1use std::cmp::Reverse;
28use std::collections::BTreeMap;
29
30use rucc_mir::{Func, Reg};
31use rucc_target::RegClass;
32
33use crate::assign;
34use crate::backtrack;
35use crate::live::{Area, Live};
36use crate::pressure::Pressure;
37
38#[derive(Debug, Clone, Copy)]
40struct Candidate<'a> {
41 reg: Reg,
42 area: Area<'a>,
43 weight: u128,
44 size: u32,
45}
46
47#[must_use]
55pub fn choose(func: &Func, live: &Live, pressure: &Pressure) -> Vec<Reg> {
56 let costs = backtrack::costs(func);
57 let mut forced = vec![false; func.vregs()];
58 for reg in assign::forced(func) {
59 forced[index(reg)] = true;
60 }
61 let mut classes: BTreeMap<RegClass, Vec<Candidate<'_>>> = BTreeMap::new();
62 for (number, &forced) in forced.iter().enumerate() {
63 let reg = Reg::virtual_reg(u32::try_from(number).expect("a register number"));
64 let (Some(area), Some(class)) = (live.area(reg), func.class_of(reg)) else {
65 continue;
66 };
67 if forced {
68 continue;
69 }
70 let size = backtrack::size(area);
71 let weight = costs[number] * 1024 / u128::from(size + 8);
72 classes.entry(class).or_default().push(Candidate { reg, area, weight, size });
73 }
74
75 let mut pressure = pressure.clone();
76 let mut chosen = Vec::new();
77 for (class, mut candidates) in classes {
78 candidates.sort_by_key(|candidate| candidate.area.hull().start);
79 let over: Vec<_> = pressure.over(class).collect();
80 let mut open: Vec<usize> = Vec::new();
82 let mut next = 0;
83 for point in over {
84 while next < candidates.len() && candidates[next].area.hull().start <= point {
85 open.push(next);
86 next += 1;
87 }
88 open.retain(|&one| candidates[one].area.hull().end >= point);
89 while pressure.excess(class, point) > 0 {
90 let lightest = open
91 .iter()
92 .copied()
93 .filter(|&one| candidates[one].area.covers(point))
94 .min_by_key(|&one| {
95 (candidates[one].weight, Reverse(candidates[one].size), one)
96 });
97 let Some(one) = lightest else { break };
98 open.retain(|&other| other != one);
99 pressure.lift(class, candidates[one].area);
100 chosen.push(candidates[one].reg);
101 }
102 }
103 }
104 chosen
105}
106
107fn index(reg: Reg) -> usize {
108 usize::try_from(reg.number().expect("a virtual register")).expect("a register number")
109}
110
111#[cfg(test)]
112mod tests {
113 use rucc_base::Interner;
114 use rucc_mir::{BlockCall, Opcode, Weight};
115 use rucc_target::x86_64::{GPR, SYSV};
116
117 use super::*;
118 use crate::assign::Env;
119 use crate::order::Order;
120
121 fn narrow(count: usize) -> Env {
122 Env::new().with(GPR, &SYSV.int_order[..count], &SYSV.int_order[count..count + 1])
123 }
124
125 fn chosen(func: &Func, env: &Env) -> Vec<Reg> {
126 let order = Order::of(func);
127 let live = Live::of(func, &order);
128 let pressure = Pressure::of(func, &order, &live, env);
129 choose(func, &live, &pressure)
130 }
131
132 #[test]
133 fn nothing_goes_where_everything_fits() {
134 let mut names = Interner::new();
135 let mut func = Func::new(names.intern("f"));
136 let opcode = Opcode::new(names.intern("x64.nop"));
137 let block = func.create_block();
138 let first = func.new_vreg(GPR);
139 let second = func.new_vreg(GPR);
140 func.build(block, opcode).def(first, GPR).finish();
141 func.build(block, opcode).def(second, GPR).finish();
142 func.build(block, opcode).uses(first, GPR).uses(second, GPR).finish();
143
144 assert!(chosen(&func, &narrow(2)).is_empty());
145 }
146
147 #[test]
148 fn the_value_read_least_is_the_one_that_goes() {
149 let mut names = Interner::new();
150 let mut func = Func::new(names.intern("f"));
151 let opcode = Opcode::new(names.intern("x64.nop"));
152 let block = func.create_block();
153 let busy = func.new_vreg(GPR);
154 let once = func.new_vreg(GPR);
155 let other = func.new_vreg(GPR);
156 func.build(block, opcode).def(busy, GPR).finish();
157 func.build(block, opcode).def(once, GPR).finish();
158 func.build(block, opcode).def(other, GPR).finish();
159 for _ in 0..3 {
160 func.build(block, opcode).uses(busy, GPR).uses(other, GPR).finish();
161 }
162 func.build(block, opcode).uses(once, GPR).uses(busy, GPR).uses(other, GPR).finish();
163
164 assert_eq!(chosen(&func, &narrow(2)), [once]);
165 }
166
167 #[test]
168 fn a_value_read_in_a_loop_stays_and_one_read_outside_it_goes() {
169 let mut names = Interner::new();
170 let mut func = Func::new(names.intern("f"));
171 let opcode = Opcode::new(names.intern("x64.nop"));
172 let entry = func.create_block();
173 let body = func.create_block();
174 let out = func.create_block();
175 let step = func.new_vreg(GPR);
176 let cold = func.new_vreg(GPR);
177 func.build(entry, opcode).def(cold, GPR).finish();
178 func.build(entry, opcode).def(step, GPR).finish();
179 *func.succs_mut(entry) = vec![BlockCall::to(body)];
180 func.build(body, opcode).uses(step, GPR).finish();
181 *func.succs_mut(body) = vec![BlockCall::to(body), BlockCall::to(out)];
182 func.set_weight(body, Weight::parts(100 * Weight::SCALE));
183 func.build(out, opcode).uses(cold, GPR).finish();
184 func.build(out, opcode).uses(step, GPR).finish();
185
186 assert_eq!(chosen(&func, &narrow(1)), [cold]);
187 }
188
189 #[test]
190 fn one_long_light_value_settles_two_points_that_are_each_one_over() {
191 let mut names = Interner::new();
192 let mut func = Func::new(names.intern("f"));
193 let opcode = Opcode::new(names.intern("x64.nop"));
194 let block = func.create_block();
195 let long = func.new_vreg(GPR);
196 let first = func.new_vreg(GPR);
197 let second = func.new_vreg(GPR);
198 func.build(block, opcode).def(long, GPR).finish();
199 func.build(block, opcode).def(first, GPR).finish();
200 func.build(block, opcode).uses(first, GPR).finish();
201 for _ in 0..4 {
202 func.build(block, opcode).finish();
203 }
204 func.build(block, opcode).def(second, GPR).finish();
205 func.build(block, opcode).uses(second, GPR).finish();
206 func.build(block, opcode).uses(long, GPR).finish();
207
208 assert_eq!(chosen(&func, &narrow(1)), [long]);
211 }
212}