Merge branch 'master' of [email protected]:acess2
[tpg/acess2.git] / Kernel / drv / vterm.c
1 /*
2  * Acess2 Virtual Terminal Driver
3  */
4 #define DEBUG   0
5 #include <acess.h>
6 #include <fs_devfs.h>
7 #include <modules.h>
8 #include <tpl_drv_video.h>
9 #include <tpl_drv_keyboard.h>
10 #include <tpl_drv_terminal.h>
11 #include <errno.h>
12
13 #define USE_CTRL_ALT    0
14
15 // === CONSTANTS ===
16 #define VERSION ((0<<8)|(50))
17
18 #define NUM_VTS 8
19 #define MAX_INPUT_CHARS32       64
20 #define MAX_INPUT_CHARS8        (MAX_INPUT_CHARS32*4)
21 //#define DEFAULT_OUTPUT        "BochsGA"
22 #define DEFAULT_OUTPUT  "Vesa"
23 #define DEFAULT_INPUT   "PS2Keyboard"
24 #define DEFAULT_WIDTH   640
25 #define DEFAULT_HEIGHT  480
26 #define DEFAULT_SCROLLBACK      2       // 2 Screens of text + current screen
27 #define TEXTTERM_WIDTH  (BOOT_WIDTH/8)
28 #define TEXTTERM_HEIGHT (BOOT_WIDTH/16)
29 #define DEFAULT_COLOUR  (VT_COL_BLACK|(0xAAA<<16))
30
31 #define VT_FLAG_HIDECSR 0x01
32 #define VT_FLAG_HASFB   0x10    //!< Set if the VTerm has requested the Framebuffer
33
34 enum eVT_InModes {
35         VT_INMODE_TEXT8,        // UTF-8 Text Mode (VT100 Emulation)
36         VT_INMODE_TEXT32,       // UTF-32 Text Mode (Acess Native)
37         NUM_VT_INMODES
38 };
39
40 // === TYPES ===
41 typedef struct {
42          int    Mode;   //!< Current Mode (see ::eTplTerminal_Modes)
43          int    Flags;  //!< Flags (see VT_FLAG_*)
44         short   Width;  //!< Virtual Width
45         short   Height; //!< Virtual Height
46         
47          int    ViewPos;        //!< View Buffer Offset (Text Only)
48          int    WritePos;       //!< Write Buffer Offset (Text Only)
49         Uint32  CurColour;      //!< Current Text Colour
50         
51          int    InputRead;      //!< Input buffer read position
52          int    InputWrite;     //!< Input buffer write position
53         char    InputBuffer[MAX_INPUT_CHARS8];
54         union {
55                 tVT_Char        *Text;
56                 Uint32          *Buffer;
57         };
58         char    Name[2];        //!< Name of the terminal
59         tVFS_Node       Node;
60 } tVTerm;
61
62 // === IMPORTS ===
63 extern void     Debug_SetKTerminal(char *File);
64
65 // === PROTOTYPES ===
66  int    VT_Install(char **Arguments);
67 void    VT_InitOutput(void);
68 void    VT_InitInput(void);
69 char    *VT_ReadDir(tVFS_Node *Node, int Pos);
70 tVFS_Node       *VT_FindDir(tVFS_Node *Node, char *Name);
71  int    VT_Root_IOCtl(tVFS_Node *Node, int Id, void *Data);
72 Uint64  VT_Read(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer);
73 Uint64  VT_Write(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer);
74  int    VT_Terminal_IOCtl(tVFS_Node *Node, int Id, void *Data);
75 void    VT_SetResolution(int Width, int Height);
76 void    VT_SetMode(int Mode);
77 void    VT_SetTerminal(int ID);
78 void    VT_KBCallBack(Uint32 Codepoint);
79 void    VT_int_PutString(tVTerm *Term, Uint8 *Buffer, Uint Count);
80  int    VT_int_ParseEscape(tVTerm *Term, char *Buffer);
81 void    VT_int_PutChar(tVTerm *Term, Uint32 Ch);
82 void    VT_int_ScrollFramebuffer( tVTerm *Term );
83 void    VT_int_UpdateScreen( tVTerm *Term, int UpdateAll );
84 void    VT_int_ChangeMode(tVTerm *Term, int NewMode);
85
86 // === CONSTANTS ===
87 const Uint16    caVT100Colours[] = {
88                 // Black, Red, Green, Yellow, Blue, Purple, Cyan, Gray
89                 // Same again, but bright
90                 VT_COL_BLACK, 0x700, 0x070, 0x770, 0x007, 0x707, 0x077, 0xAAA,
91                 VT_COL_GREY, 0xF00, 0x0F0, 0xFF0, 0x00F, 0xF0F, 0x0FF, VT_COL_WHITE
92         };
93
94 // === GLOBALS ===
95 MODULE_DEFINE(0, VERSION, VTerm, VT_Install, NULL, DEFAULT_OUTPUT, DEFAULT_INPUT, NULL);
96 tDevFS_Driver   gVT_DrvInfo = {
97         NULL, "VTerm",
98         {
99         .Flags = VFS_FFLAG_DIRECTORY,
100         .Size = NUM_VTS,
101         .Inode = -1,
102         .NumACLs = 0,
103         .ReadDir = VT_ReadDir,
104         .FindDir = VT_FindDir,
105         .IOCtl = VT_Root_IOCtl
106         }
107 };
108 // --- Terminals ---
109 tVTerm  gVT_Terminals[NUM_VTS];
110  int    giVT_CurrentTerminal = 0;
111 tVTerm  *gpVT_CurTerm = &gVT_Terminals[0];
112 // --- Video State ---
113 short   giVT_RealWidth  = DEFAULT_WIDTH;        //!< Screen Width
114 short   giVT_RealHeight = DEFAULT_HEIGHT;       //!< Screen Height
115  int    giVT_Scrollback = DEFAULT_SCROLLBACK;
116 // --- Driver Handles ---
117 char    *gsVT_OutputDevice = NULL;
118 char    *gsVT_InputDevice = NULL;
119  int    giVT_OutputDevHandle = -2;
120  int    giVT_InputDevHandle = -2;
121 // --- Key States --- (Used for VT Switching/Magic Combos)
122  int    gbVT_CtrlDown = 0;
123  int    gbVT_AltDown = 0;
124  int    gbVT_SysrqDown = 0;
125
126 // === CODE ===
127 /**
128  * \fn int VT_Install(char **Arguments)
129  * \brief Installs the Virtual Terminal Driver
130  */
131 int VT_Install(char **Arguments)
132 {
133          int    i;
134         
135         // Scan Arguments
136         if(Arguments)
137         {
138                 char    **args = Arguments;
139                 char    *arg, *opt, *val;
140                 for( ; (arg = *args); args++ )
141                 {
142                         Log_Debug("VTerm", "Argument '%s'", arg);
143                         opt = arg;
144                         val = arg + strpos(arg, '=');   *val++ = '\0';
145                         
146                         if( strcmp(opt, "Video") == 0 ) {
147                                 if(gsVT_OutputDevice)   free(gsVT_OutputDevice);
148                                 gsVT_OutputDevice = strdup(val);
149                         }
150                         else if( strcmp(opt, "Input") == 0 ) {
151                                 if(gsVT_InputDevice)    free(gsVT_InputDevice);
152                                 gsVT_InputDevice = strdup(val);
153                         }
154                         else if( strcmp(opt, "Width") == 0 ) {
155                                 giVT_RealWidth = atoi( val );
156                         }
157                         else if( strcmp(opt, "Height") == 0 ) {
158                                 giVT_RealHeight = atoi( val );
159                         }
160                         else if( strcmp(opt, "Scrollback") == 0 ) {
161                                 giVT_Scrollback = atoi( val );
162                         }
163                 }
164         }
165         
166         // Apply Defaults
167         if(!gsVT_OutputDevice)  gsVT_OutputDevice = "/Devices/"DEFAULT_OUTPUT;
168         if(!gsVT_InputDevice)   gsVT_InputDevice = "/Devices/"DEFAULT_INPUT;
169         
170         Log_Log("VTerm", "Using '%s' as output", gsVT_OutputDevice);
171         Log_Log("VTerm", "Using '%s' as input", gsVT_InputDevice);
172         
173         // Create Nodes
174         for( i = 0; i < NUM_VTS; i++ )
175         {
176                 gVT_Terminals[i].Mode = TERM_MODE_TEXT;
177                 gVT_Terminals[i].Flags = 0;
178                 gVT_Terminals[i].Width = giVT_RealWidth/giVT_CharWidth;
179                 gVT_Terminals[i].Height = giVT_RealHeight/giVT_CharHeight;
180                 gVT_Terminals[i].CurColour = DEFAULT_COLOUR;
181                 gVT_Terminals[i].WritePos = 0;
182                 gVT_Terminals[i].ViewPos = 0;
183                 
184                 gVT_Terminals[i].Buffer = calloc(
185                         gVT_Terminals[i].Width*gVT_Terminals[i].Height*(giVT_Scrollback+1),
186                         sizeof(tVT_Char)
187                         );
188                 
189                 gVT_Terminals[i].Name[0] = '0'+i;
190                 gVT_Terminals[i].Name[1] = '\0';
191                 gVT_Terminals[i].Node.Inode = i;
192                 gVT_Terminals[i].Node.ImplPtr = &gVT_Terminals[i];
193                 gVT_Terminals[i].Node.NumACLs = 0;      // Only root can open virtual terminals
194                 
195                 gVT_Terminals[i].Node.Read = VT_Read;
196                 gVT_Terminals[i].Node.Write = VT_Write;
197                 gVT_Terminals[i].Node.IOCtl = VT_Terminal_IOCtl;
198         }
199         
200         // Add to DevFS
201         DevFS_AddDevice( &gVT_DrvInfo );
202         
203         VT_InitOutput();
204         VT_InitInput();
205         
206         // Set kernel output to VT0
207         Debug_SetKTerminal("/Devices/VTerm/0");
208         
209         Log_Log("VTerm", "Returning %i", MODULE_ERR_OK);
210         return MODULE_ERR_OK;
211 }
212
213 /**
214  * \fn void VT_InitOutput()
215  * \brief Initialise Video Output
216  */
217 void VT_InitOutput()
218 {
219         giVT_OutputDevHandle = VFS_Open(gsVT_OutputDevice, VFS_OPENFLAG_WRITE);
220         if(giVT_InputDevHandle == -1) {
221                 Log_Warning("VTerm", "Oh F**k, I can't open the video device '%s'", gsVT_OutputDevice);
222                 return ;
223         }
224         VT_SetResolution(giVT_RealWidth, giVT_RealHeight);
225         VT_SetTerminal( 0 );
226         VT_SetMode( VIDEO_BUFFMT_TEXT );
227 }
228
229 /**
230  * \fn void VT_InitInput()
231  * \brief Initialises the input
232  */
233 void VT_InitInput()
234 {
235         giVT_InputDevHandle = VFS_Open(gsVT_InputDevice, VFS_OPENFLAG_READ);
236         if(giVT_InputDevHandle == -1)   return ;
237         VFS_IOCtl(giVT_InputDevHandle, KB_IOCTL_SETCALLBACK, VT_KBCallBack);
238 }
239
240 /**
241  * \fn char *VT_ReadDir(tVFS_Node *Node, int Pos)
242  * \brief Read from the VTerm Directory
243  */
244 char *VT_ReadDir(tVFS_Node *Node, int Pos)
245 {
246         if(Pos < 0)     return NULL;
247         if(Pos >= NUM_VTS)      return NULL;
248         return strdup( gVT_Terminals[Pos].Name );
249 }
250
251 /**
252  * \fn tVFS_Node *VT_FindDir(tVFS_Node *Node, char *Name)
253  * \brief Find an item in the VTerm directory
254  */
255 tVFS_Node *VT_FindDir(tVFS_Node *Node, char *Name)
256 {
257          int    num;
258         
259         ENTER("pNode sName", Node, Name);
260         
261         // Open the input and output files if needed
262         if(giVT_OutputDevHandle == -2)  VT_InitOutput();
263         if(giVT_InputDevHandle == -2)   VT_InitInput();
264         
265         // Sanity check name
266         if(Name[0] < '0' || Name[0] > '9' || Name[1] != '\0') {
267                 LEAVE('n');
268                 return NULL;
269         }
270         // Get index
271         num = Name[0] - '0';
272         if(num >= NUM_VTS) {
273                 LEAVE('n');
274                 return NULL;
275         }
276         // Return node
277         LEAVE('p', &gVT_Terminals[num].Node);
278         return &gVT_Terminals[num].Node;
279 }
280
281 /**
282  * \fn int VT_Root_IOCtl(tVFS_Node *Node, int Id, void *Data)
283  * \brief Control the VTerm Driver
284  */
285 int VT_Root_IOCtl(tVFS_Node *Node, int Id, void *Data)
286 {
287          int    len;
288         switch(Id)
289         {
290         case DRV_IOCTL_TYPE:    return DRV_TYPE_MISC;
291         case DRV_IOCTL_IDENT:   memcpy(Data, "VT\0\0", 4);      return 0;
292         case DRV_IOCTL_VERSION: return VERSION;
293         case DRV_IOCTL_LOOKUP:  return 0;
294         
295         case 4: // Get Video Driver
296                 if(Data)        strcpy(Data, gsVT_OutputDevice);
297                 return strlen(gsVT_OutputDevice);
298         
299         case 5: // Set Video Driver
300                 if(!Data)       return -EINVAL;
301                 if(Threads_GetUID() != 0)       return -EACCES;
302                 
303                 len = strlen(Data);
304                 
305                 free(gsVT_OutputDevice);
306                 
307                 gsVT_OutputDevice = malloc(len+1);
308                 strcpy(gsVT_OutputDevice, Data);
309                 
310                 VFS_Close(giVT_OutputDevHandle);
311                 giVT_OutputDevHandle = -1;
312                 
313                 VT_InitOutput();
314                 return 1;
315         }
316         return 0;
317 }
318
319 /**
320  * \fn Uint64 VT_Read(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer)
321  * \brief Read from a virtual terminal
322  */
323 Uint64 VT_Read(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer)
324 {
325          int    pos = 0;
326         tVTerm  *term = &gVT_Terminals[ Node->Inode ];
327         
328         // Check current mode
329         switch(term->Mode)
330         {
331         case TERM_MODE_TEXT:
332                 while(pos < Length)
333                 {
334                         while(term->InputRead == term->InputWrite)      Threads_Yield();
335                         
336                         ((char*)Buffer)[pos] = term->InputBuffer[term->InputRead];
337                         pos ++;
338                         term->InputRead ++;
339                         term->InputRead %= MAX_INPUT_CHARS8;
340                 }
341                 break;
342         
343         //case TERM_MODE_FB:
344         default:
345                 while(pos < Length)
346                 {
347                         while(term->InputRead == term->InputWrite)      Threads_Yield();
348                         ((Uint32*)Buffer)[pos] = ((Uint32*)term->InputBuffer)[term->InputRead];
349                         pos ++;
350                         term->InputRead ++;
351                         term->InputRead %= MAX_INPUT_CHARS32;
352                 }
353                 break;
354         }
355         return 0;
356 }
357
358 /**
359  * \fn Uint64 VT_Write(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer)
360  * \brief Write to a virtual terminal
361  */
362 Uint64 VT_Write(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer)
363 {
364         tVTerm  *term = &gVT_Terminals[ Node->Inode ];
365          int    size;
366         
367         // Write
368         switch( term->Mode )
369         {
370         case TERM_MODE_TEXT:
371                 VT_int_PutString(term, Buffer, Length);
372                 break;
373         case TERM_MODE_FB:
374                 size = term->Width*term->Height*4;
375                 if( Offset > size ) {
376                         Log_Notice("VTerm", "VT_Write: Offset (0x%llx) > FBSize (0x%x)",
377                                 Offset, size);
378                         return 0;
379                 }
380                 
381                 if( Offset + Length > size ) {
382                         Log_Notice("VTerm", "VT_Write: Offset+Length (0x%llx) > FBSize (0x%x)",
383                                 Offset+Length, size);
384                         Length = size - Offset;
385                 }
386                 
387                 memcpy( (void*)((Uint)term->Buffer + (Uint)Offset), Buffer, Length );
388                 
389                 if( Node->Inode == giVT_CurrentTerminal )
390                 {
391                         if( giVT_RealWidth > term->Width || giVT_RealHeight > term->Height )
392                         {
393                                  int    x, y, w, h;
394                                 x = Offset/4;   y = x / term->Width;    x %= term->Width;
395                                 w = Length/4+x; h = w / term->Width;    w %= term->Width;
396                                 // Center
397                                 x += (giVT_RealWidth - term->Width) / 2;
398                                 y += (giVT_RealHeight - term->Height) / 2;
399                                 while(h--)
400                                 {
401                                         VFS_WriteAt( giVT_OutputDevHandle,
402                                                 (x + y * giVT_RealWidth)*4,
403                                                 term->Width * 4,
404                                                 Buffer
405                                                 );
406                                         Buffer = (void*)( (Uint)Buffer + term->Width*4 );
407                                         y ++;
408                                 }
409                                 return 0;
410                         }
411                         else {
412                                 return VFS_WriteAt( giVT_OutputDevHandle, Offset, Length, Buffer );
413                         }
414                 }
415         
416         case TERM_MODE_2DACCEL:
417         //case TERM_MODE_3DACCEL:
418                 if( Node->Inode == giVT_CurrentTerminal )
419                 {
420                         VFS_Write( giVT_OutputDevHandle, Length, Buffer );
421                 }
422                 break;
423         }
424         
425         return 0;
426 }
427
428 /**
429  * \fn int VT_Terminal_IOCtl(tVFS_Node *Node, int Id, void *Data)
430  * \brief Call an IO Control on a virtual terminal
431  */
432 int VT_Terminal_IOCtl(tVFS_Node *Node, int Id, void *Data)
433 {
434          int    *iData = Data;
435         tVTerm  *term = Node->ImplPtr;
436         ENTER("pNode iId pData", Node, Id, Data);
437         
438         if(Id >= DRV_IOCTL_LOOKUP) {
439                 // Only root can fiddle with graphics modes
440                 // TODO: Remove this and replace with user ownership
441                 if( Threads_GetUID() != 0 )     return -1;
442         }
443         
444         switch(Id)
445         {
446         // --- Core Defined
447         case DRV_IOCTL_TYPE:
448                 LEAVE('i', DRV_TYPE_TERMINAL);
449                 return DRV_TYPE_TERMINAL;
450         case DRV_IOCTL_IDENT:
451                 memcpy(Data, "VT\0\0", 4);
452                 LEAVE('i', 0);
453                 return 0;
454         case DRV_IOCTL_VERSION:
455                 LEAVE('x', VERSION);
456                 return VERSION;
457         case DRV_IOCTL_LOOKUP:
458                 LEAVE('i', 0);
459                 return 0;
460         
461         // Get/Set the mode (and apply any changes)
462         case TERM_IOCTL_MODETYPE:
463                 if(Data != NULL)
464                 {
465                         if( CheckMem(Data, sizeof(int)) == 0 ) {
466                                 LEAVE('i', -1);
467                                 return -1;
468                         }
469                         Log_Log("VTerm", "VTerm %i mode set to %i", (int)Node->Inode, *iData);
470                         
471                         // Update mode if needed
472                         if(term->Mode != *iData)
473                                 VT_int_ChangeMode(term, *iData);
474                         
475                         // Update the screen dimensions
476                         if(Node->Inode == giVT_CurrentTerminal)
477                                 VT_SetTerminal( giVT_CurrentTerminal );
478                 }
479                 LEAVE('i', term->Mode);
480                 return term->Mode;
481         
482         // Get/set the terminal width
483         case TERM_IOCTL_WIDTH:
484                 if(Data != NULL) {
485                         if( CheckMem(Data, sizeof(int)) == 0 ) {
486                                 LEAVE('i', -1);
487                                 return -1;
488                         }
489                         term->Width = *iData;
490                 }
491                 Log("VT_Terminal_IOCtl - RETURN term->Width = %i", term->Width);
492                 LEAVE('i', term->Width);
493                 return term->Width;
494         
495         // Get/set the terminal height
496         case TERM_IOCTL_HEIGHT:
497                 if(Data != NULL) {
498                         if( CheckMem(Data, sizeof(int)) == 0 ) {
499                                 LEAVE('i', -1);
500                                 return -1;
501                         }
502                         term->Height = *iData;
503                 }
504                 Log("VT_Terminal_IOCtl - RETURN term->Height = %i", term->Height);
505                 LEAVE('i', term->Height);
506                 return term->Height;
507         
508         case TERM_IOCTL_FORCESHOW:
509                 Log_Log("VTerm", "Thread %i forced VTerm %i to be shown",
510                         Threads_GetTID(), (int)Node->Inode);
511                 VT_SetTerminal( Node->Inode );
512                 LEAVE('i', 1);
513                 return 1;
514         }
515         LEAVE('i', -1);
516         return -1;
517 }
518
519 void VT_SetResolution(int Width, int Height)
520 {
521         tVideo_IOCtl_Mode       mode = {0};
522          int    tmp;
523          int    i;
524         
525         // Create the video mode
526         mode.width = Width;
527         mode.height = Height;
528         mode.bpp = 32;
529         mode.flags = 0;
530         
531         // Set video mode
532         VFS_IOCtl( giVT_OutputDevHandle, VIDEO_IOCTL_FINDMODE, &mode );
533         tmp = mode.id;
534         if( Width != mode.width || Height != mode.height )
535         {
536                 Log_Warning("VTerm",
537                         "Selected resolution (%ix%i is not supported) by the device, using (%ix%i)",
538                         giVT_RealWidth, giVT_RealHeight,
539                         mode.width, mode.height
540                         );
541         }
542         VFS_IOCtl( giVT_OutputDevHandle, VIDEO_IOCTL_GETSETMODE, &tmp );
543         
544         // Resize text terminals if needed
545         if( giVT_RealWidth != mode.width || giVT_RealHeight != mode.height )
546         {
547                  int    newBufSize = (giVT_RealWidth/giVT_CharWidth)
548                                         *(giVT_RealHeight/giVT_CharHeight)
549                                         *(giVT_Scrollback+1);
550                 //tVT_Char      *tmp;
551                 // Resize the text terminals
552                 giVT_RealWidth = mode.width;
553                 giVT_RealHeight = mode.height;
554                 for( i = 0; i < NUM_VTS; i ++ )
555                 {
556                         if( gVT_Terminals[i].Mode != TERM_MODE_TEXT )   continue;
557                         
558                         gVT_Terminals[i].Text = realloc(
559                                 gVT_Terminals[i].Text,
560                                 newBufSize*sizeof(tVT_Char)
561                                 );
562                 }
563         }
564 }
565
566 void VT_SetMode(int Mode)
567 {
568         VFS_IOCtl( giVT_OutputDevHandle, VIDEO_IOCTL_SETBUFFORMAT, &Mode );
569 }
570
571 /**
572  * \fn void VT_SetTerminal(int ID)
573  * \brief Set the current terminal
574  */
575 void VT_SetTerminal(int ID)
576 {       
577         // Update current terminal ID
578         Log_Log("VTerm", "Changed terminal from %i to %i", giVT_CurrentTerminal, ID);
579         giVT_CurrentTerminal = ID;
580         gpVT_CurTerm = &gVT_Terminals[ID];
581         
582         // Update cursor
583         if( gpVT_CurTerm->Mode == TERM_MODE_TEXT && !(gpVT_CurTerm->Flags & VT_FLAG_HIDECSR) )
584         {
585                 tVideo_IOCtl_Pos        pos;
586                 pos.x = gpVT_CurTerm->WritePos % gpVT_CurTerm->Width;
587                 pos.y = gpVT_CurTerm->WritePos / gpVT_CurTerm->Width;
588                 VFS_IOCtl(giVT_OutputDevHandle, VIDEO_IOCTL_SETCURSOR, &pos);
589         }
590         
591         if( gpVT_CurTerm->Mode == TERM_MODE_TEXT )
592                 VT_SetMode( VIDEO_BUFFMT_TEXT );
593         else
594                 VT_SetMode( VIDEO_BUFFMT_FRAMEBUFFER );
595         
596         // Update the screen
597         VT_int_UpdateScreen( &gVT_Terminals[ ID ], 1 );
598 }
599
600 /**
601  * \fn void VT_KBCallBack(Uint32 Codepoint)
602  * \brief Called on keyboard interrupt
603  * \param Codepoint     Pseudo-UTF32 character
604  * 
605  * Handles a key press and sends the key code to the user's buffer.
606  * If the code creates a kernel-magic sequence, it is not passed to the
607  * user and is handled in-kernel.
608  */
609 void VT_KBCallBack(Uint32 Codepoint)
610 {
611         tVTerm  *term = &gVT_Terminals[giVT_CurrentTerminal];
612         
613         // How the hell did we get a Codepoint of zero?
614         if(Codepoint == 0)      return;
615         
616         // Key Up
617         if( Codepoint & 0x80000000 )
618         {
619                 Codepoint &= 0x7FFFFFFF;
620                 switch(Codepoint)
621                 {
622                 #if !USE_CTRL_ALT
623                 case KEY_RSHIFT:        gbVT_CtrlDown = 0;      break;
624                 case KEY_LSHIFT:        gbVT_AltDown = 0;       break;
625                 #else
626                 case KEY_LALT:
627                 case KEY_RALT:
628                         gbVT_AltDown = 0;
629                         break;
630                 case KEY_LCTRL:
631                 case KEY_RCTRL:
632                         gbVT_CtrlDown = 0;
633                         break;
634                 #endif
635                 }
636                 return;
637         }
638         
639         switch(Codepoint)
640         {
641         #if !USE_CTRL_ALT
642         case KEY_RSHIFT:        gbVT_CtrlDown = 1;      break;
643         case KEY_LSHIFT:        gbVT_AltDown = 1;       break;
644         #else
645         case KEY_LALT:
646         case KEY_RALT:
647                 gbVT_AltDown = 1;
648                 break;
649         case KEY_LCTRL:
650         case KEY_RCTRL:
651                 gbVT_CtrlDown = 1;
652                 break;
653         #endif
654         
655         default:
656                 #if USE_CTRL_ALT
657                 if(!gbVT_AltDown || !gbVT_CtrlDown)
658                         break;
659                 #endif
660                 switch(Codepoint)
661                 {
662                 case KEY_F1:    VT_SetTerminal(0);      return;
663                 case KEY_F2:    VT_SetTerminal(1);      return;
664                 case KEY_F3:    VT_SetTerminal(2);      return;
665                 case KEY_F4:    VT_SetTerminal(3);      return;
666                 case KEY_F5:    VT_SetTerminal(4);      return;
667                 case KEY_F6:    VT_SetTerminal(5);      return;
668                 case KEY_F7:    VT_SetTerminal(6);      return;
669                 case KEY_F8:    VT_SetTerminal(7);      return;
670                 case KEY_F9:    VT_SetTerminal(8);      return;
671                 case KEY_F10:   VT_SetTerminal(9);      return;
672                 case KEY_F11:   VT_SetTerminal(10);     return;
673                 case KEY_F12:   VT_SetTerminal(11);     return;
674                 case KEY_PGUP:
675                         if( gpVT_CurTerm->ViewPos > gpVT_CurTerm->Width )
676                                 gpVT_CurTerm->ViewPos -= gpVT_CurTerm->Width;
677                         else
678                                 gpVT_CurTerm->ViewPos = 0;
679                         return;
680                 case KEY_PGDOWN:
681                         if( gpVT_CurTerm->ViewPos < gpVT_CurTerm->Width*gpVT_CurTerm->Height*(giVT_Scrollback-1) )
682                                 gpVT_CurTerm->ViewPos += gpVT_CurTerm->Width;
683                         else
684                                 gpVT_CurTerm->ViewPos = gpVT_CurTerm->Width*gpVT_CurTerm->Height*(giVT_Scrollback-1);
685                         return;
686                 }
687         }
688         
689         // Encode key
690         if(term->Mode == TERM_MODE_TEXT)
691         {
692                 Uint8   buf[6] = {0};
693                  int    len = 0;
694                 
695                 // Ignore Modifer Keys
696                 if(Codepoint > KEY_MODIFIERS)   return;
697                 
698                 // Get UTF-8/ANSI Encoding
699                 switch(Codepoint)
700                 {
701                 case KEY_LEFT:
702                         buf[0] = '\x1B';        buf[1] = '[';   buf[2] = 'D';
703                         len = 3;
704                         break;
705                 case KEY_RIGHT:
706                         buf[0] = '\x1B';        buf[1] = '[';   buf[2] = 'C';
707                         len = 3;
708                         break;
709                 case KEY_UP:
710                         buf[0] = '\x1B';        buf[1] = '[';   buf[2] = 'A';
711                         len = 3;
712                         break;
713                 case KEY_DOWN:
714                         buf[0] = '\x1B';        buf[1] = '[';   buf[2] = 'B';
715                         len = 3;
716                         break;
717                 
718                 case KEY_PGUP:
719                         buf[0] = '\x1B';        buf[1] = '[';   buf[2] = '5';   // Some overline also
720                         //len = 4;      // Commented out until I'm sure
721                         break;
722                 case KEY_PGDOWN:
723                         len = 0;
724                         break;
725                 
726                 // Attempt to encode in UTF-8
727                 default:
728                         len = WriteUTF8( buf, Codepoint );
729                         if(len == 0) {
730                                 Warning("Codepoint (%x) is unrepresentable in UTF-8", Codepoint);
731                         }
732                         break;
733                 }
734                 
735                 if(len == 0) {
736                         // Unprintable / Don't Pass
737                         return;
738                 }
739                 
740                 // Write
741                 if( MAX_INPUT_CHARS8 - term->InputWrite >= len )
742                         memcpy( &term->InputBuffer[term->InputWrite], buf, len );
743                 else {
744                         memcpy( &term->InputBuffer[term->InputWrite], buf, MAX_INPUT_CHARS8 - term->InputWrite );
745                         memcpy( &term->InputBuffer[0], buf, len - (MAX_INPUT_CHARS8 - term->InputWrite) );
746                 }
747                 // Roll the buffer over
748                 term->InputWrite += len;
749                 term->InputWrite %= MAX_INPUT_CHARS8;
750                 if( (term->InputWrite - term->InputRead + MAX_INPUT_CHARS8)%MAX_INPUT_CHARS8 < len ) {
751                         term->InputRead = term->InputWrite + 1;
752                         term->InputRead %= MAX_INPUT_CHARS8;
753                 }
754                 
755         }
756         else
757         {
758                 // Encode the raw UTF-32 Key
759                 ((Uint32*)term->InputBuffer)[ term->InputWrite ] = Codepoint;
760                 term->InputWrite ++;
761                 term->InputWrite %= MAX_INPUT_CHARS32;
762                 if(term->InputRead == term->InputWrite) {
763                         term->InputRead ++;
764                         term->InputRead %= MAX_INPUT_CHARS32;
765                 }
766         }
767 }
768
769 /**
770  * \fn void VT_int_ClearLine(tVTerm *Term, int Num)
771  * \brief Clears a line in a virtual terminal
772  */
773 void VT_int_ClearLine(tVTerm *Term, int Num)
774 {
775          int    i;
776         //ENTER("pTerm iNum", Term, Num);
777         for( i = Term->Width; i--; )
778         {
779                 Term->Text[ Num*Term->Width + i ].Ch = 0;
780                 Term->Text[ Num*Term->Width + i ].Colour = Term->CurColour;
781         }
782         //LEAVE('-');
783 }
784
785 /**
786  * \fn int VT_int_ParseEscape(tVTerm *Term, char *Buffer)
787  * \brief Parses a VT100 Escape code
788  */
789 int VT_int_ParseEscape(tVTerm *Term, char *Buffer)
790 {
791         char    c;
792          int    argc = 0, j = 1;
793          int    tmp;
794          int    args[6] = {0,0,0,0};
795         
796         switch(Buffer[0])
797         {
798         //Large Code
799         case '[':
800                 // Get Arguments
801                 c = Buffer[j++];
802                 if( '0' <= c && c <= '9' )
803                 {
804                         do {
805                                 while('0' <= c && c <= '9') {
806                                         args[argc] *= 10;
807                                         args[argc] += c-'0';
808                                         c = Buffer[j++];
809                                 }
810                                 argc ++;
811                         } while(c == ';');
812                 }
813                 
814                 /*
815                 // Get string (what does this do?)
816                 if(c == '"') {
817                         c = Buffer[j++];
818                         while(c != '"')
819                                 c = Buffer[j++];
820                 }
821                 */
822                 
823                 //Log_Debug("VTerm", "argc = %i", argc);
824                 
825                 // Get Command
826                 if(     ('a' <= c && c <= 'z') || ('A' <= c && c <= 'Z'))
827                 {
828                         switch(c)
829                         {
830                         // Left
831                         case 'D':
832                                 if(argc == 1)   tmp = args[0];
833                                 else    tmp = 1;
834                                 
835                                 if( Term->WritePos-(tmp-1) % Term->Width == 0 )
836                                         Term->WritePos -= Term->WritePos % Term->Width;
837                                 else
838                                         Term->WritePos -= tmp;
839                                 break;
840                         
841                         // Right
842                         case 'C':
843                                 if(argc == 1)   tmp = args[0];
844                                 else    tmp = 1;
845                                 if( (Term->WritePos + tmp) % Term->Width == 0 ) {
846                                         Term->WritePos -= Term->WritePos % Term->Width;
847                                         Term->WritePos += Term->Width - 1;
848                                 } else
849                                         Term->WritePos += tmp;
850                                 break;
851                         
852                         // Clear By Line
853                         case 'J':
854                                 // Clear Screen
855                                 switch(args[0])
856                                 {
857                                 case 2:
858                                         {
859                                          int    i = Term->Height * (giVT_Scrollback + 1);
860                                         while( i-- )    VT_int_ClearLine(Term, i);
861                                         Term->WritePos = 0;
862                                         Term->ViewPos = 0;
863                                         VT_int_UpdateScreen(Term, 1);
864                                         }
865                                         break;
866                                 }
867                                 break;
868                         // Set Font flags
869                         case 'm':
870                                 for( ; argc--; )
871                                 {
872                                         // Flags
873                                         if( 0 <= args[argc] && args[argc] <= 8)
874                                         {
875                                                 switch(args[argc])
876                                                 {
877                                                 case 0: Term->CurColour = DEFAULT_COLOUR;       break;  // Reset
878                                                 case 1: Term->CurColour |= 0x80000000;  break;  // Bright
879                                                 case 2: Term->CurColour &= ~0x80000000; break;  // Dim
880                                                 }
881                                         }
882                                         // Foreground Colour
883                                         else if(30 <= args[argc] && args[argc] <= 37) {
884                                                 Term->CurColour &= 0xF000FFFF;
885                                                 Term->CurColour |= (Uint32)caVT100Colours[ args[argc]-30+(Term->CurColour>>28) ] << 16;
886                                         }
887                                         // Background Colour
888                                         else if(40 <= args[argc] && args[argc] <= 47) {
889                                                 Term->CurColour &= 0xFFFF8000;
890                                                 Term->CurColour |= caVT100Colours[ args[argc]-40+((Term->CurColour>>12)&15) ];
891                                         }
892                                 }
893                                 break;
894                         default:
895                                 Log_Warning("VTerm", "Unknown control sequence");
896                                 break;
897                         }
898                 }
899                 break;
900                 
901         default:        break;
902         }
903         
904         //Log_Debug("VTerm", "j = %i, Buffer = '%s'", j, Buffer);
905         return j;
906 }
907
908 /**
909  * \fn void VT_int_PutString(tVTerm *Term, Uint8 *Buffer, Uint Count)
910  * \brief Print a string to the Virtual Terminal
911  */
912 void VT_int_PutString(tVTerm *Term, Uint8 *Buffer, Uint Count)
913 {
914         Uint32  val;
915          int    i;
916         for( i = 0; i < Count; i++ )
917         {
918                 if( Buffer[i] == 0x1B ) // Escape Sequence
919                 {
920                         i ++;
921                         i += VT_int_ParseEscape(Term, (char*)&Buffer[i]) - 1;
922                         continue;
923                 }
924                 
925                 if( Buffer[i] < 128 )   // Plain ASCII
926                         VT_int_PutChar(Term, Buffer[i]);
927                 else {  // UTF-8
928                         i += ReadUTF8(&Buffer[i], &val);
929                         VT_int_PutChar(Term, val);
930                 }
931         }
932         // Update Screen
933         VT_int_UpdateScreen( Term, 0 );
934         
935         // Update cursor
936         if( Term == gpVT_CurTerm && !(Term->Flags & VT_FLAG_HIDECSR) )
937         {
938                 tVideo_IOCtl_Pos        pos;
939                 pos.x = Term->WritePos % Term->Width;
940                 pos.y = Term->WritePos / Term->Width;
941                 VFS_IOCtl(giVT_OutputDevHandle, VIDEO_IOCTL_SETCURSOR, &pos);
942         }
943 }
944
945 /**
946  * \fn void VT_int_PutChar(tVTerm *Term, Uint32 Ch)
947  * \brief Write a single character to a VTerm
948  */
949 void VT_int_PutChar(tVTerm *Term, Uint32 Ch)
950 {
951          int    i;
952         //ENTER("pTerm xCh", Term, Ch);
953         //LOG("Term = {WritePos:%i, ViewPos:%i}", Term->WritePos, Term->ViewPos);
954         
955         switch(Ch)
956         {
957         case '\0':      return; // Ignore NULL byte
958         case '\n':
959                 VT_int_UpdateScreen( Term, 0 ); // Update the line before newlining
960                 Term->WritePos += Term->Width;
961         case '\r':
962                 Term->WritePos -= Term->WritePos % Term->Width;
963                 break;
964         
965         case '\t':
966                 do {
967                         Term->Text[ Term->WritePos ].Ch = '\0';
968                         Term->Text[ Term->WritePos ].Colour = Term->CurColour;
969                         Term->WritePos ++;
970                 } while(Term->WritePos & 7);
971                 break;
972         
973         case '\b':
974                 // Backspace is invalid at Offset 0
975                 if(Term->WritePos == 0) break;
976                 
977                 Term->WritePos --;
978                 // Singe Character
979                 if(Term->Text[ Term->WritePos ].Ch != '\0') {
980                         Term->Text[ Term->WritePos ].Ch = 0;
981                         Term->Text[ Term->WritePos ].Colour = Term->CurColour;
982                         break;
983                 }
984                 // Tab
985                 i = 7;  // Limit it to 8
986                 do {
987                         Term->Text[ Term->WritePos ].Ch = 0;
988                         Term->Text[ Term->WritePos ].Colour = Term->CurColour;
989                         Term->WritePos --;
990                 } while(Term->WritePos && i-- && Term->Text[ Term->WritePos ].Ch == '\0');
991                 if(Term->Text[ Term->WritePos ].Ch != '\0')
992                         Term->WritePos ++;
993                 break;
994         
995         default:
996                 Term->Text[ Term->WritePos ].Ch = Ch;
997                 Term->Text[ Term->WritePos ].Colour = Term->CurColour;
998                 Term->WritePos ++;
999                 break;
1000         }
1001         
1002         // Move Screen
1003         if(Term->WritePos >= Term->Width*Term->Height*(giVT_Scrollback+1))
1004         {
1005                  int    base, i;
1006                 Term->WritePos -= Term->Width;
1007                 VT_int_UpdateScreen( Term, 0 );
1008                 
1009                 // Update view position
1010                 base = Term->Width*Term->Height*(giVT_Scrollback-1);
1011                 if(Term->ViewPos < base)        Term->ViewPos += Term->Width;
1012                 if(Term->ViewPos > base)        Term->ViewPos = base;
1013                 
1014                 // Scroll terminal cache
1015                 base = Term->Width*(Term->Height*(giVT_Scrollback+1)-1);
1016                 
1017                 // Scroll Back
1018                 memcpy(
1019                         Term->Text,
1020                         &Term->Text[Term->Width],
1021                         (Term->Width*Term->Height*(giVT_Scrollback+1)-Term->Width)*sizeof(tVT_Char)
1022                         );
1023                 
1024                 // Clear last row
1025                 for( i = 0; i < Term->Width; i ++ )
1026                 {
1027                         Term->Text[ base + i ].Ch = 0;
1028                         Term->Text[ base + i ].Colour = Term->CurColour;
1029                 }
1030                 
1031                 //LOG("Scrolled buffer");
1032                 VT_int_ScrollFramebuffer( Term );
1033                 VT_int_UpdateScreen( Term, 0 );
1034         }
1035         else if(Term->WritePos >= Term->ViewPos + Term->Width*Term->Height)
1036         {
1037                 //LOG("Scrolled screen");
1038                 Term->WritePos -= Term->Width;
1039                 VT_int_UpdateScreen( Term, 0 );
1040                 Term->WritePos += Term->Width;
1041                 
1042                 Term->ViewPos += Term->Width;
1043                 VT_int_ScrollFramebuffer( Term );
1044                 VT_int_UpdateScreen( Term, 0 );
1045         }
1046         
1047         //LEAVE('-');
1048 }
1049
1050 /**
1051  * \fn void VT_int_ScrollFramebuffer( tVTerm *Term )
1052  * \note Scrolls the framebuffer by 1 text line
1053  */
1054 void VT_int_ScrollFramebuffer( tVTerm *Term )
1055 {
1056          int    tmp;
1057         struct {
1058                 Uint8   Op;
1059                 Uint16  DstX, DstY;
1060                 Uint16  SrcX, SrcY;
1061                 Uint16  W, H;
1062         } PACKED        buf;
1063         // Only update if this is the current terminal
1064         if( Term != gpVT_CurTerm )      return;
1065         
1066         // This should only be called in text mode
1067         
1068         tmp = VIDEO_BUFFMT_2DSTREAM;
1069         VFS_IOCtl(giVT_OutputDevHandle, VIDEO_IOCTL_SETBUFFORMAT, &tmp);
1070         
1071         buf.Op = VIDEO_2DOP_BLIT;
1072         buf.DstX = 0;   buf.DstY = 0;
1073         buf.SrcX = 0;   buf.SrcY = giVT_CharHeight;
1074         buf.W = Term->Width * giVT_CharWidth;
1075         buf.H = (Term->Height-1) * giVT_CharHeight;
1076         
1077         VFS_WriteAt(giVT_OutputDevHandle, 0, 1+12, &buf);
1078         
1079         // Restore old mode
1080         tmp = VIDEO_BUFFMT_TEXT;
1081         VFS_IOCtl(giVT_OutputDevHandle, VIDEO_IOCTL_SETBUFFORMAT, &tmp);
1082 }
1083
1084 /**
1085  * \fn void VT_int_UpdateScreen( tVTerm *Term, int UpdateAll )
1086  * \brief Updates the video framebuffer
1087  */
1088 void VT_int_UpdateScreen( tVTerm *Term, int UpdateAll )
1089 {
1090         // Only update if this is the current terminal
1091         if( Term != gpVT_CurTerm )      return;
1092         
1093         switch( Term->Mode )
1094         {
1095         case TERM_MODE_TEXT:
1096                 if(UpdateAll) {
1097                         //LOG("UpdateAll = 1");
1098                         //LOG("VFS_WriteAt(0x%x, 0, %i*sizeof(tVT_Char), &Term->Text[%i])",
1099                         //      giVT_OutputDevHandle, Term->Width*Term->Height, Term->ViewPos);
1100                         VFS_WriteAt(
1101                                 giVT_OutputDevHandle,
1102                                 0,
1103                                 Term->Width*Term->Height*sizeof(tVT_Char),
1104                                 &Term->Text[Term->ViewPos]
1105                                 );
1106                 } else {
1107                          int    pos = Term->WritePos - Term->WritePos % Term->Width;
1108                         //LOG("UpdateAll = 0");
1109                         //LOG("VFS_WriteAt(0x%x, %i*sizeof(tVT_Char), %i*sizeof(tVT_Char), &Term->Text[%i])",
1110                         //      giVT_OutputDevHandle, (pos - Term->ViewPos), Term->Width, pos);
1111                         VFS_WriteAt(
1112                                 giVT_OutputDevHandle,
1113                                 (pos - Term->ViewPos)*sizeof(tVT_Char),
1114                                 Term->Width*sizeof(tVT_Char),
1115                                 &Term->Text[pos]
1116                                 );
1117                 }
1118                 break;
1119         case TERM_MODE_FB:
1120                 VFS_WriteAt(
1121                         giVT_OutputDevHandle,
1122                         0,
1123                         Term->Width*Term->Height*sizeof(Uint32),
1124                         Term->Buffer
1125                         );
1126                 break;
1127         }
1128 }
1129
1130 /**
1131  * \fn void VT_int_ChangeMode(tVTerm *Term, int NewMode)
1132  * \brief Change the mode of a VTerm
1133  */
1134 void VT_int_ChangeMode(tVTerm *Term, int NewMode)
1135 {       
1136         switch(NewMode)
1137         {
1138         case TERM_MODE_TEXT:
1139                 Log_Log("VTerm", "Set VT %p to text mode", Term);
1140                 free(Term->Buffer);
1141                 Term->Text = calloc( Term->Width*Term->Height*(giVT_Scrollback+1), sizeof(tVT_Char) );
1142                 break;
1143         case TERM_MODE_FB:
1144                 Log_Log("VTerm", "Set VT %p to framebuffer mode (%ix%i)", Term,
1145                         Term->Width, Term->Height);
1146                 free(Term->Text);
1147                 Term->Buffer = calloc( Term->Width*Term->Height, sizeof(Uint32) );
1148                 Log_Debug("VTerm", "Term->Buffer = %p", Term->Buffer);
1149                 break;
1150         //case TERM_MODE_2DACCEL:
1151         //case TERM_MODE_3DACCEL:
1152         //      return;
1153         }
1154         
1155         Term->Mode = NewMode;
1156 }
1157
1158 // ---
1159 // Font Render
1160 // ---
1161 #define MONOSPACE_FONT  10816
1162
1163 #if MONOSPACE_FONT == 10808     // 8x8
1164 # include "vterm_font_8x8.h"
1165 #elif MONOSPACE_FONT == 10816   // 8x16
1166 # include "vterm_font_8x16.h"
1167 #endif
1168
1169 // === PROTOTYPES ===
1170 Uint8   *VT_Font_GetChar(Uint32 Codepoint);
1171
1172 // === GLOBALS ===
1173 int     giVT_CharWidth = FONT_WIDTH;
1174 int     giVT_CharHeight = FONT_HEIGHT;
1175
1176 // === CODE ===
1177 /**
1178  * \fn void VT_Font_Render(Uint32 Codepoint, void *Buffer, int Pitch, Uint32 BGC, Uint32 FGC)
1179  * \brief Render a font character
1180  */
1181 void VT_Font_Render(Uint32 Codepoint, void *Buffer, int Pitch, Uint32 BGC, Uint32 FGC)
1182 {
1183         Uint8   *font;
1184         Uint32  *buf = Buffer;
1185          int    x, y;
1186         
1187         font = VT_Font_GetChar(Codepoint);
1188         
1189         for(y = 0; y < FONT_HEIGHT; y ++)
1190         {
1191                 for(x = 0; x < FONT_WIDTH; x ++)
1192                 {
1193                         if(*font & (1 << (FONT_WIDTH-x-1)))
1194                                 buf[x] = FGC;
1195                         else
1196                                 buf[x] = BGC;
1197                 }
1198                 buf += Pitch;
1199                 font ++;
1200         }
1201 }
1202
1203 /**
1204  * \fn Uint32 VT_Colour12to24(Uint16 Col12)
1205  * \brief Converts a 
1206  */
1207 Uint32 VT_Colour12to24(Uint16 Col12)
1208 {
1209         Uint32  ret;
1210          int    tmp;
1211         tmp = Col12 & 0xF;
1212         ret  = (tmp << 0) | (tmp << 4);
1213         tmp = (Col12 & 0xF0) >> 4;
1214         ret |= (tmp << 8) | (tmp << 12);
1215         tmp = (Col12 & 0xF00) >> 8;
1216         ret |= (tmp << 16) | (tmp << 20);
1217         return ret;
1218 }
1219
1220 /**
1221  * \fn Uint8 *VT_Font_GetChar(Uint32 Codepoint)
1222  * \brief Gets an index into the font array given a Unicode Codepoint
1223  * \note See http://en.wikipedia.org/wiki/CP437
1224  */
1225 Uint8 *VT_Font_GetChar(Uint32 Codepoint)
1226 {
1227          int    index = 0;
1228         if(Codepoint < 128)
1229                 return &VTermFont[Codepoint*FONT_HEIGHT];
1230         switch(Codepoint)
1231         {
1232         case 0xC7:      index = 128;    break;  // Ç
1233         case 0xFC:      index = 129;    break;  // ü
1234         case 0xE9:      index = 130;    break;  // é
1235         case 0xE2:      index = 131;    break;  // â
1236         case 0xE4:      index = 132;    break;  // ä
1237         case 0xE0:      index = 133;    break;  // à
1238         case 0xE5:      index = 134;    break;  // å
1239         case 0xE7:      index = 135;    break;  // ç
1240         case 0xEA:      index = 136;    break;  // ê
1241         case 0xEB:      index = 137;    break;  // ë
1242         case 0xE8:      index = 138;    break;  // è
1243         case 0xEF:      index = 139;    break;  // ï
1244         case 0xEE:      index = 140;    break;  // î
1245         case 0xEC:      index = 141;    break;  // ì
1246         case 0xC4:      index = 142;    break;  // Ä
1247         case 0xC5:      index = 143;    break;  // Å
1248         }
1249         
1250         return &VTermFont[index*FONT_HEIGHT];
1251 }
1252
1253 EXPORTAS(&giVT_CharWidth, giVT_CharWidth);
1254 EXPORTAS(&giVT_CharHeight, giVT_CharHeight);
1255 EXPORT(VT_Font_Render);
1256 EXPORT(VT_Colour12to24);

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