if_cnmac.c revision 1.25 1 1.25 simonb /* $NetBSD: if_cnmac.c,v 1.25 2021/05/27 01:43:32 simonb Exp $ */
2 1.24 simonb
3 1.24 simonb /*
4 1.24 simonb * Copyright (c) 2007 Internet Initiative Japan, Inc.
5 1.24 simonb * All rights reserved.
6 1.24 simonb *
7 1.24 simonb * Redistribution and use in source and binary forms, with or without
8 1.24 simonb * modification, are permitted provided that the following conditions
9 1.24 simonb * are met:
10 1.24 simonb * 1. Redistributions of source code must retain the above copyright
11 1.24 simonb * notice, this list of conditions and the following disclaimer.
12 1.24 simonb * 2. Redistributions in binary form must reproduce the above copyright
13 1.24 simonb * notice, this list of conditions and the following disclaimer in the
14 1.24 simonb * documentation and/or other materials provided with the distribution.
15 1.24 simonb *
16 1.24 simonb * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
17 1.24 simonb * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 1.24 simonb * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 1.24 simonb * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
20 1.24 simonb * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 1.24 simonb * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22 1.24 simonb * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 1.24 simonb * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 1.24 simonb * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 1.24 simonb * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 1.24 simonb * SUCH DAMAGE.
27 1.24 simonb */
28 1.1 hikaru
29 1.1 hikaru #include <sys/cdefs.h>
30 1.25 simonb __KERNEL_RCSID(0, "$NetBSD: if_cnmac.c,v 1.25 2021/05/27 01:43:32 simonb Exp $");
31 1.1 hikaru
32 1.1 hikaru /*
33 1.15 gutterid * If no free send buffer is available, free all the sent buffers and bail out.
34 1.1 hikaru */
35 1.19 simonb #define CNMAC_SEND_QUEUE_CHECK
36 1.1 hikaru
37 1.1 hikaru /* XXX XXX XXX XXX XXX XXX */
38 1.1 hikaru
39 1.1 hikaru #include <sys/param.h>
40 1.1 hikaru #include <sys/systm.h>
41 1.1 hikaru #include <sys/pool.h>
42 1.1 hikaru #include <sys/mbuf.h>
43 1.1 hikaru #include <sys/malloc.h>
44 1.1 hikaru #include <sys/kernel.h>
45 1.1 hikaru #include <sys/socket.h>
46 1.1 hikaru #include <sys/ioctl.h>
47 1.1 hikaru #include <sys/errno.h>
48 1.1 hikaru #include <sys/device.h>
49 1.1 hikaru #include <sys/queue.h>
50 1.1 hikaru #include <sys/conf.h>
51 1.1 hikaru #include <sys/sysctl.h>
52 1.1 hikaru #include <sys/syslog.h>
53 1.1 hikaru
54 1.1 hikaru #include <net/if.h>
55 1.1 hikaru #include <net/if_media.h>
56 1.1 hikaru #include <net/if_ether.h>
57 1.1 hikaru #include <net/route.h>
58 1.1 hikaru #include <net/bpf.h>
59 1.1 hikaru
60 1.1 hikaru #include <netinet/in.h>
61 1.1 hikaru #include <netinet/in_systm.h>
62 1.1 hikaru #include <netinet/in_var.h>
63 1.1 hikaru #include <netinet/ip.h>
64 1.1 hikaru
65 1.1 hikaru #include <sys/bus.h>
66 1.1 hikaru #include <machine/intr.h>
67 1.1 hikaru #include <machine/endian.h>
68 1.1 hikaru #include <machine/locore.h>
69 1.1 hikaru
70 1.1 hikaru #include <dev/mii/mii.h>
71 1.1 hikaru #include <dev/mii/miivar.h>
72 1.1 hikaru
73 1.1 hikaru #include <mips/cpuregs.h>
74 1.1 hikaru
75 1.22 simonb #include <mips/cavium/octeonreg.h>
76 1.24 simonb #include <mips/cavium/octeonvar.h>
77 1.22 simonb #include <mips/cavium/include/iobusvar.h>
78 1.22 simonb
79 1.1 hikaru #include <mips/cavium/dev/octeon_ciureg.h>
80 1.24 simonb #include <mips/cavium/dev/octeon_faureg.h>
81 1.24 simonb #include <mips/cavium/dev/octeon_fpareg.h>
82 1.1 hikaru #include <mips/cavium/dev/octeon_gmxreg.h>
83 1.1 hikaru #include <mips/cavium/dev/octeon_pipreg.h>
84 1.1 hikaru #include <mips/cavium/dev/octeon_powreg.h>
85 1.24 simonb #include <mips/cavium/dev/octeon_fauvar.h>
86 1.1 hikaru #include <mips/cavium/dev/octeon_fpavar.h>
87 1.1 hikaru #include <mips/cavium/dev/octeon_gmxvar.h>
88 1.1 hikaru #include <mips/cavium/dev/octeon_ipdvar.h>
89 1.1 hikaru #include <mips/cavium/dev/octeon_pipvar.h>
90 1.1 hikaru #include <mips/cavium/dev/octeon_pkovar.h>
91 1.24 simonb #include <mips/cavium/dev/octeon_powvar.h>
92 1.1 hikaru #include <mips/cavium/dev/octeon_smivar.h>
93 1.24 simonb
94 1.1 hikaru #include <mips/cavium/dev/if_cnmacvar.h>
95 1.1 hikaru
96 1.1 hikaru /*
97 1.1 hikaru * Set the PKO to think command buffers are an odd length. This makes it so we
98 1.1 hikaru * never have to divide a comamnd across two buffers.
99 1.1 hikaru */
100 1.1 hikaru #define OCTEON_POOL_NWORDS_CMD \
101 1.1 hikaru (((uint32_t)OCTEON_POOL_SIZE_CMD / sizeof(uint64_t)) - 1)
102 1.1 hikaru #define FPA_COMMAND_BUFFER_POOL_NWORDS OCTEON_POOL_NWORDS_CMD /* XXX */
103 1.1 hikaru
104 1.19 simonb static void cnmac_buf_init(struct cnmac_softc *);
105 1.1 hikaru
106 1.19 simonb static int cnmac_match(device_t, struct cfdata *, void *);
107 1.19 simonb static void cnmac_attach(device_t, device_t, void *);
108 1.19 simonb static void cnmac_pip_init(struct cnmac_softc *);
109 1.19 simonb static void cnmac_ipd_init(struct cnmac_softc *);
110 1.19 simonb static void cnmac_pko_init(struct cnmac_softc *);
111 1.19 simonb
112 1.19 simonb static void cnmac_board_mac_addr(uint8_t *, size_t, struct cnmac_softc *);
113 1.19 simonb
114 1.19 simonb static int cnmac_mii_readreg(device_t, int, int, uint16_t *);
115 1.19 simonb static int cnmac_mii_writereg(device_t, int, int, uint16_t);
116 1.19 simonb static void cnmac_mii_statchg(struct ifnet *);
117 1.19 simonb
118 1.19 simonb static int cnmac_mediainit(struct cnmac_softc *);
119 1.19 simonb static void cnmac_mediastatus(struct ifnet *, struct ifmediareq *);
120 1.19 simonb
121 1.19 simonb static inline void cnmac_send_queue_flush_prefetch(struct cnmac_softc *);
122 1.19 simonb static inline void cnmac_send_queue_flush_fetch(struct cnmac_softc *);
123 1.19 simonb static inline void cnmac_send_queue_flush(struct cnmac_softc *);
124 1.19 simonb static inline void cnmac_send_queue_flush_sync(struct cnmac_softc *);
125 1.19 simonb static inline int cnmac_send_queue_is_full(struct cnmac_softc *);
126 1.19 simonb static inline void cnmac_send_queue_add(struct cnmac_softc *, struct mbuf *,
127 1.19 simonb uint64_t *);
128 1.19 simonb static inline void cnmac_send_queue_del(struct cnmac_softc *, struct mbuf **,
129 1.19 simonb uint64_t **);
130 1.24 simonb static inline int cnmac_buf_free_work(struct cnmac_softc *, uint64_t *);
131 1.24 simonb static inline void cnmac_buf_ext_free(struct mbuf *, void *, size_t, void *);
132 1.1 hikaru
133 1.19 simonb static int cnmac_ioctl(struct ifnet *, u_long, void *);
134 1.19 simonb static void cnmac_watchdog(struct ifnet *);
135 1.19 simonb static int cnmac_init(struct ifnet *);
136 1.19 simonb static void cnmac_stop(struct ifnet *, int);
137 1.19 simonb static void cnmac_start(struct ifnet *);
138 1.19 simonb
139 1.19 simonb static inline int cnmac_send_cmd(struct cnmac_softc *, uint64_t, uint64_t,
140 1.19 simonb int *);
141 1.19 simonb static inline uint64_t cnmac_send_makecmd_w1(int, paddr_t);
142 1.24 simonb static inline uint64_t cnmac_send_makecmd_w0(uint64_t, uint64_t, size_t, int,
143 1.24 simonb int);
144 1.19 simonb static inline int cnmac_send_makecmd_gbuf(struct cnmac_softc *, struct mbuf *,
145 1.19 simonb uint64_t *, int *);
146 1.19 simonb static inline int cnmac_send_makecmd(struct cnmac_softc *, struct mbuf *,
147 1.19 simonb uint64_t *, uint64_t *, uint64_t *);
148 1.19 simonb static inline int cnmac_send_buf(struct cnmac_softc *, struct mbuf *,
149 1.19 simonb uint64_t *, int *);
150 1.19 simonb static inline int cnmac_send(struct cnmac_softc *, struct mbuf *, int *);
151 1.19 simonb
152 1.19 simonb static int cnmac_reset(struct cnmac_softc *);
153 1.19 simonb static int cnmac_configure(struct cnmac_softc *);
154 1.19 simonb static int cnmac_configure_common(struct cnmac_softc *);
155 1.19 simonb
156 1.19 simonb static void cnmac_tick_free(void *);
157 1.19 simonb static void cnmac_tick_misc(void *);
158 1.19 simonb
159 1.19 simonb static inline int cnmac_recv_mbuf(struct cnmac_softc *, uint64_t *,
160 1.19 simonb struct mbuf **);
161 1.19 simonb static inline int cnmac_recv_check(struct cnmac_softc *, uint64_t);
162 1.19 simonb static inline int cnmac_recv(struct cnmac_softc *, uint64_t *);
163 1.24 simonb static int cnmac_intr(void *);
164 1.1 hikaru
165 1.24 simonb /* device parameters */
166 1.19 simonb int cnmac_param_pko_cmd_w0_n2 = 1;
167 1.1 hikaru
168 1.19 simonb CFATTACH_DECL_NEW(cnmac, sizeof(struct cnmac_softc),
169 1.19 simonb cnmac_match, cnmac_attach, NULL, NULL);
170 1.1 hikaru
171 1.1 hikaru /* ---- buffer management */
172 1.1 hikaru
173 1.19 simonb static const struct cnmac_pool_param {
174 1.1 hikaru int poolno;
175 1.1 hikaru size_t size;
176 1.1 hikaru size_t nelems;
177 1.19 simonb } cnmac_pool_params[] = {
178 1.1 hikaru #define _ENTRY(x) { OCTEON_POOL_NO_##x, OCTEON_POOL_SIZE_##x, OCTEON_POOL_NELEMS_##x }
179 1.1 hikaru _ENTRY(PKT),
180 1.1 hikaru _ENTRY(WQE),
181 1.1 hikaru _ENTRY(CMD),
182 1.1 hikaru _ENTRY(SG)
183 1.1 hikaru #undef _ENTRY
184 1.1 hikaru };
185 1.24 simonb struct octfpa_buf *cnmac_pools[FPA_NPOOLS];
186 1.19 simonb #define cnmac_fb_pkt cnmac_pools[OCTEON_POOL_NO_PKT]
187 1.19 simonb #define cnmac_fb_wqe cnmac_pools[OCTEON_POOL_NO_WQE]
188 1.19 simonb #define cnmac_fb_cmd cnmac_pools[OCTEON_POOL_NO_CMD]
189 1.19 simonb #define cnmac_fb_sg cnmac_pools[OCTEON_POOL_NO_SG]
190 1.1 hikaru
191 1.24 simonb static int cnmac_npowgroups = 0;
192 1.24 simonb
193 1.1 hikaru static void
194 1.19 simonb cnmac_buf_init(struct cnmac_softc *sc)
195 1.1 hikaru {
196 1.1 hikaru static int once;
197 1.1 hikaru int i;
198 1.19 simonb const struct cnmac_pool_param *pp;
199 1.19 simonb struct octfpa_buf *fb;
200 1.1 hikaru
201 1.1 hikaru if (once == 1)
202 1.1 hikaru return;
203 1.1 hikaru once = 1;
204 1.1 hikaru
205 1.19 simonb for (i = 0; i < (int)__arraycount(cnmac_pool_params); i++) {
206 1.19 simonb pp = &cnmac_pool_params[i];
207 1.19 simonb octfpa_buf_init(pp->poolno, pp->size, pp->nelems, &fb);
208 1.19 simonb cnmac_pools[i] = fb;
209 1.1 hikaru }
210 1.1 hikaru }
211 1.1 hikaru
212 1.1 hikaru /* ---- autoconf */
213 1.1 hikaru
214 1.1 hikaru static int
215 1.19 simonb cnmac_match(device_t parent, struct cfdata *match, void *aux)
216 1.1 hikaru {
217 1.19 simonb struct octgmx_attach_args *ga = aux;
218 1.1 hikaru
219 1.1 hikaru if (strcmp(match->cf_name, ga->ga_name) != 0) {
220 1.1 hikaru return 0;
221 1.1 hikaru }
222 1.1 hikaru return 1;
223 1.1 hikaru }
224 1.1 hikaru
225 1.1 hikaru static void
226 1.19 simonb cnmac_attach(device_t parent, device_t self, void *aux)
227 1.1 hikaru {
228 1.19 simonb struct cnmac_softc *sc = device_private(self);
229 1.19 simonb struct octgmx_attach_args *ga = aux;
230 1.1 hikaru struct ifnet *ifp = &sc->sc_ethercom.ec_if;
231 1.18 mrg prop_dictionary_t dict;
232 1.18 mrg prop_object_t clk;
233 1.1 hikaru uint8_t enaddr[ETHER_ADDR_LEN];
234 1.1 hikaru
235 1.24 simonb if (cnmac_npowgroups >= OCTEON_POW_GROUP_MAX) {
236 1.24 simonb printf(": out of POW groups\n");
237 1.24 simonb }
238 1.24 simonb
239 1.1 hikaru sc->sc_dev = self;
240 1.1 hikaru sc->sc_regt = ga->ga_regt;
241 1.1 hikaru sc->sc_port = ga->ga_portno;
242 1.1 hikaru sc->sc_port_type = ga->ga_port_type;
243 1.1 hikaru sc->sc_gmx = ga->ga_gmx;
244 1.1 hikaru sc->sc_gmx_port = ga->ga_gmx_port;
245 1.24 simonb sc->sc_smi = ga->ga_smi;
246 1.24 simonb sc->sc_powgroup = cnmac_npowgroups++;
247 1.1 hikaru
248 1.20 simonb if (sc->sc_port >= CVMSEG_LM_ETHER_COUNT) {
249 1.20 simonb /*
250 1.20 simonb * If we got here, increase CVMSEG_LM_ETHER_COUNT
251 1.20 simonb * in octeonvar.h .
252 1.20 simonb */
253 1.20 simonb printf("%s: ERROR out of CVMSEG LM buffers\n",
254 1.20 simonb device_xname(self));
255 1.20 simonb return;
256 1.20 simonb }
257 1.20 simonb
258 1.1 hikaru sc->sc_init_flag = 0;
259 1.1 hikaru /*
260 1.1 hikaru * XXXUEBAYASI
261 1.1 hikaru * Setting PIP_IP_OFFSET[OFFSET] to 8 causes panic ... why???
262 1.1 hikaru */
263 1.1 hikaru sc->sc_ip_offset = 0/* XXX */;
264 1.1 hikaru
265 1.1 hikaru if (MIPS_PRID_IMPL(mips_options.mips_cpu_id) <= MIPS_CN30XX) {
266 1.19 simonb SET(sc->sc_quirks, CNMAC_QUIRKS_NO_PRE_ALIGN);
267 1.19 simonb SET(sc->sc_quirks, CNMAC_QUIRKS_NO_RX_INBND);
268 1.1 hikaru }
269 1.1 hikaru
270 1.19 simonb cnmac_board_mac_addr(enaddr, sizeof(enaddr), sc);
271 1.24 simonb printf("%s: Ethernet address %s\n", device_xname(self),
272 1.1 hikaru ether_sprintf(enaddr));
273 1.1 hikaru
274 1.1 hikaru SIMPLEQ_INIT(&sc->sc_sendq);
275 1.1 hikaru sc->sc_soft_req_thresh = 15/* XXX */;
276 1.1 hikaru sc->sc_ext_callback_cnt = 0;
277 1.1 hikaru
278 1.19 simonb octgmx_stats_init(sc->sc_gmx_port);
279 1.1 hikaru
280 1.1 hikaru callout_init(&sc->sc_tick_misc_ch, 0);
281 1.25 simonb callout_setfunc(&sc->sc_tick_misc_ch, cnmac_tick_misc, sc);
282 1.25 simonb
283 1.1 hikaru callout_init(&sc->sc_tick_free_ch, 0);
284 1.25 simonb callout_setfunc(&sc->sc_tick_free_ch, cnmac_tick_free, sc);
285 1.1 hikaru
286 1.24 simonb const int dv_unit = device_unit(self);
287 1.19 simonb octfau_op_init(&sc->sc_fau_done,
288 1.24 simonb OCTEON_CVMSEG_ETHER_OFFSET(dv_unit, csm_ether_fau_done),
289 1.24 simonb OCT_FAU_REG_ADDR_END - (8 * (dv_unit + 1))/* XXX */);
290 1.19 simonb octfau_op_set_8(&sc->sc_fau_done, 0);
291 1.1 hikaru
292 1.19 simonb cnmac_pip_init(sc);
293 1.19 simonb cnmac_ipd_init(sc);
294 1.19 simonb cnmac_pko_init(sc);
295 1.24 simonb
296 1.24 simonb cnmac_configure_common(sc);
297 1.1 hikaru
298 1.1 hikaru sc->sc_gmx_port->sc_ipd = sc->sc_ipd;
299 1.1 hikaru sc->sc_gmx_port->sc_port_mii = &sc->sc_mii;
300 1.1 hikaru sc->sc_gmx_port->sc_port_ec = &sc->sc_ethercom;
301 1.1 hikaru /* XXX */
302 1.1 hikaru sc->sc_gmx_port->sc_quirks = sc->sc_quirks;
303 1.1 hikaru
304 1.1 hikaru /* XXX */
305 1.19 simonb sc->sc_pow = &octpow_softc;
306 1.1 hikaru
307 1.19 simonb cnmac_mediainit(sc);
308 1.1 hikaru
309 1.24 simonb strncpy(ifp->if_xname, device_xname(self), sizeof(ifp->if_xname));
310 1.1 hikaru ifp->if_softc = sc;
311 1.1 hikaru ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
312 1.19 simonb ifp->if_ioctl = cnmac_ioctl;
313 1.19 simonb ifp->if_start = cnmac_start;
314 1.19 simonb ifp->if_watchdog = cnmac_watchdog;
315 1.19 simonb ifp->if_init = cnmac_init;
316 1.19 simonb ifp->if_stop = cnmac_stop;
317 1.10 riastrad IFQ_SET_MAXLEN(&ifp->if_snd, uimax(GATHER_QUEUE_SIZE, IFQ_MAXLEN));
318 1.1 hikaru IFQ_SET_READY(&ifp->if_snd);
319 1.1 hikaru
320 1.24 simonb
321 1.1 hikaru ifp->if_capabilities =
322 1.24 simonb #if 0 /* XXX: no tx checksum yet */
323 1.24 simonb IFCAP_CSUM_IPv4_Tx | IFCAP_CSUM_IPv4_Rx |
324 1.24 simonb IFCAP_CSUM_TCPv4_Tx | IFCAP_CSUM_TCPv4_Rx |
325 1.24 simonb IFCAP_CSUM_UDPv4_Tx | IFCAP_CSUM_UDPv4_Rx |
326 1.24 simonb IFCAP_CSUM_TCPv6_Tx | IFCAP_CSUM_TCPv6_Rx |
327 1.24 simonb IFCAP_CSUM_UDPv6_Tx | IFCAP_CSUM_UDPv6_Rx;
328 1.24 simonb #else
329 1.12 msaitoh IFCAP_CSUM_IPv4_Rx | IFCAP_CSUM_TCPv4_Rx | IFCAP_CSUM_UDPv4_Rx |
330 1.12 msaitoh IFCAP_CSUM_TCPv6_Rx | IFCAP_CSUM_UDPv6_Rx;
331 1.24 simonb #endif
332 1.1 hikaru
333 1.7 jmcneill /* 802.1Q VLAN-sized frames are supported */
334 1.7 jmcneill sc->sc_ethercom.ec_capabilities |= ETHERCAP_VLAN_MTU;
335 1.7 jmcneill
336 1.19 simonb octgmx_set_mac_addr(sc->sc_gmx_port, enaddr);
337 1.1 hikaru
338 1.1 hikaru if_attach(ifp);
339 1.1 hikaru ether_ifattach(ifp, enaddr);
340 1.19 simonb octgmx_set_filter(sc->sc_gmx_port);
341 1.1 hikaru
342 1.1 hikaru #if 1
343 1.19 simonb cnmac_buf_init(sc);
344 1.1 hikaru #endif
345 1.1 hikaru
346 1.24 simonb sc->sc_ih = octeon_intr_establish(POW_WORKQ_IRQ(sc->sc_powgroup),
347 1.24 simonb IPL_NET, cnmac_intr, sc);
348 1.24 simonb if (sc->sc_ih == NULL)
349 1.24 simonb panic("%s: could not set up interrupt", device_xname(self));
350 1.1 hikaru
351 1.18 mrg dict = device_properties(sc->sc_gmx->sc_dev);
352 1.18 mrg
353 1.18 mrg clk = prop_dictionary_get(dict, "rgmii-tx");
354 1.24 simonb if (clk)
355 1.24 simonb sc->sc_gmx_port->sc_clk_tx_setting =
356 1.24 simonb prop_number_signed_value(clk);
357 1.18 mrg clk = prop_dictionary_get(dict, "rgmii-rx");
358 1.24 simonb if (clk)
359 1.24 simonb sc->sc_gmx_port->sc_clk_rx_setting =
360 1.24 simonb prop_number_signed_value(clk);
361 1.1 hikaru }
362 1.1 hikaru
363 1.1 hikaru /* ---- submodules */
364 1.1 hikaru
365 1.1 hikaru /* XXX */
366 1.1 hikaru static void
367 1.19 simonb cnmac_pip_init(struct cnmac_softc *sc)
368 1.1 hikaru {
369 1.19 simonb struct octpip_attach_args pip_aa;
370 1.1 hikaru
371 1.1 hikaru pip_aa.aa_port = sc->sc_port;
372 1.1 hikaru pip_aa.aa_regt = sc->sc_regt;
373 1.1 hikaru pip_aa.aa_tag_type = POW_TAG_TYPE_ORDERED/* XXX */;
374 1.24 simonb pip_aa.aa_receive_group = sc->sc_powgroup;
375 1.1 hikaru pip_aa.aa_ip_offset = sc->sc_ip_offset;
376 1.19 simonb octpip_init(&pip_aa, &sc->sc_pip);
377 1.24 simonb octpip_port_config(sc->sc_pip);
378 1.1 hikaru }
379 1.1 hikaru
380 1.1 hikaru /* XXX */
381 1.1 hikaru static void
382 1.19 simonb cnmac_ipd_init(struct cnmac_softc *sc)
383 1.1 hikaru {
384 1.19 simonb struct octipd_attach_args ipd_aa;
385 1.1 hikaru
386 1.1 hikaru ipd_aa.aa_port = sc->sc_port;
387 1.1 hikaru ipd_aa.aa_regt = sc->sc_regt;
388 1.1 hikaru ipd_aa.aa_first_mbuff_skip = 184/* XXX */;
389 1.1 hikaru ipd_aa.aa_not_first_mbuff_skip = 0/* XXX */;
390 1.19 simonb octipd_init(&ipd_aa, &sc->sc_ipd);
391 1.1 hikaru }
392 1.1 hikaru
393 1.1 hikaru /* XXX */
394 1.1 hikaru static void
395 1.19 simonb cnmac_pko_init(struct cnmac_softc *sc)
396 1.1 hikaru {
397 1.19 simonb struct octpko_attach_args pko_aa;
398 1.1 hikaru
399 1.1 hikaru pko_aa.aa_port = sc->sc_port;
400 1.1 hikaru pko_aa.aa_regt = sc->sc_regt;
401 1.1 hikaru pko_aa.aa_cmdptr = &sc->sc_cmdptr;
402 1.1 hikaru pko_aa.aa_cmd_buf_pool = OCTEON_POOL_NO_CMD;
403 1.1 hikaru pko_aa.aa_cmd_buf_size = OCTEON_POOL_NWORDS_CMD;
404 1.19 simonb octpko_init(&pko_aa, &sc->sc_pko);
405 1.1 hikaru }
406 1.1 hikaru
407 1.1 hikaru /* ---- XXX */
408 1.1 hikaru
409 1.1 hikaru #define ADDR2UINT64(u, a) \
410 1.1 hikaru do { \
411 1.1 hikaru u = \
412 1.1 hikaru (((uint64_t)a[0] << 40) | ((uint64_t)a[1] << 32) | \
413 1.1 hikaru ((uint64_t)a[2] << 24) | ((uint64_t)a[3] << 16) | \
414 1.12 msaitoh ((uint64_t)a[4] << 8) | ((uint64_t)a[5] << 0)); \
415 1.1 hikaru } while (0)
416 1.1 hikaru #define UINT642ADDR(a, u) \
417 1.1 hikaru do { \
418 1.1 hikaru a[0] = (uint8_t)((u) >> 40); a[1] = (uint8_t)((u) >> 32); \
419 1.1 hikaru a[2] = (uint8_t)((u) >> 24); a[3] = (uint8_t)((u) >> 16); \
420 1.12 msaitoh a[4] = (uint8_t)((u) >> 8); a[5] = (uint8_t)((u) >> 0); \
421 1.1 hikaru } while (0)
422 1.1 hikaru
423 1.1 hikaru static void
424 1.19 simonb cnmac_board_mac_addr(uint8_t *enaddr, size_t size, struct cnmac_softc *sc)
425 1.1 hikaru {
426 1.1 hikaru prop_dictionary_t dict;
427 1.1 hikaru prop_data_t ea;
428 1.1 hikaru
429 1.1 hikaru dict = device_properties(sc->sc_dev);
430 1.1 hikaru KASSERT(dict != NULL);
431 1.1 hikaru ea = prop_dictionary_get(dict, "mac-address");
432 1.1 hikaru KASSERT(ea != NULL);
433 1.21 simonb memcpy(enaddr, prop_data_value(ea), size);
434 1.1 hikaru }
435 1.1 hikaru
436 1.1 hikaru /* ---- media */
437 1.1 hikaru
438 1.1 hikaru static int
439 1.19 simonb cnmac_mii_readreg(device_t self, int phy_addr, int reg, uint16_t *val)
440 1.1 hikaru {
441 1.19 simonb struct cnmac_softc *sc = device_private(self);
442 1.1 hikaru
443 1.19 simonb return octsmi_read(sc->sc_smi, phy_addr, reg, val);
444 1.1 hikaru }
445 1.1 hikaru
446 1.11 msaitoh static int
447 1.19 simonb cnmac_mii_writereg(device_t self, int phy_addr, int reg, uint16_t val)
448 1.1 hikaru {
449 1.19 simonb struct cnmac_softc *sc = device_private(self);
450 1.1 hikaru
451 1.19 simonb return octsmi_write(sc->sc_smi, phy_addr, reg, val);
452 1.1 hikaru }
453 1.1 hikaru
454 1.1 hikaru static void
455 1.19 simonb cnmac_mii_statchg(struct ifnet *ifp)
456 1.1 hikaru {
457 1.19 simonb struct cnmac_softc *sc = ifp->if_softc;
458 1.1 hikaru
459 1.19 simonb octpko_port_enable(sc->sc_pko, 0);
460 1.19 simonb octgmx_port_enable(sc->sc_gmx_port, 0);
461 1.1 hikaru
462 1.19 simonb cnmac_reset(sc);
463 1.1 hikaru
464 1.1 hikaru if (ISSET(ifp->if_flags, IFF_RUNNING))
465 1.19 simonb octgmx_set_filter(sc->sc_gmx_port);
466 1.1 hikaru
467 1.19 simonb octpko_port_enable(sc->sc_pko, 1);
468 1.19 simonb octgmx_port_enable(sc->sc_gmx_port, 1);
469 1.1 hikaru }
470 1.1 hikaru
471 1.1 hikaru static int
472 1.19 simonb cnmac_mediainit(struct cnmac_softc *sc)
473 1.1 hikaru {
474 1.1 hikaru struct ifnet *ifp = &sc->sc_ethercom.ec_if;
475 1.13 msaitoh struct mii_data *mii = &sc->sc_mii;
476 1.1 hikaru prop_object_t phy;
477 1.1 hikaru
478 1.13 msaitoh mii->mii_ifp = ifp;
479 1.19 simonb mii->mii_readreg = cnmac_mii_readreg;
480 1.19 simonb mii->mii_writereg = cnmac_mii_writereg;
481 1.19 simonb mii->mii_statchg = cnmac_mii_statchg;
482 1.13 msaitoh sc->sc_ethercom.ec_mii = mii;
483 1.13 msaitoh
484 1.13 msaitoh /* Initialize ifmedia structures. */
485 1.19 simonb ifmedia_init(&mii->mii_media, 0, ether_mediachange, cnmac_mediastatus);
486 1.1 hikaru
487 1.1 hikaru phy = prop_dictionary_get(device_properties(sc->sc_dev), "phy-addr");
488 1.1 hikaru KASSERT(phy != NULL);
489 1.1 hikaru
490 1.21 simonb mii_attach(sc->sc_dev, mii, 0xffffffff, prop_number_signed_value(phy),
491 1.1 hikaru MII_OFFSET_ANY, MIIF_DOPAUSE);
492 1.1 hikaru
493 1.1 hikaru /* XXX XXX XXX */
494 1.13 msaitoh if (LIST_FIRST(&mii->mii_phys) != NULL) {
495 1.1 hikaru /* XXX XXX XXX */
496 1.13 msaitoh ifmedia_set(&mii->mii_media, IFM_ETHER | IFM_AUTO);
497 1.1 hikaru /* XXX XXX XXX */
498 1.1 hikaru } else {
499 1.1 hikaru /* XXX XXX XXX */
500 1.13 msaitoh ifmedia_add(&mii->mii_media, IFM_ETHER | IFM_NONE,
501 1.1 hikaru MII_MEDIA_NONE, NULL);
502 1.1 hikaru /* XXX XXX XXX */
503 1.13 msaitoh ifmedia_set(&mii->mii_media, IFM_ETHER | IFM_NONE);
504 1.1 hikaru /* XXX XXX XXX */
505 1.1 hikaru }
506 1.1 hikaru /* XXX XXX XXX */
507 1.1 hikaru
508 1.1 hikaru return 0;
509 1.1 hikaru }
510 1.1 hikaru
511 1.1 hikaru static void
512 1.19 simonb cnmac_mediastatus(struct ifnet *ifp, struct ifmediareq *ifmr)
513 1.1 hikaru {
514 1.19 simonb struct cnmac_softc *sc = ifp->if_softc;
515 1.1 hikaru
516 1.1 hikaru mii_pollstat(&sc->sc_mii);
517 1.1 hikaru
518 1.1 hikaru ifmr->ifm_status = sc->sc_mii.mii_media_status;
519 1.1 hikaru ifmr->ifm_active = sc->sc_mii.mii_media_active;
520 1.1 hikaru ifmr->ifm_active = (sc->sc_mii.mii_media_active & ~IFM_ETH_FMASK) |
521 1.1 hikaru sc->sc_gmx_port->sc_port_flowflags;
522 1.1 hikaru }
523 1.1 hikaru
524 1.1 hikaru /* ---- send buffer garbage collection */
525 1.1 hikaru
526 1.1 hikaru static inline void
527 1.19 simonb cnmac_send_queue_flush_prefetch(struct cnmac_softc *sc)
528 1.1 hikaru {
529 1.23 simonb
530 1.23 simonb KASSERT(sc->sc_prefetch == 0);
531 1.19 simonb octfau_op_inc_fetch_8(&sc->sc_fau_done, 0);
532 1.1 hikaru sc->sc_prefetch = 1;
533 1.1 hikaru }
534 1.1 hikaru
535 1.1 hikaru static inline void
536 1.19 simonb cnmac_send_queue_flush_fetch(struct cnmac_softc *sc)
537 1.1 hikaru {
538 1.23 simonb
539 1.23 simonb KASSERT(sc->sc_prefetch == 1);
540 1.19 simonb sc->sc_hard_done_cnt = octfau_op_inc_read_8(&sc->sc_fau_done);
541 1.23 simonb KASSERT(sc->sc_hard_done_cnt <= 0);
542 1.1 hikaru sc->sc_prefetch = 0;
543 1.1 hikaru }
544 1.1 hikaru
545 1.1 hikaru static inline void
546 1.19 simonb cnmac_send_queue_flush(struct cnmac_softc *sc)
547 1.1 hikaru {
548 1.8 jmcneill struct ifnet *ifp = &sc->sc_ethercom.ec_if;
549 1.1 hikaru const int64_t sent_count = sc->sc_hard_done_cnt;
550 1.1 hikaru int i;
551 1.1 hikaru
552 1.23 simonb KASSERT(sc->sc_flush == 0);
553 1.23 simonb KASSERT(sent_count <= 0);
554 1.1 hikaru
555 1.1 hikaru for (i = 0; i < 0 - sent_count; i++) {
556 1.1 hikaru struct mbuf *m;
557 1.1 hikaru uint64_t *gbuf;
558 1.1 hikaru
559 1.19 simonb cnmac_send_queue_del(sc, &m, &gbuf);
560 1.1 hikaru
561 1.19 simonb octfpa_buf_put(cnmac_fb_sg, gbuf);
562 1.1 hikaru
563 1.1 hikaru m_freem(m);
564 1.8 jmcneill
565 1.8 jmcneill CLR(ifp->if_flags, IFF_OACTIVE);
566 1.1 hikaru }
567 1.1 hikaru
568 1.19 simonb octfau_op_inc_fetch_8(&sc->sc_fau_done, i);
569 1.1 hikaru sc->sc_flush = i;
570 1.1 hikaru }
571 1.1 hikaru
572 1.1 hikaru static inline void
573 1.19 simonb cnmac_send_queue_flush_sync(struct cnmac_softc *sc)
574 1.1 hikaru {
575 1.1 hikaru if (sc->sc_flush == 0)
576 1.1 hikaru return;
577 1.1 hikaru
578 1.23 simonb KASSERT(sc->sc_flush > 0);
579 1.1 hikaru
580 1.1 hikaru /* XXX XXX XXX */
581 1.19 simonb octfau_op_inc_read_8(&sc->sc_fau_done);
582 1.1 hikaru sc->sc_soft_req_cnt -= sc->sc_flush;
583 1.23 simonb KASSERT(sc->sc_soft_req_cnt >= 0);
584 1.1 hikaru /* XXX XXX XXX */
585 1.1 hikaru
586 1.1 hikaru sc->sc_flush = 0;
587 1.1 hikaru }
588 1.1 hikaru
589 1.1 hikaru static inline int
590 1.19 simonb cnmac_send_queue_is_full(struct cnmac_softc *sc)
591 1.1 hikaru {
592 1.19 simonb #ifdef CNMAC_SEND_QUEUE_CHECK
593 1.1 hikaru int64_t nofree_cnt;
594 1.1 hikaru
595 1.12 msaitoh nofree_cnt = sc->sc_soft_req_cnt + sc->sc_hard_done_cnt;
596 1.1 hikaru
597 1.1 hikaru if (__predict_false(nofree_cnt == GATHER_QUEUE_SIZE - 1)) {
598 1.19 simonb cnmac_send_queue_flush(sc);
599 1.19 simonb cnmac_send_queue_flush_sync(sc);
600 1.1 hikaru return 1;
601 1.1 hikaru }
602 1.1 hikaru
603 1.1 hikaru #endif
604 1.1 hikaru return 0;
605 1.1 hikaru }
606 1.1 hikaru
607 1.1 hikaru /*
608 1.1 hikaru * (Ab)use m_nextpkt and m_paddr to maintain mbuf chain and pointer to gather
609 1.1 hikaru * buffer. Other mbuf members may be used by m_freem(), so don't touch them!
610 1.1 hikaru */
611 1.1 hikaru
612 1.1 hikaru struct _send_queue_entry {
613 1.1 hikaru union {
614 1.1 hikaru struct mbuf _sqe_s_mbuf;
615 1.1 hikaru struct {
616 1.1 hikaru char _sqe_s_entry_pad[offsetof(struct mbuf, m_nextpkt)];
617 1.1 hikaru SIMPLEQ_ENTRY(_send_queue_entry) _sqe_s_entry_entry;
618 1.1 hikaru } _sqe_s_entry;
619 1.1 hikaru struct {
620 1.1 hikaru char _sqe_s_gbuf_pad[offsetof(struct mbuf, m_paddr)];
621 1.1 hikaru uint64_t *_sqe_s_gbuf_gbuf;
622 1.1 hikaru } _sqe_s_gbuf;
623 1.1 hikaru } _sqe_u;
624 1.1 hikaru #define _sqe_entry _sqe_u._sqe_s_entry._sqe_s_entry_entry
625 1.1 hikaru #define _sqe_gbuf _sqe_u._sqe_s_gbuf._sqe_s_gbuf_gbuf
626 1.1 hikaru };
627 1.1 hikaru
628 1.1 hikaru static inline void
629 1.19 simonb cnmac_send_queue_add(struct cnmac_softc *sc, struct mbuf *m,
630 1.1 hikaru uint64_t *gbuf)
631 1.1 hikaru {
632 1.1 hikaru struct _send_queue_entry *sqe = (struct _send_queue_entry *)m;
633 1.1 hikaru
634 1.1 hikaru sqe->_sqe_gbuf = gbuf;
635 1.1 hikaru SIMPLEQ_INSERT_TAIL(&sc->sc_sendq, sqe, _sqe_entry);
636 1.1 hikaru
637 1.1 hikaru if ((m->m_flags & M_EXT) && m->m_ext.ext_free != NULL)
638 1.1 hikaru sc->sc_ext_callback_cnt++;
639 1.1 hikaru }
640 1.1 hikaru
641 1.1 hikaru static inline void
642 1.19 simonb cnmac_send_queue_del(struct cnmac_softc *sc, struct mbuf **rm, uint64_t **rgbuf)
643 1.1 hikaru {
644 1.1 hikaru struct _send_queue_entry *sqe;
645 1.1 hikaru
646 1.1 hikaru sqe = SIMPLEQ_FIRST(&sc->sc_sendq);
647 1.23 simonb KASSERT(sqe != NULL);
648 1.1 hikaru SIMPLEQ_REMOVE_HEAD(&sc->sc_sendq, _sqe_entry);
649 1.1 hikaru
650 1.1 hikaru *rm = (void *)sqe;
651 1.1 hikaru *rgbuf = sqe->_sqe_gbuf;
652 1.1 hikaru
653 1.1 hikaru if (((*rm)->m_flags & M_EXT) && (*rm)->m_ext.ext_free != NULL) {
654 1.1 hikaru sc->sc_ext_callback_cnt--;
655 1.23 simonb KASSERT(sc->sc_ext_callback_cnt >= 0);
656 1.1 hikaru }
657 1.1 hikaru }
658 1.1 hikaru
659 1.1 hikaru static inline int
660 1.24 simonb cnmac_buf_free_work(struct cnmac_softc *sc, uint64_t *work)
661 1.1 hikaru {
662 1.24 simonb
663 1.1 hikaru /* XXX when jumbo frame */
664 1.24 simonb if (ISSET(work[2], PIP_WQE_WORD2_IP_BUFS)) {
665 1.1 hikaru paddr_t addr;
666 1.1 hikaru paddr_t start_buffer;
667 1.1 hikaru
668 1.1 hikaru addr = work[3] & PIP_WQE_WORD3_ADDR;
669 1.1 hikaru start_buffer = addr & ~(2048 - 1);
670 1.1 hikaru
671 1.19 simonb octfpa_buf_put_paddr(cnmac_fb_pkt, start_buffer);
672 1.1 hikaru }
673 1.1 hikaru
674 1.19 simonb octfpa_buf_put(cnmac_fb_wqe, work);
675 1.1 hikaru
676 1.1 hikaru return 0;
677 1.1 hikaru }
678 1.1 hikaru
679 1.1 hikaru static inline void
680 1.24 simonb cnmac_buf_ext_free(struct mbuf *m, void *buf, size_t size, void *arg)
681 1.1 hikaru {
682 1.19 simonb octfpa_buf_put(cnmac_fb_pkt, buf);
683 1.1 hikaru
684 1.23 simonb KASSERT(m != NULL);
685 1.1 hikaru
686 1.1 hikaru pool_cache_put(mb_cache, m);
687 1.1 hikaru }
688 1.1 hikaru
689 1.1 hikaru /* ---- ifnet interfaces */
690 1.1 hikaru
691 1.1 hikaru static int
692 1.19 simonb cnmac_ioctl(struct ifnet *ifp, u_long cmd, void *data)
693 1.1 hikaru {
694 1.19 simonb struct cnmac_softc *sc = ifp->if_softc;
695 1.1 hikaru struct ifreq *ifr = (struct ifreq *)data;
696 1.1 hikaru int s, error;
697 1.1 hikaru
698 1.1 hikaru s = splnet();
699 1.1 hikaru switch (cmd) {
700 1.1 hikaru case SIOCSIFMEDIA:
701 1.1 hikaru /* Flow control requires full-duplex mode. */
702 1.1 hikaru if (IFM_SUBTYPE(ifr->ifr_media) == IFM_AUTO ||
703 1.1 hikaru (ifr->ifr_media & IFM_FDX) == 0) {
704 1.1 hikaru ifr->ifr_media &= ~IFM_ETH_FMASK;
705 1.1 hikaru }
706 1.1 hikaru if (IFM_SUBTYPE(ifr->ifr_media) != IFM_AUTO) {
707 1.1 hikaru if ((ifr->ifr_media & IFM_ETH_FMASK) == IFM_FLOW) {
708 1.1 hikaru ifr->ifr_media |=
709 1.1 hikaru IFM_ETH_TXPAUSE | IFM_ETH_RXPAUSE;
710 1.1 hikaru }
711 1.12 msaitoh sc->sc_gmx_port->sc_port_flowflags =
712 1.1 hikaru ifr->ifr_media & IFM_ETH_FMASK;
713 1.1 hikaru }
714 1.1 hikaru error = ifmedia_ioctl(ifp, ifr, &sc->sc_mii.mii_media, cmd);
715 1.1 hikaru break;
716 1.1 hikaru default:
717 1.1 hikaru error = ether_ioctl(ifp, cmd, data);
718 1.1 hikaru break;
719 1.1 hikaru }
720 1.24 simonb
721 1.24 simonb if (error == ENETRESET) {
722 1.24 simonb if (ISSET(ifp->if_flags, IFF_RUNNING))
723 1.24 simonb octgmx_set_filter(sc->sc_gmx_port);
724 1.24 simonb error = 0;
725 1.24 simonb }
726 1.24 simonb
727 1.19 simonb cnmac_start(ifp);
728 1.24 simonb
729 1.1 hikaru splx(s);
730 1.1 hikaru
731 1.12 msaitoh return error;
732 1.1 hikaru }
733 1.1 hikaru
734 1.1 hikaru /* ---- send (output) */
735 1.1 hikaru
736 1.1 hikaru static inline uint64_t
737 1.24 simonb cnmac_send_makecmd_w0(uint64_t fau0, uint64_t fau1, size_t len, int segs,
738 1.24 simonb int ipoffp1)
739 1.1 hikaru {
740 1.24 simonb
741 1.19 simonb return octpko_cmd_word0(
742 1.1 hikaru OCT_FAU_OP_SIZE_64, /* sz1 */
743 1.1 hikaru OCT_FAU_OP_SIZE_64, /* sz0 */
744 1.1 hikaru 1, fau1, 1, fau0, /* s1, reg1, s0, reg0 */
745 1.1 hikaru 0, /* le */
746 1.19 simonb cnmac_param_pko_cmd_w0_n2, /* n2 */
747 1.1 hikaru 1, 0, /* q, r */
748 1.1 hikaru (segs == 1) ? 0 : 1, /* g */
749 1.1 hikaru 0, 0, 1, /* ipoffp1, ii, df */
750 1.1 hikaru segs, (int)len); /* segs, totalbytes */
751 1.1 hikaru }
752 1.1 hikaru
753 1.12 msaitoh static inline uint64_t
754 1.19 simonb cnmac_send_makecmd_w1(int size, paddr_t addr)
755 1.1 hikaru {
756 1.24 simonb
757 1.19 simonb return octpko_cmd_word1(
758 1.1 hikaru 0, 0, /* i, back */
759 1.24 simonb OCTEON_POOL_NO_SG, /* pool */
760 1.1 hikaru size, addr); /* size, addr */
761 1.1 hikaru }
762 1.1 hikaru
763 1.1 hikaru static inline int
764 1.19 simonb cnmac_send_makecmd_gbuf(struct cnmac_softc *sc, struct mbuf *m0, uint64_t *gbuf,
765 1.19 simonb int *rsegs)
766 1.1 hikaru {
767 1.1 hikaru struct mbuf *m;
768 1.1 hikaru int segs = 0;
769 1.1 hikaru uintptr_t laddr, rlen, nlen;
770 1.1 hikaru
771 1.1 hikaru for (m = m0; m != NULL; m = m->m_next) {
772 1.1 hikaru
773 1.1 hikaru if (__predict_false(m->m_len == 0))
774 1.1 hikaru continue;
775 1.1 hikaru
776 1.12 msaitoh /* Aligned 4k */
777 1.1 hikaru laddr = (uintptr_t)m->m_data & (PAGE_SIZE - 1);
778 1.1 hikaru
779 1.1 hikaru if (laddr + m->m_len > PAGE_SIZE) {
780 1.1 hikaru /* XXX XXX XXX */
781 1.1 hikaru rlen = PAGE_SIZE - laddr;
782 1.1 hikaru nlen = m->m_len - rlen;
783 1.19 simonb *(gbuf + segs) = cnmac_send_makecmd_w1(rlen,
784 1.1 hikaru kvtophys((vaddr_t)m->m_data));
785 1.1 hikaru segs++;
786 1.1 hikaru if (segs > 63) {
787 1.1 hikaru return 1;
788 1.1 hikaru }
789 1.1 hikaru /* XXX XXX XXX */
790 1.1 hikaru } else {
791 1.1 hikaru rlen = 0;
792 1.1 hikaru nlen = m->m_len;
793 1.1 hikaru }
794 1.1 hikaru
795 1.19 simonb *(gbuf + segs) = cnmac_send_makecmd_w1(nlen,
796 1.1 hikaru kvtophys((vaddr_t)(m->m_data + rlen)));
797 1.1 hikaru segs++;
798 1.1 hikaru if (segs > 63) {
799 1.1 hikaru return 1;
800 1.1 hikaru }
801 1.1 hikaru }
802 1.1 hikaru
803 1.23 simonb KASSERT(m == NULL);
804 1.1 hikaru
805 1.1 hikaru *rsegs = segs;
806 1.1 hikaru
807 1.1 hikaru return 0;
808 1.1 hikaru }
809 1.1 hikaru
810 1.1 hikaru static inline int
811 1.19 simonb cnmac_send_makecmd(struct cnmac_softc *sc, struct mbuf *m,
812 1.1 hikaru uint64_t *gbuf, uint64_t *rpko_cmd_w0, uint64_t *rpko_cmd_w1)
813 1.1 hikaru {
814 1.1 hikaru uint64_t pko_cmd_w0, pko_cmd_w1;
815 1.24 simonb int ipoffp1;
816 1.1 hikaru int segs;
817 1.1 hikaru int result = 0;
818 1.1 hikaru
819 1.19 simonb if (cnmac_send_makecmd_gbuf(sc, m, gbuf, &segs)) {
820 1.1 hikaru log(LOG_WARNING, "%s: there are a lot of number of segments"
821 1.1 hikaru " of transmission data", device_xname(sc->sc_dev));
822 1.1 hikaru result = 1;
823 1.1 hikaru goto done;
824 1.1 hikaru }
825 1.1 hikaru
826 1.24 simonb /* Get the IP packet offset for TCP/UDP checksum offloading. */
827 1.24 simonb ipoffp1 = (m->m_pkthdr.csum_flags & (M_CSUM_TCPv4 | M_CSUM_UDPv4))
828 1.24 simonb ? (ETHER_HDR_LEN + 1) : 0;
829 1.24 simonb
830 1.1 hikaru /*
831 1.1 hikaru * segs == 1 -> link mode (single continuous buffer)
832 1.1 hikaru * WORD1[size] is number of bytes pointed by segment
833 1.1 hikaru *
834 1.1 hikaru * segs > 1 -> gather mode (scatter-gather buffer)
835 1.1 hikaru * WORD1[size] is number of segments
836 1.1 hikaru */
837 1.19 simonb pko_cmd_w0 = cnmac_send_makecmd_w0(sc->sc_fau_done.fd_regno,
838 1.24 simonb 0, m->m_pkthdr.len, segs, ipoffp1);
839 1.4 matt if (segs == 1) {
840 1.19 simonb pko_cmd_w1 = cnmac_send_makecmd_w1(
841 1.4 matt m->m_pkthdr.len, kvtophys((vaddr_t)m->m_data));
842 1.4 matt } else {
843 1.4 matt #ifdef __mips_n32
844 1.4 matt KASSERT(MIPS_KSEG0_P(gbuf));
845 1.19 simonb pko_cmd_w1 = cnmac_send_makecmd_w1(segs,
846 1.4 matt MIPS_KSEG0_TO_PHYS(gbuf));
847 1.4 matt #else
848 1.19 simonb pko_cmd_w1 = cnmac_send_makecmd_w1(segs,
849 1.4 matt MIPS_XKPHYS_TO_PHYS(gbuf));
850 1.4 matt #endif
851 1.4 matt }
852 1.1 hikaru
853 1.1 hikaru *rpko_cmd_w0 = pko_cmd_w0;
854 1.1 hikaru *rpko_cmd_w1 = pko_cmd_w1;
855 1.1 hikaru
856 1.1 hikaru done:
857 1.1 hikaru return result;
858 1.1 hikaru }
859 1.1 hikaru
860 1.1 hikaru static inline int
861 1.19 simonb cnmac_send_cmd(struct cnmac_softc *sc, uint64_t pko_cmd_w0,
862 1.8 jmcneill uint64_t pko_cmd_w1, int *pwdc)
863 1.1 hikaru {
864 1.1 hikaru uint64_t *cmdptr;
865 1.1 hikaru int result = 0;
866 1.1 hikaru
867 1.4 matt #ifdef __mips_n32
868 1.4 matt KASSERT((sc->sc_cmdptr.cmdptr & ~MIPS_PHYS_MASK) == 0);
869 1.4 matt cmdptr = (uint64_t *)MIPS_PHYS_TO_KSEG0(sc->sc_cmdptr.cmdptr);
870 1.4 matt #else
871 1.1 hikaru cmdptr = (uint64_t *)MIPS_PHYS_TO_XKPHYS_CACHED(sc->sc_cmdptr.cmdptr);
872 1.4 matt #endif
873 1.1 hikaru cmdptr += sc->sc_cmdptr.cmdptr_idx;
874 1.1 hikaru
875 1.23 simonb KASSERT(cmdptr != NULL);
876 1.1 hikaru
877 1.1 hikaru *cmdptr++ = pko_cmd_w0;
878 1.1 hikaru *cmdptr++ = pko_cmd_w1;
879 1.1 hikaru
880 1.23 simonb KASSERT(sc->sc_cmdptr.cmdptr_idx + 2 <= FPA_COMMAND_BUFFER_POOL_NWORDS - 1);
881 1.1 hikaru
882 1.1 hikaru if (sc->sc_cmdptr.cmdptr_idx + 2 == FPA_COMMAND_BUFFER_POOL_NWORDS - 1) {
883 1.1 hikaru paddr_t buf;
884 1.1 hikaru
885 1.19 simonb buf = octfpa_buf_get_paddr(cnmac_fb_cmd);
886 1.1 hikaru if (buf == 0) {
887 1.1 hikaru log(LOG_WARNING,
888 1.1 hikaru "%s: can not allocate command buffer from free pool allocator\n",
889 1.1 hikaru device_xname(sc->sc_dev));
890 1.1 hikaru result = 1;
891 1.1 hikaru goto done;
892 1.1 hikaru }
893 1.1 hikaru *cmdptr++ = buf;
894 1.1 hikaru sc->sc_cmdptr.cmdptr = (uint64_t)buf;
895 1.1 hikaru sc->sc_cmdptr.cmdptr_idx = 0;
896 1.1 hikaru } else {
897 1.1 hikaru sc->sc_cmdptr.cmdptr_idx += 2;
898 1.1 hikaru }
899 1.1 hikaru
900 1.8 jmcneill *pwdc += 2;
901 1.1 hikaru
902 1.1 hikaru done:
903 1.1 hikaru return result;
904 1.1 hikaru }
905 1.1 hikaru
906 1.1 hikaru static inline int
907 1.19 simonb cnmac_send_buf(struct cnmac_softc *sc, struct mbuf *m, uint64_t *gbuf,
908 1.19 simonb int *pwdc)
909 1.1 hikaru {
910 1.1 hikaru int result = 0, error;
911 1.1 hikaru uint64_t pko_cmd_w0, pko_cmd_w1;
912 1.1 hikaru
913 1.19 simonb error = cnmac_send_makecmd(sc, m, gbuf, &pko_cmd_w0, &pko_cmd_w1);
914 1.1 hikaru if (error != 0) {
915 1.12 msaitoh /* Already logging */
916 1.1 hikaru result = error;
917 1.1 hikaru goto done;
918 1.1 hikaru }
919 1.1 hikaru
920 1.19 simonb error = cnmac_send_cmd(sc, pko_cmd_w0, pko_cmd_w1, pwdc);
921 1.1 hikaru if (error != 0) {
922 1.12 msaitoh /* Already logging */
923 1.1 hikaru result = error;
924 1.1 hikaru }
925 1.1 hikaru
926 1.1 hikaru done:
927 1.1 hikaru return result;
928 1.1 hikaru }
929 1.1 hikaru
930 1.1 hikaru static inline int
931 1.19 simonb cnmac_send(struct cnmac_softc *sc, struct mbuf *m, int *pwdc)
932 1.1 hikaru {
933 1.1 hikaru paddr_t gaddr = 0;
934 1.1 hikaru uint64_t *gbuf = NULL;
935 1.1 hikaru int result = 0, error;
936 1.1 hikaru
937 1.19 simonb gaddr = octfpa_buf_get_paddr(cnmac_fb_sg);
938 1.1 hikaru if (gaddr == 0) {
939 1.12 msaitoh log(LOG_WARNING, "%s: can not allocate gather buffer from "
940 1.12 msaitoh "free pool allocator\n", device_xname(sc->sc_dev));
941 1.1 hikaru result = 1;
942 1.1 hikaru goto done;
943 1.1 hikaru }
944 1.1 hikaru
945 1.4 matt #ifdef __mips_n32
946 1.4 matt KASSERT((gaddr & ~MIPS_PHYS_MASK) == 0);
947 1.4 matt gbuf = (uint64_t *)(uintptr_t)MIPS_PHYS_TO_KSEG0(gaddr);
948 1.4 matt #else
949 1.1 hikaru gbuf = (uint64_t *)(uintptr_t)MIPS_PHYS_TO_XKPHYS_CACHED(gaddr);
950 1.4 matt #endif
951 1.1 hikaru
952 1.23 simonb KASSERT(gbuf != NULL);
953 1.1 hikaru
954 1.19 simonb error = cnmac_send_buf(sc, m, gbuf, pwdc);
955 1.1 hikaru if (error != 0) {
956 1.12 msaitoh /* Already logging */
957 1.19 simonb octfpa_buf_put_paddr(cnmac_fb_sg, gaddr);
958 1.1 hikaru result = error;
959 1.1 hikaru goto done;
960 1.1 hikaru }
961 1.1 hikaru
962 1.19 simonb cnmac_send_queue_add(sc, m, gbuf);
963 1.1 hikaru
964 1.1 hikaru done:
965 1.1 hikaru return result;
966 1.1 hikaru }
967 1.1 hikaru
968 1.1 hikaru static void
969 1.19 simonb cnmac_start(struct ifnet *ifp)
970 1.1 hikaru {
971 1.19 simonb struct cnmac_softc *sc = ifp->if_softc;
972 1.1 hikaru struct mbuf *m;
973 1.8 jmcneill int wdc = 0;
974 1.1 hikaru
975 1.1 hikaru /*
976 1.12 msaitoh * Performance tuning
977 1.15 gutterid * pre-send iobdma request
978 1.1 hikaru */
979 1.19 simonb cnmac_send_queue_flush_prefetch(sc);
980 1.1 hikaru
981 1.1 hikaru if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING)
982 1.1 hikaru goto last;
983 1.1 hikaru
984 1.24 simonb if (__predict_false(!octgmx_link_status(sc->sc_gmx_port)))
985 1.1 hikaru goto last;
986 1.1 hikaru
987 1.1 hikaru for (;;) {
988 1.1 hikaru IFQ_POLL(&ifp->if_snd, m);
989 1.1 hikaru if (__predict_false(m == NULL))
990 1.1 hikaru break;
991 1.1 hikaru
992 1.1 hikaru /* XXX XXX XXX */
993 1.19 simonb cnmac_send_queue_flush_fetch(sc);
994 1.1 hikaru
995 1.1 hikaru /*
996 1.12 msaitoh * If no free send buffer is available, free all the sent
997 1.15 gutterid * buffers and bail out.
998 1.1 hikaru */
999 1.19 simonb if (cnmac_send_queue_is_full(sc)) {
1000 1.8 jmcneill SET(ifp->if_flags, IFF_OACTIVE);
1001 1.8 jmcneill if (wdc > 0)
1002 1.19 simonb octpko_op_doorbell_write(sc->sc_port,
1003 1.8 jmcneill sc->sc_port, wdc);
1004 1.25 simonb callout_schedule(&sc->sc_tick_free_ch, 1);
1005 1.1 hikaru return;
1006 1.1 hikaru }
1007 1.1 hikaru /* XXX XXX XXX */
1008 1.1 hikaru
1009 1.1 hikaru IFQ_DEQUEUE(&ifp->if_snd, m);
1010 1.1 hikaru
1011 1.9 msaitoh bpf_mtap(ifp, m, BPF_D_OUT);
1012 1.1 hikaru
1013 1.1 hikaru /* XXX XXX XXX */
1014 1.1 hikaru if (sc->sc_soft_req_cnt > sc->sc_soft_req_thresh)
1015 1.19 simonb cnmac_send_queue_flush(sc);
1016 1.19 simonb if (cnmac_send(sc, m, &wdc)) {
1017 1.1 hikaru IF_DROP(&ifp->if_snd);
1018 1.1 hikaru m_freem(m);
1019 1.1 hikaru log(LOG_WARNING,
1020 1.12 msaitoh "%s: failed in the transmission of the packet\n",
1021 1.12 msaitoh device_xname(sc->sc_dev));
1022 1.12 msaitoh } else
1023 1.1 hikaru sc->sc_soft_req_cnt++;
1024 1.12 msaitoh
1025 1.1 hikaru if (sc->sc_flush)
1026 1.19 simonb cnmac_send_queue_flush_sync(sc);
1027 1.1 hikaru /* XXX XXX XXX */
1028 1.1 hikaru
1029 1.12 msaitoh /* Send next iobdma request */
1030 1.19 simonb cnmac_send_queue_flush_prefetch(sc);
1031 1.1 hikaru }
1032 1.1 hikaru
1033 1.8 jmcneill if (wdc > 0)
1034 1.19 simonb octpko_op_doorbell_write(sc->sc_port, sc->sc_port, wdc);
1035 1.8 jmcneill
1036 1.1 hikaru last:
1037 1.19 simonb cnmac_send_queue_flush_fetch(sc);
1038 1.25 simonb callout_schedule(&sc->sc_tick_free_ch, 1);
1039 1.1 hikaru }
1040 1.1 hikaru
1041 1.1 hikaru static void
1042 1.19 simonb cnmac_watchdog(struct ifnet *ifp)
1043 1.1 hikaru {
1044 1.19 simonb struct cnmac_softc *sc = ifp->if_softc;
1045 1.1 hikaru
1046 1.1 hikaru printf("%s: device timeout\n", device_xname(sc->sc_dev));
1047 1.1 hikaru
1048 1.19 simonb cnmac_configure(sc);
1049 1.1 hikaru
1050 1.1 hikaru SET(ifp->if_flags, IFF_RUNNING);
1051 1.1 hikaru CLR(ifp->if_flags, IFF_OACTIVE);
1052 1.1 hikaru ifp->if_timer = 0;
1053 1.1 hikaru
1054 1.19 simonb cnmac_start(ifp);
1055 1.1 hikaru }
1056 1.1 hikaru
1057 1.1 hikaru static int
1058 1.19 simonb cnmac_init(struct ifnet *ifp)
1059 1.1 hikaru {
1060 1.19 simonb struct cnmac_softc *sc = ifp->if_softc;
1061 1.1 hikaru
1062 1.1 hikaru /* XXX don't disable commonly used parts!!! XXX */
1063 1.1 hikaru if (sc->sc_init_flag == 0) {
1064 1.1 hikaru /* Cancel any pending I/O. */
1065 1.19 simonb cnmac_stop(ifp, 0);
1066 1.1 hikaru
1067 1.1 hikaru /* Initialize the device */
1068 1.19 simonb cnmac_configure(sc);
1069 1.1 hikaru
1070 1.19 simonb octpko_enable(sc->sc_pko);
1071 1.19 simonb octipd_enable(sc->sc_ipd);
1072 1.1 hikaru
1073 1.1 hikaru sc->sc_init_flag = 1;
1074 1.1 hikaru } else {
1075 1.19 simonb octgmx_port_enable(sc->sc_gmx_port, 1);
1076 1.1 hikaru }
1077 1.17 thorpej mii_ifmedia_change(&sc->sc_mii);
1078 1.1 hikaru
1079 1.19 simonb octgmx_set_filter(sc->sc_gmx_port);
1080 1.1 hikaru
1081 1.25 simonb callout_schedule(&sc->sc_tick_misc_ch, hz);
1082 1.25 simonb callout_schedule(&sc->sc_tick_free_ch, hz);
1083 1.1 hikaru
1084 1.1 hikaru SET(ifp->if_flags, IFF_RUNNING);
1085 1.1 hikaru CLR(ifp->if_flags, IFF_OACTIVE);
1086 1.1 hikaru
1087 1.1 hikaru return 0;
1088 1.1 hikaru }
1089 1.1 hikaru
1090 1.1 hikaru static void
1091 1.19 simonb cnmac_stop(struct ifnet *ifp, int disable)
1092 1.1 hikaru {
1093 1.19 simonb struct cnmac_softc *sc = ifp->if_softc;
1094 1.1 hikaru
1095 1.1 hikaru callout_stop(&sc->sc_tick_misc_ch);
1096 1.1 hikaru callout_stop(&sc->sc_tick_free_ch);
1097 1.1 hikaru
1098 1.1 hikaru mii_down(&sc->sc_mii);
1099 1.1 hikaru
1100 1.19 simonb octgmx_port_enable(sc->sc_gmx_port, 0);
1101 1.1 hikaru
1102 1.1 hikaru /* Mark the interface as down and cancel the watchdog timer. */
1103 1.1 hikaru CLR(ifp->if_flags, IFF_RUNNING | IFF_OACTIVE);
1104 1.1 hikaru ifp->if_timer = 0;
1105 1.1 hikaru }
1106 1.1 hikaru
1107 1.1 hikaru /* ---- misc */
1108 1.1 hikaru
1109 1.1 hikaru static int
1110 1.19 simonb cnmac_reset(struct cnmac_softc *sc)
1111 1.1 hikaru {
1112 1.19 simonb octgmx_reset_speed(sc->sc_gmx_port);
1113 1.19 simonb octgmx_reset_flowctl(sc->sc_gmx_port);
1114 1.19 simonb octgmx_reset_timing(sc->sc_gmx_port);
1115 1.1 hikaru
1116 1.1 hikaru return 0;
1117 1.1 hikaru }
1118 1.1 hikaru
1119 1.1 hikaru static int
1120 1.19 simonb cnmac_configure(struct cnmac_softc *sc)
1121 1.1 hikaru {
1122 1.19 simonb octgmx_port_enable(sc->sc_gmx_port, 0);
1123 1.1 hikaru
1124 1.19 simonb cnmac_reset(sc);
1125 1.1 hikaru
1126 1.19 simonb cnmac_configure_common(sc);
1127 1.1 hikaru
1128 1.19 simonb octpko_port_config(sc->sc_pko);
1129 1.19 simonb octpko_port_enable(sc->sc_pko, 1);
1130 1.24 simonb octpow_config(sc->sc_pow, sc->sc_powgroup);
1131 1.1 hikaru
1132 1.19 simonb octgmx_tx_stats_rd_clr(sc->sc_gmx_port, 1);
1133 1.19 simonb octgmx_rx_stats_rd_clr(sc->sc_gmx_port, 1);
1134 1.1 hikaru
1135 1.19 simonb octgmx_port_enable(sc->sc_gmx_port, 1);
1136 1.1 hikaru
1137 1.1 hikaru return 0;
1138 1.1 hikaru }
1139 1.1 hikaru
1140 1.1 hikaru static int
1141 1.19 simonb cnmac_configure_common(struct cnmac_softc *sc)
1142 1.1 hikaru {
1143 1.1 hikaru static int once;
1144 1.1 hikaru
1145 1.1 hikaru if (once == 1)
1146 1.1 hikaru return 0;
1147 1.1 hikaru once = 1;
1148 1.1 hikaru
1149 1.19 simonb octipd_config(sc->sc_ipd);
1150 1.19 simonb octpko_config(sc->sc_pko);
1151 1.1 hikaru
1152 1.1 hikaru return 0;
1153 1.1 hikaru }
1154 1.1 hikaru
1155 1.1 hikaru /* ---- receive (input) */
1156 1.1 hikaru
1157 1.1 hikaru static inline int
1158 1.19 simonb cnmac_recv_mbuf(struct cnmac_softc *sc, uint64_t *work, struct mbuf **rm)
1159 1.1 hikaru {
1160 1.1 hikaru struct mbuf *m;
1161 1.24 simonb vaddr_t addr;
1162 1.24 simonb vaddr_t ext_buf;
1163 1.1 hikaru size_t ext_size;
1164 1.1 hikaru uint64_t word1 = work[1];
1165 1.1 hikaru uint64_t word2 = work[2];
1166 1.1 hikaru uint64_t word3 = work[3];
1167 1.1 hikaru
1168 1.1 hikaru MGETHDR(m, M_NOWAIT, MT_DATA);
1169 1.1 hikaru if (m == NULL)
1170 1.1 hikaru return 1;
1171 1.1 hikaru
1172 1.24 simonb octfpa_buf_put(cnmac_fb_wqe, work);
1173 1.24 simonb
1174 1.24 simonb if (__SHIFTOUT(word2, PIP_WQE_WORD2_IP_BUFS) != 1)
1175 1.24 simonb panic("%s: expected one buffer, got %" PRId64, __func__,
1176 1.24 simonb __SHIFTOUT(word2, PIP_WQE_WORD2_IP_BUFS));
1177 1.1 hikaru
1178 1.1 hikaru
1179 1.4 matt #ifdef __mips_n32
1180 1.24 simonb KASSERT((word3 & ~MIPS_PHYS_MASK) == 0);
1181 1.24 simonb addr = MIPS_PHYS_TO_KSEG0(word3 & PIP_WQE_WORD3_ADDR);
1182 1.4 matt #else
1183 1.24 simonb addr = MIPS_PHYS_TO_XKPHYS_CACHED(word3 & PIP_WQE_WORD3_ADDR);
1184 1.4 matt #endif
1185 1.1 hikaru
1186 1.24 simonb ext_size = OCTEON_POOL_SIZE_PKT;
1187 1.24 simonb ext_buf = addr & ~(ext_size - 1);
1188 1.24 simonb MEXTADD(m, ext_buf, ext_size, 0, cnmac_buf_ext_free, NULL);
1189 1.1 hikaru
1190 1.24 simonb m->m_data = (void *)addr;
1191 1.1 hikaru m->m_len = m->m_pkthdr.len = (word1 & PIP_WQE_WORD1_LEN) >> 48;
1192 1.3 ozaki m_set_rcvif(m, &sc->sc_ethercom.ec_if);
1193 1.12 msaitoh
1194 1.12 msaitoh /* Not readonly buffer */
1195 1.1 hikaru m->m_flags |= M_EXT_RW;
1196 1.1 hikaru
1197 1.1 hikaru *rm = m;
1198 1.1 hikaru
1199 1.23 simonb KASSERT(*rm != NULL);
1200 1.1 hikaru
1201 1.1 hikaru return 0;
1202 1.1 hikaru }
1203 1.1 hikaru
1204 1.1 hikaru static inline int
1205 1.24 simonb cnmac_recv_check(struct cnmac_softc *sc, uint64_t word2)
1206 1.1 hikaru {
1207 1.24 simonb static struct timeval rxerr_log_interval = { 0, 2500000 };
1208 1.24 simonb uint64_t opecode;
1209 1.1 hikaru
1210 1.1 hikaru if (__predict_true(!ISSET(word2, PIP_WQE_WORD2_NOIP_RE)))
1211 1.1 hikaru return 0;
1212 1.1 hikaru
1213 1.24 simonb opecode = word2 & PIP_WQE_WORD2_NOIP_OPECODE;
1214 1.24 simonb if ((sc->sc_ethercom.ec_if.if_flags & IFF_DEBUG) &&
1215 1.24 simonb ratecheck(&sc->sc_rxerr_log_last, &rxerr_log_interval))
1216 1.24 simonb log(LOG_DEBUG, "%s: rx error (%"PRId64")\n",
1217 1.24 simonb device_xname(sc->sc_dev), opecode);
1218 1.24 simonb
1219 1.12 msaitoh /* This error is harmless */
1220 1.24 simonb if (opecode == PIP_WQE_WORD2_RE_OPCODE_OVRRUN)
1221 1.1 hikaru return 0;
1222 1.1 hikaru
1223 1.1 hikaru return 1;
1224 1.1 hikaru }
1225 1.1 hikaru
1226 1.1 hikaru static inline int
1227 1.19 simonb cnmac_recv(struct cnmac_softc *sc, uint64_t *work)
1228 1.1 hikaru {
1229 1.1 hikaru struct ifnet *ifp;
1230 1.1 hikaru struct mbuf *m;
1231 1.1 hikaru uint64_t word2;
1232 1.1 hikaru
1233 1.23 simonb KASSERT(sc != NULL);
1234 1.23 simonb KASSERT(work != NULL);
1235 1.1 hikaru
1236 1.1 hikaru word2 = work[2];
1237 1.1 hikaru ifp = &sc->sc_ethercom.ec_if;
1238 1.1 hikaru
1239 1.23 simonb KASSERT(ifp != NULL);
1240 1.1 hikaru
1241 1.24 simonb if (!ISSET(ifp->if_flags, IFF_RUNNING))
1242 1.24 simonb goto drop;
1243 1.24 simonb
1244 1.19 simonb if (__predict_false(cnmac_recv_check(sc, word2) != 0)) {
1245 1.16 thorpej if_statinc(ifp, if_ierrors);
1246 1.1 hikaru goto drop;
1247 1.1 hikaru }
1248 1.1 hikaru
1249 1.19 simonb if (__predict_false(cnmac_recv_mbuf(sc, work, &m) != 0)) {
1250 1.16 thorpej if_statinc(ifp, if_ierrors);
1251 1.1 hikaru goto drop;
1252 1.1 hikaru }
1253 1.1 hikaru
1254 1.1 hikaru /* work[0] .. work[3] may not be valid any more */
1255 1.1 hikaru
1256 1.23 simonb KASSERT(m != NULL);
1257 1.1 hikaru
1258 1.19 simonb octipd_offload(word2, m->m_data, &m->m_pkthdr.csum_flags);
1259 1.1 hikaru
1260 1.2 ozaki if_percpuq_enqueue(ifp->if_percpuq, m);
1261 1.1 hikaru
1262 1.1 hikaru return 0;
1263 1.1 hikaru
1264 1.1 hikaru drop:
1265 1.24 simonb cnmac_buf_free_work(sc, work);
1266 1.24 simonb return 1;
1267 1.1 hikaru }
1268 1.1 hikaru
1269 1.24 simonb static int
1270 1.24 simonb cnmac_intr(void *arg)
1271 1.1 hikaru {
1272 1.24 simonb struct cnmac_softc *sc = arg;
1273 1.24 simonb uint64_t *work;
1274 1.24 simonb uint64_t wqmask = __BIT(sc->sc_powgroup);
1275 1.24 simonb uint32_t coreid = 0; /* XXX octeon_get_coreid() */
1276 1.24 simonb uint32_t port;
1277 1.24 simonb
1278 1.24 simonb _POW_WR8(sc->sc_pow, POW_PP_GRP_MSK_OFFSET(coreid), wqmask);
1279 1.24 simonb
1280 1.24 simonb octpow_tag_sw_wait();
1281 1.24 simonb octpow_work_request_async(OCTEON_CVMSEG_OFFSET(csm_pow_intr),
1282 1.24 simonb POW_NO_WAIT);
1283 1.1 hikaru
1284 1.24 simonb for (;;) {
1285 1.24 simonb work = (uint64_t *)octpow_work_response_async(
1286 1.24 simonb OCTEON_CVMSEG_OFFSET(csm_pow_intr));
1287 1.24 simonb if (work == NULL)
1288 1.24 simonb break;
1289 1.1 hikaru
1290 1.24 simonb octpow_tag_sw_wait();
1291 1.24 simonb octpow_work_request_async(OCTEON_CVMSEG_OFFSET(csm_pow_intr),
1292 1.24 simonb POW_NO_WAIT);
1293 1.24 simonb
1294 1.24 simonb port = __SHIFTOUT(work[1], PIP_WQE_WORD1_IPRT);
1295 1.24 simonb if (port != sc->sc_port) {
1296 1.24 simonb printf("%s: unexpected wqe port %u, should be %u\n",
1297 1.24 simonb device_xname(sc->sc_dev), port, sc->sc_port);
1298 1.24 simonb goto wqe_error;
1299 1.24 simonb }
1300 1.1 hikaru
1301 1.24 simonb (void)cnmac_recv(sc, work);
1302 1.1 hikaru }
1303 1.1 hikaru
1304 1.24 simonb _POW_WR8(sc->sc_pow, POW_WQ_INT_OFFSET, wqmask);
1305 1.1 hikaru
1306 1.24 simonb return 1;
1307 1.1 hikaru
1308 1.24 simonb wqe_error:
1309 1.24 simonb printf("word0: 0x%016" PRIx64 "\n", work[0]);
1310 1.24 simonb printf("word1: 0x%016" PRIx64 "\n", work[1]);
1311 1.24 simonb printf("word2: 0x%016" PRIx64 "\n", work[2]);
1312 1.24 simonb printf("word3: 0x%016" PRIx64 "\n", work[3]);
1313 1.24 simonb panic("wqe_error");
1314 1.1 hikaru }
1315 1.1 hikaru
1316 1.1 hikaru /* ---- tick */
1317 1.1 hikaru
1318 1.1 hikaru /*
1319 1.19 simonb * cnmac_tick_free
1320 1.1 hikaru *
1321 1.1 hikaru * => garbage collect send gather buffer / mbuf
1322 1.1 hikaru * => called at softclock
1323 1.1 hikaru */
1324 1.1 hikaru static void
1325 1.19 simonb cnmac_tick_free(void *arg)
1326 1.1 hikaru {
1327 1.19 simonb struct cnmac_softc *sc = arg;
1328 1.1 hikaru int timo;
1329 1.1 hikaru int s;
1330 1.1 hikaru
1331 1.1 hikaru s = splnet();
1332 1.1 hikaru /* XXX XXX XXX */
1333 1.1 hikaru if (sc->sc_soft_req_cnt > 0) {
1334 1.19 simonb cnmac_send_queue_flush_prefetch(sc);
1335 1.19 simonb cnmac_send_queue_flush_fetch(sc);
1336 1.19 simonb cnmac_send_queue_flush(sc);
1337 1.19 simonb cnmac_send_queue_flush_sync(sc);
1338 1.1 hikaru }
1339 1.1 hikaru /* XXX XXX XXX */
1340 1.1 hikaru
1341 1.25 simonb timo = (sc->sc_ext_callback_cnt > 0) ? 1 : hz;
1342 1.1 hikaru callout_schedule(&sc->sc_tick_free_ch, timo);
1343 1.1 hikaru splx(s);
1344 1.1 hikaru }
1345 1.1 hikaru
1346 1.1 hikaru /*
1347 1.19 simonb * cnmac_tick_misc
1348 1.1 hikaru *
1349 1.1 hikaru * => collect statistics
1350 1.1 hikaru * => check link status
1351 1.1 hikaru * => called at softclock
1352 1.1 hikaru */
1353 1.1 hikaru static void
1354 1.19 simonb cnmac_tick_misc(void *arg)
1355 1.1 hikaru {
1356 1.19 simonb struct cnmac_softc *sc = arg;
1357 1.1 hikaru struct ifnet *ifp;
1358 1.1 hikaru int s;
1359 1.1 hikaru
1360 1.1 hikaru s = splnet();
1361 1.1 hikaru
1362 1.1 hikaru ifp = &sc->sc_ethercom.ec_if;
1363 1.1 hikaru
1364 1.19 simonb octgmx_stats(sc->sc_gmx_port);
1365 1.19 simonb octpip_stats(sc->sc_pip, ifp, sc->sc_port);
1366 1.1 hikaru mii_tick(&sc->sc_mii);
1367 1.1 hikaru
1368 1.1 hikaru splx(s);
1369 1.1 hikaru
1370 1.1 hikaru callout_schedule(&sc->sc_tick_misc_ch, hz);
1371 1.1 hikaru }
1372