if_scx.c revision 1.23 1 1.23 nisimura /* $NetBSD: if_scx.c,v 1.23 2020/10/10 03:29:48 nisimura Exp $ */
2 1.1 nisimura
3 1.1 nisimura /*-
4 1.1 nisimura * Copyright (c) 2020 The NetBSD Foundation, Inc.
5 1.1 nisimura * All rights reserved.
6 1.1 nisimura *
7 1.1 nisimura * This code is derived from software contributed to The NetBSD Foundation
8 1.1 nisimura * by Tohru Nishimura.
9 1.1 nisimura *
10 1.1 nisimura * Redistribution and use in source and binary forms, with or without
11 1.1 nisimura * modification, are permitted provided that the following conditions
12 1.1 nisimura * are met:
13 1.1 nisimura * 1. Redistributions of source code must retain the above copyright
14 1.1 nisimura * notice, this list of conditions and the following disclaimer.
15 1.1 nisimura * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 nisimura * notice, this list of conditions and the following disclaimer in the
17 1.1 nisimura * documentation and/or other materials provided with the distribution.
18 1.1 nisimura *
19 1.1 nisimura * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 nisimura * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 nisimura * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 nisimura * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 nisimura * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 nisimura * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 nisimura * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 nisimura * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 nisimura * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 nisimura * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 nisimura * POSSIBILITY OF SUCH DAMAGE.
30 1.1 nisimura */
31 1.1 nisimura
32 1.1 nisimura
33 1.1 nisimura /*
34 1.1 nisimura * Socionext SC2A11 SynQuacer NetSec GbE driver
35 1.1 nisimura *
36 1.23 nisimura * Multiple Tx and Rx queues exist inside and dedicated descriptor
37 1.23 nisimura * fields specifies which queue is to use. Three internal micro-processors
38 1.23 nisimura * to handle incoming frames, outgoing frames and packet data crypto
39 1.23 nisimura * processing. uP programs are stored in an external flash memory and
40 1.23 nisimura * have to be loaded by device driver.
41 1.23 nisimura * NetSec uses Synopsys DesignWare Core EMAC. DWC implmentation
42 1.23 nisimura * regiter (0x20) is known to have 0x10.36 and feature register (0x1058)
43 1.23 nisimura * to report XX.XX.
44 1.1 nisimura */
45 1.1 nisimura
46 1.23 nisimura #define NOT_MP_SAFE 0
47 1.23 nisimura
48 1.1 nisimura #include <sys/cdefs.h>
49 1.23 nisimura __KERNEL_RCSID(0, "$NetBSD: if_scx.c,v 1.23 2020/10/10 03:29:48 nisimura Exp $");
50 1.1 nisimura
51 1.1 nisimura #include <sys/param.h>
52 1.1 nisimura #include <sys/bus.h>
53 1.1 nisimura #include <sys/intr.h>
54 1.1 nisimura #include <sys/device.h>
55 1.1 nisimura #include <sys/callout.h>
56 1.1 nisimura #include <sys/mbuf.h>
57 1.1 nisimura #include <sys/malloc.h>
58 1.1 nisimura #include <sys/errno.h>
59 1.1 nisimura #include <sys/rndsource.h>
60 1.1 nisimura #include <sys/kernel.h>
61 1.1 nisimura #include <sys/systm.h>
62 1.1 nisimura
63 1.1 nisimura #include <net/if.h>
64 1.1 nisimura #include <net/if_media.h>
65 1.1 nisimura #include <net/if_dl.h>
66 1.1 nisimura #include <net/if_ether.h>
67 1.1 nisimura #include <dev/mii/mii.h>
68 1.1 nisimura #include <dev/mii/miivar.h>
69 1.1 nisimura #include <net/bpf.h>
70 1.1 nisimura
71 1.1 nisimura #include <dev/fdt/fdtvar.h>
72 1.1 nisimura #include <dev/acpi/acpireg.h>
73 1.1 nisimura #include <dev/acpi/acpivar.h>
74 1.1 nisimura #include <dev/acpi/acpi_intr.h>
75 1.1 nisimura
76 1.23 nisimura /* Socionext SC2A11 descriptor format */
77 1.23 nisimura struct tdes {
78 1.23 nisimura uint32_t t0, t1, t2, t3;
79 1.23 nisimura };
80 1.23 nisimura
81 1.23 nisimura struct rdes {
82 1.23 nisimura uint32_t r0, r1, r2, r3;
83 1.23 nisimura };
84 1.23 nisimura
85 1.23 nisimura #define T0_OWN (1U<<31) /* desc is ready to Tx */
86 1.23 nisimura #define T0_EOD (1U<<30) /* end of descriptor array */
87 1.23 nisimura #define T0_DRID (24) /* 29:24 D-RID */
88 1.23 nisimura #define T0_PT (1U<<21) /* 23:21 PT */
89 1.23 nisimura #define T0_TRID (16) /* 20:16 T-RID */
90 1.23 nisimura #define T0_FS (1U<<9) /* first segment of frame */
91 1.23 nisimura #define T0_LS (1U<<8) /* last segment of frame */
92 1.23 nisimura #define T0_CSUM (1U<<7) /* enable check sum offload */
93 1.23 nisimura #define T0_SGOL (1U<<6) /* enable TCP segment offload */
94 1.23 nisimura #define T0_TRS (1U<<4) /* 5:4 TRS */
95 1.23 nisimura #define T0_IOC (0) /* XXX TBD interrupt when completed */
96 1.23 nisimura /* T1 segment address 63:32 */
97 1.23 nisimura /* T2 segment address 31:0 */
98 1.23 nisimura /* T3 31:16 TCP segment length, 15:0 segment length to transmit */
99 1.23 nisimura
100 1.23 nisimura #define R0_OWN (1U<<31) /* desc is empty */
101 1.23 nisimura #define R0_EOD (1U<<30) /* end of descriptor array */
102 1.23 nisimura #define R0_SRID (24) /* 29:24 S-RID */
103 1.23 nisimura #define R0_FR (1U<<23) /* FR */
104 1.23 nisimura #define R0_ER (1U<<21) /* Rx error indication */
105 1.23 nisimura #define R0_ERR (3U<<16) /* 18:16 receive error code */
106 1.23 nisimura #define R0_TDRID (14) /* 15:14 TD-RID */
107 1.23 nisimura #define R0_FS (1U<<9) /* first segment of frame */
108 1.23 nisimura #define R0_LS (1U<<8) /* last segment of frame */
109 1.23 nisimura #define R0_CSUM (3U<<6) /* 7:6 checksum status */
110 1.23 nisimura #define R0_CERR (2U<<6) /* 0 (undone), 1 (found ok), 2 (bad) */
111 1.23 nisimura /* R1 frame address 63:32 */
112 1.23 nisimura /* R2 frame address 31:0 */
113 1.23 nisimura /* R3 31:16 received frame length, 15:0 buffer length to receive */
114 1.23 nisimura
115 1.19 nisimura /*
116 1.23 nisimura * SC2A11 NetSec registers. 0x100 - 1204
117 1.19 nisimura */
118 1.1 nisimura #define SWRESET 0x104
119 1.1 nisimura #define COMINIT 0x120
120 1.18 nisimura #define xINTSR 0x200 /* aggregated interrupt status report */
121 1.18 nisimura #define IRQ_RX (1U<<1) /* top level Rx interrupt */
122 1.18 nisimura #define IRQ_TX (1U<<0) /* top level Rx interrupt */
123 1.18 nisimura #define xINTAEN 0x204 /* INT_A enable */
124 1.18 nisimura #define xINTA_SET 0x234 /* bit to set */
125 1.18 nisimura #define xINTA_CLR 0x238 /* bit to clr */
126 1.18 nisimura #define xINTBEN 0x23c /* INT_B enable */
127 1.18 nisimura #define xINTB_SET 0x240 /* bit to set */
128 1.18 nisimura #define xINTB_CLR 0x244 /* bit to clr */
129 1.23 nisimura /* 0x00c - 048 */ /* pkt,tls,s0,s1 SR/IE/SET/CLR */
130 1.18 nisimura #define TXISR 0x400
131 1.18 nisimura #define TXIEN 0x404
132 1.18 nisimura #define TXI_SET 0x428
133 1.18 nisimura #define TXI_CLR 0x42c
134 1.1 nisimura #define TXI_NTOWNR (1U<<17)
135 1.1 nisimura #define TXI_TR_ERR (1U<<16)
136 1.1 nisimura #define TXI_TXDONE (1U<<15)
137 1.1 nisimura #define TXI_TMREXP (1U<<14)
138 1.18 nisimura #define RXISR 0x440
139 1.18 nisimura #define RXIEN 0x444
140 1.18 nisimura #define RXI_SET 0x468
141 1.18 nisimura #define RXI_CLR 0x46c
142 1.1 nisimura #define RXI_RC_ERR (1U<<16)
143 1.1 nisimura #define RXI_PKTCNT (1U<<15)
144 1.1 nisimura #define RXI_TMREXP (1U<<14)
145 1.1 nisimura #define TXTIMER 0x41c
146 1.1 nisimura #define RXTIMER 0x45c
147 1.1 nisimura #define TXCOUNT 0x410
148 1.1 nisimura #define RXCOUNT 0x454
149 1.3 nisimura #define H2MENG 0x210 /* DMAC host2media ucode port */
150 1.3 nisimura #define M2HENG 0x21c /* DMAC media2host ucode port */
151 1.1 nisimura #define PKTENG 0x0d0 /* packet engine ucode port */
152 1.18 nisimura #define CLKEN 0x100 /* clock distribution enable */
153 1.18 nisimura #define CLK_G (1U<<5)
154 1.23 nisimura #define CLK_ALL 0x13 /* 0x24 ??? */
155 1.18 nisimura #define MACADRH 0x10c /* ??? */
156 1.18 nisimura #define MACADRL 0x110 /* ??? */
157 1.17 nisimura #define MCVER 0x22c /* micro controller version */
158 1.17 nisimura #define HWVER 0x230 /* hardware version */
159 1.1 nisimura
160 1.19 nisimura /* 0x800 */ /* dec Tx SR/EN/SET/CLR */
161 1.19 nisimura /* 0x840 */ /* enc Rx SR/EN/SET/CLR */
162 1.19 nisimura /* 0x880 */ /* enc TLS Tx SR/IE/SET/CLR */
163 1.19 nisimura /* 0x8c0 */ /* dec TLS Tx SR/IE/SET/CLR */
164 1.19 nisimura /* 0x900 */ /* enc TLS Rx SR/IE/SET/CLR */
165 1.19 nisimura /* 0x940 */ /* dec TLS Rx SR/IE/SET/CLR */
166 1.19 nisimura /* 0x980 */ /* enc RAW Tx SR/IE/SET/CLR */
167 1.19 nisimura /* 0x9c0 */ /* dec RAW Tx SR/IE/SET/CLR */
168 1.19 nisimura /* 0xA00 */ /* enc RAW Rx SR/IE/SET/CLR */
169 1.19 nisimura /* 0xA40 */ /* dec RAW Rx SR/IE/SET/CLR */
170 1.19 nisimura
171 1.23 nisimura /* indirect GMAC registers. accessed thru MACCMD/MACDATA operation */
172 1.1 nisimura #define MACCMD 0x11c4 /* gmac operation */
173 1.1 nisimura #define CMD_IOWR (1U<<28) /* write op */
174 1.1 nisimura #define CMD_BUSY (1U<<31) /* busy bit */
175 1.18 nisimura #define MACSTAT 0x1024 /* gmac status */
176 1.18 nisimura #define MACDATA 0x11c0 /* gmac rd/wr data */
177 1.18 nisimura #define MACINTE 0x1028 /* interrupt enable */
178 1.18 nisimura #define DESC_INIT 0x11fc /* desc engine init */
179 1.18 nisimura #define DESC_SRST 0x1204 /* desc engine sw reset */
180 1.1 nisimura
181 1.19 nisimura /*
182 1.23 nisimura * GMAC registers. not memory mapped, but handled by indirect access.
183 1.23 nisimura * Mostly identical to Synopsys DesignWare Core Ethernet.
184 1.19 nisimura */
185 1.1 nisimura #define GMACMCR 0x0000 /* MAC configuration */
186 1.19 nisimura #define MCR_IBN (1U<<30) /* ??? */
187 1.1 nisimura #define MCR_CST (1U<<25) /* strip CRC */
188 1.1 nisimura #define MCR_TC (1U<<24) /* keep RGMII PHY notified */
189 1.3 nisimura #define MCR_JE (1U<<20) /* ignore oversized >9018 condition */
190 1.19 nisimura #define MCR_IFG (7U<<17) /* 19:17 IFG value 0~7 */
191 1.19 nisimura #define MCR_DRCS (1U<<16) /* ignore (G)MII HDX Tx error */
192 1.18 nisimura #define MCR_USEMII (1U<<15) /* 1: RMII/MII, 0: RGMII (_PS) */
193 1.18 nisimura #define MCR_SPD100 (1U<<14) /* force speed 100 (_FES) */
194 1.19 nisimura #define MCR_DO (1U<<13) /* */
195 1.19 nisimura #define MCR_LOOP (1U<<12) /* */
196 1.1 nisimura #define MCR_USEFDX (1U<<11) /* force full duplex */
197 1.19 nisimura #define MCR_IPCEN (1U<<10) /* handle checksum */
198 1.5 nisimura #define MCR_ACS (1U<<7) /* auto pad strip CRC */
199 1.19 nisimura #define MCR_TE (1U<<3) /* run Tx MAC engine, 0 to stop */
200 1.19 nisimura #define MCR_RE (1U<<2) /* run Rx MAC engine, 0 to stop */
201 1.19 nisimura #define MCR_PREA (3U) /* 1:0 preamble len. 0~2 */
202 1.1 nisimura #define _MCR_FDX 0x0000280c /* XXX TBD */
203 1.1 nisimura #define _MCR_HDX 0x0001a00c /* XXX TBD */
204 1.1 nisimura #define GMACAFR 0x0004 /* frame DA/SA address filter */
205 1.19 nisimura #define AFR_RA (1U<<31) /* accept all irrecspective of filt. */
206 1.18 nisimura #define AFR_HPF (1U<<10) /* hash+perfect filter, or hash only */
207 1.1 nisimura #define AFR_SAF (1U<<9) /* source address filter */
208 1.1 nisimura #define AFR_SAIF (1U<<8) /* SA inverse filtering */
209 1.18 nisimura #define AFR_PCF (2U<<6) /* */
210 1.18 nisimura #define AFR_DBF (1U<<5) /* reject broadcast frame */
211 1.18 nisimura #define AFR_PM (1U<<4) /* accept all multicast frame */
212 1.1 nisimura #define AFR_DAIF (1U<<3) /* DA inverse filtering */
213 1.1 nisimura #define AFR_MHTE (1U<<2) /* use multicast hash table */
214 1.19 nisimura #define AFR_UHTE (1U<<1) /* use hash table for unicast */
215 1.18 nisimura #define AFR_PR (1U<<0) /* run promisc mode */
216 1.1 nisimura #define GMACGAR 0x0010 /* MDIO operation */
217 1.1 nisimura #define GAR_PHY (11) /* mii phy 15:11 */
218 1.1 nisimura #define GAR_REG (6) /* mii reg 10:6 */
219 1.1 nisimura #define GAR_CTL (2) /* control 5:2 */
220 1.1 nisimura #define GAR_IOWR (1U<<1) /* MDIO write op */
221 1.1 nisimura #define GAR_BUSY (1U) /* busy bit */
222 1.1 nisimura #define GMACGDR 0x0014 /* MDIO rd/wr data */
223 1.1 nisimura #define GMACFCR 0x0018 /* 802.3x flowcontrol */
224 1.23 nisimura /* 31:16 pause timer value, 5:4 pause timer threthold */
225 1.1 nisimura #define FCR_RFE (1U<<2) /* accept PAUSE to throttle Tx */
226 1.1 nisimura #define FCR_TFE (1U<<1) /* generate PAUSE to moderate Rx lvl */
227 1.8 nisimura #define GMACVTAG 0x001c /* VLAN tag control */
228 1.14 nisimura #define GMACIMPL 0x0020 /* implementation number XX.YY */
229 1.18 nisimura #define GMACLPIS 0x0030 /* AXI LPI control */
230 1.18 nisimura #define GMACLPIC 0x0034 /* AXI LPI control */
231 1.18 nisimura #define GMACISR 0x0038 /* interrupt status, clear when read */
232 1.18 nisimura #define GMACIMR 0x003c /* interrupt enable */
233 1.19 nisimura #define ISR_TS (1U<<9) /* time stamp operation detected */
234 1.19 nisimura #define ISR_CO (1U<<7) /* Rx checksum offload completed */
235 1.19 nisimura #define ISR_TX (1U<<6) /* Tx completed */
236 1.19 nisimura #define ISR_RX (1U<<5) /* Rx completed */
237 1.19 nisimura #define ISR_ANY (1U<<4) /* any of above 5-7 report */
238 1.19 nisimura #define ISR_LC (1U<<0) /* link status change detected */
239 1.23 nisimura #define GMACMAH0 0x0040 /* my own MAC address 47:32 */
240 1.23 nisimura #define GMACMAL0 0x0044 /* my own MAC address 31:0 */
241 1.23 nisimura #define GMACMAH(i) ((i)*8+0x40) /* supplimental MAC addr 1-15 */
242 1.23 nisimura #define GMACMAL(i) ((i)*8+0x44) /* 31:0 MAC address low part */
243 1.23 nisimura /* MAH bit-31: slot in use, 30: SA to match, 29:24 byte-wise don'care */
244 1.23 nisimura #define GMACAMAH(i) ((i)*8+0x800) /* supplimental MAC addr 16-31 */
245 1.23 nisimura #define GMACAMAL(i) ((i)*8+0x804) /* 31: MAC address low part */
246 1.23 nisimura /* MAH bit-31: slot in use, no other bit is effective */
247 1.23 nisimura #define GMACMHTH 0x0008 /* 64bit multicast hash table 63:32 */
248 1.23 nisimura #define GMACMHTL 0x000c /* 64bit multicast hash table 31:0 */
249 1.23 nisimura #define GMACMHT(i) ((i)*4+0x500) /* 256-bit alternative mcast hash 0-7 */
250 1.23 nisimura #define GMACVHT 0x0588 /* 16-bit VLAN tag hash */
251 1.13 nisimura #define GMACMIISR 0x00d8 /* resolved xMII link status */
252 1.23 nisimura /* 3: link up detected, 2:1 resovled speed (0/1/2), 1: fdx detected */
253 1.13 nisimura
254 1.23 nisimura /* 0x0700 - 0734 ??? */
255 1.18 nisimura
256 1.23 nisimura #define GMACBMR 0x1000 /* DMA bus mode control */
257 1.23 nisimura /* 24 4PBL 8???
258 1.23 nisimura * 23 USP
259 1.23 nisimura * 22:17 RPBL
260 1.23 nisimura * 16 fixed burst, or undefined b.
261 1.23 nisimura * 15:14 priority between Rx and Tx
262 1.23 nisimura * 3 rxtx ratio 41
263 1.23 nisimura * 2 rxtx ratio 31
264 1.23 nisimura * 1 rxtx ratio 21
265 1.23 nisimura * 0 rxtx ratio 11
266 1.23 nisimura * 13:8 PBL packet burst len
267 1.23 nisimura * 7 alternative des8
268 1.23 nisimura * 0 reset op. (SC)
269 1.23 nisimura */
270 1.1 nisimura #define _BMR 0x00412080 /* XXX TBD */
271 1.1 nisimura #define _BMR0 0x00020181 /* XXX TBD */
272 1.16 nisimura #define BMR_RST (1) /* reset op. self clear when done */
273 1.18 nisimura #define GMACTPD 0x1004 /* write any to resume tdes */
274 1.18 nisimura #define GMACRPD 0x1008 /* write any to resume rdes */
275 1.18 nisimura #define GMACRDLA 0x100c /* rdes base address 32bit paddr */
276 1.18 nisimura #define GMACTDLA 0x1010 /* tdes base address 32bit paddr */
277 1.23 nisimura #define _RDLA 0x18000 /* XXX TBD system SRAM ? */
278 1.23 nisimura #define _TDLA 0x1c000 /* XXX TBD system SRAM ? */
279 1.18 nisimura #define GMACDSR 0x1014 /* DMA status detail report; W1C */
280 1.1 nisimura #define GMACOMR 0x1018 /* DMA operation */
281 1.18 nisimura #define OMR_TSF (1U<<25) /* 1: Tx store&forword, 0: immed. */
282 1.18 nisimura #define OMR_RSF (1U<<21) /* 1: Rx store&forward, 0: immed. */
283 1.18 nisimura #define OMR_ST (1U<<13) /* run Tx DMA engine, 0 to stop */
284 1.18 nisimura #define OMR_EFC (1U<<8) /* transmit PAUSE to throttle Rx lvl. */
285 1.18 nisimura #define OMR_FEF (1U<<7) /* allow to receive error frames */
286 1.18 nisimura #define OMR_RS (1U<<1) /* run Rx DMA engine, 0 to stop */
287 1.18 nisimura #define GMACIE 0x101c /* interrupt enable */
288 1.18 nisimura #define GMACEVCS 0x1020 /* missed frame or ovf detected */
289 1.18 nisimura #define GMACRWDT 0x1024 /* receive watchdog timer count */
290 1.18 nisimura #define GMACAXIB 0x1028 /* AXI bus mode control */
291 1.18 nisimura #define GMACAXIS 0x102c /* AXI status report */
292 1.23 nisimura /* 0x1048 - 1054 */ /* descriptor and buffer cur. address */
293 1.18 nisimura #define HWFEA 0x1058 /* feature report */
294 1.1 nisimura
295 1.23 nisimura #define GMACEVCTL 0x0100 /* event counter control */
296 1.23 nisimura #define GMACEVCNT(i) ((i)*4+0x114) /* event counter 0x114 - 0x284 */
297 1.23 nisimura
298 1.23 nisimura /* memory mapped CSR register */
299 1.23 nisimura #define CSR_READ(sc,off) \
300 1.23 nisimura bus_space_read_4((sc)->sc_st, (sc)->sc_sh, (off))
301 1.23 nisimura #define CSR_WRITE(sc,off,val) \
302 1.23 nisimura bus_space_write_4((sc)->sc_st, (sc)->sc_sh, (off), (val))
303 1.1 nisimura
304 1.23 nisimura /* flash memory access */
305 1.23 nisimura #define EE_READ(sc,off) \
306 1.23 nisimura bus_space_read_4((sc)->sc_st, (sc)->sc_eesh, (off))
307 1.1 nisimura
308 1.23 nisimura /*
309 1.23 nisimura * flash memory layout
310 1.23 nisimura * 0x00 - 07 48-bit MAC station address. 4 byte wise in BE order.
311 1.23 nisimura * 0x08 - 0b H->MAC xfer uengine program start addr 63:32.
312 1.23 nisimura * 0x0c - 0f H2M program addr 31:0 (these are absolute addr, not relative)
313 1.23 nisimura * 0x10 - 13 H2M program length in 4 byte count.
314 1.23 nisimura * 0x14 - 0b M->HOST xfer uengine program start addr 63:32.
315 1.23 nisimura * 0x18 - 0f M2H program addr 31:0 (absolute, not relative)
316 1.23 nisimura * 0x1c - 13 M2H program length in 4 byte count.
317 1.23 nisimura * 0x20 - 23 packet uengine program addr 31:0, (absolute, not relative)
318 1.23 nisimura * 0x24 - 27 packet program length in 4 byte count.
319 1.23 nisimura *
320 1.23 nisimura * above ucode are loaded via mapped reg 0x210, 0x21c and 0x0c0.
321 1.23 nisimura */
322 1.1 nisimura
323 1.19 nisimura /*
324 1.23 nisimura * all below are software constraction.
325 1.19 nisimura */
326 1.6 nisimura #define MD_NTXSEGS 16 /* fixed */
327 1.23 nisimura #define MD_TXQUEUELEN 8 /* tunable */
328 1.6 nisimura #define MD_TXQUEUELEN_MASK (MD_TXQUEUELEN - 1)
329 1.6 nisimura #define MD_TXQUEUE_GC (MD_TXQUEUELEN / 4)
330 1.23 nisimura #define MD_NTXDESC 128
331 1.6 nisimura #define MD_NTXDESC_MASK (MD_NTXDESC - 1)
332 1.6 nisimura #define MD_NEXTTX(x) (((x) + 1) & MD_NTXDESC_MASK)
333 1.6 nisimura #define MD_NEXTTXS(x) (((x) + 1) & MD_TXQUEUELEN_MASK)
334 1.6 nisimura
335 1.6 nisimura #define MD_NRXDESC 64 /* tunable */
336 1.6 nisimura #define MD_NRXDESC_MASK (MD_NRXDESC - 1)
337 1.6 nisimura #define MD_NEXTRX(x) (((x) + 1) & MD_NRXDESC_MASK)
338 1.1 nisimura
339 1.1 nisimura struct control_data {
340 1.6 nisimura struct tdes cd_txdescs[MD_NTXDESC];
341 1.6 nisimura struct rdes cd_rxdescs[MD_NRXDESC];
342 1.1 nisimura };
343 1.1 nisimura #define SCX_CDOFF(x) offsetof(struct control_data, x)
344 1.1 nisimura #define SCX_CDTXOFF(x) SCX_CDOFF(cd_txdescs[(x)])
345 1.1 nisimura #define SCX_CDRXOFF(x) SCX_CDOFF(cd_rxdescs[(x)])
346 1.1 nisimura
347 1.1 nisimura struct scx_txsoft {
348 1.1 nisimura struct mbuf *txs_mbuf; /* head of our mbuf chain */
349 1.1 nisimura bus_dmamap_t txs_dmamap; /* our DMA map */
350 1.1 nisimura int txs_firstdesc; /* first descriptor in packet */
351 1.1 nisimura int txs_lastdesc; /* last descriptor in packet */
352 1.1 nisimura int txs_ndesc; /* # of descriptors used */
353 1.1 nisimura };
354 1.1 nisimura
355 1.1 nisimura struct scx_rxsoft {
356 1.1 nisimura struct mbuf *rxs_mbuf; /* head of our mbuf chain */
357 1.1 nisimura bus_dmamap_t rxs_dmamap; /* our DMA map */
358 1.1 nisimura };
359 1.1 nisimura
360 1.1 nisimura struct scx_softc {
361 1.1 nisimura device_t sc_dev; /* generic device information */
362 1.1 nisimura bus_space_tag_t sc_st; /* bus space tag */
363 1.1 nisimura bus_space_handle_t sc_sh; /* bus space handle */
364 1.1 nisimura bus_size_t sc_sz; /* csr map size */
365 1.1 nisimura bus_space_handle_t sc_eesh; /* eeprom section handle */
366 1.1 nisimura bus_size_t sc_eesz; /* eeprom map size */
367 1.1 nisimura bus_dma_tag_t sc_dmat; /* bus DMA tag */
368 1.14 nisimura bus_dma_tag_t sc_dmat32;
369 1.1 nisimura struct ethercom sc_ethercom; /* Ethernet common data */
370 1.1 nisimura struct mii_data sc_mii; /* MII */
371 1.23 nisimura callout_t sc_callout; /* PHY monitor callout */
372 1.1 nisimura bus_dma_segment_t sc_seg; /* descriptor store seg */
373 1.1 nisimura int sc_nseg; /* descriptor store nseg */
374 1.3 nisimura void *sc_ih; /* interrupt cookie */
375 1.1 nisimura int sc_phy_id; /* PHY address */
376 1.3 nisimura int sc_flowflags; /* 802.3x PAUSE flow control */
377 1.7 nisimura uint32_t sc_mdclk; /* GAR 5:2 clock selection */
378 1.3 nisimura uint32_t sc_t0coso; /* T0_CSUM | T0_SGOL to run */
379 1.3 nisimura int sc_ucodeloaded; /* ucode for H2M/M2H/PKT */
380 1.8 nisimura int sc_100mii; /* 1 for RMII/MII, 0 for RGMII */
381 1.1 nisimura int sc_phandle; /* fdt phandle */
382 1.14 nisimura uint64_t sc_freq;
383 1.1 nisimura
384 1.1 nisimura bus_dmamap_t sc_cddmamap; /* control data DMA map */
385 1.1 nisimura #define sc_cddma sc_cddmamap->dm_segs[0].ds_addr
386 1.1 nisimura
387 1.1 nisimura struct control_data *sc_control_data;
388 1.1 nisimura #define sc_txdescs sc_control_data->cd_txdescs
389 1.1 nisimura #define sc_rxdescs sc_control_data->cd_rxdescs
390 1.1 nisimura
391 1.6 nisimura struct scx_txsoft sc_txsoft[MD_TXQUEUELEN];
392 1.6 nisimura struct scx_rxsoft sc_rxsoft[MD_NRXDESC];
393 1.1 nisimura int sc_txfree; /* number of free Tx descriptors */
394 1.1 nisimura int sc_txnext; /* next ready Tx descriptor */
395 1.1 nisimura int sc_txsfree; /* number of free Tx jobs */
396 1.1 nisimura int sc_txsnext; /* next ready Tx job */
397 1.1 nisimura int sc_txsdirty; /* dirty Tx jobs */
398 1.1 nisimura int sc_rxptr; /* next ready Rx descriptor/descsoft */
399 1.1 nisimura
400 1.1 nisimura krndsource_t rnd_source; /* random source */
401 1.1 nisimura };
402 1.1 nisimura
403 1.1 nisimura #define SCX_CDTXADDR(sc, x) ((sc)->sc_cddma + SCX_CDTXOFF((x)))
404 1.1 nisimura #define SCX_CDRXADDR(sc, x) ((sc)->sc_cddma + SCX_CDRXOFF((x)))
405 1.1 nisimura
406 1.1 nisimura #define SCX_CDTXSYNC(sc, x, n, ops) \
407 1.1 nisimura do { \
408 1.1 nisimura int __x, __n; \
409 1.1 nisimura \
410 1.1 nisimura __x = (x); \
411 1.1 nisimura __n = (n); \
412 1.1 nisimura \
413 1.1 nisimura /* If it will wrap around, sync to the end of the ring. */ \
414 1.6 nisimura if ((__x + __n) > MD_NTXDESC) { \
415 1.1 nisimura bus_dmamap_sync((sc)->sc_dmat, (sc)->sc_cddmamap, \
416 1.1 nisimura SCX_CDTXOFF(__x), sizeof(struct tdes) * \
417 1.6 nisimura (MD_NTXDESC - __x), (ops)); \
418 1.6 nisimura __n -= (MD_NTXDESC - __x); \
419 1.1 nisimura __x = 0; \
420 1.1 nisimura } \
421 1.1 nisimura \
422 1.1 nisimura /* Now sync whatever is left. */ \
423 1.1 nisimura bus_dmamap_sync((sc)->sc_dmat, (sc)->sc_cddmamap, \
424 1.1 nisimura SCX_CDTXOFF(__x), sizeof(struct tdes) * __n, (ops)); \
425 1.1 nisimura } while (/*CONSTCOND*/0)
426 1.1 nisimura
427 1.1 nisimura #define SCX_CDRXSYNC(sc, x, ops) \
428 1.1 nisimura do { \
429 1.1 nisimura bus_dmamap_sync((sc)->sc_dmat, (sc)->sc_cddmamap, \
430 1.1 nisimura SCX_CDRXOFF((x)), sizeof(struct rdes), (ops)); \
431 1.1 nisimura } while (/*CONSTCOND*/0)
432 1.1 nisimura
433 1.23 nisimura #define SCX_INIT_RXDESC(sc, x) \
434 1.23 nisimura do { \
435 1.23 nisimura struct scx_rxsoft *__rxs = &(sc)->sc_rxsoft[(x)]; \
436 1.23 nisimura struct rdes *__rxd = &(sc)->sc_rxdescs[(x)]; \
437 1.23 nisimura struct mbuf *__m = __rxs->rxs_mbuf; \
438 1.23 nisimura bus_addr_t __paddr =__rxs->rxs_dmamap->dm_segs[0].ds_addr; \
439 1.23 nisimura __m->m_data = __m->m_ext.ext_buf; \
440 1.23 nisimura __rxd->r3 = __rxs->rxs_dmamap->dm_segs[0].ds_len; \
441 1.23 nisimura __rxd->r2 = htole32(BUS_ADDR_LO32(__paddr)); \
442 1.23 nisimura __rxd->r1 = htole32(BUS_ADDR_HI32(__paddr)); \
443 1.23 nisimura __rxd->r0 = R0_OWN | R0_FS | R0_LS; \
444 1.23 nisimura if ((x) == MD_NRXDESC - 1) __rxd->r0 |= R0_EOD; \
445 1.23 nisimura } while (/*CONSTCOND*/0)
446 1.23 nisimura
447 1.1 nisimura static int scx_fdt_match(device_t, cfdata_t, void *);
448 1.1 nisimura static void scx_fdt_attach(device_t, device_t, void *);
449 1.1 nisimura static int scx_acpi_match(device_t, cfdata_t, void *);
450 1.1 nisimura static void scx_acpi_attach(device_t, device_t, void *);
451 1.1 nisimura
452 1.23 nisimura const CFATTACH_DECL_NEW(scx_fdt, sizeof(struct scx_softc),
453 1.1 nisimura scx_fdt_match, scx_fdt_attach, NULL, NULL);
454 1.1 nisimura
455 1.23 nisimura const CFATTACH_DECL_NEW(scx_acpi, sizeof(struct scx_softc),
456 1.1 nisimura scx_acpi_match, scx_acpi_attach, NULL, NULL);
457 1.1 nisimura
458 1.1 nisimura static void scx_attach_i(struct scx_softc *);
459 1.1 nisimura static void scx_reset(struct scx_softc *);
460 1.1 nisimura static int scx_init(struct ifnet *);
461 1.1 nisimura static void scx_stop(struct ifnet *, int);
462 1.1 nisimura static int scx_ioctl(struct ifnet *, u_long, void *);
463 1.1 nisimura static void scx_set_rcvfilt(struct scx_softc *);
464 1.23 nisimura static void scx_start(struct ifnet *);
465 1.23 nisimura static void scx_watchdog(struct ifnet *);
466 1.1 nisimura static int scx_intr(void *);
467 1.1 nisimura static void txreap(struct scx_softc *);
468 1.1 nisimura static void rxintr(struct scx_softc *);
469 1.1 nisimura static int add_rxbuf(struct scx_softc *, int);
470 1.23 nisimura static void rxdrain(struct scx_softc *sc);
471 1.23 nisimura static void mii_statchg(struct ifnet *);
472 1.23 nisimura static void scx_ifmedia_sts(struct ifnet *, struct ifmediareq *);
473 1.23 nisimura static int mii_readreg(device_t, int, int, uint16_t *);
474 1.23 nisimura static int mii_writereg(device_t, int, int, uint16_t);
475 1.23 nisimura static void phy_tick(void *);
476 1.13 nisimura
477 1.1 nisimura static void loaducode(struct scx_softc *);
478 1.2 nisimura static void injectucode(struct scx_softc *, int, bus_addr_t, bus_size_t);
479 1.23 nisimura
480 1.14 nisimura static int get_mdioclk(uint32_t);
481 1.1 nisimura
482 1.23 nisimura #define WAIT_FOR_SET(sc, reg, set, fail) \
483 1.23 nisimura wait_for_bits(sc, reg, set, ~0, fail)
484 1.23 nisimura #define WAIT_FOR_CLR(sc, reg, clr, fail) \
485 1.23 nisimura wait_for_bits(sc, reg, 0, clr, fail)
486 1.23 nisimura
487 1.23 nisimura static int
488 1.23 nisimura wait_for_bits(struct scx_softc *sc, int reg,
489 1.23 nisimura uint32_t set, uint32_t clr, uint32_t fail)
490 1.23 nisimura {
491 1.23 nisimura uint32_t val;
492 1.23 nisimura int ntries;
493 1.23 nisimura
494 1.23 nisimura for (ntries = 0; ntries < 1000; ntries++) {
495 1.23 nisimura val = CSR_READ(sc, reg);
496 1.23 nisimura if ((val & set) || !(val & clr))
497 1.23 nisimura return 0;
498 1.23 nisimura if (val & fail)
499 1.23 nisimura return 1;
500 1.23 nisimura DELAY(1);
501 1.23 nisimura }
502 1.23 nisimura return 1;
503 1.23 nisimura }
504 1.23 nisimura
505 1.23 nisimura /* GMAC register indirect access */
506 1.23 nisimura static int
507 1.23 nisimura mac_read(struct scx_softc *sc, int reg)
508 1.23 nisimura {
509 1.23 nisimura
510 1.23 nisimura CSR_WRITE(sc, MACCMD, reg);
511 1.23 nisimura (void)WAIT_FOR_CLR(sc, MACCMD, CMD_BUSY, 0);
512 1.23 nisimura return CSR_READ(sc, MACDATA);
513 1.23 nisimura }
514 1.23 nisimura
515 1.23 nisimura static void
516 1.23 nisimura mac_write(struct scx_softc *sc, int reg, int val)
517 1.23 nisimura {
518 1.23 nisimura
519 1.23 nisimura CSR_WRITE(sc, MACDATA, val);
520 1.23 nisimura CSR_WRITE(sc, MACCMD, reg | CMD_IOWR);
521 1.23 nisimura (void)WAIT_FOR_CLR(sc, MACCMD, CMD_BUSY, 0);
522 1.23 nisimura }
523 1.1 nisimura
524 1.1 nisimura static int
525 1.1 nisimura scx_fdt_match(device_t parent, cfdata_t cf, void *aux)
526 1.1 nisimura {
527 1.1 nisimura static const char * compatible[] = {
528 1.1 nisimura "socionext,synquacer-netsec",
529 1.1 nisimura NULL
530 1.1 nisimura };
531 1.1 nisimura struct fdt_attach_args * const faa = aux;
532 1.1 nisimura
533 1.1 nisimura return of_match_compatible(faa->faa_phandle, compatible);
534 1.1 nisimura }
535 1.1 nisimura
536 1.1 nisimura static void
537 1.1 nisimura scx_fdt_attach(device_t parent, device_t self, void *aux)
538 1.1 nisimura {
539 1.1 nisimura struct scx_softc * const sc = device_private(self);
540 1.1 nisimura struct fdt_attach_args * const faa = aux;
541 1.1 nisimura const int phandle = faa->faa_phandle;
542 1.1 nisimura bus_space_tag_t bst = faa->faa_bst;
543 1.1 nisimura bus_space_handle_t bsh;
544 1.1 nisimura bus_space_handle_t eebsh;
545 1.2 nisimura bus_addr_t addr[2];
546 1.2 nisimura bus_size_t size[2];
547 1.1 nisimura char intrstr[128];
548 1.4 nisimura const char *phy_mode;
549 1.1 nisimura
550 1.2 nisimura if (fdtbus_get_reg(phandle, 0, addr+0, size+0) != 0
551 1.2 nisimura || bus_space_map(faa->faa_bst, addr[0], size[0], 0, &bsh) != 0) {
552 1.1 nisimura aprint_error(": unable to map device csr\n");
553 1.1 nisimura return;
554 1.1 nisimura }
555 1.1 nisimura if (!fdtbus_intr_str(phandle, 0, intrstr, sizeof(intrstr))) {
556 1.1 nisimura aprint_error(": failed to decode interrupt\n");
557 1.1 nisimura goto fail;
558 1.1 nisimura }
559 1.1 nisimura sc->sc_ih = fdtbus_intr_establish(phandle, 0, IPL_NET,
560 1.1 nisimura NOT_MP_SAFE, scx_intr, sc);
561 1.1 nisimura if (sc->sc_ih == NULL) {
562 1.1 nisimura aprint_error_dev(self, "couldn't establish interrupt\n");
563 1.1 nisimura goto fail;
564 1.1 nisimura }
565 1.2 nisimura if (fdtbus_get_reg(phandle, 1, addr+1, size+1) != 0
566 1.10 nisimura || bus_space_map(faa->faa_bst, addr[1], size[1], 0, &eebsh) != 0) {
567 1.1 nisimura aprint_error(": unable to map device eeprom\n");
568 1.1 nisimura goto fail;
569 1.1 nisimura }
570 1.1 nisimura
571 1.1 nisimura aprint_naive("\n");
572 1.14 nisimura /* aprint_normal(": Gigabit Ethernet Controller\n"); */
573 1.1 nisimura aprint_normal_dev(self, "interrupt on %s\n", intrstr);
574 1.1 nisimura
575 1.1 nisimura sc->sc_dev = self;
576 1.1 nisimura sc->sc_st = bst;
577 1.1 nisimura sc->sc_sh = bsh;
578 1.2 nisimura sc->sc_sz = size[0];
579 1.1 nisimura sc->sc_eesh = eebsh;
580 1.2 nisimura sc->sc_eesz = size[1];
581 1.1 nisimura sc->sc_dmat = faa->faa_dmat;
582 1.15 nisimura sc->sc_dmat32 = faa->faa_dmat; /* XXX */
583 1.1 nisimura sc->sc_phandle = phandle;
584 1.14 nisimura
585 1.14 nisimura phy_mode = fdtbus_get_string(phandle, "phy-mode");
586 1.14 nisimura if (phy_mode == NULL)
587 1.14 nisimura aprint_error(": missing 'phy-mode' property\n");
588 1.18 nisimura sc->sc_100mii = (phy_mode && strcmp(phy_mode, "rgmii") != 0);
589 1.1 nisimura
590 1.1 nisimura scx_attach_i(sc);
591 1.1 nisimura return;
592 1.1 nisimura fail:
593 1.1 nisimura if (sc->sc_eesz)
594 1.1 nisimura bus_space_unmap(sc->sc_st, sc->sc_eesh, sc->sc_eesz);
595 1.1 nisimura if (sc->sc_sz)
596 1.1 nisimura bus_space_unmap(sc->sc_st, sc->sc_sh, sc->sc_sz);
597 1.1 nisimura return;
598 1.1 nisimura }
599 1.1 nisimura
600 1.1 nisimura static int
601 1.1 nisimura scx_acpi_match(device_t parent, cfdata_t cf, void *aux)
602 1.1 nisimura {
603 1.1 nisimura static const char * compatible[] = {
604 1.1 nisimura "SCX0001",
605 1.1 nisimura NULL
606 1.1 nisimura };
607 1.1 nisimura struct acpi_attach_args *aa = aux;
608 1.1 nisimura
609 1.1 nisimura if (aa->aa_node->ad_type != ACPI_TYPE_DEVICE)
610 1.1 nisimura return 0;
611 1.1 nisimura return acpi_match_hid(aa->aa_node->ad_devinfo, compatible);
612 1.1 nisimura }
613 1.1 nisimura
614 1.1 nisimura static void
615 1.1 nisimura scx_acpi_attach(device_t parent, device_t self, void *aux)
616 1.1 nisimura {
617 1.1 nisimura struct scx_softc * const sc = device_private(self);
618 1.1 nisimura struct acpi_attach_args * const aa = aux;
619 1.1 nisimura ACPI_HANDLE handle = aa->aa_node->ad_handle;
620 1.1 nisimura bus_space_tag_t bst = aa->aa_memt;
621 1.1 nisimura bus_space_handle_t bsh, eebsh;
622 1.1 nisimura struct acpi_resources res;
623 1.1 nisimura struct acpi_mem *mem;
624 1.1 nisimura struct acpi_irq *irq;
625 1.14 nisimura char *phy_mode;
626 1.14 nisimura ACPI_INTEGER acpi_phy, acpi_freq;
627 1.1 nisimura ACPI_STATUS rv;
628 1.1 nisimura
629 1.1 nisimura rv = acpi_resource_parse(self, handle, "_CRS",
630 1.1 nisimura &res, &acpi_resource_parse_ops_default);
631 1.1 nisimura if (ACPI_FAILURE(rv))
632 1.1 nisimura return;
633 1.1 nisimura mem = acpi_res_mem(&res, 0);
634 1.1 nisimura irq = acpi_res_irq(&res, 0);
635 1.1 nisimura if (mem == NULL || irq == NULL || mem->ar_length == 0) {
636 1.1 nisimura aprint_error(": incomplete csr resources\n");
637 1.1 nisimura return;
638 1.1 nisimura }
639 1.1 nisimura if (bus_space_map(bst, mem->ar_base, mem->ar_length, 0, &bsh) != 0) {
640 1.1 nisimura aprint_error(": couldn't map registers\n");
641 1.1 nisimura return;
642 1.1 nisimura }
643 1.1 nisimura sc->sc_sz = mem->ar_length;
644 1.1 nisimura sc->sc_ih = acpi_intr_establish(self, (uint64_t)handle, IPL_NET,
645 1.1 nisimura NOT_MP_SAFE, scx_intr, sc, device_xname(self));
646 1.1 nisimura if (sc->sc_ih == NULL) {
647 1.1 nisimura aprint_error_dev(self, "couldn't establish interrupt\n");
648 1.1 nisimura goto fail;
649 1.1 nisimura }
650 1.1 nisimura mem = acpi_res_mem(&res, 1); /* EEPROM for MAC address and ucode */
651 1.1 nisimura if (mem == NULL || mem->ar_length == 0) {
652 1.1 nisimura aprint_error(": incomplete eeprom resources\n");
653 1.1 nisimura goto fail;
654 1.1 nisimura }
655 1.1 nisimura if (bus_space_map(bst, mem->ar_base, mem->ar_length, 0, &eebsh) != 0) {
656 1.1 nisimura aprint_error(": couldn't map registers\n");
657 1.1 nisimura goto fail;
658 1.1 nisimura }
659 1.1 nisimura sc->sc_eesz = mem->ar_length;
660 1.1 nisimura
661 1.14 nisimura rv = acpi_dsd_string(handle, "phy-mode", &phy_mode);
662 1.14 nisimura if (ACPI_FAILURE(rv)) {
663 1.14 nisimura aprint_error(": missing 'phy-mode' property\n");
664 1.14 nisimura phy_mode = NULL;
665 1.14 nisimura }
666 1.14 nisimura rv = acpi_dsd_integer(handle, "phy-channel", &acpi_phy);
667 1.14 nisimura if (ACPI_FAILURE(rv))
668 1.14 nisimura acpi_phy = 31;
669 1.14 nisimura rv = acpi_dsd_integer(handle, "socionext,phy-clock-frequency",
670 1.14 nisimura &acpi_freq);
671 1.14 nisimura if (ACPI_FAILURE(rv))
672 1.14 nisimura acpi_freq = 999;
673 1.14 nisimura
674 1.1 nisimura aprint_naive("\n");
675 1.14 nisimura /* aprint_normal(": Gigabit Ethernet Controller\n"); */
676 1.1 nisimura
677 1.1 nisimura sc->sc_dev = self;
678 1.1 nisimura sc->sc_st = bst;
679 1.1 nisimura sc->sc_sh = bsh;
680 1.1 nisimura sc->sc_eesh = eebsh;
681 1.1 nisimura sc->sc_dmat = aa->aa_dmat64;
682 1.14 nisimura sc->sc_dmat32 = aa->aa_dmat; /* descriptor needs dma32 */
683 1.1 nisimura
684 1.14 nisimura aprint_normal_dev(self,
685 1.14 nisimura "phy mode %s, phy id %d, freq %ld\n", phy_mode, (int)acpi_phy, acpi_freq);
686 1.14 nisimura sc->sc_100mii = (phy_mode && strcmp(phy_mode, "rgmii") != 0);
687 1.15 nisimura sc->sc_phy_id = (int)acpi_phy;
688 1.14 nisimura sc->sc_freq = acpi_freq;
689 1.16 nisimura aprint_normal_dev(self,
690 1.16 nisimura "GMACGAR %08x\n", mac_read(sc, GMACGAR));
691 1.10 nisimura
692 1.1 nisimura scx_attach_i(sc);
693 1.1 nisimura
694 1.1 nisimura acpi_resource_cleanup(&res);
695 1.1 nisimura return;
696 1.1 nisimura fail:
697 1.1 nisimura if (sc->sc_eesz > 0)
698 1.1 nisimura bus_space_unmap(sc->sc_st, sc->sc_eesh, sc->sc_eesz);
699 1.1 nisimura if (sc->sc_sz > 0)
700 1.1 nisimura bus_space_unmap(sc->sc_st, sc->sc_sh, sc->sc_sz);
701 1.1 nisimura acpi_resource_cleanup(&res);
702 1.1 nisimura return;
703 1.1 nisimura }
704 1.1 nisimura
705 1.1 nisimura static void
706 1.1 nisimura scx_attach_i(struct scx_softc *sc)
707 1.1 nisimura {
708 1.1 nisimura struct ifnet * const ifp = &sc->sc_ethercom.ec_if;
709 1.1 nisimura struct mii_data * const mii = &sc->sc_mii;
710 1.1 nisimura struct ifmedia * const ifm = &mii->mii_media;
711 1.23 nisimura uint32_t hwver, dwimp, dwfea;
712 1.1 nisimura uint8_t enaddr[ETHER_ADDR_LEN];
713 1.1 nisimura bus_dma_segment_t seg;
714 1.1 nisimura uint32_t csr;
715 1.1 nisimura int i, nseg, error = 0;
716 1.1 nisimura
717 1.23 nisimura hwver = CSR_READ(sc, HWVER); /* Socionext version */
718 1.22 nisimura dwimp = mac_read(sc, GMACIMPL); /* DW EMAC XX.YY */
719 1.23 nisimura dwfea = mac_read(sc, HWFEA); /* DW feature */
720 1.22 nisimura aprint_normal_dev(sc->sc_dev,
721 1.23 nisimura "Socionext NetSec GbE %d.%d (impl 0x%x, feature 0x%x)\n",
722 1.23 nisimura hwver >> 16, hwver & 0xffff,
723 1.23 nisimura dwimp, dwfea);
724 1.22 nisimura
725 1.22 nisimura /* fetch MAC address in flash. stored in big endian order */
726 1.23 nisimura csr = EE_READ(sc, 0x00);
727 1.1 nisimura enaddr[0] = csr >> 24;
728 1.1 nisimura enaddr[1] = csr >> 16;
729 1.1 nisimura enaddr[2] = csr >> 8;
730 1.1 nisimura enaddr[3] = csr;
731 1.1 nisimura csr = bus_space_read_4(sc->sc_st, sc->sc_eesh, 4);
732 1.23 nisimura csr = EE_READ(sc, 0x04);
733 1.1 nisimura enaddr[4] = csr >> 24;
734 1.1 nisimura enaddr[5] = csr >> 16;
735 1.1 nisimura aprint_normal_dev(sc->sc_dev,
736 1.1 nisimura "Ethernet address %s\n", ether_sprintf(enaddr));
737 1.1 nisimura
738 1.14 nisimura sc->sc_mdclk = get_mdioclk(sc->sc_freq); /* 5:2 clk control */
739 1.1 nisimura
740 1.3 nisimura if (sc->sc_ucodeloaded == 0)
741 1.1 nisimura loaducode(sc);
742 1.1 nisimura
743 1.1 nisimura mii->mii_ifp = ifp;
744 1.1 nisimura mii->mii_readreg = mii_readreg;
745 1.1 nisimura mii->mii_writereg = mii_writereg;
746 1.1 nisimura mii->mii_statchg = mii_statchg;
747 1.1 nisimura
748 1.1 nisimura sc->sc_ethercom.ec_mii = mii;
749 1.21 nisimura ifmedia_init(ifm, 0, ether_mediachange, scx_ifmedia_sts);
750 1.23 nisimura mii_attach(sc->sc_dev, mii, 0xffffffff, MII_PHY_ANY,
751 1.1 nisimura MII_OFFSET_ANY, MIIF_DOPAUSE);
752 1.1 nisimura if (LIST_FIRST(&mii->mii_phys) == NULL) {
753 1.1 nisimura ifmedia_add(ifm, IFM_ETHER | IFM_NONE, 0, NULL);
754 1.1 nisimura ifmedia_set(ifm, IFM_ETHER | IFM_NONE);
755 1.1 nisimura } else
756 1.1 nisimura ifmedia_set(ifm, IFM_ETHER | IFM_AUTO);
757 1.1 nisimura ifm->ifm_media = ifm->ifm_cur->ifm_media; /* as if user has requested */
758 1.1 nisimura
759 1.1 nisimura /*
760 1.1 nisimura * Allocate the control data structures, and create and load the
761 1.1 nisimura * DMA map for it.
762 1.1 nisimura */
763 1.14 nisimura error = bus_dmamem_alloc(sc->sc_dmat32,
764 1.1 nisimura sizeof(struct control_data), PAGE_SIZE, 0, &seg, 1, &nseg, 0);
765 1.1 nisimura if (error != 0) {
766 1.1 nisimura aprint_error_dev(sc->sc_dev,
767 1.1 nisimura "unable to allocate control data, error = %d\n", error);
768 1.1 nisimura goto fail_0;
769 1.1 nisimura }
770 1.14 nisimura error = bus_dmamem_map(sc->sc_dmat32, &seg, nseg,
771 1.1 nisimura sizeof(struct control_data), (void **)&sc->sc_control_data,
772 1.1 nisimura BUS_DMA_COHERENT);
773 1.1 nisimura if (error != 0) {
774 1.1 nisimura aprint_error_dev(sc->sc_dev,
775 1.1 nisimura "unable to map control data, error = %d\n", error);
776 1.1 nisimura goto fail_1;
777 1.1 nisimura }
778 1.14 nisimura error = bus_dmamap_create(sc->sc_dmat32,
779 1.1 nisimura sizeof(struct control_data), 1,
780 1.1 nisimura sizeof(struct control_data), 0, 0, &sc->sc_cddmamap);
781 1.1 nisimura if (error != 0) {
782 1.1 nisimura aprint_error_dev(sc->sc_dev,
783 1.1 nisimura "unable to create control data DMA map, "
784 1.1 nisimura "error = %d\n", error);
785 1.1 nisimura goto fail_2;
786 1.1 nisimura }
787 1.14 nisimura error = bus_dmamap_load(sc->sc_dmat32, sc->sc_cddmamap,
788 1.1 nisimura sc->sc_control_data, sizeof(struct control_data), NULL, 0);
789 1.1 nisimura if (error != 0) {
790 1.1 nisimura aprint_error_dev(sc->sc_dev,
791 1.1 nisimura "unable to load control data DMA map, error = %d\n",
792 1.1 nisimura error);
793 1.1 nisimura goto fail_3;
794 1.1 nisimura }
795 1.6 nisimura for (i = 0; i < MD_TXQUEUELEN; i++) {
796 1.14 nisimura if ((error = bus_dmamap_create(sc->sc_dmat32, MCLBYTES,
797 1.6 nisimura MD_NTXSEGS, MCLBYTES, 0, 0,
798 1.1 nisimura &sc->sc_txsoft[i].txs_dmamap)) != 0) {
799 1.1 nisimura aprint_error_dev(sc->sc_dev,
800 1.1 nisimura "unable to create tx DMA map %d, error = %d\n",
801 1.1 nisimura i, error);
802 1.1 nisimura goto fail_4;
803 1.1 nisimura }
804 1.1 nisimura }
805 1.6 nisimura for (i = 0; i < MD_NRXDESC; i++) {
806 1.14 nisimura if ((error = bus_dmamap_create(sc->sc_dmat32, MCLBYTES,
807 1.1 nisimura 1, MCLBYTES, 0, 0, &sc->sc_rxsoft[i].rxs_dmamap)) != 0) {
808 1.1 nisimura aprint_error_dev(sc->sc_dev,
809 1.1 nisimura "unable to create rx DMA map %d, error = %d\n",
810 1.1 nisimura i, error);
811 1.1 nisimura goto fail_5;
812 1.1 nisimura }
813 1.1 nisimura sc->sc_rxsoft[i].rxs_mbuf = NULL;
814 1.1 nisimura }
815 1.1 nisimura sc->sc_seg = seg;
816 1.1 nisimura sc->sc_nseg = nseg;
817 1.14 nisimura aprint_normal_dev(sc->sc_dev, "descriptor ds_addr %lx, ds_len %lx, nseg %d\n", seg.ds_addr, seg.ds_len, nseg);
818 1.1 nisimura
819 1.23 nisimura strlcpy(ifp->if_xname, device_xname(sc->sc_dev), IFNAMSIZ);
820 1.23 nisimura ifp->if_softc = sc;
821 1.23 nisimura ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST;
822 1.23 nisimura ifp->if_ioctl = scx_ioctl;
823 1.23 nisimura ifp->if_start = scx_start;
824 1.23 nisimura ifp->if_watchdog = scx_watchdog;
825 1.23 nisimura ifp->if_init = scx_init;
826 1.23 nisimura ifp->if_stop = scx_stop;
827 1.23 nisimura IFQ_SET_READY(&ifp->if_snd);
828 1.23 nisimura
829 1.23 nisimura sc->sc_flowflags = 0;
830 1.23 nisimura
831 1.23 nisimura if_attach(ifp);
832 1.23 nisimura if_deferred_start_init(ifp, NULL);
833 1.23 nisimura ether_ifattach(ifp, enaddr);
834 1.23 nisimura
835 1.23 nisimura callout_init(&sc->sc_callout, 0);
836 1.23 nisimura callout_setfunc(&sc->sc_callout, phy_tick, sc);
837 1.1 nisimura
838 1.1 nisimura rnd_attach_source(&sc->rnd_source, device_xname(sc->sc_dev),
839 1.1 nisimura RND_TYPE_NET, RND_FLAG_DEFAULT);
840 1.1 nisimura
841 1.1 nisimura return;
842 1.1 nisimura
843 1.1 nisimura fail_5:
844 1.6 nisimura for (i = 0; i < MD_NRXDESC; i++) {
845 1.1 nisimura if (sc->sc_rxsoft[i].rxs_dmamap != NULL)
846 1.1 nisimura bus_dmamap_destroy(sc->sc_dmat,
847 1.1 nisimura sc->sc_rxsoft[i].rxs_dmamap);
848 1.1 nisimura }
849 1.1 nisimura fail_4:
850 1.6 nisimura for (i = 0; i < MD_TXQUEUELEN; i++) {
851 1.1 nisimura if (sc->sc_txsoft[i].txs_dmamap != NULL)
852 1.1 nisimura bus_dmamap_destroy(sc->sc_dmat,
853 1.1 nisimura sc->sc_txsoft[i].txs_dmamap);
854 1.1 nisimura }
855 1.1 nisimura bus_dmamap_unload(sc->sc_dmat, sc->sc_cddmamap);
856 1.1 nisimura fail_3:
857 1.1 nisimura bus_dmamap_destroy(sc->sc_dmat, sc->sc_cddmamap);
858 1.1 nisimura fail_2:
859 1.1 nisimura bus_dmamem_unmap(sc->sc_dmat, (void *)sc->sc_control_data,
860 1.1 nisimura sizeof(struct control_data));
861 1.1 nisimura fail_1:
862 1.1 nisimura bus_dmamem_free(sc->sc_dmat, &seg, nseg);
863 1.1 nisimura fail_0:
864 1.1 nisimura if (sc->sc_phandle)
865 1.1 nisimura fdtbus_intr_disestablish(sc->sc_phandle, sc->sc_ih);
866 1.1 nisimura else
867 1.1 nisimura acpi_intr_disestablish(sc->sc_ih);
868 1.1 nisimura bus_space_unmap(sc->sc_st, sc->sc_sh, sc->sc_sz);
869 1.1 nisimura return;
870 1.1 nisimura }
871 1.1 nisimura
872 1.1 nisimura static void
873 1.1 nisimura scx_reset(struct scx_softc *sc)
874 1.1 nisimura {
875 1.16 nisimura int loop = 0, busy;
876 1.1 nisimura
877 1.18 nisimura mac_write(sc, GMACOMR, 0);
878 1.20 nisimura mac_write(sc, GMACBMR, BMR_RST);
879 1.16 nisimura do {
880 1.19 nisimura DELAY(1);
881 1.16 nisimura busy = mac_read(sc, GMACBMR) & BMR_RST;
882 1.16 nisimura } while (++loop < 3000 && busy);
883 1.1 nisimura mac_write(sc, GMACBMR, _BMR);
884 1.19 nisimura mac_write(sc, GMACAFR, 0);
885 1.18 nisimura
886 1.19 nisimura CSR_WRITE(sc, CLKEN, CLK_ALL); /* distribute clock sources */
887 1.18 nisimura CSR_WRITE(sc, SWRESET, 0); /* reset operation */
888 1.18 nisimura CSR_WRITE(sc, SWRESET, 1U<<31); /* manifest run */
889 1.23 nisimura CSR_WRITE(sc, COMINIT, 3); /* DB|CLS */
890 1.19 nisimura
891 1.19 nisimura mac_write(sc, GMACEVCTL, 1);
892 1.1 nisimura }
893 1.1 nisimura
894 1.1 nisimura static int
895 1.1 nisimura scx_init(struct ifnet *ifp)
896 1.1 nisimura {
897 1.1 nisimura struct scx_softc *sc = ifp->if_softc;
898 1.1 nisimura const uint8_t *ea = CLLADDR(ifp->if_sadl);
899 1.1 nisimura uint32_t csr;
900 1.23 nisimura int i, error;
901 1.1 nisimura
902 1.1 nisimura /* Cancel pending I/O. */
903 1.1 nisimura scx_stop(ifp, 0);
904 1.1 nisimura
905 1.1 nisimura /* Reset the chip to a known state. */
906 1.1 nisimura scx_reset(sc);
907 1.1 nisimura
908 1.13 nisimura /* build sane Tx */
909 1.13 nisimura memset(sc->sc_txdescs, 0, sizeof(struct tdes) * MD_NTXDESC);
910 1.13 nisimura sc->sc_txdescs[MD_NTXDESC - 1].t0 |= T0_EOD; /* tie off the ring */
911 1.13 nisimura SCX_CDTXSYNC(sc, 0, MD_NTXDESC,
912 1.13 nisimura BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
913 1.13 nisimura sc->sc_txfree = MD_NTXDESC;
914 1.13 nisimura sc->sc_txnext = 0;
915 1.13 nisimura for (i = 0; i < MD_TXQUEUELEN; i++)
916 1.13 nisimura sc->sc_txsoft[i].txs_mbuf = NULL;
917 1.13 nisimura sc->sc_txsfree = MD_TXQUEUELEN;
918 1.13 nisimura sc->sc_txsnext = 0;
919 1.13 nisimura sc->sc_txsdirty = 0;
920 1.13 nisimura
921 1.13 nisimura /* load Rx descriptors with fresh mbuf */
922 1.23 nisimura for (i = 0; i < MD_NRXDESC; i++) {
923 1.23 nisimura if (sc->sc_rxsoft[i].rxs_mbuf == NULL) {
924 1.23 nisimura if ((error = add_rxbuf(sc, i)) != 0) {
925 1.23 nisimura aprint_error_dev(sc->sc_dev,
926 1.23 nisimura "unable to allocate or map rx "
927 1.23 nisimura "buffer %d, error = %d\n",
928 1.23 nisimura i, error);
929 1.23 nisimura rxdrain(sc);
930 1.23 nisimura goto out;
931 1.23 nisimura }
932 1.23 nisimura }
933 1.23 nisimura else
934 1.23 nisimura SCX_INIT_RXDESC(sc, i);
935 1.23 nisimura }
936 1.23 nisimura sc->sc_rxdescs[MD_NRXDESC - 1].r0 = R0_EOD;
937 1.23 nisimura sc->sc_rxptr = 0;
938 1.13 nisimura sc->sc_rxptr = 0;
939 1.13 nisimura
940 1.23 nisimura /* set my address in perfect match slot 0. little endin order */
941 1.23 nisimura csr = (ea[3] << 24) | (ea[2] << 16) | (ea[1] << 8) | ea[0];
942 1.23 nisimura mac_write(sc, GMACMAL0, csr);
943 1.23 nisimura csr = (ea[5] << 8) | ea[4];
944 1.23 nisimura mac_write(sc, GMACMAH0, csr);
945 1.23 nisimura
946 1.23 nisimura /* accept multicast frame or run promisc mode */
947 1.23 nisimura scx_set_rcvfilt(sc);
948 1.23 nisimura
949 1.23 nisimura /* set current media */
950 1.23 nisimura if ((error = ether_mediachange(ifp)) != 0)
951 1.23 nisimura goto out;
952 1.23 nisimura
953 1.13 nisimura /* XXX 32 bit paddr XXX hand Tx/Rx rings to HW XXX */
954 1.18 nisimura mac_write(sc, GMACTDLA, SCX_CDTXADDR(sc, 0));
955 1.18 nisimura mac_write(sc, GMACRDLA, SCX_CDRXADDR(sc, 0));
956 1.13 nisimura
957 1.1 nisimura /* kick to start GMAC engine */
958 1.18 nisimura CSR_WRITE(sc, RXI_CLR, ~0);
959 1.18 nisimura CSR_WRITE(sc, TXI_CLR, ~0);
960 1.13 nisimura csr = mac_read(sc, GMACOMR);
961 1.18 nisimura mac_write(sc, GMACOMR, csr | OMR_RS | OMR_ST);
962 1.1 nisimura
963 1.1 nisimura ifp->if_flags |= IFF_RUNNING;
964 1.1 nisimura ifp->if_flags &= ~IFF_OACTIVE;
965 1.1 nisimura
966 1.1 nisimura /* start one second timer */
967 1.23 nisimura callout_schedule(&sc->sc_callout, hz);
968 1.23 nisimura out:
969 1.23 nisimura return error;
970 1.1 nisimura }
971 1.1 nisimura
972 1.1 nisimura static void
973 1.1 nisimura scx_stop(struct ifnet *ifp, int disable)
974 1.1 nisimura {
975 1.1 nisimura struct scx_softc *sc = ifp->if_softc;
976 1.1 nisimura
977 1.1 nisimura /* Stop the one second clock. */
978 1.23 nisimura callout_stop(&sc->sc_callout);
979 1.1 nisimura
980 1.1 nisimura /* Down the MII. */
981 1.1 nisimura mii_down(&sc->sc_mii);
982 1.1 nisimura
983 1.1 nisimura /* Mark the interface down and cancel the watchdog timer. */
984 1.1 nisimura ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE);
985 1.1 nisimura ifp->if_timer = 0;
986 1.1 nisimura }
987 1.1 nisimura
988 1.23 nisimura static int
989 1.23 nisimura scx_ioctl(struct ifnet *ifp, u_long cmd, void *data)
990 1.1 nisimura {
991 1.1 nisimura struct scx_softc *sc = ifp->if_softc;
992 1.23 nisimura struct ifreq *ifr = (struct ifreq *)data;
993 1.23 nisimura struct ifmedia *ifm = &sc->sc_mii.mii_media;
994 1.23 nisimura int s, error;
995 1.1 nisimura
996 1.23 nisimura s = splnet();
997 1.1 nisimura
998 1.23 nisimura switch (cmd) {
999 1.23 nisimura case SIOCSIFMEDIA:
1000 1.23 nisimura /* Flow control requires full-duplex mode. */
1001 1.23 nisimura if (IFM_SUBTYPE(ifr->ifr_media) == IFM_AUTO ||
1002 1.23 nisimura (ifr->ifr_media & IFM_FDX) == 0)
1003 1.23 nisimura ifr->ifr_media &= ~IFM_ETH_FMASK;
1004 1.23 nisimura if (IFM_SUBTYPE(ifr->ifr_media) != IFM_AUTO) {
1005 1.23 nisimura if ((ifr->ifr_media & IFM_ETH_FMASK) == IFM_FLOW) {
1006 1.23 nisimura /* We can do both TXPAUSE and RXPAUSE. */
1007 1.1 nisimura ifr->ifr_media |=
1008 1.1 nisimura IFM_ETH_TXPAUSE | IFM_ETH_RXPAUSE;
1009 1.1 nisimura }
1010 1.1 nisimura sc->sc_flowflags = ifr->ifr_media & IFM_ETH_FMASK;
1011 1.1 nisimura }
1012 1.1 nisimura error = ifmedia_ioctl(ifp, ifr, ifm, cmd);
1013 1.1 nisimura break;
1014 1.1 nisimura default:
1015 1.23 nisimura error = ether_ioctl(ifp, cmd, data);
1016 1.23 nisimura if (error != ENETRESET)
1017 1.1 nisimura break;
1018 1.1 nisimura error = 0;
1019 1.1 nisimura if (cmd == SIOCSIFCAP)
1020 1.1 nisimura error = (*ifp->if_init)(ifp);
1021 1.1 nisimura if (cmd != SIOCADDMULTI && cmd != SIOCDELMULTI)
1022 1.1 nisimura ;
1023 1.1 nisimura else if (ifp->if_flags & IFF_RUNNING) {
1024 1.1 nisimura /*
1025 1.1 nisimura * Multicast list has changed; set the hardware filter
1026 1.1 nisimura * accordingly.
1027 1.1 nisimura */
1028 1.1 nisimura scx_set_rcvfilt(sc);
1029 1.1 nisimura }
1030 1.1 nisimura break;
1031 1.1 nisimura }
1032 1.1 nisimura
1033 1.1 nisimura splx(s);
1034 1.1 nisimura return error;
1035 1.1 nisimura }
1036 1.1 nisimura
1037 1.1 nisimura static void
1038 1.1 nisimura scx_set_rcvfilt(struct scx_softc *sc)
1039 1.1 nisimura {
1040 1.1 nisimura struct ethercom * const ec = &sc->sc_ethercom;
1041 1.1 nisimura struct ifnet * const ifp = &ec->ec_if;
1042 1.1 nisimura struct ether_multistep step;
1043 1.1 nisimura struct ether_multi *enm;
1044 1.17 nisimura uint32_t mchash[2]; /* 2x 32 = 64 bit */
1045 1.1 nisimura uint32_t csr, crc;
1046 1.1 nisimura int i;
1047 1.1 nisimura
1048 1.13 nisimura csr = mac_read(sc, GMACAFR);
1049 1.18 nisimura csr &= ~(AFR_PR | AFR_PM | AFR_MHTE | AFR_HPF);
1050 1.13 nisimura mac_write(sc, GMACAFR, csr);
1051 1.1 nisimura
1052 1.22 nisimura /* clear 15 entry supplimental perfect match filter */
1053 1.22 nisimura for (i = 1; i < 16; i++)
1054 1.22 nisimura mac_write(sc, GMACMAH(i), 0);
1055 1.22 nisimura /* build 64 bit multicast hash filter */
1056 1.22 nisimura crc = mchash[1] = mchash[0] = 0;
1057 1.22 nisimura
1058 1.1 nisimura ETHER_LOCK(ec);
1059 1.1 nisimura if (ifp->if_flags & IFF_PROMISC) {
1060 1.1 nisimura ec->ec_flags |= ETHER_F_ALLMULTI;
1061 1.1 nisimura ETHER_UNLOCK(ec);
1062 1.22 nisimura /* run promisc. mode */
1063 1.22 nisimura csr |= AFR_PR;
1064 1.1 nisimura goto update;
1065 1.1 nisimura }
1066 1.1 nisimura ec->ec_flags &= ~ETHER_F_ALLMULTI;
1067 1.1 nisimura ETHER_FIRST_MULTI(step, ec, enm);
1068 1.1 nisimura i = 1; /* slot 0 is occupied */
1069 1.1 nisimura while (enm != NULL) {
1070 1.1 nisimura if (memcmp(enm->enm_addrlo, enm->enm_addrhi, ETHER_ADDR_LEN)) {
1071 1.1 nisimura /*
1072 1.1 nisimura * We must listen to a range of multicast addresses.
1073 1.1 nisimura * For now, just accept all multicasts, rather than
1074 1.1 nisimura * trying to set only those filter bits needed to match
1075 1.1 nisimura * the range. (At this time, the only use of address
1076 1.1 nisimura * ranges is for IP multicast routing, for which the
1077 1.1 nisimura * range is big enough to require all bits set.)
1078 1.1 nisimura */
1079 1.1 nisimura ec->ec_flags |= ETHER_F_ALLMULTI;
1080 1.1 nisimura ETHER_UNLOCK(ec);
1081 1.22 nisimura /* accept all multi */
1082 1.22 nisimura csr |= AFR_PM;
1083 1.1 nisimura goto update;
1084 1.1 nisimura }
1085 1.1 nisimura printf("[%d] %s\n", i, ether_sprintf(enm->enm_addrlo));
1086 1.1 nisimura if (i < 16) {
1087 1.9 nisimura /* use 15 entry perfect match filter */
1088 1.1 nisimura uint32_t addr;
1089 1.1 nisimura uint8_t *ep = enm->enm_addrlo;
1090 1.1 nisimura addr = (ep[3] << 24) | (ep[2] << 16)
1091 1.1 nisimura | (ep[1] << 8) | ep[0];
1092 1.13 nisimura mac_write(sc, GMACMAL(i), addr);
1093 1.1 nisimura addr = (ep[5] << 8) | ep[4];
1094 1.13 nisimura mac_write(sc, GMACMAH(i), addr | 1U<<31);
1095 1.1 nisimura } else {
1096 1.1 nisimura /* use hash table when too many */
1097 1.1 nisimura /* bit_reserve_32(~crc) !? */
1098 1.1 nisimura crc = ether_crc32_le(enm->enm_addrlo, ETHER_ADDR_LEN);
1099 1.17 nisimura /* 1(31) 5(30:26) bit sampling */
1100 1.17 nisimura mchash[crc >> 31] |= 1 << ((crc >> 26) & 0x1f);
1101 1.1 nisimura }
1102 1.1 nisimura ETHER_NEXT_MULTI(step, enm);
1103 1.1 nisimura i++;
1104 1.1 nisimura }
1105 1.1 nisimura ETHER_UNLOCK(ec);
1106 1.1 nisimura if (crc)
1107 1.21 nisimura csr |= AFR_MHTE;
1108 1.21 nisimura csr |= AFR_HPF; /* use hash+perfect */
1109 1.17 nisimura mac_write(sc, GMACMHTH, mchash[1]);
1110 1.17 nisimura mac_write(sc, GMACMHTL, mchash[0]);
1111 1.1 nisimura update:
1112 1.21 nisimura /* With PR or PM, MHTE/MHTL/MHTH are never consulted. really? */
1113 1.13 nisimura mac_write(sc, GMACAFR, csr);
1114 1.1 nisimura return;
1115 1.1 nisimura }
1116 1.1 nisimura
1117 1.1 nisimura static void
1118 1.1 nisimura scx_start(struct ifnet *ifp)
1119 1.1 nisimura {
1120 1.1 nisimura struct scx_softc *sc = ifp->if_softc;
1121 1.1 nisimura struct mbuf *m0, *m;
1122 1.1 nisimura struct scx_txsoft *txs;
1123 1.1 nisimura bus_dmamap_t dmamap;
1124 1.1 nisimura int error, nexttx, lasttx, ofree, seg;
1125 1.1 nisimura uint32_t tdes0;
1126 1.1 nisimura
1127 1.1 nisimura if ((ifp->if_flags & (IFF_RUNNING | IFF_OACTIVE)) != IFF_RUNNING)
1128 1.1 nisimura return;
1129 1.1 nisimura
1130 1.1 nisimura /* Remember the previous number of free descriptors. */
1131 1.1 nisimura ofree = sc->sc_txfree;
1132 1.1 nisimura
1133 1.1 nisimura /*
1134 1.1 nisimura * Loop through the send queue, setting up transmit descriptors
1135 1.1 nisimura * until we drain the queue, or use up all available transmit
1136 1.1 nisimura * descriptors.
1137 1.1 nisimura */
1138 1.1 nisimura for (;;) {
1139 1.1 nisimura IFQ_POLL(&ifp->if_snd, m0);
1140 1.1 nisimura if (m0 == NULL)
1141 1.1 nisimura break;
1142 1.1 nisimura
1143 1.6 nisimura if (sc->sc_txsfree < MD_TXQUEUE_GC) {
1144 1.1 nisimura txreap(sc);
1145 1.1 nisimura if (sc->sc_txsfree == 0)
1146 1.1 nisimura break;
1147 1.1 nisimura }
1148 1.1 nisimura txs = &sc->sc_txsoft[sc->sc_txsnext];
1149 1.1 nisimura dmamap = txs->txs_dmamap;
1150 1.1 nisimura
1151 1.1 nisimura error = bus_dmamap_load_mbuf(sc->sc_dmat, dmamap, m0,
1152 1.1 nisimura BUS_DMA_WRITE | BUS_DMA_NOWAIT);
1153 1.1 nisimura if (error) {
1154 1.1 nisimura if (error == EFBIG) {
1155 1.1 nisimura aprint_error_dev(sc->sc_dev,
1156 1.1 nisimura "Tx packet consumes too many "
1157 1.1 nisimura "DMA segments, dropping...\n");
1158 1.1 nisimura IFQ_DEQUEUE(&ifp->if_snd, m0);
1159 1.1 nisimura m_freem(m0);
1160 1.1 nisimura continue;
1161 1.1 nisimura }
1162 1.1 nisimura /* Short on resources, just stop for now. */
1163 1.1 nisimura break;
1164 1.1 nisimura }
1165 1.1 nisimura
1166 1.1 nisimura if (dmamap->dm_nsegs > sc->sc_txfree) {
1167 1.1 nisimura /*
1168 1.1 nisimura * Not enough free descriptors to transmit this
1169 1.1 nisimura * packet. We haven't committed anything yet,
1170 1.1 nisimura * so just unload the DMA map, put the packet
1171 1.1 nisimura * back on the queue, and punt. Notify the upper
1172 1.1 nisimura * layer that there are not more slots left.
1173 1.1 nisimura */
1174 1.1 nisimura ifp->if_flags |= IFF_OACTIVE;
1175 1.1 nisimura bus_dmamap_unload(sc->sc_dmat, dmamap);
1176 1.1 nisimura break;
1177 1.1 nisimura }
1178 1.1 nisimura
1179 1.1 nisimura IFQ_DEQUEUE(&ifp->if_snd, m0);
1180 1.1 nisimura
1181 1.1 nisimura /*
1182 1.1 nisimura * WE ARE NOW COMMITTED TO TRANSMITTING THE PACKET.
1183 1.1 nisimura */
1184 1.1 nisimura
1185 1.1 nisimura bus_dmamap_sync(sc->sc_dmat, dmamap, 0, dmamap->dm_mapsize,
1186 1.1 nisimura BUS_DMASYNC_PREWRITE);
1187 1.1 nisimura
1188 1.1 nisimura tdes0 = 0; /* to postpone 1st segment T0_OWN write */
1189 1.1 nisimura lasttx = -1;
1190 1.1 nisimura for (nexttx = sc->sc_txnext, seg = 0;
1191 1.1 nisimura seg < dmamap->dm_nsegs;
1192 1.6 nisimura seg++, nexttx = MD_NEXTTX(nexttx)) {
1193 1.1 nisimura struct tdes *tdes = &sc->sc_txdescs[nexttx];
1194 1.1 nisimura bus_addr_t paddr = dmamap->dm_segs[seg].ds_addr;
1195 1.1 nisimura /*
1196 1.1 nisimura * If this is the first descriptor we're
1197 1.1 nisimura * enqueueing, don't set the OWN bit just
1198 1.1 nisimura * yet. That could cause a race condition.
1199 1.1 nisimura * We'll do it below.
1200 1.1 nisimura */
1201 1.1 nisimura tdes->t3 = dmamap->dm_segs[seg].ds_len;
1202 1.1 nisimura tdes->t2 = htole32(BUS_ADDR_LO32(paddr));
1203 1.1 nisimura tdes->t1 = htole32(BUS_ADDR_HI32(paddr));
1204 1.1 nisimura tdes->t0 = tdes0 | (tdes->t0 & T0_EOD) |
1205 1.1 nisimura (15 << T0_TRID) | T0_PT |
1206 1.1 nisimura sc->sc_t0coso | T0_TRS;
1207 1.1 nisimura tdes0 = T0_OWN; /* 2nd and other segments */
1208 1.1 nisimura lasttx = nexttx;
1209 1.1 nisimura }
1210 1.1 nisimura /*
1211 1.1 nisimura * Outgoing NFS mbuf must be unloaded when Tx completed.
1212 1.1 nisimura * Without T1_IC NFS mbuf is left unack'ed for excessive
1213 1.1 nisimura * time and NFS stops to proceed until scx_watchdog()
1214 1.1 nisimura * calls txreap() to reclaim the unack'ed mbuf.
1215 1.1 nisimura * It's painful to traverse every mbuf chain to determine
1216 1.1 nisimura * whether someone is waiting for Tx completion.
1217 1.1 nisimura */
1218 1.1 nisimura m = m0;
1219 1.1 nisimura do {
1220 1.1 nisimura if ((m->m_flags & M_EXT) && m->m_ext.ext_free) {
1221 1.1 nisimura sc->sc_txdescs[lasttx].t0 |= T0_IOC; /* !!! */
1222 1.1 nisimura break;
1223 1.1 nisimura }
1224 1.1 nisimura } while ((m = m->m_next) != NULL);
1225 1.1 nisimura
1226 1.1 nisimura /* Write deferred 1st segment T0_OWN at the final stage */
1227 1.1 nisimura sc->sc_txdescs[lasttx].t0 |= T0_LS;
1228 1.1 nisimura sc->sc_txdescs[sc->sc_txnext].t0 |= (T0_FS | T0_OWN);
1229 1.1 nisimura SCX_CDTXSYNC(sc, sc->sc_txnext, dmamap->dm_nsegs,
1230 1.1 nisimura BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
1231 1.1 nisimura
1232 1.1 nisimura /* Tell DMA start transmit */
1233 1.18 nisimura mac_write(sc, GMACTPD, 1);
1234 1.1 nisimura
1235 1.1 nisimura txs->txs_mbuf = m0;
1236 1.1 nisimura txs->txs_firstdesc = sc->sc_txnext;
1237 1.1 nisimura txs->txs_lastdesc = lasttx;
1238 1.1 nisimura txs->txs_ndesc = dmamap->dm_nsegs;
1239 1.1 nisimura
1240 1.1 nisimura sc->sc_txfree -= txs->txs_ndesc;
1241 1.1 nisimura sc->sc_txnext = nexttx;
1242 1.1 nisimura sc->sc_txsfree--;
1243 1.6 nisimura sc->sc_txsnext = MD_NEXTTXS(sc->sc_txsnext);
1244 1.1 nisimura /*
1245 1.1 nisimura * Pass the packet to any BPF listeners.
1246 1.1 nisimura */
1247 1.1 nisimura bpf_mtap(ifp, m0, BPF_D_OUT);
1248 1.1 nisimura }
1249 1.1 nisimura
1250 1.1 nisimura if (sc->sc_txsfree == 0 || sc->sc_txfree == 0) {
1251 1.1 nisimura /* No more slots left; notify upper layer. */
1252 1.1 nisimura ifp->if_flags |= IFF_OACTIVE;
1253 1.1 nisimura }
1254 1.1 nisimura if (sc->sc_txfree != ofree) {
1255 1.1 nisimura /* Set a watchdog timer in case the chip flakes out. */
1256 1.1 nisimura ifp->if_timer = 5;
1257 1.1 nisimura }
1258 1.1 nisimura }
1259 1.1 nisimura
1260 1.23 nisimura static void
1261 1.23 nisimura scx_watchdog(struct ifnet *ifp)
1262 1.23 nisimura {
1263 1.23 nisimura struct scx_softc *sc = ifp->if_softc;
1264 1.23 nisimura
1265 1.23 nisimura /*
1266 1.23 nisimura * Since we're not interrupting every packet, sweep
1267 1.23 nisimura * up before we report an error.
1268 1.23 nisimura */
1269 1.23 nisimura txreap(sc);
1270 1.23 nisimura
1271 1.23 nisimura if (sc->sc_txfree != MD_NTXDESC) {
1272 1.23 nisimura aprint_error_dev(sc->sc_dev,
1273 1.23 nisimura "device timeout (txfree %d txsfree %d txnext %d)\n",
1274 1.23 nisimura sc->sc_txfree, sc->sc_txsfree, sc->sc_txnext);
1275 1.23 nisimura if_statinc(ifp, if_oerrors);
1276 1.23 nisimura
1277 1.23 nisimura /* Reset the interface. */
1278 1.23 nisimura scx_init(ifp);
1279 1.23 nisimura }
1280 1.23 nisimura
1281 1.23 nisimura scx_start(ifp);
1282 1.23 nisimura }
1283 1.23 nisimura
1284 1.1 nisimura static int
1285 1.1 nisimura scx_intr(void *arg)
1286 1.1 nisimura {
1287 1.1 nisimura struct scx_softc *sc = arg;
1288 1.1 nisimura struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1289 1.3 nisimura
1290 1.1 nisimura (void)ifp;
1291 1.13 nisimura /* XXX decode interrupt cause to pick isr() XXX */
1292 1.1 nisimura rxintr(sc);
1293 1.1 nisimura txreap(sc);
1294 1.1 nisimura return 1;
1295 1.1 nisimura }
1296 1.1 nisimura
1297 1.1 nisimura static void
1298 1.1 nisimura txreap(struct scx_softc *sc)
1299 1.1 nisimura {
1300 1.1 nisimura struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1301 1.1 nisimura struct scx_txsoft *txs;
1302 1.1 nisimura uint32_t txstat;
1303 1.1 nisimura int i;
1304 1.1 nisimura
1305 1.1 nisimura ifp->if_flags &= ~IFF_OACTIVE;
1306 1.1 nisimura
1307 1.6 nisimura for (i = sc->sc_txsdirty; sc->sc_txsfree != MD_TXQUEUELEN;
1308 1.6 nisimura i = MD_NEXTTXS(i), sc->sc_txsfree++) {
1309 1.1 nisimura txs = &sc->sc_txsoft[i];
1310 1.1 nisimura
1311 1.1 nisimura SCX_CDTXSYNC(sc, txs->txs_firstdesc, txs->txs_ndesc,
1312 1.1 nisimura BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
1313 1.1 nisimura
1314 1.1 nisimura txstat = sc->sc_txdescs[txs->txs_lastdesc].t0;
1315 1.1 nisimura if (txstat & T0_OWN) /* desc is still in use */
1316 1.1 nisimura break;
1317 1.1 nisimura
1318 1.1 nisimura /* There is no way to tell transmission status per frame */
1319 1.1 nisimura
1320 1.1 nisimura if_statinc(ifp, if_opackets);
1321 1.1 nisimura
1322 1.1 nisimura sc->sc_txfree += txs->txs_ndesc;
1323 1.1 nisimura bus_dmamap_sync(sc->sc_dmat, txs->txs_dmamap,
1324 1.1 nisimura 0, txs->txs_dmamap->dm_mapsize, BUS_DMASYNC_POSTWRITE);
1325 1.1 nisimura bus_dmamap_unload(sc->sc_dmat, txs->txs_dmamap);
1326 1.1 nisimura m_freem(txs->txs_mbuf);
1327 1.1 nisimura txs->txs_mbuf = NULL;
1328 1.1 nisimura }
1329 1.1 nisimura sc->sc_txsdirty = i;
1330 1.6 nisimura if (sc->sc_txsfree == MD_TXQUEUELEN)
1331 1.1 nisimura ifp->if_timer = 0;
1332 1.1 nisimura }
1333 1.1 nisimura
1334 1.1 nisimura static void
1335 1.1 nisimura rxintr(struct scx_softc *sc)
1336 1.1 nisimura {
1337 1.1 nisimura struct ifnet *ifp = &sc->sc_ethercom.ec_if;
1338 1.1 nisimura struct scx_rxsoft *rxs;
1339 1.1 nisimura struct mbuf *m;
1340 1.1 nisimura uint32_t rxstat;
1341 1.1 nisimura int i, len;
1342 1.1 nisimura
1343 1.6 nisimura for (i = sc->sc_rxptr; /*CONSTCOND*/ 1; i = MD_NEXTRX(i)) {
1344 1.1 nisimura rxs = &sc->sc_rxsoft[i];
1345 1.1 nisimura
1346 1.1 nisimura SCX_CDRXSYNC(sc, i,
1347 1.1 nisimura BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
1348 1.1 nisimura
1349 1.1 nisimura rxstat = sc->sc_rxdescs[i].r0;
1350 1.1 nisimura if (rxstat & R0_OWN) /* desc is left empty */
1351 1.1 nisimura break;
1352 1.1 nisimura
1353 1.1 nisimura /* R0_FS | R0_LS must have been marked for this desc */
1354 1.1 nisimura
1355 1.1 nisimura bus_dmamap_sync(sc->sc_dmat, rxs->rxs_dmamap, 0,
1356 1.1 nisimura rxs->rxs_dmamap->dm_mapsize, BUS_DMASYNC_POSTREAD);
1357 1.1 nisimura
1358 1.1 nisimura len = sc->sc_rxdescs[i].r3 >> 16; /* 31:16 received */
1359 1.1 nisimura len -= ETHER_CRC_LEN; /* Trim CRC off */
1360 1.1 nisimura m = rxs->rxs_mbuf;
1361 1.1 nisimura
1362 1.1 nisimura if (add_rxbuf(sc, i) != 0) {
1363 1.1 nisimura if_statinc(ifp, if_ierrors);
1364 1.1 nisimura SCX_INIT_RXDESC(sc, i);
1365 1.1 nisimura bus_dmamap_sync(sc->sc_dmat,
1366 1.1 nisimura rxs->rxs_dmamap, 0,
1367 1.1 nisimura rxs->rxs_dmamap->dm_mapsize,
1368 1.1 nisimura BUS_DMASYNC_PREREAD);
1369 1.1 nisimura continue;
1370 1.1 nisimura }
1371 1.1 nisimura
1372 1.1 nisimura m_set_rcvif(m, ifp);
1373 1.1 nisimura m->m_pkthdr.len = m->m_len = len;
1374 1.1 nisimura
1375 1.1 nisimura if (rxstat & R0_CSUM) {
1376 1.1 nisimura uint32_t csum = M_CSUM_IPv4;
1377 1.1 nisimura if (rxstat & R0_CERR)
1378 1.1 nisimura csum |= M_CSUM_IPv4_BAD;
1379 1.1 nisimura m->m_pkthdr.csum_flags |= csum;
1380 1.1 nisimura }
1381 1.1 nisimura if_percpuq_enqueue(ifp->if_percpuq, m);
1382 1.1 nisimura }
1383 1.1 nisimura sc->sc_rxptr = i;
1384 1.1 nisimura }
1385 1.1 nisimura
1386 1.1 nisimura static int
1387 1.1 nisimura add_rxbuf(struct scx_softc *sc, int i)
1388 1.1 nisimura {
1389 1.1 nisimura struct scx_rxsoft *rxs = &sc->sc_rxsoft[i];
1390 1.1 nisimura struct mbuf *m;
1391 1.1 nisimura int error;
1392 1.1 nisimura
1393 1.1 nisimura MGETHDR(m, M_DONTWAIT, MT_DATA);
1394 1.1 nisimura if (m == NULL)
1395 1.1 nisimura return ENOBUFS;
1396 1.1 nisimura
1397 1.1 nisimura MCLGET(m, M_DONTWAIT);
1398 1.1 nisimura if ((m->m_flags & M_EXT) == 0) {
1399 1.1 nisimura m_freem(m);
1400 1.1 nisimura return ENOBUFS;
1401 1.1 nisimura }
1402 1.1 nisimura
1403 1.1 nisimura if (rxs->rxs_mbuf != NULL)
1404 1.1 nisimura bus_dmamap_unload(sc->sc_dmat, rxs->rxs_dmamap);
1405 1.1 nisimura
1406 1.1 nisimura rxs->rxs_mbuf = m;
1407 1.1 nisimura
1408 1.1 nisimura error = bus_dmamap_load(sc->sc_dmat, rxs->rxs_dmamap,
1409 1.1 nisimura m->m_ext.ext_buf, m->m_ext.ext_size, NULL, BUS_DMA_NOWAIT);
1410 1.1 nisimura if (error) {
1411 1.1 nisimura aprint_error_dev(sc->sc_dev,
1412 1.1 nisimura "can't load rx DMA map %d, error = %d\n", i, error);
1413 1.1 nisimura panic("add_rxbuf");
1414 1.1 nisimura }
1415 1.1 nisimura
1416 1.1 nisimura bus_dmamap_sync(sc->sc_dmat, rxs->rxs_dmamap, 0,
1417 1.1 nisimura rxs->rxs_dmamap->dm_mapsize, BUS_DMASYNC_PREREAD);
1418 1.1 nisimura SCX_INIT_RXDESC(sc, i);
1419 1.1 nisimura
1420 1.1 nisimura return 0;
1421 1.1 nisimura }
1422 1.1 nisimura
1423 1.23 nisimura static void
1424 1.23 nisimura rxdrain(struct scx_softc *sc)
1425 1.23 nisimura {
1426 1.23 nisimura struct scx_rxsoft *rxs;
1427 1.23 nisimura int i;
1428 1.23 nisimura
1429 1.23 nisimura for (i = 0; i < MD_NRXDESC; i++) {
1430 1.23 nisimura rxs = &sc->sc_rxsoft[i];
1431 1.23 nisimura if (rxs->rxs_mbuf != NULL) {
1432 1.23 nisimura bus_dmamap_unload(sc->sc_dmat, rxs->rxs_dmamap);
1433 1.23 nisimura m_freem(rxs->rxs_mbuf);
1434 1.23 nisimura rxs->rxs_mbuf = NULL;
1435 1.23 nisimura }
1436 1.23 nisimura }
1437 1.23 nisimura }
1438 1.23 nisimura
1439 1.23 nisimura void
1440 1.23 nisimura mii_statchg(struct ifnet *ifp)
1441 1.23 nisimura {
1442 1.23 nisimura struct scx_softc *sc = ifp->if_softc;
1443 1.23 nisimura struct mii_data *mii = &sc->sc_mii;
1444 1.23 nisimura const int Mbps[4] = { 10, 100, 1000, 0 };
1445 1.23 nisimura uint32_t miisr, mcr, fcr;
1446 1.23 nisimura int spd;
1447 1.23 nisimura
1448 1.23 nisimura /* decode MIISR register value */
1449 1.23 nisimura miisr = mac_read(sc, GMACMIISR);
1450 1.23 nisimura spd = Mbps[(miisr >> 1) & 03];
1451 1.23 nisimura #if 1
1452 1.23 nisimura printf("MII link status (0x%x) %s",
1453 1.23 nisimura miisr, (miisr & 8) ? "up" : "down");
1454 1.23 nisimura if (miisr & 8) {
1455 1.23 nisimura printf(" spd%d", spd);
1456 1.23 nisimura if (miisr & 01)
1457 1.23 nisimura printf(",full-duplex");
1458 1.23 nisimura }
1459 1.23 nisimura printf("\n");
1460 1.23 nisimura #endif
1461 1.23 nisimura /* Get flow control negotiation result. */
1462 1.23 nisimura if (IFM_SUBTYPE(mii->mii_media.ifm_cur->ifm_media) == IFM_AUTO &&
1463 1.23 nisimura (mii->mii_media_active & IFM_ETH_FMASK) != sc->sc_flowflags)
1464 1.23 nisimura sc->sc_flowflags = mii->mii_media_active & IFM_ETH_FMASK;
1465 1.23 nisimura
1466 1.23 nisimura /* Adjust speed 1000/100/10. */
1467 1.23 nisimura mcr = mac_read(sc, GMACMCR);
1468 1.23 nisimura if (spd == 1000)
1469 1.23 nisimura mcr &= ~MCR_USEMII; /* RGMII+SPD1000 */
1470 1.23 nisimura else {
1471 1.23 nisimura if (spd == 100 && sc->sc_100mii)
1472 1.23 nisimura mcr |= MCR_SPD100;
1473 1.23 nisimura mcr |= MCR_USEMII;
1474 1.23 nisimura }
1475 1.23 nisimura mcr |= MCR_CST | MCR_JE;
1476 1.23 nisimura if (sc->sc_100mii == 0)
1477 1.23 nisimura mcr |= MCR_IBN;
1478 1.23 nisimura
1479 1.23 nisimura /* Adjust duplexity and PAUSE flow control. */
1480 1.23 nisimura mcr &= ~MCR_USEFDX;
1481 1.23 nisimura fcr = mac_read(sc, GMACFCR) & ~(FCR_TFE | FCR_RFE);
1482 1.23 nisimura if (miisr & 01) {
1483 1.23 nisimura if (sc->sc_flowflags & IFM_ETH_TXPAUSE)
1484 1.23 nisimura fcr |= FCR_TFE;
1485 1.23 nisimura if (sc->sc_flowflags & IFM_ETH_RXPAUSE)
1486 1.23 nisimura fcr |= FCR_RFE;
1487 1.23 nisimura mcr |= MCR_USEFDX;
1488 1.23 nisimura }
1489 1.23 nisimura mac_write(sc, GMACMCR, mcr);
1490 1.23 nisimura mac_write(sc, GMACFCR, fcr);
1491 1.23 nisimura
1492 1.23 nisimura printf("%ctxfe, %crxfe\n",
1493 1.23 nisimura (fcr & FCR_TFE) ? '+' : '-', (fcr & FCR_RFE) ? '+' : '-');
1494 1.23 nisimura }
1495 1.23 nisimura
1496 1.23 nisimura static void
1497 1.23 nisimura scx_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr)
1498 1.23 nisimura {
1499 1.23 nisimura struct scx_softc *sc = ifp->if_softc;
1500 1.23 nisimura struct mii_data *mii = &sc->sc_mii;
1501 1.23 nisimura
1502 1.23 nisimura mii_pollstat(mii);
1503 1.23 nisimura ifmr->ifm_status = mii->mii_media_status;
1504 1.23 nisimura ifmr->ifm_active = sc->sc_flowflags |
1505 1.23 nisimura (mii->mii_media_active & ~IFM_ETH_FMASK);
1506 1.23 nisimura }
1507 1.23 nisimura
1508 1.1 nisimura static int
1509 1.23 nisimura mii_readreg(device_t self, int phy, int reg, uint16_t *val)
1510 1.1 nisimura {
1511 1.23 nisimura struct scx_softc *sc = device_private(self);
1512 1.23 nisimura uint32_t miia;
1513 1.23 nisimura int ntries;
1514 1.23 nisimura
1515 1.23 nisimura #define CLK_150_250M (1<<2)
1516 1.23 nisimura uint32_t clk = CSR_READ(sc, CLKEN);
1517 1.23 nisimura CSR_WRITE(sc, CLKEN, clk | CLK_G);
1518 1.1 nisimura
1519 1.23 nisimura miia = (phy << GAR_PHY) | (reg << GAR_REG) | CLK_150_250M;
1520 1.23 nisimura mac_write(sc, GMACGAR, miia | GAR_BUSY);
1521 1.23 nisimura for (ntries = 0; ntries < 1000; ntries++) {
1522 1.23 nisimura if ((mac_read(sc, GMACGAR) & GAR_BUSY) == 0)
1523 1.23 nisimura goto unbusy;
1524 1.23 nisimura DELAY(1);
1525 1.23 nisimura }
1526 1.23 nisimura return ETIMEDOUT;
1527 1.23 nisimura unbusy:
1528 1.23 nisimura *val = mac_read(sc, GMACGDR);
1529 1.23 nisimura return 0;
1530 1.1 nisimura }
1531 1.1 nisimura
1532 1.1 nisimura static int
1533 1.23 nisimura mii_writereg(device_t self, int phy, int reg, uint16_t val)
1534 1.1 nisimura {
1535 1.23 nisimura struct scx_softc *sc = device_private(self);
1536 1.23 nisimura uint32_t miia;
1537 1.23 nisimura uint16_t dummy;
1538 1.23 nisimura int ntries;
1539 1.1 nisimura
1540 1.23 nisimura uint32_t clk = CSR_READ(sc, CLKEN);
1541 1.23 nisimura CSR_WRITE(sc, CLKEN, clk | CLK_G);
1542 1.23 nisimura
1543 1.23 nisimura miia = (phy << GAR_PHY) | (reg << GAR_REG) | sc->sc_mdclk;
1544 1.23 nisimura mac_write(sc, GMACGDR, val);
1545 1.23 nisimura mac_write(sc, GMACGAR, miia | GAR_IOWR | GAR_BUSY);
1546 1.23 nisimura for (ntries = 0; ntries < 1000; ntries++) {
1547 1.23 nisimura if ((mac_read(sc, GMACGAR) & GAR_BUSY) == 0)
1548 1.23 nisimura goto unbusy;
1549 1.23 nisimura DELAY(1);
1550 1.23 nisimura }
1551 1.23 nisimura return ETIMEDOUT;
1552 1.23 nisimura unbusy:
1553 1.23 nisimura mii_readreg(self, phy, MII_PHYIDR1, &dummy); /* dummy read cycle */
1554 1.23 nisimura return 0;
1555 1.1 nisimura }
1556 1.1 nisimura
1557 1.1 nisimura static void
1558 1.23 nisimura phy_tick(void *arg)
1559 1.1 nisimura {
1560 1.23 nisimura struct scx_softc *sc = arg;
1561 1.23 nisimura struct mii_data *mii = &sc->sc_mii;
1562 1.23 nisimura int s;
1563 1.1 nisimura
1564 1.23 nisimura s = splnet();
1565 1.23 nisimura mii_tick(mii);
1566 1.23 nisimura splx(s);
1567 1.23 nisimura #ifdef SCX_EVENT_COUNTERS /* if tally counter details are made clear */
1568 1.23 nisimura #endif
1569 1.23 nisimura callout_schedule(&sc->sc_callout, hz);
1570 1.1 nisimura }
1571 1.1 nisimura
1572 1.13 nisimura /*
1573 1.23 nisimura * 3 independent uengines exist to process host2media, media2host and
1574 1.13 nisimura * packet data flows.
1575 1.13 nisimura */
1576 1.1 nisimura static void
1577 1.1 nisimura loaducode(struct scx_softc *sc)
1578 1.1 nisimura {
1579 1.1 nisimura uint32_t up, lo, sz;
1580 1.1 nisimura uint64_t addr;
1581 1.1 nisimura
1582 1.3 nisimura sc->sc_ucodeloaded = 1;
1583 1.3 nisimura
1584 1.1 nisimura up = EE_READ(sc, 0x08); /* H->M ucode addr high */
1585 1.1 nisimura lo = EE_READ(sc, 0x0c); /* H->M ucode addr low */
1586 1.1 nisimura sz = EE_READ(sc, 0x10); /* H->M ucode size */
1587 1.2 nisimura sz *= 4;
1588 1.1 nisimura addr = ((uint64_t)up << 32) | lo;
1589 1.14 nisimura aprint_normal_dev(sc->sc_dev, "0x%x H2M ucode %u\n", lo, sz);
1590 1.3 nisimura injectucode(sc, H2MENG, (bus_addr_t)addr, (bus_size_t)sz);
1591 1.1 nisimura
1592 1.1 nisimura up = EE_READ(sc, 0x14); /* M->H ucode addr high */
1593 1.1 nisimura lo = EE_READ(sc, 0x18); /* M->H ucode addr low */
1594 1.1 nisimura sz = EE_READ(sc, 0x1c); /* M->H ucode size */
1595 1.2 nisimura sz *= 4;
1596 1.1 nisimura addr = ((uint64_t)up << 32) | lo;
1597 1.3 nisimura injectucode(sc, M2HENG, (bus_addr_t)addr, (bus_size_t)sz);
1598 1.14 nisimura aprint_normal_dev(sc->sc_dev, "0x%x M2H ucode %u\n", lo, sz);
1599 1.1 nisimura
1600 1.1 nisimura lo = EE_READ(sc, 0x20); /* PKT ucode addr */
1601 1.1 nisimura sz = EE_READ(sc, 0x24); /* PKT ucode size */
1602 1.2 nisimura sz *= 4;
1603 1.3 nisimura injectucode(sc, PKTENG, (bus_addr_t)lo, (bus_size_t)sz);
1604 1.14 nisimura aprint_normal_dev(sc->sc_dev, "0x%x PKT ucode %u\n", lo, sz);
1605 1.1 nisimura }
1606 1.1 nisimura
1607 1.1 nisimura static void
1608 1.2 nisimura injectucode(struct scx_softc *sc, int port,
1609 1.2 nisimura bus_addr_t addr, bus_size_t size)
1610 1.1 nisimura {
1611 1.2 nisimura bus_space_handle_t bsh;
1612 1.2 nisimura bus_size_t off;
1613 1.1 nisimura uint32_t ucode;
1614 1.1 nisimura
1615 1.14 nisimura if (bus_space_map(sc->sc_st, addr, size, 0, &bsh) != 0) {
1616 1.3 nisimura aprint_error_dev(sc->sc_dev,
1617 1.3 nisimura "eeprom map failure for ucode port 0x%x\n", port);
1618 1.2 nisimura return;
1619 1.2 nisimura }
1620 1.5 nisimura for (off = 0; off < size; off += 4) {
1621 1.2 nisimura ucode = bus_space_read_4(sc->sc_st, bsh, off);
1622 1.1 nisimura CSR_WRITE(sc, port, ucode);
1623 1.1 nisimura }
1624 1.2 nisimura bus_space_unmap(sc->sc_st, bsh, size);
1625 1.1 nisimura }
1626 1.13 nisimura
1627 1.13 nisimura /* bit selection to determine MDIO speed */
1628 1.13 nisimura
1629 1.13 nisimura static int
1630 1.13 nisimura get_mdioclk(uint32_t freq)
1631 1.13 nisimura {
1632 1.13 nisimura
1633 1.13 nisimura const struct {
1634 1.13 nisimura uint16_t freq, bit; /* GAR 5:2 MDIO frequency selection */
1635 1.13 nisimura } mdioclk[] = {
1636 1.13 nisimura { 35, 2 }, /* 25-35 MHz */
1637 1.13 nisimura { 60, 3 }, /* 35-60 MHz */
1638 1.13 nisimura { 100, 0 }, /* 60-100 MHz */
1639 1.13 nisimura { 150, 1 }, /* 100-150 MHz */
1640 1.13 nisimura { 250, 4 }, /* 150-250 MHz */
1641 1.13 nisimura { 300, 5 }, /* 250-300 MHz */
1642 1.13 nisimura };
1643 1.13 nisimura int i;
1644 1.13 nisimura
1645 1.14 nisimura freq /= 1000 * 1000;
1646 1.13 nisimura /* convert MDIO clk to a divisor value */
1647 1.13 nisimura if (freq < mdioclk[0].freq)
1648 1.13 nisimura return mdioclk[0].bit;
1649 1.13 nisimura for (i = 1; i < __arraycount(mdioclk); i++) {
1650 1.13 nisimura if (freq < mdioclk[i].freq)
1651 1.13 nisimura return mdioclk[i-1].bit;
1652 1.13 nisimura }
1653 1.13 nisimura return mdioclk[__arraycount(mdioclk) - 1].bit << GAR_CTL;
1654 1.13 nisimura }
1655