mkx86reg.pp 11 KB

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  1. {
  2. Copyright (c) 1998-2002 by Peter Vreman and Florian Klaempfl
  3. Convert i386reg.dat to several .inc files for usage with
  4. the Free pascal compiler
  5. See the file COPYING.FPC, included in this distribution,
  6. for details about the copyright.
  7. This program is distributed in the hope that it will be useful,
  8. but WITHOUT ANY WARRANTY; without even the implied warranty of
  9. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  10. **********************************************************************}
  11. {$mode objfpc}
  12. {$i+}
  13. program mkx86reg;
  14. const Version = '1.00';
  15. max_regcount = 200;
  16. var s : string;
  17. i : longint;
  18. line : longint;
  19. regcount:byte;
  20. regcount_bsstart:byte;
  21. names,numbers,stdnames,intnames,nasmnames,attnames,stabs,dwarf16,dwarf32,dwarf64,ots,ops:
  22. array[0..max_regcount-1] of string[63];
  23. regnumber_index,std_regname_index,int_regname_index,att_regname_index,
  24. nasm_regname_index:array[0..max_regcount-1] of byte;
  25. i8086 : boolean;
  26. x86_64 : boolean;
  27. fileprefix : string;
  28. function tostr(l : longint) : string;
  29. begin
  30. str(l,tostr);
  31. end;
  32. function readstr : string;
  33. begin
  34. result:='';
  35. while (s[i]<>',') and (i<=length(s)) do
  36. begin
  37. result:=result+s[i];
  38. inc(i);
  39. end;
  40. readstr:=result;
  41. end;
  42. procedure readcomma;
  43. begin
  44. if s[i]<>',' then
  45. begin
  46. writeln('Missing "," at line ',line);
  47. writeln('Line: "',s,'"');
  48. halt(1);
  49. end;
  50. inc(i);
  51. end;
  52. procedure skipspace;
  53. begin
  54. while (s[i] in [' ',#9]) do
  55. inc(i);
  56. end;
  57. procedure openinc(out f:text;const fn:string);
  58. begin
  59. writeln('creating ',fn);
  60. assign(f,fn);
  61. rewrite(f);
  62. writeln(f,'{ don''t edit, this file is generated from x86reg.dat }');
  63. end;
  64. procedure closeinc(var f:text);
  65. begin
  66. writeln(f);
  67. close(f);
  68. end;
  69. procedure build_regnum_index;
  70. var h,i,j,p,t:byte;
  71. begin
  72. {Build the registernumber2regindex index.
  73. Step 1: Fill.}
  74. for i:=0 to regcount-1 do
  75. regnumber_index[i]:=i;
  76. {Step 2: Sort. We use a Shell-Metzner sort.}
  77. p:=regcount_bsstart;
  78. repeat
  79. for h:=0 to regcount-p-1 do
  80. begin
  81. i:=h;
  82. repeat
  83. j:=i+p;
  84. if numbers[regnumber_index[j]]>=numbers[regnumber_index[i]] then
  85. break;
  86. t:=regnumber_index[i];
  87. regnumber_index[i]:=regnumber_index[j];
  88. regnumber_index[j]:=t;
  89. if i<p then
  90. break;
  91. dec(i,p);
  92. until false;
  93. end;
  94. p:=p shr 1;
  95. until p=0;
  96. end;
  97. procedure build_std_regname_index;
  98. var h,i,j,p,t:byte;
  99. begin
  100. {Build the registernumber2regindex index.
  101. Step 1: Fill.}
  102. for i:=0 to regcount-1 do
  103. std_regname_index[i]:=i;
  104. {Step 2: Sort. We use a Shell-Metzner sort.}
  105. p:=regcount_bsstart;
  106. repeat
  107. for h:=0 to regcount-p-1 do
  108. begin
  109. i:=h;
  110. repeat
  111. j:=i+p;
  112. if stdnames[std_regname_index[j]]>=stdnames[std_regname_index[i]] then
  113. break;
  114. t:=std_regname_index[i];
  115. std_regname_index[i]:=std_regname_index[j];
  116. std_regname_index[j]:=t;
  117. if i<p then
  118. break;
  119. dec(i,p);
  120. until false;
  121. end;
  122. p:=p shr 1;
  123. until p=0;
  124. end;
  125. procedure build_int_regname_index;
  126. var h,i,j,p,t:byte;
  127. begin
  128. {Build the registernumber2regindex index.
  129. Step 1: Fill.}
  130. for i:=0 to regcount-1 do
  131. int_regname_index[i]:=i;
  132. {Step 2: Sort. We use a Shell-Metzner sort.}
  133. p:=regcount_bsstart;
  134. repeat
  135. for h:=0 to regcount-p-1 do
  136. begin
  137. i:=h;
  138. repeat
  139. j:=i+p;
  140. if intnames[int_regname_index[j]]>=intnames[int_regname_index[i]] then
  141. break;
  142. t:=int_regname_index[i];
  143. int_regname_index[i]:=int_regname_index[j];
  144. int_regname_index[j]:=t;
  145. if i<p then
  146. break;
  147. dec(i,p);
  148. until false;
  149. end;
  150. p:=p shr 1;
  151. until p=0;
  152. end;
  153. procedure build_att_regname_index;
  154. var h,i,j,p,t:byte;
  155. begin
  156. {Build the registernumber2regindex index.
  157. Step 1: Fill.}
  158. for i:=0 to regcount-1 do
  159. att_regname_index[i]:=i;
  160. {Step 2: Sort. We use a Shell-Metzner sort.}
  161. p:=regcount_bsstart;
  162. repeat
  163. for h:=0 to regcount-p-1 do
  164. begin
  165. i:=h;
  166. repeat
  167. j:=i+p;
  168. if attnames[att_regname_index[j]]>=attnames[att_regname_index[i]] then
  169. break;
  170. t:=att_regname_index[i];
  171. att_regname_index[i]:=att_regname_index[j];
  172. att_regname_index[j]:=t;
  173. if i<p then
  174. break;
  175. dec(i,p);
  176. until false;
  177. end;
  178. p:=p shr 1;
  179. until p=0;
  180. end;
  181. procedure build_nasm_regname_index;
  182. var h,i,j,p,t:byte;
  183. begin
  184. {Build the registernumber2regindex index.
  185. Step 1: Fill.}
  186. for i:=0 to regcount-1 do
  187. nasm_regname_index[i]:=i;
  188. {Step 2: Sort. We use a Shell-Metzner sort.}
  189. p:=regcount_bsstart;
  190. repeat
  191. for h:=0 to regcount-p-1 do
  192. begin
  193. i:=h;
  194. repeat
  195. j:=i+p;
  196. if nasmnames[nasm_regname_index[j]]>=nasmnames[nasm_regname_index[i]] then
  197. break;
  198. t:=nasm_regname_index[i];
  199. nasm_regname_index[i]:=nasm_regname_index[j];
  200. nasm_regname_index[j]:=t;
  201. if i<p then
  202. break;
  203. dec(i,p);
  204. until false;
  205. end;
  206. p:=p shr 1;
  207. until p=0;
  208. end;
  209. procedure read_x86reg_file;
  210. var infile:text;
  211. cpustr:string;
  212. begin
  213. { open dat file }
  214. assign(infile,'x86reg.dat');
  215. reset(infile);
  216. while not(eof(infile)) do
  217. begin
  218. { handle comment }
  219. readln(infile,s);
  220. inc(line);
  221. while (s[1]=' ') do
  222. delete(s,1,1);
  223. if (s='') or (s[1]=';') then
  224. continue;
  225. i:=1;
  226. names[regcount]:=readstr;
  227. readcomma;
  228. numbers[regcount]:=readstr;
  229. readcomma;
  230. stdnames[regcount]:=readstr;
  231. readcomma;
  232. attnames[regcount]:=readstr;
  233. readcomma;
  234. intnames[regcount]:=readstr;
  235. readcomma;
  236. nasmnames[regcount]:=readstr;
  237. readcomma;
  238. stabs[regcount]:=readstr;
  239. readcomma;
  240. dwarf16[regcount]:=readstr;
  241. readcomma;
  242. dwarf32[regcount]:=readstr;
  243. readcomma;
  244. dwarf64[regcount]:=readstr;
  245. readcomma;
  246. ots[regcount]:=readstr;
  247. readcomma;
  248. ops[regcount]:=readstr;
  249. if s[i]=',' then
  250. begin
  251. readcomma;
  252. cpustr:=readstr;
  253. end
  254. else
  255. cpustr:='';
  256. if i<length(s) then
  257. begin
  258. writeln('Extra chars at end of line, at line ',line);
  259. writeln('Line: "',s,'"');
  260. halt(1);
  261. end;
  262. if (cpustr<>'64') or x86_64 then
  263. begin
  264. inc(regcount);
  265. if regcount>max_regcount then
  266. begin
  267. writeln('Error: Too much registers, please increase maxregcount in source');
  268. halt(2);
  269. end;
  270. end;
  271. end;
  272. close(infile);
  273. end;
  274. procedure write_inc_files;
  275. var attfile,intfile,otfile,
  276. norfile,nasmfile,stdfile,
  277. numfile,stabfile,dwrffile,confile,
  278. rnifile,irifile,srifile,
  279. arifile,nrifile:text;
  280. first:boolean;
  281. begin
  282. { create inc files }
  283. openinc(confile,fileprefix+'con.inc');
  284. openinc(numfile,fileprefix+'num.inc');
  285. openinc(stdfile,fileprefix+'std.inc');
  286. openinc(attfile,fileprefix+'att.inc');
  287. openinc(intfile,fileprefix+'int.inc');
  288. openinc(nasmfile,fileprefix+'nasm.inc');
  289. openinc(stabfile,fileprefix+'stab.inc');
  290. openinc(dwrffile,fileprefix+'dwrf.inc');
  291. openinc(otfile,fileprefix+'ot.inc');
  292. openinc(norfile,fileprefix+'nor.inc');
  293. openinc(rnifile,fileprefix+'rni.inc');
  294. openinc(srifile,fileprefix+'sri.inc');
  295. openinc(arifile,fileprefix+'ari.inc');
  296. openinc(irifile,fileprefix+'iri.inc');
  297. openinc(nrifile,fileprefix+'nri.inc');
  298. first:=true;
  299. for i:=0 to regcount-1 do
  300. begin
  301. if not first then
  302. begin
  303. writeln(numfile,',');
  304. writeln(stdfile,',');
  305. writeln(attfile,',');
  306. writeln(intfile,',');
  307. writeln(nasmfile,',');
  308. writeln(stabfile,',');
  309. writeln(dwrffile,',');
  310. writeln(otfile,',');
  311. writeln(rnifile,',');
  312. writeln(srifile,',');
  313. writeln(arifile,',');
  314. writeln(irifile,',');
  315. writeln(nrifile,',');
  316. end
  317. else
  318. first:=false;
  319. writeln(confile,names[i],' = ','tregister(',numbers[i],')',';');
  320. write(numfile,'tregister(',numbers[i],')');
  321. write(stdfile,'''',stdnames[i],'''');
  322. write(attfile,'''',attnames[i],'''');
  323. write(intfile,'''',intnames[i],'''');
  324. write(nasmfile,'''',nasmnames[i],'''');
  325. { stabs uses the same register numbering as dwarf
  326. for x86_64 CPU }
  327. if x86_64 then
  328. write(stabfile,dwarf64[i])
  329. else
  330. write(stabfile,stabs[i]);
  331. if x86_64 then
  332. write(dwrffile,dwarf64[i])
  333. else if i8086 then
  334. write(dwrffile,dwarf16[i])
  335. else
  336. write(dwrffile,dwarf32[i]);
  337. write(otfile,ots[i]);
  338. write(rnifile,regnumber_index[i]);
  339. write(srifile,std_regname_index[i]);
  340. write(arifile,att_regname_index[i]);
  341. write(irifile,int_regname_index[i]);
  342. write(nrifile,nasm_regname_index[i]);
  343. end;
  344. write(norfile,regcount);
  345. close(confile);
  346. closeinc(numfile);
  347. closeinc(attfile);
  348. closeinc(stdfile);
  349. closeinc(intfile);
  350. closeinc(nasmfile);
  351. closeinc(stabfile);
  352. closeinc(dwrffile);
  353. closeinc(otfile);
  354. closeinc(norfile);
  355. closeinc(rnifile);
  356. closeinc(srifile);
  357. closeinc(arifile);
  358. closeinc(irifile);
  359. closeinc(nrifile);
  360. writeln('Done!');
  361. writeln(regcount,' registers processed');
  362. end;
  363. begin
  364. writeln('Register Table Converter Version ',Version);
  365. if paramcount=0 then
  366. begin
  367. i8086:=false;
  368. x86_64:=false;
  369. end
  370. else
  371. begin
  372. i8086:=paramstr(1)='i8086';
  373. x86_64:=paramstr(1)='x86_64';
  374. if (paramcount<>1) or
  375. ((paramstr(1)<>'i8086') and (paramstr(1)<>'i386') and (paramstr(1)<>'x86_64')) then
  376. begin
  377. writeln('Usage: ',paramstr(0));
  378. writeln('Only one optional parameter is allowed: i8086, i386 or x86_64');
  379. halt(1);
  380. end;
  381. end;
  382. if x86_64 then
  383. begin
  384. fileprefix:='r8664';
  385. writeln('Processing for CPU x86_64');
  386. end
  387. else if i8086 then
  388. begin
  389. fileprefix:='r8086';
  390. writeln('Processing for CPU i8086');
  391. end
  392. else
  393. begin
  394. fileprefix:='r386';
  395. writeln('Processing for CPU i386');
  396. end;
  397. line:=0;
  398. regcount:=0;
  399. read_x86reg_file;
  400. regcount_bsstart:=1;
  401. while 2*regcount_bsstart<regcount do
  402. regcount_bsstart:=regcount_bsstart*2;
  403. build_regnum_index;
  404. build_int_regname_index;
  405. if not(x86_64) then
  406. build_nasm_regname_index;
  407. build_std_regname_index;
  408. build_att_regname_index;
  409. write_inc_files;
  410. end.