2016-10-06 19:34:21 +00:00
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#include "mcg.h"
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struct graph_data cfg;
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struct dominance_data dominance;
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static ARRAYOF(struct basicblock) pending;
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static bool collect_outputs_cb(struct ir* ir, void* user)
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{
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struct basicblock* caller = user;
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if (ir->opcode == IR_BLOCK)
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{
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array_appendu(&caller->nexts, ir->u.bvalue);
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array_appendu(&ir->u.bvalue->prevs, caller);
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2016-10-07 22:21:23 +00:00
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pmap_add(&cfg.graph, caller, ir->u.bvalue);
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2016-10-06 19:34:21 +00:00
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}
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return false;
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}
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static void update_block_pointers_from_ir(struct procedure* proc)
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{
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int i, j;
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for (i=0; i<proc->blocks.count; i++)
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{
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struct basicblock* bb = proc->blocks.item[i];
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bb->prevs.count = bb->nexts.count = 0;
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}
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for (i=0; i<proc->blocks.count; i++)
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{
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struct basicblock* bb = proc->blocks.item[i];
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for (j=0; j<bb->irs.count; j++)
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ir_walk(bb->irs.item[j], collect_outputs_cb, bb);
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}
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for (i=0; i<proc->blocks.count; i++)
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{
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struct basicblock* bb = proc->blocks.item[i];
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for (j=0; j<bb->nexts.count; j++)
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{
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tracef('D', "D: cfg graph %s -> %s\n",
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bb->name,
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bb->nexts.item[j]->name);
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}
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}
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}
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static void recursively_walk_cfg_graph(struct basicblock* bb)
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{
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int i;
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if (array_contains(&cfg.postorder, bb) || array_contains(&pending, bb))
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return;
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array_appendu(&cfg.preorder, bb);
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array_appendu(&pending, bb);
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for (i=0; i<bb->nexts.count; i++)
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recursively_walk_cfg_graph(bb->nexts.item[i]);
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array_remove(&pending, bb);
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bb->order = cfg.postorder.count;
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array_appendu(&cfg.postorder, bb);
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}
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static void walk_cfg_graph(void)
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{
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int i;
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cfg.preorder.count = 0;
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cfg.postorder.count = 0;
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pending.count = 0;
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recursively_walk_cfg_graph(cfg.entry);
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for (i=0; i<cfg.preorder.count; i++)
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{
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tracef('G', "G: cfg preorder: %s\n",
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cfg.preorder.item[i]->name);
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}
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}
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static struct basicblock* intersect(struct basicblock* p1, struct basicblock* p2)
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{
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while (p1 != p2)
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{
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while (p1->order < p2->order)
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2016-10-08 21:32:54 +00:00
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p1 = pmap_findleft(&dominance.graph, p1);
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2016-10-06 19:34:21 +00:00
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while (p2->order < p1->order)
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2016-10-08 21:32:54 +00:00
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p2 = pmap_findleft(&dominance.graph, p2);
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2016-10-06 19:34:21 +00:00
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}
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return p1;
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}
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static void calculate_dominance_graph(void)
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{
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/* This is the algorithm described here:
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*
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* Cooper, Keith D., Timothy J. Harvey, and Ken Kennedy.
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* "A simple, fast dominance algorithm."
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* Software Practice & Experience 4.1-10 (2001): 1-8.
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*
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* https://www.cs.rice.edu/~keith/EMBED/dom.pdf
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*/
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int i, j;
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bool changed;
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dominance.graph.count = 0;
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/* The entry block dominates itself. */
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pmap_put(&dominance.graph, cfg.entry, cfg.entry);
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do
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{
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changed = false;
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for (i = cfg.postorder.count-2; i >= 0; i--)
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{
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struct basicblock* b = cfg.postorder.item[i];
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struct basicblock* new_idom = NULL;
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for (j=0; j<b->prevs.count; j++)
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{
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struct basicblock* p = b->prevs.item[j];
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/* Skip unprocessed blocks. */
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2016-10-08 21:32:54 +00:00
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if (!pmap_findleft(&dominance.graph, p))
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2016-10-06 19:34:21 +00:00
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continue;
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if (!new_idom)
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new_idom = p;
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2016-10-08 21:32:54 +00:00
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else if (pmap_findleft(&dominance.graph, p))
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2016-10-06 19:34:21 +00:00
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new_idom = intersect(p, new_idom);
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}
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2016-10-08 21:32:54 +00:00
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if (pmap_findleft(&dominance.graph, b) != new_idom)
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2016-10-06 19:34:21 +00:00
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{
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pmap_put(&dominance.graph, b, new_idom);
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changed = true;
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}
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}
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}
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while (changed);
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for (i=0; i<dominance.graph.count; i++)
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{
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tracef('G', "G: dominance graph: %s -> %s\n",
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dominance.graph.item[i].right->name,
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dominance.graph.item[i].left->name);
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}
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}
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static void recursively_walk_dominance_graph(struct basicblock* bb)
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{
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int i;
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if (array_contains(&dominance.postorder, bb) || array_contains(&pending, bb))
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return;
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array_appendu(&dominance.preorder, bb);
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array_appendu(&pending, bb);
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for (i=0; i<dominance.graph.count; i++)
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if (dominance.graph.item[i].right == bb)
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recursively_walk_dominance_graph(dominance.graph.item[i].left);
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array_remove(&pending, bb);
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array_appendu(&dominance.postorder, bb);
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}
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static void walk_dominance_graph(void)
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{
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int i;
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dominance.preorder.count = 0;
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dominance.postorder.count = 0;
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pending.count = 0;
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recursively_walk_dominance_graph(cfg.entry);
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for (i=0; i<dominance.preorder.count; i++)
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{
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tracef('G', "G: dominance preorder: %s\n",
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dominance.preorder.item[i]->name);
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}
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}
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void update_graph_data(struct procedure* proc)
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{
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cfg.entry = proc->blocks.item[0];
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2016-10-07 22:21:23 +00:00
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cfg.graph.count = 0;
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2016-10-06 19:34:21 +00:00
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update_block_pointers_from_ir(proc);
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walk_cfg_graph();
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assert(cfg.postorder.count == proc->blocks.count);
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assert(cfg.preorder.count == proc->blocks.count);
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calculate_dominance_graph();
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walk_dominance_graph();
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assert(dominance.postorder.count == dominance.graph.count);
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assert(dominance.preorder.count == dominance.graph.count);
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}
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/* vim: set sw=4 ts=4 expandtab : */
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