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d34cab9f TS |
1 | /* |
2 | * QEMU VMware-SVGA "chipset". | |
3 | * | |
4 | * Copyright (c) 2007 Andrzej Zaborowski <[email protected]> | |
5 | * | |
6 | * Permission is hereby granted, free of charge, to any person obtaining a copy | |
7 | * of this software and associated documentation files (the "Software"), to deal | |
8 | * in the Software without restriction, including without limitation the rights | |
9 | * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell | |
10 | * copies of the Software, and to permit persons to whom the Software is | |
11 | * furnished to do so, subject to the following conditions: | |
12 | * | |
13 | * The above copyright notice and this permission notice shall be included in | |
14 | * all copies or substantial portions of the Software. | |
15 | * | |
16 | * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR | |
17 | * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, | |
18 | * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL | |
19 | * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER | |
20 | * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, | |
21 | * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN | |
22 | * THE SOFTWARE. | |
23 | */ | |
47df5154 | 24 | #include "qemu/osdep.h" |
da34e65c | 25 | #include "qapi/error.h" |
83c9f4ca PB |
26 | #include "hw/hw.h" |
27 | #include "hw/loader.h" | |
ac86048b | 28 | #include "trace.h" |
2f487a3d | 29 | #include "ui/vnc.h" |
83c9f4ca | 30 | #include "hw/pci/pci.h" |
d34cab9f | 31 | |
ca0508df | 32 | #undef VERBOSE |
d34cab9f TS |
33 | #define HW_RECT_ACCEL |
34 | #define HW_FILL_ACCEL | |
35 | #define HW_MOUSE_ACCEL | |
36 | ||
47b43a1f | 37 | #include "vga_int.h" |
5b9575c8 BZ |
38 | |
39 | /* See http://vmware-svga.sf.net/ for some documentation on VMWare SVGA */ | |
d34cab9f TS |
40 | |
41 | struct vmsvga_state_s { | |
4e12cd94 | 42 | VGACommonState vga; |
d34cab9f | 43 | |
d34cab9f | 44 | int invalidated; |
d34cab9f TS |
45 | int enable; |
46 | int config; | |
47 | struct { | |
48 | int id; | |
49 | int x; | |
50 | int y; | |
51 | int on; | |
52 | } cursor; | |
53 | ||
d34cab9f TS |
54 | int index; |
55 | int scratch_size; | |
56 | uint32_t *scratch; | |
57 | int new_width; | |
58 | int new_height; | |
eb2f9b02 | 59 | int new_depth; |
d34cab9f TS |
60 | uint32_t guest; |
61 | uint32_t svgaid; | |
d34cab9f | 62 | int syncing; |
d34cab9f | 63 | |
b1950430 | 64 | MemoryRegion fifo_ram; |
f351d050 DA |
65 | uint8_t *fifo_ptr; |
66 | unsigned int fifo_size; | |
f351d050 | 67 | |
7e486f75 GH |
68 | uint32_t *fifo; |
69 | uint32_t fifo_min; | |
70 | uint32_t fifo_max; | |
71 | uint32_t fifo_next; | |
72 | uint32_t fifo_stop; | |
d34cab9f | 73 | |
0d793797 | 74 | #define REDRAW_FIFO_LEN 512 |
d34cab9f TS |
75 | struct vmsvga_rect_s { |
76 | int x, y, w, h; | |
77 | } redraw_fifo[REDRAW_FIFO_LEN]; | |
78 | int redraw_fifo_first, redraw_fifo_last; | |
79 | }; | |
80 | ||
39d45987 PC |
81 | #define TYPE_VMWARE_SVGA "vmware-svga" |
82 | ||
83 | #define VMWARE_SVGA(obj) \ | |
84 | OBJECT_CHECK(struct pci_vmsvga_state_s, (obj), TYPE_VMWARE_SVGA) | |
85 | ||
d34cab9f | 86 | struct pci_vmsvga_state_s { |
af21c740 AF |
87 | /*< private >*/ |
88 | PCIDevice parent_obj; | |
89 | /*< public >*/ | |
90 | ||
d34cab9f | 91 | struct vmsvga_state_s chip; |
b1950430 | 92 | MemoryRegion io_bar; |
d34cab9f TS |
93 | }; |
94 | ||
0d793797 BZ |
95 | #define SVGA_MAGIC 0x900000UL |
96 | #define SVGA_MAKE_ID(ver) (SVGA_MAGIC << 8 | (ver)) | |
97 | #define SVGA_ID_0 SVGA_MAKE_ID(0) | |
98 | #define SVGA_ID_1 SVGA_MAKE_ID(1) | |
99 | #define SVGA_ID_2 SVGA_MAKE_ID(2) | |
d34cab9f | 100 | |
0d793797 BZ |
101 | #define SVGA_LEGACY_BASE_PORT 0x4560 |
102 | #define SVGA_INDEX_PORT 0x0 | |
103 | #define SVGA_VALUE_PORT 0x1 | |
104 | #define SVGA_BIOS_PORT 0x2 | |
d34cab9f TS |
105 | |
106 | #define SVGA_VERSION_2 | |
107 | ||
108 | #ifdef SVGA_VERSION_2 | |
0d793797 BZ |
109 | # define SVGA_ID SVGA_ID_2 |
110 | # define SVGA_IO_BASE SVGA_LEGACY_BASE_PORT | |
111 | # define SVGA_IO_MUL 1 | |
112 | # define SVGA_FIFO_SIZE 0x10000 | |
113 | # define SVGA_PCI_DEVICE_ID PCI_DEVICE_ID_VMWARE_SVGA2 | |
d34cab9f | 114 | #else |
0d793797 BZ |
115 | # define SVGA_ID SVGA_ID_1 |
116 | # define SVGA_IO_BASE SVGA_LEGACY_BASE_PORT | |
117 | # define SVGA_IO_MUL 4 | |
118 | # define SVGA_FIFO_SIZE 0x10000 | |
119 | # define SVGA_PCI_DEVICE_ID PCI_DEVICE_ID_VMWARE_SVGA | |
d34cab9f TS |
120 | #endif |
121 | ||
122 | enum { | |
123 | /* ID 0, 1 and 2 registers */ | |
124 | SVGA_REG_ID = 0, | |
125 | SVGA_REG_ENABLE = 1, | |
126 | SVGA_REG_WIDTH = 2, | |
127 | SVGA_REG_HEIGHT = 3, | |
128 | SVGA_REG_MAX_WIDTH = 4, | |
129 | SVGA_REG_MAX_HEIGHT = 5, | |
130 | SVGA_REG_DEPTH = 6, | |
0d793797 | 131 | SVGA_REG_BITS_PER_PIXEL = 7, /* Current bpp in the guest */ |
d34cab9f TS |
132 | SVGA_REG_PSEUDOCOLOR = 8, |
133 | SVGA_REG_RED_MASK = 9, | |
134 | SVGA_REG_GREEN_MASK = 10, | |
135 | SVGA_REG_BLUE_MASK = 11, | |
136 | SVGA_REG_BYTES_PER_LINE = 12, | |
137 | SVGA_REG_FB_START = 13, | |
138 | SVGA_REG_FB_OFFSET = 14, | |
139 | SVGA_REG_VRAM_SIZE = 15, | |
140 | SVGA_REG_FB_SIZE = 16, | |
141 | ||
142 | /* ID 1 and 2 registers */ | |
143 | SVGA_REG_CAPABILITIES = 17, | |
0d793797 | 144 | SVGA_REG_MEM_START = 18, /* Memory for command FIFO */ |
d34cab9f | 145 | SVGA_REG_MEM_SIZE = 19, |
0d793797 BZ |
146 | SVGA_REG_CONFIG_DONE = 20, /* Set when memory area configured */ |
147 | SVGA_REG_SYNC = 21, /* Write to force synchronization */ | |
148 | SVGA_REG_BUSY = 22, /* Read to check if sync is done */ | |
149 | SVGA_REG_GUEST_ID = 23, /* Set guest OS identifier */ | |
150 | SVGA_REG_CURSOR_ID = 24, /* ID of cursor */ | |
151 | SVGA_REG_CURSOR_X = 25, /* Set cursor X position */ | |
152 | SVGA_REG_CURSOR_Y = 26, /* Set cursor Y position */ | |
153 | SVGA_REG_CURSOR_ON = 27, /* Turn cursor on/off */ | |
154 | SVGA_REG_HOST_BITS_PER_PIXEL = 28, /* Current bpp in the host */ | |
155 | SVGA_REG_SCRATCH_SIZE = 29, /* Number of scratch registers */ | |
156 | SVGA_REG_MEM_REGS = 30, /* Number of FIFO registers */ | |
157 | SVGA_REG_NUM_DISPLAYS = 31, /* Number of guest displays */ | |
158 | SVGA_REG_PITCHLOCK = 32, /* Fixed pitch for all modes */ | |
159 | ||
160 | SVGA_PALETTE_BASE = 1024, /* Base of SVGA color map */ | |
d34cab9f TS |
161 | SVGA_PALETTE_END = SVGA_PALETTE_BASE + 767, |
162 | SVGA_SCRATCH_BASE = SVGA_PALETTE_BASE + 768, | |
163 | }; | |
164 | ||
0d793797 BZ |
165 | #define SVGA_CAP_NONE 0 |
166 | #define SVGA_CAP_RECT_FILL (1 << 0) | |
167 | #define SVGA_CAP_RECT_COPY (1 << 1) | |
168 | #define SVGA_CAP_RECT_PAT_FILL (1 << 2) | |
169 | #define SVGA_CAP_LEGACY_OFFSCREEN (1 << 3) | |
170 | #define SVGA_CAP_RASTER_OP (1 << 4) | |
171 | #define SVGA_CAP_CURSOR (1 << 5) | |
172 | #define SVGA_CAP_CURSOR_BYPASS (1 << 6) | |
173 | #define SVGA_CAP_CURSOR_BYPASS_2 (1 << 7) | |
174 | #define SVGA_CAP_8BIT_EMULATION (1 << 8) | |
175 | #define SVGA_CAP_ALPHA_CURSOR (1 << 9) | |
176 | #define SVGA_CAP_GLYPH (1 << 10) | |
177 | #define SVGA_CAP_GLYPH_CLIPPING (1 << 11) | |
178 | #define SVGA_CAP_OFFSCREEN_1 (1 << 12) | |
179 | #define SVGA_CAP_ALPHA_BLEND (1 << 13) | |
180 | #define SVGA_CAP_3D (1 << 14) | |
181 | #define SVGA_CAP_EXTENDED_FIFO (1 << 15) | |
182 | #define SVGA_CAP_MULTIMON (1 << 16) | |
183 | #define SVGA_CAP_PITCHLOCK (1 << 17) | |
d34cab9f TS |
184 | |
185 | /* | |
186 | * FIFO offsets (seen as an array of 32-bit words) | |
187 | */ | |
188 | enum { | |
189 | /* | |
190 | * The original defined FIFO offsets | |
191 | */ | |
192 | SVGA_FIFO_MIN = 0, | |
0d793797 | 193 | SVGA_FIFO_MAX, /* The distance from MIN to MAX must be at least 10K */ |
7e486f75 | 194 | SVGA_FIFO_NEXT, |
d34cab9f TS |
195 | SVGA_FIFO_STOP, |
196 | ||
197 | /* | |
198 | * Additional offsets added as of SVGA_CAP_EXTENDED_FIFO | |
199 | */ | |
200 | SVGA_FIFO_CAPABILITIES = 4, | |
201 | SVGA_FIFO_FLAGS, | |
202 | SVGA_FIFO_FENCE, | |
203 | SVGA_FIFO_3D_HWVERSION, | |
204 | SVGA_FIFO_PITCHLOCK, | |
205 | }; | |
206 | ||
0d793797 BZ |
207 | #define SVGA_FIFO_CAP_NONE 0 |
208 | #define SVGA_FIFO_CAP_FENCE (1 << 0) | |
209 | #define SVGA_FIFO_CAP_ACCELFRONT (1 << 1) | |
210 | #define SVGA_FIFO_CAP_PITCHLOCK (1 << 2) | |
d34cab9f | 211 | |
0d793797 BZ |
212 | #define SVGA_FIFO_FLAG_NONE 0 |
213 | #define SVGA_FIFO_FLAG_ACCELFRONT (1 << 0) | |
d34cab9f TS |
214 | |
215 | /* These values can probably be changed arbitrarily. */ | |
0d793797 | 216 | #define SVGA_SCRATCH_SIZE 0x8000 |
2f487a3d | 217 | #define SVGA_MAX_WIDTH ROUND_UP(2360, VNC_DIRTY_PIXELS_PER_BIT) |
0d793797 | 218 | #define SVGA_MAX_HEIGHT 1770 |
d34cab9f TS |
219 | |
220 | #ifdef VERBOSE | |
0d793797 | 221 | # define GUEST_OS_BASE 0x5001 |
d34cab9f | 222 | static const char *vmsvga_guest_id[] = { |
f707cfba AZ |
223 | [0x00] = "Dos", |
224 | [0x01] = "Windows 3.1", | |
225 | [0x02] = "Windows 95", | |
226 | [0x03] = "Windows 98", | |
227 | [0x04] = "Windows ME", | |
228 | [0x05] = "Windows NT", | |
229 | [0x06] = "Windows 2000", | |
230 | [0x07] = "Linux", | |
231 | [0x08] = "OS/2", | |
511d2b14 | 232 | [0x09] = "an unknown OS", |
f707cfba AZ |
233 | [0x0a] = "BSD", |
234 | [0x0b] = "Whistler", | |
511d2b14 BS |
235 | [0x0c] = "an unknown OS", |
236 | [0x0d] = "an unknown OS", | |
237 | [0x0e] = "an unknown OS", | |
238 | [0x0f] = "an unknown OS", | |
239 | [0x10] = "an unknown OS", | |
240 | [0x11] = "an unknown OS", | |
241 | [0x12] = "an unknown OS", | |
242 | [0x13] = "an unknown OS", | |
243 | [0x14] = "an unknown OS", | |
f707cfba | 244 | [0x15] = "Windows 2003", |
d34cab9f TS |
245 | }; |
246 | #endif | |
247 | ||
248 | enum { | |
249 | SVGA_CMD_INVALID_CMD = 0, | |
250 | SVGA_CMD_UPDATE = 1, | |
251 | SVGA_CMD_RECT_FILL = 2, | |
252 | SVGA_CMD_RECT_COPY = 3, | |
253 | SVGA_CMD_DEFINE_BITMAP = 4, | |
254 | SVGA_CMD_DEFINE_BITMAP_SCANLINE = 5, | |
255 | SVGA_CMD_DEFINE_PIXMAP = 6, | |
256 | SVGA_CMD_DEFINE_PIXMAP_SCANLINE = 7, | |
257 | SVGA_CMD_RECT_BITMAP_FILL = 8, | |
258 | SVGA_CMD_RECT_PIXMAP_FILL = 9, | |
259 | SVGA_CMD_RECT_BITMAP_COPY = 10, | |
260 | SVGA_CMD_RECT_PIXMAP_COPY = 11, | |
261 | SVGA_CMD_FREE_OBJECT = 12, | |
262 | SVGA_CMD_RECT_ROP_FILL = 13, | |
263 | SVGA_CMD_RECT_ROP_COPY = 14, | |
264 | SVGA_CMD_RECT_ROP_BITMAP_FILL = 15, | |
265 | SVGA_CMD_RECT_ROP_PIXMAP_FILL = 16, | |
266 | SVGA_CMD_RECT_ROP_BITMAP_COPY = 17, | |
267 | SVGA_CMD_RECT_ROP_PIXMAP_COPY = 18, | |
268 | SVGA_CMD_DEFINE_CURSOR = 19, | |
269 | SVGA_CMD_DISPLAY_CURSOR = 20, | |
270 | SVGA_CMD_MOVE_CURSOR = 21, | |
271 | SVGA_CMD_DEFINE_ALPHA_CURSOR = 22, | |
272 | SVGA_CMD_DRAW_GLYPH = 23, | |
273 | SVGA_CMD_DRAW_GLYPH_CLIPPED = 24, | |
274 | SVGA_CMD_UPDATE_VERBOSE = 25, | |
275 | SVGA_CMD_SURFACE_FILL = 26, | |
276 | SVGA_CMD_SURFACE_COPY = 27, | |
277 | SVGA_CMD_SURFACE_ALPHA_BLEND = 28, | |
278 | SVGA_CMD_FRONT_ROP_FILL = 29, | |
279 | SVGA_CMD_FENCE = 30, | |
280 | }; | |
281 | ||
282 | /* Legal values for the SVGA_REG_CURSOR_ON register in cursor bypass mode */ | |
283 | enum { | |
284 | SVGA_CURSOR_ON_HIDE = 0, | |
285 | SVGA_CURSOR_ON_SHOW = 1, | |
286 | SVGA_CURSOR_ON_REMOVE_FROM_FB = 2, | |
287 | SVGA_CURSOR_ON_RESTORE_TO_FB = 3, | |
288 | }; | |
289 | ||
07258900 GH |
290 | static inline bool vmsvga_verify_rect(DisplaySurface *surface, |
291 | const char *name, | |
292 | int x, int y, int w, int h) | |
293 | { | |
294 | if (x < 0) { | |
295 | fprintf(stderr, "%s: x was < 0 (%d)\n", name, x); | |
296 | return false; | |
297 | } | |
298 | if (x > SVGA_MAX_WIDTH) { | |
299 | fprintf(stderr, "%s: x was > %d (%d)\n", name, SVGA_MAX_WIDTH, x); | |
300 | return false; | |
301 | } | |
302 | if (w < 0) { | |
303 | fprintf(stderr, "%s: w was < 0 (%d)\n", name, w); | |
304 | return false; | |
305 | } | |
306 | if (w > SVGA_MAX_WIDTH) { | |
307 | fprintf(stderr, "%s: w was > %d (%d)\n", name, SVGA_MAX_WIDTH, w); | |
308 | return false; | |
309 | } | |
310 | if (x + w > surface_width(surface)) { | |
311 | fprintf(stderr, "%s: width was > %d (x: %d, w: %d)\n", | |
312 | name, surface_width(surface), x, w); | |
313 | return false; | |
314 | } | |
315 | ||
316 | if (y < 0) { | |
317 | fprintf(stderr, "%s: y was < 0 (%d)\n", name, y); | |
318 | return false; | |
319 | } | |
320 | if (y > SVGA_MAX_HEIGHT) { | |
321 | fprintf(stderr, "%s: y was > %d (%d)\n", name, SVGA_MAX_HEIGHT, y); | |
322 | return false; | |
323 | } | |
324 | if (h < 0) { | |
325 | fprintf(stderr, "%s: h was < 0 (%d)\n", name, h); | |
326 | return false; | |
327 | } | |
328 | if (h > SVGA_MAX_HEIGHT) { | |
329 | fprintf(stderr, "%s: h was > %d (%d)\n", name, SVGA_MAX_HEIGHT, h); | |
330 | return false; | |
331 | } | |
332 | if (y + h > surface_height(surface)) { | |
333 | fprintf(stderr, "%s: update height > %d (y: %d, h: %d)\n", | |
334 | name, surface_height(surface), y, h); | |
335 | return false; | |
336 | } | |
337 | ||
338 | return true; | |
339 | } | |
340 | ||
d34cab9f | 341 | static inline void vmsvga_update_rect(struct vmsvga_state_s *s, |
07258900 | 342 | int x, int y, int w, int h) |
d34cab9f | 343 | { |
c78f7137 | 344 | DisplaySurface *surface = qemu_console_surface(s->vga.con); |
a8fbaf96 AZ |
345 | int line; |
346 | int bypl; | |
347 | int width; | |
348 | int start; | |
349 | uint8_t *src; | |
350 | uint8_t *dst; | |
351 | ||
1735fe1e GH |
352 | if (!vmsvga_verify_rect(surface, __func__, x, y, w, h)) { |
353 | /* go for a fullscreen update as fallback */ | |
8cb6bfb5 | 354 | x = 0; |
8cb6bfb5 | 355 | y = 0; |
1735fe1e GH |
356 | w = surface_width(surface); |
357 | h = surface_height(surface); | |
a8fbaf96 AZ |
358 | } |
359 | ||
c78f7137 GH |
360 | bypl = surface_stride(surface); |
361 | width = surface_bytes_per_pixel(surface) * w; | |
362 | start = surface_bytes_per_pixel(surface) * x + bypl * y; | |
4e12cd94 | 363 | src = s->vga.vram_ptr + start; |
c78f7137 | 364 | dst = surface_data(surface) + start; |
d34cab9f | 365 | |
0d793797 | 366 | for (line = h; line > 0; line--, src += bypl, dst += bypl) { |
d34cab9f | 367 | memcpy(dst, src, width); |
0d793797 | 368 | } |
c78f7137 | 369 | dpy_gfx_update(s->vga.con, x, y, w, h); |
d34cab9f TS |
370 | } |
371 | ||
d34cab9f TS |
372 | static inline void vmsvga_update_rect_delayed(struct vmsvga_state_s *s, |
373 | int x, int y, int w, int h) | |
374 | { | |
0d793797 BZ |
375 | struct vmsvga_rect_s *rect = &s->redraw_fifo[s->redraw_fifo_last++]; |
376 | ||
d34cab9f TS |
377 | s->redraw_fifo_last &= REDRAW_FIFO_LEN - 1; |
378 | rect->x = x; | |
379 | rect->y = y; | |
380 | rect->w = w; | |
381 | rect->h = h; | |
382 | } | |
d34cab9f TS |
383 | |
384 | static inline void vmsvga_update_rect_flush(struct vmsvga_state_s *s) | |
385 | { | |
386 | struct vmsvga_rect_s *rect; | |
0d793797 | 387 | |
d34cab9f TS |
388 | if (s->invalidated) { |
389 | s->redraw_fifo_first = s->redraw_fifo_last; | |
390 | return; | |
391 | } | |
392 | /* Overlapping region updates can be optimised out here - if someone | |
393 | * knows a smart algorithm to do that, please share. */ | |
394 | while (s->redraw_fifo_first != s->redraw_fifo_last) { | |
0d793797 | 395 | rect = &s->redraw_fifo[s->redraw_fifo_first++]; |
d34cab9f TS |
396 | s->redraw_fifo_first &= REDRAW_FIFO_LEN - 1; |
397 | vmsvga_update_rect(s, rect->x, rect->y, rect->w, rect->h); | |
398 | } | |
399 | } | |
400 | ||
401 | #ifdef HW_RECT_ACCEL | |
61b41b4c | 402 | static inline int vmsvga_copy_rect(struct vmsvga_state_s *s, |
d34cab9f TS |
403 | int x0, int y0, int x1, int y1, int w, int h) |
404 | { | |
c78f7137 | 405 | DisplaySurface *surface = qemu_console_surface(s->vga.con); |
4e12cd94 | 406 | uint8_t *vram = s->vga.vram_ptr; |
c78f7137 GH |
407 | int bypl = surface_stride(surface); |
408 | int bypp = surface_bytes_per_pixel(surface); | |
aa32b38c | 409 | int width = bypp * w; |
d34cab9f TS |
410 | int line = h; |
411 | uint8_t *ptr[2]; | |
412 | ||
61b41b4c GH |
413 | if (!vmsvga_verify_rect(surface, "vmsvga_copy_rect/src", x0, y0, w, h)) { |
414 | return -1; | |
415 | } | |
416 | if (!vmsvga_verify_rect(surface, "vmsvga_copy_rect/dst", x1, y1, w, h)) { | |
417 | return -1; | |
418 | } | |
419 | ||
8d121d49 | 420 | if (y1 > y0) { |
aa32b38c BZ |
421 | ptr[0] = vram + bypp * x0 + bypl * (y0 + h - 1); |
422 | ptr[1] = vram + bypp * x1 + bypl * (y1 + h - 1); | |
8d121d49 JK |
423 | for (; line > 0; line --, ptr[0] -= bypl, ptr[1] -= bypl) { |
424 | memmove(ptr[1], ptr[0], width); | |
425 | } | |
426 | } else { | |
aa32b38c BZ |
427 | ptr[0] = vram + bypp * x0 + bypl * y0; |
428 | ptr[1] = vram + bypp * x1 + bypl * y1; | |
8d121d49 JK |
429 | for (; line > 0; line --, ptr[0] += bypl, ptr[1] += bypl) { |
430 | memmove(ptr[1], ptr[0], width); | |
d34cab9f TS |
431 | } |
432 | } | |
433 | ||
434 | vmsvga_update_rect_delayed(s, x1, y1, w, h); | |
61b41b4c | 435 | return 0; |
d34cab9f TS |
436 | } |
437 | #endif | |
438 | ||
439 | #ifdef HW_FILL_ACCEL | |
bd9ccd85 | 440 | static inline int vmsvga_fill_rect(struct vmsvga_state_s *s, |
d34cab9f TS |
441 | uint32_t c, int x, int y, int w, int h) |
442 | { | |
c78f7137 GH |
443 | DisplaySurface *surface = qemu_console_surface(s->vga.con); |
444 | int bypl = surface_stride(surface); | |
445 | int width = surface_bytes_per_pixel(surface) * w; | |
d34cab9f TS |
446 | int line = h; |
447 | int column; | |
aa32b38c | 448 | uint8_t *fst; |
d34cab9f TS |
449 | uint8_t *dst; |
450 | uint8_t *src; | |
451 | uint8_t col[4]; | |
452 | ||
bd9ccd85 GH |
453 | if (!vmsvga_verify_rect(surface, __func__, x, y, w, h)) { |
454 | return -1; | |
455 | } | |
456 | ||
8d121d49 JK |
457 | col[0] = c; |
458 | col[1] = c >> 8; | |
459 | col[2] = c >> 16; | |
460 | col[3] = c >> 24; | |
461 | ||
c78f7137 | 462 | fst = s->vga.vram_ptr + surface_bytes_per_pixel(surface) * x + bypl * y; |
aa32b38c | 463 | |
8d121d49 JK |
464 | if (line--) { |
465 | dst = fst; | |
466 | src = col; | |
467 | for (column = width; column > 0; column--) { | |
468 | *(dst++) = *(src++); | |
c78f7137 | 469 | if (src - col == surface_bytes_per_pixel(surface)) { |
8d121d49 | 470 | src = col; |
d34cab9f TS |
471 | } |
472 | } | |
8d121d49 JK |
473 | dst = fst; |
474 | for (; line > 0; line--) { | |
475 | dst += bypl; | |
476 | memcpy(dst, fst, width); | |
477 | } | |
d34cab9f TS |
478 | } |
479 | ||
480 | vmsvga_update_rect_delayed(s, x, y, w, h); | |
bd9ccd85 | 481 | return 0; |
d34cab9f TS |
482 | } |
483 | #endif | |
484 | ||
485 | struct vmsvga_cursor_definition_s { | |
5829b097 GH |
486 | uint32_t width; |
487 | uint32_t height; | |
d34cab9f | 488 | int id; |
5829b097 | 489 | uint32_t bpp; |
d34cab9f TS |
490 | int hot_x; |
491 | int hot_y; | |
492 | uint32_t mask[1024]; | |
8095cb3e | 493 | uint32_t image[4096]; |
d34cab9f TS |
494 | }; |
495 | ||
0d793797 BZ |
496 | #define SVGA_BITMAP_SIZE(w, h) ((((w) + 31) >> 5) * (h)) |
497 | #define SVGA_PIXMAP_SIZE(w, h, bpp) (((((w) * (bpp)) + 31) >> 5) * (h)) | |
d34cab9f TS |
498 | |
499 | #ifdef HW_MOUSE_ACCEL | |
500 | static inline void vmsvga_cursor_define(struct vmsvga_state_s *s, | |
501 | struct vmsvga_cursor_definition_s *c) | |
502 | { | |
fbe6d7a4 GH |
503 | QEMUCursor *qc; |
504 | int i, pixels; | |
505 | ||
506 | qc = cursor_alloc(c->width, c->height); | |
507 | qc->hot_x = c->hot_x; | |
508 | qc->hot_y = c->hot_y; | |
509 | switch (c->bpp) { | |
510 | case 1: | |
0d793797 BZ |
511 | cursor_set_mono(qc, 0xffffff, 0x000000, (void *)c->image, |
512 | 1, (void *)c->mask); | |
fbe6d7a4 GH |
513 | #ifdef DEBUG |
514 | cursor_print_ascii_art(qc, "vmware/mono"); | |
515 | #endif | |
516 | break; | |
517 | case 32: | |
518 | /* fill alpha channel from mask, set color to zero */ | |
0d793797 BZ |
519 | cursor_set_mono(qc, 0x000000, 0x000000, (void *)c->mask, |
520 | 1, (void *)c->mask); | |
fbe6d7a4 GH |
521 | /* add in rgb values */ |
522 | pixels = c->width * c->height; | |
523 | for (i = 0; i < pixels; i++) { | |
524 | qc->data[i] |= c->image[i] & 0xffffff; | |
525 | } | |
526 | #ifdef DEBUG | |
527 | cursor_print_ascii_art(qc, "vmware/32bit"); | |
528 | #endif | |
529 | break; | |
530 | default: | |
531 | fprintf(stderr, "%s: unhandled bpp %d, using fallback cursor\n", | |
0d793797 | 532 | __func__, c->bpp); |
fbe6d7a4 GH |
533 | cursor_put(qc); |
534 | qc = cursor_builtin_left_ptr(); | |
535 | } | |
d34cab9f | 536 | |
c78f7137 | 537 | dpy_cursor_define(s->vga.con, qc); |
fbe6d7a4 | 538 | cursor_put(qc); |
d34cab9f TS |
539 | } |
540 | #endif | |
541 | ||
4dedc07f | 542 | static inline int vmsvga_fifo_length(struct vmsvga_state_s *s) |
d34cab9f | 543 | { |
4dedc07f | 544 | int num; |
0d793797 BZ |
545 | |
546 | if (!s->config || !s->enable) { | |
4dedc07f | 547 | return 0; |
0d793797 | 548 | } |
52136026 | 549 | |
7e486f75 GH |
550 | s->fifo_min = le32_to_cpu(s->fifo[SVGA_FIFO_MIN]); |
551 | s->fifo_max = le32_to_cpu(s->fifo[SVGA_FIFO_MAX]); | |
552 | s->fifo_next = le32_to_cpu(s->fifo[SVGA_FIFO_NEXT]); | |
553 | s->fifo_stop = le32_to_cpu(s->fifo[SVGA_FIFO_STOP]); | |
554 | ||
52136026 | 555 | /* Check range and alignment. */ |
7e486f75 | 556 | if ((s->fifo_min | s->fifo_max | s->fifo_next | s->fifo_stop) & 3) { |
52136026 GH |
557 | return 0; |
558 | } | |
7e486f75 | 559 | if (s->fifo_min < sizeof(uint32_t) * 4) { |
52136026 GH |
560 | return 0; |
561 | } | |
7e486f75 GH |
562 | if (s->fifo_max > SVGA_FIFO_SIZE || |
563 | s->fifo_min >= SVGA_FIFO_SIZE || | |
564 | s->fifo_stop >= SVGA_FIFO_SIZE || | |
565 | s->fifo_next >= SVGA_FIFO_SIZE) { | |
52136026 GH |
566 | return 0; |
567 | } | |
7e486f75 | 568 | if (s->fifo_max < s->fifo_min + 10 * 1024) { |
52136026 GH |
569 | return 0; |
570 | } | |
571 | ||
7e486f75 | 572 | num = s->fifo_next - s->fifo_stop; |
0d793797 | 573 | if (num < 0) { |
7e486f75 | 574 | num += s->fifo_max - s->fifo_min; |
0d793797 | 575 | } |
4dedc07f | 576 | return num >> 2; |
d34cab9f TS |
577 | } |
578 | ||
ff9cf2cb | 579 | static inline uint32_t vmsvga_fifo_read_raw(struct vmsvga_state_s *s) |
d34cab9f | 580 | { |
7e486f75 | 581 | uint32_t cmd = s->fifo[s->fifo_stop >> 2]; |
0d793797 | 582 | |
7e486f75 GH |
583 | s->fifo_stop += 4; |
584 | if (s->fifo_stop >= s->fifo_max) { | |
585 | s->fifo_stop = s->fifo_min; | |
0d793797 | 586 | } |
7e486f75 | 587 | s->fifo[SVGA_FIFO_STOP] = cpu_to_le32(s->fifo_stop); |
d34cab9f TS |
588 | return cmd; |
589 | } | |
590 | ||
ff9cf2cb AZ |
591 | static inline uint32_t vmsvga_fifo_read(struct vmsvga_state_s *s) |
592 | { | |
593 | return le32_to_cpu(vmsvga_fifo_read_raw(s)); | |
594 | } | |
595 | ||
d34cab9f TS |
596 | static void vmsvga_fifo_run(struct vmsvga_state_s *s) |
597 | { | |
598 | uint32_t cmd, colour; | |
4e68a0ee | 599 | int args, len, maxloop = 1024; |
d34cab9f TS |
600 | int x, y, dx, dy, width, height; |
601 | struct vmsvga_cursor_definition_s cursor; | |
4dedc07f AZ |
602 | uint32_t cmd_start; |
603 | ||
604 | len = vmsvga_fifo_length(s); | |
4e68a0ee | 605 | while (len > 0 && --maxloop > 0) { |
4dedc07f | 606 | /* May need to go back to the start of the command if incomplete */ |
7e486f75 | 607 | cmd_start = s->fifo_stop; |
4dedc07f | 608 | |
d34cab9f TS |
609 | switch (cmd = vmsvga_fifo_read(s)) { |
610 | case SVGA_CMD_UPDATE: | |
611 | case SVGA_CMD_UPDATE_VERBOSE: | |
4dedc07f | 612 | len -= 5; |
0d793797 | 613 | if (len < 0) { |
4dedc07f | 614 | goto rewind; |
0d793797 | 615 | } |
4dedc07f | 616 | |
d34cab9f TS |
617 | x = vmsvga_fifo_read(s); |
618 | y = vmsvga_fifo_read(s); | |
619 | width = vmsvga_fifo_read(s); | |
620 | height = vmsvga_fifo_read(s); | |
621 | vmsvga_update_rect_delayed(s, x, y, width, height); | |
622 | break; | |
623 | ||
624 | case SVGA_CMD_RECT_FILL: | |
4dedc07f | 625 | len -= 6; |
0d793797 | 626 | if (len < 0) { |
4dedc07f | 627 | goto rewind; |
0d793797 | 628 | } |
4dedc07f | 629 | |
d34cab9f TS |
630 | colour = vmsvga_fifo_read(s); |
631 | x = vmsvga_fifo_read(s); | |
632 | y = vmsvga_fifo_read(s); | |
633 | width = vmsvga_fifo_read(s); | |
634 | height = vmsvga_fifo_read(s); | |
635 | #ifdef HW_FILL_ACCEL | |
bd9ccd85 GH |
636 | if (vmsvga_fill_rect(s, colour, x, y, width, height) == 0) { |
637 | break; | |
638 | } | |
639 | #endif | |
4dedc07f | 640 | args = 0; |
d34cab9f | 641 | goto badcmd; |
d34cab9f TS |
642 | |
643 | case SVGA_CMD_RECT_COPY: | |
4dedc07f | 644 | len -= 7; |
0d793797 | 645 | if (len < 0) { |
4dedc07f | 646 | goto rewind; |
0d793797 | 647 | } |
4dedc07f | 648 | |
d34cab9f TS |
649 | x = vmsvga_fifo_read(s); |
650 | y = vmsvga_fifo_read(s); | |
651 | dx = vmsvga_fifo_read(s); | |
652 | dy = vmsvga_fifo_read(s); | |
653 | width = vmsvga_fifo_read(s); | |
654 | height = vmsvga_fifo_read(s); | |
655 | #ifdef HW_RECT_ACCEL | |
61b41b4c GH |
656 | if (vmsvga_copy_rect(s, x, y, dx, dy, width, height) == 0) { |
657 | break; | |
658 | } | |
659 | #endif | |
4dedc07f | 660 | args = 0; |
d34cab9f | 661 | goto badcmd; |
d34cab9f TS |
662 | |
663 | case SVGA_CMD_DEFINE_CURSOR: | |
4dedc07f | 664 | len -= 8; |
0d793797 | 665 | if (len < 0) { |
4dedc07f | 666 | goto rewind; |
0d793797 | 667 | } |
4dedc07f | 668 | |
d34cab9f TS |
669 | cursor.id = vmsvga_fifo_read(s); |
670 | cursor.hot_x = vmsvga_fifo_read(s); | |
671 | cursor.hot_y = vmsvga_fifo_read(s); | |
672 | cursor.width = x = vmsvga_fifo_read(s); | |
673 | cursor.height = y = vmsvga_fifo_read(s); | |
674 | vmsvga_fifo_read(s); | |
675 | cursor.bpp = vmsvga_fifo_read(s); | |
f2d928d4 | 676 | |
4dedc07f | 677 | args = SVGA_BITMAP_SIZE(x, y) + SVGA_PIXMAP_SIZE(x, y, cursor.bpp); |
167d97a3 PP |
678 | if (cursor.width > 256 |
679 | || cursor.height > 256 | |
680 | || cursor.bpp > 32 | |
cf7040e2 | 681 | || SVGA_BITMAP_SIZE(x, y) > ARRAY_SIZE(cursor.mask) |
167d97a3 | 682 | || SVGA_PIXMAP_SIZE(x, y, cursor.bpp) |
cf7040e2 | 683 | > ARRAY_SIZE(cursor.image)) { |
9f810beb | 684 | goto badcmd; |
0d793797 | 685 | } |
4dedc07f AZ |
686 | |
687 | len -= args; | |
0d793797 | 688 | if (len < 0) { |
4dedc07f | 689 | goto rewind; |
0d793797 | 690 | } |
f2d928d4 | 691 | |
0d793797 | 692 | for (args = 0; args < SVGA_BITMAP_SIZE(x, y); args++) { |
ff9cf2cb | 693 | cursor.mask[args] = vmsvga_fifo_read_raw(s); |
0d793797 BZ |
694 | } |
695 | for (args = 0; args < SVGA_PIXMAP_SIZE(x, y, cursor.bpp); args++) { | |
ff9cf2cb | 696 | cursor.image[args] = vmsvga_fifo_read_raw(s); |
0d793797 | 697 | } |
d34cab9f TS |
698 | #ifdef HW_MOUSE_ACCEL |
699 | vmsvga_cursor_define(s, &cursor); | |
700 | break; | |
701 | #else | |
702 | args = 0; | |
703 | goto badcmd; | |
704 | #endif | |
705 | ||
706 | /* | |
707 | * Other commands that we at least know the number of arguments | |
708 | * for so we can avoid FIFO desync if driver uses them illegally. | |
709 | */ | |
710 | case SVGA_CMD_DEFINE_ALPHA_CURSOR: | |
4dedc07f | 711 | len -= 6; |
0d793797 | 712 | if (len < 0) { |
4dedc07f | 713 | goto rewind; |
0d793797 | 714 | } |
d34cab9f TS |
715 | vmsvga_fifo_read(s); |
716 | vmsvga_fifo_read(s); | |
717 | vmsvga_fifo_read(s); | |
718 | x = vmsvga_fifo_read(s); | |
719 | y = vmsvga_fifo_read(s); | |
720 | args = x * y; | |
721 | goto badcmd; | |
722 | case SVGA_CMD_RECT_ROP_FILL: | |
723 | args = 6; | |
724 | goto badcmd; | |
725 | case SVGA_CMD_RECT_ROP_COPY: | |
726 | args = 7; | |
727 | goto badcmd; | |
728 | case SVGA_CMD_DRAW_GLYPH_CLIPPED: | |
4dedc07f | 729 | len -= 4; |
0d793797 | 730 | if (len < 0) { |
4dedc07f | 731 | goto rewind; |
0d793797 | 732 | } |
d34cab9f TS |
733 | vmsvga_fifo_read(s); |
734 | vmsvga_fifo_read(s); | |
735 | args = 7 + (vmsvga_fifo_read(s) >> 2); | |
736 | goto badcmd; | |
737 | case SVGA_CMD_SURFACE_ALPHA_BLEND: | |
738 | args = 12; | |
739 | goto badcmd; | |
740 | ||
741 | /* | |
742 | * Other commands that are not listed as depending on any | |
743 | * CAPABILITIES bits, but are not described in the README either. | |
744 | */ | |
745 | case SVGA_CMD_SURFACE_FILL: | |
746 | case SVGA_CMD_SURFACE_COPY: | |
747 | case SVGA_CMD_FRONT_ROP_FILL: | |
748 | case SVGA_CMD_FENCE: | |
749 | case SVGA_CMD_INVALID_CMD: | |
750 | break; /* Nop */ | |
751 | ||
752 | default: | |
4dedc07f | 753 | args = 0; |
d34cab9f | 754 | badcmd: |
4dedc07f | 755 | len -= args; |
0d793797 | 756 | if (len < 0) { |
4dedc07f | 757 | goto rewind; |
0d793797 BZ |
758 | } |
759 | while (args--) { | |
d34cab9f | 760 | vmsvga_fifo_read(s); |
0d793797 | 761 | } |
d34cab9f | 762 | printf("%s: Unknown command 0x%02x in SVGA command FIFO\n", |
0d793797 | 763 | __func__, cmd); |
d34cab9f | 764 | break; |
4dedc07f AZ |
765 | |
766 | rewind: | |
7e486f75 GH |
767 | s->fifo_stop = cmd_start; |
768 | s->fifo[SVGA_FIFO_STOP] = cpu_to_le32(s->fifo_stop); | |
4dedc07f | 769 | break; |
d34cab9f | 770 | } |
4dedc07f | 771 | } |
d34cab9f TS |
772 | |
773 | s->syncing = 0; | |
774 | } | |
775 | ||
776 | static uint32_t vmsvga_index_read(void *opaque, uint32_t address) | |
777 | { | |
467d44b2 | 778 | struct vmsvga_state_s *s = opaque; |
0d793797 | 779 | |
d34cab9f TS |
780 | return s->index; |
781 | } | |
782 | ||
783 | static void vmsvga_index_write(void *opaque, uint32_t address, uint32_t index) | |
784 | { | |
467d44b2 | 785 | struct vmsvga_state_s *s = opaque; |
0d793797 | 786 | |
d34cab9f TS |
787 | s->index = index; |
788 | } | |
789 | ||
790 | static uint32_t vmsvga_value_read(void *opaque, uint32_t address) | |
791 | { | |
792 | uint32_t caps; | |
467d44b2 | 793 | struct vmsvga_state_s *s = opaque; |
c78f7137 | 794 | DisplaySurface *surface = qemu_console_surface(s->vga.con); |
eb2f9b02 | 795 | PixelFormat pf; |
7a6404cd | 796 | uint32_t ret; |
0d793797 | 797 | |
d34cab9f TS |
798 | switch (s->index) { |
799 | case SVGA_REG_ID: | |
7a6404cd GH |
800 | ret = s->svgaid; |
801 | break; | |
d34cab9f TS |
802 | |
803 | case SVGA_REG_ENABLE: | |
7a6404cd GH |
804 | ret = s->enable; |
805 | break; | |
d34cab9f TS |
806 | |
807 | case SVGA_REG_WIDTH: | |
eb2f9b02 | 808 | ret = s->new_width ? s->new_width : surface_width(surface); |
7a6404cd | 809 | break; |
d34cab9f TS |
810 | |
811 | case SVGA_REG_HEIGHT: | |
eb2f9b02 | 812 | ret = s->new_height ? s->new_height : surface_height(surface); |
7a6404cd | 813 | break; |
d34cab9f TS |
814 | |
815 | case SVGA_REG_MAX_WIDTH: | |
7a6404cd GH |
816 | ret = SVGA_MAX_WIDTH; |
817 | break; | |
d34cab9f TS |
818 | |
819 | case SVGA_REG_MAX_HEIGHT: | |
7a6404cd GH |
820 | ret = SVGA_MAX_HEIGHT; |
821 | break; | |
d34cab9f TS |
822 | |
823 | case SVGA_REG_DEPTH: | |
eb2f9b02 | 824 | ret = (s->new_depth == 32) ? 24 : s->new_depth; |
7a6404cd | 825 | break; |
d34cab9f TS |
826 | |
827 | case SVGA_REG_BITS_PER_PIXEL: | |
eb2f9b02 GH |
828 | case SVGA_REG_HOST_BITS_PER_PIXEL: |
829 | ret = s->new_depth; | |
7a6404cd | 830 | break; |
d34cab9f TS |
831 | |
832 | case SVGA_REG_PSEUDOCOLOR: | |
7a6404cd GH |
833 | ret = 0x0; |
834 | break; | |
d34cab9f TS |
835 | |
836 | case SVGA_REG_RED_MASK: | |
eb2f9b02 GH |
837 | pf = qemu_default_pixelformat(s->new_depth); |
838 | ret = pf.rmask; | |
7a6404cd | 839 | break; |
aa32b38c | 840 | |
d34cab9f | 841 | case SVGA_REG_GREEN_MASK: |
eb2f9b02 GH |
842 | pf = qemu_default_pixelformat(s->new_depth); |
843 | ret = pf.gmask; | |
7a6404cd | 844 | break; |
aa32b38c | 845 | |
d34cab9f | 846 | case SVGA_REG_BLUE_MASK: |
eb2f9b02 GH |
847 | pf = qemu_default_pixelformat(s->new_depth); |
848 | ret = pf.bmask; | |
7a6404cd | 849 | break; |
d34cab9f TS |
850 | |
851 | case SVGA_REG_BYTES_PER_LINE: | |
eb2f9b02 GH |
852 | if (s->new_width) { |
853 | ret = (s->new_depth * s->new_width) / 8; | |
854 | } else { | |
855 | ret = surface_stride(surface); | |
856 | } | |
7a6404cd | 857 | break; |
d34cab9f | 858 | |
7b619b9a AK |
859 | case SVGA_REG_FB_START: { |
860 | struct pci_vmsvga_state_s *pci_vmsvga | |
861 | = container_of(s, struct pci_vmsvga_state_s, chip); | |
af21c740 | 862 | ret = pci_get_bar_addr(PCI_DEVICE(pci_vmsvga), 1); |
7a6404cd | 863 | break; |
7b619b9a | 864 | } |
d34cab9f TS |
865 | |
866 | case SVGA_REG_FB_OFFSET: | |
7a6404cd GH |
867 | ret = 0x0; |
868 | break; | |
d34cab9f TS |
869 | |
870 | case SVGA_REG_VRAM_SIZE: | |
7a6404cd GH |
871 | ret = s->vga.vram_size; /* No physical VRAM besides the framebuffer */ |
872 | break; | |
d34cab9f TS |
873 | |
874 | case SVGA_REG_FB_SIZE: | |
7a6404cd GH |
875 | ret = s->vga.vram_size; |
876 | break; | |
d34cab9f TS |
877 | |
878 | case SVGA_REG_CAPABILITIES: | |
879 | caps = SVGA_CAP_NONE; | |
880 | #ifdef HW_RECT_ACCEL | |
881 | caps |= SVGA_CAP_RECT_COPY; | |
882 | #endif | |
883 | #ifdef HW_FILL_ACCEL | |
884 | caps |= SVGA_CAP_RECT_FILL; | |
885 | #endif | |
886 | #ifdef HW_MOUSE_ACCEL | |
c78f7137 | 887 | if (dpy_cursor_define_supported(s->vga.con)) { |
d34cab9f TS |
888 | caps |= SVGA_CAP_CURSOR | SVGA_CAP_CURSOR_BYPASS_2 | |
889 | SVGA_CAP_CURSOR_BYPASS; | |
bf2fde70 | 890 | } |
d34cab9f | 891 | #endif |
7a6404cd GH |
892 | ret = caps; |
893 | break; | |
d34cab9f | 894 | |
b1950430 AK |
895 | case SVGA_REG_MEM_START: { |
896 | struct pci_vmsvga_state_s *pci_vmsvga | |
897 | = container_of(s, struct pci_vmsvga_state_s, chip); | |
af21c740 | 898 | ret = pci_get_bar_addr(PCI_DEVICE(pci_vmsvga), 2); |
7a6404cd | 899 | break; |
b1950430 | 900 | } |
d34cab9f TS |
901 | |
902 | case SVGA_REG_MEM_SIZE: | |
7a6404cd GH |
903 | ret = s->fifo_size; |
904 | break; | |
d34cab9f TS |
905 | |
906 | case SVGA_REG_CONFIG_DONE: | |
7a6404cd GH |
907 | ret = s->config; |
908 | break; | |
d34cab9f TS |
909 | |
910 | case SVGA_REG_SYNC: | |
911 | case SVGA_REG_BUSY: | |
7a6404cd GH |
912 | ret = s->syncing; |
913 | break; | |
d34cab9f TS |
914 | |
915 | case SVGA_REG_GUEST_ID: | |
7a6404cd GH |
916 | ret = s->guest; |
917 | break; | |
d34cab9f TS |
918 | |
919 | case SVGA_REG_CURSOR_ID: | |
7a6404cd GH |
920 | ret = s->cursor.id; |
921 | break; | |
d34cab9f TS |
922 | |
923 | case SVGA_REG_CURSOR_X: | |
7a6404cd GH |
924 | ret = s->cursor.x; |
925 | break; | |
d34cab9f TS |
926 | |
927 | case SVGA_REG_CURSOR_Y: | |
e2bb4ae7 | 928 | ret = s->cursor.y; |
7a6404cd | 929 | break; |
d34cab9f TS |
930 | |
931 | case SVGA_REG_CURSOR_ON: | |
7a6404cd GH |
932 | ret = s->cursor.on; |
933 | break; | |
d34cab9f | 934 | |
d34cab9f | 935 | case SVGA_REG_SCRATCH_SIZE: |
7a6404cd GH |
936 | ret = s->scratch_size; |
937 | break; | |
d34cab9f TS |
938 | |
939 | case SVGA_REG_MEM_REGS: | |
940 | case SVGA_REG_NUM_DISPLAYS: | |
941 | case SVGA_REG_PITCHLOCK: | |
942 | case SVGA_PALETTE_BASE ... SVGA_PALETTE_END: | |
7a6404cd GH |
943 | ret = 0; |
944 | break; | |
d34cab9f TS |
945 | |
946 | default: | |
947 | if (s->index >= SVGA_SCRATCH_BASE && | |
0d793797 | 948 | s->index < SVGA_SCRATCH_BASE + s->scratch_size) { |
7a6404cd GH |
949 | ret = s->scratch[s->index - SVGA_SCRATCH_BASE]; |
950 | break; | |
0d793797 BZ |
951 | } |
952 | printf("%s: Bad register %02x\n", __func__, s->index); | |
7a6404cd GH |
953 | ret = 0; |
954 | break; | |
d34cab9f TS |
955 | } |
956 | ||
7a6404cd GH |
957 | if (s->index >= SVGA_SCRATCH_BASE) { |
958 | trace_vmware_scratch_read(s->index, ret); | |
959 | } else if (s->index >= SVGA_PALETTE_BASE) { | |
960 | trace_vmware_palette_read(s->index, ret); | |
961 | } else { | |
962 | trace_vmware_value_read(s->index, ret); | |
963 | } | |
964 | return ret; | |
d34cab9f TS |
965 | } |
966 | ||
967 | static void vmsvga_value_write(void *opaque, uint32_t address, uint32_t value) | |
968 | { | |
467d44b2 | 969 | struct vmsvga_state_s *s = opaque; |
0d793797 | 970 | |
7a6404cd GH |
971 | if (s->index >= SVGA_SCRATCH_BASE) { |
972 | trace_vmware_scratch_write(s->index, value); | |
973 | } else if (s->index >= SVGA_PALETTE_BASE) { | |
974 | trace_vmware_palette_write(s->index, value); | |
975 | } else { | |
976 | trace_vmware_value_write(s->index, value); | |
977 | } | |
d34cab9f TS |
978 | switch (s->index) { |
979 | case SVGA_REG_ID: | |
0d793797 | 980 | if (value == SVGA_ID_2 || value == SVGA_ID_1 || value == SVGA_ID_0) { |
d34cab9f | 981 | s->svgaid = value; |
0d793797 | 982 | } |
d34cab9f TS |
983 | break; |
984 | ||
985 | case SVGA_REG_ENABLE: | |
b51d7b2e | 986 | s->enable = !!value; |
d34cab9f | 987 | s->invalidated = 1; |
380cd056 | 988 | s->vga.hw_ops->invalidate(&s->vga); |
b51d7b2e | 989 | if (s->enable && s->config) { |
9f810beb AZ |
990 | vga_dirty_log_stop(&s->vga); |
991 | } else { | |
992 | vga_dirty_log_start(&s->vga); | |
993 | } | |
d34cab9f TS |
994 | break; |
995 | ||
996 | case SVGA_REG_WIDTH: | |
aa32b38c BZ |
997 | if (value <= SVGA_MAX_WIDTH) { |
998 | s->new_width = value; | |
999 | s->invalidated = 1; | |
1000 | } else { | |
1001 | printf("%s: Bad width: %i\n", __func__, value); | |
1002 | } | |
d34cab9f TS |
1003 | break; |
1004 | ||
1005 | case SVGA_REG_HEIGHT: | |
aa32b38c BZ |
1006 | if (value <= SVGA_MAX_HEIGHT) { |
1007 | s->new_height = value; | |
1008 | s->invalidated = 1; | |
1009 | } else { | |
1010 | printf("%s: Bad height: %i\n", __func__, value); | |
1011 | } | |
d34cab9f TS |
1012 | break; |
1013 | ||
d34cab9f | 1014 | case SVGA_REG_BITS_PER_PIXEL: |
eb2f9b02 | 1015 | if (value != 32) { |
5b9575c8 | 1016 | printf("%s: Bad bits per pixel: %i bits\n", __func__, value); |
d34cab9f | 1017 | s->config = 0; |
eb2f9b02 | 1018 | s->invalidated = 1; |
d34cab9f TS |
1019 | } |
1020 | break; | |
1021 | ||
1022 | case SVGA_REG_CONFIG_DONE: | |
1023 | if (value) { | |
f351d050 | 1024 | s->fifo = (uint32_t *) s->fifo_ptr; |
b51d7b2e | 1025 | vga_dirty_log_stop(&s->vga); |
d34cab9f | 1026 | } |
f707cfba | 1027 | s->config = !!value; |
d34cab9f TS |
1028 | break; |
1029 | ||
1030 | case SVGA_REG_SYNC: | |
1031 | s->syncing = 1; | |
1032 | vmsvga_fifo_run(s); /* Or should we just wait for update_display? */ | |
1033 | break; | |
1034 | ||
1035 | case SVGA_REG_GUEST_ID: | |
1036 | s->guest = value; | |
1037 | #ifdef VERBOSE | |
1038 | if (value >= GUEST_OS_BASE && value < GUEST_OS_BASE + | |
0d793797 BZ |
1039 | ARRAY_SIZE(vmsvga_guest_id)) { |
1040 | printf("%s: guest runs %s.\n", __func__, | |
1041 | vmsvga_guest_id[value - GUEST_OS_BASE]); | |
1042 | } | |
d34cab9f TS |
1043 | #endif |
1044 | break; | |
1045 | ||
1046 | case SVGA_REG_CURSOR_ID: | |
1047 | s->cursor.id = value; | |
1048 | break; | |
1049 | ||
1050 | case SVGA_REG_CURSOR_X: | |
1051 | s->cursor.x = value; | |
1052 | break; | |
1053 | ||
1054 | case SVGA_REG_CURSOR_Y: | |
1055 | s->cursor.y = value; | |
1056 | break; | |
1057 | ||
1058 | case SVGA_REG_CURSOR_ON: | |
1059 | s->cursor.on |= (value == SVGA_CURSOR_ON_SHOW); | |
1060 | s->cursor.on &= (value != SVGA_CURSOR_ON_HIDE); | |
1061 | #ifdef HW_MOUSE_ACCEL | |
bf2fde70 | 1062 | if (value <= SVGA_CURSOR_ON_SHOW) { |
c78f7137 | 1063 | dpy_mouse_set(s->vga.con, s->cursor.x, s->cursor.y, s->cursor.on); |
bf2fde70 | 1064 | } |
d34cab9f TS |
1065 | #endif |
1066 | break; | |
1067 | ||
5b9575c8 | 1068 | case SVGA_REG_DEPTH: |
d34cab9f TS |
1069 | case SVGA_REG_MEM_REGS: |
1070 | case SVGA_REG_NUM_DISPLAYS: | |
1071 | case SVGA_REG_PITCHLOCK: | |
1072 | case SVGA_PALETTE_BASE ... SVGA_PALETTE_END: | |
1073 | break; | |
1074 | ||
1075 | default: | |
1076 | if (s->index >= SVGA_SCRATCH_BASE && | |
1077 | s->index < SVGA_SCRATCH_BASE + s->scratch_size) { | |
1078 | s->scratch[s->index - SVGA_SCRATCH_BASE] = value; | |
1079 | break; | |
1080 | } | |
0d793797 | 1081 | printf("%s: Bad register %02x\n", __func__, s->index); |
d34cab9f TS |
1082 | } |
1083 | } | |
1084 | ||
1085 | static uint32_t vmsvga_bios_read(void *opaque, uint32_t address) | |
1086 | { | |
0d793797 | 1087 | printf("%s: what are we supposed to return?\n", __func__); |
d34cab9f TS |
1088 | return 0xcafe; |
1089 | } | |
1090 | ||
1091 | static void vmsvga_bios_write(void *opaque, uint32_t address, uint32_t data) | |
1092 | { | |
0d793797 | 1093 | printf("%s: what are we supposed to do with (%08x)?\n", __func__, data); |
d34cab9f TS |
1094 | } |
1095 | ||
aa32b38c | 1096 | static inline void vmsvga_check_size(struct vmsvga_state_s *s) |
d34cab9f | 1097 | { |
c78f7137 GH |
1098 | DisplaySurface *surface = qemu_console_surface(s->vga.con); |
1099 | ||
1100 | if (s->new_width != surface_width(surface) || | |
eb2f9b02 GH |
1101 | s->new_height != surface_height(surface) || |
1102 | s->new_depth != surface_bits_per_pixel(surface)) { | |
1103 | int stride = (s->new_depth * s->new_width) / 8; | |
30f1e661 GH |
1104 | pixman_format_code_t format = |
1105 | qemu_default_pixman_format(s->new_depth, true); | |
eb2f9b02 GH |
1106 | trace_vmware_setmode(s->new_width, s->new_height, s->new_depth); |
1107 | surface = qemu_create_displaysurface_from(s->new_width, s->new_height, | |
30f1e661 GH |
1108 | format, stride, |
1109 | s->vga.vram_ptr); | |
eb2f9b02 | 1110 | dpy_gfx_replace_surface(s->vga.con, surface); |
d34cab9f TS |
1111 | s->invalidated = 1; |
1112 | } | |
1113 | } | |
1114 | ||
1115 | static void vmsvga_update_display(void *opaque) | |
1116 | { | |
467d44b2 | 1117 | struct vmsvga_state_s *s = opaque; |
17866fc8 | 1118 | DisplaySurface *surface; |
b51d7b2e | 1119 | |
104bd1dc GH |
1120 | if (!s->enable || !s->config) { |
1121 | /* in standard vga mode */ | |
380cd056 | 1122 | s->vga.hw_ops->gfx_update(&s->vga); |
d34cab9f TS |
1123 | return; |
1124 | } | |
1125 | ||
aa32b38c | 1126 | vmsvga_check_size(s); |
17866fc8 | 1127 | surface = qemu_console_surface(s->vga.con); |
d34cab9f TS |
1128 | |
1129 | vmsvga_fifo_run(s); | |
1130 | vmsvga_update_rect_flush(s); | |
1131 | ||
104bd1dc | 1132 | if (s->invalidated) { |
d34cab9f | 1133 | s->invalidated = 0; |
c78f7137 GH |
1134 | dpy_gfx_update(s->vga.con, 0, 0, |
1135 | surface_width(surface), surface_height(surface)); | |
b51d7b2e | 1136 | } |
d34cab9f TS |
1137 | } |
1138 | ||
8a9501ba | 1139 | static void vmsvga_reset(DeviceState *dev) |
d34cab9f | 1140 | { |
39d45987 | 1141 | struct pci_vmsvga_state_s *pci = VMWARE_SVGA(dev); |
8a9501ba JK |
1142 | struct vmsvga_state_s *s = &pci->chip; |
1143 | ||
d34cab9f TS |
1144 | s->index = 0; |
1145 | s->enable = 0; | |
1146 | s->config = 0; | |
d34cab9f | 1147 | s->svgaid = SVGA_ID; |
d34cab9f TS |
1148 | s->cursor.on = 0; |
1149 | s->redraw_fifo_first = 0; | |
1150 | s->redraw_fifo_last = 0; | |
d34cab9f | 1151 | s->syncing = 0; |
b5cc6e32 AL |
1152 | |
1153 | vga_dirty_log_start(&s->vga); | |
d34cab9f TS |
1154 | } |
1155 | ||
1156 | static void vmsvga_invalidate_display(void *opaque) | |
1157 | { | |
467d44b2 | 1158 | struct vmsvga_state_s *s = opaque; |
d34cab9f | 1159 | if (!s->enable) { |
380cd056 | 1160 | s->vga.hw_ops->invalidate(&s->vga); |
d34cab9f TS |
1161 | return; |
1162 | } | |
1163 | ||
1164 | s->invalidated = 1; | |
1165 | } | |
1166 | ||
c227f099 | 1167 | static void vmsvga_text_update(void *opaque, console_ch_t *chardata) |
4d3b6f6e | 1168 | { |
467d44b2 | 1169 | struct vmsvga_state_s *s = opaque; |
4d3b6f6e | 1170 | |
380cd056 GH |
1171 | if (s->vga.hw_ops->text_update) { |
1172 | s->vga.hw_ops->text_update(&s->vga, chardata); | |
0d793797 | 1173 | } |
4d3b6f6e AZ |
1174 | } |
1175 | ||
bacbe284 | 1176 | static int vmsvga_post_load(void *opaque, int version_id) |
d34cab9f | 1177 | { |
bacbe284 | 1178 | struct vmsvga_state_s *s = opaque; |
d34cab9f TS |
1179 | |
1180 | s->invalidated = 1; | |
0d793797 | 1181 | if (s->config) { |
f351d050 | 1182 | s->fifo = (uint32_t *) s->fifo_ptr; |
0d793797 | 1183 | } |
d34cab9f TS |
1184 | return 0; |
1185 | } | |
1186 | ||
d05ac8fa | 1187 | static const VMStateDescription vmstate_vmware_vga_internal = { |
bacbe284 JQ |
1188 | .name = "vmware_vga_internal", |
1189 | .version_id = 0, | |
1190 | .minimum_version_id = 0, | |
bacbe284 | 1191 | .post_load = vmsvga_post_load, |
d49805ae | 1192 | .fields = (VMStateField[]) { |
d2164ad3 | 1193 | VMSTATE_INT32_EQUAL(new_depth, struct vmsvga_state_s, NULL), |
bacbe284 JQ |
1194 | VMSTATE_INT32(enable, struct vmsvga_state_s), |
1195 | VMSTATE_INT32(config, struct vmsvga_state_s), | |
1196 | VMSTATE_INT32(cursor.id, struct vmsvga_state_s), | |
1197 | VMSTATE_INT32(cursor.x, struct vmsvga_state_s), | |
1198 | VMSTATE_INT32(cursor.y, struct vmsvga_state_s), | |
1199 | VMSTATE_INT32(cursor.on, struct vmsvga_state_s), | |
1200 | VMSTATE_INT32(index, struct vmsvga_state_s), | |
1201 | VMSTATE_VARRAY_INT32(scratch, struct vmsvga_state_s, | |
1202 | scratch_size, 0, vmstate_info_uint32, uint32_t), | |
1203 | VMSTATE_INT32(new_width, struct vmsvga_state_s), | |
1204 | VMSTATE_INT32(new_height, struct vmsvga_state_s), | |
1205 | VMSTATE_UINT32(guest, struct vmsvga_state_s), | |
1206 | VMSTATE_UINT32(svgaid, struct vmsvga_state_s), | |
1207 | VMSTATE_INT32(syncing, struct vmsvga_state_s), | |
5b9575c8 | 1208 | VMSTATE_UNUSED(4), /* was fb_size */ |
bacbe284 JQ |
1209 | VMSTATE_END_OF_LIST() |
1210 | } | |
1211 | }; | |
1212 | ||
d05ac8fa | 1213 | static const VMStateDescription vmstate_vmware_vga = { |
bacbe284 JQ |
1214 | .name = "vmware_vga", |
1215 | .version_id = 0, | |
1216 | .minimum_version_id = 0, | |
d49805ae | 1217 | .fields = (VMStateField[]) { |
af21c740 | 1218 | VMSTATE_PCI_DEVICE(parent_obj, struct pci_vmsvga_state_s), |
bacbe284 JQ |
1219 | VMSTATE_STRUCT(chip, struct pci_vmsvga_state_s, 0, |
1220 | vmstate_vmware_vga_internal, struct vmsvga_state_s), | |
1221 | VMSTATE_END_OF_LIST() | |
1222 | } | |
1223 | }; | |
1224 | ||
380cd056 GH |
1225 | static const GraphicHwOps vmsvga_ops = { |
1226 | .invalidate = vmsvga_invalidate_display, | |
1227 | .gfx_update = vmsvga_update_display, | |
1228 | .text_update = vmsvga_text_update, | |
1229 | }; | |
1230 | ||
aa2beaa1 | 1231 | static void vmsvga_init(DeviceState *dev, struct vmsvga_state_s *s, |
0a039dc7 | 1232 | MemoryRegion *address_space, MemoryRegion *io) |
d34cab9f | 1233 | { |
d34cab9f | 1234 | s->scratch_size = SVGA_SCRATCH_SIZE; |
7267c094 | 1235 | s->scratch = g_malloc(s->scratch_size * 4); |
d34cab9f | 1236 | |
5643706a | 1237 | s->vga.con = graphic_console_init(dev, 0, &vmsvga_ops, s); |
4445b0a6 | 1238 | |
f351d050 | 1239 | s->fifo_size = SVGA_FIFO_SIZE; |
98a99ce0 | 1240 | memory_region_init_ram(&s->fifo_ram, NULL, "vmsvga.fifo", s->fifo_size, |
f8ed85ac | 1241 | &error_fatal); |
b1950430 | 1242 | s->fifo_ptr = memory_region_get_ram_ptr(&s->fifo_ram); |
f351d050 | 1243 | |
e2bbfc8e | 1244 | vga_common_init(&s->vga, OBJECT(dev), true); |
712f0cc7 | 1245 | vga_init(&s->vga, OBJECT(dev), address_space, io, true); |
0be71e32 | 1246 | vmstate_register(NULL, 0, &vmstate_vga_common, &s->vga); |
eb2f9b02 | 1247 | s->new_depth = 32; |
d34cab9f TS |
1248 | } |
1249 | ||
aa32b38c | 1250 | static uint64_t vmsvga_io_read(void *opaque, hwaddr addr, unsigned size) |
1492a3c4 | 1251 | { |
b1950430 AK |
1252 | struct vmsvga_state_s *s = opaque; |
1253 | ||
1254 | switch (addr) { | |
1255 | case SVGA_IO_MUL * SVGA_INDEX_PORT: return vmsvga_index_read(s, addr); | |
1256 | case SVGA_IO_MUL * SVGA_VALUE_PORT: return vmsvga_value_read(s, addr); | |
1257 | case SVGA_IO_MUL * SVGA_BIOS_PORT: return vmsvga_bios_read(s, addr); | |
1258 | default: return -1u; | |
1259 | } | |
1492a3c4 AZ |
1260 | } |
1261 | ||
a8170e5e | 1262 | static void vmsvga_io_write(void *opaque, hwaddr addr, |
b1950430 | 1263 | uint64_t data, unsigned size) |
3016d80b | 1264 | { |
b1950430 | 1265 | struct vmsvga_state_s *s = opaque; |
ee3e41a9 | 1266 | |
b1950430 AK |
1267 | switch (addr) { |
1268 | case SVGA_IO_MUL * SVGA_INDEX_PORT: | |
0ed8b6f6 BS |
1269 | vmsvga_index_write(s, addr, data); |
1270 | break; | |
b1950430 | 1271 | case SVGA_IO_MUL * SVGA_VALUE_PORT: |
0ed8b6f6 BS |
1272 | vmsvga_value_write(s, addr, data); |
1273 | break; | |
b1950430 | 1274 | case SVGA_IO_MUL * SVGA_BIOS_PORT: |
0ed8b6f6 BS |
1275 | vmsvga_bios_write(s, addr, data); |
1276 | break; | |
b1950430 | 1277 | } |
3016d80b AZ |
1278 | } |
1279 | ||
b1950430 AK |
1280 | static const MemoryRegionOps vmsvga_io_ops = { |
1281 | .read = vmsvga_io_read, | |
1282 | .write = vmsvga_io_write, | |
1283 | .endianness = DEVICE_LITTLE_ENDIAN, | |
1284 | .valid = { | |
1285 | .min_access_size = 4, | |
1286 | .max_access_size = 4, | |
04e8cd50 JK |
1287 | .unaligned = true, |
1288 | }, | |
1289 | .impl = { | |
1290 | .unaligned = true, | |
b1950430 AK |
1291 | }, |
1292 | }; | |
f351d050 | 1293 | |
9af21dbe | 1294 | static void pci_vmsvga_realize(PCIDevice *dev, Error **errp) |
d34cab9f | 1295 | { |
39d45987 | 1296 | struct pci_vmsvga_state_s *s = VMWARE_SVGA(dev); |
b1950430 | 1297 | |
af21c740 AF |
1298 | dev->config[PCI_CACHE_LINE_SIZE] = 0x08; |
1299 | dev->config[PCI_LATENCY_TIMER] = 0x40; | |
1300 | dev->config[PCI_INTERRUPT_LINE] = 0xff; /* End */ | |
d34cab9f | 1301 | |
2c9b15ca | 1302 | memory_region_init_io(&s->io_bar, NULL, &vmsvga_io_ops, &s->chip, |
b1950430 | 1303 | "vmsvga-io", 0x10); |
bd8f2f5d | 1304 | memory_region_set_flush_coalesced(&s->io_bar); |
af21c740 | 1305 | pci_register_bar(dev, 0, PCI_BASE_ADDRESS_SPACE_IO, &s->io_bar); |
f351d050 | 1306 | |
aa2beaa1 GH |
1307 | vmsvga_init(DEVICE(dev), &s->chip, |
1308 | pci_address_space(dev), pci_address_space_io(dev)); | |
d34cab9f | 1309 | |
af21c740 | 1310 | pci_register_bar(dev, 1, PCI_BASE_ADDRESS_MEM_PREFETCH, |
aa32b38c | 1311 | &s->chip.vga.vram); |
af21c740 | 1312 | pci_register_bar(dev, 2, PCI_BASE_ADDRESS_MEM_PREFETCH, |
e824b2cc | 1313 | &s->chip.fifo_ram); |
b1950430 | 1314 | |
281a26b1 GH |
1315 | if (!dev->rom_bar) { |
1316 | /* compatibility with pc-0.13 and older */ | |
83118327 | 1317 | vga_init_vbe(&s->chip.vga, OBJECT(dev), pci_address_space(dev)); |
281a26b1 | 1318 | } |
d34cab9f | 1319 | } |
a414c306 | 1320 | |
4a1e244e GH |
1321 | static Property vga_vmware_properties[] = { |
1322 | DEFINE_PROP_UINT32("vgamem_mb", struct pci_vmsvga_state_s, | |
9e56edcf | 1323 | chip.vga.vram_size_mb, 16), |
4a1e244e GH |
1324 | DEFINE_PROP_END_OF_LIST(), |
1325 | }; | |
1326 | ||
40021f08 AL |
1327 | static void vmsvga_class_init(ObjectClass *klass, void *data) |
1328 | { | |
39bffca2 | 1329 | DeviceClass *dc = DEVICE_CLASS(klass); |
40021f08 AL |
1330 | PCIDeviceClass *k = PCI_DEVICE_CLASS(klass); |
1331 | ||
9af21dbe | 1332 | k->realize = pci_vmsvga_realize; |
40021f08 AL |
1333 | k->romfile = "vgabios-vmware.bin"; |
1334 | k->vendor_id = PCI_VENDOR_ID_VMWARE; | |
1335 | k->device_id = SVGA_PCI_DEVICE_ID; | |
1336 | k->class_id = PCI_CLASS_DISPLAY_VGA; | |
1337 | k->subsystem_vendor_id = PCI_VENDOR_ID_VMWARE; | |
1338 | k->subsystem_id = SVGA_PCI_DEVICE_ID; | |
39bffca2 AL |
1339 | dc->reset = vmsvga_reset; |
1340 | dc->vmsd = &vmstate_vmware_vga; | |
4a1e244e | 1341 | dc->props = vga_vmware_properties; |
2897ae02 | 1342 | dc->hotpluggable = false; |
125ee0ed | 1343 | set_bit(DEVICE_CATEGORY_DISPLAY, dc->categories); |
40021f08 AL |
1344 | } |
1345 | ||
8c43a6f0 | 1346 | static const TypeInfo vmsvga_info = { |
39d45987 | 1347 | .name = TYPE_VMWARE_SVGA, |
39bffca2 AL |
1348 | .parent = TYPE_PCI_DEVICE, |
1349 | .instance_size = sizeof(struct pci_vmsvga_state_s), | |
1350 | .class_init = vmsvga_class_init, | |
fd3b02c8 EH |
1351 | .interfaces = (InterfaceInfo[]) { |
1352 | { INTERFACE_CONVENTIONAL_PCI_DEVICE }, | |
1353 | { }, | |
1354 | }, | |
a414c306 GH |
1355 | }; |
1356 | ||
83f7d43a | 1357 | static void vmsvga_register_types(void) |
a414c306 | 1358 | { |
39bffca2 | 1359 | type_register_static(&vmsvga_info); |
a414c306 | 1360 | } |
83f7d43a AF |
1361 | |
1362 | type_init(vmsvga_register_types) |