334 lines
8.7 KiB
C
334 lines
8.7 KiB
C
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// SPDX-License-Identifier: (GPL-2.0 OR BSD-2-Clause)
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/*
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* Copyright (C) 2018 Netronome Systems, Inc.
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*
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* This software is dual licensed under the GNU General License Version 2,
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* June 1991 as shown in the file COPYING in the top-level directory of this
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* source tree or the BSD 2-Clause License provided below. You have the
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* option to license this software under the complete terms of either license.
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*
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* The BSD 2-Clause License:
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*
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* Redistribution and use in source and binary forms, with or
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* without modification, are permitted provided that the following
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* conditions are met:
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*
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* 1. Redistributions of source code must retain the above
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* copyright notice, this list of conditions and the following
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* disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above
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* copyright notice, this list of conditions and the following
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* disclaimer in the documentation and/or other materials
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* provided with the distribution.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
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* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*/
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#include <linux/kernel.h>
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#include "../nfpcore/nfp_cpp.h"
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#include "../nfpcore/nfp_nffw.h"
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#include "../nfp_app.h"
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#include "../nfp_abi.h"
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#include "../nfp_main.h"
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#include "../nfp_net.h"
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#include "main.h"
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#define NFP_QLVL_SYM_NAME "_abi_nfd_out_q_lvls_%u"
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#define NFP_QLVL_STRIDE 16
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#define NFP_QLVL_BLOG_BYTES 0
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#define NFP_QLVL_BLOG_PKTS 4
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#define NFP_QLVL_THRS 8
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#define NFP_QMSTAT_SYM_NAME "_abi_nfdqm%u_stats"
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#define NFP_QMSTAT_STRIDE 32
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#define NFP_QMSTAT_NON_STO 0
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#define NFP_QMSTAT_STO 8
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#define NFP_QMSTAT_DROP 16
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#define NFP_QMSTAT_ECN 24
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static unsigned long long
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nfp_abm_q_lvl_thrs(struct nfp_abm_link *alink, unsigned int queue)
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{
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return alink->abm->q_lvls->addr +
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(alink->queue_base + queue) * NFP_QLVL_STRIDE + NFP_QLVL_THRS;
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}
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static int
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nfp_abm_ctrl_stat(struct nfp_abm_link *alink, const struct nfp_rtsym *sym,
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unsigned int stride, unsigned int offset, unsigned int i,
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bool is_u64, u64 *res)
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{
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struct nfp_cpp *cpp = alink->abm->app->cpp;
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u32 val32, mur;
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u64 val, addr;
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int err;
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mur = NFP_CPP_ATOMIC_RD(sym->target, sym->domain);
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addr = sym->addr + (alink->queue_base + i) * stride + offset;
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if (is_u64)
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err = nfp_cpp_readq(cpp, mur, addr, &val);
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else
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err = nfp_cpp_readl(cpp, mur, addr, &val32);
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if (err) {
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nfp_err(cpp,
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"RED offload reading stat failed on vNIC %d queue %d\n",
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alink->id, i);
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return err;
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}
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*res = is_u64 ? val : val32;
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return 0;
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}
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static int
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nfp_abm_ctrl_stat_all(struct nfp_abm_link *alink, const struct nfp_rtsym *sym,
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unsigned int stride, unsigned int offset, bool is_u64,
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u64 *res)
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{
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u64 val, sum = 0;
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unsigned int i;
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int err;
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for (i = 0; i < alink->vnic->max_rx_rings; i++) {
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err = nfp_abm_ctrl_stat(alink, sym, stride, offset, i,
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is_u64, &val);
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if (err)
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return err;
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sum += val;
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}
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*res = sum;
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return 0;
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}
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int nfp_abm_ctrl_set_q_lvl(struct nfp_abm_link *alink, unsigned int i, u32 val)
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{
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struct nfp_cpp *cpp = alink->abm->app->cpp;
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u32 muw;
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int err;
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muw = NFP_CPP_ATOMIC_WR(alink->abm->q_lvls->target,
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alink->abm->q_lvls->domain);
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err = nfp_cpp_writel(cpp, muw, nfp_abm_q_lvl_thrs(alink, i), val);
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if (err) {
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nfp_err(cpp, "RED offload setting level failed on vNIC %d queue %d\n",
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alink->id, i);
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return err;
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}
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return 0;
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}
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int nfp_abm_ctrl_set_all_q_lvls(struct nfp_abm_link *alink, u32 val)
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{
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int i, err;
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for (i = 0; i < alink->vnic->max_rx_rings; i++) {
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err = nfp_abm_ctrl_set_q_lvl(alink, i, val);
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if (err)
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return err;
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}
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return 0;
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}
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u64 nfp_abm_ctrl_stat_non_sto(struct nfp_abm_link *alink, unsigned int i)
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{
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u64 val;
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if (nfp_abm_ctrl_stat(alink, alink->abm->qm_stats, NFP_QMSTAT_STRIDE,
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NFP_QMSTAT_NON_STO, i, true, &val))
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return 0;
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return val;
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}
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u64 nfp_abm_ctrl_stat_sto(struct nfp_abm_link *alink, unsigned int i)
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{
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u64 val;
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if (nfp_abm_ctrl_stat(alink, alink->abm->qm_stats, NFP_QMSTAT_STRIDE,
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NFP_QMSTAT_STO, i, true, &val))
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return 0;
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return val;
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}
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int nfp_abm_ctrl_read_q_stats(struct nfp_abm_link *alink, unsigned int i,
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struct nfp_alink_stats *stats)
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{
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int err;
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stats->tx_pkts = nn_readq(alink->vnic, NFP_NET_CFG_RXR_STATS(i));
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stats->tx_bytes = nn_readq(alink->vnic, NFP_NET_CFG_RXR_STATS(i) + 8);
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err = nfp_abm_ctrl_stat(alink, alink->abm->q_lvls,
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NFP_QLVL_STRIDE, NFP_QLVL_BLOG_BYTES,
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i, false, &stats->backlog_bytes);
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if (err)
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return err;
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err = nfp_abm_ctrl_stat(alink, alink->abm->q_lvls,
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NFP_QLVL_STRIDE, NFP_QLVL_BLOG_PKTS,
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i, false, &stats->backlog_pkts);
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if (err)
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return err;
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err = nfp_abm_ctrl_stat(alink, alink->abm->qm_stats,
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NFP_QMSTAT_STRIDE, NFP_QMSTAT_DROP,
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i, true, &stats->drops);
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if (err)
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return err;
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return nfp_abm_ctrl_stat(alink, alink->abm->qm_stats,
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NFP_QMSTAT_STRIDE, NFP_QMSTAT_ECN,
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i, true, &stats->overlimits);
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}
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int nfp_abm_ctrl_read_stats(struct nfp_abm_link *alink,
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struct nfp_alink_stats *stats)
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{
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u64 pkts = 0, bytes = 0;
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int i, err;
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for (i = 0; i < alink->vnic->max_rx_rings; i++) {
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pkts += nn_readq(alink->vnic, NFP_NET_CFG_RXR_STATS(i));
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bytes += nn_readq(alink->vnic, NFP_NET_CFG_RXR_STATS(i) + 8);
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}
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stats->tx_pkts = pkts;
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stats->tx_bytes = bytes;
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err = nfp_abm_ctrl_stat_all(alink, alink->abm->q_lvls,
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NFP_QLVL_STRIDE, NFP_QLVL_BLOG_BYTES,
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false, &stats->backlog_bytes);
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if (err)
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return err;
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err = nfp_abm_ctrl_stat_all(alink, alink->abm->q_lvls,
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NFP_QLVL_STRIDE, NFP_QLVL_BLOG_PKTS,
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false, &stats->backlog_pkts);
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if (err)
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return err;
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err = nfp_abm_ctrl_stat_all(alink, alink->abm->qm_stats,
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NFP_QMSTAT_STRIDE, NFP_QMSTAT_DROP,
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true, &stats->drops);
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if (err)
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return err;
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return nfp_abm_ctrl_stat_all(alink, alink->abm->qm_stats,
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NFP_QMSTAT_STRIDE, NFP_QMSTAT_ECN,
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true, &stats->overlimits);
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}
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int nfp_abm_ctrl_read_q_xstats(struct nfp_abm_link *alink, unsigned int i,
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struct nfp_alink_xstats *xstats)
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{
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int err;
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err = nfp_abm_ctrl_stat(alink, alink->abm->qm_stats,
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NFP_QMSTAT_STRIDE, NFP_QMSTAT_DROP,
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i, true, &xstats->pdrop);
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if (err)
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return err;
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return nfp_abm_ctrl_stat(alink, alink->abm->qm_stats,
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NFP_QMSTAT_STRIDE, NFP_QMSTAT_ECN,
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i, true, &xstats->ecn_marked);
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}
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int nfp_abm_ctrl_read_xstats(struct nfp_abm_link *alink,
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struct nfp_alink_xstats *xstats)
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{
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int err;
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err = nfp_abm_ctrl_stat_all(alink, alink->abm->qm_stats,
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NFP_QMSTAT_STRIDE, NFP_QMSTAT_DROP,
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true, &xstats->pdrop);
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if (err)
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return err;
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return nfp_abm_ctrl_stat_all(alink, alink->abm->qm_stats,
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NFP_QMSTAT_STRIDE, NFP_QMSTAT_ECN,
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true, &xstats->ecn_marked);
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}
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int nfp_abm_ctrl_qm_enable(struct nfp_abm *abm)
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{
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return nfp_mbox_cmd(abm->app->pf, NFP_MBOX_PCIE_ABM_ENABLE,
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NULL, 0, NULL, 0);
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}
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int nfp_abm_ctrl_qm_disable(struct nfp_abm *abm)
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{
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return nfp_mbox_cmd(abm->app->pf, NFP_MBOX_PCIE_ABM_DISABLE,
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NULL, 0, NULL, 0);
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}
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void nfp_abm_ctrl_read_params(struct nfp_abm_link *alink)
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{
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alink->queue_base = nn_readl(alink->vnic, NFP_NET_CFG_START_RXQ);
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alink->queue_base /= alink->vnic->stride_rx;
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}
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static const struct nfp_rtsym *
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nfp_abm_ctrl_find_rtsym(struct nfp_pf *pf, const char *name, unsigned int size)
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{
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const struct nfp_rtsym *sym;
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sym = nfp_rtsym_lookup(pf->rtbl, name);
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if (!sym) {
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nfp_err(pf->cpp, "Symbol '%s' not found\n", name);
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return ERR_PTR(-ENOENT);
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}
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if (sym->size != size) {
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nfp_err(pf->cpp,
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"Symbol '%s' wrong size: expected %u got %llu\n",
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name, size, sym->size);
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return ERR_PTR(-EINVAL);
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}
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return sym;
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}
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static const struct nfp_rtsym *
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nfp_abm_ctrl_find_q_rtsym(struct nfp_pf *pf, const char *name,
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unsigned int size)
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{
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return nfp_abm_ctrl_find_rtsym(pf, name, size * NFP_NET_MAX_RX_RINGS);
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}
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int nfp_abm_ctrl_find_addrs(struct nfp_abm *abm)
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{
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struct nfp_pf *pf = abm->app->pf;
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const struct nfp_rtsym *sym;
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unsigned int pf_id;
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char pf_symbol[64];
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pf_id = nfp_cppcore_pcie_unit(pf->cpp);
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abm->pf_id = pf_id;
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snprintf(pf_symbol, sizeof(pf_symbol), NFP_QLVL_SYM_NAME, pf_id);
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sym = nfp_abm_ctrl_find_q_rtsym(pf, pf_symbol, NFP_QLVL_STRIDE);
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if (IS_ERR(sym))
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return PTR_ERR(sym);
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abm->q_lvls = sym;
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snprintf(pf_symbol, sizeof(pf_symbol), NFP_QMSTAT_SYM_NAME, pf_id);
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sym = nfp_abm_ctrl_find_q_rtsym(pf, pf_symbol, NFP_QMSTAT_STRIDE);
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if (IS_ERR(sym))
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return PTR_ERR(sym);
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abm->qm_stats = sym;
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return 0;
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}
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