2019-05-29 01:10:09 +08:00
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// SPDX-License-Identifier: GPL-2.0-only
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2017-02-07 22:51:13 +08:00
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/*
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* Copyright (C) 2016 Cavium, Inc.
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*/
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#include <linux/module.h>
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#include "cptpf.h"
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static void cpt_send_msg_to_vf(struct cpt_device *cpt, int vf,
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struct cpt_mbox *mbx)
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{
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/* Writing mbox(0) causes interrupt */
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cpt_write_csr64(cpt->reg_base, CPTX_PF_VFX_MBOXX(0, vf, 1),
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mbx->data);
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cpt_write_csr64(cpt->reg_base, CPTX_PF_VFX_MBOXX(0, vf, 0), mbx->msg);
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}
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/* ACKs VF's mailbox message
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* @vf: VF to which ACK to be sent
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*/
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static void cpt_mbox_send_ack(struct cpt_device *cpt, int vf,
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struct cpt_mbox *mbx)
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{
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mbx->data = 0ull;
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mbx->msg = CPT_MBOX_MSG_TYPE_ACK;
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cpt_send_msg_to_vf(cpt, vf, mbx);
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}
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static void cpt_clear_mbox_intr(struct cpt_device *cpt, u32 vf)
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{
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/* W1C for the VF */
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cpt_write_csr64(cpt->reg_base, CPTX_PF_MBOX_INTX(0, 0), (1 << vf));
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}
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/*
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* Configure QLEN/Chunk sizes for VF
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*/
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static void cpt_cfg_qlen_for_vf(struct cpt_device *cpt, int vf, u32 size)
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{
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union cptx_pf_qx_ctl pf_qx_ctl;
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pf_qx_ctl.u = cpt_read_csr64(cpt->reg_base, CPTX_PF_QX_CTL(0, vf));
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pf_qx_ctl.s.size = size;
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pf_qx_ctl.s.cont_err = true;
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cpt_write_csr64(cpt->reg_base, CPTX_PF_QX_CTL(0, vf), pf_qx_ctl.u);
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}
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/*
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* Configure VQ priority
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*/
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static void cpt_cfg_vq_priority(struct cpt_device *cpt, int vf, u32 pri)
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{
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union cptx_pf_qx_ctl pf_qx_ctl;
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pf_qx_ctl.u = cpt_read_csr64(cpt->reg_base, CPTX_PF_QX_CTL(0, vf));
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pf_qx_ctl.s.pri = pri;
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cpt_write_csr64(cpt->reg_base, CPTX_PF_QX_CTL(0, vf), pf_qx_ctl.u);
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}
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2017-02-14 17:23:17 +08:00
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static int cpt_bind_vq_to_grp(struct cpt_device *cpt, u8 q, u8 grp)
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2017-02-07 22:51:13 +08:00
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{
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struct microcode *mcode = cpt->mcode;
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union cptx_pf_qx_ctl pf_qx_ctl;
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struct device *dev = &cpt->pdev->dev;
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if (q >= CPT_MAX_VF_NUM) {
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dev_err(dev, "Queues are more than cores in the group");
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return -EINVAL;
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}
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if (grp >= CPT_MAX_CORE_GROUPS) {
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dev_err(dev, "Request group is more than possible groups");
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return -EINVAL;
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}
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if (grp >= cpt->next_mc_idx) {
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dev_err(dev, "Request group is higher than available functional groups");
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return -EINVAL;
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}
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pf_qx_ctl.u = cpt_read_csr64(cpt->reg_base, CPTX_PF_QX_CTL(0, q));
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pf_qx_ctl.s.grp = mcode[grp].group;
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cpt_write_csr64(cpt->reg_base, CPTX_PF_QX_CTL(0, q), pf_qx_ctl.u);
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dev_dbg(dev, "VF %d TYPE %s", q, (mcode[grp].is_ae ? "AE" : "SE"));
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return mcode[grp].is_ae ? AE_TYPES : SE_TYPES;
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}
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/* Interrupt handler to handle mailbox messages from VFs */
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static void cpt_handle_mbox_intr(struct cpt_device *cpt, int vf)
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{
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struct cpt_vf_info *vfx = &cpt->vfinfo[vf];
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struct cpt_mbox mbx = {};
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2017-02-14 17:23:17 +08:00
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int vftype;
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2017-02-07 22:51:13 +08:00
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struct device *dev = &cpt->pdev->dev;
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/*
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* MBOX[0] contains msg
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* MBOX[1] contains data
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*/
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mbx.msg = cpt_read_csr64(cpt->reg_base, CPTX_PF_VFX_MBOXX(0, vf, 0));
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mbx.data = cpt_read_csr64(cpt->reg_base, CPTX_PF_VFX_MBOXX(0, vf, 1));
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dev_dbg(dev, "%s: Mailbox msg 0x%llx from VF%d", __func__, mbx.msg, vf);
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switch (mbx.msg) {
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case CPT_MSG_VF_UP:
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vfx->state = VF_STATE_UP;
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try_module_get(THIS_MODULE);
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cpt_mbox_send_ack(cpt, vf, &mbx);
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break;
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case CPT_MSG_READY:
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mbx.msg = CPT_MSG_READY;
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mbx.data = vf;
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cpt_send_msg_to_vf(cpt, vf, &mbx);
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break;
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case CPT_MSG_VF_DOWN:
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/* First msg in VF teardown sequence */
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vfx->state = VF_STATE_DOWN;
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module_put(THIS_MODULE);
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cpt_mbox_send_ack(cpt, vf, &mbx);
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break;
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case CPT_MSG_QLEN:
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vfx->qlen = mbx.data;
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cpt_cfg_qlen_for_vf(cpt, vf, vfx->qlen);
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cpt_mbox_send_ack(cpt, vf, &mbx);
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break;
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case CPT_MSG_QBIND_GRP:
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vftype = cpt_bind_vq_to_grp(cpt, vf, (u8)mbx.data);
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if ((vftype != AE_TYPES) && (vftype != SE_TYPES))
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dev_err(dev, "Queue %d binding to group %llu failed",
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vf, mbx.data);
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else {
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dev_dbg(dev, "Queue %d binding to group %llu successful",
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vf, mbx.data);
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mbx.msg = CPT_MSG_QBIND_GRP;
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mbx.data = vftype;
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cpt_send_msg_to_vf(cpt, vf, &mbx);
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}
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break;
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case CPT_MSG_VQ_PRIORITY:
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vfx->priority = mbx.data;
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cpt_cfg_vq_priority(cpt, vf, vfx->priority);
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cpt_mbox_send_ack(cpt, vf, &mbx);
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break;
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default:
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dev_err(&cpt->pdev->dev, "Invalid msg from VF%d, msg 0x%llx\n",
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vf, mbx.msg);
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break;
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}
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}
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void cpt_mbox_intr_handler (struct cpt_device *cpt, int mbx)
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{
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u64 intr;
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u8 vf;
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intr = cpt_read_csr64(cpt->reg_base, CPTX_PF_MBOX_INTX(0, 0));
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dev_dbg(&cpt->pdev->dev, "PF interrupt Mbox%d 0x%llx\n", mbx, intr);
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for (vf = 0; vf < CPT_MAX_VF_NUM; vf++) {
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if (intr & (1ULL << vf)) {
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dev_dbg(&cpt->pdev->dev, "Intr from VF %d\n", vf);
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cpt_handle_mbox_intr(cpt, vf);
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cpt_clear_mbox_intr(cpt, vf);
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}
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}
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}
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