if_ntwoc_pci.c revision 1.27 1 1.27 dyoung /* $NetBSD: if_ntwoc_pci.c,v 1.27 2011/07/26 20:51:24 dyoung Exp $ */
2 1.1 explorer
3 1.1 explorer /*
4 1.1 explorer * Copyright (c) 1998 Vixie Enterprises
5 1.1 explorer * All rights reserved.
6 1.1 explorer *
7 1.1 explorer * Redistribution and use in source and binary forms, with or without
8 1.1 explorer * modification, are permitted provided that the following conditions
9 1.1 explorer * are met:
10 1.1 explorer *
11 1.1 explorer * 1. Redistributions of source code must retain the above copyright
12 1.1 explorer * notice, this list of conditions and the following disclaimer.
13 1.1 explorer * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 explorer * notice, this list of conditions and the following disclaimer in the
15 1.1 explorer * documentation and/or other materials provided with the distribution.
16 1.1 explorer * 3. Neither the name of Vixie Enterprises nor the names
17 1.1 explorer * of its contributors may be used to endorse or promote products derived
18 1.1 explorer * from this software without specific prior written permission.
19 1.1 explorer *
20 1.1 explorer * THIS SOFTWARE IS PROVIDED BY VIXIE ENTERPRISES AND
21 1.1 explorer * CONTRIBUTORS ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES,
22 1.1 explorer * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
23 1.1 explorer * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
24 1.1 explorer * DISCLAIMED. IN NO EVENT SHALL VIXIE ENTERPRISES OR
25 1.1 explorer * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
26 1.1 explorer * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
27 1.1 explorer * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
28 1.1 explorer * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
29 1.1 explorer * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
30 1.1 explorer * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
31 1.1 explorer * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 explorer * SUCH DAMAGE.
33 1.1 explorer *
34 1.1 explorer * This software has been written for Vixie Enterprises by Michael Graff
35 1.1 explorer * <explorer (at) flame.org>. To learn more about Vixie Enterprises, see
36 1.1 explorer * ``http://www.vix.com''.
37 1.1 explorer */
38 1.6 lukem
39 1.6 lukem #include <sys/cdefs.h>
40 1.27 dyoung __KERNEL_RCSID(0, "$NetBSD: if_ntwoc_pci.c,v 1.27 2011/07/26 20:51:24 dyoung Exp $");
41 1.1 explorer
42 1.1 explorer #include <sys/param.h>
43 1.1 explorer #include <sys/systm.h>
44 1.1 explorer #include <sys/device.h>
45 1.1 explorer #include <sys/mbuf.h>
46 1.1 explorer #include <sys/socket.h>
47 1.1 explorer
48 1.1 explorer #include <net/if.h>
49 1.1 explorer
50 1.20 ad #include <sys/cpu.h>
51 1.20 ad #include <sys/bus.h>
52 1.20 ad #include <sys/intr.h>
53 1.1 explorer
54 1.1 explorer #include <dev/pci/pcivar.h>
55 1.1 explorer #include <dev/pci/pcireg.h>
56 1.1 explorer #include <dev/pci/pcidevs.h>
57 1.1 explorer
58 1.1 explorer #include <dev/ic/hd64570reg.h>
59 1.1 explorer #include <dev/ic/hd64570var.h>
60 1.1 explorer
61 1.1 explorer #include <dev/pci/if_ntwoc_pcireg.h>
62 1.1 explorer
63 1.1 explorer #if 0
64 1.1 explorer #define NTWO_DEBUG
65 1.1 explorer #endif
66 1.1 explorer
67 1.1 explorer #ifdef NTWO_DEBUG
68 1.1 explorer #define NTWO_DPRINTF(x) printf x
69 1.1 explorer #else
70 1.1 explorer #define NTWO_DPRINTF(x)
71 1.1 explorer #endif
72 1.1 explorer
73 1.1 explorer /*
74 1.3 chopps * buffers per tx and rx channels, per port, and the size of each.
75 1.3 chopps * Don't use these constants directly, as they are really only hints.
76 1.3 chopps * Use the calculated values stored in struct sca_softc instead.
77 1.3 chopps *
78 1.3 chopps * Each must be at least 2, receive would be better at around 20 or so.
79 1.3 chopps *
80 1.3 chopps * XXX Due to a damned near impossible to track down bug, transmit buffers
81 1.3 chopps * MUST be 2, no more, no less.
82 1.3 chopps */
83 1.3 chopps #ifndef NTWOC_NtxBUFS
84 1.3 chopps #define NTWOC_NtxBUFS 40
85 1.3 chopps #endif
86 1.3 chopps #ifndef NTWOC_NrxBUFS
87 1.3 chopps #define NTWOC_NrxBUFS 20
88 1.3 chopps #endif
89 1.3 chopps
90 1.3 chopps #if __NetBSD_Version__ >= 104160000
91 1.24 cegger static void ntwoc_pci_config_interrupts(device_t);
92 1.3 chopps #else
93 1.3 chopps #define SCA_BASECLOCK 16000000
94 1.3 chopps #endif
95 1.3 chopps
96 1.3 chopps /*
97 1.1 explorer * Card specific config register location
98 1.1 explorer */
99 1.27 dyoung #define PCI_CBMA_ASIC PCI_BAR(0) /* Configuration Base Memory Address */
100 1.27 dyoung #define PCI_CBMA_SCA PCI_BAR(2)
101 1.1 explorer
102 1.1 explorer struct ntwoc_pci_softc {
103 1.1 explorer /* Generic device stuff */
104 1.1 explorer struct device sc_dev; /* Common to all devices */
105 1.1 explorer
106 1.1 explorer /* PCI chipset glue */
107 1.1 explorer pci_intr_handle_t *sc_ih; /* Interrupt handler */
108 1.1 explorer pci_chipset_tag_t sc_sr; /* PCI chipset handle */
109 1.1 explorer
110 1.1 explorer bus_space_tag_t sc_asic_iot; /* space cookie (for ASIC) */
111 1.1 explorer bus_space_handle_t sc_asic_ioh; /* bus space handle (for ASIC) */
112 1.1 explorer
113 1.1 explorer struct sca_softc sc_sca; /* the SCA itself */
114 1.1 explorer };
115 1.1 explorer
116 1.24 cegger static int ntwoc_pci_match(device_t, cfdata_t, void *);
117 1.24 cegger static void ntwoc_pci_attach(device_t, device_t, void *);
118 1.1 explorer
119 1.14 perry static int ntwoc_pci_alloc_dma(struct sca_softc *);
120 1.14 perry static void ntwoc_pci_clock_callback(void *, int, int);
121 1.14 perry static void ntwoc_pci_dtr_callback(void *, int, int);
122 1.14 perry static void ntwoc_pci_get_clock(struct sca_port *, u_int8_t, u_int8_t,
123 1.14 perry u_int8_t, u_int8_t);
124 1.14 perry static int ntwoc_pci_intr(void *);
125 1.14 perry static void ntwoc_pci_setup_dma(struct sca_softc *);
126 1.14 perry static void ntwoc_pci_shutdown(void *sc);
127 1.1 explorer
128 1.8 thorpej CFATTACH_DECL(ntwoc_pci, sizeof(struct ntwoc_pci_softc),
129 1.9 thorpej ntwoc_pci_match, ntwoc_pci_attach, NULL, NULL);
130 1.1 explorer
131 1.1 explorer /*
132 1.1 explorer * Names for daughter card types. These match the NTWOC_DB_* defines.
133 1.1 explorer */
134 1.15 christos const char *ntwoc_pci_db_names[] = {
135 1.1 explorer "V.35", "Unknown 0x01", "Test", "Unknown 0x03",
136 1.1 explorer "RS232", "Unknown 0x05", "RS422", "None"
137 1.1 explorer };
138 1.1 explorer
139 1.3 chopps /*
140 1.3 chopps * At least one implementation uses a somewhat strange register address
141 1.3 chopps * mapping. If a card doesn't, define this to be a pass-through
142 1.3 chopps * macro. (The ntwo driver needs this...)
143 1.3 chopps */
144 1.3 chopps #define SCA_REG(y) (((y) & 0x0002) ? (((y) & 0x00fd) + 0x100) : (y))
145 1.3 chopps
146 1.3 chopps /*
147 1.3 chopps * functions that read and write to the sca registers
148 1.3 chopps */
149 1.3 chopps static void
150 1.3 chopps ntwoc_pci_sca_write_1(struct sca_softc *sc, u_int reg, u_int8_t val)
151 1.3 chopps {
152 1.3 chopps bus_space_write_1(sc->sc_iot, sc->sc_ioh, SCA_REG(reg), val);
153 1.3 chopps }
154 1.3 chopps
155 1.3 chopps static void
156 1.3 chopps ntwoc_pci_sca_write_2(struct sca_softc *sc, u_int reg, u_int16_t val)
157 1.3 chopps {
158 1.3 chopps bus_space_write_2(sc->sc_iot, sc->sc_ioh, SCA_REG(reg), val);
159 1.3 chopps }
160 1.3 chopps
161 1.3 chopps static u_int8_t
162 1.3 chopps ntwoc_pci_sca_read_1(struct sca_softc *sc, u_int reg)
163 1.3 chopps {
164 1.3 chopps return
165 1.3 chopps bus_space_read_1(sc->sc_iot, sc->sc_ioh, SCA_REG(reg));
166 1.3 chopps }
167 1.3 chopps
168 1.3 chopps static u_int16_t
169 1.3 chopps ntwoc_pci_sca_read_2(struct sca_softc *sc, u_int reg)
170 1.3 chopps {
171 1.3 chopps return
172 1.3 chopps bus_space_read_2(sc->sc_iot, sc->sc_ioh, SCA_REG(reg));
173 1.3 chopps }
174 1.3 chopps
175 1.3 chopps
176 1.3 chopps
177 1.1 explorer static int
178 1.24 cegger ntwoc_pci_match(device_t parent, cfdata_t match, void *aux)
179 1.1 explorer {
180 1.1 explorer struct pci_attach_args *pa = (struct pci_attach_args *)aux;
181 1.1 explorer
182 1.1 explorer if ((PCI_VENDOR(pa->pa_id) == PCI_VENDOR_RISCOM)
183 1.1 explorer && (PCI_PRODUCT(pa->pa_id) == PCI_PRODUCT_RISCOM_N2))
184 1.1 explorer return 1;
185 1.1 explorer
186 1.1 explorer return 0;
187 1.1 explorer }
188 1.1 explorer
189 1.1 explorer static void
190 1.24 cegger ntwoc_pci_attach(device_t parent, device_t self, void *aux)
191 1.1 explorer {
192 1.25 cegger struct ntwoc_pci_softc *sc = device_private(self);
193 1.1 explorer struct pci_attach_args *pa = aux;
194 1.1 explorer struct sca_softc *sca = &sc->sc_sca;
195 1.1 explorer pci_intr_handle_t ih;
196 1.1 explorer const char *intrstr;
197 1.1 explorer pcireg_t csr;
198 1.3 chopps u_int8_t tmc, rdiv, tdiv;
199 1.1 explorer u_int16_t frontend_cr;
200 1.1 explorer u_int16_t db0, db1;
201 1.3 chopps u_int32_t flags;
202 1.1 explorer u_int numports;
203 1.1 explorer
204 1.1 explorer printf(": N2 Serial Interface\n");
205 1.17 thorpej flags = device_cfdata(&sc->sc_dev)->cf_flags;
206 1.1 explorer
207 1.1 explorer /*
208 1.1 explorer * Map in the ASIC configuration space
209 1.1 explorer */
210 1.1 explorer if (pci_mapreg_map(pa, PCI_CBMA_ASIC, PCI_MAPREG_TYPE_MEM, 0,
211 1.1 explorer &sc->sc_asic_iot, &sc->sc_asic_ioh, NULL, NULL)) {
212 1.21 cegger aprint_error_dev(&sc->sc_dev, "Can't map register space (ASIC)\n");
213 1.1 explorer return;
214 1.1 explorer }
215 1.1 explorer /*
216 1.1 explorer * Map in the serial controller configuration space
217 1.1 explorer */
218 1.1 explorer if (pci_mapreg_map(pa, PCI_CBMA_SCA, PCI_MAPREG_TYPE_MEM, 0,
219 1.1 explorer &sca->sc_iot, &sca->sc_ioh, NULL, NULL)) {
220 1.21 cegger aprint_error_dev(&sc->sc_dev, "Can't map register space (SCA)\n");
221 1.1 explorer return;
222 1.1 explorer }
223 1.1 explorer
224 1.1 explorer /*
225 1.1 explorer * Enable the card
226 1.1 explorer */
227 1.1 explorer csr = pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG);
228 1.1 explorer pci_conf_write(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG, csr);
229 1.1 explorer
230 1.1 explorer /*
231 1.1 explorer * Map and establish the interrupt
232 1.1 explorer */
233 1.4 sommerfe if (pci_intr_map(pa, &ih)) {
234 1.21 cegger aprint_error_dev(&sc->sc_dev, "couldn't map interrupt\n");
235 1.1 explorer return;
236 1.1 explorer }
237 1.1 explorer intrstr = pci_intr_string(pa->pa_pc, ih);
238 1.3 chopps sc->sc_ih = pci_intr_establish(pa->pa_pc, ih, IPL_NET, ntwoc_pci_intr,
239 1.3 chopps sc);
240 1.1 explorer if (sc->sc_ih == NULL) {
241 1.21 cegger aprint_error_dev(&sc->sc_dev, "couldn't establish interrupt");
242 1.1 explorer if (intrstr != NULL)
243 1.26 njoly aprint_error(" at %s", intrstr);
244 1.26 njoly aprint_error("\n");
245 1.1 explorer return;
246 1.1 explorer }
247 1.26 njoly aprint_normal_dev(&sc->sc_dev, "interrupting at %s\n", intrstr);
248 1.1 explorer
249 1.1 explorer /*
250 1.1 explorer * Perform total black magic. This is not only extremely
251 1.1 explorer * disgusting, but it should be explained a lot more in the
252 1.1 explorer * card's documentation.
253 1.1 explorer *
254 1.1 explorer * From what I gather, this does nothing more than configure the
255 1.1 explorer * PCI to ISA translator ASIC the N2pci card uses.
256 1.1 explorer *
257 1.1 explorer * From the FreeBSD driver:
258 1.1 explorer * offset
259 1.1 explorer * 0x00 - Map Range - Mem-mapped to locate anywhere
260 1.1 explorer * 0x04 - Re-Map - PCI address decode enable
261 1.1 explorer * 0x18 - Bus Region - 32-bit bus, ready enable
262 1.1 explorer * 0x1c - Master Range - include all 16 MB
263 1.1 explorer * 0x20 - Master RAM - Map SCA Base at 0
264 1.1 explorer * 0x28 - Master Remap - direct master memory enable
265 1.1 explorer * 0x68 - Interrupt - Enable interrupt (0 to disable)
266 1.1 explorer */
267 1.1 explorer bus_space_write_4(sc->sc_asic_iot, sc->sc_asic_ioh,
268 1.1 explorer 0x00, 0xfffff000);
269 1.1 explorer bus_space_write_4(sc->sc_asic_iot, sc->sc_asic_ioh,
270 1.1 explorer 0x04, 1);
271 1.1 explorer bus_space_write_4(sc->sc_asic_iot, sc->sc_asic_ioh,
272 1.1 explorer 0x18, 0x40030043);
273 1.1 explorer bus_space_write_4(sc->sc_asic_iot, sc->sc_asic_ioh,
274 1.1 explorer 0x1c, 0xff000000);
275 1.1 explorer bus_space_write_4(sc->sc_asic_iot, sc->sc_asic_ioh,
276 1.1 explorer 0x20, 0);
277 1.1 explorer bus_space_write_4(sc->sc_asic_iot, sc->sc_asic_ioh,
278 1.1 explorer 0x28, 0xe9);
279 1.1 explorer bus_space_write_4(sc->sc_asic_iot, sc->sc_asic_ioh,
280 1.1 explorer 0x68, 0x10900);
281 1.1 explorer
282 1.1 explorer /*
283 1.12 wiz * pass the DMA tag to the SCA
284 1.1 explorer */
285 1.3 chopps sca->sc_usedma = 1;
286 1.3 chopps sca->scu_dmat = pa->pa_dmat;
287 1.1 explorer
288 1.1 explorer /*
289 1.1 explorer * Read the configuration information off the daughter card.
290 1.1 explorer */
291 1.1 explorer frontend_cr = bus_space_read_2(sca->sc_iot, sca->sc_ioh, NTWOC_FECR);
292 1.1 explorer NTWO_DPRINTF(("%s: frontend_cr = 0x%04x\n",
293 1.21 cegger device_xname(&sc->sc_dev), frontend_cr));
294 1.1 explorer
295 1.1 explorer db0 = (frontend_cr & NTWOC_FECR_ID0) >> NTWOC_FECR_ID0_SHIFT;
296 1.1 explorer db1 = (frontend_cr & NTWOC_FECR_ID1) >> NTWOC_FECR_ID1_SHIFT;
297 1.1 explorer
298 1.1 explorer /*
299 1.1 explorer * Port 1 HAS to be present. If it isn't, don't attach anything.
300 1.1 explorer */
301 1.1 explorer if (db0 == NTWOC_FE_ID_NONE) {
302 1.21 cegger printf("%s: no ports available\n", device_xname(&sc->sc_dev));
303 1.1 explorer return;
304 1.1 explorer }
305 1.1 explorer
306 1.1 explorer /*
307 1.1 explorer * Port 1 is present. Now, check to see if port 2 is also
308 1.1 explorer * present.
309 1.1 explorer */
310 1.1 explorer numports = 1;
311 1.1 explorer if (db1 != NTWOC_FE_ID_NONE)
312 1.1 explorer numports++;
313 1.1 explorer
314 1.21 cegger printf("%s: %d port%s\n", device_xname(&sc->sc_dev), numports,
315 1.1 explorer (numports > 1 ? "s" : ""));
316 1.21 cegger printf("%s: port 0 interface card: %s\n", device_xname(&sc->sc_dev),
317 1.3 chopps ntwoc_pci_db_names[db0]);
318 1.1 explorer if (numports > 1)
319 1.21 cegger printf("%s: port 1 interface card: %s\n", device_xname(&sc->sc_dev),
320 1.3 chopps ntwoc_pci_db_names[db1]);
321 1.1 explorer
322 1.1 explorer /*
323 1.1 explorer * enable the RS422 tristate transmit
324 1.1 explorer * diable clock output (use receiver clock for both)
325 1.1 explorer */
326 1.1 explorer frontend_cr |= (NTWOC_FECR_TE0 | NTWOC_FECR_TE1);
327 1.1 explorer frontend_cr &= ~(NTWOC_FECR_ETC0 | NTWOC_FECR_ETC1);
328 1.1 explorer bus_space_write_2(sc->sc_sca.sc_iot, sc->sc_sca.sc_ioh,
329 1.1 explorer NTWOC_FECR, frontend_cr);
330 1.1 explorer
331 1.1 explorer /*
332 1.1 explorer * initialize the SCA. This will allocate DMAable memory based
333 1.1 explorer * on the number of ports we passed in, the size of each
334 1.1 explorer * buffer, and the number of buffers per port.
335 1.1 explorer */
336 1.3 chopps sca->sc_parent = &sc->sc_dev;
337 1.3 chopps sca->sc_read_1 = ntwoc_pci_sca_read_1;
338 1.3 chopps sca->sc_read_2 = ntwoc_pci_sca_read_2;
339 1.3 chopps sca->sc_write_1 = ntwoc_pci_sca_write_1;
340 1.3 chopps sca->sc_write_2 = ntwoc_pci_sca_write_2;
341 1.3 chopps sca->sc_dtr_callback = ntwoc_pci_dtr_callback;
342 1.3 chopps sca->sc_clock_callback = ntwoc_pci_clock_callback;
343 1.3 chopps sca->sc_aux = sc;
344 1.3 chopps sca->sc_numports = numports;
345 1.3 chopps
346 1.3 chopps /*
347 1.3 chopps * get clock information from user
348 1.3 chopps */
349 1.3 chopps rdiv = (flags & NTWOC_FLAGS_RXDIV_MASK) >> NTWOC_FLAGS_RXDIV_SHIFT;
350 1.3 chopps if (rdiv > 9)
351 1.3 chopps panic("bad rx divisor in flags");
352 1.3 chopps
353 1.3 chopps tdiv = (flags & NTWOC_FLAGS_TXDIV_MASK) >> NTWOC_FLAGS_TXDIV_SHIFT;
354 1.3 chopps if (tdiv > 9)
355 1.3 chopps panic("bad tx divisor in flags");
356 1.3 chopps tmc = (flags & NTWOC_FLAGS_TMC_MASK) >> NTWOC_FLAGS_TMC_SHIFT;
357 1.3 chopps
358 1.3 chopps ntwoc_pci_get_clock(&sca->sc_ports[0], flags & NTWOC_FLAGS_CLK0_MASK,
359 1.3 chopps tmc, rdiv, tdiv);
360 1.3 chopps if (sca->sc_numports > 1)
361 1.3 chopps ntwoc_pci_get_clock(&sca->sc_ports[1],
362 1.3 chopps (flags & NTWOC_FLAGS_CLK1_MASK) >> NTWOC_FLAGS_CLK1_SHIFT,
363 1.3 chopps tmc, rdiv, tdiv);
364 1.3 chopps
365 1.12 wiz /* allocate DMA'able memory for card to use */
366 1.3 chopps ntwoc_pci_alloc_dma(sca);
367 1.3 chopps ntwoc_pci_setup_dma(sca);
368 1.3 chopps
369 1.3 chopps sca_init(sca);
370 1.1 explorer
371 1.1 explorer /*
372 1.1 explorer * always initialize port 0, since we have to have found it to
373 1.1 explorer * get this far. If we have two ports, attach the second
374 1.1 explorer * as well.
375 1.1 explorer */
376 1.1 explorer sca_port_attach(sca, 0);
377 1.1 explorer if (numports == 2)
378 1.1 explorer sca_port_attach(sca, 1);
379 1.1 explorer
380 1.1 explorer /*
381 1.1 explorer * Add shutdown hook so that DMA is disabled prior to reboot. Not
382 1.1 explorer * doing do could allow DMA to corrupt kernel memory during the
383 1.1 explorer * reboot before the driver initializes.
384 1.1 explorer */
385 1.3 chopps shutdownhook_establish(ntwoc_pci_shutdown, sc);
386 1.3 chopps
387 1.3 chopps #if __NetBSD_Version__ >= 104160000
388 1.3 chopps /*
389 1.3 chopps * defer getting the base clock until interrupts are enabled
390 1.3 chopps * (and thus we have microtime())
391 1.3 chopps */
392 1.3 chopps config_interrupts(self, ntwoc_pci_config_interrupts);
393 1.3 chopps #else
394 1.3 chopps sca->sc_baseclock = SCA_BASECLOCK;
395 1.3 chopps sca_print_clock_info(&sc->sc_sca);
396 1.3 chopps #endif
397 1.1 explorer }
398 1.1 explorer
399 1.3 chopps /*
400 1.3 chopps * extract the clock information for a port from the flags field
401 1.3 chopps */
402 1.3 chopps static void
403 1.3 chopps ntwoc_pci_get_clock(struct sca_port *scp, u_int8_t flags, u_int8_t tmc,
404 1.3 chopps u_int8_t rdiv, u_int8_t tdiv)
405 1.3 chopps {
406 1.3 chopps scp->sp_eclock =
407 1.3 chopps (flags & NTWOC_FLAGS_ECLOCK_MASK) >> NTWOC_FLAGS_ECLOCK_SHIFT;
408 1.3 chopps scp->sp_rxs = rdiv;
409 1.3 chopps scp->sp_txs = tdiv;
410 1.3 chopps scp->sp_tmc = tmc;
411 1.3 chopps
412 1.3 chopps /* get rx source */
413 1.3 chopps switch ((flags & NTWOC_FLAGS_RXS_MASK) >> NTWOC_FLAGS_RXS_SHIFT) {
414 1.3 chopps case NTWOC_FLAGS_RXS_LINE:
415 1.3 chopps scp->sp_rxs = 0;
416 1.3 chopps break;
417 1.3 chopps case NTWOC_FLAGS_RXS_LINE_SN:
418 1.3 chopps scp->sp_rxs |= SCA_RXS_CLK_LINE_SN;
419 1.3 chopps break;
420 1.3 chopps case NTWOC_FLAGS_RXS_INTERNAL:
421 1.3 chopps scp->sp_rxs |= SCA_RXS_CLK_INTERNAL;
422 1.3 chopps break;
423 1.3 chopps case NTWOC_FLAGS_RXS_ADPLL_OUT:
424 1.3 chopps scp->sp_rxs |= SCA_RXS_CLK_ADPLL_OUT;
425 1.3 chopps break;
426 1.3 chopps case NTWOC_FLAGS_RXS_ADPLL_IN:
427 1.3 chopps scp->sp_rxs |= SCA_RXS_CLK_ADPLL_IN;
428 1.3 chopps break;
429 1.3 chopps default:
430 1.3 chopps panic("bad rx source in flags");
431 1.3 chopps }
432 1.3 chopps
433 1.3 chopps /* get tx source */
434 1.3 chopps switch ((flags & NTWOC_FLAGS_TXS_MASK) >> NTWOC_FLAGS_TXS_SHIFT) {
435 1.3 chopps case NTWOC_FLAGS_TXS_LINE:
436 1.3 chopps scp->sp_txs = 0;
437 1.3 chopps break;
438 1.3 chopps case NTWOC_FLAGS_TXS_INTERNAL:
439 1.3 chopps scp->sp_txs |= SCA_TXS_CLK_INTERNAL;
440 1.3 chopps break;
441 1.3 chopps case NTWOC_FLAGS_TXS_RXCLOCK:
442 1.3 chopps scp->sp_txs |= SCA_TXS_CLK_RXCLK;
443 1.3 chopps break;
444 1.3 chopps default:
445 1.3 chopps panic("bad rx source in flags");
446 1.3 chopps }
447 1.3 chopps }
448 1.3 chopps
449 1.3 chopps
450 1.1 explorer static int
451 1.3 chopps ntwoc_pci_intr(void *arg)
452 1.1 explorer {
453 1.1 explorer struct ntwoc_pci_softc *sc = (struct ntwoc_pci_softc *)arg;
454 1.1 explorer
455 1.1 explorer return sca_hardintr(&sc->sc_sca);
456 1.1 explorer }
457 1.1 explorer
458 1.1 explorer /*
459 1.1 explorer * shut down interrupts and DMA, so we don't trash the kernel on warm
460 1.1 explorer * boot. Also, lower DTR on each port and disable card interrupts.
461 1.1 explorer */
462 1.1 explorer static void
463 1.3 chopps ntwoc_pci_shutdown(void *aux)
464 1.1 explorer {
465 1.1 explorer struct ntwoc_pci_softc *sc = aux;
466 1.1 explorer u_int16_t fecr;
467 1.1 explorer
468 1.1 explorer /*
469 1.1 explorer * shut down the SCA ports
470 1.1 explorer */
471 1.1 explorer sca_shutdown(&sc->sc_sca);
472 1.1 explorer
473 1.1 explorer /*
474 1.10 wiz * disable interrupts for the whole card. Black magic, see comment
475 1.1 explorer * above.
476 1.1 explorer */
477 1.1 explorer bus_space_write_4(sc->sc_asic_iot, sc->sc_asic_ioh,
478 1.1 explorer 0x68, 0x10900);
479 1.1 explorer
480 1.1 explorer /*
481 1.1 explorer * lower DTR on both ports
482 1.1 explorer */
483 1.1 explorer fecr = bus_space_read_2(sc->sc_sca.sc_iot,
484 1.1 explorer sc->sc_sca.sc_ioh, NTWOC_FECR);
485 1.1 explorer fecr |= (NTWOC_FECR_DTR0 | NTWOC_FECR_DTR1);
486 1.1 explorer bus_space_write_2(sc->sc_sca.sc_iot, sc->sc_sca.sc_ioh,
487 1.1 explorer NTWOC_FECR, fecr);
488 1.1 explorer }
489 1.1 explorer
490 1.1 explorer static void
491 1.3 chopps ntwoc_pci_dtr_callback(void *aux, int port, int state)
492 1.1 explorer {
493 1.1 explorer struct ntwoc_pci_softc *sc = aux;
494 1.1 explorer u_int16_t fecr;
495 1.1 explorer
496 1.1 explorer fecr = bus_space_read_2(sc->sc_sca.sc_iot,
497 1.1 explorer sc->sc_sca.sc_ioh, NTWOC_FECR);
498 1.1 explorer
499 1.3 chopps NTWO_DPRINTF(("dtr: port == %d, state == %d, old fecr: 0x%04x\n",
500 1.1 explorer port, state, fecr));
501 1.1 explorer
502 1.1 explorer if (port == 0) {
503 1.1 explorer if (state == 0)
504 1.1 explorer fecr |= NTWOC_FECR_DTR0;
505 1.1 explorer else
506 1.1 explorer fecr &= ~NTWOC_FECR_DTR0;
507 1.1 explorer } else {
508 1.1 explorer if (state == 0)
509 1.1 explorer fecr |= NTWOC_FECR_DTR1;
510 1.1 explorer else
511 1.1 explorer fecr &= ~NTWOC_FECR_DTR1;
512 1.1 explorer }
513 1.1 explorer
514 1.1 explorer NTWO_DPRINTF(("new fecr: 0x%04x\n", fecr));
515 1.1 explorer
516 1.1 explorer bus_space_write_2(sc->sc_sca.sc_iot, sc->sc_sca.sc_ioh,
517 1.1 explorer NTWOC_FECR, fecr);
518 1.1 explorer }
519 1.3 chopps
520 1.3 chopps static void
521 1.3 chopps ntwoc_pci_clock_callback(void *aux, int port, int enable)
522 1.3 chopps {
523 1.3 chopps struct ntwoc_pci_softc *sc = aux;
524 1.3 chopps u_int16_t fecr;
525 1.3 chopps
526 1.3 chopps fecr = bus_space_read_2(sc->sc_sca.sc_iot,
527 1.3 chopps sc->sc_sca.sc_ioh, NTWOC_FECR);
528 1.3 chopps
529 1.3 chopps NTWO_DPRINTF(("clk: port == %d, enable == %d, old fecr: 0x%04x\n",
530 1.3 chopps port, enable, fecr));
531 1.3 chopps
532 1.3 chopps if (port == 0) {
533 1.3 chopps if (enable)
534 1.3 chopps fecr |= NTWOC_FECR_ETC0;
535 1.3 chopps else
536 1.3 chopps fecr &= ~NTWOC_FECR_ETC0;
537 1.3 chopps } else {
538 1.3 chopps if (enable)
539 1.3 chopps fecr |= NTWOC_FECR_ETC1;
540 1.3 chopps else
541 1.3 chopps fecr &= ~NTWOC_FECR_ETC1;
542 1.3 chopps }
543 1.3 chopps
544 1.3 chopps NTWO_DPRINTF(("new fecr: 0x%04x\n", fecr));
545 1.3 chopps
546 1.3 chopps bus_space_write_2(sc->sc_sca.sc_iot, sc->sc_sca.sc_ioh,
547 1.3 chopps NTWOC_FECR, fecr);
548 1.3 chopps }
549 1.3 chopps
550 1.3 chopps static int
551 1.3 chopps ntwoc_pci_alloc_dma(struct sca_softc *sc)
552 1.3 chopps {
553 1.3 chopps u_int allocsize;
554 1.3 chopps int err;
555 1.3 chopps int rsegs;
556 1.3 chopps u_int bpp;
557 1.3 chopps
558 1.3 chopps /* first initialize the number of descriptors */
559 1.3 chopps sc->sc_ports[0].sp_nrxdesc = NTWOC_NrxBUFS;
560 1.3 chopps sc->sc_ports[0].sp_ntxdesc = NTWOC_NtxBUFS;
561 1.3 chopps if (sc->sc_numports == 2) {
562 1.3 chopps sc->sc_ports[1].sp_nrxdesc = NTWOC_NrxBUFS;
563 1.3 chopps sc->sc_ports[1].sp_ntxdesc = NTWOC_NtxBUFS;
564 1.3 chopps }
565 1.3 chopps
566 1.3 chopps NTWO_DPRINTF(("sizeof sca_desc_t: %d bytes\n", sizeof (sca_desc_t)));
567 1.3 chopps
568 1.3 chopps bpp = sc->sc_numports * (NTWOC_NtxBUFS + NTWOC_NrxBUFS);
569 1.3 chopps
570 1.3 chopps allocsize = bpp * (SCA_BSIZE + sizeof (sca_desc_t));
571 1.3 chopps
572 1.3 chopps /*
573 1.3 chopps * sanity checks:
574 1.3 chopps *
575 1.3 chopps * Check the total size of the data buffers, and so on. The total
576 1.3 chopps * DMAable space needs to fit within a single 16M region, and the
577 1.3 chopps * descriptors need to fit within a 64K region.
578 1.3 chopps */
579 1.3 chopps if (allocsize > 16 * 1024 * 1024)
580 1.3 chopps return 1;
581 1.3 chopps if (bpp * sizeof (sca_desc_t) > 64 * 1024)
582 1.3 chopps return 1;
583 1.3 chopps
584 1.3 chopps sc->scu_allocsize = allocsize;
585 1.3 chopps
586 1.3 chopps /*
587 1.3 chopps * Allocate one huge chunk of memory.
588 1.3 chopps */
589 1.3 chopps if (bus_dmamem_alloc(sc->scu_dmat,
590 1.3 chopps allocsize,
591 1.3 chopps SCA_DMA_ALIGNMENT,
592 1.13 wiz SCA_DMA_BOUNDARY,
593 1.3 chopps &sc->scu_seg, 1, &rsegs, BUS_DMA_NOWAIT) != 0) {
594 1.3 chopps printf("Could not allocate DMA memory\n");
595 1.3 chopps return 1;
596 1.3 chopps }
597 1.3 chopps NTWO_DPRINTF(("DMA memory allocated: %d bytes\n", allocsize));
598 1.3 chopps
599 1.3 chopps if (bus_dmamem_map(sc->scu_dmat, &sc->scu_seg, 1, allocsize,
600 1.3 chopps &sc->scu_dma_addr, BUS_DMA_NOWAIT) != 0) {
601 1.3 chopps printf("Could not map DMA memory into kernel space\n");
602 1.3 chopps return 1;
603 1.3 chopps }
604 1.3 chopps NTWO_DPRINTF(("DMA memory mapped\n"));
605 1.3 chopps
606 1.3 chopps if (bus_dmamap_create(sc->scu_dmat, allocsize, 2,
607 1.13 wiz allocsize, SCA_DMA_BOUNDARY,
608 1.3 chopps BUS_DMA_NOWAIT, &sc->scu_dmam) != 0) {
609 1.3 chopps printf("Could not create DMA map\n");
610 1.3 chopps return 1;
611 1.3 chopps }
612 1.3 chopps NTWO_DPRINTF(("DMA map created\n"));
613 1.3 chopps
614 1.3 chopps err = bus_dmamap_load(sc->scu_dmat, sc->scu_dmam, sc->scu_dma_addr,
615 1.3 chopps allocsize, NULL, BUS_DMA_NOWAIT);
616 1.3 chopps if (err != 0) {
617 1.3 chopps printf("Could not load DMA segment: %d\n", err);
618 1.3 chopps return 1;
619 1.3 chopps }
620 1.3 chopps NTWO_DPRINTF(("DMA map loaded\n"));
621 1.3 chopps
622 1.3 chopps return 0;
623 1.3 chopps }
624 1.3 chopps
625 1.3 chopps /*
626 1.3 chopps * Take the memory allocated with sca_alloc_dma() and divide it among the
627 1.3 chopps * two ports.
628 1.3 chopps */
629 1.3 chopps static void
630 1.3 chopps ntwoc_pci_setup_dma(struct sca_softc *sc)
631 1.3 chopps {
632 1.3 chopps sca_port_t *scp0, *scp1;
633 1.3 chopps u_int8_t *vaddr0;
634 1.3 chopps u_int32_t paddr0;
635 1.3 chopps u_long addroff;
636 1.3 chopps
637 1.3 chopps /*
638 1.3 chopps * remember the physical address to 24 bits only, since the upper
639 1.3 chopps * 8 bits is programed into the device at a different layer.
640 1.3 chopps */
641 1.3 chopps paddr0 = (sc->scu_dmam->dm_segs[0].ds_addr & 0x00ffffff);
642 1.3 chopps vaddr0 = sc->scu_dma_addr;
643 1.3 chopps
644 1.3 chopps /*
645 1.3 chopps * if we have only one port it gets the full range. If we have
646 1.3 chopps * two we need to do a little magic to divide things up.
647 1.3 chopps *
648 1.3 chopps * The descriptors will all end up in the front of the area, while
649 1.3 chopps * the remainder of the buffer is used for transmit and receive
650 1.3 chopps * data.
651 1.3 chopps *
652 1.3 chopps * -------------------- start of memory
653 1.3 chopps * tx desc port 0
654 1.3 chopps * rx desc port 0
655 1.3 chopps * tx desc port 1
656 1.3 chopps * rx desc port 1
657 1.3 chopps * tx buffer port 0
658 1.3 chopps * rx buffer port 0
659 1.3 chopps * tx buffer port 1
660 1.3 chopps * rx buffer port 1
661 1.3 chopps * -------------------- end of memory
662 1.3 chopps */
663 1.3 chopps scp0 = &sc->sc_ports[0];
664 1.3 chopps scp1 = &sc->sc_ports[1];
665 1.3 chopps
666 1.3 chopps scp0->sp_txdesc_p = paddr0;
667 1.3 chopps scp0->sp_txdesc = (sca_desc_t *)vaddr0;
668 1.11 simonb addroff = sizeof(sca_desc_t) * scp0->sp_ntxdesc;
669 1.3 chopps
670 1.3 chopps /*
671 1.3 chopps * point to the range following the tx descriptors, and
672 1.3 chopps * set the rx descriptors there.
673 1.3 chopps */
674 1.3 chopps scp0->sp_rxdesc_p = paddr0 + addroff;
675 1.3 chopps scp0->sp_rxdesc = (sca_desc_t *)(vaddr0 + addroff);
676 1.3 chopps addroff += sizeof(sca_desc_t) * scp0->sp_nrxdesc;
677 1.3 chopps
678 1.3 chopps if (sc->sc_numports == 2) {
679 1.3 chopps scp1->sp_txdesc_p = paddr0 + addroff;
680 1.3 chopps scp1->sp_txdesc = (sca_desc_t *)(vaddr0 + addroff);
681 1.3 chopps addroff += sizeof(sca_desc_t) * scp1->sp_ntxdesc;
682 1.3 chopps
683 1.3 chopps scp1->sp_rxdesc_p = paddr0 + addroff;
684 1.3 chopps scp1->sp_rxdesc = (sca_desc_t *)(vaddr0 + addroff);
685 1.3 chopps addroff += sizeof(sca_desc_t) * scp1->sp_nrxdesc;
686 1.3 chopps }
687 1.3 chopps
688 1.3 chopps /*
689 1.3 chopps * point to the memory following the descriptors, and set the
690 1.3 chopps * transmit buffer there.
691 1.3 chopps */
692 1.3 chopps scp0->sp_txbuf_p = paddr0 + addroff;
693 1.3 chopps scp0->sp_txbuf = vaddr0 + addroff;
694 1.3 chopps addroff += SCA_BSIZE * scp0->sp_ntxdesc;
695 1.3 chopps
696 1.3 chopps /*
697 1.3 chopps * lastly, skip over the transmit buffer and set up pointers into
698 1.3 chopps * the receive buffer.
699 1.3 chopps */
700 1.3 chopps scp0->sp_rxbuf_p = paddr0 + addroff;
701 1.3 chopps scp0->sp_rxbuf = vaddr0 + addroff;
702 1.3 chopps addroff += SCA_BSIZE * scp0->sp_nrxdesc;
703 1.3 chopps
704 1.3 chopps if (sc->sc_numports == 2) {
705 1.3 chopps scp1->sp_txbuf_p = paddr0 + addroff;
706 1.3 chopps scp1->sp_txbuf = vaddr0 + addroff;
707 1.3 chopps addroff += SCA_BSIZE * scp1->sp_ntxdesc;
708 1.3 chopps
709 1.3 chopps scp1->sp_rxbuf_p = paddr0 + addroff;
710 1.3 chopps scp1->sp_rxbuf = vaddr0 + addroff;
711 1.3 chopps addroff += SCA_BSIZE * scp1->sp_nrxdesc;
712 1.3 chopps }
713 1.3 chopps
714 1.3 chopps /*
715 1.3 chopps * as a consistancy check, addroff should be equal to the allocation
716 1.3 chopps * size.
717 1.3 chopps */
718 1.3 chopps if (sc->scu_allocsize != addroff)
719 1.3 chopps printf("ERROR: scu_allocsize != addroff: %lu != %lu\n",
720 1.5 mrg (u_long)sc->scu_allocsize, addroff);
721 1.3 chopps }
722 1.3 chopps
723 1.3 chopps #if __NetBSD_Version__ >= 104160000
724 1.3 chopps static void
725 1.24 cegger ntwoc_pci_config_interrupts(device_t self)
726 1.3 chopps {
727 1.3 chopps struct ntwoc_pci_softc *sc;
728 1.3 chopps
729 1.3 chopps sc = (void *)self;
730 1.3 chopps sca_get_base_clock(&sc->sc_sca);
731 1.3 chopps sca_print_clock_info(&sc->sc_sca);
732 1.3 chopps }
733 1.3 chopps #endif
734