struct loop *);
static void loop_redirect_edge (edge, basic_block);
static bool loop_delete_branch_edge (edge, int);
-static void copy_bbs (basic_block *, int, edge, edge, basic_block **,
- struct loops *, edge *, edge *, int);
-static void remove_bbs (dominance_info, basic_block *, int);
+static void remove_bbs (basic_block *, int);
static bool rpe_enum_p (basic_block, void *);
-static int find_path (edge, dominance_info, basic_block **);
+static int find_path (edge, basic_block **);
static bool alp_enum_p (basic_block, void *);
static void add_loop (struct loops *, struct loop *);
static void fix_loop_placements (struct loop *);
static void place_new_loop (struct loops *, struct loop *);
static void scale_loop_frequencies (struct loop *, int, int);
static void scale_bbs_frequencies (basic_block *, int, int, int);
-static void record_exit_edges (edge, basic_block *, int, edge *, unsigned *,
- int);
-static basic_block create_preheader (struct loop *, dominance_info, int);
+static basic_block create_preheader (struct loop *, int);
static void fix_irreducible_loops (basic_block);
/* Splits basic block BB after INSN, returns created edge. Updates loops
and dominators. */
edge
-split_loop_bb (struct loops *loops, basic_block bb, rtx insn)
+split_loop_bb (basic_block bb, rtx insn)
{
edge e;
- basic_block *dom_bbs;
- int n_dom_bbs, i;
/* Split the block. */
e = split_block (bb, insn);
add_bb_to_loop (e->dest, e->src->loop_father);
/* Fix dominators. */
- add_to_dominance_info (loops->cfg.dom, e->dest);
- n_dom_bbs = get_dominated_by (loops->cfg.dom, e->src, &dom_bbs);
- for (i = 0; i < n_dom_bbs; i++)
- set_immediate_dominator (loops->cfg.dom, dom_bbs[i], e->dest);
- free (dom_bbs);
- set_immediate_dominator (loops->cfg.dom, e->dest, e->src);
+ add_to_dominance_info (CDI_DOMINATORS, e->dest);
+ redirect_immediate_dominators (CDI_DOMINATORS, e->src, e->dest);
+ set_immediate_dominator (CDI_DOMINATORS, e->dest, e->src);
return e;
}
-/* Checks whether basic block BB is dominated by RPE->DOM, where
- RPE is passed through DATA. */
-struct rpe_data
- {
- basic_block dom;
- dominance_info doms;
- };
-
+/* Checks whether basic block BB is dominated by DATA. */
static bool
rpe_enum_p (basic_block bb, void *data)
{
- struct rpe_data *rpe = data;
- return dominated_by_p (rpe->doms, bb, rpe->dom);
+ return dominated_by_p (CDI_DOMINATORS, bb, data);
}
/* Remove basic blocks BBS from loop structure and dominance info,
and delete them afterwards. */
static void
-remove_bbs (dominance_info dom, basic_block *bbs, int nbbs)
+remove_bbs (basic_block *bbs, int nbbs)
{
int i;
for (i = 0; i < nbbs; i++)
{
remove_bb_from_loops (bbs[i]);
- delete_from_dominance_info (dom, bbs[i]);
+ delete_from_dominance_info (CDI_DOMINATORS, bbs[i]);
delete_block (bbs[i]);
}
}
alter anything by this function). The number of basic blocks in the
path is returned. */
static int
-find_path (edge e, dominance_info doms, basic_block **bbs)
+find_path (edge e, basic_block **bbs)
{
- struct rpe_data rpe;
-
if (e->dest->pred->pred_next)
abort ();
/* Find bbs in the path. */
- rpe.dom = e->dest;
- rpe.doms = doms;
*bbs = xcalloc (n_basic_blocks, sizeof (basic_block));
return dfs_enumerate_from (e->dest, 0, rpe_enum_p, *bbs,
- n_basic_blocks, &rpe);
+ n_basic_blocks, e->dest);
}
/* Fix placement of basic block BB inside loop hierarchy stored in LOOPS --
his placement no longer has to be correct, and iteratively fix placement of
its predecessors that may change if placement of FROM changed. Also fix
placement of subloops of FROM->loop_father, that might also be altered due
- to this change; the condition for them is simmilar, except that instead of
+ to this change; the condition for them is similar, except that instead of
successors we consider edges coming out of the loops. */
static void
fix_bb_placements (struct loops *loops, basic_block from)
}
for (i = 0; i < n_edges; i++)
- if (e->flags & EDGE_IRREDUCIBLE_LOOP)
- {
- if (!flow_bb_inside_loop_p (from->loop_father, e->dest))
- continue;
+ {
+ e = edges[i];
- e->flags &= ~EDGE_IRREDUCIBLE_LOOP;
- if (TEST_BIT (on_stack, e->dest->index))
- continue;
+ if (e->flags & EDGE_IRREDUCIBLE_LOOP)
+ {
+ if (!flow_bb_inside_loop_p (from->loop_father, e->dest))
+ continue;
- SET_BIT (on_stack, e->dest->index);
- stack[stack_top++] = e->dest;
- }
+ e->flags &= ~EDGE_IRREDUCIBLE_LOOP;
+ if (TEST_BIT (on_stack, e->dest->index))
+ continue;
+
+ SET_BIT (on_stack, e->dest->index);
+ stack[stack_top++] = e->dest;
+ }
+ }
free (edges);
}
fix -- when e->dest has exactly one predecessor, this corresponds
to blocks dominated by e->dest, if not, split the edge. */
if (e->dest->pred->pred_next)
- e = loop_split_edge_with (e, NULL_RTX, loops)->pred;
+ e = loop_split_edge_with (e, NULL_RTX)->pred;
/* It may happen that by removing path we remove one or more loops
we belong to. In this case first unloop the loops, then proceed
normally. We may assume that e->dest is not a header of any loop,
as it now has exactly one predecessor. */
while (e->src->loop_father->outer
- && dominated_by_p (loops->cfg.dom,
+ && dominated_by_p (CDI_DOMINATORS,
e->src->loop_father->latch, e->dest))
unloop (loops, e->src->loop_father);
/* Identify the path. */
- nrem = find_path (e, loops->cfg.dom, &rem_bbs);
+ nrem = find_path (e, &rem_bbs);
n_bord_bbs = 0;
bord_bbs = xcalloc (n_basic_blocks, sizeof (basic_block));
if (rem_bbs[i]->loop_father->header == rem_bbs[i])
cancel_loop_tree (loops, rem_bbs[i]->loop_father);
- remove_bbs (loops->cfg.dom, rem_bbs, nrem);
+ remove_bbs (rem_bbs, nrem);
free (rem_bbs);
/* Find blocks whose dominators may be affected. */
sbitmap_zero (seen);
for (i = 0; i < n_bord_bbs; i++)
{
- int j, nldom;
- basic_block *ldom;
+ basic_block ldom;
- bb = get_immediate_dominator (loops->cfg.dom, bord_bbs[i]);
+ bb = get_immediate_dominator (CDI_DOMINATORS, bord_bbs[i]);
if (TEST_BIT (seen, bb->index))
continue;
SET_BIT (seen, bb->index);
- nldom = get_dominated_by (loops->cfg.dom, bb, &ldom);
- for (j = 0; j < nldom; j++)
- if (!dominated_by_p (loops->cfg.dom, from, ldom[j]))
- dom_bbs[n_dom_bbs++] = ldom[j];
- free(ldom);
+ for (ldom = first_dom_son (CDI_DOMINATORS, bb);
+ ldom;
+ ldom = next_dom_son (CDI_DOMINATORS, ldom))
+ if (!dominated_by_p (CDI_DOMINATORS, from, ldom))
+ dom_bbs[n_dom_bbs++] = ldom;
}
free (seen);
/* Recount dominators. */
- iterate_fix_dominators (loops->cfg.dom, dom_bbs, n_dom_bbs);
+ iterate_fix_dominators (CDI_DOMINATORS, dom_bbs, n_dom_bbs);
free (dom_bbs);
/* These blocks have lost some predecessor(s), thus their irreducible
basic_block succ_bb = latch_edge->dest;
basic_block pred_bb = header_edge->src;
basic_block *dom_bbs, *body;
- unsigned n_dom_bbs, i, j;
+ unsigned n_dom_bbs, i;
sbitmap seen;
struct loop *loop = xcalloc (1, sizeof (struct loop));
struct loop *outer = succ_bb->loop_father->outer;
loop_redirect_edge (switch_bb->succ, succ_bb);
/* Update dominators. */
- set_immediate_dominator (loops->cfg.dom, switch_bb, pred_bb);
- set_immediate_dominator (loops->cfg.dom, loop->header, switch_bb);
- set_immediate_dominator (loops->cfg.dom, succ_bb, switch_bb);
+ set_immediate_dominator (CDI_DOMINATORS, switch_bb, pred_bb);
+ set_immediate_dominator (CDI_DOMINATORS, loop->header, switch_bb);
+ set_immediate_dominator (CDI_DOMINATORS, succ_bb, switch_bb);
/* Compute new loop. */
add_loop (loops, loop);
for (i = 0; i < loop->num_nodes; i++)
{
- unsigned nldom;
- basic_block *ldom;
+ basic_block ldom;
- nldom = get_dominated_by (loops->cfg.dom, body[i], &ldom);
- for (j = 0; j < nldom; j++)
- if (!TEST_BIT (seen, ldom[j]->index))
+ for (ldom = first_dom_son (CDI_DOMINATORS, body[i]);
+ ldom;
+ ldom = next_dom_son (CDI_DOMINATORS, ldom))
+ if (!TEST_BIT (seen, ldom->index))
{
- SET_BIT (seen, ldom[j]->index);
- dom_bbs[n_dom_bbs++] = ldom[j];
+ SET_BIT (seen, ldom->index);
+ dom_bbs[n_dom_bbs++] = ldom;
}
- free (ldom);
}
- iterate_fix_dominators (loops->cfg.dom, dom_bbs, n_dom_bbs);
+ iterate_fix_dominators (CDI_DOMINATORS, dom_bbs, n_dom_bbs);
free (body);
free (seen);
}
/* Fix placement of LOOP inside loop tree, i.e. find the innermost superloop
- FATHER of LOOP such that all of the edges comming out of LOOP belong to
+ FATHER of LOOP such that all of the edges coming out of LOOP belong to
FATHER, and set it as outer loop of LOOP. Return 1 if placement of
LOOP changed. */
int
if (src->succ->succ_next->succ_next)
return false;
/* And it must be just a simple branch. */
- if (!any_condjump_p (src->end))
+ if (!any_condjump_p (BB_END (src)))
return false;
snd = e == src->succ ? src->succ->succ_next : src->succ;
return false; /* To avoid warning, cannot get here. */
}
-/* Duplicates N basic blocks stored in array BBS (they form a body of
- duplicated loop). Newly created basic blocks are placed into array NEW_BBS
- that we allocate. Edges from basic blocks in BBS are also duplicated and
- copies of those of them that lead into BBS are redirected to appropriate
- newly created block. The function also assigns bbs into loops and updates
- dominators. If ADD_IRREDUCIBLE_FLAG is set, newly created basic blocks that
- are not members of any inner loop are marked irreducible.
-
- Additionally, we perform following manipulation with edges:
- We have two special edges given. LATCH_EDGE is the latch edge of the
- duplicated loop and leads into its header (one of blocks in BBS);
- it does not have necessarily lead from one of the blocks, because
- we may be copying the loop body several times in unrolling.
- Edge ENTRY leads also leads to header, and it is either latch or entry
- edge. Copy of LATCH_EDGE is redirected to header and is stored in
- HEADER_EDGE, the ENTRY edge is redirected into copy of header and
- returned as COPY_HEADER_EDGE. The effect is following:
- if LATCH_EDGE == ENTRY, then the loop is unrolled by one copy,
- HEADER_EDGE is latch of a new loop, COPY_HEADER_EDGE leads from original
- latch source to first block in copy.
- if LATCH_EDGE != ENTRY, then the loop is peeled by one copy,
- HEADER_EDGE is entry edge of the loop, COPY_HEADER_EDGE leads from
- original entry block to first block in peeled copy.
- */
-static void
-copy_bbs (basic_block *bbs, int n, edge entry, edge latch_edge,
- basic_block **new_bbs, struct loops *loops, edge *header_edge,
- edge *copy_header_edge, int add_irreducible_flag)
-{
- int i;
- basic_block bb, new_bb, header = entry->dest, dom_bb;
- edge e;
-
- /* Duplicate bbs, update dominators, assign bbs to loops. */
- (*new_bbs) = xcalloc (n, sizeof (basic_block));
- for (i = 0; i < n; i++)
- {
- /* Duplicate. */
- bb = bbs[i];
- new_bb = (*new_bbs)[i] = cfg_layout_duplicate_bb (bb, NULL);
- RBI (new_bb)->duplicated = 1;
- /* Add to loop. */
- add_bb_to_loop (new_bb, bb->loop_father->copy);
- add_to_dominance_info (loops->cfg.dom, new_bb);
- /* Possibly set header. */
- if (bb->loop_father->header == bb && bb != header)
- new_bb->loop_father->header = new_bb;
- /* Or latch. */
- if (bb->loop_father->latch == bb &&
- bb->loop_father != header->loop_father)
- new_bb->loop_father->latch = new_bb;
- /* Take care of irreducible loops. */
- if (add_irreducible_flag
- && bb->loop_father == header->loop_father)
- new_bb->flags |= BB_IRREDUCIBLE_LOOP;
- }
-
- /* Set dominators. */
- for (i = 0; i < n; i++)
- {
- bb = bbs[i];
- new_bb = (*new_bbs)[i];
- if (bb != header)
- {
- /* For anything else than loop header, just copy it. */
- dom_bb = get_immediate_dominator (loops->cfg.dom, bb);
- dom_bb = RBI (dom_bb)->copy;
- }
- else
- {
- /* Copy of header is dominated by entry source. */
- dom_bb = entry->src;
- }
- if (!dom_bb)
- abort ();
- set_immediate_dominator (loops->cfg.dom, new_bb, dom_bb);
- }
-
- /* Redirect edges. */
- for (i = 0; i < n; i++)
- {
- edge e_pred;
- new_bb = (*new_bbs)[i];
- bb = bbs[i];
- for (e = bb->pred; e; e = e_pred)
- {
- basic_block src = e->src;
-
- e_pred = e->pred_next;
-
- if (!RBI (src)->duplicated)
- continue;
-
- /* Leads to copied loop and it is not latch edge, redirect it. */
- if (bb != header)
- loop_redirect_edge (e, new_bb);
-
- if (add_irreducible_flag
- && (bb->loop_father == header->loop_father
- || RBI (src)->original->loop_father == header->loop_father))
- e->flags |= EDGE_IRREDUCIBLE_LOOP;
- }
- }
-
- /* Redirect header edge. */
- bb = RBI (latch_edge->src)->copy;
- for (e = bb->succ; e->dest != latch_edge->dest; e = e->succ_next);
- *header_edge = e;
- loop_redirect_edge (*header_edge, header);
-
- /* Redirect entry to copy of header. */
- loop_redirect_edge (entry, RBI (header)->copy);
- *copy_header_edge = entry;
-
- /* Clear information about duplicates. */
- for (i = 0; i < n; i++)
- RBI ((*new_bbs)[i])->duplicated = 0;
-}
-
/* Check whether LOOP's body can be duplicated. */
bool
can_duplicate_loop_p (struct loop *loop)
{
- basic_block *bbs;
- unsigned i;
-
- bbs = get_loop_body (loop);
-
- for (i = 0; i < loop->num_nodes; i++)
- {
- edge e;
-
- /* In case loop contains abnormal edge we can not redirect,
- we can't perform duplication. */
+ int ret;
+ basic_block *bbs = get_loop_body (loop);
- for (e = bbs[i]->succ; e; e = e->succ_next)
- if ((e->flags & EDGE_ABNORMAL)
- && flow_bb_inside_loop_p (loop, e->dest))
- {
- free (bbs);
- return false;
- }
-
- if (!cfg_layout_can_duplicate_bb_p (bbs[i]))
- {
- free (bbs);
- return false;
- }
- }
+ ret = can_copy_bbs_p (bbs, loop->num_nodes);
free (bbs);
-
- return true;
-}
-
-/* Record edges, leading from NBBS basic blocks stored in BBS, that were created
- by copying ORIG edge (or just ORIG edge if IS_ORIG is set).
- If ORIG is NULL, then record all edges coming outside of BBS. Store them
- into TO_REMOVE array that must be large enough to hold them all; their
- number is returned in N_TO_REMOVE. */
-static void
-record_exit_edges (edge orig, basic_block *bbs, int nbbs, edge *to_remove,
- unsigned int *n_to_remove, int is_orig)
-{
- sbitmap my_blocks;
- int i;
- edge e;
-
- if (orig)
- {
- if (is_orig)
- {
- to_remove[(*n_to_remove)++] = orig;
- return;
- }
-
- for (e = RBI (orig->src)->copy->succ; e; e = e->succ_next)
- if (e->dest == orig->dest)
- break;
- if (!e)
- abort ();
-
- to_remove[(*n_to_remove)++] = e;
- }
- else
- {
- my_blocks = sbitmap_alloc (last_basic_block);
- sbitmap_zero (my_blocks);
- for (i = 0; i < nbbs; i++)
- SET_BIT (my_blocks, bbs[i]->index);
-
- for (i = 0; i < nbbs; i++)
- for (e = bbs[i]->succ; e; e = e->succ_next)
- if (e->dest == EXIT_BLOCK_PTR ||
- !TEST_BIT (my_blocks, e->dest->index))
- to_remove[(*n_to_remove)++] = e;
-
- free (my_blocks);
- }
+
+ return ret;
}
-
#define RDIV(X,Y) (((X) + (Y) / 2) / (Y))
-/* Duplicates body of LOOP to given edge E NDUPL times. Takes care of
- updating LOOPS structure and dominators. E's destination must be LOOP
- header for this to work, i.e. it must be entry or latch edge of this loop;
- these are unique, as the loops must have preheaders for this function to
- work correctly (in case E is latch, the function unrolls the loop, if E is
- entry edge, it peels the loop). Store edges created by copying ORIG edge
- (if NULL, then all edges leaving loop) from copies corresponding to set
- bits in WONT_EXIT bitmap (bit 0 corresponds to original LOOP body, the
- other copies are numbered in order given by control flow through them)
- into TO_REMOVE array. Returns false if duplication is impossible. */
+/* Duplicates body of LOOP to given edge E NDUPL times. Takes care of updating
+ LOOPS structure and dominators. E's destination must be LOOP header for
+ this to work, i.e. it must be entry or latch edge of this loop; these are
+ unique, as the loops must have preheaders for this function to work
+ correctly (in case E is latch, the function unrolls the loop, if E is entry
+ edge, it peels the loop). Store edges created by copying ORIG edge from
+ copies corresponding to set bits in WONT_EXIT bitmap (bit 0 corresponds to
+ original LOOP body, the other copies are numbered in order given by control
+ flow through them) into TO_REMOVE array. Returns false if duplication is
+ impossible. */
int
duplicate_loop_to_header_edge (struct loop *loop, edge e, struct loops *loops,
unsigned int ndupl, sbitmap wont_exit,
basic_block header = loop->header, latch = loop->latch;
basic_block *new_bbs, *bbs, *first_active;
basic_block new_bb, bb, first_active_latch = NULL;
- edge ae, latch_edge, he;
+ edge ae, latch_edge;
+ edge spec_edges[2], new_spec_edges[2];
+#define SE_LATCH 0
+#define SE_ORIG 1
unsigned i, j, n;
int is_latch = (latch == e->src);
int scale_act = 0, *scale_step = NULL, scale_main = 0;
bbs = get_loop_body (loop);
/* Check whether duplication is possible. */
-
- for (i = 0; i < loop->num_nodes; i++)
+ if (!can_copy_bbs_p (bbs, loop->num_nodes))
{
- if (!cfg_layout_can_duplicate_bb_p (bbs[i]))
- {
- free (bbs);
- return false;
- }
+ free (bbs);
+ return false;
}
+ new_bbs = xmalloc (sizeof (basic_block) * loop->num_nodes);
- add_irreducible_flag = !is_latch && (e->flags & EDGE_IRREDUCIBLE_LOOP);
+ /* In case we are doing loop peeling and the loop is in the middle of
+ irreducible region, the peeled copies will be inside it too. */
+ add_irreducible_flag = e->flags & EDGE_IRREDUCIBLE_LOOP;
+ if (is_latch && add_irreducible_flag)
+ abort ();
/* Find edge from latch. */
latch_edge = loop_latch_edge (loop);
}
/* Loop the new bbs will belong to. */
- target = find_common_loop (e->src->loop_father, e->dest->loop_father);
+ target = e->src->loop_father;
/* Original loops. */
n_orig_loops = 0;
loop->copy = target;
- /* Original basic blocks. */
n = loop->num_nodes;
- first_active = xcalloc(n, sizeof (basic_block));
+ first_active = xmalloc (n * sizeof (basic_block));
if (is_latch)
{
memcpy (first_active, bbs, n * sizeof (basic_block));
first_active_latch = latch;
}
- /* Record exit edges in original loop body. */
- if (TEST_BIT (wont_exit, 0))
- record_exit_edges (orig, bbs, n, to_remove, n_to_remove, true);
+ /* Record exit edge in original loop body. */
+ if (orig && TEST_BIT (wont_exit, 0))
+ to_remove[(*n_to_remove)++] = orig;
+
+ spec_edges[SE_ORIG] = orig;
+ spec_edges[SE_LATCH] = latch_edge;
for (j = 0; j < ndupl; j++)
{
copy_loops_to (loops, orig_loops, n_orig_loops, target);
/* Copy bbs. */
- copy_bbs (bbs, n, e, latch_edge, &new_bbs, loops,
- &e, &he, add_irreducible_flag);
- if (is_latch)
- loop->latch = RBI (latch)->copy;
+ copy_bbs (bbs, n, new_bbs, spec_edges, 2, new_spec_edges, loop);
- /* Record exit edges in this copy. */
- if (TEST_BIT (wont_exit, j + 1))
- record_exit_edges (orig, new_bbs, n, to_remove, n_to_remove, false);
-
- /* Set counts and frequencies. */
- for (i = 0; i < n; i++)
+ /* Note whether the blocks and edges belong to an irreducible loop. */
+ if (add_irreducible_flag)
{
- new_bb = new_bbs[i];
- bb = bbs[i];
-
- if (flags & DLTHE_FLAG_UPDATE_FREQ)
- {
- new_bb->count = RDIV (scale_act * bb->count, REG_BR_PROB_BASE);
- new_bb->frequency = RDIV (scale_act * bb->frequency,
- REG_BR_PROB_BASE);
- }
- else
+ for (i = 0; i < n; i++)
+ new_bbs[i]->rbi->duplicated = 1;
+ for (i = 0; i < n; i++)
{
- new_bb->count = bb->count;
- new_bb->frequency = bb->frequency;
+ new_bb = new_bbs[i];
+ if (new_bb->loop_father == target)
+ new_bb->flags |= BB_IRREDUCIBLE_LOOP;
+
+ for (ae = new_bb->succ; ae; ae = ae->succ_next)
+ if (ae->dest->rbi->duplicated
+ && (ae->src->loop_father == target
+ || ae->dest->loop_father == target))
+ ae->flags |= EDGE_IRREDUCIBLE_LOOP;
}
+ for (i = 0; i < n; i++)
+ new_bbs[i]->rbi->duplicated = 0;
+ }
- for (ae = new_bb->succ; ae; ae = ae->succ_next)
- ae->count = RDIV (new_bb->count * ae->probability,
- REG_BR_PROB_BASE);
+ /* Redirect the special edges. */
+ if (is_latch)
+ {
+ redirect_edge_and_branch_force (latch_edge, new_bbs[0]);
+ redirect_edge_and_branch_force (new_spec_edges[SE_LATCH],
+ loop->header);
+ set_immediate_dominator (CDI_DOMINATORS, new_bbs[0], latch);
+ latch = loop->latch = new_bbs[1];
+ e = latch_edge = new_spec_edges[SE_LATCH];
}
- if (flags & DLTHE_FLAG_UPDATE_FREQ)
- scale_act = RDIV (scale_act * scale_step[j], REG_BR_PROB_BASE);
+ else
+ {
+ redirect_edge_and_branch_force (new_spec_edges[SE_LATCH],
+ loop->header);
+ redirect_edge_and_branch_force (e, new_bbs[0]);
+ set_immediate_dominator (CDI_DOMINATORS, new_bbs[0], e->src);
+ e = new_spec_edges[SE_LATCH];
+ }
+
+ /* Record exit edge in this copy. */
+ if (orig && TEST_BIT (wont_exit, j + 1))
+ to_remove[(*n_to_remove)++] = new_spec_edges[SE_ORIG];
+ /* Record the first copy in the control flow order if it is not
+ the original loop (i.e. in case of peeling). */
if (!first_active_latch)
{
memcpy (first_active, new_bbs, n * sizeof (basic_block));
- first_active_latch = RBI (latch)->copy;
+ first_active_latch = new_bbs[1];
}
- free (new_bbs);
-
- /* Original loop header is dominated by latch copy
- if we duplicated on its only entry edge. */
- if (!is_latch && !header->pred->pred_next->pred_next)
- set_immediate_dominator (loops->cfg.dom, header, RBI (latch)->copy);
- if (is_latch && j == 0)
+ /* Set counts and frequencies. */
+ if (flags & DLTHE_FLAG_UPDATE_FREQ)
{
- /* Update edge from latch. */
- for (latch_edge = RBI (header)->copy->pred;
- latch_edge->src != latch;
- latch_edge = latch_edge->pred_next);
+ scale_bbs_frequencies (new_bbs, n, scale_act, REG_BR_PROB_BASE);
+ scale_act = RDIV (scale_act * scale_step[j], REG_BR_PROB_BASE);
}
}
- /* Now handle original loop. */
-
- /* Update edge counts. */
+ free (new_bbs);
+ free (orig_loops);
+
+ /* Update the original loop. */
+ if (!is_latch)
+ set_immediate_dominator (CDI_DOMINATORS, e->dest, e->src);
if (flags & DLTHE_FLAG_UPDATE_FREQ)
{
- for (i = 0; i < n; i++)
- {
- bb = bbs[i];
- bb->count = RDIV (scale_main * bb->count, REG_BR_PROB_BASE);
- bb->frequency = RDIV (scale_main * bb->frequency, REG_BR_PROB_BASE);
- for (ae = bb->succ; ae; ae = ae->succ_next)
- ae->count = RDIV (bb->count * ae->probability, REG_BR_PROB_BASE);
- }
+ scale_bbs_frequencies (bbs, n, scale_main, REG_BR_PROB_BASE);
free (scale_step);
}
- free (orig_loops);
- /* Update dominators of other blocks if affected. */
+ /* Update dominators of outer blocks if affected. */
for (i = 0; i < n; i++)
{
basic_block dominated, dom_bb, *dom_bbs;
int n_dom_bbs,j;
bb = bbs[i];
- n_dom_bbs = get_dominated_by (loops->cfg.dom, bb, &dom_bbs);
+ n_dom_bbs = get_dominated_by (CDI_DOMINATORS, bb, &dom_bbs);
for (j = 0; j < n_dom_bbs; j++)
{
dominated = dom_bbs[j];
if (flow_bb_inside_loop_p (loop, dominated))
continue;
dom_bb = nearest_common_dominator (
- loops->cfg.dom, first_active[i], first_active_latch);
- set_immediate_dominator (loops->cfg.dom, dominated, dom_bb);
+ CDI_DOMINATORS, first_active[i], first_active_latch);
+ set_immediate_dominator (CDI_DOMINATORS, dominated, dom_bb);
}
free (dom_bbs);
}
entry; otherwise we also force preheader block to have only one successor.
The function also updates dominators stored in DOM. */
static basic_block
-create_preheader (struct loop *loop, dominance_info dom, int flags)
+create_preheader (struct loop *loop, int flags)
{
edge e, fallthru;
basic_block dummy;
insn = PREV_INSN (insn);
else
insn = get_last_insn ();
- if (insn == loop->header->end)
+ if (insn == BB_END (loop->header))
{
/* Split_block would not split block after its end. */
emit_note_after (NOTE_INSN_DELETED, insn);
if (ploop->latch == dummy)
ploop->latch = fallthru->dest;
- add_to_dominance_info (dom, fallthru->dest);
+ add_to_dominance_info (CDI_DOMINATORS, fallthru->dest);
/* Redirect edges. */
for (e = dummy->pred; e; e = e->pred_next)
jump = redirect_edge_and_branch_force (e, loop->header);
if (jump)
{
- add_to_dominance_info (dom, jump);
- set_immediate_dominator (dom, jump, src);
+ add_to_dominance_info (CDI_DOMINATORS, jump);
+ set_immediate_dominator (CDI_DOMINATORS, jump, src);
add_bb_to_loop (jump, loop);
loop->latch = jump;
}
/* Update structures. */
- redirect_immediate_dominators (dom, dummy, loop->header);
- set_immediate_dominator (dom, loop->header, dummy);
+ redirect_immediate_dominators (CDI_DOMINATORS, dummy, loop->header);
+ set_immediate_dominator (CDI_DOMINATORS, loop->header, dummy);
loop->header->loop_father = loop;
add_bb_to_loop (dummy, cloop);
if (rtl_dump_file)
{
unsigned i;
for (i = 1; i < loops->num; i++)
- create_preheader (loops->parray[i], loops->cfg.dom, flags);
+ create_preheader (loops->parray[i], flags);
loops->state |= LOOPS_HAVE_PREHEADERS;
}
for (i = 1; i < loops->num; i++)
{
loop = loops->parray[i];
- if (!loop->latch->succ->succ_next)
+ if (loop->latch != loop->header
+ && !loop->latch->succ->succ_next)
continue;
for (e = loop->header->pred; e->src != loop->latch; e = e->pred_next)
continue;
- loop_split_edge_with (e, NULL_RTX, loops);
+ loop_split_edge_with (e, NULL_RTX);
}
loops->state |= LOOPS_HAVE_SIMPLE_LATCHES;
}
be ok after this function. The created block is placed on correct place
in LOOPS structure and its dominator is set. */
basic_block
-loop_split_edge_with (edge e, rtx insns, struct loops *loops)
+loop_split_edge_with (edge e, rtx insns)
{
basic_block src, dest, new_bb;
struct loop *loop_c;
/* Create basic block for it. */
- new_bb = create_basic_block (NULL_RTX, NULL_RTX, EXIT_BLOCK_PTR->prev_bb);
- add_to_dominance_info (loops->cfg.dom, new_bb);
+ new_bb = split_edge (e);
+ add_to_dominance_info (CDI_DOMINATORS, new_bb);
add_bb_to_loop (new_bb, loop_c);
new_bb->flags = insns ? BB_SUPERBLOCK : 0;
- new_e = make_edge (new_bb, dest, EDGE_FALLTHRU);
- new_e->probability = REG_BR_PROB_BASE;
- new_e->count = e->count;
+ new_e = new_bb->succ;
if (e->flags & EDGE_IRREDUCIBLE_LOOP)
{
new_bb->flags |= BB_IRREDUCIBLE_LOOP;
new_e->flags |= EDGE_IRREDUCIBLE_LOOP;
}
- new_bb->count = e->count;
- new_bb->frequency = EDGE_FREQUENCY (e);
- redirect_edge_and_branch_force (e, new_bb);
-
- alloc_aux_for_block (new_bb, sizeof (struct reorder_block_def));
if (insns)
- {
- start_sequence ();
- emit_insn (insns);
- insns = get_insns ();
- end_sequence ();
- emit_insn_after (insns, new_bb->end);
- }
+ emit_insn_after (insns, BB_END (new_bb));
- set_immediate_dominator (loops->cfg.dom, new_bb, src);
- set_immediate_dominator (loops->cfg.dom, dest,
- recount_dominator (loops->cfg.dom, dest));
+ set_immediate_dominator (CDI_DOMINATORS, new_bb, src);
+ set_immediate_dominator (CDI_DOMINATORS, dest,
+ recount_dominator (CDI_DOMINATORS, dest));
if (dest->loop_father->latch == src)
dest->loop_father->latch = new_bb;