sunxi_debe.c revision 1.8 1 1.8 bouyer /* $NetBSD: sunxi_debe.c,v 1.8 2018/04/07 18:09:33 bouyer Exp $ */
2 1.1 jmcneill
3 1.1 jmcneill /*-
4 1.3 bouyer * Copyright (c) 2018 Manuel Bouyer <bouyer (at) antioche.eu.org>
5 1.3 bouyer * All rights reserved.
6 1.3 bouyer *
7 1.3 bouyer * Copyright (c) 2014 Jared D. McNeill <jmcneill (at) invisible.ca>
8 1.1 jmcneill * All rights reserved.
9 1.1 jmcneill *
10 1.1 jmcneill * Redistribution and use in source and binary forms, with or without
11 1.1 jmcneill * modification, are permitted provided that the following conditions
12 1.1 jmcneill * are met:
13 1.1 jmcneill * 1. Redistributions of source code must retain the above copyright
14 1.1 jmcneill * notice, this list of conditions and the following disclaimer.
15 1.1 jmcneill * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 jmcneill * notice, this list of conditions and the following disclaimer in the
17 1.1 jmcneill * documentation and/or other materials provided with the distribution.
18 1.1 jmcneill *
19 1.1 jmcneill * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 1.1 jmcneill * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 1.1 jmcneill * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 1.1 jmcneill * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 1.1 jmcneill * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
24 1.1 jmcneill * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
25 1.1 jmcneill * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
26 1.1 jmcneill * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
27 1.1 jmcneill * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28 1.1 jmcneill * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29 1.1 jmcneill * SUCH DAMAGE.
30 1.1 jmcneill */
31 1.1 jmcneill
32 1.3 bouyer #include "genfb.h"
33 1.3 bouyer
34 1.3 bouyer #ifndef SUNXI_DEBE_VIDEOMEM
35 1.3 bouyer #define SUNXI_DEBE_VIDEOMEM (16 * 1024 * 1024)
36 1.3 bouyer #endif
37 1.3 bouyer
38 1.3 bouyer #define SUNXI_DEBE_CURMAX 64
39 1.3 bouyer
40 1.1 jmcneill #include <sys/cdefs.h>
41 1.8 bouyer __KERNEL_RCSID(0, "$NetBSD: sunxi_debe.c,v 1.8 2018/04/07 18:09:33 bouyer Exp $");
42 1.1 jmcneill
43 1.1 jmcneill #include <sys/param.h>
44 1.1 jmcneill #include <sys/bus.h>
45 1.1 jmcneill #include <sys/device.h>
46 1.3 bouyer #include <sys/intr.h>
47 1.1 jmcneill #include <sys/systm.h>
48 1.3 bouyer #include <sys/kernel.h>
49 1.3 bouyer #include <sys/mutex.h>
50 1.3 bouyer #include <sys/condvar.h>
51 1.1 jmcneill
52 1.1 jmcneill #include <dev/fdt/fdtvar.h>
53 1.3 bouyer #include <dev/fdt/fdt_port.h>
54 1.1 jmcneill
55 1.3 bouyer #include <dev/videomode/videomode.h>
56 1.3 bouyer #include <dev/wscons/wsconsio.h>
57 1.1 jmcneill #include <dev/wsfb/genfbvar.h>
58 1.1 jmcneill
59 1.3 bouyer #include <arm/sunxi/sunxi_debereg.h>
60 1.3 bouyer #include <arm/sunxi/sunxi_display.h>
61 1.8 bouyer #include <arm/sunxi/sunxi_platform.h>
62 1.8 bouyer #include <machine/bootconfig.h>
63 1.1 jmcneill
64 1.3 bouyer enum sunxi_debe_type {
65 1.3 bouyer DEBE_A10 = 1,
66 1.1 jmcneill };
67 1.1 jmcneill
68 1.1 jmcneill struct sunxi_debe_softc {
69 1.3 bouyer device_t sc_dev;
70 1.3 bouyer device_t sc_fbdev;
71 1.3 bouyer enum sunxi_debe_type sc_type;
72 1.1 jmcneill bus_space_tag_t sc_bst;
73 1.1 jmcneill bus_space_handle_t sc_bsh;
74 1.3 bouyer bus_dma_tag_t sc_dmat;
75 1.1 jmcneill
76 1.3 bouyer struct clk *sc_clk_ahb;
77 1.3 bouyer struct clk *sc_clk_mod;
78 1.3 bouyer struct clk *sc_clk_ram;
79 1.3 bouyer
80 1.3 bouyer bus_dma_segment_t sc_dmasegs[1];
81 1.3 bouyer bus_size_t sc_dmasize;
82 1.3 bouyer bus_dmamap_t sc_dmamap;
83 1.3 bouyer void *sc_dmap;
84 1.3 bouyer
85 1.3 bouyer bool sc_cursor_enable;
86 1.3 bouyer int sc_cursor_x, sc_cursor_y;
87 1.3 bouyer int sc_hot_x, sc_hot_y;
88 1.3 bouyer uint8_t sc_cursor_bitmap[8 * SUNXI_DEBE_CURMAX];
89 1.3 bouyer uint8_t sc_cursor_mask[8 * SUNXI_DEBE_CURMAX];
90 1.3 bouyer
91 1.3 bouyer int sc_phandle;
92 1.3 bouyer struct fdt_device_ports sc_ports;
93 1.3 bouyer struct fdt_endpoint *sc_out_ep;
94 1.3 bouyer int sc_unit; /* debe0 or debe1 */
95 1.1 jmcneill };
96 1.1 jmcneill
97 1.3 bouyer #define DEBE_READ(sc, reg) \
98 1.1 jmcneill bus_space_read_4((sc)->sc_bst, (sc)->sc_bsh, (reg))
99 1.3 bouyer #define DEBE_WRITE(sc, reg, val) \
100 1.1 jmcneill bus_space_write_4((sc)->sc_bst, (sc)->sc_bsh, (reg), (val))
101 1.1 jmcneill
102 1.3 bouyer static const struct of_compat_data compat_data[] = {
103 1.3 bouyer {"allwinner,sun4i-a10-display-backend", DEBE_A10},
104 1.4 bouyer {"allwinner,sun7i-a20-display-backend", DEBE_A10},
105 1.3 bouyer {NULL}
106 1.3 bouyer };
107 1.3 bouyer
108 1.3 bouyer struct sunxifb_attach_args {
109 1.3 bouyer void *afb_fb;
110 1.3 bouyer uint32_t afb_width;
111 1.3 bouyer uint32_t afb_height;
112 1.3 bouyer bus_dma_tag_t afb_dmat;
113 1.3 bouyer bus_dma_segment_t *afb_dmasegs;
114 1.3 bouyer int afb_ndmasegs;
115 1.3 bouyer };
116 1.3 bouyer
117 1.3 bouyer static void sunxi_debe_ep_connect(device_t, struct fdt_endpoint *, bool);
118 1.3 bouyer static int sunxi_debe_ep_enable(device_t, struct fdt_endpoint *, bool);
119 1.3 bouyer static int sunxi_debe_match(device_t, cfdata_t, void *);
120 1.3 bouyer static void sunxi_debe_attach(device_t, device_t, void *);
121 1.3 bouyer
122 1.3 bouyer static int sunxi_debe_alloc_videomem(struct sunxi_debe_softc *);
123 1.3 bouyer static void sunxi_debe_setup_fbdev(struct sunxi_debe_softc *,
124 1.3 bouyer const struct videomode *);
125 1.3 bouyer
126 1.3 bouyer static int sunxi_debe_set_curpos(struct sunxi_debe_softc *, int, int);
127 1.3 bouyer static int sunxi_debe_set_cursor(struct sunxi_debe_softc *,
128 1.3 bouyer struct wsdisplay_cursor *);
129 1.3 bouyer static int sunxi_debe_ioctl(device_t, u_long, void *);
130 1.3 bouyer static void sunxi_befb_set_videomode(device_t, u_int, u_int);
131 1.3 bouyer void sunxi_debe_dump_regs(int);
132 1.3 bouyer
133 1.8 bouyer static struct sunxi_debe_softc *debe_console_sc;
134 1.8 bouyer static int sunxi_simplefb_phandle = -1;
135 1.8 bouyer
136 1.3 bouyer CFATTACH_DECL_NEW(sunxi_debe, sizeof(struct sunxi_debe_softc),
137 1.3 bouyer sunxi_debe_match, sunxi_debe_attach, NULL, NULL);
138 1.3 bouyer
139 1.3 bouyer static int
140 1.3 bouyer sunxi_debe_match(device_t parent, cfdata_t cf, void *aux)
141 1.3 bouyer {
142 1.3 bouyer struct fdt_attach_args * const faa = aux;
143 1.3 bouyer
144 1.3 bouyer return of_match_compat_data(faa->faa_phandle, compat_data);
145 1.3 bouyer }
146 1.3 bouyer
147 1.3 bouyer static void
148 1.3 bouyer sunxi_debe_attach(device_t parent, device_t self, void *aux)
149 1.3 bouyer {
150 1.3 bouyer struct sunxi_debe_softc *sc = device_private(self);
151 1.3 bouyer struct fdt_attach_args * const faa = aux;
152 1.3 bouyer const int phandle = faa->faa_phandle;
153 1.3 bouyer bus_addr_t addr;
154 1.3 bouyer bus_size_t size;
155 1.3 bouyer struct fdtbus_reset *rst;
156 1.3 bouyer int error;
157 1.3 bouyer
158 1.3 bouyer sc->sc_dev = self;
159 1.3 bouyer sc->sc_phandle = phandle;
160 1.3 bouyer sc->sc_bst = faa->faa_bst;
161 1.3 bouyer sc->sc_dmat = faa->faa_dmat;
162 1.3 bouyer if (fdtbus_get_reg(phandle, 0, &addr, &size) != 0) {
163 1.3 bouyer aprint_error(": couldn't get registers\n");
164 1.3 bouyer }
165 1.3 bouyer if (bus_space_map(sc->sc_bst, addr, size, 0, &sc->sc_bsh) != 0) {
166 1.3 bouyer aprint_error(": couldn't map registers\n");
167 1.3 bouyer return;
168 1.3 bouyer }
169 1.3 bouyer
170 1.3 bouyer sc->sc_clk_ahb = fdtbus_clock_get(phandle, "ahb");
171 1.3 bouyer sc->sc_clk_mod = fdtbus_clock_get(phandle, "mod");
172 1.3 bouyer sc->sc_clk_ram = fdtbus_clock_get(phandle, "ram");
173 1.3 bouyer
174 1.3 bouyer rst = fdtbus_reset_get_index(phandle, 0);
175 1.3 bouyer if (rst == NULL) {
176 1.3 bouyer aprint_error(": couldn't get reset\n");
177 1.3 bouyer return;
178 1.3 bouyer }
179 1.3 bouyer if (fdtbus_reset_assert(rst) != 0) {
180 1.3 bouyer aprint_error(": couldn't assert reset\n");
181 1.3 bouyer return;
182 1.3 bouyer }
183 1.3 bouyer delay(1);
184 1.3 bouyer if (fdtbus_reset_deassert(rst) != 0) {
185 1.3 bouyer aprint_error(": couldn't de-assert reset\n");
186 1.3 bouyer return;
187 1.3 bouyer }
188 1.3 bouyer
189 1.3 bouyer if (sc->sc_clk_ahb == NULL || sc->sc_clk_mod == NULL
190 1.3 bouyer || sc->sc_clk_ram == NULL) {
191 1.3 bouyer aprint_error(": couldn't get clocks\n");
192 1.3 bouyer aprint_debug_dev(self, "clk ahb %s mod %s ram %s\n",
193 1.3 bouyer sc->sc_clk_ahb == NULL ? "missing" : "present",
194 1.3 bouyer sc->sc_clk_mod == NULL ? "missing" : "present",
195 1.3 bouyer sc->sc_clk_ram == NULL ? "missing" : "present");
196 1.3 bouyer return;
197 1.3 bouyer }
198 1.3 bouyer
199 1.3 bouyer error = clk_set_rate(sc->sc_clk_mod, 300000000);
200 1.3 bouyer if (error) {
201 1.3 bouyer aprint_error("couln't set mod clock rate (%d)\n", error);
202 1.3 bouyer return;
203 1.3 bouyer }
204 1.3 bouyer
205 1.3 bouyer if (clk_enable(sc->sc_clk_ahb) != 0 ||
206 1.5 bouyer clk_enable(sc->sc_clk_mod) != 0) {
207 1.3 bouyer aprint_error(": couldn't enable clocks\n");
208 1.3 bouyer return;
209 1.3 bouyer }
210 1.5 bouyer if (clk_disable(sc->sc_clk_ram) != 0) {
211 1.5 bouyer aprint_error(": couldn't disable ram clock\n");
212 1.5 bouyer }
213 1.3 bouyer
214 1.3 bouyer sc->sc_type = of_search_compatible(faa->faa_phandle, compat_data)->data;
215 1.3 bouyer
216 1.3 bouyer aprint_naive("\n");
217 1.3 bouyer aprint_normal(": Display Engine Backend (%s)\n",
218 1.3 bouyer fdtbus_get_string(phandle, "name"));
219 1.3 bouyer
220 1.3 bouyer
221 1.3 bouyer for (unsigned int reg = 0x800; reg < 0x1000; reg += 4) {
222 1.3 bouyer DEBE_WRITE(sc, reg, 0);
223 1.3 bouyer }
224 1.3 bouyer
225 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_MODCTL_REG, SUNXI_DEBE_MODCTL_EN);
226 1.3 bouyer
227 1.3 bouyer sc->sc_dmasize = SUNXI_DEBE_VIDEOMEM;
228 1.3 bouyer
229 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_HWC_PALETTE_TABLE, 0);
230 1.3 bouyer
231 1.3 bouyer error = sunxi_debe_alloc_videomem(sc);
232 1.3 bouyer if (error) {
233 1.3 bouyer aprint_error_dev(sc->sc_dev,
234 1.3 bouyer "couldn't allocate video memory, error = %d\n", error);
235 1.3 bouyer return;
236 1.3 bouyer }
237 1.3 bouyer
238 1.3 bouyer sc->sc_unit = -1;
239 1.3 bouyer sc->sc_ports.dp_ep_connect = sunxi_debe_ep_connect;
240 1.3 bouyer sc->sc_ports.dp_ep_enable = sunxi_debe_ep_enable;
241 1.3 bouyer fdt_ports_register(&sc->sc_ports, self, phandle, EP_OTHER);
242 1.3 bouyer
243 1.5 bouyer if (clk_disable(sc->sc_clk_ahb) != 0 ||
244 1.5 bouyer clk_disable(sc->sc_clk_mod) != 0) {
245 1.5 bouyer aprint_error(": couldn't disable clocks\n");
246 1.5 bouyer return;
247 1.5 bouyer }
248 1.3 bouyer }
249 1.3 bouyer
250 1.3 bouyer static void
251 1.3 bouyer sunxi_debe_ep_connect(device_t self, struct fdt_endpoint *ep, bool connect)
252 1.3 bouyer {
253 1.3 bouyer struct sunxi_debe_softc *sc = device_private(self);
254 1.3 bouyer struct fdt_endpoint *rep = fdt_endpoint_remote(ep);
255 1.3 bouyer int rep_idx = fdt_endpoint_index(rep);
256 1.3 bouyer
257 1.3 bouyer KASSERT(device_is_a(self, "sunxidebe"));
258 1.3 bouyer if (!connect) {
259 1.3 bouyer aprint_error_dev(self, "endpoint disconnect not supported\n");
260 1.3 bouyer return;
261 1.3 bouyer }
262 1.3 bouyer
263 1.3 bouyer if (fdt_endpoint_port_index(ep) == 1) {
264 1.3 bouyer bool do_print = (sc->sc_unit == -1);
265 1.3 bouyer /*
266 1.3 bouyer * one of our output endpoints has been connected.
267 1.3 bouyer * the remote id is our unit number
268 1.3 bouyer */
269 1.3 bouyer if (sc->sc_unit != -1 && rep_idx != -1 &&
270 1.3 bouyer sc->sc_unit != rep_idx) {
271 1.3 bouyer aprint_error_dev(self, ": remote id %d doens't match"
272 1.3 bouyer " discovered unit number %d\n",
273 1.3 bouyer rep_idx, sc->sc_unit);
274 1.3 bouyer return;
275 1.3 bouyer }
276 1.3 bouyer if (!device_is_a(fdt_endpoint_device(rep), "sunxitcon")) {
277 1.3 bouyer aprint_error_dev(self,
278 1.3 bouyer ": output %d connected to unknown device\n",
279 1.3 bouyer fdt_endpoint_index(ep));
280 1.3 bouyer return;
281 1.3 bouyer }
282 1.3 bouyer if (rep_idx != -1)
283 1.3 bouyer sc->sc_unit = rep_idx;
284 1.3 bouyer else {
285 1.3 bouyer /* assume only one debe */
286 1.3 bouyer sc->sc_unit = 0;
287 1.3 bouyer }
288 1.3 bouyer if (do_print)
289 1.3 bouyer aprint_verbose_dev(self, "debe unit %d\n", sc->sc_unit);
290 1.3 bouyer }
291 1.3 bouyer }
292 1.3 bouyer
293 1.3 bouyer static int
294 1.3 bouyer sunxi_debe_alloc_videomem(struct sunxi_debe_softc *sc)
295 1.3 bouyer {
296 1.3 bouyer int error, nsegs;
297 1.3 bouyer
298 1.3 bouyer error = bus_dmamem_alloc(sc->sc_dmat, sc->sc_dmasize, 0x1000, 0,
299 1.3 bouyer sc->sc_dmasegs, 1, &nsegs, BUS_DMA_WAITOK);
300 1.3 bouyer if (error)
301 1.3 bouyer return error;
302 1.3 bouyer error = bus_dmamem_map(sc->sc_dmat, sc->sc_dmasegs, nsegs,
303 1.3 bouyer sc->sc_dmasize, &sc->sc_dmap, BUS_DMA_WAITOK | BUS_DMA_COHERENT);
304 1.3 bouyer if (error)
305 1.3 bouyer goto free;
306 1.3 bouyer error = bus_dmamap_create(sc->sc_dmat, sc->sc_dmasize, 1,
307 1.3 bouyer sc->sc_dmasize, 0, BUS_DMA_WAITOK, &sc->sc_dmamap);
308 1.3 bouyer if (error)
309 1.3 bouyer goto unmap;
310 1.3 bouyer error = bus_dmamap_load(sc->sc_dmat, sc->sc_dmamap, sc->sc_dmap,
311 1.3 bouyer sc->sc_dmasize, NULL, BUS_DMA_WAITOK);
312 1.3 bouyer if (error)
313 1.3 bouyer goto destroy;
314 1.3 bouyer
315 1.3 bouyer memset(sc->sc_dmap, 0, sc->sc_dmasize);
316 1.3 bouyer
317 1.3 bouyer return 0;
318 1.3 bouyer
319 1.3 bouyer destroy:
320 1.3 bouyer bus_dmamap_destroy(sc->sc_dmat, sc->sc_dmamap);
321 1.3 bouyer unmap:
322 1.3 bouyer bus_dmamem_unmap(sc->sc_dmat, sc->sc_dmap, sc->sc_dmasize);
323 1.3 bouyer free:
324 1.3 bouyer bus_dmamem_free(sc->sc_dmat, sc->sc_dmasegs, nsegs);
325 1.3 bouyer
326 1.3 bouyer sc->sc_dmasize = 0;
327 1.3 bouyer sc->sc_dmap = NULL;
328 1.3 bouyer
329 1.3 bouyer return error;
330 1.3 bouyer }
331 1.3 bouyer
332 1.3 bouyer static void
333 1.3 bouyer sunxi_debe_setup_fbdev(struct sunxi_debe_softc *sc, const struct videomode *mode)
334 1.3 bouyer {
335 1.3 bouyer if (mode == NULL)
336 1.3 bouyer return;
337 1.3 bouyer
338 1.3 bouyer const u_int interlace_p = !!(mode->flags & VID_INTERLACE);
339 1.3 bouyer const u_int fb_width = mode->hdisplay;
340 1.3 bouyer const u_int fb_height = (mode->vdisplay << interlace_p);
341 1.3 bouyer
342 1.3 bouyer if (mode && sc->sc_fbdev == NULL) {
343 1.8 bouyer /* see if we are the console */
344 1.8 bouyer if (sunxi_simplefb_phandle >= 0) {
345 1.8 bouyer const char *cons_pipeline =
346 1.8 bouyer fdtbus_get_string(sunxi_simplefb_phandle,
347 1.8 bouyer "allwinner,pipeline");
348 1.8 bouyer struct fdt_endpoint *ep = fdt_endpoint_get_from_index(
349 1.8 bouyer &sc->sc_ports, SUNXI_PORT_OUTPUT, sc->sc_unit);
350 1.8 bouyer struct fdt_endpoint *rep = fdt_endpoint_remote(ep);
351 1.8 bouyer if (sunxi_tcon_is_console(
352 1.8 bouyer fdt_endpoint_device(rep), cons_pipeline))
353 1.8 bouyer debe_console_sc = sc;
354 1.8 bouyer } else if (debe_console_sc == NULL) {
355 1.8 bouyer if (match_bootconf_option(boot_args,
356 1.8 bouyer "console", "fb0")) {
357 1.8 bouyer if (sc->sc_unit == 0)
358 1.8 bouyer debe_console_sc = sc;
359 1.8 bouyer } else if (match_bootconf_option(boot_args,
360 1.8 bouyer "console", "fb1")) {
361 1.8 bouyer if (sc->sc_unit == 1)
362 1.8 bouyer debe_console_sc = sc;
363 1.8 bouyer } else if (match_bootconf_option(boot_args,
364 1.8 bouyer "console", "fb")) {
365 1.8 bouyer /* match first activated */
366 1.8 bouyer debe_console_sc = sc;
367 1.8 bouyer }
368 1.8 bouyer }
369 1.3 bouyer struct sunxifb_attach_args afb = {
370 1.3 bouyer .afb_fb = sc->sc_dmap,
371 1.3 bouyer .afb_width = fb_width,
372 1.3 bouyer .afb_height = fb_height,
373 1.3 bouyer .afb_dmat = sc->sc_dmat,
374 1.3 bouyer .afb_dmasegs = sc->sc_dmasegs,
375 1.3 bouyer .afb_ndmasegs = 1
376 1.3 bouyer };
377 1.3 bouyer sc->sc_fbdev = config_found_ia(sc->sc_dev, "sunxidebe",
378 1.3 bouyer &afb, NULL);
379 1.3 bouyer } else if (sc->sc_fbdev != NULL) {
380 1.3 bouyer sunxi_befb_set_videomode(sc->sc_fbdev, fb_width, fb_height);
381 1.3 bouyer }
382 1.3 bouyer }
383 1.3 bouyer
384 1.3 bouyer static int
385 1.3 bouyer sunxi_debe_set_curpos(struct sunxi_debe_softc *sc, int x, int y)
386 1.3 bouyer {
387 1.3 bouyer int xx, yy;
388 1.3 bouyer u_int yoff, xoff;
389 1.3 bouyer
390 1.3 bouyer xoff = yoff = 0;
391 1.3 bouyer xx = x - sc->sc_hot_x;
392 1.3 bouyer yy = y - sc->sc_hot_y;
393 1.3 bouyer if (xx < 0) {
394 1.3 bouyer xoff -= xx;
395 1.3 bouyer xx = 0;
396 1.3 bouyer }
397 1.3 bouyer if (yy < 0) {
398 1.3 bouyer yoff -= yy;
399 1.3 bouyer yy = 0;
400 1.3 bouyer }
401 1.3 bouyer
402 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_HWCCTL_REG,
403 1.3 bouyer __SHIFTIN(yy, SUNXI_DEBE_HWCCTL_YCOOR) |
404 1.3 bouyer __SHIFTIN(xx, SUNXI_DEBE_HWCCTL_XCOOR));
405 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_HWCFBCTL_REG,
406 1.3 bouyer #if SUNXI_DEBE_CURMAX == 32
407 1.3 bouyer __SHIFTIN(SUNXI_DEBE_HWCFBCTL_YSIZE_32, SUNXI_DEBE_HWCFBCTL_YSIZE) |
408 1.3 bouyer __SHIFTIN(SUNXI_DEBE_HWCFBCTL_XSIZE_32, SUNXI_DEBE_HWCFBCTL_XSIZE) |
409 1.3 bouyer #else
410 1.3 bouyer __SHIFTIN(SUNXI_DEBE_HWCFBCTL_YSIZE_64, SUNXI_DEBE_HWCFBCTL_YSIZE) |
411 1.3 bouyer __SHIFTIN(SUNXI_DEBE_HWCFBCTL_XSIZE_64, SUNXI_DEBE_HWCFBCTL_XSIZE) |
412 1.3 bouyer #endif
413 1.3 bouyer __SHIFTIN(SUNXI_DEBE_HWCFBCTL_FBFMT_2BPP, SUNXI_DEBE_HWCFBCTL_FBFMT) |
414 1.3 bouyer __SHIFTIN(yoff, SUNXI_DEBE_HWCFBCTL_YCOOROFF) |
415 1.3 bouyer __SHIFTIN(xoff, SUNXI_DEBE_HWCFBCTL_XCOOROFF));
416 1.3 bouyer
417 1.3 bouyer return 0;
418 1.3 bouyer }
419 1.3 bouyer
420 1.3 bouyer static int
421 1.3 bouyer sunxi_debe_set_cursor(struct sunxi_debe_softc *sc, struct wsdisplay_cursor *cur)
422 1.3 bouyer {
423 1.3 bouyer uint32_t val;
424 1.3 bouyer uint8_t r[4], g[4], b[4];
425 1.3 bouyer u_int index, count, shift, off, pcnt;
426 1.3 bouyer int i, j, idx, error;
427 1.3 bouyer uint8_t mask;
428 1.3 bouyer
429 1.3 bouyer if (cur->which & WSDISPLAY_CURSOR_DOCUR) {
430 1.3 bouyer val = DEBE_READ(sc, SUNXI_DEBE_MODCTL_REG);
431 1.3 bouyer if (cur->enable)
432 1.3 bouyer val |= SUNXI_DEBE_MODCTL_HWC_EN;
433 1.3 bouyer else
434 1.3 bouyer val &= ~SUNXI_DEBE_MODCTL_HWC_EN;
435 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_MODCTL_REG, val);
436 1.3 bouyer
437 1.3 bouyer sc->sc_cursor_enable = cur->enable;
438 1.3 bouyer }
439 1.3 bouyer
440 1.3 bouyer if (cur->which & WSDISPLAY_CURSOR_DOHOT) {
441 1.3 bouyer sc->sc_hot_x = cur->hot.x;
442 1.3 bouyer sc->sc_hot_y = cur->hot.y;
443 1.3 bouyer cur->which |= WSDISPLAY_CURSOR_DOPOS;
444 1.3 bouyer }
445 1.3 bouyer
446 1.3 bouyer if (cur->which & WSDISPLAY_CURSOR_DOPOS) {
447 1.3 bouyer sunxi_debe_set_curpos(sc, cur->pos.x, cur->pos.y);
448 1.3 bouyer }
449 1.3 bouyer
450 1.3 bouyer if (cur->which & WSDISPLAY_CURSOR_DOCMAP) {
451 1.3 bouyer index = cur->cmap.index;
452 1.3 bouyer count = cur->cmap.count;
453 1.3 bouyer if (index >= 2 || count > 2 - index)
454 1.3 bouyer return EINVAL;
455 1.3 bouyer error = copyin(cur->cmap.red, &r[index], count);
456 1.3 bouyer if (error)
457 1.3 bouyer return error;
458 1.3 bouyer error = copyin(cur->cmap.green, &g[index], count);
459 1.3 bouyer if (error)
460 1.3 bouyer return error;
461 1.3 bouyer error = copyin(cur->cmap.blue, &b[index], count);
462 1.3 bouyer if (error)
463 1.3 bouyer return error;
464 1.3 bouyer
465 1.3 bouyer for (i = index; i < (index + count); i++) {
466 1.3 bouyer DEBE_WRITE(sc,
467 1.3 bouyer SUNXI_DEBE_HWC_PALETTE_TABLE + (4 * (i + 2)),
468 1.3 bouyer (r[i] << 16) | (g[i] << 8) | b[i] | 0xff000000);
469 1.3 bouyer }
470 1.3 bouyer }
471 1.3 bouyer
472 1.3 bouyer if (cur->which & WSDISPLAY_CURSOR_DOSHAPE) {
473 1.3 bouyer error = copyin(cur->mask, sc->sc_cursor_mask,
474 1.3 bouyer SUNXI_DEBE_CURMAX * 8);
475 1.3 bouyer if (error)
476 1.3 bouyer return error;
477 1.3 bouyer error = copyin(cur->image, sc->sc_cursor_bitmap,
478 1.3 bouyer SUNXI_DEBE_CURMAX * 8);
479 1.3 bouyer if (error)
480 1.3 bouyer return error;
481 1.3 bouyer }
482 1.3 bouyer
483 1.3 bouyer if (cur->which & (WSDISPLAY_CURSOR_DOCMAP|WSDISPLAY_CURSOR_DOSHAPE)) {
484 1.3 bouyer for (i = 0, pcnt = 0; i < SUNXI_DEBE_CURMAX * 8; i++) {
485 1.3 bouyer for (j = 0, mask = 1; j < 8; j++, mask <<= 1, pcnt++) {
486 1.3 bouyer idx = ((sc->sc_cursor_mask[i] & mask) ? 2 : 0) |
487 1.3 bouyer ((sc->sc_cursor_bitmap[i] & mask) ? 1 : 0);
488 1.3 bouyer off = (pcnt >> 4) * 4;
489 1.3 bouyer shift = (pcnt & 0xf) * 2;
490 1.3 bouyer val = DEBE_READ(sc,
491 1.3 bouyer SUNXI_DEBE_HWC_PATTERN_BLOCK + off);
492 1.3 bouyer val &= ~(3 << shift);
493 1.3 bouyer val |= (idx << shift);
494 1.3 bouyer DEBE_WRITE(sc,
495 1.3 bouyer SUNXI_DEBE_HWC_PATTERN_BLOCK + off, val);
496 1.3 bouyer }
497 1.3 bouyer }
498 1.3 bouyer }
499 1.3 bouyer
500 1.3 bouyer return 0;
501 1.3 bouyer }
502 1.3 bouyer
503 1.3 bouyer static int
504 1.3 bouyer sunxi_debe_ep_enable(device_t dev, struct fdt_endpoint *ep, bool enable)
505 1.3 bouyer {
506 1.3 bouyer struct sunxi_debe_softc *sc;
507 1.3 bouyer uint32_t val;
508 1.3 bouyer
509 1.3 bouyer KASSERT(device_is_a(dev, "sunxidebe"));
510 1.3 bouyer sc = device_private(dev);
511 1.3 bouyer
512 1.3 bouyer if (enable) {
513 1.5 bouyer if (clk_enable(sc->sc_clk_ram) != 0) {
514 1.5 bouyer device_printf(dev,
515 1.5 bouyer ": warning: failed to enable ram clock\n");
516 1.5 bouyer }
517 1.3 bouyer val = DEBE_READ(sc, SUNXI_DEBE_REGBUFFCTL_REG);
518 1.3 bouyer val |= SUNXI_DEBE_REGBUFFCTL_REGLOADCTL;
519 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_REGBUFFCTL_REG, val);
520 1.3 bouyer
521 1.3 bouyer val = DEBE_READ(sc, SUNXI_DEBE_MODCTL_REG);
522 1.3 bouyer val |= SUNXI_DEBE_MODCTL_START_CTL;
523 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_MODCTL_REG, val);
524 1.3 bouyer #ifdef SUNXI_DEBE_DEBUG
525 1.3 bouyer sunxi_debe_dump_regs(sc->sc_unit);
526 1.3 bouyer #endif
527 1.3 bouyer } else {
528 1.3 bouyer val = DEBE_READ(sc, SUNXI_DEBE_MODCTL_REG);
529 1.3 bouyer val &= ~SUNXI_DEBE_MODCTL_START_CTL;
530 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_MODCTL_REG, val);
531 1.5 bouyer if (clk_disable(sc->sc_clk_ram) != 0) {
532 1.5 bouyer device_printf(dev,
533 1.5 bouyer ": warning: failed to disable ram clock\n");
534 1.5 bouyer }
535 1.3 bouyer }
536 1.3 bouyer #if 0
537 1.3 bouyer for (int i = 0; i < 0x1000; i += 4) {
538 1.3 bouyer printf("DEBE 0x%04x: 0x%08x\n", i, DEBE_READ(sc, i));
539 1.3 bouyer }
540 1.3 bouyer #endif
541 1.3 bouyer return 0;
542 1.3 bouyer }
543 1.3 bouyer
544 1.3 bouyer void
545 1.3 bouyer sunxi_debe_set_videomode(device_t dev, const struct videomode *mode)
546 1.1 jmcneill {
547 1.3 bouyer struct sunxi_debe_softc *sc;
548 1.3 bouyer uint32_t val;
549 1.3 bouyer
550 1.3 bouyer KASSERT(device_is_a(dev, "sunxidebe"));
551 1.3 bouyer sc = device_private(dev);
552 1.3 bouyer
553 1.3 bouyer if (mode) {
554 1.3 bouyer const u_int interlace_p = !!(mode->flags & VID_INTERLACE);
555 1.3 bouyer const u_int width = mode->hdisplay;
556 1.3 bouyer const u_int height = (mode->vdisplay << interlace_p);
557 1.3 bouyer const u_int fb_width = width;
558 1.3 bouyer const u_int fb_height = height;
559 1.3 bouyer uint32_t vmem = width * height * 4;
560 1.3 bouyer
561 1.3 bouyer if (vmem > sc->sc_dmasize) {
562 1.3 bouyer device_printf(sc->sc_dev,
563 1.3 bouyer "not enough memory for %ux%u fb (req %u have %u)\n",
564 1.3 bouyer width, height, vmem, (unsigned int)sc->sc_dmasize);
565 1.3 bouyer return;
566 1.3 bouyer }
567 1.3 bouyer
568 1.3 bouyer paddr_t pa = sc->sc_dmamap->dm_segs[0].ds_addr;
569 1.3 bouyer #if !defined(ALLWINNER_A80) && 0
570 1.3 bouyer #define SUNXI_SDRAM_PBASE-0 0x40000000
571 1.3 bouyer /*
572 1.3 bouyer * On 2GB systems, we need to subtract AWIN_SDRAM_PBASE from
573 1.3 bouyer * the phys addr.
574 1.3 bouyer */
575 1.3 bouyer if (pa >= SUNXI_SDRAM_PBASE)
576 1.3 bouyer pa -= SUNXI_SDRAM_PBASE;
577 1.3 bouyer #endif
578 1.3 bouyer
579 1.3 bouyer /* notify fb */
580 1.3 bouyer sunxi_debe_setup_fbdev(sc, mode);
581 1.3 bouyer
582 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_DISSIZE_REG,
583 1.3 bouyer ((height - 1) << 16) | (width - 1));
584 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_LAYSIZE_REG,
585 1.3 bouyer ((fb_height - 1) << 16) | (fb_width - 1));
586 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_LAYCOOR_REG, 0);
587 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_LAYLINEWIDTH_REG, (fb_width << 5));
588 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_LAYFB_L32ADD_REG, pa << 3);
589 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_LAYFB_H4ADD_REG, pa >> 29);
590 1.3 bouyer
591 1.3 bouyer val = DEBE_READ(sc, SUNXI_DEBE_ATTCTL1_REG);
592 1.3 bouyer val &= ~SUNXI_DEBE_ATTCTL1_LAY_FBFMT;
593 1.3 bouyer val |= __SHIFTIN(SUNXI_DEBE_ATTCTL1_LAY_FBFMT_XRGB8888,
594 1.3 bouyer SUNXI_DEBE_ATTCTL1_LAY_FBFMT);
595 1.3 bouyer val &= ~SUNXI_DEBE_ATTCTL1_LAY_BRSWAPEN;
596 1.3 bouyer val &= ~SUNXI_DEBE_ATTCTL1_LAY_FBPS;
597 1.3 bouyer #if __ARMEB__
598 1.3 bouyer val |= __SHIFTIN(SUNXI_DEBE_ATTCTL1_LAY_FBPS_32BPP_BGRA,
599 1.3 bouyer SUNXI_DEBE_ATTCTL1_LAY_FBPS);
600 1.3 bouyer #else
601 1.3 bouyer val |= __SHIFTIN(SUNXI_DEBE_ATTCTL1_LAY_FBPS_32BPP_ARGB,
602 1.3 bouyer SUNXI_DEBE_ATTCTL1_LAY_FBPS);
603 1.3 bouyer #endif
604 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_ATTCTL1_REG, val);
605 1.3 bouyer
606 1.3 bouyer val = DEBE_READ(sc, SUNXI_DEBE_MODCTL_REG);
607 1.3 bouyer val |= SUNXI_DEBE_MODCTL_LAY0_EN;
608 1.3 bouyer if (interlace_p) {
609 1.3 bouyer val |= SUNXI_DEBE_MODCTL_ITLMOD_EN;
610 1.3 bouyer } else {
611 1.3 bouyer val &= ~SUNXI_DEBE_MODCTL_ITLMOD_EN;
612 1.3 bouyer }
613 1.3 bouyer val &= ~SUNXI_DEBE_MODCTL_OUT_SEL;
614 1.3 bouyer if (sc->sc_unit == 1) {
615 1.3 bouyer val |= __SHIFTIN(SUNXI_DEBE_MODCTL_OUT_SEL_LCD1,
616 1.3 bouyer SUNXI_DEBE_MODCTL_OUT_SEL);
617 1.3 bouyer }
618 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_MODCTL_REG, val);
619 1.3 bouyer } else {
620 1.3 bouyer /* disable */
621 1.3 bouyer val = DEBE_READ(sc, SUNXI_DEBE_MODCTL_REG);
622 1.3 bouyer val &= ~SUNXI_DEBE_MODCTL_LAY0_EN;
623 1.3 bouyer val &= ~SUNXI_DEBE_MODCTL_START_CTL;
624 1.3 bouyer DEBE_WRITE(sc, SUNXI_DEBE_MODCTL_REG, val);
625 1.3 bouyer
626 1.3 bouyer /* notify fb */
627 1.3 bouyer sunxi_debe_setup_fbdev(sc, mode);
628 1.3 bouyer }
629 1.1 jmcneill }
630 1.1 jmcneill
631 1.1 jmcneill static int
632 1.3 bouyer sunxi_debe_ioctl(device_t self, u_long cmd, void *data)
633 1.1 jmcneill {
634 1.3 bouyer struct sunxi_debe_softc *sc = device_private(self);
635 1.3 bouyer struct wsdisplay_curpos *cp;
636 1.3 bouyer uint32_t val;
637 1.3 bouyer int enable;
638 1.1 jmcneill
639 1.1 jmcneill switch (cmd) {
640 1.3 bouyer case WSDISPLAYIO_SVIDEO:
641 1.3 bouyer enable = *(int *)data;
642 1.3 bouyer val = DEBE_READ(sc, SUNXI_DEBE_MODCTL_REG);
643 1.3 bouyer if (enable) {
644 1.3 bouyer if (val & SUNXI_DEBE_MODCTL_START_CTL) {
645 1.3 bouyer /* already enabled */
646 1.3 bouyer return 0;
647 1.3 bouyer }
648 1.3 bouyer } else {
649 1.3 bouyer if ((val & SUNXI_DEBE_MODCTL_START_CTL) == 0) {
650 1.3 bouyer /* already disabled */
651 1.3 bouyer return 0;
652 1.3 bouyer }
653 1.3 bouyer }
654 1.3 bouyer return fdt_endpoint_enable(sc->sc_out_ep, enable);
655 1.3 bouyer case WSDISPLAYIO_GVIDEO:
656 1.3 bouyer val = DEBE_READ(sc, SUNXI_DEBE_MODCTL_REG);
657 1.3 bouyer *(int *)data = !!(val & SUNXI_DEBE_MODCTL_LAY0_EN);
658 1.3 bouyer return 0;
659 1.3 bouyer case WSDISPLAYIO_GCURPOS:
660 1.3 bouyer cp = data;
661 1.3 bouyer cp->x = sc->sc_cursor_x;
662 1.3 bouyer cp->y = sc->sc_cursor_y;
663 1.1 jmcneill return 0;
664 1.3 bouyer case WSDISPLAYIO_SCURPOS:
665 1.3 bouyer cp = data;
666 1.3 bouyer return sunxi_debe_set_curpos(sc, cp->x, cp->y);
667 1.3 bouyer case WSDISPLAYIO_GCURMAX:
668 1.3 bouyer cp = data;
669 1.3 bouyer cp->x = SUNXI_DEBE_CURMAX;
670 1.3 bouyer cp->y = SUNXI_DEBE_CURMAX;
671 1.1 jmcneill return 0;
672 1.3 bouyer case WSDISPLAYIO_SCURSOR:
673 1.3 bouyer return sunxi_debe_set_cursor(sc, data);
674 1.1 jmcneill }
675 1.3 bouyer
676 1.3 bouyer return EPASSTHROUGH;
677 1.1 jmcneill }
678 1.1 jmcneill
679 1.3 bouyer /* genfb attachement */
680 1.3 bouyer
681 1.3 bouyer struct sunxi_befb_softc {
682 1.3 bouyer struct genfb_softc sc_gen;
683 1.3 bouyer device_t sc_debedev;
684 1.3 bouyer
685 1.3 bouyer bus_dma_tag_t sc_dmat;
686 1.3 bouyer bus_dma_segment_t *sc_dmasegs;
687 1.3 bouyer int sc_ndmasegs;
688 1.3 bouyer };
689 1.3 bouyer
690 1.3 bouyer static device_t sunxi_befb_consoledev = NULL;
691 1.3 bouyer
692 1.3 bouyer static int sunxi_befb_match(device_t, cfdata_t, void *);
693 1.3 bouyer static void sunxi_befb_attach(device_t, device_t, void *);
694 1.3 bouyer
695 1.3 bouyer static int sunxi_befb_ioctl(void *, void *, u_long, void *, int, lwp_t *);
696 1.3 bouyer static paddr_t sunxi_befb_mmap(void *, void *, off_t, int);
697 1.3 bouyer static bool sunxi_befb_shutdown(device_t, int);
698 1.1 jmcneill
699 1.3 bouyer CFATTACH_DECL_NEW(sunxi_befb, sizeof(struct sunxi_befb_softc),
700 1.3 bouyer sunxi_befb_match, sunxi_befb_attach, NULL, NULL);
701 1.1 jmcneill
702 1.3 bouyer static int
703 1.3 bouyer sunxi_befb_match(device_t parent, cfdata_t cf, void *aux)
704 1.3 bouyer {
705 1.3 bouyer return 1;
706 1.1 jmcneill }
707 1.1 jmcneill
708 1.1 jmcneill static void
709 1.3 bouyer sunxi_befb_attach(device_t parent, device_t self, void *aux)
710 1.1 jmcneill {
711 1.3 bouyer struct sunxi_befb_softc *sc = device_private(self);
712 1.3 bouyer struct sunxifb_attach_args * const afb = aux;
713 1.3 bouyer prop_dictionary_t cfg = device_properties(self);
714 1.1 jmcneill struct genfb_ops ops;
715 1.1 jmcneill
716 1.3 bouyer sc->sc_gen.sc_dev = self;
717 1.3 bouyer sc->sc_debedev = parent;
718 1.3 bouyer sc->sc_dmat = afb->afb_dmat;
719 1.3 bouyer sc->sc_dmasegs = afb->afb_dmasegs;
720 1.3 bouyer sc->sc_ndmasegs = afb->afb_ndmasegs;
721 1.3 bouyer
722 1.3 bouyer prop_dictionary_set_uint32(cfg, "width", afb->afb_width);
723 1.3 bouyer prop_dictionary_set_uint32(cfg, "height", afb->afb_height);
724 1.3 bouyer prop_dictionary_set_uint8(cfg, "depth", 32);
725 1.3 bouyer prop_dictionary_set_uint16(cfg, "linebytes", afb->afb_width * 4);
726 1.3 bouyer prop_dictionary_set_uint32(cfg, "address", 0);
727 1.3 bouyer prop_dictionary_set_uint32(cfg, "virtual_address",
728 1.3 bouyer (uintptr_t)afb->afb_fb);
729 1.1 jmcneill
730 1.1 jmcneill genfb_init(&sc->sc_gen);
731 1.1 jmcneill
732 1.1 jmcneill if (sc->sc_gen.sc_width == 0 || sc->sc_gen.sc_fbsize == 0) {
733 1.1 jmcneill aprint_normal(": disabled\n");
734 1.1 jmcneill return;
735 1.1 jmcneill }
736 1.1 jmcneill
737 1.3 bouyer pmf_device_register1(self, NULL, NULL, sunxi_befb_shutdown);
738 1.1 jmcneill
739 1.1 jmcneill memset(&ops, 0, sizeof(ops));
740 1.3 bouyer ops.genfb_ioctl = sunxi_befb_ioctl;
741 1.3 bouyer ops.genfb_mmap = sunxi_befb_mmap;
742 1.3 bouyer
743 1.3 bouyer aprint_naive("\n");
744 1.1 jmcneill
745 1.8 bouyer bool is_console = (debe_console_sc == device_private(parent));
746 1.1 jmcneill if (is_console)
747 1.3 bouyer aprint_normal(": switching to framebuffer console\n");
748 1.3 bouyer else
749 1.3 bouyer aprint_normal("\n");
750 1.1 jmcneill
751 1.8 bouyer #ifdef WSDISPLAY_MULTICONS
752 1.8 bouyer /*
753 1.8 bouyer * if we support multicons, only the first framebuffer is console,
754 1.8 bouyer * unless we already know which framebuffer will be the console
755 1.8 bouyer */
756 1.8 bouyer if (!is_console && debe_console_sc == NULL &&
757 1.8 bouyer sunxi_befb_consoledev == NULL)
758 1.8 bouyer is_console = true;
759 1.8 bouyer #endif
760 1.8 bouyer prop_dictionary_set_bool(cfg, "is_console", is_console);
761 1.8 bouyer if (is_console) {
762 1.8 bouyer KASSERT(sunxi_befb_consoledev == NULL);
763 1.8 bouyer sunxi_befb_consoledev = self;
764 1.8 bouyer }
765 1.8 bouyer
766 1.1 jmcneill genfb_attach(&sc->sc_gen, &ops);
767 1.1 jmcneill }
768 1.1 jmcneill
769 1.1 jmcneill static int
770 1.3 bouyer sunxi_befb_ioctl(void *v, void *vs, u_long cmd, void *data, int flag, lwp_t *l)
771 1.3 bouyer {
772 1.3 bouyer struct sunxi_befb_softc *sc = v;
773 1.3 bouyer struct wsdisplayio_bus_id *busid;
774 1.3 bouyer struct wsdisplayio_fbinfo *fbi;
775 1.3 bouyer struct rasops_info *ri;
776 1.3 bouyer int error;
777 1.3 bouyer
778 1.3 bouyer switch (cmd) {
779 1.3 bouyer case WSDISPLAYIO_GTYPE:
780 1.3 bouyer *(u_int *)data = WSDISPLAY_TYPE_ALLWINNER;
781 1.3 bouyer return 0;
782 1.3 bouyer case WSDISPLAYIO_GET_BUSID:
783 1.3 bouyer busid = data;
784 1.3 bouyer busid->bus_type = WSDISPLAYIO_BUS_SOC;
785 1.3 bouyer return 0;
786 1.3 bouyer case WSDISPLAYIO_GET_FBINFO:
787 1.3 bouyer fbi = data;
788 1.3 bouyer ri = &sc->sc_gen.vd.active->scr_ri;
789 1.3 bouyer error = wsdisplayio_get_fbinfo(ri, fbi);
790 1.3 bouyer if (error == 0) {
791 1.3 bouyer fbi->fbi_flags |= WSFB_VRAM_IS_RAM;
792 1.3 bouyer fbi->fbi_fbsize = sc->sc_dmasegs[0].ds_len;
793 1.3 bouyer }
794 1.3 bouyer return error;
795 1.3 bouyer case WSDISPLAYIO_SVIDEO:
796 1.3 bouyer case WSDISPLAYIO_GVIDEO:
797 1.3 bouyer case WSDISPLAYIO_GCURPOS:
798 1.3 bouyer case WSDISPLAYIO_SCURPOS:
799 1.3 bouyer case WSDISPLAYIO_GCURMAX:
800 1.3 bouyer case WSDISPLAYIO_SCURSOR:
801 1.3 bouyer return sunxi_debe_ioctl(sc->sc_debedev, cmd, data);
802 1.3 bouyer default:
803 1.3 bouyer return EPASSTHROUGH;
804 1.3 bouyer }
805 1.3 bouyer }
806 1.3 bouyer
807 1.3 bouyer static paddr_t
808 1.3 bouyer sunxi_befb_mmap(void *v, void *vs, off_t off, int prot)
809 1.1 jmcneill {
810 1.3 bouyer struct sunxi_befb_softc *sc = v;
811 1.3 bouyer
812 1.3 bouyer if (off < 0 || off >= sc->sc_dmasegs[0].ds_len)
813 1.3 bouyer return -1;
814 1.3 bouyer
815 1.3 bouyer return bus_dmamem_mmap(sc->sc_dmat, sc->sc_dmasegs, sc->sc_ndmasegs,
816 1.3 bouyer off, prot, BUS_DMA_PREFETCHABLE);
817 1.3 bouyer }
818 1.1 jmcneill
819 1.3 bouyer static bool
820 1.3 bouyer sunxi_befb_shutdown(device_t self, int flags)
821 1.3 bouyer {
822 1.3 bouyer genfb_enable_polling(self);
823 1.3 bouyer return true;
824 1.1 jmcneill }
825 1.1 jmcneill
826 1.1 jmcneill static void
827 1.3 bouyer sunxi_befb_set_videomode(device_t dev, u_int width, u_int height)
828 1.1 jmcneill {
829 1.3 bouyer struct sunxi_befb_softc *sc = device_private(dev);
830 1.1 jmcneill
831 1.3 bouyer if (sc->sc_gen.sc_width != width || sc->sc_gen.sc_height != height) {
832 1.3 bouyer device_printf(sc->sc_gen.sc_dev,
833 1.3 bouyer "mode switching not yet supported\n");
834 1.1 jmcneill }
835 1.3 bouyer }
836 1.1 jmcneill
837 1.3 bouyer int
838 1.3 bouyer sunxi_debe_pipeline(int phandle, bool active)
839 1.3 bouyer {
840 1.3 bouyer device_t dev;
841 1.3 bouyer struct sunxi_debe_softc *sc;
842 1.3 bouyer struct fdt_endpoint *ep;
843 1.3 bouyer int i, error;
844 1.3 bouyer
845 1.3 bouyer if (!active)
846 1.3 bouyer return EOPNOTSUPP;
847 1.3 bouyer
848 1.3 bouyer for (i = 0;;i++) {
849 1.3 bouyer dev = device_find_by_driver_unit("sunxidebe", i);
850 1.3 bouyer if (dev == NULL)
851 1.3 bouyer return ENODEV;
852 1.3 bouyer sc = device_private(dev);
853 1.3 bouyer if (sc->sc_phandle == phandle)
854 1.3 bouyer break;
855 1.1 jmcneill }
856 1.3 bouyer aprint_normal("activate %s\n", device_xname(dev));
857 1.5 bouyer if (clk_enable(sc->sc_clk_ahb) != 0 ||
858 1.5 bouyer clk_enable(sc->sc_clk_mod) != 0) {
859 1.5 bouyer aprint_error_dev(dev, "couldn't enable clocks\n");
860 1.5 bouyer return EIO;
861 1.5 bouyer }
862 1.3 bouyer /* connect debd0 to tcon0, debe1 to tcon1 */
863 1.3 bouyer ep = fdt_endpoint_get_from_index(&sc->sc_ports, SUNXI_PORT_OUTPUT,
864 1.3 bouyer sc->sc_unit);
865 1.3 bouyer if (ep == NULL) {
866 1.3 bouyer aprint_error_dev(dev, "no output endpoint for %d\n",
867 1.3 bouyer sc->sc_unit);
868 1.3 bouyer return ENODEV;
869 1.1 jmcneill }
870 1.3 bouyer error = fdt_endpoint_activate(ep, true);
871 1.8 bouyer if (error)
872 1.8 bouyer return error;
873 1.8 bouyer
874 1.8 bouyer sc->sc_out_ep = ep;
875 1.8 bouyer error = fdt_endpoint_enable(ep, true);
876 1.8 bouyer return error;
877 1.8 bouyer }
878 1.8 bouyer
879 1.8 bouyer /*
880 1.8 bouyer * we don't want to take over console at this time - simplefb will
881 1.8 bouyer * do a better job than us. We will take over later.
882 1.8 bouyer * But we want to record the /chose/framebuffer phandle if there is one
883 1.8 bouyer */
884 1.8 bouyer
885 1.8 bouyer static const char * const simplefb_compatible[] = {
886 1.8 bouyer "allwinner,simple-framebuffer",
887 1.8 bouyer NULL
888 1.8 bouyer };
889 1.8 bouyer
890 1.8 bouyer static int
891 1.8 bouyer sunxidebe_console_match(int phandle)
892 1.8 bouyer {
893 1.8 bouyer if (of_match_compatible(phandle, simplefb_compatible)) {
894 1.8 bouyer sunxi_simplefb_phandle = phandle;
895 1.1 jmcneill }
896 1.8 bouyer return 0;
897 1.8 bouyer }
898 1.8 bouyer
899 1.8 bouyer static void
900 1.8 bouyer sunxidebe_console_consinit(struct fdt_attach_args *faa, u_int uart_freq)
901 1.8 bouyer {
902 1.8 bouyer panic("sunxidebe_console_consinit");
903 1.3 bouyer }
904 1.1 jmcneill
905 1.8 bouyer static const struct fdt_console sunxidebe_fdt_console = {
906 1.8 bouyer .match = sunxidebe_console_match,
907 1.8 bouyer .consinit = sunxidebe_console_consinit
908 1.8 bouyer };
909 1.8 bouyer
910 1.8 bouyer FDT_CONSOLE(sunxidebe, &sunxidebe_fdt_console);
911 1.8 bouyer
912 1.3 bouyer #if defined(SUNXI_DEBE_DEBUG)
913 1.3 bouyer void
914 1.3 bouyer sunxi_debe_dump_regs(int u)
915 1.3 bouyer {
916 1.3 bouyer static const struct {
917 1.3 bouyer const char *name;
918 1.3 bouyer uint16_t reg;
919 1.3 bouyer } regs[] = {
920 1.3 bouyer { "SUNXI_DEBE_MODCTL_REG", SUNXI_DEBE_MODCTL_REG},
921 1.3 bouyer { "SUNXI_DEBE_BACKCOLOR_REG", SUNXI_DEBE_BACKCOLOR_REG},
922 1.3 bouyer { "SUNXI_DEBE_DISSIZE_REG", SUNXI_DEBE_DISSIZE_REG},
923 1.3 bouyer { "SUNXI_DEBE_LAYSIZE_REG", SUNXI_DEBE_LAYSIZE_REG},
924 1.3 bouyer { "SUNXI_DEBE_LAYCOOR_REG", SUNXI_DEBE_LAYCOOR_REG},
925 1.3 bouyer { "SUNXI_DEBE_LAYLINEWIDTH_REG", SUNXI_DEBE_LAYLINEWIDTH_REG},
926 1.3 bouyer { "SUNXI_DEBE_LAYFB_L32ADD_REG", SUNXI_DEBE_LAYFB_L32ADD_REG},
927 1.3 bouyer { "SUNXI_DEBE_LAYFB_H4ADD_REG", SUNXI_DEBE_LAYFB_H4ADD_REG},
928 1.3 bouyer { "SUNXI_DEBE_REGBUFFCTL_REG", SUNXI_DEBE_REGBUFFCTL_REG},
929 1.3 bouyer { "SUNXI_DEBE_CKMAX_REG", SUNXI_DEBE_CKMAX_REG},
930 1.3 bouyer { "SUNXI_DEBE_CKMIN_REG", SUNXI_DEBE_CKMIN_REG},
931 1.3 bouyer { "SUNXI_DEBE_CKCFG_REG", SUNXI_DEBE_CKCFG_REG},
932 1.3 bouyer { "SUNXI_DEBE_ATTCTL0_REG", SUNXI_DEBE_ATTCTL0_REG},
933 1.3 bouyer { "SUNXI_DEBE_ATTCTL1_REG", SUNXI_DEBE_ATTCTL1_REG},
934 1.3 bouyer { "SUNXI_DEBE_HWCCTL_REG", SUNXI_DEBE_HWCCTL_REG},
935 1.3 bouyer { "SUNXI_DEBE_HWCFBCTL_REG", SUNXI_DEBE_HWCFBCTL_REG},
936 1.3 bouyer { "SUNXI_DEBE_WBCTL_REG", SUNXI_DEBE_WBCTL_REG},
937 1.3 bouyer { "SUNXI_DEBE_WBADD_REG", SUNXI_DEBE_WBADD_REG},
938 1.3 bouyer { "SUNXI_DEBE_WBLINEWIDTH_REG", SUNXI_DEBE_WBLINEWIDTH_REG},
939 1.3 bouyer { "SUNXI_DEBE_IYUVCTL_REG", SUNXI_DEBE_IYUVCTL_REG},
940 1.3 bouyer { "SUNXI_DEBE_IYUVADD_REG", SUNXI_DEBE_IYUVADD_REG},
941 1.3 bouyer { "SUNXI_DEBE_IYUVLINEWIDTH_REG", SUNXI_DEBE_IYUVLINEWIDTH_REG},
942 1.3 bouyer { "SUNXI_DEBE_YGCOEF_REG", SUNXI_DEBE_YGCOEF_REG},
943 1.3 bouyer { "SUNXI_DEBE_YGCONS_REG", SUNXI_DEBE_YGCONS_REG},
944 1.3 bouyer { "SUNXI_DEBE_URCOEF_REG", SUNXI_DEBE_URCOEF_REG},
945 1.3 bouyer { "SUNXI_DEBE_URCONS_REG", SUNXI_DEBE_URCONS_REG},
946 1.3 bouyer { "SUNXI_DEBE_VBCOEF_REG", SUNXI_DEBE_VBCOEF_REG},
947 1.3 bouyer { "SUNXI_DEBE_VBCONS_REG", SUNXI_DEBE_VBCONS_REG},
948 1.3 bouyer { "SUNXI_DEBE_OCCTL_REG", SUNXI_DEBE_OCCTL_REG},
949 1.3 bouyer { "SUNXI_DEBE_OCRCOEF_REG", SUNXI_DEBE_OCRCOEF_REG},
950 1.3 bouyer { "SUNXI_DEBE_OCRCONS_REG", SUNXI_DEBE_OCRCONS_REG},
951 1.3 bouyer { "SUNXI_DEBE_OCGCOEF_REG", SUNXI_DEBE_OCGCOEF_REG},
952 1.3 bouyer { "SUNXI_DEBE_OCGCONS_REG", SUNXI_DEBE_OCGCONS_REG},
953 1.3 bouyer { "SUNXI_DEBE_OCBCOEF_REG", SUNXI_DEBE_OCBCOEF_REG},
954 1.3 bouyer { "SUNXI_DEBE_OCBCONS_REG", SUNXI_DEBE_OCBCONS_REG},
955 1.3 bouyer };
956 1.3 bouyer struct sunxi_debe_softc *sc;
957 1.3 bouyer device_t dev;
958 1.1 jmcneill
959 1.3 bouyer dev = device_find_by_driver_unit("sunxidebe", u);
960 1.3 bouyer if (dev == NULL)
961 1.1 jmcneill return;
962 1.3 bouyer sc = device_private(dev);
963 1.1 jmcneill
964 1.3 bouyer for (int i = 0; i < __arraycount(regs); i++) {
965 1.3 bouyer printf("%s: 0x%08x\n", regs[i].name,
966 1.3 bouyer DEBE_READ(sc, regs[i].reg));
967 1.1 jmcneill }
968 1.1 jmcneill }
969 1.3 bouyer #endif
970