mirror of https://github.com/F-Stack/f-stack.git
340 lines
9.4 KiB
C
340 lines
9.4 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright(C) 2019 Marvell International Ltd.
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*/
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#ifndef __OTX2_WORKER_H__
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#define __OTX2_WORKER_H__
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#include <rte_common.h>
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#include <rte_branch_prediction.h>
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#include <otx2_common.h>
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#include "otx2_evdev.h"
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#include "otx2_evdev_crypto_adptr_rx.h"
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#include "otx2_ethdev_sec_tx.h"
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/* SSO Operations */
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static __rte_always_inline uint16_t
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otx2_ssogws_get_work(struct otx2_ssogws *ws, struct rte_event *ev,
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const uint32_t flags, const void * const lookup_mem)
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{
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union otx2_sso_event event;
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uint64_t tstamp_ptr;
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uint64_t get_work1;
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uint64_t mbuf;
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otx2_write64(BIT_ULL(16) | /* wait for work. */
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1, /* Use Mask set 0. */
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ws->getwrk_op);
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if (flags & NIX_RX_OFFLOAD_PTYPE_F)
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rte_prefetch_non_temporal(lookup_mem);
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#ifdef RTE_ARCH_ARM64
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asm volatile(
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" ldr %[tag], [%[tag_loc]] \n"
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" ldr %[wqp], [%[wqp_loc]] \n"
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" tbz %[tag], 63, done%= \n"
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" sevl \n"
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"rty%=: wfe \n"
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" ldr %[tag], [%[tag_loc]] \n"
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" ldr %[wqp], [%[wqp_loc]] \n"
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" tbnz %[tag], 63, rty%= \n"
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"done%=: dmb ld \n"
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" prfm pldl1keep, [%[wqp], #8] \n"
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" sub %[mbuf], %[wqp], #0x80 \n"
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" prfm pldl1keep, [%[mbuf]] \n"
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: [tag] "=&r" (event.get_work0),
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[wqp] "=&r" (get_work1),
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[mbuf] "=&r" (mbuf)
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: [tag_loc] "r" (ws->tag_op),
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[wqp_loc] "r" (ws->wqp_op)
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);
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#else
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event.get_work0 = otx2_read64(ws->tag_op);
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while ((BIT_ULL(63)) & event.get_work0)
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event.get_work0 = otx2_read64(ws->tag_op);
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get_work1 = otx2_read64(ws->wqp_op);
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rte_prefetch0((const void *)get_work1);
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mbuf = (uint64_t)((char *)get_work1 - sizeof(struct rte_mbuf));
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rte_prefetch0((const void *)mbuf);
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#endif
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event.get_work0 = (event.get_work0 & (0x3ull << 32)) << 6 |
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(event.get_work0 & (0x3FFull << 36)) << 4 |
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(event.get_work0 & 0xffffffff);
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if (event.sched_type != SSO_TT_EMPTY) {
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if ((flags & NIX_RX_OFFLOAD_SECURITY_F) &&
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(event.event_type == RTE_EVENT_TYPE_CRYPTODEV)) {
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get_work1 = otx2_handle_crypto_event(get_work1);
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} else if (event.event_type == RTE_EVENT_TYPE_ETHDEV) {
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otx2_wqe_to_mbuf(get_work1, mbuf, event.sub_event_type,
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(uint32_t) event.get_work0, flags,
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lookup_mem);
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/* Extracting tstamp, if PTP enabled*/
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tstamp_ptr = *(uint64_t *)(((struct nix_wqe_hdr_s *)
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get_work1) +
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OTX2_SSO_WQE_SG_PTR);
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otx2_nix_mbuf_to_tstamp((struct rte_mbuf *)mbuf,
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ws->tstamp, flags,
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(uint64_t *)tstamp_ptr);
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get_work1 = mbuf;
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}
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}
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ev->event = event.get_work0;
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ev->u64 = get_work1;
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return !!get_work1;
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}
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/* Used in cleaning up workslot. */
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static __rte_always_inline uint16_t
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otx2_ssogws_get_work_empty(struct otx2_ssogws *ws, struct rte_event *ev,
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const uint32_t flags)
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{
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union otx2_sso_event event;
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uint64_t tstamp_ptr;
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uint64_t get_work1;
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uint64_t mbuf;
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#ifdef RTE_ARCH_ARM64
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asm volatile(
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" ldr %[tag], [%[tag_loc]] \n"
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" ldr %[wqp], [%[wqp_loc]] \n"
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" tbz %[tag], 63, done%= \n"
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" sevl \n"
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"rty%=: wfe \n"
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" ldr %[tag], [%[tag_loc]] \n"
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" ldr %[wqp], [%[wqp_loc]] \n"
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" tbnz %[tag], 63, rty%= \n"
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"done%=: dmb ld \n"
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" prfm pldl1keep, [%[wqp], #8] \n"
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" sub %[mbuf], %[wqp], #0x80 \n"
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" prfm pldl1keep, [%[mbuf]] \n"
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: [tag] "=&r" (event.get_work0),
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[wqp] "=&r" (get_work1),
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[mbuf] "=&r" (mbuf)
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: [tag_loc] "r" (ws->tag_op),
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[wqp_loc] "r" (ws->wqp_op)
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);
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#else
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event.get_work0 = otx2_read64(ws->tag_op);
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while ((BIT_ULL(63)) & event.get_work0)
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event.get_work0 = otx2_read64(ws->tag_op);
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get_work1 = otx2_read64(ws->wqp_op);
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rte_prefetch_non_temporal((const void *)get_work1);
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mbuf = (uint64_t)((char *)get_work1 - sizeof(struct rte_mbuf));
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rte_prefetch_non_temporal((const void *)mbuf);
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#endif
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event.get_work0 = (event.get_work0 & (0x3ull << 32)) << 6 |
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(event.get_work0 & (0x3FFull << 36)) << 4 |
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(event.get_work0 & 0xffffffff);
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if (event.sched_type != SSO_TT_EMPTY &&
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event.event_type == RTE_EVENT_TYPE_ETHDEV) {
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otx2_wqe_to_mbuf(get_work1, mbuf, event.sub_event_type,
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(uint32_t) event.get_work0, flags, NULL);
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/* Extracting tstamp, if PTP enabled*/
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tstamp_ptr = *(uint64_t *)(((struct nix_wqe_hdr_s *)get_work1)
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+ OTX2_SSO_WQE_SG_PTR);
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otx2_nix_mbuf_to_tstamp((struct rte_mbuf *)mbuf, ws->tstamp,
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flags, (uint64_t *)tstamp_ptr);
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get_work1 = mbuf;
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}
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ev->event = event.get_work0;
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ev->u64 = get_work1;
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return !!get_work1;
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}
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static __rte_always_inline void
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otx2_ssogws_add_work(struct otx2_ssogws *ws, const uint64_t event_ptr,
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const uint32_t tag, const uint8_t new_tt,
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const uint16_t grp)
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{
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uint64_t add_work0;
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add_work0 = tag | ((uint64_t)(new_tt) << 32);
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otx2_store_pair(add_work0, event_ptr, ws->grps_base[grp]);
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}
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static __rte_always_inline void
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otx2_ssogws_swtag_desched(struct otx2_ssogws *ws, uint32_t tag, uint8_t new_tt,
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uint16_t grp)
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{
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uint64_t val;
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val = tag | ((uint64_t)(new_tt & 0x3) << 32) | ((uint64_t)grp << 34);
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otx2_write64(val, ws->swtag_desched_op);
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}
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static __rte_always_inline void
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otx2_ssogws_swtag_norm(struct otx2_ssogws *ws, uint32_t tag, uint8_t new_tt)
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{
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uint64_t val;
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val = tag | ((uint64_t)(new_tt & 0x3) << 32);
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otx2_write64(val, ws->swtag_norm_op);
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}
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static __rte_always_inline void
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otx2_ssogws_swtag_untag(struct otx2_ssogws *ws)
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{
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otx2_write64(0, OTX2_SSOW_GET_BASE_ADDR(ws->getwrk_op) +
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SSOW_LF_GWS_OP_SWTAG_UNTAG);
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}
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static __rte_always_inline void
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otx2_ssogws_swtag_flush(uint64_t tag_op, uint64_t flush_op)
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{
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if (OTX2_SSOW_TT_FROM_TAG(otx2_read64(tag_op)) == SSO_TT_EMPTY)
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return;
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otx2_write64(0, flush_op);
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}
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static __rte_always_inline void
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otx2_ssogws_desched(struct otx2_ssogws *ws)
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{
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otx2_write64(0, OTX2_SSOW_GET_BASE_ADDR(ws->getwrk_op) +
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SSOW_LF_GWS_OP_DESCHED);
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}
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static __rte_always_inline void
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otx2_ssogws_swtag_wait(struct otx2_ssogws *ws)
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{
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#ifdef RTE_ARCH_ARM64
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uint64_t swtp;
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asm volatile(" ldr %[swtb], [%[swtp_loc]] \n"
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" tbz %[swtb], 62, done%= \n"
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" sevl \n"
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"rty%=: wfe \n"
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" ldr %[swtb], [%[swtp_loc]] \n"
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" tbnz %[swtb], 62, rty%= \n"
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"done%=: \n"
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: [swtb] "=&r" (swtp)
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: [swtp_loc] "r" (ws->tag_op));
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#else
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/* Wait for the SWTAG/SWTAG_FULL operation */
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while (otx2_read64(ws->tag_op) & BIT_ULL(62))
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;
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#endif
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}
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static __rte_always_inline void
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otx2_ssogws_head_wait(uint64_t tag_op)
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{
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#ifdef RTE_ARCH_ARM64
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uint64_t tag;
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asm volatile (
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" ldr %[tag], [%[tag_op]] \n"
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" tbnz %[tag], 35, done%= \n"
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" sevl \n"
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"rty%=: wfe \n"
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" ldr %[tag], [%[tag_op]] \n"
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" tbz %[tag], 35, rty%= \n"
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"done%=: \n"
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: [tag] "=&r" (tag)
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: [tag_op] "r" (tag_op)
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);
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#else
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/* Wait for the HEAD to be set */
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while (!(otx2_read64(tag_op) & BIT_ULL(35)))
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;
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#endif
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}
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static __rte_always_inline const struct otx2_eth_txq *
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otx2_ssogws_xtract_meta(struct rte_mbuf *m,
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const uint64_t txq_data[][RTE_MAX_QUEUES_PER_PORT])
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{
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return (const struct otx2_eth_txq *)txq_data[m->port][
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rte_event_eth_tx_adapter_txq_get(m)];
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}
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static __rte_always_inline void
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otx2_ssogws_prepare_pkt(const struct otx2_eth_txq *txq, struct rte_mbuf *m,
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uint64_t *cmd, const uint32_t flags)
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{
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otx2_lmt_mov(cmd, txq->cmd, otx2_nix_tx_ext_subs(flags));
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otx2_nix_xmit_prepare(m, cmd, flags, txq->lso_tun_fmt);
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}
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static __rte_always_inline uint16_t
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otx2_ssogws_event_tx(uint64_t base, struct rte_event *ev, uint64_t *cmd,
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const uint64_t txq_data[][RTE_MAX_QUEUES_PER_PORT],
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const uint32_t flags)
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{
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struct rte_mbuf *m = ev->mbuf;
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const struct otx2_eth_txq *txq;
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uint16_t ref_cnt = m->refcnt;
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if ((flags & NIX_TX_OFFLOAD_SECURITY_F) &&
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(m->ol_flags & RTE_MBUF_F_TX_SEC_OFFLOAD)) {
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txq = otx2_ssogws_xtract_meta(m, txq_data);
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return otx2_sec_event_tx(base, ev, m, txq, flags);
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}
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/* Perform header writes before barrier for TSO */
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otx2_nix_xmit_prepare_tso(m, flags);
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/* Lets commit any changes in the packet here in case when
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* fast free is set as no further changes will be made to mbuf.
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* In case of fast free is not set, both otx2_nix_prepare_mseg()
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* and otx2_nix_xmit_prepare() has a barrier after refcnt update.
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*/
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if (!(flags & NIX_TX_OFFLOAD_MBUF_NOFF_F))
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rte_io_wmb();
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txq = otx2_ssogws_xtract_meta(m, txq_data);
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otx2_ssogws_prepare_pkt(txq, m, cmd, flags);
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if (flags & NIX_TX_MULTI_SEG_F) {
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const uint16_t segdw = otx2_nix_prepare_mseg(m, cmd, flags);
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otx2_nix_xmit_prepare_tstamp(cmd, &txq->cmd[0],
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m->ol_flags, segdw, flags);
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if (!ev->sched_type) {
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otx2_nix_xmit_mseg_prep_lmt(cmd, txq->lmt_addr, segdw);
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otx2_ssogws_head_wait(base + SSOW_LF_GWS_TAG);
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if (otx2_nix_xmit_submit_lmt(txq->io_addr) == 0)
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otx2_nix_xmit_mseg_one(cmd, txq->lmt_addr,
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txq->io_addr, segdw);
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} else {
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otx2_nix_xmit_mseg_one(cmd, txq->lmt_addr,
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txq->io_addr, segdw);
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}
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} else {
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/* Passing no of segdw as 4: HDR + EXT + SG + SMEM */
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otx2_nix_xmit_prepare_tstamp(cmd, &txq->cmd[0],
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m->ol_flags, 4, flags);
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if (!ev->sched_type) {
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otx2_nix_xmit_prep_lmt(cmd, txq->lmt_addr, flags);
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otx2_ssogws_head_wait(base + SSOW_LF_GWS_TAG);
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if (otx2_nix_xmit_submit_lmt(txq->io_addr) == 0)
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otx2_nix_xmit_one(cmd, txq->lmt_addr,
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txq->io_addr, flags);
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} else {
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otx2_nix_xmit_one(cmd, txq->lmt_addr, txq->io_addr,
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flags);
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}
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}
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if (flags & NIX_TX_OFFLOAD_MBUF_NOFF_F) {
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if (ref_cnt > 1)
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return 1;
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}
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otx2_ssogws_swtag_flush(base + SSOW_LF_GWS_TAG,
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base + SSOW_LF_GWS_OP_SWTAG_FLUSH);
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return 1;
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}
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#endif
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