sched-int.h (schedule_block): Adjust declaration.

* sched-int.h (schedule_block): Adjust declaration.
	* sched-rgn.c (bb_state_array, bb_state): New static variables.
	(sched_rgn_init): Initialize them.
	(sched_rgn_free): Free them.
	(schedule_region): Save scheduling state for future blocks, and
	pass such state to schedule_block.
	* params.def (PARAM_SCHED_STATE_EDGE_PROB_CUTOFF): New.
	* doc/invoke.texi (--param): Document it.
	* haifa-sched.c (schedule_block): New arg init_state.  Use it to
	initialize state if nonnull.  All callers changed.
	Call advance_one_cycle after scheduling.

From-SVN: r192203
This commit is contained in:
Bernd Schmidt 2012-10-08 11:26:16 +00:00 committed by Bernd Schmidt
parent 1e422ffff3
commit 975ccf2291
7 changed files with 70 additions and 5 deletions

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@ -1,3 +1,17 @@
2012-10-08 Bernd Schmidt <bernds@codesourcery.com>
* sched-int.h (schedule_block): Adjust declaration.
* sched-rgn.c (bb_state_array, bb_state): New static variables.
(sched_rgn_init): Initialize them.
(sched_rgn_free): Free them.
(schedule_region): Save scheduling state for future blocks, and
pass such state to schedule_block.
* params.def (PARAM_SCHED_STATE_EDGE_PROB_CUTOFF): New.
* doc/invoke.texi (--param): Document it.
* haifa-sched.c (schedule_block): New arg init_state. Use it to
initialize state if nonnull. All callers changed.
Call advance_one_cycle after scheduling.
2012-10-08 Georg-Johann Lay <avr@gjlay.de>
PR target/54854

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@ -9242,6 +9242,11 @@ The minimal probability of speculation success (in percents), so that
speculative insns are scheduled.
The default value is 40.
@item sched-spec-state-edge-prob-cutoff
The minimum probability an edge must have for the scheduler to save its
state across it.
The default value is 10.
@item sched-mem-true-dep-cost
Minimal distance (in CPU cycles) between store and load targeting same
memory locations. The default value is 1.

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@ -5840,7 +5840,7 @@ verify_shadows (void)
region. */
bool
schedule_block (basic_block *target_bb)
schedule_block (basic_block *target_bb, state_t init_state)
{
int i;
bool success = modulo_ii == 0;
@ -5875,7 +5875,10 @@ schedule_block (basic_block *target_bb)
if (sched_verbose)
dump_new_block_header (0, *target_bb, head, tail);
state_reset (curr_state);
if (init_state == NULL)
state_reset (curr_state);
else
memcpy (curr_state, init_state, dfa_state_size);
/* Clear the ready list. */
ready.first = ready.veclen - 1;
@ -6335,6 +6338,7 @@ schedule_block (basic_block *target_bb)
if (ls.modulo_epilogue)
success = true;
end_schedule:
advance_one_cycle ();
perform_replacements_new_cycle ();
if (modulo_ii > 0)
{

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@ -611,6 +611,11 @@ DEFPARAM(PARAM_SCHED_SPEC_PROB_CUTOFF,
"The minimal probability of speculation success (in percents), so that speculative insn will be scheduled.",
40, 0, 100)
DEFPARAM(PARAM_SCHED_STATE_EDGE_PROB_CUTOFF,
"sched-state-edge-prob-cutoff",
"The minimum probability an edge must have for the scheduler to save its state across it.",
10, 0, 100)
DEFPARAM(PARAM_SELSCHED_MAX_LOOKAHEAD,
"selsched-max-lookahead",
"The maximum size of the lookahead window of selective scheduling",

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@ -544,7 +544,7 @@ schedule_ebb (rtx head, rtx tail, bool modulo_scheduling)
/* Make ready list big enough to hold all the instructions from the ebb. */
sched_extend_ready_list (rgn_n_insns);
success = schedule_block (&target_bb);
success = schedule_block (&target_bb, NULL);
gcc_assert (success || modulo_scheduling);
/* Free ready list. */

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@ -1321,7 +1321,7 @@ extern int dep_cost (dep_t);
extern int set_priorities (rtx, rtx);
extern void sched_setup_bb_reg_pressure_info (basic_block, rtx);
extern bool schedule_block (basic_block *);
extern bool schedule_block (basic_block *, state_t);
extern int cycle_issued_insns;
extern int issue_rate;

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@ -124,6 +124,9 @@ int current_blocks;
static basic_block *bblst_table;
static int bblst_size, bblst_last;
static char *bb_state_array;
static state_t *bb_state;
/* Target info declarations.
The block currently being scheduled is referred to as the "target" block,
@ -2982,9 +2985,21 @@ schedule_region (int rgn)
curr_bb = first_bb;
if (dbg_cnt (sched_block))
{
schedule_block (&curr_bb);
edge f;
schedule_block (&curr_bb, bb_state[first_bb->index]);
gcc_assert (EBB_FIRST_BB (bb) == first_bb);
sched_rgn_n_insns += sched_n_insns;
f = find_fallthru_edge (last_bb->succs);
if (f && f->probability * 100 / REG_BR_PROB_BASE >=
PARAM_VALUE (PARAM_SCHED_STATE_EDGE_PROB_CUTOFF))
{
memcpy (bb_state[f->dest->index], curr_state,
dfa_state_size);
if (sched_verbose >= 5)
fprintf (sched_dump, "saving state for edge %d->%d\n",
f->src->index, f->dest->index);
}
}
else
{
@ -3017,6 +3032,8 @@ schedule_region (int rgn)
void
sched_rgn_init (bool single_blocks_p)
{
int i;
min_spec_prob = ((PARAM_VALUE (PARAM_MIN_SPEC_PROB) * REG_BR_PROB_BASE)
/ 100);
@ -3028,6 +3045,23 @@ sched_rgn_init (bool single_blocks_p)
CONTAINING_RGN (ENTRY_BLOCK) = -1;
CONTAINING_RGN (EXIT_BLOCK) = -1;
if (!sel_sched_p ())
{
bb_state_array = (char *) xmalloc (last_basic_block * dfa_state_size);
bb_state = XNEWVEC (state_t, last_basic_block);
for (i = 0; i < last_basic_block; i++)
{
bb_state[i] = (state_t) (bb_state_array + i * dfa_state_size);
state_reset (bb_state[i]);
}
}
else
{
bb_state_array = NULL;
bb_state = NULL;
}
/* Compute regions for scheduling. */
if (single_blocks_p
|| n_basic_blocks == NUM_FIXED_BLOCKS + 1
@ -3064,6 +3098,9 @@ sched_rgn_init (bool single_blocks_p)
void
sched_rgn_finish (void)
{
free (bb_state_array);
free (bb_state);
/* Reposition the prologue and epilogue notes in case we moved the
prologue/epilogue insns. */
if (reload_completed)