ubpf_vm.rs 44 KB

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  1. // SPDX-License-Identifier: (Apache-2.0 OR MIT)
  2. // Converted from the tests for uBPF <https://github.com/iovisor/ubpf>
  3. // Copyright 2015 Big Switch Networks, Inc
  4. // Copyright 2016 6WIND S.A. <quentin.monnet@6wind.com>
  5. // The tests contained in this file are extracted from the unit tests of uBPF software. Each test
  6. // in this file has a name in the form `test_vm_<name>`, and corresponds to the (human-readable)
  7. // code in `ubpf/tree/master/tests/<name>`, available at
  8. // <https://github.com/iovisor/ubpf/tree/master/tests> (hyphen had to be replaced with underscores
  9. // as Rust will not accept them in function names). It is strongly advised to refer to the uBPF
  10. // version to understand what these program do.
  11. //
  12. // Each program was assembled from the uBPF version with the assembler provided by uBPF itself, and
  13. // available at <https://github.com/iovisor/ubpf/tree/master/ubpf>.
  14. // The very few modifications that have been realized should be indicated.
  15. // These are unit tests for the eBPF interpreter.
  16. #![cfg_attr(feature = "cargo-clippy", allow(clippy::unreadable_literal))]
  17. extern crate rbpf;
  18. mod common;
  19. use rbpf::helpers;
  20. use rbpf::assembler::assemble;
  21. use common::{TCP_SACK_ASM, TCP_SACK_MATCH, TCP_SACK_NOMATCH};
  22. #[test]
  23. fn test_vm_add() {
  24. let prog = assemble("
  25. mov32 r0, 0
  26. mov32 r1, 2
  27. add32 r0, 1
  28. add32 r0, r1
  29. exit").unwrap();
  30. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  31. assert_eq!(vm.execute_program().unwrap(), 0x3);
  32. }
  33. #[test]
  34. fn test_vm_alu64_arith() {
  35. let prog = assemble("
  36. mov r0, 0
  37. mov r1, 1
  38. mov r2, 2
  39. mov r3, 3
  40. mov r4, 4
  41. mov r5, 5
  42. mov r6, 6
  43. mov r7, 7
  44. mov r8, 8
  45. mov r9, 9
  46. add r0, 23
  47. add r0, r7
  48. sub r0, 13
  49. sub r0, r1
  50. mul r0, 7
  51. mul r0, r3
  52. div r0, 2
  53. div r0, r4
  54. exit").unwrap();
  55. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  56. assert_eq!(vm.execute_program().unwrap(), 0x2a);
  57. }
  58. #[test]
  59. fn test_vm_alu64_bit() {
  60. let prog = assemble("
  61. mov r0, 0
  62. mov r1, 1
  63. mov r2, 2
  64. mov r3, 3
  65. mov r4, 4
  66. mov r5, 5
  67. mov r6, 6
  68. mov r7, 7
  69. mov r8, 8
  70. or r0, r5
  71. or r0, 0xa0
  72. and r0, 0xa3
  73. mov r9, 0x91
  74. and r0, r9
  75. lsh r0, 32
  76. lsh r0, 22
  77. lsh r0, r8
  78. rsh r0, 32
  79. rsh r0, 19
  80. rsh r0, r7
  81. xor r0, 0x03
  82. xor r0, r2
  83. exit").unwrap();
  84. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  85. assert_eq!(vm.execute_program().unwrap(), 0x11);
  86. }
  87. #[test]
  88. fn test_vm_alu_arith() {
  89. let prog = assemble("
  90. mov32 r0, 0
  91. mov32 r1, 1
  92. mov32 r2, 2
  93. mov32 r3, 3
  94. mov32 r4, 4
  95. mov32 r5, 5
  96. mov32 r6, 6
  97. mov32 r7, 7
  98. mov32 r8, 8
  99. mov32 r9, 9
  100. add32 r0, 23
  101. add32 r0, r7
  102. sub32 r0, 13
  103. sub32 r0, r1
  104. mul32 r0, 7
  105. mul32 r0, r3
  106. div32 r0, 2
  107. div32 r0, r4
  108. exit").unwrap();
  109. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  110. assert_eq!(vm.execute_program().unwrap(), 0x2a);
  111. }
  112. #[test]
  113. fn test_vm_alu_bit() {
  114. let prog = assemble("
  115. mov32 r0, 0
  116. mov32 r1, 1
  117. mov32 r2, 2
  118. mov32 r3, 3
  119. mov32 r4, 4
  120. mov32 r5, 5
  121. mov32 r6, 6
  122. mov32 r7, 7
  123. mov32 r8, 8
  124. or32 r0, r5
  125. or32 r0, 0xa0
  126. and32 r0, 0xa3
  127. mov32 r9, 0x91
  128. and32 r0, r9
  129. lsh32 r0, 22
  130. lsh32 r0, r8
  131. rsh32 r0, 19
  132. rsh32 r0, r7
  133. xor32 r0, 0x03
  134. xor32 r0, r2
  135. exit").unwrap();
  136. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  137. assert_eq!(vm.execute_program().unwrap(), 0x11);
  138. }
  139. #[test]
  140. fn test_vm_arsh32_high_shift() {
  141. let prog = assemble("
  142. mov r0, 8
  143. lddw r1, 0x100000001
  144. arsh32 r0, r1
  145. exit").unwrap();
  146. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  147. assert_eq!(vm.execute_program().unwrap(), 0x4);
  148. }
  149. #[test]
  150. fn test_vm_arsh() {
  151. let prog = assemble("
  152. mov32 r0, 0xf8
  153. lsh32 r0, 28
  154. arsh32 r0, 16
  155. exit").unwrap();
  156. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  157. assert_eq!(vm.execute_program().unwrap(), 0xffff8000);
  158. }
  159. #[test]
  160. fn test_vm_arsh64() {
  161. let prog = assemble("
  162. mov32 r0, 1
  163. lsh r0, 63
  164. arsh r0, 55
  165. mov32 r1, 5
  166. arsh r0, r1
  167. exit").unwrap();
  168. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  169. assert_eq!(vm.execute_program().unwrap(), 0xfffffffffffffff8);
  170. }
  171. #[test]
  172. fn test_vm_arsh_reg() {
  173. let prog = assemble("
  174. mov32 r0, 0xf8
  175. mov32 r1, 16
  176. lsh32 r0, 28
  177. arsh32 r0, r1
  178. exit").unwrap();
  179. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  180. assert_eq!(vm.execute_program().unwrap(), 0xffff8000);
  181. }
  182. #[test]
  183. fn test_vm_be16() {
  184. let prog = assemble("
  185. ldxh r0, [r1]
  186. be16 r0
  187. exit").unwrap();
  188. let mem = &mut [
  189. 0x11, 0x22
  190. ];
  191. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  192. assert_eq!(vm.execute_program(mem).unwrap(), 0x1122);
  193. }
  194. #[test]
  195. fn test_vm_be16_high() {
  196. let prog = assemble("
  197. ldxdw r0, [r1]
  198. be16 r0
  199. exit").unwrap();
  200. let mem = &mut [
  201. 0x11, 0x22, 0x33, 0x44, 0x55, 0x66, 0x77, 0x88
  202. ];
  203. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  204. assert_eq!(vm.execute_program(mem).unwrap(), 0x1122);
  205. }
  206. #[test]
  207. fn test_vm_be32() {
  208. let prog = assemble("
  209. ldxw r0, [r1]
  210. be32 r0
  211. exit").unwrap();
  212. let mem = &mut [
  213. 0x11, 0x22, 0x33, 0x44
  214. ];
  215. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  216. assert_eq!(vm.execute_program(mem).unwrap(), 0x11223344);
  217. }
  218. #[test]
  219. fn test_vm_be32_high() {
  220. let prog = assemble("
  221. ldxdw r0, [r1]
  222. be32 r0
  223. exit").unwrap();
  224. let mem = &mut [
  225. 0x11, 0x22, 0x33, 0x44, 0x55, 0x66, 0x77, 0x88
  226. ];
  227. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  228. assert_eq!(vm.execute_program(mem).unwrap(), 0x11223344);
  229. }
  230. #[test]
  231. fn test_vm_be64() {
  232. let prog = assemble("
  233. ldxdw r0, [r1]
  234. be64 r0
  235. exit").unwrap();
  236. let mem = &mut [
  237. 0x11, 0x22, 0x33, 0x44, 0x55, 0x66, 0x77, 0x88
  238. ];
  239. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  240. assert_eq!(vm.execute_program(mem).unwrap(), 0x1122334455667788);
  241. }
  242. #[test]
  243. fn test_vm_call() {
  244. let prog = assemble("
  245. mov r1, 1
  246. mov r2, 2
  247. mov r3, 3
  248. mov r4, 4
  249. mov r5, 5
  250. call 0
  251. exit").unwrap();
  252. let mut vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  253. vm.register_helper(0, helpers::gather_bytes).unwrap();
  254. assert_eq!(vm.execute_program().unwrap(), 0x0102030405);
  255. }
  256. #[test]
  257. fn test_vm_call_memfrob() {
  258. let prog = assemble("
  259. mov r6, r1
  260. add r1, 2
  261. mov r2, 4
  262. call 1
  263. ldxdw r0, [r6]
  264. be64 r0
  265. exit").unwrap();
  266. let mem = &mut [
  267. 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08
  268. ];
  269. let mut vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  270. vm.register_helper(1, helpers::memfrob).unwrap();
  271. assert_eq!(vm.execute_program(mem).unwrap(), 0x102292e2f2c0708);
  272. }
  273. // TODO: helpers::trash_registers needs asm!().
  274. // Try this again once asm!() is available in stable.
  275. //#[test]
  276. //fn test_vm_call_save() {
  277. //let prog = &[
  278. //0xb7, 0x06, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00,
  279. //0xb7, 0x07, 0x00, 0x00, 0x20, 0x00, 0x00, 0x00,
  280. //0xb7, 0x08, 0x00, 0x00, 0x00, 0x03, 0x00, 0x00,
  281. //0xb7, 0x09, 0x00, 0x00, 0x00, 0x40, 0x00, 0x00,
  282. //0x85, 0x00, 0x00, 0x00, 0x02, 0x00, 0x00, 0x00,
  283. //0xb7, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  284. //0x4f, 0x60, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  285. //0x4f, 0x70, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  286. //0x4f, 0x80, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  287. //0x4f, 0x90, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  288. //0x95, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00
  289. //];
  290. //let mut vm = rbpf::EbpfVmNoData::new(Some(prog)).unwrap();
  291. //vm.register_helper(2, helpers::trash_registers);
  292. //assert_eq!(vm.execute_program().unwrap(), 0x4321);
  293. //}
  294. #[test]
  295. fn test_vm_div32_high_divisor() {
  296. let prog = assemble("
  297. mov r0, 12
  298. lddw r1, 0x100000004
  299. div32 r0, r1
  300. exit").unwrap();
  301. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  302. assert_eq!(vm.execute_program().unwrap(), 0x3);
  303. }
  304. #[test]
  305. fn test_vm_div32_imm() {
  306. let prog = assemble("
  307. lddw r0, 0x10000000c
  308. div32 r0, 4
  309. exit").unwrap();
  310. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  311. assert_eq!(vm.execute_program().unwrap(), 0x3);
  312. }
  313. #[test]
  314. fn test_vm_div32_reg() {
  315. let prog = assemble("
  316. lddw r0, 0x10000000c
  317. mov r1, 4
  318. div32 r0, r1
  319. exit").unwrap();
  320. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  321. assert_eq!(vm.execute_program().unwrap(), 0x3);
  322. }
  323. #[test]
  324. fn test_vm_div64_imm() {
  325. let prog = assemble("
  326. mov r0, 0xc
  327. lsh r0, 32
  328. div r0, 4
  329. exit").unwrap();
  330. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  331. assert_eq!(vm.execute_program().unwrap(), 0x300000000);
  332. }
  333. #[test]
  334. fn test_vm_div64_reg() {
  335. let prog = assemble("
  336. mov r0, 0xc
  337. lsh r0, 32
  338. mov r1, 4
  339. div r0, r1
  340. exit").unwrap();
  341. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  342. assert_eq!(vm.execute_program().unwrap(), 0x300000000);
  343. }
  344. #[test]
  345. fn test_vm_early_exit() {
  346. let prog = assemble("
  347. mov r0, 3
  348. exit
  349. mov r0, 4
  350. exit").unwrap();
  351. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  352. assert_eq!(vm.execute_program().unwrap(), 0x3);
  353. }
  354. // uBPF limits the number of user functions at 64. We don't.
  355. //#[test]
  356. //fn test_vm_err_call_bad_imm() {
  357. //}
  358. #[test]
  359. #[should_panic(expected = "Error: unknown helper function (id: 0x3f)")]
  360. fn test_vm_err_call_unreg() {
  361. let prog = assemble("
  362. mov r1, 1
  363. mov r2, 2
  364. mov r3, 3
  365. mov r4, 4
  366. mov r5, 5
  367. call 63
  368. exit").unwrap();
  369. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  370. vm.execute_program().unwrap();
  371. }
  372. #[test]
  373. fn test_vm_div64_by_zero_imm() {
  374. let prog = assemble("
  375. mov32 r0, 1
  376. div r0, 0
  377. exit").unwrap();
  378. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  379. assert_eq!(vm.execute_program().unwrap(), 0x0);
  380. }
  381. #[test]
  382. fn test_vm_div_by_zero_imm() {
  383. let prog = assemble("
  384. mov32 r0, 1
  385. div32 r0, 0
  386. exit").unwrap();
  387. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  388. assert_eq!(vm.execute_program().unwrap(), 0x0);
  389. }
  390. #[test]
  391. fn test_vm_mod64_by_zero_imm() {
  392. let prog = assemble("
  393. mov32 r0, 1
  394. mod r0, 0
  395. exit").unwrap();
  396. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  397. assert_eq!(vm.execute_program().unwrap(), 0x1);
  398. }
  399. #[test]
  400. fn test_vm_mod_by_zero_imm() {
  401. let prog = assemble("
  402. mov32 r0, 1
  403. mod32 r0, 0
  404. exit").unwrap();
  405. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  406. assert_eq!(vm.execute_program().unwrap(), 0x1);
  407. }
  408. #[test]
  409. fn test_vm_div64_by_zero_reg() {
  410. let prog = assemble("
  411. mov32 r0, 1
  412. mov32 r1, 0
  413. div r0, r1
  414. exit").unwrap();
  415. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  416. assert_eq!(vm.execute_program().unwrap(), 0x0);
  417. }
  418. #[test]
  419. fn test_vm_div_by_zero_reg() {
  420. let prog = assemble("
  421. mov32 r0, 1
  422. mov32 r1, 0
  423. div32 r0, r1
  424. exit").unwrap();
  425. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  426. assert_eq!(vm.execute_program().unwrap(), 0x0);
  427. }
  428. #[test]
  429. fn test_vm_mod64_by_zero_reg() {
  430. let prog = assemble("
  431. mov32 r0, 1
  432. mov32 r1, 0
  433. mod r0, r1
  434. exit").unwrap();
  435. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  436. assert_eq!(vm.execute_program().unwrap(), 0x1);
  437. }
  438. #[test]
  439. fn test_vm_mod_by_zero_reg() {
  440. let prog = assemble("
  441. mov32 r0, 1
  442. mov32 r1, 0
  443. mod32 r0, r1
  444. exit").unwrap();
  445. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  446. assert_eq!(vm.execute_program().unwrap(), 0x1);
  447. }
  448. #[test]
  449. #[should_panic(expected = "Error: out of bounds memory store (insn #1)")]
  450. fn test_vm_err_stack_out_of_bound() {
  451. let prog = assemble("
  452. stb [r10], 0
  453. exit").unwrap();
  454. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  455. vm.execute_program().unwrap();
  456. }
  457. #[test]
  458. fn test_vm_exit() {
  459. let prog = assemble("
  460. mov r0, 0
  461. exit").unwrap();
  462. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  463. assert_eq!(vm.execute_program().unwrap(), 0x0);
  464. }
  465. #[test]
  466. fn test_vm_ja() {
  467. let prog = assemble("
  468. mov r0, 1
  469. ja +1
  470. mov r0, 2
  471. exit").unwrap();
  472. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  473. assert_eq!(vm.execute_program().unwrap(), 0x1);
  474. }
  475. #[test]
  476. fn test_vm_jeq_imm() {
  477. let prog = assemble("
  478. mov32 r0, 0
  479. mov32 r1, 0xa
  480. jeq r1, 0xb, +4
  481. mov32 r0, 1
  482. mov32 r1, 0xb
  483. jeq r1, 0xb, +1
  484. mov32 r0, 2
  485. exit").unwrap();
  486. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  487. assert_eq!(vm.execute_program().unwrap(), 0x1);
  488. }
  489. #[test]
  490. fn test_vm_jeq_reg() {
  491. let prog = assemble("
  492. mov32 r0, 0
  493. mov32 r1, 0xa
  494. mov32 r2, 0xb
  495. jeq r1, r2, +4
  496. mov32 r0, 1
  497. mov32 r1, 0xb
  498. jeq r1, r2, +1
  499. mov32 r0, 2
  500. exit").unwrap();
  501. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  502. assert_eq!(vm.execute_program().unwrap(), 0x1);
  503. }
  504. #[test]
  505. fn test_vm_jge_imm() {
  506. let prog = assemble("
  507. mov32 r0, 0
  508. mov32 r1, 0xa
  509. jge r1, 0xb, +4
  510. mov32 r0, 1
  511. mov32 r1, 0xc
  512. jge r1, 0xb, +1
  513. mov32 r0, 2
  514. exit").unwrap();
  515. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  516. assert_eq!(vm.execute_program().unwrap(), 0x1);
  517. }
  518. #[test]
  519. fn test_vm_jle_imm() {
  520. let prog = assemble("
  521. mov32 r0, 0
  522. mov32 r1, 5
  523. jle r1, 4, +1
  524. jle r1, 6, +1
  525. exit
  526. jle r1, 5, +1
  527. exit
  528. mov32 r0, 1
  529. exit").unwrap();
  530. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  531. assert_eq!(vm.execute_program().unwrap(), 0x1);
  532. }
  533. #[test]
  534. fn test_vm_jle_reg() {
  535. let prog = assemble("
  536. mov r0, 0
  537. mov r1, 5
  538. mov r2, 4
  539. mov r3, 6
  540. jle r1, r2, +2
  541. jle r1, r1, +1
  542. exit
  543. jle r1, r3, +1
  544. exit
  545. mov r0, 1
  546. exit").unwrap();
  547. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  548. assert_eq!(vm.execute_program().unwrap(), 0x1);
  549. }
  550. #[test]
  551. fn test_vm_jgt_imm() {
  552. let prog = assemble("
  553. mov32 r0, 0
  554. mov32 r1, 5
  555. jgt r1, 6, +2
  556. jgt r1, 5, +1
  557. jgt r1, 4, +1
  558. exit
  559. mov32 r0, 1
  560. exit").unwrap();
  561. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  562. assert_eq!(vm.execute_program().unwrap(), 0x1);
  563. }
  564. #[test]
  565. fn test_vm_jgt_reg() {
  566. let prog = assemble("
  567. mov r0, 0
  568. mov r1, 5
  569. mov r2, 6
  570. mov r3, 4
  571. jgt r1, r2, +2
  572. jgt r1, r1, +1
  573. jgt r1, r3, +1
  574. exit
  575. mov r0, 1
  576. exit").unwrap();
  577. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  578. assert_eq!(vm.execute_program().unwrap(), 0x1);
  579. }
  580. #[test]
  581. fn test_vm_jlt_imm() {
  582. let prog = assemble("
  583. mov32 r0, 0
  584. mov32 r1, 5
  585. jlt r1, 4, +2
  586. jlt r1, 5, +1
  587. jlt r1, 6, +1
  588. exit
  589. mov32 r0, 1
  590. exit").unwrap();
  591. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  592. assert_eq!(vm.execute_program().unwrap(), 0x1);
  593. }
  594. #[test]
  595. fn test_vm_jlt_reg() {
  596. let prog = assemble("
  597. mov r0, 0
  598. mov r1, 5
  599. mov r2, 4
  600. mov r3, 6
  601. jlt r1, r2, +2
  602. jlt r1, r1, +1
  603. jlt r1, r3, +1
  604. exit
  605. mov r0, 1
  606. exit").unwrap();
  607. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  608. assert_eq!(vm.execute_program().unwrap(), 0x1);
  609. }
  610. #[test]
  611. fn test_vm_jit_bounce() {
  612. let prog = assemble("
  613. mov r0, 1
  614. mov r6, r0
  615. mov r7, r6
  616. mov r8, r7
  617. mov r9, r8
  618. mov r0, r9
  619. exit").unwrap();
  620. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  621. assert_eq!(vm.execute_program().unwrap(), 0x1);
  622. }
  623. #[test]
  624. fn test_vm_jne_reg() {
  625. let prog = assemble("
  626. mov32 r0, 0
  627. mov32 r1, 0xb
  628. mov32 r2, 0xb
  629. jne r1, r2, +4
  630. mov32 r0, 1
  631. mov32 r1, 0xa
  632. jne r1, r2, +1
  633. mov32 r0, 2
  634. exit").unwrap();
  635. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  636. assert_eq!(vm.execute_program().unwrap(), 0x1);
  637. }
  638. #[test]
  639. fn test_vm_jset_imm() {
  640. let prog = assemble("
  641. mov32 r0, 0
  642. mov32 r1, 0x7
  643. jset r1, 0x8, +4
  644. mov32 r0, 1
  645. mov32 r1, 0x9
  646. jset r1, 0x8, +1
  647. mov32 r0, 2
  648. exit").unwrap();
  649. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  650. assert_eq!(vm.execute_program().unwrap(), 0x1);
  651. }
  652. #[test]
  653. fn test_vm_jset_reg() {
  654. let prog = assemble("
  655. mov32 r0, 0
  656. mov32 r1, 0x7
  657. mov32 r2, 0x8
  658. jset r1, r2, +4
  659. mov32 r0, 1
  660. mov32 r1, 0x9
  661. jset r1, r2, +1
  662. mov32 r0, 2
  663. exit").unwrap();
  664. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  665. assert_eq!(vm.execute_program().unwrap(), 0x1);
  666. }
  667. #[test]
  668. fn test_vm_jsge_imm() {
  669. let prog = assemble("
  670. mov32 r0, 0
  671. mov r1, -2
  672. jsge r1, -1, +5
  673. jsge r1, 0, +4
  674. mov32 r0, 1
  675. mov r1, -1
  676. jsge r1, -1, +1
  677. mov32 r0, 2
  678. exit").unwrap();
  679. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  680. assert_eq!(vm.execute_program().unwrap(), 0x1);
  681. }
  682. #[test]
  683. fn test_vm_jsge_reg() {
  684. let prog = assemble("
  685. mov32 r0, 0
  686. mov r1, -2
  687. mov r2, -1
  688. mov32 r3, 0
  689. jsge r1, r2, +5
  690. jsge r1, r3, +4
  691. mov32 r0, 1
  692. mov r1, r2
  693. jsge r1, r2, +1
  694. mov32 r0, 2
  695. exit").unwrap();
  696. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  697. assert_eq!(vm.execute_program().unwrap(), 0x1);
  698. }
  699. #[test]
  700. fn test_vm_jsle_imm() {
  701. let prog = assemble("
  702. mov32 r0, 0
  703. mov r1, -2
  704. jsle r1, -3, +1
  705. jsle r1, -1, +1
  706. exit
  707. mov32 r0, 1
  708. jsle r1, -2, +1
  709. mov32 r0, 2
  710. exit").unwrap();
  711. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  712. assert_eq!(vm.execute_program().unwrap(), 0x1);
  713. }
  714. #[test]
  715. fn test_vm_jsle_reg() {
  716. let prog = assemble("
  717. mov32 r0, 0
  718. mov r1, -1
  719. mov r2, -2
  720. mov32 r3, 0
  721. jsle r1, r2, +1
  722. jsle r1, r3, +1
  723. exit
  724. mov32 r0, 1
  725. mov r1, r2
  726. jsle r1, r2, +1
  727. mov32 r0, 2
  728. exit").unwrap();
  729. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  730. assert_eq!(vm.execute_program().unwrap(), 0x1);
  731. }
  732. #[test]
  733. fn test_vm_jsgt_imm() {
  734. let prog = assemble("
  735. mov32 r0, 0
  736. mov r1, -2
  737. jsgt r1, -1, +4
  738. mov32 r0, 1
  739. mov32 r1, 0
  740. jsgt r1, -1, +1
  741. mov32 r0, 2
  742. exit").unwrap();
  743. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  744. assert_eq!(vm.execute_program().unwrap(), 0x1);
  745. }
  746. #[test]
  747. fn test_vm_jsgt_reg() {
  748. let prog = assemble("
  749. mov32 r0, 0
  750. mov r1, -2
  751. mov r2, -1
  752. jsgt r1, r2, +4
  753. mov32 r0, 1
  754. mov32 r1, 0
  755. jsgt r1, r2, +1
  756. mov32 r0, 2
  757. exit").unwrap();
  758. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  759. assert_eq!(vm.execute_program().unwrap(), 0x1);
  760. }
  761. #[test]
  762. fn test_vm_jslt_imm() {
  763. let prog = assemble("
  764. mov32 r0, 0
  765. mov r1, -2
  766. jslt r1, -3, +2
  767. jslt r1, -2, +1
  768. jslt r1, -1, +1
  769. exit
  770. mov32 r0, 1
  771. exit").unwrap();
  772. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  773. assert_eq!(vm.execute_program().unwrap(), 0x1);
  774. }
  775. #[test]
  776. fn test_vm_jslt_reg() {
  777. let prog = assemble("
  778. mov32 r0, 0
  779. mov r1, -2
  780. mov r2, -3
  781. mov r3, -1
  782. jslt r1, r1, +2
  783. jslt r1, r2, +1
  784. jslt r1, r3, +1
  785. exit
  786. mov32 r0, 1
  787. exit").unwrap();
  788. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  789. assert_eq!(vm.execute_program().unwrap(), 0x1);
  790. }
  791. #[test]
  792. fn test_vm_lddw() {
  793. let prog = assemble("lddw r0, 0x1122334455667788
  794. exit").unwrap();
  795. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  796. assert_eq!(vm.execute_program().unwrap(), 0x1122334455667788);
  797. }
  798. #[test]
  799. fn test_vm_lddw2() {
  800. let prog = assemble("
  801. lddw r0, 0x0000000080000000
  802. exit").unwrap();
  803. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  804. assert_eq!(vm.execute_program().unwrap(), 0x80000000);
  805. }
  806. #[test]
  807. fn test_vm_ldxb_all() {
  808. let prog = assemble("
  809. mov r0, r1
  810. ldxb r9, [r0+0]
  811. lsh r9, 0
  812. ldxb r8, [r0+1]
  813. lsh r8, 4
  814. ldxb r7, [r0+2]
  815. lsh r7, 8
  816. ldxb r6, [r0+3]
  817. lsh r6, 12
  818. ldxb r5, [r0+4]
  819. lsh r5, 16
  820. ldxb r4, [r0+5]
  821. lsh r4, 20
  822. ldxb r3, [r0+6]
  823. lsh r3, 24
  824. ldxb r2, [r0+7]
  825. lsh r2, 28
  826. ldxb r1, [r0+8]
  827. lsh r1, 32
  828. ldxb r0, [r0+9]
  829. lsh r0, 36
  830. or r0, r1
  831. or r0, r2
  832. or r0, r3
  833. or r0, r4
  834. or r0, r5
  835. or r0, r6
  836. or r0, r7
  837. or r0, r8
  838. or r0, r9
  839. exit").unwrap();
  840. let mem = &mut [
  841. 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
  842. 0x08, 0x09
  843. ];
  844. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  845. assert_eq!(vm.execute_program(mem).unwrap(), 0x9876543210);
  846. }
  847. #[test]
  848. fn test_vm_ldxb() {
  849. let prog = assemble("
  850. ldxb r0, [r1+2]
  851. exit").unwrap();
  852. let mem = &mut [
  853. 0xaa, 0xbb, 0x11, 0xcc, 0xdd
  854. ];
  855. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  856. assert_eq!(vm.execute_program(mem).unwrap(), 0x11);
  857. }
  858. #[test]
  859. fn test_vm_ldxdw() {
  860. let prog = assemble("
  861. ldxdw r0, [r1+2]
  862. exit").unwrap();
  863. let mem = &mut [
  864. 0xaa, 0xbb, 0x11, 0x22, 0x33, 0x44, 0x55, 0x66,
  865. 0x77, 0x88, 0xcc, 0xdd
  866. ];
  867. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  868. assert_eq!(vm.execute_program(mem).unwrap(), 0x8877665544332211);
  869. }
  870. #[test]
  871. fn test_vm_ldxh_all() {
  872. let prog = assemble("
  873. mov r0, r1
  874. ldxh r9, [r0+0]
  875. be16 r9
  876. lsh r9, 0
  877. ldxh r8, [r0+2]
  878. be16 r8
  879. lsh r8, 4
  880. ldxh r7, [r0+4]
  881. be16 r7
  882. lsh r7, 8
  883. ldxh r6, [r0+6]
  884. be16 r6
  885. lsh r6, 12
  886. ldxh r5, [r0+8]
  887. be16 r5
  888. lsh r5, 16
  889. ldxh r4, [r0+10]
  890. be16 r4
  891. lsh r4, 20
  892. ldxh r3, [r0+12]
  893. be16 r3
  894. lsh r3, 24
  895. ldxh r2, [r0+14]
  896. be16 r2
  897. lsh r2, 28
  898. ldxh r1, [r0+16]
  899. be16 r1
  900. lsh r1, 32
  901. ldxh r0, [r0+18]
  902. be16 r0
  903. lsh r0, 36
  904. or r0, r1
  905. or r0, r2
  906. or r0, r3
  907. or r0, r4
  908. or r0, r5
  909. or r0, r6
  910. or r0, r7
  911. or r0, r8
  912. or r0, r9
  913. exit").unwrap();
  914. let mem = &mut [
  915. 0x00, 0x00, 0x00, 0x01, 0x00, 0x02, 0x00, 0x03,
  916. 0x00, 0x04, 0x00, 0x05, 0x00, 0x06, 0x00, 0x07,
  917. 0x00, 0x08, 0x00, 0x09
  918. ];
  919. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  920. assert_eq!(vm.execute_program(mem).unwrap(), 0x9876543210);
  921. }
  922. #[test]
  923. fn test_vm_ldxh_all2() {
  924. let prog = assemble("
  925. mov r0, r1
  926. ldxh r9, [r0+0]
  927. be16 r9
  928. ldxh r8, [r0+2]
  929. be16 r8
  930. ldxh r7, [r0+4]
  931. be16 r7
  932. ldxh r6, [r0+6]
  933. be16 r6
  934. ldxh r5, [r0+8]
  935. be16 r5
  936. ldxh r4, [r0+10]
  937. be16 r4
  938. ldxh r3, [r0+12]
  939. be16 r3
  940. ldxh r2, [r0+14]
  941. be16 r2
  942. ldxh r1, [r0+16]
  943. be16 r1
  944. ldxh r0, [r0+18]
  945. be16 r0
  946. or r0, r1
  947. or r0, r2
  948. or r0, r3
  949. or r0, r4
  950. or r0, r5
  951. or r0, r6
  952. or r0, r7
  953. or r0, r8
  954. or r0, r9
  955. exit").unwrap();
  956. let mem = &mut [
  957. 0x00, 0x01, 0x00, 0x02, 0x00, 0x04, 0x00, 0x08,
  958. 0x00, 0x10, 0x00, 0x20, 0x00, 0x40, 0x00, 0x80,
  959. 0x01, 0x00, 0x02, 0x00
  960. ];
  961. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  962. assert_eq!(vm.execute_program(mem).unwrap(), 0x3ff);
  963. }
  964. #[test]
  965. fn test_vm_ldxh() {
  966. let prog = assemble("
  967. ldxh r0, [r1+2]
  968. exit").unwrap();
  969. let mem = &mut [
  970. 0xaa, 0xbb, 0x11, 0x22, 0xcc, 0xdd
  971. ];
  972. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  973. assert_eq!(vm.execute_program(mem).unwrap(), 0x2211);
  974. }
  975. #[test]
  976. fn test_vm_ldxh_same_reg() {
  977. let prog = assemble("
  978. mov r0, r1
  979. sth [r0], 0x1234
  980. ldxh r0, [r0]
  981. exit").unwrap();
  982. let mem = &mut [
  983. 0xff, 0xff
  984. ];
  985. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  986. assert_eq!(vm.execute_program(mem).unwrap(), 0x1234);
  987. }
  988. #[test]
  989. fn test_vm_ldxw_all() {
  990. let prog = assemble("
  991. mov r0, r1
  992. ldxw r9, [r0+0]
  993. be32 r9
  994. ldxw r8, [r0+4]
  995. be32 r8
  996. ldxw r7, [r0+8]
  997. be32 r7
  998. ldxw r6, [r0+12]
  999. be32 r6
  1000. ldxw r5, [r0+16]
  1001. be32 r5
  1002. ldxw r4, [r0+20]
  1003. be32 r4
  1004. ldxw r3, [r0+24]
  1005. be32 r3
  1006. ldxw r2, [r0+28]
  1007. be32 r2
  1008. ldxw r1, [r0+32]
  1009. be32 r1
  1010. ldxw r0, [r0+36]
  1011. be32 r0
  1012. or r0, r1
  1013. or r0, r2
  1014. or r0, r3
  1015. or r0, r4
  1016. or r0, r5
  1017. or r0, r6
  1018. or r0, r7
  1019. or r0, r8
  1020. or r0, r9
  1021. exit").unwrap();
  1022. let mem = &mut [
  1023. 0x00, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x02,
  1024. 0x00, 0x00, 0x00, 0x04, 0x00, 0x00, 0x00, 0x08,
  1025. 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x02, 0x00,
  1026. 0x00, 0x00, 0x04, 0x00, 0x00, 0x00, 0x08, 0x00,
  1027. 0x00, 0x01, 0x00, 0x00, 0x00, 0x02, 0x00, 0x00
  1028. ];
  1029. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1030. assert_eq!(vm.execute_program(mem).unwrap(), 0x030f0f);
  1031. }
  1032. #[test]
  1033. fn test_vm_ldxw() {
  1034. let prog = assemble("
  1035. ldxw r0, [r1+2]
  1036. exit").unwrap();
  1037. let mem = &mut [
  1038. 0xaa, 0xbb, 0x11, 0x22, 0x33, 0x44, 0xcc, 0xdd
  1039. ];
  1040. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1041. assert_eq!(vm.execute_program(mem).unwrap(), 0x44332211);
  1042. }
  1043. #[test]
  1044. fn test_vm_le16() {
  1045. let prog = assemble("
  1046. ldxh r0, [r1]
  1047. le16 r0
  1048. exit").unwrap();
  1049. let mem = &mut [
  1050. 0x22, 0x11
  1051. ];
  1052. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1053. assert_eq!(vm.execute_program(mem).unwrap(), 0x1122);
  1054. }
  1055. #[test]
  1056. fn test_vm_le32() {
  1057. let prog = assemble("
  1058. ldxw r0, [r1]
  1059. le32 r0
  1060. exit").unwrap();
  1061. let mem = &mut [
  1062. 0x44, 0x33, 0x22, 0x11
  1063. ];
  1064. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1065. assert_eq!(vm.execute_program(mem).unwrap(), 0x11223344);
  1066. }
  1067. #[test]
  1068. fn test_vm_le64() {
  1069. let prog = assemble("
  1070. ldxdw r0, [r1]
  1071. le64 r0
  1072. exit").unwrap();
  1073. let mem = &mut [
  1074. 0x88, 0x77, 0x66, 0x55, 0x44, 0x33, 0x22, 0x11
  1075. ];
  1076. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1077. assert_eq!(vm.execute_program(mem).unwrap(), 0x1122334455667788);
  1078. }
  1079. #[test]
  1080. fn test_vm_lsh_reg() {
  1081. let prog = assemble("
  1082. mov r0, 0x1
  1083. mov r7, 4
  1084. lsh r0, r7
  1085. exit").unwrap();
  1086. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1087. assert_eq!(vm.execute_program().unwrap(), 0x10);
  1088. }
  1089. #[test]
  1090. fn test_vm_mod() {
  1091. let prog = assemble("
  1092. mov32 r0, 5748
  1093. mod32 r0, 92
  1094. mov32 r1, 13
  1095. mod32 r0, r1
  1096. exit").unwrap();
  1097. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1098. assert_eq!(vm.execute_program().unwrap(), 0x5);
  1099. }
  1100. #[test]
  1101. fn test_vm_mod32() {
  1102. let prog = assemble("
  1103. lddw r0, 0x100000003
  1104. mod32 r0, 3
  1105. exit").unwrap();
  1106. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1107. assert_eq!(vm.execute_program().unwrap(), 0x0);
  1108. }
  1109. #[test]
  1110. fn test_vm_mod64() {
  1111. let prog = assemble("
  1112. mov32 r0, -1316649930
  1113. lsh r0, 32
  1114. or r0, 0x100dc5c8
  1115. mov32 r1, 0xdde263e
  1116. lsh r1, 32
  1117. or r1, 0x3cbef7f3
  1118. mod r0, r1
  1119. mod r0, 0x658f1778
  1120. exit").unwrap();
  1121. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1122. assert_eq!(vm.execute_program().unwrap(), 0x30ba5a04);
  1123. }
  1124. #[test]
  1125. fn test_vm_mov() {
  1126. let prog = assemble("
  1127. mov32 r1, 1
  1128. mov32 r0, r1
  1129. exit").unwrap();
  1130. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1131. assert_eq!(vm.execute_program().unwrap(), 0x1);
  1132. }
  1133. #[test]
  1134. fn test_vm_mul32_imm() {
  1135. let prog = assemble("
  1136. mov r0, 3
  1137. mul32 r0, 4
  1138. exit").unwrap();
  1139. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1140. assert_eq!(vm.execute_program().unwrap(), 0xc);
  1141. }
  1142. #[test]
  1143. fn test_vm_mul32_reg() {
  1144. let prog = assemble("
  1145. mov r0, 3
  1146. mov r1, 4
  1147. mul32 r0, r1
  1148. exit").unwrap();
  1149. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1150. assert_eq!(vm.execute_program().unwrap(), 0xc);
  1151. }
  1152. #[test]
  1153. fn test_vm_mul32_reg_overflow() {
  1154. let prog = assemble("
  1155. mov r0, 0x40000001
  1156. mov r1, 4
  1157. mul32 r0, r1
  1158. exit").unwrap();
  1159. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1160. assert_eq!(vm.execute_program().unwrap(), 0x4);
  1161. }
  1162. #[test]
  1163. fn test_vm_mul64_imm() {
  1164. let prog = assemble("
  1165. mov r0, 0x40000001
  1166. mul r0, 4
  1167. exit").unwrap();
  1168. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1169. assert_eq!(vm.execute_program().unwrap(), 0x100000004);
  1170. }
  1171. #[test]
  1172. fn test_vm_mul64_reg() {
  1173. let prog = assemble("
  1174. mov r0, 0x40000001
  1175. mov r1, 4
  1176. mul r0, r1
  1177. exit").unwrap();
  1178. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1179. assert_eq!(vm.execute_program().unwrap(), 0x100000004);
  1180. }
  1181. #[test]
  1182. fn test_vm_mul_loop() {
  1183. let prog = assemble("
  1184. mov r0, 0x7
  1185. add r1, 0xa
  1186. lsh r1, 0x20
  1187. rsh r1, 0x20
  1188. jeq r1, 0x0, +4
  1189. mov r0, 0x7
  1190. mul r0, 0x7
  1191. add r1, -1
  1192. jne r1, 0x0, -3
  1193. exit").unwrap();
  1194. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1195. assert_eq!(vm.execute_program().unwrap(), 0x75db9c97);
  1196. }
  1197. #[test]
  1198. fn test_vm_neg64() {
  1199. let prog = assemble("
  1200. mov32 r0, 2
  1201. neg r0
  1202. exit").unwrap();
  1203. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1204. assert_eq!(vm.execute_program().unwrap(), 0xfffffffffffffffe);
  1205. }
  1206. #[test]
  1207. fn test_vm_neg() {
  1208. let prog = assemble("
  1209. mov32 r0, 2
  1210. neg32 r0
  1211. exit").unwrap();
  1212. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1213. assert_eq!(vm.execute_program().unwrap(), 0xfffffffe);
  1214. }
  1215. #[test]
  1216. fn test_vm_prime() {
  1217. let prog = assemble("
  1218. mov r1, 67
  1219. mov r0, 0x1
  1220. mov r2, 0x2
  1221. jgt r1, 0x2, +4
  1222. ja +10
  1223. add r2, 0x1
  1224. mov r0, 0x1
  1225. jge r2, r1, +7
  1226. mov r3, r1
  1227. div r3, r2
  1228. mul r3, r2
  1229. mov r4, r1
  1230. sub r4, r3
  1231. mov r0, 0x0
  1232. jne r4, 0x0, -10
  1233. exit").unwrap();
  1234. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1235. assert_eq!(vm.execute_program().unwrap(), 0x1);
  1236. }
  1237. #[test]
  1238. fn test_vm_rhs32() {
  1239. let prog = assemble("
  1240. xor r0, r0
  1241. sub r0, 1
  1242. rsh32 r0, 8
  1243. exit").unwrap();
  1244. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1245. assert_eq!(vm.execute_program().unwrap(), 0x00ffffff);
  1246. }
  1247. #[test]
  1248. fn test_vm_rsh_reg() {
  1249. let prog = assemble("
  1250. mov r0, 0x10
  1251. mov r7, 4
  1252. rsh r0, r7
  1253. exit").unwrap();
  1254. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1255. assert_eq!(vm.execute_program().unwrap(), 0x1);
  1256. }
  1257. #[test]
  1258. fn test_vm_stack() {
  1259. let prog = assemble("
  1260. mov r1, 51
  1261. stdw [r10-16], 0xab
  1262. stdw [r10-8], 0xcd
  1263. and r1, 1
  1264. lsh r1, 3
  1265. mov r2, r10
  1266. add r2, r1
  1267. ldxdw r0, [r2-16]
  1268. exit").unwrap();
  1269. let vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1270. assert_eq!(vm.execute_program().unwrap(), 0xcd);
  1271. }
  1272. #[test]
  1273. fn test_vm_stack2() {
  1274. let prog = assemble("
  1275. stb [r10-4], 0x01
  1276. stb [r10-3], 0x02
  1277. stb [r10-2], 0x03
  1278. stb [r10-1], 0x04
  1279. mov r1, r10
  1280. mov r2, 0x4
  1281. sub r1, r2
  1282. call 1
  1283. mov r1, 0
  1284. ldxb r2, [r10-4]
  1285. ldxb r3, [r10-3]
  1286. ldxb r4, [r10-2]
  1287. ldxb r5, [r10-1]
  1288. call 0
  1289. xor r0, 0x2a2a2a2a
  1290. exit").unwrap();
  1291. let mut vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1292. vm.register_helper(0, helpers::gather_bytes).unwrap();
  1293. vm.register_helper(1, helpers::memfrob).unwrap();
  1294. assert_eq!(vm.execute_program().unwrap(), 0x01020304);
  1295. }
  1296. #[test]
  1297. fn test_vm_stb() {
  1298. let prog = assemble("
  1299. stb [r1+2], 0x11
  1300. ldxb r0, [r1+2]
  1301. exit").unwrap();
  1302. let mem = &mut [
  1303. 0xaa, 0xbb, 0xff, 0xcc, 0xdd
  1304. ];
  1305. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1306. assert_eq!(vm.execute_program(mem).unwrap(), 0x11);
  1307. }
  1308. #[test]
  1309. fn test_vm_stdw() {
  1310. let prog = assemble("
  1311. stdw [r1+2], 0x44332211
  1312. ldxdw r0, [r1+2]
  1313. exit").unwrap();
  1314. let mem = &mut [
  1315. 0xaa, 0xbb, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
  1316. 0xff, 0xff, 0xcc, 0xdd
  1317. ];
  1318. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1319. assert_eq!(vm.execute_program(mem).unwrap(), 0x44332211);
  1320. }
  1321. #[test]
  1322. fn test_vm_sth() {
  1323. let prog = assemble("
  1324. sth [r1+2], 0x2211
  1325. ldxh r0, [r1+2]
  1326. exit").unwrap();
  1327. let mem = &mut [
  1328. 0xaa, 0xbb, 0xff, 0xff, 0xcc, 0xdd
  1329. ];
  1330. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1331. assert_eq!(vm.execute_program(mem).unwrap(), 0x2211);
  1332. }
  1333. #[test]
  1334. fn test_vm_string_stack() {
  1335. let prog = assemble("
  1336. mov r1, 0x78636261
  1337. stxw [r10-8], r1
  1338. mov r6, 0x0
  1339. stxb [r10-4], r6
  1340. stxb [r10-12], r6
  1341. mov r1, 0x79636261
  1342. stxw [r10-16], r1
  1343. mov r1, r10
  1344. add r1, -8
  1345. mov r2, r1
  1346. call 0x4
  1347. mov r1, r0
  1348. mov r0, 0x1
  1349. lsh r1, 0x20
  1350. rsh r1, 0x20
  1351. jne r1, 0x0, +11
  1352. mov r1, r10
  1353. add r1, -8
  1354. mov r2, r10
  1355. add r2, -16
  1356. call 0x4
  1357. mov r1, r0
  1358. lsh r1, 0x20
  1359. rsh r1, 0x20
  1360. mov r0, 0x1
  1361. jeq r1, r6, +1
  1362. mov r0, 0x0
  1363. exit").unwrap();
  1364. let mut vm = rbpf::EbpfVmNoData::new(Some(&prog)).unwrap();
  1365. vm.register_helper(4, helpers::strcmp).unwrap();
  1366. assert_eq!(vm.execute_program().unwrap(), 0x0);
  1367. }
  1368. #[test]
  1369. fn test_vm_stw() {
  1370. let prog = assemble("
  1371. stw [r1+2], 0x44332211
  1372. ldxw r0, [r1+2]
  1373. exit").unwrap();
  1374. let mem = &mut [
  1375. 0xaa, 0xbb, 0xff, 0xff, 0xff, 0xff, 0xcc, 0xdd
  1376. ];
  1377. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1378. assert_eq!(vm.execute_program(mem).unwrap(), 0x44332211);
  1379. }
  1380. #[test]
  1381. fn test_vm_stxb() {
  1382. let prog = assemble("
  1383. mov32 r2, 0x11
  1384. stxb [r1+2], r2
  1385. ldxb r0, [r1+2]
  1386. exit").unwrap();
  1387. let mem = &mut [
  1388. 0xaa, 0xbb, 0xff, 0xcc, 0xdd
  1389. ];
  1390. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1391. assert_eq!(vm.execute_program(mem).unwrap(), 0x11);
  1392. }
  1393. #[test]
  1394. fn test_vm_stxb_all() {
  1395. let prog = assemble("
  1396. mov r0, 0xf0
  1397. mov r2, 0xf2
  1398. mov r3, 0xf3
  1399. mov r4, 0xf4
  1400. mov r5, 0xf5
  1401. mov r6, 0xf6
  1402. mov r7, 0xf7
  1403. mov r8, 0xf8
  1404. stxb [r1], r0
  1405. stxb [r1+1], r2
  1406. stxb [r1+2], r3
  1407. stxb [r1+3], r4
  1408. stxb [r1+4], r5
  1409. stxb [r1+5], r6
  1410. stxb [r1+6], r7
  1411. stxb [r1+7], r8
  1412. ldxdw r0, [r1]
  1413. be64 r0
  1414. exit").unwrap();
  1415. let mem = &mut [
  1416. 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff
  1417. ];
  1418. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1419. assert_eq!(vm.execute_program(mem).unwrap(), 0xf0f2f3f4f5f6f7f8);
  1420. }
  1421. #[test]
  1422. fn test_vm_stxb_all2() {
  1423. let prog = assemble("
  1424. mov r0, r1
  1425. mov r1, 0xf1
  1426. mov r9, 0xf9
  1427. stxb [r0], r1
  1428. stxb [r0+1], r9
  1429. ldxh r0, [r0]
  1430. be16 r0
  1431. exit").unwrap();
  1432. let mem = &mut [
  1433. 0xff, 0xff
  1434. ];
  1435. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1436. assert_eq!(vm.execute_program(mem).unwrap(), 0xf1f9);
  1437. }
  1438. #[test]
  1439. fn test_vm_stxb_chain() {
  1440. let prog = assemble("
  1441. mov r0, r1
  1442. ldxb r9, [r0+0]
  1443. stxb [r0+1], r9
  1444. ldxb r8, [r0+1]
  1445. stxb [r0+2], r8
  1446. ldxb r7, [r0+2]
  1447. stxb [r0+3], r7
  1448. ldxb r6, [r0+3]
  1449. stxb [r0+4], r6
  1450. ldxb r5, [r0+4]
  1451. stxb [r0+5], r5
  1452. ldxb r4, [r0+5]
  1453. stxb [r0+6], r4
  1454. ldxb r3, [r0+6]
  1455. stxb [r0+7], r3
  1456. ldxb r2, [r0+7]
  1457. stxb [r0+8], r2
  1458. ldxb r1, [r0+8]
  1459. stxb [r0+9], r1
  1460. ldxb r0, [r0+9]
  1461. exit").unwrap();
  1462. let mem = &mut [
  1463. 0x2a, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  1464. 0x00, 0x00
  1465. ];
  1466. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1467. assert_eq!(vm.execute_program(mem).unwrap(), 0x2a);
  1468. }
  1469. #[test]
  1470. fn test_vm_stxdw() {
  1471. let prog = assemble("
  1472. mov r2, -2005440939
  1473. lsh r2, 32
  1474. or r2, 0x44332211
  1475. stxdw [r1+2], r2
  1476. ldxdw r0, [r1+2]
  1477. exit").unwrap();
  1478. let mem = &mut [
  1479. 0xaa, 0xbb, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
  1480. 0xff, 0xff, 0xcc, 0xdd
  1481. ];
  1482. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1483. assert_eq!(vm.execute_program(mem).unwrap(), 0x8877665544332211);
  1484. }
  1485. #[test]
  1486. fn test_vm_stxh() {
  1487. let prog = assemble("
  1488. mov32 r2, 0x2211
  1489. stxh [r1+2], r2
  1490. ldxh r0, [r1+2]
  1491. exit").unwrap();
  1492. let mem = &mut [
  1493. 0xaa, 0xbb, 0xff, 0xff, 0xcc, 0xdd
  1494. ];
  1495. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1496. assert_eq!(vm.execute_program(mem).unwrap(), 0x2211);
  1497. }
  1498. #[test]
  1499. fn test_vm_stxw() {
  1500. let prog = assemble("
  1501. mov32 r2, 0x44332211
  1502. stxw [r1+2], r2
  1503. ldxw r0, [r1+2]
  1504. exit").unwrap();
  1505. let mem = &mut [
  1506. 0xaa, 0xbb, 0xff, 0xff, 0xff, 0xff, 0xcc, 0xdd
  1507. ];
  1508. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1509. assert_eq!(vm.execute_program(mem).unwrap(), 0x44332211);
  1510. }
  1511. #[test]
  1512. fn test_vm_subnet() {
  1513. let prog = assemble("
  1514. mov r2, 0xe
  1515. ldxh r3, [r1+12]
  1516. jne r3, 0x81, +2
  1517. mov r2, 0x12
  1518. ldxh r3, [r1+16]
  1519. and r3, 0xffff
  1520. jne r3, 0x8, +5
  1521. add r1, r2
  1522. mov r0, 0x1
  1523. ldxw r1, [r1+16]
  1524. and r1, 0xffffff
  1525. jeq r1, 0x1a8c0, +1
  1526. mov r0, 0x0
  1527. exit").unwrap();
  1528. let mem = &mut [
  1529. 0x00, 0x00, 0xc0, 0x9f, 0xa0, 0x97, 0x00, 0xa0,
  1530. 0xcc, 0x3b, 0xbf, 0xfa, 0x08, 0x00, 0x45, 0x10,
  1531. 0x00, 0x3c, 0x46, 0x3c, 0x40, 0x00, 0x40, 0x06,
  1532. 0x73, 0x1c, 0xc0, 0xa8, 0x01, 0x02, 0xc0, 0xa8,
  1533. 0x01, 0x01, 0x06, 0x0e, 0x00, 0x17, 0x99, 0xc5,
  1534. 0xa0, 0xec, 0x00, 0x00, 0x00, 0x00, 0xa0, 0x02,
  1535. 0x7d, 0x78, 0xe0, 0xa3, 0x00, 0x00, 0x02, 0x04,
  1536. 0x05, 0xb4, 0x04, 0x02, 0x08, 0x0a, 0x00, 0x9c,
  1537. 0x27, 0x24, 0x00, 0x00, 0x00, 0x00, 0x01, 0x03,
  1538. 0x03, 0x00
  1539. ];
  1540. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1541. assert_eq!(vm.execute_program(mem).unwrap(), 0x1);
  1542. }
  1543. const PROG_TCP_PORT_80: [u8;152] = [
  1544. 0x71, 0x12, 0x0c, 0x00, 0x00, 0x00, 0x00, 0x00,
  1545. 0x71, 0x13, 0x0d, 0x00, 0x00, 0x00, 0x00, 0x00,
  1546. 0x67, 0x03, 0x00, 0x00, 0x08, 0x00, 0x00, 0x00,
  1547. 0x4f, 0x23, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  1548. 0xb7, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  1549. 0x55, 0x03, 0x0c, 0x00, 0x08, 0x00, 0x00, 0x00,
  1550. 0x71, 0x12, 0x17, 0x00, 0x00, 0x00, 0x00, 0x00,
  1551. 0x55, 0x02, 0x0a, 0x00, 0x06, 0x00, 0x00, 0x00,
  1552. 0x71, 0x12, 0x0e, 0x00, 0x00, 0x00, 0x00, 0x00,
  1553. 0x07, 0x01, 0x00, 0x00, 0x0e, 0x00, 0x00, 0x00,
  1554. 0x57, 0x02, 0x00, 0x00, 0x0f, 0x00, 0x00, 0x00,
  1555. 0x67, 0x02, 0x00, 0x00, 0x02, 0x00, 0x00, 0x00,
  1556. 0x0f, 0x21, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  1557. 0x69, 0x12, 0x02, 0x00, 0x00, 0x00, 0x00, 0x00,
  1558. 0x15, 0x02, 0x02, 0x00, 0x00, 0x50, 0x00, 0x00,
  1559. 0x69, 0x11, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  1560. 0x55, 0x01, 0x01, 0x00, 0x00, 0x50, 0x00, 0x00,
  1561. 0xb7, 0x00, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00,
  1562. 0x95, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00
  1563. ];
  1564. #[test]
  1565. fn test_vm_tcp_port80_match() {
  1566. let mem = &mut [
  1567. 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x00, 0x06,
  1568. 0x07, 0x08, 0x09, 0x0a, 0x08, 0x00, 0x45, 0x00,
  1569. 0x00, 0x56, 0x00, 0x01, 0x00, 0x00, 0x40, 0x06,
  1570. 0xf9, 0x4d, 0xc0, 0xa8, 0x00, 0x01, 0xc0, 0xa8,
  1571. 0x00, 0x02, 0x27, 0x10, 0x00, 0x50, 0x00, 0x00,
  1572. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x50, 0x02,
  1573. 0x20, 0x00, 0xc5, 0x18, 0x00, 0x00, 0x44, 0x44,
  1574. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1575. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1576. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1577. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1578. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1579. 0x44, 0x44, 0x44, 0x44
  1580. ];
  1581. let prog = &PROG_TCP_PORT_80;
  1582. let vm = rbpf::EbpfVmRaw::new(Some(prog)).unwrap();
  1583. assert_eq!(vm.execute_program(mem).unwrap(), 0x1);
  1584. }
  1585. #[test]
  1586. fn test_vm_tcp_port80_nomatch() {
  1587. let mem = &mut [
  1588. 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x00, 0x06,
  1589. 0x07, 0x08, 0x09, 0x0a, 0x08, 0x00, 0x45, 0x00,
  1590. 0x00, 0x56, 0x00, 0x01, 0x00, 0x00, 0x40, 0x06,
  1591. 0xf9, 0x4d, 0xc0, 0xa8, 0x00, 0x01, 0xc0, 0xa8,
  1592. 0x00, 0x02, 0x00, 0x16, 0x27, 0x10, 0x00, 0x00,
  1593. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x51, 0x02,
  1594. 0x20, 0x00, 0xc5, 0x18, 0x00, 0x00, 0x44, 0x44,
  1595. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1596. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1597. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1598. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1599. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1600. 0x44, 0x44, 0x44, 0x44
  1601. ];
  1602. let prog = &PROG_TCP_PORT_80;
  1603. let vm = rbpf::EbpfVmRaw::new(Some(prog)).unwrap();
  1604. assert_eq!(vm.execute_program(mem).unwrap(), 0x0);
  1605. }
  1606. #[test]
  1607. fn test_vm_tcp_port80_nomatch_ethertype() {
  1608. let mem = &mut [
  1609. 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x00, 0x06,
  1610. 0x07, 0x08, 0x09, 0x0a, 0x08, 0x01, 0x45, 0x00,
  1611. 0x00, 0x56, 0x00, 0x01, 0x00, 0x00, 0x40, 0x06,
  1612. 0xf9, 0x4d, 0xc0, 0xa8, 0x00, 0x01, 0xc0, 0xa8,
  1613. 0x00, 0x02, 0x27, 0x10, 0x00, 0x50, 0x00, 0x00,
  1614. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x50, 0x02,
  1615. 0x20, 0x00, 0xc5, 0x18, 0x00, 0x00, 0x44, 0x44,
  1616. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1617. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1618. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1619. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1620. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1621. 0x44, 0x44, 0x44, 0x44
  1622. ];
  1623. let prog = &PROG_TCP_PORT_80;
  1624. let vm = rbpf::EbpfVmRaw::new(Some(prog)).unwrap();
  1625. assert_eq!(vm.execute_program(mem).unwrap(), 0x0);
  1626. }
  1627. #[test]
  1628. fn test_vm_tcp_port80_nomatch_proto() {
  1629. let mem = &mut [
  1630. 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x00, 0x06,
  1631. 0x07, 0x08, 0x09, 0x0a, 0x08, 0x00, 0x45, 0x00,
  1632. 0x00, 0x56, 0x00, 0x01, 0x00, 0x00, 0x40, 0x11,
  1633. 0xf9, 0x4d, 0xc0, 0xa8, 0x00, 0x01, 0xc0, 0xa8,
  1634. 0x00, 0x02, 0x27, 0x10, 0x00, 0x50, 0x00, 0x00,
  1635. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x50, 0x02,
  1636. 0x20, 0x00, 0xc5, 0x18, 0x00, 0x00, 0x44, 0x44,
  1637. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1638. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1639. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1640. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1641. 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44, 0x44,
  1642. 0x44, 0x44, 0x44, 0x44
  1643. ];
  1644. let prog = &PROG_TCP_PORT_80;
  1645. let vm = rbpf::EbpfVmRaw::new(Some(prog)).unwrap();
  1646. assert_eq!(vm.execute_program(mem).unwrap(), 0x0);
  1647. }
  1648. #[test]
  1649. fn test_vm_tcp_sack_match() {
  1650. let mut mem = TCP_SACK_MATCH.to_vec();
  1651. let prog = assemble(TCP_SACK_ASM).unwrap();
  1652. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1653. assert_eq!(vm.execute_program(mem.as_mut_slice()).unwrap(), 0x1);
  1654. }
  1655. #[test]
  1656. fn test_vm_tcp_sack_nomatch() {
  1657. let mut mem = TCP_SACK_NOMATCH.to_vec();
  1658. let prog = assemble(TCP_SACK_ASM).unwrap();
  1659. let vm = rbpf::EbpfVmRaw::new(Some(&prog)).unwrap();
  1660. assert_eq!(vm.execute_program(mem.as_mut_slice()).unwrap(), 0x0);
  1661. }