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dsa: Move tagger name into its ops structure
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1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3 * Broadcom tag support
4 *
5 * Copyright (C) 2014 Broadcom Corporation
6 */
7
8 #include <linux/etherdevice.h>
9 #include <linux/list.h>
10 #include <linux/slab.h>
11
12 #include "dsa_priv.h"
13
14 /* This tag length is 4 bytes, older ones were 6 bytes, we do not
15 * handle them
16 */
17 #define BRCM_TAG_LEN 4
18
19 /* Tag is constructed and desconstructed using byte by byte access
20 * because the tag is placed after the MAC Source Address, which does
21 * not make it 4-bytes aligned, so this might cause unaligned accesses
22 * on most systems where this is used.
23 */
24
25 /* Ingress and egress opcodes */
26 #define BRCM_OPCODE_SHIFT 5
27 #define BRCM_OPCODE_MASK 0x7
28
29 /* Ingress fields */
30 /* 1st byte in the tag */
31 #define BRCM_IG_TC_SHIFT 2
32 #define BRCM_IG_TC_MASK 0x7
33 /* 2nd byte in the tag */
34 #define BRCM_IG_TE_MASK 0x3
35 #define BRCM_IG_TS_SHIFT 7
36 /* 3rd byte in the tag */
37 #define BRCM_IG_DSTMAP2_MASK 1
38 #define BRCM_IG_DSTMAP1_MASK 0xff
39
40 /* Egress fields */
41
42 /* 2nd byte in the tag */
43 #define BRCM_EG_CID_MASK 0xff
44
45 /* 3rd byte in the tag */
46 #define BRCM_EG_RC_MASK 0xff
47 #define BRCM_EG_RC_RSVD (3 << 6)
48 #define BRCM_EG_RC_EXCEPTION (1 << 5)
49 #define BRCM_EG_RC_PROT_SNOOP (1 << 4)
50 #define BRCM_EG_RC_PROT_TERM (1 << 3)
51 #define BRCM_EG_RC_SWITCH (1 << 2)
52 #define BRCM_EG_RC_MAC_LEARN (1 << 1)
53 #define BRCM_EG_RC_MIRROR (1 << 0)
54 #define BRCM_EG_TC_SHIFT 5
55 #define BRCM_EG_TC_MASK 0x7
56 #define BRCM_EG_PID_MASK 0x1f
57
58 static struct sk_buff *brcm_tag_xmit_ll(struct sk_buff *skb,
59 struct net_device *dev,
60 unsigned int offset)
61 {
62 struct dsa_port *dp = dsa_slave_to_port(dev);
63 u16 queue = skb_get_queue_mapping(skb);
64 u8 *brcm_tag;
65
66 if (skb_cow_head(skb, BRCM_TAG_LEN) < 0)
67 return NULL;
68
69 /* The Ethernet switch we are interfaced with needs packets to be at
70 * least 64 bytes (including FCS) otherwise they will be discarded when
71 * they enter the switch port logic. When Broadcom tags are enabled, we
72 * need to make sure that packets are at least 68 bytes
73 * (including FCS and tag) because the length verification is done after
74 * the Broadcom tag is stripped off the ingress packet.
75 *
76 * Let dsa_slave_xmit() free the SKB
77 */
78 if (__skb_put_padto(skb, ETH_ZLEN + BRCM_TAG_LEN, false))
79 return NULL;
80
81 skb_push(skb, BRCM_TAG_LEN);
82
83 if (offset)
84 memmove(skb->data, skb->data + BRCM_TAG_LEN, offset);
85
86 brcm_tag = skb->data + offset;
87
88 /* Set the ingress opcode, traffic class, tag enforcment is
89 * deprecated
90 */
91 brcm_tag[0] = (1 << BRCM_OPCODE_SHIFT) |
92 ((queue & BRCM_IG_TC_MASK) << BRCM_IG_TC_SHIFT);
93 brcm_tag[1] = 0;
94 brcm_tag[2] = 0;
95 if (dp->index == 8)
96 brcm_tag[2] = BRCM_IG_DSTMAP2_MASK;
97 brcm_tag[3] = (1 << dp->index) & BRCM_IG_DSTMAP1_MASK;
98
99 /* Now tell the master network device about the desired output queue
100 * as well
101 */
102 skb_set_queue_mapping(skb, BRCM_TAG_SET_PORT_QUEUE(dp->index, queue));
103
104 return skb;
105 }
106
107 static struct sk_buff *brcm_tag_rcv_ll(struct sk_buff *skb,
108 struct net_device *dev,
109 struct packet_type *pt,
110 unsigned int offset)
111 {
112 int source_port;
113 u8 *brcm_tag;
114
115 if (unlikely(!pskb_may_pull(skb, BRCM_TAG_LEN)))
116 return NULL;
117
118 brcm_tag = skb->data - offset;
119
120 /* The opcode should never be different than 0b000 */
121 if (unlikely((brcm_tag[0] >> BRCM_OPCODE_SHIFT) & BRCM_OPCODE_MASK))
122 return NULL;
123
124 /* We should never see a reserved reason code without knowing how to
125 * handle it
126 */
127 if (unlikely(brcm_tag[2] & BRCM_EG_RC_RSVD))
128 return NULL;
129
130 /* Locate which port this is coming from */
131 source_port = brcm_tag[3] & BRCM_EG_PID_MASK;
132
133 skb->dev = dsa_master_find_slave(dev, 0, source_port);
134 if (!skb->dev)
135 return NULL;
136
137 /* Remove Broadcom tag and update checksum */
138 skb_pull_rcsum(skb, BRCM_TAG_LEN);
139
140 return skb;
141 }
142
143 #ifdef CONFIG_NET_DSA_TAG_BRCM
144 static struct sk_buff *brcm_tag_xmit(struct sk_buff *skb,
145 struct net_device *dev)
146 {
147 /* Build the tag after the MAC Source Address */
148 return brcm_tag_xmit_ll(skb, dev, 2 * ETH_ALEN);
149 }
150
151
152 static struct sk_buff *brcm_tag_rcv(struct sk_buff *skb, struct net_device *dev,
153 struct packet_type *pt)
154 {
155 struct sk_buff *nskb;
156
157 /* skb->data points to the EtherType, the tag is right before it */
158 nskb = brcm_tag_rcv_ll(skb, dev, pt, 2);
159 if (!nskb)
160 return nskb;
161
162 /* Move the Ethernet DA and SA */
163 memmove(nskb->data - ETH_HLEN,
164 nskb->data - ETH_HLEN - BRCM_TAG_LEN,
165 2 * ETH_ALEN);
166
167 return nskb;
168 }
169
170 const struct dsa_device_ops brcm_netdev_ops = {
171 .name = "brcm",
172 .xmit = brcm_tag_xmit,
173 .rcv = brcm_tag_rcv,
174 .overhead = BRCM_TAG_LEN,
175 };
176 #endif
177
178 #ifdef CONFIG_NET_DSA_TAG_BRCM_PREPEND
179 static struct sk_buff *brcm_tag_xmit_prepend(struct sk_buff *skb,
180 struct net_device *dev)
181 {
182 /* tag is prepended to the packet */
183 return brcm_tag_xmit_ll(skb, dev, 0);
184 }
185
186 static struct sk_buff *brcm_tag_rcv_prepend(struct sk_buff *skb,
187 struct net_device *dev,
188 struct packet_type *pt)
189 {
190 /* tag is prepended to the packet */
191 return brcm_tag_rcv_ll(skb, dev, pt, ETH_HLEN);
192 }
193
194 const struct dsa_device_ops brcm_prepend_netdev_ops = {
195 .name = "brcm-prepend",
196 .xmit = brcm_tag_xmit_prepend,
197 .rcv = brcm_tag_rcv_prepend,
198 .overhead = BRCM_TAG_LEN,
199 };
200 #endif