gemini_gmac.c revision 1.21 1 1.21 thorpej /* $NetBSD: gemini_gmac.c,v 1.21 2021/04/24 23:36:27 thorpej Exp $ */
2 1.1 matt /*-
3 1.1 matt * Copyright (c) 2008 The NetBSD Foundation, Inc.
4 1.1 matt * All rights reserved.
5 1.1 matt *
6 1.1 matt * This code is derived from software contributed to The NetBSD Foundation
7 1.1 matt * by Matt Thomas <matt (at) 3am-software.com>
8 1.1 matt *
9 1.1 matt * Redistribution and use in source and binary forms, with or without
10 1.1 matt * modification, are permitted provided that the following conditions
11 1.1 matt * are met:
12 1.1 matt * 1. Redistributions of source code must retain the above copyright
13 1.1 matt * notice, this list of conditions and the following disclaimer.
14 1.1 matt * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 matt * notice, this list of conditions and the following disclaimer in the
16 1.1 matt * documentation and/or other materials provided with the distribution.
17 1.1 matt *
18 1.1 matt * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
19 1.1 matt * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
20 1.1 matt * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
21 1.1 matt * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
22 1.1 matt * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
23 1.1 matt * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
24 1.1 matt * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
25 1.1 matt * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
26 1.1 matt * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
27 1.1 matt * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
28 1.1 matt * POSSIBILITY OF SUCH DAMAGE.
29 1.1 matt */
30 1.1 matt
31 1.1 matt #include "locators.h"
32 1.1 matt #include <sys/param.h>
33 1.1 matt #include <sys/device.h>
34 1.1 matt #include <sys/kmem.h>
35 1.1 matt #include <sys/mbuf.h>
36 1.1 matt
37 1.1 matt #include <net/if.h>
38 1.1 matt #include <net/if_ether.h>
39 1.1 matt
40 1.7 dyoung #include <sys/bus.h>
41 1.1 matt
42 1.1 matt #include <arm/gemini/gemini_reg.h>
43 1.1 matt #include <arm/gemini/gemini_obiovar.h>
44 1.1 matt #include <arm/gemini/gemini_gmacvar.h>
45 1.1 matt #include <arm/gemini/gemini_gpiovar.h>
46 1.1 matt
47 1.1 matt #include <dev/mii/mii.h>
48 1.1 matt #include <dev/mii/mii_bitbang.h>
49 1.1 matt
50 1.1 matt #include <sys/gpio.h>
51 1.1 matt
52 1.21 thorpej __KERNEL_RCSID(0, "$NetBSD: gemini_gmac.c,v 1.21 2021/04/24 23:36:27 thorpej Exp $");
53 1.1 matt
54 1.1 matt #define SWFREEQ_DESCS 256 /* one page worth */
55 1.1 matt #define HWFREEQ_DESCS 256 /* one page worth */
56 1.1 matt
57 1.1 matt static int geminigmac_match(device_t, cfdata_t, void *);
58 1.1 matt static void geminigmac_attach(device_t, device_t, void *);
59 1.1 matt static int geminigmac_find(device_t, cfdata_t, const int *, void *);
60 1.1 matt static int geminigmac_print(void *aux, const char *name);
61 1.1 matt
62 1.17 msaitoh static int geminigmac_mii_readreg(device_t, int, int, uint16_t *);
63 1.17 msaitoh static int geminigmac_mii_writereg(device_t, int, int, uint16_t);
64 1.1 matt
65 1.1 matt #define GPIO_MDIO 21
66 1.1 matt #define GPIO_MDCLK 22
67 1.1 matt
68 1.1 matt #define MDIN __BIT(3)
69 1.1 matt #define MDOUT __BIT(2)
70 1.1 matt #define MDCLK __BIT(1)
71 1.1 matt #define MDTOPHY __BIT(0)
72 1.1 matt
73 1.1 matt CFATTACH_DECL_NEW(geminigmac, sizeof(struct gmac_softc),
74 1.1 matt geminigmac_match, geminigmac_attach, NULL, NULL);
75 1.1 matt
76 1.1 matt extern struct cfdriver geminigmac_cd;
77 1.1 matt extern struct cfdriver geminigpio_cd;
78 1.1 matt
79 1.1 matt void
80 1.3 matt gmac_swfree_min_update(struct gmac_softc *sc)
81 1.3 matt {
82 1.3 matt uint32_t v;
83 1.3 matt
84 1.3 matt if (sc->sc_swfreeq != NULL
85 1.3 matt && sc->sc_swfree_min > sc->sc_swfreeq->hwq_size - 1)
86 1.3 matt sc->sc_swfree_min = sc->sc_swfreeq->hwq_size - 1;
87 1.3 matt
88 1.3 matt v = bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_QFE_THRESHOLD);
89 1.3 matt v &= ~QFE_SWFQ_THRESHOLD_MASK;
90 1.3 matt v |= QFE_SWFQ_THRESHOLD(sc->sc_swfree_min);
91 1.3 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_QFE_THRESHOLD, v);
92 1.3 matt }
93 1.3 matt
94 1.3 matt void
95 1.1 matt gmac_intr_update(struct gmac_softc *sc)
96 1.1 matt {
97 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT0_MASK,
98 1.1 matt ~sc->sc_int_enabled[0]);
99 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT1_MASK,
100 1.1 matt ~sc->sc_int_enabled[1]);
101 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT2_MASK,
102 1.1 matt ~sc->sc_int_enabled[2]);
103 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT3_MASK,
104 1.1 matt ~sc->sc_int_enabled[3]);
105 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT4_MASK,
106 1.1 matt ~sc->sc_int_enabled[4]);
107 1.1 matt }
108 1.1 matt
109 1.1 matt static void
110 1.1 matt gmac_init(struct gmac_softc *sc)
111 1.1 matt {
112 1.1 matt gmac_hwqmem_t *hqm;
113 1.1 matt
114 1.2 matt /*
115 1.2 matt * This shouldn't be needed.
116 1.2 matt */
117 1.2 matt for (bus_size_t i = 0; i < GMAC_TOE_QH_SIZE; i += 4) {
118 1.2 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh,
119 1.2 matt GMAC_TOE_QH_OFFSET + i, 0);
120 1.2 matt }
121 1.2 matt #if 0
122 1.2 matt {
123 1.2 matt bus_space_handle_t global_ioh;
124 1.2 matt int error;
125 1.2 matt
126 1.2 matt error = bus_space_map(sc->sc_iot, GEMINI_GLOBAL_BASE, 4, 0,
127 1.2 matt &global_ioh);
128 1.2 matt KASSERT(error == 0);
129 1.2 matt aprint_normal_dev(sc->sc_dev, "gmac_init: global_ioh=%#zx\n", global_ioh);
130 1.20 skrll bus_space_write_4(sc->sc_iot, global_ioh, GEMINI_GLOBAL_RESET_CTL,
131 1.2 matt GLOBAL_RESET_GMAC0|GLOBAL_RESET_GMAC1);
132 1.2 matt do {
133 1.2 matt v = bus_space_read_4(sc->sc_iot, global_ioh,
134 1.2 matt GEMINI_GLOBAL_RESET_CTL);
135 1.2 matt } while (v & (GLOBAL_RESET_GMAC0|GLOBAL_RESET_GMAC1));
136 1.2 matt bus_space_unmap(sc->sc_iot, global_ioh, 4);
137 1.2 matt DELAY(1000);
138 1.2 matt }
139 1.2 matt #endif
140 1.2 matt
141 1.3 matt sc->sc_swfree_min = 4; /* MIN_RXMAPS; */
142 1.3 matt
143 1.3 matt gmac_swfree_min_update(sc);
144 1.2 matt
145 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_SKBSIZE,
146 1.1 matt SKB_SIZE_SET(PAGE_SIZE, MCLBYTES));
147 1.1 matt
148 1.1 matt sc->sc_int_select[0] = INT0_GMAC1;
149 1.1 matt sc->sc_int_select[1] = INT1_GMAC1;
150 1.1 matt sc->sc_int_select[2] = INT2_GMAC1;
151 1.1 matt sc->sc_int_select[3] = INT3_GMAC1;
152 1.1 matt sc->sc_int_select[4] = INT4_GMAC1;
153 1.1 matt
154 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT0_SELECT, INT0_GMAC1);
155 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT1_SELECT, INT1_GMAC1);
156 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT2_SELECT, INT2_GMAC1);
157 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT3_SELECT, INT3_GMAC1);
158 1.1 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT4_SELECT, INT4_GMAC1);
159 1.1 matt
160 1.2 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT0_STATUS, ~0);
161 1.2 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT1_STATUS, ~0);
162 1.2 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT2_STATUS, ~0);
163 1.2 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT3_STATUS, ~0);
164 1.2 matt bus_space_write_4(sc->sc_iot, sc->sc_ioh, GMAC_INT4_STATUS, ~0);
165 1.2 matt
166 1.1 matt gmac_intr_update(sc);
167 1.1 matt
168 1.3 matt aprint_debug_dev(sc->sc_dev, "gmac_init: sts=%#x/%#x/%#x/%#x/%#x\n",
169 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT0_STATUS),
170 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT1_STATUS),
171 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT2_STATUS),
172 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT3_STATUS),
173 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT4_STATUS));
174 1.2 matt
175 1.3 matt aprint_debug_dev(sc->sc_dev, "gmac_init: mask=%#x/%#x/%#x/%#x/%#x\n",
176 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT0_MASK),
177 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT1_MASK),
178 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT2_MASK),
179 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT3_MASK),
180 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT4_MASK));
181 1.2 matt
182 1.3 matt aprint_debug_dev(sc->sc_dev, "gmac_init: select=%#x/%#x/%#x/%#x/%#x\n",
183 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT0_SELECT),
184 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT1_SELECT),
185 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT2_SELECT),
186 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT3_SELECT),
187 1.2 matt bus_space_read_4(sc->sc_iot, sc->sc_ioh, GMAC_INT4_SELECT));
188 1.2 matt
189 1.3 matt aprint_debug_dev(sc->sc_dev, "gmac_init: create rx dmamap cache\n");
190 1.1 matt /*
191 1.1 matt * Allocate the cache for receive dmamaps.
192 1.1 matt */
193 1.1 matt sc->sc_rxmaps = gmac_mapcache_create(sc->sc_dmat, MAX_RXMAPS,
194 1.1 matt MCLBYTES, 1);
195 1.1 matt KASSERT(sc->sc_rxmaps != NULL);
196 1.1 matt
197 1.3 matt aprint_debug_dev(sc->sc_dev, "gmac_init: create tx dmamap cache\n");
198 1.2 matt /*
199 1.2 matt * Allocate the cache for transmit dmamaps.
200 1.2 matt */
201 1.2 matt sc->sc_txmaps = gmac_mapcache_create(sc->sc_dmat, MAX_TXMAPS,
202 1.2 matt ETHERMTU_JUMBO + ETHER_HDR_LEN, 16);
203 1.2 matt KASSERT(sc->sc_txmaps != NULL);
204 1.2 matt
205 1.3 matt aprint_debug_dev(sc->sc_dev, "gmac_init: create sw freeq\n");
206 1.1 matt /*
207 1.1 matt * Allocate the memory for sw (receive) free queue
208 1.1 matt */
209 1.3 matt hqm = gmac_hwqmem_create(sc->sc_rxmaps, 32 /*SWFREEQ_DESCS*/, 1,
210 1.1 matt HQM_PRODUCER|HQM_RX);
211 1.1 matt sc->sc_swfreeq = gmac_hwqueue_create(hqm, sc->sc_iot, sc->sc_ioh,
212 1.1 matt GMAC_SWFREEQ_RWPTR, GMAC_SWFREEQ_BASE, 0);
213 1.1 matt KASSERT(sc->sc_swfreeq != NULL);
214 1.1 matt
215 1.3 matt aprint_debug_dev(sc->sc_dev, "gmac_init: create hw freeq\n");
216 1.1 matt /*
217 1.3 matt * Allocate the memory for hw (receive) free queue
218 1.1 matt */
219 1.3 matt hqm = gmac_hwqmem_create(sc->sc_rxmaps, HWFREEQ_DESCS, 1,
220 1.3 matt HQM_PRODUCER|HQM_RX);
221 1.1 matt sc->sc_hwfreeq = gmac_hwqueue_create(hqm, sc->sc_iot, sc->sc_ioh,
222 1.1 matt GMAC_HWFREEQ_RWPTR, GMAC_HWFREEQ_BASE, 0);
223 1.1 matt KASSERT(sc->sc_hwfreeq != NULL);
224 1.2 matt
225 1.3 matt aprint_debug_dev(sc->sc_dev, "gmac_init: done\n");
226 1.1 matt }
227 1.1 matt
228 1.1 matt int
229 1.1 matt geminigmac_match(device_t parent, cfdata_t cf, void *aux)
230 1.1 matt {
231 1.1 matt struct obio_attach_args *obio = aux;
232 1.1 matt
233 1.1 matt if (obio->obio_addr != GEMINI_GMAC_BASE)
234 1.1 matt return 0;
235 1.1 matt
236 1.1 matt return 1;
237 1.1 matt }
238 1.1 matt
239 1.1 matt void
240 1.1 matt geminigmac_attach(device_t parent, device_t self, void *aux)
241 1.1 matt {
242 1.1 matt struct gmac_softc *sc = device_private(self);
243 1.1 matt struct obio_attach_args *obio = aux;
244 1.1 matt struct gmac_attach_args gma;
245 1.1 matt cfdata_t cf;
246 1.1 matt uint32_t v;
247 1.1 matt int error;
248 1.1 matt
249 1.1 matt sc->sc_dev = self;
250 1.1 matt sc->sc_iot = obio->obio_iot;
251 1.1 matt sc->sc_dmat = obio->obio_dmat;
252 1.1 matt sc->sc_gpio_dev = geminigpio_cd.cd_devs[0];
253 1.1 matt sc->sc_gpio_mdclk = GPIO_MDCLK;
254 1.1 matt sc->sc_gpio_mdout = GPIO_MDIO;
255 1.1 matt sc->sc_gpio_mdin = GPIO_MDIO;
256 1.1 matt KASSERT(sc->sc_gpio_dev != NULL);
257 1.1 matt
258 1.1 matt error = bus_space_map(sc->sc_iot, obio->obio_addr, obio->obio_size, 0,
259 1.1 matt &sc->sc_ioh);
260 1.1 matt if (error) {
261 1.1 matt aprint_error(": error mapping registers: %d", error);
262 1.1 matt return;
263 1.1 matt }
264 1.1 matt
265 1.1 matt v = bus_space_read_4(sc->sc_iot, sc->sc_ioh, 0);
266 1.1 matt aprint_normal(": devid %d rev %d\n", GMAC_TOE_DEVID(v),
267 1.1 matt GMAC_TOE_REVID(v));
268 1.1 matt aprint_naive("\n");
269 1.1 matt
270 1.1 matt mutex_init(&sc->sc_mdiolock, MUTEX_DEFAULT, IPL_NET);
271 1.1 matt
272 1.1 matt /*
273 1.1 matt * Initialize the GPIO pins
274 1.1 matt */
275 1.1 matt geminigpio_pin_ctl(sc->sc_gpio_dev, sc->sc_gpio_mdclk, GPIO_PIN_OUTPUT);
276 1.1 matt geminigpio_pin_ctl(sc->sc_gpio_dev, sc->sc_gpio_mdout, GPIO_PIN_OUTPUT);
277 1.1 matt if (sc->sc_gpio_mdout != sc->sc_gpio_mdin)
278 1.1 matt geminigpio_pin_ctl(sc->sc_gpio_dev, sc->sc_gpio_mdin,
279 1.1 matt GPIO_PIN_INPUT);
280 1.1 matt
281 1.1 matt /*
282 1.1 matt * Set the MDIO GPIO pins to a known state.
283 1.1 matt */
284 1.1 matt geminigpio_pin_write(sc->sc_gpio_dev, sc->sc_gpio_mdclk, 0);
285 1.1 matt geminigpio_pin_write(sc->sc_gpio_dev, sc->sc_gpio_mdout, 0);
286 1.1 matt sc->sc_mdiobits = MDCLK;
287 1.1 matt
288 1.1 matt gmac_init(sc);
289 1.1 matt
290 1.1 matt gma.gma_iot = sc->sc_iot;
291 1.1 matt gma.gma_ioh = sc->sc_ioh;
292 1.1 matt gma.gma_dmat = sc->sc_dmat;
293 1.1 matt
294 1.1 matt gma.gma_mii_readreg = geminigmac_mii_readreg;
295 1.1 matt gma.gma_mii_writereg = geminigmac_mii_writereg;
296 1.1 matt
297 1.1 matt gma.gma_port = 0;
298 1.1 matt gma.gma_phy = -1;
299 1.1 matt gma.gma_intr = 1;
300 1.1 matt
301 1.21 thorpej cf = config_search(sc->sc_dev, &gma,
302 1.21 thorpej CFARG_SUBMATCH, geminigmac_find,
303 1.21 thorpej CFARG_IATTR, geminigmac_cd.cd_name,
304 1.21 thorpej CFARG_EOL);
305 1.1 matt if (cf != NULL)
306 1.21 thorpej config_attach(sc->sc_dev, cf, &gma, geminigmac_print,
307 1.21 thorpej CFARG_EOL);
308 1.1 matt
309 1.1 matt gma.gma_port = 1;
310 1.1 matt gma.gma_phy = -1;
311 1.1 matt gma.gma_intr = 2;
312 1.1 matt
313 1.21 thorpej cf = config_search(sc->sc_dev, &gma,
314 1.21 thorpej CFARG_SUBMATCH, geminigmac_find,
315 1.21 thorpej CFARG_IATTR, geminigmac_cd.cd_name,
316 1.21 thorpej CFARG_EOL);
317 1.1 matt if (cf != NULL)
318 1.21 thorpej config_attach(sc->sc_dev, cf, &gma, geminigmac_print,
319 1.21 thorpej CFARG_EOL);
320 1.1 matt }
321 1.1 matt
322 1.1 matt static int
323 1.1 matt geminigmac_find(device_t parent, cfdata_t cf, const int *ldesc, void *aux)
324 1.1 matt {
325 1.1 matt struct gmac_attach_args * const gma = aux;
326 1.1 matt
327 1.1 matt if (gma->gma_port != cf->cf_loc[GEMINIGMACCF_PORT])
328 1.1 matt return 0;
329 1.1 matt if (gma->gma_intr != cf->cf_loc[GEMINIGMACCF_INTR])
330 1.1 matt return 0;
331 1.1 matt
332 1.1 matt gma->gma_phy = cf->cf_loc[GEMINIGMACCF_PHY];
333 1.1 matt gma->gma_intr = cf->cf_loc[GEMINIGMACCF_INTR];
334 1.1 matt
335 1.1 matt return config_match(parent, cf, gma);
336 1.1 matt }
337 1.1 matt
338 1.1 matt static int
339 1.1 matt geminigmac_print(void *aux, const char *name)
340 1.1 matt {
341 1.1 matt struct gmac_attach_args * const gma = aux;
342 1.1 matt
343 1.1 matt aprint_normal(" port %d", gma->gma_port);
344 1.1 matt aprint_normal(" phy %d", gma->gma_phy);
345 1.1 matt aprint_normal(" intr %d", gma->gma_intr);
346 1.1 matt
347 1.1 matt return UNCONF;
348 1.1 matt }
349 1.1 matt
350 1.1 matt static uint32_t
351 1.1 matt gemini_gmac_gpio_read(device_t dv)
352 1.1 matt {
353 1.1 matt struct gmac_softc * const sc = device_private(dv);
354 1.1 matt int value = geminigpio_pin_read(sc->sc_gpio_dev, GPIO_MDIO);
355 1.1 matt
356 1.1 matt KASSERT((sc->sc_mdiobits & MDTOPHY) == 0);
357 1.1 matt
358 1.1 matt return value ? MDIN : 0;
359 1.1 matt }
360 1.1 matt
361 1.1 matt static void
362 1.1 matt gemini_gmac_gpio_write(device_t dv, uint32_t bits)
363 1.1 matt {
364 1.1 matt struct gmac_softc * const sc = device_private(dv);
365 1.1 matt
366 1.1 matt if ((sc->sc_mdiobits ^ bits) & MDTOPHY) {
367 1.1 matt int flags = (bits & MDTOPHY) ? GPIO_PIN_OUTPUT : GPIO_PIN_INPUT;
368 1.1 matt geminigpio_pin_ctl(sc->sc_gpio_dev, GPIO_MDIO, flags);
369 1.1 matt }
370 1.1 matt
371 1.1 matt if ((sc->sc_mdiobits ^ bits) & MDOUT) {
372 1.1 matt int flags = ((bits & MDOUT) != 0);
373 1.1 matt geminigpio_pin_write(sc->sc_gpio_dev, GPIO_MDIO, flags);
374 1.1 matt }
375 1.1 matt
376 1.1 matt if ((sc->sc_mdiobits ^ bits) & MDCLK) {
377 1.1 matt int flags = ((bits & MDCLK) != 0);
378 1.1 matt geminigpio_pin_write(sc->sc_gpio_dev, GPIO_MDCLK, flags);
379 1.1 matt }
380 1.1 matt
381 1.1 matt sc->sc_mdiobits = bits;
382 1.1 matt }
383 1.1 matt
384 1.1 matt static const struct mii_bitbang_ops geminigmac_mii_bitbang_ops = {
385 1.1 matt .mbo_read = gemini_gmac_gpio_read,
386 1.1 matt .mbo_write = gemini_gmac_gpio_write,
387 1.1 matt .mbo_bits[MII_BIT_MDO] = MDOUT,
388 1.1 matt .mbo_bits[MII_BIT_MDI] = MDIN,
389 1.1 matt .mbo_bits[MII_BIT_MDC] = MDCLK,
390 1.1 matt .mbo_bits[MII_BIT_DIR_HOST_PHY] = MDTOPHY,
391 1.1 matt };
392 1.1 matt
393 1.1 matt int
394 1.17 msaitoh geminigmac_mii_readreg(device_t dv, int phy, int reg, uint16_t *val)
395 1.1 matt {
396 1.1 matt device_t parent = device_parent(dv);
397 1.1 matt struct gmac_softc * const sc = device_private(parent);
398 1.1 matt int rv;
399 1.1 matt
400 1.1 matt mutex_enter(&sc->sc_mdiolock);
401 1.17 msaitoh rv = mii_bitbang_readreg(parent, &geminigmac_mii_bitbang_ops, phy,
402 1.17 msaitoh reg, val);
403 1.1 matt mutex_exit(&sc->sc_mdiolock);
404 1.1 matt
405 1.3 matt //aprint_debug_dev(dv, "mii_readreg(%d, %d): %#x\n", phy, reg, rv);
406 1.2 matt
407 1.1 matt return rv;
408 1.1 matt }
409 1.1 matt
410 1.17 msaitoh int
411 1.17 msaitoh geminigmac_mii_writereg(device_t dv, int phy, int reg, uint16_t val)
412 1.1 matt {
413 1.1 matt device_t parent = device_parent(dv);
414 1.1 matt struct gmac_softc * const sc = device_private(parent);
415 1.1 matt
416 1.3 matt //aprint_debug_dev(dv, "mii_writereg(%d, %d, %#x)\n", phy, reg, val);
417 1.2 matt
418 1.1 matt mutex_enter(&sc->sc_mdiolock);
419 1.17 msaitoh rv = mii_bitbang_writereg(parent, &geminigmac_mii_bitbang_ops, phy,
420 1.17 msaitoh reg, val);
421 1.1 matt mutex_exit(&sc->sc_mdiolock);
422 1.17 msaitoh
423 1.17 msaitoh return rv;
424 1.1 matt }
425 1.1 matt
426 1.1 matt
427 1.1 matt gmac_mapcache_t *
428 1.1 matt gmac_mapcache_create(bus_dma_tag_t dmat, size_t maxmaps, bus_size_t mapsize,
429 1.1 matt int nsegs)
430 1.1 matt {
431 1.1 matt gmac_mapcache_t *mc;
432 1.1 matt
433 1.1 matt mc = kmem_zalloc(offsetof(gmac_mapcache_t, mc_maps[maxmaps]),
434 1.1 matt KM_SLEEP);
435 1.1 matt if (mc == NULL)
436 1.1 matt return NULL;
437 1.1 matt
438 1.1 matt mc->mc_max = maxmaps;
439 1.1 matt mc->mc_dmat = dmat;
440 1.1 matt mc->mc_mapsize = mapsize;
441 1.1 matt mc->mc_nsegs = nsegs;
442 1.1 matt return mc;
443 1.1 matt }
444 1.1 matt
445 1.1 matt void
446 1.1 matt gmac_mapcache_destroy(gmac_mapcache_t **mc_p)
447 1.1 matt {
448 1.1 matt gmac_mapcache_t *mc = *mc_p;
449 1.1 matt
450 1.1 matt if (mc == NULL)
451 1.1 matt return;
452 1.1 matt
453 1.1 matt KASSERT(mc->mc_used == 0);
454 1.1 matt while (mc->mc_free-- > 0) {
455 1.1 matt KASSERT(mc->mc_maps[mc->mc_free] != NULL);
456 1.1 matt bus_dmamap_destroy(mc->mc_dmat, mc->mc_maps[mc->mc_free]);
457 1.1 matt mc->mc_maps[mc->mc_free] = NULL;
458 1.1 matt }
459 1.1 matt
460 1.1 matt kmem_free(mc, offsetof(gmac_mapcache_t, mc_maps[mc->mc_max]));
461 1.1 matt *mc_p = NULL;
462 1.1 matt }
463 1.1 matt
464 1.1 matt int
465 1.1 matt gmac_mapcache_fill(gmac_mapcache_t *mc, size_t limit)
466 1.1 matt {
467 1.1 matt int error;
468 1.1 matt
469 1.1 matt KASSERT(limit <= mc->mc_max);
470 1.3 matt aprint_debug("gmac_mapcache_fill(%p): limit=%zu used=%zu free=%zu\n",
471 1.1 matt mc, limit, mc->mc_used, mc->mc_free);
472 1.1 matt
473 1.1 matt for (error = 0; mc->mc_free + mc->mc_used < limit; mc->mc_free++) {
474 1.1 matt KASSERT(mc->mc_maps[mc->mc_free] == NULL);
475 1.1 matt error = bus_dmamap_create(mc->mc_dmat, mc->mc_mapsize,
476 1.1 matt mc->mc_nsegs, mc->mc_mapsize, 0,
477 1.1 matt BUS_DMA_ALLOCNOW|BUS_DMA_WAITOK,
478 1.1 matt &mc->mc_maps[mc->mc_free]);
479 1.1 matt if (error)
480 1.1 matt break;
481 1.1 matt }
482 1.3 matt aprint_debug("gmac_mapcache_fill(%p): limit=%zu used=%zu free=%zu\n",
483 1.1 matt mc, limit, mc->mc_used, mc->mc_free);
484 1.1 matt
485 1.1 matt return error;
486 1.1 matt }
487 1.1 matt
488 1.1 matt bus_dmamap_t
489 1.1 matt gmac_mapcache_get(gmac_mapcache_t *mc)
490 1.1 matt {
491 1.1 matt bus_dmamap_t map;
492 1.1 matt
493 1.1 matt KASSERT(mc != NULL);
494 1.1 matt
495 1.1 matt if (mc->mc_free == 0) {
496 1.1 matt int error;
497 1.1 matt if (mc->mc_used == mc->mc_max)
498 1.1 matt return NULL;
499 1.1 matt error = bus_dmamap_create(mc->mc_dmat, mc->mc_mapsize,
500 1.1 matt mc->mc_nsegs, mc->mc_mapsize, 0,
501 1.1 matt BUS_DMA_ALLOCNOW|BUS_DMA_NOWAIT,
502 1.1 matt &map);
503 1.1 matt if (error)
504 1.1 matt return NULL;
505 1.1 matt KASSERT(mc->mc_maps[mc->mc_free] == NULL);
506 1.1 matt } else {
507 1.1 matt KASSERT(mc->mc_free <= mc->mc_max);
508 1.1 matt map = mc->mc_maps[--mc->mc_free];
509 1.1 matt mc->mc_maps[mc->mc_free] = NULL;
510 1.1 matt }
511 1.1 matt mc->mc_used++;
512 1.1 matt KASSERT(map != NULL);
513 1.1 matt
514 1.1 matt return map;
515 1.1 matt }
516 1.1 matt
517 1.1 matt void
518 1.1 matt gmac_mapcache_put(gmac_mapcache_t *mc, bus_dmamap_t map)
519 1.1 matt {
520 1.1 matt KASSERT(mc->mc_free + mc->mc_used < mc->mc_max);
521 1.1 matt KASSERT(mc->mc_maps[mc->mc_free] == NULL);
522 1.1 matt
523 1.1 matt mc->mc_maps[mc->mc_free++] = map;
524 1.1 matt mc->mc_used--;
525 1.1 matt }
526 1.1 matt
527 1.1 matt gmac_desc_t *
528 1.1 matt gmac_hwqueue_desc(gmac_hwqueue_t *hwq, size_t i)
529 1.1 matt {
530 1.1 matt i += hwq->hwq_wptr;
531 1.1 matt if (i >= hwq->hwq_size)
532 1.1 matt i -= hwq->hwq_size;
533 1.20 skrll return hwq->hwq_base + i;
534 1.1 matt }
535 1.1 matt
536 1.2 matt static void
537 1.2 matt gmac_hwqueue_txconsume(gmac_hwqueue_t *hwq, const gmac_desc_t *d)
538 1.2 matt {
539 1.2 matt gmac_hwqmem_t * const hqm = hwq->hwq_hqm;
540 1.2 matt struct ifnet *ifp;
541 1.2 matt bus_dmamap_t map;
542 1.2 matt struct mbuf *m;
543 1.2 matt
544 1.2 matt IF_DEQUEUE(&hwq->hwq_ifq, m);
545 1.2 matt KASSERT(m != NULL);
546 1.2 matt map = M_GETCTX(m, bus_dmamap_t);
547 1.2 matt
548 1.2 matt bus_dmamap_sync(hqm->hqm_dmat, map, 0, map->dm_mapsize,
549 1.2 matt BUS_DMASYNC_POSTWRITE);
550 1.2 matt bus_dmamap_unload(hqm->hqm_dmat, map);
551 1.2 matt M_SETCTX(m, NULL);
552 1.2 matt gmac_mapcache_put(hqm->hqm_mc, map);
553 1.2 matt
554 1.2 matt ifp = hwq->hwq_ifp;
555 1.19 skrll if_statinc(ifp, if_opackets);
556 1.19 skrll if_statiadd(ifp, if_obytes, m->m_pkthdr.len);
557 1.2 matt
558 1.3 matt aprint_debug("gmac_hwqueue_txconsume(%p): %zu@%p: %s m=%p\n",
559 1.2 matt hwq, d - hwq->hwq_base, d, ifp->if_xname, m);
560 1.2 matt
561 1.16 msaitoh bpf_mtap(ifp, m, BPF_D_OUT);
562 1.2 matt m_freem(m);
563 1.2 matt }
564 1.2 matt
565 1.1 matt void
566 1.1 matt gmac_hwqueue_sync(gmac_hwqueue_t *hwq)
567 1.1 matt {
568 1.1 matt gmac_hwqmem_t * const hqm = hwq->hwq_hqm;
569 1.2 matt uint32_t v;
570 1.2 matt uint16_t old_rptr;
571 1.2 matt size_t rptr;
572 1.1 matt
573 1.1 matt KASSERT(hqm->hqm_flags & HQM_PRODUCER);
574 1.1 matt
575 1.2 matt old_rptr = hwq->hwq_rptr;
576 1.2 matt v = bus_space_read_4(hwq->hwq_iot, hwq->hwq_qrwptr_ioh, 0);
577 1.2 matt hwq->hwq_rptr = (v >> 0) & 0xffff;
578 1.2 matt hwq->hwq_wptr = (v >> 16) & 0xffff;
579 1.1 matt
580 1.1 matt if (old_rptr == hwq->hwq_rptr)
581 1.1 matt return;
582 1.1 matt
583 1.3 matt aprint_debug("gmac_hwqueue_sync(%p): entry rptr old=%u new=%u free=%u(%u)\n",
584 1.3 matt hwq, old_rptr, hwq->hwq_rptr, hwq->hwq_free,
585 1.3 matt hwq->hwq_size - hwq->hwq_free - 1);
586 1.3 matt
587 1.2 matt hwq->hwq_free += (hwq->hwq_rptr - old_rptr) & (hwq->hwq_size - 1);
588 1.2 matt for (rptr = old_rptr;
589 1.2 matt rptr != hwq->hwq_rptr;
590 1.3 matt rptr = (rptr + 1) & (hwq->hwq_size - 1)) {
591 1.3 matt gmac_desc_t * const d = hwq->hwq_base + rptr;
592 1.3 matt if (hqm->hqm_flags & HQM_TX) {
593 1.20 skrll bus_dmamap_sync(hqm->hqm_dmat, hqm->hqm_dmamap,
594 1.3 matt sizeof(gmac_desc_t [hwq->hwq_qoff + rptr]),
595 1.3 matt sizeof(gmac_desc_t),
596 1.3 matt BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
597 1.3 matt if (d->d_desc3 & htole32(DESC3_EOF))
598 1.3 matt gmac_hwqueue_txconsume(hwq, d);
599 1.3 matt } else {
600 1.20 skrll bus_dmamap_sync(hqm->hqm_dmat, hqm->hqm_dmamap,
601 1.3 matt sizeof(gmac_desc_t [hwq->hwq_qoff + rptr]),
602 1.3 matt sizeof(gmac_desc_t),
603 1.3 matt BUS_DMASYNC_POSTWRITE);
604 1.3 matt
605 1.3 matt aprint_debug("gmac_hwqueue_sync(%p): %zu@%p=%#x/%#x/%#x/%#x\n",
606 1.3 matt hwq, rptr, d, d->d_desc0, d->d_desc1,
607 1.3 matt d->d_bufaddr, d->d_desc3);
608 1.20 skrll bus_dmamap_sync(hqm->hqm_dmat, hqm->hqm_dmamap,
609 1.3 matt sizeof(gmac_desc_t [hwq->hwq_qoff + rptr]),
610 1.3 matt sizeof(gmac_desc_t),
611 1.3 matt BUS_DMASYNC_PREWRITE);
612 1.2 matt }
613 1.1 matt }
614 1.2 matt
615 1.3 matt aprint_debug("gmac_hwqueue_sync(%p): exit rptr old=%u new=%u free=%u(%u)\n",
616 1.3 matt hwq, old_rptr, hwq->hwq_rptr, hwq->hwq_free,
617 1.3 matt hwq->hwq_size - hwq->hwq_free - 1);
618 1.1 matt }
619 1.1 matt
620 1.1 matt void
621 1.1 matt gmac_hwqueue_produce(gmac_hwqueue_t *hwq, size_t count)
622 1.1 matt {
623 1.1 matt gmac_hwqmem_t * const hqm = hwq->hwq_hqm;
624 1.3 matt uint16_t wptr;
625 1.3 matt uint16_t rptr = bus_space_read_4(hwq->hwq_iot, hwq->hwq_qrwptr_ioh, 0);
626 1.1 matt
627 1.1 matt KASSERT(count < hwq->hwq_free);
628 1.1 matt KASSERT(hqm->hqm_flags & HQM_PRODUCER);
629 1.3 matt KASSERT(hwq->hwq_wptr == bus_space_read_4(hwq->hwq_iot, hwq->hwq_qrwptr_ioh, 0) >> 16);
630 1.1 matt
631 1.3 matt aprint_debug("gmac_hwqueue_produce(%p, %zu): rptr=%u(%u) wptr old=%u",
632 1.3 matt hwq, count, hwq->hwq_rptr, rptr, hwq->hwq_wptr);
633 1.2 matt
634 1.1 matt hwq->hwq_free -= count;
635 1.3 matt #if 1
636 1.3 matt for (wptr = hwq->hwq_wptr;
637 1.3 matt count > 0;
638 1.3 matt count--, wptr = (wptr + 1) & (hwq->hwq_size - 1)) {
639 1.3 matt KASSERT(((wptr + 1) & (hwq->hwq_size - 1)) != hwq->hwq_rptr);
640 1.20 skrll bus_dmamap_sync(hqm->hqm_dmat, hqm->hqm_dmamap,
641 1.3 matt sizeof(gmac_desc_t [hwq->hwq_qoff + wptr]),
642 1.3 matt sizeof(gmac_desc_t),
643 1.3 matt BUS_DMASYNC_PREWRITE);
644 1.3 matt }
645 1.3 matt KASSERT(count == 0);
646 1.3 matt hwq->hwq_wptr = wptr;
647 1.3 matt #else
648 1.1 matt if (hwq->hwq_wptr + count >= hwq->hwq_size) {
649 1.20 skrll bus_dmamap_sync(hqm->hqm_dmat, hqm->hqm_dmamap,
650 1.1 matt sizeof(gmac_desc_t [hwq->hwq_qoff + hwq->hwq_wptr]),
651 1.1 matt sizeof(gmac_desc_t [hwq->hwq_size - hwq->hwq_wptr]),
652 1.2 matt BUS_DMASYNC_PREWRITE);
653 1.1 matt count -= hwq->hwq_size - hwq->hwq_wptr;
654 1.1 matt hwq->hwq_wptr = 0;
655 1.1 matt }
656 1.1 matt if (count > 0) {
657 1.20 skrll bus_dmamap_sync(hqm->hqm_dmat, hqm->hqm_dmamap,
658 1.1 matt sizeof(gmac_desc_t [hwq->hwq_qoff + hwq->hwq_wptr]),
659 1.2 matt sizeof(gmac_desc_t [count]),
660 1.2 matt BUS_DMASYNC_PREWRITE);
661 1.2 matt hwq->hwq_wptr += count;
662 1.3 matt hwq->hwq_wptr &= (hwq->hwq_size - 1);
663 1.1 matt }
664 1.3 matt #endif
665 1.1 matt
666 1.1 matt /*
667 1.1 matt * Tell the h/w we've produced a few more descriptors.
668 1.2 matt * (don't bother writing the rptr since it's RO).
669 1.1 matt */
670 1.1 matt bus_space_write_4(hwq->hwq_iot, hwq->hwq_qrwptr_ioh, 0,
671 1.2 matt hwq->hwq_wptr << 16);
672 1.2 matt
673 1.3 matt aprint_debug(" new=%u\n", hwq->hwq_wptr);
674 1.1 matt }
675 1.1 matt
676 1.3 matt size_t
677 1.3 matt gmac_rxproduce(gmac_hwqueue_t *hwq, size_t free_min)
678 1.3 matt {
679 1.3 matt gmac_hwqmem_t * const hqm = hwq->hwq_hqm;
680 1.3 matt size_t i;
681 1.3 matt
682 1.3 matt aprint_debug("gmac_rxproduce(%p): entry free=%u(%u) free_min=%zu ifq_len=%d\n",
683 1.3 matt hwq, hwq->hwq_free, hwq->hwq_size - hwq->hwq_free - 1,
684 1.3 matt free_min, hwq->hwq_ifq.ifq_len);
685 1.3 matt
686 1.3 matt gmac_hwqueue_sync(hwq);
687 1.3 matt
688 1.3 matt aprint_debug("gmac_rxproduce(%p): postsync free=%u(%u)\n",
689 1.3 matt hwq, hwq->hwq_free, hwq->hwq_size - hwq->hwq_free - 1);
690 1.3 matt
691 1.3 matt for (i = 0; hwq->hwq_free > 0 && hwq->hwq_size - hwq->hwq_free - 1 < free_min; i++) {
692 1.3 matt bus_dmamap_t map;
693 1.3 matt gmac_desc_t * const d = gmac_hwqueue_desc(hwq, 0);
694 1.3 matt struct mbuf *m, *m0;
695 1.3 matt int error;
696 1.3 matt
697 1.3 matt if (d->d_bufaddr && (le32toh(d->d_bufaddr) >> 16) != 0xdead) {
698 1.3 matt gmac_hwqueue_produce(hwq, 1);
699 1.3 matt continue;
700 1.3 matt }
701 1.3 matt
702 1.3 matt map = gmac_mapcache_get(hqm->hqm_mc);
703 1.3 matt if (map == NULL)
704 1.3 matt break;
705 1.3 matt
706 1.3 matt KASSERT(map->dm_mapsize == 0);
707 1.3 matt
708 1.14 maxv m = m_gethdr(M_DONTWAIT, MT_DATA);
709 1.3 matt if (m == NULL) {
710 1.3 matt gmac_mapcache_put(hqm->hqm_mc, map);
711 1.3 matt break;
712 1.3 matt }
713 1.3 matt
714 1.3 matt MCLGET(m, M_DONTWAIT);
715 1.3 matt if ((m->m_flags & M_EXT) == 0) {
716 1.3 matt m_free(m);
717 1.3 matt gmac_mapcache_put(hqm->hqm_mc, map);
718 1.3 matt break;
719 1.3 matt }
720 1.3 matt error = bus_dmamap_load(hqm->hqm_dmat, map, m->m_data,
721 1.3 matt MCLBYTES, NULL, BUS_DMA_READ|BUS_DMA_NOWAIT);
722 1.3 matt if (error) {
723 1.3 matt m_free(m);
724 1.3 matt gmac_mapcache_put(hqm->hqm_mc, map);
725 1.3 matt aprint_error("gmac0: "
726 1.3 matt "map %p(%zu): can't map rx mbuf(%p) wptr=%u: %d\n",
727 1.3 matt map, map->_dm_size, m, hwq->hwq_wptr, error);
728 1.3 matt Debugger();
729 1.3 matt break;
730 1.3 matt }
731 1.3 matt bus_dmamap_sync(hqm->hqm_dmat, map, 0, map->dm_mapsize,
732 1.3 matt BUS_DMASYNC_PREREAD);
733 1.3 matt m->m_pkthdr.len = 0;
734 1.3 matt M_SETCTX(m, map);
735 1.3 matt #if 0
736 1.3 matt d->d_desc0 = htole32(map->dm_segs->ds_len);
737 1.3 matt #endif
738 1.3 matt d->d_bufaddr = htole32(map->dm_segs->ds_addr);
739 1.3 matt for (m0 = hwq->hwq_ifq.ifq_head; m0 != NULL; m0 = m0->m_nextpkt)
740 1.3 matt KASSERT(m0 != m);
741 1.12 ozaki m->m_len = d - hwq->hwq_base;
742 1.3 matt IF_ENQUEUE(&hwq->hwq_ifq, m);
743 1.3 matt aprint_debug(
744 1.3 matt "gmac_rxproduce(%p): m=%p %zu@%p=%#x/%#x/%#x/%#x\n", hwq,
745 1.3 matt m, d - hwq->hwq_base, d, d->d_desc0, d->d_desc1,
746 1.3 matt d->d_bufaddr, d->d_desc3);
747 1.3 matt gmac_hwqueue_produce(hwq, 1);
748 1.3 matt }
749 1.3 matt
750 1.3 matt aprint_debug("gmac_rxproduce(%p): exit free=%u(%u) free_min=%zu ifq_len=%d\n",
751 1.3 matt hwq, hwq->hwq_free, hwq->hwq_size - hwq->hwq_free - 1,
752 1.3 matt free_min, hwq->hwq_ifq.ifq_len);
753 1.3 matt
754 1.3 matt return i;
755 1.3 matt }
756 1.3 matt
757 1.3 matt static bool
758 1.1 matt gmac_hwqueue_rxconsume(gmac_hwqueue_t *hwq, const gmac_desc_t *d)
759 1.1 matt {
760 1.1 matt gmac_hwqmem_t * const hqm = hwq->hwq_hqm;
761 1.1 matt struct ifnet * const ifp = hwq->hwq_ifp;
762 1.3 matt size_t buflen = d->d_desc1 & 0xffff;
763 1.1 matt bus_dmamap_t map;
764 1.1 matt struct mbuf *m, *last_m, **mp;
765 1.3 matt size_t depth;
766 1.1 matt
767 1.1 matt KASSERT(ifp != NULL);
768 1.1 matt
769 1.3 matt aprint_debug("gmac_hwqueue_rxconsume(%p): entry\n", hwq);
770 1.3 matt
771 1.3 matt aprint_debug("gmac_hwqueue_rxconsume(%p): ifp=%p(%s): %#x/%#x/%#x/%#x\n",
772 1.3 matt hwq, hwq->hwq_ifp, hwq->hwq_ifp->if_xname,
773 1.3 matt d->d_desc0, d->d_desc1, d->d_bufaddr, d->d_desc3);
774 1.3 matt
775 1.3 matt if (d->d_bufaddr == 0 || d->d_bufaddr == 0xdeadbeef)
776 1.3 matt return false;
777 1.2 matt
778 1.1 matt /*
779 1.1 matt * First we have to find this mbuf in the software free queue
780 1.1 matt * (the producer of the mbufs) and remove it.
781 1.1 matt */
782 1.3 matt KASSERT(hwq->hwq_producer->hwq_free != hwq->hwq_producer->hwq_size - 1);
783 1.3 matt for (mp = &hwq->hwq_producer->hwq_ifq.ifq_head, last_m = NULL, depth=0;
784 1.1 matt (m = *mp) != NULL;
785 1.3 matt last_m = m, mp = &m->m_nextpkt, depth++) {
786 1.1 matt map = M_GETCTX(m, bus_dmamap_t);
787 1.2 matt KASSERT(map != NULL);
788 1.1 matt KASSERT(map->dm_nsegs == 1);
789 1.3 matt aprint_debug("gmac_hwqueue_rxconsume(%p): ifq[%zu]=%p(@%#zx) %d@swfq\n",
790 1.3 matt hwq, depth, m, map->dm_segs->ds_addr, m->m_len);
791 1.3 matt if (le32toh(d->d_bufaddr) == map->dm_segs->ds_addr) {
792 1.1 matt *mp = m->m_nextpkt;
793 1.1 matt if (hwq->hwq_producer->hwq_ifq.ifq_tail == m)
794 1.1 matt hwq->hwq_producer->hwq_ifq.ifq_tail = last_m;
795 1.1 matt hwq->hwq_producer->hwq_ifq.ifq_len--;
796 1.1 matt break;
797 1.1 matt }
798 1.1 matt }
799 1.3 matt aprint_debug("gmac_hwqueue_rxconsume(%p): ifp=%p(%s) m=%p@%zu",
800 1.3 matt hwq, hwq->hwq_ifp, hwq->hwq_ifp->if_xname, m, depth);
801 1.3 matt if (m)
802 1.3 matt aprint_debug(" swfq[%d]=%#x\n", m->m_len,
803 1.3 matt hwq->hwq_producer->hwq_base[m->m_len].d_bufaddr);
804 1.3 matt aprint_debug("\n");
805 1.1 matt KASSERT(m != NULL);
806 1.1 matt
807 1.3 matt {
808 1.3 matt struct mbuf *m0;
809 1.3 matt for (m0 = hwq->hwq_producer->hwq_ifq.ifq_head; m0 != NULL; m0 = m0->m_nextpkt)
810 1.3 matt KASSERT(m0 != m);
811 1.3 matt }
812 1.3 matt
813 1.3 matt KASSERT(hwq->hwq_producer->hwq_base[m->m_len].d_bufaddr == d->d_bufaddr);
814 1.3 matt hwq->hwq_producer->hwq_base[m->m_len].d_bufaddr = htole32(0xdead0000 | m->m_len);
815 1.3 matt
816 1.1 matt m->m_len = buflen;
817 1.1 matt if (d->d_desc3 & DESC3_SOF) {
818 1.3 matt KASSERT(hwq->hwq_rxmbuf == NULL);
819 1.3 matt m->m_pkthdr.len = buflen;
820 1.1 matt buflen += 2; /* account for the pad */
821 1.3 matt /* only modify m->m_data after we know mbuf is good. */
822 1.3 matt } else {
823 1.3 matt KASSERT(hwq->hwq_rxmbuf != NULL);
824 1.3 matt hwq->hwq_rxmbuf->m_pkthdr.len += buflen;
825 1.1 matt }
826 1.1 matt
827 1.1 matt map = M_GETCTX(m, bus_dmamap_t);
828 1.1 matt
829 1.1 matt /*
830 1.1 matt * Sync the buffer contents, unload the dmamap, and save it away.
831 1.1 matt */
832 1.2 matt bus_dmamap_sync(hqm->hqm_dmat, map, 0, buflen, BUS_DMASYNC_POSTREAD);
833 1.1 matt bus_dmamap_unload(hqm->hqm_dmat, map);
834 1.1 matt M_SETCTX(m, NULL);
835 1.1 matt gmac_mapcache_put(hqm->hqm_mc, map);
836 1.1 matt
837 1.1 matt /*
838 1.1 matt * Now we build our new packet chain by tacking this on the end.
839 1.1 matt */
840 1.1 matt *hwq->hwq_mp = m;
841 1.1 matt if ((d->d_desc3 & DESC3_EOF) == 0) {
842 1.1 matt /*
843 1.1 matt * Not last frame, so make sure the next gets appended right.
844 1.1 matt */
845 1.1 matt hwq->hwq_mp = &m->m_next;
846 1.3 matt return true;
847 1.1 matt }
848 1.1 matt
849 1.3 matt #if 0
850 1.1 matt /*
851 1.1 matt * We have a complete frame, let's try to deliver it.
852 1.1 matt */
853 1.1 matt m->m_len -= ETHER_CRC_LEN; /* remove the CRC from the end */
854 1.3 matt #endif
855 1.1 matt
856 1.1 matt /*
857 1.1 matt * Now get the whole chain.
858 1.1 matt */
859 1.1 matt m = hwq->hwq_rxmbuf;
860 1.9 ozaki m_set_rcvif(m, ifp); /* set receive interface */
861 1.1 matt switch (DESC0_RXSTS_GET(d->d_desc0)) {
862 1.1 matt case DESC0_RXSTS_GOOD:
863 1.1 matt case DESC0_RXSTS_LONG:
864 1.1 matt m->m_data += 2;
865 1.10 ozaki if_percpuq_enqueue(ifp->if_percpuq, m);
866 1.1 matt break;
867 1.1 matt default:
868 1.19 skrll if_statinc(ifp, if_ierrors);
869 1.1 matt m_freem(m);
870 1.1 matt break;
871 1.1 matt }
872 1.1 matt hwq->hwq_rxmbuf = NULL;
873 1.1 matt hwq->hwq_mp = &hwq->hwq_rxmbuf;
874 1.3 matt
875 1.3 matt return true;
876 1.1 matt }
877 1.1 matt
878 1.3 matt size_t
879 1.3 matt gmac_hwqueue_consume(gmac_hwqueue_t *hwq, size_t free_min)
880 1.1 matt {
881 1.1 matt gmac_hwqmem_t * const hqm = hwq->hwq_hqm;
882 1.3 matt gmac_desc_t d;
883 1.3 matt uint32_t v;
884 1.3 matt uint16_t rptr;
885 1.3 matt size_t i;
886 1.1 matt
887 1.1 matt KASSERT((hqm->hqm_flags & HQM_PRODUCER) == 0);
888 1.1 matt
889 1.3 matt aprint_debug("gmac_hwqueue_consume(%p): entry\n", hwq);
890 1.3 matt
891 1.2 matt
892 1.3 matt v = bus_space_read_4(hwq->hwq_iot, hwq->hwq_qrwptr_ioh, 0);
893 1.20 skrll rptr = (v >> 0) & 0xffff;
894 1.20 skrll hwq->hwq_wptr = (v >> 16) & 0xffff;
895 1.3 matt KASSERT(rptr == hwq->hwq_rptr);
896 1.3 matt if (rptr == hwq->hwq_wptr)
897 1.3 matt return 0;
898 1.2 matt
899 1.3 matt i = 0;
900 1.3 matt for (; rptr != hwq->hwq_wptr; rptr = (rptr + 1) & (hwq->hwq_size - 1)) {
901 1.3 matt bus_dmamap_sync(hqm->hqm_dmat, hqm->hqm_dmamap,
902 1.3 matt sizeof(gmac_desc_t [hwq->hwq_qoff + rptr]),
903 1.3 matt sizeof(gmac_desc_t),
904 1.3 matt BUS_DMASYNC_POSTREAD|BUS_DMASYNC_POSTWRITE);
905 1.3 matt d.d_desc0 = le32toh(hwq->hwq_base[rptr].d_desc0);
906 1.3 matt d.d_desc1 = le32toh(hwq->hwq_base[rptr].d_desc1);
907 1.3 matt d.d_bufaddr = le32toh(hwq->hwq_base[rptr].d_bufaddr);
908 1.3 matt d.d_desc3 = le32toh(hwq->hwq_base[rptr].d_desc3);
909 1.3 matt hwq->hwq_base[rptr].d_desc0 = 0;
910 1.3 matt hwq->hwq_base[rptr].d_desc1 = 0;
911 1.3 matt hwq->hwq_base[rptr].d_bufaddr = 0xdeadbeef;
912 1.3 matt hwq->hwq_base[rptr].d_desc3 = 0;
913 1.3 matt bus_dmamap_sync(hqm->hqm_dmat, hqm->hqm_dmamap,
914 1.3 matt sizeof(gmac_desc_t [hwq->hwq_qoff + rptr]),
915 1.3 matt sizeof(gmac_desc_t),
916 1.3 matt BUS_DMASYNC_PREREAD|BUS_DMASYNC_PREWRITE);
917 1.1 matt
918 1.3 matt aprint_debug("gmac_hwqueue_consume(%p): rptr=%u\n",
919 1.3 matt hwq, rptr);
920 1.3 matt if (!gmac_hwqueue_rxconsume(hwq, &d)) {
921 1.3 matt rptr = (rptr + 1) & (hwq->hwq_size - 1);
922 1.3 matt i += gmac_rxproduce(hwq->hwq_producer, free_min);
923 1.3 matt break;
924 1.1 matt }
925 1.3 matt }
926 1.2 matt
927 1.3 matt /*
928 1.3 matt * Update hardware's copy of rptr. (wptr is RO).
929 1.3 matt */
930 1.3 matt aprint_debug("gmac_hwqueue_consume(%p): rptr old=%u new=%u wptr=%u\n",
931 1.3 matt hwq, hwq->hwq_rptr, rptr, hwq->hwq_wptr);
932 1.3 matt bus_space_write_4(hwq->hwq_iot, hwq->hwq_qrwptr_ioh, 0, rptr);
933 1.3 matt hwq->hwq_rptr = rptr;
934 1.2 matt
935 1.3 matt aprint_debug("gmac_hwqueue_consume(%p): exit\n", hwq);
936 1.2 matt
937 1.3 matt return i;
938 1.1 matt }
939 1.1 matt
940 1.1 matt void
941 1.1 matt gmac_hwqmem_destroy(gmac_hwqmem_t *hqm)
942 1.1 matt {
943 1.1 matt if (hqm->hqm_nsegs) {
944 1.1 matt if (hqm->hqm_base) {
945 1.1 matt if (hqm->hqm_dmamap) {
946 1.1 matt if (hqm->hqm_dmamap->dm_mapsize) {
947 1.1 matt bus_dmamap_unload(hqm->hqm_dmat,
948 1.1 matt hqm->hqm_dmamap);
949 1.1 matt }
950 1.1 matt bus_dmamap_destroy(hqm->hqm_dmat,
951 1.1 matt hqm->hqm_dmamap);
952 1.1 matt }
953 1.1 matt bus_dmamem_unmap(hqm->hqm_dmat, hqm->hqm_base,
954 1.1 matt hqm->hqm_memsize);
955 1.1 matt }
956 1.1 matt bus_dmamem_free(hqm->hqm_dmat, hqm->hqm_segs, hqm->hqm_nsegs);
957 1.1 matt }
958 1.1 matt
959 1.1 matt kmem_free(hqm, sizeof(*hqm));
960 1.1 matt }
961 1.1 matt
962 1.1 matt gmac_hwqmem_t *
963 1.1 matt gmac_hwqmem_create(gmac_mapcache_t *mc, size_t ndesc, size_t nqueue, int flags)
964 1.1 matt {
965 1.20 skrll gmac_hwqmem_t *hqm;
966 1.1 matt int error;
967 1.1 matt
968 1.1 matt KASSERT(ndesc > 0 && ndesc <= 2048);
969 1.1 matt KASSERT((ndesc & (ndesc - 1)) == 0);
970 1.1 matt
971 1.1 matt hqm = kmem_zalloc(sizeof(*hqm), KM_SLEEP);
972 1.1 matt hqm->hqm_memsize = nqueue * sizeof(gmac_desc_t [ndesc]);
973 1.1 matt hqm->hqm_mc = mc;
974 1.1 matt hqm->hqm_dmat = mc->mc_dmat;
975 1.1 matt hqm->hqm_ndesc = ndesc;
976 1.1 matt hqm->hqm_nqueue = nqueue;
977 1.1 matt hqm->hqm_flags = flags;
978 1.1 matt
979 1.1 matt error = bus_dmamem_alloc(hqm->hqm_dmat, hqm->hqm_memsize, 0, 0,
980 1.1 matt hqm->hqm_segs, 1, &hqm->hqm_nsegs, BUS_DMA_WAITOK);
981 1.2 matt if (error) {
982 1.2 matt KASSERT(error == 0);
983 1.1 matt goto failed;
984 1.2 matt }
985 1.2 matt KASSERT(hqm->hqm_nsegs == 1);
986 1.1 matt error = bus_dmamem_map(hqm->hqm_dmat, hqm->hqm_segs, hqm->hqm_nsegs,
987 1.1 matt hqm->hqm_memsize, (void **)&hqm->hqm_base, BUS_DMA_WAITOK);
988 1.2 matt if (error) {
989 1.2 matt KASSERT(error == 0);
990 1.1 matt goto failed;
991 1.2 matt }
992 1.1 matt error = bus_dmamap_create(hqm->hqm_dmat, hqm->hqm_memsize,
993 1.2 matt hqm->hqm_nsegs, hqm->hqm_memsize, 0,
994 1.2 matt BUS_DMA_WAITOK|BUS_DMA_ALLOCNOW, &hqm->hqm_dmamap);
995 1.2 matt if (error) {
996 1.2 matt KASSERT(error == 0);
997 1.1 matt goto failed;
998 1.2 matt }
999 1.1 matt error = bus_dmamap_load(hqm->hqm_dmat, hqm->hqm_dmamap, hqm->hqm_base,
1000 1.3 matt hqm->hqm_memsize, NULL,
1001 1.20 skrll BUS_DMA_WAITOK|BUS_DMA_WRITE|BUS_DMA_READ|BUS_DMA_COHERENT);
1002 1.2 matt if (error) {
1003 1.3 matt aprint_debug("gmac_hwqmem_create: ds_addr=%zu ds_len=%zu\n",
1004 1.2 matt hqm->hqm_segs->ds_addr, hqm->hqm_segs->ds_len);
1005 1.3 matt aprint_debug("gmac_hwqmem_create: bus_dmamap_load: %d\n", error);
1006 1.2 matt KASSERT(error == 0);
1007 1.1 matt goto failed;
1008 1.2 matt }
1009 1.2 matt
1010 1.2 matt memset(hqm->hqm_base, 0, hqm->hqm_memsize);
1011 1.2 matt if ((flags & HQM_PRODUCER) == 0)
1012 1.2 matt bus_dmamap_sync(hqm->hqm_dmat, hqm->hqm_dmamap, 0,
1013 1.2 matt hqm->hqm_dmamap->dm_mapsize, BUS_DMASYNC_PREREAD);
1014 1.1 matt
1015 1.1 matt return hqm;
1016 1.1 matt
1017 1.1 matt failed:
1018 1.1 matt gmac_hwqmem_destroy(hqm);
1019 1.1 matt return NULL;
1020 1.1 matt }
1021 1.1 matt
1022 1.1 matt void
1023 1.1 matt gmac_hwqueue_destroy(gmac_hwqueue_t *hwq)
1024 1.1 matt {
1025 1.1 matt gmac_hwqmem_t * const hqm = hwq->hwq_hqm;
1026 1.1 matt KASSERT(hqm->hqm_refs & hwq->hwq_ref);
1027 1.1 matt hqm->hqm_refs &= ~hwq->hwq_ref;
1028 1.1 matt for (;;) {
1029 1.1 matt struct mbuf *m;
1030 1.1 matt bus_dmamap_t map;
1031 1.1 matt IF_DEQUEUE(&hwq->hwq_ifq, m);
1032 1.1 matt if (m == NULL)
1033 1.1 matt break;
1034 1.1 matt map = M_GETCTX(m, bus_dmamap_t);
1035 1.1 matt bus_dmamap_unload(hqm->hqm_dmat, map);
1036 1.1 matt gmac_mapcache_put(hqm->hqm_mc, map);
1037 1.1 matt m_freem(m);
1038 1.1 matt }
1039 1.1 matt kmem_free(hwq, sizeof(*hwq));
1040 1.1 matt }
1041 1.1 matt
1042 1.1 matt gmac_hwqueue_t *
1043 1.1 matt gmac_hwqueue_create(gmac_hwqmem_t *hqm,
1044 1.1 matt bus_space_tag_t iot, bus_space_handle_t ioh,
1045 1.1 matt bus_size_t qrwptr, bus_size_t qbase,
1046 1.1 matt size_t qno)
1047 1.1 matt {
1048 1.2 matt const size_t log2_memsize = ffs(hqm->hqm_ndesc) - 1;
1049 1.1 matt gmac_hwqueue_t *hwq;
1050 1.1 matt uint32_t v;
1051 1.1 matt
1052 1.1 matt KASSERT(qno < hqm->hqm_nqueue);
1053 1.1 matt KASSERT((hqm->hqm_refs & (1 << qno)) == 0);
1054 1.1 matt
1055 1.1 matt hwq = kmem_zalloc(sizeof(*hwq), KM_SLEEP);
1056 1.1 matt hwq->hwq_size = hqm->hqm_ndesc;
1057 1.1 matt hwq->hwq_iot = iot;
1058 1.1 matt bus_space_subregion(iot, ioh, qrwptr, sizeof(uint32_t),
1059 1.1 matt &hwq->hwq_qrwptr_ioh);
1060 1.1 matt
1061 1.1 matt hwq->hwq_hqm = hqm;
1062 1.1 matt hwq->hwq_ref = 1 << qno;
1063 1.1 matt hqm->hqm_refs |= hwq->hwq_ref;
1064 1.1 matt hwq->hwq_qoff = hqm->hqm_ndesc * qno;
1065 1.1 matt hwq->hwq_base = hqm->hqm_base + hwq->hwq_qoff;
1066 1.1 matt
1067 1.1 matt if (qno == 0) {
1068 1.1 matt bus_space_write_4(hwq->hwq_iot, ioh, qbase,
1069 1.1 matt hqm->hqm_dmamap->dm_segs[0].ds_addr | (log2_memsize));
1070 1.1 matt }
1071 1.1 matt
1072 1.2 matt v = bus_space_read_4(hwq->hwq_iot, hwq->hwq_qrwptr_ioh, 0);
1073 1.2 matt hwq->hwq_rptr = (v >> 0) & 0xffff;
1074 1.2 matt hwq->hwq_wptr = (v >> 16) & 0xffff;
1075 1.2 matt
1076 1.3 matt aprint_debug("gmac_hwqueue_create: %p: qrwptr=%zu(%#zx) wptr=%u rptr=%u"
1077 1.2 matt " base=%p@%#zx(%#x) qno=%zu\n",
1078 1.2 matt hwq, qrwptr, hwq->hwq_qrwptr_ioh, hwq->hwq_wptr, hwq->hwq_rptr,
1079 1.2 matt hwq->hwq_base,
1080 1.2 matt hqm->hqm_segs->ds_addr + sizeof(gmac_desc_t [hwq->hwq_qoff]),
1081 1.2 matt bus_space_read_4(hwq->hwq_iot, ioh, qbase), qno);
1082 1.2 matt
1083 1.1 matt hwq->hwq_free = hwq->hwq_size - 1;
1084 1.1 matt hwq->hwq_ifq.ifq_maxlen = hwq->hwq_free;
1085 1.3 matt hwq->hwq_mp = &hwq->hwq_rxmbuf;
1086 1.1 matt
1087 1.1 matt return hwq;
1088 1.1 matt }
1089