MipsProcessor.java 17 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576
  1. /*
  2. * To change this license header, choose License Headers in Project Properties.
  3. * To change this template file, choose Tools | Templates
  4. * and open the template in the editor.
  5. */
  6. package tools.mips;
  7. import API.Utils;
  8. import common.Instruction;
  9. import java.io.BufferedReader;
  10. import java.io.InputStreamReader;
  11. import java.util.HashMap;
  12. import java.util.Map;
  13. import java.util.logging.Level;
  14. import java.util.logging.Logger;
  15. import target.mips.Mips;
  16. /**
  17. *
  18. * @author EUGENIO CARVALHO
  19. */
  20. public class MipsProcessor {
  21. public MipsSettings settings;
  22. public Memory MD;
  23. public Memory MI;
  24. public long PC = 0;
  25. public RegisterBank RBank;
  26. public HashMap<String, Instruction> instructions;
  27. public HashMap<String, Boolean> breakPoint = new HashMap<>();
  28. public MipsProcessor(MipsSettings settings) throws Exception {
  29. this.settings = settings;
  30. int size = (16 * 1024); //16KB
  31. MI = new Memory(settings.Get("mi"), size, false);
  32. MD = new Memory(settings.Get("md"), size, true);
  33. // System.out.println("MD:" + MD);
  34. // Limpa todos os dados armazenados
  35. // MD.Reset();
  36. // System.out.println("Init Md:" + MD.R(0L));
  37. RBank = new RegisterBank(32);
  38. InitInstructions();
  39. // SetBreak("44,48,58,5c");
  40. // InitInstructions2();
  41. }
  42. public MipsProcessor SetBreak(String address) {
  43. for (String addr : address.split(",")) {
  44. if (!addr.equals("")) {
  45. breakPoint.put(addr, true);
  46. }
  47. }
  48. return this;
  49. }
  50. public MipsProcessor Persist() {
  51. MD.Save();
  52. return this;
  53. }
  54. protected void Log(String msg) {
  55. if (!settings.debugmode) {
  56. return;
  57. }
  58. if (breakPoint.size() > 0 && !breakPoint.containsKey(Integer.toHexString((int) PC))) {
  59. return;
  60. }
  61. System.out.println(msg);
  62. }
  63. public MipsProcessor Run() {
  64. BufferedReader br = new BufferedReader(new InputStreamReader(System.in));
  65. // Fetch
  66. // System.out.println("MI:" + MI);
  67. try {
  68. Instruction instruction;
  69. int i = 0;
  70. String cAddress;
  71. while (true) {
  72. long inst = MI.R(PC);
  73. instruction = Decode(inst);
  74. if (instruction.eq("inst", "stop")) {
  75. break;
  76. }
  77. cAddress = Integer.toHexString((int) PC);
  78. Log("Interation(" + (i++) + ")["
  79. + cAddress + "]"
  80. + instruction.G("inst"));
  81. Execute(instruction);
  82. Log("Registradores(\n" + RBank
  83. + ")\b nextPC:" + Integer.toHexString((int) PC));
  84. if (settings.stepByStep || breakPoint.containsKey(cAddress)) {
  85. br.readLine();
  86. }
  87. // Decode
  88. // Exec
  89. // Persist
  90. } // return true;
  91. } catch (Exception ex) {
  92. Logger.getLogger(MipsProcessor.class.getName()).log(Level.SEVERE, null, ex);
  93. }
  94. return this;
  95. }
  96. public Instruction Decode(long instruction) {
  97. int val = (int) instruction;
  98. String bin = Utils.pad(32, Integer.toBinaryString(val));
  99. // System.out.println("Run:" + bin + ":" + bin.length());
  100. String codop = bin.substring(0, 6), key, func = "";
  101. if (codop.equals("000000")) {
  102. func = bin.substring(26);
  103. key = "@" + func;
  104. } else {
  105. key = codop;
  106. }
  107. // System.out.println(">>: "
  108. // // + "\n" + instruction
  109. // + "\n" + bin
  110. // // // + "\n" + val
  111. // // + "\nKey:" + key
  112. // + "\n" + instructions.get(key));
  113. if (!instructions.containsKey(key)) {
  114. System.out.println("Não encontrou a instrução " + key);
  115. return null;
  116. }
  117. Instruction i = instructions.get(key).copy();
  118. String rs = bin.substring(6, 11),
  119. rt = bin.substring(11, 16);
  120. switch (i.G("type")) {
  121. case "R":
  122. i.S("rs.bin", rs);
  123. i.S("rt.bin", rt);
  124. i.S("rd.bin", bin.substring(16, 21));
  125. i.S("shamt.bin", bin.substring(21, 26));
  126. i.S("funct.bin", func);
  127. i.S("rs", Long.parseLong(rs, 2));
  128. i.S("rt", Long.parseLong(rt, 2));
  129. i.S("rd", Long.parseLong(bin.substring(16, 21), 2));
  130. i.S("shamt", Long.parseLong(bin.substring(21, 26), 2));
  131. i.S("funct", func);
  132. break;
  133. case "I":
  134. i.S("rs.bin", rs);
  135. i.S("rt.bin", rt);
  136. i.S("imm.bin", bin.substring(16));
  137. i.S("rs", Long.parseLong(rs, 2));
  138. i.S("rt", Long.parseLong(rt, 2));
  139. i.S("imm", bin32ToDec(bin.substring(16)));
  140. // System.out.println("II:" + bin.substring(16)
  141. // + "\n:" + bin32ToDec(Utils.padPreserveSignal(32, bin.substring(16)))
  142. // + "\n:" + (Long.parseLong(Utils.padPreserveSignal(32, bin.substring(16)), 2) >> 0)
  143. // );
  144. // System.out.println("IIII:" + bin32ToDec(bin.substring(16)));
  145. break;
  146. case "J":
  147. i.S("addr.bin", bin.substring(6));
  148. i.S("imm", bin32ToDec(bin.substring(6)));
  149. // System.out.println("JJJJ:" + bin32ToDec(bin.substring(6)));
  150. }
  151. return i;
  152. }
  153. public static long bin32ToDec(String bin) {
  154. bin = Utils.padPreserveSignal(32, bin);
  155. // System.out.println("BIN32DEC:" + bin);
  156. if (bin.charAt(0) == '0') {
  157. return Long.parseLong(bin, 2);
  158. } else {
  159. long number = 0;
  160. for (int index = 0; index < 32; index++) {
  161. int b = bin.charAt(index) - '0';
  162. number = number << 1 | b;
  163. }
  164. return (int) number;
  165. }
  166. }
  167. public String IntToHexStr(Integer n) {
  168. return IntToHexStr(n) + "";
  169. }
  170. public Integer IntToHex(Integer n) {
  171. return Integer.valueOf(String.valueOf(n), 16);
  172. }
  173. protected void InitInstructions() {
  174. instructions = new HashMap<String, Instruction>();
  175. String key;
  176. for (Map.Entry<String, Instruction> entry : Mips.Codops.entrySet()) {
  177. // String string = entry.getKey();
  178. Instruction instruction = entry.getValue();
  179. key = instruction.G("codop");
  180. if (instruction.eq("codop", "000000")) {
  181. key = "@" + instruction.G("func");
  182. }
  183. // System.out.println("Add_Instruction: " + key + "\n");
  184. // System.out.println("===" + entry.getKey());
  185. instructions.put(key, instruction);
  186. };
  187. }
  188. private void Execute(Instruction inst) throws Exception {
  189. // System.out.println("Exec :" + inst);
  190. long rs = 0,
  191. rt = 0,
  192. imm = 0,
  193. rd = 0,
  194. shamt = 0;
  195. boolean hasImm = true;
  196. switch (inst.G("type")) {
  197. case "R":
  198. rd = inst.getInt("rd");
  199. shamt = inst.getInt("shamt");
  200. hasImm = false;
  201. case "I":
  202. rs = inst.getInt("rs");
  203. rt = inst.getInt("rt");
  204. case "J":
  205. if (hasImm) {
  206. // System.out.println("HAS_IMM:" + inst.G("imm"));
  207. imm = inst.getLong("imm");
  208. }
  209. }
  210. Log(inst.G("inst")
  211. + " [rd:" + RBank.names.get((int) rd)
  212. + "] [rs:" + RBank.names.get((int) rs)
  213. + "] [rt:" + RBank.names.get((int) rt)
  214. + "] [shamt:" + shamt
  215. + "] [imm:" + imm + "]");
  216. switch (inst.G("inst")) {
  217. // R
  218. case "add":
  219. case "addu":
  220. RBank.W(rd, RBank.R(rs) + RBank.R(rt));
  221. break;
  222. case "addi":
  223. case "addiu":
  224. // System.out.println("RBank.R(rs) + imm:" + RBank.R(rs) + ":" + imm);
  225. RBank.W(rt, RBank.R(rs) + imm);
  226. break;
  227. case "stop":
  228. break;
  229. case "and":
  230. case "andi":
  231. RBank.W(rd, RBank.R(rs) & RBank.R(rt));
  232. break;
  233. case "div":
  234. case "divu":
  235. RBank.W(RBank.REG_LO, RBank.R(rs) / RBank.R(rt));
  236. RBank.W(RBank.REG_HI, RBank.R(rs) % RBank.R(rt));
  237. break;
  238. case "jr":
  239. PC = RBank.R(rs);
  240. break;
  241. case "mfhi":
  242. RBank.W(rd, RBank.R(RBank.REG_HI));
  243. break;
  244. case "mflo":
  245. RBank.W(rd, RBank.R(RBank.REG_LO));
  246. break;
  247. case "mthi":
  248. RBank.W(RBank.R(RBank.REG_HI), RBank.R(rs));
  249. break;
  250. case "mtlo":
  251. RBank.W(RBank.R(RBank.REG_LO), RBank.R(rs));
  252. break;
  253. case "mult":
  254. case "multu":
  255. // verificar a questao do hi e lo
  256. // System.out.println("Mult:"
  257. // + rs + "(" + RBank.names.get((int) rs) + "):"
  258. // + rt + "(" + RBank.names.get((int) rt) + ")");
  259. RBank.W(RBank.REG_LO, RBank.R(rs) * RBank.R(rt));
  260. break;
  261. // case "nor":
  262. // RBank.W(rd, rs * rt);
  263. // break;
  264. case "or":
  265. RBank.W(rd, RBank.R(rs) | RBank.R(rt));
  266. break;
  267. case "sll":
  268. RBank.W(rd, RBank.R(rt) << shamt);
  269. break;
  270. case "slt":
  271. RBank.W(rd, (RBank.R(rs) < RBank.R(rt)) ? 1 : 0);
  272. break;
  273. case "sra":
  274. RBank.W(rd, RBank.R(rt) >> shamt);
  275. break;
  276. case "srl":
  277. RBank.W(rd, RBank.R(rt) >>> shamt);
  278. break;
  279. case "sub":
  280. case "subu":
  281. RBank.W(rd, RBank.R(rs) - RBank.R(rt));
  282. break;
  283. case "xor":
  284. RBank.W(rd, RBank.R(rs) ^ RBank.R(rt));
  285. break;
  286. // // I
  287. case "beq":
  288. if (RBank.R(rs) == RBank.R(rt)) {
  289. PC += ((imm + 1) << 2);
  290. return;
  291. }
  292. break;
  293. case "bgez":
  294. if (RBank.R(rs) >= 0) {
  295. PC += ((imm + 1) << 2);
  296. return;
  297. }
  298. break;
  299. case "bgtz":
  300. if (RBank.R(rs) > 0) {
  301. PC += ((imm + 1) << 2);
  302. return;
  303. }
  304. break;
  305. case "blez":
  306. if (RBank.R(rs) <= 0) {
  307. PC += ((imm + 1) << 2);
  308. return;
  309. }
  310. break;
  311. case "bltz":
  312. // System.out.println("BLTZ:" + rs);
  313. if (RBank.R(rs) < 0) {
  314. PC += ((imm + 1) << 2);
  315. return;
  316. }
  317. break;
  318. case "bne":
  319. if (RBank.R(rs) != RBank.R(rt)) {
  320. PC += ((imm + 1) << 2);
  321. return;
  322. }
  323. break;
  324. // case "lb":
  325. // if (RBank.R(rs) != RBank.R(rt)) {
  326. // PC += imm << 2;
  327. // return;
  328. // }
  329. // case "lbu":
  330. // case "lh":
  331. // case "lhu":
  332. case "lui":
  333. RBank.W(rt, imm);
  334. break;
  335. case "lw":
  336. RBank.W(rt, MD.R(RBank.R(rs) + imm));
  337. Log(String.format("Load endereco '%d' <- '%d'\n", RBank.R(rs) + imm, MD.R(RBank.R(rs) + imm)));
  338. break;
  339. case "ori":
  340. RBank.W(rt, RBank.R(rs) | imm);
  341. break;
  342. case "slti":
  343. // case "sltiu":
  344. case "sw":
  345. Log(String.format("Store '%d' no endereco '%d'\n", RBank.R(rt), RBank.R(rs) + imm));
  346. MD.W(RBank.R(rs) + imm, RBank.R(rt));
  347. break;
  348. // case "xori":
  349. // J
  350. case "jal":
  351. RBank.W(31, PC);
  352. case "j":
  353. PC = imm << 2;
  354. return;
  355. default:
  356. throw new Exception("Instrução " + inst.G("inst") + " não definida!");
  357. }
  358. PC += 4;
  359. }
  360. }
  361. // protected void InitInstructions2() {
  362. // HashMap<String, Integer> x = new HashMap<String, Integer>();
  363. // //Constantes da instruções (Codop e Funct)
  364. // x.put("FUNCT_ADD", 32);
  365. // x.put("FUNCT_ADDU", 33);
  366. // x.put("FUNCT_SUB", 34);
  367. // x.put("FUNCT_SUBU", 35);
  368. // x.put("FUNCT_MULT", 24);
  369. // x.put("FUNCT_MULTU", 25);
  370. // x.put("FUNCT_AND", 36);
  371. // x.put("FUNCT_OR", 37);
  372. // x.put("FUNCT_XOR", 38);
  373. // x.put("FUNCT_NOR", 39);
  374. // x.put("FUNCT_DIV", 26);
  375. // x.put("FUNCT_DIVU", 27);
  376. // x.put("FUNCT_SLT", 42);
  377. //
  378. // x.put("FUNCT_SRL", 2);
  379. // x.put("FUNCT_SLL", 0);
  380. // x.put("FUNCT_SRA", 3);
  381. // x.put("FUNCT_SRLV", 6);
  382. // x.put("FUNCT_SLLV", 4);
  383. // x.put("FUNCT_SRAV", 7);
  384. //
  385. // x.put("FUNCT_MFHI", 16);
  386. // x.put("FUNCT_MFLO", 18);
  387. // x.put("FUNCT_JR", 8);
  388. //
  389. // x.put("FUNCT_NOP", 63);
  390. // x.put("NOP", 63);
  391. //
  392. ////Constante dos CODOPs
  393. // x.put("CODOP_ADDI", 8);
  394. // x.put("CODOP_ADDIU", 9);
  395. // x.put("CODOP_SLTI", 10);
  396. // x.put("CODOP_SLTIU", 11);
  397. // x.put("CODOP_ANDI", 12);
  398. // x.put("CODOP_ORI", 13);
  399. // x.put("CODOP_LUI", 15);
  400. //
  401. // x.put("CODOP_LB", 32);
  402. // x.put("CODOP_LH", 33);
  403. // x.put("CODOP_LW", 35);
  404. // x.put("CODOP_LBU", 36);
  405. // x.put("CODOP_LHU", 37);
  406. // x.put("CODOP_SB", 40);
  407. // x.put("CODOP_SH", 41);
  408. // x.put("CODOP_SW", 43);
  409. //
  410. // x.put("CODOP_BGEZ", 1);
  411. // x.put("CODOP_BEQ", 4);
  412. // x.put("CODOP_BNE", 5);
  413. // x.put("CODOP_BGTZ", 7);
  414. //
  415. // x.put("CODOP_JUMP", 2);
  416. // x.put("CODOP_JAL", 3);
  417. //
  418. // x.put("CODOP_STOP", 63);
  419. ////Constante das operações da ULA
  420. // x.put("SOMA", 1);
  421. // x.put("SUBTRACAO", 2);
  422. // x.put("MULTIPLICACAO", 3);
  423. // x.put("AND", 4);
  424. // x.put("OR", 5);
  425. // x.put("XOR", 6);
  426. // x.put("NOR", 7);
  427. // x.put("DIVISAO", 8);
  428. // x.put("SLT", 9);
  429. // x.put("SLTU", 10);
  430. // x.put("LUI", 11);
  431. //
  432. // x.put("SRL", 12); //Faz o shift usando o campo shamt
  433. // x.put("SLL", 13); //Faz o shift usando o campo shamt
  434. // x.put("SRA", 14); //Faz o shift usando o campo shamt
  435. //
  436. // x.put("SRLV", 15); //Faz o shift usando registrador
  437. // x.put("SLLV", 16); //Faz o shift usando registrador
  438. // x.put("SRAV", 17); //Faz o shift usando registrador
  439. // x.put("MOVE", 18);
  440. //
  441. // for (Map.Entry<String, Integer> entry : x.entrySet()) {
  442. // String string = entry.getKey();
  443. // System.out.println(string + ":" + Utils.pad(6, Integer.toBinaryString(entry.getValue())));
  444. // }
  445. // }
  446. //CODOP_JUMP:000010
  447. //CODOP_LBU:100100
  448. //NOP:111111
  449. //CODOP_STOP:111111
  450. //FUNCT_DIVU:011011
  451. //CODOP_LH:100001
  452. //MULTIPLICACAO:000011
  453. //SRLV:001111
  454. //NOR:000111
  455. //SLL:001101
  456. //FUNCT_SRA:000011
  457. //CODOP_ANDI:001100
  458. //AND:000100
  459. //FUNCT_SRL:000010
  460. //CODOP_ORI:001101
  461. //SRAV:010001
  462. //SLT:001001
  463. //SUBTRACAO:000010
  464. //CODOP_LW:100011
  465. //FUNCT_ADD:100000
  466. //SOMA:000001
  467. //FUNCT_MULTU:011001
  468. //CODOP_SLTI:001010
  469. //SLLV:010000
  470. //SLTU:001010
  471. //FUNCT_MULT:011000
  472. //CODOP_ADDIU:001001
  473. //LUI:001011
  474. //CODOP_SH:101001
  475. //XOR:000110
  476. //FUNCT_MFLO:010010
  477. //FUNCT_SRAV:000111
  478. //DIVISAO:001000
  479. //SRL:001100
  480. //SRA:001110
  481. //CODOP_SB:101000
  482. //CODOP_ADDI:001000
  483. //FUNCT_JR:001000
  484. //FUNCT_MFHI:010000
  485. //FUNCT_NOR:100111
  486. //FUNCT_NOP:111111
  487. //FUNCT_SUBU:100011
  488. //FUNCT_OR:100101
  489. //FUNCT_AND:100100
  490. //FUNCT_XOR:100110
  491. //FUNCT_DIV:011010
  492. //FUNCT_SRLV:000110
  493. //FUNCT_ADDU:100001
  494. //CODOP_LUI:001111
  495. //CODOP_BGEZ:000001
  496. //MOVE:010010
  497. //CODOP_SLTIU:001011
  498. //CODOP_JAL:000011
  499. //OR:000101
  500. //CODOP_SW:101011
  501. //FUNCT_SUB:100010
  502. //FUNCT_SLLV:000100
  503. //CODOP_LB:100000
  504. //CODOP_BNE:000101
  505. //FUNCT_SLL:000000
  506. //CODOP_LHU:100101
  507. //CODOP_BGTZ:000111
  508. //CODOP_BEQ:000100
  509. //FUNCT_SLT:101010
  510. /*
  511. 1652044928
  512. 1100010011110000011010010000000
  513. 1100010011110000011010010000000
  514. 011000 10011110000011010010000000
  515. 011000
  516. 596080229
  517. 00100011100001110111011001100101 - js
  518. 100011100001110111011001100101
  519. c
  520. 10010110000010000000001000101001
  521. */
  522. //1652044928 -> 01010010000001000100100100101000 ->
  523. //0: 0062783480 addiu sp,sp,-8