Commit a1824cfd by Richard Sandiford Committed by Richard Sandiford

[29/46] Use stmt_vec_info instead of gimple stmts internally (part 2)

This second part handles the less mechnical cases, i.e. those that don't
just involve swapping a gimple stmt for an existing stmt_vec_info.

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

gcc/
	* tree-vect-loop.c (vect_analyze_loop_operations): Look up the
	statement before passing it to vect_analyze_stmt.
	(vect_create_epilog_for_reduction): Use a stmt_vec_info to walk
	the chain of phi vector definitions.  Track the exit phi via its
	stmt_vec_info.
	(vectorizable_reduction): Set cond_stmt_vinfo directly from the
	STMT_VINFO_REDUC_DEF.
	* tree-vect-slp.c (vect_get_place_in_interleaving_chain): Use
	stmt_vec_infos to handle the statement chains.
	(vect_get_slp_defs): Record the first statement in the node
	using a stmt_vec_info.
	* tree-vect-stmts.c (vect_mark_stmts_to_be_vectorized): Look up
	statements here and pass their stmt_vec_info down to subroutines.
	(vect_init_vector_1): Hoist call to vinfo_for_stmt and pass it
	down to vect_finish_stmt_generation.
	(vect_init_vector, vect_get_vec_defs, vect_finish_replace_stmt)
	(vect_finish_stmt_generation): Call vinfo_for_stmt and pass
	stmt_vec_infos to subroutines.
	(vect_remove_stores): Use stmt_vec_infos to handle the statement
	chains.

From-SVN: r263144
parent 86a91c0a
2018-07-31 Richard Sandiford <richard.sandiford@arm.com>
* tree-vect-loop.c (vect_analyze_loop_operations): Look up the
statement before passing it to vect_analyze_stmt.
(vect_create_epilog_for_reduction): Use a stmt_vec_info to walk
the chain of phi vector definitions. Track the exit phi via its
stmt_vec_info.
(vectorizable_reduction): Set cond_stmt_vinfo directly from the
STMT_VINFO_REDUC_DEF.
* tree-vect-slp.c (vect_get_place_in_interleaving_chain): Use
stmt_vec_infos to handle the statement chains.
(vect_get_slp_defs): Record the first statement in the node
using a stmt_vec_info.
* tree-vect-stmts.c (vect_mark_stmts_to_be_vectorized): Look up
statements here and pass their stmt_vec_info down to subroutines.
(vect_init_vector_1): Hoist call to vinfo_for_stmt and pass it
down to vect_finish_stmt_generation.
(vect_init_vector, vect_get_vec_defs, vect_finish_replace_stmt)
(vect_finish_stmt_generation): Call vinfo_for_stmt and pass
stmt_vec_infos to subroutines.
(vect_remove_stores): Use stmt_vec_infos to handle the statement
chains.
2018-07-31 Richard Sandiford <richard.sandiford@arm.com>
* tree-vect-data-refs.c (vect_slp_analyze_node_dependences):
(vect_check_gather_scatter, vect_create_data_ref_ptr, bump_vector_ptr)
(vect_permute_store_chain, vect_setup_realignment)
......
......@@ -1629,8 +1629,9 @@ vect_analyze_loop_operations (loop_vec_info loop_vinfo)
{
gimple *stmt = gsi_stmt (si);
if (!gimple_clobber_p (stmt)
&& !vect_analyze_stmt (stmt, &need_to_vectorize, NULL, NULL,
&cost_vec))
&& !vect_analyze_stmt (loop_vinfo->lookup_stmt (stmt),
&need_to_vectorize,
NULL, NULL, &cost_vec))
return false;
}
} /* bbs */
......@@ -4832,11 +4833,11 @@ vect_create_epilog_for_reduction (vec<tree> vect_defs, gimple *stmt,
tree first_vect = PHI_RESULT (new_phis[0]);
gassign *new_vec_stmt = NULL;
vec_dest = vect_create_destination_var (scalar_dest, vectype);
gimple *next_phi = new_phis[0];
stmt_vec_info next_phi_info = loop_vinfo->lookup_stmt (new_phis[0]);
for (int k = 1; k < ncopies; ++k)
{
next_phi = STMT_VINFO_RELATED_STMT (vinfo_for_stmt (next_phi));
tree second_vect = PHI_RESULT (next_phi);
next_phi_info = STMT_VINFO_RELATED_STMT (next_phi_info);
tree second_vect = PHI_RESULT (next_phi_info->stmt);
tree tem = make_ssa_name (vec_dest, new_vec_stmt);
new_vec_stmt = gimple_build_assign (tem, code,
first_vect, second_vect);
......@@ -5573,11 +5574,12 @@ vect_finalize_reduction:
else
ratio = 1;
stmt_vec_info epilog_stmt_info = NULL;
for (k = 0; k < group_size; k++)
{
if (k % ratio == 0)
{
epilog_stmt = new_phis[k / ratio];
epilog_stmt_info = loop_vinfo->lookup_stmt (new_phis[k / ratio]);
reduction_phi_info = reduction_phis[k / ratio];
if (double_reduc)
inner_phi = inner_phis[k / ratio];
......@@ -5623,8 +5625,7 @@ vect_finalize_reduction:
if (double_reduc)
STMT_VINFO_VEC_STMT (exit_phi_vinfo) = inner_phi;
else
STMT_VINFO_VEC_STMT (exit_phi_vinfo)
= vinfo_for_stmt (epilog_stmt);
STMT_VINFO_VEC_STMT (exit_phi_vinfo) = epilog_stmt_info;
if (!double_reduc
|| STMT_VINFO_DEF_TYPE (exit_phi_vinfo)
!= vect_double_reduction_def)
......@@ -6070,7 +6071,7 @@ vectorizable_reduction (gimple *stmt, gimple_stmt_iterator *gsi,
optab optab;
tree new_temp = NULL_TREE;
enum vect_def_type dt, cond_reduc_dt = vect_unknown_def_type;
gimple *cond_reduc_def_stmt = NULL;
stmt_vec_info cond_stmt_vinfo = NULL;
enum tree_code cond_reduc_op_code = ERROR_MARK;
tree scalar_type;
bool is_simple_use;
......@@ -6348,7 +6349,7 @@ vectorizable_reduction (gimple *stmt, gimple_stmt_iterator *gsi,
&& is_nonwrapping_integer_induction (def_stmt_info, loop))
{
cond_reduc_dt = dt;
cond_reduc_def_stmt = def_stmt_info;
cond_stmt_vinfo = def_stmt_info;
}
}
}
......@@ -6454,7 +6455,6 @@ vectorizable_reduction (gimple *stmt, gimple_stmt_iterator *gsi,
}
else if (cond_reduc_dt == vect_induction_def)
{
stmt_vec_info cond_stmt_vinfo = vinfo_for_stmt (cond_reduc_def_stmt);
tree base
= STMT_VINFO_LOOP_PHI_EVOLUTION_BASE_UNCHANGED (cond_stmt_vinfo);
tree step = STMT_VINFO_LOOP_PHI_EVOLUTION_PART (cond_stmt_vinfo);
......
......@@ -201,21 +201,23 @@ vect_free_oprnd_info (vec<slp_oprnd_info> &oprnds_info)
int
vect_get_place_in_interleaving_chain (gimple *stmt, gimple *first_stmt)
{
gimple *next_stmt = first_stmt;
stmt_vec_info stmt_info = vinfo_for_stmt (stmt);
stmt_vec_info first_stmt_info = vinfo_for_stmt (first_stmt);
stmt_vec_info next_stmt_info = first_stmt_info;
int result = 0;
if (first_stmt != DR_GROUP_FIRST_ELEMENT (vinfo_for_stmt (stmt)))
if (first_stmt_info != DR_GROUP_FIRST_ELEMENT (stmt_info))
return -1;
do
{
if (next_stmt == stmt)
if (next_stmt_info == stmt_info)
return result;
next_stmt = DR_GROUP_NEXT_ELEMENT (vinfo_for_stmt (next_stmt));
if (next_stmt)
result += DR_GROUP_GAP (vinfo_for_stmt (next_stmt));
next_stmt_info = DR_GROUP_NEXT_ELEMENT (next_stmt_info);
if (next_stmt_info)
result += DR_GROUP_GAP (next_stmt_info);
}
while (next_stmt);
while (next_stmt_info);
return -1;
}
......@@ -3577,7 +3579,6 @@ void
vect_get_slp_defs (vec<tree> ops, slp_tree slp_node,
vec<vec<tree> > *vec_oprnds)
{
gimple *first_stmt;
int number_of_vects = 0, i;
unsigned int child_index = 0;
HOST_WIDE_INT lhs_size_unit, rhs_size_unit;
......@@ -3586,7 +3587,7 @@ vect_get_slp_defs (vec<tree> ops, slp_tree slp_node,
tree oprnd;
bool vectorized_defs;
first_stmt = SLP_TREE_SCALAR_STMTS (slp_node)[0];
stmt_vec_info first_stmt_info = SLP_TREE_SCALAR_STMTS (slp_node)[0];
FOR_EACH_VEC_ELT (ops, i, oprnd)
{
/* For each operand we check if it has vectorized definitions in a child
......@@ -3637,8 +3638,8 @@ vect_get_slp_defs (vec<tree> ops, slp_tree slp_node,
vect_schedule_slp_instance (), fix it by replacing LHS with
RHS, if necessary. See vect_get_smallest_scalar_type () for
details. */
vect_get_smallest_scalar_type (first_stmt, &lhs_size_unit,
&rhs_size_unit);
vect_get_smallest_scalar_type (first_stmt_info, &lhs_size_unit,
&rhs_size_unit);
if (rhs_size_unit != lhs_size_unit)
{
number_of_vects *= rhs_size_unit;
......
......@@ -622,7 +622,6 @@ vect_mark_stmts_to_be_vectorized (loop_vec_info loop_vinfo)
unsigned int i;
stmt_vec_info stmt_vinfo;
basic_block bb;
gimple *phi;
bool live_p;
enum vect_relevant relevant;
......@@ -636,27 +635,27 @@ vect_mark_stmts_to_be_vectorized (loop_vec_info loop_vinfo)
bb = bbs[i];
for (si = gsi_start_phis (bb); !gsi_end_p (si); gsi_next (&si))
{
phi = gsi_stmt (si);
stmt_vec_info phi_info = loop_vinfo->lookup_stmt (gsi_stmt (si));
if (dump_enabled_p ())
{
dump_printf_loc (MSG_NOTE, vect_location, "init: phi relevant? ");
dump_gimple_stmt (MSG_NOTE, TDF_SLIM, phi, 0);
dump_gimple_stmt (MSG_NOTE, TDF_SLIM, phi_info->stmt, 0);
}
if (vect_stmt_relevant_p (phi, loop_vinfo, &relevant, &live_p))
vect_mark_relevant (&worklist, phi, relevant, live_p);
if (vect_stmt_relevant_p (phi_info, loop_vinfo, &relevant, &live_p))
vect_mark_relevant (&worklist, phi_info, relevant, live_p);
}
for (si = gsi_start_bb (bb); !gsi_end_p (si); gsi_next (&si))
{
stmt = gsi_stmt (si);
stmt_vec_info stmt_info = loop_vinfo->lookup_stmt (gsi_stmt (si));
if (dump_enabled_p ())
{
dump_printf_loc (MSG_NOTE, vect_location, "init: stmt relevant? ");
dump_gimple_stmt (MSG_NOTE, TDF_SLIM, stmt, 0);
dump_gimple_stmt (MSG_NOTE, TDF_SLIM, stmt_info->stmt, 0);
}
if (vect_stmt_relevant_p (stmt, loop_vinfo, &relevant, &live_p))
vect_mark_relevant (&worklist, stmt, relevant, live_p);
if (vect_stmt_relevant_p (stmt_info, loop_vinfo, &relevant, &live_p))
vect_mark_relevant (&worklist, stmt_info, relevant, live_p);
}
}
......@@ -1350,11 +1349,11 @@ vect_get_load_cost (stmt_vec_info stmt_info, int ncopies,
static void
vect_init_vector_1 (gimple *stmt, gimple *new_stmt, gimple_stmt_iterator *gsi)
{
stmt_vec_info stmt_vinfo = vinfo_for_stmt (stmt);
if (gsi)
vect_finish_stmt_generation (stmt, new_stmt, gsi);
vect_finish_stmt_generation (stmt_vinfo, new_stmt, gsi);
else
{
stmt_vec_info stmt_vinfo = vinfo_for_stmt (stmt);
loop_vec_info loop_vinfo = STMT_VINFO_LOOP_VINFO (stmt_vinfo);
if (loop_vinfo)
......@@ -1404,6 +1403,7 @@ vect_init_vector_1 (gimple *stmt, gimple *new_stmt, gimple_stmt_iterator *gsi)
tree
vect_init_vector (gimple *stmt, tree val, tree type, gimple_stmt_iterator *gsi)
{
stmt_vec_info stmt_info = vinfo_for_stmt (stmt);
gimple *init_stmt;
tree new_temp;
......@@ -1427,7 +1427,7 @@ vect_init_vector (gimple *stmt, tree val, tree type, gimple_stmt_iterator *gsi)
new_temp = make_ssa_name (TREE_TYPE (type));
init_stmt = gimple_build_assign (new_temp, COND_EXPR,
val, true_val, false_val);
vect_init_vector_1 (stmt, init_stmt, gsi);
vect_init_vector_1 (stmt_info, init_stmt, gsi);
val = new_temp;
}
}
......@@ -1443,7 +1443,7 @@ vect_init_vector (gimple *stmt, tree val, tree type, gimple_stmt_iterator *gsi)
val));
else
init_stmt = gimple_build_assign (new_temp, NOP_EXPR, val);
vect_init_vector_1 (stmt, init_stmt, gsi);
vect_init_vector_1 (stmt_info, init_stmt, gsi);
val = new_temp;
}
}
......@@ -1452,7 +1452,7 @@ vect_init_vector (gimple *stmt, tree val, tree type, gimple_stmt_iterator *gsi)
new_temp = vect_get_new_ssa_name (type, vect_simple_var, "cst_");
init_stmt = gimple_build_assign (new_temp, val);
vect_init_vector_1 (stmt, init_stmt, gsi);
vect_init_vector_1 (stmt_info, init_stmt, gsi);
return new_temp;
}
......@@ -1690,6 +1690,7 @@ vect_get_vec_defs (tree op0, tree op1, gimple *stmt,
vec<tree> *vec_oprnds1,
slp_tree slp_node)
{
stmt_vec_info stmt_info = vinfo_for_stmt (stmt);
if (slp_node)
{
int nops = (op1 == NULL_TREE) ? 1 : 2;
......@@ -1711,13 +1712,13 @@ vect_get_vec_defs (tree op0, tree op1, gimple *stmt,
tree vec_oprnd;
vec_oprnds0->create (1);
vec_oprnd = vect_get_vec_def_for_operand (op0, stmt);
vec_oprnd = vect_get_vec_def_for_operand (op0, stmt_info);
vec_oprnds0->quick_push (vec_oprnd);
if (op1)
{
vec_oprnds1->create (1);
vec_oprnd = vect_get_vec_def_for_operand (op1, stmt);
vec_oprnd = vect_get_vec_def_for_operand (op1, stmt_info);
vec_oprnds1->quick_push (vec_oprnd);
}
}
......@@ -1760,12 +1761,13 @@ vect_finish_stmt_generation_1 (gimple *stmt, gimple *vec_stmt)
stmt_vec_info
vect_finish_replace_stmt (gimple *stmt, gimple *vec_stmt)
{
gcc_assert (gimple_get_lhs (stmt) == gimple_get_lhs (vec_stmt));
stmt_vec_info stmt_info = vinfo_for_stmt (stmt);
gcc_assert (gimple_get_lhs (stmt_info->stmt) == gimple_get_lhs (vec_stmt));
gimple_stmt_iterator gsi = gsi_for_stmt (stmt);
gimple_stmt_iterator gsi = gsi_for_stmt (stmt_info->stmt);
gsi_replace (&gsi, vec_stmt, false);
return vect_finish_stmt_generation_1 (stmt, vec_stmt);
return vect_finish_stmt_generation_1 (stmt_info, vec_stmt);
}
/* Add VEC_STMT to the vectorized implementation of STMT and insert it
......@@ -1775,7 +1777,8 @@ stmt_vec_info
vect_finish_stmt_generation (gimple *stmt, gimple *vec_stmt,
gimple_stmt_iterator *gsi)
{
gcc_assert (gimple_code (stmt) != GIMPLE_LABEL);
stmt_vec_info stmt_info = vinfo_for_stmt (stmt);
gcc_assert (gimple_code (stmt_info->stmt) != GIMPLE_LABEL);
if (!gsi_end_p (*gsi)
&& gimple_has_mem_ops (vec_stmt))
......@@ -1804,7 +1807,7 @@ vect_finish_stmt_generation (gimple *stmt, gimple *vec_stmt,
}
}
gsi_insert_before (gsi, vec_stmt, GSI_SAME_STMT);
return vect_finish_stmt_generation_1 (stmt, vec_stmt);
return vect_finish_stmt_generation_1 (stmt_info, vec_stmt);
}
/* We want to vectorize a call to combined function CFN with function
......@@ -9856,23 +9859,21 @@ vect_transform_stmt (gimple *stmt, gimple_stmt_iterator *gsi,
void
vect_remove_stores (gimple *first_stmt)
{
gimple *next = first_stmt;
stmt_vec_info next_stmt_info = vinfo_for_stmt (first_stmt);
gimple_stmt_iterator next_si;
while (next)
while (next_stmt_info)
{
stmt_vec_info stmt_info = vinfo_for_stmt (next);
stmt_vec_info tmp = DR_GROUP_NEXT_ELEMENT (stmt_info);
if (is_pattern_stmt_p (stmt_info))
next = STMT_VINFO_RELATED_STMT (stmt_info);
stmt_vec_info tmp = DR_GROUP_NEXT_ELEMENT (next_stmt_info);
if (is_pattern_stmt_p (next_stmt_info))
next_stmt_info = STMT_VINFO_RELATED_STMT (next_stmt_info);
/* Free the attached stmt_vec_info and remove the stmt. */
next_si = gsi_for_stmt (next);
unlink_stmt_vdef (next);
next_si = gsi_for_stmt (next_stmt_info->stmt);
unlink_stmt_vdef (next_stmt_info->stmt);
gsi_remove (&next_si, true);
release_defs (next);
free_stmt_vec_info (next);
next = tmp;
release_defs (next_stmt_info->stmt);
free_stmt_vec_info (next_stmt_info);
next_stmt_info = tmp;
}
}
......
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