machfb.c revision 1.23.2.2 1 1.23.2.1 tron /* $NetBSD: machfb.c,v 1.23.2.2 2005/06/08 11:45:53 tron Exp $ */
2 1.1 junyoung
3 1.1 junyoung /*
4 1.1 junyoung * Copyright (c) 2002 Bang Jun-Young
5 1.1 junyoung * All rights reserved.
6 1.1 junyoung *
7 1.1 junyoung * Redistribution and use in source and binary forms, with or without
8 1.1 junyoung * modification, are permitted provided that the following conditions
9 1.1 junyoung * are met:
10 1.1 junyoung * 1. Redistributions of source code must retain the above copyright
11 1.1 junyoung * notice, this list of conditions and the following disclaimer.
12 1.1 junyoung * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 junyoung * notice, this list of conditions and the following disclaimer in the
14 1.1 junyoung * documentation and/or other materials provided with the distribution.
15 1.1 junyoung * 3. The name of the author may not be used to endorse or promote products
16 1.10 junyoung * derived from this software without specific prior written permission.
17 1.1 junyoung *
18 1.1 junyoung * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.1 junyoung * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.1 junyoung * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.1 junyoung * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.1 junyoung * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.1 junyoung * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.1 junyoung * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.1 junyoung * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.1 junyoung * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 1.1 junyoung * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.1 junyoung */
29 1.1 junyoung
30 1.1 junyoung /*
31 1.1 junyoung * Some code is derived from ATI Rage Pro and Derivatives Programmer's Guide.
32 1.1 junyoung */
33 1.1 junyoung
34 1.1 junyoung #include <sys/cdefs.h>
35 1.23.2.2 tron __KERNEL_RCSID(0,
36 1.23.2.2 tron "$NetBSD: machfb.c,v 1.23.2.2 2005/06/08 11:45:53 tron Exp $");
37 1.1 junyoung
38 1.1 junyoung #include <sys/param.h>
39 1.1 junyoung #include <sys/systm.h>
40 1.1 junyoung #include <sys/kernel.h>
41 1.1 junyoung #include <sys/device.h>
42 1.1 junyoung #include <sys/malloc.h>
43 1.1 junyoung #include <sys/callout.h>
44 1.1 junyoung
45 1.3 martin #ifdef __sparc__
46 1.16 martin #include <machine/promlib.h>
47 1.3 martin #endif
48 1.3 martin
49 1.20 martin #ifdef __powerpc__
50 1.20 martin #include <dev/ofw/openfirm.h>
51 1.20 martin #include <dev/ofw/ofw_pci.h>
52 1.20 martin #endif
53 1.20 martin
54 1.1 junyoung #include <dev/ic/videomode.h>
55 1.1 junyoung
56 1.1 junyoung #include <dev/pci/pcivar.h>
57 1.1 junyoung #include <dev/pci/pcireg.h>
58 1.1 junyoung #include <dev/pci/pcidevs.h>
59 1.1 junyoung #include <dev/pci/pciio.h>
60 1.1 junyoung #include <dev/pci/machfbreg.h>
61 1.1 junyoung
62 1.1 junyoung #include <dev/wscons/wsdisplayvar.h>
63 1.1 junyoung #include <dev/wscons/wsconsio.h>
64 1.1 junyoung #include <dev/wsfont/wsfont.h>
65 1.1 junyoung #include <dev/rasops/rasops.h>
66 1.1 junyoung
67 1.1 junyoung #define MACH64_REG_SIZE 1024
68 1.3 martin #define MACH64_REG_OFF 0x7ffc00
69 1.1 junyoung
70 1.1 junyoung #define NBARS 3 /* number of Mach64 PCI BARs */
71 1.1 junyoung
72 1.1 junyoung struct vga_bar {
73 1.1 junyoung bus_addr_t vb_base;
74 1.20 martin pcireg_t vb_busaddr;
75 1.1 junyoung bus_size_t vb_size;
76 1.1 junyoung pcireg_t vb_type;
77 1.1 junyoung int vb_flags;
78 1.1 junyoung };
79 1.1 junyoung
80 1.1 junyoung struct mach64_softc {
81 1.1 junyoung struct device sc_dev;
82 1.1 junyoung pci_chipset_tag_t sc_pc;
83 1.1 junyoung pcitag_t sc_pcitag;
84 1.1 junyoung
85 1.1 junyoung struct vga_bar sc_bars[NBARS];
86 1.1 junyoung struct vga_bar sc_rom;
87 1.1 junyoung
88 1.1 junyoung #define sc_aperbase sc_bars[0].vb_base
89 1.1 junyoung #define sc_apersize sc_bars[0].vb_size
90 1.20 martin #define sc_aperphys sc_bars[0].vb_busaddr
91 1.1 junyoung
92 1.1 junyoung #define sc_iobase sc_bars[1].vb_base
93 1.1 junyoung #define sc_iosize sc_bars[1].vb_size
94 1.1 junyoung
95 1.1 junyoung #define sc_regbase sc_bars[2].vb_base
96 1.1 junyoung #define sc_regsize sc_bars[2].vb_size
97 1.20 martin #define sc_regphys sc_bars[2].vb_busaddr
98 1.1 junyoung
99 1.4 junyoung bus_space_tag_t sc_regt;
100 1.3 martin bus_space_tag_t sc_memt;
101 1.4 junyoung bus_space_handle_t sc_regh;
102 1.1 junyoung bus_space_handle_t sc_memh;
103 1.1 junyoung
104 1.1 junyoung size_t memsize;
105 1.1 junyoung int memtype;
106 1.23.2.1 tron
107 1.21 martin int sc_mode;
108 1.21 martin int sc_bg;
109 1.1 junyoung
110 1.1 junyoung int has_dsp;
111 1.1 junyoung int bits_per_pixel;
112 1.23.2.2 tron int max_x;
113 1.23.2.2 tron int max_y;
114 1.23.2.2 tron int virt_x;
115 1.23.2.2 tron int virt_y;
116 1.1 junyoung int color_depth;
117 1.1 junyoung
118 1.1 junyoung int mem_freq;
119 1.1 junyoung int ramdac_freq;
120 1.1 junyoung int ref_freq;
121 1.1 junyoung
122 1.1 junyoung int ref_div;
123 1.1 junyoung int log2_vclk_post_div;
124 1.1 junyoung int vclk_post_div;
125 1.1 junyoung int vclk_fb_div;
126 1.1 junyoung int mclk_post_div;
127 1.1 junyoung int mclk_fb_div;
128 1.1 junyoung
129 1.1 junyoung struct mach64screen *wanted;
130 1.1 junyoung struct mach64screen *active;
131 1.1 junyoung void (*switchcb)(void *, int, int);
132 1.1 junyoung void *switchcbarg;
133 1.1 junyoung struct callout switch_callout;
134 1.1 junyoung LIST_HEAD(, mach64screen) screens;
135 1.1 junyoung const struct wsscreen_descr *currenttype;
136 1.19 martin u_char sc_cmap_red[256];
137 1.19 martin u_char sc_cmap_green[256];
138 1.22 perry u_char sc_cmap_blue[256];
139 1.19 martin int sc_dacw;
140 1.1 junyoung };
141 1.1 junyoung
142 1.1 junyoung struct mach64screen {
143 1.7 martin struct rasops_info ri;
144 1.1 junyoung LIST_ENTRY(mach64screen) next;
145 1.1 junyoung struct mach64_softc *sc;
146 1.1 junyoung const struct wsscreen_descr *type;
147 1.1 junyoung int active;
148 1.21 martin u_int *chars;
149 1.21 martin long *attrs;
150 1.1 junyoung int dispoffset;
151 1.1 junyoung int mindispoffset;
152 1.1 junyoung int maxdispoffset;
153 1.1 junyoung
154 1.1 junyoung int cursoron;
155 1.1 junyoung int cursorcol;
156 1.1 junyoung int cursorrow;
157 1.21 martin int cursordrawn;
158 1.1 junyoung };
159 1.1 junyoung
160 1.1 junyoung struct mach64_crtcregs {
161 1.1 junyoung u_int32_t h_total_disp;
162 1.1 junyoung u_int32_t h_sync_strt_wid;
163 1.1 junyoung u_int32_t v_total_disp;
164 1.1 junyoung u_int32_t v_sync_strt_wid;
165 1.1 junyoung u_int32_t gen_cntl;
166 1.1 junyoung u_int32_t clock_cntl;
167 1.1 junyoung u_int32_t color_depth;
168 1.1 junyoung u_int32_t dot_clock;
169 1.1 junyoung };
170 1.1 junyoung
171 1.1 junyoung struct {
172 1.1 junyoung u_int16_t chip_id;
173 1.1 junyoung u_int32_t ramdac_freq;
174 1.1 junyoung } mach64_info[] = {
175 1.1 junyoung { PCI_PRODUCT_ATI_MACH64_CT, 135000 },
176 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_PRO_AGP, 230000 },
177 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_PRO_AGP1X, 230000 },
178 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_PRO_PCI_B, 230000 },
179 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_XL_AGP, 230000 },
180 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_PRO_PCI_P, 230000 },
181 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_PRO_PCI_L, 230000 },
182 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_XL_PCI, 230000 },
183 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_II, 135000 },
184 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_IIP, 200000 },
185 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_IIC_PCI, 230000 },
186 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_IIC_AGP_B, 230000 },
187 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_IIC_AGP_P, 230000 },
188 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_LT_PRO_AGP, 230000 },
189 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_MOB_M3_PCI, 230000 },
190 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_MOB_M3_AGP, 230000 },
191 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_LT, 230000 },
192 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_LT_PRO_PCI, 230000 },
193 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_MOBILITY, 230000 },
194 1.1 junyoung { PCI_PRODUCT_ATI_RAGE_LT_PRO, 230000 },
195 1.1 junyoung { PCI_PRODUCT_ATI_MACH64_VT, 170000 },
196 1.1 junyoung { PCI_PRODUCT_ATI_MACH64_VTB, 200000 },
197 1.1 junyoung { PCI_PRODUCT_ATI_MACH64_VT4, 230000 }
198 1.1 junyoung };
199 1.1 junyoung
200 1.1 junyoung static int mach64_chip_id, mach64_chip_rev;
201 1.1 junyoung static struct videomode default_mode;
202 1.1 junyoung static struct mach64screen mach64_console_screen;
203 1.1 junyoung
204 1.1 junyoung static char *mach64_memtype_names[] = {
205 1.1 junyoung "(N/A)", "DRAM", "EDO DRAM", "EDO DRAM", "SDRAM", "SGRAM", "WRAM",
206 1.1 junyoung "(unknown type)"
207 1.1 junyoung };
208 1.1 junyoung
209 1.1 junyoung struct videomode mach64_modes[] = {
210 1.1 junyoung /* 640x400 @ 70 Hz, 31.5 kHz */
211 1.1 junyoung { 25175, 640, 664, 760, 800, 400, 409, 411, 450, 0 },
212 1.1 junyoung /* 640x480 @ 72 Hz, 36.5 kHz */
213 1.1 junyoung { 25175, 640, 664, 760, 800, 480, 491, 493, 525, 0 },
214 1.1 junyoung /* 800x600 @ 72 Hz, 48.0 kHz */
215 1.1 junyoung { 50000, 800, 856, 976, 1040, 600, 637, 643, 666,
216 1.1 junyoung VID_PHSYNC | VID_PVSYNC },
217 1.1 junyoung /* 1024x768 @ 70 Hz, 56.5 kHz */
218 1.1 junyoung { 75000, 1024, 1048, 1184, 1328, 768, 771, 777, 806,
219 1.1 junyoung VID_NHSYNC | VID_NVSYNC },
220 1.1 junyoung /* 1152x864 @ 70 Hz, 62.4 kHz */
221 1.1 junyoung { 92000, 1152, 1208, 1368, 1474, 864, 865, 875, 895, 0 },
222 1.1 junyoung /* 1280x1024 @ 70 Hz, 74.59 kHz */
223 1.1 junyoung { 126500, 1280, 1312, 1472, 1696, 1024, 1032, 1040, 1068,
224 1.1 junyoung VID_NHSYNC | VID_NVSYNC }
225 1.1 junyoung };
226 1.1 junyoung
227 1.19 martin extern const u_char rasops_cmap[768];
228 1.1 junyoung
229 1.1 junyoung int mach64_match(struct device *, struct cfdata *, void *);
230 1.1 junyoung void mach64_attach(struct device *, struct device *, void *);
231 1.1 junyoung
232 1.1 junyoung CFATTACH_DECL(machfb, sizeof(struct mach64_softc), mach64_match, mach64_attach,
233 1.1 junyoung NULL, NULL);
234 1.1 junyoung
235 1.3 martin void mach64_init(struct mach64_softc *);
236 1.1 junyoung int mach64_get_memsize(struct mach64_softc *);
237 1.1 junyoung int mach64_get_max_ramdac(struct mach64_softc *);
238 1.1 junyoung void mach64_get_mode(struct mach64_softc *, struct videomode *);
239 1.1 junyoung int mach64_calc_crtcregs(struct mach64_softc *, struct mach64_crtcregs *,
240 1.1 junyoung struct videomode *);
241 1.1 junyoung void mach64_set_crtcregs(struct mach64_softc *, struct mach64_crtcregs *);
242 1.1 junyoung int mach64_modeswitch(struct mach64_softc *, struct videomode *);
243 1.1 junyoung void mach64_set_dsp(struct mach64_softc *);
244 1.1 junyoung void mach64_set_pll(struct mach64_softc *, int);
245 1.1 junyoung void mach64_reset_engine(struct mach64_softc *);
246 1.1 junyoung void mach64_init_engine(struct mach64_softc *);
247 1.1 junyoung void mach64_adjust_frame(struct mach64_softc *, int, int);
248 1.1 junyoung void mach64_init_lut(struct mach64_softc *);
249 1.1 junyoung void mach64_switch_screen(struct mach64_softc *);
250 1.1 junyoung void mach64_init_screen(struct mach64_softc *, struct mach64screen *,
251 1.6 junyoung const struct wsscreen_descr *, int, long *, int);
252 1.1 junyoung void mach64_restore_screen(struct mach64screen *,
253 1.21 martin const struct wsscreen_descr *, u_int *);
254 1.6 junyoung int mach64_set_screentype(struct mach64_softc *,
255 1.1 junyoung const struct wsscreen_descr *);
256 1.23.2.2 tron int mach64_is_console(struct pci_attach_args *);
257 1.1 junyoung
258 1.1 junyoung void mach64_cursor(void *, int, int, int);
259 1.23.2.2 tron int mach64_mapchar(void *, int, u_int *);
260 1.1 junyoung void mach64_putchar(void *, int, int, u_int, long);
261 1.1 junyoung void mach64_copycols(void *, int, int, int, int);
262 1.1 junyoung void mach64_erasecols(void *, int, int, int, long);
263 1.1 junyoung void mach64_copyrows(void *, int, int, int);
264 1.1 junyoung void mach64_eraserows(void *, int, int, long);
265 1.23.2.2 tron int mach64_allocattr(void *, int, int, int, long *);
266 1.21 martin void mach64_clearscreen(struct mach64_softc *);
267 1.1 junyoung
268 1.19 martin void mach64_scroll(void *, void *, int);
269 1.19 martin
270 1.23.2.2 tron int mach64_putcmap(struct mach64_softc *, struct wsdisplay_cmap *);
271 1.23.2.2 tron int mach64_getcmap(struct mach64_softc *, struct wsdisplay_cmap *);
272 1.23.2.2 tron int mach64_putpalreg(struct mach64_softc *, uint8_t, uint8_t, uint8_t,
273 1.23.2.2 tron uint8_t);
274 1.23.2.2 tron void mach64_bitblt(struct mach64_softc *, int, int, int, int, int, int, int,
275 1.23.2.2 tron int) ;
276 1.23.2.2 tron void mach64_rectfill(struct mach64_softc *, int, int, int, int, int);
277 1.23.2.2 tron void mach64_setup_mono(struct mach64_softc *, int, int, int, int, uint32_t,
278 1.23.2.2 tron uint32_t);
279 1.21 martin void mach64_feed_bytes(struct mach64_softc *, int, uint8_t *);
280 1.23.2.2 tron void mach64_showpal(struct mach64_softc *);
281 1.23.2.2 tron int mach64_getwschar(void *, struct wsdisplay_char *);
282 1.23.2.2 tron int mach64_putwschar(void *, struct wsdisplay_char *);
283 1.21 martin
284 1.21 martin void set_address(struct rasops_info *, bus_addr_t);
285 1.19 martin
286 1.7 martin #if 0
287 1.1 junyoung const struct wsdisplay_emulops mach64_emulops = {
288 1.1 junyoung mach64_cursor,
289 1.1 junyoung mach64_mapchar,
290 1.1 junyoung mach64_putchar,
291 1.1 junyoung mach64_copycols,
292 1.1 junyoung mach64_erasecols,
293 1.1 junyoung mach64_copyrows,
294 1.1 junyoung mach64_eraserows,
295 1.1 junyoung mach64_allocattr,
296 1.1 junyoung };
297 1.7 martin #endif
298 1.1 junyoung
299 1.1 junyoung struct wsscreen_descr mach64_defaultscreen = {
300 1.1 junyoung "default",
301 1.1 junyoung 0, 0,
302 1.7 martin &mach64_console_screen.ri.ri_ops,
303 1.1 junyoung 8, 16,
304 1.1 junyoung WSSCREEN_WSCOLORS | WSSCREEN_HILIT,
305 1.1 junyoung &default_mode
306 1.1 junyoung }, mach64_80x25_screen = {
307 1.1 junyoung "80x25", 80, 25,
308 1.7 martin &mach64_console_screen.ri.ri_ops,
309 1.1 junyoung 8, 16,
310 1.1 junyoung WSSCREEN_WSCOLORS | WSSCREEN_HILIT,
311 1.1 junyoung &mach64_modes[0]
312 1.1 junyoung }, mach64_80x30_screen = {
313 1.1 junyoung "80x30", 80, 30,
314 1.7 martin &mach64_console_screen.ri.ri_ops,
315 1.1 junyoung 8, 16,
316 1.1 junyoung WSSCREEN_WSCOLORS | WSSCREEN_HILIT,
317 1.1 junyoung &mach64_modes[1]
318 1.1 junyoung }, mach64_80x40_screen = {
319 1.1 junyoung "80x40", 80, 40,
320 1.7 martin &mach64_console_screen.ri.ri_ops,
321 1.1 junyoung 8, 10,
322 1.1 junyoung WSSCREEN_WSCOLORS | WSSCREEN_HILIT,
323 1.1 junyoung &mach64_modes[0]
324 1.1 junyoung }, mach64_80x50_screen = {
325 1.1 junyoung "80x50", 80, 50,
326 1.7 martin &mach64_console_screen.ri.ri_ops,
327 1.1 junyoung 8, 8,
328 1.1 junyoung WSSCREEN_WSCOLORS | WSSCREEN_HILIT,
329 1.1 junyoung &mach64_modes[0]
330 1.1 junyoung }, mach64_100x37_screen = {
331 1.1 junyoung "100x37", 100, 37,
332 1.7 martin &mach64_console_screen.ri.ri_ops,
333 1.1 junyoung 8, 16,
334 1.1 junyoung WSSCREEN_WSCOLORS | WSSCREEN_HILIT,
335 1.1 junyoung &mach64_modes[2]
336 1.1 junyoung }, mach64_128x48_screen = {
337 1.1 junyoung "128x48", 128, 48,
338 1.7 martin &mach64_console_screen.ri.ri_ops,
339 1.1 junyoung 8, 16,
340 1.1 junyoung WSSCREEN_WSCOLORS | WSSCREEN_HILIT,
341 1.1 junyoung &mach64_modes[3]
342 1.1 junyoung }, mach64_144x54_screen = {
343 1.1 junyoung "144x54", 144, 54,
344 1.7 martin &mach64_console_screen.ri.ri_ops,
345 1.1 junyoung 8, 16,
346 1.1 junyoung WSSCREEN_WSCOLORS | WSSCREEN_HILIT,
347 1.1 junyoung &mach64_modes[4]
348 1.1 junyoung }, mach64_160x64_screen = {
349 1.1 junyoung "160x54", 160, 64,
350 1.7 martin &mach64_console_screen.ri.ri_ops,
351 1.1 junyoung 8, 16,
352 1.1 junyoung WSSCREEN_WSCOLORS | WSSCREEN_HILIT,
353 1.1 junyoung &mach64_modes[5]
354 1.1 junyoung };
355 1.1 junyoung
356 1.1 junyoung const struct wsscreen_descr *_mach64_scrlist[] = {
357 1.1 junyoung &mach64_defaultscreen,
358 1.1 junyoung &mach64_80x25_screen,
359 1.1 junyoung &mach64_80x30_screen,
360 1.1 junyoung &mach64_80x40_screen,
361 1.1 junyoung &mach64_80x50_screen,
362 1.1 junyoung &mach64_100x37_screen,
363 1.1 junyoung &mach64_128x48_screen,
364 1.1 junyoung &mach64_144x54_screen,
365 1.1 junyoung &mach64_160x64_screen
366 1.1 junyoung };
367 1.1 junyoung
368 1.1 junyoung struct wsscreen_list mach64_screenlist = {
369 1.1 junyoung sizeof(_mach64_scrlist) / sizeof(struct wsscreen_descr *),
370 1.1 junyoung _mach64_scrlist
371 1.1 junyoung };
372 1.1 junyoung
373 1.23.2.2 tron int mach64_ioctl(void *, u_long, caddr_t, int, struct proc *);
374 1.1 junyoung paddr_t mach64_mmap(void *, off_t, int);
375 1.23.2.2 tron int mach64_alloc_screen(void *, const struct wsscreen_descr *, void **,
376 1.23.2.1 tron int *, int *, long *);
377 1.1 junyoung void mach64_free_screen(void *, void *);
378 1.23.2.2 tron int mach64_show_screen(void *, void *, int, void (*)(void *, int, int),
379 1.23.2.1 tron void *);
380 1.23.2.2 tron int mach64_load_font(void *, void *, struct wsdisplay_font *);
381 1.1 junyoung
382 1.1 junyoung struct wsdisplay_accessops mach64_accessops = {
383 1.1 junyoung mach64_ioctl,
384 1.1 junyoung mach64_mmap,
385 1.1 junyoung mach64_alloc_screen,
386 1.1 junyoung mach64_free_screen,
387 1.1 junyoung mach64_show_screen,
388 1.23.2.2 tron NULL, /* load_font */
389 1.23.2.2 tron NULL, /* polls */
390 1.21 martin mach64_getwschar, /* getwschar */
391 1.21 martin mach64_putwschar, /* putwschar */
392 1.23.2.2 tron NULL, /* scroll */
393 1.23.2.2 tron NULL, /* getborder */
394 1.23.2.2 tron NULL /* setborder */
395 1.1 junyoung };
396 1.1 junyoung
397 1.1 junyoung /*
398 1.1 junyoung * Inline functions for getting access to register aperture.
399 1.1 junyoung */
400 1.1 junyoung static inline u_int32_t regr(struct mach64_softc *, u_int32_t);
401 1.1 junyoung static inline u_int8_t regrb(struct mach64_softc *, u_int32_t);
402 1.1 junyoung static inline void regw(struct mach64_softc *, u_int32_t, u_int32_t);
403 1.1 junyoung static inline void regwb(struct mach64_softc *, u_int32_t, u_int8_t);
404 1.1 junyoung static inline void regwb_pll(struct mach64_softc *, u_int32_t, u_int8_t);
405 1.1 junyoung
406 1.1 junyoung static inline u_int32_t
407 1.1 junyoung regr(struct mach64_softc *sc, u_int32_t index)
408 1.1 junyoung {
409 1.4 junyoung return bus_space_read_4(sc->sc_regt, sc->sc_regh, index);
410 1.1 junyoung }
411 1.1 junyoung
412 1.1 junyoung static inline u_int8_t
413 1.1 junyoung regrb(struct mach64_softc *sc, u_int32_t index)
414 1.1 junyoung {
415 1.4 junyoung return bus_space_read_1(sc->sc_regt, sc->sc_regh, index);
416 1.1 junyoung }
417 1.1 junyoung
418 1.1 junyoung static inline void
419 1.1 junyoung regw(struct mach64_softc *sc, u_int32_t index, u_int32_t data)
420 1.1 junyoung {
421 1.4 junyoung bus_space_write_4(sc->sc_regt, sc->sc_regh, index, data);
422 1.23.2.2 tron bus_space_barrier(sc->sc_regt, sc->sc_regh, index, 4,
423 1.23.2.2 tron BUS_SPACE_BARRIER_WRITE);
424 1.1 junyoung }
425 1.1 junyoung
426 1.1 junyoung static inline void
427 1.1 junyoung regwb(struct mach64_softc *sc, u_int32_t index, u_int8_t data)
428 1.1 junyoung {
429 1.4 junyoung bus_space_write_1(sc->sc_regt, sc->sc_regh, index, data);
430 1.23.2.2 tron bus_space_barrier(sc->sc_regt, sc->sc_regh, index, 1,
431 1.23.2.2 tron BUS_SPACE_BARRIER_WRITE);
432 1.1 junyoung }
433 1.1 junyoung
434 1.1 junyoung static inline void
435 1.1 junyoung regwb_pll(struct mach64_softc *sc, u_int32_t index, u_int8_t data)
436 1.1 junyoung {
437 1.1 junyoung regwb(sc, CLOCK_CNTL + 1, (index << 2) | PLL_WR_EN);
438 1.1 junyoung regwb(sc, CLOCK_CNTL + 2, data);
439 1.22 perry regwb(sc, CLOCK_CNTL + 1, (index << 2) & ~PLL_WR_EN);
440 1.1 junyoung }
441 1.1 junyoung
442 1.1 junyoung static inline void
443 1.1 junyoung wait_for_fifo(struct mach64_softc *sc, u_int8_t v)
444 1.1 junyoung {
445 1.1 junyoung while ((regr(sc, FIFO_STAT) & 0xffff) > (0x8000 >> v))
446 1.1 junyoung ;
447 1.1 junyoung }
448 1.1 junyoung
449 1.1 junyoung static inline void
450 1.1 junyoung wait_for_idle(struct mach64_softc *sc)
451 1.1 junyoung {
452 1.1 junyoung wait_for_fifo(sc, 16);
453 1.1 junyoung while ((regr(sc, GUI_STAT) & 1) != 0)
454 1.1 junyoung ;
455 1.1 junyoung }
456 1.1 junyoung
457 1.1 junyoung int
458 1.1 junyoung mach64_match(struct device *parent, struct cfdata *match, void *aux)
459 1.1 junyoung {
460 1.1 junyoung struct pci_attach_args *pa = (struct pci_attach_args *)aux;
461 1.1 junyoung int i;
462 1.1 junyoung
463 1.1 junyoung if (PCI_CLASS(pa->pa_class) != PCI_CLASS_DISPLAY ||
464 1.1 junyoung PCI_SUBCLASS(pa->pa_class) != PCI_SUBCLASS_DISPLAY_VGA)
465 1.1 junyoung return 0;
466 1.1 junyoung
467 1.1 junyoung for (i = 0; i < sizeof(mach64_info) / sizeof(mach64_info[0]); i++)
468 1.1 junyoung if (PCI_PRODUCT(pa->pa_id) == mach64_info[i].chip_id) {
469 1.1 junyoung mach64_chip_id = PCI_PRODUCT(pa->pa_id);
470 1.1 junyoung mach64_chip_rev = PCI_REVISION(pa->pa_class);
471 1.23.2.1 tron return 100;
472 1.1 junyoung }
473 1.22 perry
474 1.1 junyoung return 0;
475 1.1 junyoung }
476 1.1 junyoung
477 1.1 junyoung void
478 1.1 junyoung mach64_attach(struct device *parent, struct device *self, void *aux)
479 1.1 junyoung {
480 1.22 perry struct mach64_softc *sc = (void *)self;
481 1.1 junyoung struct pci_attach_args *pa = aux;
482 1.1 junyoung char devinfo[256];
483 1.1 junyoung int bar, reg, id;
484 1.1 junyoung struct wsemuldisplaydev_attach_args aa;
485 1.1 junyoung long defattr;
486 1.7 martin int setmode, console;
487 1.21 martin pcireg_t screg;
488 1.1 junyoung
489 1.1 junyoung sc->sc_pc = pa->pa_pc;
490 1.1 junyoung sc->sc_pcitag = pa->pa_tag;
491 1.19 martin sc->sc_dacw=-1;
492 1.23.2.1 tron sc->sc_mode=WSDISPLAYIO_MODE_EMUL;
493 1.23.2.1 tron
494 1.18 itojun pci_devinfo(pa->pa_id, pa->pa_class, 0, devinfo, sizeof(devinfo));
495 1.1 junyoung printf(": %s (rev. 0x%02x)\n", devinfo, PCI_REVISION(pa->pa_class));
496 1.23.2.1 tron
497 1.23.2.1 tron /* enable memory and IO access */
498 1.23.2.1 tron screg=pci_conf_read(sc->sc_pc, sc->sc_pcitag, PCI_COMMAND_STATUS_REG);
499 1.23.2.1 tron screg|=PCI_FLAGS_IO_ENABLED|PCI_FLAGS_MEM_ENABLED;
500 1.23.2.1 tron pci_conf_write(sc->sc_pc, sc->sc_pcitag,PCI_COMMAND_STATUS_REG,screg);
501 1.1 junyoung
502 1.21 martin /* enable memory and IO access */
503 1.21 martin screg=pci_conf_read(sc->sc_pc, sc->sc_pcitag, PCI_COMMAND_STATUS_REG);
504 1.21 martin screg|=PCI_FLAGS_IO_ENABLED|PCI_FLAGS_MEM_ENABLED;
505 1.21 martin pci_conf_write(sc->sc_pc, sc->sc_pcitag,PCI_COMMAND_STATUS_REG,screg);
506 1.21 martin
507 1.1 junyoung for (bar = 0; bar < NBARS; bar++) {
508 1.1 junyoung reg = PCI_MAPREG_START + (bar * 4);
509 1.1 junyoung sc->sc_bars[bar].vb_type = pci_mapreg_type(sc->sc_pc,
510 1.1 junyoung sc->sc_pcitag, reg);
511 1.1 junyoung (void)pci_mapreg_info(sc->sc_pc, sc->sc_pcitag, reg,
512 1.1 junyoung sc->sc_bars[bar].vb_type, &sc->sc_bars[bar].vb_base,
513 1.1 junyoung &sc->sc_bars[bar].vb_size, &sc->sc_bars[bar].vb_flags);
514 1.23.2.2 tron sc->sc_bars[bar].vb_busaddr=pci_conf_read(sc->sc_pc,
515 1.23.2.2 tron sc->sc_pcitag, reg)&0xfffffff0;
516 1.1 junyoung }
517 1.3 martin sc->sc_memt = pa->pa_memt;
518 1.1 junyoung
519 1.3 martin mach64_init(sc);
520 1.1 junyoung
521 1.1 junyoung printf("%s: %d MB aperture at 0x%08x, %d KB registers at 0x%08x\n",
522 1.4 junyoung sc->sc_dev.dv_xname, (u_int)(sc->sc_apersize / (1024 * 1024)),
523 1.22 perry (u_int)sc->sc_aperphys, (u_int)(sc->sc_regsize / 1024),
524 1.20 martin (u_int)sc->sc_regphys);
525 1.1 junyoung
526 1.1 junyoung if (mach64_chip_id == PCI_PRODUCT_ATI_MACH64_CT ||
527 1.22 perry ((mach64_chip_id == PCI_PRODUCT_ATI_MACH64_VT ||
528 1.23.2.2 tron mach64_chip_id == PCI_PRODUCT_ATI_RAGE_II) &&
529 1.23.2.2 tron (mach64_chip_rev & 0x07) == 0))
530 1.1 junyoung sc->has_dsp = 0;
531 1.1 junyoung else
532 1.1 junyoung sc->has_dsp = 1;
533 1.1 junyoung
534 1.1 junyoung sc->memsize = mach64_get_memsize(sc);
535 1.1 junyoung if (sc->memsize == 8192)
536 1.1 junyoung /* The last page is used as register aperture. */
537 1.1 junyoung sc->memsize -= 4;
538 1.1 junyoung sc->memtype = regr(sc, CONFIG_STAT0) & 0x07;
539 1.1 junyoung
540 1.1 junyoung /* XXX is there any way to calculate reference frequency from
541 1.1 junyoung known values? */
542 1.22 perry if ((mach64_chip_id == PCI_PRODUCT_ATI_RAGE_XL_PCI) ||
543 1.23.2.2 tron ((mach64_chip_id>=PCI_PRODUCT_ATI_RAGE_LT_PRO_PCI) &&
544 1.23.2.2 tron (mach64_chip_id<=PCI_PRODUCT_ATI_RAGE_LT_PRO))) {
545 1.21 martin printf("ref_freq=29.498MHz\n");
546 1.1 junyoung sc->ref_freq = 29498;
547 1.21 martin } else
548 1.1 junyoung sc->ref_freq = 14318;
549 1.1 junyoung
550 1.1 junyoung regwb(sc, CLOCK_CNTL + 1, PLL_REF_DIV << 2);
551 1.22 perry sc->ref_div = regrb(sc, CLOCK_CNTL + 2);
552 1.1 junyoung regwb(sc, CLOCK_CNTL + 1, MCLK_FB_DIV << 2);
553 1.1 junyoung sc->mclk_fb_div = regrb(sc, CLOCK_CNTL + 2);
554 1.22 perry sc->mem_freq = (2 * sc->ref_freq * sc->mclk_fb_div) /
555 1.1 junyoung (sc->ref_div * 2);
556 1.1 junyoung sc->mclk_post_div = (sc->mclk_fb_div * 2 * sc->ref_freq) /
557 1.1 junyoung (sc->mem_freq * sc->ref_div);
558 1.1 junyoung sc->ramdac_freq = mach64_get_max_ramdac(sc);
559 1.2 martin printf("%s: %ld KB %s %d.%d MHz, maximum RAMDAC clock %d MHz\n",
560 1.22 perry sc->sc_dev.dv_xname, (u_long)sc->memsize,
561 1.1 junyoung mach64_memtype_names[sc->memtype],
562 1.1 junyoung sc->mem_freq / 1000, sc->mem_freq % 1000,
563 1.1 junyoung sc->ramdac_freq / 1000);
564 1.22 perry
565 1.1 junyoung id = regr(sc, CONFIG_CHIP_ID) & 0xffff;
566 1.1 junyoung if (id != mach64_chip_id) {
567 1.1 junyoung printf("%s: chip ID mismatch, 0x%x != 0x%x\n",
568 1.1 junyoung sc->sc_dev.dv_xname, id, mach64_chip_id);
569 1.1 junyoung return;
570 1.1 junyoung }
571 1.1 junyoung
572 1.7 martin console = mach64_is_console(pa);
573 1.7 martin
574 1.20 martin #if defined(__sparc__) || defined(__powerpc__)
575 1.7 martin if (console) {
576 1.7 martin mach64_get_mode(sc, &default_mode);
577 1.7 martin setmode = 0;
578 1.7 martin } else {
579 1.23.2.2 tron memcpy(&default_mode, &mach64_modes[4], sizeof(struct
580 1.23.2.2 tron videomode));
581 1.7 martin setmode = 1;
582 1.7 martin }
583 1.1 junyoung #else
584 1.6 junyoung memcpy(&default_mode, &mach64_modes[0], sizeof(struct videomode));
585 1.6 junyoung setmode = 1;
586 1.1 junyoung #endif
587 1.1 junyoung
588 1.1 junyoung sc->bits_per_pixel = 8;
589 1.1 junyoung sc->virt_x = default_mode.hdisplay;
590 1.1 junyoung sc->virt_y = default_mode.vdisplay;
591 1.1 junyoung sc->max_x = sc->virt_x - 1;
592 1.1 junyoung sc->max_y = (sc->memsize * 1024) /
593 1.1 junyoung (sc->virt_x * (sc->bits_per_pixel / 8)) - 1;
594 1.22 perry
595 1.1 junyoung sc->color_depth = CRTC_PIX_WIDTH_8BPP;
596 1.1 junyoung
597 1.1 junyoung mach64_init_engine(sc);
598 1.1 junyoung #if 0
599 1.1 junyoung mach64_adjust_frame(0, 0);
600 1.1 junyoung if (sc->bits_per_pixel == 8)
601 1.1 junyoung mach64_init_lut(sc);
602 1.1 junyoung #endif
603 1.1 junyoung
604 1.1 junyoung printf("%s: initial resolution %dx%d at %d bpp\n", sc->sc_dev.dv_xname,
605 1.1 junyoung default_mode.hdisplay, default_mode.vdisplay,
606 1.1 junyoung sc->bits_per_pixel);
607 1.1 junyoung
608 1.21 martin mach64_console_screen.ri.ri_hw = &mach64_console_screen;
609 1.7 martin mach64_console_screen.ri.ri_depth = sc->bits_per_pixel;
610 1.7 martin mach64_console_screen.ri.ri_width = default_mode.hdisplay;
611 1.7 martin mach64_console_screen.ri.ri_height = default_mode.vdisplay;
612 1.7 martin mach64_console_screen.ri.ri_stride = mach64_console_screen.ri.ri_width;
613 1.23.2.1 tron
614 1.23 martin mach64_console_screen.ri.ri_bits=(void *)(uintptr_t)sc->sc_aperbase;
615 1.23.2.1 tron
616 1.21 martin mach64_console_screen.ri.ri_flg = RI_CENTER;
617 1.21 martin mach64_console_screen.active=1;
618 1.21 martin sc->active=&mach64_console_screen;
619 1.1 junyoung
620 1.23.2.2 tron /* XXX width/height are nonsense, we only want to pick a font */
621 1.23.2.2 tron rasops_init(&mach64_console_screen.ri,
622 1.23.2.2 tron mach64_console_screen.ri.ri_height / 16,
623 1.23.2.2 tron mach64_console_screen.ri.ri_width / 8);
624 1.23.2.2 tron
625 1.23.2.2 tron /* now get the real values */
626 1.22 perry rasops_reconfig(&mach64_console_screen.ri,
627 1.23.2.2 tron mach64_console_screen.ri.ri_height /
628 1.23.2.2 tron mach64_console_screen.ri.ri_font->fontheight,
629 1.23.2.2 tron mach64_console_screen.ri.ri_width /
630 1.23.2.2 tron mach64_console_screen.ri.ri_font->fontwidth);
631 1.21 martin
632 1.21 martin set_address(&mach64_console_screen.ri,sc->sc_aperbase);
633 1.22 perry
634 1.19 martin /* enable acceleration */
635 1.19 martin mach64_console_screen.ri.ri_ops.copyrows=mach64_copyrows;
636 1.19 martin mach64_console_screen.ri.ri_ops.eraserows=mach64_eraserows;
637 1.19 martin mach64_console_screen.ri.ri_ops.copycols=mach64_copycols;
638 1.19 martin mach64_console_screen.ri.ri_ops.erasecols=mach64_erasecols;
639 1.21 martin mach64_console_screen.ri.ri_ops.putchar=mach64_putchar;
640 1.21 martin mach64_console_screen.ri.ri_ops.cursor=mach64_cursor;
641 1.1 junyoung
642 1.7 martin mach64_defaultscreen.nrows = mach64_console_screen.ri.ri_rows;
643 1.7 martin mach64_defaultscreen.ncols = mach64_console_screen.ri.ri_cols;
644 1.1 junyoung
645 1.23.2.2 tron mach64_allocattr(&mach64_console_screen.ri, WS_DEFAULT_FG,
646 1.23.2.2 tron WS_DEFAULT_BG, 0, &defattr);
647 1.22 perry
648 1.21 martin sc->sc_bg=WS_DEFAULT_BG;
649 1.21 martin
650 1.19 martin /* really necessary? */
651 1.19 martin mach64_defaultscreen.capabilities=mach64_console_screen.ri.ri_caps;
652 1.19 martin mach64_defaultscreen.textops=&mach64_console_screen.ri.ri_ops;
653 1.22 perry
654 1.7 martin /* Initialize fonts */
655 1.21 martin /* XXX shouldn't that happen /before/ we call rasops_init()? */
656 1.7 martin wsfont_init();
657 1.22 perry
658 1.7 martin if (console) {
659 1.7 martin mach64_init_screen(sc, &mach64_console_screen,
660 1.7 martin &mach64_defaultscreen, 1, &defattr, setmode);
661 1.23.2.2 tron wsdisplay_cnattach(&mach64_defaultscreen,
662 1.23.2.2 tron &mach64_console_screen.ri, 0, 0, defattr);
663 1.7 martin }
664 1.22 perry
665 1.19 martin mach64_init_lut(sc);
666 1.21 martin mach64_clearscreen(sc);
667 1.23.2.1 tron
668 1.1 junyoung aa.console = console;
669 1.1 junyoung aa.scrdata = &mach64_screenlist;
670 1.1 junyoung aa.accessops = &mach64_accessops;
671 1.1 junyoung aa.accesscookie = sc;
672 1.1 junyoung
673 1.1 junyoung config_found(self, &aa, wsemuldisplaydevprint);
674 1.1 junyoung }
675 1.1 junyoung
676 1.1 junyoung void
677 1.1 junyoung mach64_init_screen(struct mach64_softc *sc, struct mach64screen *scr,
678 1.6 junyoung const struct wsscreen_descr *type, int existing, long *attrp, int setmode)
679 1.1 junyoung {
680 1.21 martin struct rasops_info *ri=&scr->ri;
681 1.21 martin int cnt;
682 1.1 junyoung scr->sc = sc;
683 1.1 junyoung scr->type = type;
684 1.1 junyoung scr->mindispoffset = 0;
685 1.1 junyoung scr->maxdispoffset = sc->memsize * 1024;
686 1.1 junyoung scr->dispoffset = 0;
687 1.1 junyoung scr->cursorcol = 0;
688 1.1 junyoung scr->cursorrow = 0;
689 1.1 junyoung
690 1.21 martin cnt=type->nrows * type->ncols;
691 1.23.2.2 tron scr->attrs=(long *)malloc(cnt * (sizeof(long) + sizeof(u_int)),
692 1.7 martin M_DEVBUF, M_WAITOK);
693 1.21 martin scr->chars=(u_int *)&scr->attrs[cnt];
694 1.23.2.2 tron
695 1.23.2.2 tron /*
696 1.23.2.2 tron * we allocate both chars and attributes in one chunk, attributes first
697 1.23.2.2 tron * because they have the (potentially) bigger alignment
698 1.23.2.2 tron */
699 1.21 martin ri->ri_depth = sc->bits_per_pixel;
700 1.21 martin ri->ri_width = default_mode.hdisplay;
701 1.21 martin ri->ri_height = default_mode.vdisplay;
702 1.21 martin ri->ri_stride = ri->ri_width;
703 1.21 martin ri->ri_flg = RI_CENTER;
704 1.21 martin
705 1.1 junyoung if (existing) {
706 1.1 junyoung scr->active = 1;
707 1.21 martin ri->ri_flg|=RI_CLEAR;
708 1.6 junyoung if (setmode && mach64_set_screentype(sc, type)) {
709 1.1 junyoung panic("%s: failed to switch video mode",
710 1.1 junyoung sc->sc_dev.dv_xname);
711 1.1 junyoung }
712 1.1 junyoung } else {
713 1.1 junyoung scr->active = 0;
714 1.1 junyoung }
715 1.1 junyoung
716 1.1 junyoung LIST_INSERT_HEAD(&sc->screens, scr, next);
717 1.1 junyoung }
718 1.1 junyoung
719 1.1 junyoung void
720 1.3 martin mach64_init(struct mach64_softc *sc)
721 1.1 junyoung {
722 1.9 martin u_int32_t *p32, saved_value;
723 1.9 martin u_int8_t *p;
724 1.9 martin int need_swap;
725 1.4 junyoung
726 1.3 martin if (bus_space_map(sc->sc_memt, sc->sc_aperbase, sc->sc_apersize,
727 1.1 junyoung BUS_SPACE_MAP_LINEAR, &sc->sc_memh)) {
728 1.1 junyoung panic("%s: failed to map aperture", sc->sc_dev.dv_xname);
729 1.1 junyoung }
730 1.4 junyoung sc->sc_aperbase = (vaddr_t)bus_space_vaddr(sc->sc_memt, sc->sc_memh);
731 1.4 junyoung
732 1.4 junyoung sc->sc_regt = sc->sc_memt;
733 1.4 junyoung bus_space_subregion(sc->sc_regt, sc->sc_memh, MACH64_REG_OFF,
734 1.4 junyoung sc->sc_regsize, &sc->sc_regh);
735 1.4 junyoung sc->sc_regbase = sc->sc_aperbase + 0x7ffc00;
736 1.4 junyoung
737 1.9 martin /*
738 1.9 martin * Test wether the aperture is byte swapped or not
739 1.9 martin */
740 1.12 martin p32 = (u_int32_t*)(u_long)sc->sc_aperbase;
741 1.9 martin saved_value = *p32;
742 1.12 martin p = (u_int8_t*)(u_long)sc->sc_aperbase;
743 1.9 martin *p32 = 0x12345678;
744 1.9 martin if (p[0] == 0x12 && p[1] == 0x34 && p[2] == 0x56 && p[3] == 0x78)
745 1.9 martin need_swap = 0;
746 1.9 martin else
747 1.9 martin need_swap = 1;
748 1.9 martin if (need_swap) {
749 1.9 martin sc->sc_aperbase += 0x800000;
750 1.9 martin sc->sc_apersize -= 0x800000;
751 1.9 martin }
752 1.9 martin *p32 = saved_value;
753 1.1 junyoung
754 1.1 junyoung LIST_INIT(&sc->screens);
755 1.1 junyoung sc->active = NULL;
756 1.1 junyoung sc->currenttype = &mach64_defaultscreen;
757 1.1 junyoung callout_init(&sc->switch_callout);
758 1.1 junyoung }
759 1.1 junyoung
760 1.1 junyoung int
761 1.1 junyoung mach64_get_memsize(struct mach64_softc *sc)
762 1.1 junyoung {
763 1.1 junyoung int tmp, memsize;
764 1.1 junyoung int mem_tab[] = {
765 1.1 junyoung 512, 1024, 2048, 4096, 6144, 8192, 12288, 16384
766 1.1 junyoung };
767 1.22 perry
768 1.1 junyoung tmp = regr(sc, MEM_CNTL);
769 1.21 martin printf("memctl: %08x\n",tmp);
770 1.1 junyoung if (sc->has_dsp) {
771 1.1 junyoung tmp &= 0x0000000f;
772 1.1 junyoung if (tmp < 8)
773 1.1 junyoung memsize = (tmp + 1) * 512;
774 1.1 junyoung else if (tmp < 12)
775 1.1 junyoung memsize = (tmp - 3) * 1024;
776 1.1 junyoung else
777 1.1 junyoung memsize = (tmp - 7) * 2048;
778 1.1 junyoung } else {
779 1.1 junyoung memsize = mem_tab[tmp & 0x07];
780 1.1 junyoung }
781 1.1 junyoung
782 1.1 junyoung return memsize;
783 1.1 junyoung }
784 1.1 junyoung
785 1.1 junyoung int
786 1.1 junyoung mach64_get_max_ramdac(struct mach64_softc *sc)
787 1.1 junyoung {
788 1.1 junyoung int i;
789 1.1 junyoung
790 1.22 perry if ((mach64_chip_id == PCI_PRODUCT_ATI_MACH64_VT ||
791 1.1 junyoung mach64_chip_id == PCI_PRODUCT_ATI_RAGE_II) &&
792 1.1 junyoung (mach64_chip_rev & 0x07))
793 1.1 junyoung return 170000;
794 1.1 junyoung
795 1.1 junyoung for (i = 0; i < sizeof(mach64_info) / sizeof(mach64_info[0]); i++)
796 1.1 junyoung if (mach64_chip_id == mach64_info[i].chip_id)
797 1.1 junyoung return mach64_info[i].ramdac_freq;
798 1.1 junyoung
799 1.1 junyoung if (sc->bits_per_pixel == 8)
800 1.1 junyoung return 135000;
801 1.1 junyoung else
802 1.1 junyoung return 80000;
803 1.1 junyoung }
804 1.1 junyoung
805 1.1 junyoung void
806 1.1 junyoung mach64_get_mode(struct mach64_softc *sc, struct videomode *mode)
807 1.1 junyoung {
808 1.1 junyoung struct mach64_crtcregs crtc;
809 1.22 perry
810 1.1 junyoung crtc.h_total_disp = regr(sc, CRTC_H_TOTAL_DISP);
811 1.1 junyoung crtc.h_sync_strt_wid = regr(sc, CRTC_H_SYNC_STRT_WID);
812 1.1 junyoung crtc.v_total_disp = regr(sc, CRTC_V_TOTAL_DISP);
813 1.1 junyoung crtc.v_sync_strt_wid = regr(sc, CRTC_V_SYNC_STRT_WID);
814 1.1 junyoung
815 1.1 junyoung mode->htotal = ((crtc.h_total_disp & 0xffff) + 1) << 3;
816 1.1 junyoung mode->hdisplay = ((crtc.h_total_disp >> 16) + 1) << 3;
817 1.1 junyoung mode->hsync_start = ((crtc.h_sync_strt_wid & 0xffff) + 1) << 3;
818 1.1 junyoung mode->hsync_end = ((crtc.h_sync_strt_wid >> 16) << 3) +
819 1.1 junyoung mode->hsync_start;
820 1.1 junyoung mode->vtotal = (crtc.v_total_disp & 0xffff) + 1;
821 1.1 junyoung mode->vdisplay = (crtc.v_total_disp >> 16) + 1;
822 1.1 junyoung mode->vsync_start = (crtc.v_sync_strt_wid & 0xffff) + 1;
823 1.1 junyoung mode->vsync_end = (crtc.v_sync_strt_wid >> 16) + mode->vsync_start;
824 1.1 junyoung
825 1.21 martin #ifdef DEBUG_MACHFB
826 1.1 junyoung printf("mach64_get_mode: %d %d %d %d %d %d %d %d\n",
827 1.1 junyoung mode->hdisplay, mode->hsync_start, mode->hsync_end, mode->htotal,
828 1.1 junyoung mode->vdisplay, mode->vsync_start, mode->vsync_end, mode->vtotal);
829 1.1 junyoung #endif
830 1.1 junyoung }
831 1.1 junyoung
832 1.1 junyoung int
833 1.1 junyoung mach64_calc_crtcregs(struct mach64_softc *sc, struct mach64_crtcregs *crtc,
834 1.1 junyoung struct videomode *mode)
835 1.1 junyoung {
836 1.1 junyoung
837 1.1 junyoung if (mode->dot_clock > sc->ramdac_freq)
838 1.1 junyoung /* Clock too high. */
839 1.1 junyoung return 1;
840 1.1 junyoung
841 1.1 junyoung crtc->h_total_disp = (((mode->hdisplay >> 3) - 1) << 16) |
842 1.1 junyoung ((mode->htotal >> 3) - 1);
843 1.22 perry crtc->h_sync_strt_wid =
844 1.1 junyoung (((mode->hsync_end - mode->hsync_start) >> 3) << 16) |
845 1.1 junyoung ((mode->hsync_start >> 3) - 1);
846 1.1 junyoung
847 1.1 junyoung crtc->v_total_disp = ((mode->vdisplay - 1) << 16) |
848 1.1 junyoung (mode->vtotal - 1);
849 1.1 junyoung crtc->v_sync_strt_wid =
850 1.1 junyoung ((mode->vsync_end - mode->vsync_start) << 16) |
851 1.1 junyoung (mode->vsync_start - 1);
852 1.1 junyoung
853 1.1 junyoung if (mode->flags & VID_NVSYNC)
854 1.1 junyoung crtc->v_sync_strt_wid |= CRTC_VSYNC_NEG;
855 1.1 junyoung
856 1.1 junyoung switch (sc->bits_per_pixel) {
857 1.1 junyoung case 8:
858 1.1 junyoung crtc->color_depth = CRTC_PIX_WIDTH_8BPP;
859 1.1 junyoung break;
860 1.1 junyoung case 16:
861 1.1 junyoung crtc->color_depth = CRTC_PIX_WIDTH_16BPP;
862 1.22 perry break;
863 1.1 junyoung case 32:
864 1.1 junyoung crtc->color_depth = CRTC_PIX_WIDTH_32BPP;
865 1.22 perry break;
866 1.1 junyoung }
867 1.22 perry
868 1.1 junyoung crtc->gen_cntl = 0;
869 1.1 junyoung if (mode->flags & VID_INTERLACE)
870 1.1 junyoung crtc->gen_cntl |= CRTC_INTERLACE_EN;
871 1.1 junyoung if (mode->flags & VID_CSYNC)
872 1.1 junyoung crtc->gen_cntl |= CRTC_CSYNC_EN;
873 1.22 perry
874 1.1 junyoung crtc->dot_clock = mode->dot_clock;
875 1.1 junyoung
876 1.1 junyoung return 0;
877 1.1 junyoung }
878 1.1 junyoung
879 1.1 junyoung void
880 1.1 junyoung mach64_set_crtcregs(struct mach64_softc *sc, struct mach64_crtcregs *crtc)
881 1.1 junyoung {
882 1.1 junyoung
883 1.1 junyoung mach64_set_pll(sc, crtc->dot_clock);
884 1.1 junyoung
885 1.1 junyoung if (sc->has_dsp)
886 1.1 junyoung mach64_set_dsp(sc);
887 1.1 junyoung
888 1.1 junyoung regw(sc, CRTC_H_TOTAL_DISP, crtc->h_total_disp);
889 1.1 junyoung regw(sc, CRTC_H_SYNC_STRT_WID, crtc->h_sync_strt_wid);
890 1.1 junyoung regw(sc, CRTC_V_TOTAL_DISP, crtc->v_total_disp);
891 1.1 junyoung regw(sc, CRTC_V_SYNC_STRT_WID, crtc->v_sync_strt_wid);
892 1.22 perry
893 1.1 junyoung regw(sc, CRTC_VLINE_CRNT_VLINE, 0);
894 1.1 junyoung
895 1.1 junyoung regw(sc, CRTC_OFF_PITCH, (sc->virt_x >> 3) << 22);
896 1.22 perry
897 1.1 junyoung regw(sc, CRTC_GEN_CNTL, crtc->gen_cntl | crtc->color_depth |
898 1.1 junyoung CRTC_EXT_DISP_EN | CRTC_EXT_EN);
899 1.1 junyoung }
900 1.1 junyoung
901 1.1 junyoung int
902 1.1 junyoung mach64_modeswitch(struct mach64_softc *sc, struct videomode *mode)
903 1.1 junyoung {
904 1.1 junyoung struct mach64_crtcregs crtc;
905 1.1 junyoung
906 1.1 junyoung if (mach64_calc_crtcregs(sc, &crtc, mode))
907 1.1 junyoung return 1;
908 1.1 junyoung
909 1.1 junyoung mach64_set_crtcregs(sc, &crtc);
910 1.1 junyoung return 0;
911 1.1 junyoung }
912 1.1 junyoung
913 1.1 junyoung void
914 1.1 junyoung mach64_reset_engine(struct mach64_softc *sc)
915 1.1 junyoung {
916 1.1 junyoung
917 1.1 junyoung /* Reset engine.*/
918 1.1 junyoung regw(sc, GEN_TEST_CNTL, regr(sc, GEN_TEST_CNTL) & ~GUI_ENGINE_ENABLE);
919 1.1 junyoung
920 1.1 junyoung /* Enable engine. */
921 1.1 junyoung regw(sc, GEN_TEST_CNTL, regr(sc, GEN_TEST_CNTL) | GUI_ENGINE_ENABLE);
922 1.1 junyoung
923 1.1 junyoung /* Ensure engine is not locked up by clearing any FIFO or
924 1.1 junyoung host errors. */
925 1.1 junyoung regw(sc, BUS_CNTL, regr(sc, BUS_CNTL) | BUS_HOST_ERR_ACK |
926 1.1 junyoung BUS_FIFO_ERR_ACK);
927 1.1 junyoung }
928 1.1 junyoung
929 1.1 junyoung void
930 1.1 junyoung mach64_init_engine(struct mach64_softc *sc)
931 1.1 junyoung {
932 1.1 junyoung u_int32_t pitch_value;
933 1.22 perry
934 1.1 junyoung pitch_value = sc->virt_x;
935 1.1 junyoung
936 1.1 junyoung if (sc->bits_per_pixel == 24)
937 1.1 junyoung pitch_value *= 3;
938 1.1 junyoung
939 1.1 junyoung mach64_reset_engine(sc);
940 1.22 perry
941 1.1 junyoung wait_for_fifo(sc, 14);
942 1.22 perry
943 1.1 junyoung regw(sc, CONTEXT_MASK, 0xffffffff);
944 1.1 junyoung
945 1.1 junyoung regw(sc, DST_OFF_PITCH, (pitch_value / 8) << 22);
946 1.1 junyoung
947 1.1 junyoung regw(sc, DST_Y_X, 0);
948 1.1 junyoung regw(sc, DST_HEIGHT, 0);
949 1.1 junyoung regw(sc, DST_BRES_ERR, 0);
950 1.1 junyoung regw(sc, DST_BRES_INC, 0);
951 1.1 junyoung regw(sc, DST_BRES_DEC, 0);
952 1.1 junyoung
953 1.1 junyoung regw(sc, DST_CNTL, DST_LAST_PEL | DST_X_LEFT_TO_RIGHT |
954 1.1 junyoung DST_Y_TOP_TO_BOTTOM);
955 1.1 junyoung
956 1.1 junyoung regw(sc, SRC_OFF_PITCH, (pitch_value / 8) << 22);
957 1.1 junyoung
958 1.1 junyoung regw(sc, SRC_Y_X, 0);
959 1.1 junyoung regw(sc, SRC_HEIGHT1_WIDTH1, 1);
960 1.1 junyoung regw(sc, SRC_Y_X_START, 0);
961 1.1 junyoung regw(sc, SRC_HEIGHT2_WIDTH2, 1);
962 1.1 junyoung
963 1.1 junyoung regw(sc, SRC_CNTL, SRC_LINE_X_LEFT_TO_RIGHT);
964 1.1 junyoung
965 1.1 junyoung wait_for_fifo(sc, 13);
966 1.1 junyoung regw(sc, HOST_CNTL, 0);
967 1.22 perry
968 1.1 junyoung regw(sc, PAT_REG0, 0);
969 1.1 junyoung regw(sc, PAT_REG1, 0);
970 1.1 junyoung regw(sc, PAT_CNTL, 0);
971 1.1 junyoung
972 1.1 junyoung regw(sc, SC_LEFT, 0);
973 1.1 junyoung regw(sc, SC_TOP, 0);
974 1.1 junyoung regw(sc, SC_BOTTOM, default_mode.vdisplay - 1);
975 1.1 junyoung regw(sc, SC_RIGHT, pitch_value - 1);
976 1.1 junyoung
977 1.1 junyoung regw(sc, DP_BKGD_CLR, 0);
978 1.1 junyoung regw(sc, DP_FRGD_CLR, 0xffffffff);
979 1.1 junyoung regw(sc, DP_WRITE_MASK, 0xffffffff);
980 1.1 junyoung regw(sc, DP_MIX, (MIX_SRC << 16) | MIX_DST);
981 1.1 junyoung
982 1.1 junyoung regw(sc, DP_SRC, FRGD_SRC_FRGD_CLR);
983 1.1 junyoung
984 1.1 junyoung wait_for_fifo(sc, 3);
985 1.1 junyoung regw(sc, CLR_CMP_CLR, 0);
986 1.1 junyoung regw(sc, CLR_CMP_MASK, 0xffffffff);
987 1.1 junyoung regw(sc, CLR_CMP_CNTL, 0);
988 1.1 junyoung
989 1.1 junyoung wait_for_fifo(sc, 2);
990 1.1 junyoung switch (sc->bits_per_pixel) {
991 1.1 junyoung case 8:
992 1.1 junyoung regw(sc, DP_PIX_WIDTH, HOST_8BPP | SRC_8BPP | DST_8BPP);
993 1.1 junyoung regw(sc, DP_CHAIN_MASK, DP_CHAIN_8BPP);
994 1.23.2.2 tron /* We want 8 bit per channel */
995 1.19 martin regw(sc, DAC_CNTL, regr(sc, DAC_CNTL) | DAC_8BIT_EN);
996 1.1 junyoung break;
997 1.1 junyoung #if 0
998 1.1 junyoung case 32:
999 1.1 junyoung regw(sc, DP_PIX_WIDTH, HOST_32BPP | SRC_32BPP | DST_32BPP);
1000 1.1 junyoung regw(sc, DP_CHAIN_MASK, DP_CHAIN_32BPP);
1001 1.1 junyoung regw(sc, DAC_CNTL, regr(sc, DAC_CNTL) | DAC_8BIT_EN);
1002 1.1 junyoung break;
1003 1.1 junyoung #endif
1004 1.1 junyoung }
1005 1.1 junyoung
1006 1.1 junyoung wait_for_fifo(sc, 5);
1007 1.1 junyoung regw(sc, CRTC_INT_CNTL, regr(sc, CRTC_INT_CNTL) & ~0x20);
1008 1.1 junyoung regw(sc, GUI_TRAJ_CNTL, DST_X_LEFT_TO_RIGHT | DST_Y_TOP_TO_BOTTOM);
1009 1.1 junyoung
1010 1.1 junyoung wait_for_idle(sc);
1011 1.1 junyoung }
1012 1.1 junyoung
1013 1.1 junyoung void
1014 1.1 junyoung mach64_adjust_frame(struct mach64_softc *sc, int x, int y)
1015 1.1 junyoung {
1016 1.1 junyoung int offset;
1017 1.1 junyoung
1018 1.1 junyoung offset = ((x + y * sc->virt_x) * (sc->bits_per_pixel >> 3)) >> 3;
1019 1.22 perry
1020 1.1 junyoung regw(sc, CRTC_OFF_PITCH, (regr(sc, CRTC_OFF_PITCH) & 0xfff00000) |
1021 1.1 junyoung offset);
1022 1.1 junyoung }
1023 1.1 junyoung
1024 1.1 junyoung void
1025 1.1 junyoung mach64_set_dsp(struct mach64_softc *sc)
1026 1.1 junyoung {
1027 1.1 junyoung u_int32_t fifo_depth, page_size, dsp_precision, dsp_loop_latency;
1028 1.1 junyoung u_int32_t dsp_off, dsp_on, dsp_xclks_per_qw;
1029 1.1 junyoung u_int32_t xclks_per_qw, y;
1030 1.1 junyoung u_int32_t fifo_off, fifo_on;
1031 1.22 perry
1032 1.21 martin printf("initializing the DSP\n");
1033 1.1 junyoung if (mach64_chip_id == PCI_PRODUCT_ATI_MACH64_VT ||
1034 1.1 junyoung mach64_chip_id == PCI_PRODUCT_ATI_RAGE_II ||
1035 1.1 junyoung mach64_chip_id == PCI_PRODUCT_ATI_RAGE_IIP ||
1036 1.1 junyoung mach64_chip_id == PCI_PRODUCT_ATI_RAGE_IIC_PCI ||
1037 1.1 junyoung mach64_chip_id == PCI_PRODUCT_ATI_RAGE_IIC_AGP_B ||
1038 1.1 junyoung mach64_chip_id == PCI_PRODUCT_ATI_RAGE_IIC_AGP_P) {
1039 1.1 junyoung dsp_loop_latency = 0;
1040 1.1 junyoung fifo_depth = 24;
1041 1.1 junyoung } else {
1042 1.1 junyoung dsp_loop_latency = 2;
1043 1.1 junyoung fifo_depth = 32;
1044 1.1 junyoung }
1045 1.1 junyoung
1046 1.1 junyoung dsp_precision = 0;
1047 1.1 junyoung xclks_per_qw = (sc->mclk_fb_div * sc->vclk_post_div * 64 << 11) /
1048 1.1 junyoung (sc->vclk_fb_div * sc->mclk_post_div * sc->bits_per_pixel);
1049 1.1 junyoung y = (xclks_per_qw * fifo_depth) >> 11;
1050 1.1 junyoung while (y) {
1051 1.1 junyoung y >>= 1;
1052 1.1 junyoung dsp_precision++;
1053 1.1 junyoung }
1054 1.1 junyoung dsp_precision -= 5;
1055 1.1 junyoung fifo_off = ((xclks_per_qw * (fifo_depth - 1)) >> 5) + (3 << 6);
1056 1.22 perry
1057 1.1 junyoung switch (sc->memtype) {
1058 1.1 junyoung case DRAM:
1059 1.1 junyoung case EDO_DRAM:
1060 1.1 junyoung case PSEUDO_EDO:
1061 1.1 junyoung if (sc->memsize > 1024) {
1062 1.1 junyoung page_size = 9;
1063 1.1 junyoung dsp_loop_latency += 6;
1064 1.1 junyoung } else {
1065 1.1 junyoung page_size = 10;
1066 1.1 junyoung if (sc->memtype == DRAM)
1067 1.1 junyoung dsp_loop_latency += 8;
1068 1.1 junyoung else
1069 1.1 junyoung dsp_loop_latency += 7;
1070 1.1 junyoung }
1071 1.1 junyoung break;
1072 1.1 junyoung case SDRAM:
1073 1.1 junyoung case SGRAM:
1074 1.1 junyoung if (sc->memsize > 1024) {
1075 1.1 junyoung page_size = 8;
1076 1.1 junyoung dsp_loop_latency += 8;
1077 1.1 junyoung } else {
1078 1.22 perry page_size = 10;
1079 1.1 junyoung dsp_loop_latency += 9;
1080 1.1 junyoung }
1081 1.1 junyoung break;
1082 1.1 junyoung default:
1083 1.1 junyoung page_size = 10;
1084 1.1 junyoung dsp_loop_latency += 9;
1085 1.1 junyoung break;
1086 1.1 junyoung }
1087 1.1 junyoung
1088 1.1 junyoung if (xclks_per_qw >= (page_size << 11))
1089 1.1 junyoung fifo_on = ((2 * page_size + 1) << 6) + (xclks_per_qw >> 5);
1090 1.1 junyoung else
1091 1.1 junyoung fifo_on = (3 * page_size + 2) << 6;
1092 1.1 junyoung
1093 1.1 junyoung dsp_xclks_per_qw = xclks_per_qw >> dsp_precision;
1094 1.1 junyoung dsp_on = fifo_on >> dsp_precision;
1095 1.1 junyoung dsp_off = fifo_off >> dsp_precision;
1096 1.1 junyoung
1097 1.21 martin #ifdef DEBUG_MACHFB
1098 1.1 junyoung printf("dsp_xclks_per_qw = %d, dsp_on = %d, dsp_off = %d,\n"
1099 1.1 junyoung "dsp_precision = %d, dsp_loop_latency = %d,\n"
1100 1.1 junyoung "mclk_fb_div = %d, vclk_fb_div = %d,\n"
1101 1.1 junyoung "mclk_post_div = %d, vclk_post_div = %d\n",
1102 1.1 junyoung dsp_xclks_per_qw, dsp_on, dsp_off, dsp_precision, dsp_loop_latency,
1103 1.1 junyoung sc->mclk_fb_div, sc->vclk_fb_div,
1104 1.1 junyoung sc->mclk_post_div, sc->vclk_post_div);
1105 1.22 perry #endif
1106 1.1 junyoung
1107 1.1 junyoung regw(sc, DSP_ON_OFF, ((dsp_on << 16) & DSP_ON) | (dsp_off & DSP_OFF));
1108 1.1 junyoung regw(sc, DSP_CONFIG, ((dsp_precision << 20) & DSP_PRECISION) |
1109 1.22 perry ((dsp_loop_latency << 16) & DSP_LOOP_LATENCY) |
1110 1.1 junyoung (dsp_xclks_per_qw & DSP_XCLKS_PER_QW));
1111 1.1 junyoung }
1112 1.1 junyoung
1113 1.1 junyoung void
1114 1.1 junyoung mach64_set_pll(struct mach64_softc *sc, int clock)
1115 1.1 junyoung {
1116 1.1 junyoung int q;
1117 1.1 junyoung
1118 1.1 junyoung q = (clock * sc->ref_div * 100) / (2 * sc->ref_freq);
1119 1.21 martin #ifdef DEBUG_MACHFB
1120 1.1 junyoung printf("q = %d\n", q);
1121 1.1 junyoung #endif
1122 1.1 junyoung if (q > 25500) {
1123 1.1 junyoung printf("Warning: q > 25500\n");
1124 1.1 junyoung q = 25500;
1125 1.1 junyoung sc->vclk_post_div = 1;
1126 1.1 junyoung sc->log2_vclk_post_div = 0;
1127 1.1 junyoung } else if (q > 12750) {
1128 1.1 junyoung sc->vclk_post_div = 1;
1129 1.1 junyoung sc->log2_vclk_post_div = 0;
1130 1.1 junyoung } else if (q > 6350) {
1131 1.1 junyoung sc->vclk_post_div = 2;
1132 1.1 junyoung sc->log2_vclk_post_div = 1;
1133 1.1 junyoung } else if (q > 3150) {
1134 1.1 junyoung sc->vclk_post_div = 4;
1135 1.1 junyoung sc->log2_vclk_post_div = 2;
1136 1.1 junyoung } else if (q >= 1600) {
1137 1.1 junyoung sc->vclk_post_div = 8;
1138 1.1 junyoung sc->log2_vclk_post_div = 3;
1139 1.1 junyoung } else {
1140 1.22 perry printf("Warning: q < 1600\n");
1141 1.1 junyoung sc->vclk_post_div = 8;
1142 1.1 junyoung sc->log2_vclk_post_div = 3;
1143 1.1 junyoung }
1144 1.1 junyoung sc->vclk_fb_div = q * sc->vclk_post_div / 100;
1145 1.1 junyoung
1146 1.1 junyoung regwb_pll(sc, MCLK_FB_DIV, sc->mclk_fb_div);
1147 1.1 junyoung regwb_pll(sc, VCLK_POST_DIV, sc->log2_vclk_post_div);
1148 1.1 junyoung regwb_pll(sc, VCLK0_FB_DIV, sc->vclk_fb_div);
1149 1.22 perry }
1150 1.1 junyoung
1151 1.1 junyoung void
1152 1.1 junyoung mach64_init_lut(struct mach64_softc *sc)
1153 1.1 junyoung {
1154 1.23.2.1 tron int i,idx;
1155 1.23.2.1 tron idx=0;
1156 1.23.2.1 tron for(i=0;i<256;i++) {
1157 1.23.2.2 tron mach64_putpalreg(sc, i, rasops_cmap[idx], rasops_cmap[idx+1],
1158 1.23.2.2 tron rasops_cmap[idx+2]);
1159 1.23.2.1 tron idx+=3;
1160 1.19 martin }
1161 1.23.2.1 tron }
1162 1.1 junyoung
1163 1.22 perry int
1164 1.21 martin mach64_putpalreg(struct mach64_softc *sc, uint8_t index, uint8_t r, uint8_t g, uint8_t b)
1165 1.19 martin {
1166 1.19 martin sc->sc_cmap_red[index]=r;
1167 1.19 martin sc->sc_cmap_green[index]=g;
1168 1.19 martin sc->sc_cmap_blue[index]=b;
1169 1.23.2.2 tron /*
1170 1.23.2.2 tron * writing the dac index takes a while, in theory we can poll some
1171 1.23.2.2 tron * register to see when it's ready - but we better avoid writing it
1172 1.23.2.2 tron * unnecessarily
1173 1.23.2.2 tron */
1174 1.19 martin if(index!=sc->sc_dacw)
1175 1.19 martin {
1176 1.19 martin regwb(sc, DAC_MASK, 0xff);
1177 1.19 martin regwb(sc, DAC_WINDEX, index);
1178 1.19 martin }
1179 1.19 martin sc->sc_dacw=index+1;
1180 1.19 martin regwb(sc, DAC_DATA, r);
1181 1.19 martin regwb(sc, DAC_DATA, g);
1182 1.19 martin regwb(sc, DAC_DATA, b);
1183 1.19 martin return 0;
1184 1.19 martin }
1185 1.1 junyoung
1186 1.22 perry int
1187 1.21 martin mach64_putcmap(struct mach64_softc *sc, struct wsdisplay_cmap *cm)
1188 1.19 martin {
1189 1.19 martin u_int index = cm->index;
1190 1.19 martin u_int count = cm->count;
1191 1.19 martin int i, error;
1192 1.19 martin u_char rbuf[256], gbuf[256], bbuf[256];
1193 1.19 martin u_char *r, *g, *b;
1194 1.19 martin
1195 1.19 martin printf("putcmap: %d %d\n",index, count);
1196 1.19 martin if (cm->index >= 256 || cm->count > 256 ||
1197 1.19 martin (cm->index + cm->count) > 256)
1198 1.19 martin return EINVAL;
1199 1.19 martin error = copyin(cm->red, &rbuf[index], count);
1200 1.19 martin if (error)
1201 1.19 martin return error;
1202 1.19 martin error = copyin(cm->green, &gbuf[index], count);
1203 1.19 martin if (error)
1204 1.19 martin return error;
1205 1.19 martin error = copyin(cm->blue, &bbuf[index], count);
1206 1.19 martin if (error)
1207 1.19 martin return error;
1208 1.19 martin
1209 1.19 martin memcpy(&sc->sc_cmap_red[index], &rbuf[index], count);
1210 1.19 martin memcpy(&sc->sc_cmap_green[index], &gbuf[index], count);
1211 1.19 martin memcpy(&sc->sc_cmap_blue[index], &bbuf[index], count);
1212 1.19 martin
1213 1.19 martin r = &sc->sc_cmap_red[index];
1214 1.19 martin g = &sc->sc_cmap_green[index];
1215 1.19 martin b = &sc->sc_cmap_blue[index];
1216 1.22 perry
1217 1.19 martin for (i = 0; i < count; i++) {
1218 1.19 martin mach64_putpalreg(sc,index,*r, *g, *b);
1219 1.19 martin index++;
1220 1.19 martin r++, g++, b++;
1221 1.1 junyoung }
1222 1.19 martin return 0;
1223 1.19 martin }
1224 1.19 martin
1225 1.22 perry int
1226 1.21 martin mach64_getcmap(struct mach64_softc *sc, struct wsdisplay_cmap *cm)
1227 1.19 martin {
1228 1.19 martin u_int index = cm->index;
1229 1.19 martin u_int count = cm->count;
1230 1.19 martin int error;
1231 1.19 martin
1232 1.19 martin if (index >= 255 || count > 256 || index + count > 256)
1233 1.19 martin return EINVAL;
1234 1.22 perry
1235 1.19 martin error = copyout(&sc->sc_cmap_red[index], cm->red, count);
1236 1.19 martin if (error)
1237 1.19 martin return error;
1238 1.19 martin error = copyout(&sc->sc_cmap_green[index], cm->green, count);
1239 1.19 martin if (error)
1240 1.19 martin return error;
1241 1.19 martin error = copyout(&sc->sc_cmap_blue[index], cm->blue, count);
1242 1.19 martin if (error)
1243 1.19 martin return error;
1244 1.19 martin
1245 1.19 martin return 0;
1246 1.1 junyoung }
1247 1.1 junyoung
1248 1.6 junyoung int
1249 1.1 junyoung mach64_set_screentype(struct mach64_softc *sc, const struct wsscreen_descr *des)
1250 1.1 junyoung {
1251 1.6 junyoung struct mach64_crtcregs regs;
1252 1.1 junyoung
1253 1.6 junyoung if (mach64_calc_crtcregs(sc, ®s,
1254 1.6 junyoung (struct videomode *)des->modecookie))
1255 1.6 junyoung return 1;
1256 1.6 junyoung
1257 1.6 junyoung mach64_set_crtcregs(sc, ®s);
1258 1.6 junyoung return 0;
1259 1.1 junyoung }
1260 1.1 junyoung
1261 1.5 junyoung int
1262 1.5 junyoung mach64_is_console(struct pci_attach_args *pa)
1263 1.5 junyoung {
1264 1.5 junyoung #ifdef __sparc__
1265 1.5 junyoung int node;
1266 1.5 junyoung
1267 1.5 junyoung node = PCITAG_NODE(pa->pa_tag);
1268 1.5 junyoung if (node == -1)
1269 1.5 junyoung return 0;
1270 1.5 junyoung
1271 1.17 pk return (node == prom_instance_to_package(prom_stdout()));
1272 1.20 martin #elif defined(__powerpc__)
1273 1.20 martin /* check if we're the /chosen console device */
1274 1.20 martin int chosen, stdout, node, us;
1275 1.20 martin us=pcidev_to_ofdev(pa->pa_pc, pa->pa_tag);
1276 1.20 martin chosen = OF_finddevice("/chosen");
1277 1.20 martin OF_getprop(chosen, "stdout", &stdout, 4);
1278 1.20 martin node = OF_instance_to_package(stdout);
1279 1.23.2.2 tron return(us == node);
1280 1.5 junyoung #else
1281 1.5 junyoung return 1;
1282 1.5 junyoung #endif
1283 1.5 junyoung }
1284 1.5 junyoung
1285 1.1 junyoung /*
1286 1.1 junyoung * wsdisplay_emulops
1287 1.1 junyoung */
1288 1.1 junyoung
1289 1.1 junyoung void
1290 1.1 junyoung mach64_cursor(void *cookie, int on, int row, int col)
1291 1.1 junyoung {
1292 1.21 martin struct rasops_info *ri=cookie;
1293 1.21 martin struct mach64screen *scr=ri->ri_hw;
1294 1.21 martin struct mach64_softc *sc=scr->sc;
1295 1.21 martin int x,y,wi=ri->ri_font->fontwidth,he=ri->ri_font->fontheight;
1296 1.21 martin if(scr->active) {
1297 1.21 martin x=scr->cursorcol*wi+ri->ri_xorigin;
1298 1.21 martin y=scr->cursorrow*he+ri->ri_yorigin;
1299 1.21 martin if(scr->cursordrawn) {
1300 1.21 martin mach64_bitblt(sc,x,y,x,y,wi,he,MIX_NOT_SRC,0xff);
1301 1.21 martin scr->cursordrawn=0;
1302 1.21 martin }
1303 1.21 martin scr->cursorrow=row;
1304 1.21 martin scr->cursorcol=col;
1305 1.21 martin if((scr->cursoron=on)!=0)
1306 1.21 martin {
1307 1.21 martin x=scr->cursorcol*wi+ri->ri_xorigin;
1308 1.21 martin y=scr->cursorrow*he+ri->ri_yorigin;
1309 1.21 martin mach64_bitblt(sc,x,y,x,y,wi,he,MIX_NOT_SRC,0xff);
1310 1.21 martin scr->cursordrawn=1;
1311 1.21 martin }
1312 1.21 martin } else {
1313 1.21 martin scr->cursoron=on;
1314 1.21 martin scr->cursorrow=row;
1315 1.21 martin scr->cursorcol=col;
1316 1.21 martin scr->cursordrawn=0;
1317 1.21 martin }
1318 1.1 junyoung }
1319 1.1 junyoung
1320 1.7 martin #if 0
1321 1.1 junyoung int
1322 1.1 junyoung mach64_mapchar(void *cookie, int uni, u_int *index)
1323 1.1 junyoung {
1324 1.1 junyoung
1325 1.1 junyoung return 0;
1326 1.1 junyoung }
1327 1.21 martin #endif
1328 1.1 junyoung
1329 1.1 junyoung void
1330 1.1 junyoung mach64_putchar(void *cookie, int row, int col, u_int c, long attr)
1331 1.1 junyoung {
1332 1.21 martin struct rasops_info *ri=cookie;
1333 1.21 martin struct mach64screen *scr=ri->ri_hw;
1334 1.21 martin struct mach64_softc *sc=scr->sc;
1335 1.21 martin int offset=ri->ri_cols*row+col;
1336 1.21 martin scr->attrs[offset]=attr;
1337 1.21 martin scr->chars[offset]=c;
1338 1.23.2.2 tron if((scr->active) && (sc->sc_mode == WSDISPLAYIO_MODE_EMUL)) {
1339 1.21 martin int fg,bg,uc;
1340 1.21 martin uint8_t *data;
1341 1.21 martin int x,y,wi=ri->ri_font->fontwidth,he=ri->ri_font->fontheight;
1342 1.22 perry
1343 1.21 martin /*scr->putchar(cookie,row,col,c,attr);*/
1344 1.21 martin if (!CHAR_IN_FONT(c, ri->ri_font))
1345 1.21 martin return;
1346 1.21 martin bg = (u_char)ri->ri_devcmap[(attr >> 16) & 0xf];
1347 1.21 martin fg = (u_char)ri->ri_devcmap[(attr >> 24) & 0xf];
1348 1.21 martin x=ri->ri_xorigin+col*wi;
1349 1.21 martin y=ri->ri_yorigin+row*he;
1350 1.23.2.2 tron if(c == 0x20) {
1351 1.21 martin mach64_rectfill(sc,x,y,wi,he,bg);
1352 1.21 martin } else {
1353 1.21 martin uc = c-ri->ri_font->firstchar;
1354 1.23.2.2 tron data = (uint8_t *)ri->ri_font->data + uc *
1355 1.23.2.2 tron ri->ri_fontscale;
1356 1.1 junyoung
1357 1.22 perry mach64_setup_mono(sc,x,y,wi,he,fg,bg);
1358 1.21 martin mach64_feed_bytes(sc,ri->ri_fontscale,data);
1359 1.21 martin }
1360 1.21 martin }
1361 1.1 junyoung }
1362 1.21 martin
1363 1.1 junyoung
1364 1.1 junyoung void
1365 1.1 junyoung mach64_copycols(void *cookie, int row, int srccol, int dstcol, int ncols)
1366 1.1 junyoung {
1367 1.19 martin struct rasops_info *ri=cookie;
1368 1.21 martin struct mach64screen *scr=ri->ri_hw;
1369 1.21 martin struct mach64_softc *sc=scr->sc;
1370 1.19 martin int32_t xs,xd,y,width,height;
1371 1.22 perry
1372 1.21 martin int from=srccol+row*ri->ri_cols;
1373 1.21 martin int to=dstcol+row*ri->ri_cols;
1374 1.21 martin memmove(&scr->attrs[to],&scr->attrs[from],ncols*sizeof(long));
1375 1.21 martin memmove(&scr->chars[to],&scr->chars[from],ncols*sizeof(u_int));
1376 1.21 martin
1377 1.23.2.2 tron if((scr->active) && (sc->sc_mode == WSDISPLAYIO_MODE_EMUL)) {
1378 1.23.2.1 tron xs=ri->ri_xorigin+ri->ri_font->fontwidth*srccol;
1379 1.23.2.1 tron xd=ri->ri_xorigin+ri->ri_font->fontwidth*dstcol;
1380 1.23.2.1 tron y=ri->ri_yorigin+ri->ri_font->fontheight*row;
1381 1.23.2.1 tron width=ri->ri_font->fontwidth*ncols;
1382 1.23.2.1 tron height=ri->ri_font->fontheight;
1383 1.23.2.1 tron mach64_bitblt(sc,xs,y,xd,y,width,height,MIX_SRC,0xff);
1384 1.23.2.1 tron }
1385 1.21 martin }
1386 1.1 junyoung
1387 1.1 junyoung void
1388 1.1 junyoung mach64_erasecols(void *cookie, int row, int startcol, int ncols, long fillattr)
1389 1.1 junyoung {
1390 1.19 martin struct rasops_info *ri=cookie;
1391 1.21 martin struct mach64screen *scr=ri->ri_hw;
1392 1.21 martin struct mach64_softc *sc=scr->sc;
1393 1.19 martin int32_t x,y,width,height,fg,bg,ul;;
1394 1.22 perry
1395 1.21 martin int start=startcol+row*ri->ri_cols;
1396 1.21 martin int end=start+ncols, i;
1397 1.21 martin for(i=start;i<end;i++) {
1398 1.21 martin scr->attrs[i]=fillattr;
1399 1.21 martin scr->chars[i]=0x20;
1400 1.21 martin }
1401 1.23.2.2 tron if((scr->active) && (sc->sc_mode == WSDISPLAYIO_MODE_EMUL)) {
1402 1.23.2.1 tron x=ri->ri_xorigin+ri->ri_font->fontwidth*startcol;
1403 1.23.2.1 tron y=ri->ri_yorigin+ri->ri_font->fontheight*row;
1404 1.23.2.1 tron width=ri->ri_font->fontwidth*ncols;
1405 1.23.2.1 tron height=ri->ri_font->fontheight;
1406 1.23.2.1 tron rasops_unpack_attr(fillattr,&fg,&bg,&ul);
1407 1.22 perry
1408 1.23.2.1 tron mach64_rectfill(sc,x,y,width,height,bg);
1409 1.21 martin }
1410 1.1 junyoung }
1411 1.1 junyoung
1412 1.1 junyoung void
1413 1.1 junyoung mach64_copyrows(void *cookie, int srcrow, int dstrow, int nrows)
1414 1.1 junyoung {
1415 1.19 martin struct rasops_info *ri=cookie;
1416 1.21 martin struct mach64screen *scr=ri->ri_hw;
1417 1.21 martin struct mach64_softc *sc=scr->sc;
1418 1.23.2.2 tron int32_t x, ys, yd, width, height;
1419 1.22 perry
1420 1.23.2.2 tron int from, to, len;
1421 1.23.2.2 tron from=ri->ri_cols*srcrow;
1422 1.23.2.2 tron to=ri->ri_cols*dstrow;
1423 1.23.2.2 tron len=ri->ri_cols*nrows;
1424 1.23.2.2 tron
1425 1.21 martin memmove(&scr->attrs[to],&scr->attrs[from],len*sizeof(long));
1426 1.21 martin memmove(&scr->chars[to],&scr->chars[from],len*sizeof(u_int));
1427 1.23.2.1 tron
1428 1.23.2.2 tron if((scr->active) && (sc->sc_mode == WSDISPLAYIO_MODE_EMUL)) {
1429 1.23.2.1 tron x=ri->ri_xorigin;
1430 1.23.2.1 tron ys=ri->ri_yorigin+ri->ri_font->fontheight*srcrow;
1431 1.23.2.1 tron yd=ri->ri_yorigin+ri->ri_font->fontheight*dstrow;
1432 1.23.2.1 tron width=ri->ri_emuwidth;
1433 1.23.2.1 tron height=ri->ri_font->fontheight*nrows;
1434 1.23.2.1 tron mach64_bitblt(sc,x,ys,x,yd,width,height,MIX_SRC,0xff);
1435 1.23.2.1 tron }
1436 1.21 martin }
1437 1.19 martin
1438 1.21 martin void
1439 1.21 martin mach64_eraserows(void *cookie, int row, int nrows, long fillattr)
1440 1.21 martin {
1441 1.21 martin struct rasops_info *ri=cookie;
1442 1.21 martin struct mach64screen *scr=ri->ri_hw;
1443 1.21 martin struct mach64_softc *sc=scr->sc;
1444 1.21 martin int32_t x,y,width,height,fg,bg,ul;
1445 1.21 martin
1446 1.21 martin int start=ri->ri_cols*row, end=ri->ri_cols*(row+nrows),i;
1447 1.21 martin for(i=start;i<end;i++) {
1448 1.21 martin scr->attrs[i]=fillattr;
1449 1.21 martin scr->chars[i]=0x20;
1450 1.21 martin }
1451 1.21 martin
1452 1.23.2.2 tron if((scr->active) && (sc->sc_mode == WSDISPLAYIO_MODE_EMUL)) {
1453 1.21 martin x=ri->ri_xorigin;
1454 1.21 martin y=ri->ri_yorigin+ri->ri_font->fontheight*row;
1455 1.21 martin width=ri->ri_emuwidth;
1456 1.22 perry height=ri->ri_font->fontheight*nrows;
1457 1.21 martin rasops_unpack_attr(fillattr,&fg,&bg,&ul);
1458 1.22 perry
1459 1.21 martin mach64_rectfill(sc,x,y,width,height,bg);
1460 1.21 martin }
1461 1.21 martin }
1462 1.21 martin
1463 1.22 perry void
1464 1.22 perry mach64_bitblt(struct mach64_softc *sc, int xs, int ys, int xd, int yd, int width, int height, int rop, int mask)
1465 1.19 martin {
1466 1.19 martin uint32_t dest_ctl=0;
1467 1.22 perry wait_for_idle(sc);
1468 1.19 martin regw(sc,DP_WRITE_MASK,mask); /* XXX only good for 8 bit */
1469 1.19 martin regw(sc,DP_PIX_WIDTH,DST_8BPP|SRC_8BPP|HOST_8BPP);
1470 1.19 martin regw(sc,DP_SRC,FRGD_SRC_BLIT);
1471 1.19 martin regw(sc,DP_MIX,(rop&0xffff)<<16);
1472 1.19 martin regw(sc,CLR_CMP_CNTL,0); /* no transparency */
1473 1.19 martin if(yd<ys) {
1474 1.19 martin dest_ctl=DST_Y_TOP_TO_BOTTOM;
1475 1.19 martin } else {
1476 1.19 martin ys+=height-1;
1477 1.19 martin yd+=height-1;
1478 1.19 martin dest_ctl=DST_Y_BOTTOM_TO_TOP;
1479 1.19 martin }
1480 1.19 martin if(xd<xs) {
1481 1.19 martin dest_ctl|=DST_X_LEFT_TO_RIGHT;
1482 1.19 martin regw(sc,SRC_CNTL,SRC_LINE_X_LEFT_TO_RIGHT);
1483 1.19 martin } else {
1484 1.19 martin dest_ctl|=DST_X_RIGHT_TO_LEFT;
1485 1.19 martin xs+=width-1;
1486 1.19 martin xd+=width-1;
1487 1.19 martin regw(sc,SRC_CNTL,SRC_LINE_X_RIGHT_TO_LEFT);
1488 1.19 martin }
1489 1.19 martin regw(sc,DST_CNTL,dest_ctl);
1490 1.22 perry
1491 1.19 martin regw(sc,SRC_Y_X,(xs<<16)|ys);
1492 1.19 martin regw(sc,SRC_WIDTH1,width);
1493 1.19 martin regw(sc,DST_Y_X,(xd<<16)|yd);
1494 1.19 martin regw(sc,DST_HEIGHT_WIDTH,(width<<16)|height);
1495 1.19 martin }
1496 1.22 perry
1497 1.22 perry void
1498 1.23.2.2 tron mach64_setup_mono(struct mach64_softc *sc, int xd, int yd, int width,
1499 1.23.2.2 tron int height, uint32_t fg, uint32_t bg)
1500 1.21 martin {
1501 1.22 perry wait_for_idle(sc);
1502 1.21 martin regw(sc,DP_WRITE_MASK,0xff); /* XXX only good for 8 bit */
1503 1.21 martin regw(sc,DP_PIX_WIDTH,DST_8BPP|SRC_1BPP|HOST_1BPP);
1504 1.21 martin regw(sc,DP_SRC,MONO_SRC_HOST|BKGD_SRC_BKGD_CLR|FRGD_SRC_FRGD_CLR);
1505 1.21 martin regw(sc,DP_MIX,((MIX_SRC&0xffff)<<16)|MIX_SRC);
1506 1.21 martin regw(sc,CLR_CMP_CNTL,0); /* no transparency */
1507 1.21 martin regw(sc,SRC_CNTL,SRC_LINE_X_LEFT_TO_RIGHT);
1508 1.21 martin regw(sc,DST_CNTL,DST_Y_TOP_TO_BOTTOM|DST_X_LEFT_TO_RIGHT);
1509 1.21 martin regw(sc,HOST_CNTL,HOST_BYTE_ALIGN);
1510 1.21 martin regw(sc,DP_BKGD_CLR,bg);
1511 1.21 martin regw(sc,DP_FRGD_CLR,fg);
1512 1.21 martin regw(sc,SRC_Y_X,0);
1513 1.21 martin regw(sc,SRC_WIDTH1,width);
1514 1.21 martin regw(sc,DST_Y_X,(xd<<16)|yd);
1515 1.21 martin regw(sc,DST_HEIGHT_WIDTH,(width<<16)|height);
1516 1.21 martin /* now feed the data into the chip */
1517 1.21 martin }
1518 1.21 martin
1519 1.22 perry void
1520 1.21 martin mach64_feed_bytes(struct mach64_softc *sc, int count, uint8_t *data)
1521 1.21 martin {
1522 1.21 martin int i;
1523 1.21 martin uint32_t latch=0, bork;
1524 1.21 martin int shift=0;
1525 1.21 martin int reg=0;
1526 1.21 martin for(i=0;i<count;i++) {
1527 1.21 martin bork=data[i];
1528 1.21 martin latch|=(bork<<shift);
1529 1.23.2.2 tron if(shift == 24) {
1530 1.21 martin regw(sc,HOST_DATA0+reg,latch);
1531 1.21 martin latch=0;
1532 1.21 martin shift=0;
1533 1.21 martin reg=(reg+4)&0x3c;
1534 1.21 martin } else
1535 1.21 martin shift+=8;
1536 1.21 martin }
1537 1.23.2.1 tron if(shift!=0) /* 24 */
1538 1.21 martin regw(sc,HOST_DATA0+reg,latch);
1539 1.22 perry }
1540 1.21 martin
1541 1.22 perry
1542 1.22 perry void
1543 1.23.2.2 tron mach64_rectfill(struct mach64_softc *sc, int x, int y, int width, int height,
1544 1.23.2.2 tron int colour)
1545 1.19 martin {
1546 1.22 perry wait_for_idle(sc);
1547 1.19 martin regw(sc,DP_WRITE_MASK,0xff);
1548 1.19 martin regw(sc,DP_FRGD_CLR,colour);
1549 1.19 martin regw(sc,DP_PIX_WIDTH,DST_8BPP|SRC_8BPP|HOST_8BPP);
1550 1.19 martin regw(sc,DP_SRC,FRGD_SRC_FRGD_CLR);
1551 1.19 martin regw(sc,DP_MIX,(MIX_SRC)<<16);
1552 1.19 martin regw(sc,CLR_CMP_CNTL,0); /* no transparency */
1553 1.19 martin regw(sc,SRC_CNTL,SRC_LINE_X_LEFT_TO_RIGHT);
1554 1.19 martin regw(sc,DST_CNTL,DST_X_LEFT_TO_RIGHT|DST_Y_TOP_TO_BOTTOM);
1555 1.22 perry
1556 1.19 martin regw(sc,SRC_Y_X,(x<<16)|y);
1557 1.19 martin regw(sc,SRC_WIDTH1,width);
1558 1.19 martin regw(sc,DST_Y_X,(x<<16)|y);
1559 1.19 martin regw(sc,DST_HEIGHT_WIDTH,(width<<16)|height);
1560 1.19 martin }
1561 1.1 junyoung
1562 1.22 perry void
1563 1.21 martin mach64_clearscreen(struct mach64_softc *sc)
1564 1.21 martin {
1565 1.21 martin mach64_rectfill(sc,0,0,sc->virt_x,sc->virt_y,sc->sc_bg);
1566 1.21 martin }
1567 1.21 martin
1568 1.21 martin
1569 1.22 perry void
1570 1.22 perry mach64_showpal(struct mach64_softc *sc)
1571 1.19 martin {
1572 1.19 martin int i,x=0;
1573 1.19 martin for (i=0;i<16;i++) {
1574 1.19 martin mach64_rectfill(sc,x,0,64,64,i);
1575 1.19 martin x+=64;
1576 1.19 martin }
1577 1.1 junyoung }
1578 1.22 perry
1579 1.7 martin int
1580 1.7 martin mach64_allocattr(void *cookie, int fg, int bg, int flags, long *attrp)
1581 1.1 junyoung {
1582 1.23.2.2 tron if((fg == 0)&&(bg == 0))
1583 1.23.2.1 tron {
1584 1.21 martin fg=WS_DEFAULT_FG;
1585 1.21 martin bg=WS_DEFAULT_BG;
1586 1.21 martin }
1587 1.21 martin *attrp=(fg&0xf)<<24|(bg&0xf)<<16|(flags&0xff)<<8;
1588 1.7 martin return 0;
1589 1.1 junyoung }
1590 1.1 junyoung
1591 1.1 junyoung /*
1592 1.1 junyoung * wsdisplay_accessops
1593 1.1 junyoung */
1594 1.1 junyoung
1595 1.1 junyoung int
1596 1.14 fvdl mach64_ioctl(void *v, u_long cmd, caddr_t data, int flag, struct proc *p)
1597 1.1 junyoung {
1598 1.19 martin struct mach64_softc *sc = v;
1599 1.19 martin struct wsdisplay_fbinfo *wdf;
1600 1.19 martin struct mach64screen *ms=sc->active;
1601 1.19 martin switch (cmd) {
1602 1.19 martin case WSDISPLAYIO_GTYPE:
1603 1.23.2.2 tron /* XXX is this the right type to return? */
1604 1.23.2.2 tron *(u_int *)data = WSDISPLAY_TYPE_PCIMISC;
1605 1.19 martin return 0;
1606 1.19 martin
1607 1.19 martin case WSDISPLAYIO_GINFO:
1608 1.19 martin wdf = (void *)data;
1609 1.19 martin wdf->height = ms->ri.ri_height;
1610 1.19 martin wdf->width = ms->ri.ri_width;
1611 1.19 martin wdf->depth = ms->ri.ri_depth;
1612 1.19 martin wdf->cmsize = 256;
1613 1.19 martin return 0;
1614 1.19 martin case WSDISPLAYIO_GETCMAP:
1615 1.23.2.2 tron return mach64_getcmap(sc,
1616 1.23.2.2 tron (struct wsdisplay_cmap *)data);
1617 1.19 martin
1618 1.19 martin case WSDISPLAYIO_PUTCMAP:
1619 1.23.2.2 tron return mach64_putcmap(sc,
1620 1.23.2.2 tron (struct wsdisplay_cmap *)data);
1621 1.19 martin /* PCI config read/write passthrough. */
1622 1.19 martin case PCI_IOC_CFGREAD:
1623 1.19 martin case PCI_IOC_CFGWRITE:
1624 1.19 martin return (pci_devioctl(sc->sc_pc, sc->sc_pcitag,
1625 1.19 martin cmd, data, flag, p));
1626 1.19 martin case WSDISPLAYIO_SMODE:
1627 1.19 martin {
1628 1.19 martin int new_mode=*(int*)data;
1629 1.19 martin if(new_mode!=sc->sc_mode)
1630 1.19 martin {
1631 1.19 martin sc->sc_mode=new_mode;
1632 1.23.2.2 tron if(new_mode == WSDISPLAYIO_MODE_EMUL)
1633 1.19 martin {
1634 1.23.2.2 tron /*
1635 1.23.2.2 tron * reset a few things the
1636 1.23.2.2 tron * Xserver might have screwed up
1637 1.23.2.2 tron */
1638 1.23.2.2 tron mach64_restore_screen(ms,
1639 1.23.2.2 tron ms->type, ms->chars);
1640 1.23.2.2 tron mach64_cursor(ms, ms->cursoron,
1641 1.23.2.2 tron ms->cursorrow,
1642 1.23.2.2 tron ms->cursorcol);
1643 1.19 martin }
1644 1.19 martin }
1645 1.19 martin }
1646 1.21 martin return 0;
1647 1.21 martin case WSDISPLAYIO_GETWSCHAR:
1648 1.23.2.2 tron return mach64_getwschar(sc,
1649 1.23.2.2 tron (struct wsdisplay_char *)data);
1650 1.21 martin case WSDISPLAYIO_PUTWSCHAR:
1651 1.23.2.2 tron return mach64_putwschar(sc,
1652 1.23.2.2 tron (struct wsdisplay_char *)data);
1653 1.19 martin }
1654 1.19 martin return EPASSTHROUGH;
1655 1.1 junyoung }
1656 1.1 junyoung
1657 1.1 junyoung paddr_t
1658 1.1 junyoung mach64_mmap(void *v, off_t offset, int prot)
1659 1.1 junyoung {
1660 1.22 perry struct mach64_softc *sc = v;
1661 1.19 martin paddr_t pa;
1662 1.19 martin /* 'regular' framebuffer mmap()ing */
1663 1.19 martin if(offset<sc->sc_apersize) {
1664 1.23.2.2 tron pa = bus_space_mmap(sc->sc_memt, sc->sc_aperbase+offset, 0,
1665 1.23.2.2 tron prot, BUS_SPACE_MAP_LINEAR);
1666 1.19 martin return pa;
1667 1.19 martin }
1668 1.22 perry #if 0
1669 1.23.2.2 tron /* evil hack to allow mmap()ing other devices as well */
1670 1.19 martin if((offset>0x80000000) && (offset<=0xffffffff)) {
1671 1.23.2.2 tron pa = bus_space_mmap(sc->sc_memt, offset, 0, prot,
1672 1.23.2.2 tron BUS_SPACE_MAP_LINEAR);
1673 1.19 martin return pa;
1674 1.19 martin }
1675 1.22 perry #endif
1676 1.20 martin
1677 1.23.2.2 tron if((offset>=sc->sc_aperphys) &&
1678 1.23.2.2 tron (offset<(sc->sc_aperphys+sc->sc_apersize))) {
1679 1.23.2.2 tron pa = bus_space_mmap(sc->sc_memt, offset, 0, prot,
1680 1.23.2.2 tron BUS_SPACE_MAP_LINEAR);
1681 1.20 martin return pa;
1682 1.20 martin }
1683 1.20 martin
1684 1.23.2.2 tron if((offset>=sc->sc_regphys) &&
1685 1.23.2.2 tron (offset<(sc->sc_regphys+sc->sc_regsize))) {
1686 1.23.2.2 tron pa = bus_space_mmap(sc->sc_memt, offset, 0, prot,
1687 1.23.2.2 tron BUS_SPACE_MAP_LINEAR);
1688 1.20 martin return pa;
1689 1.20 martin }
1690 1.20 martin
1691 1.1 junyoung return -1;
1692 1.1 junyoung }
1693 1.1 junyoung
1694 1.1 junyoung int
1695 1.1 junyoung mach64_alloc_screen(void *v, const struct wsscreen_descr *type, void **cookiep,
1696 1.1 junyoung int *curxp, int *curyp, long *defattrp)
1697 1.1 junyoung {
1698 1.1 junyoung struct mach64_softc *sc = v;
1699 1.1 junyoung struct mach64screen *scr;
1700 1.21 martin struct rasops_info *ri;
1701 1.21 martin int cnt=type->nrows * type->ncols;
1702 1.1 junyoung
1703 1.7 martin scr = malloc(sizeof(struct mach64screen), M_DEVBUF, M_WAITOK|M_ZERO);
1704 1.7 martin mach64_init_screen(sc, scr, type, 0, defattrp, sc->active == NULL);
1705 1.21 martin ri=&scr->ri;
1706 1.22 perry
1707 1.21 martin ri->ri_hw=scr;
1708 1.21 martin /*ri->ri_bits=(void *)sc->sc_aperbase;*/
1709 1.21 martin rasops_init(ri, mach64_console_screen.ri.ri_height / 8,
1710 1.7 martin mach64_console_screen.ri.ri_width / 8);
1711 1.22 perry
1712 1.21 martin rasops_reconfig(ri, ri->ri_height / ri->ri_font->fontheight,
1713 1.23.2.2 tron ri->ri_width / ri->ri_font->fontwidth);
1714 1.21 martin set_address(ri,sc->sc_aperbase);
1715 1.21 martin mach64_allocattr(ri,WS_DEFAULT_FG,WS_DEFAULT_BG,0,defattrp);
1716 1.22 perry
1717 1.20 martin scr->ri.ri_ops.copyrows=mach64_copyrows;
1718 1.20 martin scr->ri.ri_ops.eraserows=mach64_eraserows;
1719 1.20 martin scr->ri.ri_ops.copycols=mach64_copycols;
1720 1.20 martin scr->ri.ri_ops.erasecols=mach64_erasecols;
1721 1.21 martin scr->ri.ri_ops.putchar=mach64_putchar;
1722 1.21 martin scr->ri.ri_ops.cursor=mach64_cursor;
1723 1.7 martin
1724 1.21 martin scr->attrs=(long *)malloc((cnt)*(sizeof(long)+sizeof(u_int)),
1725 1.21 martin M_DEVBUF, M_WAITOK);
1726 1.21 martin scr->chars=(u_int *)&scr->attrs[cnt];
1727 1.21 martin mach64_eraserows(ri, 0, ri->ri_rows, *defattrp);
1728 1.23.2.1 tron
1729 1.7 martin if (sc->active == NULL) {
1730 1.1 junyoung scr->active = 1;
1731 1.1 junyoung sc->active = scr;
1732 1.1 junyoung sc->currenttype = type;
1733 1.1 junyoung }
1734 1.1 junyoung
1735 1.1 junyoung *cookiep = scr;
1736 1.1 junyoung *curxp = scr->cursorcol;
1737 1.1 junyoung *curyp = scr->cursorrow;
1738 1.1 junyoung
1739 1.1 junyoung return 0;
1740 1.1 junyoung }
1741 1.1 junyoung
1742 1.1 junyoung void
1743 1.1 junyoung mach64_free_screen(void *v, void *cookie)
1744 1.1 junyoung {
1745 1.1 junyoung struct mach64_softc *sc = v;
1746 1.1 junyoung struct mach64screen *scr = cookie;
1747 1.1 junyoung
1748 1.1 junyoung LIST_REMOVE(scr, next);
1749 1.21 martin if (scr != &mach64_console_screen) {
1750 1.21 martin free(scr->attrs,M_DEVBUF);
1751 1.1 junyoung free(scr, M_DEVBUF);
1752 1.21 martin } else
1753 1.1 junyoung panic("mach64_free_screen: console");
1754 1.1 junyoung
1755 1.1 junyoung if (sc->active == scr)
1756 1.1 junyoung sc->active = 0;
1757 1.1 junyoung }
1758 1.1 junyoung
1759 1.1 junyoung int
1760 1.1 junyoung mach64_show_screen(void *v, void *cookie, int waitok,
1761 1.1 junyoung void (*cb)(void *, int, int), void *cbarg)
1762 1.1 junyoung {
1763 1.1 junyoung struct mach64_softc *sc = v;
1764 1.1 junyoung struct mach64screen *scr, *oldscr;
1765 1.1 junyoung
1766 1.1 junyoung scr = cookie;
1767 1.1 junyoung oldscr = sc->active;
1768 1.1 junyoung if (scr == oldscr)
1769 1.1 junyoung return 0;
1770 1.1 junyoung
1771 1.1 junyoung sc->wanted = scr;
1772 1.1 junyoung sc->switchcb = cb;
1773 1.1 junyoung sc->switchcbarg = cbarg;
1774 1.1 junyoung if (cb) {
1775 1.1 junyoung callout_reset(&sc->switch_callout, 0,
1776 1.1 junyoung (void(*)(void *))mach64_switch_screen, sc);
1777 1.1 junyoung return EAGAIN;
1778 1.1 junyoung }
1779 1.1 junyoung
1780 1.1 junyoung mach64_switch_screen(sc);
1781 1.1 junyoung
1782 1.1 junyoung return 0;
1783 1.1 junyoung }
1784 1.1 junyoung
1785 1.21 martin void
1786 1.21 martin mach64_switch_screen(struct mach64_softc *sc)
1787 1.21 martin {
1788 1.21 martin struct mach64screen *scr, *oldscr;
1789 1.21 martin const struct wsscreen_descr *type;
1790 1.21 martin
1791 1.21 martin scr = sc->wanted;
1792 1.21 martin if (!scr) {
1793 1.21 martin printf("mach64_switch_screen: disappeared\n");
1794 1.21 martin (*sc->switchcb)(sc->switchcbarg, EIO, 0);
1795 1.21 martin return;
1796 1.21 martin }
1797 1.21 martin type = scr->type;
1798 1.21 martin oldscr = sc->active; /* can be NULL! */
1799 1.21 martin #ifdef DIAGNOSTIC
1800 1.21 martin if (oldscr) {
1801 1.21 martin if (!oldscr->active)
1802 1.21 martin panic("mach64_switch_screen: not active");
1803 1.21 martin if (oldscr->type != sc->currenttype)
1804 1.21 martin panic("mach64_switch_screen: bad type");
1805 1.21 martin }
1806 1.21 martin #endif
1807 1.21 martin if (scr == oldscr)
1808 1.21 martin return;
1809 1.21 martin
1810 1.21 martin #ifdef DIAGNOSTIC
1811 1.21 martin /* XXX: this one bites us at reboot */
1812 1.21 martin /* if (scr->active)
1813 1.21 martin panic("mach64_switch_screen: active");*/
1814 1.21 martin #endif
1815 1.21 martin
1816 1.21 martin if (oldscr)
1817 1.21 martin oldscr->active = 0;
1818 1.21 martin
1819 1.21 martin if (sc->currenttype != type) {
1820 1.21 martin mach64_set_screentype(sc, type);
1821 1.21 martin sc->currenttype = type;
1822 1.21 martin }
1823 1.21 martin
1824 1.21 martin scr->dispoffset = scr->mindispoffset;
1825 1.21 martin
1826 1.21 martin if (!oldscr || (scr->dispoffset != oldscr->dispoffset)) {
1827 1.21 martin
1828 1.21 martin }
1829 1.21 martin
1830 1.22 perry /* Clear the entire screen. */
1831 1.21 martin
1832 1.21 martin scr->active = 1;
1833 1.21 martin mach64_restore_screen(scr, type, scr->chars);
1834 1.21 martin
1835 1.21 martin sc->active = scr;
1836 1.21 martin
1837 1.23.2.2 tron scr->ri.ri_ops.cursor(scr, scr->cursoron, scr->cursorrow,
1838 1.23.2.2 tron scr->cursorcol);
1839 1.21 martin
1840 1.21 martin sc->wanted = 0;
1841 1.21 martin if (sc->switchcb)
1842 1.21 martin (*sc->switchcb)(sc->switchcbarg, 0, 0);
1843 1.21 martin }
1844 1.21 martin
1845 1.21 martin void
1846 1.21 martin mach64_restore_screen(struct mach64screen *scr,
1847 1.21 martin const struct wsscreen_descr *type, u_int *mem)
1848 1.21 martin {
1849 1.21 martin int i, j, offset=0;
1850 1.21 martin /*struct rasops_info *ri=&scr->ri;*/
1851 1.21 martin u_int *charptr=scr->chars;
1852 1.21 martin long *attrptr=scr->attrs;
1853 1.21 martin mach64_clearscreen(scr->sc);
1854 1.21 martin for (i = 0; i < scr->ri.ri_rows; i++) {
1855 1.21 martin for (j = 0; j < scr->ri.ri_cols; j++) {
1856 1.23.2.2 tron mach64_putchar(scr, i, j, charptr[offset],
1857 1.23.2.2 tron attrptr[offset]);
1858 1.21 martin offset++;
1859 1.21 martin }
1860 1.21 martin }
1861 1.21 martin scr->cursordrawn=0;
1862 1.21 martin }
1863 1.21 martin
1864 1.21 martin /* set ri->ri_bits according to fb, ri_xorigin and ri_yorigin */
1865 1.21 martin void
1866 1.21 martin set_address(struct rasops_info *ri, bus_addr_t fb)
1867 1.21 martin {
1868 1.21 martin /*printf(" %d %d %d\n",ri->ri_xorigin,ri->ri_yorigin,ri->ri_stride);*/
1869 1.23.2.2 tron ri->ri_bits = (void *)((u_long)fb + ri->ri_stride * ri->ri_yorigin +
1870 1.23.2.2 tron ri->ri_xorigin);
1871 1.21 martin }
1872 1.21 martin
1873 1.21 martin int
1874 1.21 martin mach64_getwschar(void *cookie, struct wsdisplay_char *wsc)
1875 1.21 martin {
1876 1.21 martin struct mach64_softc *sc=cookie;
1877 1.21 martin struct mach64screen *scr=sc->active;
1878 1.21 martin int fg,bg,fl;
1879 1.21 martin if(scr){
1880 1.23.2.2 tron if((wsc->col>=0) && (wsc->col<scr->ri.ri_cols) &&
1881 1.23.2.2 tron (wsc->row>=0) && (wsc->row<scr->ri.ri_rows)) {
1882 1.23.2.2 tron int pos = scr->ri.ri_cols * wsc->row + wsc->col;
1883 1.21 martin wsc->letter=scr->chars[pos];
1884 1.23.2.2 tron rasops_unpack_attr(scr->attrs[pos], &fg, &bg, &fl);
1885 1.21 martin wsc->foreground=fg;
1886 1.21 martin wsc->background=bg;
1887 1.21 martin wsc->flags=fl;
1888 1.21 martin return 0;
1889 1.22 perry }
1890 1.22 perry }
1891 1.21 martin return EINVAL;
1892 1.21 martin }
1893 1.21 martin
1894 1.21 martin int
1895 1.21 martin mach64_putwschar(void *cookie, struct wsdisplay_char *wsc)
1896 1.21 martin {
1897 1.21 martin struct mach64_softc *sc=cookie;
1898 1.21 martin struct mach64screen *scr=sc->active;
1899 1.21 martin long attr;
1900 1.21 martin if(scr){
1901 1.23.2.2 tron if((wsc->col>=0) && (wsc->col<scr->ri.ri_cols) &&
1902 1.23.2.2 tron (wsc->row>=0) && (wsc->row<scr->ri.ri_rows)) {
1903 1.23.2.2 tron mach64_allocattr(&scr->ri,wsc->foreground,
1904 1.23.2.2 tron wsc->background, wsc->flags,&attr);
1905 1.23.2.2 tron mach64_putchar(&scr->ri,wsc->row, wsc->col,
1906 1.23.2.2 tron wsc->letter,attr);
1907 1.21 martin return 0;
1908 1.21 martin }
1909 1.21 martin }
1910 1.21 martin return EINVAL;
1911 1.21 martin }
1912 1.21 martin
1913 1.7 martin #if 0
1914 1.1 junyoung int
1915 1.1 junyoung mach64_load_font(void *v, void *cookie, struct wsdisplay_font *data)
1916 1.1 junyoung {
1917 1.1 junyoung
1918 1.1 junyoung return 0;
1919 1.1 junyoung }
1920 1.7 martin #endif
1921 1.21 martin
1922