ssdfb_spi.c revision 1.4 1 1.4 thorpej /* $NetBSD: ssdfb_spi.c,v 1.4 2021/01/17 21:42:35 thorpej Exp $ */
2 1.1 tnn
3 1.1 tnn /*
4 1.1 tnn * Copyright (c) 2019 The NetBSD Foundation, Inc.
5 1.1 tnn * All rights reserved.
6 1.1 tnn *
7 1.1 tnn * This code is derived from software contributed to The NetBSD Foundation
8 1.1 tnn * by Tobias Nygren.
9 1.1 tnn *
10 1.1 tnn * Redistribution and use in source and binary forms, with or without
11 1.1 tnn * modification, are permitted provided that the following conditions
12 1.1 tnn * are met:
13 1.1 tnn * 1. Redistributions of source code must retain the above copyright
14 1.1 tnn * notice, this list of conditions and the following disclaimer.
15 1.1 tnn * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 tnn * notice, this list of conditions and the following disclaimer in the
17 1.1 tnn * documentation and/or other materials provided with the distribution.
18 1.1 tnn *
19 1.1 tnn * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 tnn * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 tnn * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 tnn * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 tnn * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 tnn * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 tnn * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 tnn * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 tnn * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 tnn * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 tnn * POSSIBILITY OF SUCH DAMAGE.
30 1.1 tnn */
31 1.1 tnn
32 1.1 tnn #include <sys/cdefs.h>
33 1.4 thorpej __KERNEL_RCSID(0, "$NetBSD: ssdfb_spi.c,v 1.4 2021/01/17 21:42:35 thorpej Exp $");
34 1.1 tnn
35 1.1 tnn #include <sys/param.h>
36 1.1 tnn #include <sys/device.h>
37 1.1 tnn #include <sys/kernel.h>
38 1.1 tnn #include <dev/wscons/wsdisplayvar.h>
39 1.1 tnn #include <dev/rasops/rasops.h>
40 1.1 tnn #include <dev/spi/spivar.h>
41 1.1 tnn #include <dev/ic/ssdfbvar.h>
42 1.1 tnn
43 1.1 tnn struct bs_state {
44 1.1 tnn uint8_t *base;
45 1.1 tnn uint8_t *cur;
46 1.1 tnn uint8_t mask;
47 1.1 tnn };
48 1.1 tnn
49 1.1 tnn struct ssdfb_spi_softc {
50 1.1 tnn struct ssdfb_softc sc;
51 1.1 tnn struct spi_handle *sc_sh;
52 1.1 tnn bool sc_3wiremode;
53 1.1 tnn };
54 1.1 tnn
55 1.1 tnn static int ssdfb_spi_match(device_t, cfdata_t, void *);
56 1.1 tnn static void ssdfb_spi_attach(device_t, device_t, void *);
57 1.1 tnn
58 1.1 tnn static int ssdfb_spi_cmd_3wire(void *, uint8_t *, size_t, bool);
59 1.1 tnn static int ssdfb_spi_xfer_rect_3wire_ssd1322(void *, uint8_t, uint8_t,
60 1.1 tnn uint8_t, uint8_t, uint8_t *, size_t, bool);
61 1.1 tnn
62 1.1 tnn static int ssdfb_spi_cmd_4wire(void *, uint8_t *, size_t, bool);
63 1.1 tnn static int ssdfb_spi_xfer_rect_4wire_ssd1322(void *, uint8_t, uint8_t,
64 1.1 tnn uint8_t, uint8_t, uint8_t *, size_t, bool);
65 1.1 tnn
66 1.1 tnn static void ssdfb_bitstream_init(struct bs_state *, uint8_t *);
67 1.1 tnn static void ssdfb_bitstream_append(struct bs_state *, uint8_t, uint8_t);
68 1.1 tnn static void ssdfb_bitstream_append_cmd(struct bs_state *, uint8_t);
69 1.1 tnn static void ssdfb_bitstream_append_data(struct bs_state *, uint8_t *,
70 1.1 tnn size_t);
71 1.1 tnn static void ssdfb_bitstream_final(struct bs_state *);
72 1.1 tnn
73 1.1 tnn CFATTACH_DECL_NEW(ssdfb_spi, sizeof(struct ssdfb_spi_softc),
74 1.1 tnn ssdfb_spi_match, ssdfb_spi_attach, NULL, NULL);
75 1.1 tnn
76 1.3 tnn static const struct device_compatible_entry compat_data[] = {
77 1.4 thorpej { .compat = "solomon,ssd1322" },
78 1.4 thorpej
79 1.4 thorpej { 0 }
80 1.3 tnn };
81 1.3 tnn
82 1.1 tnn static int
83 1.1 tnn ssdfb_spi_match(device_t parent, cfdata_t match, void *aux)
84 1.1 tnn {
85 1.1 tnn struct spi_attach_args *sa = aux;
86 1.3 tnn int res;
87 1.3 tnn
88 1.3 tnn res = spi_compatible_match(sa, match, compat_data);
89 1.3 tnn if (!res)
90 1.3 tnn return res;
91 1.1 tnn
92 1.1 tnn /*
93 1.1 tnn * SSD1306 and SSD1322 data sheets specify 100ns cycle time.
94 1.1 tnn */
95 1.1 tnn if (spi_configure(sa->sa_handle, SPI_MODE_0, 10000000))
96 1.3 tnn res = 0;
97 1.1 tnn
98 1.3 tnn return res;
99 1.1 tnn }
100 1.1 tnn
101 1.1 tnn static void
102 1.1 tnn ssdfb_spi_attach(device_t parent, device_t self, void *aux)
103 1.1 tnn {
104 1.1 tnn struct ssdfb_spi_softc *sc = device_private(self);
105 1.1 tnn struct cfdata *cf = device_cfdata(self);
106 1.1 tnn struct spi_attach_args *sa = aux;
107 1.1 tnn int flags = cf->cf_flags;
108 1.1 tnn
109 1.1 tnn sc->sc.sc_dev = self;
110 1.1 tnn sc->sc_sh = sa->sa_handle;
111 1.1 tnn sc->sc.sc_cookie = (void *)sc;
112 1.1 tnn if ((flags & SSDFB_ATTACH_FLAG_PRODUCT_MASK) == SSDFB_PRODUCT_UNKNOWN)
113 1.1 tnn flags |= SSDFB_PRODUCT_SSD1322_GENERIC;
114 1.1 tnn /*
115 1.1 tnn * Note on interface modes.
116 1.1 tnn *
117 1.1 tnn * 3 wire mode sends 9 bit sequences over the MOSI, MSB contains
118 1.1 tnn * the bit that determines if the lower 8 bits are command or data.
119 1.1 tnn *
120 1.1 tnn * 4 wire mode sends 8 bit sequences and requires an auxiliary GPIO
121 1.1 tnn * pin for the command/data bit. But in other to allocate a GPIO pin
122 1.1 tnn * we need to use fdt, so only support 3 wire mode in this frontend,
123 1.1 tnn * at least for now.
124 1.1 tnn */
125 1.1 tnn sc->sc_3wiremode = true;
126 1.1 tnn
127 1.1 tnn switch (flags & SSDFB_ATTACH_FLAG_PRODUCT_MASK) {
128 1.1 tnn case SSDFB_PRODUCT_SSD1322_GENERIC:
129 1.1 tnn if (sc->sc_3wiremode) {
130 1.1 tnn sc->sc.sc_transfer_rect =
131 1.1 tnn ssdfb_spi_xfer_rect_3wire_ssd1322;
132 1.1 tnn } else {
133 1.1 tnn sc->sc.sc_transfer_rect =
134 1.1 tnn ssdfb_spi_xfer_rect_4wire_ssd1322;
135 1.1 tnn }
136 1.1 tnn break;
137 1.1 tnn default:
138 1.1 tnn panic("ssdfb_spi_attach: product not implemented");
139 1.1 tnn }
140 1.1 tnn if (sc->sc_3wiremode) {
141 1.1 tnn sc->sc.sc_cmd = ssdfb_spi_cmd_3wire;
142 1.1 tnn } else {
143 1.1 tnn sc->sc.sc_cmd = ssdfb_spi_cmd_4wire;
144 1.1 tnn }
145 1.1 tnn
146 1.1 tnn ssdfb_attach(&sc->sc, flags);
147 1.1 tnn
148 1.1 tnn device_printf(sc->sc.sc_dev, "%d-wire SPI interface\n",
149 1.1 tnn sc->sc_3wiremode == true ? 3 : 4);
150 1.1 tnn }
151 1.1 tnn
152 1.1 tnn static int
153 1.1 tnn ssdfb_spi_cmd_3wire(void *cookie, uint8_t *cmd, size_t len, bool usepoll)
154 1.1 tnn {
155 1.1 tnn struct ssdfb_spi_softc *sc = (struct ssdfb_spi_softc *)cookie;
156 1.1 tnn uint8_t bitstream[16 * 9 / 8];
157 1.1 tnn struct bs_state s;
158 1.1 tnn
159 1.1 tnn KASSERT(len > 0 && len <= 16);
160 1.1 tnn ssdfb_bitstream_init(&s, bitstream);
161 1.1 tnn ssdfb_bitstream_append_cmd(&s, *cmd);
162 1.1 tnn cmd++;
163 1.1 tnn len--;
164 1.1 tnn ssdfb_bitstream_append_data(&s, cmd, len);
165 1.1 tnn ssdfb_bitstream_final(&s);
166 1.1 tnn
167 1.1 tnn return spi_send(sc->sc_sh, s.cur - s.base, bitstream);
168 1.1 tnn }
169 1.1 tnn
170 1.1 tnn static int
171 1.1 tnn ssdfb_spi_xfer_rect_3wire_ssd1322(void *cookie, uint8_t fromcol, uint8_t tocol,
172 1.1 tnn uint8_t fromrow, uint8_t torow, uint8_t *p, size_t stride, bool usepoll)
173 1.1 tnn {
174 1.1 tnn struct ssdfb_spi_softc *sc = (struct ssdfb_spi_softc *)cookie;
175 1.1 tnn uint8_t bitstream[128 * 9 / 8];
176 1.1 tnn struct bs_state s;
177 1.1 tnn uint8_t row;
178 1.1 tnn size_t rlen = (tocol + 1 - fromcol) * 2;
179 1.1 tnn int error;
180 1.1 tnn
181 1.1 tnn /*
182 1.1 tnn * Unlike iic(4), there is no way to force spi(4) to use polling.
183 1.1 tnn */
184 1.2 tnn if (usepoll && !cold)
185 1.1 tnn return 0;
186 1.1 tnn
187 1.1 tnn ssdfb_bitstream_init(&s, bitstream);
188 1.1 tnn ssdfb_bitstream_append_cmd(&s, SSD1322_CMD_SET_ROW_ADDRESS);
189 1.1 tnn ssdfb_bitstream_append_data(&s, &fromrow, 1);
190 1.1 tnn ssdfb_bitstream_append_data(&s, &torow, 1);
191 1.1 tnn ssdfb_bitstream_append_cmd(&s, SSD1322_CMD_SET_COLUMN_ADDRESS);
192 1.1 tnn ssdfb_bitstream_append_data(&s, &fromcol, 1);
193 1.1 tnn ssdfb_bitstream_append_data(&s, &tocol, 1);
194 1.1 tnn ssdfb_bitstream_append_cmd(&s, SSD1322_CMD_WRITE_RAM);
195 1.1 tnn ssdfb_bitstream_final(&s);
196 1.1 tnn error = spi_send(sc->sc_sh, s.cur - s.base, bitstream);
197 1.1 tnn if (error)
198 1.1 tnn return error;
199 1.1 tnn
200 1.1 tnn KASSERT(rlen <= 128);
201 1.1 tnn for (row = fromrow; row <= torow; row++) {
202 1.1 tnn ssdfb_bitstream_init(&s, bitstream);
203 1.1 tnn ssdfb_bitstream_append_data(&s, p, rlen);
204 1.1 tnn ssdfb_bitstream_final(&s);
205 1.1 tnn error = spi_send(sc->sc_sh, s.cur - s.base, bitstream);
206 1.1 tnn if (error)
207 1.1 tnn return error;
208 1.1 tnn p += stride;
209 1.1 tnn }
210 1.1 tnn
211 1.1 tnn return 0;
212 1.1 tnn }
213 1.1 tnn
214 1.1 tnn static void
215 1.1 tnn ssdfb_bitstream_init(struct bs_state *s, uint8_t *dst)
216 1.1 tnn {
217 1.1 tnn s->base = s->cur = dst;
218 1.1 tnn s->mask = 0x80;
219 1.1 tnn }
220 1.1 tnn
221 1.1 tnn static void
222 1.1 tnn ssdfb_bitstream_append(struct bs_state *s, uint8_t b, uint8_t srcmask)
223 1.1 tnn {
224 1.1 tnn while(srcmask) {
225 1.1 tnn if (b & srcmask)
226 1.1 tnn *s->cur |= s->mask;
227 1.1 tnn else
228 1.1 tnn *s->cur &= ~s->mask;
229 1.1 tnn srcmask >>= 1;
230 1.1 tnn s->mask >>= 1;
231 1.1 tnn if (!s->mask) {
232 1.1 tnn s->mask = 0x80;
233 1.1 tnn s->cur++;
234 1.1 tnn }
235 1.1 tnn }
236 1.1 tnn }
237 1.1 tnn
238 1.1 tnn static void
239 1.1 tnn ssdfb_bitstream_append_cmd(struct bs_state *s, uint8_t cmd)
240 1.1 tnn {
241 1.1 tnn ssdfb_bitstream_append(s, 0, 1);
242 1.1 tnn ssdfb_bitstream_append(s, cmd, 0x80);
243 1.1 tnn }
244 1.1 tnn
245 1.1 tnn static void
246 1.1 tnn ssdfb_bitstream_append_data(struct bs_state *s, uint8_t *data, size_t len)
247 1.1 tnn {
248 1.1 tnn while(len--) {
249 1.1 tnn ssdfb_bitstream_append(s, 1, 1);
250 1.1 tnn ssdfb_bitstream_append(s, *data++, 0x80);
251 1.1 tnn }
252 1.1 tnn }
253 1.1 tnn
254 1.1 tnn static void
255 1.1 tnn ssdfb_bitstream_final(struct bs_state *s)
256 1.1 tnn {
257 1.1 tnn uint8_t padding_cmd = SSD1322_CMD_WRITE_RAM;
258 1.1 tnn /* padding_cmd = SSDFB_NOP_CMD; */
259 1.1 tnn
260 1.1 tnn while (s->mask != 0x80) {
261 1.1 tnn ssdfb_bitstream_append_cmd(s, padding_cmd);
262 1.1 tnn }
263 1.1 tnn }
264 1.1 tnn
265 1.1 tnn static void
266 1.1 tnn ssdfb_spi_4wire_set_dc(struct ssdfb_spi_softc *sc, int value)
267 1.1 tnn {
268 1.1 tnn /* TODO: this should toggle an auxilliary GPIO pin */
269 1.1 tnn panic("ssdfb_spi_4wire_set_dc");
270 1.1 tnn }
271 1.1 tnn
272 1.1 tnn static int
273 1.1 tnn ssdfb_spi_cmd_4wire(void *cookie, uint8_t *cmd, size_t len, bool usepoll)
274 1.1 tnn {
275 1.1 tnn struct ssdfb_spi_softc *sc = (struct ssdfb_spi_softc *)cookie;
276 1.1 tnn int error;
277 1.1 tnn
278 1.1 tnn ssdfb_spi_4wire_set_dc(sc, 0);
279 1.1 tnn error = spi_send(sc->sc_sh, 1, cmd);
280 1.1 tnn if (error)
281 1.1 tnn return error;
282 1.1 tnn if (len > 1) {
283 1.1 tnn ssdfb_spi_4wire_set_dc(sc, 1);
284 1.1 tnn len--;
285 1.1 tnn cmd++;
286 1.1 tnn error = spi_send(sc->sc_sh, len, cmd);
287 1.1 tnn if (error)
288 1.1 tnn return error;
289 1.1 tnn }
290 1.1 tnn
291 1.1 tnn return 0;
292 1.1 tnn }
293 1.1 tnn
294 1.1 tnn static int
295 1.1 tnn ssdfb_spi_xfer_rect_4wire_ssd1322(void *cookie, uint8_t fromcol, uint8_t tocol,
296 1.1 tnn uint8_t fromrow, uint8_t torow, uint8_t *p, size_t stride, bool usepoll)
297 1.1 tnn {
298 1.1 tnn struct ssdfb_spi_softc *sc = (struct ssdfb_spi_softc *)cookie;
299 1.1 tnn uint8_t row;
300 1.1 tnn size_t rlen = (tocol + 1 - fromcol) * 2;
301 1.1 tnn int error;
302 1.1 tnn uint8_t cmd;
303 1.1 tnn uint8_t data[2];
304 1.1 tnn
305 1.1 tnn /*
306 1.1 tnn * Unlike iic(4), there is no way to force spi(4) to use polling.
307 1.1 tnn */
308 1.2 tnn if (usepoll && !cold)
309 1.1 tnn return 0;
310 1.1 tnn
311 1.1 tnn ssdfb_spi_4wire_set_dc(sc, 0);
312 1.1 tnn cmd = SSD1322_CMD_SET_ROW_ADDRESS;
313 1.1 tnn error = spi_send(sc->sc_sh, sizeof(cmd), &cmd);
314 1.1 tnn if (error)
315 1.1 tnn return error;
316 1.1 tnn ssdfb_spi_4wire_set_dc(sc, 1);
317 1.1 tnn data[0] = fromrow;
318 1.1 tnn data[1] = torow;
319 1.1 tnn error = spi_send(sc->sc_sh, sizeof(data), data);
320 1.1 tnn if (error)
321 1.1 tnn return error;
322 1.1 tnn
323 1.1 tnn ssdfb_spi_4wire_set_dc(sc, 0);
324 1.1 tnn cmd = SSD1322_CMD_SET_COLUMN_ADDRESS;
325 1.1 tnn error = spi_send(sc->sc_sh, sizeof(cmd), &cmd);
326 1.1 tnn if (error)
327 1.1 tnn return error;
328 1.1 tnn ssdfb_spi_4wire_set_dc(sc, 1);
329 1.1 tnn data[0] = fromcol;
330 1.1 tnn data[1] = tocol;
331 1.1 tnn error = spi_send(sc->sc_sh, sizeof(data), data);
332 1.1 tnn if (error)
333 1.1 tnn return error;
334 1.1 tnn
335 1.1 tnn ssdfb_spi_4wire_set_dc(sc, 0);
336 1.1 tnn cmd = SSD1322_CMD_WRITE_RAM;
337 1.1 tnn error = spi_send(sc->sc_sh, sizeof(cmd), &cmd);
338 1.1 tnn if (error)
339 1.1 tnn return error;
340 1.1 tnn
341 1.1 tnn ssdfb_spi_4wire_set_dc(sc, 1);
342 1.1 tnn for (row = fromrow; row <= torow; row++) {
343 1.1 tnn error = spi_send(sc->sc_sh, rlen, p);
344 1.1 tnn if (error)
345 1.1 tnn return error;
346 1.1 tnn p += stride;
347 1.1 tnn }
348 1.1 tnn
349 1.1 tnn return 0;
350 1.1 tnn }
351