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1
/*
2
 * QEMU VNC display driver
3
 * 
4
 * Copyright (C) 2006 Anthony Liguori <anthony@codemonkey.ws>
5
 * Copyright (C) 2006 Fabrice Bellard
6
 * 
7
 * Permission is hereby granted, free of charge, to any person obtaining a copy
8
 * of this software and associated documentation files (the "Software"), to deal
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 * in the Software without restriction, including without limitation the rights
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 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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 * copies of the Software, and to permit persons to whom the Software is
12
 * furnished to do so, subject to the following conditions:
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 *
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 * The above copyright notice and this permission notice shall be included in
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 * all copies or substantial portions of the Software.
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 *
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 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20
 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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 * THE SOFTWARE.
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 */
25

    
26
#include "vl.h"
27
#include "qemu_socket.h"
28

    
29
#define VNC_REFRESH_INTERVAL (1000 / 30)
30

    
31
#include "vnc_keysym.h"
32
#include "keymaps.c"
33

    
34
typedef struct Buffer
35
{
36
    size_t capacity;
37
    size_t offset;
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    char *buffer;
39
} Buffer;
40

    
41
typedef struct VncState VncState;
42

    
43
typedef int VncReadEvent(VncState *vs, char *data, size_t len);
44

    
45
typedef void VncWritePixels(VncState *vs, void *data, int size);
46

    
47
typedef void VncSendHextileTile(VncState *vs,
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                                int x, int y, int w, int h,
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                                uint32_t *last_bg, 
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                                uint32_t *last_fg,
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                                int *has_bg, int *has_fg);
52

    
53
#define VNC_MAX_WIDTH 2048
54
#define VNC_MAX_HEIGHT 2048
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#define VNC_DIRTY_WORDS (VNC_MAX_WIDTH / (16 * 32))
56

    
57
struct VncState
58
{
59
    QEMUTimer *timer;
60
    int lsock;
61
    int csock;
62
    DisplayState *ds;
63
    int need_update;
64
    int width;
65
    int height;
66
    uint32_t dirty_row[VNC_MAX_HEIGHT][VNC_DIRTY_WORDS];
67
    char *old_data;
68
    int depth; /* internal VNC frame buffer byte per pixel */
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    int has_resize;
70
    int has_hextile;
71
    Buffer output;
72
    Buffer input;
73
    kbd_layout_t *kbd_layout;
74
    /* current output mode information */
75
    VncWritePixels *write_pixels;
76
    VncSendHextileTile *send_hextile_tile;
77
    int pix_bpp, pix_big_endian;
78
    int red_shift, red_max, red_shift1;
79
    int green_shift, green_max, green_shift1;
80
    int blue_shift, blue_max, blue_shift1;
81

    
82
    VncReadEvent *read_handler;
83
    size_t read_handler_expect;
84
};
85

    
86
/* TODO
87
   1) Get the queue working for IO.
88
   2) there is some weirdness when using the -S option (the screen is grey
89
      and not totally invalidated
90
   3) resolutions > 1024
91
*/
92

    
93
static void vnc_write(VncState *vs, const void *data, size_t len);
94
static void vnc_write_u32(VncState *vs, uint32_t value);
95
static void vnc_write_s32(VncState *vs, int32_t value);
96
static void vnc_write_u16(VncState *vs, uint16_t value);
97
static void vnc_write_u8(VncState *vs, uint8_t value);
98
static void vnc_flush(VncState *vs);
99
static void vnc_update_client(void *opaque);
100
static void vnc_client_read(void *opaque);
101

    
102
static inline void vnc_set_bit(uint32_t *d, int k)
103
{
104
    d[k >> 5] |= 1 << (k & 0x1f);
105
}
106

    
107
static inline void vnc_clear_bit(uint32_t *d, int k)
108
{
109
    d[k >> 5] &= ~(1 << (k & 0x1f));
110
}
111

    
112
static inline void vnc_set_bits(uint32_t *d, int n, int nb_words)
113
{
114
    int j;
115

    
116
    j = 0;
117
    while (n >= 32) {
118
        d[j++] = -1;
119
        n -= 32;
120
    }
121
    if (n > 0) 
122
        d[j++] = (1 << n) - 1;
123
    while (j < nb_words)
124
        d[j++] = 0;
125
}
126

    
127
static inline int vnc_get_bit(const uint32_t *d, int k)
128
{
129
    return (d[k >> 5] >> (k & 0x1f)) & 1;
130
}
131

    
132
static inline int vnc_and_bits(const uint32_t *d1, const uint32_t *d2, 
133
                               int nb_words)
134
{
135
    int i;
136
    for(i = 0; i < nb_words; i++) {
137
        if ((d1[i] & d2[i]) != 0)
138
            return 1;
139
    }
140
    return 0;
141
}
142

    
143
static void vnc_dpy_update(DisplayState *ds, int x, int y, int w, int h)
144
{
145
    VncState *vs = ds->opaque;
146
    int i;
147

    
148
    h += y;
149

    
150
    for (; y < h; y++)
151
        for (i = 0; i < w; i += 16)
152
            vnc_set_bit(vs->dirty_row[y], (x + i) / 16);
153
}
154

    
155
static void vnc_framebuffer_update(VncState *vs, int x, int y, int w, int h,
156
                                   int32_t encoding)
157
{
158
    vnc_write_u16(vs, x);
159
    vnc_write_u16(vs, y);
160
    vnc_write_u16(vs, w);
161
    vnc_write_u16(vs, h);
162

    
163
    vnc_write_s32(vs, encoding);
164
}
165

    
166
static void vnc_dpy_resize(DisplayState *ds, int w, int h)
167
{
168
    VncState *vs = ds->opaque;
169

    
170
    ds->data = realloc(ds->data, w * h * vs->depth);
171
    vs->old_data = realloc(vs->old_data, w * h * vs->depth);
172

    
173
    if (ds->data == NULL || vs->old_data == NULL) {
174
        fprintf(stderr, "vnc: memory allocation failed\n");
175
        exit(1);
176
    }
177

    
178
    ds->depth = vs->depth * 8;
179
    ds->width = w;
180
    ds->height = h;
181
    ds->linesize = w * vs->depth;
182
    if (vs->csock != -1 && vs->has_resize) {
183
        vnc_write_u8(vs, 0);  /* msg id */
184
        vnc_write_u8(vs, 0);
185
        vnc_write_u16(vs, 1); /* number of rects */
186
        vnc_framebuffer_update(vs, 0, 0, ds->width, ds->height, -223);
187
        vnc_flush(vs);
188
        vs->width = ds->width;
189
        vs->height = ds->height;
190
    }
191
}
192

    
193
/* fastest code */
194
static void vnc_write_pixels_copy(VncState *vs, void *pixels, int size)
195
{
196
    vnc_write(vs, pixels, size);
197
}
198

    
199
/* slowest but generic code. */
200
static void vnc_convert_pixel(VncState *vs, uint8_t *buf, uint32_t v)
201
{
202
    unsigned int r, g, b;
203

    
204
    r = (v >> vs->red_shift1) & vs->red_max;
205
    g = (v >> vs->green_shift1) & vs->green_max;
206
    b = (v >> vs->blue_shift1) & vs->blue_max;
207
    v = (r << vs->red_shift) | 
208
        (g << vs->green_shift) | 
209
        (b << vs->blue_shift);
210
    switch(vs->pix_bpp) {
211
    case 1:
212
        buf[0] = v;
213
        break;
214
    case 2:
215
        if (vs->pix_big_endian) {
216
            buf[0] = v >> 8;
217
            buf[1] = v;
218
        } else {
219
            buf[1] = v >> 8;
220
            buf[0] = v;
221
        }
222
        break;
223
    default:
224
    case 4:
225
        if (vs->pix_big_endian) {
226
            buf[0] = v >> 24;
227
            buf[1] = v >> 16;
228
            buf[2] = v >> 8;
229
            buf[3] = v;
230
        } else {
231
            buf[3] = v >> 24;
232
            buf[2] = v >> 16;
233
            buf[1] = v >> 8;
234
            buf[0] = v;
235
        }
236
        break;
237
    }
238
}
239

    
240
static void vnc_write_pixels_generic(VncState *vs, void *pixels1, int size)
241
{
242
    uint32_t *pixels = pixels1;
243
    uint8_t buf[4];
244
    int n, i;
245

    
246
    n = size >> 2;
247
    for(i = 0; i < n; i++) {
248
        vnc_convert_pixel(vs, buf, pixels[i]);
249
        vnc_write(vs, buf, vs->pix_bpp);
250
    }
251
}
252

    
253
static void send_framebuffer_update_raw(VncState *vs, int x, int y, int w, int h)
254
{
255
    int i;
256
    char *row;
257

    
258
    vnc_framebuffer_update(vs, x, y, w, h, 0);
259

    
260
    row = vs->ds->data + y * vs->ds->linesize + x * vs->depth;
261
    for (i = 0; i < h; i++) {
262
        vs->write_pixels(vs, row, w * vs->depth);
263
        row += vs->ds->linesize;
264
    }
265
}
266

    
267
static void hextile_enc_cord(uint8_t *ptr, int x, int y, int w, int h)
268
{
269
    ptr[0] = ((x & 0x0F) << 4) | (y & 0x0F);
270
    ptr[1] = (((w - 1) & 0x0F) << 4) | ((h - 1) & 0x0F);
271
}
272

    
273
#define BPP 8
274
#include "vnchextile.h"
275
#undef BPP
276

    
277
#define BPP 16
278
#include "vnchextile.h"
279
#undef BPP
280

    
281
#define BPP 32
282
#include "vnchextile.h"
283
#undef BPP
284

    
285
#define GENERIC
286
#define BPP 32
287
#include "vnchextile.h"
288
#undef BPP
289
#undef GENERIC
290

    
291
static void send_framebuffer_update_hextile(VncState *vs, int x, int y, int w, int h)
292
{
293
    int i, j;
294
    int has_fg, has_bg;
295
    uint32_t last_fg32, last_bg32;
296

    
297
    vnc_framebuffer_update(vs, x, y, w, h, 5);
298

    
299
    has_fg = has_bg = 0;
300
    for (j = y; j < (y + h); j += 16) {
301
        for (i = x; i < (x + w); i += 16) {
302
            vs->send_hextile_tile(vs, i, j, 
303
                                  MIN(16, x + w - i), MIN(16, y + h - j),
304
                                  &last_bg32, &last_fg32, &has_bg, &has_fg);
305
        }
306
    }
307
}
308

    
309
static void send_framebuffer_update(VncState *vs, int x, int y, int w, int h)
310
{
311
        if (vs->has_hextile)
312
            send_framebuffer_update_hextile(vs, x, y, w, h);
313
        else
314
            send_framebuffer_update_raw(vs, x, y, w, h);
315
}
316

    
317
static void vnc_copy(DisplayState *ds, int src_x, int src_y, int dst_x, int dst_y, int w, int h)
318
{
319
    int src, dst;
320
    char *src_row;
321
    char *dst_row;
322
    char *old_row;
323
    int y = 0;
324
    int pitch = ds->linesize;
325
    VncState *vs = ds->opaque;
326

    
327
    vnc_update_client(vs);
328

    
329
    if (dst_y > src_y) {
330
        y = h - 1;
331
        pitch = -pitch;
332
    }
333

    
334
    src = (ds->linesize * (src_y + y) + vs->depth * src_x);
335
    dst = (ds->linesize * (dst_y + y) + vs->depth * dst_x);
336

    
337
    src_row = ds->data + src;
338
    dst_row = ds->data + dst;
339
    old_row = vs->old_data + dst;
340

    
341
    for (y = 0; y < h; y++) {
342
        memmove(old_row, src_row, w * vs->depth);
343
        memmove(dst_row, src_row, w * vs->depth);
344
        src_row += pitch;
345
        dst_row += pitch;
346
        old_row += pitch;
347
    }
348

    
349
    vnc_write_u8(vs, 0);  /* msg id */
350
    vnc_write_u8(vs, 0);
351
    vnc_write_u16(vs, 1); /* number of rects */
352
    vnc_framebuffer_update(vs, dst_x, dst_y, w, h, 1);
353
    vnc_write_u16(vs, src_x);
354
    vnc_write_u16(vs, src_y);
355
    vnc_flush(vs);
356
}
357

    
358
static int find_dirty_height(VncState *vs, int y, int last_x, int x)
359
{
360
    int h;
361

    
362
    for (h = 1; h < (vs->height - y); h++) {
363
        int tmp_x;
364
        if (!vnc_get_bit(vs->dirty_row[y + h], last_x))
365
            break;
366
        for (tmp_x = last_x; tmp_x < x; tmp_x++)
367
            vnc_clear_bit(vs->dirty_row[y + h], tmp_x);
368
    }
369

    
370
    return h;
371
}
372

    
373
static void vnc_update_client(void *opaque)
374
{
375
    VncState *vs = opaque;
376

    
377
    if (vs->need_update && vs->csock != -1) {
378
        int y;
379
        char *row;
380
        char *old_row;
381
        uint32_t width_mask[VNC_DIRTY_WORDS];
382
        int n_rectangles;
383
        int saved_offset;
384
        int has_dirty = 0;
385

    
386
        vnc_set_bits(width_mask, (vs->width / 16), VNC_DIRTY_WORDS);
387

    
388
        /* Walk through the dirty map and eliminate tiles that
389
           really aren't dirty */
390
        row = vs->ds->data;
391
        old_row = vs->old_data;
392

    
393
        for (y = 0; y < vs->height; y++) {
394
            if (vnc_and_bits(vs->dirty_row[y], width_mask, VNC_DIRTY_WORDS)) {
395
                int x;
396
                char *ptr, *old_ptr;
397

    
398
                ptr = row;
399
                old_ptr = old_row;
400

    
401
                for (x = 0; x < vs->ds->width; x += 16) {
402
                    if (memcmp(old_ptr, ptr, 16 * vs->depth) == 0) {
403
                        vnc_clear_bit(vs->dirty_row[y], (x / 16));
404
                    } else {
405
                        has_dirty = 1;
406
                        memcpy(old_ptr, ptr, 16 * vs->depth);
407
                    }
408

    
409
                    ptr += 16 * vs->depth;
410
                    old_ptr += 16 * vs->depth;
411
                }
412
            }
413

    
414
            row += vs->ds->linesize;
415
            old_row += vs->ds->linesize;
416
        }
417

    
418
        if (!has_dirty) {
419
            qemu_mod_timer(vs->timer, qemu_get_clock(rt_clock) + VNC_REFRESH_INTERVAL);
420
            return;
421
        }
422

    
423
        /* Count rectangles */
424
        n_rectangles = 0;
425
        vnc_write_u8(vs, 0);  /* msg id */
426
        vnc_write_u8(vs, 0);
427
        saved_offset = vs->output.offset;
428
        vnc_write_u16(vs, 0);
429

    
430
        for (y = 0; y < vs->height; y++) {
431
            int x;
432
            int last_x = -1;
433
            for (x = 0; x < vs->width / 16; x++) {
434
                if (vnc_get_bit(vs->dirty_row[y], x)) {
435
                    if (last_x == -1) {
436
                        last_x = x;
437
                    }
438
                    vnc_clear_bit(vs->dirty_row[y], x);
439
                } else {
440
                    if (last_x != -1) {
441
                        int h = find_dirty_height(vs, y, last_x, x);
442
                        send_framebuffer_update(vs, last_x * 16, y, (x - last_x) * 16, h);
443
                        n_rectangles++;
444
                    }
445
                    last_x = -1;
446
                }
447
            }
448
            if (last_x != -1) {
449
                int h = find_dirty_height(vs, y, last_x, x);
450
                send_framebuffer_update(vs, last_x * 16, y, (x - last_x) * 16, h);
451
                n_rectangles++;
452
            }
453
        }
454
        vs->output.buffer[saved_offset] = (n_rectangles >> 8) & 0xFF;
455
        vs->output.buffer[saved_offset + 1] = n_rectangles & 0xFF;
456
        vnc_flush(vs);
457

    
458
    }
459
    qemu_mod_timer(vs->timer, qemu_get_clock(rt_clock) + VNC_REFRESH_INTERVAL);
460
}
461

    
462
static void vnc_timer_init(VncState *vs)
463
{
464
    if (vs->timer == NULL) {
465
        vs->timer = qemu_new_timer(rt_clock, vnc_update_client, vs);
466
        qemu_mod_timer(vs->timer, qemu_get_clock(rt_clock));
467
    }
468
}
469

    
470
static void vnc_dpy_refresh(DisplayState *ds)
471
{
472
    VncState *vs = ds->opaque;
473
    vnc_timer_init(vs);
474
    vga_hw_update();
475
}
476

    
477
static int vnc_listen_poll(void *opaque)
478
{
479
    VncState *vs = opaque;
480
    if (vs->csock == -1)
481
        return 1;
482
    return 0;
483
}
484

    
485
static void buffer_reserve(Buffer *buffer, size_t len)
486
{
487
    if ((buffer->capacity - buffer->offset) < len) {
488
        buffer->capacity += (len + 1024);
489
        buffer->buffer = realloc(buffer->buffer, buffer->capacity);
490
        if (buffer->buffer == NULL) {
491
            fprintf(stderr, "vnc: out of memory\n");
492
            exit(1);
493
        }
494
    }
495
}
496

    
497
static int buffer_empty(Buffer *buffer)
498
{
499
    return buffer->offset == 0;
500
}
501

    
502
static char *buffer_end(Buffer *buffer)
503
{
504
    return buffer->buffer + buffer->offset;
505
}
506

    
507
static void buffer_reset(Buffer *buffer)
508
{
509
        buffer->offset = 0;
510
}
511

    
512
static void buffer_append(Buffer *buffer, const void *data, size_t len)
513
{
514
    memcpy(buffer->buffer + buffer->offset, data, len);
515
    buffer->offset += len;
516
}
517

    
518
static int vnc_client_io_error(VncState *vs, int ret, int last_errno)
519
{
520
    if (ret == 0 || ret == -1) {
521
        if (ret == -1 && (last_errno == EINTR || last_errno == EAGAIN))
522
            return 0;
523

    
524
        qemu_set_fd_handler2(vs->csock, NULL, NULL, NULL, NULL);
525
        closesocket(vs->csock);
526
        vs->csock = -1;
527
        buffer_reset(&vs->input);
528
        buffer_reset(&vs->output);
529
        vs->need_update = 0;
530
        return 0;
531
    }
532
    return ret;
533
}
534

    
535
static void vnc_client_error(VncState *vs)
536
{
537
    vnc_client_io_error(vs, -1, EINVAL);
538
}
539

    
540
static void vnc_client_write(void *opaque)
541
{
542
    long ret;
543
    VncState *vs = opaque;
544

    
545
    ret = send(vs->csock, vs->output.buffer, vs->output.offset, 0);
546
    ret = vnc_client_io_error(vs, ret, socket_error());
547
    if (!ret)
548
        return;
549

    
550
    memmove(vs->output.buffer, vs->output.buffer + ret, (vs->output.offset - ret));
551
    vs->output.offset -= ret;
552

    
553
    if (vs->output.offset == 0) {
554
        qemu_set_fd_handler2(vs->csock, NULL, vnc_client_read, NULL, vs);
555
    }
556
}
557

    
558
static void vnc_read_when(VncState *vs, VncReadEvent *func, size_t expecting)
559
{
560
    vs->read_handler = func;
561
    vs->read_handler_expect = expecting;
562
}
563

    
564
static void vnc_client_read(void *opaque)
565
{
566
    VncState *vs = opaque;
567
    long ret;
568

    
569
    buffer_reserve(&vs->input, 4096);
570

    
571
    ret = recv(vs->csock, buffer_end(&vs->input), 4096, 0);
572
    ret = vnc_client_io_error(vs, ret, socket_error());
573
    if (!ret)
574
        return;
575

    
576
    vs->input.offset += ret;
577

    
578
    while (vs->read_handler && vs->input.offset >= vs->read_handler_expect) {
579
        size_t len = vs->read_handler_expect;
580
        int ret;
581

    
582
        ret = vs->read_handler(vs, vs->input.buffer, len);
583
        if (vs->csock == -1)
584
            return;
585

    
586
        if (!ret) {
587
            memmove(vs->input.buffer, vs->input.buffer + len, (vs->input.offset - len));
588
            vs->input.offset -= len;
589
        } else {
590
            vs->read_handler_expect = ret;
591
        }
592
    }
593
}
594

    
595
static void vnc_write(VncState *vs, const void *data, size_t len)
596
{
597
    buffer_reserve(&vs->output, len);
598

    
599
    if (buffer_empty(&vs->output)) {
600
        qemu_set_fd_handler2(vs->csock, NULL, vnc_client_read, vnc_client_write, vs);
601
    }
602

    
603
    buffer_append(&vs->output, data, len);
604
}
605

    
606
static void vnc_write_s32(VncState *vs, int32_t value)
607
{
608
    vnc_write_u32(vs, *(uint32_t *)&value);
609
}
610

    
611
static void vnc_write_u32(VncState *vs, uint32_t value)
612
{
613
    uint8_t buf[4];
614

    
615
    buf[0] = (value >> 24) & 0xFF;
616
    buf[1] = (value >> 16) & 0xFF;
617
    buf[2] = (value >>  8) & 0xFF;
618
    buf[3] = value & 0xFF;
619

    
620
    vnc_write(vs, buf, 4);
621
}
622

    
623
static void vnc_write_u16(VncState *vs, uint16_t value)
624
{
625
    char buf[2];
626

    
627
    buf[0] = (value >> 8) & 0xFF;
628
    buf[1] = value & 0xFF;
629

    
630
    vnc_write(vs, buf, 2);
631
}
632

    
633
static void vnc_write_u8(VncState *vs, uint8_t value)
634
{
635
    vnc_write(vs, (char *)&value, 1);
636
}
637

    
638
static void vnc_flush(VncState *vs)
639
{
640
    if (vs->output.offset)
641
        vnc_client_write(vs);
642
}
643

    
644
static uint8_t read_u8(char *data, size_t offset)
645
{
646
    return data[offset];
647
}
648

    
649
static uint16_t read_u16(char *data, size_t offset)
650
{
651
    return ((data[offset] & 0xFF) << 8) | (data[offset + 1] & 0xFF);
652
}
653

    
654
static int32_t read_s32(char *data, size_t offset)
655
{
656
    return (int32_t)((data[offset] << 24) | (data[offset + 1] << 16) |
657
                     (data[offset + 2] << 8) | data[offset + 3]);
658
}
659

    
660
static uint32_t read_u32(char *data, size_t offset)
661
{
662
    return ((data[offset] << 24) | (data[offset + 1] << 16) |
663
            (data[offset + 2] << 8) | data[offset + 3]);
664
}
665

    
666
static void client_cut_text(VncState *vs, size_t len, char *text)
667
{
668
}
669

    
670
static void pointer_event(VncState *vs, int button_mask, int x, int y)
671
{
672
    int buttons = 0;
673
    int dz = 0;
674

    
675
    if (button_mask & 0x01)
676
        buttons |= MOUSE_EVENT_LBUTTON;
677
    if (button_mask & 0x02)
678
        buttons |= MOUSE_EVENT_MBUTTON;
679
    if (button_mask & 0x04)
680
        buttons |= MOUSE_EVENT_RBUTTON;
681
    if (button_mask & 0x08)
682
        dz = -1;
683
    if (button_mask & 0x10)
684
        dz = 1;
685
            
686
    if (kbd_mouse_is_absolute()) {
687
        kbd_mouse_event(x * 0x7FFF / vs->ds->width,
688
                        y * 0x7FFF / vs->ds->height,
689
                        dz, buttons);
690
    } else {
691
        static int last_x = -1;
692
        static int last_y = -1;
693

    
694
        if (last_x != -1)
695
            kbd_mouse_event(x - last_x, y - last_y, dz, buttons);
696

    
697
        last_x = x;
698
        last_y = y;
699
    }
700
}
701

    
702
static void do_key_event(VncState *vs, int down, uint32_t sym)
703
{
704
    int keycode;
705

    
706
    keycode = keysym2scancode(vs->kbd_layout, sym & 0xFFFF);
707

    
708
    if (keycode & 0x80)
709
        kbd_put_keycode(0xe0);
710
    if (down)
711
        kbd_put_keycode(keycode & 0x7f);
712
    else
713
        kbd_put_keycode(keycode | 0x80);
714
}
715

    
716
static void key_event(VncState *vs, int down, uint32_t sym)
717
{
718
    if (sym >= 'A' && sym <= 'Z')
719
        sym = sym - 'A' + 'a';
720
    do_key_event(vs, down, sym);
721
}
722

    
723
static void framebuffer_update_request(VncState *vs, int incremental,
724
                                       int x_position, int y_position,
725
                                       int w, int h)
726
{
727
    int i;
728
    vs->need_update = 1;
729
    if (!incremental) {
730
        char *old_row = vs->old_data + y_position * vs->ds->linesize;
731

    
732
        for (i = 0; i < h; i++) {
733
            vnc_set_bits(vs->dirty_row[y_position + i], 
734
                         (vs->ds->width / 16), VNC_DIRTY_WORDS);
735
            memset(old_row, 42, vs->ds->width * vs->depth);
736
            old_row += vs->ds->linesize;
737
        }
738
    }
739
}
740

    
741
static void set_encodings(VncState *vs, int32_t *encodings, size_t n_encodings)
742
{
743
    int i;
744

    
745
    vs->has_hextile = 0;
746
    vs->has_resize = 0;
747
    vs->ds->dpy_copy = NULL;
748

    
749
    for (i = n_encodings - 1; i >= 0; i--) {
750
        switch (encodings[i]) {
751
        case 0: /* Raw */
752
            vs->has_hextile = 0;
753
            break;
754
        case 1: /* CopyRect */
755
            vs->ds->dpy_copy = vnc_copy;
756
            break;
757
        case 5: /* Hextile */
758
            vs->has_hextile = 1;
759
            break;
760
        case -223: /* DesktopResize */
761
            vs->has_resize = 1;
762
            break;
763
        default:
764
            break;
765
        }
766
    }
767
}
768

    
769
static int compute_nbits(unsigned int val)
770
{
771
    int n;
772
    n = 0;
773
    while (val != 0) {
774
        n++;
775
        val >>= 1;
776
    }
777
    return n;
778
}
779

    
780
static void set_pixel_format(VncState *vs,
781
                             int bits_per_pixel, int depth,
782
                             int big_endian_flag, int true_color_flag,
783
                             int red_max, int green_max, int blue_max,
784
                             int red_shift, int green_shift, int blue_shift)
785
{
786
    int host_big_endian_flag;
787

    
788
#ifdef WORDS_BIGENDIAN
789
    host_big_endian_flag = 1;
790
#else
791
    host_big_endian_flag = 0;
792
#endif
793
    if (!true_color_flag) {
794
    fail:
795
        vnc_client_error(vs);
796
        return;
797
    }
798
    if (bits_per_pixel == 32 && 
799
        host_big_endian_flag == big_endian_flag &&
800
        red_max == 0xff && green_max == 0xff && blue_max == 0xff &&
801
        red_shift == 16 && green_shift == 8 && blue_shift == 0) {
802
        vs->depth = 4;
803
        vs->write_pixels = vnc_write_pixels_copy;
804
        vs->send_hextile_tile = send_hextile_tile_32;
805
    } else 
806
    if (bits_per_pixel == 16 && 
807
        host_big_endian_flag == big_endian_flag &&
808
        red_max == 31 && green_max == 63 && blue_max == 31 &&
809
        red_shift == 11 && green_shift == 5 && blue_shift == 0) {
810
        vs->depth = 2;
811
        vs->write_pixels = vnc_write_pixels_copy;
812
        vs->send_hextile_tile = send_hextile_tile_16;
813
    } else 
814
    if (bits_per_pixel == 8 && 
815
        red_max == 7 && green_max == 7 && blue_max == 3 &&
816
        red_shift == 5 && green_shift == 2 && blue_shift == 0) {
817
        vs->depth = 1;
818
        vs->write_pixels = vnc_write_pixels_copy;
819
        vs->send_hextile_tile = send_hextile_tile_8;
820
    } else 
821
    {
822
        /* generic and slower case */
823
        if (bits_per_pixel != 8 &&
824
            bits_per_pixel != 16 &&
825
            bits_per_pixel != 32)
826
            goto fail;
827
        vs->depth = 4;
828
        vs->red_shift = red_shift;
829
        vs->red_max = red_max;
830
        vs->red_shift1 = 24 - compute_nbits(red_max);
831
        vs->green_shift = green_shift;
832
        vs->green_max = green_max;
833
        vs->green_shift1 = 16 - compute_nbits(green_max);
834
        vs->blue_shift = blue_shift;
835
        vs->blue_max = blue_max;
836
        vs->blue_shift1 = 8 - compute_nbits(blue_max);
837
        vs->pix_bpp = bits_per_pixel / 8;
838
        vs->pix_big_endian = big_endian_flag;
839
        vs->write_pixels = vnc_write_pixels_generic;
840
        vs->send_hextile_tile = send_hextile_tile_generic;
841
    }
842

    
843
    vnc_dpy_resize(vs->ds, vs->ds->width, vs->ds->height);
844
    memset(vs->dirty_row, 0xFF, sizeof(vs->dirty_row));
845
    memset(vs->old_data, 42, vs->ds->linesize * vs->ds->height);
846

    
847
    vga_hw_invalidate();
848
    vga_hw_update();
849
}
850

    
851
static int protocol_client_msg(VncState *vs, char *data, size_t len)
852
{
853
    int i;
854
    uint16_t limit;
855

    
856
    switch (data[0]) {
857
    case 0:
858
        if (len == 1)
859
            return 20;
860

    
861
        set_pixel_format(vs, read_u8(data, 4), read_u8(data, 5),
862
                         read_u8(data, 6), read_u8(data, 7),
863
                         read_u16(data, 8), read_u16(data, 10),
864
                         read_u16(data, 12), read_u8(data, 14),
865
                         read_u8(data, 15), read_u8(data, 16));
866
        break;
867
    case 2:
868
        if (len == 1)
869
            return 4;
870

    
871
        if (len == 4)
872
            return 4 + (read_u16(data, 2) * 4);
873

    
874
        limit = read_u16(data, 2);
875
        for (i = 0; i < limit; i++) {
876
            int32_t val = read_s32(data, 4 + (i * 4));
877
            memcpy(data + 4 + (i * 4), &val, sizeof(val));
878
        }
879

    
880
        set_encodings(vs, (int32_t *)(data + 4), limit);
881
        break;
882
    case 3:
883
        if (len == 1)
884
            return 10;
885

    
886
        framebuffer_update_request(vs,
887
                                   read_u8(data, 1), read_u16(data, 2), read_u16(data, 4),
888
                                   read_u16(data, 6), read_u16(data, 8));
889
        break;
890
    case 4:
891
        if (len == 1)
892
            return 8;
893

    
894
        key_event(vs, read_u8(data, 1), read_u32(data, 4));
895
        break;
896
    case 5:
897
        if (len == 1)
898
            return 6;
899

    
900
        pointer_event(vs, read_u8(data, 1), read_u16(data, 2), read_u16(data, 4));
901
        break;
902
    case 6:
903
        if (len == 1)
904
            return 8;
905

    
906
        if (len == 8)
907
            return 8 + read_u32(data, 4);
908

    
909
        client_cut_text(vs, read_u32(data, 4), data + 8);
910
        break;
911
    default:
912
        printf("Msg: %d\n", data[0]);
913
        vnc_client_error(vs);
914
        break;
915
    }
916
        
917
    vnc_read_when(vs, protocol_client_msg, 1);
918
    return 0;
919
}
920

    
921
static int protocol_client_init(VncState *vs, char *data, size_t len)
922
{
923
    char pad[3] = { 0, 0, 0 };
924

    
925
    vs->width = vs->ds->width;
926
    vs->height = vs->ds->height;
927
    vnc_write_u16(vs, vs->ds->width);
928
    vnc_write_u16(vs, vs->ds->height);
929

    
930
    vnc_write_u8(vs, vs->depth * 8); /* bits-per-pixel */
931
    vnc_write_u8(vs, vs->depth * 8); /* depth */
932
#ifdef WORDS_BIGENDIAN
933
    vnc_write_u8(vs, 1);             /* big-endian-flag */
934
#else
935
    vnc_write_u8(vs, 0);             /* big-endian-flag */
936
#endif
937
    vnc_write_u8(vs, 1);             /* true-color-flag */
938
    if (vs->depth == 4) {
939
        vnc_write_u16(vs, 0xFF);     /* red-max */
940
        vnc_write_u16(vs, 0xFF);     /* green-max */
941
        vnc_write_u16(vs, 0xFF);     /* blue-max */
942
        vnc_write_u8(vs, 16);        /* red-shift */
943
        vnc_write_u8(vs, 8);         /* green-shift */
944
        vnc_write_u8(vs, 0);         /* blue-shift */
945
        vs->send_hextile_tile = send_hextile_tile_32;
946
    } else if (vs->depth == 2) {
947
        vnc_write_u16(vs, 31);       /* red-max */
948
        vnc_write_u16(vs, 63);       /* green-max */
949
        vnc_write_u16(vs, 31);       /* blue-max */
950
        vnc_write_u8(vs, 11);        /* red-shift */
951
        vnc_write_u8(vs, 5);         /* green-shift */
952
        vnc_write_u8(vs, 0);         /* blue-shift */
953
        vs->send_hextile_tile = send_hextile_tile_16;
954
    } else if (vs->depth == 1) {
955
        /* XXX: change QEMU pixel 8 bit pixel format to match the VNC one ? */
956
        vnc_write_u16(vs, 7);        /* red-max */
957
        vnc_write_u16(vs, 7);        /* green-max */
958
        vnc_write_u16(vs, 3);        /* blue-max */
959
        vnc_write_u8(vs, 5);         /* red-shift */
960
        vnc_write_u8(vs, 2);         /* green-shift */
961
        vnc_write_u8(vs, 0);         /* blue-shift */
962
        vs->send_hextile_tile = send_hextile_tile_8;
963
    }
964
    vs->write_pixels = vnc_write_pixels_copy;
965
        
966
    vnc_write(vs, pad, 3);           /* padding */
967

    
968
    vnc_write_u32(vs, 4);        
969
    vnc_write(vs, "QEMU", 4);
970
    vnc_flush(vs);
971

    
972
    vnc_read_when(vs, protocol_client_msg, 1);
973

    
974
    return 0;
975
}
976

    
977
static int protocol_version(VncState *vs, char *version, size_t len)
978
{
979
    char local[13];
980
    int maj, min;
981

    
982
    memcpy(local, version, 12);
983
    local[12] = 0;
984

    
985
    if (sscanf(local, "RFB %03d.%03d\n", &maj, &min) != 2) {
986
        vnc_client_error(vs);
987
        return 0;
988
    }
989

    
990
    vnc_write_u32(vs, 1); /* None */
991
    vnc_flush(vs);
992

    
993
    vnc_read_when(vs, protocol_client_init, 1);
994

    
995
    return 0;
996
}
997

    
998
static void vnc_listen_read(void *opaque)
999
{
1000
    VncState *vs = opaque;
1001
    struct sockaddr_in addr;
1002
    socklen_t addrlen = sizeof(addr);
1003

    
1004
    vs->csock = accept(vs->lsock, (struct sockaddr *)&addr, &addrlen);
1005
    if (vs->csock != -1) {
1006
        socket_set_nonblock(vs->csock);
1007
        qemu_set_fd_handler2(vs->csock, NULL, vnc_client_read, NULL, opaque);
1008
        vnc_write(vs, "RFB 003.003\n", 12);
1009
        vnc_flush(vs);
1010
        vnc_read_when(vs, protocol_version, 12);
1011
        memset(vs->old_data, 0, vs->ds->linesize * vs->ds->height);
1012
        memset(vs->dirty_row, 0xFF, sizeof(vs->dirty_row));
1013
        vs->has_resize = 0;
1014
        vs->has_hextile = 0;
1015
        vs->ds->dpy_copy = NULL;
1016
    }
1017
}
1018

    
1019
void vnc_display_init(DisplayState *ds, int display)
1020
{
1021
    struct sockaddr_in addr;
1022
    int reuse_addr, ret;
1023
    VncState *vs;
1024

    
1025
    vs = qemu_mallocz(sizeof(VncState));
1026
    if (!vs)
1027
        exit(1);
1028

    
1029
    ds->opaque = vs;
1030

    
1031
    vs->lsock = -1;
1032
    vs->csock = -1;
1033
    vs->depth = 4;
1034

    
1035
    vs->ds = ds;
1036

    
1037
    if (!keyboard_layout)
1038
        keyboard_layout = "en-us";
1039

    
1040
    vs->kbd_layout = init_keyboard_layout(keyboard_layout);
1041
    if (!vs->kbd_layout)
1042
        exit(1);
1043

    
1044
    vs->lsock = socket(PF_INET, SOCK_STREAM, 0);
1045
    if (vs->lsock == -1) {
1046
        fprintf(stderr, "Could not create socket\n");
1047
        exit(1);
1048
    }
1049

    
1050
    addr.sin_family = AF_INET;
1051
    addr.sin_port = htons(5900 + display);
1052
    memset(&addr.sin_addr, 0, sizeof(addr.sin_addr));
1053

    
1054
    reuse_addr = 1;
1055
    ret = setsockopt(vs->lsock, SOL_SOCKET, SO_REUSEADDR,
1056
                     (const char *)&reuse_addr, sizeof(reuse_addr));
1057
    if (ret == -1) {
1058
        fprintf(stderr, "setsockopt() failed\n");
1059
        exit(1);
1060
    }
1061

    
1062
    if (bind(vs->lsock, (struct sockaddr *)&addr, sizeof(addr)) == -1) {
1063
        fprintf(stderr, "bind() failed\n");
1064
        exit(1);
1065
    }
1066

    
1067
    if (listen(vs->lsock, 1) == -1) {
1068
        fprintf(stderr, "listen() failed\n");
1069
        exit(1);
1070
    }
1071

    
1072
    ret = qemu_set_fd_handler2(vs->lsock, vnc_listen_poll, vnc_listen_read, NULL, vs);
1073
    if (ret == -1) {
1074
        exit(1);
1075
    }
1076

    
1077
    vs->ds->data = NULL;
1078
    vs->ds->dpy_update = vnc_dpy_update;
1079
    vs->ds->dpy_resize = vnc_dpy_resize;
1080
    vs->ds->dpy_refresh = vnc_dpy_refresh;
1081

    
1082
    memset(vs->dirty_row, 0xFF, sizeof(vs->dirty_row));
1083

    
1084
    vnc_dpy_resize(vs->ds, 640, 400);
1085
}