if_ze.c revision 1.16 1 1.16 cegger /* $NetBSD: if_ze.c,v 1.16 2009/03/18 17:06:47 cegger Exp $ */
2 1.1 ragge /*
3 1.1 ragge * Copyright (c) 1998 James R. Maynard III. All rights reserved.
4 1.1 ragge *
5 1.1 ragge * Redistribution and use in source and binary forms, with or without
6 1.1 ragge * modification, are permitted provided that the following conditions
7 1.1 ragge * are met:
8 1.1 ragge * 1. Redistributions of source code must retain the above copyright
9 1.1 ragge * notice, this list of conditions and the following disclaimer.
10 1.1 ragge * 2. Redistributions in binary form must reproduce the above copyright
11 1.1 ragge * notice, this list of conditions and the following disclaimer in the
12 1.1 ragge * documentation and/or other materials provided with the distribution.
13 1.1 ragge * 3. All advertising materials mentioning features or use of this software
14 1.1 ragge * must display the following acknowledgement:
15 1.1 ragge * This product includes software developed by James R. Maynard III.
16 1.1 ragge * 4. The name of the author may not be used to endorse or promote products
17 1.1 ragge * derived from this software without specific prior written permission
18 1.1 ragge *
19 1.1 ragge * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 1.1 ragge * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 1.1 ragge * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 1.1 ragge * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 1.1 ragge * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24 1.1 ragge * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25 1.1 ragge * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 1.1 ragge * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27 1.1 ragge * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28 1.1 ragge * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 1.1 ragge *
30 1.1 ragge * Standalone routine for the SGEC Ethernet controller.
31 1.1 ragge */
32 1.1 ragge
33 1.1 ragge #include <sys/param.h>
34 1.1 ragge #include <sys/types.h>
35 1.3 ragge #include <sys/socket.h>
36 1.3 ragge #include <sys/queue.h>
37 1.3 ragge
38 1.3 ragge #include <net/if.h>
39 1.3 ragge #include <net/if_ether.h>
40 1.1 ragge
41 1.1 ragge #include <netinet/in.h>
42 1.1 ragge #include <netinet/in_systm.h>
43 1.1 ragge
44 1.1 ragge #include <lib/libsa/netif.h>
45 1.1 ragge #include <lib/libsa/stand.h>
46 1.12 ragge #include <lib/libsa/net.h>
47 1.1 ragge
48 1.10 ragge #include "lib/libkern/libkern.h"
49 1.10 ragge
50 1.5 ragge #include <dev/ic/sgecreg.h>
51 1.1 ragge
52 1.5 ragge #include "arch/vax/include/sid.h"
53 1.8 ragge #include "arch/vax/include/rpb.h"
54 1.8 ragge
55 1.8 ragge #include "vaxstand.h"
56 1.1 ragge
57 1.13 tsutsui static int ze_get(struct iodesc *, void *, size_t, saseconds_t);
58 1.10 ragge static int ze_put(struct iodesc *, void *, size_t);
59 1.1 ragge
60 1.1 ragge
61 1.1 ragge struct netif_driver ze_driver = {
62 1.10 ragge 0, 0, 0, 0, ze_get, ze_put,
63 1.1 ragge };
64 1.1 ragge
65 1.9 matt #define NRCV 8 /* allocate 8 receive descriptors */
66 1.9 matt #define NXMT 4 /* and 4 transmit - must be >1 */
67 1.1 ragge #define SETUP_FRAME_LEN 128 /* length of the setup frame */
68 1.1 ragge
69 1.1 ragge /* allocate a buffer on an octaword boundary */
70 1.10 ragge #define OW_ALLOC(x) ((void *)((int)((int)alloc((x) + 15) + 15) & ~15))
71 1.1 ragge
72 1.1 ragge static volatile struct zedevice *addr;
73 1.1 ragge
74 1.1 ragge struct ze_tdes *ze_tdes_list; /* transmit desc list */
75 1.1 ragge struct ze_rdes *ze_rdes_list; /* and receive desc list */
76 1.1 ragge u_char ze_myaddr[ETHER_ADDR_LEN]; /* my Ethernet address */
77 1.1 ragge
78 1.1 ragge int
79 1.10 ragge zeopen(struct open_file *f, int adapt, int ctlr, int unit, int part)
80 1.1 ragge {
81 1.1 ragge u_long nicsr0_work, *nisa_rom;
82 1.10 ragge struct ze_tdes *ze_setup_tdes_list;
83 1.1 ragge int i;
84 1.1 ragge
85 1.1 ragge /* point to the device in memory */
86 1.10 ragge if (askname == 0) /* Override if autoboot */
87 1.10 ragge addr = (struct zedevice *)bootrpb.csrphy;
88 1.10 ragge else
89 1.10 ragge addr = (struct zedevice *)0x20008000;
90 1.1 ragge
91 1.1 ragge /* reset the device and wait for completion */
92 1.1 ragge addr->ze_nicsr6 = ZE_NICSR6_MBO | ZE_NICSR6_RE;
93 1.1 ragge while ((addr->ze_nicsr5 & ZE_NICSR5_ID) == 0)
94 1.1 ragge ;
95 1.1 ragge if (addr->ze_nicsr5 & ZE_NICSR5_SF) {
96 1.1 ragge printf("SGEC self-test failed...\n");
97 1.10 ragge return 1;
98 1.1 ragge }
99 1.1 ragge
100 1.1 ragge /* Get our Ethernet address */
101 1.12 ragge if (vax_boardtype == VAX_BTYP_49) {
102 1.12 ragge nisa_rom = (u_long *)0x27800000;
103 1.5 ragge for (i=0; i<ETHER_ADDR_LEN; i++)
104 1.5 ragge ze_myaddr[i] = nisa_rom[i] & 0377;
105 1.12 ragge } else if (vax_boardtype == VAX_BTYP_VXT) {
106 1.12 ragge nisa_rom = (u_long *)0x200c4000;
107 1.12 ragge for (i=0; i<ETHER_ADDR_LEN; i++)
108 1.12 ragge ze_myaddr[i] = nisa_rom[i] & 0xff;
109 1.5 ragge } else {
110 1.5 ragge nisa_rom = (u_long *)0x20084000;
111 1.5 ragge for (i=0; i<ETHER_ADDR_LEN; i++)
112 1.7 ragge if (vax_boardtype == VAX_BTYP_660)
113 1.7 ragge ze_myaddr[i] = (nisa_rom[i] & 0xff000000) >> 24;
114 1.7 ragge else
115 1.7 ragge ze_myaddr[i] = (nisa_rom[i] & 0x0000ff00) >> 8;
116 1.5 ragge }
117 1.12 ragge printf("SGEC: Ethernet address %s\n", ether_sprintf(ze_myaddr));
118 1.1 ragge
119 1.1 ragge /* initialize SGEC operating mode */
120 1.1 ragge /* disable interrupts here */
121 1.1 ragge nicsr0_work = ZE_NICSR0_IPL14 | ZE_NICSR0_SA | ZE_NICSR0_MBO |
122 1.1 ragge (ZE_NICSR0_IV_MASK & 0x0108);
123 1.1 ragge while (addr->ze_nicsr0 != nicsr0_work)
124 1.1 ragge addr->ze_nicsr0 = nicsr0_work;
125 1.1 ragge if (addr->ze_nicsr5 & ZE_NICSR5_ME)
126 1.1 ragge addr->ze_nicsr5 |= ZE_NICSR5_ME;
127 1.1 ragge /* reenable interrupts here */
128 1.1 ragge
129 1.1 ragge /* Allocate space for descriptor lists and buffers,
130 1.1 ragge then initialize them. Set up both lists as a ring. */
131 1.1 ragge ze_rdes_list = OW_ALLOC((NRCV+1) * sizeof(struct ze_rdes));
132 1.1 ragge ze_tdes_list = OW_ALLOC((NXMT+1) * sizeof(struct ze_tdes));
133 1.1 ragge for (i=0; i < NRCV; i++) {
134 1.15 cegger memset(ze_rdes_list+i, 0,sizeof(struct ze_rdes));
135 1.1 ragge ze_rdes_list[i].ze_framelen = ZE_FRAMELEN_OW;
136 1.1 ragge ze_rdes_list[i].ze_bufsize = ETHER_MAX_LEN;
137 1.1 ragge ze_rdes_list[i].ze_bufaddr = alloc(ETHER_MAX_LEN);
138 1.1 ragge }
139 1.15 cegger memset(ze_rdes_list+NRCV, 0,sizeof(struct ze_rdes));
140 1.1 ragge ze_rdes_list[NRCV].ze_framelen = ZE_FRAMELEN_OW;
141 1.1 ragge ze_rdes_list[NRCV].ze_rdes1 = ZE_RDES1_CA;
142 1.1 ragge ze_rdes_list[NRCV].ze_bufaddr = (u_char *)ze_rdes_list;
143 1.1 ragge for (i=0; i < NXMT; i++) {
144 1.15 cegger memset(ze_tdes_list+i, 0,sizeof(struct ze_tdes));
145 1.1 ragge ze_tdes_list[i].ze_tdes1 = ZE_TDES1_FS | ZE_TDES1_LS;
146 1.1 ragge ze_tdes_list[i].ze_bufsize = ETHER_MAX_LEN;
147 1.1 ragge ze_tdes_list[i].ze_bufaddr = alloc(ETHER_MAX_LEN);
148 1.1 ragge }
149 1.15 cegger memset(ze_tdes_list+NXMT, 0,sizeof(struct ze_tdes));
150 1.1 ragge ze_tdes_list[NXMT].ze_tdes1 = ZE_TDES1_CA;
151 1.1 ragge ze_tdes_list[NXMT].ze_tdr = ZE_TDR_OW;
152 1.1 ragge ze_tdes_list[NXMT].ze_bufaddr = (u_char *)ze_tdes_list;
153 1.1 ragge
154 1.1 ragge /* Build setup frame. We set the SGEC to do a
155 1.1 ragge perfect filter on our own address. */
156 1.1 ragge ze_setup_tdes_list = OW_ALLOC(2*sizeof(struct ze_tdes));
157 1.15 cegger memset(ze_setup_tdes_list+0, 0,2*sizeof(struct ze_tdes));
158 1.1 ragge ze_setup_tdes_list[0].ze_tdr = ZE_TDR_OW;
159 1.1 ragge ze_setup_tdes_list[0].ze_tdes1 = ZE_TDES1_DT_SETUP;
160 1.1 ragge ze_setup_tdes_list[0].ze_bufsize = SETUP_FRAME_LEN;
161 1.1 ragge ze_setup_tdes_list[0].ze_bufaddr = alloc(SETUP_FRAME_LEN);
162 1.15 cegger memset(ze_setup_tdes_list[0].ze_bufaddr, 0,SETUP_FRAME_LEN);
163 1.1 ragge for (i=0; i < 16; i++)
164 1.16 cegger memcpy(ze_setup_tdes_list[0].ze_bufaddr+(8*i), ze_myaddr,
165 1.1 ragge ETHER_ADDR_LEN);
166 1.1 ragge ze_setup_tdes_list[1].ze_tdes1 = ZE_TDES1_CA;
167 1.1 ragge ze_setup_tdes_list[1].ze_bufaddr = (u_char *)ze_setup_tdes_list;
168 1.1 ragge
169 1.1 ragge /* Start the transmitter and initialize almost everything else. */
170 1.1 ragge addr->ze_nicsr4 = ze_setup_tdes_list;
171 1.1 ragge addr->ze_nicsr6 = ZE_NICSR6_MBO | ZE_NICSR6_SE | ZE_NICSR6_ST |
172 1.1 ragge ZE_NICSR6_DC | ZE_NICSR6_BL_4;
173 1.1 ragge while ((addr->ze_nicsr5 & ZE_NICSR5_TS) != ZE_NICSR5_TS_SUSP)
174 1.1 ragge ; /* wait for the frame to be processed */
175 1.1 ragge
176 1.1 ragge /* Setup frame is done processing, initialize the receiver and
177 1.1 ragge point the transmitter to the real tdes list. */
178 1.1 ragge addr->ze_nicsr4 = ze_tdes_list;
179 1.1 ragge addr->ze_nicsr3 = ze_rdes_list;
180 1.1 ragge addr->ze_nicsr6 |= ZE_NICSR6_SR;
181 1.1 ragge
182 1.1 ragge /* And away-y-y we go! */
183 1.10 ragge
184 1.10 ragge net_devinit(f, &ze_driver, ze_myaddr);
185 1.10 ragge return 0;
186 1.1 ragge }
187 1.1 ragge
188 1.1 ragge int
189 1.14 dsl ze_get(struct iodesc *desc, void *pkt, size_t maxlen, saseconds_t timeout)
190 1.1 ragge {
191 1.1 ragge int timeout_ctr=100000*timeout, len, rdes;
192 1.1 ragge
193 1.1 ragge while (timeout_ctr-- > 0) {
194 1.1 ragge
195 1.1 ragge /* If there's not a packet waiting for us, just decrement the
196 1.1 ragge timeout counter. */
197 1.1 ragge if (!(addr->ze_nicsr5 & ZE_NICSR5_RI))
198 1.1 ragge continue;
199 1.1 ragge
200 1.1 ragge /* Look through the receive descriptor list for the packet. */
201 1.1 ragge for (rdes=0; rdes<NRCV; rdes++) {
202 1.1 ragge if (ze_rdes_list[rdes].ze_framelen & ZE_FRAMELEN_OW)
203 1.1 ragge continue;
204 1.1 ragge
205 1.1 ragge /* If the packet has an error, ignore it. */
206 1.1 ragge if (ze_rdes_list[rdes].ze_rdes0 & ZE_RDES0_ES)
207 1.1 ragge len = 0;
208 1.1 ragge
209 1.1 ragge /* Copy the packet, up to the length supplied by the caller, to
210 1.1 ragge the caller's buffer. */
211 1.1 ragge else {
212 1.1 ragge if ((len = (ze_rdes_list[rdes].ze_framelen &
213 1.1 ragge (~ ZE_FRAMELEN_OW))) > maxlen)
214 1.1 ragge len = maxlen;
215 1.1 ragge bcopy((void *)ze_rdes_list[rdes].ze_bufaddr,
216 1.1 ragge pkt,len);
217 1.1 ragge }
218 1.1 ragge
219 1.1 ragge /* Give ownership of this descriptor back to the SGEC. */
220 1.1 ragge ze_rdes_list[rdes].ze_framelen = ZE_FRAMELEN_OW;
221 1.1 ragge
222 1.1 ragge /* If we actually got a good packet, reset the error flags and
223 1.1 ragge tell the SGEC to look for more before returning. */
224 1.1 ragge if (len > 0) {
225 1.1 ragge addr->ze_nicsr5=ZE_NICSR5_RU | ZE_NICSR5_RI |
226 1.1 ragge ZE_NICSR5_IS;
227 1.1 ragge addr->ze_nicsr2=ZE_NICSR2_RXPD;
228 1.1 ragge return len;
229 1.1 ragge }
230 1.1 ragge }
231 1.1 ragge }
232 1.1 ragge
233 1.1 ragge /* If we're going to return an error indication, at least reset the
234 1.1 ragge error flags and tell the SGEC to keep receiving first. */
235 1.1 ragge addr->ze_nicsr5=ZE_NICSR5_RU | ZE_NICSR5_RI | ZE_NICSR5_IS;
236 1.1 ragge addr->ze_nicsr2=ZE_NICSR2_RXPD;
237 1.1 ragge return 0;
238 1.1 ragge }
239 1.1 ragge
240 1.1 ragge int
241 1.14 dsl ze_put(struct iodesc *desc, void *pkt, size_t len)
242 1.1 ragge {
243 1.1 ragge int timeout=100000;
244 1.1 ragge
245 1.1 ragge /* The SGEC maintains its position in the transmit descriptor list
246 1.1 ragge for the next frame to transmit. Unfortunately, there's no way to tell
247 1.1 ragge from software just where that is. We're forced to reset the position
248 1.1 ragge whenever we send a frame, which requires waiting for the previous
249 1.1 ragge frame to be sent. Argh. */
250 1.1 ragge while ((addr->ze_nicsr5 & ZE_NICSR5_TS) == ZE_NICSR5_TS_RUN)
251 1.1 ragge ;
252 1.1 ragge
253 1.1 ragge /* Copy the packet to the buffer we allocated. */
254 1.16 cegger memcpy( (void *)ze_tdes_list[0].ze_bufaddr, pkt, len);
255 1.1 ragge
256 1.1 ragge /* Set the packet length in the descriptor, increasing it to the
257 1.1 ragge minimum size if needed. */
258 1.1 ragge ze_tdes_list[0].ze_bufsize = len;
259 1.1 ragge if (len < ETHER_MIN_LEN)
260 1.1 ragge ze_tdes_list[0].ze_bufsize = ETHER_MIN_LEN;
261 1.1 ragge
262 1.1 ragge /* Give ownership of the descriptor to the SGEC and tell it to start
263 1.1 ragge transmitting. */
264 1.1 ragge ze_tdes_list[0].ze_tdr = ZE_TDR_OW;
265 1.1 ragge addr->ze_nicsr4 = ze_tdes_list;
266 1.1 ragge addr->ze_nicsr1 = ZE_NICSR1_TXPD;
267 1.1 ragge
268 1.1 ragge /* Wait for the frame to be sent, but not too long. */
269 1.1 ragge timeout = 100000;
270 1.10 ragge while (((addr->ze_nicsr5 & ZE_NICSR5_TI) == 0) && (--timeout>0))
271 1.1 ragge ;
272 1.1 ragge
273 1.1 ragge /* Reset the transmitter interrupt pending flag. */
274 1.1 ragge addr->ze_nicsr5 |= ZE_NICSR5_TI;
275 1.1 ragge
276 1.1 ragge /* Return good if we didn't timeout, or error if we did. */
277 1.1 ragge if (timeout>0) return len;
278 1.1 ragge return -1;
279 1.4 ragge }
280 1.4 ragge
281 1.10 ragge int
282 1.10 ragge zeclose(struct open_file *f)
283 1.4 ragge {
284 1.4 ragge addr->ze_nicsr6 = ZE_NICSR6_RE;
285 1.10 ragge
286 1.10 ragge return 0;
287 1.1 ragge }
288