build.rs 36 KB

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  1. extern crate cast;
  2. extern crate rand;
  3. use std::collections::HashMap;
  4. use std::fmt;
  5. use std::fmt::Write as FmtWrite;
  6. use std::fs::{self, OpenOptions};
  7. use std::hash::{Hash, Hasher};
  8. use std::io::Write;
  9. use std::path::PathBuf;
  10. use std::{env, mem};
  11. use self::cast::{f32, f64, i128, i32, i64, u128, u32, u64};
  12. use self::rand::Rng;
  13. const NTESTS: usize = 1_000;
  14. fn main() {
  15. let out_dir = PathBuf::from(env::var_os("OUT_DIR").unwrap());
  16. let out_file = out_dir.join("generated.rs");
  17. drop(fs::remove_file(&out_file));
  18. let target = env::var("TARGET").unwrap();
  19. let target_arch_arm = target.contains("arm") || target.contains("thumb");
  20. let target_arch_mips = target.contains("mips");
  21. // TODO accept NaNs. We don't do that right now because we can't check
  22. // for NaN-ness on the thumb targets (due to missing intrinsics)
  23. // float/add.rs
  24. gen(
  25. |(a, b): (MyF64, MyF64)| {
  26. let c = a.0 + b.0;
  27. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  28. None
  29. } else {
  30. Some(c)
  31. }
  32. },
  33. "builtins::float::add::__adddf3(a, b)",
  34. );
  35. gen(
  36. |(a, b): (MyF32, MyF32)| {
  37. let c = a.0 + b.0;
  38. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  39. None
  40. } else {
  41. Some(c)
  42. }
  43. },
  44. "builtins::float::add::__addsf3(a, b)",
  45. );
  46. if target_arch_arm {
  47. gen(
  48. |(a, b): (MyF64, MyF64)| {
  49. let c = a.0 + b.0;
  50. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  51. None
  52. } else {
  53. Some(c)
  54. }
  55. },
  56. "builtins::float::add::__adddf3vfp(a, b)",
  57. );
  58. gen(
  59. |(a, b): (LargeF32, LargeF32)| {
  60. let c = a.0 + b.0;
  61. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  62. None
  63. } else {
  64. Some(c)
  65. }
  66. },
  67. "builtins::float::add::__addsf3vfp(a, b)",
  68. );
  69. }
  70. // float/cmp.rs
  71. gen(
  72. |(a, b): (MyF64, MyF64)| {
  73. let (a, b) = (a.0, b.0);
  74. if a.is_nan() || b.is_nan() {
  75. return None;
  76. }
  77. if a.is_nan() || b.is_nan() {
  78. Some(-1)
  79. } else if a < b {
  80. Some(-1)
  81. } else if a > b {
  82. Some(1)
  83. } else {
  84. Some(0)
  85. }
  86. },
  87. "builtins::float::cmp::__gedf2(a, b)",
  88. );
  89. gen(
  90. |(a, b): (MyF32, MyF32)| {
  91. let (a, b) = (a.0, b.0);
  92. if a.is_nan() || b.is_nan() {
  93. return None;
  94. }
  95. if a.is_nan() || b.is_nan() {
  96. Some(-1)
  97. } else if a < b {
  98. Some(-1)
  99. } else if a > b {
  100. Some(1)
  101. } else {
  102. Some(0)
  103. }
  104. },
  105. "builtins::float::cmp::__gesf2(a, b)",
  106. );
  107. gen(
  108. |(a, b): (MyF64, MyF64)| {
  109. let (a, b) = (a.0, b.0);
  110. if a.is_nan() || b.is_nan() {
  111. return None;
  112. }
  113. if a.is_nan() || b.is_nan() {
  114. Some(1)
  115. } else if a < b {
  116. Some(-1)
  117. } else if a > b {
  118. Some(1)
  119. } else {
  120. Some(0)
  121. }
  122. },
  123. "builtins::float::cmp::__ledf2(a, b)",
  124. );
  125. gen(
  126. |(a, b): (MyF32, MyF32)| {
  127. let (a, b) = (a.0, b.0);
  128. if a.is_nan() || b.is_nan() {
  129. return None;
  130. }
  131. if a.is_nan() || b.is_nan() {
  132. Some(1)
  133. } else if a < b {
  134. Some(-1)
  135. } else if a > b {
  136. Some(1)
  137. } else {
  138. Some(0)
  139. }
  140. },
  141. "builtins::float::cmp::__lesf2(a, b)",
  142. );
  143. gen(
  144. |(a, b): (MyF32, MyF32)| {
  145. let c = a.0.is_nan() || b.0.is_nan();
  146. Some(c as i32)
  147. },
  148. "builtins::float::cmp::__unordsf2(a, b)",
  149. );
  150. gen(
  151. |(a, b): (MyF64, MyF64)| {
  152. let c = a.0.is_nan() || b.0.is_nan();
  153. Some(c as i32)
  154. },
  155. "builtins::float::cmp::__unorddf2(a, b)",
  156. );
  157. if target_arch_arm {
  158. gen(
  159. |(a, b): (MyF32, MyF32)| {
  160. if a.0.is_nan() || b.0.is_nan() {
  161. return None;
  162. }
  163. let c = (a.0 <= b.0) as i32;
  164. Some(c)
  165. },
  166. "builtins::float::cmp::__aeabi_fcmple(a, b)",
  167. );
  168. gen(
  169. |(a, b): (MyF32, MyF32)| {
  170. if a.0.is_nan() || b.0.is_nan() {
  171. return None;
  172. }
  173. let c = (a.0 >= b.0) as i32;
  174. Some(c)
  175. },
  176. "builtins::float::cmp::__aeabi_fcmpge(a, b)",
  177. );
  178. gen(
  179. |(a, b): (MyF32, MyF32)| {
  180. if a.0.is_nan() || b.0.is_nan() {
  181. return None;
  182. }
  183. let c = (a.0 == b.0) as i32;
  184. Some(c)
  185. },
  186. "builtins::float::cmp::__aeabi_fcmpeq(a, b)",
  187. );
  188. gen(
  189. |(a, b): (MyF32, MyF32)| {
  190. if a.0.is_nan() || b.0.is_nan() {
  191. return None;
  192. }
  193. let c = (a.0 < b.0) as i32;
  194. Some(c)
  195. },
  196. "builtins::float::cmp::__aeabi_fcmplt(a, b)",
  197. );
  198. gen(
  199. |(a, b): (MyF32, MyF32)| {
  200. if a.0.is_nan() || b.0.is_nan() {
  201. return None;
  202. }
  203. let c = (a.0 > b.0) as i32;
  204. Some(c)
  205. },
  206. "builtins::float::cmp::__aeabi_fcmpgt(a, b)",
  207. );
  208. gen(
  209. |(a, b): (MyF64, MyF64)| {
  210. if a.0.is_nan() || b.0.is_nan() {
  211. return None;
  212. }
  213. let c = (a.0 <= b.0) as i32;
  214. Some(c)
  215. },
  216. "builtins::float::cmp::__aeabi_dcmple(a, b)",
  217. );
  218. gen(
  219. |(a, b): (MyF64, MyF64)| {
  220. if a.0.is_nan() || b.0.is_nan() {
  221. return None;
  222. }
  223. let c = (a.0 >= b.0) as i32;
  224. Some(c)
  225. },
  226. "builtins::float::cmp::__aeabi_dcmpge(a, b)",
  227. );
  228. gen(
  229. |(a, b): (MyF64, MyF64)| {
  230. if a.0.is_nan() || b.0.is_nan() {
  231. return None;
  232. }
  233. let c = (a.0 == b.0) as i32;
  234. Some(c)
  235. },
  236. "builtins::float::cmp::__aeabi_dcmpeq(a, b)",
  237. );
  238. gen(
  239. |(a, b): (MyF64, MyF64)| {
  240. if a.0.is_nan() || b.0.is_nan() {
  241. return None;
  242. }
  243. let c = (a.0 < b.0) as i32;
  244. Some(c)
  245. },
  246. "builtins::float::cmp::__aeabi_dcmplt(a, b)",
  247. );
  248. gen(
  249. |(a, b): (MyF64, MyF64)| {
  250. if a.0.is_nan() || b.0.is_nan() {
  251. return None;
  252. }
  253. let c = (a.0 > b.0) as i32;
  254. Some(c)
  255. },
  256. "builtins::float::cmp::__aeabi_dcmpgt(a, b)",
  257. );
  258. gen(
  259. |(a, b): (LargeF32, LargeF32)| {
  260. if a.0.is_nan() || b.0.is_nan() {
  261. return None;
  262. }
  263. Some((a.0 >= b.0) as i32)
  264. },
  265. "builtins::float::cmp::__gesf2vfp(a, b)",
  266. );
  267. gen(
  268. |(a, b): (MyF64, MyF64)| {
  269. if a.0.is_nan() || b.0.is_nan() {
  270. return None;
  271. }
  272. Some((a.0 >= b.0) as i32)
  273. },
  274. "builtins::float::cmp::__gedf2vfp(a, b)",
  275. );
  276. gen(
  277. |(a, b): (LargeF32, LargeF32)| {
  278. if a.0.is_nan() || b.0.is_nan() {
  279. return None;
  280. }
  281. Some((a.0 > b.0) as i32)
  282. },
  283. "builtins::float::cmp::__gtsf2vfp(a, b)",
  284. );
  285. gen(
  286. |(a, b): (MyF64, MyF64)| {
  287. if a.0.is_nan() || b.0.is_nan() {
  288. return None;
  289. }
  290. Some((a.0 > b.0) as i32)
  291. },
  292. "builtins::float::cmp::__gtdf2vfp(a, b)",
  293. );
  294. gen(
  295. |(a, b): (LargeF32, LargeF32)| {
  296. if a.0.is_nan() || b.0.is_nan() {
  297. return None;
  298. }
  299. Some((a.0 < b.0) as i32)
  300. },
  301. "builtins::float::cmp::__ltsf2vfp(a, b)",
  302. );
  303. gen(
  304. |(a, b): (MyF64, MyF64)| {
  305. if a.0.is_nan() || b.0.is_nan() {
  306. return None;
  307. }
  308. Some((a.0 < b.0) as i32)
  309. },
  310. "builtins::float::cmp::__ltdf2vfp(a, b)",
  311. );
  312. gen(
  313. |(a, b): (LargeF32, LargeF32)| {
  314. if a.0.is_nan() || b.0.is_nan() {
  315. return None;
  316. }
  317. Some((a.0 <= b.0) as i32)
  318. },
  319. "builtins::float::cmp::__lesf2vfp(a, b)",
  320. );
  321. gen(
  322. |(a, b): (MyF64, MyF64)| {
  323. if a.0.is_nan() || b.0.is_nan() {
  324. return None;
  325. }
  326. Some((a.0 <= b.0) as i32)
  327. },
  328. "builtins::float::cmp::__ledf2vfp(a, b)",
  329. );
  330. gen(
  331. |(a, b): (LargeF32, LargeF32)| {
  332. if a.0.is_nan() || b.0.is_nan() {
  333. return None;
  334. }
  335. Some((a.0 != b.0) as i32)
  336. },
  337. "builtins::float::cmp::__nesf2vfp(a, b)",
  338. );
  339. gen(
  340. |(a, b): (MyF64, MyF64)| {
  341. if a.0.is_nan() || b.0.is_nan() {
  342. return None;
  343. }
  344. Some((a.0 != b.0) as i32)
  345. },
  346. "builtins::float::cmp::__nedf2vfp(a, b)",
  347. );
  348. gen(
  349. |(a, b): (LargeF32, LargeF32)| {
  350. if a.0.is_nan() || b.0.is_nan() {
  351. return None;
  352. }
  353. Some((a.0 == b.0) as i32)
  354. },
  355. "builtins::float::cmp::__eqsf2vfp(a, b)",
  356. );
  357. gen(
  358. |(a, b): (MyF64, MyF64)| {
  359. if a.0.is_nan() || b.0.is_nan() {
  360. return None;
  361. }
  362. Some((a.0 == b.0) as i32)
  363. },
  364. "builtins::float::cmp::__eqdf2vfp(a, b)",
  365. );
  366. }
  367. // float/extend.rs
  368. gen(
  369. |a: MyF32| {
  370. if a.0.is_nan() {
  371. return None;
  372. }
  373. Some(f64(a.0))
  374. },
  375. "builtins::float::extend::__extendsfdf2(a)",
  376. );
  377. if target_arch_arm {
  378. gen(
  379. |a: LargeF32| {
  380. if a.0.is_nan() {
  381. return None;
  382. }
  383. Some(f64(a.0))
  384. },
  385. "builtins::float::extend::__extendsfdf2vfp(a)",
  386. );
  387. }
  388. // float/conv.rs
  389. gen(
  390. |a: MyF64| i64(a.0).ok(),
  391. "builtins::float::conv::__fixdfdi(a)",
  392. );
  393. gen(
  394. |a: MyF64| i32(a.0).ok(),
  395. "builtins::float::conv::__fixdfsi(a)",
  396. );
  397. gen(
  398. |a: MyF32| i64(a.0).ok(),
  399. "builtins::float::conv::__fixsfdi(a)",
  400. );
  401. gen(
  402. |a: MyF32| i32(a.0).ok(),
  403. "builtins::float::conv::__fixsfsi(a)",
  404. );
  405. gen(
  406. |a: MyF32| i128(a.0).ok(),
  407. "builtins::float::conv::__fixsfti(a)",
  408. );
  409. gen(
  410. |a: MyF64| i128(a.0).ok(),
  411. "builtins::float::conv::__fixdfti(a)",
  412. );
  413. gen(
  414. |a: MyF64| u64(a.0).ok(),
  415. "builtins::float::conv::__fixunsdfdi(a)",
  416. );
  417. gen(
  418. |a: MyF64| u32(a.0).ok(),
  419. "builtins::float::conv::__fixunsdfsi(a)",
  420. );
  421. gen(
  422. |a: MyF32| u64(a.0).ok(),
  423. "builtins::float::conv::__fixunssfdi(a)",
  424. );
  425. gen(
  426. |a: MyF32| u32(a.0).ok(),
  427. "builtins::float::conv::__fixunssfsi(a)",
  428. );
  429. gen(
  430. |a: MyF32| u128(a.0).ok(),
  431. "builtins::float::conv::__fixunssfti(a)",
  432. );
  433. gen(
  434. |a: MyF64| u128(a.0).ok(),
  435. "builtins::float::conv::__fixunsdfti(a)",
  436. );
  437. gen(
  438. |a: MyI64| Some(f64(a.0)),
  439. "builtins::float::conv::__floatdidf(a)",
  440. );
  441. gen(
  442. |a: MyI32| Some(f64(a.0)),
  443. "builtins::float::conv::__floatsidf(a)",
  444. );
  445. gen(
  446. |a: MyI32| Some(f32(a.0)),
  447. "builtins::float::conv::__floatsisf(a)",
  448. );
  449. gen(
  450. |a: MyU64| Some(f64(a.0)),
  451. "builtins::float::conv::__floatundidf(a)",
  452. );
  453. gen(
  454. |a: MyU32| Some(f64(a.0)),
  455. "builtins::float::conv::__floatunsidf(a)",
  456. );
  457. gen(
  458. |a: MyU32| Some(f32(a.0)),
  459. "builtins::float::conv::__floatunsisf(a)",
  460. );
  461. gen(
  462. |a: MyU128| f32(a.0).ok(),
  463. "builtins::float::conv::__floatuntisf(a)",
  464. );
  465. if !target_arch_mips {
  466. gen(
  467. |a: MyI128| Some(f32(a.0)),
  468. "builtins::float::conv::__floattisf(a)",
  469. );
  470. gen(
  471. |a: MyI128| Some(f64(a.0)),
  472. "builtins::float::conv::__floattidf(a)",
  473. );
  474. gen(
  475. |a: MyU128| Some(f64(a.0)),
  476. "builtins::float::conv::__floatuntidf(a)",
  477. );
  478. }
  479. // float/pow.rs
  480. gen(
  481. |(a, b): (MyF64, MyI32)| {
  482. let c = a.0.powi(b.0);
  483. if a.0.is_nan() || c.is_nan() {
  484. None
  485. } else {
  486. Some(c)
  487. }
  488. },
  489. "builtins::float::pow::__powidf2(a, b)",
  490. );
  491. gen(
  492. |(a, b): (MyF32, MyI32)| {
  493. let c = a.0.powi(b.0);
  494. if a.0.is_nan() || c.is_nan() {
  495. None
  496. } else {
  497. Some(c)
  498. }
  499. },
  500. "builtins::float::pow::__powisf2(a, b)",
  501. );
  502. // float/sub.rs
  503. gen(
  504. |(a, b): (MyF64, MyF64)| {
  505. let c = a.0 - b.0;
  506. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  507. None
  508. } else {
  509. Some(c)
  510. }
  511. },
  512. "builtins::float::sub::__subdf3(a, b)",
  513. );
  514. gen(
  515. |(a, b): (MyF32, MyF32)| {
  516. let c = a.0 - b.0;
  517. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  518. None
  519. } else {
  520. Some(c)
  521. }
  522. },
  523. "builtins::float::sub::__subsf3(a, b)",
  524. );
  525. if target_arch_arm {
  526. gen(
  527. |(a, b): (MyF64, MyF64)| {
  528. let c = a.0 - b.0;
  529. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  530. None
  531. } else {
  532. Some(c)
  533. }
  534. },
  535. "builtins::float::sub::__subdf3vfp(a, b)",
  536. );
  537. gen(
  538. |(a, b): (LargeF32, LargeF32)| {
  539. let c = a.0 - b.0;
  540. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  541. None
  542. } else {
  543. Some(c)
  544. }
  545. },
  546. "builtins::float::sub::__subsf3vfp(a, b)",
  547. );
  548. }
  549. // float/mul.rs
  550. gen(
  551. |(a, b): (MyF64, MyF64)| {
  552. let c = a.0 * b.0;
  553. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  554. None
  555. } else {
  556. Some(c)
  557. }
  558. },
  559. "builtins::float::mul::__muldf3(a, b)",
  560. );
  561. gen(
  562. |(a, b): (LargeF32, LargeF32)| {
  563. let c = a.0 * b.0;
  564. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  565. None
  566. } else {
  567. Some(c)
  568. }
  569. },
  570. "builtins::float::mul::__mulsf3(a, b)",
  571. );
  572. if target_arch_arm {
  573. gen(
  574. |(a, b): (MyF64, MyF64)| {
  575. let c = a.0 * b.0;
  576. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  577. None
  578. } else {
  579. Some(c)
  580. }
  581. },
  582. "builtins::float::mul::__muldf3vfp(a, b)",
  583. );
  584. gen(
  585. |(a, b): (LargeF32, LargeF32)| {
  586. let c = a.0 * b.0;
  587. if a.0.is_nan() || b.0.is_nan() || c.is_nan() {
  588. None
  589. } else {
  590. Some(c)
  591. }
  592. },
  593. "builtins::float::mul::__mulsf3vfp(a, b)",
  594. );
  595. }
  596. // float/div.rs
  597. gen(
  598. |(a, b): (MyF64, MyF64)| {
  599. if b.0 == 0.0 {
  600. return None;
  601. }
  602. let c = a.0 / b.0;
  603. if a.0.is_nan()
  604. || b.0.is_nan()
  605. || c.is_nan()
  606. || c.abs() <= unsafe { mem::transmute(4503599627370495u64) }
  607. {
  608. None
  609. } else {
  610. Some(c)
  611. }
  612. },
  613. "builtins::float::div::__divdf3(a, b)",
  614. );
  615. gen(
  616. |(a, b): (LargeF32, LargeF32)| {
  617. if b.0 == 0.0 {
  618. return None;
  619. }
  620. let c = a.0 / b.0;
  621. if a.0.is_nan()
  622. || b.0.is_nan()
  623. || c.is_nan()
  624. || c.abs() <= unsafe { mem::transmute(16777215u32) }
  625. {
  626. None
  627. } else {
  628. Some(c)
  629. }
  630. },
  631. "builtins::float::div::__divsf3(a, b)",
  632. );
  633. if target_arch_arm {
  634. gen(
  635. |(a, b): (MyF64, MyF64)| {
  636. if b.0 == 0.0 {
  637. return None;
  638. }
  639. let c = a.0 / b.0;
  640. if a.0.is_nan()
  641. || b.0.is_nan()
  642. || c.is_nan()
  643. || c.abs() <= unsafe { mem::transmute(4503599627370495u64) }
  644. {
  645. None
  646. } else {
  647. Some(c)
  648. }
  649. },
  650. "builtins::float::div::__divdf3vfp(a, b)",
  651. );
  652. gen(
  653. |(a, b): (LargeF32, LargeF32)| {
  654. if b.0 == 0.0 {
  655. return None;
  656. }
  657. let c = a.0 / b.0;
  658. if a.0.is_nan()
  659. || b.0.is_nan()
  660. || c.is_nan()
  661. || c.abs() <= unsafe { mem::transmute(16777215u32) }
  662. {
  663. None
  664. } else {
  665. Some(c)
  666. }
  667. },
  668. "builtins::float::div::__divsf3vfp(a, b)",
  669. );
  670. }
  671. // int/addsub.rs
  672. gen(
  673. |(a, b): (MyU128, MyU128)| Some(a.0.wrapping_add(b.0)),
  674. "builtins::int::addsub::rust_u128_add(a, b)",
  675. );
  676. gen(
  677. |(a, b): (MyI128, MyI128)| Some(a.0.wrapping_add(b.0)),
  678. "builtins::int::addsub::rust_i128_add(a, b)",
  679. );
  680. gen(
  681. |(a, b): (MyU128, MyU128)| Some(a.0.overflowing_add(b.0)),
  682. "builtins::int::addsub::rust_u128_addo(a, b)",
  683. );
  684. gen(
  685. |(a, b): (MyI128, MyI128)| Some(a.0.overflowing_add(b.0)),
  686. "builtins::int::addsub::rust_i128_addo(a, b)",
  687. );
  688. gen(
  689. |(a, b): (MyU128, MyU128)| Some(a.0.wrapping_sub(b.0)),
  690. "builtins::int::addsub::rust_u128_sub(a, b)",
  691. );
  692. gen(
  693. |(a, b): (MyI128, MyI128)| Some(a.0.wrapping_sub(b.0)),
  694. "builtins::int::addsub::rust_i128_sub(a, b)",
  695. );
  696. gen(
  697. |(a, b): (MyU128, MyU128)| Some(a.0.overflowing_sub(b.0)),
  698. "builtins::int::addsub::rust_u128_subo(a, b)",
  699. );
  700. gen(
  701. |(a, b): (MyI128, MyI128)| Some(a.0.overflowing_sub(b.0)),
  702. "builtins::int::addsub::rust_i128_subo(a, b)",
  703. );
  704. // int/mul.rs
  705. gen(
  706. |(a, b): (MyU64, MyU64)| Some(a.0.wrapping_mul(b.0)),
  707. "builtins::int::mul::__muldi3(a, b)",
  708. );
  709. gen(
  710. |(a, b): (MyI64, MyI64)| Some(a.0.overflowing_mul(b.0)),
  711. "{
  712. let mut o = 2;
  713. let c = builtins::int::mul::__mulodi4(a, b, &mut o);
  714. (c, match o { 0 => false, 1 => true, _ => panic!() })
  715. }",
  716. );
  717. gen(
  718. |(a, b): (MyI32, MyI32)| Some(a.0.overflowing_mul(b.0)),
  719. "{
  720. let mut o = 2;
  721. let c = builtins::int::mul::__mulosi4(a, b, &mut o);
  722. (c, match o { 0 => false, 1 => true, _ => panic!() })
  723. }",
  724. );
  725. gen(
  726. |(a, b): (MyI128, MyI128)| Some(a.0.wrapping_mul(b.0)),
  727. "builtins::int::mul::__multi3(a, b)",
  728. );
  729. gen(
  730. |(a, b): (MyI128, MyI128)| Some(a.0.overflowing_mul(b.0)),
  731. "{
  732. let mut o = 2;
  733. let c = builtins::int::mul::__muloti4(a, b, &mut o);
  734. (c, match o { 0 => false, 1 => true, _ => panic!() })
  735. }",
  736. );
  737. // int/sdiv.rs
  738. gen(
  739. |(a, b): (MyI64, MyI64)| {
  740. if b.0 == 0 {
  741. None
  742. } else {
  743. Some(a.0 / b.0)
  744. }
  745. },
  746. "builtins::int::sdiv::__divdi3(a, b)",
  747. );
  748. gen(
  749. |(a, b): (MyI64, MyI64)| {
  750. if b.0 == 0 {
  751. None
  752. } else {
  753. Some((a.0 / b.0, a.0 % b.0))
  754. }
  755. },
  756. "{
  757. let mut r = 0;
  758. (builtins::int::sdiv::__divmoddi4(a, b, &mut r), r)
  759. }",
  760. );
  761. gen(
  762. |(a, b): (MyI32, MyI32)| {
  763. if b.0 == 0 {
  764. None
  765. } else {
  766. Some((a.0 / b.0, a.0 % b.0))
  767. }
  768. },
  769. "{
  770. let mut r = 0;
  771. (builtins::int::sdiv::__divmodsi4(a, b, &mut r), r)
  772. }",
  773. );
  774. gen(
  775. |(a, b): (MyI32, MyI32)| {
  776. if b.0 == 0 {
  777. None
  778. } else {
  779. Some(a.0 / b.0)
  780. }
  781. },
  782. "builtins::int::sdiv::__divsi3(a, b)",
  783. );
  784. gen(
  785. |(a, b): (MyI32, MyI32)| {
  786. if b.0 == 0 {
  787. None
  788. } else {
  789. Some(a.0 % b.0)
  790. }
  791. },
  792. "builtins::int::sdiv::__modsi3(a, b)",
  793. );
  794. gen(
  795. |(a, b): (MyI64, MyI64)| {
  796. if b.0 == 0 {
  797. None
  798. } else {
  799. Some(a.0 % b.0)
  800. }
  801. },
  802. "builtins::int::sdiv::__moddi3(a, b)",
  803. );
  804. gen(
  805. |(a, b): (MyI128, MyI128)| {
  806. if b.0 == 0 {
  807. None
  808. } else {
  809. Some(a.0 / b.0)
  810. }
  811. },
  812. "builtins::int::sdiv::__divti3(a, b)",
  813. );
  814. gen(
  815. |(a, b): (MyI128, MyI128)| {
  816. if b.0 == 0 {
  817. None
  818. } else {
  819. Some(a.0 % b.0)
  820. }
  821. },
  822. "builtins::int::sdiv::__modti3(a, b)",
  823. );
  824. // int/shift.rs
  825. gen(
  826. |(a, b): (MyU64, MyU32)| Some(a.0 << (b.0 % 64)),
  827. "builtins::int::shift::__ashldi3(a, b % 64)",
  828. );
  829. gen(
  830. |(a, b): (MyU128, MyU32)| Some(a.0 << (b.0 % 128)),
  831. "builtins::int::shift::__ashlti3(a, b % 128)",
  832. );
  833. gen(
  834. |(a, b): (MyI64, MyU32)| Some(a.0 >> (b.0 % 64)),
  835. "builtins::int::shift::__ashrdi3(a, b % 64)",
  836. );
  837. gen(
  838. |(a, b): (MyI128, MyU32)| Some(a.0 >> (b.0 % 128)),
  839. "builtins::int::shift::__ashrti3(a, b % 128)",
  840. );
  841. gen(
  842. |(a, b): (MyU64, MyU32)| Some(a.0 >> (b.0 % 64)),
  843. "builtins::int::shift::__lshrdi3(a, b % 64)",
  844. );
  845. gen(
  846. |(a, b): (MyU128, MyU32)| Some(a.0 >> (b.0 % 128)),
  847. "builtins::int::shift::__lshrti3(a, b % 128)",
  848. );
  849. // int/udiv.rs
  850. gen(
  851. |(a, b): (MyU64, MyU64)| {
  852. if b.0 == 0 {
  853. None
  854. } else {
  855. Some(a.0 / b.0)
  856. }
  857. },
  858. "builtins::int::udiv::__udivdi3(a, b)",
  859. );
  860. gen(
  861. |(a, b): (MyU64, MyU64)| {
  862. if b.0 == 0 {
  863. None
  864. } else {
  865. Some((a.0 / b.0, a.0 % b.0))
  866. }
  867. },
  868. "{
  869. let mut r = 0;
  870. (builtins::int::udiv::__udivmoddi4(a, b, Some(&mut r)), r)
  871. }",
  872. );
  873. gen(
  874. |(a, b): (MyU32, MyU32)| {
  875. if b.0 == 0 {
  876. None
  877. } else {
  878. Some((a.0 / b.0, a.0 % b.0))
  879. }
  880. },
  881. "{
  882. let mut r = 0;
  883. (builtins::int::udiv::__udivmodsi4(a, b, Some(&mut r)), r)
  884. }",
  885. );
  886. gen(
  887. |(a, b): (MyU32, MyU32)| {
  888. if b.0 == 0 {
  889. None
  890. } else {
  891. Some(a.0 / b.0)
  892. }
  893. },
  894. "builtins::int::udiv::__udivsi3(a, b)",
  895. );
  896. gen(
  897. |(a, b): (MyU32, MyU32)| {
  898. if b.0 == 0 {
  899. None
  900. } else {
  901. Some(a.0 % b.0)
  902. }
  903. },
  904. "builtins::int::udiv::__umodsi3(a, b)",
  905. );
  906. gen(
  907. |(a, b): (MyU64, MyU64)| {
  908. if b.0 == 0 {
  909. None
  910. } else {
  911. Some(a.0 % b.0)
  912. }
  913. },
  914. "builtins::int::udiv::__umoddi3(a, b)",
  915. );
  916. gen(
  917. |(a, b): (MyU128, MyU128)| {
  918. if b.0 == 0 {
  919. None
  920. } else {
  921. Some(a.0 / b.0)
  922. }
  923. },
  924. "builtins::int::udiv::__udivti3(a, b)",
  925. );
  926. gen(
  927. |(a, b): (MyU128, MyU128)| {
  928. if b.0 == 0 {
  929. None
  930. } else {
  931. Some(a.0 % b.0)
  932. }
  933. },
  934. "builtins::int::udiv::__umodti3(a, b)",
  935. );
  936. gen(
  937. |(a, b): (MyU128, MyU128)| {
  938. if b.0 == 0 {
  939. None
  940. } else {
  941. Some((a.0 / b.0, a.0 % b.0))
  942. }
  943. },
  944. "{
  945. let mut r = 0;
  946. (builtins::int::udiv::__udivmodti4(a, b, Some(&mut r)), r)
  947. }",
  948. );
  949. }
  950. macro_rules! gen_float {
  951. ($name:ident,
  952. $fty:ident,
  953. $uty:ident,
  954. $bits:expr,
  955. $significand_bits:expr) => {
  956. pub fn $name<R>(rng: &mut R) -> $fty
  957. where
  958. R: Rng,
  959. {
  960. const BITS: u8 = $bits;
  961. const SIGNIFICAND_BITS: u8 = $significand_bits;
  962. const SIGNIFICAND_MASK: $uty = (1 << SIGNIFICAND_BITS) - 1;
  963. const SIGN_MASK: $uty = (1 << (BITS - 1));
  964. const EXPONENT_MASK: $uty = !(SIGN_MASK | SIGNIFICAND_MASK);
  965. fn mk_f32(sign: bool, exponent: $uty, significand: $uty) -> $fty {
  966. unsafe {
  967. mem::transmute(
  968. ((sign as $uty) << (BITS - 1))
  969. | ((exponent & EXPONENT_MASK) << SIGNIFICAND_BITS)
  970. | (significand & SIGNIFICAND_MASK),
  971. )
  972. }
  973. }
  974. if rng.gen_weighted_bool(10) {
  975. // Special values
  976. *rng.choose(&[
  977. -0.0,
  978. 0.0,
  979. ::std::$fty::MIN,
  980. ::std::$fty::MIN_POSITIVE,
  981. ::std::$fty::MAX,
  982. ::std::$fty::NAN,
  983. ::std::$fty::INFINITY,
  984. -::std::$fty::INFINITY,
  985. ])
  986. .unwrap()
  987. } else if rng.gen_weighted_bool(10) {
  988. // NaN patterns
  989. mk_f32(rng.gen(), rng.gen(), 0)
  990. } else if rng.gen() {
  991. // Denormalized
  992. mk_f32(rng.gen(), 0, rng.gen())
  993. } else {
  994. // Random anything
  995. mk_f32(rng.gen(), rng.gen(), rng.gen())
  996. }
  997. }
  998. };
  999. }
  1000. gen_float!(gen_f32, f32, u32, 32, 23);
  1001. gen_float!(gen_f64, f64, u64, 64, 52);
  1002. macro_rules! gen_large_float {
  1003. ($name:ident,
  1004. $fty:ident,
  1005. $uty:ident,
  1006. $bits:expr,
  1007. $significand_bits:expr) => {
  1008. pub fn $name<R>(rng: &mut R) -> $fty
  1009. where
  1010. R: Rng,
  1011. {
  1012. const BITS: u8 = $bits;
  1013. const SIGNIFICAND_BITS: u8 = $significand_bits;
  1014. const SIGNIFICAND_MASK: $uty = (1 << SIGNIFICAND_BITS) - 1;
  1015. const SIGN_MASK: $uty = (1 << (BITS - 1));
  1016. const EXPONENT_MASK: $uty = !(SIGN_MASK | SIGNIFICAND_MASK);
  1017. fn mk_f32(sign: bool, exponent: $uty, significand: $uty) -> $fty {
  1018. unsafe {
  1019. mem::transmute(
  1020. ((sign as $uty) << (BITS - 1))
  1021. | ((exponent & EXPONENT_MASK) << SIGNIFICAND_BITS)
  1022. | (significand & SIGNIFICAND_MASK),
  1023. )
  1024. }
  1025. }
  1026. if rng.gen_weighted_bool(10) {
  1027. // Special values
  1028. *rng.choose(&[
  1029. -0.0,
  1030. 0.0,
  1031. ::std::$fty::MIN,
  1032. ::std::$fty::MIN_POSITIVE,
  1033. ::std::$fty::MAX,
  1034. ::std::$fty::NAN,
  1035. ::std::$fty::INFINITY,
  1036. -::std::$fty::INFINITY,
  1037. ])
  1038. .unwrap()
  1039. } else if rng.gen_weighted_bool(10) {
  1040. // NaN patterns
  1041. mk_f32(rng.gen(), rng.gen(), 0)
  1042. } else if rng.gen() {
  1043. // Denormalized
  1044. mk_f32(rng.gen(), 0, rng.gen())
  1045. } else {
  1046. // Random anything
  1047. rng.gen::<$fty>()
  1048. }
  1049. }
  1050. };
  1051. }
  1052. gen_large_float!(gen_large_f32, f32, u32, 32, 23);
  1053. gen_large_float!(gen_large_f64, f64, u64, 64, 52);
  1054. trait TestInput: rand::Rand + Hash + Eq + fmt::Debug {
  1055. fn ty_name() -> String;
  1056. fn generate_lets(container: &str, cnt: &mut u8) -> String;
  1057. fn generate_static(&self, dst: &mut String);
  1058. }
  1059. trait TestOutput {
  1060. fn ty_name() -> String;
  1061. fn generate_static(&self, dst: &mut String);
  1062. fn generate_expr(container: &str) -> String;
  1063. }
  1064. fn gen<F, A, R>(mut generate: F, test: &str)
  1065. where
  1066. F: FnMut(A) -> Option<R>,
  1067. A: TestInput + Copy,
  1068. R: TestOutput,
  1069. {
  1070. let rng = &mut rand::thread_rng();
  1071. let testname = test.split("::").last().unwrap().split("(").next().unwrap();
  1072. let out_dir = PathBuf::from(env::var_os("OUT_DIR").unwrap());
  1073. let out_file = out_dir.join("generated.rs");
  1074. let mut testcases = HashMap::new();
  1075. let mut n = NTESTS;
  1076. while n > 0 {
  1077. let input: A = rng.gen();
  1078. if testcases.contains_key(&input) {
  1079. continue;
  1080. }
  1081. let output = match generate(input) {
  1082. Some(o) => o,
  1083. None => continue,
  1084. };
  1085. testcases.insert(input, output);
  1086. n -= 1;
  1087. }
  1088. let mut contents = String::new();
  1089. contents.push_str(&format!("mod {} {{\nuse super::*;\n", testname));
  1090. contents.push_str("#[test]\n");
  1091. contents.push_str("fn test() {\n");
  1092. contents.push_str(&format!(
  1093. "static TESTS: [({}, {}); {}] = [\n",
  1094. A::ty_name(),
  1095. R::ty_name(),
  1096. NTESTS
  1097. ));
  1098. for (input, output) in testcases {
  1099. contents.push_str(" (");
  1100. input.generate_static(&mut contents);
  1101. contents.push_str(", ");
  1102. output.generate_static(&mut contents);
  1103. contents.push_str("),\n");
  1104. }
  1105. contents.push_str("];\n");
  1106. contents.push_str(&format!(
  1107. r#"
  1108. for &(inputs, output) in TESTS.iter() {{
  1109. {}
  1110. assert_eq!({}, {}, "inputs {{:?}}", inputs)
  1111. }}
  1112. "#,
  1113. A::generate_lets("inputs", &mut 0),
  1114. R::generate_expr("output"),
  1115. test,
  1116. ));
  1117. contents.push_str("\n}\n");
  1118. contents.push_str("\n}\n");
  1119. OpenOptions::new()
  1120. .write(true)
  1121. .append(true)
  1122. .create(true)
  1123. .open(out_file)
  1124. .unwrap()
  1125. .write_all(contents.as_bytes())
  1126. .unwrap();
  1127. }
  1128. macro_rules! my_float {
  1129. ($(struct $name:ident($inner:ident) = $gen:ident;)*) => ($(
  1130. #[derive(Debug, Clone, Copy)]
  1131. struct $name($inner);
  1132. impl TestInput for $name {
  1133. fn ty_name() -> String {
  1134. format!("u{}", &stringify!($inner)[1..])
  1135. }
  1136. fn generate_lets(container: &str, cnt: &mut u8) -> String {
  1137. let me = *cnt;
  1138. *cnt += 1;
  1139. format!("let {} = {}::from_bits({});\n",
  1140. (b'a' + me) as char,
  1141. stringify!($inner),
  1142. container)
  1143. }
  1144. fn generate_static(&self, dst: &mut String) {
  1145. write!(dst, "{}", self.0.to_bits()).unwrap();
  1146. }
  1147. }
  1148. impl rand::Rand for $name {
  1149. fn rand<R: rand::Rng>(r: &mut R) -> $name {
  1150. $name($gen(r))
  1151. }
  1152. }
  1153. impl Hash for $name {
  1154. fn hash<H: Hasher>(&self, h: &mut H) {
  1155. self.0.to_bits().hash(h)
  1156. }
  1157. }
  1158. impl PartialEq for $name {
  1159. fn eq(&self, other: &$name) -> bool {
  1160. self.0.to_bits() == other.0.to_bits()
  1161. }
  1162. }
  1163. impl Eq for $name {}
  1164. )*)
  1165. }
  1166. my_float! {
  1167. struct MyF64(f64) = gen_f64;
  1168. struct LargeF64(f64) = gen_large_f64;
  1169. struct MyF32(f32) = gen_f32;
  1170. struct LargeF32(f32) = gen_large_f32;
  1171. }
  1172. macro_rules! my_integer {
  1173. ($(struct $name:ident($inner:ident);)*) => ($(
  1174. #[derive(Debug, Clone, Copy, Hash, PartialEq, Eq)]
  1175. struct $name($inner);
  1176. impl TestInput for $name {
  1177. fn ty_name() -> String {
  1178. stringify!($inner).to_string()
  1179. }
  1180. fn generate_lets(container: &str, cnt: &mut u8) -> String {
  1181. let me = *cnt;
  1182. *cnt += 1;
  1183. format!("let {} = {};\n",
  1184. (b'a' + me) as char,
  1185. container)
  1186. }
  1187. fn generate_static(&self, dst: &mut String) {
  1188. write!(dst, "{}", self.0).unwrap();
  1189. }
  1190. }
  1191. impl rand::Rand for $name {
  1192. fn rand<R: rand::Rng>(rng: &mut R) -> $name {
  1193. let bits = (0 as $inner).count_zeros();
  1194. let mut mk = || {
  1195. if rng.gen_weighted_bool(10) {
  1196. *rng.choose(&[
  1197. ::std::$inner::MAX >> (bits / 2),
  1198. 0,
  1199. ::std::$inner::MIN >> (bits / 2),
  1200. ]).unwrap()
  1201. } else {
  1202. rng.gen::<$inner>()
  1203. }
  1204. };
  1205. let a = mk();
  1206. let b = mk();
  1207. $name((a << (bits / 2)) | (b & (!0 << (bits / 2))))
  1208. }
  1209. }
  1210. )*)
  1211. }
  1212. my_integer! {
  1213. struct MyI32(i32);
  1214. struct MyI64(i64);
  1215. struct MyI128(i128);
  1216. struct MyU32(u32);
  1217. struct MyU64(u64);
  1218. struct MyU128(u128);
  1219. }
  1220. impl<A, B> TestInput for (A, B)
  1221. where
  1222. A: TestInput,
  1223. B: TestInput,
  1224. {
  1225. fn ty_name() -> String {
  1226. format!("({}, {})", A::ty_name(), B::ty_name())
  1227. }
  1228. fn generate_lets(container: &str, cnt: &mut u8) -> String {
  1229. format!(
  1230. "{}{}",
  1231. A::generate_lets(&format!("{}.0", container), cnt),
  1232. B::generate_lets(&format!("{}.1", container), cnt)
  1233. )
  1234. }
  1235. fn generate_static(&self, dst: &mut String) {
  1236. dst.push_str("(");
  1237. self.0.generate_static(dst);
  1238. dst.push_str(", ");
  1239. self.1.generate_static(dst);
  1240. dst.push_str(")");
  1241. }
  1242. }
  1243. impl TestOutput for f64 {
  1244. fn ty_name() -> String {
  1245. "u64".to_string()
  1246. }
  1247. fn generate_static(&self, dst: &mut String) {
  1248. write!(dst, "{}", self.to_bits()).unwrap();
  1249. }
  1250. fn generate_expr(container: &str) -> String {
  1251. format!("f64::from_bits({})", container)
  1252. }
  1253. }
  1254. impl TestOutput for f32 {
  1255. fn ty_name() -> String {
  1256. "u32".to_string()
  1257. }
  1258. fn generate_static(&self, dst: &mut String) {
  1259. write!(dst, "{}", self.to_bits()).unwrap();
  1260. }
  1261. fn generate_expr(container: &str) -> String {
  1262. format!("f32::from_bits({})", container)
  1263. }
  1264. }
  1265. macro_rules! plain_test_output {
  1266. ($($i:tt)*) => ($(
  1267. impl TestOutput for $i {
  1268. fn ty_name() -> String {
  1269. stringify!($i).to_string()
  1270. }
  1271. fn generate_static(&self, dst: &mut String) {
  1272. write!(dst, "{}", self).unwrap();
  1273. }
  1274. fn generate_expr(container: &str) -> String {
  1275. container.to_string()
  1276. }
  1277. }
  1278. )*)
  1279. }
  1280. plain_test_output!(i32 i64 i128 u32 u64 u128 bool);
  1281. impl<A, B> TestOutput for (A, B)
  1282. where
  1283. A: TestOutput,
  1284. B: TestOutput,
  1285. {
  1286. fn ty_name() -> String {
  1287. format!("({}, {})", A::ty_name(), B::ty_name())
  1288. }
  1289. fn generate_static(&self, dst: &mut String) {
  1290. dst.push_str("(");
  1291. self.0.generate_static(dst);
  1292. dst.push_str(", ");
  1293. self.1.generate_static(dst);
  1294. dst.push_str(")");
  1295. }
  1296. fn generate_expr(container: &str) -> String {
  1297. container.to_string()
  1298. }
  1299. }