1#![allow(clippy::manual_range_contains)]
9
10include!(concat!(env!("OUT_DIR"), "/aarch64.rs"));
11
12pub static SELECTOR: super::Selector = super::Selector {
14 table: &TABLE,
15 shapes: &rucc_target::aarch64::MACHINE,
16 address: rucc_target::aarch64::address,
17 frame: &rucc_target::aarch64::FRAME,
18 branch: &rucc_target::aarch64::BRANCH,
19 gpr: rucc_target::aarch64::GPR,
20 fence: "fence",
21 trap: "trap",
22 abi: &crate::abi::aarch64::INSTS,
23 scratch: &crate::pipeline::AARCH64_SCRATCH,
24 symbols: &super::Symbols {
25 near: super::Reach::Own("addr_64"),
26 far: super::Reach::Own("got_64"),
27 thread: super::Reach::Own("gottprel_64"),
28 pointer: super::Pointer::Own("thread_64"),
29 indexed: None,
30 },
31 jumps: &super::Jumps {
32 near: "adr_64",
33 cell: "ldrs_32_64",
34 add: "add_rr_64",
35 two_address: false,
36 },
37};
38
39#[cfg(test)]
40mod tests {
41 use rucc_target::aarch64;
42
43 use super::TABLE;
44 use crate::select::{Piece, Subject};
45
46 const PREFIX: &str = "a64.";
48
49 const AMODES: &[&str] = &["amode_base", "amode_base_offset"];
51
52 #[derive(Debug)]
54 enum Node {
55 Int(i128),
56 App(String, Vec<usize>),
57 }
58
59 #[derive(Debug, Default)]
60 struct Terms {
61 nodes: Vec<Node>,
62 }
63
64 impl Terms {
65 fn constant(&mut self, head: &str, value: i128) -> usize {
66 self.nodes.push(Node::Int(value));
67 let at = self.nodes.len() - 1;
68 self.app(head, &[at])
69 }
70
71 fn app(&mut self, head: &str, args: &[usize]) -> usize {
72 self.nodes.push(Node::App(head.to_owned(), args.to_vec()));
73 self.nodes.len() - 1
74 }
75
76 fn value(&mut self, width: &str, name: &str) -> usize {
77 let inner = self.app(name, &[]);
78 self.app(&format!("value.{width}"), &[inner])
79 }
80 }
81
82 impl Subject for Terms {
83 type Node = usize;
84
85 fn head(&self, node: usize) -> Option<(&str, usize)> {
86 match &self.nodes[node] {
87 Node::App(head, args) => Some((head.as_str(), args.len())),
88 Node::Int(_) => None,
89 }
90 }
91
92 fn arg(&self, node: usize, index: usize) -> usize {
93 match &self.nodes[node] {
94 Node::App(_, args) => args[index],
95 Node::Int(_) => unreachable!("a constant has no arguments"),
96 }
97 }
98
99 fn int(&self, node: usize) -> Option<i128> {
100 match self.nodes[node] {
101 Node::Int(value) => Some(value),
102 Node::App(..) => None,
103 }
104 }
105
106 fn same(&self, a: usize, b: usize) -> bool {
107 a == b
108 }
109 }
110
111 fn selects(terms: &Terms, term: usize) -> Option<&'static str> {
112 let found = TABLE.find(terms, term)?;
113 TABLE.rule(&found).head()
114 }
115
116 #[test]
117 fn the_table_holds_every_rule_the_file_writes() {
118 let text = include_str!("../../rules/aarch64.rules");
119 let written = text.lines().filter(|line| line.starts_with("(rule ")).count();
120 assert_eq!(TABLE.rules.len(), written, "the table and the rule file disagree");
121 assert_eq!(TABLE.source, "rules/aarch64.rules");
122 }
123
124 #[test]
125 fn every_instruction_the_table_writes_is_described() {
126 for rule in TABLE.rules {
127 for piece in rule.replacement {
128 let Piece::App { head, .. } = piece else { continue };
129 if AMODES.contains(head) {
130 continue;
131 }
132 let opcode = head.strip_prefix(PREFIX).unwrap_or_else(|| {
133 panic!("line {}: {head} is neither an AArch64 term nor an address", rule.line)
134 });
135 assert!(
136 aarch64::form(opcode).is_some(),
137 "line {}: {head} is selected and `rucc_target::aarch64` does not describe it",
138 rule.line
139 );
140 }
141 }
142 }
143
144 #[test]
147 fn narrow_arithmetic_is_the_thirty_two_bit_instruction() {
148 let mut terms = Terms::default();
149 for width in ["i8", "i16", "i32"] {
150 let x = terms.value(width, "v0");
151 let y = terms.value(width, "v1");
152 let add = terms.app(&format!("add.{width}"), &[x, y]);
153 assert_eq!(selects(&terms, add), Some("a64.add_rr_32"));
154 let mul = terms.app(&format!("mul.{width}"), &[x, y]);
155 assert_eq!(selects(&terms, mul), Some("a64.mul_rr_32"));
156 }
157 let x = terms.value("i8", "v0");
158 let y = terms.value("i8", "v1");
159 let shift = terms.app("lshr.i8", &[x, y]);
160 assert_eq!(selects(&terms, shift), None);
161 let x = terms.value("i64", "v2");
162 let y = terms.value("i64", "v3");
163 let add = terms.app("add.i64", &[x, y]);
164 assert_eq!(selects(&terms, add), Some("a64.add_rr_64"));
165 }
166
167 #[test]
170 fn a_narrow_right_shift_by_a_constant_is_the_instruction_that_widens_first() {
171 let mut terms = Terms::default();
172 for (width, bits) in [("i8", 7), ("i16", 15)] {
173 let x = terms.value(width, "v0");
174 let k = terms.constant(&format!("iconst.{width}"), 3);
175 let right = terms.app(&format!("lshr.{width}"), &[x, k]);
176 assert_eq!(selects(&terms, right), Some(&*format!("a64.lsr_ri_{}", &width[1..])));
177 let right = terms.app(&format!("ashr.{width}"), &[x, k]);
178 assert_eq!(selects(&terms, right), Some(&*format!("a64.asr_ri_{}", &width[1..])));
179 let far = terms.constant(&format!("iconst.{width}"), bits + 1);
180 let right = terms.app(&format!("lshr.{width}"), &[x, far]);
181 assert_eq!(selects(&terms, right), None);
182 }
183 }
184
185 #[test]
190 fn a_constant_is_one_mov_only_when_one_mov_can_build_it() {
191 let mut terms = Terms::default();
192 let wanted = [
193 (0, "a64.mov_ri_64"),
194 (65535, "a64.mov_ri_64"),
195 (-65536, "a64.mov_ri_64"),
196 (65536, "a64.mov_ri_64"),
197 (0x1_0000_0000, "a64.mov_ri_64"),
198 (0x4008_0000_0000_0000, "a64.mov_ri_64"),
199 (-0x1234_0000_0001, "a64.mov_ri_64"),
200 (-0x1_0001, "a64.mov_ri_64"),
201 (0x1_0001, "a64.movk_ri_16_64"),
202 (0xffff_ffff, "a64.movk_ri_16_64"),
203 (0x1_2345_6789, "a64.movk_ri_32_64"),
204 (0x1_0000_0001, "a64.movk_ri_32_64"),
205 (-0x1_0002, "a64.movk_ri_48_64"),
206 (0x1_0000_0000_0001, "a64.movk_ri_48_64"),
207 ];
208 for (value, want) in wanted {
209 let k = terms.constant("iconst.i64", value);
210 assert_eq!(selects(&terms, k), Some(want), "{value}");
211 }
212 let wanted = [
213 (0x1234_5678, "a64.movk_ri_16_32"),
214 (0x4040_0000, "a64.mov_ri_32"),
215 (0x1234_ffff, "a64.mov_ri_32"),
216 (i128::from(i32::MIN), "a64.mov_ri_32"),
217 ];
218 for (value, want) in wanted {
219 let k = terms.constant("iconst.i32", value);
220 assert_eq!(selects(&terms, k), Some(want), "{value}");
221 }
222 }
223
224 #[test]
226 fn every_widening_and_narrowing_has_an_instruction() {
227 let mut terms = Terms::default();
228 let wanted = [
229 ("sext", "i8", "i16", "a64.sxtb_16"),
230 ("zext", "i8", "i16", "a64.uxtb_16"),
231 ("zext", "i8", "i64", "a64.uxtb_64"),
232 ("zext", "i16", "i64", "a64.uxth_64"),
233 ("zext", "i1", "i8", "a64.bit_to_8"),
234 ("zext", "i1", "i64", "a64.bit_to_64"),
235 ("trunc", "i64", "i32", "a64.low_32"),
236 ("trunc", "i32", "i16", "a64.low_16"),
237 ("trunc", "i16", "i8", "a64.low_8"),
238 ("trunc", "i8", "i1", "a64.bit_of_32"),
239 ("trunc", "i64", "i1", "a64.bit_of_64"),
240 ];
241 for (op, from, to, want) in wanted {
242 let x = terms.value(from, "v0");
243 let term = terms.app(&format!("{op}.{from}.{to}"), &[x]);
244 assert_eq!(selects(&terms, term), Some(want), "{op}.{from}.{to}");
245 }
246 }
247
248 #[test]
249 fn an_immediate_is_taken_when_twelve_bits_hold_it() {
250 let mut terms = Terms::default();
251 let x = terms.value("i32", "v0");
252 let k = terms.constant("iconst.i32", 4095);
253 let add = terms.app("add.i32", &[x, k]);
254 assert_eq!(selects(&terms, add), Some("a64.add_ri_32"));
255 let k = terms.constant("iconst.i32", 4096);
256 let add = terms.app("add.i32", &[x, k]);
257 assert_eq!(selects(&terms, add), None);
258 }
259
260 #[test]
262 fn an_unsigned_comparison_is_the_condition_the_architecture_names() {
263 let mut terms = Terms::default();
264 let x = terms.value("i64", "v0");
265 let y = terms.value("i64", "v1");
266 for (ir, cc) in [("ult", "lo"), ("ule", "ls"), ("ugt", "hi"), ("uge", "hs")] {
267 let term = terms.app(&format!("icmp_{ir}.i1"), &[x, y]);
268 let want = format!("a64.cmp_set_{cc}_64");
269 assert_eq!(selects(&terms, term), Some(want.as_str()));
270 }
271 }
272
273 #[test]
276 fn a_comparison_against_a_constant_is_written_for_every_one_against_a_register() {
277 let mut against_register = Vec::new();
278 let mut against_constant = Vec::new();
279 let mut narrow = 0;
280 for rule in TABLE.rules {
281 let Some(rest) = rule.pattern.strip_prefix("(icmp_") else { continue };
282 let (condition, operands) = rest.split_once(".i1 ").expect("a comparison takes two");
283 let width = operands
284 .strip_prefix("(value.")
285 .and_then(|rest| rest.split_once(' '))
286 .map(|(width, _)| width)
287 .expect("a comparison reads a value first");
288 if matches!(width, "i8" | "i16") {
291 narrow += 1;
292 continue;
293 }
294 let named = format!("{condition}.{width}");
295 if operands.contains("(iconst.") {
296 against_constant.push(named);
297 } else {
298 against_register.push(named);
299 }
300 }
301 against_register.sort_unstable();
302 against_constant.sort_unstable();
303 assert_eq!(against_register, against_constant);
304 assert_eq!(against_register.len(), 20, "ten conditions at two widths");
305 assert_eq!(narrow, 20, "ten conditions at the two narrow widths");
306 }
307
308 #[test]
310 fn a_store_is_written_with_the_value_first() {
311 let mut seen = 0;
312 for rule in TABLE.rules {
313 let Some(rest) = rule.pattern.strip_prefix("(store.") else { continue };
314 let (width, operands) = rest.split_once(' ').expect("a store takes operands");
315 assert!(
316 operands.starts_with(&format!("(value.{width} ")),
317 "line {}: {} binds something other than the value first",
318 rule.line,
319 rule.pattern
320 );
321 seen += 1;
322 }
323 assert_eq!(seen, 16, "the store rules moved and this test did not follow them");
324 }
325
326 #[test]
329 fn a_small_offset_is_part_of_the_address() {
330 let mut terms = Terms::default();
331 let a = terms.value("i64", "v0");
332 let k = terms.constant("iconst.i64", -8);
333 let at = terms.app("add.i64", &[a, k]);
334 let load = terms.app("load.i32", &[at]);
335 let found = TABLE.find(&terms, load).expect("a rule fires");
336 assert_eq!(TABLE.rule(&found).head(), Some("a64.ldr_32"));
337 assert!(
338 TABLE
339 .rule(&found)
340 .replacement
341 .iter()
342 .any(|piece| matches!(piece, Piece::App { head: "amode_base_offset", .. }))
343 );
344 let k = terms.constant("iconst.i64", 256);
345 let at = terms.app("add.i64", &[a, k]);
346 let load = terms.app("load.i32", &[at]);
347 assert_eq!(selects(&terms, load), None);
348 }
349}