Replace some uses of layout::Cursor with FuncCursor.
The layout::Cursor is unfortunate because it doesn't reference the whole function.
This commit is contained in:
@@ -152,7 +152,8 @@ impl ControlFlowGraph {
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#[cfg(test)]
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#[cfg(test)]
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mod tests {
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mod tests {
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use super::*;
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use super::*;
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use ir::{Function, InstBuilder, Cursor, CursorBase, types};
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use cursor::{Cursor, FuncCursor};
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use ir::{Function, InstBuilder, types};
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#[test]
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#[test]
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fn empty() {
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fn empty() {
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@@ -194,16 +195,15 @@ mod tests {
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let jmp_ebb1_ebb2;
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let jmp_ebb1_ebb2;
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{
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{
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let dfg = &mut func.dfg;
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let cur = &mut FuncCursor::new(&mut func);
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let cur = &mut Cursor::new(&mut func.layout);
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cur.insert_ebb(ebb0);
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cur.insert_ebb(ebb0);
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br_ebb0_ebb2 = dfg.ins(cur).brnz(cond, ebb2, &[]);
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br_ebb0_ebb2 = cur.ins().brnz(cond, ebb2, &[]);
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jmp_ebb0_ebb1 = dfg.ins(cur).jump(ebb1, &[]);
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jmp_ebb0_ebb1 = cur.ins().jump(ebb1, &[]);
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cur.insert_ebb(ebb1);
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cur.insert_ebb(ebb1);
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br_ebb1_ebb1 = dfg.ins(cur).brnz(cond, ebb1, &[]);
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br_ebb1_ebb1 = cur.ins().brnz(cond, ebb1, &[]);
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jmp_ebb1_ebb2 = dfg.ins(cur).jump(ebb2, &[]);
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jmp_ebb1_ebb2 = cur.ins().jump(ebb2, &[]);
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cur.insert_ebb(ebb2);
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cur.insert_ebb(ebb2);
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}
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}
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@@ -1,6 +1,7 @@
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//! A Loop Invariant Code Motion optimization pass
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//! A Loop Invariant Code Motion optimization pass
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use ir::{Function, Ebb, Inst, Value, Cursor, CursorBase, Type, InstBuilder, Layout};
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use cursor::{Cursor, FuncCursor};
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use ir::{Function, Ebb, Inst, Value, Type, InstBuilder, Layout};
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use flowgraph::ControlFlowGraph;
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use flowgraph::ControlFlowGraph;
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use std::collections::HashSet;
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use std::collections::HashSet;
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use dominator_tree::DominatorTree;
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use dominator_tree::DominatorTree;
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@@ -33,12 +34,12 @@ pub fn do_licm(
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None => {
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None => {
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let pre_header =
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let pre_header =
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create_pre_header(loop_analysis.loop_header(lp), func, cfg, domtree);
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create_pre_header(loop_analysis.loop_header(lp), func, cfg, domtree);
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pos = Cursor::new(&mut func.layout).at_last_inst(pre_header);
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pos = FuncCursor::new(func).at_last_inst(pre_header);
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}
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}
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// If there is a natural pre-header we insert new instructions just before the
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// If there is a natural pre-header we insert new instructions just before the
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// related jumping instruction (which is not necessarily at the end).
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// related jumping instruction (which is not necessarily at the end).
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Some((_, last_inst)) => {
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Some((_, last_inst)) => {
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pos = Cursor::new(&mut func.layout).at_inst(last_inst);
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pos = FuncCursor::new(func).at_inst(last_inst);
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}
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}
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};
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};
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// The last instruction of the pre-header is the termination instruction (usually
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// The last instruction of the pre-header is the termination instruction (usually
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@@ -80,14 +81,11 @@ fn create_pre_header(
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}
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}
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}
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}
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{
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{
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let mut pos = Cursor::new(&mut func.layout).at_top(header);
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let mut pos = FuncCursor::new(func).at_top(header);
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// Inserts the pre-header at the right place in the layout.
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// Inserts the pre-header at the right place in the layout.
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pos.insert_ebb(pre_header);
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pos.insert_ebb(pre_header);
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pos.next_inst();
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pos.next_inst();
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func.dfg.ins(&mut pos).jump(
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pos.ins().jump(header, pre_header_args_value.as_slice(pool));
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header,
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pre_header_args_value.as_slice(pool),
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);
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}
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}
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pre_header
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pre_header
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}
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}
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@@ -141,17 +139,17 @@ fn remove_loop_invariant_instructions(
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) -> Vec<Inst> {
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) -> Vec<Inst> {
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let mut loop_values: HashSet<Value> = HashSet::new();
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let mut loop_values: HashSet<Value> = HashSet::new();
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let mut invariant_inst: Vec<Inst> = Vec::new();
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let mut invariant_inst: Vec<Inst> = Vec::new();
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let mut pos = Cursor::new(&mut func.layout);
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let mut pos = FuncCursor::new(func);
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// We traverse the loop EBB in reverse post-order.
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// We traverse the loop EBB in reverse post-order.
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for ebb in postorder_ebbs_loop(loop_analysis, cfg, lp).iter().rev() {
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for ebb in postorder_ebbs_loop(loop_analysis, cfg, lp).iter().rev() {
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// Arguments of the EBB are loop values
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// Arguments of the EBB are loop values
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for val in func.dfg.ebb_args(*ebb) {
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for val in pos.func.dfg.ebb_args(*ebb) {
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loop_values.insert(*val);
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loop_values.insert(*val);
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}
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}
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pos.goto_top(*ebb);
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pos.goto_top(*ebb);
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while let Some(inst) = pos.next_inst() {
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while let Some(inst) = pos.next_inst() {
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if func.dfg.has_results(inst) &&
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if pos.func.dfg.has_results(inst) &&
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func.dfg.inst_args(inst).into_iter().all(|arg| {
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pos.func.dfg.inst_args(inst).into_iter().all(|arg| {
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!loop_values.contains(arg)
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!loop_values.contains(arg)
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})
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})
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{
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{
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@@ -163,7 +161,7 @@ fn remove_loop_invariant_instructions(
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} else {
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} else {
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// If the instruction is not loop-invariant we push its results in the set of
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// If the instruction is not loop-invariant we push its results in the set of
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// loop values
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// loop values
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for out in func.dfg.inst_results(inst) {
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for out in pos.func.dfg.inst_results(inst) {
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loop_values.insert(*out);
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loop_values.insert(*out);
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}
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}
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}
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}
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@@ -1,8 +1,9 @@
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//! A simple GVN pass.
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//! A simple GVN pass.
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use cursor::{Cursor, FuncCursor};
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use flowgraph::ControlFlowGraph;
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use flowgraph::ControlFlowGraph;
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use dominator_tree::DominatorTree;
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use dominator_tree::DominatorTree;
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use ir::{Cursor, CursorBase, InstructionData, Function, Inst, Opcode, Type};
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use ir::{InstructionData, Function, Inst, Opcode, Type};
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use scoped_hash_map::ScopedHashMap;
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use scoped_hash_map::ScopedHashMap;
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/// Test whether the given opcode is unsafe to even consider for GVN.
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/// Test whether the given opcode is unsafe to even consider for GVN.
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@@ -22,13 +23,13 @@ pub fn do_simple_gvn(func: &mut Function, cfg: &mut ControlFlowGraph, domtree: &
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let mut scope_stack: Vec<Inst> = Vec::new();
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let mut scope_stack: Vec<Inst> = Vec::new();
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// Visit EBBs in a reverse post-order.
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// Visit EBBs in a reverse post-order.
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let mut pos = Cursor::new(&mut func.layout);
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let mut pos = FuncCursor::new(func);
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for &ebb in domtree.cfg_postorder().iter().rev() {
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for &ebb in domtree.cfg_postorder().iter().rev() {
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// Pop any scopes that we just exited.
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// Pop any scopes that we just exited.
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loop {
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loop {
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if let Some(current) = scope_stack.last() {
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if let Some(current) = scope_stack.last() {
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if domtree.dominates(*current, ebb, &pos.layout) {
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if domtree.dominates(*current, ebb, &pos.func.layout) {
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break;
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break;
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}
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}
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} else {
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} else {
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@@ -39,38 +40,38 @@ pub fn do_simple_gvn(func: &mut Function, cfg: &mut ControlFlowGraph, domtree: &
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}
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}
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// Push a scope for the current block.
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// Push a scope for the current block.
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scope_stack.push(pos.layout.first_inst(ebb).unwrap());
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scope_stack.push(pos.func.layout.first_inst(ebb).unwrap());
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visible_values.increment_depth();
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visible_values.increment_depth();
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pos.goto_top(ebb);
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pos.goto_top(ebb);
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while let Some(inst) = pos.next_inst() {
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while let Some(inst) = pos.next_inst() {
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// Resolve aliases, particularly aliases we created earlier.
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// Resolve aliases, particularly aliases we created earlier.
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func.dfg.resolve_aliases_in_arguments(inst);
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pos.func.dfg.resolve_aliases_in_arguments(inst);
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let opcode = func.dfg[inst].opcode();
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let opcode = pos.func.dfg[inst].opcode();
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if opcode.is_branch() && !opcode.is_terminator() {
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if opcode.is_branch() && !opcode.is_terminator() {
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scope_stack.push(pos.layout.next_inst(inst).unwrap());
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scope_stack.push(pos.func.layout.next_inst(inst).unwrap());
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visible_values.increment_depth();
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visible_values.increment_depth();
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}
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}
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if trivially_unsafe_for_gvn(opcode) {
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if trivially_unsafe_for_gvn(opcode) {
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continue;
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continue;
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}
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}
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let ctrl_typevar = func.dfg.ctrl_typevar(inst);
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let ctrl_typevar = pos.func.dfg.ctrl_typevar(inst);
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let key = (func.dfg[inst].clone(), ctrl_typevar);
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let key = (pos.func.dfg[inst].clone(), ctrl_typevar);
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let entry = visible_values.entry(key);
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let entry = visible_values.entry(key);
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use scoped_hash_map::Entry::*;
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use scoped_hash_map::Entry::*;
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match entry {
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match entry {
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Occupied(entry) => {
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Occupied(entry) => {
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debug_assert!(domtree.dominates(*entry.get(), inst, pos.layout));
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debug_assert!(domtree.dominates(*entry.get(), inst, &pos.func.layout));
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// If the redundant instruction is representing the current
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// If the redundant instruction is representing the current
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// scope, pick a new representative.
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// scope, pick a new representative.
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let old = scope_stack.last_mut().unwrap();
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let old = scope_stack.last_mut().unwrap();
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if *old == inst {
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if *old == inst {
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*old = pos.layout.next_inst(inst).unwrap();
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*old = pos.func.layout.next_inst(inst).unwrap();
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}
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}
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// Replace the redundant instruction and remove it.
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// Replace the redundant instruction and remove it.
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func.dfg.replace_with_aliases(inst, *entry.get());
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pos.func.dfg.replace_with_aliases(inst, *entry.get());
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pos.remove_inst_and_step_back();
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pos.remove_inst_and_step_back();
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}
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}
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Vacant(entry) => {
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Vacant(entry) => {
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