_info *dr_info = loop_vinfo->lookup_dr (dr);
if (!STMT_VINFO_GATHER_SCATTER_P (vinfo_for_stmt (stmt))) if (!STMT_VINFO_GATHER_SCATTER_P (dr_info->stmt))
vect_update_init_of_dr (dr, niters, code); vect_update_init_of_dr (dr, niters, code);
} }
} }

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@ -562,6 +562,17 @@ vec_info::lookup_single_use (tree lhs)
return NULL; return NULL;
} }
/* Return vectorization information about DR. */
dr_vec_info *
vec_info::lookup_dr (data_reference *dr)
{
stmt_vec_info stmt_info = lookup_stmt (DR_STMT (dr));
/* DR_STMT should never refer to a stmt in a pattern replacement. */
gcc_checking_assert (!is_pattern_stmt_p (stmt_info));
return STMT_VINFO_DR_INFO (stmt_info->dr_aux.stmt);
}
/* Record that NEW_STMT_INFO now implements the same data reference /* Record that NEW_STMT_INFO now implements the same data reference
as OLD_STMT_INFO. */ as OLD_STMT_INFO. */

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@ -240,6 +240,7 @@ struct vec_info {
stmt_vec_info lookup_stmt (gimple *); stmt_vec_info lookup_stmt (gimple *);
stmt_vec_info lookup_def (tree); stmt_vec_info lookup_def (tree);
stmt_vec_info lookup_single_use (tree); stmt_vec_info lookup_single_use (tree);
struct dr_vec_info *lookup_dr (data_reference *);
void move_dr (stmt_vec_info, stmt_vec_info); void move_dr (stmt_vec_info, stmt_vec_info);
/* The type of vectorization. */ /* The type of vectorization. */
@ -1062,8 +1063,6 @@ STMT_VINFO_BB_VINFO (stmt_vec_info stmt_vinfo)
#define PURE_SLP_STMT(S) ((S)->slp_type == pure_slp) #define PURE_SLP_STMT(S) ((S)->slp_type == pure_slp)
#define STMT_SLP_TYPE(S) (S)->slp_type #define STMT_SLP_TYPE(S) (S)->slp_type
#define DR_VECT_AUX(dr) (STMT_VINFO_DR_INFO (vect_dr_stmt (dr)))
#define VECT_MAX_COST 1000 #define VECT_MAX_COST 1000
/* The maximum number of intermediate steps required in multi-step type /* The maximum number of intermediate steps required in multi-step type
@ -1273,20 +1272,6 @@ add_stmt_costs (void *data, stmt_vector_for_cost *cost_vec)
cost->misalign, cost->where); cost->misalign, cost->where);
} }
/* Return the stmt DR is in. For DR_STMT that have been replaced by
a pattern this returns the corresponding pattern stmt. Otherwise
DR_STMT is returned. */
inline stmt_vec_info
vect_dr_stmt (data_reference *dr)
{
gimple *stmt = DR_STMT (dr);
stmt_vec_info stmt_info = vinfo_for_stmt (stmt);
/* DR_STMT should never refer to a stmt in a pattern replacement. */
gcc_checking_assert (!is_pattern_stmt_p (stmt_info));
return stmt_info->dr_aux.stmt;
}
/*-----------------------------------------------------------------*/ /*-----------------------------------------------------------------*/
/* Info on data references alignment. */ /* Info on data references alignment. */
/*-----------------------------------------------------------------*/ /*-----------------------------------------------------------------*/