1 /* SPDX-License-Identifier: BSD-3-Clause
2 * Copyright (c) 2016 - 2018 Cavium Inc.
11 #include "qede_ethdev.h"
13 /* Ring Descriptors */
14 #define RX_RING_SIZE_POW 16 /* 64K */
15 #define RX_RING_SIZE (1ULL << RX_RING_SIZE_POW)
16 #define NUM_RX_BDS_MAX (RX_RING_SIZE - 1)
17 #define NUM_RX_BDS_MIN 128
18 #define NUM_RX_BDS_DEF NUM_RX_BDS_MAX
19 #define NUM_RX_BDS(q) (q->nb_rx_desc - 1)
21 #define TX_RING_SIZE_POW 16 /* 64K */
22 #define TX_RING_SIZE (1ULL << TX_RING_SIZE_POW)
23 #define NUM_TX_BDS_MAX (TX_RING_SIZE - 1)
24 #define NUM_TX_BDS_MIN 128
25 #define NUM_TX_BDS_DEF NUM_TX_BDS_MAX
26 #define NUM_TX_BDS(q) (q->nb_tx_desc - 1)
28 #define TX_CONS(txq) (txq->sw_tx_cons & NUM_TX_BDS(txq))
29 #define TX_PROD(txq) (txq->sw_tx_prod & NUM_TX_BDS(txq))
31 #define QEDE_DEFAULT_TX_FREE_THRESH 32
33 #define QEDE_CSUM_ERROR (1 << 0)
34 #define QEDE_CSUM_UNNECESSARY (1 << 1)
35 #define QEDE_TUNN_CSUM_UNNECESSARY (1 << 2)
37 #define QEDE_BD_SET_ADDR_LEN(bd, maddr, len) \
39 (bd)->addr.hi = rte_cpu_to_le_32(U64_HI(maddr)); \
40 (bd)->addr.lo = rte_cpu_to_le_32(U64_LO(maddr)); \
41 (bd)->nbytes = rte_cpu_to_le_16(len); \
44 #define CQE_HAS_VLAN(flags) \
45 ((flags) & (PARSING_AND_ERR_FLAGS_TAG8021QEXIST_MASK \
46 << PARSING_AND_ERR_FLAGS_TAG8021QEXIST_SHIFT))
48 #define CQE_HAS_OUTER_VLAN(flags) \
49 ((flags) & (PARSING_AND_ERR_FLAGS_TUNNEL8021QTAGEXIST_MASK \
50 << PARSING_AND_ERR_FLAGS_TUNNEL8021QTAGEXIST_SHIFT))
52 #define QEDE_MIN_RX_BUFF_SIZE (1024)
53 #define QEDE_VLAN_TAG_SIZE (4)
54 #define QEDE_LLC_SNAP_HDR_LEN (8)
56 /* Max supported alignment is 256 (8 shift)
57 * minimal alignment shift 6 is optimal for 57xxx HW performance
59 #define QEDE_L1_CACHE_SHIFT 6
60 #define QEDE_RX_ALIGN_SHIFT (RTE_MAX(6, RTE_MIN(8, QEDE_L1_CACHE_SHIFT)))
61 #define QEDE_FW_RX_ALIGN_END (1UL << QEDE_RX_ALIGN_SHIFT)
62 #define QEDE_CEIL_TO_CACHE_LINE_SIZE(n) (((n) + (QEDE_FW_RX_ALIGN_END - 1)) & \
63 ~(QEDE_FW_RX_ALIGN_END - 1))
64 #define QEDE_FLOOR_TO_CACHE_LINE_SIZE(n) RTE_ALIGN_FLOOR(n, \
67 /* Note: QEDE_LLC_SNAP_HDR_LEN is optional,
68 * +2 is for padding in front of L2 header
70 #define QEDE_ETH_OVERHEAD (((2 * QEDE_VLAN_TAG_SIZE)) \
71 + (QEDE_LLC_SNAP_HDR_LEN) + 2)
73 #define QEDE_MAX_ETHER_HDR_LEN (RTE_ETHER_HDR_LEN + QEDE_ETH_OVERHEAD)
75 #define QEDE_RSS_OFFLOAD_ALL (ETH_RSS_IPV4 |\
76 ETH_RSS_NONFRAG_IPV4_TCP |\
77 ETH_RSS_NONFRAG_IPV4_UDP |\
79 ETH_RSS_NONFRAG_IPV6_TCP |\
80 ETH_RSS_NONFRAG_IPV6_UDP |\
84 #define for_each_rss(i) for (i = 0; i < qdev->num_rx_queues; i++)
85 #define for_each_tss(i) for (i = 0; i < qdev->num_tx_queues; i++)
86 #define QEDE_RXTX_MAX(qdev) \
87 (RTE_MAX(QEDE_RSS_COUNT(qdev), QEDE_TSS_COUNT(qdev)))
89 /* Macros for non-tunnel packet types lkup table */
90 #define QEDE_PKT_TYPE_UNKNOWN 0x0
91 #define QEDE_PKT_TYPE_MAX 0x3f
93 #define QEDE_PKT_TYPE_IPV4 0x1
94 #define QEDE_PKT_TYPE_IPV6 0x2
95 #define QEDE_PKT_TYPE_IPV4_TCP 0x5
96 #define QEDE_PKT_TYPE_IPV6_TCP 0x6
97 #define QEDE_PKT_TYPE_IPV4_UDP 0x9
98 #define QEDE_PKT_TYPE_IPV6_UDP 0xa
100 /* For frag pkts, corresponding IP bits is set */
101 #define QEDE_PKT_TYPE_IPV4_FRAG 0x11
102 #define QEDE_PKT_TYPE_IPV6_FRAG 0x12
104 #define QEDE_PKT_TYPE_IPV4_VLAN 0x21
105 #define QEDE_PKT_TYPE_IPV6_VLAN 0x22
106 #define QEDE_PKT_TYPE_IPV4_TCP_VLAN 0x25
107 #define QEDE_PKT_TYPE_IPV6_TCP_VLAN 0x26
108 #define QEDE_PKT_TYPE_IPV4_UDP_VLAN 0x29
109 #define QEDE_PKT_TYPE_IPV6_UDP_VLAN 0x2a
111 #define QEDE_PKT_TYPE_IPV4_VLAN_FRAG 0x31
112 #define QEDE_PKT_TYPE_IPV6_VLAN_FRAG 0x32
114 /* Macros for tunneled packets with next protocol lkup table */
115 #define QEDE_PKT_TYPE_TUNN_GENEVE 0x1
116 #define QEDE_PKT_TYPE_TUNN_GRE 0x2
117 #define QEDE_PKT_TYPE_TUNN_VXLAN 0x3
119 /* Bit 2 is don't care bit */
120 #define QEDE_PKT_TYPE_TUNN_L2_TENID_NOEXIST_GENEVE 0x9
121 #define QEDE_PKT_TYPE_TUNN_L2_TENID_NOEXIST_GRE 0xa
122 #define QEDE_PKT_TYPE_TUNN_L2_TENID_NOEXIST_VXLAN 0xb
124 #define QEDE_PKT_TYPE_TUNN_L2_TENID_EXIST_GENEVE 0xd
125 #define QEDE_PKT_TYPE_TUNN_L2_TENID_EXIST_GRE 0xe
126 #define QEDE_PKT_TYPE_TUNN_L2_TENID_EXIST_VXLAN 0xf
129 #define QEDE_PKT_TYPE_TUNN_IPV4_TENID_NOEXIST_GENEVE 0x11
130 #define QEDE_PKT_TYPE_TUNN_IPV4_TENID_NOEXIST_GRE 0x12
131 #define QEDE_PKT_TYPE_TUNN_IPV4_TENID_NOEXIST_VXLAN 0x13
133 #define QEDE_PKT_TYPE_TUNN_IPV4_TENID_EXIST_GENEVE 0x15
134 #define QEDE_PKT_TYPE_TUNN_IPV4_TENID_EXIST_GRE 0x16
135 #define QEDE_PKT_TYPE_TUNN_IPV4_TENID_EXIST_VXLAN 0x17
138 #define QEDE_PKT_TYPE_TUNN_IPV6_TENID_NOEXIST_GENEVE 0x19
139 #define QEDE_PKT_TYPE_TUNN_IPV6_TENID_NOEXIST_GRE 0x1a
140 #define QEDE_PKT_TYPE_TUNN_IPV6_TENID_NOEXIST_VXLAN 0x1b
142 #define QEDE_PKT_TYPE_TUNN_IPV6_TENID_EXIST_GENEVE 0x1d
143 #define QEDE_PKT_TYPE_TUNN_IPV6_TENID_EXIST_GRE 0x1e
144 #define QEDE_PKT_TYPE_TUNN_IPV6_TENID_EXIST_VXLAN 0x1f
146 #define QEDE_PKT_TYPE_TUNN_MAX_TYPE 0x20 /* 2^5 */
148 #define QEDE_TX_CSUM_OFFLOAD_MASK (PKT_TX_IP_CKSUM | \
151 PKT_TX_OUTER_IP_CKSUM | \
156 #define QEDE_TX_OFFLOAD_MASK (QEDE_TX_CSUM_OFFLOAD_MASK | \
160 #define QEDE_TX_OFFLOAD_NOTSUP_MASK \
161 (PKT_TX_OFFLOAD_MASK ^ QEDE_TX_OFFLOAD_MASK)
164 * RX BD descriptor ring
166 struct qede_rx_entry {
167 struct rte_mbuf *mbuf;
168 uint32_t page_offset;
169 /* allows expansion .. */
172 /* TPA related structures */
173 struct qede_agg_info {
174 struct rte_mbuf *tpa_head; /* Pointer to first TPA segment */
175 struct rte_mbuf *tpa_tail; /* Pointer to last TPA segment */
179 * Structure associated with each RX queue.
181 struct qede_rx_queue {
182 struct rte_mempool *mb_pool;
183 struct ecore_chain rx_bd_ring;
184 struct ecore_chain rx_comp_ring;
185 uint16_t *hw_cons_ptr;
186 void OSAL_IOMEM *hw_rxq_prod_addr;
187 struct qede_rx_entry *sw_rx_ring;
188 struct ecore_sb_info *sb_info;
194 uint16_t rx_buf_size;
195 uint16_t rx_alloc_count;
199 uint64_t rx_hw_errors;
200 uint64_t rx_alloc_errors;
201 struct qede_agg_info tpa_info[ETH_TPA_MAX_AGGS_NUM];
202 struct qede_dev *qdev;
207 * TX BD descriptor ring
209 struct qede_tx_entry {
210 struct rte_mbuf *mbuf;
215 struct eth_db_data data;
219 struct qede_tx_queue {
220 struct ecore_chain tx_pbl;
221 struct qede_tx_entry *sw_tx_ring;
223 uint16_t nb_tx_avail;
224 uint16_t tx_free_thresh;
226 uint16_t *hw_cons_ptr;
229 void OSAL_IOMEM *doorbell_addr;
230 volatile union db_prod tx_db;
234 struct qede_dev *qdev;
238 struct qede_fastpath {
239 struct ecore_sb_info *sb_info;
240 struct qede_rx_queue *rxq;
241 struct qede_tx_queue *txq;
245 * RX/TX function prototypes
247 int qede_rx_queue_setup(struct rte_eth_dev *dev, uint16_t queue_idx,
248 uint16_t nb_desc, unsigned int socket_id,
249 const struct rte_eth_rxconf *rx_conf,
250 struct rte_mempool *mp);
252 int qede_tx_queue_setup(struct rte_eth_dev *dev,
255 unsigned int socket_id,
256 const struct rte_eth_txconf *tx_conf);
258 void qede_rx_queue_release(void *rx_queue);
260 void qede_tx_queue_release(void *tx_queue);
262 uint16_t qede_xmit_pkts(void *p_txq, struct rte_mbuf **tx_pkts,
265 uint16_t qede_xmit_prep_pkts(void *p_txq, struct rte_mbuf **tx_pkts,
268 uint16_t qede_recv_pkts(void *p_rxq, struct rte_mbuf **rx_pkts,
271 uint16_t qede_rxtx_pkts_dummy(void *p_rxq,
272 struct rte_mbuf **pkts,
275 int qede_start_queues(struct rte_eth_dev *eth_dev);
277 void qede_stop_queues(struct rte_eth_dev *eth_dev);
278 int qede_calc_rx_buf_size(struct rte_eth_dev *dev, uint16_t mbufsz,
279 uint16_t max_frame_size);
281 qede_rx_descriptor_status(void *rxq, uint16_t offset);
283 /* Fastpath resource alloc/dealloc helpers */
284 int qede_alloc_fp_resc(struct qede_dev *qdev);
286 void qede_dealloc_fp_resc(struct rte_eth_dev *eth_dev);
288 #endif /* _QEDE_RXTX_H_ */