keyboard.pp 48 KB

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  1. {
  2. This file is part of the Free Pascal run time library.
  3. Copyright (c) 1999-2000 by Florian Klaempfl
  4. member of the Free Pascal development team
  5. Keyboard unit for linux
  6. See the file COPYING.FPC, included in this distribution,
  7. for details about the copyright.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
  11. **********************************************************************}
  12. unit keyboard;
  13. {$inline on}
  14. {*****************************************************************************}
  15. interface
  16. {*****************************************************************************}
  17. {$i keybrdh.inc}
  18. const
  19. AltPrefix : byte = 0;
  20. ShiftPrefix : byte = 0;
  21. CtrlPrefix : byte = 0;
  22. type
  23. Tprocedure = procedure;
  24. PTreeElement = ^TTreeElement;
  25. TTreeElement = record
  26. Next,Parent,Child : PTreeElement;
  27. CanBeTerminal : boolean;
  28. char : byte;
  29. ScanValue : byte;
  30. CharValue : byte;
  31. SpecialHandler : Tprocedure;
  32. end;
  33. function RawReadKey:char;
  34. function RawReadString : String;
  35. function KeyPressed : Boolean;
  36. procedure AddSequence(const St : String; AChar,AScan :byte);inline;
  37. function FindSequence(const St : String;var AChar, Ascan : byte) : boolean;
  38. procedure RestoreStartMode;
  39. function AddSpecialSequence(const St : string;Proc : Tprocedure) : PTreeElement; platform;
  40. {*****************************************************************************}
  41. implementation
  42. {*****************************************************************************}
  43. uses
  44. Mouse, Strings,
  45. termio,baseUnix
  46. {$ifdef linux},linuxvcs{$endif};
  47. {$i keyboard.inc}
  48. var OldIO,StartTio : TermIos;
  49. {$ifdef linux}
  50. is_console:boolean;
  51. vt_switched_away:boolean;
  52. {$endif}
  53. {$ifdef logging}
  54. f : text;
  55. {$endif logging}
  56. const
  57. KeyBufferSize = 20;
  58. var
  59. KeyBuffer : Array[0..KeyBufferSize-1] of Char;
  60. KeyPut,
  61. KeySend : longint;
  62. { Buffered Input routines }
  63. const
  64. InSize=256;
  65. var
  66. InBuf : array [0..InSize-1] of char;
  67. { InCnt,}
  68. InHead,
  69. InTail : longint;
  70. {$i keyscan.inc}
  71. {Some internal only scancodes}
  72. const KbShiftUp = $f0;
  73. KbShiftLeft = $f1;
  74. KbShiftRight = $f2;
  75. KbShiftDown = $f3;
  76. KbShiftHome = $f4;
  77. KbShiftEnd = $f5;
  78. double_esc_hack_enabled : boolean = false;
  79. {$ifdef Unused}
  80. type
  81. TKeyState = Record
  82. Normal, Shift, Ctrl, Alt : word;
  83. end;
  84. const
  85. KeyStates : Array[0..255] of TKeyState
  86. (
  87. );
  88. {$endif Unused}
  89. procedure SetRawMode(b:boolean);
  90. var Tio:Termios;
  91. begin
  92. TCGetAttr(1,Tio);
  93. if b then
  94. begin
  95. {Standard output now needs #13#10.}
  96. settextlineending(output,#13#10);
  97. OldIO:=Tio;
  98. CFMakeRaw(Tio);
  99. end
  100. else
  101. begin
  102. Tio := OldIO;
  103. {Standard output normally needs just a linefeed.}
  104. settextlineending(output,#10);
  105. end;
  106. TCsetattr(1,TCSANOW,Tio);
  107. end;
  108. {$ifdef linux}
  109. {The Linux console can do nice things: we can get the state of the shift keys,
  110. and reprogram the keys. That's nice since it allows excellent circumvention
  111. of VT100 limitations, we can make the keyboard work 100%...
  112. A 100% working keyboard seems to be a pretty basic requirement, but we're
  113. one of the few guys providing such an outrageous luxury (DM).}
  114. type
  115. chgentry=packed record
  116. tab,
  117. idx,
  118. oldtab,
  119. oldidx : byte;
  120. oldval,
  121. newval : word;
  122. end;
  123. kbentry=packed record
  124. kb_table,
  125. kb_index : byte;
  126. kb_value : word;
  127. end;
  128. kbsentry=packed record
  129. kb_func:byte;
  130. kb_string:array[0..511] of char;
  131. end;
  132. vt_mode=packed record
  133. mode, {vt mode}
  134. waitv:byte; {if set, hang on writes if not active}
  135. relsig, {signal to raise on release req}
  136. acqsig, {signal to raise on acquisition}
  137. frsig:word; {unused (set to 0)}
  138. end;
  139. const
  140. kbdchange:array[0..23] of chgentry=(
  141. {This prevents the alt+function keys from switching consoles.
  142. We code the F1..F12 sequences into ALT+F1..ALT+12, we check
  143. the shiftstates separetely anyway.}
  144. (tab:8; idx:$3b; oldtab:0; oldidx:$3b; oldval:0; newval:0),
  145. (tab:8; idx:$3c; oldtab:0; oldidx:$3c; oldval:0; newval:0),
  146. (tab:8; idx:$3d; oldtab:0; oldidx:$3d; oldval:0; newval:0),
  147. (tab:8; idx:$3e; oldtab:0; oldidx:$3e; oldval:0; newval:0),
  148. (tab:8; idx:$3f; oldtab:0; oldidx:$3f; oldval:0; newval:0),
  149. (tab:8; idx:$40; oldtab:0; oldidx:$40; oldval:0; newval:0),
  150. (tab:8; idx:$41; oldtab:0; oldidx:$41; oldval:0; newval:0),
  151. (tab:8; idx:$42; oldtab:0; oldidx:$42; oldval:0; newval:0),
  152. (tab:8; idx:$43; oldtab:0; oldidx:$43; oldval:0; newval:0),
  153. (tab:8; idx:$44; oldtab:0; oldidx:$44; oldval:0; newval:0),
  154. (tab:8; idx:$45; oldtab:0; oldidx:$45; oldval:0; newval:0),
  155. (tab:8; idx:$46; oldtab:0; oldidx:$46; oldval:0; newval:0),
  156. {This prevents the shift+function keys outputting strings, so
  157. the kernel will the codes for the non-shifted function
  158. keys. This is desired because normally shift+f1/f2 will output the
  159. same string as f11/12. We will get the shift state separately.}
  160. (tab:1; idx:$3b; oldtab:0; oldidx:$3b; oldval:0; newval:0),
  161. (tab:1; idx:$3c; oldtab:0; oldidx:$3c; oldval:0; newval:0),
  162. (tab:1; idx:$3d; oldtab:0; oldidx:$3d; oldval:0; newval:0),
  163. (tab:1; idx:$3e; oldtab:0; oldidx:$3e; oldval:0; newval:0),
  164. (tab:1; idx:$3f; oldtab:0; oldidx:$3f; oldval:0; newval:0),
  165. (tab:1; idx:$40; oldtab:0; oldidx:$40; oldval:0; newval:0),
  166. (tab:1; idx:$41; oldtab:0; oldidx:$41; oldval:0; newval:0),
  167. (tab:1; idx:$42; oldtab:0; oldidx:$42; oldval:0; newval:0),
  168. (tab:1; idx:$43; oldtab:0; oldidx:$43; oldval:0; newval:0),
  169. (tab:1; idx:$44; oldtab:0; oldidx:$44; oldval:0; newval:0),
  170. (tab:1; idx:$45; oldtab:0; oldidx:$45; oldval:0; newval:0),
  171. (tab:1; idx:$46; oldtab:0; oldidx:$46; oldval:0; newval:0)
  172. );
  173. KDGKBENT=$4B46;
  174. KDSKBENT=$4B47;
  175. KDGKBSENT=$4B48;
  176. KDSKBSENT=$4B49;
  177. KDGKBMETA=$4B62;
  178. KDSKBMETA=$4B63;
  179. K_ESCPREFIX=$4;
  180. K_METABIT=$3;
  181. VT_GETMODE=$5601;
  182. VT_SETMODE=$5602;
  183. VT_RELDISP=$5605;
  184. VT_PROCESS=1;
  185. const
  186. oldmeta : longint = 0;
  187. meta : longint = 0;
  188. var oldesc0,oldesc1,oldesc2,oldesc4,oldesc8:word;
  189. procedure prepare_patching;
  190. var entry : kbentry;
  191. i:longint;
  192. begin
  193. for i:=low(kbdchange) to high(kbdchange) do
  194. with kbdchange[i] do
  195. begin
  196. entry.kb_table:=tab;
  197. entry.kb_index:=idx;
  198. fpIoctl(stdinputhandle,KDGKBENT,@entry);
  199. oldval:=entry.kb_value;
  200. entry.kb_table:=oldtab;
  201. entry.kb_index:=oldidx;
  202. fpioctl(stdinputhandle,KDGKBENT,@entry);
  203. newval:=entry.kb_value;
  204. end;
  205. {Save old escape code.}
  206. entry.kb_index:=1;
  207. entry.kb_table:=0;
  208. fpioctl(stdinputhandle,KDGKBENT,@entry);
  209. oldesc0:=entry.kb_value;
  210. entry.kb_table:=1;
  211. fpioctl(stdinputhandle,KDGKBENT,@entry);
  212. oldesc1:=entry.kb_value;
  213. entry.kb_table:=2;
  214. fpioctl(stdinputhandle,KDGKBENT,@entry);
  215. oldesc2:=entry.kb_value;
  216. entry.kb_table:=4;
  217. fpioctl(stdinputhandle,KDGKBENT,@entry);
  218. oldesc4:=entry.kb_value;
  219. entry.kb_table:=8;
  220. fpioctl(stdinputhandle,KDGKBENT,@entry);
  221. oldesc8:=entry.kb_value;
  222. end;
  223. procedure PatchKeyboard;
  224. var
  225. entry : kbentry;
  226. sentry : kbsentry;
  227. i:longint;
  228. begin
  229. fpIoctl(stdinputhandle,KDGKBMETA,@oldmeta);
  230. meta:=K_ESCPREFIX;
  231. fpIoctl(stdinputhandle,KDSKBMETA,@meta);
  232. for i:=low(kbdchange) to high(kbdchange) do
  233. with kbdchange[i] do
  234. begin
  235. entry.kb_table:=tab;
  236. entry.kb_index:=idx;
  237. entry.kb_value:=newval;
  238. fpioctl(stdinputhandle,KDSKBENT,@entry);
  239. end;
  240. {Map kernel escape key code to symbol F32.}
  241. entry.kb_index:=1;
  242. entry.kb_value:=$011f;
  243. entry.kb_table:=0;
  244. fpioctl(stdinputhandle,KDSKBENT,@entry);
  245. entry.kb_table:=1;
  246. fpioctl(stdinputhandle,KDSKBENT,@entry);
  247. entry.kb_table:=2;
  248. fpioctl(stdinputhandle,KDSKBENT,@entry);
  249. entry.kb_table:=4;
  250. fpioctl(stdinputhandle,KDSKBENT,@entry);
  251. entry.kb_table:=8;
  252. fpioctl(stdinputhandle,KDSKBENT,@entry);
  253. {F32 (the escape key) will generate ^[[0~ .}
  254. sentry.kb_func:=31;
  255. sentry.kb_string:=#27'[0~';
  256. fpioctl(stdinputhandle,KDSKBSENT,@sentry);
  257. end;
  258. procedure UnpatchKeyboard;
  259. var
  260. e : ^chgentry;
  261. entry : kbentry;
  262. i : longint;
  263. begin
  264. if oldmeta in [K_ESCPREFIX,K_METABIT] then
  265. fpioctl(stdinputhandle,KDSKBMETA,@oldmeta);
  266. for i:=low(kbdchange) to high(kbdchange) do
  267. with kbdchange[i] do
  268. begin
  269. entry.kb_table:=tab;
  270. entry.kb_index:=idx;
  271. entry.kb_value:=oldval;
  272. fpioctl(stdinputhandle,KDSKBENT,@entry);
  273. end;
  274. entry.kb_index:=1;
  275. entry.kb_table:=0;
  276. entry.kb_value:=oldesc0;
  277. fpioctl(stdinputhandle,KDSKBENT,@entry);
  278. entry.kb_table:=1;
  279. entry.kb_value:=oldesc1;
  280. fpioctl(stdinputhandle,KDSKBENT,@entry);
  281. entry.kb_table:=2;
  282. entry.kb_value:=oldesc2;
  283. fpioctl(stdinputhandle,KDSKBENT,@entry);
  284. entry.kb_table:=4;
  285. entry.kb_value:=oldesc4;
  286. fpioctl(stdinputhandle,KDSKBENT,@entry);
  287. entry.kb_table:=8;
  288. entry.kb_value:=oldesc8;
  289. fpioctl(stdinputhandle,KDSKBENT,@entry);
  290. end;
  291. {A problem of patching the keyboard is that it no longer works as expected
  292. when working on another console. So we unpatch it when the user switches
  293. away.}
  294. const switches:longint=0;
  295. procedure vt_handler(sig:longint);cdecl;
  296. begin
  297. if vt_switched_away then
  298. begin
  299. {Confirm the switch.}
  300. fpioctl(stdoutputhandle,VT_RELDISP,pointer(2));
  301. {Switching to program, patch keyboard.}
  302. patchkeyboard;
  303. end
  304. else
  305. begin
  306. {Switching away from program, unpatch the keyboard.}
  307. unpatchkeyboard;
  308. fpioctl(stdoutputhandle,VT_RELDISP,pointer(1));
  309. end;
  310. vt_switched_away:=not vt_switched_away;
  311. {Clear buffer.}
  312. intail:=inhead;
  313. end;
  314. procedure install_vt_handler;
  315. var mode:vt_mode;
  316. begin
  317. { ioctl(vt_fd,KDSETMODE,KD_GRAPHICS);}
  318. fpioctl(stdoutputhandle,VT_GETMODE,@mode);
  319. mode.mode:=VT_PROCESS;
  320. mode.relsig:=SIGUSR1;
  321. mode.acqsig:=SIGUSR1;
  322. vt_switched_away:=false;
  323. fpsignal(SIGUSR1,@vt_handler);
  324. fpioctl(stdoutputhandle,VT_SETMODE,@mode);
  325. end;
  326. {$endif}
  327. function ttyRecvChar:char;
  328. var Readed,i : longint;
  329. begin
  330. {Buffer empty? Yes, input from stdin}
  331. if (InHead=InTail) then
  332. begin
  333. {Calc Amount of Chars to Read}
  334. {$ifdef symobi}
  335. { only read bytewise or the application will hang }
  336. i:=1;
  337. {$else}
  338. i:=InSize-InHead;
  339. if InTail>InHead then
  340. i:=InTail-InHead;
  341. {$endif}
  342. {Read}
  343. repeat
  344. Readed:=fpRead(StdInputHandle,InBuf[InHead],i);
  345. until readed<>-1;
  346. {Increase Counters}
  347. inc(InHead,Readed);
  348. {Wrap if End has Reached}
  349. if InHead>=InSize then
  350. InHead:=0;
  351. end;
  352. {Check Buffer}
  353. ttyRecvChar:=InBuf[InTail];
  354. inc(InTail);
  355. if InTail>=InSize then
  356. InTail:=0;
  357. end;
  358. procedure PushKey(Ch:char);
  359. var
  360. Tmp : Longint;
  361. begin
  362. Tmp:=KeyPut;
  363. Inc(KeyPut);
  364. If KeyPut>=KeyBufferSize Then
  365. KeyPut:=0;
  366. If KeyPut<>KeySend Then
  367. KeyBuffer[Tmp]:=Ch
  368. Else
  369. KeyPut:=Tmp;
  370. End;
  371. function PopKey:char;
  372. begin
  373. If KeyPut<>KeySend Then
  374. begin
  375. PopKey:=KeyBuffer[KeySend];
  376. Inc(KeySend);
  377. If KeySend>=KeyBufferSize Then
  378. KeySend:=0;
  379. End
  380. Else
  381. PopKey:=#0;
  382. End;
  383. procedure PushExt(b:byte);
  384. begin
  385. PushKey(#0);
  386. PushKey(chr(b));
  387. end;
  388. const
  389. AltKeyStr : string[38]='qwertyuiopasdfghjklzxcvbnm1234567890-=';
  390. AltCodeStr : string[38]=#016#017#018#019#020#021#022#023#024#025#030#031#032#033#034#035#036#037#038+
  391. #044#045#046#047#048#049#050#120#121#122#123#124#125#126#127#128#129#130#131;
  392. function FAltKey(ch:char):byte;
  393. var
  394. Idx : longint;
  395. begin
  396. Idx:=Pos(ch,AltKeyStr);
  397. if Idx>0 then
  398. FAltKey:=byte(AltCodeStr[Idx])
  399. else
  400. FAltKey:=0;
  401. End;
  402. { This one doesn't care about keypresses already processed by readkey }
  403. { and waiting in the KeyBuffer, only about waiting keypresses at the }
  404. { TTYLevel (including ones that are waiting in the TTYRecvChar buffer) }
  405. function sysKeyPressed: boolean;
  406. var
  407. fdsin : tfdSet;
  408. begin
  409. if (inhead<>intail) then
  410. sysKeyPressed:=true
  411. else
  412. begin
  413. fpFD_ZERO(fdsin);
  414. fpFD_SET(StdInputHandle,fdsin);
  415. sysKeypressed:=(fpSelect(StdInputHandle+1,@fdsin,nil,nil,0)>0);
  416. end;
  417. end;
  418. function KeyPressed:Boolean;
  419. begin
  420. Keypressed := (KeySend<>KeyPut) or sysKeyPressed;
  421. End;
  422. const
  423. LastMouseEvent : TMouseEvent =
  424. (
  425. Buttons : 0;
  426. X : 0;
  427. Y : 0;
  428. Action : 0;
  429. );
  430. procedure GenMouseEvent;
  431. var MouseEvent: TMouseEvent;
  432. ch : char;
  433. fdsin : tfdSet;
  434. buttonval:byte;
  435. begin
  436. fpFD_ZERO(fdsin);
  437. fpFD_SET(StdInputHandle,fdsin);
  438. { Fillchar(MouseEvent,SizeOf(TMouseEvent),#0);}
  439. MouseEvent.action:=0;
  440. if inhead=intail then
  441. fpSelect(StdInputHandle+1,@fdsin,nil,nil,10);
  442. ch:=ttyRecvChar;
  443. { Other bits are used for Shift, Meta and Ctrl modifiers PM }
  444. buttonval:=byte(ch)-byte(' ');
  445. {bits 0..1: button status
  446. bit 5 : mouse movement while button down.
  447. bit 6 : interpret button 1 as button 4
  448. interpret button 2 as button 5}
  449. case buttonval and 3 of
  450. 0 : {left button press}
  451. MouseEvent.buttons:=1;
  452. 1 : {middle button pressed }
  453. MouseEvent.buttons:=2;
  454. 2 : { right button pressed }
  455. MouseEvent.buttons:=4;
  456. 3 : { no button pressed }
  457. MouseEvent.buttons:=0;
  458. end;
  459. if inhead=intail then
  460. fpSelect(StdInputHandle+1,@fdsin,nil,nil,10);
  461. ch:=ttyRecvChar;
  462. MouseEvent.x:=Ord(ch)-ord(' ')-1;
  463. if inhead=intail then
  464. fpSelect(StdInputHandle+1,@fdsin,nil,nil,10);
  465. ch:=ttyRecvChar;
  466. MouseEvent.y:=Ord(ch)-ord(' ')-1;
  467. mouseevent.action:=MouseActionMove;
  468. if (lastmouseevent.buttons=0) and (mouseevent.buttons<>0) then
  469. MouseEvent.action:=MouseActionDown;
  470. if (lastmouseevent.buttons<>0) and (mouseevent.buttons=0) then
  471. MouseEvent.action:=MouseActionUp;
  472. (*
  473. else
  474. begin
  475. if (LastMouseEvent.Buttons<>0) and
  476. ((LastMouseEvent.X<>MouseEvent.X) or (LastMouseEvent.Y<>MouseEvent.Y)) then
  477. begin
  478. MouseEvent.Action:=MouseActionMove;
  479. MouseEvent.Buttons:=LastMouseEvent.Buttons;
  480. {$ifdef DebugMouse}
  481. Writeln(system.stderr,' Mouse Move (',MouseEvent.X,',',MouseEvent.Y,')');
  482. {$endif DebugMouse}
  483. PutMouseEvent(MouseEvent);
  484. MouseEvent.Buttons:=0;
  485. end;
  486. MouseEvent.Action:=MouseActionUp;
  487. end;
  488. *)
  489. PutMouseEvent(MouseEvent);
  490. {$ifdef DebugMouse}
  491. if MouseEvent.Action=MouseActionDown then
  492. Write(system.stderr,'Button down : ')
  493. else
  494. Write(system.stderr,'Button up : ');
  495. Writeln(system.stderr,'buttons = ',MouseEvent.Buttons,' (',MouseEvent.X,',',MouseEvent.Y,')');
  496. {$endif DebugMouse}
  497. LastMouseEvent:=MouseEvent;
  498. end;
  499. var roottree:array[char] of PTreeElement;
  500. procedure FreeElement (PT:PTreeElement);
  501. var next : PTreeElement;
  502. begin
  503. while PT <> nil do
  504. begin
  505. FreeElement(PT^.Child);
  506. next := PT^.Next;
  507. dispose(PT);
  508. PT := next;
  509. end;
  510. end;
  511. procedure FreeTree;
  512. var i:char;
  513. begin
  514. for i:=low(roottree) to high(roottree) do
  515. begin
  516. FreeElement(RootTree[i]);
  517. roottree[i]:=nil;
  518. end;
  519. end;
  520. function NewPTree(ch : byte;Pa : PTreeElement) : PTreeElement;
  521. begin
  522. newPtree:=allocmem(sizeof(Ttreeelement));
  523. newPtree^.char:=ch;
  524. newPtree^.Parent:=Pa;
  525. if Assigned(Pa) and (Pa^.Child=nil) then
  526. Pa^.Child:=newPtree;
  527. end;
  528. function DoAddSequence(const St : String; AChar,AScan :byte) : PTreeElement;
  529. var
  530. CurPTree,NPT : PTreeElement;
  531. c : byte;
  532. i : longint;
  533. begin
  534. if St='' then
  535. begin
  536. DoAddSequence:=nil;
  537. exit;
  538. end;
  539. CurPTree:=RootTree[st[1]];
  540. if CurPTree=nil then
  541. begin
  542. CurPTree:=NewPTree(ord(st[1]),nil);
  543. RootTree[st[1]]:=CurPTree;
  544. end;
  545. for i:=2 to Length(St) do
  546. begin
  547. NPT:=CurPTree^.Child;
  548. c:=ord(St[i]);
  549. if NPT=nil then
  550. NPT:=NewPTree(c,CurPTree);
  551. CurPTree:=nil;
  552. while assigned(NPT) and (NPT^.char<c) do
  553. begin
  554. CurPTree:=NPT;
  555. NPT:=NPT^.Next;
  556. end;
  557. if assigned(NPT) and (NPT^.char=c) then
  558. CurPTree:=NPT
  559. else
  560. begin
  561. if CurPTree=nil then
  562. begin
  563. NPT^.Parent^.child:=NewPTree(c,NPT^.Parent);
  564. CurPTree:=NPT^.Parent^.Child;
  565. CurPTree^.Next:=NPT;
  566. end
  567. else
  568. begin
  569. CurPTree^.Next:=NewPTree(c,CurPTree^.Parent);
  570. CurPTree:=CurPTree^.Next;
  571. CurPTree^.Next:=NPT;
  572. end;
  573. end;
  574. end;
  575. if CurPTree^.CanBeTerminal then
  576. begin
  577. { here we have a conflict !! }
  578. { maybe we should claim }
  579. with CurPTree^ do
  580. begin
  581. {$ifdef DEBUG}
  582. if (ScanValue<>AScan) or (CharValue<>AChar) then
  583. Writeln(system.stderr,'key "',st,'" changed value');
  584. if (ScanValue<>AScan) then
  585. Writeln(system.stderr,'Scan was ',ScanValue,' now ',AScan);
  586. if (CharValue<>AChar) then
  587. Writeln(system.stderr,'Char was ',chr(CharValue),' now ',chr(AChar));
  588. {$endif DEBUG}
  589. ScanValue:=AScan;
  590. CharValue:=AChar;
  591. end;
  592. end
  593. else with CurPTree^ do
  594. begin
  595. CanBeTerminal:=True;
  596. ScanValue:=AScan;
  597. CharValue:=AChar;
  598. end;
  599. DoAddSequence:=CurPTree;
  600. end;
  601. procedure AddSequence(const St : String; AChar,AScan :byte);inline;
  602. begin
  603. DoAddSequence(St,AChar,AScan);
  604. end;
  605. { Returns the Child that as c as char if it exists }
  606. function FindChild(c : byte;Root : PTreeElement) : PTreeElement;
  607. var
  608. NPT : PTreeElement;
  609. begin
  610. NPT:=Root^.Child;
  611. while assigned(NPT) and (NPT^.char<c) do
  612. NPT:=NPT^.Next;
  613. if assigned(NPT) and (NPT^.char=c) then
  614. FindChild:=NPT
  615. else
  616. FindChild:=nil;
  617. end;
  618. function AddSpecialSequence(const St : string;Proc : Tprocedure) : PTreeElement;
  619. var
  620. NPT : PTreeElement;
  621. begin
  622. NPT:=DoAddSequence(St,0,0);
  623. NPT^.SpecialHandler:=Proc;
  624. AddSpecialSequence:=NPT;
  625. end;
  626. function FindSequence(const St : String;var AChar,AScan :byte) : boolean;
  627. var
  628. NPT : PTreeElement;
  629. i,p : byte;
  630. begin
  631. FindSequence:=false;
  632. AChar:=0;
  633. AScan:=0;
  634. if St='' then
  635. exit;
  636. p:=1;
  637. {This is a distusting hack for certain even more disgusting xterms: Some of
  638. them send two escapes for an alt-key. If we wouldn't do this, we would need
  639. to put a lot of entries twice in the table.}
  640. if double_esc_hack_enabled and (st[1]=#27) and (st[2]='#27') and
  641. (st[3] in ['a'..'z','A'..'Z','0'..'9','-','+','_','=']) then
  642. inc(p);
  643. NPT:=RootTree[St[p]];
  644. if npt<>nil then
  645. begin
  646. for i:=p+1 to Length(St) do
  647. begin
  648. NPT:=FindChild(ord(St[i]),NPT);
  649. if NPT=nil then
  650. exit;
  651. end;
  652. if NPT^.CanBeTerminal then
  653. begin
  654. FindSequence:=true;
  655. AScan:=NPT^.ScanValue;
  656. AChar:=NPT^.CharValue;
  657. end;
  658. end;
  659. end;
  660. type key_sequence=packed record
  661. char,scan:byte;
  662. st:string[7];
  663. end;
  664. const key_sequences:array[0..280] of key_sequence=(
  665. (char:0;scan:kbAltA;st:#27'A'),
  666. (char:0;scan:kbAltA;st:#27'a'),
  667. (char:0;scan:kbAltB;st:#27'B'),
  668. (char:0;scan:kbAltB;st:#27'b'),
  669. (char:0;scan:kbAltC;st:#27'C'),
  670. (char:0;scan:kbAltC;st:#27'c'),
  671. (char:0;scan:kbAltD;st:#27'D'),
  672. (char:0;scan:kbAltD;st:#27'd'),
  673. (char:0;scan:kbAltE;st:#27'E'),
  674. (char:0;scan:kbAltE;st:#27'e'),
  675. (char:0;scan:kbAltF;st:#27'F'),
  676. (char:0;scan:kbAltF;st:#27'f'),
  677. (char:0;scan:kbAltG;st:#27'G'),
  678. (char:0;scan:kbAltG;st:#27'g'),
  679. (char:0;scan:kbAltH;st:#27'H'),
  680. (char:0;scan:kbAltH;st:#27'h'),
  681. (char:0;scan:kbAltI;st:#27'I'),
  682. (char:0;scan:kbAltI;st:#27'i'),
  683. (char:0;scan:kbAltJ;st:#27'J'),
  684. (char:0;scan:kbAltJ;st:#27'j'),
  685. (char:0;scan:kbAltK;st:#27'K'),
  686. (char:0;scan:kbAltK;st:#27'k'),
  687. (char:0;scan:kbAltL;st:#27'L'),
  688. (char:0;scan:kbAltL;st:#27'l'),
  689. (char:0;scan:kbAltM;st:#27'M'),
  690. (char:0;scan:kbAltM;st:#27'm'),
  691. (char:0;scan:kbAltN;st:#27'N'),
  692. (char:0;scan:kbAltN;st:#27'n'),
  693. (char:0;scan:kbAltO;st:#27'O'),
  694. (char:0;scan:kbAltO;st:#27'o'),
  695. (char:0;scan:kbAltP;st:#27'P'),
  696. (char:0;scan:kbAltP;st:#27'p'),
  697. (char:0;scan:kbAltQ;st:#27'Q'),
  698. (char:0;scan:kbAltQ;st:#27'q'),
  699. (char:0;scan:kbAltR;st:#27'R'),
  700. (char:0;scan:kbAltR;st:#27'r'),
  701. (char:0;scan:kbAltS;st:#27'S'),
  702. (char:0;scan:kbAltS;st:#27's'),
  703. (char:0;scan:kbAltT;st:#27'T'),
  704. (char:0;scan:kbAltT;st:#27't'),
  705. (char:0;scan:kbAltU;st:#27'U'),
  706. (char:0;scan:kbAltU;st:#27'u'),
  707. (char:0;scan:kbAltV;st:#27'V'),
  708. (char:0;scan:kbAltV;st:#27'v'),
  709. (char:0;scan:kbAltW;st:#27'W'),
  710. (char:0;scan:kbAltW;st:#27'w'),
  711. (char:0;scan:kbAltX;st:#27'X'),
  712. (char:0;scan:kbAltX;st:#27'x'),
  713. (char:0;scan:kbAltY;st:#27'Y'),
  714. (char:0;scan:kbAltY;st:#27'y'),
  715. (char:0;scan:kbAltZ;st:#27'Z'),
  716. (char:0;scan:kbAltZ;st:#27'z'),
  717. (char:0;scan:kbAltMinus;st:#27'-'),
  718. (char:0;scan:kbAltEqual;st:#27'='),
  719. (char:0;scan:kbAlt0;st:#27'0'),
  720. (char:0;scan:kbAlt1;st:#27'1'),
  721. (char:0;scan:kbAlt2;st:#27'2'),
  722. (char:0;scan:kbAlt3;st:#27'3'),
  723. (char:0;scan:kbAlt4;st:#27'4'),
  724. (char:0;scan:kbAlt5;st:#27'5'),
  725. (char:0;scan:kbAlt6;st:#27'6'),
  726. (char:0;scan:kbAlt7;st:#27'7'),
  727. (char:0;scan:kbAlt8;st:#27'8'),
  728. (char:0;scan:kbAlt9;st:#27'9'),
  729. (char:0;scan:kbF1;st:#27'[[A'), {linux,konsole,xterm}
  730. (char:0;scan:kbF2;st:#27'[[B'), {linux,konsole,xterm}
  731. (char:0;scan:kbF3;st:#27'[[C'), {linux,konsole,xterm}
  732. (char:0;scan:kbF4;st:#27'[[D'), {linux,konsole,xterm}
  733. (char:0;scan:kbF5;st:#27'[[E'), {linux,konsole}
  734. (char:0;scan:kbF1;st:#27'[11~'), {Eterm,rxvt}
  735. (char:0;scan:kbF2;st:#27'[12~'), {Eterm,rxvt}
  736. (char:0;scan:kbF3;st:#27'[13~'), {Eterm,rxvt}
  737. (char:0;scan:kbF4;st:#27'[14~'), {Eterm,rxvt}
  738. (char:0;scan:kbF5;st:#27'[15~'), {xterm,Eterm,gnome,rxvt}
  739. (char:0;scan:kbF6;st:#27'[17~'), {linux,xterm,Eterm,konsole,gnome,rxvt}
  740. (char:0;scan:kbF7;st:#27'[18~'), {linux,xterm,Eterm,konsole,gnome,rxvt}
  741. (char:0;scan:kbF8;st:#27'[19~'), {linux,xterm,Eterm,konsole,gnome,rxvt}
  742. (char:0;scan:kbF9;st:#27'[20~'), {linux,xterm,Eterm,konsole,gnome,rxvt}
  743. (char:0;scan:kbF10;st:#27'[21~'), {linux,xterm,Eterm,konsole,gnome,rxvt}
  744. (char:0;scan:kbF11;st:#27'[23~'), {linux,xterm,Eterm,konsole,gnome,rxvt}
  745. (char:0;scan:kbF12;st:#27'[24~'), {linux,xterm,Eterm,konsole,gnome,rxvt}
  746. (char:0;scan:kbF1;st:#27'[M'), {FreeBSD}
  747. (char:0;scan:kbF2;st:#27'[N'), {FreeBSD}
  748. (char:0;scan:kbF3;st:#27'[O'), {FreeBSD}
  749. (char:0;scan:kbF4;st:#27'[P'), {FreeBSD}
  750. (char:0;scan:kbF5;st:#27'[Q'), {FreeBSD}
  751. (char:0;scan:kbF6;st:#27'[R'), {FreeBSD}
  752. (char:0;scan:kbF7;st:#27'[S'), {FreeBSD}
  753. (char:0;scan:kbF8;st:#27'[T'), {FreeBSD}
  754. (char:0;scan:kbF9;st:#27'[U'), {FreeBSD}
  755. (char:0;scan:kbF10;st:#27'[V'), {FreeBSD}
  756. (char:0;scan:kbF11;st:#27'[W'), {FreeBSD}
  757. (char:0;scan:kbF12;st:#27'[X'), {FreeBSD}
  758. (char:0;scan:kbF1;st:#27'OP'), {vt100,gnome,konsole}
  759. (char:0;scan:kbF2;st:#27'OQ'), {vt100,gnome,konsole}
  760. (char:0;scan:kbF3;st:#27'OR'), {vt100,gnome,konsole}
  761. (char:0;scan:kbF4;st:#27'OS'), {vt100,gnome,konsole}
  762. (char:0;scan:kbF5;st:#27'Ot'), {vt100}
  763. (char:0;scan:kbF6;st:#27'Ou'), {vt100}
  764. (char:0;scan:kbF7;st:#27'Ov'), {vt100}
  765. (char:0;scan:kbF8;st:#27'Ol'), {vt100}
  766. (char:0;scan:kbF9;st:#27'Ow'), {vt100}
  767. (char:0;scan:kbF10;st:#27'Ox'), {vt100}
  768. (char:0;scan:kbF11;st:#27'Oy'), {vt100}
  769. (char:0;scan:kbF12;st:#27'Oz'), {vt100}
  770. (char:0;scan:kbEsc;st:#27'[0~'), {if linux keyboard patched, escape
  771. returns this}
  772. (char:0;scan:kbIns;st:#27'[2~'), {linux,Eterm,rxvt}
  773. (char:0;scan:kbDel;st:#27'[3~'), {linux,Eterm,rxvt}
  774. (char:0;scan:kbHome;st:#27'[1~'), {linux}
  775. (char:0;scan:kbHome;st:#27'[7~'), {Eterm,rxvt}
  776. (char:0;scan:kbHome;st:#27'[H'), {FreeBSD}
  777. (char:0;scan:kbHome;st:#27'OH'), {some xterm configurations}
  778. (char:0;scan:kbEnd;st:#27'[4~'), {linux,Eterm}
  779. (char:0;scan:kbEnd;st:#27'[8~'), {rxvt}
  780. (char:0;scan:kbEnd;st:#27'[F'), {FreeBSD}
  781. (char:0;scan:kbEnd;st:#27'OF'), {some xterm configurations}
  782. (char:0;scan:kbPgUp;st:#27'[5~'), {linux,Eterm,rxvt}
  783. (char:0;scan:kbPgUp;st:#27'[I'), {FreeBSD}
  784. (char:0;scan:kbPgDn;st:#27'[6~'), {linux,Eterm,rxvt}
  785. (char:0;scan:kbPgDn;st:#27'[G'), {FreeBSD}
  786. (char:0;scan:kbUp;st:#27'[A'), {linux,FreeBSD,rxvt}
  787. (char:0;scan:kbDown;st:#27'[B'), {linux,FreeBSD,rxvt}
  788. (char:0;scan:kbRight;st:#27'[C'), {linux,FreeBSD,rxvt}
  789. (char:0;scan:kbLeft;st:#27'[D'), {linux,FreeBSD,rxvt}
  790. (char:0;scan:kbUp;st:#27'OA'), {xterm}
  791. (char:0;scan:kbDown;st:#27'OB'), {xterm}
  792. (char:0;scan:kbRight;st:#27'OC'), {xterm}
  793. (char:0;scan:kbLeft;st:#27'OD'), {xterm}
  794. (char:0;scan:kbUp;st:#27'A'), {symobi}
  795. (char:0;scan:kbDown;st:#27'B'), {symobi}
  796. (char:0;scan:kbRight;st:#27'C'), {symobi}
  797. (char:0;scan:kbLeft;st:#27'D'), {symobi}
  798. (* Already recognized above as F11!
  799. (char:0;scan:kbShiftF1;st:#27'[23~'), {rxvt}
  800. (char:0;scan:kbShiftF2;st:#27'[24~'), {rxvt}
  801. *)
  802. (char:0;scan:kbShiftF3;st:#27'[25~'), {linux,rxvt}
  803. (char:0;scan:kbShiftF4;st:#27'[26~'), {linux,rxvt}
  804. (char:0;scan:kbShiftF5;st:#27'[28~'), {linux,rxvt}
  805. (char:0;scan:kbShiftF6;st:#27'[29~'), {linux,rxvt}
  806. (char:0;scan:kbShiftF7;st:#27'[31~'), {linux,rxvt}
  807. (char:0;scan:kbShiftF8;st:#27'[32~'), {linux,rxvt}
  808. (char:0;scan:kbShiftF9;st:#27'[33~'), {linux,rxvt}
  809. (char:0;scan:kbShiftF10;st:#27'[34~'), {linux,rxvt}
  810. (char:0;scan:kbShiftF11;st:#27'[23$'), {rxvt}
  811. (char:0;scan:kbShiftF12;st:#27'[24$'), {rxvt}
  812. (char:0;scan:kbShiftF1;st:#27'[11;2~'), {konsole in vt420pc mode}
  813. (char:0;scan:kbShiftF2;st:#27'[12;2~'), {konsole in vt420pc mode}
  814. (char:0;scan:kbShiftF3;st:#27'[13;2~'), {konsole in vt420pc mode}
  815. (char:0;scan:kbShiftF4;st:#27'[14;2~'), {konsole in vt420pc mode}
  816. (char:0;scan:kbShiftF5;st:#27'[15;2~'), {xterm}
  817. (char:0;scan:kbShiftF6;st:#27'[17;2~'), {xterm}
  818. (char:0;scan:kbShiftF7;st:#27'[18;2~'), {xterm}
  819. (char:0;scan:kbShiftF8;st:#27'[19;2~'), {xterm}
  820. (char:0;scan:kbShiftF9;st:#27'[20;2~'), {xterm}
  821. (char:0;scan:kbShiftF10;st:#27'[21;2~'), {xterm}
  822. (char:0;scan:kbShiftF11;st:#27'[23;2~'), {xterm}
  823. (char:0;scan:kbShiftF12;st:#27'[24;2~'), {xterm}
  824. (char:0;scan:kbShiftF1;st:#27'O5P'), {xterm}
  825. (char:0;scan:kbShiftF2;st:#27'O5Q'), {xterm}
  826. (char:0;scan:kbShiftF3;st:#27'O5R'), {xterm}
  827. (char:0;scan:kbShiftF4;st:#27'O5S'), {xterm}
  828. (char:0;scan:kbShiftF1;st:#27'O2P'), {konsole,xterm}
  829. (char:0;scan:kbShiftF2;st:#27'O2Q'), {konsole,xterm}
  830. (char:0;scan:kbShiftF3;st:#27'O2R'), {konsole,xterm}
  831. (char:0;scan:kbShiftF4;st:#27'O2S'), {konsole,xterm}
  832. (char:0;scan:kbCtrlF1;st:#27'[11;5~'), {none, but expected}
  833. (char:0;scan:kbCtrlF2;st:#27'[12;5~'), {none, but expected}
  834. (char:0;scan:kbCtrlF3;st:#27'[13;5~'), {none, but expected}
  835. (char:0;scan:kbCtrlF4;st:#27'[14;5~'), {none, but expected}
  836. (char:0;scan:kbCtrlF5;st:#27'[15;5~'), {xterm}
  837. (char:0;scan:kbCtrlF6;st:#27'[17;5~'), {xterm}
  838. (char:0;scan:kbCtrlF7;st:#27'[18;5~'), {xterm}
  839. (char:0;scan:kbCtrlF8;st:#27'[19;5~'), {xterm}
  840. (char:0;scan:kbCtrlF9;st:#27'[20;5~'), {xterm}
  841. (char:0;scan:kbCtrlF10;st:#27'[21;5~'), {xterm}
  842. (char:0;scan:kbCtrlF11;st:#27'[23;5~'), {xterm}
  843. (char:0;scan:kbCtrlF12;st:#27'[24;5~'), {xterm}
  844. (char:0;scan:kbCtrlF1;st:#27'[11^'), {rxvt}
  845. (char:0;scan:kbCtrlF2;st:#27'[12^'), {rxvt}
  846. (char:0;scan:kbCtrlF3;st:#27'[13^'), {rxvt}
  847. (char:0;scan:kbCtrlF4;st:#27'[14^'), {rxvt}
  848. (char:0;scan:kbCtrlF5;st:#27'[15^'), {rxvt}
  849. (char:0;scan:kbCtrlF6;st:#27'[17^'), {rxvt}
  850. (char:0;scan:kbCtrlF7;st:#27'[18^'), {rxvt}
  851. (char:0;scan:kbCtrlF8;st:#27'[19^'), {rxvt}
  852. (char:0;scan:kbCtrlF9;st:#27'[20^'), {rxvt}
  853. (char:0;scan:kbCtrlF10;st:#27'[21^'), {rxvt}
  854. (char:0;scan:kbCtrlF11;st:#27'[23^'), {rxvt}
  855. (char:0;scan:kbCtrlF12;st:#27'[24^'), {rxvt}
  856. (char:0;scan:kbShiftIns;st:#27'[2;2~'), {should be the code, but shift+ins
  857. is paste X clipboard in many
  858. terminal emulators :(}
  859. (char:0;scan:kbShiftDel;st:#27'[3;2~'), {xterm,konsole}
  860. (char:0;scan:kbCtrlIns;st:#27'[2;5~'), {xterm}
  861. (char:0;scan:kbCtrlDel;st:#27'[3;5~'), {xterm}
  862. (char:0;scan:kbShiftDel;st:#27'[3$'), {rxvt}
  863. (char:0;scan:kbCtrlIns;st:#27'[2^'), {rxvt}
  864. (char:0;scan:kbCtrlDel;st:#27'[3^'), {rxvt}
  865. (char:0;scan:kbAltF1;st:#27#27'[[A'),
  866. (char:0;scan:kbAltF2;st:#27#27'[[B'),
  867. (char:0;scan:kbAltF3;st:#27#27'[[C'),
  868. (char:0;scan:kbAltF4;st:#27#27'[[D'),
  869. (char:0;scan:kbAltF5;st:#27#27'[[E'),
  870. (char:0;scan:kbAltF1;st:#27#27'[11~'), {rxvt}
  871. (char:0;scan:kbAltF2;st:#27#27'[12~'), {rxvt}
  872. (char:0;scan:kbAltF3;st:#27#27'[13~'), {rxvt}
  873. (char:0;scan:kbAltF4;st:#27#27'[14~'), {rxvt}
  874. (char:0;scan:kbAltF5;st:#27#27'[15~'), {rxvt}
  875. (char:0;scan:kbAltF6;st:#27#27'[17~'), {rxvt}
  876. (char:0;scan:kbAltF7;st:#27#27'[18~'), {rxvt}
  877. (char:0;scan:kbAltF8;st:#27#27'[19~'), {rxvt}
  878. (char:0;scan:kbAltF9;st:#27#27'[20~'), {rxvt}
  879. (char:0;scan:kbAltF10;st:#27#27'[21~'), {rxvt}
  880. (char:0;scan:kbAltF11;st:#27#27'[23~'), {rxvt}
  881. (char:0;scan:kbAltF12;st:#27#27'[24~'), {rxvt}
  882. (char:0;scan:kbAltF1;st:#27#27'OP'), {xterm}
  883. (char:0;scan:kbAltF2;st:#27#27'OQ'), {xterm}
  884. (char:0;scan:kbAltF3;st:#27#27'OR'), {xterm}
  885. (char:0;scan:kbAltF4;st:#27#27'OS'), {xterm}
  886. (char:0;scan:kbAltF5;st:#27#27'Ot'), {xterm}
  887. (char:0;scan:kbAltF6;st:#27#27'Ou'), {xterm}
  888. (char:0;scan:kbAltF7;st:#27#27'Ov'), {xterm}
  889. (char:0;scan:kbAltF8;st:#27#27'Ol'), {xterm}
  890. (char:0;scan:kbAltF9;st:#27#27'Ow'), {xterm}
  891. (char:0;scan:kbAltF10;st:#27#27'Ox'), {xterm}
  892. (char:0;scan:kbAltF11;st:#27#27'Oy'), {xterm}
  893. (char:0;scan:kbAltF12;st:#27#27'Oz'), {xterm}
  894. (char:0;scan:kbAltF1;st:#27'O3P'), {xterm on FreeBSD}
  895. (char:0;scan:kbAltF2;st:#27'O3Q'), {xterm on FreeBSD}
  896. (char:0;scan:kbAltF3;st:#27'O3R'), {xterm on FreeBSD}
  897. (char:0;scan:kbAltF4;st:#27'O3S'), {xterm on FreeBSD}
  898. (char:0;scan:kbAltF5;st:#27'[15;3~'), {xterm on FreeBSD}
  899. (char:0;scan:kbAltF6;st:#27'[17;3~'), {xterm on FreeBSD}
  900. (char:0;scan:kbAltF7;st:#27'[18;3~'), {xterm on FreeBSD}
  901. (char:0;scan:kbAltF8;st:#27'[19;3~'), {xterm on FreeBSD}
  902. (char:0;scan:kbAltF9;st:#27'[20;3~'), {xterm on FreeBSD}
  903. (char:0;scan:kbAltF10;st:#27'[21;3~'), {xterm on FreeBSD}
  904. (char:0;scan:kbAltF11;st:#27'[23;3~'), {xterm on FreeBSD}
  905. (char:0;scan:kbAltF12;st:#27'[24;3~'), {xterm on FreeBSD}
  906. (char:0;scan:kbShiftTab;st:#27'[Z'),
  907. (char:0;scan:kbShiftUp;st:#27'[1;2A'), {xterm}
  908. (char:0;scan:kbShiftDown;st:#27'[1;2B'), {xterm}
  909. (char:0;scan:kbShiftRight;st:#27'[1;2C'), {xterm}
  910. (char:0;scan:kbShiftLeft;st:#27'[1;2D'), {xterm}
  911. (char:0;scan:kbShiftUp;st:#27'[a'), {rxvt}
  912. (char:0;scan:kbShiftDown;st:#27'[b'), {rxvt}
  913. (char:0;scan:kbShiftRight;st:#27'[c'), {rxvt}
  914. (char:0;scan:kbShiftLeft;st:#27'[d'), {rxvt}
  915. (char:0;scan:kbShiftEnd;st:#27'[1;2F'), {xterm}
  916. (char:0;scan:kbShiftEnd;st:#27'[8$'), {rxvt}
  917. (char:0;scan:kbShiftHome;st:#27'[1;2H'), {xterm}
  918. (char:0;scan:kbShiftHome;st:#27'[7$'), {rxvt}
  919. (char:0;scan:kbCtrlUp;st:#27'[1;5A'), {xterm}
  920. (char:0;scan:kbCtrlDown;st:#27'[1;5B'), {xterm}
  921. (char:0;scan:kbCtrlRight;st:#27'[1;5C'), {xterm}
  922. (char:0;scan:kbCtrlLeft;st:#27'[1;5D'), {xterm}
  923. (char:0;scan:kbCtrlUp;st:#27'[Oa'), {rxvt}
  924. (char:0;scan:kbCtrlDown;st:#27'[Ob'), {rxvt}
  925. (char:0;scan:kbCtrlRight;st:#27'[Oc'), {rxvt}
  926. (char:0;scan:kbCtrlLeft;st:#27'[Od'), {rxvt}
  927. (char:0;scan:kbCtrlEnd;st:#27'[1;5F'), {xterm}
  928. (char:0;scan:kbCtrlEnd;st:#27'[8^'), {rxvt}
  929. (char:0;scan:kbCtrlHome;st:#27'[1;5H'), {xterm}
  930. (char:0;scan:kbCtrlHome;st:#27'[7^'), {rxvt}
  931. (char:0;scan:kbAltUp;st:#27#27'[A'), {rxvt}
  932. (char:0;scan:kbAltDown;st:#27#27'[B'), {rxvt}
  933. (char:0;scan:kbAltLeft;st:#27#27'[D'), {rxvt}
  934. (char:0;scan:kbAltRight;st:#27#27'[C'), {rxvt}
  935. {$ifdef HAIKU}
  936. (char:0;scan:kbAltUp;st:#27#27'OA'),
  937. (char:0;scan:kbAltDown;st:#27#27'OB'),
  938. (char:0;scan:kbAltRight;st:#27#27'OC'),
  939. {$else}
  940. (char:0;scan:kbAltUp;st:#27'OA'),
  941. (char:0;scan:kbAltDown;st:#27'OB'),
  942. (char:0;scan:kbAltRight;st:#27'OC'),
  943. {$endif}
  944. (char:0;scan:kbAltLeft;st:#27#27'OD'),
  945. (char:0;scan:kbAltPgUp;st:#27#27'[5~'), {rxvt}
  946. (char:0;scan:kbAltPgDn;st:#27#27'[6~'), {rxvt}
  947. (char:0;scan:kbAltEnd;st:#27#27'[4~'),
  948. (char:0;scan:kbAltEnd;st:#27#27'[8~'), {rxvt}
  949. (char:0;scan:kbAltHome;st:#27#27'[1~'),
  950. (char:0;scan:kbAltHome;st:#27#27'[7~'), {rxvt}
  951. (char:0;scan:kbAltIns;st:#27#27'[2~'), {rxvt}
  952. (char:0;scan:kbAltDel;st:#27#27'[3~'), {rxvt}
  953. { xterm default values }
  954. { xterm alternate default values }
  955. { ignored sequences }
  956. (char:0;scan:0;st:#27'[?1;0c'),
  957. (char:0;scan:0;st:#27'[?1l'),
  958. (char:0;scan:0;st:#27'[?1h'),
  959. (char:0;scan:0;st:#27'[?1;2c'),
  960. (char:0;scan:0;st:#27'[?7l'),
  961. (char:0;scan:0;st:#27'[?7h')
  962. );
  963. procedure LoadDefaultSequences;
  964. var i:cardinal;
  965. begin
  966. AddSpecialSequence(#27'[M',@GenMouseEvent);
  967. {Unix backspace/delete hell... Is #127 a backspace or delete?}
  968. if copy(fpgetenv('TERM'),1,4)='cons' then
  969. begin
  970. {FreeBSD is until now only terminal that uses it for delete.}
  971. DoAddSequence(#127,0,kbDel); {Delete}
  972. DoAddSequence(#27#127,0,kbAltDel); {Alt+delete}
  973. end
  974. else
  975. begin
  976. DoAddSequence(#127,8,0); {Backspace}
  977. DoAddSequence(#27#127,0,kbAltBack); {Alt+backspace}
  978. end;
  979. { all Esc letter }
  980. for i:=low(key_sequences) to high(key_sequences) do
  981. with key_sequences[i] do
  982. DoAddSequence(st,char,scan);
  983. end;
  984. function RawReadKey:char;
  985. var
  986. fdsin : tfdSet;
  987. begin
  988. {Check Buffer first}
  989. if KeySend<>KeyPut then
  990. begin
  991. RawReadKey:=PopKey;
  992. exit;
  993. end;
  994. {Wait for Key}
  995. if not sysKeyPressed then
  996. begin
  997. fpFD_ZERO (fdsin);
  998. fpFD_SET (StdInputHandle,fdsin);
  999. fpSelect (StdInputHandle+1,@fdsin,nil,nil,nil);
  1000. end;
  1001. RawReadKey:=ttyRecvChar;
  1002. end;
  1003. function RawReadString : String;
  1004. var
  1005. ch : char;
  1006. fdsin : tfdSet;
  1007. St : String;
  1008. begin
  1009. St:=RawReadKey;
  1010. fpFD_ZERO (fdsin);
  1011. fpFD_SET (StdInputHandle,fdsin);
  1012. Repeat
  1013. if inhead=intail then
  1014. fpSelect(StdInputHandle+1,@fdsin,nil,nil,10);
  1015. if SysKeyPressed then
  1016. ch:=ttyRecvChar
  1017. else
  1018. ch:=#0;
  1019. if ch<>#0 then
  1020. St:=St+ch;
  1021. Until ch=#0;
  1022. RawReadString:=St;
  1023. end;
  1024. function ReadKey(var IsAlt : boolean):char;
  1025. var
  1026. ch : char;
  1027. fdsin : tfdSet;
  1028. store : array [0..8] of char;
  1029. arrayind : byte;
  1030. NPT,NNPT : PTreeElement;
  1031. procedure RestoreArray;
  1032. var
  1033. i : byte;
  1034. begin
  1035. for i:=0 to arrayind-1 do
  1036. PushKey(store[i]);
  1037. end;
  1038. begin
  1039. IsAlt:=false;
  1040. {Check Buffer first}
  1041. if KeySend<>KeyPut then
  1042. begin
  1043. ReadKey:=PopKey;
  1044. exit;
  1045. end;
  1046. {Wait for Key}
  1047. if not sysKeyPressed then
  1048. begin
  1049. fpFD_ZERO (fdsin);
  1050. fpFD_SET (StdInputHandle,fdsin);
  1051. fpSelect (StdInputHandle+1,@fdsin,nil,nil,nil);
  1052. end;
  1053. ch:=ttyRecvChar;
  1054. NPT:=RootTree[ch];
  1055. if not assigned(NPT) then
  1056. PushKey(ch)
  1057. else
  1058. begin
  1059. fpFD_ZERO(fdsin);
  1060. fpFD_SET(StdInputHandle,fdsin);
  1061. store[0]:=ch;
  1062. arrayind:=1;
  1063. while assigned(NPT) and syskeypressed do
  1064. begin
  1065. if inhead=intail then
  1066. fpSelect(StdInputHandle+1,@fdsin,nil,nil,10);
  1067. ch:=ttyRecvChar;
  1068. if (ch=#27) and double_esc_hack_enabled then
  1069. begin
  1070. {This is the same hack as in findsequence; see findsequence for
  1071. explanation.}
  1072. ch:=ttyrecvchar;
  1073. {Alt+O cannot be used in this situation, it can be a function key.}
  1074. if not(ch in ['a'..'z','A'..'N','P'..'Z','0'..'9','-','+','_','=']) then
  1075. begin
  1076. if intail=0 then
  1077. intail:=insize
  1078. else
  1079. dec(intail);
  1080. inbuf[intail]:=ch;
  1081. ch:=#27;
  1082. end
  1083. else
  1084. begin
  1085. write(#27'[?1036l');
  1086. double_esc_hack_enabled:=false;
  1087. end;
  1088. end;
  1089. NNPT:=FindChild(ord(ch),NPT);
  1090. if assigned(NNPT) then
  1091. begin
  1092. NPT:=NNPT;
  1093. if NPT^.CanBeTerminal and
  1094. assigned(NPT^.SpecialHandler) then
  1095. break;
  1096. End;
  1097. if ch<>#0 then
  1098. begin
  1099. store[arrayind]:=ch;
  1100. inc(arrayind);
  1101. end;
  1102. if not assigned(NNPT) then
  1103. begin
  1104. if ch<>#0 then
  1105. begin
  1106. { Put that unused char back into InBuf }
  1107. If InTail=0 then
  1108. InTail:=InSize-1
  1109. else
  1110. Dec(InTail);
  1111. InBuf[InTail]:=ch;
  1112. end;
  1113. break;
  1114. end;
  1115. end;
  1116. if assigned(NPT) and NPT^.CanBeTerminal then
  1117. begin
  1118. if assigned(NPT^.SpecialHandler) then
  1119. begin
  1120. NPT^.SpecialHandler;
  1121. PushExt(0);
  1122. end
  1123. else if NPT^.CharValue<>0 then
  1124. PushKey(chr(NPT^.CharValue))
  1125. else if NPT^.ScanValue<>0 then
  1126. PushExt(NPT^.ScanValue);
  1127. end
  1128. else
  1129. RestoreArray;
  1130. end
  1131. {$ifdef logging}
  1132. writeln(f);
  1133. {$endif logging}
  1134. ;
  1135. ReadKey:=PopKey;
  1136. End;
  1137. {$ifdef linux}
  1138. function ShiftState:byte;
  1139. var arg:longint;
  1140. begin
  1141. shiftstate:=0;
  1142. arg:=6;
  1143. if fpioctl(StdInputHandle,TIOCLINUX,@arg)=0 then
  1144. begin
  1145. if (arg and 8)<>0 then
  1146. shiftstate:=kbAlt;
  1147. if (arg and 4)<>0 then
  1148. inc(shiftstate,kbCtrl);
  1149. { 2 corresponds to AltGr so set both kbAlt and kbCtrl PM }
  1150. if (arg and 2)<>0 then
  1151. shiftstate:=shiftstate or (kbAlt or kbCtrl);
  1152. if (arg and 1)<>0 then
  1153. inc(shiftstate,kbShift);
  1154. end;
  1155. end;
  1156. procedure force_linuxtty;
  1157. var s:string[15];
  1158. handle:sizeint;
  1159. thistty:string;
  1160. begin
  1161. is_console:=false;
  1162. if vcs_device<>-1 then
  1163. begin
  1164. { running on a tty, find out whether locally or remotely }
  1165. thistty:=ttyname(stdinputhandle);
  1166. if (copy(thistty,1,8)<>'/dev/tty') or not (thistty[9] in ['0'..'9']) then
  1167. begin
  1168. {Running from Midnight Commander or something... Bypass it.}
  1169. str(vcs_device,s);
  1170. handle:=fpopen('/dev/tty'+s,O_RDWR);
  1171. fpioctl(stdinputhandle,TIOCNOTTY,nil);
  1172. {This will currently only work when the user is root :(}
  1173. fpioctl(handle,TIOCSCTTY,nil);
  1174. if errno<>0 then
  1175. exit;
  1176. fpclose(stdinputhandle);
  1177. fpclose(stdoutputhandle);
  1178. fpclose(stderrorhandle);
  1179. fpdup2(handle,stdinputhandle);
  1180. fpdup2(handle,stdoutputhandle);
  1181. fpdup2(handle,stderrorhandle);
  1182. fpclose(handle);
  1183. end;
  1184. is_console:=true;
  1185. end;
  1186. end;
  1187. {$endif linux}
  1188. { Exported functions }
  1189. procedure SysInitKeyboard;
  1190. begin
  1191. SetRawMode(true);
  1192. {$ifdef logging}
  1193. assign(f,'keyboard.log');
  1194. rewrite(f);
  1195. {$endif logging}
  1196. {$ifdef linux}
  1197. force_linuxtty;
  1198. prepare_patching;
  1199. patchkeyboard;
  1200. if is_console then
  1201. install_vt_handler
  1202. else
  1203. begin
  1204. {$endif}
  1205. { default for Shift prefix is ^ A}
  1206. if ShiftPrefix = 0 then
  1207. ShiftPrefix:=1;
  1208. {default for Alt prefix is ^Z }
  1209. if AltPrefix=0 then
  1210. AltPrefix:=26;
  1211. { default for Ctrl Prefix is ^W }
  1212. if CtrlPrefix=0 then
  1213. CtrlPrefix:=23;
  1214. if copy(fpgetenv('TERM'),1,5)='xterm' then
  1215. {The alt key should generate an escape prefix. Save the old setting
  1216. make make it send that escape prefix.}
  1217. begin
  1218. write(#27'[?1036s'#27'[?1036h');
  1219. double_esc_hack_enabled:=true;
  1220. end;
  1221. {$ifdef linux}
  1222. end;
  1223. {$endif}
  1224. LoadDefaultSequences;
  1225. { LoadTerminfoSequences;}
  1226. end;
  1227. procedure SysDoneKeyboard;
  1228. begin
  1229. {$ifdef linux}
  1230. if is_console then
  1231. unpatchkeyboard;
  1232. {$endif linux}
  1233. if copy(fpgetenv('TERM'),1,5)='xterm' then
  1234. {Restore the old alt key behaviour.}
  1235. write(#27'[?1036r');
  1236. SetRawMode(false);
  1237. FreeTree;
  1238. {$ifdef logging}
  1239. close(f);
  1240. {$endif logging}
  1241. end;
  1242. function SysGetKeyEvent: TKeyEvent;
  1243. function EvalScan(b:byte):byte;
  1244. const
  1245. DScan:array[0..31] of byte = (
  1246. $39, $02, $28, $04, $05, $06, $08, $28,
  1247. $0A, $0B, $09, $0D, $33, $0C, $34, $35,
  1248. $0B, $02, $03, $04, $05, $06, $07, $08,
  1249. $09, $0A, $27, $27, $33, $0D, $34, $35);
  1250. LScan:array[0..31] of byte = (
  1251. $29, $1E, $30, $2E, $20, $12, $21, $22,
  1252. $23, $17, $24, $25, $26, $32, $31, $18,
  1253. $19, $10, $13, $1F, $14, $16, $2F, $11,
  1254. $2D, $15, $2C, $1A, $2B, $1B, $29, $0C);
  1255. begin
  1256. if (b and $E0)=$20 { digits / leters } then
  1257. EvalScan:=DScan[b and $1F]
  1258. else
  1259. case b of
  1260. $08:EvalScan:=$0E; { backspace }
  1261. $09:EvalScan:=$0F; { TAB }
  1262. $0D:EvalScan:=$1C; { CR }
  1263. $1B:EvalScan:=$01; { esc }
  1264. $40:EvalScan:=$03; { @ }
  1265. $5E:EvalScan:=$07; { ^ }
  1266. $60:EvalScan:=$29; { ` }
  1267. else
  1268. EvalScan:=LScan[b and $1F];
  1269. end;
  1270. end;
  1271. function EvalScanZ(b:byte):byte;
  1272. begin
  1273. EvalScanZ:=b;
  1274. if b in [$3B..$44] { F1..F10 -> Alt-F1..Alt-F10} then
  1275. EvalScanZ:=b+$2D;
  1276. end;
  1277. const
  1278. {kbHome, kbUp, kbPgUp,Missing, kbLeft,
  1279. kbCenter, kbRight, kbAltGrayPlus, kbend,
  1280. kbDown, kbPgDn, kbIns, kbDel }
  1281. CtrlArrow : array [kbHome..kbDel] of byte =
  1282. {($77,$8d,$84,$8e,$73,$8f,$74,$90,$75,$91,$76);}
  1283. (kbCtrlHome,kbCtrlUp,kbCtrlPgUp,kbNoKey,kbCtrlLeft,
  1284. kbCtrlCenter,kbCtrlRight,kbAltGrayPlus,kbCtrlEnd,
  1285. kbCtrlDown,kbCtrlPgDn,kbCtrlIns,kbCtrlDel);
  1286. AltArrow : array [kbHome..kbDel] of byte =
  1287. (kbAltHome,kbAltUp,kbAltPgUp,kbNoKey,kbAltLeft,
  1288. kbCenter,kbAltRight,kbAltGrayPlus,kbAltEnd,
  1289. kbAltDown,kbAltPgDn,kbAltIns,kbAltDel);
  1290. ShiftArrow : array [kbShiftUp..kbShiftEnd] of byte =
  1291. (kbUp,kbLeft,kbRight,kbDown,kbHome,kbEnd);
  1292. var
  1293. MyScan:byte;
  1294. MyChar : char;
  1295. EscUsed,AltPrefixUsed,CtrlPrefixUsed,ShiftPrefixUsed,IsAlt,Again : boolean;
  1296. SState:byte;
  1297. begin {main}
  1298. MyChar:=Readkey(IsAlt);
  1299. MyScan:=ord(MyChar);
  1300. {$ifdef linux}
  1301. if is_console then
  1302. SState:=ShiftState
  1303. else
  1304. {$endif}
  1305. Sstate:=0;
  1306. CtrlPrefixUsed:=false;
  1307. AltPrefixUsed:=false;
  1308. ShiftPrefixUsed:=false;
  1309. EscUsed:=false;
  1310. if IsAlt then
  1311. SState:=SState or kbAlt;
  1312. repeat
  1313. again:=false;
  1314. if Mychar=#0 then
  1315. begin
  1316. MyScan:=ord(ReadKey(IsAlt));
  1317. if myscan=$01 then
  1318. mychar:=#27;
  1319. { Handle Ctrl-<x>, but not AltGr-<x> }
  1320. if ((SState and kbCtrl)<>0) and ((SState and kbAlt) = 0) then
  1321. case MyScan of
  1322. kbHome..kbDel : { cArrow }
  1323. MyScan:=CtrlArrow[MyScan];
  1324. kbF1..KbF10 : { cF1-cF10 }
  1325. MyScan:=MyScan+kbCtrlF1-kbF1;
  1326. kbF11..KbF12 : { cF11-cF12 }
  1327. MyScan:=MyScan+kbCtrlF11-kbF11;
  1328. end
  1329. { Handle Alt-<x>, but not AltGr }
  1330. else if ((SState and kbAlt)<>0) and ((SState and kbCtrl) = 0) then
  1331. case MyScan of
  1332. kbHome..kbDel : { AltArrow }
  1333. MyScan:=AltArrow[MyScan];
  1334. kbF1..KbF10 : { aF1-aF10 }
  1335. MyScan:=MyScan+kbAltF1-kbF1;
  1336. kbF11..KbF12 : { aF11-aF12 }
  1337. MyScan:=MyScan+kbAltF11-kbF11;
  1338. end
  1339. else if (SState and kbShift)<>0 then
  1340. case MyScan of
  1341. kbIns: MyScan:=kbShiftIns;
  1342. kbDel: MyScan:=kbShiftDel;
  1343. kbF1..KbF10 : { sF1-sF10 }
  1344. MyScan:=MyScan+kbShiftF1-kbF1;
  1345. kbF11..KbF12 : { sF11-sF12 }
  1346. MyScan:=MyScan+kbShiftF11-kbF11;
  1347. end;
  1348. if myscan in [kbShiftUp..kbShiftEnd] then
  1349. begin
  1350. myscan:=ShiftArrow[myscan];
  1351. sstate:=sstate or kbshift;
  1352. end;
  1353. if myscan=kbAltBack then
  1354. sstate:=sstate or kbalt;
  1355. if (MyChar<>#0) or (MyScan<>0) or (SState<>0) then
  1356. SysGetKeyEvent:=$3000000 or ord(MyChar) or (MyScan shl 8) or (SState shl 16)
  1357. else
  1358. SysGetKeyEvent:=0;
  1359. exit;
  1360. end
  1361. else if MyChar=#27 then
  1362. begin
  1363. if EscUsed then
  1364. SState:=SState and not kbAlt
  1365. else
  1366. begin
  1367. SState:=SState or kbAlt;
  1368. Again:=true;
  1369. EscUsed:=true;
  1370. end;
  1371. end
  1372. else if (AltPrefix<>0) and (MyChar=chr(AltPrefix)) then
  1373. begin { ^Z - replace Alt for Linux OS }
  1374. if AltPrefixUsed then
  1375. begin
  1376. SState:=SState and not kbAlt;
  1377. end
  1378. else
  1379. begin
  1380. AltPrefixUsed:=true;
  1381. SState:=SState or kbAlt;
  1382. Again:=true;
  1383. end;
  1384. end
  1385. else if (CtrlPrefix<>0) and (MyChar=chr(CtrlPrefix)) then
  1386. begin
  1387. if CtrlPrefixUsed then
  1388. SState:=SState and not kbCtrl
  1389. else
  1390. begin
  1391. CtrlPrefixUsed:=true;
  1392. SState:=SState or kbCtrl;
  1393. Again:=true;
  1394. end;
  1395. end
  1396. else if (ShiftPrefix<>0) and (MyChar=chr(ShiftPrefix)) then
  1397. begin
  1398. if ShiftPrefixUsed then
  1399. SState:=SState and not kbShift
  1400. else
  1401. begin
  1402. ShiftPrefixUsed:=true;
  1403. SState:=SState or kbShift;
  1404. Again:=true;
  1405. end;
  1406. end;
  1407. if not again then
  1408. begin
  1409. MyScan:=EvalScan(ord(MyChar));
  1410. if ((SState and kbAlt)<>0) and ((SState and kbCtrl) = 0) then
  1411. begin
  1412. if MyScan in [$02..$0D] then
  1413. inc(MyScan,$76);
  1414. MyChar:=chr(0);
  1415. end
  1416. else if (SState and kbShift)<>0 then
  1417. if MyChar=#9 then
  1418. begin
  1419. MyChar:=#0;
  1420. MyScan:=kbShiftTab;
  1421. end;
  1422. end
  1423. else
  1424. begin
  1425. MyChar:=Readkey(IsAlt);
  1426. MyScan:=ord(MyChar);
  1427. if IsAlt then
  1428. SState:=SState or kbAlt;
  1429. end;
  1430. until not Again;
  1431. if (MyChar<>#0) or (MyScan<>0) or (SState<>0) then
  1432. SysGetKeyEvent:=$3000000 or ord(MyChar) or (MyScan shl 8) or (SState shl 16)
  1433. else
  1434. SysGetKeyEvent:=0;
  1435. end;
  1436. function SysPollKeyEvent: TKeyEvent;
  1437. var
  1438. KeyEvent : TKeyEvent;
  1439. begin
  1440. if keypressed then
  1441. begin
  1442. KeyEvent:=SysGetKeyEvent;
  1443. PutKeyEvent(KeyEvent);
  1444. SysPollKeyEvent:=KeyEvent
  1445. end
  1446. else
  1447. SysPollKeyEvent:=0;
  1448. end;
  1449. function SysGetShiftState : Byte;
  1450. begin
  1451. {$ifdef linux}
  1452. if is_console then
  1453. SysGetShiftState:=ShiftState
  1454. else
  1455. {$else}
  1456. SysGetShiftState:=0;
  1457. {$endif}
  1458. end;
  1459. procedure RestoreStartMode;
  1460. begin
  1461. TCSetAttr(1,TCSANOW,StartTio);
  1462. end;
  1463. const
  1464. SysKeyboardDriver : TKeyboardDriver = (
  1465. InitDriver : @SysInitKeyBoard;
  1466. DoneDriver : @SysDoneKeyBoard;
  1467. GetKeyevent : @SysGetKeyEvent;
  1468. PollKeyEvent : @SysPollKeyEvent;
  1469. GetShiftState : @SysGetShiftState;
  1470. TranslateKeyEvent : Nil;
  1471. TranslateKeyEventUnicode : Nil;
  1472. );
  1473. begin
  1474. SetKeyBoardDriver(SysKeyBoardDriver);
  1475. TCGetAttr(1,StartTio);
  1476. end.