octeon_pip.c revision 1.6 1 1.6 simonb /* $NetBSD: octeon_pip.c,v 1.6 2020/06/22 02:26:20 simonb Exp $ */
2 1.1 hikaru
3 1.1 hikaru /*
4 1.1 hikaru * Copyright (c) 2007 Internet Initiative Japan, Inc.
5 1.1 hikaru * All rights reserved.
6 1.1 hikaru *
7 1.1 hikaru * Redistribution and use in source and binary forms, with or without
8 1.1 hikaru * modification, are permitted provided that the following conditions
9 1.1 hikaru * are met:
10 1.1 hikaru * 1. Redistributions of source code must retain the above copyright
11 1.1 hikaru * notice, this list of conditions and the following disclaimer.
12 1.1 hikaru * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 hikaru * notice, this list of conditions and the following disclaimer in the
14 1.1 hikaru * documentation and/or other materials provided with the distribution.
15 1.1 hikaru *
16 1.1 hikaru * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
17 1.1 hikaru * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18 1.1 hikaru * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19 1.1 hikaru * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
20 1.1 hikaru * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 1.1 hikaru * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22 1.1 hikaru * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 1.1 hikaru * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 1.1 hikaru * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 1.1 hikaru * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 1.1 hikaru * SUCH DAMAGE.
27 1.1 hikaru */
28 1.1 hikaru
29 1.1 hikaru #include <sys/cdefs.h>
30 1.6 simonb __KERNEL_RCSID(0, "$NetBSD: octeon_pip.c,v 1.6 2020/06/22 02:26:20 simonb Exp $");
31 1.1 hikaru
32 1.1 hikaru #include "opt_octeon.h"
33 1.1 hikaru
34 1.1 hikaru #include <sys/param.h>
35 1.1 hikaru #include <sys/systm.h>
36 1.1 hikaru #include <sys/malloc.h>
37 1.1 hikaru #include <sys/syslog.h>
38 1.1 hikaru #include <sys/time.h>
39 1.1 hikaru #include <net/if.h>
40 1.1 hikaru #include <mips/locore.h>
41 1.1 hikaru #include <mips/cavium/octeonvar.h>
42 1.1 hikaru #include <mips/cavium/dev/octeon_pipreg.h>
43 1.1 hikaru #include <mips/cavium/dev/octeon_pipvar.h>
44 1.1 hikaru
45 1.1 hikaru /*
46 1.1 hikaru * register definitions (for debug and statics)
47 1.1 hikaru */
48 1.1 hikaru #define _ENTRY(x) { #x, x##_BITS, x##_OFFSET }
49 1.1 hikaru #define _ENTRY_0_3(x) \
50 1.1 hikaru _ENTRY(x## 0), _ENTRY(x## 1), _ENTRY(x## 2), _ENTRY(x## 3)
51 1.1 hikaru #define _ENTRY_0_7(x) \
52 1.1 hikaru _ENTRY(x## 0), _ENTRY(x## 1), _ENTRY(x## 2), _ENTRY(x## 3), \
53 1.1 hikaru _ENTRY(x## 4), _ENTRY(x## 5), _ENTRY(x## 6), _ENTRY(x## 7)
54 1.1 hikaru #define _ENTRY_0_1_2_32(x) \
55 1.1 hikaru _ENTRY(x## 0), _ENTRY(x## 1), _ENTRY(x## 2), _ENTRY(x##32)
56 1.1 hikaru
57 1.4 simonb struct octpip_dump_reg_ {
58 1.1 hikaru const char *name;
59 1.1 hikaru const char *format;
60 1.1 hikaru size_t offset;
61 1.1 hikaru };
62 1.1 hikaru
63 1.4 simonb static const struct octpip_dump_reg_ octpip_dump_stats_[] = {
64 1.1 hikaru /* PIP_QOS_DIFF[0-63] */
65 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT0_PRT),
66 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT1_PRT),
67 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT2_PRT),
68 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT3_PRT),
69 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT4_PRT),
70 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT5_PRT),
71 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT6_PRT),
72 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT7_PRT),
73 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT8_PRT),
74 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT9_PRT),
75 1.1 hikaru /* PIP_TAG_INC[0-63] */
76 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT_INB_PKTS),
77 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT_INB_OCTS),
78 1.1 hikaru _ENTRY_0_1_2_32 (PIP_STAT_INB_ERRS),
79 1.1 hikaru };
80 1.1 hikaru
81 1.1 hikaru #undef _ENTRY
82 1.1 hikaru #undef _ENTRY_0_3
83 1.1 hikaru #undef _ENTRY_0_7
84 1.1 hikaru #undef _ENTRY_0_1_2_32
85 1.1 hikaru
86 1.1 hikaru /* XXX */
87 1.1 hikaru void
88 1.4 simonb octpip_init(struct octpip_attach_args *aa, struct octpip_softc **rsc)
89 1.1 hikaru {
90 1.4 simonb struct octpip_softc *sc;
91 1.1 hikaru int status;
92 1.1 hikaru
93 1.1 hikaru sc = malloc(sizeof(*sc), M_DEVBUF, M_WAITOK | M_ZERO);
94 1.1 hikaru if (sc == NULL)
95 1.1 hikaru panic("can't allocate memory: %s", __func__);
96 1.1 hikaru
97 1.1 hikaru sc->sc_port = aa->aa_port;
98 1.1 hikaru sc->sc_regt = aa->aa_regt;
99 1.1 hikaru sc->sc_tag_type = aa->aa_tag_type;
100 1.1 hikaru sc->sc_receive_group = aa->aa_receive_group;
101 1.1 hikaru sc->sc_ip_offset = aa->aa_ip_offset;
102 1.1 hikaru
103 1.1 hikaru status = bus_space_map(sc->sc_regt, PIP_BASE, PIP_SIZE, 0,
104 1.1 hikaru &sc->sc_regh);
105 1.1 hikaru if (status != 0)
106 1.1 hikaru panic("can't map %s space", "pip register");
107 1.1 hikaru
108 1.1 hikaru *rsc = sc;
109 1.1 hikaru }
110 1.1 hikaru
111 1.1 hikaru #define _PIP_RD8(sc, off) \
112 1.1 hikaru bus_space_read_8((sc)->sc_regt, (sc)->sc_regh, (off))
113 1.1 hikaru #define _PIP_WR8(sc, off, v) \
114 1.1 hikaru bus_space_write_8((sc)->sc_regt, (sc)->sc_regh, (off), (v))
115 1.1 hikaru
116 1.1 hikaru int
117 1.4 simonb octpip_port_config(struct octpip_softc *sc)
118 1.1 hikaru {
119 1.1 hikaru uint64_t prt_cfg;
120 1.1 hikaru uint64_t prt_tag;
121 1.1 hikaru uint64_t ip_offset;
122 1.1 hikaru
123 1.1 hikaru /*
124 1.1 hikaru * Process the headers and place the IP header in the work queue
125 1.1 hikaru */
126 1.1 hikaru prt_cfg = 0;
127 1.1 hikaru if (MIPS_PRID_IMPL(mips_options.mips_cpu_id) == MIPS_CN50XX) {
128 1.1 hikaru SET(prt_cfg, PIP_PRT_CFGN_LENERR_EN);
129 1.1 hikaru SET(prt_cfg, PIP_PRT_CFGN_MAXERR_EN);
130 1.1 hikaru SET(prt_cfg, PIP_PRT_CFGN_MINERR_EN);
131 1.1 hikaru }
132 1.1 hikaru /* RAWDRP=0; don't allow raw packet drop */
133 1.1 hikaru /* TAGINC=0 */
134 1.1 hikaru SET(prt_cfg, PIP_PRT_CFGN_DYN_RS);
135 1.1 hikaru /* INST_HDR=0 */
136 1.1 hikaru /* GRP_WAT=0 */
137 1.1 hikaru SET(prt_cfg, (sc->sc_port << 24) & PIP_PRT_CFGN_QOS);
138 1.1 hikaru /* QOS_WAT=0 */
139 1.1 hikaru /* SPARE=0 */
140 1.1 hikaru /* QOS_DIFF=0 */
141 1.1 hikaru /* QOS_VLAN=0 */
142 1.1 hikaru SET(prt_cfg, PIP_PRT_CFGN_CRC_EN);
143 1.1 hikaru /* SKIP=0 */
144 1.1 hikaru
145 1.1 hikaru prt_tag = 0;
146 1.1 hikaru SET(prt_tag, PIP_PRT_TAGN_INC_PRT);
147 1.1 hikaru CLR(prt_tag, PIP_PRT_TAGN_IP6_DPRT);
148 1.1 hikaru CLR(prt_tag, PIP_PRT_TAGN_IP4_DPRT);
149 1.1 hikaru CLR(prt_tag, PIP_PRT_TAGN_IP6_SPRT);
150 1.1 hikaru CLR(prt_tag, PIP_PRT_TAGN_IP4_SPRT);
151 1.1 hikaru CLR(prt_tag, PIP_PRT_TAGN_IP6_NXTH);
152 1.1 hikaru CLR(prt_tag, PIP_PRT_TAGN_IP4_PCTL);
153 1.1 hikaru CLR(prt_tag, PIP_PRT_TAGN_IP6_DST);
154 1.1 hikaru CLR(prt_tag, PIP_PRT_TAGN_IP4_SRC);
155 1.1 hikaru CLR(prt_tag, PIP_PRT_TAGN_IP6_SRC);
156 1.1 hikaru CLR(prt_tag, PIP_PRT_TAGN_IP4_DST);
157 1.5 simonb SET(prt_tag, __SHIFTIN(PIP_PRT_TAGN_TCP6_TAG_ORDERED, PIP_PRT_TAGN_TCP6_TAG));
158 1.5 simonb SET(prt_tag, __SHIFTIN(PIP_PRT_TAGN_TCP4_TAG_ORDERED, PIP_PRT_TAGN_TCP4_TAG));
159 1.5 simonb SET(prt_tag, __SHIFTIN(PIP_PRT_TAGN_IP6_TAG_ORDERED, PIP_PRT_TAGN_IP6_TAG));
160 1.5 simonb SET(prt_tag, __SHIFTIN(PIP_PRT_TAGN_IP4_TAG_ORDERED, PIP_PRT_TAGN_IP4_TAG));
161 1.5 simonb SET(prt_tag, __SHIFTIN(PIP_PRT_TAGN_NON_TAG_ORDERED, PIP_PRT_TAGN_NON_TAG));
162 1.1 hikaru SET(prt_tag, sc->sc_receive_group & PIP_PRT_TAGN_GRP);
163 1.1 hikaru
164 1.1 hikaru ip_offset = 0;
165 1.1 hikaru SET(ip_offset, (sc->sc_ip_offset / 8) & PIP_IP_OFFSET_MASK_OFFSET);
166 1.1 hikaru
167 1.1 hikaru _PIP_WR8(sc, PIP_PRT_CFG0_OFFSET + (8 * sc->sc_port), prt_cfg);
168 1.1 hikaru _PIP_WR8(sc, PIP_PRT_TAG0_OFFSET + (8 * sc->sc_port), prt_tag);
169 1.1 hikaru _PIP_WR8(sc, PIP_IP_OFFSET_OFFSET, ip_offset);
170 1.1 hikaru
171 1.1 hikaru return 0;
172 1.1 hikaru }
173 1.1 hikaru
174 1.1 hikaru void
175 1.4 simonb octpip_prt_cfg_enable(struct octpip_softc *sc, uint64_t prt_cfg, int enable)
176 1.1 hikaru {
177 1.1 hikaru uint64_t tmp;
178 1.1 hikaru
179 1.1 hikaru tmp = _PIP_RD8(sc, PIP_PRT_CFG0_OFFSET + (8 * sc->sc_port));
180 1.1 hikaru if (enable)
181 1.1 hikaru tmp |= prt_cfg;
182 1.1 hikaru else
183 1.1 hikaru tmp &= ~prt_cfg;
184 1.1 hikaru _PIP_WR8(sc, PIP_PRT_CFG0_OFFSET + (8 * sc->sc_port), tmp);
185 1.1 hikaru }
186 1.1 hikaru
187 1.1 hikaru void
188 1.4 simonb octpip_stats(struct octpip_softc *sc, struct ifnet *ifp, int gmx_port)
189 1.1 hikaru {
190 1.4 simonb const struct octpip_dump_reg_ *reg;
191 1.1 hikaru uint64_t tmp, pkts;
192 1.1 hikaru uint64_t pip_stat_ctl;
193 1.1 hikaru
194 1.1 hikaru if (sc == NULL || ifp == NULL)
195 1.1 hikaru panic("%s: invalid argument. sc=%p, ifp=%p\n", __func__,
196 1.1 hikaru sc, ifp);
197 1.1 hikaru
198 1.1 hikaru if (gmx_port < 0 || gmx_port > 2) {
199 1.1 hikaru printf("%s: invalid gmx_port %d\n", __func__, gmx_port);
200 1.1 hikaru return;
201 1.1 hikaru }
202 1.1 hikaru
203 1.1 hikaru pip_stat_ctl = _PIP_RD8(sc, PIP_STAT_CTL_OFFSET);
204 1.1 hikaru _PIP_WR8(sc, PIP_STAT_CTL_OFFSET, pip_stat_ctl | PIP_STAT_CTL_RDCLR);
205 1.4 simonb reg = &octpip_dump_stats_[gmx_port];
206 1.1 hikaru tmp = _PIP_RD8(sc, reg->offset);
207 1.5 simonb pkts = __SHIFTOUT(tmp, PIP_STAT0_PRTN_DRP_PKTS);
208 1.3 thorpej if_statadd(ifp, if_iqdrops, pkts);
209 1.1 hikaru
210 1.1 hikaru _PIP_WR8(sc, PIP_STAT_CTL_OFFSET, pip_stat_ctl);
211 1.1 hikaru }
212