Kernel - Cleaned up a little (re-enabled cursor too)
[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 <api_drv_video.h>
9 #include <api_drv_keyboard.h>
10 #include <api_drv_terminal.h>
11 #include <errno.h>
12 #include <semaphore.h>
13
14 // === CONSTANTS ===
15 #define VERSION ((0<<8)|(50))
16
17 #define NUM_VTS 8
18 #define MAX_INPUT_CHARS32       64
19 #define MAX_INPUT_CHARS8        (MAX_INPUT_CHARS32*4)
20 //#define DEFAULT_OUTPUT        "BochsGA"
21 #define DEFAULT_OUTPUT  "Vesa"
22 #define FALLBACK_OUTPUT "x86_VGAText"
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 DEFAULT_SCROLLBACK    0
28 #define DEFAULT_COLOUR  (VT_COL_BLACK|(0xAAA<<16))
29
30 #define VT_FLAG_HIDECSR 0x01
31 #define VT_FLAG_ALTBUF  0x02    //!< Alternate screen buffer
32 #define VT_FLAG_RAWIN   0x04    //!< Don't handle ^Z/^C/^V
33 #define VT_FLAG_HASFB   0x10    //!< Set if the VTerm has requested the Framebuffer
34 #define VT_FLAG_SHOWCSR 0x20    //!< Always show the text cursor
35
36 enum eVT_InModes {
37         VT_INMODE_TEXT8,        // UTF-8 Text Mode (VT100/xterm Emulation)
38         VT_INMODE_TEXT32,       // UTF-32 Text Mode (Acess Native)
39         NUM_VT_INMODES
40 };
41
42 // === TYPES ===
43 typedef struct {
44          int    Mode;   //!< Current Mode (see ::eTplTerminal_Modes)
45          int    Flags;  //!< Flags (see VT_FLAG_*)
46         
47         short   NewWidth;       //!< Un-applied dimensions (Width)
48         short   NewHeight;      //!< Un-applied dimensions (Height)
49         short   Width;  //!< Virtual Width
50         short   Height; //!< Virtual Height
51         short   TextWidth;      //!< Text Virtual Width
52         short   TextHeight;     //!< Text Virtual Height
53         
54         Uint32  CurColour;      //!< Current Text Colour
55         
56          int    ViewPos;        //!< View Buffer Offset (Text Only)
57          int    WritePos;       //!< Write Buffer Offset (Text Only)
58         tVT_Char        *Text;
59         
60         tVT_Char        *AltBuf;        //!< Alternate Screen Buffer
61          int    AltWritePos;    //!< Alternate write position
62         short   ScrollTop;      //!< Top of scrolling region (smallest)
63         short   ScrollHeight;   //!< Length of scrolling region
64
65          int    VideoCursorX;
66          int    VideoCursorY;
67         
68         tMutex  ReadingLock;    //!< Lock the VTerm when a process is reading from it
69         tTID    ReadingThread;  //!< Owner of the lock
70          int    InputRead;      //!< Input buffer read position
71          int    InputWrite;     //!< Input buffer write position
72         char    InputBuffer[MAX_INPUT_CHARS8];
73 //      tSemaphore      InputSemaphore;
74         
75         Uint32          *Buffer;
76
77         // TODO: Do I need to keep this about?
78         // When should it be deallocated? on move to text mode, or some other time
79         // Call set again, it's freed, and if NULL it doesn't get reallocated.
80         tVideo_IOCtl_Bitmap     *VideoCursor;
81         
82         char    Name[2];        //!< Name of the terminal
83         tVFS_Node       Node;
84 } tVTerm;
85
86 // === IMPORTS ===
87 extern void     Debug_SetKTerminal(const char *File);
88
89 // === PROTOTYPES ===
90  int    VT_Install(char **Arguments);
91 void    VT_InitOutput(void);
92 void    VT_InitInput(void);
93 char    *VT_ReadDir(tVFS_Node *Node, int Pos);
94 tVFS_Node       *VT_FindDir(tVFS_Node *Node, const char *Name);
95  int    VT_Root_IOCtl(tVFS_Node *Node, int Id, void *Data);
96 Uint64  VT_Read(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer);
97 Uint64  VT_Write(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer);
98  int    VT_Terminal_IOCtl(tVFS_Node *Node, int Id, void *Data);
99 void    VT_SetResolution(int Width, int Height);
100 void    VT_SetMode(int Mode);
101 void    VT_SetTerminal(int ID);
102 void    VT_KBCallBack(Uint32 Codepoint);
103 void    VT_int_PutString(tVTerm *Term, Uint8 *Buffer, Uint Count);
104 void    VT_int_ClearLine(tVTerm *Term, int Num);
105 void    VT_int_ParseEscape_StandardLarge(tVTerm *Term, char CmdChar, int argc, int *args);
106  int    VT_int_ParseEscape(tVTerm *Term, char *Buffer);
107 void    VT_int_PutChar(tVTerm *Term, Uint32 Ch);
108 void    VT_int_ScrollText(tVTerm *Term, int Count);
109 void    VT_int_ScrollFramebuffer( tVTerm *Term, int Count );
110 void    VT_int_UpdateCursor( tVTerm *Term, int bShow );
111 void    VT_int_UpdateScreen( tVTerm *Term, int UpdateAll );
112 void    VT_int_ChangeMode(tVTerm *Term, int NewMode, int NewWidth, int NewHeight);
113 void    VT_int_ToggleAltBuffer(tVTerm *Term, int Enabled);
114
115 // === CONSTANTS ===
116 const Uint16    caVT100Colours[] = {
117                 // Black, Red, Green, Yellow, Blue, Purple, Cyan, Gray
118                 // Same again, but bright
119                 VT_COL_BLACK, 0x700, 0x070, 0x770, 0x007, 0x707, 0x077, 0xAAA,
120                 VT_COL_GREY, 0xF00, 0x0F0, 0xFF0, 0x00F, 0xF0F, 0x0FF, VT_COL_WHITE
121         };
122
123 // === GLOBALS ===
124 MODULE_DEFINE(0, VERSION, VTerm, VT_Install, NULL, DEFAULT_INPUT, NULL);
125 tDevFS_Driver   gVT_DrvInfo = {
126         NULL, "VTerm",
127         {
128         .Flags = VFS_FFLAG_DIRECTORY,
129         .Size = NUM_VTS,
130         .Inode = -1,
131         .NumACLs = 0,
132         .ReadDir = VT_ReadDir,
133         .FindDir = VT_FindDir,
134         .IOCtl = VT_Root_IOCtl
135         }
136 };
137 // --- Terminals ---
138 tVTerm  gVT_Terminals[NUM_VTS];
139  int    giVT_CurrentTerminal = 0;
140 tVTerm  *gpVT_CurTerm = &gVT_Terminals[0];
141 // --- Video State ---
142 short   giVT_RealWidth  = DEFAULT_WIDTH;        //!< Screen Width
143 short   giVT_RealHeight = DEFAULT_HEIGHT;       //!< Screen Height
144  int    giVT_Scrollback = DEFAULT_SCROLLBACK;
145 // --- Driver Handles ---
146 char    *gsVT_OutputDevice = NULL;
147 char    *gsVT_InputDevice = NULL;
148  int    giVT_OutputDevHandle = -2;
149  int    giVT_InputDevHandle = -2;
150 // --- Key States --- (Used for VT Switching/Magic Combos)
151  int    gbVT_CtrlDown = 0;
152  int    gbVT_AltDown = 0;
153  int    gbVT_SysrqDown = 0;
154
155 // === CODE ===
156 /**
157  * \fn int VT_Install(char **Arguments)
158  * \brief Installs the Virtual Terminal Driver
159  */
160 int VT_Install(char **Arguments)
161 {
162          int    i;
163         
164         // Scan Arguments
165         if(Arguments)
166         {
167                 char    **args;
168                 const char      *arg;
169                 for(args = Arguments; (arg = *args); args++ )
170                 {
171                         char    data[strlen(arg)+1];
172                         char    *opt = data;
173                         char    *val;
174                         
175                         val = strchr(arg, '=');
176                         strcpy(data, arg);
177                         if( val ) {
178                                 data[ val - arg ] = '\0';
179                                 val ++;
180                         }
181                         Log_Debug("VTerm", "Argument '%s'", arg);
182                         
183                         if( strcmp(opt, "Video") == 0 ) {
184                                 if( !gsVT_OutputDevice )
185                                         gsVT_OutputDevice = strdup(val);
186                         }
187                         else if( strcmp(opt, "Input") == 0 ) {
188                                 if( !gsVT_InputDevice )
189                                         gsVT_InputDevice = strdup(val);
190                         }
191                         else if( strcmp(opt, "Width") == 0 ) {
192                                 giVT_RealWidth = atoi( val );
193                         }
194                         else if( strcmp(opt, "Height") == 0 ) {
195                                 giVT_RealHeight = atoi( val );
196                         }
197                         else if( strcmp(opt, "Scrollback") == 0 ) {
198                                 giVT_Scrollback = atoi( val );
199                         }
200                 }
201         }
202         
203         // Apply Defaults
204         if(!gsVT_OutputDevice)  gsVT_OutputDevice = (char*)DEFAULT_OUTPUT;
205         else if( Module_EnsureLoaded( gsVT_OutputDevice ) )     gsVT_OutputDevice = (char*)DEFAULT_OUTPUT;
206         if( Module_EnsureLoaded( gsVT_OutputDevice ) )  gsVT_OutputDevice = (char*)FALLBACK_OUTPUT;
207         if( Module_EnsureLoaded( gsVT_OutputDevice ) ) {
208                 Log_Error("VTerm", "Fallback video '%s' is not avaliable, giving up", FALLBACK_OUTPUT);
209                 return MODULE_ERR_MISC;
210         }
211         
212         if(!gsVT_InputDevice)   gsVT_InputDevice = (char*)DEFAULT_INPUT;
213         else if( Module_EnsureLoaded( gsVT_InputDevice ) )      gsVT_InputDevice = (char*)DEFAULT_INPUT;
214         
215         // Create device paths
216         {
217                 char    *tmp;
218                 tmp = malloc( 9 + strlen(gsVT_OutputDevice) + 1 );
219                 strcpy(tmp, "/Devices/");
220                 strcpy(&tmp[9], gsVT_OutputDevice);
221                 gsVT_OutputDevice = tmp;
222
223                 tmp = malloc( 9 + strlen(gsVT_InputDevice) + 1 );
224                 strcpy(tmp, "/Devices/");
225                 strcpy(&tmp[9], gsVT_InputDevice);
226                 gsVT_InputDevice = tmp;
227         }
228         
229         Log_Log("VTerm", "Using '%s' as output", gsVT_OutputDevice);
230         Log_Log("VTerm", "Using '%s' as input", gsVT_InputDevice);
231         
232         VT_InitOutput();
233         VT_InitInput();
234         
235         // Create Nodes
236         for( i = 0; i < NUM_VTS; i++ )
237         {
238                 gVT_Terminals[i].Mode = TERM_MODE_TEXT;
239                 gVT_Terminals[i].Flags = 0;
240 //              gVT_Terminals[i].Flags = VT_FLAG_HIDECSR;       //HACK - Stop all those memcpy calls
241                 gVT_Terminals[i].CurColour = DEFAULT_COLOUR;
242                 gVT_Terminals[i].WritePos = 0;
243                 gVT_Terminals[i].AltWritePos = 0;
244                 gVT_Terminals[i].ViewPos = 0;
245                 gVT_Terminals[i].ReadingThread = -1;
246                 gVT_Terminals[i].ScrollHeight = 0;
247                 
248                 // Initialise
249                 VT_int_ChangeMode( &gVT_Terminals[i],
250                         TERM_MODE_TEXT, giVT_RealWidth, giVT_RealHeight );
251                 
252                 gVT_Terminals[i].Name[0] = '0'+i;
253                 gVT_Terminals[i].Name[1] = '\0';
254                 gVT_Terminals[i].Node.Inode = i;
255                 gVT_Terminals[i].Node.ImplPtr = &gVT_Terminals[i];
256                 gVT_Terminals[i].Node.NumACLs = 0;      // Only root can open virtual terminals
257                 
258                 gVT_Terminals[i].Node.Read = VT_Read;
259                 gVT_Terminals[i].Node.Write = VT_Write;
260                 gVT_Terminals[i].Node.IOCtl = VT_Terminal_IOCtl;
261 //              Semaphore_Init(&gVT_Terminals[i].InputSemaphore, 0, MAX_INPUT_CHARS8, "VTerm", gVT_Terminals[i].Name);
262         }
263         
264         // Add to DevFS
265         DevFS_AddDevice( &gVT_DrvInfo );
266         
267         // Set kernel output to VT0
268         Debug_SetKTerminal("/Devices/VTerm/0");
269         
270         return MODULE_ERR_OK;
271 }
272
273 /**
274  * \fn void VT_InitOutput()
275  * \brief Initialise Video Output
276  */
277 void VT_InitOutput()
278 {
279         giVT_OutputDevHandle = VFS_Open(gsVT_OutputDevice, VFS_OPENFLAG_WRITE);
280         if(giVT_OutputDevHandle == -1) {
281                 Log_Warning("VTerm", "Oh F**k, I can't open the video device '%s'", gsVT_OutputDevice);
282                 return ;
283         }
284         VT_SetResolution( giVT_RealWidth, giVT_RealHeight );
285         VT_SetTerminal( 0 );
286         VT_SetMode( VIDEO_BUFFMT_TEXT );
287 }
288
289 /**
290  * \fn void VT_InitInput()
291  * \brief Initialises the input
292  */
293 void VT_InitInput()
294 {
295         giVT_InputDevHandle = VFS_Open(gsVT_InputDevice, VFS_OPENFLAG_READ);
296         if(giVT_InputDevHandle == -1) {
297                 Log_Warning("VTerm", "Can't open the input device '%s'", gsVT_InputDevice);
298                 return ;
299         }
300         VFS_IOCtl(giVT_InputDevHandle, KB_IOCTL_SETCALLBACK, VT_KBCallBack);
301 }
302
303 /**
304  * \brief Set the video resolution
305  * \param Width New screen width
306  * \param Height        New screen height
307  */
308 void VT_SetResolution(int Width, int Height)
309 {
310         tVideo_IOCtl_Mode       mode = {0};
311          int    tmp;
312          int    i;
313         
314         // Create the video mode
315         mode.width = Width;
316         mode.height = Height;
317         mode.bpp = 32;
318         mode.flags = 0;
319         
320         // Set video mode
321         VFS_IOCtl( giVT_OutputDevHandle, VIDEO_IOCTL_FINDMODE, &mode );
322         tmp = mode.id;
323         if( Width != mode.width || Height != mode.height )
324         {
325                 Log_Warning("VTerm",
326                         "Selected resolution (%ix%i is not supported) by the device, using (%ix%i)",
327                         giVT_RealWidth, giVT_RealHeight,
328                         mode.width, mode.height
329                         );
330                 giVT_RealWidth = mode.width;
331                 giVT_RealHeight = mode.height;
332         }
333         VFS_IOCtl( giVT_OutputDevHandle, VIDEO_IOCTL_GETSETMODE, &tmp );
334         
335         // Resize text terminals if needed
336         if( gVT_Terminals[0].Text && (giVT_RealWidth != mode.width || giVT_RealHeight != mode.height) )
337         {
338                  int    newBufSize = (giVT_RealWidth/giVT_CharWidth)
339                                         *(giVT_RealHeight/giVT_CharHeight)
340                                         *(giVT_Scrollback+1);
341                 //tVT_Char      *tmp;
342                 // Resize the text terminals
343                 Log_Debug("VTerm", "Resizing terminals to %ix%i",
344                         giVT_RealWidth/giVT_CharWidth, giVT_RealHeight/giVT_CharHeight);
345                 for( i = 0; i < NUM_VTS; i ++ )
346                 {
347                         if( gVT_Terminals[i].Mode != TERM_MODE_TEXT )   continue;
348                         
349                         gVT_Terminals[i].TextWidth = giVT_RealWidth/giVT_CharWidth;
350                         gVT_Terminals[i].TextHeight = giVT_RealHeight/giVT_CharHeight;
351                         gVT_Terminals[i].ScrollHeight = gVT_Terminals[i].TextHeight;
352                         
353                         gVT_Terminals[i].Text = realloc(
354                                 gVT_Terminals[i].Text,
355                                 newBufSize*sizeof(tVT_Char)
356                                 );
357                 }
358         }
359 }
360
361 /**
362  * \brief Set video output buffer mode
363  */
364 void VT_SetMode(int Mode)
365 {
366         VFS_IOCtl( giVT_OutputDevHandle, VIDEO_IOCTL_SETBUFFORMAT, &Mode );
367 }
368
369 /**
370  * \fn char *VT_ReadDir(tVFS_Node *Node, int Pos)
371  * \brief Read from the VTerm Directory
372  */
373 char *VT_ReadDir(tVFS_Node *Node, int Pos)
374 {
375         if(Pos < 0)     return NULL;
376         if(Pos >= NUM_VTS)      return NULL;
377         return strdup( gVT_Terminals[Pos].Name );
378 }
379
380 /**
381  * \fn tVFS_Node *VT_FindDir(tVFS_Node *Node, const char *Name)
382  * \brief Find an item in the VTerm directory
383  * \param Node  Root node
384  * \param Name  Name (number) of the terminal
385  */
386 tVFS_Node *VT_FindDir(tVFS_Node *Node, const char *Name)
387 {
388          int    num;
389         
390         ENTER("pNode sName", Node, Name);
391         
392         // Open the input and output files if needed
393         if(giVT_OutputDevHandle == -2)  VT_InitOutput();
394         if(giVT_InputDevHandle == -2)   VT_InitInput();
395         
396         // Sanity check name
397         if(Name[0] < '0' || Name[0] > '9' || Name[1] != '\0') {
398                 LEAVE('n');
399                 return NULL;
400         }
401         // Get index
402         num = Name[0] - '0';
403         if(num >= NUM_VTS) {
404                 LEAVE('n');
405                 return NULL;
406         }
407         // Return node
408         LEAVE('p', &gVT_Terminals[num].Node);
409         return &gVT_Terminals[num].Node;
410 }
411
412 /**
413  * \fn int VT_Root_IOCtl(tVFS_Node *Node, int Id, void *Data)
414  * \brief Control the VTerm Driver
415  */
416 int VT_Root_IOCtl(tVFS_Node *Node, int Id, void *Data)
417 {
418          int    len;
419         switch(Id)
420         {
421         case DRV_IOCTL_TYPE:    return DRV_TYPE_MISC;
422         case DRV_IOCTL_IDENT:   memcpy(Data, "VT\0\0", 4);      return 0;
423         case DRV_IOCTL_VERSION: return VERSION;
424         case DRV_IOCTL_LOOKUP:  return 0;
425         
426         case 4: // Get Video Driver
427                 if(Data)        strcpy(Data, gsVT_OutputDevice);
428                 return strlen(gsVT_OutputDevice);
429         
430         case 5: // Set Video Driver
431                 if(!Data)       return -EINVAL;
432                 if(Threads_GetUID() != 0)       return -EACCES;
433                 
434                 len = strlen(Data);
435                 
436                 // TODO: Check if the string used is a heap string
437                 
438                 free(gsVT_OutputDevice);
439                 
440                 gsVT_OutputDevice = malloc(len+1);
441                 strcpy(gsVT_OutputDevice, Data);
442                 
443                 VFS_Close(giVT_OutputDevHandle);
444                 giVT_OutputDevHandle = -1;
445                 
446                 VT_InitOutput();
447                 return 1;
448         }
449         return 0;
450 }
451
452 /**
453  * \brief Read from a virtual terminal
454  */
455 Uint64 VT_Read(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer)
456 {
457          int    pos = 0;
458          int    avail;
459         tVTerm  *term = &gVT_Terminals[ Node->Inode ];
460         Uint32  *codepoint_buf = Buffer;
461         Uint32  *codepoint_in;
462         
463         Mutex_Acquire( &term->ReadingLock );
464         
465         // Check current mode
466         switch(term->Mode)
467         {
468         // Text Mode (UTF-8)
469         case TERM_MODE_TEXT:
470                 VT_int_UpdateCursor(term, 1);
471         
472                 VFS_SelectNode(Node, VFS_SELECT_READ, NULL, "VT_Read (UTF-8)");
473                 
474                 avail = term->InputWrite - term->InputRead;
475                 if(avail < 0)
476                         avail += MAX_INPUT_CHARS8;
477                 if(avail > Length - pos)
478                         avail = Length - pos;
479                 
480                 while( avail -- )
481                 {
482                         ((char*)Buffer)[pos] = term->InputBuffer[term->InputRead];
483                         pos ++;
484                         term->InputRead ++;
485                         while(term->InputRead > MAX_INPUT_CHARS8)
486                                 term->InputRead -= MAX_INPUT_CHARS8;
487                 }
488                 break;
489         
490         //case TERM_MODE_FB:
491         // Other - UCS-4
492         default:
493                 VFS_SelectNode(Node, VFS_SELECT_READ, NULL, "VT_Read (UCS-4)");
494                 
495                 avail = term->InputWrite - term->InputRead;
496                 if(avail < 0)
497                         avail += MAX_INPUT_CHARS32;
498                 if(avail > Length - pos)
499                         avail = Length/4 - pos;
500                 
501                 codepoint_in = (void*)term->InputBuffer;
502                 codepoint_buf = Buffer;
503                 
504                 while( avail -- )
505                 {
506                         codepoint_buf[pos] = codepoint_in[term->InputRead];
507                         pos ++;
508                         term->InputRead ++;
509                         while(term->InputRead > MAX_INPUT_CHARS32)
510                                 term->InputRead -= MAX_INPUT_CHARS32;
511                 }
512                 pos *= 4;
513                 break;
514         }
515         
516         // Mark none avaliable if buffer empty
517         if( term->InputRead == term->InputWrite )
518                 VFS_MarkAvaliable(&term->Node, 0);
519         
520         term->ReadingThread = -1;
521
522 //      VT_int_UpdateCursor(term, term->Mode == TERM_MODE_TEXT);
523
524         Mutex_Release( &term->ReadingLock );
525         
526         return pos;
527 }
528
529 /**
530  * \fn Uint64 VT_Write(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer)
531  * \brief Write to a virtual terminal
532  */
533 Uint64 VT_Write(tVFS_Node *Node, Uint64 Offset, Uint64 Length, void *Buffer)
534 {
535         tVTerm  *term = &gVT_Terminals[ Node->Inode ];
536          int    size;
537         
538         // Write
539         switch( term->Mode )
540         {
541         // Print Text
542         case TERM_MODE_TEXT:
543                 VT_int_PutString(term, Buffer, Length);
544                 break;
545         
546         // Framebuffer :)
547         case TERM_MODE_FB:
548                 // - Sanity Checking
549                 size = term->Width*term->Height*4;
550                 if( Offset > size ) {
551                         Log_Notice("VTerm", "VT_Write: Offset (0x%llx) > FBSize (0x%x)",
552                                 Offset, size);
553                         return 0;
554                 }
555                 if( Offset + Length > size ) {
556                         Log_Notice("VTerm", "VT_Write: Offset+Length (0x%llx) > FBSize (0x%x)",
557                                 Offset+Length, size);
558                         Length = size - Offset;
559                 }
560                 
561                 // Update screen if needed
562                 if( Node->Inode == giVT_CurrentTerminal )
563                 {
564                         if( giVT_RealHeight > term->Height )
565                                 Offset += (giVT_RealHeight - term->Height) / 2 * term->Width * 4;
566                         // Handle undersized virtual terminals
567                         if( giVT_RealWidth > term->Width )
568                         {
569                                 // No? :( Well, just center it
570                                  int    x, y, w, h;
571                                 Uint    dst_ofs;
572                                 // TODO: Fix to handle the final line correctly?
573                                 x = Offset/4;   y = x / term->Width;    x %= term->Width;
574                                 w = Length/4+x; h = w / term->Width;    w %= term->Width;
575                                 
576                                 // Center
577                                 x += (giVT_RealWidth - term->Width) / 2;
578                                 dst_ofs = (x + y * giVT_RealWidth) * 4;
579                                 while(h--)
580                                 {
581                                         VFS_WriteAt( giVT_OutputDevHandle,
582                                                 dst_ofs,
583                                                 term->Width * 4,
584                                                 Buffer
585                                                 );
586                                         Buffer = (void*)( (Uint)Buffer + term->Width*4 );
587                                         dst_ofs += giVT_RealWidth * 4;
588                                 }
589                                 return 0;
590                         }
591                         else
592                         {
593                                 return VFS_WriteAt( giVT_OutputDevHandle, Offset, Length, Buffer );
594                         }
595                 }
596                 else
597                 {
598                         if( !term->Buffer )
599                                 term->Buffer = malloc( term->Width * term->Height * 4 );
600                         // Copy to the local cache
601                         memcpy( (char*)term->Buffer + (Uint)Offset, Buffer, Length );
602                 }
603                 break;
604         // Just pass on (for now)
605         // TODO: Handle locally too to ensure no information is lost on
606         //       VT Switch (and to isolate terminals from each other)
607         case TERM_MODE_2DACCEL:
608         //case TERM_MODE_3DACCEL:
609                 if( Node->Inode == giVT_CurrentTerminal )
610                 {
611                         VFS_Write( giVT_OutputDevHandle, Length, Buffer );
612                 }
613                 break;
614         }
615         
616         return 0;
617 }
618
619 /**
620  * \fn int VT_Terminal_IOCtl(tVFS_Node *Node, int Id, void *Data)
621  * \brief Call an IO Control on a virtual terminal
622  */
623 int VT_Terminal_IOCtl(tVFS_Node *Node, int Id, void *Data)
624 {
625          int    *iData = Data;
626          int    ret;
627         tVTerm  *term = Node->ImplPtr;
628         ENTER("pNode iId pData", Node, Id, Data);
629         
630         if(Id >= DRV_IOCTL_LOOKUP) {
631                 // Only root can fiddle with graphics modes
632                 // TODO: Remove this and replace with user ownership
633                 if( Threads_GetUID() != 0 )     return -1;
634         }
635         
636         switch(Id)
637         {
638         // --- Core Defined
639         case DRV_IOCTL_TYPE:
640                 LEAVE('i', DRV_TYPE_TERMINAL);
641                 return DRV_TYPE_TERMINAL;
642         case DRV_IOCTL_IDENT:
643                 memcpy(Data, "VT\0\0", 4);
644                 LEAVE('i', 0);
645                 return 0;
646         case DRV_IOCTL_VERSION:
647                 LEAVE('x', VERSION);
648                 return VERSION;
649         case DRV_IOCTL_LOOKUP:
650                 LEAVE('i', 0);
651                 return 0;
652         
653         // Get/Set the mode (and apply any changes)
654         case TERM_IOCTL_MODETYPE:
655                 if(Data != NULL)
656                 {
657                         if( CheckMem(Data, sizeof(int)) == 0 ) {
658                                 LEAVE('i', -1);
659                                 return -1;
660                         }
661                         Log_Log("VTerm", "VTerm %i mode set to %i", (int)Node->Inode, *iData);
662                         
663                         // Update mode if needed
664                         if( term->Mode != *iData || term->NewWidth || term->NewHeight)
665                         {
666                                 // Adjust for text mode
667                                 if( *iData == TERM_MODE_TEXT ) {
668                                         term->NewHeight *= giVT_CharHeight;
669                                         term->NewWidth *= giVT_CharWidth;
670                                 }
671                                 // Fill unchanged dimensions
672                                 if(term->NewHeight == 0)        term->NewHeight = term->Height;
673                                 if(term->NewWidth == 0) term->NewWidth = term->Width;
674                                 // Set new mode
675                                 VT_int_ChangeMode(term, *iData, term->NewWidth, term->NewHeight);
676                                 // Clear unapplied dimensions
677                                 term->NewWidth = 0;
678                                 term->NewHeight = 0;
679                         }
680                         
681                         // Update the screen dimensions
682                         if(Node->Inode == giVT_CurrentTerminal)
683                                 VT_SetTerminal( giVT_CurrentTerminal );
684                 }
685                 LEAVE('i', term->Mode);
686                 return term->Mode;
687         
688         // Get/set the terminal width
689         case TERM_IOCTL_WIDTH:
690                 if(Data != NULL) {
691                         if( CheckMem(Data, sizeof(int)) == 0 ) {
692                                 LEAVE('i', -1);
693                                 return -1;
694                         }
695                         term->NewWidth = *iData;
696                 }
697                 if( term->NewWidth )
698                         ret = term->NewWidth;
699                 else if( term->Mode == TERM_MODE_TEXT )
700                         ret = term->TextWidth;
701                 else
702                         ret = term->Width;
703                 LEAVE('i', ret);
704                 return ret;
705         
706         // Get/set the terminal height
707         case TERM_IOCTL_HEIGHT:
708                 if(Data != NULL) {
709                         if( CheckMem(Data, sizeof(int)) == 0 ) {
710                                 LEAVE('i', -1);
711                                 return -1;
712                         }
713                         term->NewHeight = *iData;
714                 }
715                 if( term->NewHeight )
716                         ret = term->NewHeight;
717                 else if( term->Mode == TERM_MODE_TEXT )
718                         ret = term->TextHeight;
719                 else
720                         ret = term->Height;
721                 LEAVE('i', ret);
722                 return ret;
723         
724         case TERM_IOCTL_FORCESHOW:
725                 Log_Log("VTerm", "Thread %i forced VTerm %i to be shown",
726                         Threads_GetTID(), (int)Node->Inode);
727                 VT_SetTerminal( Node->Inode );
728                 LEAVE('i', 1);
729                 return 1;
730         
731         case TERM_IOCTL_GETSETCURSOR:
732                 if(Data != NULL)
733                 {
734                         tVideo_IOCtl_Pos        *pos = Data;
735                         if( !CheckMem(Data, sizeof(*pos)) ) {
736                                 errno = -EINVAL;
737                                 LEAVE('i', -1);
738                                 return -1;
739                         }
740                 
741                         if( term->Mode == TERM_MODE_TEXT )
742                         {
743                                 if(term->Flags & VT_FLAG_ALTBUF)
744                                         term->AltWritePos = pos->x + pos->y * term->TextWidth;
745                                 else
746                                         term->WritePos = pos->x + pos->y * term->TextWidth + term->ViewPos;
747                                 VT_int_UpdateCursor(term, 0);
748                         }
749                         else
750                         {
751                                 term->VideoCursorX = pos->x;
752                                 term->VideoCursorY = pos->y;
753                                 VT_int_UpdateCursor(term, 1);
754                         }
755                 }
756                 ret = (term->Flags & VT_FLAG_ALTBUF) ? term->AltWritePos : term->WritePos-term->ViewPos;
757                 LEAVE('i', ret);
758                 return ret;
759
760         case TERM_IOCTL_SETCURSORBITMAP: {
761                 tVideo_IOCtl_Bitmap     *bmp = Data;
762                 if( Data == NULL )
763                 {
764                         free( term->VideoCursor );
765                         term->VideoCursor = NULL;
766                         LEAVE('i', 0);
767                         return 0;
768                 }
769
770                 // Sanity check bitmap
771                 if( !CheckMem(bmp, sizeof(tVideo_IOCtl_Bitmap)) ) {
772                         Log_Notice("VTerm", "%p in TERM_IOCTL_SETCURSORBITMAP invalid", bmp);
773                         errno = -EINVAL;
774                         LEAVE_RET('i', -1);
775                 }
776                 if( !CheckMem(bmp->Data, bmp->W*bmp->H*sizeof(Uint32)) ) {
777                         Log_Notice("VTerm", "%p in TERM_IOCTL_SETCURSORBITMAP invalid", bmp);
778                         errno = -EINVAL;
779                         LEAVE_RET('i', -1);
780                 }
781
782                 // Reallocate if needed
783                 if(term->VideoCursor)
784                 {
785                         if(bmp->W * bmp->H != term->VideoCursor->W * term->VideoCursor->H) {
786                                 free(term->VideoCursor);
787                                 term->VideoCursor = NULL;
788                         }
789                 }
790                 if(!term->VideoCursor) {
791                         term->VideoCursor = malloc(sizeof(tVideo_IOCtl_Pos) + bmp->W*bmp->H*sizeof(Uint32));
792                         if(!term->VideoCursor) {
793                                 Log_Error("VTerm", "Unable to allocate memory for cursor");
794                                 errno = -ENOMEM;
795                                 LEAVE_RET('i', -1);
796                         }
797                 }
798                 
799                 memcpy(term->VideoCursor, bmp, sizeof(tVideo_IOCtl_Pos) + bmp->W*bmp->H*sizeof(Uint32));
800         
801                 Log_Debug("VTerm", "Set VT%i's cursor to %p %ix%i",
802                         (int)term->Node.Inode, bmp, bmp->W, bmp->H);
803
804                 if(gpVT_CurTerm == term)
805                         VFS_IOCtl(giVT_OutputDevHandle, VIDEO_IOCTL_SETCURSORBITMAP, term->VideoCursor);
806         
807                 LEAVE('i', 0);
808                 return 0; }
809         }
810         LEAVE('i', -1);
811         return -1;
812 }
813
814 /**
815  * \fn void VT_SetTerminal(int ID)
816  * \brief Set the current terminal
817  */
818 void VT_SetTerminal(int ID)
819 {
820         // Copy the screen state
821         if( ID != giVT_CurrentTerminal && gpVT_CurTerm->Mode != TERM_MODE_TEXT )
822         {
823                 if( !gpVT_CurTerm->Buffer )
824                         gpVT_CurTerm->Buffer = malloc( gpVT_CurTerm->Width*gpVT_CurTerm->Height*4 );
825                 if( gpVT_CurTerm->Width < giVT_RealWidth )
826                 {
827                          int    line;
828                         Uint    ofs = 0;
829                         Uint32  *dest = gpVT_CurTerm->Buffer;
830                         // Slower scanline copy
831                         for( line = 0; line < gpVT_CurTerm->Height; line ++ )
832                         {
833                                 VFS_ReadAt(giVT_OutputDevHandle, ofs, gpVT_CurTerm->Width*4, dest);
834                                 ofs += giVT_RealWidth * 4;
835                                 dest += gpVT_CurTerm->Width;
836                         }
837                 }
838                 else
839                 {
840                         VFS_ReadAt(giVT_OutputDevHandle,
841                                 0, gpVT_CurTerm->Height*giVT_RealWidth*4,
842                                 gpVT_CurTerm->Buffer
843                                 );
844                 }
845         }
846
847         // Update current terminal ID
848         Log_Log("VTerm", "Changed terminal from %i to %i", giVT_CurrentTerminal, ID);
849         giVT_CurrentTerminal = ID;
850         gpVT_CurTerm = &gVT_Terminals[ID];
851         
852         if( gpVT_CurTerm->Mode == TERM_MODE_TEXT )
853         {
854                 VT_SetMode( VIDEO_BUFFMT_TEXT );
855         }
856         else
857         {
858                 // Update the cursor image
859                 if(gpVT_CurTerm->VideoCursor)
860                         VFS_IOCtl(giVT_OutputDevHandle, VIDEO_IOCTL_SETCURSORBITMAP, gpVT_CurTerm->VideoCursor);
861                 VT_SetMode( VIDEO_BUFFMT_FRAMEBUFFER );
862         }
863         
864         if(gpVT_CurTerm->Buffer)
865         {
866                 // TODO: Handle non equal sized
867                 VFS_WriteAt(
868                         giVT_OutputDevHandle,
869                         0,
870                         gpVT_CurTerm->Width*gpVT_CurTerm->Height*sizeof(Uint32),
871                         gpVT_CurTerm->Buffer
872                         );
873         }
874         
875         VT_int_UpdateCursor(gpVT_CurTerm, 1);
876         // Update the screen
877 //      VT_int_UpdateScreen(gpVT_CurTerm, 1);
878 }
879
880 /**
881  * \fn void VT_KBCallBack(Uint32 Codepoint)
882  * \brief Called on keyboard interrupt
883  * \param Codepoint     Pseudo-UTF32 character
884  * 
885  * Handles a key press and sends the key code to the user's buffer.
886  * If the code creates a kernel-magic sequence, it is not passed to the
887  * user and is handled in-kernel.
888  */
889 void VT_KBCallBack(Uint32 Codepoint)
890 {
891         tVTerm  *term = gpVT_CurTerm;
892         
893         // How the hell did we get a codepoint of zero?
894         if(Codepoint == 0)      return;
895         
896         // Key Up
897         if( Codepoint & 0x80000000 )
898         {
899                 Codepoint &= 0x7FFFFFFF;
900                 switch(Codepoint)
901                 {
902                 case KEY_LALT:  gbVT_AltDown &= ~1;     break;
903                 case KEY_RALT:  gbVT_AltDown &= ~2;     break;
904                 case KEY_LCTRL: gbVT_CtrlDown &= ~1;    break;
905                 case KEY_RCTRL: gbVT_CtrlDown &= ~2;    break;
906                 }
907                 return;
908         }
909         
910         switch(Codepoint)
911         {
912         case KEY_LALT:  gbVT_AltDown |= 1;      break;
913         case KEY_RALT:  gbVT_AltDown |= 2;      break;
914         case KEY_LCTRL: gbVT_CtrlDown |= 1;     break;
915         case KEY_RCTRL: gbVT_CtrlDown |= 2;     break;
916         
917         default:
918                 if(!gbVT_AltDown || !gbVT_CtrlDown)
919                         break;
920                 switch(Codepoint)
921                 {
922                 case KEY_F1:    VT_SetTerminal(0);      return;
923                 case KEY_F2:    VT_SetTerminal(1);      return;
924                 case KEY_F3:    VT_SetTerminal(2);      return;
925                 case KEY_F4:    VT_SetTerminal(3);      return;
926                 case KEY_F5:    VT_SetTerminal(4);      return;
927                 case KEY_F6:    VT_SetTerminal(5);      return;
928                 case KEY_F7:    VT_SetTerminal(6);      return;
929                 case KEY_F8:    VT_SetTerminal(7);      return;
930                 case KEY_F9:    VT_SetTerminal(8);      return;
931                 case KEY_F10:   VT_SetTerminal(9);      return;
932                 case KEY_F11:   VT_SetTerminal(10);     return;
933                 case KEY_F12:   VT_SetTerminal(11);     return;
934                 // Scrolling
935                 case KEY_PGUP:
936                         if( gpVT_CurTerm->Flags & VT_FLAG_ALTBUF )
937                                 return ;
938                         if( gpVT_CurTerm->ViewPos > gpVT_CurTerm->Width )
939                                 gpVT_CurTerm->ViewPos -= gpVT_CurTerm->Width;
940                         else
941                                 gpVT_CurTerm->ViewPos = 0;
942                         return;
943                 case KEY_PGDOWN:
944                         if( gpVT_CurTerm->Flags & VT_FLAG_ALTBUF )
945                                 return ;
946                         if( gpVT_CurTerm->ViewPos < gpVT_CurTerm->Width*gpVT_CurTerm->Height*(giVT_Scrollback) )
947                                 gpVT_CurTerm->ViewPos += gpVT_CurTerm->Width;
948                         else
949                                 gpVT_CurTerm->ViewPos = gpVT_CurTerm->Width*gpVT_CurTerm->Height*(giVT_Scrollback);
950                         return;
951                 }
952         }
953         
954         // Encode key
955         if(term->Mode == TERM_MODE_TEXT)
956         {
957                 Uint8   buf[6] = {0};
958                  int    len = 0;
959                 
960                 // Ignore Modifer Keys
961                 if(Codepoint > KEY_MODIFIERS)   return;
962                 
963                 // Get UTF-8/ANSI Encoding
964                 switch(Codepoint)
965                 {
966                 case KEY_LEFT:
967                         buf[0] = '\x1B';        buf[1] = '[';   buf[2] = 'D';
968                         len = 3;
969                         break;
970                 case KEY_RIGHT:
971                         buf[0] = '\x1B';        buf[1] = '[';   buf[2] = 'C';
972                         len = 3;
973                         break;
974                 case KEY_UP:
975                         buf[0] = '\x1B';        buf[1] = '[';   buf[2] = 'A';
976                         len = 3;
977                         break;
978                 case KEY_DOWN:
979                         buf[0] = '\x1B';        buf[1] = '[';   buf[2] = 'B';
980                         len = 3;
981                         break;
982                 
983                 case KEY_PGUP:
984                         //buf[0] = '\x1B';      buf[1] = '[';   buf[2] = '5';   // Some overline also
985                         //len = 4;      // Commented out until I'm sure
986                         len = 0;
987                         break;
988                 case KEY_PGDOWN:
989                         len = 0;
990                         break;
991                 
992                 // Attempt to encode in UTF-8
993                 default:
994                         len = WriteUTF8( buf, Codepoint );
995                         if(len == 0) {
996                                 Warning("Codepoint (%x) is unrepresentable in UTF-8", Codepoint);
997                         }
998                         break;
999                 }
1000                 
1001                 if(len == 0) {
1002                         // Unprintable / Don't Pass
1003                         return;
1004                 }
1005
1006 #if 0
1007                 // Handle meta characters
1008                 if( !(term->Flags & VT_FLAG_RAWIN) )
1009                 {
1010                         switch(buf[0])
1011                         {
1012                         case '\3':      // ^C
1013                                 
1014                                 break;
1015                         }
1016                 }
1017 #endif
1018                 
1019                 // Write
1020                 if( MAX_INPUT_CHARS8 - term->InputWrite >= len )
1021                         memcpy( &term->InputBuffer[term->InputWrite], buf, len );
1022                 else {
1023                         memcpy( &term->InputBuffer[term->InputWrite], buf, MAX_INPUT_CHARS8 - term->InputWrite );
1024                         memcpy( &term->InputBuffer[0], buf, len - (MAX_INPUT_CHARS8 - term->InputWrite) );
1025                 }
1026                 // Roll the buffer over
1027                 term->InputWrite += len;
1028                 term->InputWrite %= MAX_INPUT_CHARS8;
1029                 if( (term->InputWrite - term->InputRead + MAX_INPUT_CHARS8)%MAX_INPUT_CHARS8 < len ) {
1030                         term->InputRead = term->InputWrite + 1;
1031                         term->InputRead %= MAX_INPUT_CHARS8;
1032                 }
1033         }
1034         else
1035         {
1036                 // Encode the raw UTF-32 Key
1037                 Uint32  *raw_in = (void*)term->InputBuffer;
1038                 raw_in[ term->InputWrite ] = Codepoint;
1039                 term->InputWrite ++;
1040                 term->InputWrite %= MAX_INPUT_CHARS32;
1041                 if(term->InputRead == term->InputWrite) {
1042                         term->InputRead ++;
1043                         term->InputRead %= MAX_INPUT_CHARS32;
1044                 }
1045         }
1046         
1047         VFS_MarkAvaliable(&term->Node, 1);
1048 }
1049
1050 /**
1051  * \brief Clears a line in a virtual terminal
1052  * \param Term  Terminal to modify
1053  * \param Num   Line number to clear
1054  */
1055 void VT_int_ClearLine(tVTerm *Term, int Num)
1056 {
1057          int    i;
1058         tVT_Char        *cell;
1059         
1060         if( Num < 0 || Num >= Term->TextHeight * (giVT_Scrollback + 1) )        return ;
1061         
1062         cell = (Term->Flags & VT_FLAG_ALTBUF) ? Term->AltBuf : Term->Text;
1063         cell = &cell[ Num*Term->TextWidth ];
1064         
1065         for( i = Term->TextWidth; i--; )
1066         {
1067                 cell[ i ].Ch = 0;
1068                 cell[ i ].Colour = Term->CurColour;
1069         }
1070 }
1071
1072 /**
1073  * \brief Handle a standard large escape code
1074  * 
1075  * Handles any escape code of the form \x1B[n,...A where n is an integer
1076  * and A is any letter.
1077  */
1078 void VT_int_ParseEscape_StandardLarge(tVTerm *Term, char CmdChar, int argc, int *args)
1079 {
1080          int    tmp = 1;
1081         switch(CmdChar)
1082         {
1083         // Left
1084         case 'D':
1085                 tmp = -1;
1086         // Right
1087         case 'C':
1088                 if(argc == 1)   tmp *= args[0];
1089                 if( Term->Flags & VT_FLAG_ALTBUF )
1090                 {
1091                         if( (Term->AltWritePos + tmp) % Term->TextWidth == 0 ) {
1092                                 Term->AltWritePos -= Term->AltWritePos % Term->TextWidth;
1093                                 Term->AltWritePos += Term->TextWidth - 1;
1094                         }
1095                         else
1096                                 Term->AltWritePos += tmp;
1097                 }
1098                 else
1099                 {
1100                         if( (Term->WritePos + tmp) % Term->TextWidth == 0 ) {
1101                                 Term->WritePos -= Term->WritePos % Term->TextWidth;
1102                                 Term->WritePos += Term->TextWidth - 1;
1103                         }
1104                         else
1105                                 Term->WritePos += tmp;
1106                 }
1107                 break;
1108         
1109         // Erase
1110         case 'J':
1111                 switch(args[0])
1112                 {
1113                 case 0: // Erase below
1114                         break;
1115                 case 1: // Erase above
1116                         break;
1117                 case 2: // Erase all
1118                         if( Term->Flags & VT_FLAG_ALTBUF )
1119                         {
1120                                  int    i = Term->TextHeight;
1121                                 while( i-- )    VT_int_ClearLine(Term, i);
1122                                 Term->AltWritePos = 0;
1123                                 VT_int_UpdateScreen(Term, 1);
1124                         }
1125                         else
1126                         {
1127                                  int    i = Term->TextHeight * (giVT_Scrollback + 1);
1128                                 while( i-- )    VT_int_ClearLine(Term, i);
1129                                 Term->WritePos = 0;
1130                                 Term->ViewPos = 0;
1131                                 VT_int_UpdateScreen(Term, 1);
1132                         }
1133                         break;
1134                 }
1135                 break;
1136         
1137         // Erase in line
1138         case 'K':
1139                 switch(args[0])
1140                 {
1141                 case 0: // Erase to right
1142                         if( Term->Flags & VT_FLAG_ALTBUF )
1143                         {
1144                                  int    i, max;
1145                                 max = Term->Width - Term->AltWritePos % Term->Width;
1146                                 for( i = 0; i < max; i ++ )
1147                                         Term->AltBuf[Term->AltWritePos+i].Ch = 0;
1148                         }
1149                         else
1150                         {
1151                                  int    i, max;
1152                                 max = Term->Width - Term->WritePos % Term->Width;
1153                                 for( i = 0; i < max; i ++ )
1154                                         Term->Text[Term->WritePos+i].Ch = 0;
1155                         }
1156                         VT_int_UpdateScreen(Term, 0);
1157                         break;
1158                 case 1: // Erase to left
1159                         if( Term->Flags & VT_FLAG_ALTBUF )
1160                         {
1161                                  int    i = Term->AltWritePos % Term->Width;
1162                                 while( i -- )
1163                                         Term->AltBuf[Term->AltWritePos++].Ch = 0;
1164                         }
1165                         else
1166                         {
1167                                  int    i = Term->WritePos % Term->Width;
1168                                 while( i -- )
1169                                         Term->Text[Term->WritePos++].Ch = 0;
1170                         }
1171                         VT_int_UpdateScreen(Term, 0);
1172                         break;
1173                 case 2: // Erase all
1174                         if( Term->Flags & VT_FLAG_ALTBUF )
1175                         {
1176                                 VT_int_ClearLine(Term, Term->AltWritePos / Term->Width);
1177                         }
1178                         else
1179                         {
1180                                 VT_int_ClearLine(Term, Term->WritePos / Term->Width);
1181                         }
1182                         VT_int_UpdateScreen(Term, 0);
1183                         break;
1184                 }
1185                 break;
1186         
1187         // Set cursor position
1188         case 'H':
1189                 if( Term->Flags & VT_FLAG_ALTBUF )
1190                         Term->AltWritePos = args[0] + args[1]*Term->TextWidth;
1191                 else
1192                         Term->WritePos = args[0] + args[1]*Term->TextWidth;
1193                 //Log_Debug("VTerm", "args = {%i, %i}", args[0], args[1]);
1194                 break;
1195         
1196         // Scroll up `n` lines
1197         case 'S':
1198                 tmp = -1;
1199         // Scroll down `n` lines
1200         case 'T':
1201                 if(argc == 1)   tmp *= args[0];
1202                 if( Term->Flags & VT_FLAG_ALTBUF )
1203                         VT_int_ScrollText(Term, tmp);
1204                 else
1205                 {
1206                         if(Term->ViewPos/Term->TextWidth + tmp < 0)
1207                                 break;
1208                         if(Term->ViewPos/Term->TextWidth + tmp  > Term->TextHeight * (giVT_Scrollback + 1))
1209                                 break;
1210                         
1211                         Term->ViewPos += Term->TextWidth*tmp;
1212                 }
1213                 break;
1214         
1215         // Set Font flags
1216         case 'm':
1217                 for( ; argc--; )
1218                 {
1219                          int    colour_idx;
1220                         // Flags
1221                         if( 0 <= args[argc] && args[argc] <= 8)
1222                         {
1223                                 switch(args[argc])
1224                                 {
1225                                 case 0: Term->CurColour = DEFAULT_COLOUR;       break;  // Reset
1226                                 case 1: Term->CurColour |= 0x80000000;  break;  // Bright
1227                                 case 2: Term->CurColour &= ~0x80000000; break;  // Dim
1228                                 }
1229                         }
1230                         // Foreground Colour
1231                         else if(30 <= args[argc] && args[argc] <= 37) {
1232                                 // Get colour index, accounting for bright bit
1233                                 colour_idx = args[argc]-30 + ((Term->CurColour>>28) & 8);
1234                                 Term->CurColour &= 0x8000FFFF;
1235                                 Term->CurColour |= (Uint32)caVT100Colours[ colour_idx ] << 16;
1236                         }
1237                         // Background Colour
1238                         else if(40 <= args[argc] && args[argc] <= 47) {
1239                                 // Get colour index, accounting for bright bit
1240                                 colour_idx = args[argc]-40 + ((Term->CurColour>>12) & 8);
1241                                 Term->CurColour &= 0xFFFF8000;
1242                                 Term->CurColour |= caVT100Colours[ colour_idx ];
1243                         }
1244                         else {
1245                                 Log_Warning("VTerm", "Unknown font flag %i", args[argc]);
1246                         }
1247                 }
1248                 break;
1249         
1250         // Set scrolling region
1251         case 'r':
1252                 if( argc != 2 ) break;
1253                 Term->ScrollTop = args[0];
1254                 Term->ScrollHeight = args[1] - args[0];
1255                 break;
1256         
1257         default:
1258                 Log_Warning("VTerm", "Unknown control sequence '\\x1B[%c'", CmdChar);
1259                 break;
1260         }
1261 }
1262
1263 /**
1264  * \fn int VT_int_ParseEscape(tVTerm *Term, char *Buffer)
1265  * \brief Parses a VT100 Escape code
1266  */
1267 int VT_int_ParseEscape(tVTerm *Term, char *Buffer)
1268 {
1269         char    c;
1270          int    argc = 0, j = 1;
1271          int    args[6] = {0,0,0,0};
1272          int    bQuestionMark = 0;
1273         
1274         switch(Buffer[0])
1275         {
1276         //Large Code
1277         case '[':
1278                 // Get Arguments
1279                 c = Buffer[j++];
1280                 if(c == '?') {
1281                         bQuestionMark = 1;
1282                         c = Buffer[j++];
1283                 }
1284                 if( '0' <= c && c <= '9' )
1285                 {
1286                         do {
1287                                 if(c == ';')    c = Buffer[j++];
1288                                 while('0' <= c && c <= '9') {
1289                                         args[argc] *= 10;
1290                                         args[argc] += c-'0';
1291                                         c = Buffer[j++];
1292                                 }
1293                                 argc ++;
1294                         } while(c == ';');
1295                 }
1296                 
1297                 // Get Command
1298                 if( ('a' <= c && c <= 'z') || ('A' <= c && c <= 'Z'))
1299                 {
1300                         if( bQuestionMark )
1301                         {
1302                                 switch(c)
1303                                 {
1304                                 // DEC Private Mode Set
1305                                 case 'h':
1306                                         if(argc != 1)   break;
1307                                         switch(args[0])
1308                                         {
1309                                         case 1047:
1310                                                 VT_int_ToggleAltBuffer(Term, 1);
1311                                                 break;
1312                                         }
1313                                         break;
1314                                 case 'l':
1315                                         if(argc != 1)   break;
1316                                         switch(args[0])
1317                                         {
1318                                         case 1047:
1319                                                 VT_int_ToggleAltBuffer(Term, 0);
1320                                                 break;
1321                                         }
1322                                         break;
1323                                 default:
1324                                         Log_Warning("VTerm", "Unknown control sequence '\\x1B[?%c'", c);
1325                                         break;
1326                                 }
1327                         }
1328                         else
1329                         {
1330                                 VT_int_ParseEscape_StandardLarge(Term, c, argc, args);
1331                         }
1332                 }
1333                 break;
1334                 
1335         default:
1336                 Log_Notice("VTerm", "TODO: Handle short escape codes");
1337                 break;
1338         }
1339         
1340         //Log_Debug("VTerm", "j = %i, Buffer = '%s'", j, Buffer);
1341         return j;
1342 }
1343
1344 /**
1345  * \fn void VT_int_PutString(tVTerm *Term, Uint8 *Buffer, Uint Count)
1346  * \brief Print a string to the Virtual Terminal
1347  */
1348 void VT_int_PutString(tVTerm *Term, Uint8 *Buffer, Uint Count)
1349 {
1350         Uint32  val;
1351          int    i;
1352         
1353         // Iterate
1354         for( i = 0; i < Count; i++ )
1355         {
1356                 // Handle escape sequences
1357                 if( Buffer[i] == 0x1B )
1358                 {
1359                         i ++;
1360                         i += VT_int_ParseEscape(Term, (char*)&Buffer[i]) - 1;
1361                         continue;
1362                 }
1363                 
1364                 // Fast check for non UTF-8
1365                 if( Buffer[i] < 128 )   // Plain ASCII
1366                         VT_int_PutChar(Term, Buffer[i]);
1367                 else {  // UTF-8
1368                         i += ReadUTF8(&Buffer[i], &val) - 1;
1369                         VT_int_PutChar(Term, val);
1370                 }
1371         }
1372         // Update Screen
1373         VT_int_UpdateScreen( Term, 0 );
1374 }
1375
1376 /**
1377  * \fn void VT_int_PutChar(tVTerm *Term, Uint32 Ch)
1378  * \brief Write a single character to a VTerm
1379  */
1380 void VT_int_PutChar(tVTerm *Term, Uint32 Ch)
1381 {
1382          int    i;
1383         tVT_Char        *buffer;
1384          int    write_pos;
1385         
1386         if(Term->Flags & VT_FLAG_ALTBUF) {
1387                 buffer = Term->AltBuf;
1388                 write_pos = Term->AltWritePos;
1389         }
1390         else {
1391                 buffer = Term->Text;
1392                 write_pos = Term->WritePos;
1393         }
1394         
1395         switch(Ch)
1396         {
1397         case '\0':      return; // Ignore NULL byte
1398         case '\n':
1399                 VT_int_UpdateScreen( Term, 0 ); // Update the line before newlining
1400                 write_pos += Term->TextWidth;
1401         case '\r':
1402                 write_pos -= write_pos % Term->TextWidth;
1403                 break;
1404         
1405         case '\t': { int tmp = write_pos / Term->TextWidth;
1406                 write_pos %= Term->TextWidth;
1407                 do {
1408                         buffer[ write_pos ].Ch = '\0';
1409                         buffer[ write_pos ].Colour = Term->CurColour;
1410                         write_pos ++;
1411                 } while(write_pos & 7);
1412                 write_pos += tmp * Term->TextWidth;
1413                 break; }
1414         
1415         case '\b':
1416                 // Backspace is invalid at Offset 0
1417                 if(write_pos == 0)      break;
1418                 
1419                 write_pos --;
1420                 // Singe Character
1421                 if(buffer[ write_pos ].Ch != '\0') {
1422                         buffer[ write_pos ].Ch = 0;
1423                         buffer[ write_pos ].Colour = Term->CurColour;
1424                         break;
1425                 }
1426                 // Tab
1427                 i = 7;  // Limit it to 8
1428                 do {
1429                         buffer[ write_pos ].Ch = 0;
1430                         buffer[ write_pos ].Colour = Term->CurColour;
1431                         write_pos --;
1432                 } while(write_pos && i-- && buffer[ write_pos ].Ch == '\0');
1433                 if(buffer[ write_pos ].Ch != '\0')
1434                         write_pos ++;
1435                 break;
1436         
1437         default:
1438                 buffer[ write_pos ].Ch = Ch;
1439                 buffer[ write_pos ].Colour = Term->CurColour;
1440                 // Update the line before wrapping
1441                 if( (write_pos + 1) % Term->TextWidth == 0 )
1442                         VT_int_UpdateScreen( Term, 0 );
1443                 write_pos ++;
1444                 break;
1445         }
1446         
1447         if(Term->Flags & VT_FLAG_ALTBUF)
1448         {
1449                 Term->AltBuf = buffer;
1450                 Term->AltWritePos = write_pos;
1451                 
1452                 if(Term->AltWritePos >= Term->TextWidth*Term->TextHeight)
1453                 {
1454                         Term->AltWritePos -= Term->TextWidth;
1455                         VT_int_ScrollText(Term, 1);
1456                 }
1457                 
1458         }
1459         else
1460         {
1461                 Term->Text = buffer;
1462                 Term->WritePos = write_pos;
1463                 // Move Screen
1464                 // - Check if we need to scroll the entire scrollback buffer
1465                 if(Term->WritePos >= Term->TextWidth*Term->TextHeight*(giVT_Scrollback+1))
1466                 {
1467                          int    base;
1468                         
1469                         // Update previous line
1470                         Term->WritePos -= Term->TextWidth;
1471                         VT_int_UpdateScreen( Term, 0 );
1472                         
1473                         // Update view position
1474                         base = Term->TextWidth*Term->TextHeight*(giVT_Scrollback);
1475                         if(Term->ViewPos < base)
1476                                 Term->ViewPos += Term->Width;
1477                         if(Term->ViewPos > base)
1478                                 Term->ViewPos = base;
1479                         
1480                         VT_int_ScrollText(Term, 1);
1481                 }
1482                 // Ok, so we only need to scroll the screen
1483                 else if(Term->WritePos >= Term->ViewPos + Term->TextWidth*Term->TextHeight)
1484                 {
1485                         // Update the last line
1486                         Term->WritePos -= Term->TextWidth;
1487                         VT_int_UpdateScreen( Term, 0 );
1488                         Term->WritePos += Term->TextWidth;
1489                         
1490                         VT_int_ScrollText(Term, 1);
1491                         
1492                         Term->ViewPos += Term->TextWidth;
1493                 }
1494         }
1495         
1496         //LEAVE('-');
1497 }
1498
1499 void VT_int_ScrollText(tVTerm *Term, int Count)
1500 {
1501         tVT_Char        *buf;
1502          int    height, init_write_pos;
1503          int    len, i;
1504          int    scroll_top, scroll_height;
1505
1506         // Get buffer pointer and attributes    
1507         if( Term->Flags & VT_FLAG_ALTBUF )
1508         {
1509                 buf = Term->AltBuf;
1510                 height = Term->TextHeight;
1511                 init_write_pos = Term->AltWritePos;
1512                 scroll_top = Term->ScrollTop;
1513                 scroll_height = Term->ScrollHeight;
1514         }
1515         else
1516         {
1517                 buf = Term->Text;
1518                 height = Term->TextHeight*(giVT_Scrollback+1);
1519                 init_write_pos = Term->WritePos;
1520                 scroll_top = 0;
1521                 scroll_height = height;
1522         }
1523
1524         // Scroll text downwards        
1525         if( Count > 0 )
1526         {
1527                  int    base;
1528         
1529                 // Set up
1530                 if(Count > scroll_height)       Count = scroll_height;
1531                 base = Term->TextWidth*(scroll_top + scroll_height - Count);
1532                 len = Term->TextWidth*(scroll_height - Count);
1533                 
1534                 // Scroll terminal cache
1535                 memmove(
1536                         &buf[Term->TextWidth*scroll_top],
1537                         &buf[Term->TextWidth*(scroll_top+Count)],
1538                         len*sizeof(tVT_Char)
1539                         );
1540                 // Clear last rows
1541                 for( i = 0; i < Term->TextWidth*Count; i ++ )
1542                 {
1543                         buf[ base + i ].Ch = 0;
1544                         buf[ base + i ].Colour = Term->CurColour;
1545                 }
1546                 
1547                 // Update Screen
1548                 VT_int_ScrollFramebuffer( Term, Count );
1549                 if( Term->Flags & VT_FLAG_ALTBUF )
1550                         Term->AltWritePos = base;
1551                 else
1552                         Term->WritePos = Term->ViewPos + Term->TextWidth*(Term->TextHeight - Count);
1553                 for( i = 0; i < Count; i ++ )
1554                 {
1555                         VT_int_UpdateScreen( Term, 0 );
1556                         if( Term->Flags & VT_FLAG_ALTBUF )
1557                                 Term->AltWritePos += Term->TextWidth;
1558                         else
1559                                 Term->WritePos += Term->TextWidth;
1560                 }
1561         }
1562         else
1563         {
1564                 Count = -Count;
1565                 if(Count > scroll_height)       Count = scroll_height;
1566                 
1567                 len = Term->TextWidth*(scroll_height - Count);
1568                 
1569                 // Scroll terminal cache
1570                 memmove(
1571                         &buf[Term->TextWidth*(scroll_top+Count)],
1572                         &buf[Term->TextWidth*scroll_top],
1573                         len*sizeof(tVT_Char)
1574                         );
1575                 // Clear preceding rows
1576                 for( i = 0; i < Term->TextWidth*Count; i ++ )
1577                 {
1578                         buf[ i ].Ch = 0;
1579                         buf[ i ].Colour = Term->CurColour;
1580                 }
1581                 
1582                 VT_int_ScrollFramebuffer( Term, -Count );
1583                 if( Term->Flags & VT_FLAG_ALTBUF )
1584                         Term->AltWritePos = Term->TextWidth*scroll_top;
1585                 else
1586                         Term->WritePos = Term->ViewPos;
1587                 for( i = 0; i < Count; i ++ )
1588                 {
1589                         VT_int_UpdateScreen( Term, 0 );
1590                         if( Term->Flags & VT_FLAG_ALTBUF )
1591                                 Term->AltWritePos += Term->TextWidth;
1592                         else
1593                                 Term->WritePos += Term->TextWidth;
1594                 }
1595         }
1596         
1597         if( Term->Flags & VT_FLAG_ALTBUF )
1598                 Term->AltWritePos = init_write_pos;
1599         else
1600                 Term->WritePos = init_write_pos;
1601 }
1602
1603 /**
1604  * \fn void VT_int_ScrollFramebuffer( tVTerm *Term, int Count )
1605  * \note Scrolls the framebuffer down by \a Count text lines
1606  */
1607 void VT_int_ScrollFramebuffer( tVTerm *Term, int Count )
1608 {
1609          int    tmp;
1610         struct {
1611                 Uint8   Op;
1612                 Uint16  DstX, DstY;
1613                 Uint16  SrcX, SrcY;
1614                 Uint16  W, H;
1615         } PACKED        buf;
1616         
1617         // Only update if this is the current terminal
1618         if( Term != gpVT_CurTerm )      return;
1619         
1620         if( Count > Term->ScrollHeight )        Count = Term->ScrollHeight;
1621         if( Count < -Term->ScrollHeight )       Count = -Term->ScrollHeight;
1622         
1623         // Switch to 2D Command Stream
1624         tmp = VIDEO_BUFFMT_2DSTREAM;
1625         VFS_IOCtl(giVT_OutputDevHandle, VIDEO_IOCTL_SETBUFFORMAT, &tmp);
1626         
1627         // BLIT to 0,0 from 0,giVT_CharHeight
1628         buf.Op = VIDEO_2DOP_BLIT;
1629         buf.SrcX = 0;   buf.DstX = 0;
1630         // TODO: Don't assume character dimensions
1631         buf.W = Term->TextWidth * giVT_CharWidth;
1632         if( Count > 0 )
1633         {
1634                 buf.SrcY = (Term->ScrollTop+Count) * giVT_CharHeight;
1635                 buf.DstY = Term->ScrollTop * giVT_CharHeight;
1636         }
1637         else    // Scroll up, move text down
1638         {
1639                 Count = -Count;
1640                 buf.SrcY = Term->ScrollTop * giVT_CharHeight;
1641                 buf.DstY = (Term->ScrollTop+Count) * giVT_CharHeight;
1642         }
1643         buf.H = (Term->ScrollHeight-Count) * giVT_CharHeight;
1644         VFS_WriteAt(giVT_OutputDevHandle, 0, sizeof(buf), &buf);
1645         
1646         // Restore old mode (this function is only called during text mode)
1647         tmp = VIDEO_BUFFMT_TEXT;
1648         VFS_IOCtl(giVT_OutputDevHandle, VIDEO_IOCTL_SETBUFFORMAT, &tmp);
1649 }
1650
1651 void VT_int_UpdateCursor( tVTerm *Term, int bShow )
1652 {
1653         tVideo_IOCtl_Pos        csr_pos;
1654
1655         if( Term != gpVT_CurTerm )      return ;
1656
1657         if( !bShow )
1658         {
1659                 csr_pos.x = -1; 
1660                 csr_pos.y = -1; 
1661         }
1662         else if( Term->Mode == TERM_MODE_TEXT )
1663         {
1664                  int    offset;
1665                 
1666 //              if( !(Term->Flags & VT_FLAG_SHOWCSR)
1667 //               && ( (Term->Flags & VT_FLAG_HIDECSR) || !Term->Node.ReadThreads)
1668 //                )
1669                 if( !Term->Text || Term->Flags & VT_FLAG_HIDECSR )
1670                 {
1671                         csr_pos.x = -1;
1672                         csr_pos.y = -1;
1673                 }
1674                 else
1675                 {
1676                         if(Term->Flags & VT_FLAG_ALTBUF)
1677                                 offset = Term->AltWritePos;
1678                         else
1679                                 offset = Term->WritePos - Term->ViewPos;
1680                                         
1681                         csr_pos.x = offset % Term->TextWidth;
1682                         csr_pos.y = offset / Term->TextWidth;
1683                         if( 0 > csr_pos.y || csr_pos.y >= Term->TextHeight )
1684                                 csr_pos.y = -1, csr_pos.x = -1;
1685                 }
1686         }
1687         else
1688         {
1689                 csr_pos.x = Term->VideoCursorX;
1690                 csr_pos.y = Term->VideoCursorY;
1691         }
1692         VFS_IOCtl(giVT_OutputDevHandle, VIDEO_IOCTL_SETCURSOR, &csr_pos);
1693 }       
1694
1695 /**
1696  * \fn void VT_int_UpdateScreen( tVTerm *Term, int UpdateAll )
1697  * \brief Updates the video framebuffer
1698  */
1699 void VT_int_UpdateScreen( tVTerm *Term, int UpdateAll )
1700 {
1701         tVT_Char        *buffer;
1702          int    view_pos, write_pos;
1703         // Only update if this is the current terminal
1704         if( Term != gpVT_CurTerm )      return;
1705         
1706         switch( Term->Mode )
1707         {
1708         case TERM_MODE_TEXT:
1709                 view_pos = (Term->Flags & VT_FLAG_ALTBUF) ? 0 : Term->ViewPos;
1710                 write_pos = (Term->Flags & VT_FLAG_ALTBUF) ? Term->AltWritePos : Term->WritePos;
1711                 buffer = (Term->Flags & VT_FLAG_ALTBUF) ? Term->AltBuf : Term->Text;
1712                 // Re copy the entire screen?
1713                 if(UpdateAll) {
1714                         VFS_WriteAt(
1715                                 giVT_OutputDevHandle,
1716                                 0,
1717                                 Term->TextWidth*Term->TextHeight*sizeof(tVT_Char),
1718                                 &buffer[view_pos]
1719                                 );
1720                 }
1721                 // Only copy the current line
1722                 else {
1723                          int    ofs = write_pos - write_pos % Term->TextWidth;
1724                         VFS_WriteAt(
1725                                 giVT_OutputDevHandle,
1726                                 (ofs - view_pos)*sizeof(tVT_Char),
1727                                 Term->TextWidth*sizeof(tVT_Char),
1728                                 &buffer[ofs]
1729                                 );
1730                 }
1731                 break;
1732         case TERM_MODE_FB:
1733                 break;
1734         }
1735         
1736         VT_int_UpdateCursor(Term, 1);
1737 }
1738
1739 /**
1740  * \brief Update the screen mode
1741  * \param Term  Terminal to update
1742  * \param NewMode       New mode to set
1743  * \param NewWidth      New framebuffer width
1744  * \param NewHeight     New framebuffer height
1745  */
1746 void VT_int_ChangeMode(tVTerm *Term, int NewMode, int NewWidth, int NewHeight)
1747 {
1748          int    oldW = Term->Width;
1749          int    oldTW = Term->TextWidth;
1750          int    oldH = Term->Height;
1751          int    oldTH = Term->TextHeight;
1752         tVT_Char        *oldTBuf = Term->Text;
1753         Uint32  *oldFB = Term->Buffer;
1754          int    w, h, i;
1755         
1756         // TODO: Increase RealWidth/RealHeight when this happens
1757         if(NewWidth > giVT_RealWidth)   NewWidth = giVT_RealWidth;
1758         if(NewHeight > giVT_RealHeight) NewHeight = giVT_RealHeight;
1759         
1760         Term->Mode = NewMode;
1761
1762         // Fast exit if no resolution change
1763         if(NewWidth == Term->Width && NewHeight == Term->Height)
1764                 return ;
1765         
1766         // Calculate new dimensions
1767         Term->Width = NewWidth;
1768         Term->Height = NewHeight;
1769         Term->TextWidth = NewWidth / giVT_CharWidth;
1770         Term->TextHeight = NewHeight / giVT_CharHeight;
1771         Term->ScrollHeight = Term->TextHeight - (oldTH - Term->ScrollHeight) - Term->ScrollTop;
1772         
1773         // Allocate new buffers
1774         // - Text
1775         Term->Text = calloc(
1776                 Term->TextWidth * Term->TextHeight * (giVT_Scrollback+1),
1777                 sizeof(tVT_Char)
1778                 );
1779         if(oldTBuf) {
1780                 // Copy old buffer
1781                 w = (oldTW > Term->TextWidth) ? Term->TextWidth : oldTW;
1782                 h = (oldTH > Term->TextHeight) ? Term->TextHeight : oldTH;
1783                 h *= giVT_Scrollback + 1;
1784                 for( i = 0; i < h; i ++ )
1785                 {
1786                         memcpy(
1787                                 &Term->Text[i*Term->TextWidth],
1788                                 &oldTBuf[i*oldTW],
1789                                 w*sizeof(tVT_Char)
1790                                 );      
1791                 }
1792                 free(oldTBuf);
1793         }
1794         
1795         // - Alternate Text
1796         Term->AltBuf = realloc(
1797                 Term->AltBuf,
1798                 Term->TextWidth * Term->TextHeight * sizeof(tVT_Char)
1799                 );
1800         
1801         // - Framebuffer
1802         if(oldFB) {
1803                 Term->Buffer = calloc( Term->Width * Term->Height, sizeof(Uint32) );
1804                 // Copy old buffer
1805                 w = (oldW > Term->Width) ? Term->Width : oldW;
1806                 h = (oldH > Term->Height) ? Term->Height : oldH;
1807                 for( i = 0; i < h; i ++ )
1808                 {
1809                         memcpy(
1810                                 &Term->Buffer[i*Term->Width],
1811                                 &oldFB[i*oldW],
1812                                 w*sizeof(Uint32)
1813                                 );
1814                 }
1815                 free(oldFB);
1816         }
1817         
1818         // Debug
1819         switch(NewMode)
1820         {
1821         case TERM_MODE_TEXT:
1822                 Log_Log("VTerm", "Set VT %p to text mode (%ix%i)",
1823                         Term, Term->TextWidth, Term->TextHeight);
1824                 break;
1825         case TERM_MODE_FB:
1826                 Log_Log("VTerm", "Set VT %p to framebuffer mode (%ix%i)",
1827                         Term, Term->Width, Term->Height);
1828                 break;
1829         //case TERM_MODE_2DACCEL:
1830         //case TERM_MODE_3DACCEL:
1831         //      return;
1832         }
1833 }
1834
1835
1836 void VT_int_ToggleAltBuffer(tVTerm *Term, int Enabled)
1837 {       
1838         if(Enabled)
1839                 Term->Flags |= VT_FLAG_ALTBUF;
1840         else
1841                 Term->Flags &= ~VT_FLAG_ALTBUF;
1842         VT_int_UpdateScreen(Term, 1);
1843 }
1844
1845 // ---
1846 // Font Render
1847 // ---
1848 #define MONOSPACE_FONT  10816
1849
1850 #if MONOSPACE_FONT == 10808     // 8x8
1851 # include "vterm_font_8x8.h"
1852 #elif MONOSPACE_FONT == 10816   // 8x16
1853 # include "vterm_font_8x16.h"
1854 #endif
1855
1856 // === PROTOTYPES ===
1857 Uint8   *VT_Font_GetChar(Uint32 Codepoint);
1858
1859 // === GLOBALS ===
1860 int     giVT_CharWidth = FONT_WIDTH;
1861 int     giVT_CharHeight = FONT_HEIGHT;
1862
1863 // === CODE ===
1864 /**
1865  * \brief Render a font character
1866  */
1867 void VT_Font_Render(Uint32 Codepoint, void *Buffer, int Depth, int Pitch, Uint32 BGC, Uint32 FGC)
1868 {
1869         Uint8   *font;
1870          int    x, y;
1871         
1872         // 8-bpp and below
1873         if( Depth <= 8 )
1874         {
1875                 Uint8   *buf = Buffer;
1876                 
1877                 font = VT_Font_GetChar(Codepoint);
1878                 
1879                 for(y = 0; y < FONT_HEIGHT; y ++)
1880                 {
1881                         for(x = 0; x < FONT_WIDTH; x ++)
1882                         {
1883                                 if(*font & (1 << (FONT_WIDTH-x-1)))
1884                                         buf[x] = FGC;
1885                                 else
1886                                         buf[x] = BGC;
1887                         }
1888                         buf = (void*)( (tVAddr)buf + Pitch );
1889                         font ++;
1890                 }
1891         }
1892         // 16-bpp and below
1893         else if( Depth <= 16 )
1894         {
1895                 Uint16  *buf = Buffer;
1896                 
1897                 font = VT_Font_GetChar(Codepoint);
1898                 
1899                 for(y = 0; y < FONT_HEIGHT; y ++)
1900                 {
1901                         for(x = 0; x < FONT_WIDTH; x ++)
1902                         {
1903                                 if(*font & (1 << (FONT_WIDTH-x-1)))
1904                                         buf[x] = FGC;
1905                                 else
1906                                         buf[x] = BGC;
1907                         }
1908                         buf = (void*)( (tVAddr)buf + Pitch );
1909                         font ++;
1910                 }
1911         }
1912         // 24-bpp colour
1913         // - Special handling to not overwrite the next pixel
1914         //TODO: Endian issues here
1915         else if( Depth == 24 )
1916         {
1917                 Uint8   *buf = Buffer;
1918                 Uint8   bg_r = (BGC >> 16) & 0xFF;
1919                 Uint8   bg_g = (BGC >>  8) & 0xFF;
1920                 Uint8   bg_b = (BGC >>  0) & 0xFF;
1921                 Uint8   fg_r = (FGC >> 16) & 0xFF;
1922                 Uint8   fg_g = (FGC >>  8) & 0xFF;
1923                 Uint8   fg_b = (FGC >>  0) & 0xFF;
1924                 
1925                 font = VT_Font_GetChar(Codepoint);
1926                 
1927                 for(y = 0; y < FONT_HEIGHT; y ++)
1928                 {
1929                         for(x = 0; x < FONT_WIDTH; x ++)
1930                         {
1931                                 Uint8   r, g, b;
1932                                 
1933                                 if(*font & (1 << (FONT_WIDTH-x-1))) {
1934                                         r = fg_r;       g = fg_g;       b = fg_b;
1935                                 }
1936                                 else {
1937                                         r = bg_r;       g = bg_g;       b = bg_b;
1938                                 }
1939                                 buf[x*3+0] = b;
1940                                 buf[x*3+1] = g;
1941                                 buf[x*3+2] = r;
1942                         }
1943                         buf = (void*)( (tVAddr)buf + Pitch );
1944                         font ++;
1945                 }
1946         }
1947         // 32-bpp colour (nice and easy)
1948         else if( Depth == 32 )
1949         {
1950                 Uint32  *buf = Buffer;
1951                 
1952                 font = VT_Font_GetChar(Codepoint);
1953                 
1954                 for(y = 0; y < FONT_HEIGHT; y ++)
1955                 {
1956                         for(x = 0; x < FONT_WIDTH; x ++)
1957                         {
1958                                 if(*font & (1 << (FONT_WIDTH-x-1)))
1959                                         buf[x] = FGC;
1960                                 else
1961                                         buf[x] = BGC;
1962                         }
1963                         buf = (Uint32*)( (tVAddr)buf + Pitch );
1964                         font ++;
1965                 }
1966         }
1967 }
1968
1969 /**
1970  * \fn Uint32 VT_Colour12to24(Uint16 Col12)
1971  * \brief Converts a 12-bit colour into 24 bits
1972  */
1973 Uint32 VT_Colour12to24(Uint16 Col12)
1974 {
1975         Uint32  ret;
1976          int    tmp;
1977         tmp = Col12 & 0xF;
1978         ret  = (tmp << 0) | (tmp << 4);
1979         tmp = (Col12 & 0xF0) >> 4;
1980         ret |= (tmp << 8) | (tmp << 12);
1981         tmp = (Col12 & 0xF00) >> 8;
1982         ret |= (tmp << 16) | (tmp << 20);
1983         return ret;
1984 }
1985 /**
1986  * \brief Converts a 12-bit colour into 15 bits
1987  */
1988 Uint16 VT_Colour12to15(Uint16 Col12)
1989 {
1990         Uint32  ret;
1991          int    tmp;
1992         tmp = Col12 & 0xF;
1993         ret  = (tmp << 1) | (tmp & 1);
1994         tmp = (Col12 & 0xF0) >> 4;
1995         ret |= ( (tmp << 1) | (tmp & 1) ) << 5;
1996         tmp = (Col12 & 0xF00) >> 8;
1997         ret |= ( (tmp << 1) | (tmp & 1) ) << 10;
1998         return ret;
1999 }
2000
2001 /**
2002  * \brief Converts a 12-bit colour into any other depth
2003  * \param Col12 12-bit source colour
2004  * \param Depth Desired bit deptj
2005  * \note Green then blue get the extra avaliable bits (16:5-6-5, 14:4-5-5)
2006  */
2007 Uint32 VT_Colour12toN(Uint16 Col12, int Depth)
2008 {
2009         Uint32  ret;
2010         Uint32  r, g, b;
2011          int    rSize, gSize, bSize;
2012         
2013         // Fast returns
2014         if( Depth == 24 )       return VT_Colour12to24(Col12);
2015         if( Depth == 15 )       return VT_Colour12to15(Col12);
2016         // - 32 is a special case, it's usually 24-bit colour with an unused byte
2017         if( Depth == 32 )       return VT_Colour12to24(Col12);
2018         
2019         // Bounds checks
2020         if( Depth < 8 ) return 0;
2021         if( Depth > 32 )        return 0;
2022         
2023         r = Col12 & 0xF;
2024         g = (Col12 & 0xF0) >> 4;
2025         b = (Col12 & 0xF00) >> 8;
2026         
2027         rSize = gSize = bSize = Depth / 3;
2028         if( rSize + gSize + bSize < Depth )     // Depth % 3 == 1
2029                 gSize ++;
2030         if( rSize + gSize + bSize < Depth )     // Depth % 3 == 2
2031                 bSize ++;
2032         
2033         // Expand
2034         r <<= rSize - 4;        g <<= gSize - 4;        b <<= bSize - 4;
2035         // Fill with the lowest bit
2036         if( Col12 & 0x001 )     r |= (1 << (rSize - 4)) - 1;
2037         if( Col12 & 0x010 )     r |= (1 << (gSize - 4)) - 1;
2038         if( Col12 & 0x100 )     r |= (1 << (bSize - 4)) - 1;
2039         
2040         // Create output
2041         ret  = r;
2042         ret |= g << rSize;
2043         ret |= b << (rSize + gSize);
2044         
2045         return ret;
2046 }
2047
2048 /**
2049  * \fn Uint8 *VT_Font_GetChar(Uint32 Codepoint)
2050  * \brief Gets an index into the font array given a Unicode Codepoint
2051  * \note See http://en.wikipedia.org/wiki/CP437
2052  */
2053 Uint8 *VT_Font_GetChar(Uint32 Codepoint)
2054 {
2055          int    index = 0;
2056         if(Codepoint < 128)
2057                 return &VTermFont[Codepoint*FONT_HEIGHT];
2058         switch(Codepoint)
2059         {
2060         case 0xC7:      index = 128;    break;  // Ç
2061         case 0xFC:      index = 129;    break;  // ü
2062         case 0xE9:      index = 130;    break;  // é
2063         case 0xE2:      index = 131;    break;  // â
2064         case 0xE4:      index = 132;    break;  // ä
2065         case 0xE0:      index = 133;    break;  // à
2066         case 0xE5:      index = 134;    break;  // å
2067         case 0xE7:      index = 135;    break;  // ç
2068         case 0xEA:      index = 136;    break;  // ê
2069         case 0xEB:      index = 137;    break;  // ë
2070         case 0xE8:      index = 138;    break;  // è
2071         case 0xEF:      index = 139;    break;  // ï
2072         case 0xEE:      index = 140;    break;  // î
2073         case 0xEC:      index = 141;    break;  // ì
2074         case 0xC4:      index = 142;    break;  // Ä
2075         case 0xC5:      index = 143;    break;  // Å
2076         }
2077         
2078         return &VTermFont[index*FONT_HEIGHT];
2079 }
2080
2081 EXPORTAS(&giVT_CharWidth, giVT_CharWidth);
2082 EXPORTAS(&giVT_CharHeight, giVT_CharHeight);
2083 EXPORT(VT_Font_Render);
2084 EXPORT(VT_Colour12to24);

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