xref: /openbsd/sys/dev/isa/gscsio.c (revision 471aeecf)
1*471aeecfSnaddy /*	$OpenBSD: gscsio.c,v 1.14 2022/04/06 18:59:28 naddy Exp $	*/
2d1b1be5aSgrange /*
3d1b1be5aSgrange  * Copyright (c) 2004 Alexander Yurchenko <grange@openbsd.org>
4d1b1be5aSgrange  *
5d1b1be5aSgrange  * Permission to use, copy, modify, and distribute this software for any
6d1b1be5aSgrange  * purpose with or without fee is hereby granted, provided that the above
7d1b1be5aSgrange  * copyright notice and this permission notice appear in all copies.
8d1b1be5aSgrange  *
9d1b1be5aSgrange  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
10d1b1be5aSgrange  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
11d1b1be5aSgrange  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
12d1b1be5aSgrange  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
13d1b1be5aSgrange  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
14d1b1be5aSgrange  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
15d1b1be5aSgrange  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
16d1b1be5aSgrange  */
17d1b1be5aSgrange 
18d1b1be5aSgrange /*
19d1b1be5aSgrange  * National Semiconductor Geode SC1100 Super I/O.
20d1b1be5aSgrange  * Only ACCESS.bus logical device is supported.
21d1b1be5aSgrange  */
22d1b1be5aSgrange 
23d1b1be5aSgrange #include <sys/param.h>
24d1b1be5aSgrange #include <sys/systm.h>
25d1b1be5aSgrange #include <sys/device.h>
26d1b1be5aSgrange #include <sys/kernel.h>
273e55d5feSjsg #include <sys/rwlock.h>
28d1b1be5aSgrange 
29d1b1be5aSgrange #include <machine/bus.h>
30d1b1be5aSgrange 
31d1b1be5aSgrange #include <dev/i2c/i2cvar.h>
32d1b1be5aSgrange 
33d1b1be5aSgrange #include <dev/isa/isareg.h>
34d1b1be5aSgrange #include <dev/isa/isavar.h>
35d1b1be5aSgrange 
36d1b1be5aSgrange #include <dev/isa/gscsioreg.h>
37d1b1be5aSgrange 
38d1b1be5aSgrange struct gscsio_softc {
39d1b1be5aSgrange 	struct device sc_dev;
40d1b1be5aSgrange 
41d1b1be5aSgrange 	bus_space_tag_t sc_iot;
42d1b1be5aSgrange 	bus_space_handle_t sc_ioh;
43d1b1be5aSgrange 
44450b0ab0Sgrange 	int sc_ld_en[GSCSIO_LDN_LAST + 1];
45450b0ab0Sgrange 	bus_space_handle_t sc_ld_ioh0[GSCSIO_LDN_LAST + 1];
46450b0ab0Sgrange 	bus_space_handle_t sc_ld_ioh1[GSCSIO_LDN_LAST + 1];
47d1b1be5aSgrange 
48d1b1be5aSgrange 	/* ACCESS.bus */
49d1b1be5aSgrange 	struct gscsio_acb {
50d1b1be5aSgrange 		void *sc;
51d1b1be5aSgrange 		bus_space_handle_t ioh;
523e55d5feSjsg 		struct rwlock buslock;
53d1b1be5aSgrange 	} sc_acb[2];
54d1b1be5aSgrange 	struct i2c_controller sc_acb1_tag;
55d1b1be5aSgrange 	struct i2c_controller sc_acb2_tag;
56d1b1be5aSgrange };
57d1b1be5aSgrange 
58d1b1be5aSgrange /* Supported logical devices description */
59d1b1be5aSgrange static const struct {
60d1b1be5aSgrange 	const char *ld_name;
61d1b1be5aSgrange 	int ld_num;
62d1b1be5aSgrange 	int ld_iosize0;
63d1b1be5aSgrange 	int ld_iosize1;
64d1b1be5aSgrange } gscsio_ld[] = {
65d1b1be5aSgrange 	{ "ACB1", GSCSIO_LDN_ACB1, 6, 0 },
66d1b1be5aSgrange 	{ "ACB2", GSCSIO_LDN_ACB2, 6, 0 },
67d1b1be5aSgrange };
68d1b1be5aSgrange 
69d1b1be5aSgrange int	gscsio_probe(struct device *, void *, void *);
70d1b1be5aSgrange void	gscsio_attach(struct device *, struct device *, void *);
71d1b1be5aSgrange 
72d1b1be5aSgrange void	gscsio_acb_init(struct gscsio_acb *, i2c_tag_t);
73d1b1be5aSgrange int	gscsio_acb_wait(struct gscsio_acb *, int, int);
74d1b1be5aSgrange void	gscsio_acb_reset(struct gscsio_acb *acb);
75d1b1be5aSgrange 
76d1b1be5aSgrange int	gscsio_acb_acquire_bus(void *, int);
77d1b1be5aSgrange void	gscsio_acb_release_bus(void *, int);
78d1b1be5aSgrange int	gscsio_acb_send_start(void *, int);
79d1b1be5aSgrange int	gscsio_acb_send_stop(void *, int);
80890573d8Smk int	gscsio_acb_initiate_xfer(void *, i2c_addr_t, int);
81d1b1be5aSgrange int	gscsio_acb_read_byte(void *, uint8_t *, int);
82d1b1be5aSgrange int	gscsio_acb_write_byte(void *, uint8_t, int);
83d1b1be5aSgrange 
84*471aeecfSnaddy const struct cfattach gscsio_ca = {
85d1b1be5aSgrange 	sizeof(struct gscsio_softc),
86d1b1be5aSgrange 	gscsio_probe,
87d1b1be5aSgrange 	gscsio_attach
88d1b1be5aSgrange };
89d1b1be5aSgrange 
90d1b1be5aSgrange struct cfdriver gscsio_cd = {
91d1b1be5aSgrange 	NULL, "gscsio", DV_DULL
92d1b1be5aSgrange };
93d1b1be5aSgrange 
94d1b1be5aSgrange #define ACB_READ(reg) \
95d1b1be5aSgrange 	bus_space_read_1(sc->sc_iot, acb->ioh, (reg))
96d1b1be5aSgrange #define ACB_WRITE(reg, val) \
97d1b1be5aSgrange 	bus_space_write_1(sc->sc_iot, acb->ioh, (reg), (val))
98d1b1be5aSgrange 
99d1b1be5aSgrange static __inline u_int8_t
idxread(bus_space_tag_t iot,bus_space_handle_t ioh,int idx)100d1b1be5aSgrange idxread(bus_space_tag_t iot, bus_space_handle_t ioh, int idx)
101d1b1be5aSgrange {
102d1b1be5aSgrange 	bus_space_write_1(iot, ioh, GSCSIO_IDX, idx);
103d1b1be5aSgrange 
104d1b1be5aSgrange 	return (bus_space_read_1(iot, ioh, GSCSIO_DAT));
105d1b1be5aSgrange }
106d1b1be5aSgrange 
107d1b1be5aSgrange static __inline void
idxwrite(bus_space_tag_t iot,bus_space_handle_t ioh,int idx,u_int8_t data)108d1b1be5aSgrange idxwrite(bus_space_tag_t iot, bus_space_handle_t ioh, int idx, u_int8_t data)
109d1b1be5aSgrange {
110d1b1be5aSgrange 	bus_space_write_1(iot, ioh, GSCSIO_IDX, idx);
111d1b1be5aSgrange 	bus_space_write_1(iot, ioh, GSCSIO_DAT, data);
112d1b1be5aSgrange }
113d1b1be5aSgrange 
1140c86ea5fSmickey int
gscsio_probe(struct device * parent,void * match,void * aux)1150c86ea5fSmickey gscsio_probe(struct device *parent, void *match, void *aux)
116d1b1be5aSgrange {
1170c86ea5fSmickey 	struct isa_attach_args *ia = aux;
1180c86ea5fSmickey 	bus_space_tag_t iot;
119d1b1be5aSgrange 	bus_space_handle_t ioh;
1200c86ea5fSmickey 	int iobase;
121d1b1be5aSgrange 	int rv = 0;
122d1b1be5aSgrange 
1230c86ea5fSmickey 	iot = ia->ia_iot;
1240c86ea5fSmickey 	iobase = ia->ipa_io[0].base;
1250c86ea5fSmickey 	if (bus_space_map(iot, iobase, GSCSIO_IOSIZE, 0, &ioh))
126d1b1be5aSgrange 		return (0);
127d1b1be5aSgrange 	if (idxread(iot, ioh, GSCSIO_ID) == GSCSIO_ID_SC1100)
128d1b1be5aSgrange 		rv = 1;
129d1b1be5aSgrange 	bus_space_unmap(iot, ioh, GSCSIO_IOSIZE);
130d1b1be5aSgrange 
1310c86ea5fSmickey 	if (rv) {
132d1b1be5aSgrange 		ia->ipa_nio = 1;
133d1b1be5aSgrange 		ia->ipa_io[0].length = GSCSIO_IOSIZE;
134d1b1be5aSgrange 		ia->ipa_nmem = 0;
135d1b1be5aSgrange 		ia->ipa_nirq = 0;
136d1b1be5aSgrange 		ia->ipa_ndrq = 0;
1370c86ea5fSmickey 	}
138d1b1be5aSgrange 
1390c86ea5fSmickey 	return (rv);
140d1b1be5aSgrange }
141d1b1be5aSgrange 
142d1b1be5aSgrange void
gscsio_attach(struct device * parent,struct device * self,void * aux)143d1b1be5aSgrange gscsio_attach(struct device *parent, struct device *self, void *aux)
144d1b1be5aSgrange {
145d1b1be5aSgrange 	struct gscsio_softc *sc = (void *)self;
146d1b1be5aSgrange 	struct isa_attach_args *ia = aux;
147d1b1be5aSgrange 	int i;
148d1b1be5aSgrange 	int iobase;
149d1b1be5aSgrange 
150d1b1be5aSgrange 	sc->sc_iot = ia->ia_iot;
151d1b1be5aSgrange 	if (bus_space_map(sc->sc_iot, ia->ipa_io[0].base, GSCSIO_IOSIZE,
152d1b1be5aSgrange 	    0, &sc->sc_ioh)) {
153e10c952fSsthen 		printf(": can't map i/o space\n");
154d1b1be5aSgrange 		return;
155d1b1be5aSgrange 	}
156d1b1be5aSgrange 	printf(": SC1100 SIO rev %d:",
157d1b1be5aSgrange 	    idxread(sc->sc_iot, sc->sc_ioh, GSCSIO_REV));
158d1b1be5aSgrange 
159d1b1be5aSgrange 	/* Configure all supported logical devices */
160d1b1be5aSgrange 	for (i = 0; i < sizeof (gscsio_ld) / sizeof(gscsio_ld[0]); i++) {
161d1b1be5aSgrange 		sc->sc_ld_en[gscsio_ld[i].ld_num] = 0;
162d1b1be5aSgrange 
163d1b1be5aSgrange 		/* Select the device and check if it's activated */
164d1b1be5aSgrange 		idxwrite(sc->sc_iot, sc->sc_ioh, GSCSIO_LDN,
165d1b1be5aSgrange 		    gscsio_ld[i].ld_num);
166d1b1be5aSgrange 		if ((idxread(sc->sc_iot, sc->sc_ioh, GSCSIO_ACT) &
167d1b1be5aSgrange 		    GSCSIO_ACT_EN) == 0)
168d1b1be5aSgrange 			continue;
169d1b1be5aSgrange 
170d1b1be5aSgrange 		/* Map I/O space 0 if necessary */
171d1b1be5aSgrange 		if (gscsio_ld[i].ld_iosize0 != 0) {
172d1b1be5aSgrange 			iobase = idxread(sc->sc_iot, sc->sc_ioh,
173d1b1be5aSgrange 			    GSCSIO_IO0_MSB);
174d1b1be5aSgrange 			iobase <<= 8;
175d1b1be5aSgrange 			iobase |= idxread(sc->sc_iot, sc->sc_ioh,
176d1b1be5aSgrange 			    GSCSIO_IO0_LSB);
177d1b1be5aSgrange 			if (bus_space_map(sc->sc_iot, iobase,
178d1b1be5aSgrange 			    gscsio_ld[i].ld_iosize0, 0,
179d1b1be5aSgrange 			    &sc->sc_ld_ioh0[gscsio_ld[i].ld_num]))
180d1b1be5aSgrange 				continue;
181d1b1be5aSgrange 		}
182d1b1be5aSgrange 
183d1b1be5aSgrange 		/* Map I/O space 1 if necessary */
184d1b1be5aSgrange 		if (gscsio_ld[i].ld_iosize1 != 0) {
185d1b1be5aSgrange 			iobase = idxread(sc->sc_iot, sc->sc_ioh,
186d1b1be5aSgrange 			    GSCSIO_IO1_MSB);
187d1b1be5aSgrange 			iobase <<= 8;
188d1b1be5aSgrange 			iobase |= idxread(sc->sc_iot, sc->sc_ioh,
189d1b1be5aSgrange 			    GSCSIO_IO1_LSB);
190d1b1be5aSgrange 			if (bus_space_map(sc->sc_iot, iobase,
191d1b1be5aSgrange 			    gscsio_ld[i].ld_iosize1, 0,
192d1b1be5aSgrange 			    &sc->sc_ld_ioh0[gscsio_ld[i].ld_num])) {
193d1b1be5aSgrange 				bus_space_unmap(sc->sc_iot,
194d1b1be5aSgrange 				    sc->sc_ld_ioh0[gscsio_ld[i].ld_num],
195d1b1be5aSgrange 				    gscsio_ld[i].ld_iosize0);
196d1b1be5aSgrange 				continue;
197d1b1be5aSgrange 			}
198d1b1be5aSgrange 		}
199d1b1be5aSgrange 
200d1b1be5aSgrange 		sc->sc_ld_en[gscsio_ld[i].ld_num] = 1;
201d1b1be5aSgrange 		printf(" %s", gscsio_ld[i].ld_name);
202d1b1be5aSgrange 	}
203d1b1be5aSgrange 	printf("\n");
204d1b1be5aSgrange 
205d1b1be5aSgrange 	/* Initialize ACCESS.bus 1 */
206d1b1be5aSgrange 	if (sc->sc_ld_en[GSCSIO_LDN_ACB1]) {
207d1b1be5aSgrange 		sc->sc_acb[0].sc = sc;
208d1b1be5aSgrange 		sc->sc_acb[0].ioh = sc->sc_ld_ioh0[GSCSIO_LDN_ACB1];
2093e55d5feSjsg 		rw_init(&sc->sc_acb[0].buslock, "iiclk");
210d1b1be5aSgrange 		gscsio_acb_init(&sc->sc_acb[0], &sc->sc_acb1_tag);
211d1b1be5aSgrange 	}
212d1b1be5aSgrange 
213d1b1be5aSgrange 	/* Initialize ACCESS.bus 2 */
214d1b1be5aSgrange 	if (sc->sc_ld_en[GSCSIO_LDN_ACB2]) {
215d1b1be5aSgrange 		sc->sc_acb[1].sc = sc;
216d1b1be5aSgrange 		sc->sc_acb[1].ioh = sc->sc_ld_ioh0[GSCSIO_LDN_ACB2];
2173e55d5feSjsg 		rw_init(&sc->sc_acb[1].buslock, "iiclk");
218d1b1be5aSgrange 		gscsio_acb_init(&sc->sc_acb[1], &sc->sc_acb2_tag);
219d1b1be5aSgrange 	}
220d1b1be5aSgrange }
221d1b1be5aSgrange 
222d1b1be5aSgrange void
gscsio_acb_init(struct gscsio_acb * acb,i2c_tag_t tag)223d1b1be5aSgrange gscsio_acb_init(struct gscsio_acb *acb, i2c_tag_t tag)
224d1b1be5aSgrange {
225d1b1be5aSgrange 	struct gscsio_softc *sc = acb->sc;
226d1b1be5aSgrange 	struct i2cbus_attach_args iba;
227d1b1be5aSgrange 
228d1b1be5aSgrange 	/* Enable ACB and configure clock frequency */
229d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_CTL2, GSCSIO_ACB_CTL2_EN |
230d1b1be5aSgrange 	    (GSCSIO_ACB_FREQ << GSCSIO_ACB_CTL2_FREQ_SHIFT));
231d1b1be5aSgrange 
232d1b1be5aSgrange 	/* Select polling mode */
233d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_CTL1, ACB_READ(GSCSIO_ACB_CTL1) &
234d1b1be5aSgrange 	    ~GSCSIO_ACB_CTL1_INTEN);
235d1b1be5aSgrange 
236d1b1be5aSgrange 	/* Disable slave address */
237d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_ADDR, ACB_READ(GSCSIO_ACB_ADDR) &
238d1b1be5aSgrange 	    ~GSCSIO_ACB_ADDR_SAEN);
239d1b1be5aSgrange 
240d1b1be5aSgrange 	/* Attach I2C framework */
241d1b1be5aSgrange 	tag->ic_cookie = acb;
242d1b1be5aSgrange 	tag->ic_acquire_bus = gscsio_acb_acquire_bus;
243d1b1be5aSgrange 	tag->ic_release_bus = gscsio_acb_release_bus;
244d1b1be5aSgrange 	tag->ic_send_start = gscsio_acb_send_start;
245d1b1be5aSgrange 	tag->ic_send_stop = gscsio_acb_send_stop;
246d1b1be5aSgrange 	tag->ic_initiate_xfer = gscsio_acb_initiate_xfer;
247d1b1be5aSgrange 	tag->ic_read_byte = gscsio_acb_read_byte;
248d1b1be5aSgrange 	tag->ic_write_byte = gscsio_acb_write_byte;
249d1b1be5aSgrange 
250f57d9f10Sgrange 	bzero(&iba, sizeof(iba));
251d1b1be5aSgrange 	iba.iba_name = "iic";
252d1b1be5aSgrange 	iba.iba_tag = tag;
253d1b1be5aSgrange 	config_found(&sc->sc_dev, &iba, iicbus_print);
254d1b1be5aSgrange }
255d1b1be5aSgrange 
256d1b1be5aSgrange int
gscsio_acb_wait(struct gscsio_acb * acb,int bits,int flags)257d1b1be5aSgrange gscsio_acb_wait(struct gscsio_acb *acb, int bits, int flags)
258d1b1be5aSgrange {
259d1b1be5aSgrange 	struct gscsio_softc *sc = acb->sc;
260d1b1be5aSgrange 	u_int8_t st;
261d1b1be5aSgrange 	int i;
262d1b1be5aSgrange 
263d1b1be5aSgrange 	for (i = 0; i < 100; i++) {
264d1b1be5aSgrange 		st = ACB_READ(GSCSIO_ACB_ST);
265d1b1be5aSgrange 		if (st & GSCSIO_ACB_ST_BER) {
266d1b1be5aSgrange 			printf("%s: bus error, flags=0x%x\n",
267d1b1be5aSgrange 			    sc->sc_dev.dv_xname, flags);
268d1b1be5aSgrange 			gscsio_acb_reset(acb);
269d1b1be5aSgrange 			return (EIO);
270d1b1be5aSgrange 		}
271d1b1be5aSgrange 		if (st & GSCSIO_ACB_ST_NEGACK) {
2726102b6a0Sgrange #if 0
273d1b1be5aSgrange 			printf("%s: negative ack, flags=0x%x\n",
274d1b1be5aSgrange 			    sc->sc_dev.dv_xname, flags);
2756102b6a0Sgrange #endif
276d1b1be5aSgrange 			gscsio_acb_reset(acb);
277d1b1be5aSgrange 			return (EIO);
278d1b1be5aSgrange 		}
279d1b1be5aSgrange 		if ((st & bits) == bits)
280d1b1be5aSgrange 			break;
281d1b1be5aSgrange 		delay(10);
282d1b1be5aSgrange 	}
283d1b1be5aSgrange 	if ((st & bits) != bits) {
284d1b1be5aSgrange 		printf("%s: timeout, flags=0x%x\n",
285d1b1be5aSgrange 		    sc->sc_dev.dv_xname, flags);
286d1b1be5aSgrange 		gscsio_acb_reset(acb);
287d1b1be5aSgrange 		return (ETIMEDOUT);
288d1b1be5aSgrange 	}
289d1b1be5aSgrange 
290d1b1be5aSgrange 	return (0);
291d1b1be5aSgrange }
292d1b1be5aSgrange 
293d1b1be5aSgrange void
gscsio_acb_reset(struct gscsio_acb * acb)294d1b1be5aSgrange gscsio_acb_reset(struct gscsio_acb *acb)
295d1b1be5aSgrange {
296d1b1be5aSgrange 	struct gscsio_softc *sc = acb->sc;
297d1b1be5aSgrange 	u_int8_t st, ctl;
298d1b1be5aSgrange 
299d1b1be5aSgrange 	/* Clear MASTER, NEGACK and BER */
300d1b1be5aSgrange 	st = ACB_READ(GSCSIO_ACB_ST);
301d1b1be5aSgrange 	st |= GSCSIO_ACB_ST_MASTER | GSCSIO_ACB_ST_NEGACK | GSCSIO_ACB_ST_BER;
302d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_ST, st);
303d1b1be5aSgrange 
304d1b1be5aSgrange 	/* Disable and re-enable ACB */
305d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_CTL2, 0);
306d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_CTL2, GSCSIO_ACB_CTL2_EN |
307d1b1be5aSgrange 	    (GSCSIO_ACB_FREQ << GSCSIO_ACB_CTL2_FREQ_SHIFT));
308d1b1be5aSgrange 
309d1b1be5aSgrange 	/* Send stop */
310d1b1be5aSgrange 	ctl = ACB_READ(GSCSIO_ACB_CTL1);
311d1b1be5aSgrange 	ctl |= GSCSIO_ACB_CTL1_STOP;
312d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_CTL1, ctl);
313d1b1be5aSgrange }
314d1b1be5aSgrange 
315d1b1be5aSgrange int
gscsio_acb_acquire_bus(void * cookie,int flags)316d1b1be5aSgrange gscsio_acb_acquire_bus(void *cookie, int flags)
317d1b1be5aSgrange {
318d1b1be5aSgrange 	struct gscsio_acb *acb = cookie;
319d1b1be5aSgrange 
32075cdda3eSgrange 	if (cold || flags & I2C_F_POLL)
321d1b1be5aSgrange 		return (0);
322d1b1be5aSgrange 
3233e55d5feSjsg 	return (rw_enter(&acb->buslock, RW_WRITE | RW_INTR));
324d1b1be5aSgrange }
325d1b1be5aSgrange 
326d1b1be5aSgrange void
gscsio_acb_release_bus(void * cookie,int flags)327d1b1be5aSgrange gscsio_acb_release_bus(void *cookie, int flags)
328d1b1be5aSgrange {
329d1b1be5aSgrange 	struct gscsio_acb *acb = cookie;
330d1b1be5aSgrange 
33175cdda3eSgrange 	if (cold || flags & I2C_F_POLL)
332d1b1be5aSgrange 		return;
333d1b1be5aSgrange 
3343e55d5feSjsg 	rw_exit(&acb->buslock);
335d1b1be5aSgrange }
336d1b1be5aSgrange 
337d1b1be5aSgrange int
gscsio_acb_send_start(void * cookie,int flags)338d1b1be5aSgrange gscsio_acb_send_start(void *cookie, int flags)
339d1b1be5aSgrange {
340d1b1be5aSgrange 	struct gscsio_acb *acb = cookie;
341d1b1be5aSgrange 	struct gscsio_softc *sc = acb->sc;
342d1b1be5aSgrange 	u_int8_t ctl;
343d1b1be5aSgrange 
344d1b1be5aSgrange 	ctl = ACB_READ(GSCSIO_ACB_CTL1);
345d1b1be5aSgrange 	ctl |= GSCSIO_ACB_CTL1_START;
346d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_CTL1, ctl);
347d1b1be5aSgrange 
348d1b1be5aSgrange 	return (0);
349d1b1be5aSgrange }
350d1b1be5aSgrange 
351d1b1be5aSgrange int
gscsio_acb_send_stop(void * cookie,int flags)352d1b1be5aSgrange gscsio_acb_send_stop(void *cookie, int flags)
353d1b1be5aSgrange {
354d1b1be5aSgrange 	struct gscsio_acb *acb = cookie;
355d1b1be5aSgrange 	struct gscsio_softc *sc = acb->sc;
356d1b1be5aSgrange 	u_int8_t ctl;
357d1b1be5aSgrange 
358d1b1be5aSgrange 	ctl = ACB_READ(GSCSIO_ACB_CTL1);
359d1b1be5aSgrange 	ctl |= GSCSIO_ACB_CTL1_STOP;
360d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_CTL1, ctl);
361d1b1be5aSgrange 
362d1b1be5aSgrange 	return (0);
363d1b1be5aSgrange }
364d1b1be5aSgrange 
365d1b1be5aSgrange int
gscsio_acb_initiate_xfer(void * cookie,i2c_addr_t addr,int flags)366890573d8Smk gscsio_acb_initiate_xfer(void *cookie, i2c_addr_t addr, int flags)
367d1b1be5aSgrange {
368d1b1be5aSgrange 	struct gscsio_acb *acb = cookie;
369d1b1be5aSgrange 	struct gscsio_softc *sc = acb->sc;
370d1b1be5aSgrange 	u_int8_t ctl;
371d1b1be5aSgrange 	int dir;
372d1b1be5aSgrange 	int error;
373d1b1be5aSgrange 
374d1b1be5aSgrange 	/* Issue start condition */
375d1b1be5aSgrange 	ctl = ACB_READ(GSCSIO_ACB_CTL1);
376d1b1be5aSgrange 	ctl |= GSCSIO_ACB_CTL1_START;
377d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_CTL1, ctl);
378d1b1be5aSgrange 
379d1b1be5aSgrange 	/* Wait for bus mastership */
380d1b1be5aSgrange 	if ((error = gscsio_acb_wait(acb,
381d1b1be5aSgrange 	    GSCSIO_ACB_ST_MASTER | GSCSIO_ACB_ST_SDAST, flags)))
382d1b1be5aSgrange 		return (error);
383d1b1be5aSgrange 
384d1b1be5aSgrange 	/* Send address byte */
385d1b1be5aSgrange 	dir = (flags & I2C_F_READ ? 1 : 0);
386d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_SDA, (addr << 1) | dir);
387d1b1be5aSgrange 
388d1b1be5aSgrange 	return (0);
389d1b1be5aSgrange }
390d1b1be5aSgrange 
391d1b1be5aSgrange int
gscsio_acb_read_byte(void * cookie,uint8_t * bytep,int flags)392d1b1be5aSgrange gscsio_acb_read_byte(void *cookie, uint8_t *bytep, int flags)
393d1b1be5aSgrange {
394d1b1be5aSgrange 	struct gscsio_acb *acb = cookie;
395d1b1be5aSgrange 	struct gscsio_softc *sc = acb->sc;
396d1b1be5aSgrange 	u_int8_t ctl;
397d1b1be5aSgrange 	int error;
398d1b1be5aSgrange 
399d1b1be5aSgrange 	/* Wait for the bus to be ready */
400d1b1be5aSgrange 	if ((error = gscsio_acb_wait(acb, GSCSIO_ACB_ST_SDAST, flags)))
401d1b1be5aSgrange 		return (error);
402d1b1be5aSgrange 
403d1b1be5aSgrange 	/* Acknowledge the last byte */
404d1b1be5aSgrange 	if (flags & I2C_F_LAST) {
405d1b1be5aSgrange 		ctl = ACB_READ(GSCSIO_ACB_CTL1);
406d1b1be5aSgrange 		ctl |= GSCSIO_ACB_CTL1_ACK;
407d1b1be5aSgrange 		ACB_WRITE(GSCSIO_ACB_CTL1, ctl);
408d1b1be5aSgrange 	}
409d1b1be5aSgrange 
410d1b1be5aSgrange 	/* Read data byte */
411d1b1be5aSgrange 	*bytep = ACB_READ(GSCSIO_ACB_SDA);
412d1b1be5aSgrange 
413d1b1be5aSgrange 	return (0);
414d1b1be5aSgrange }
415d1b1be5aSgrange 
416d1b1be5aSgrange int
gscsio_acb_write_byte(void * cookie,uint8_t byte,int flags)417d1b1be5aSgrange gscsio_acb_write_byte(void *cookie, uint8_t byte, int flags)
418d1b1be5aSgrange {
419d1b1be5aSgrange 	struct gscsio_acb *acb = cookie;
420d1b1be5aSgrange 	struct gscsio_softc *sc = acb->sc;
421d1b1be5aSgrange 	u_int8_t ctl;
422d1b1be5aSgrange 	int error;
423d1b1be5aSgrange 
424d1b1be5aSgrange 	/* Wait for the bus to be ready */
425d1b1be5aSgrange 	if ((error = gscsio_acb_wait(acb, GSCSIO_ACB_ST_SDAST, flags)))
426d1b1be5aSgrange 		return (error);
427d1b1be5aSgrange 
428d1b1be5aSgrange 	/* Send stop after the last byte */
429d1b1be5aSgrange 	if (flags & I2C_F_STOP) {
430d1b1be5aSgrange 		ctl = ACB_READ(GSCSIO_ACB_CTL1);
431d1b1be5aSgrange 		ctl |= GSCSIO_ACB_CTL1_STOP;
432d1b1be5aSgrange 		ACB_WRITE(GSCSIO_ACB_CTL1, ctl);
433d1b1be5aSgrange 	}
434d1b1be5aSgrange 
435d1b1be5aSgrange 	/* Write data byte */
436d1b1be5aSgrange 	ACB_WRITE(GSCSIO_ACB_SDA, byte);
437d1b1be5aSgrange 
438d1b1be5aSgrange 	return (0);
439d1b1be5aSgrange }
440