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Revision 8860 - (show annotations) (download) (as text)
Sat Jul 25 16:00:24 2020 UTC (3 years, 8 months ago) by zmatsuo
File MIME type: text/x-csrc
File size: 152926 byte(s)
マクロ(ttmacro)用送信バッファの分離

- 受信した文字をマクロで判定等を行うために、マクロ(ttmacro)へ受信データを送信する
- 従来は、1つのバッファをマクロとlogで共用していた
- 各々で異なる文字コードを扱えるよう分離した
- マクロ用は ttdde.c,h にまとめた
1 /*
2 * Copyright (C) 1994-1998 T. Teranishi
3 * (C) 2004-2020 TeraTerm Project
4 * All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 *
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. The name of the author may not be used to endorse or promote products
16 * derived from this software without specific prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR
19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
22 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29
30 /* TERATERM.EXE, VT terminal emulation */
31 #include "teraterm.h"
32 #include "tttypes.h"
33 #include <stdio.h>
34 #include <string.h>
35 #include <mbstring.h>
36 #include <locale.h>
37 #include <ctype.h>
38 #if !defined(_CRTDBG_MAP_ALLOC)
39 #define _CRTDBG_MAP_ALLOC
40 #endif
41 #include <stdlib.h>
42 #include <crtdbg.h>
43 #include <assert.h>
44
45 #include "buffer.h"
46 #include "ttwinman.h"
47 #include "ttcommon.h"
48 #include "commlib.h"
49 #include "vtdisp.h"
50 #include "keyboard.h"
51 #include "ttlib.h"
52 #include "ttftypes.h"
53 #include "filesys.h"
54 #include "teraprn.h"
55 #include "telnet.h"
56 #include "ttime.h"
57 #include "clipboar.h"
58 #include "codeconv.h"
59 #include "unicode.h"
60 #include "ttdde.h"
61
62 #include "vtterm.h"
63
64 #include "unicode_test.h"
65
66 static void ParseFirst(BYTE b);
67
68 #define Accept8BitCtrl ((VTlevel >= 2) && (ts.TermFlag & TF_ACCEPT8BITCTRL))
69
70 /* Parsing modes */
71 #define ModeFirst 0
72 #define ModeESC 1
73 #define ModeDCS 2
74 #define ModeDCUserKey 3
75 #define ModeSOS 4
76 #define ModeCSI 5
77 #define ModeXS 6
78 #define ModeDLE 7
79 #define ModeCAN 8
80 #define ModeIgnore 9
81
82 #define NParamMax 16
83 #define NSParamMax 16
84 #define IntCharMax 5
85
86 /* DEC Locator Flag */
87 #define DecLocatorOneShot 1
88 #define DecLocatorPixel 2
89 #define DecLocatorButtonDown 4
90 #define DecLocatorButtonUp 8
91 #define DecLocatorFiltered 16
92
93 void RingBell(int type);
94 void VisualBell();
95 BOOL DecLocatorReport(int Event, int Button);
96
97 /* character attribute */
98 static TCharAttr CharAttr;
99
100 /* various modes of VT emulation */
101 static BOOL RelativeOrgMode;
102 static BOOL InsertMode;
103 static BOOL LFMode;
104 static BOOL ClearThenHome;
105 static BOOL AutoWrapMode;
106 static BOOL FocusReportMode;
107 static BOOL AltScr;
108 static BOOL LRMarginMode;
109 static BOOL RectangleMode;
110 static BOOL BracketedPaste;
111
112 static char BracketStart[] = "\033[200~";
113 static char BracketEnd[] = "\033[201~";
114 static int BracketStartLen = (sizeof(BracketStart)-1);
115 static int BracketEndLen = (sizeof(BracketEnd)-1);
116
117 static int VTlevel;
118
119 static BOOL AcceptWheelToCursor;
120
121 // save/restore cursor
122 typedef struct {
123 int CursorX, CursorY;
124 TCharAttr Attr;
125 int Glr[2], Gn[4]; // G0-G3, GL & GR
126 BOOL AutoWrapMode;
127 BOOL RelativeOrgMode;
128 } TStatusBuff;
129 typedef TStatusBuff *PStatusBuff;
130
131 // currently only used for AUTO CR/LF receive mode
132 static BYTE PrevCharacter;
133 static BOOL PrevCRorLFGeneratedCRLF; // indicates that previous CR or LF really generated a CR+LF
134
135 static BYTE LastPutCharacter;
136
137 // status buffer for main screen & status line
138 static TStatusBuff SBuff1, SBuff2, SBuff3;
139
140 static BOOL ESCFlag, JustAfterESC;
141 static BOOL KanjiIn; // TRUE = MBCS��1byte�������M��������
142 static BOOL EUCkanaIn, EUCsupIn;
143 static int EUCcount;
144 static BOOL Special;
145
146 static int Param[NParamMax+1];
147 static int SubParam[NParamMax+1][NSParamMax+1];
148 static int NParam, NSParam[NParamMax+1];
149 static BOOL FirstPrm;
150 static BYTE IntChar[IntCharMax+1];
151 static int ICount;
152 static BYTE Prv;
153 static int ParseMode;
154 static int ChangeEmu;
155
156 typedef struct tstack {
157 char *title;
158 struct tstack *next;
159 } TStack;
160 typedef TStack *PTStack;
161 static PTStack TitleStack = NULL;
162
163 /* user defined keys */
164 static BOOL WaitKeyId, WaitHi;
165
166 /* GL, GR code group */
167 static int Glr[2];
168 /* G0, G1, G2, G3 code group */
169 static int Gn[4];
170 /* GL for single shift 2/3 */
171 static int GLtmp;
172 /* single shift 2/3 flag */
173 static BOOL SSflag;
174 /* JIS -> SJIS conversion flag */
175 static BOOL ConvJIS;
176 static WORD Kanji;
177 static BOOL Fallbacked;
178
179 // variables for status line mode
180 static int StatusX=0;
181 static BOOL StatusWrap=FALSE;
182 static BOOL StatusCursor=TRUE;
183 static int MainX, MainY; //cursor registers
184 static int MainTop, MainBottom; // scroll region registers
185 static BOOL MainWrap;
186 static BOOL MainCursor=TRUE;
187
188 /* status for printer escape sequences */
189 static BOOL PrintEX = TRUE; // printing extent
190 // (TRUE: screen, FALSE: scroll region)
191 static BOOL AutoPrintMode = FALSE;
192 static BOOL PrinterMode = FALSE;
193 static BOOL DirectPrn = FALSE;
194
195 /* User key */
196 static BYTE NewKeyStr[FuncKeyStrMax];
197 static int NewKeyId, NewKeyLen;
198
199 /* Mouse Report */
200 static int MouseReportMode;
201 static int MouseReportExtMode;
202 static unsigned int DecLocatorFlag;
203 static int LastX, LastY;
204 static int ButtonStat;
205 static int FilterTop, FilterBottom, FilterLeft, FilterRight;
206
207 /* Saved IME status */
208 static BOOL SavedIMEstatus;
209
210 /* Beep over-used */
211 static DWORD BeepStartTime = 0;
212 static DWORD BeepSuppressTime = 0;
213 static DWORD BeepOverUsedCount = 0;
214
215 static _locale_t CLocale = NULL;
216
217 typedef struct {
218 BOOL log_cr_hold;
219 int log_code;
220 int log_cr_type;
221 } vtterm_work_t;
222
223 static vtterm_work_t vtterm_work;
224
225 void ClearParams()
226 {
227 ICount = 0;
228 NParam = 1;
229 NSParam[1] = 0;
230 Param[1] = 0;
231 Prv = 0;
232 }
233
234 void ResetSBuffer(PStatusBuff sbuff)
235 {
236 sbuff->CursorX = 0;
237 sbuff->CursorY = 0;
238 sbuff->Attr = DefCharAttr;
239 if (ts.Language==IdJapanese) {
240 sbuff->Gn[0] = IdASCII;
241 sbuff->Gn[1] = IdKatakana;
242 sbuff->Gn[2] = IdKatakana;
243 sbuff->Gn[3] = IdKanji;
244 sbuff->Glr[0] = 0;
245 if ((ts.KanjiCode==IdJIS) && (ts.JIS7Katakana==0))
246 sbuff->Glr[1] = 2; // 8-bit katakana
247 else
248 sbuff->Glr[1] = 3;
249 }
250 else {
251 sbuff->Gn[0] = IdASCII;
252 sbuff->Gn[1] = IdSpecial;
253 sbuff->Gn[2] = IdASCII;
254 sbuff->Gn[3] = IdASCII;
255 sbuff->Glr[0] = 0;
256 sbuff->Glr[1] = 0;
257 }
258 sbuff->AutoWrapMode = TRUE;
259 sbuff->RelativeOrgMode = FALSE;
260 }
261
262 void ResetAllSBuffers()
263 {
264 ResetSBuffer(&SBuff1);
265 // copy SBuff1 to SBuff2
266 SBuff2 = SBuff1;
267 SBuff3 = SBuff1;
268 }
269
270 void ResetCurSBuffer()
271 {
272 PStatusBuff Buff;
273
274 if (AltScr) {
275 Buff = &SBuff3; // Alternate screen buffer
276 }
277 else {
278 Buff = &SBuff1; // Normal screen buffer
279 }
280 ResetSBuffer(Buff);
281 SBuff2 = *Buff;
282 }
283
284 void ResetTerminal() /*reset variables but don't update screen */
285 {
286 DispReset();
287 BuffReset();
288
289 /* Attribute */
290 CharAttr = DefCharAttr;
291 Special = FALSE;
292 BuffSetCurCharAttr(CharAttr);
293
294 /* Various modes */
295 InsertMode = FALSE;
296 LFMode = (ts.CRSend == IdCRLF);
297 AutoWrapMode = TRUE;
298 AppliKeyMode = FALSE;
299 AppliCursorMode = FALSE;
300 AppliEscapeMode = FALSE;
301 AcceptWheelToCursor = ts.TranslateWheelToCursor;
302 RelativeOrgMode = FALSE;
303 ts.ColorFlag &= ~CF_REVERSEVIDEO;
304 AutoRepeatMode = TRUE;
305 FocusReportMode = FALSE;
306 MouseReportMode = IdMouseTrackNone;
307 MouseReportExtMode = IdMouseTrackExtNone;
308 DecLocatorFlag = 0;
309 ClearThenHome = FALSE;
310 RectangleMode = FALSE;
311
312 ChangeTerminalID();
313
314 LastX = 0;
315 LastY = 0;
316 ButtonStat = 0;
317
318 if (CLocale == NULL) {
319 CLocale = _create_locale(LC_ALL, "C");
320 }
321
322 /* Character sets */
323 ResetCharSet();
324
325 /* ESC flag for device control sequence */
326 ESCFlag = FALSE;
327 /* for TEK sequence */
328 JustAfterESC = FALSE;
329
330 /* Parse mode */
331 ParseMode = ModeFirst;
332
333 /* Clear printer mode */
334 PrinterMode = FALSE;
335
336 // status buffers
337 ResetAllSBuffers();
338
339 // Alternate Screen Buffer
340 AltScr = FALSE;
341
342 // Left/Right Margin Mode
343 LRMarginMode = FALSE;
344
345 // Bracketed Paste Mode
346 BracketedPaste = FALSE;
347
348 // Saved IME Status
349 SavedIMEstatus = FALSE;
350
351 // previous received character
352 PrevCharacter = -1; // none
353 PrevCRorLFGeneratedCRLF = FALSE;
354
355 LastPutCharacter = 0;
356
357 // Beep over-used
358 BeepStartTime = GetTickCount();
359 BeepSuppressTime = BeepStartTime - ts.BeepSuppressTime * 1000;
360 BeepStartTime -= (ts.BeepOverUsedTime * 1000);
361 BeepOverUsedCount = ts.BeepOverUsedCount;
362
363 {
364 vtterm_work_t *vtterm = &vtterm_work;
365 vtterm->log_cr_hold = FALSE;
366 vtterm->log_code = 0;
367 vtterm->log_cr_type = 0;
368 }
369 }
370
371 void ResetCharSet()
372 {
373 char *result;
374 if (ts.Language==IdJapanese) {
375 Gn[0] = IdASCII;
376 Gn[1] = IdKatakana;
377 Gn[2] = IdKatakana;
378 Gn[3] = IdKanji;
379 Glr[0] = 0;
380 if ((ts.KanjiCode==IdJIS) && (ts.JIS7Katakana==0))
381 Glr[1] = 2; // 8-bit katakana
382 else
383 Glr[1] = 3;
384 }
385 else {
386 Gn[0] = IdASCII;
387 Gn[1] = IdSpecial;
388 Gn[2] = IdASCII;
389 Gn[3] = IdASCII;
390 Glr[0] = 0;
391 Glr[1] = 0;
392 cv.SendCode = IdASCII;
393 cv.SendKanjiFlag = FALSE;
394 cv.EchoCode = IdASCII;
395 cv.EchoKanjiFlag = FALSE;
396 }
397 /* Kanji flag */
398 KanjiIn = FALSE;
399 EUCkanaIn = FALSE;
400 EUCsupIn = FALSE;
401 SSflag = FALSE;
402 ConvJIS = FALSE;
403 Fallbacked = FALSE;
404
405 cv.Language = ts.Language;
406 cv.CRSend = ts.CRSend;
407 cv.KanjiCodeEcho = ts.KanjiCode;
408 cv.JIS7KatakanaEcho = ts.JIS7Katakana;
409 cv.KanjiCodeSend = ts.KanjiCodeSend;
410 cv.JIS7KatakanaSend = ts.JIS7KatakanaSend;
411 cv.KanjiIn = ts.KanjiIn;
412 cv.KanjiOut = ts.KanjiOut;
413
414 // ���P�[��������
415 // wctomb ������
416 result = setlocale(LC_ALL, ts.Locale);
417 if (result == NULL) {
418 // ��������Locale���������Z�b�g����������?
419 // default���Z�b�g��������
420 strcpy(ts.Locale, DEFAULT_LOCALE);
421 result = setlocale(LC_ALL, ts.Locale);
422 }
423 // �p����Windows�����Ats.Locale���f�t�H���g��"japanese"�����������A
424 // setlocale�� NULL �����������ATera Term���N�������������Bstrrchr��
425 // ��1��������NULL���w���������������B
426 // setlocale ���������������R�[�h�y�[�W���������A���s��������
427 // ANSI�R�[�h�y�[�W�����������B
428 if (result)
429 ts.CodePage = atoi(strrchr(result, '.')+1);
430 else
431 ts.CodePage = GetACP();
432 }
433
434 void ResetKeypadMode(BOOL DisabledModeOnly)
435 {
436 if (!DisabledModeOnly || ts.DisableAppKeypad)
437 AppliKeyMode = FALSE;
438 if (!DisabledModeOnly || ts.DisableAppCursor)
439 AppliCursorMode = FALSE;
440 }
441
442 void MoveToMainScreen()
443 {
444 StatusX = CursorX;
445 StatusWrap = Wrap;
446 StatusCursor = IsCaretEnabled();
447
448 CursorTop = MainTop;
449 CursorBottom = MainBottom;
450 Wrap = MainWrap;
451 DispEnableCaret(MainCursor);
452 MoveCursor(MainX, MainY); // move to main screen
453 }
454
455 static void Log1Byte(BYTE b)
456 {
457 LogPut1(b);
458 DDEPut1(b);
459 }
460
461 static void Log1UTF32(vtterm_work_t *vtterm, unsigned int u32)
462 {
463 switch(vtterm->log_code) {
464 default:
465 case 0: {
466 // UTF-8
467 char u8[4];
468 size_t u8_len = UTF32ToUTF8(u32, u8, _countof(u8));
469 size_t i;
470 for (i = 0; i < u8_len; i++) {
471 Log1Byte(u8[i]);
472 }
473 break;
474 }
475 case 1:
476 case 2: {
477 // UTF-16
478 wchar_t u16[2];
479 size_t u16_len = UTF32ToUTF16(u32, u16, _countof(u16));
480 size_t i;
481 for (i = 0; i < u16_len; i++) {
482 if (vtterm->log_code == 1) {
483 // UTF-16LE
484 Log1Byte(u16[i] & 0xff);
485 Log1Byte((u16[i] >> 8) & 0xff);
486 }
487 else {
488 // UTF-16BE
489 Log1Byte(u16[i] & 0xff);
490 Log1Byte((u16[i] >> 8) & 0xff);
491 }
492 }
493 }
494 }
495 }
496
497 static void Log1NewLine(vtterm_work_t *vtterm)
498 {
499 switch(vtterm->log_cr_type) {
500 case 0:
501 // CR + LF
502 Log1UTF32(vtterm, CR);
503 Log1UTF32(vtterm, LF);
504 break;
505 case 1:
506 // CR
507 Log1UTF32(vtterm, CR);
508 break;
509 case 2:
510 // LF
511 Log1UTF32(vtterm, LF);
512 break;
513 }
514 }
515
516 static void OutputLogUTF32(unsigned int u32)
517 {
518 vtterm_work_t *vtterm = &vtterm_work;
519
520 if (cv.HLogBuf == 0) {
521 // ���O��������������, ����������
522 return;
523 }
524
525 // ���s�R�[�h���`�F�b�N
526 // CR hold ���� ���s�o�� CR hold ���X
527 // ------------+-------+-----------+------------
528 // ���� CR 0 �Z�b�g����
529 // ���� LF 1 ��������
530 // ���� ������ 0 ��������
531 // ���� CR 1 ��������(�z�[���h��������)
532 // ���� LF 1 �N���A����
533 // ���� ������ 1 �N���A����
534 if (vtterm->log_cr_hold == FALSE) {
535 if (u32 == CR) {
536 vtterm->log_cr_hold = TRUE;
537 return;
538 }
539 else if (u32 == LF) {
540 Log1NewLine(vtterm);
541 return;
542 }
543 else {
544 // ���s��������
545 }
546 }
547 else {
548 if (u32 == CR) {
549 Log1NewLine(vtterm);
550 return;
551 }
552 else if (u32 == LF) {
553 vtterm->log_cr_hold = FALSE;
554 Log1NewLine(vtterm);
555 return;
556 }
557 else {
558 vtterm->log_cr_hold = FALSE;
559 Log1NewLine(vtterm);
560 }
561 }
562
563 Log1UTF32(vtterm, u32);
564 }
565
566 static void OutputLogByte(BYTE b)
567 {
568 if (cv.HLogBuf!=0) {
569 OutputLogUTF32(b);
570 }
571 }
572
573 void MoveToStatusLine()
574 {
575 MainX = CursorX;
576 MainY = CursorY;
577 MainTop = CursorTop;
578 MainBottom = CursorBottom;
579 MainWrap = Wrap;
580 MainCursor = IsCaretEnabled();
581
582 DispEnableCaret(StatusCursor);
583 MoveCursor(StatusX, NumOfLines-1); // move to status line
584 CursorTop = NumOfLines-1;
585 CursorBottom = CursorTop;
586 Wrap = StatusWrap;
587 }
588
589 void HideStatusLine()
590 {
591 if (isCursorOnStatusLine)
592 MoveToMainScreen();
593 StatusX = 0;
594 StatusWrap = FALSE;
595 StatusCursor = TRUE;
596 ShowStatusLine(0); //hide
597 }
598
599 void ChangeTerminalSize(int Nx, int Ny)
600 {
601 BuffChangeTerminalSize(Nx, Ny);
602 StatusX = 0;
603 MainX = 0;
604 MainY = 0;
605 MainTop = 0;
606 MainBottom = NumOfLines-StatusLine-1;
607 }
608
609 void SendCSIstr(char *str, int len) {
610 int l;
611
612 if (str == NULL || len < 0)
613 return;
614
615 if (len == 0) {
616 l = strlen(str);
617 }
618 else {
619 l = len;
620 }
621
622 if (Send8BitMode)
623 CommBinaryOut(&cv,"\233", 1);
624 else
625 CommBinaryOut(&cv,"\033[", 2);
626
627 CommBinaryOut(&cv, str, l);
628 }
629
630 void SendOSCstr(char *str, int len, char TermChar) {
631 int l;
632
633 if (str == NULL || len < 0)
634 return;
635
636 if (len == 0) {
637 l = strlen(str);
638 }
639 else {
640 l = len;
641 }
642
643 if (TermChar == BEL) {
644 CommBinaryOut(&cv,"\033]", 2);
645 CommBinaryOut(&cv, str, l);
646 CommBinaryOut(&cv,"\007", 1);
647 }
648 else if (Send8BitMode) {
649 CommBinaryOut(&cv,"\235", 1);
650 CommBinaryOut(&cv, str, l);
651 CommBinaryOut(&cv,"\234", 1);
652 }
653 else {
654 CommBinaryOut(&cv,"\033]", 2);
655 CommBinaryOut(&cv, str, l);
656 CommBinaryOut(&cv,"\033\\", 2);
657 }
658
659 }
660
661 void SendDCSstr(char *str, int len) {
662 int l;
663
664 if (str == NULL || len < 0)
665 return;
666
667 if (len == 0) {
668 l = strlen(str);
669 }
670 else {
671 l = len;
672 }
673
674 if (Send8BitMode) {
675 CommBinaryOut(&cv,"\220", 1);
676 CommBinaryOut(&cv, str, l);
677 CommBinaryOut(&cv,"\234", 1);
678 }
679 else {
680 CommBinaryOut(&cv,"\033P", 2);
681 CommBinaryOut(&cv, str, l);
682 CommBinaryOut(&cv,"\033\\", 2);
683 }
684
685 }
686
687 void BackSpace()
688 {
689 if (CursorX == CursorLeftM || CursorX == 0) {
690 if (CursorY > 0 && (ts.TermFlag & TF_BACKWRAP)) {
691 MoveCursor(CursorRightM, CursorY-1);
692 if (cv.HLogBuf!=0 && !ts.LogTypePlainText) OutputLogByte(BS);
693 }
694 }
695 else if (CursorX > 0) {
696 MoveCursor(CursorX-1, CursorY);
697 if (cv.HLogBuf!=0 && !ts.LogTypePlainText) OutputLogByte(BS);
698 }
699 }
700
701 static void CarriageReturn(BOOL logFlag)
702 {
703 if (!ts.EnableContinuedLineCopy || logFlag)
704 if (cv.HLogBuf!=0) OutputLogByte(CR);
705
706 if (RelativeOrgMode || CursorX > CursorLeftM)
707 MoveCursor(CursorLeftM, CursorY);
708 else if (CursorX < CursorLeftM)
709 MoveCursor(0, CursorY);
710
711 Fallbacked = FALSE;
712 }
713
714 static void LineFeed(BYTE b, BOOL logFlag)
715 {
716 /* for auto print mode */
717 if ((AutoPrintMode) &&
718 (b>=LF) && (b<=FF))
719 BuffDumpCurrentLine(b);
720
721 if (!ts.EnableContinuedLineCopy || logFlag)
722 if (cv.HLogBuf!=0) OutputLogByte(LF);
723
724 if (CursorY < CursorBottom)
725 MoveCursor(CursorX,CursorY+1);
726 else if (CursorY == CursorBottom) BuffScrollNLines(1);
727 else if (CursorY < NumOfLines-StatusLine-1)
728 MoveCursor(CursorX,CursorY+1);
729
730 ClearLineContinued();
731
732 if (LFMode) CarriageReturn(logFlag);
733
734 Fallbacked = FALSE;
735 }
736
737 void Tab()
738 {
739 if (Wrap && !ts.VTCompatTab) {
740 CarriageReturn(FALSE);
741 LineFeed(LF,FALSE);
742 if (ts.EnableContinuedLineCopy) {
743 SetLineContinued();
744 }
745 Wrap = FALSE;
746 }
747 CursorForwardTab(1, AutoWrapMode);
748 if (cv.HLogBuf!=0) OutputLogByte(HT);
749 }
750
751 void RepeatChar(BYTE b, int count)
752 {
753 int i;
754 BOOL SpecialNew;
755 TCharAttr CharAttrTmp, CharAttrWrap;
756
757 if (b <= US || b == DEL)
758 return;
759
760 CharAttrTmp = CharAttr;
761 LastPutCharacter = 0;
762
763 SpecialNew = FALSE;
764 if ((b>0x5F) && (b<0x80)) {
765 if (SSflag)
766 SpecialNew = (Gn[GLtmp]==IdSpecial);
767 else
768 SpecialNew = (Gn[Glr[0]]==IdSpecial);
769 }
770 else if (b>0xDF) {
771 if (SSflag)
772 SpecialNew = (Gn[GLtmp]==IdSpecial);
773 else
774 SpecialNew = (Gn[Glr[1]]==IdSpecial);
775 }
776
777 if (SpecialNew != Special) {
778 UpdateStr();
779 Special = SpecialNew;
780 }
781
782 if (Special) {
783 b = b & 0x7F;
784 CharAttrTmp.Attr |= AttrSpecial;
785 }
786 else
787 CharAttrTmp.Attr |= CharAttr.Attr;
788 CharAttrTmp.AttrEx = CharAttrTmp.Attr;
789
790 CharAttrWrap = CharAttrTmp;
791 CharAttrWrap.Attr |= ts.EnableContinuedLineCopy ? AttrLineContinued : 0;
792
793 for (i=0; i<count; i++) {
794 if (Wrap) {
795 CarriageReturn(FALSE);
796 LineFeed(LF,FALSE);
797 }
798
799 BuffPutChar(b, Wrap ? CharAttrWrap : CharAttrTmp, InsertMode);
800
801 if (CursorX == CursorRightM || CursorX >= NumOfColumns-1) {
802 UpdateStr();
803 Wrap = AutoWrapMode;
804 }
805 else {
806 Wrap = FALSE;
807 MoveRight();
808 }
809 }
810 }
811
812 static void PutChar(BYTE b)
813 {
814 BOOL SpecialNew;
815 TCharAttr CharAttrTmp;
816
817 CharAttrTmp = CharAttr;
818
819 LastPutCharacter = b;
820
821 if (PrinterMode) { // printer mode
822 WriteToPrnFile(b,TRUE);
823 return;
824 }
825
826 if (Wrap) {
827 #if UNICODE_INTERNAL_BUFF
828 TCharAttr t = BuffGetCursorCharAttr(CursorX, CursorY);
829 t.Attr |= AttrLineContinued;
830 t.AttrEx = t.Attr;
831 BuffSetCursorCharAttr(CursorX, CursorY, t);
832 #endif
833 CarriageReturn(FALSE);
834 LineFeed(LF,FALSE);
835 #if !UNICODE_INTERNAL_BUFF
836 CharAttrTmp.Attr |= ts.EnableContinuedLineCopy ? AttrLineContinued : 0;
837 #else
838 CharAttrTmp.Attr |= AttrLineContinued;
839 t.AttrEx = t.Attr;
840 #endif
841 }
842
843 if (cv.HLogBuf !=0) {
844 // (2005.2.20 yutaka)
845 if (ts.LogTypePlainText) {
846 if (__isascii(b) && !isprint(b)) {
847 // ASCII�������A���\�������������O�����������B
848 } else {
849 OutputLogByte(b);
850 }
851 } else {
852 OutputLogByte(b);
853 }
854 }
855
856 Wrap = FALSE;
857
858 SpecialNew = FALSE;
859 if ((b>0x5F) && (b<0x80)) {
860 if (SSflag)
861 SpecialNew = (Gn[GLtmp]==IdSpecial);
862 else
863 SpecialNew = (Gn[Glr[0]]==IdSpecial);
864 }
865 else if (b>0xDF) {
866 if (SSflag)
867 SpecialNew = (Gn[GLtmp]==IdSpecial);
868 else
869 SpecialNew = (Gn[Glr[1]]==IdSpecial);
870 }
871
872 if (SpecialNew != Special) {
873 UpdateStr();
874 Special = SpecialNew;
875 }
876
877 if (Special) {
878 b = b & 0x7F;
879 CharAttrTmp.Attr |= AttrSpecial;
880 }
881 else
882 CharAttrTmp.Attr |= CharAttr.Attr;
883
884 #if 0
885 if (CursorX == CursorRightM || CursorX >= NumOfColumns - 1) {
886 CharAttrTmp.Attr |= AttrLineContinued;
887 }
888 #endif
889
890 #if UNICODE_INTERNAL_BUFF
891 CharAttrTmp.AttrEx = CharAttrTmp.Attr;
892 if (ts.Language == IdJapanese) {
893 unsigned long u32;
894 switch (ts.KanjiCode) {
895 // case IdJIS:
896 // b = JIS2SJIS(b);
897 case IdSJIS:
898 u32 = MBCP_UTF32(b, 932);
899 BuffPutUnicode(u32, CharAttrTmp, InsertMode);
900 break;
901 case IdUTF8:
902 BuffPutUnicode(b, CharAttrTmp, InsertMode);
903 break;
904 default:
905 BuffPutUnicode(b, CharAttrTmp, InsertMode);
906 break;
907 }
908 } else if (ts.Language == IdRussian) {
909 BYTE c = RussConv(ts.RussHost, IdWindows, b);
910 unsigned long u32 = MBCP_UTF32(c, 1251);
911 BuffPutUnicode(u32, CharAttrTmp, InsertMode);
912 } else {
913 BuffPutUnicode(b, CharAttrTmp, InsertMode);
914 }
915 #else
916 BuffPutChar(b, CharAttrTmp, InsertMode);
917 #endif
918
919 if (CursorX == CursorRightM || CursorX >= NumOfColumns-1) {
920 UpdateStr();
921 Wrap = AutoWrapMode;
922 }
923 else {
924 MoveRight();
925 }
926 }
927
928 static void PutDecSp(BYTE b)
929 {
930 TCharAttr CharAttrTmp;
931
932 CharAttrTmp = CharAttr;
933
934 if (PrinterMode) { // printer mode
935 WriteToPrnFile(b, TRUE);
936 return;
937 }
938
939 if (Wrap) {
940 CarriageReturn(FALSE);
941 LineFeed(LF, FALSE);
942 CharAttrTmp.Attr |= ts.EnableContinuedLineCopy ? AttrLineContinued : 0;
943 }
944
945 if (cv.HLogBuf!=0) OutputLogByte(b);
946 /*
947 if (ts.LogTypePlainText && __isascii(b) && !isprint(b)) {
948 // ASCII�������A���\�������������O�����������B
949 } else {
950 if (cv.HLogBuf!=0) OutputLogByte(b);
951 }
952 */
953
954 Wrap = FALSE;
955
956 if (!Special) {
957 UpdateStr();
958 Special = TRUE;
959 }
960
961 CharAttrTmp.Attr |= AttrSpecial;
962 #if UNICODE_INTERNAL_BUFF
963 CharAttrTmp.AttrEx = CharAttrTmp.Attr;
964 #endif
965 BuffPutChar(b, CharAttrTmp, InsertMode);
966
967 if (CursorX == CursorRightM || CursorX >= NumOfColumns-1) {
968 UpdateStr();
969 Wrap = AutoWrapMode;
970 }
971 else {
972 MoveRight();
973 }
974 }
975
976 /**
977 * mbcs���o��
978 */
979 static void PutKanji(BYTE b)
980 {
981 int LineEnd;
982 TCharAttr CharAttrTmp;
983 CharAttrTmp = CharAttr;
984
985 Kanji = Kanji + b;
986
987 if (PrinterMode && DirectPrn) {
988 WriteToPrnFile(HIBYTE(Kanji),FALSE);
989 WriteToPrnFile(LOBYTE(Kanji),TRUE);
990 return;
991 }
992
993 if (ConvJIS)
994 Kanji = JIS2SJIS((WORD)(Kanji & 0x7f7f));
995
996 if (PrinterMode) { // printer mode
997 WriteToPrnFile(HIBYTE(Kanji),FALSE);
998 WriteToPrnFile(LOBYTE(Kanji),TRUE);
999 return;
1000 }
1001
1002 if (CursorX > CursorRightM)
1003 LineEnd = NumOfColumns - 1;
1004 else
1005 LineEnd = CursorRightM;
1006
1007 if (Wrap) {
1008 CarriageReturn(FALSE);
1009 LineFeed(LF,FALSE);
1010 #if !UNICODE_INTERNAL_BUFF
1011 if (ts.EnableContinuedLineCopy)
1012 CharAttrTmp.Attr |= AttrLineContinued;
1013 #else
1014 if (ts.EnableContinuedLineCopy) {
1015 CharAttrTmp.Attr |= AttrLineContinued;
1016 CharAttrTmp.AttrEx = CharAttrTmp.Attr;
1017 }
1018 #endif
1019 }
1020 else if (CursorX > LineEnd - 1) {
1021 if (AutoWrapMode) {
1022 if (ts.EnableContinuedLineCopy) {
1023 CharAttrTmp.Attr |= AttrLineContinued;
1024 #if UNICODE_INTERNAL_BUFF
1025 CharAttrTmp.AttrEx = CharAttrTmp.Attr;
1026 #endif
1027 if (CursorX == LineEnd)
1028 BuffPutChar(0x20, CharAttr, FALSE);
1029 }
1030 CarriageReturn(FALSE);
1031 LineFeed(LF,FALSE);
1032 }
1033 else {
1034 return;
1035 }
1036 }
1037
1038 Wrap = FALSE;
1039
1040 if (cv.HLogBuf!=0) {
1041 OutputLogByte(HIBYTE(Kanji));
1042 OutputLogByte(LOBYTE(Kanji));
1043 }
1044
1045 if (Special) {
1046 UpdateStr();
1047 Special = FALSE;
1048 }
1049
1050 #if UNICODE_INTERNAL_BUFF
1051 {
1052 // codepage����
1053 // https://docs.microsoft.com/en-us/openspecs/windows_protocols/ms-ucoderef/28fefe92-d66c-4b03-90a9-97b473223d43
1054 unsigned long u32 = 0;
1055 switch (ts.Language) {
1056 case IdJapanese:
1057 // �������������_��CP932������������
1058 u32 = CP932ToUTF32(Kanji);
1059 break;
1060 case IdKorean:
1061 if (ts.KanjiCode == IdKoreanCP51949) {
1062 // CP51949
1063 u32 = MBCP_UTF32(Kanji, 51949);
1064 }
1065 else {
1066 assert(FALSE);
1067 goto default_;
1068 }
1069 break;
1070 case IdChinese:
1071 if (ts.KanjiCode == IdCnGB2312) {
1072 // CP936 GB2312
1073 u32 = MBCP_UTF32(Kanji, 936);
1074 }
1075 else if (ts.KanjiCode == IdCnBig5) {
1076 // CP950 Big5
1077 u32 = MBCP_UTF32(Kanji, 950);
1078 }
1079 else {
1080 assert(FALSE);
1081 goto default_;
1082 }
1083 break;
1084 default:
1085 default_:
1086 assert(FALSE);
1087 u32 = MBCP_UTF32(Kanji, ts.CodePage);
1088 break;
1089 }
1090 CharAttrTmp.AttrEx = CharAttrTmp.Attr;
1091 BuffPutUnicode(u32, CharAttrTmp, InsertMode);
1092 }
1093 #else
1094 BuffPutKanji(Kanji, CharAttrTmp, InsertMode);
1095 #endif
1096
1097 if (CursorX < LineEnd - 1) {
1098 MoveRight();
1099 MoveRight();
1100 }
1101 else {
1102 if (CursorX == LineEnd - 1) {
1103 MoveRight();
1104 }
1105 UpdateStr();
1106 Wrap = AutoWrapMode;
1107 }
1108 }
1109
1110 void PutDebugChar(BYTE b)
1111 {
1112 static BYTE buff[3];
1113 int i;
1114 BOOL svInsertMode, svAutoWrapMode;
1115 BYTE svCharAttr;
1116
1117 if (DebugFlag!=DEBUG_FLAG_NOUT) {
1118 svInsertMode = InsertMode;
1119 svAutoWrapMode = AutoWrapMode;
1120 InsertMode = FALSE;
1121 AutoWrapMode = TRUE;
1122
1123 svCharAttr = CharAttr.Attr;
1124 if (CharAttr.Attr != AttrDefault) {
1125 UpdateStr();
1126 CharAttr.Attr = AttrDefault;
1127 }
1128
1129 if (DebugFlag==DEBUG_FLAG_HEXD) {
1130 _snprintf(buff, 3, "%02X", (unsigned int) b);
1131
1132 for (i=0; i<2; i++)
1133 PutChar(buff[i]);
1134 PutChar(' ');
1135 }
1136 else if (DebugFlag==DEBUG_FLAG_NORM) {
1137
1138 if ((b & 0x80) == 0x80) {
1139 UpdateStr();
1140 CharAttr.Attr = AttrReverse;
1141 b = b & 0x7f;
1142 }
1143
1144 if (b<=US) {
1145 PutChar('^');
1146 PutChar((char)(b+0x40));
1147 }
1148 else if (b==DEL) {
1149 PutChar('<');
1150 PutChar('D');
1151 PutChar('E');
1152 PutChar('L');
1153 PutChar('>');
1154 }
1155 else
1156 PutChar(b);
1157 }
1158
1159 if (CharAttr.Attr != svCharAttr) {
1160 UpdateStr();
1161 CharAttr.Attr = svCharAttr;
1162 }
1163 InsertMode = svInsertMode;
1164 AutoWrapMode = svAutoWrapMode;
1165 }
1166 }
1167
1168 static void PrnParseControl(BYTE b) // printer mode
1169 {
1170 switch (b) {
1171 case NUL:
1172 return;
1173 case SO:
1174 if ((ts.ISO2022Flag & ISO2022_SO) && ! DirectPrn) {
1175 if ((ts.Language==IdJapanese) &&
1176 (ts.KanjiCode==IdJIS) &&
1177 (ts.JIS7Katakana==1) &&
1178 ((ts.TermFlag & TF_FIXEDJIS)!=0))
1179 {
1180 Gn[1] = IdKatakana;
1181 }
1182 Glr[0] = 1; /* LS1 */
1183 return;
1184 }
1185 break;
1186 case SI:
1187 if ((ts.ISO2022Flag & ISO2022_SI) && ! DirectPrn) {
1188 Glr[0] = 0; /* LS0 */
1189 return;
1190 }
1191 break;
1192 case DC1:
1193 case DC3:
1194 return;
1195 case ESC:
1196 ICount = 0;
1197 JustAfterESC = TRUE;
1198 ParseMode = ModeESC;
1199 WriteToPrnFile(0, TRUE); // flush prn buff
1200 return;
1201 case CSI:
1202 if (! Accept8BitCtrl) {
1203 PutChar(b); /* Disp C1 char in VT100 mode */
1204 return;
1205 }
1206 ClearParams();
1207 FirstPrm = TRUE;
1208 ParseMode = ModeCSI;
1209 WriteToPrnFile(0, TRUE); // flush prn buff
1210 WriteToPrnFile(b, FALSE);
1211 return;
1212 }
1213 /* send the uninterpreted character to printer */
1214 WriteToPrnFile(b, TRUE);
1215 }
1216
1217 static void ParseControl(BYTE b)
1218 {
1219 if (PrinterMode) { // printer mode
1220 PrnParseControl(b);
1221 return;
1222 }
1223
1224 if (b>=0x80) { /* C1 char */
1225 if (ts.Language==IdEnglish) { /* English mode */
1226 if (!Accept8BitCtrl) {
1227 PutChar(b); /* Disp C1 char in VT100 mode */
1228 return;
1229 }
1230 }
1231 else { /* Japanese mode */
1232 if ((ts.TermFlag & TF_ACCEPT8BITCTRL)==0) {
1233 return; /* ignore C1 char */
1234 }
1235 /* C1 chars are interpreted as C0 chars in VT100 mode */
1236 if (VTlevel < 2) {
1237 b = b & 0x7F;
1238 }
1239 }
1240 }
1241 switch (b) {
1242 /* C0 group */
1243 case ENQ:
1244 CommBinaryOut(&cv, &(ts.Answerback[0]), ts.AnswerbackLen);
1245 break;
1246 case BEL:
1247 if (ts.Beep != IdBeepOff)
1248 RingBell(ts.Beep);
1249 break;
1250 case BS:
1251 BackSpace();
1252 break;
1253 case HT:
1254 Tab();
1255 break;
1256 case LF:
1257 if (ts.CRReceive == IdLF) {
1258 // ���M�������s�R�[�h�� LF ���������A�T�[�o���� LF ���������������������������A
1259 // CR+LF���������������������B
1260 // cf. http://www.neocom.ca/forum/viewtopic.php?t=216
1261 // (2007.1.21 yutaka)
1262 CarriageReturn(TRUE);
1263 LineFeed(b, TRUE);
1264 break;
1265 }
1266 else if (ts.CRReceive == IdAUTO) {
1267 // 9th Apr 2012: AUTO CR/LF mode (tentner)
1268 // a CR or LF will generated a CR+LF, if the next character is the opposite, it will be ignored
1269 if(PrevCharacter != CR || !PrevCRorLFGeneratedCRLF) {
1270 CarriageReturn(TRUE);
1271 LineFeed(b, TRUE);
1272 PrevCRorLFGeneratedCRLF = TRUE;
1273 }
1274 else {
1275 PrevCRorLFGeneratedCRLF = FALSE;
1276 }
1277 break;
1278 }
1279
1280 case VT:
1281 LineFeed(b, TRUE);
1282 break;
1283
1284 case FF:
1285 if ((ts.AutoWinSwitch>0) && JustAfterESC) {
1286 CommInsert1Byte(&cv, b);
1287 CommInsert1Byte(&cv, ESC);
1288 ChangeEmu = IdTEK; /* Enter TEK Mode */
1289 }
1290 else
1291 LineFeed(b, TRUE);
1292 break;
1293 case CR:
1294 if (ts.CRReceive == IdAUTO) {
1295 // 9th Apr 2012: AUTO CR/LF mode (tentner)
1296 // a CR or LF will generated a CR+LF, if the next character is the opposite, it will be ignored
1297 if(PrevCharacter != LF || !PrevCRorLFGeneratedCRLF) {
1298 CarriageReturn(TRUE);
1299 LineFeed(b, TRUE);
1300 PrevCRorLFGeneratedCRLF = TRUE;
1301 }
1302 else {
1303 PrevCRorLFGeneratedCRLF = FALSE;
1304 }
1305 }
1306 else {
1307 CarriageReturn(TRUE);
1308 if (ts.CRReceive==IdCRLF) {
1309 CommInsert1Byte(&cv, LF);
1310 }
1311 }
1312 break;
1313 case SO: /* LS1 */
1314 if (ts.ISO2022Flag & ISO2022_SO) {
1315 if ((ts.Language==IdJapanese) &&
1316 (ts.KanjiCode==IdJIS) &&
1317 (ts.JIS7Katakana==1) &&
1318 ((ts.TermFlag & TF_FIXEDJIS)!=0))
1319 {
1320 Gn[1] = IdKatakana;
1321 }
1322
1323 Glr[0] = 1;
1324 }
1325 break;
1326 case SI: /* LS0 */
1327 if (ts.ISO2022Flag & ISO2022_SI) {
1328 Glr[0] = 0;
1329 }
1330 break;
1331 case DLE:
1332 if ((ts.FTFlag & FT_BPAUTO)!=0)
1333 ParseMode = ModeDLE; /* Auto B-Plus activation */
1334 break;
1335 case CAN:
1336 if ((ts.FTFlag & FT_ZAUTO)!=0)
1337 ParseMode = ModeCAN; /* Auto ZMODEM activation */
1338 // else if (ts.AutoWinSwitch>0)
1339 // ChangeEmu = IdTEK; /* Enter TEK Mode */
1340 else
1341 ParseMode = ModeFirst;
1342 break;
1343 case SUB:
1344 ParseMode = ModeFirst;
1345 break;
1346 case ESC:
1347 ICount = 0;
1348 JustAfterESC = TRUE;
1349 ParseMode = ModeESC;
1350 break;
1351 case FS:
1352 case GS:
1353 case RS:
1354 case US:
1355 if (ts.AutoWinSwitch>0) {
1356 CommInsert1Byte(&cv, b);
1357 ChangeEmu = IdTEK; /* Enter TEK Mode */
1358 }
1359 break;
1360
1361 /* C1 char */
1362 case IND:
1363 LineFeed(0, TRUE);
1364 break;
1365 case NEL:
1366 LineFeed(0, TRUE);
1367 CarriageReturn(TRUE);
1368 break;
1369 case HTS:
1370 if (ts.TabStopFlag & TABF_HTS8)
1371 SetTabStop();
1372 break;
1373 case RI:
1374 CursorUpWithScroll();
1375 break;
1376 case SS2:
1377 if (ts.ISO2022Flag & ISO2022_SS2) {
1378 GLtmp = 2;
1379 SSflag = TRUE;
1380 }
1381 break;
1382 case SS3:
1383 if (ts.ISO2022Flag & ISO2022_SS3) {
1384 GLtmp = 3;
1385 SSflag = TRUE;
1386 }
1387 break;
1388 case DCS:
1389 ClearParams();
1390 ESCFlag = FALSE;
1391 ParseMode = ModeDCS;
1392 break;
1393 case SOS:
1394 ESCFlag = FALSE;
1395 ParseMode = ModeIgnore;
1396 break;
1397 case CSI:
1398 ClearParams();
1399 FirstPrm = TRUE;
1400 ParseMode = ModeCSI;
1401 break;
1402 case OSC:
1403 ClearParams();
1404 ParseMode = ModeXS;
1405 break;
1406 case PM:
1407 case APC:
1408 ESCFlag = FALSE;
1409 ParseMode = ModeIgnore;
1410 break;
1411 }
1412 }
1413
1414 void SaveCursor()
1415 {
1416 int i;
1417 PStatusBuff Buff;
1418
1419 if (isCursorOnStatusLine)
1420 Buff = &SBuff2; // for status line
1421 else if (AltScr)
1422 Buff = &SBuff3; // for alternate screen
1423 else
1424 Buff = &SBuff1; // for main screen
1425
1426 Buff->CursorX = CursorX;
1427 Buff->CursorY = CursorY;
1428 Buff->Attr = CharAttr;
1429
1430 Buff->Glr[0] = Glr[0];
1431 Buff->Glr[1] = Glr[1];
1432 for (i=0 ; i<=3; i++)
1433 Buff->Gn[i] = Gn[i];
1434
1435 Buff->AutoWrapMode = AutoWrapMode;
1436 Buff->RelativeOrgMode = RelativeOrgMode;
1437 }
1438
1439 void RestoreCursor()
1440 {
1441 int i;
1442 PStatusBuff Buff;
1443
1444 UpdateStr();
1445
1446 if (isCursorOnStatusLine)
1447 Buff = &SBuff2; // for status line
1448 else if (AltScr)
1449 Buff = &SBuff3; // for alternate screen
1450 else
1451 Buff = &SBuff1; // for main screen
1452
1453 if (Buff->CursorX > NumOfColumns-1)
1454 Buff->CursorX = NumOfColumns-1;
1455 if (Buff->CursorY > NumOfLines-1-StatusLine)
1456 Buff->CursorY = NumOfLines-1-StatusLine;
1457 MoveCursor(Buff->CursorX, Buff->CursorY);
1458
1459 CharAttr = Buff->Attr;
1460 BuffSetCurCharAttr(CharAttr);
1461
1462 Glr[0] = Buff->Glr[0];
1463 Glr[1] = Buff->Glr[1];
1464 for (i=0 ; i<=3; i++)
1465 Gn[i] = Buff->Gn[i];
1466
1467 AutoWrapMode = Buff->AutoWrapMode;
1468 RelativeOrgMode = Buff->RelativeOrgMode;
1469 }
1470
1471 void AnswerTerminalType()
1472 {
1473 char Tmp[50];
1474
1475 if (ts.TerminalID<IdVT320 || !Send8BitMode)
1476 strncpy_s(Tmp, sizeof(Tmp),"\033[?", _TRUNCATE);
1477 else
1478 strncpy_s(Tmp, sizeof(Tmp),"\233?", _TRUNCATE);
1479
1480 switch (ts.TerminalID) {
1481 case IdVT100:
1482 strncat_s(Tmp,sizeof(Tmp),"1;2",_TRUNCATE);
1483 break;
1484 case IdVT100J:
1485 strncat_s(Tmp,sizeof(Tmp),"5;2",_TRUNCATE);
1486 break;
1487 case IdVT101:
1488 strncat_s(Tmp,sizeof(Tmp),"1;0",_TRUNCATE);
1489 break;
1490 case IdVT102:
1491 strncat_s(Tmp,sizeof(Tmp),"6",_TRUNCATE);
1492 break;
1493 case IdVT102J:
1494 strncat_s(Tmp,sizeof(Tmp),"15",_TRUNCATE);
1495 break;
1496 case IdVT220J:
1497 strncat_s(Tmp,sizeof(Tmp),"62;1;2;5;6;7;8",_TRUNCATE);
1498 break;
1499 case IdVT282:
1500 strncat_s(Tmp,sizeof(Tmp),"62;1;2;4;5;6;7;8;10;11",_TRUNCATE);
1501 break;
1502 case IdVT320:
1503 strncat_s(Tmp,sizeof(Tmp),"63;1;2;6;7;8",_TRUNCATE);
1504 break;
1505 case IdVT382:
1506 strncat_s(Tmp,sizeof(Tmp),"63;1;2;4;5;6;7;8;10;15",_TRUNCATE);
1507 break;
1508 case IdVT420:
1509 strncat_s(Tmp,sizeof(Tmp),"64;1;2;7;8;9;15;18;21",_TRUNCATE);
1510 break;
1511 case IdVT520:
1512 strncat_s(Tmp,sizeof(Tmp),"65;1;2;7;8;9;12;18;19;21;23;24;42;44;45;46",_TRUNCATE);
1513 break;
1514 case IdVT525:
1515 strncat_s(Tmp,sizeof(Tmp),"65;1;2;7;9;12;18;19;21;22;23;24;42;44;45;46",_TRUNCATE);
1516 break;
1517 }
1518 strncat_s(Tmp,sizeof(Tmp),"c",_TRUNCATE);
1519
1520 CommBinaryOut(&cv,Tmp,strlen(Tmp)); /* Report terminal ID */
1521 }
1522
1523 void ESCSpace(BYTE b)
1524 {
1525 switch (b) {
1526 case 'F': // S7C1T
1527 Send8BitMode = FALSE;
1528 break;
1529 case 'G': // S8C1T
1530 if (VTlevel >= 2) {
1531 Send8BitMode = TRUE;
1532 }
1533 break;
1534 }
1535 }
1536
1537 void ESCSharp(BYTE b)
1538 {
1539 switch (b) {
1540 case '8': /* Fill screen with "E" (DECALN) */
1541 BuffUpdateScroll();
1542 BuffFillWithE();
1543 CursorTop = 0;
1544 CursorBottom = NumOfLines-1-StatusLine;
1545 CursorLeftM = 0;
1546 CursorRightM = NumOfColumns - 1;
1547 MoveCursor(0, 0);
1548 ParseMode = ModeFirst;
1549 break;
1550 }
1551 }
1552
1553 /* select double byte code set */
1554 void ESCDBCSSelect(BYTE b)
1555 {
1556 int Dist;
1557
1558 if (ts.Language!=IdJapanese) return;
1559
1560 switch (ICount) {
1561 case 1:
1562 if ((b=='@') || (b=='B'))
1563 {
1564 Gn[0] = IdKanji; /* Kanji -> G0 */
1565 if ((ts.TermFlag & TF_AUTOINVOKE)!=0)
1566 Glr[0] = 0; /* G0->GL */
1567 }
1568 break;
1569 case 2:
1570 /* Second intermediate char must be
1571 '(' or ')' or '*' or '+'. */
1572 Dist = (IntChar[2]-'(') & 3; /* G0 - G3 */
1573 if ((b=='1') || (b=='3') ||
1574 (b=='@') || (b=='B'))
1575 {
1576 Gn[Dist] = IdKanji; /* Kanji -> G0-3 */
1577 if (((ts.TermFlag & TF_AUTOINVOKE)!=0) &&
1578 (Dist==0))
1579 Glr[0] = 0; /* G0->GL */
1580 }
1581 break;
1582 }
1583 }
1584
1585 void ESCSelectCode(BYTE b)
1586 {
1587 switch (b) {
1588 case '0':
1589 if (ts.AutoWinSwitch>0)
1590 ChangeEmu = IdTEK; /* enter TEK mode */
1591 break;
1592 }
1593 }
1594
1595 /* select single byte code set */
1596 void ESCSBCSSelect(BYTE b)
1597 {
1598 int Dist;
1599
1600 /* Intermediate char must be '(' or ')' or '*' or '+'. */
1601 Dist = (IntChar[1]-'(') & 3; /* G0 - G3 */
1602
1603 switch (b) {
1604 case '0': Gn[Dist] = IdSpecial; break;
1605 case '<': Gn[Dist] = IdASCII; break;
1606 case '>': Gn[Dist] = IdASCII; break;
1607 case 'A': Gn[Dist] = IdASCII; break;
1608 case 'B': Gn[Dist] = IdASCII; break;
1609 case 'H': Gn[Dist] = IdASCII; break;
1610 case 'I':
1611 if (ts.Language==IdJapanese)
1612 Gn[Dist] = IdKatakana;
1613 break;
1614 case 'J': Gn[Dist] = IdASCII; break;
1615 }
1616
1617 if (((ts.TermFlag & TF_AUTOINVOKE)!=0) && (Dist==0))
1618 Glr[0] = 0; /* G0->GL */
1619 }
1620
1621 void PrnParseEscape(BYTE b) // printer mode
1622 {
1623 int i;
1624
1625 ParseMode = ModeFirst;
1626 switch (ICount) {
1627 /* no intermediate char */
1628 case 0:
1629 switch (b) {
1630 case '[': /* CSI */
1631 ClearParams();
1632 FirstPrm = TRUE;
1633 WriteToPrnFile(ESC,FALSE);
1634 WriteToPrnFile('[',FALSE);
1635 ParseMode = ModeCSI;
1636 return;
1637 } /* end of case Icount=0 */
1638 break;
1639 /* one intermediate char */
1640 case 1:
1641 switch (IntChar[1]) {
1642 case '$':
1643 if (! DirectPrn) {
1644 ESCDBCSSelect(b);
1645 return;
1646 }
1647 break;
1648 case '(':
1649 case ')':
1650 case '*':
1651 case '+':
1652 if (! DirectPrn) {
1653 ESCSBCSSelect(b);
1654 return;
1655 }
1656 break;
1657 }
1658 break;
1659 /* two intermediate char */
1660 case 2:
1661 if ((! DirectPrn) &&
1662 (IntChar[1]=='$') &&
1663 ('('<=IntChar[2]) &&
1664 (IntChar[2]<='+'))
1665 {
1666 ESCDBCSSelect(b);
1667 return;
1668 }
1669 break;
1670 }
1671 // send the uninterpreted sequence to printer
1672 WriteToPrnFile(ESC,FALSE);
1673 for (i=1; i<=ICount; i++)
1674 WriteToPrnFile(IntChar[i],FALSE);
1675 WriteToPrnFile(b,TRUE);
1676 }
1677
1678 void ParseEscape(BYTE b) /* b is the final char */
1679 {
1680 if (PrinterMode) { // printer mode
1681 PrnParseEscape(b);
1682 return;
1683 }
1684
1685 switch (ICount) {
1686 case 0: /* no intermediate char */
1687 switch (b) {
1688 case '6': // DECBI
1689 if (CursorY >= CursorTop && CursorY <= CursorBottom &&
1690 CursorX >= CursorLeftM && CursorX <= CursorRightM) {
1691 if (CursorX == CursorLeftM)
1692 BuffScrollRight(1);
1693 else
1694 MoveCursor(CursorX-1, CursorY);
1695 }
1696 break;
1697 case '7': SaveCursor(); break;
1698 case '8': RestoreCursor(); break;
1699 case '9': // DECFI
1700 if (CursorY >= CursorTop && CursorY <= CursorBottom &&
1701 CursorX >= CursorLeftM && CursorX <= CursorRightM) {
1702 if (CursorX == CursorRightM)
1703 BuffScrollLeft(1);
1704 else
1705 MoveCursor(CursorX+1, CursorY);
1706 }
1707 break;
1708 case '=': AppliKeyMode = TRUE; break;
1709 case '>': AppliKeyMode = FALSE; break;
1710 case 'D': /* IND */
1711 LineFeed(0,TRUE);
1712 break;
1713 case 'E': /* NEL */
1714 MoveCursor(0,CursorY);
1715 LineFeed(0,TRUE);
1716 break;
1717 case 'H': /* HTS */
1718 if (ts.TabStopFlag & TABF_HTS7)
1719 SetTabStop();
1720 break;
1721 case 'M': /* RI */
1722 CursorUpWithScroll();
1723 break;
1724 case 'N': /* SS2 */
1725 if (ts.ISO2022Flag & ISO2022_SS2) {
1726 GLtmp = 2;
1727 SSflag = TRUE;
1728 }
1729 break;
1730 case 'O': /* SS3 */
1731 if (ts.ISO2022Flag & ISO2022_SS3) {
1732 GLtmp = 3;
1733 SSflag = TRUE;
1734 }
1735 break;
1736 case 'P': /* DCS */
1737 ClearParams();
1738 ESCFlag = FALSE;
1739 ParseMode = ModeDCS;
1740 return;
1741 case 'X': /* SOS */
1742 case '^': /* APC */
1743 case '_': /* PM */
1744 ESCFlag = FALSE;
1745 ParseMode = ModeIgnore;
1746 return;
1747 case 'Z': /* DECID */
1748 AnswerTerminalType();
1749 break;
1750 case '[': /* CSI */
1751 ClearParams();
1752 FirstPrm = TRUE;
1753 ParseMode = ModeCSI;
1754 return;
1755 case '\\': break; /* ST */
1756 case ']': /* XTERM sequence (OSC) */
1757 ClearParams();
1758 ParseMode = ModeXS;
1759 return;
1760 case 'c': /* Hardware reset */
1761 HideStatusLine();
1762 ResetTerminal();
1763 ClearUserKey();
1764 ClearBuffer();
1765 if (ts.PortType==IdSerial) // reset serial port
1766 CommResetSerial(&ts, &cv, TRUE);
1767 break;
1768 case 'g': /* Visual Bell (screen original?) */
1769 RingBell(IdBeepVisual);
1770 break;
1771 case 'n': /* LS2 */
1772 if (ts.ISO2022Flag & ISO2022_LS2) {
1773 Glr[0] = 2;
1774 }
1775 break;
1776 case 'o': /* LS3 */
1777 if (ts.ISO2022Flag & ISO2022_LS3) {
1778 Glr[0] = 3;
1779 }
1780 break;
1781 case '|': /* LS3R */
1782 if (ts.ISO2022Flag & ISO2022_LS3R) {
1783 Glr[1] = 3;
1784 }
1785 break;
1786 case '}': /* LS2R */
1787 if (ts.ISO2022Flag & ISO2022_LS2R) {
1788 Glr[1] = 2;
1789 }
1790 break;
1791 case '~': /* LS1R */
1792 if (ts.ISO2022Flag & ISO2022_LS1R) {
1793 Glr[1] = 1;
1794 }
1795 break;
1796 }
1797 break;
1798 /* end of case Icount=0 */
1799
1800 case 1: /* one intermediate char */
1801 switch (IntChar[1]) {
1802 case ' ': ESCSpace(b); break;
1803 case '#': ESCSharp(b); break;
1804 case '$': ESCDBCSSelect(b); break;
1805 case '%': break;
1806 case '(':
1807 case ')':
1808 case '*':
1809 case '+':
1810 ESCSBCSSelect(b);
1811 break;
1812 }
1813 break;
1814
1815 case 2: /* two intermediate char */
1816 if ((IntChar[1]=='$') && ('('<=IntChar[2]) && (IntChar[2]<='+'))
1817 ESCDBCSSelect(b);
1818 else if ((IntChar[1]=='%') && (IntChar[2]=='!'))
1819 ESCSelectCode(b);
1820 break;
1821 }
1822 ParseMode = ModeFirst;
1823 }
1824
1825 void EscapeSequence(BYTE b)
1826 {
1827 if (b<=US)
1828 ParseControl(b);
1829 else if ((b>=0x20) && (b<=0x2F)) {
1830 // TODO: ICount �� IntCharMax ���B�������A������ IntChar ���u����������������?
1831 if (ICount<IntCharMax)
1832 ICount++;
1833 IntChar[ICount] = b;
1834 }
1835 else if ((b>=0x30) && (b<=0x7E))
1836 ParseEscape(b);
1837 else if ((b>=0x80) && (b<=0x9F))
1838 ParseControl(b);
1839 else if (b>=0xA0) {
1840 ParseMode=ModeFirst;
1841 ParseFirst(b);
1842 }
1843
1844 JustAfterESC = FALSE;
1845 }
1846
1847 #define CheckParamVal(p,m) \
1848 if ((p) == 0) { \
1849 (p) = 1; \
1850 } \
1851 else if ((p) > (m) || p < 0) { \
1852 (p) = (m); \
1853 }
1854
1855 #define CheckParamValMax(p,m) \
1856 if ((p) > (m) || p <= 0) { \
1857 (p) = (m); \
1858 }
1859
1860 #define RequiredParams(n) \
1861 if ((n) > 1) { \
1862 while (NParam < n) { \
1863 NParam++; \
1864 Param[NParam] = 0; \
1865 NSParam[NParam] = 0; \
1866 } \
1867 }
1868
1869 // ICH
1870 static void CSInsertCharacter(void)
1871 {
1872 // Insert space characters at cursor
1873 CheckParamVal(Param[1], NumOfColumns);
1874
1875 BuffUpdateScroll();
1876 BuffInsertSpace(Param[1]);
1877 }
1878
1879 void CSCursorUp(BOOL AffectMargin) // CUU / VPB
1880 {
1881 int topMargin, NewY;
1882
1883 CheckParamVal(Param[1], CursorY);
1884
1885 if (AffectMargin && CursorY >= CursorTop)
1886 topMargin = CursorTop;
1887 else
1888 topMargin = 0;
1889
1890 NewY = CursorY - Param[1];
1891 if (NewY < topMargin)
1892 NewY = topMargin;
1893
1894 MoveCursor(CursorX, NewY);
1895 }
1896
1897 void CSCursorUp1() // CPL
1898 {
1899 MoveCursor(CursorLeftM, CursorY);
1900 CSCursorUp(TRUE);
1901 }
1902
1903 void CSCursorDown(BOOL AffectMargin) // CUD / VPR
1904 {
1905 int bottomMargin, NewY;
1906
1907 if (AffectMargin && CursorY <= CursorBottom)
1908 bottomMargin = CursorBottom;
1909 else
1910 bottomMargin = NumOfLines-StatusLine-1;
1911
1912 CheckParamVal(Param[1], bottomMargin);
1913
1914 NewY = CursorY + Param[1];
1915 if (NewY > bottomMargin)
1916 NewY = bottomMargin;
1917
1918 MoveCursor(CursorX, NewY);
1919 }
1920
1921 void CSCursorDown1() // CNL
1922 {
1923 MoveCursor(CursorLeftM, CursorY);
1924 CSCursorDown(TRUE);
1925 }
1926
1927 void CSScreenErase()
1928 {
1929 BuffUpdateScroll();
1930 switch (Param[1]) {
1931 case 0:
1932 // <ESC>[H(Cursor in left upper corner)�������J�[�\�������������w�������������A
1933 // <ESC>[J��<ESC>[2J�����������������A�����������A���s�o�b�t�@���X�N���[���A�E�g
1934 // �����������������B(2005.5.29 yutaka)
1935 // �R���t�B�O���[�V�������������������������������B(2008.5.3 yutaka)
1936 if (ts.ScrollWindowClearScreen &&
1937 (CursorX == 0 && CursorY == 0)) {
1938 // Erase screen (scroll out)
1939 BuffClearScreen();
1940 UpdateWindow(HVTWin);
1941
1942 } else {
1943 // Erase characters from cursor to the end of screen
1944 BuffEraseCurToEnd();
1945 }
1946 break;
1947
1948 case 1:
1949 // Erase characters from home to cursor
1950 BuffEraseHomeToCur();
1951 break;
1952
1953 case 2:
1954 // Erase screen (scroll out)
1955 BuffClearScreen();
1956 UpdateWindow(HVTWin);
1957 if (ClearThenHome && !isCursorOnStatusLine) {
1958 if (RelativeOrgMode) {
1959 MoveCursor(0, 0);
1960 }
1961 else {
1962 MoveCursor(CursorLeftM, CursorTop);
1963 }
1964 }
1965 break;
1966
1967 case 3:
1968 if (ts.TermFlag & TF_REMOTECLEARSBUFF) {
1969 ClearBuffer();
1970 }
1971 break;
1972 }
1973 }
1974
1975 void CSQSelScreenErase()
1976 {
1977 BuffUpdateScroll();
1978 switch (Param[1]) {
1979 case 0:
1980 // Erase characters from cursor to end
1981 BuffSelectedEraseCurToEnd();
1982 break;
1983
1984 case 1:
1985 // Erase characters from home to cursor
1986 BuffSelectedEraseHomeToCur();
1987 break;
1988
1989 case 2:
1990 // Erase entire screen
1991 BuffSelectedEraseScreen();
1992 break;
1993
1994 case 3:
1995 if (ts.TermFlag & TF_REMOTECLEARSBUFF) {
1996 ClearBuffer();
1997 }
1998 break;
1999 }
2000 }
2001
2002 void CSInsertLine()
2003 {
2004 // Insert lines at current position
2005 int Count, YEnd;
2006
2007 if (CursorY < CursorTop || CursorY > CursorBottom) {
2008 return;
2009 }
2010
2011 CheckParamVal(Param[1], NumOfLines);
2012
2013 Count = Param[1];
2014
2015 YEnd = CursorBottom;
2016 if (CursorY > YEnd)
2017 YEnd = NumOfLines-1-StatusLine;
2018
2019 if (Count > YEnd+1 - CursorY)
2020 Count = YEnd+1 - CursorY;
2021
2022 BuffInsertLines(Count,YEnd);
2023 }
2024
2025 void CSLineErase()
2026 {
2027 BuffUpdateScroll();
2028 switch (Param[1]) {
2029 case 0: /* erase char from cursor to end of line */
2030 BuffEraseCharsInLine(CursorX,NumOfColumns-CursorX);
2031 break;
2032
2033 case 1: /* erase char from start of line to cursor */
2034 BuffEraseCharsInLine(0,CursorX+1);
2035 break;
2036
2037 case 2: /* erase entire line */
2038 BuffEraseCharsInLine(0,NumOfColumns);
2039 break;
2040 }
2041 }
2042
2043 static void CSQSelLineErase(void)
2044 {
2045 BuffUpdateScroll();
2046 switch (Param[1]) {
2047 case 0: /* erase char from cursor to end of line */
2048 BuffSelectedEraseCharsInLine(CursorX,NumOfColumns-CursorX);
2049 break;
2050
2051 case 1: /* erase char from start of line to cursor */
2052 BuffSelectedEraseCharsInLine(0,CursorX+1);
2053 break;
2054
2055 case 2: /* erase entire line */
2056 BuffSelectedEraseCharsInLine(0,NumOfColumns);
2057 break;
2058 }
2059 }
2060
2061 void CSDeleteNLines()
2062 // Delete lines from current line
2063 {
2064 int Count, YEnd;
2065
2066 if (CursorY < CursorTop || CursorY > CursorBottom) {
2067 return;
2068 }
2069
2070 CheckParamVal(Param[1], NumOfLines);
2071 Count = Param[1];
2072
2073 YEnd = CursorBottom;
2074 if (CursorY > YEnd)
2075 YEnd = NumOfLines-1-StatusLine;
2076
2077 if (Count > YEnd+1-CursorY)
2078 Count = YEnd+1-CursorY;
2079
2080 BuffDeleteLines(Count,YEnd);
2081 }
2082
2083 // DCH
2084 static void CSDeleteCharacter(void)
2085 {
2086 // Delete characters in current line from cursor
2087 CheckParamVal(Param[1], NumOfColumns);
2088
2089 BuffUpdateScroll();
2090 BuffDeleteChars(Param[1]);
2091 }
2092
2093 // ECH
2094 static void CSEraseCharacter(void)
2095 {
2096 CheckParamVal(Param[1], NumOfColumns);
2097
2098 BuffUpdateScroll();
2099 BuffEraseChars(Param[1]);
2100 }
2101
2102 void CSRepeatCharacter()
2103 {
2104 CheckParamVal(Param[1], NumOfColumns * NumOfLines);
2105
2106 BuffUpdateScroll();
2107 RepeatChar(LastPutCharacter, Param[1]);
2108 }
2109
2110 void CSScrollUp()
2111 {
2112 // TODO: �X�N���[���������l���[���s�����������������v����
2113 CheckParamVal(Param[1], INT_MAX);
2114
2115 BuffUpdateScroll();
2116 BuffRegionScrollUpNLines(Param[1]);
2117 }
2118
2119 void CSScrollDown()
2120 {
2121 CheckParamVal(Param[1], NumOfLines);
2122
2123 BuffUpdateScroll();
2124 BuffRegionScrollDownNLines(Param[1]);
2125 }
2126
2127 void CSForwardTab()
2128 {
2129 CheckParamVal(Param[1], NumOfColumns);
2130 CursorForwardTab(Param[1], AutoWrapMode);
2131 }
2132
2133 void CSBackwardTab()
2134 {
2135 CheckParamVal(Param[1], NumOfColumns);
2136 CursorBackwardTab(Param[1]);
2137 }
2138
2139 void CSMoveToColumnN() // CHA / HPA
2140 {
2141 CheckParamVal(Param[1], NumOfColumns);
2142
2143 Param[1]--;
2144
2145 if (RelativeOrgMode) {
2146 if (CursorLeftM + Param[1] > CursorRightM )
2147 MoveCursor(CursorRightM, CursorY);
2148 else
2149 MoveCursor(CursorLeftM + Param[1], CursorY);
2150 }
2151 else {
2152 MoveCursor(Param[1], CursorY);
2153 }
2154 }
2155
2156 void CSCursorRight(BOOL AffectMargin) // CUF / HPR
2157 {
2158 int NewX, rightMargin;
2159
2160 CheckParamVal(Param[1], NumOfColumns);
2161
2162 if (AffectMargin && CursorX <= CursorRightM) {
2163 rightMargin = CursorRightM;
2164 }
2165 else {
2166 rightMargin = NumOfColumns-1;
2167 }
2168
2169 NewX = CursorX + Param[1];
2170 if (NewX > rightMargin)
2171 NewX = rightMargin;
2172
2173 MoveCursor(NewX, CursorY);
2174 }
2175
2176 void CSCursorLeft(BOOL AffectMargin) // CUB / HPB
2177 {
2178 int NewX, leftMargin;
2179
2180 CheckParamVal(Param[1], NumOfColumns);
2181
2182 if (AffectMargin && CursorX >= CursorLeftM) {
2183 leftMargin = CursorLeftM;
2184 }
2185 else {
2186 leftMargin = 0;
2187 }
2188
2189 NewX = CursorX - Param[1];
2190 if (NewX < leftMargin) {
2191 NewX = leftMargin;
2192 }
2193
2194 MoveCursor(NewX, CursorY);
2195 }
2196
2197 void CSMoveToLineN() // VPA
2198 {
2199 CheckParamVal(Param[1], NumOfLines-StatusLine);
2200
2201 if (RelativeOrgMode) {
2202 if (CursorTop+Param[1]-1 > CursorBottom)
2203 MoveCursor(CursorX,CursorBottom);
2204 else
2205 MoveCursor(CursorX,CursorTop+Param[1]-1);
2206 }
2207 else {
2208 if (Param[1] > NumOfLines-StatusLine)
2209 MoveCursor(CursorX,NumOfLines-1-StatusLine);
2210 else
2211 MoveCursor(CursorX,Param[1]-1);
2212 }
2213 Fallbacked = FALSE;
2214 }
2215
2216 void CSMoveToXY() // CUP / HVP
2217 {
2218 int NewX, NewY;
2219
2220 RequiredParams(2);
2221 CheckParamVal(Param[1], NumOfLines-StatusLine);
2222 CheckParamVal(Param[2], NumOfColumns);
2223
2224 NewY = Param[1] - 1;
2225 NewX = Param[2] - 1;
2226
2227 if (isCursorOnStatusLine)
2228 NewY = CursorY;
2229 else if (RelativeOrgMode) {
2230 NewX += CursorLeftM;
2231 if (NewX > CursorRightM)
2232 NewX = CursorRightM;
2233
2234 NewY += CursorTop;
2235 if (NewY > CursorBottom)
2236 NewY = CursorBottom;
2237 }
2238 else {
2239 if (NewY > NumOfLines-1-StatusLine)
2240 NewY = NumOfLines-1-StatusLine;
2241 }
2242
2243 MoveCursor(NewX, NewY);
2244 Fallbacked = FALSE;
2245 }
2246
2247 void CSDeleteTabStop()
2248 {
2249 ClearTabStop(Param[1]);
2250 }
2251
2252 void CS_h_Mode() // SM
2253 {
2254 switch (Param[1]) {
2255 case 2: // KAM
2256 KeybEnabled = FALSE; break;
2257 case 4: // IRM
2258 InsertMode = TRUE; break;
2259 case 12: // SRM
2260 ts.LocalEcho = 0;
2261 if (cv.Ready && cv.TelFlag && (ts.TelEcho>0))
2262 TelChangeEcho();
2263 break;
2264 case 20: // LF/NL
2265 LFMode = TRUE;
2266 ts.CRSend = IdCRLF;
2267 cv.CRSend = IdCRLF;
2268 break;
2269 case 33: // WYSTCURM
2270 if (ts.WindowFlag & WF_CURSORCHANGE) {
2271 ts.NonblinkingCursor = TRUE;
2272 ChangeCaret();
2273 }
2274 break;
2275 case 34: // WYULCURM
2276 if (ts.WindowFlag & WF_CURSORCHANGE) {
2277 ts.CursorShape = IdHCur;
2278 ChangeCaret();
2279 }
2280 break;
2281 }
2282 }
2283
2284 void CS_i_Mode() // MC
2285 {
2286 switch (Param[1]) {
2287 /* print screen */
2288 // PrintEX -- TRUE: print screen
2289 // FALSE: scroll region
2290 case 0:
2291 if (ts.TermFlag&TF_PRINTERCTRL) {
2292 BuffPrint(! PrintEX);
2293 }
2294 break;
2295 /* printer controller mode off */
2296 case 4: break; /* See PrnParseCS() */
2297 /* printer controller mode on */
2298 case 5:
2299 if (ts.TermFlag&TF_PRINTERCTRL) {
2300 if (! AutoPrintMode)
2301 OpenPrnFile();
2302 DirectPrn = (ts.PrnDev[0]!=0);
2303 PrinterMode = TRUE;
2304 }
2305 break;
2306 }
2307 }
2308
2309 void CS_l_Mode() // RM
2310 {
2311 switch (Param[1]) {
2312 case 2: // KAM
2313 KeybEnabled = TRUE; break;
2314 case 4: // IRM
2315 InsertMode = FALSE; break;
2316 case 12: // SRM
2317 ts.LocalEcho = 1;
2318 if (cv.Ready && cv.TelFlag && (ts.TelEcho>0))
2319 TelChangeEcho();
2320 break;
2321 case 20: // LF/NL
2322 LFMode = FALSE;
2323 ts.CRSend = IdCR;
2324 cv.CRSend = IdCR;
2325 break;
2326 case 33: // WYSTCURM
2327 if (ts.WindowFlag & WF_CURSORCHANGE) {
2328 ts.NonblinkingCursor = FALSE;
2329 ChangeCaret();
2330 }
2331 break;
2332 case 34: // WYULCURM
2333 if (ts.WindowFlag & WF_CURSORCHANGE) {
2334 ts.CursorShape = IdBlkCur;
2335 ChangeCaret();
2336 }
2337 break;
2338 }
2339 }
2340
2341 void CS_n_Mode() // DSR
2342 {
2343 char Report[16];
2344 int X, Y, len;
2345
2346 switch (Param[1]) {
2347 case 5:
2348 /* Device Status Report -> Ready */
2349 SendCSIstr("0n", 0);
2350 break;
2351 case 6:
2352 /* Cursor Position Report */
2353 if (isCursorOnStatusLine) {
2354 X = CursorX + 1;
2355 Y = 1;
2356 }
2357 else if (RelativeOrgMode) {
2358 X = CursorX - CursorLeftM + 1;
2359 Y = CursorY - CursorTop + 1;
2360 }
2361 else {
2362 X = CursorX + 1;
2363 Y = CursorY+1;
2364 }
2365 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "%u;%uR", CLocale, Y, X);
2366 SendCSIstr(Report, len);
2367 break;
2368 }
2369 }
2370
2371 void ParseSGRParams(PCharAttr attr, PCharAttr mask, int start)
2372 {
2373 int i, j, P, r, g, b, color;
2374 TCharAttr dummy;
2375
2376 if (mask == NULL) {
2377 mask = &dummy;
2378 }
2379
2380 for (i=start ; i<=NParam ; i++) {
2381 P = Param[i];
2382 switch (P) {
2383 case 0: /* Clear all */
2384 attr->Attr = DefCharAttr.Attr;
2385 attr->Attr2 = DefCharAttr.Attr2 | (attr->Attr2&Attr2Protect);
2386 #if UNICODE_INTERNAL_BUFF
2387 attr->AttrEx = attr->Attr;
2388 #endif
2389 attr->Fore = DefCharAttr.Fore;
2390 attr->Back = DefCharAttr.Back;
2391 mask->Attr = AttrSgrMask;
2392 mask->Attr2 = Attr2ColorMask;
2393 break;
2394
2395 case 1: /* Bold */
2396 attr->Attr |= AttrBold;
2397 mask->Attr |= AttrBold;
2398 break;
2399
2400 case 4: /* Under line */
2401 attr->Attr |= AttrUnder;
2402 mask->Attr |= AttrUnder;
2403 break;
2404
2405 case 5: /* Blink */
2406 attr->Attr |= AttrBlink;
2407 mask->Attr |= AttrBlink;
2408 break;
2409
2410 case 7: /* Reverse */
2411 attr->Attr |= AttrReverse;
2412 mask->Attr |= AttrReverse;
2413 break;
2414
2415 case 22: /* Bold off */
2416 attr->Attr &= ~ AttrBold;
2417 mask->Attr |= AttrBold;
2418 break;
2419
2420 case 24: /* Under line off */
2421 attr->Attr &= ~ AttrUnder;
2422 mask->Attr |= AttrUnder;
2423 break;
2424
2425 case 25: /* Blink off */
2426 attr->Attr &= ~ AttrBlink;
2427 mask->Attr |= AttrBlink;
2428 break;
2429
2430 case 27: /* Reverse off */
2431 attr->Attr &= ~ AttrReverse;
2432 mask->Attr |= AttrReverse;
2433 break;
2434
2435 case 30:
2436 case 31:
2437 case 32:
2438 case 33:
2439 case 34:
2440 case 35:
2441 case 36:
2442 case 37: /* text color */
2443 attr->Attr2 |= Attr2Fore;
2444 mask->Attr2 |= Attr2Fore;
2445 attr->Fore = P - 30;
2446 break;
2447
2448 case 38: /* text color (256color mode) */
2449 if (ts.ColorFlag & CF_XTERM256) {
2450 /*
2451 * Change foreground color. accept following formats.
2452 *
2453 * 38 ; 2 ; r ; g ; b
2454 * 38 ; 2 : r : g : b
2455 * 38 : 2 : r : g : b
2456 * 38 ; 5 ; idx
2457 * 38 ; 5 : idx
2458 * 38 : 5 : idx
2459 *
2460 */
2461 color = -1;
2462 j = 0;
2463 if (NSParam[i] > 0) {
2464 P = SubParam[i][1];
2465 j++;
2466 }
2467 else if (i < NParam) {
2468 P = Param[i+1];
2469 if (P == 2 || P == 5) {
2470 i++;
2471 }
2472 }
2473 switch (P) {
2474 case 2:
2475 r = g = b = 0;
2476 if (NSParam[i] > 0) {
2477 if (j < NSParam[i]) {
2478 r = SubParam[i][++j];
2479 if (j < NSParam[i]) {
2480 g = SubParam[i][++j];
2481 }
2482 if (j < NSParam[i]) {
2483 b = SubParam[i][++j];
2484 }
2485 color = DispFindClosestColor(r, g, b);
2486 }
2487 }
2488 else if (i < NParam && NSParam[i+1] > 0) {
2489 r = Param[++i];
2490 g = SubParam[i][1];
2491 if (NSParam[i] > 1) {
2492 b = SubParam[i][2];
2493 }
2494 color = DispFindClosestColor(r, g, b);
2495 }
2496 else if (i+2 < NParam) {
2497 r = Param[++i];
2498 g = Param[++i];
2499 b = Param[++i];
2500 color = DispFindClosestColor(r, g, b);
2501 }
2502 break;
2503 case 5:
2504 if (NSParam[i] > 0) {
2505 if (j < NSParam[i]) {
2506 color = SubParam[i][++j];
2507 }
2508 }
2509 else if (i < NParam) {
2510 color = Param[++i];
2511 }
2512 break;
2513 }
2514 if (color >= 0 && color < 256) {
2515 attr->Attr2 |= Attr2Fore;
2516 mask->Attr2 |= Attr2Fore;
2517 attr->Fore = color;
2518 }
2519 }
2520 break;
2521
2522 case 39: /* Reset text color */
2523 attr->Attr2 &= ~ Attr2Fore;
2524 mask->Attr2 |= Attr2Fore;
2525 attr->Fore = AttrDefaultFG;
2526 break;
2527
2528 case 40:
2529 case 41:
2530 case 42:
2531 case 43:
2532 case 44:
2533 case 45:
2534 case 46:
2535 case 47: /* Back color */
2536 attr->Attr2 |= Attr2Back;
2537 mask->Attr2 |= Attr2Back;
2538 attr->Back = P - 40;
2539 break;
2540
2541 case 48: /* Back color (256color mode) */
2542 if (ts.ColorFlag & CF_XTERM256) {
2543 color = -1;
2544 j = 0;
2545 if (NSParam[i] > 0) {
2546 P = SubParam[i][1];
2547 j++;
2548 }
2549 else if (i < NParam) {
2550 P = Param[i+1];
2551 if (P == 2 || P == 5) {
2552 i++;
2553 }
2554 }
2555 switch (P) {
2556 case 2:
2557 r = g = b = 0;
2558 if (NSParam[i] > 0) {
2559 if (j < NSParam[i]) {
2560 r = SubParam[i][++j];
2561 if (j < NSParam[i]) {
2562 g = SubParam[i][++j];
2563 }
2564 if (j < NSParam[i]) {
2565 b = SubParam[i][++j];
2566 }
2567 color = DispFindClosestColor(r, g, b);
2568 }
2569 }
2570 else if (i < NParam && NSParam[i+1] > 0) {
2571 r = Param[++i];
2572 g = SubParam[i][1];
2573 if (NSParam[i] > 1) {
2574 b = SubParam[i][2];
2575 }
2576 color = DispFindClosestColor(r, g, b);
2577 }
2578 else if (i+2 < NParam) {
2579 r = Param[++i];
2580 g = Param[++i];
2581 b = Param[++i];
2582 color = DispFindClosestColor(r, g, b);
2583 }
2584 break;
2585 case 5:
2586 if (NSParam[i] > 0) {
2587 if (j < NSParam[i]) {
2588 color = SubParam[i][++j];
2589 }
2590 }
2591 else if (i < NParam) {
2592 color = Param[++i];
2593 }
2594 break;
2595 }
2596 if (color >= 0 && color < 256) {
2597 attr->Attr2 |= Attr2Back;
2598 mask->Attr2 |= Attr2Back;
2599 attr->Back = color;
2600 }
2601 }
2602 break;
2603
2604 case 49: /* Reset back color */
2605 attr->Attr2 &= ~ Attr2Back;
2606 mask->Attr2 |= Attr2Back;
2607 attr->Back = AttrDefaultBG;
2608 break;
2609
2610 case 90:
2611 case 91:
2612 case 92:
2613 case 93:
2614 case 94:
2615 case 95:
2616 case 96:
2617 case 97: /* aixterm style text color */
2618 if (ts.ColorFlag & CF_AIXTERM16) {
2619 attr->Attr2 |= Attr2Fore;
2620 mask->Attr2 |= Attr2Fore;
2621 attr->Fore = P - 90 + 8;
2622 }
2623 break;
2624
2625 case 100:
2626 if (! (ts.ColorFlag & CF_AIXTERM16)) {
2627 /* Reset text and back color */
2628 attr->Attr2 &= ~ (Attr2Fore | Attr2Back);
2629 mask->Attr2 |= Attr2ColorMask;
2630 attr->Fore = AttrDefaultFG;
2631 attr->Back = AttrDefaultBG;
2632 break;
2633 }
2634 /* fall through to aixterm style back color */
2635
2636 case 101:
2637 case 102:
2638 case 103:
2639 case 104:
2640 case 105:
2641 case 106:
2642 case 107: /* aixterm style back color */
2643 if (ts.ColorFlag & CF_AIXTERM16) {
2644 attr->Attr2 |= Attr2Back;
2645 mask->Attr2 |= Attr2Back;
2646 attr->Back = P - 100 + 8;
2647 }
2648 break;
2649 }
2650 }
2651 }
2652
2653 void CSSetAttr() // SGR
2654 {
2655 UpdateStr();
2656 ParseSGRParams(&CharAttr, NULL, 1);
2657 BuffSetCurCharAttr(CharAttr);
2658 }
2659
2660 void CSSetScrollRegion() // DECSTBM
2661 {
2662 if (isCursorOnStatusLine) {
2663 MoveCursor(0,CursorY);
2664 return;
2665 }
2666
2667 RequiredParams(2);
2668 CheckParamVal(Param[1], NumOfLines-StatusLine);
2669 CheckParamValMax(Param[2], NumOfLines-StatusLine);
2670
2671 if (Param[1] >= Param[2])
2672 return;
2673
2674 CursorTop = Param[1] - 1;
2675 CursorBottom = Param[2] - 1;
2676
2677 if (RelativeOrgMode)
2678 // TODO: ���}�[�W���������������B�v���@�m�F�B
2679 MoveCursor(0, CursorTop);
2680 else
2681 MoveCursor(0, 0);
2682 }
2683
2684 void CSSetLRScrollRegion() // DECSLRM
2685 {
2686 // TODO: �X�e�[�^�X���C�������������m�F�B
2687 // if (isCursorOnStatusLine) {
2688 // MoveCursor(0,CursorY);
2689 // return;
2690 // }
2691
2692 RequiredParams(2);
2693 CheckParamVal(Param[1], NumOfColumns);
2694 CheckParamValMax(Param[2], NumOfColumns);
2695
2696 if (Param[1] >= Param[2])
2697 return;
2698
2699 CursorLeftM = Param[1] - 1;
2700 CursorRightM = Param[2] - 1;
2701
2702 if (RelativeOrgMode)
2703 MoveCursor(CursorLeftM, CursorTop);
2704 else
2705 MoveCursor(0, 0);
2706 }
2707
2708 void CSSunSequence() /* Sun terminal private sequences */
2709 {
2710 int x, y, len;
2711 char Report[TitleBuffSize*2+10];
2712 PTStack t;
2713
2714 switch (Param[1]) {
2715 case 1: // De-iconify window
2716 if (ts.WindowFlag & WF_WINDOWCHANGE)
2717 DispShowWindow(WINDOW_RESTORE);
2718 break;
2719
2720 case 2: // Iconify window
2721 if (ts.WindowFlag & WF_WINDOWCHANGE)
2722 DispShowWindow(WINDOW_MINIMIZE);
2723 break;
2724
2725 case 3: // set window position
2726 if (ts.WindowFlag & WF_WINDOWCHANGE) {
2727 RequiredParams(3);
2728 DispMoveWindow(Param[2], Param[3]);
2729 }
2730 break;
2731
2732 case 4: // set window size
2733 if (ts.WindowFlag & WF_WINDOWCHANGE) {
2734 RequiredParams(3);
2735 DispResizeWin(Param[3], Param[2]);
2736 }
2737 break;
2738
2739 case 5: // Raise window
2740 if (ts.WindowFlag & WF_WINDOWCHANGE)
2741 DispShowWindow(WINDOW_RAISE);
2742 break;
2743
2744 case 6: // Lower window
2745 if (ts.WindowFlag & WF_WINDOWCHANGE)
2746 DispShowWindow(WINDOW_LOWER);
2747 break;
2748
2749 case 7: // Refresh window
2750 if (ts.WindowFlag & WF_WINDOWCHANGE)
2751 DispShowWindow(WINDOW_REFRESH);
2752 break;
2753
2754 case 8: /* set terminal size */
2755 if (ts.WindowFlag & WF_WINDOWCHANGE) {
2756 RequiredParams(3);
2757 if (Param[2] <= 1) Param[2] = 24;
2758 if (Param[3] <= 1) Param[3] = 80;
2759 ChangeTerminalSize(Param[3], Param[2]);
2760 }
2761 break;
2762
2763 case 9: // Maximize/Restore window
2764 if (ts.WindowFlag & WF_WINDOWCHANGE) {
2765 RequiredParams(2);
2766 if (Param[2] == 0) {
2767 DispShowWindow(WINDOW_RESTORE);
2768 }
2769 else if (Param[2] == 1) {
2770 DispShowWindow(WINDOW_MAXIMIZE);
2771 }
2772 }
2773 break;
2774
2775 case 10: // Full-screen
2776 /*
2777 * �{�������� PuTTY ���������t���X�N���[�����[�h�������������������A
2778 * �������������������������������p����
2779 */
2780 if (ts.WindowFlag & WF_WINDOWCHANGE) {
2781 RequiredParams(2);
2782 switch (Param[2]) {
2783 case 0:
2784 DispShowWindow(WINDOW_RESTORE);
2785 break;
2786 case 1:
2787 DispShowWindow(WINDOW_MAXIMIZE);
2788 break;
2789 case 2:
2790 DispShowWindow(WINDOW_TOGGLE_MAXIMIZE);
2791 break;
2792 }
2793 }
2794 break;
2795
2796 case 11: // Report window state
2797 if (ts.WindowFlag & WF_WINDOWREPORT) {
2798 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "%dt", CLocale, DispWindowIconified()?2:1);
2799 SendCSIstr(Report, len);
2800 }
2801 break;
2802
2803 case 13: // Report window position
2804 if (ts.WindowFlag & WF_WINDOWREPORT) {
2805 RequiredParams(2);
2806 switch (Param[2]) {
2807 case 0:
2808 case 1:
2809 DispGetWindowPos(&x, &y, FALSE);
2810 break;
2811 case 2:
2812 DispGetWindowPos(&x, &y, TRUE);
2813 break;
2814 default:
2815 return;
2816 }
2817 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "3;%u;%ut", CLocale, (unsigned int)x, (unsigned int)y);
2818 SendCSIstr(Report, len);
2819 }
2820 break;
2821
2822 case 14: /* get window size */
2823 if (ts.WindowFlag & WF_WINDOWREPORT) {
2824 RequiredParams(2);
2825 switch (Param[2]) {
2826 case 0:
2827 case 1:
2828 DispGetWindowSize(&x, &y, TRUE);
2829 break;
2830 case 2:
2831 DispGetWindowSize(&x, &y, FALSE);
2832 break;
2833 default:
2834 return;
2835 }
2836
2837 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "4;%d;%dt", CLocale, y, x);
2838 SendCSIstr(Report, len);
2839 }
2840 break;
2841
2842 case 15: // Report display size (pixel)
2843 if (ts.WindowFlag & WF_WINDOWREPORT) {
2844 DispGetRootWinSize(&x, &y, TRUE);
2845 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "5;%d;%dt", CLocale, y, x);
2846 SendCSIstr(Report, len);
2847 }
2848 break;
2849
2850 case 16: // Report character cell size (pixel)
2851 if (ts.WindowFlag & WF_WINDOWREPORT) {
2852 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "6;%d;%dt", CLocale, FontHeight, FontWidth);
2853 SendCSIstr(Report, len);
2854 }
2855 break;
2856
2857 case 18: /* get terminal size */
2858 if (ts.WindowFlag & WF_WINDOWREPORT) {
2859 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "8;%u;%ut", CLocale,
2860 NumOfLines-StatusLine, NumOfColumns);
2861 SendCSIstr(Report, len);
2862 }
2863 break;
2864
2865 case 19: // Report display size (character)
2866 if (ts.WindowFlag & WF_WINDOWREPORT) {
2867 DispGetRootWinSize(&x, &y, FALSE);
2868 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "9;%d;%dt", CLocale, y, x);
2869 SendCSIstr(Report, len);
2870 }
2871 break;
2872
2873 case 20: // Report icon label
2874 switch (ts.WindowFlag & WF_TITLEREPORT) {
2875 case IdTitleReportIgnore:
2876 // nothing to do
2877 break;
2878
2879 case IdTitleReportAccept:
2880 switch (ts.AcceptTitleChangeRequest) {
2881 case IdTitleChangeRequestOff:
2882 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "L%s", CLocale, ts.Title);
2883 break;
2884
2885 case IdTitleChangeRequestAhead:
2886 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "L%s %s", CLocale, cv.TitleRemote, ts.Title);
2887 break;
2888
2889 case IdTitleChangeRequestLast:
2890 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "L%s %s", CLocale, ts.Title, cv.TitleRemote);
2891 break;
2892
2893 default:
2894 if (cv.TitleRemote[0] == 0) {
2895 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "L%s", CLocale, ts.Title);
2896 }
2897 else {
2898 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "L%s", CLocale, cv.TitleRemote);
2899 }
2900 }
2901 SendOSCstr(Report, len, ST);
2902 break;
2903
2904 default: // IdTitleReportEmpty:
2905 SendOSCstr("L", 0, ST);
2906 break;
2907 }
2908 break;
2909
2910 case 21: // Report window title
2911 switch (ts.WindowFlag & WF_TITLEREPORT) {
2912 case IdTitleReportIgnore:
2913 // nothing to do
2914 break;
2915
2916 case IdTitleReportAccept:
2917 switch (ts.AcceptTitleChangeRequest) {
2918 case IdTitleChangeRequestOff:
2919 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "l%s", CLocale, ts.Title);
2920 break;
2921
2922 case IdTitleChangeRequestAhead:
2923 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "l%s %s", CLocale, cv.TitleRemote, ts.Title);
2924 break;
2925
2926 case IdTitleChangeRequestLast:
2927 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "l%s %s", CLocale, ts.Title, cv.TitleRemote);
2928 break;
2929
2930 default:
2931 if (cv.TitleRemote[0] == 0) {
2932 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "l%s", CLocale, ts.Title);
2933 }
2934 else {
2935 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "l%s", CLocale, cv.TitleRemote);
2936 }
2937 }
2938 SendOSCstr(Report, len, ST);
2939 break;
2940
2941 default: // IdTitleReportEmpty:
2942 SendOSCstr("l", 0, ST);
2943 break;
2944 }
2945 break;
2946
2947 case 22: // Push Title
2948 RequiredParams(2);
2949 switch (Param[2]) {
2950 case 0:
2951 case 1:
2952 case 2:
2953 if (ts.AcceptTitleChangeRequest && (t=malloc(sizeof(TStack))) != NULL) {
2954 if ((t->title = _strdup(cv.TitleRemote)) != NULL) {
2955 t->next = TitleStack;
2956 TitleStack = t;
2957 }
2958 else {
2959 free(t);
2960 }
2961 }
2962 break;
2963 }
2964 break;
2965
2966 case 23: // Pop Title
2967 RequiredParams(2);
2968 switch (Param[2]) {
2969 case 0:
2970 case 1:
2971 case 2:
2972 if (ts.AcceptTitleChangeRequest && TitleStack != NULL) {
2973 t = TitleStack;
2974 TitleStack = t->next;
2975 strncpy_s(cv.TitleRemote, sizeof(cv.TitleRemote), t->title, _TRUNCATE);
2976 ChangeTitle();
2977 free(t->title);
2978 free(t);
2979 }
2980 break;
2981 }
2982 }
2983 }
2984
2985 void CSLT(BYTE b)
2986 {
2987 switch (b) {
2988 case 'r':
2989 if (CanUseIME()) {
2990 SetIMEOpenStatus(HVTWin, SavedIMEstatus);
2991 }
2992 break;
2993
2994 case 's':
2995 if (CanUseIME()) {
2996 SavedIMEstatus = GetIMEOpenStatus(HVTWin);
2997 }
2998 break;
2999
3000 case 't':
3001 if (CanUseIME()) {
3002 SetIMEOpenStatus(HVTWin, Param[1] == 1);
3003 }
3004 break;
3005 }
3006 }
3007
3008 void CSEQ(BYTE b)
3009 {
3010 char Report[16];
3011 int len;
3012
3013 switch (b) {
3014 case 'c': /* Tertiary terminal report (Tertiary DA) */
3015 if (Param[1] == 0) {
3016 len = _snprintf_s_l(Report, sizeof(Report), _TRUNCATE, "!|%8s", CLocale, ts.TerminalUID);
3017 SendDCSstr(Report, len);
3018 }
3019 break;
3020 }
3021 }
3022
3023 void CSGT(BYTE b)
3024 {
3025 switch (b) {
3026 case 'c': /* second terminal report (Secondary DA) */
3027 if (Param[1] == 0) {
3028 SendCSIstr(">32;331;0c", 0); /* VT382(>32) + xterm rev 331 */
3029 }
3030 break;
3031
3032 case 'J': // IO-8256 terminal
3033 if (Param[1]==3) {
3034 RequiredParams(5);
3035 CheckParamVal(Param[2], NumOfLines-StatusLine);
3036 CheckParamVal(Param[3], NumOfColumns);
3037 CheckParamValMax(Param[4], NumOfLines-StatusLine);
3038 CheckParamValMax(Param[5], NumOfColumns);
3039
3040 if (Param[2] > Param[4] || Param[3] > Param[5]) {
3041 return;
3042 }
3043
3044 BuffEraseBox(Param[3]-1, Param[2]-1, Param[5]-1, Param[4]-1);
3045 }
3046 break;
3047
3048 case 'K': // IO-8256 terminal
3049 switch (Param[1]) {
3050 case 3:
3051 RequiredParams(3);
3052 CheckParamVal(Param[2], NumOfColumns);
3053 CheckParamVal(Param[3], NumOfColumns);
3054
3055 if (Param[2] > Param[3]) {
3056 return;
3057 }
3058
3059 BuffEraseCharsInLine(Param[2]-1, Param[3]-Param[2]+1);
3060 break;
3061
3062 case 5:
3063 RequiredParams(3);
3064 switch (Param[2]) {
3065 case 3:
3066 case 4:
3067 case 5:
3068 case 6: // Draw Line
3069 BuffDrawLine(CharAttr, Param[2], Param[3]);
3070 break;
3071
3072 case 12: // Text color
3073 if ((Param[3]>=0) && (Param[3]<=7)) {
3074 switch (Param[3]) {
3075 case 3: CharAttr.Fore = IdBlue; break;
3076 case 4: CharAttr.Fore = IdCyan; break;
3077 case 5: CharAttr.Fore = IdYellow; break;
3078 case 6: CharAttr.Fore = IdMagenta; break;
3079 default: CharAttr.Fore = Param[3]; break;
3080 }
3081 CharAttr.Attr2 |= Attr2Fore;
3082 BuffSetCurCharAttr(CharAttr);
3083 }
3084 break;
3085 }
3086 break;
3087 }
3088 break;
3089 }
3090 }
3091
3092 void CSQExchangeColor() // DECSCNM / Visual Bell
3093 {
3094 COLORREF ColorRef;
3095
3096 BuffUpdateScroll();
3097
3098 if (ts.ColorFlag & CF_REVERSECOLOR) {
3099 ColorRef = ts.VTColor[0];
3100 ts.VTColor[0] = ts.VTReverseColor[0];
3101 ts.VTReverseColor[0] = ColorRef;
3102 ColorRef = ts.VTColor[1];
3103 ts.VTColor[1] = ts.VTReverseColor[1];
3104 ts.VTReverseColor[1] = ColorRef;
3105 }
3106 else {
3107 ColorRef = ts.VTColor[0];
3108 ts.VTColor[0] = ts.VTColor[1];
3109 ts.VTColor[1] = ColorRef;
3110 }
3111
3112 ColorRef = ts.VTBoldColor[0];
3113 ts.VTBoldColor[0] = ts.VTBoldColor[1];
3114 ts.VTBoldColor[1] = ColorRef;
3115
3116 ColorRef = ts.VTBlinkColor[0];
3117 ts.VTBlinkColor[0] = ts.VTBlinkColor[1];
3118 ts.VTBlinkColor[1] = ColorRef;
3119
3120 ColorRef = ts.URLColor[0];
3121 ts.URLColor[0] = ts.URLColor[1];
3122 ts.URLColor[1] = ColorRef;
3123
3124 ts.ColorFlag ^= CF_REVERSEVIDEO;
3125
3126 #ifdef ALPHABLEND_TYPE2
3127 BGExchangeColor();
3128 #endif
3129 DispChangeBackground();
3130 UpdateWindow(HVTWin);
3131 }
3132
3133 void CSQChangeColumnMode(int width) // DECCOLM
3134 {
3135 ChangeTerminalSize(width, NumOfLines-StatusLine);
3136 LRMarginMode = FALSE;
3137
3138 // DECCOLM �����������N���A�����������d�l
3139 // ClearOnResize �� off �������������N���A�����B
3140 // ClearOnResize �� on ������ ChangeTerminalSize() ���������N���A�����������A
3141 // �]�v���X�N���[�����������������������N���A�������B
3142 if ((ts.TermFlag & TF_CLEARONRESIZE) == 0) {
3143 MoveCursor(0, 0);
3144 BuffClearScreen();
3145 UpdateWindow(HVTWin);
3146 }
3147 }
3148
3149 void CSQ_h_Mode() // DECSET
3150 {
3151 int i;
3152
3153 for (i = 1 ; i<=NParam ; i++) {
3154 switch (Param[i]) {
3155 case 1: AppliCursorMode = TRUE; break; // DECCKM
3156 case 3: CSQChangeColumnMode(132); break; // DECCOLM
3157 case 5: /* Reverse Video (DECSCNM) */
3158 if (!(ts.ColorFlag & CF_REVERSEVIDEO))
3159 CSQExchangeColor(); /* Exchange text/back color */
3160 break;
3161 case 6: // DECOM
3162 if (isCursorOnStatusLine)
3163 MoveCursor(0,CursorY);
3164 else {
3165 RelativeOrgMode = TRUE;
3166 MoveCursor(0,CursorTop);
3167 }
3168 break;
3169 case 7: AutoWrapMode = TRUE; break; // DECAWM
3170 case 8: AutoRepeatMode = TRUE; break; // DECARM
3171 case 9: /* X10 Mouse Tracking */
3172 if (ts.MouseEventTracking)
3173 MouseReportMode = IdMouseTrackX10;
3174 break;
3175 case 12: /* att610 cursor blinking */
3176 if (ts.WindowFlag & WF_CURSORCHANGE) {
3177 ts.NonblinkingCursor = FALSE;
3178 ChangeCaret();
3179 }
3180 break;
3181 case 19: PrintEX = TRUE; break; // DECPEX
3182 case 25: DispEnableCaret(TRUE); break; // cursor on (DECTCEM)
3183 case 38: // DECTEK
3184 if (ts.AutoWinSwitch>0)
3185 ChangeEmu = IdTEK; /* Enter TEK Mode */
3186 break;
3187 case 47: // Alternate Screen Buffer
3188 if ((ts.TermFlag & TF_ALTSCR) && !AltScr) {
3189 BuffSaveScreen();
3190 AltScr = TRUE;
3191 }
3192 break;
3193 case 59:
3194 if (ts.Language==IdJapanese) {
3195 /* kanji terminal */
3196 Gn[0] = IdASCII;
3197 Gn[1] = IdKatakana;
3198 Gn[2] = IdKatakana;
3199 Gn[3] = IdKanji;
3200 Glr[0] = 0;
3201 if ((ts.KanjiCode==IdJIS) &&
3202 (ts.JIS7Katakana==0))
3203 Glr[1] = 2; // 8-bit katakana
3204 else
3205 Glr[1] = 3;
3206 }
3207 break;
3208 case 66: AppliKeyMode = TRUE; break; // DECNKM
3209 case 67: ts.BSKey = IdBS; break; // DECBKM
3210 case 69: LRMarginMode = TRUE; break; // DECLRMM (DECVSSM)
3211 case 1000: // Mouse Tracking
3212 if (ts.MouseEventTracking)
3213 MouseReportMode = IdMouseTrackVT200;
3214 break;
3215 case 1001: // Hilite Mouse Tracking
3216 if (ts.MouseEventTracking)
3217 MouseReportMode = IdMouseTrackVT200Hl;
3218 break;
3219 case 1002: // Button-Event Mouse Tracking
3220 if (ts.MouseEventTracking)
3221 MouseReportMode = IdMouseTrackBtnEvent;
3222 break;
3223 case 1003: // Any-Event Mouse Tracking
3224 if (ts.MouseEventTracking)
3225 MouseReportMode = IdMouseTrackAllEvent;
3226 break;
3227 case 1004: // Focus Report
3228 if (ts.MouseEventTracking)
3229 FocusReportMode = TRUE;
3230 break;
3231 case 1005: // Extended Mouse Tracking (UTF-8)
3232 if (ts.MouseEventTracking)
3233 MouseReportExtMode = IdMouseTrackExtUTF8;
3234 break;
3235 case 1006: // Extended Mouse Tracking (SGR)
3236 if (ts.MouseEventTracking)
3237 MouseReportExtMode = IdMouseTrackExtSGR;
3238 break;
3239 case 1015: // Extended Mouse Tracking (rxvt-unicode)
3240 if (ts.MouseEventTracking)
3241 MouseReportExtMode = IdMouseTrackExtURXVT;
3242 break;
3243 case 1047: // Alternate Screen Buffer
3244 if ((ts.TermFlag & TF_ALTSCR) && !AltScr) {
3245 BuffSaveScreen();
3246 AltScr = TRUE;
3247 }
3248 break;
3249 case 1048: // Save Cursor Position (Alternate Screen Buffer)
3250 if (ts.TermFlag & TF_ALTSCR) {
3251 SaveCursor();
3252 }
3253 break;
3254 case 1049: // Alternate Screen Buffer
3255 if ((ts.TermFlag & TF_ALTSCR) && !AltScr) {
3256 SaveCursor();
3257 BuffSaveScreen();
3258 BuffClearScreen();
3259 AltScr = TRUE;
3260 }
3261 break;
3262 case 2004: // Bracketed Paste Mode
3263 BracketedPaste = TRUE;
3264 break;
3265 case 7727: // mintty Application Escape Mode
3266 AppliEscapeMode = 1;
3267 break;
3268 case 7786: // Wheel to Cursor translation
3269 if (ts.TranslateWheelToCursor) {
3270 AcceptWheelToCursor = TRUE;
3271 }
3272 break;
3273 case 8200: // ClearThenHome
3274 ClearThenHome = TRUE;
3275 break;
3276 case 14001: // NetTerm mouse mode
3277 if (ts.MouseEventTracking)
3278 MouseReportMode = IdMouseTrackNetTerm;
3279 break;
3280 case 14002: // test Application Escape Mode 2
3281 case 14003: // test Application Escape Mode 3
3282 case 14004: // test Application Escape Mode 4
3283 AppliEscapeMode = Param[i] - 14000;
3284 break;
3285 }
3286 }
3287 }
3288
3289 void CSQ_i_Mode() // DECMC
3290 {
3291 switch (Param[1]) {
3292 case 1:
3293 if (ts.TermFlag&TF_PRINTERCTRL) {
3294 OpenPrnFile();
3295 BuffDumpCurrentLine(LF);
3296 if (! AutoPrintMode)
3297 ClosePrnFile();
3298 }
3299 break;
3300 /* auto print mode off */
3301 case 4:
3302 if (AutoPrintMode) {
3303 ClosePrnFile();
3304 AutoPrintMode = FALSE;
3305 }
3306 break;
3307 /* auto print mode on */
3308 case 5:
3309 if (ts.TermFlag&TF_PRINTERCTRL) {
3310 if (! AutoPrintMode) {
3311 OpenPrnFile();
3312 AutoPrintMode = TRUE;
3313 }
3314 }
3315 break;
3316 }
3317 }
3318
3319 void CSQ_l_Mode() // DECRST
3320 {
3321 int i;
3322
3323 for (i = 1 ; i <= NParam ; i++) {
3324 switch (Param[i]) {
3325 case 1: AppliCursorMode = FALSE; break; // DECCKM
3326 case 3: CSQChangeColumnMode(80); break; // DECCOLM
3327 case 5: /* Normal Video (DECSCNM) */
3328 if (ts.ColorFlag & CF_REVERSEVIDEO)
3329 CSQExchangeColor(); /* Exchange text/back color */
3330 break;
3331 case 6: // DECOM
3332 if (isCursorOnStatusLine)
3333 MoveCursor(0,CursorY);
3334 else {
3335 RelativeOrgMode = FALSE;
3336 MoveCursor(0,0);
3337 }
3338 break;
3339 case 7: AutoWrapMode = FALSE; break; // DECAWM
3340 case 8: AutoRepeatMode = FALSE; break; // DECARM
3341 case 9: MouseReportMode = IdMouseTrackNone; break; /* X10 Mouse Tracking */
3342 case 12: /* att610 cursor blinking */
3343 if (ts.WindowFlag & WF_CURSORCHANGE) {
3344 ts.NonblinkingCursor = TRUE;
3345 ChangeCaret();
3346 }
3347 break;
3348 case 19: PrintEX = FALSE; break; // DECPEX
3349 case 25: DispEnableCaret(FALSE); break; // cursor off (DECTCEM)
3350 case 47: // Alternate Screen Buffer
3351 if ((ts.TermFlag & TF_ALTSCR) && AltScr) {
3352 BuffRestoreScreen();
3353 AltScr = FALSE;
3354 }
3355 break;
3356 case 59:
3357 if (ts.Language==IdJapanese) {
3358 /* katakana terminal */
3359 Gn[0] = IdASCII;
3360 Gn[1] = IdKatakana;
3361 Gn[2] = IdKatakana;
3362 Gn[3] = IdKanji;
3363 Glr[0] = 0;
3364 if ((ts.KanjiCode==IdJIS) &&
3365 (ts.JIS7Katakana==0))
3366 Glr[1] = 2; // 8-bit katakana
3367 else
3368 Glr[1] = 3;
3369 }
3370 break;
3371 case 66: AppliKeyMode = FALSE; break; // DECNKM
3372 case 67: ts.BSKey = IdDEL; break; // DECBKM
3373 case 69: // DECLRMM (DECVSSM)
3374 LRMarginMode = FALSE;
3375 CursorLeftM = 0;
3376 CursorRightM = NumOfColumns - 1;
3377 break;
3378 case 1000: // Mouse Tracking
3379 case 1001: // Hilite Mouse Tracking
3380 case 1002: // Button-Event Mouse Tracking
3381 case 1003: // Any-Event Mouse Tracking
3382 MouseReportMode = IdMouseTrackNone;
3383 break;
3384 case 1004: // Focus Report
3385 FocusReportMode = FALSE;
3386 break;
3387 case 1005: // Extended Mouse Tracking (UTF-8)
3388 case 1006: // Extended Mouse Tracking (SGR)
3389 case 1015: // Extended Mouse Tracking (rxvt-unicode)
3390 MouseReportExtMode = IdMouseTrackExtNone;
3391 break;
3392 case 1047: // Alternate Screen Buffer
3393 if ((ts.TermFlag & TF_ALTSCR) && AltScr) {
3394 BuffClearScreen();
3395 BuffRestoreScreen();
3396 AltScr = FALSE;
3397 }
3398 break;
3399 case 1048: // Save Cursor Position (Alternate Screen Buffer)
3400 if (ts.TermFlag & TF_ALTSCR) {
3401 RestoreCursor();
3402 }
3403 break;
3404 case 1049: // Alternate Screen Buffer
3405 if ((ts.TermFlag & TF_ALTSCR) && AltScr) {