qed_dev.c 81.3 KB
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/* QLogic qed NIC Driver
 * Copyright (c) 2015 QLogic Corporation
 *
 * This software is available under the terms of the GNU General Public License
 * (GPL) Version 2, available from the file COPYING in the main directory of
 * this source tree.
 */

#include <linux/types.h>
#include <asm/byteorder.h>
#include <linux/io.h>
#include <linux/delay.h>
#include <linux/dma-mapping.h>
#include <linux/errno.h>
#include <linux/kernel.h>
#include <linux/mutex.h>
#include <linux/pci.h>
#include <linux/slab.h>
#include <linux/string.h>
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#include <linux/vmalloc.h>
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#include <linux/etherdevice.h>
#include <linux/qed/qed_chain.h>
#include <linux/qed/qed_if.h>
#include "qed.h"
#include "qed_cxt.h"
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#include "qed_dcbx.h"
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#include "qed_dev_api.h"
#include "qed_hsi.h"
#include "qed_hw.h"
#include "qed_init_ops.h"
#include "qed_int.h"
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#include "qed_iscsi.h"
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#include "qed_ll2.h"
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#include "qed_mcp.h"
#include "qed_reg_addr.h"
#include "qed_sp.h"
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#include "qed_sriov.h"
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#include "qed_vf.h"
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#include "qed_roce.h"
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static DEFINE_SPINLOCK(qm_lock);
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#define QED_MIN_DPIS            (4)
#define QED_MIN_PWM_REGION      (QED_WID_SIZE * QED_MIN_DPIS)

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/* API common to all protocols */
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enum BAR_ID {
	BAR_ID_0,       /* used for GRC */
	BAR_ID_1        /* Used for doorbells */
};

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static u32 qed_hw_bar_size(struct qed_hwfn *p_hwfn, enum BAR_ID bar_id)
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{
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	u32 bar_reg = (bar_id == BAR_ID_0 ?
		       PGLUE_B_REG_PF_BAR0_SIZE : PGLUE_B_REG_PF_BAR1_SIZE);
	u32 val;
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	if (IS_VF(p_hwfn->cdev))
		return 1 << 17;

	val = qed_rd(p_hwfn, p_hwfn->p_main_ptt, bar_reg);
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	if (val)
		return 1 << (val + 15);

	/* Old MFW initialized above registered only conditionally */
	if (p_hwfn->cdev->num_hwfns > 1) {
		DP_INFO(p_hwfn,
			"BAR size not configured. Assuming BAR size of 256kB for GRC and 512kB for DB\n");
			return BAR_ID_0 ? 256 * 1024 : 512 * 1024;
	} else {
		DP_INFO(p_hwfn,
			"BAR size not configured. Assuming BAR size of 512kB for GRC and 512kB for DB\n");
			return 512 * 1024;
	}
}

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void qed_init_dp(struct qed_dev *cdev, u32 dp_module, u8 dp_level)
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{
	u32 i;

	cdev->dp_level = dp_level;
	cdev->dp_module = dp_module;
	for (i = 0; i < MAX_HWFNS_PER_DEVICE; i++) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];

		p_hwfn->dp_level = dp_level;
		p_hwfn->dp_module = dp_module;
	}
}

void qed_init_struct(struct qed_dev *cdev)
{
	u8 i;

	for (i = 0; i < MAX_HWFNS_PER_DEVICE; i++) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];

		p_hwfn->cdev = cdev;
		p_hwfn->my_id = i;
		p_hwfn->b_active = false;

		mutex_init(&p_hwfn->dmae_info.mutex);
	}

	/* hwfn 0 is always active */
	cdev->hwfns[0].b_active = true;

	/* set the default cache alignment to 128 */
	cdev->cache_shift = 7;
}

static void qed_qm_info_free(struct qed_hwfn *p_hwfn)
{
	struct qed_qm_info *qm_info = &p_hwfn->qm_info;

	kfree(qm_info->qm_pq_params);
	qm_info->qm_pq_params = NULL;
	kfree(qm_info->qm_vport_params);
	qm_info->qm_vport_params = NULL;
	kfree(qm_info->qm_port_params);
	qm_info->qm_port_params = NULL;
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	kfree(qm_info->wfq_data);
	qm_info->wfq_data = NULL;
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}

void qed_resc_free(struct qed_dev *cdev)
{
	int i;

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	if (IS_VF(cdev))
		return;

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	kfree(cdev->fw_data);
	cdev->fw_data = NULL;

	kfree(cdev->reset_stats);

	for_each_hwfn(cdev, i) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];

		qed_cxt_mngr_free(p_hwfn);
		qed_qm_info_free(p_hwfn);
		qed_spq_free(p_hwfn);
		qed_eq_free(p_hwfn, p_hwfn->p_eq);
		qed_consq_free(p_hwfn, p_hwfn->p_consq);
		qed_int_free(p_hwfn);
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#ifdef CONFIG_QED_LL2
		qed_ll2_free(p_hwfn, p_hwfn->p_ll2_info);
#endif
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		if (p_hwfn->hw_info.personality == QED_PCI_ISCSI)
			qed_iscsi_free(p_hwfn, p_hwfn->p_iscsi_info);
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		qed_iov_free(p_hwfn);
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		qed_dmae_info_free(p_hwfn);
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		qed_dcbx_info_free(p_hwfn, p_hwfn->p_dcbx_info);
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	}
}

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static int qed_init_qm_info(struct qed_hwfn *p_hwfn, bool b_sleepable)
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{
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	u8 num_vports, vf_offset = 0, i, vport_id, num_ports, curr_queue = 0;
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	struct qed_qm_info *qm_info = &p_hwfn->qm_info;
	struct init_qm_port_params *p_qm_port;
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	bool init_rdma_offload_pq = false;
	bool init_pure_ack_pq = false;
	bool init_ooo_pq = false;
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	u16 num_pqs, multi_cos_tcs = 1;
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	u8 pf_wfq = qm_info->pf_wfq;
	u32 pf_rl = qm_info->pf_rl;
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	u16 num_pf_rls = 0;
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	u16 num_vfs = 0;
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#ifdef CONFIG_QED_SRIOV
	if (p_hwfn->cdev->p_iov_info)
		num_vfs = p_hwfn->cdev->p_iov_info->total_vfs;
#endif
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	memset(qm_info, 0, sizeof(*qm_info));

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	num_pqs = multi_cos_tcs + num_vfs + 1;	/* The '1' is for pure-LB */
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	num_vports = (u8)RESC_NUM(p_hwfn, QED_VPORT);

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	if (p_hwfn->hw_info.personality == QED_PCI_ETH_ROCE) {
		num_pqs++;	/* for RoCE queue */
		init_rdma_offload_pq = true;
		/* we subtract num_vfs because each require a rate limiter,
		 * and one default rate limiter
		 */
		if (p_hwfn->pf_params.rdma_pf_params.enable_dcqcn)
			num_pf_rls = RESC_NUM(p_hwfn, QED_RL) - num_vfs - 1;

		num_pqs += num_pf_rls;
		qm_info->num_pf_rls = (u8) num_pf_rls;
	}

	if (p_hwfn->hw_info.personality == QED_PCI_ISCSI) {
		num_pqs += 2;	/* for iSCSI pure-ACK / OOO queue */
		init_pure_ack_pq = true;
		init_ooo_pq = true;
	}

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	/* Sanity checking that setup requires legal number of resources */
	if (num_pqs > RESC_NUM(p_hwfn, QED_PQ)) {
		DP_ERR(p_hwfn,
		       "Need too many Physical queues - 0x%04x when only %04x are available\n",
		       num_pqs, RESC_NUM(p_hwfn, QED_PQ));
		return -EINVAL;
	}

	/* PQs will be arranged as follows: First per-TC PQ then pure-LB quete.
	 */
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	qm_info->qm_pq_params = kcalloc(num_pqs,
					sizeof(struct init_qm_pq_params),
					b_sleepable ? GFP_KERNEL : GFP_ATOMIC);
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	if (!qm_info->qm_pq_params)
		goto alloc_err;

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	qm_info->qm_vport_params = kcalloc(num_vports,
					   sizeof(struct init_qm_vport_params),
					   b_sleepable ? GFP_KERNEL
						       : GFP_ATOMIC);
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	if (!qm_info->qm_vport_params)
		goto alloc_err;

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	qm_info->qm_port_params = kcalloc(MAX_NUM_PORTS,
					  sizeof(struct init_qm_port_params),
					  b_sleepable ? GFP_KERNEL
						      : GFP_ATOMIC);
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	if (!qm_info->qm_port_params)
		goto alloc_err;

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	qm_info->wfq_data = kcalloc(num_vports, sizeof(struct qed_wfq_data),
				    b_sleepable ? GFP_KERNEL : GFP_ATOMIC);
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	if (!qm_info->wfq_data)
		goto alloc_err;

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	vport_id = (u8)RESC_START(p_hwfn, QED_VPORT);

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	/* First init rate limited queues */
	for (curr_queue = 0; curr_queue < num_pf_rls; curr_queue++) {
		qm_info->qm_pq_params[curr_queue].vport_id = vport_id++;
		qm_info->qm_pq_params[curr_queue].tc_id =
		    p_hwfn->hw_info.non_offload_tc;
		qm_info->qm_pq_params[curr_queue].wrr_group = 1;
		qm_info->qm_pq_params[curr_queue].rl_valid = 1;
	}

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	/* First init per-TC PQs */
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	for (i = 0; i < multi_cos_tcs; i++) {
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		struct init_qm_pq_params *params =
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		    &qm_info->qm_pq_params[curr_queue++];

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		if (p_hwfn->hw_info.personality == QED_PCI_ETH_ROCE ||
		    p_hwfn->hw_info.personality == QED_PCI_ETH) {
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			params->vport_id = vport_id;
			params->tc_id = p_hwfn->hw_info.non_offload_tc;
			params->wrr_group = 1;
		} else {
			params->vport_id = vport_id;
			params->tc_id = p_hwfn->hw_info.offload_tc;
			params->wrr_group = 1;
		}
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	}

	/* Then init pure-LB PQ */
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	qm_info->pure_lb_pq = curr_queue;
	qm_info->qm_pq_params[curr_queue].vport_id =
	    (u8) RESC_START(p_hwfn, QED_VPORT);
	qm_info->qm_pq_params[curr_queue].tc_id = PURE_LB_TC;
	qm_info->qm_pq_params[curr_queue].wrr_group = 1;
	curr_queue++;
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	qm_info->offload_pq = 0;
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	if (init_rdma_offload_pq) {
		qm_info->offload_pq = curr_queue;
		qm_info->qm_pq_params[curr_queue].vport_id = vport_id;
		qm_info->qm_pq_params[curr_queue].tc_id =
		    p_hwfn->hw_info.offload_tc;
		qm_info->qm_pq_params[curr_queue].wrr_group = 1;
		curr_queue++;
	}

	if (init_pure_ack_pq) {
		qm_info->pure_ack_pq = curr_queue;
		qm_info->qm_pq_params[curr_queue].vport_id = vport_id;
		qm_info->qm_pq_params[curr_queue].tc_id =
		    p_hwfn->hw_info.offload_tc;
		qm_info->qm_pq_params[curr_queue].wrr_group = 1;
		curr_queue++;
	}

	if (init_ooo_pq) {
		qm_info->ooo_pq = curr_queue;
		qm_info->qm_pq_params[curr_queue].vport_id = vport_id;
		qm_info->qm_pq_params[curr_queue].tc_id = DCBX_ISCSI_OOO_TC;
		qm_info->qm_pq_params[curr_queue].wrr_group = 1;
		curr_queue++;
	}

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	/* Then init per-VF PQs */
	vf_offset = curr_queue;
	for (i = 0; i < num_vfs; i++) {
		/* First vport is used by the PF */
		qm_info->qm_pq_params[curr_queue].vport_id = vport_id + i + 1;
		qm_info->qm_pq_params[curr_queue].tc_id =
		    p_hwfn->hw_info.non_offload_tc;
		qm_info->qm_pq_params[curr_queue].wrr_group = 1;
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		qm_info->qm_pq_params[curr_queue].rl_valid = 1;
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		curr_queue++;
	}

	qm_info->vf_queues_offset = vf_offset;
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	qm_info->num_pqs = num_pqs;
	qm_info->num_vports = num_vports;

	/* Initialize qm port parameters */
	num_ports = p_hwfn->cdev->num_ports_in_engines;
	for (i = 0; i < num_ports; i++) {
		p_qm_port = &qm_info->qm_port_params[i];
		p_qm_port->active = 1;
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		if (num_ports == 4)
			p_qm_port->active_phys_tcs = 0x7;
		else
			p_qm_port->active_phys_tcs = 0x9f;
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		p_qm_port->num_pbf_cmd_lines = PBF_MAX_CMD_LINES / num_ports;
		p_qm_port->num_btb_blocks = BTB_MAX_BLOCKS / num_ports;
	}

	qm_info->max_phys_tcs_per_port = NUM_OF_PHYS_TCS;

	qm_info->start_pq = (u16)RESC_START(p_hwfn, QED_PQ);

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	qm_info->num_vf_pqs = num_vfs;
	qm_info->start_vport = (u8) RESC_START(p_hwfn, QED_VPORT);
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	for (i = 0; i < qm_info->num_vports; i++)
		qm_info->qm_vport_params[i].vport_wfq = 1;

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	qm_info->vport_rl_en = 1;
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	qm_info->vport_wfq_en = 1;
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	qm_info->pf_rl = pf_rl;
	qm_info->pf_wfq = pf_wfq;
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	return 0;

alloc_err:
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	qed_qm_info_free(p_hwfn);
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	return -ENOMEM;
}

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/* This function reconfigures the QM pf on the fly.
 * For this purpose we:
 * 1. reconfigure the QM database
 * 2. set new values to runtime arrat
 * 3. send an sdm_qm_cmd through the rbc interface to stop the QM
 * 4. activate init tool in QM_PF stage
 * 5. send an sdm_qm_cmd through rbc interface to release the QM
 */
int qed_qm_reconf(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
{
	struct qed_qm_info *qm_info = &p_hwfn->qm_info;
	bool b_rc;
	int rc;

	/* qm_info is allocated in qed_init_qm_info() which is already called
	 * from qed_resc_alloc() or previous call of qed_qm_reconf().
	 * The allocated size may change each init, so we free it before next
	 * allocation.
	 */
	qed_qm_info_free(p_hwfn);

	/* initialize qed's qm data structure */
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	rc = qed_init_qm_info(p_hwfn, false);
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	if (rc)
		return rc;

	/* stop PF's qm queues */
	spin_lock_bh(&qm_lock);
	b_rc = qed_send_qm_stop_cmd(p_hwfn, p_ptt, false, true,
				    qm_info->start_pq, qm_info->num_pqs);
	spin_unlock_bh(&qm_lock);
	if (!b_rc)
		return -EINVAL;

	/* clear the QM_PF runtime phase leftovers from previous init */
	qed_init_clear_rt_data(p_hwfn);

	/* prepare QM portion of runtime array */
	qed_qm_init_pf(p_hwfn);

	/* activate init tool on runtime array */
	rc = qed_init_run(p_hwfn, p_ptt, PHASE_QM_PF, p_hwfn->rel_pf_id,
			  p_hwfn->hw_info.hw_mode);
	if (rc)
		return rc;

	/* start PF's qm queues */
	spin_lock_bh(&qm_lock);
	b_rc = qed_send_qm_stop_cmd(p_hwfn, p_ptt, true, true,
				    qm_info->start_pq, qm_info->num_pqs);
	spin_unlock_bh(&qm_lock);
	if (!b_rc)
		return -EINVAL;

	return 0;
}

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int qed_resc_alloc(struct qed_dev *cdev)
{
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	struct qed_iscsi_info *p_iscsi_info;
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#ifdef CONFIG_QED_LL2
	struct qed_ll2_info *p_ll2_info;
#endif
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	struct qed_consq *p_consq;
	struct qed_eq *p_eq;
	int i, rc = 0;

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	if (IS_VF(cdev))
		return rc;

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	cdev->fw_data = kzalloc(sizeof(*cdev->fw_data), GFP_KERNEL);
	if (!cdev->fw_data)
		return -ENOMEM;

	for_each_hwfn(cdev, i) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];
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		u32 n_eqes, num_cons;
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		/* First allocate the context manager structure */
		rc = qed_cxt_mngr_alloc(p_hwfn);
		if (rc)
			goto alloc_err;

		/* Set the HW cid/tid numbers (in the contest manager)
		 * Must be done prior to any further computations.
		 */
		rc = qed_cxt_set_pf_params(p_hwfn);
		if (rc)
			goto alloc_err;

		/* Prepare and process QM requirements */
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		rc = qed_init_qm_info(p_hwfn, true);
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		if (rc)
			goto alloc_err;

		/* Compute the ILT client partition */
		rc = qed_cxt_cfg_ilt_compute(p_hwfn);
		if (rc)
			goto alloc_err;

		/* CID map / ILT shadow table / T2
		 * The talbes sizes are determined by the computations above
		 */
		rc = qed_cxt_tables_alloc(p_hwfn);
		if (rc)
			goto alloc_err;

		/* SPQ, must follow ILT because initializes SPQ context */
		rc = qed_spq_alloc(p_hwfn);
		if (rc)
			goto alloc_err;

		/* SP status block allocation */
		p_hwfn->p_dpc_ptt = qed_get_reserved_ptt(p_hwfn,
							 RESERVED_PTT_DPC);

		rc = qed_int_alloc(p_hwfn, p_hwfn->p_main_ptt);
		if (rc)
			goto alloc_err;

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		rc = qed_iov_alloc(p_hwfn);
		if (rc)
			goto alloc_err;

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		/* EQ */
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		n_eqes = qed_chain_get_capacity(&p_hwfn->p_spq->chain);
		if (p_hwfn->hw_info.personality == QED_PCI_ETH_ROCE) {
			num_cons = qed_cxt_get_proto_cid_count(p_hwfn,
							       PROTOCOLID_ROCE,
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							       NULL) * 2;
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			n_eqes += num_cons + 2 * MAX_NUM_VFS_BB;
		} else if (p_hwfn->hw_info.personality == QED_PCI_ISCSI) {
			num_cons =
			    qed_cxt_get_proto_cid_count(p_hwfn,
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							PROTOCOLID_ISCSI,
							NULL);
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			n_eqes += 2 * num_cons;
		}

		if (n_eqes > 0xFFFF) {
			DP_ERR(p_hwfn,
			       "Cannot allocate 0x%x EQ elements. The maximum of a u16 chain is 0x%x\n",
			       n_eqes, 0xFFFF);
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			rc = -EINVAL;
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			goto alloc_err;
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		}
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		p_eq = qed_eq_alloc(p_hwfn, (u16) n_eqes);
		if (!p_eq)
			goto alloc_no_mem;
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		p_hwfn->p_eq = p_eq;

		p_consq = qed_consq_alloc(p_hwfn);
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		if (!p_consq)
			goto alloc_no_mem;
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		p_hwfn->p_consq = p_consq;

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#ifdef CONFIG_QED_LL2
		if (p_hwfn->using_ll2) {
			p_ll2_info = qed_ll2_alloc(p_hwfn);
			if (!p_ll2_info)
				goto alloc_no_mem;
			p_hwfn->p_ll2_info = p_ll2_info;
		}
#endif
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		if (p_hwfn->hw_info.personality == QED_PCI_ISCSI) {
			p_iscsi_info = qed_iscsi_alloc(p_hwfn);
			if (!p_iscsi_info)
				goto alloc_no_mem;
			p_hwfn->p_iscsi_info = p_iscsi_info;
		}
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		/* DMA info initialization */
		rc = qed_dmae_info_alloc(p_hwfn);
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		if (rc)
524
			goto alloc_err;
525 526 527

		/* DCBX initialization */
		rc = qed_dcbx_info_alloc(p_hwfn);
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		if (rc)
529
			goto alloc_err;
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	}

	cdev->reset_stats = kzalloc(sizeof(*cdev->reset_stats), GFP_KERNEL);
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	if (!cdev->reset_stats)
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		goto alloc_no_mem;
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	return 0;

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alloc_no_mem:
	rc = -ENOMEM;
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alloc_err:
	qed_resc_free(cdev);
	return rc;
}

void qed_resc_setup(struct qed_dev *cdev)
{
	int i;

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	if (IS_VF(cdev))
		return;

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	for_each_hwfn(cdev, i) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];

		qed_cxt_mngr_setup(p_hwfn);
		qed_spq_setup(p_hwfn);
		qed_eq_setup(p_hwfn, p_hwfn->p_eq);
		qed_consq_setup(p_hwfn, p_hwfn->p_consq);

		/* Read shadow of current MFW mailbox */
		qed_mcp_read_mb(p_hwfn, p_hwfn->p_main_ptt);
		memcpy(p_hwfn->mcp_info->mfw_mb_shadow,
		       p_hwfn->mcp_info->mfw_mb_cur,
		       p_hwfn->mcp_info->mfw_mb_length);

		qed_int_setup(p_hwfn, p_hwfn->p_main_ptt);
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		qed_iov_setup(p_hwfn, p_hwfn->p_main_ptt);
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#ifdef CONFIG_QED_LL2
		if (p_hwfn->using_ll2)
			qed_ll2_setup(p_hwfn, p_hwfn->p_ll2_info);
#endif
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		if (p_hwfn->hw_info.personality == QED_PCI_ISCSI)
			qed_iscsi_setup(p_hwfn, p_hwfn->p_iscsi_info);
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	}
}

#define FINAL_CLEANUP_POLL_CNT          (100)
#define FINAL_CLEANUP_POLL_TIME         (10)
int qed_final_cleanup(struct qed_hwfn *p_hwfn,
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		      struct qed_ptt *p_ptt, u16 id, bool is_vf)
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{
	u32 command = 0, addr, count = FINAL_CLEANUP_POLL_CNT;
	int rc = -EBUSY;

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	addr = GTT_BAR0_MAP_REG_USDM_RAM +
		USTORM_FLR_FINAL_ACK_OFFSET(p_hwfn->rel_pf_id);
588

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	if (is_vf)
		id += 0x10;

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	command |= X_FINAL_CLEANUP_AGG_INT <<
		SDM_AGG_INT_COMP_PARAMS_AGG_INT_INDEX_SHIFT;
	command |= 1 << SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_ENABLE_SHIFT;
	command |= id << SDM_AGG_INT_COMP_PARAMS_AGG_VECTOR_BIT_SHIFT;
	command |= SDM_COMP_TYPE_AGG_INT << SDM_OP_GEN_COMP_TYPE_SHIFT;
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	/* Make sure notification is not set before initiating final cleanup */
	if (REG_RD(p_hwfn, addr)) {
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		DP_NOTICE(p_hwfn,
			  "Unexpected; Found final cleanup notification before initiating final cleanup\n");
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		REG_WR(p_hwfn, addr, 0);
	}

	DP_VERBOSE(p_hwfn, QED_MSG_IOV,
		   "Sending final cleanup for PFVF[%d] [Command %08x\n]",
		   id, command);

	qed_wr(p_hwfn, p_ptt, XSDM_REG_OPERATION_GEN, command);

	/* Poll until completion */
	while (!REG_RD(p_hwfn, addr) && count--)
		msleep(FINAL_CLEANUP_POLL_TIME);

	if (REG_RD(p_hwfn, addr))
		rc = 0;
	else
		DP_NOTICE(p_hwfn,
			  "Failed to receive FW final cleanup notification\n");

	/* Cleanup afterwards */
	REG_WR(p_hwfn, addr, 0);

	return rc;
}

static void qed_calc_hw_mode(struct qed_hwfn *p_hwfn)
{
	int hw_mode = 0;

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	hw_mode = (1 << MODE_BB_B0);
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	switch (p_hwfn->cdev->num_ports_in_engines) {
	case 1:
		hw_mode |= 1 << MODE_PORTS_PER_ENG_1;
		break;
	case 2:
		hw_mode |= 1 << MODE_PORTS_PER_ENG_2;
		break;
	case 4:
		hw_mode |= 1 << MODE_PORTS_PER_ENG_4;
		break;
	default:
		DP_NOTICE(p_hwfn, "num_ports_in_engine = %d not supported\n",
			  p_hwfn->cdev->num_ports_in_engines);
		return;
	}

	switch (p_hwfn->cdev->mf_mode) {
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	case QED_MF_DEFAULT:
	case QED_MF_NPAR:
		hw_mode |= 1 << MODE_MF_SI;
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		break;
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	case QED_MF_OVLAN:
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		hw_mode |= 1 << MODE_MF_SD;
		break;
	default:
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		DP_NOTICE(p_hwfn, "Unsupported MF mode, init as DEFAULT\n");
		hw_mode |= 1 << MODE_MF_SI;
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	}

	hw_mode |= 1 << MODE_ASIC;

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	if (p_hwfn->cdev->num_hwfns > 1)
		hw_mode |= 1 << MODE_100G;

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	p_hwfn->hw_info.hw_mode = hw_mode;
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	DP_VERBOSE(p_hwfn, (NETIF_MSG_PROBE | NETIF_MSG_IFUP),
		   "Configuring function for hw_mode: 0x%08x\n",
		   p_hwfn->hw_info.hw_mode);
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}

/* Init run time data for all PFs on an engine. */
static void qed_init_cau_rt_data(struct qed_dev *cdev)
{
	u32 offset = CAU_REG_SB_VAR_MEMORY_RT_OFFSET;
	int i, sb_id;

	for_each_hwfn(cdev, i) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];
		struct qed_igu_info *p_igu_info;
		struct qed_igu_block *p_block;
		struct cau_sb_entry sb_entry;

		p_igu_info = p_hwfn->hw_info.p_igu_info;

		for (sb_id = 0; sb_id < QED_MAPPING_MEMORY_SIZE(cdev);
		     sb_id++) {
			p_block = &p_igu_info->igu_map.igu_blocks[sb_id];
			if (!p_block->is_pf)
				continue;

			qed_init_cau_sb_entry(p_hwfn, &sb_entry,
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					      p_block->function_id, 0, 0);
			STORE_RT_REG_AGG(p_hwfn, offset + sb_id * 2, sb_entry);
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		}
	}
}

static int qed_hw_init_common(struct qed_hwfn *p_hwfn,
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			      struct qed_ptt *p_ptt, int hw_mode)
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{
	struct qed_qm_info *qm_info = &p_hwfn->qm_info;
	struct qed_qm_common_rt_init_params params;
	struct qed_dev *cdev = p_hwfn->cdev;
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	u16 num_pfs, pf_id;
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	u32 concrete_fid;
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	int rc = 0;
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	u8 vf_id;
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	qed_init_cau_rt_data(cdev);

	/* Program GTT windows */
	qed_gtt_init(p_hwfn);

	if (p_hwfn->mcp_info) {
		if (p_hwfn->mcp_info->func_info.bandwidth_max)
			qm_info->pf_rl_en = 1;
		if (p_hwfn->mcp_info->func_info.bandwidth_min)
			qm_info->pf_wfq_en = 1;
	}

	memset(&params, 0, sizeof(params));
	params.max_ports_per_engine = p_hwfn->cdev->num_ports_in_engines;
	params.max_phys_tcs_per_port = qm_info->max_phys_tcs_per_port;
	params.pf_rl_en = qm_info->pf_rl_en;
	params.pf_wfq_en = qm_info->pf_wfq_en;
	params.vport_rl_en = qm_info->vport_rl_en;
	params.vport_wfq_en = qm_info->vport_wfq_en;
	params.port_params = qm_info->qm_port_params;

	qed_qm_common_rt_init(p_hwfn, &params);

	qed_cxt_hw_init_common(p_hwfn);

	/* Close gate from NIG to BRB/Storm; By default they are open, but
	 * we close them to prevent NIG from passing data to reset blocks.
	 * Should have been done in the ENGINE phase, but init-tool lacks
	 * proper port-pretend capabilities.
	 */
	qed_wr(p_hwfn, p_ptt, NIG_REG_RX_BRB_OUT_EN, 0);
	qed_wr(p_hwfn, p_ptt, NIG_REG_STORM_OUT_EN, 0);
	qed_port_pretend(p_hwfn, p_ptt, p_hwfn->port_id ^ 1);
	qed_wr(p_hwfn, p_ptt, NIG_REG_RX_BRB_OUT_EN, 0);
	qed_wr(p_hwfn, p_ptt, NIG_REG_STORM_OUT_EN, 0);
	qed_port_unpretend(p_hwfn, p_ptt);

	rc = qed_init_run(p_hwfn, p_ptt, PHASE_ENGINE, ANY_PHASE_ID, hw_mode);
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	if (rc)
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		return rc;

	qed_wr(p_hwfn, p_ptt, PSWRQ2_REG_L2P_VALIDATE_VFID, 0);
	qed_wr(p_hwfn, p_ptt, PGLUE_B_REG_USE_CLIENTID_IN_TAG, 1);

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	if (QED_IS_BB(p_hwfn->cdev)) {
		num_pfs = NUM_OF_ENG_PFS(p_hwfn->cdev);
		for (pf_id = 0; pf_id < num_pfs; pf_id++) {
			qed_fid_pretend(p_hwfn, p_ptt, pf_id);
			qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_ROCE, 0x0);
			qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_TCP, 0x0);
		}
		/* pretend to original PF */
		qed_fid_pretend(p_hwfn, p_ptt, p_hwfn->rel_pf_id);
	}
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	for (vf_id = 0; vf_id < MAX_NUM_VFS_BB; vf_id++) {
		concrete_fid = qed_vfid_to_concrete(p_hwfn, vf_id);
		qed_fid_pretend(p_hwfn, p_ptt, (u16) concrete_fid);
		qed_wr(p_hwfn, p_ptt, CCFC_REG_STRONG_ENABLE_VF, 0x1);
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		qed_wr(p_hwfn, p_ptt, CCFC_REG_WEAK_ENABLE_VF, 0x0);
		qed_wr(p_hwfn, p_ptt, TCFC_REG_STRONG_ENABLE_VF, 0x1);
		qed_wr(p_hwfn, p_ptt, TCFC_REG_WEAK_ENABLE_VF, 0x0);
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	}
	/* pretend to original PF */
	qed_fid_pretend(p_hwfn, p_ptt, p_hwfn->rel_pf_id);

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	return rc;
}

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static int
qed_hw_init_dpi_size(struct qed_hwfn *p_hwfn,
		     struct qed_ptt *p_ptt, u32 pwm_region_size, u32 n_cpus)
{
	u32 dpi_page_size_1, dpi_page_size_2, dpi_page_size;
	u32 dpi_bit_shift, dpi_count;
	u32 min_dpis;

	/* Calculate DPI size */
	dpi_page_size_1 = QED_WID_SIZE * n_cpus;
	dpi_page_size_2 = max_t(u32, QED_WID_SIZE, PAGE_SIZE);
	dpi_page_size = max_t(u32, dpi_page_size_1, dpi_page_size_2);
	dpi_page_size = roundup_pow_of_two(dpi_page_size);
	dpi_bit_shift = ilog2(dpi_page_size / 4096);

	dpi_count = pwm_region_size / dpi_page_size;

	min_dpis = p_hwfn->pf_params.rdma_pf_params.min_dpis;
	min_dpis = max_t(u32, QED_MIN_DPIS, min_dpis);

	p_hwfn->dpi_size = dpi_page_size;
	p_hwfn->dpi_count = dpi_count;

	qed_wr(p_hwfn, p_ptt, DORQ_REG_PF_DPI_BIT_SHIFT, dpi_bit_shift);

	if (dpi_count < min_dpis)
		return -EINVAL;

	return 0;
}

enum QED_ROCE_EDPM_MODE {
	QED_ROCE_EDPM_MODE_ENABLE = 0,
	QED_ROCE_EDPM_MODE_FORCE_ON = 1,
	QED_ROCE_EDPM_MODE_DISABLE = 2,
};

static int
qed_hw_init_pf_doorbell_bar(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
{
	u32 pwm_regsize, norm_regsize;
	u32 non_pwm_conn, min_addr_reg1;
	u32 db_bar_size, n_cpus;
	u32 roce_edpm_mode;
	u32 pf_dems_shift;
	int rc = 0;
	u8 cond;

	db_bar_size = qed_hw_bar_size(p_hwfn, BAR_ID_1);
	if (p_hwfn->cdev->num_hwfns > 1)
		db_bar_size /= 2;

	/* Calculate doorbell regions */
	non_pwm_conn = qed_cxt_get_proto_cid_start(p_hwfn, PROTOCOLID_CORE) +
		       qed_cxt_get_proto_cid_count(p_hwfn, PROTOCOLID_CORE,
						   NULL) +
		       qed_cxt_get_proto_cid_count(p_hwfn, PROTOCOLID_ETH,
						   NULL);
	norm_regsize = roundup(QED_PF_DEMS_SIZE * non_pwm_conn, 4096);
	min_addr_reg1 = norm_regsize / 4096;
	pwm_regsize = db_bar_size - norm_regsize;

	/* Check that the normal and PWM sizes are valid */
	if (db_bar_size < norm_regsize) {
		DP_ERR(p_hwfn->cdev,
		       "Doorbell BAR size 0x%x is too small (normal region is 0x%0x )\n",
		       db_bar_size, norm_regsize);
		return -EINVAL;
	}

	if (pwm_regsize < QED_MIN_PWM_REGION) {
		DP_ERR(p_hwfn->cdev,
		       "PWM region size 0x%0x is too small. Should be at least 0x%0x (Doorbell BAR size is 0x%x and normal region size is 0x%0x)\n",
		       pwm_regsize,
		       QED_MIN_PWM_REGION, db_bar_size, norm_regsize);
		return -EINVAL;
	}

	/* Calculate number of DPIs */
	roce_edpm_mode = p_hwfn->pf_params.rdma_pf_params.roce_edpm_mode;
	if ((roce_edpm_mode == QED_ROCE_EDPM_MODE_ENABLE) ||
	    ((roce_edpm_mode == QED_ROCE_EDPM_MODE_FORCE_ON))) {
		/* Either EDPM is mandatory, or we are attempting to allocate a
		 * WID per CPU.
		 */
		n_cpus = num_active_cpus();
		rc = qed_hw_init_dpi_size(p_hwfn, p_ptt, pwm_regsize, n_cpus);
	}

	cond = (rc && (roce_edpm_mode == QED_ROCE_EDPM_MODE_ENABLE)) ||
	       (roce_edpm_mode == QED_ROCE_EDPM_MODE_DISABLE);
	if (cond || p_hwfn->dcbx_no_edpm) {
		/* Either EDPM is disabled from user configuration, or it is
		 * disabled via DCBx, or it is not mandatory and we failed to
		 * allocated a WID per CPU.
		 */
		n_cpus = 1;
		rc = qed_hw_init_dpi_size(p_hwfn, p_ptt, pwm_regsize, n_cpus);

		if (cond)
			qed_rdma_dpm_bar(p_hwfn, p_ptt);
	}

	DP_INFO(p_hwfn,
		"doorbell bar: normal_region_size=%d, pwm_region_size=%d, dpi_size=%d, dpi_count=%d, roce_edpm=%s\n",
		norm_regsize,
		pwm_regsize,
		p_hwfn->dpi_size,
		p_hwfn->dpi_count,
		((p_hwfn->dcbx_no_edpm) || (p_hwfn->db_bar_no_edpm)) ?
		"disabled" : "enabled");

	if (rc) {
		DP_ERR(p_hwfn,
		       "Failed to allocate enough DPIs. Allocated %d but the current minimum is %d.\n",
		       p_hwfn->dpi_count,
		       p_hwfn->pf_params.rdma_pf_params.min_dpis);
		return -EINVAL;
	}

	p_hwfn->dpi_start_offset = norm_regsize;

	/* DEMS size is configured log2 of DWORDs, hence the division by 4 */
	pf_dems_shift = ilog2(QED_PF_DEMS_SIZE / 4);
	qed_wr(p_hwfn, p_ptt, DORQ_REG_PF_ICID_BIT_SHIFT_NORM, pf_dems_shift);
	qed_wr(p_hwfn, p_ptt, DORQ_REG_PF_MIN_ADDR_REG1, min_addr_reg1);

	return 0;
}

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static int qed_hw_init_port(struct qed_hwfn *p_hwfn,
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			    struct qed_ptt *p_ptt, int hw_mode)
913
{
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	return qed_init_run(p_hwfn, p_ptt, PHASE_PORT,
			    p_hwfn->port_id, hw_mode);
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}

static int qed_hw_init_pf(struct qed_hwfn *p_hwfn,
			  struct qed_ptt *p_ptt,
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			  struct qed_tunn_start_params *p_tunn,
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			  int hw_mode,
			  bool b_hw_start,
			  enum qed_int_mode int_mode,
			  bool allow_npar_tx_switch)
{
	u8 rel_pf_id = p_hwfn->rel_pf_id;
	int rc = 0;

	if (p_hwfn->mcp_info) {
		struct qed_mcp_function_info *p_info;

		p_info = &p_hwfn->mcp_info->func_info;
		if (p_info->bandwidth_min)
			p_hwfn->qm_info.pf_wfq = p_info->bandwidth_min;

		/* Update rate limit once we'll actually have a link */
937
		p_hwfn->qm_info.pf_rl = 100000;
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	}

	qed_cxt_hw_init_pf(p_hwfn);

	qed_int_igu_init_rt(p_hwfn);

	/* Set VLAN in NIG if needed */
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	if (hw_mode & BIT(MODE_MF_SD)) {
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		DP_VERBOSE(p_hwfn, NETIF_MSG_HW, "Configuring LLH_FUNC_TAG\n");
		STORE_RT_REG(p_hwfn, NIG_REG_LLH_FUNC_TAG_EN_RT_OFFSET, 1);
		STORE_RT_REG(p_hwfn, NIG_REG_LLH_FUNC_TAG_VALUE_RT_OFFSET,
			     p_hwfn->hw_info.ovlan);
	}

	/* Enable classification by MAC if needed */
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	if (hw_mode & BIT(MODE_MF_SI)) {
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		DP_VERBOSE(p_hwfn, NETIF_MSG_HW,
			   "Configuring TAGMAC_CLS_TYPE\n");
		STORE_RT_REG(p_hwfn,
			     NIG_REG_LLH_FUNC_TAGMAC_CLS_TYPE_RT_OFFSET, 1);
	}

	/* Protocl Configuration  */
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	STORE_RT_REG(p_hwfn, PRS_REG_SEARCH_TCP_RT_OFFSET,
		     (p_hwfn->hw_info.personality == QED_PCI_ISCSI) ? 1 : 0);
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	STORE_RT_REG(p_hwfn, PRS_REG_SEARCH_FCOE_RT_OFFSET, 0);
	STORE_RT_REG(p_hwfn, PRS_REG_SEARCH_ROCE_RT_OFFSET, 0);

	/* Cleanup chip from previous driver if such remains exist */
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	rc = qed_final_cleanup(p_hwfn, p_ptt, rel_pf_id, false);
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	if (rc)
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		return rc;

	/* PF Init sequence */
	rc = qed_init_run(p_hwfn, p_ptt, PHASE_PF, rel_pf_id, hw_mode);
	if (rc)
		return rc;

	/* QM_PF Init sequence (may be invoked separately e.g. for DCB) */
	rc = qed_init_run(p_hwfn, p_ptt, PHASE_QM_PF, rel_pf_id, hw_mode);
	if (rc)
		return rc;

	/* Pure runtime initializations - directly to the HW  */
	qed_int_igu_init_pure_rt(p_hwfn, p_ptt, true, true);

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	rc = qed_hw_init_pf_doorbell_bar(p_hwfn, p_ptt);
	if (rc)
		return rc;

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	if (b_hw_start) {
		/* enable interrupts */
		qed_int_igu_enable(p_hwfn, p_ptt, int_mode);

		/* send function start command */
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		rc = qed_sp_pf_start(p_hwfn, p_tunn, p_hwfn->cdev->mf_mode,
				     allow_npar_tx_switch);
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		if (rc)
			DP_NOTICE(p_hwfn, "Function start ramrod failed\n");
	}
	return rc;
}

static int qed_change_pci_hwfn(struct qed_hwfn *p_hwfn,
			       struct qed_ptt *p_ptt,
			       u8 enable)
{
	u32 delay_idx = 0, val, set_val = enable ? 1 : 0;

	/* Change PF in PXP */
	qed_wr(p_hwfn, p_ptt,
	       PGLUE_B_REG_INTERNAL_PFID_ENABLE_MASTER, set_val);

	/* wait until value is set - try for 1 second every 50us */
	for (delay_idx = 0; delay_idx < 20000; delay_idx++) {
		val = qed_rd(p_hwfn, p_ptt,
			     PGLUE_B_REG_INTERNAL_PFID_ENABLE_MASTER);
		if (val == set_val)
			break;

		usleep_range(50, 60);
	}

	if (val != set_val) {
		DP_NOTICE(p_hwfn,
			  "PFID_ENABLE_MASTER wasn't changed after a second\n");
		return -EAGAIN;
	}

	return 0;
}

static void qed_reset_mb_shadow(struct qed_hwfn *p_hwfn,
				struct qed_ptt *p_main_ptt)
{
	/* Read shadow of current MFW mailbox */
	qed_mcp_read_mb(p_hwfn, p_main_ptt);
	memcpy(p_hwfn->mcp_info->mfw_mb_shadow,
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	       p_hwfn->mcp_info->mfw_mb_cur, p_hwfn->mcp_info->mfw_mb_length);
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}

int qed_hw_init(struct qed_dev *cdev,
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		struct qed_tunn_start_params *p_tunn,
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		bool b_hw_start,
		enum qed_int_mode int_mode,
		bool allow_npar_tx_switch,
		const u8 *bin_fw_data)
{
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	u32 load_code, param, drv_mb_param;
	bool b_default_mtu = true;
	struct qed_hwfn *p_hwfn;
	int rc = 0, mfw_rc, i;
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	if ((int_mode == QED_INT_MODE_MSI) && (cdev->num_hwfns > 1)) {
		DP_NOTICE(cdev, "MSI mode is not supported for CMT devices\n");
		return -EINVAL;
	}

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	if (IS_PF(cdev)) {
		rc = qed_init_fw_data(cdev, bin_fw_data);
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		if (rc)
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			return rc;
	}
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	for_each_hwfn(cdev, i) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];

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		/* If management didn't provide a default, set one of our own */
		if (!p_hwfn->hw_info.mtu) {
			p_hwfn->hw_info.mtu = 1500;
			b_default_mtu = false;
		}

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		if (IS_VF(cdev)) {
			p_hwfn->b_int_enabled = 1;
			continue;
		}

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		/* Enable DMAE in PXP */
		rc = qed_change_pci_hwfn(p_hwfn, p_hwfn->p_main_ptt, true);

		qed_calc_hw_mode(p_hwfn);

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		rc = qed_mcp_load_req(p_hwfn, p_hwfn->p_main_ptt, &load_code);
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		if (rc) {
			DP_NOTICE(p_hwfn, "Failed sending LOAD_REQ command\n");
			return rc;
		}

		qed_reset_mb_shadow(p_hwfn, p_hwfn->p_main_ptt);

		DP_VERBOSE(p_hwfn, QED_MSG_SP,
			   "Load request was sent. Resp:0x%x, Load code: 0x%x\n",
			   rc, load_code);

		p_hwfn->first_on_engine = (load_code ==
					   FW_MSG_CODE_DRV_LOAD_ENGINE);

		switch (load_code) {
		case FW_MSG_CODE_DRV_LOAD_ENGINE:
			rc = qed_hw_init_common(p_hwfn, p_hwfn->p_main_ptt,
						p_hwfn->hw_info.hw_mode);
			if (rc)
				break;
		/* Fall into */
		case FW_MSG_CODE_DRV_LOAD_PORT:
			rc = qed_hw_init_port(p_hwfn, p_hwfn->p_main_ptt,
					      p_hwfn->hw_info.hw_mode);
			if (rc)
				break;

		/* Fall into */
		case FW_MSG_CODE_DRV_LOAD_FUNCTION:
			rc = qed_hw_init_pf(p_hwfn, p_hwfn->p_main_ptt,
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					    p_tunn, p_hwfn->hw_info.hw_mode,
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					    b_hw_start, int_mode,
					    allow_npar_tx_switch);
			break;
		default:
			rc = -EINVAL;
			break;
		}

		if (rc)
			DP_NOTICE(p_hwfn,
				  "init phase failed for loadcode 0x%x (rc %d)\n",
				   load_code, rc);

		/* ACK mfw regardless of success or failure of initialization */
		mfw_rc = qed_mcp_cmd(p_hwfn, p_hwfn->p_main_ptt,
				     DRV_MSG_CODE_LOAD_DONE,
				     0, &load_code, &param);
		if (rc)
			return rc;
		if (mfw_rc) {
			DP_NOTICE(p_hwfn, "Failed sending LOAD_DONE command\n");
			return mfw_rc;
		}

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		/* send DCBX attention request command */
		DP_VERBOSE(p_hwfn,
			   QED_MSG_DCB,
			   "sending phony dcbx set command to trigger DCBx attention handling\n");
		mfw_rc = qed_mcp_cmd(p_hwfn, p_hwfn->p_main_ptt,
				     DRV_MSG_CODE_SET_DCBX,
				     1 << DRV_MB_PARAM_DCBX_NOTIFY_SHIFT,
				     &load_code, &param);
		if (mfw_rc) {
			DP_NOTICE(p_hwfn,
				  "Failed to send DCBX attention request\n");
			return mfw_rc;
		}

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		p_hwfn->hw_init_done = true;
	}

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	if (IS_PF(cdev)) {
		p_hwfn = QED_LEADING_HWFN(cdev);
		drv_mb_param = (FW_MAJOR_VERSION << 24) |
			       (FW_MINOR_VERSION << 16) |
			       (FW_REVISION_VERSION << 8) |
			       (FW_ENGINEERING_VERSION);
		rc = qed_mcp_cmd(p_hwfn, p_hwfn->p_main_ptt,
				 DRV_MSG_CODE_OV_UPDATE_STORM_FW_VER,
				 drv_mb_param, &load_code, &param);
		if (rc)
			DP_INFO(p_hwfn, "Failed to update firmware version\n");

		if (!b_default_mtu) {
			rc = qed_mcp_ov_update_mtu(p_hwfn, p_hwfn->p_main_ptt,
						   p_hwfn->hw_info.mtu);
			if (rc)
				DP_INFO(p_hwfn,
					"Failed to update default mtu\n");
		}

		rc = qed_mcp_ov_update_driver_state(p_hwfn,
						    p_hwfn->p_main_ptt,
						  QED_OV_DRIVER_STATE_DISABLED);
		if (rc)
			DP_INFO(p_hwfn, "Failed to update driver state\n");

		rc = qed_mcp_ov_update_eswitch(p_hwfn, p_hwfn->p_main_ptt,
					       QED_OV_ESWITCH_VEB);
		if (rc)
			DP_INFO(p_hwfn, "Failed to update eswitch mode\n");
	}

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	return 0;
}

#define QED_HW_STOP_RETRY_LIMIT (10)
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static void qed_hw_timers_stop(struct qed_dev *cdev,
			       struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
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{
	int i;

	/* close timers */
	qed_wr(p_hwfn, p_ptt, TM_REG_PF_ENABLE_CONN, 0x0);
	qed_wr(p_hwfn, p_ptt, TM_REG_PF_ENABLE_TASK, 0x0);

	for (i = 0; i < QED_HW_STOP_RETRY_LIMIT; i++) {
		if ((!qed_rd(p_hwfn, p_ptt,
			     TM_REG_PF_SCAN_ACTIVE_CONN)) &&
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		    (!qed_rd(p_hwfn, p_ptt, TM_REG_PF_SCAN_ACTIVE_TASK)))
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			break;

		/* Dependent on number of connection/tasks, possibly
		 * 1ms sleep is required between polls
		 */
		usleep_range(1000, 2000);
	}

	if (i < QED_HW_STOP_RETRY_LIMIT)
		return;

	DP_NOTICE(p_hwfn,
		  "Timers linear scans are not over [Connection %02x Tasks %02x]\n",
		  (u8)qed_rd(p_hwfn, p_ptt, TM_REG_PF_SCAN_ACTIVE_CONN),
		  (u8)qed_rd(p_hwfn, p_ptt, TM_REG_PF_SCAN_ACTIVE_TASK));
}

void qed_hw_timers_stop_all(struct qed_dev *cdev)
{
	int j;

	for_each_hwfn(cdev, j) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[j];
		struct qed_ptt *p_ptt = p_hwfn->p_main_ptt;

		qed_hw_timers_stop(cdev, p_hwfn, p_ptt);
	}
}

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int qed_hw_stop(struct qed_dev *cdev)
{
	int rc = 0, t_rc;
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	int j;
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	for_each_hwfn(cdev, j) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[j];
		struct qed_ptt *p_ptt = p_hwfn->p_main_ptt;

		DP_VERBOSE(p_hwfn, NETIF_MSG_IFDOWN, "Stopping hw/fw\n");

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		if (IS_VF(cdev)) {
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			qed_vf_pf_int_cleanup(p_hwfn);
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			continue;
		}

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		/* mark the hw as uninitialized... */
		p_hwfn->hw_init_done = false;

		rc = qed_sp_pf_stop(p_hwfn);
		if (rc)
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			DP_NOTICE(p_hwfn,
				  "Failed to close PF against FW. Continue to stop HW to prevent illegal host access by the device\n");
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		qed_wr(p_hwfn, p_ptt,
		       NIG_REG_RX_LLH_BRB_GATE_DNTFWD_PERPF, 0x1);

		qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_TCP, 0x0);
		qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_UDP, 0x0);
		qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_FCOE, 0x0);
		qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_ROCE, 0x0);
		qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_OPENFLOW, 0x0);

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		qed_hw_timers_stop(cdev, p_hwfn, p_ptt);
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		/* Disable Attention Generation */
		qed_int_igu_disable_int(p_hwfn, p_ptt);

		qed_wr(p_hwfn, p_ptt, IGU_REG_LEADING_EDGE_LATCH, 0);
		qed_wr(p_hwfn, p_ptt, IGU_REG_TRAILING_EDGE_LATCH, 0);

		qed_int_igu_init_pure_rt(p_hwfn, p_ptt, false, true);

		/* Need to wait 1ms to guarantee SBs are cleared */
		usleep_range(1000, 2000);
	}

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	if (IS_PF(cdev)) {
		/* Disable DMAE in PXP - in CMT, this should only be done for
		 * first hw-function, and only after all transactions have
		 * stopped for all active hw-functions.
		 */
		t_rc = qed_change_pci_hwfn(&cdev->hwfns[0],
					   cdev->hwfns[0].p_main_ptt, false);
		if (t_rc != 0)
			rc = t_rc;
	}
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	return rc;
}

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void qed_hw_stop_fastpath(struct qed_dev *cdev)
{
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	int j;
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	for_each_hwfn(cdev, j) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[j];
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		struct qed_ptt *p_ptt = p_hwfn->p_main_ptt;

		if (IS_VF(cdev)) {
			qed_vf_pf_int_cleanup(p_hwfn);
			continue;
		}
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		DP_VERBOSE(p_hwfn,
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			   NETIF_MSG_IFDOWN, "Shutting down the fastpath\n");
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		qed_wr(p_hwfn, p_ptt,
		       NIG_REG_RX_LLH_BRB_GATE_DNTFWD_PERPF, 0x1);

		qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_TCP, 0x0);
		qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_UDP, 0x0);
		qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_FCOE, 0x0);
		qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_ROCE, 0x0);
		qed_wr(p_hwfn, p_ptt, PRS_REG_SEARCH_OPENFLOW, 0x0);

		qed_int_igu_init_pure_rt(p_hwfn, p_ptt, false, false);

		/* Need to wait 1ms to guarantee SBs are cleared */
		usleep_range(1000, 2000);
	}
}

void qed_hw_start_fastpath(struct qed_hwfn *p_hwfn)
{
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	if (IS_VF(p_hwfn->cdev))
		return;

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	/* Re-open incoming traffic */
	qed_wr(p_hwfn, p_hwfn->p_main_ptt,
	       NIG_REG_RX_LLH_BRB_GATE_DNTFWD_PERPF, 0x0);
}

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static int qed_reg_assert(struct qed_hwfn *p_hwfn,
			  struct qed_ptt *p_ptt, u32 reg, bool expected)
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{
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	u32 assert_val = qed_rd(p_hwfn, p_ptt, reg);
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	if (assert_val != expected) {
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		DP_NOTICE(p_hwfn, "Value at address 0x%08x != 0x%08x\n",
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			  reg, expected);
		return -EINVAL;
	}

	return 0;
}

int qed_hw_reset(struct qed_dev *cdev)
{
	int rc = 0;
	u32 unload_resp, unload_param;
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	u32 wol_param;
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	int i;

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	switch (cdev->wol_config) {
	case QED_OV_WOL_DISABLED:
		wol_param = DRV_MB_PARAM_UNLOAD_WOL_DISABLED;
		break;
	case QED_OV_WOL_ENABLED:
		wol_param = DRV_MB_PARAM_UNLOAD_WOL_ENABLED;
		break;
	default:
		DP_NOTICE(cdev,
			  "Unknown WoL configuration %02x\n", cdev->wol_config);
		/* Fallthrough */
	case QED_OV_WOL_DEFAULT:
		wol_param = DRV_MB_PARAM_UNLOAD_WOL_MCP;
	}

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	for_each_hwfn(cdev, i) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];

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		if (IS_VF(cdev)) {
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			rc = qed_vf_pf_reset(p_hwfn);
			if (rc)
				return rc;
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			continue;
		}

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		DP_VERBOSE(p_hwfn, NETIF_MSG_IFDOWN, "Resetting hw/fw\n");

		/* Check for incorrect states */
		qed_reg_assert(p_hwfn, p_hwfn->p_main_ptt,
			       QM_REG_USG_CNT_PF_TX, 0);
		qed_reg_assert(p_hwfn, p_hwfn->p_main_ptt,
			       QM_REG_USG_CNT_PF_OTHER, 0);

		/* Disable PF in HW blocks */
		qed_wr(p_hwfn, p_hwfn->p_main_ptt, DORQ_REG_PF_DB_ENABLE, 0);
		qed_wr(p_hwfn, p_hwfn->p_main_ptt, QM_REG_PF_EN, 0);
		qed_wr(p_hwfn, p_hwfn->p_main_ptt,
		       TCFC_REG_STRONG_ENABLE_PF, 0);
		qed_wr(p_hwfn, p_hwfn->p_main_ptt,
		       CCFC_REG_STRONG_ENABLE_PF, 0);

		/* Send unload command to MCP */
		rc = qed_mcp_cmd(p_hwfn, p_hwfn->p_main_ptt,
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				 DRV_MSG_CODE_UNLOAD_REQ, wol_param,
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				 &unload_resp, &unload_param);
		if (rc) {
			DP_NOTICE(p_hwfn, "qed_hw_reset: UNLOAD_REQ failed\n");
			unload_resp = FW_MSG_CODE_DRV_UNLOAD_ENGINE;
		}

		rc = qed_mcp_cmd(p_hwfn, p_hwfn->p_main_ptt,
				 DRV_MSG_CODE_UNLOAD_DONE,
				 0, &unload_resp, &unload_param);
		if (rc) {
			DP_NOTICE(p_hwfn, "qed_hw_reset: UNLOAD_DONE failed\n");
			return rc;
		}
	}

	return rc;
}

/* Free hwfn memory and resources acquired in hw_hwfn_prepare */
static void qed_hw_hwfn_free(struct qed_hwfn *p_hwfn)
{
	qed_ptt_pool_free(p_hwfn);
	kfree(p_hwfn->hw_info.p_igu_info);
}

/* Setup bar access */
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static void qed_hw_hwfn_prepare(struct qed_hwfn *p_hwfn)
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{
	/* clear indirect access */
	qed_wr(p_hwfn, p_hwfn->p_main_ptt, PGLUE_B_REG_PGL_ADDR_88_F0, 0);
	qed_wr(p_hwfn, p_hwfn->p_main_ptt, PGLUE_B_REG_PGL_ADDR_8C_F0, 0);
	qed_wr(p_hwfn, p_hwfn->p_main_ptt, PGLUE_B_REG_PGL_ADDR_90_F0, 0);
	qed_wr(p_hwfn, p_hwfn->p_main_ptt, PGLUE_B_REG_PGL_ADDR_94_F0, 0);

	/* Clean Previous errors if such exist */
	qed_wr(p_hwfn, p_hwfn->p_main_ptt,
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	       PGLUE_B_REG_WAS_ERROR_PF_31_0_CLR, 1 << p_hwfn->abs_pf_id);
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	/* enable internal target-read */
	qed_wr(p_hwfn, p_hwfn->p_main_ptt,
	       PGLUE_B_REG_INTERNAL_PFID_ENABLE_TARGET_READ, 1);
}

static void get_function_id(struct qed_hwfn *p_hwfn)
{
	/* ME Register */
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	p_hwfn->hw_info.opaque_fid = (u16) REG_RD(p_hwfn,
						  PXP_PF_ME_OPAQUE_ADDR);
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	p_hwfn->hw_info.concrete_fid = REG_RD(p_hwfn, PXP_PF_ME_CONCRETE_ADDR);

	p_hwfn->abs_pf_id = (p_hwfn->hw_info.concrete_fid >> 16) & 0xf;
	p_hwfn->rel_pf_id = GET_FIELD(p_hwfn->hw_info.concrete_fid,
				      PXP_CONCRETE_FID_PFID);
	p_hwfn->port_id = GET_FIELD(p_hwfn->hw_info.concrete_fid,
				    PXP_CONCRETE_FID_PORT);
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	DP_VERBOSE(p_hwfn, NETIF_MSG_PROBE,
		   "Read ME register: Concrete 0x%08x Opaque 0x%04x\n",
		   p_hwfn->hw_info.concrete_fid, p_hwfn->hw_info.opaque_fid);
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}

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static void qed_hw_set_feat(struct qed_hwfn *p_hwfn)
{
	u32 *feat_num = p_hwfn->hw_info.feat_num;
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	struct qed_sb_cnt_info sb_cnt_info;
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	int num_features = 1;

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	if (IS_ENABLED(CONFIG_QED_RDMA) &&
	    p_hwfn->hw_info.personality == QED_PCI_ETH_ROCE) {
		/* Roce CNQ each requires: 1 status block + 1 CNQ. We divide
		 * the status blocks equally between L2 / RoCE but with
		 * consideration as to how many l2 queues / cnqs we have.
		 */
R
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		num_features++;

		feat_num[QED_RDMA_CNQ] =
			min_t(u32, RESC_NUM(p_hwfn, QED_SB) / num_features,
			      RESC_NUM(p_hwfn, QED_RDMA_CNQ_RAM));
	}
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	feat_num[QED_PF_L2_QUE] = min_t(u32, RESC_NUM(p_hwfn, QED_SB) /
						num_features,
					RESC_NUM(p_hwfn, QED_L2_QUEUE));
M
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	memset(&sb_cnt_info, 0, sizeof(sb_cnt_info));
	qed_int_get_num_sbs(p_hwfn, &sb_cnt_info);
	feat_num[QED_VF_L2_QUE] =
	    min_t(u32,
		  RESC_NUM(p_hwfn, QED_L2_QUEUE) -
		  FEAT_NUM(p_hwfn, QED_PF_L2_QUE), sb_cnt_info.sb_iov_cnt);

	DP_VERBOSE(p_hwfn,
		   NETIF_MSG_PROBE,
		   "#PF_L2_QUEUES=%d VF_L2_QUEUES=%d #ROCE_CNQ=%d #SBS=%d num_features=%d\n",
		   (int)FEAT_NUM(p_hwfn, QED_PF_L2_QUE),
		   (int)FEAT_NUM(p_hwfn, QED_VF_L2_QUE),
		   (int)FEAT_NUM(p_hwfn, QED_RDMA_CNQ),
		   RESC_NUM(p_hwfn, QED_SB), num_features);
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}

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static enum resource_id_enum qed_hw_get_mfw_res_id(enum qed_resources res_id)
{
	enum resource_id_enum mfw_res_id = RESOURCE_NUM_INVALID;

	switch (res_id) {
	case QED_SB:
		mfw_res_id = RESOURCE_NUM_SB_E;
		break;
	case QED_L2_QUEUE:
		mfw_res_id = RESOURCE_NUM_L2_QUEUE_E;
		break;
	case QED_VPORT:
		mfw_res_id = RESOURCE_NUM_VPORT_E;
		break;
	case QED_RSS_ENG:
		mfw_res_id = RESOURCE_NUM_RSS_ENGINES_E;
		break;
	case QED_PQ:
		mfw_res_id = RESOURCE_NUM_PQ_E;
		break;
	case QED_RL:
		mfw_res_id = RESOURCE_NUM_RL_E;
		break;
	case QED_MAC:
	case QED_VLAN:
		/* Each VFC resource can accommodate both a MAC and a VLAN */
		mfw_res_id = RESOURCE_VFC_FILTER_E;
		break;
	case QED_ILT:
		mfw_res_id = RESOURCE_ILT_E;
		break;
	case QED_LL2_QUEUE:
		mfw_res_id = RESOURCE_LL2_QUEUE_E;
		break;
	case QED_RDMA_CNQ_RAM:
	case QED_CMDQS_CQS:
		/* CNQ/CMDQS are the same resource */
		mfw_res_id = RESOURCE_CQS_E;
		break;
	case QED_RDMA_STATS_QUEUE:
		mfw_res_id = RESOURCE_RDMA_STATS_QUEUE_E;
		break;
	default:
		break;
	}

	return mfw_res_id;
}

static u32 qed_hw_get_dflt_resc_num(struct qed_hwfn *p_hwfn,
				    enum qed_resources res_id)
1552
{
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	u8 num_funcs = p_hwfn->num_funcs_on_engine;
1554
	struct qed_sb_cnt_info sb_cnt_info;
1555
	u32 dflt_resc_num = 0;
1556

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	switch (res_id) {
	case QED_SB:
		memset(&sb_cnt_info, 0, sizeof(sb_cnt_info));
		qed_int_get_num_sbs(p_hwfn, &sb_cnt_info);
		dflt_resc_num = sb_cnt_info.sb_cnt;
		break;
	case QED_L2_QUEUE:
		dflt_resc_num = MAX_NUM_L2_QUEUES_BB / num_funcs;
		break;
	case QED_VPORT:
		dflt_resc_num = MAX_NUM_VPORTS_BB / num_funcs;
		break;
	case QED_RSS_ENG:
		dflt_resc_num = ETH_RSS_ENGINE_NUM_BB / num_funcs;
		break;
	case QED_PQ:
		/* The granularity of the PQs is 8 */
		dflt_resc_num = MAX_QM_TX_QUEUES_BB / num_funcs;
		dflt_resc_num &= ~0x7;
		break;
	case QED_RL:
		dflt_resc_num = MAX_QM_GLOBAL_RLS / num_funcs;
		break;
	case QED_MAC:
	case QED_VLAN:
		/* Each VFC resource can accommodate both a MAC and a VLAN */
		dflt_resc_num = ETH_NUM_MAC_FILTERS / num_funcs;
		break;
	case QED_ILT:
		dflt_resc_num = PXP_NUM_ILT_RECORDS_BB / num_funcs;
		break;
	case QED_LL2_QUEUE:
		dflt_resc_num = MAX_NUM_LL2_RX_QUEUES / num_funcs;
		break;
	case QED_RDMA_CNQ_RAM:
	case QED_CMDQS_CQS:
		/* CNQ/CMDQS are the same resource */
		dflt_resc_num = NUM_OF_CMDQS_CQS / num_funcs;
		break;
	case QED_RDMA_STATS_QUEUE:
		dflt_resc_num = RDMA_NUM_STATISTIC_COUNTERS_BB / num_funcs;
		break;
	default:
		break;
	}
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1603 1604
	return dflt_resc_num;
}
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static const char *qed_hw_get_resc_name(enum qed_resources res_id)
{
	switch (res_id) {
	case QED_SB:
		return "SB";
	case QED_L2_QUEUE:
		return "L2_QUEUE";
	case QED_VPORT:
		return "VPORT";
	case QED_RSS_ENG:
		return "RSS_ENG";
	case QED_PQ:
		return "PQ";
	case QED_RL:
		return "RL";
	case QED_MAC:
		return "MAC";
	case QED_VLAN:
		return "VLAN";
	case QED_RDMA_CNQ_RAM:
		return "RDMA_CNQ_RAM";
	case QED_ILT:
		return "ILT";
	case QED_LL2_QUEUE:
		return "LL2_QUEUE";
	case QED_CMDQS_CQS:
		return "CMDQS_CQS";
	case QED_RDMA_STATS_QUEUE:
		return "RDMA_STATS_QUEUE";
	default:
		return "UNKNOWN_RESOURCE";
	}
}

static int qed_hw_set_resc_info(struct qed_hwfn *p_hwfn,
				enum qed_resources res_id)
{
	u32 dflt_resc_num = 0, dflt_resc_start = 0, mcp_resp, mcp_param;
	u32 *p_resc_num, *p_resc_start;
	struct resource_info resc_info;
	int rc;

	p_resc_num = &RESC_NUM(p_hwfn, res_id);
	p_resc_start = &RESC_START(p_hwfn, res_id);

	/* Default values assumes that each function received equal share */
	dflt_resc_num = qed_hw_get_dflt_resc_num(p_hwfn, res_id);
	if (!dflt_resc_num) {
		DP_ERR(p_hwfn,
		       "Failed to get default amount for resource %d [%s]\n",
		       res_id, qed_hw_get_resc_name(res_id));
		return -EINVAL;
	}
	dflt_resc_start = dflt_resc_num * p_hwfn->enabled_func_idx;

	memset(&resc_info, 0, sizeof(resc_info));
	resc_info.res_id = qed_hw_get_mfw_res_id(res_id);
	if (resc_info.res_id == RESOURCE_NUM_INVALID) {
		DP_ERR(p_hwfn,
		       "Failed to match resource %d [%s] with the MFW resources\n",
		       res_id, qed_hw_get_resc_name(res_id));
		return -EINVAL;
	}

	rc = qed_mcp_get_resc_info(p_hwfn, p_hwfn->p_main_ptt, &resc_info,
				   &mcp_resp, &mcp_param);
	if (rc) {
		DP_NOTICE(p_hwfn,
			  "MFW response failure for an allocation request for resource %d [%s]\n",
			  res_id, qed_hw_get_resc_name(res_id));
		return rc;
	}

	/* Default driver values are applied in the following cases:
	 * - The resource allocation MB command is not supported by the MFW
	 * - There is an internal error in the MFW while processing the request
	 * - The resource ID is unknown to the MFW
	 */
	if (mcp_resp != FW_MSG_CODE_RESOURCE_ALLOC_OK &&
	    mcp_resp != FW_MSG_CODE_RESOURCE_ALLOC_DEPRECATED) {
		DP_NOTICE(p_hwfn,
			  "Resource %d [%s]: No allocation info was received [mcp_resp 0x%x]. Applying default values [num %d, start %d].\n",
			  res_id,
			  qed_hw_get_resc_name(res_id),
			  mcp_resp, dflt_resc_num, dflt_resc_start);
		*p_resc_num = dflt_resc_num;
		*p_resc_start = dflt_resc_start;
		goto out;
	}

	/* Special handling for status blocks; Would be revised in future */
	if (res_id == QED_SB) {
		resc_info.size -= 1;
		resc_info.offset -= p_hwfn->enabled_func_idx;
	}

	*p_resc_num = resc_info.size;
	*p_resc_start = resc_info.offset;

out:
	/* PQs have to divide by 8 [that's the HW granularity].
	 * Reduce number so it would fit.
	 */
	if ((res_id == QED_PQ) && ((*p_resc_num % 8) || (*p_resc_start % 8))) {
		DP_INFO(p_hwfn,
			"PQs need to align by 8; Number %08x --> %08x, Start %08x --> %08x\n",
			*p_resc_num,
			(*p_resc_num) & ~0x7,
			*p_resc_start, (*p_resc_start) & ~0x7);
		*p_resc_num &= ~0x7;
		*p_resc_start &= ~0x7;
	}
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1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731
	return 0;
}

static int qed_hw_get_resc(struct qed_hwfn *p_hwfn)
{
	u8 res_id;
	int rc;

	for (res_id = 0; res_id < QED_MAX_RESC; res_id++) {
		rc = qed_hw_set_resc_info(p_hwfn, res_id);
		if (rc)
			return rc;
	}
1732 1733

	/* Sanity for ILT */
1734
	if ((RESC_END(p_hwfn, QED_ILT) > PXP_NUM_ILT_RECORDS_BB)) {
1735 1736 1737 1738 1739
		DP_NOTICE(p_hwfn, "Can't assign ILT pages [%08x,...,%08x]\n",
			  RESC_START(p_hwfn, QED_ILT),
			  RESC_END(p_hwfn, QED_ILT) - 1);
		return -EINVAL;
	}
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	qed_hw_set_feat(p_hwfn);

1743
	DP_VERBOSE(p_hwfn, NETIF_MSG_PROBE,
1744 1745 1746 1747 1748 1749
		   "The numbers for each resource are:\n");
	for (res_id = 0; res_id < QED_MAX_RESC; res_id++)
		DP_VERBOSE(p_hwfn, NETIF_MSG_PROBE, "%s = %d start = %d\n",
			   qed_hw_get_resc_name(res_id),
			   RESC_NUM(p_hwfn, res_id),
			   RESC_START(p_hwfn, res_id));
1750 1751

	return 0;
1752 1753
}

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static int qed_hw_get_nvm_info(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
1755
{
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	u32 nvm_cfg1_offset, mf_mode, addr, generic_cont0, core_cfg;
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	u32 port_cfg_addr, link_temp, nvm_cfg_addr, device_capabilities;
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	struct qed_mcp_link_params *link;
1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771

	/* Read global nvm_cfg address */
	nvm_cfg_addr = qed_rd(p_hwfn, p_ptt, MISC_REG_GEN_PURP_CR0);

	/* Verify MCP has initialized it */
	if (!nvm_cfg_addr) {
		DP_NOTICE(p_hwfn, "Shared memory not initialized\n");
		return -EINVAL;
	}

	/* Read nvm_cfg1  (Notice this is just offset, and not offsize (TBD) */
	nvm_cfg1_offset = qed_rd(p_hwfn, p_ptt, nvm_cfg_addr + 4);

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	addr = MCP_REG_SCRATCH + nvm_cfg1_offset +
	       offsetof(struct nvm_cfg1, glob) +
	       offsetof(struct nvm_cfg1_glob, core_cfg);

	core_cfg = qed_rd(p_hwfn, p_ptt, addr);

	switch ((core_cfg & NVM_CFG1_GLOB_NETWORK_PORT_MODE_MASK) >>
		NVM_CFG1_GLOB_NETWORK_PORT_MODE_OFFSET) {
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	case NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_2X40G:
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		p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_2X40G;
		break;
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	case NVM_CFG1_GLOB_NETWORK_PORT_MODE_2X50G:
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		p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_2X50G;
		break;
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	case NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_1X100G:
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		p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_1X100G;
		break;
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	case NVM_CFG1_GLOB_NETWORK_PORT_MODE_4X10G_F:
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		p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_4X10G_F;
		break;
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	case NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_4X10G_E:
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		p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_4X10G_E;
		break;
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	case NVM_CFG1_GLOB_NETWORK_PORT_MODE_BB_4X20G:
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		p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_4X20G;
		break;
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	case NVM_CFG1_GLOB_NETWORK_PORT_MODE_1X40G:
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		p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_1X40G;
		break;
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	case NVM_CFG1_GLOB_NETWORK_PORT_MODE_2X25G:
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		p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_2X25G;
		break;
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	case NVM_CFG1_GLOB_NETWORK_PORT_MODE_1X25G:
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		p_hwfn->hw_info.port_mode = QED_PORT_MODE_DE_1X25G;
		break;
	default:
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		DP_NOTICE(p_hwfn, "Unknown port mode in 0x%08x\n", core_cfg);
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		break;
	}

	/* Read default link configuration */
	link = &p_hwfn->mcp_info->link_input;
	port_cfg_addr = MCP_REG_SCRATCH + nvm_cfg1_offset +
			offsetof(struct nvm_cfg1, port[MFW_PORT(p_hwfn)]);
	link_temp = qed_rd(p_hwfn, p_ptt,
			   port_cfg_addr +
			   offsetof(struct nvm_cfg1_port, speed_cap_mask));
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	link_temp &= NVM_CFG1_PORT_DRV_SPEED_CAPABILITY_MASK_MASK;
	link->speed.advertised_speeds = link_temp;
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	link_temp = link->speed.advertised_speeds;
	p_hwfn->mcp_info->link_capabilities.speed_capabilities = link_temp;
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	link_temp = qed_rd(p_hwfn, p_ptt,
			   port_cfg_addr +
			   offsetof(struct nvm_cfg1_port, link_settings));
	switch ((link_temp & NVM_CFG1_PORT_DRV_LINK_SPEED_MASK) >>
		NVM_CFG1_PORT_DRV_LINK_SPEED_OFFSET) {
	case NVM_CFG1_PORT_DRV_LINK_SPEED_AUTONEG:
		link->speed.autoneg = true;
		break;
	case NVM_CFG1_PORT_DRV_LINK_SPEED_1G:
		link->speed.forced_speed = 1000;
		break;
	case NVM_CFG1_PORT_DRV_LINK_SPEED_10G:
		link->speed.forced_speed = 10000;
		break;
	case NVM_CFG1_PORT_DRV_LINK_SPEED_25G:
		link->speed.forced_speed = 25000;
		break;
	case NVM_CFG1_PORT_DRV_LINK_SPEED_40G:
		link->speed.forced_speed = 40000;
		break;
	case NVM_CFG1_PORT_DRV_LINK_SPEED_50G:
		link->speed.forced_speed = 50000;
		break;
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	case NVM_CFG1_PORT_DRV_LINK_SPEED_BB_100G:
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		link->speed.forced_speed = 100000;
		break;
	default:
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		DP_NOTICE(p_hwfn, "Unknown Speed in 0x%08x\n", link_temp);
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	}

	link_temp &= NVM_CFG1_PORT_DRV_FLOW_CONTROL_MASK;
	link_temp >>= NVM_CFG1_PORT_DRV_FLOW_CONTROL_OFFSET;
	link->pause.autoneg = !!(link_temp &
				 NVM_CFG1_PORT_DRV_FLOW_CONTROL_AUTONEG);
	link->pause.forced_rx = !!(link_temp &
				   NVM_CFG1_PORT_DRV_FLOW_CONTROL_RX);
	link->pause.forced_tx = !!(link_temp &
				   NVM_CFG1_PORT_DRV_FLOW_CONTROL_TX);
	link->loopback_mode = 0;

	DP_VERBOSE(p_hwfn, NETIF_MSG_LINK,
		   "Read default link: Speed 0x%08x, Adv. Speed 0x%08x, AN: 0x%02x, PAUSE AN: 0x%02x\n",
		   link->speed.forced_speed, link->speed.advertised_speeds,
		   link->speed.autoneg, link->pause.autoneg);

1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881
	/* Read Multi-function information from shmem */
	addr = MCP_REG_SCRATCH + nvm_cfg1_offset +
	       offsetof(struct nvm_cfg1, glob) +
	       offsetof(struct nvm_cfg1_glob, generic_cont0);

	generic_cont0 = qed_rd(p_hwfn, p_ptt, addr);

	mf_mode = (generic_cont0 & NVM_CFG1_GLOB_MF_MODE_MASK) >>
		  NVM_CFG1_GLOB_MF_MODE_OFFSET;

	switch (mf_mode) {
	case NVM_CFG1_GLOB_MF_MODE_MF_ALLOWED:
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		p_hwfn->cdev->mf_mode = QED_MF_OVLAN;
1883 1884
		break;
	case NVM_CFG1_GLOB_MF_MODE_NPAR1_0:
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		p_hwfn->cdev->mf_mode = QED_MF_NPAR;
1886
		break;
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	case NVM_CFG1_GLOB_MF_MODE_DEFAULT:
		p_hwfn->cdev->mf_mode = QED_MF_DEFAULT;
1889 1890 1891 1892 1893
		break;
	}
	DP_INFO(p_hwfn, "Multi function mode is %08x\n",
		p_hwfn->cdev->mf_mode);

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	/* Read Multi-function information from shmem */
	addr = MCP_REG_SCRATCH + nvm_cfg1_offset +
		offsetof(struct nvm_cfg1, glob) +
		offsetof(struct nvm_cfg1_glob, device_capabilities);

	device_capabilities = qed_rd(p_hwfn, p_ptt, addr);
	if (device_capabilities & NVM_CFG1_GLOB_DEVICE_CAPABILITIES_ETHERNET)
		__set_bit(QED_DEV_CAP_ETH,
			  &p_hwfn->hw_info.device_capabilities);
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	if (device_capabilities & NVM_CFG1_GLOB_DEVICE_CAPABILITIES_ISCSI)
		__set_bit(QED_DEV_CAP_ISCSI,
			  &p_hwfn->hw_info.device_capabilities);
	if (device_capabilities & NVM_CFG1_GLOB_DEVICE_CAPABILITIES_ROCE)
		__set_bit(QED_DEV_CAP_ROCE,
			  &p_hwfn->hw_info.device_capabilities);
Y
Yuval Mintz 已提交
1909

1910 1911 1912
	return qed_mcp_fill_shmem_func_info(p_hwfn, p_ptt);
}

Y
Yuval Mintz 已提交
1913 1914
static void qed_get_num_funcs(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
{
1915 1916
	u8 num_funcs, enabled_func_idx = p_hwfn->rel_pf_id;
	u32 reg_function_hide, tmp, eng_mask, low_pfs_mask;
Y
Yuval Mintz 已提交
1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945

	num_funcs = MAX_NUM_PFS_BB;

	/* Bit 0 of MISCS_REG_FUNCTION_HIDE indicates whether the bypass values
	 * in the other bits are selected.
	 * Bits 1-15 are for functions 1-15, respectively, and their value is
	 * '0' only for enabled functions (function 0 always exists and
	 * enabled).
	 * In case of CMT, only the "even" functions are enabled, and thus the
	 * number of functions for both hwfns is learnt from the same bits.
	 */
	reg_function_hide = qed_rd(p_hwfn, p_ptt, MISCS_REG_FUNCTION_HIDE);

	if (reg_function_hide & 0x1) {
		if (QED_PATH_ID(p_hwfn) && p_hwfn->cdev->num_hwfns == 1) {
			num_funcs = 0;
			eng_mask = 0xaaaa;
		} else {
			num_funcs = 1;
			eng_mask = 0x5554;
		}

		/* Get the number of the enabled functions on the engine */
		tmp = (reg_function_hide ^ 0xffffffff) & eng_mask;
		while (tmp) {
			if (tmp & 0x1)
				num_funcs++;
			tmp >>= 0x1;
		}
1946 1947 1948 1949 1950 1951 1952 1953 1954

		/* Get the PF index within the enabled functions */
		low_pfs_mask = (0x1 << p_hwfn->abs_pf_id) - 1;
		tmp = reg_function_hide & eng_mask & low_pfs_mask;
		while (tmp) {
			if (tmp & 0x1)
				enabled_func_idx--;
			tmp >>= 0x1;
		}
Y
Yuval Mintz 已提交
1955 1956 1957
	}

	p_hwfn->num_funcs_on_engine = num_funcs;
1958
	p_hwfn->enabled_func_idx = enabled_func_idx;
Y
Yuval Mintz 已提交
1959 1960 1961

	DP_VERBOSE(p_hwfn,
		   NETIF_MSG_PROBE,
Y
Yuval Mintz 已提交
1962
		   "PF [rel_id %d, abs_id %d] occupies index %d within the %d enabled functions on the engine\n",
Y
Yuval Mintz 已提交
1963 1964
		   p_hwfn->rel_pf_id,
		   p_hwfn->abs_pf_id,
Y
Yuval Mintz 已提交
1965
		   p_hwfn->enabled_func_idx, p_hwfn->num_funcs_on_engine);
Y
Yuval Mintz 已提交
1966 1967
}

1968 1969 1970 1971 1972 1973 1974 1975
static int
qed_get_hw_info(struct qed_hwfn *p_hwfn,
		struct qed_ptt *p_ptt,
		enum qed_pci_personality personality)
{
	u32 port_mode;
	int rc;

Y
Yuval Mintz 已提交
1976 1977 1978 1979 1980 1981 1982
	/* Since all information is common, only first hwfns should do this */
	if (IS_LEAD_HWFN(p_hwfn)) {
		rc = qed_iov_hw_info(p_hwfn);
		if (rc)
			return rc;
	}

1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025
	/* Read the port mode */
	port_mode = qed_rd(p_hwfn, p_ptt,
			   CNIG_REG_NW_PORT_MODE_BB_B0);

	if (port_mode < 3) {
		p_hwfn->cdev->num_ports_in_engines = 1;
	} else if (port_mode <= 5) {
		p_hwfn->cdev->num_ports_in_engines = 2;
	} else {
		DP_NOTICE(p_hwfn, "PORT MODE: %d not supported\n",
			  p_hwfn->cdev->num_ports_in_engines);

		/* Default num_ports_in_engines to something */
		p_hwfn->cdev->num_ports_in_engines = 1;
	}

	qed_hw_get_nvm_info(p_hwfn, p_ptt);

	rc = qed_int_igu_read_cam(p_hwfn, p_ptt);
	if (rc)
		return rc;

	if (qed_mcp_is_init(p_hwfn))
		ether_addr_copy(p_hwfn->hw_info.hw_mac_addr,
				p_hwfn->mcp_info->func_info.mac);
	else
		eth_random_addr(p_hwfn->hw_info.hw_mac_addr);

	if (qed_mcp_is_init(p_hwfn)) {
		if (p_hwfn->mcp_info->func_info.ovlan != QED_MCP_VLAN_UNSET)
			p_hwfn->hw_info.ovlan =
				p_hwfn->mcp_info->func_info.ovlan;

		qed_mcp_cmd_port_init(p_hwfn, p_ptt);
	}

	if (qed_mcp_is_init(p_hwfn)) {
		enum qed_pci_personality protocol;

		protocol = p_hwfn->mcp_info->func_info.protocol;
		p_hwfn->hw_info.personality = protocol;
	}

Y
Yuval Mintz 已提交
2026 2027
	qed_get_num_funcs(p_hwfn, p_ptt);

2028 2029 2030
	if (qed_mcp_is_init(p_hwfn))
		p_hwfn->hw_info.mtu = p_hwfn->mcp_info->func_info.mtu;

2031
	return qed_hw_get_resc(p_hwfn);
2032 2033
}

Y
Yuval Mintz 已提交
2034
static int qed_get_dev_info(struct qed_dev *cdev)
2035
{
Y
Yuval Mintz 已提交
2036
	struct qed_hwfn *p_hwfn = QED_LEADING_HWFN(cdev);
2037 2038
	u32 tmp;

Y
Yuval Mintz 已提交
2039
	/* Read Vendor Id / Device Id */
Y
Yuval Mintz 已提交
2040 2041 2042
	pci_read_config_word(cdev->pdev, PCI_VENDOR_ID, &cdev->vendor_id);
	pci_read_config_word(cdev->pdev, PCI_DEVICE_ID, &cdev->device_id);

Y
Yuval Mintz 已提交
2043
	cdev->chip_num = (u16)qed_rd(p_hwfn, p_hwfn->p_main_ptt,
2044
				     MISCS_REG_CHIP_NUM);
Y
Yuval Mintz 已提交
2045
	cdev->chip_rev = (u16)qed_rd(p_hwfn, p_hwfn->p_main_ptt,
2046 2047 2048
				     MISCS_REG_CHIP_REV);
	MASK_FIELD(CHIP_REV, cdev->chip_rev);

Y
Yuval Mintz 已提交
2049
	cdev->type = QED_DEV_TYPE_BB;
2050
	/* Learn number of HW-functions */
Y
Yuval Mintz 已提交
2051
	tmp = qed_rd(p_hwfn, p_hwfn->p_main_ptt,
2052 2053
		     MISCS_REG_CMT_ENABLED_FOR_PAIR);

Y
Yuval Mintz 已提交
2054
	if (tmp & (1 << p_hwfn->rel_pf_id)) {
2055 2056 2057 2058 2059 2060
		DP_NOTICE(cdev->hwfns, "device in CMT mode\n");
		cdev->num_hwfns = 2;
	} else {
		cdev->num_hwfns = 1;
	}

Y
Yuval Mintz 已提交
2061
	cdev->chip_bond_id = qed_rd(p_hwfn, p_hwfn->p_main_ptt,
2062 2063
				    MISCS_REG_CHIP_TEST_REG) >> 4;
	MASK_FIELD(CHIP_BOND_ID, cdev->chip_bond_id);
Y
Yuval Mintz 已提交
2064
	cdev->chip_metal = (u16)qed_rd(p_hwfn, p_hwfn->p_main_ptt,
2065 2066 2067 2068 2069 2070 2071
				       MISCS_REG_CHIP_METAL);
	MASK_FIELD(CHIP_METAL, cdev->chip_metal);

	DP_INFO(cdev->hwfns,
		"Chip details - Num: %04x Rev: %04x Bond id: %04x Metal: %04x\n",
		cdev->chip_num, cdev->chip_rev,
		cdev->chip_bond_id, cdev->chip_metal);
Y
Yuval Mintz 已提交
2072 2073 2074 2075 2076 2077 2078 2079

	if (QED_IS_BB(cdev) && CHIP_REV_IS_A0(cdev)) {
		DP_NOTICE(cdev->hwfns,
			  "The chip type/rev (BB A0) is not supported!\n");
		return -EINVAL;
	}

	return 0;
2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092
}

static int qed_hw_prepare_single(struct qed_hwfn *p_hwfn,
				 void __iomem *p_regview,
				 void __iomem *p_doorbells,
				 enum qed_pci_personality personality)
{
	int rc = 0;

	/* Split PCI bars evenly between hwfns */
	p_hwfn->regview = p_regview;
	p_hwfn->doorbells = p_doorbells;

Y
Yuval Mintz 已提交
2093 2094 2095
	if (IS_VF(p_hwfn->cdev))
		return qed_vf_hw_prepare(p_hwfn);

2096 2097 2098 2099 2100 2101 2102 2103 2104
	/* Validate that chip access is feasible */
	if (REG_RD(p_hwfn, PXP_PF_ME_OPAQUE_ADDR) == 0xffffffff) {
		DP_ERR(p_hwfn,
		       "Reading the ME register returns all Fs; Preventing further chip access\n");
		return -EINVAL;
	}

	get_function_id(p_hwfn);

Y
Yuval Mintz 已提交
2105 2106
	/* Allocate PTT pool */
	rc = qed_ptt_pool_alloc(p_hwfn);
J
Joe Perches 已提交
2107
	if (rc)
2108 2109
		goto err0;

Y
Yuval Mintz 已提交
2110 2111 2112
	/* Allocate the main PTT */
	p_hwfn->p_main_ptt = qed_get_reserved_ptt(p_hwfn, RESERVED_PTT_MAIN);

2113
	/* First hwfn learns basic information, e.g., number of hwfns */
Y
Yuval Mintz 已提交
2114 2115
	if (!p_hwfn->my_id) {
		rc = qed_get_dev_info(p_hwfn->cdev);
Y
Yuval Mintz 已提交
2116
		if (rc)
Y
Yuval Mintz 已提交
2117 2118 2119 2120
			goto err1;
	}

	qed_hw_hwfn_prepare(p_hwfn);
2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137

	/* Initialize MCP structure */
	rc = qed_mcp_cmd_init(p_hwfn, p_hwfn->p_main_ptt);
	if (rc) {
		DP_NOTICE(p_hwfn, "Failed initializing mcp command\n");
		goto err1;
	}

	/* Read the device configuration information from the HW and SHMEM */
	rc = qed_get_hw_info(p_hwfn, p_hwfn->p_main_ptt, personality);
	if (rc) {
		DP_NOTICE(p_hwfn, "Failed to get HW information\n");
		goto err2;
	}

	/* Allocate the init RT array and initialize the init-ops engine */
	rc = qed_init_alloc(p_hwfn);
J
Joe Perches 已提交
2138
	if (rc)
2139 2140 2141 2142
		goto err2;

	return rc;
err2:
Y
Yuval Mintz 已提交
2143 2144
	if (IS_LEAD_HWFN(p_hwfn))
		qed_iov_free_hw_info(p_hwfn->cdev);
2145 2146 2147 2148 2149 2150 2151 2152 2153 2154
	qed_mcp_free(p_hwfn);
err1:
	qed_hw_hwfn_free(p_hwfn);
err0:
	return rc;
}

int qed_hw_prepare(struct qed_dev *cdev,
		   int personality)
{
2155 2156
	struct qed_hwfn *p_hwfn = QED_LEADING_HWFN(cdev);
	int rc;
2157 2158

	/* Store the precompiled init data ptrs */
Y
Yuval Mintz 已提交
2159 2160
	if (IS_PF(cdev))
		qed_init_iro_array(cdev);
2161 2162

	/* Initialize the first hwfn - will learn number of hwfns */
2163 2164
	rc = qed_hw_prepare_single(p_hwfn,
				   cdev->regview,
2165 2166 2167 2168
				   cdev->doorbells, personality);
	if (rc)
		return rc;

2169
	personality = p_hwfn->hw_info.personality;
2170 2171

	/* Initialize the rest of the hwfns */
2172
	if (cdev->num_hwfns > 1) {
2173
		void __iomem *p_regview, *p_doorbell;
2174 2175 2176
		u8 __iomem *addr;

		/* adjust bar offset for second engine */
2177
		addr = cdev->regview + qed_hw_bar_size(p_hwfn, BAR_ID_0) / 2;
2178
		p_regview = addr;
2179

2180
		/* adjust doorbell bar offset for second engine */
2181
		addr = cdev->doorbells + qed_hw_bar_size(p_hwfn, BAR_ID_1) / 2;
2182 2183 2184 2185
		p_doorbell = addr;

		/* prepare second hw function */
		rc = qed_hw_prepare_single(&cdev->hwfns[1], p_regview,
2186
					   p_doorbell, personality);
2187 2188 2189 2190

		/* in case of error, need to free the previously
		 * initiliazed hwfn 0.
		 */
2191
		if (rc) {
Y
Yuval Mintz 已提交
2192 2193 2194 2195 2196
			if (IS_PF(cdev)) {
				qed_init_free(p_hwfn);
				qed_mcp_free(p_hwfn);
				qed_hw_hwfn_free(p_hwfn);
			}
2197 2198 2199
		}
	}

2200
	return rc;
2201 2202 2203 2204
}

void qed_hw_remove(struct qed_dev *cdev)
{
2205
	struct qed_hwfn *p_hwfn = QED_LEADING_HWFN(cdev);
2206 2207
	int i;

2208 2209 2210 2211
	if (IS_PF(cdev))
		qed_mcp_ov_update_driver_state(p_hwfn, p_hwfn->p_main_ptt,
					       QED_OV_DRIVER_STATE_NOT_LOADED);

2212 2213 2214
	for_each_hwfn(cdev, i) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];

Y
Yuval Mintz 已提交
2215
		if (IS_VF(cdev)) {
Y
Yuval Mintz 已提交
2216
			qed_vf_pf_release(p_hwfn);
Y
Yuval Mintz 已提交
2217 2218 2219
			continue;
		}

2220 2221 2222 2223
		qed_init_free(p_hwfn);
		qed_hw_hwfn_free(p_hwfn);
		qed_mcp_free(p_hwfn);
	}
Y
Yuval Mintz 已提交
2224 2225

	qed_iov_free_hw_info(cdev);
2226 2227
}

Y
Yuval Mintz 已提交
2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271
static void qed_chain_free_next_ptr(struct qed_dev *cdev,
				    struct qed_chain *p_chain)
{
	void *p_virt = p_chain->p_virt_addr, *p_virt_next = NULL;
	dma_addr_t p_phys = p_chain->p_phys_addr, p_phys_next = 0;
	struct qed_chain_next *p_next;
	u32 size, i;

	if (!p_virt)
		return;

	size = p_chain->elem_size * p_chain->usable_per_page;

	for (i = 0; i < p_chain->page_cnt; i++) {
		if (!p_virt)
			break;

		p_next = (struct qed_chain_next *)((u8 *)p_virt + size);
		p_virt_next = p_next->next_virt;
		p_phys_next = HILO_DMA_REGPAIR(p_next->next_phys);

		dma_free_coherent(&cdev->pdev->dev,
				  QED_CHAIN_PAGE_SIZE, p_virt, p_phys);

		p_virt = p_virt_next;
		p_phys = p_phys_next;
	}
}

static void qed_chain_free_single(struct qed_dev *cdev,
				  struct qed_chain *p_chain)
{
	if (!p_chain->p_virt_addr)
		return;

	dma_free_coherent(&cdev->pdev->dev,
			  QED_CHAIN_PAGE_SIZE,
			  p_chain->p_virt_addr, p_chain->p_phys_addr);
}

static void qed_chain_free_pbl(struct qed_dev *cdev, struct qed_chain *p_chain)
{
	void **pp_virt_addr_tbl = p_chain->pbl.pp_virt_addr_tbl;
	u32 page_cnt = p_chain->page_cnt, i, pbl_size;
2272
	u8 *p_pbl_virt = p_chain->pbl_sp.p_virt_table;
Y
Yuval Mintz 已提交
2273 2274 2275 2276

	if (!pp_virt_addr_tbl)
		return;

2277
	if (!p_pbl_virt)
Y
Yuval Mintz 已提交
2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294
		goto out;

	for (i = 0; i < page_cnt; i++) {
		if (!pp_virt_addr_tbl[i])
			break;

		dma_free_coherent(&cdev->pdev->dev,
				  QED_CHAIN_PAGE_SIZE,
				  pp_virt_addr_tbl[i],
				  *(dma_addr_t *)p_pbl_virt);

		p_pbl_virt += QED_CHAIN_PBL_ENTRY_SIZE;
	}

	pbl_size = page_cnt * QED_CHAIN_PBL_ENTRY_SIZE;
	dma_free_coherent(&cdev->pdev->dev,
			  pbl_size,
2295 2296
			  p_chain->pbl_sp.p_virt_table,
			  p_chain->pbl_sp.p_phys_table);
Y
Yuval Mintz 已提交
2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319
out:
	vfree(p_chain->pbl.pp_virt_addr_tbl);
}

void qed_chain_free(struct qed_dev *cdev, struct qed_chain *p_chain)
{
	switch (p_chain->mode) {
	case QED_CHAIN_MODE_NEXT_PTR:
		qed_chain_free_next_ptr(cdev, p_chain);
		break;
	case QED_CHAIN_MODE_SINGLE:
		qed_chain_free_single(cdev, p_chain);
		break;
	case QED_CHAIN_MODE_PBL:
		qed_chain_free_pbl(cdev, p_chain);
		break;
	}
}

static int
qed_chain_alloc_sanity_check(struct qed_dev *cdev,
			     enum qed_chain_cnt_type cnt_type,
			     size_t elem_size, u32 page_cnt)
2320
{
Y
Yuval Mintz 已提交
2321 2322 2323 2324 2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345
	u64 chain_size = ELEMS_PER_PAGE(elem_size) * page_cnt;

	/* The actual chain size can be larger than the maximal possible value
	 * after rounding up the requested elements number to pages, and after
	 * taking into acount the unusuable elements (next-ptr elements).
	 * The size of a "u16" chain can be (U16_MAX + 1) since the chain
	 * size/capacity fields are of a u32 type.
	 */
	if ((cnt_type == QED_CHAIN_CNT_TYPE_U16 &&
	     chain_size > 0x10000) ||
	    (cnt_type == QED_CHAIN_CNT_TYPE_U32 &&
	     chain_size > 0x100000000ULL)) {
		DP_NOTICE(cdev,
			  "The actual chain size (0x%llx) is larger than the maximal possible value\n",
			  chain_size);
		return -EINVAL;
	}

	return 0;
}

static int
qed_chain_alloc_next_ptr(struct qed_dev *cdev, struct qed_chain *p_chain)
{
	void *p_virt = NULL, *p_virt_prev = NULL;
2346
	dma_addr_t p_phys = 0;
Y
Yuval Mintz 已提交
2347
	u32 i;
2348

Y
Yuval Mintz 已提交
2349 2350 2351 2352
	for (i = 0; i < p_chain->page_cnt; i++) {
		p_virt = dma_alloc_coherent(&cdev->pdev->dev,
					    QED_CHAIN_PAGE_SIZE,
					    &p_phys, GFP_KERNEL);
J
Joe Perches 已提交
2353
		if (!p_virt)
Y
Yuval Mintz 已提交
2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371 2372 2373 2374 2375 2376 2377 2378 2379 2380
			return -ENOMEM;

		if (i == 0) {
			qed_chain_init_mem(p_chain, p_virt, p_phys);
			qed_chain_reset(p_chain);
		} else {
			qed_chain_init_next_ptr_elem(p_chain, p_virt_prev,
						     p_virt, p_phys);
		}

		p_virt_prev = p_virt;
	}
	/* Last page's next element should point to the beginning of the
	 * chain.
	 */
	qed_chain_init_next_ptr_elem(p_chain, p_virt_prev,
				     p_chain->p_virt_addr,
				     p_chain->p_phys_addr);

	return 0;
}

static int
qed_chain_alloc_single(struct qed_dev *cdev, struct qed_chain *p_chain)
{
	dma_addr_t p_phys = 0;
	void *p_virt = NULL;
2381 2382

	p_virt = dma_alloc_coherent(&cdev->pdev->dev,
Y
Yuval Mintz 已提交
2383
				    QED_CHAIN_PAGE_SIZE, &p_phys, GFP_KERNEL);
J
Joe Perches 已提交
2384
	if (!p_virt)
Y
Yuval Mintz 已提交
2385
		return -ENOMEM;
2386

Y
Yuval Mintz 已提交
2387 2388
	qed_chain_init_mem(p_chain, p_virt, p_phys);
	qed_chain_reset(p_chain);
2389

Y
Yuval Mintz 已提交
2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401
	return 0;
}

static int qed_chain_alloc_pbl(struct qed_dev *cdev, struct qed_chain *p_chain)
{
	u32 page_cnt = p_chain->page_cnt, size, i;
	dma_addr_t p_phys = 0, p_pbl_phys = 0;
	void **pp_virt_addr_tbl = NULL;
	u8 *p_pbl_virt = NULL;
	void *p_virt = NULL;

	size = page_cnt * sizeof(*pp_virt_addr_tbl);
J
Joe Perches 已提交
2402 2403
	pp_virt_addr_tbl = vzalloc(size);
	if (!pp_virt_addr_tbl)
Y
Yuval Mintz 已提交
2404
		return -ENOMEM;
2405

Y
Yuval Mintz 已提交
2406 2407 2408 2409 2410 2411 2412 2413 2414 2415 2416
	/* The allocation of the PBL table is done with its full size, since it
	 * is expected to be successive.
	 * qed_chain_init_pbl_mem() is called even in a case of an allocation
	 * failure, since pp_virt_addr_tbl was previously allocated, and it
	 * should be saved to allow its freeing during the error flow.
	 */
	size = page_cnt * QED_CHAIN_PBL_ENTRY_SIZE;
	p_pbl_virt = dma_alloc_coherent(&cdev->pdev->dev,
					size, &p_pbl_phys, GFP_KERNEL);
	qed_chain_init_pbl_mem(p_chain, p_pbl_virt, p_pbl_phys,
			       pp_virt_addr_tbl);
J
Joe Perches 已提交
2417
	if (!p_pbl_virt)
Y
Yuval Mintz 已提交
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		return -ENOMEM;
2419

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Yuval Mintz 已提交
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	for (i = 0; i < page_cnt; i++) {
		p_virt = dma_alloc_coherent(&cdev->pdev->dev,
					    QED_CHAIN_PAGE_SIZE,
					    &p_phys, GFP_KERNEL);
J
Joe Perches 已提交
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		if (!p_virt)
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Yuval Mintz 已提交
2425
			return -ENOMEM;
2426

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		if (i == 0) {
			qed_chain_init_mem(p_chain, p_virt, p_phys);
			qed_chain_reset(p_chain);
		}

		/* Fill the PBL table with the physical address of the page */
		*(dma_addr_t *)p_pbl_virt = p_phys;
		/* Keep the virtual address of the page */
		p_chain->pbl.pp_virt_addr_tbl[i] = p_virt;

		p_pbl_virt += QED_CHAIN_PBL_ENTRY_SIZE;
	}

	return 0;
2441 2442
}

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Yuval Mintz 已提交
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int qed_chain_alloc(struct qed_dev *cdev,
		    enum qed_chain_use_mode intended_use,
		    enum qed_chain_mode mode,
		    enum qed_chain_cnt_type cnt_type,
		    u32 num_elems, size_t elem_size, struct qed_chain *p_chain)
2448
{
Y
Yuval Mintz 已提交
2449 2450
	u32 page_cnt;
	int rc = 0;
2451

Y
Yuval Mintz 已提交
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	if (mode == QED_CHAIN_MODE_SINGLE)
		page_cnt = 1;
	else
		page_cnt = QED_CHAIN_PAGE_CNT(num_elems, elem_size, mode);
2456

Y
Yuval Mintz 已提交
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	rc = qed_chain_alloc_sanity_check(cdev, cnt_type, elem_size, page_cnt);
	if (rc) {
		DP_NOTICE(cdev,
J
Joe Perches 已提交
2460 2461
			  "Cannot allocate a chain with the given arguments:\n");
		DP_NOTICE(cdev,
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Yuval Mintz 已提交
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			  "[use_mode %d, mode %d, cnt_type %d, num_elems %d, elem_size %zu]\n",
			  intended_use, mode, cnt_type, num_elems, elem_size);
		return rc;
2465 2466
	}

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Yuval Mintz 已提交
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	qed_chain_init_params(p_chain, page_cnt, (u8) elem_size, intended_use,
			      mode, cnt_type);

	switch (mode) {
	case QED_CHAIN_MODE_NEXT_PTR:
		rc = qed_chain_alloc_next_ptr(cdev, p_chain);
		break;
	case QED_CHAIN_MODE_SINGLE:
		rc = qed_chain_alloc_single(cdev, p_chain);
		break;
	case QED_CHAIN_MODE_PBL:
		rc = qed_chain_alloc_pbl(cdev, p_chain);
		break;
	}
	if (rc)
		goto nomem;

	return 0;

nomem:
	qed_chain_free(cdev, p_chain);
	return rc;
2489
}
M
Manish Chopra 已提交
2490

Y
Yuval Mintz 已提交
2491
int qed_fw_l2_queue(struct qed_hwfn *p_hwfn, u16 src_id, u16 *dst_id)
M
Manish Chopra 已提交
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{
	if (src_id >= RESC_NUM(p_hwfn, QED_L2_QUEUE)) {
		u16 min, max;

Y
Yuval Mintz 已提交
2496
		min = (u16) RESC_START(p_hwfn, QED_L2_QUEUE);
M
Manish Chopra 已提交
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		max = min + RESC_NUM(p_hwfn, QED_L2_QUEUE);
		DP_NOTICE(p_hwfn,
			  "l2_queue id [%d] is not valid, available indices [%d - %d]\n",
			  src_id, min, max);

		return -EINVAL;
	}

	*dst_id = RESC_START(p_hwfn, QED_L2_QUEUE) + src_id;

	return 0;
}

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Yuval Mintz 已提交
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int qed_fw_vport(struct qed_hwfn *p_hwfn, u8 src_id, u8 *dst_id)
M
Manish Chopra 已提交
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{
	if (src_id >= RESC_NUM(p_hwfn, QED_VPORT)) {
		u8 min, max;

		min = (u8)RESC_START(p_hwfn, QED_VPORT);
		max = min + RESC_NUM(p_hwfn, QED_VPORT);
		DP_NOTICE(p_hwfn,
			  "vport id [%d] is not valid, available indices [%d - %d]\n",
			  src_id, min, max);

		return -EINVAL;
	}

	*dst_id = RESC_START(p_hwfn, QED_VPORT) + src_id;

	return 0;
}

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Yuval Mintz 已提交
2529
int qed_fw_rss_eng(struct qed_hwfn *p_hwfn, u8 src_id, u8 *dst_id)
M
Manish Chopra 已提交
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{
	if (src_id >= RESC_NUM(p_hwfn, QED_RSS_ENG)) {
		u8 min, max;

		min = (u8)RESC_START(p_hwfn, QED_RSS_ENG);
		max = min + RESC_NUM(p_hwfn, QED_RSS_ENG);
		DP_NOTICE(p_hwfn,
			  "rss_eng id [%d] is not valid, available indices [%d - %d]\n",
			  src_id, min, max);

		return -EINVAL;
	}

	*dst_id = RESC_START(p_hwfn, QED_RSS_ENG) + src_id;

	return 0;
}
2547

Y
Yuval Mintz 已提交
2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639
static void qed_llh_mac_to_filter(u32 *p_high, u32 *p_low,
				  u8 *p_filter)
{
	*p_high = p_filter[1] | (p_filter[0] << 8);
	*p_low = p_filter[5] | (p_filter[4] << 8) |
		 (p_filter[3] << 16) | (p_filter[2] << 24);
}

int qed_llh_add_mac_filter(struct qed_hwfn *p_hwfn,
			   struct qed_ptt *p_ptt, u8 *p_filter)
{
	u32 high = 0, low = 0, en;
	int i;

	if (!(IS_MF_SI(p_hwfn) || IS_MF_DEFAULT(p_hwfn)))
		return 0;

	qed_llh_mac_to_filter(&high, &low, p_filter);

	/* Find a free entry and utilize it */
	for (i = 0; i < NIG_REG_LLH_FUNC_FILTER_EN_SIZE; i++) {
		en = qed_rd(p_hwfn, p_ptt,
			    NIG_REG_LLH_FUNC_FILTER_EN + i * sizeof(u32));
		if (en)
			continue;
		qed_wr(p_hwfn, p_ptt,
		       NIG_REG_LLH_FUNC_FILTER_VALUE +
		       2 * i * sizeof(u32), low);
		qed_wr(p_hwfn, p_ptt,
		       NIG_REG_LLH_FUNC_FILTER_VALUE +
		       (2 * i + 1) * sizeof(u32), high);
		qed_wr(p_hwfn, p_ptt,
		       NIG_REG_LLH_FUNC_FILTER_MODE + i * sizeof(u32), 0);
		qed_wr(p_hwfn, p_ptt,
		       NIG_REG_LLH_FUNC_FILTER_PROTOCOL_TYPE +
		       i * sizeof(u32), 0);
		qed_wr(p_hwfn, p_ptt,
		       NIG_REG_LLH_FUNC_FILTER_EN + i * sizeof(u32), 1);
		break;
	}
	if (i >= NIG_REG_LLH_FUNC_FILTER_EN_SIZE) {
		DP_NOTICE(p_hwfn,
			  "Failed to find an empty LLH filter to utilize\n");
		return -EINVAL;
	}

	DP_VERBOSE(p_hwfn, NETIF_MSG_HW,
		   "mac: %pM is added at %d\n",
		   p_filter, i);

	return 0;
}

void qed_llh_remove_mac_filter(struct qed_hwfn *p_hwfn,
			       struct qed_ptt *p_ptt, u8 *p_filter)
{
	u32 high = 0, low = 0;
	int i;

	if (!(IS_MF_SI(p_hwfn) || IS_MF_DEFAULT(p_hwfn)))
		return;

	qed_llh_mac_to_filter(&high, &low, p_filter);

	/* Find the entry and clean it */
	for (i = 0; i < NIG_REG_LLH_FUNC_FILTER_EN_SIZE; i++) {
		if (qed_rd(p_hwfn, p_ptt,
			   NIG_REG_LLH_FUNC_FILTER_VALUE +
			   2 * i * sizeof(u32)) != low)
			continue;
		if (qed_rd(p_hwfn, p_ptt,
			   NIG_REG_LLH_FUNC_FILTER_VALUE +
			   (2 * i + 1) * sizeof(u32)) != high)
			continue;

		qed_wr(p_hwfn, p_ptt,
		       NIG_REG_LLH_FUNC_FILTER_EN + i * sizeof(u32), 0);
		qed_wr(p_hwfn, p_ptt,
		       NIG_REG_LLH_FUNC_FILTER_VALUE + 2 * i * sizeof(u32), 0);
		qed_wr(p_hwfn, p_ptt,
		       NIG_REG_LLH_FUNC_FILTER_VALUE +
		       (2 * i + 1) * sizeof(u32), 0);

		DP_VERBOSE(p_hwfn, NETIF_MSG_HW,
			   "mac: %pM is removed from %d\n",
			   p_filter, i);
		break;
	}
	if (i >= NIG_REG_LLH_FUNC_FILTER_EN_SIZE)
		DP_NOTICE(p_hwfn, "Tried to remove a non-configured filter\n");
}

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static int qed_set_coalesce(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt,
			    u32 hw_addr, void *p_eth_qzone,
			    size_t eth_qzone_size, u8 timeset)
{
	struct coalescing_timeset *p_coal_timeset;

	if (p_hwfn->cdev->int_coalescing_mode != QED_COAL_MODE_ENABLE) {
		DP_NOTICE(p_hwfn, "Coalescing configuration not enabled\n");
		return -EINVAL;
	}

	p_coal_timeset = p_eth_qzone;
	memset(p_coal_timeset, 0, eth_qzone_size);
	SET_FIELD(p_coal_timeset->value, COALESCING_TIMESET_TIMESET, timeset);
	SET_FIELD(p_coal_timeset->value, COALESCING_TIMESET_VALID, 1);
	qed_memcpy_to(p_hwfn, p_ptt, hw_addr, p_eth_qzone, eth_qzone_size);

	return 0;
}

int qed_set_rxq_coalesce(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt,
			 u16 coalesce, u8 qid, u16 sb_id)
{
	struct ustorm_eth_queue_zone eth_qzone;
	u8 timeset, timer_res;
	u16 fw_qid = 0;
	u32 address;
	int rc;

	/* Coalesce = (timeset << timer-resolution), timeset is 7bit wide */
	if (coalesce <= 0x7F) {
		timer_res = 0;
	} else if (coalesce <= 0xFF) {
		timer_res = 1;
	} else if (coalesce <= 0x1FF) {
		timer_res = 2;
	} else {
		DP_ERR(p_hwfn, "Invalid coalesce value - %d\n", coalesce);
		return -EINVAL;
	}
	timeset = (u8)(coalesce >> timer_res);

	rc = qed_fw_l2_queue(p_hwfn, (u16)qid, &fw_qid);
	if (rc)
		return rc;

	rc = qed_int_set_timer_res(p_hwfn, p_ptt, timer_res, sb_id, false);
	if (rc)
		goto out;

	address = BAR0_MAP_REG_USDM_RAM + USTORM_ETH_QUEUE_ZONE_OFFSET(fw_qid);

	rc = qed_set_coalesce(p_hwfn, p_ptt, address, &eth_qzone,
			      sizeof(struct ustorm_eth_queue_zone), timeset);
	if (rc)
		goto out;

	p_hwfn->cdev->rx_coalesce_usecs = coalesce;
out:
	return rc;
}

int qed_set_txq_coalesce(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt,
			 u16 coalesce, u8 qid, u16 sb_id)
{
	struct xstorm_eth_queue_zone eth_qzone;
	u8 timeset, timer_res;
	u16 fw_qid = 0;
	u32 address;
	int rc;

	/* Coalesce = (timeset << timer-resolution), timeset is 7bit wide */
	if (coalesce <= 0x7F) {
		timer_res = 0;
	} else if (coalesce <= 0xFF) {
		timer_res = 1;
	} else if (coalesce <= 0x1FF) {
		timer_res = 2;
	} else {
		DP_ERR(p_hwfn, "Invalid coalesce value - %d\n", coalesce);
		return -EINVAL;
	}
	timeset = (u8)(coalesce >> timer_res);

	rc = qed_fw_l2_queue(p_hwfn, (u16)qid, &fw_qid);
	if (rc)
		return rc;

	rc = qed_int_set_timer_res(p_hwfn, p_ptt, timer_res, sb_id, true);
	if (rc)
		goto out;

	address = BAR0_MAP_REG_XSDM_RAM + XSTORM_ETH_QUEUE_ZONE_OFFSET(fw_qid);

	rc = qed_set_coalesce(p_hwfn, p_ptt, address, &eth_qzone,
			      sizeof(struct xstorm_eth_queue_zone), timeset);
	if (rc)
		goto out;

	p_hwfn->cdev->tx_coalesce_usecs = coalesce;
out:
	return rc;
}

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/* Calculate final WFQ values for all vports and configure them.
 * After this configuration each vport will have
 * approx min rate =  min_pf_rate * (vport_wfq / QED_WFQ_UNIT)
 */
static void qed_configure_wfq_for_all_vports(struct qed_hwfn *p_hwfn,
					     struct qed_ptt *p_ptt,
					     u32 min_pf_rate)
{
	struct init_qm_vport_params *vport_params;
	int i;

	vport_params = p_hwfn->qm_info.qm_vport_params;

	for (i = 0; i < p_hwfn->qm_info.num_vports; i++) {
		u32 wfq_speed = p_hwfn->qm_info.wfq_data[i].min_speed;

		vport_params[i].vport_wfq = (wfq_speed * QED_WFQ_UNIT) /
						min_pf_rate;
		qed_init_vport_wfq(p_hwfn, p_ptt,
				   vport_params[i].first_tx_pq_id,
				   vport_params[i].vport_wfq);
	}
}

static void qed_init_wfq_default_param(struct qed_hwfn *p_hwfn,
				       u32 min_pf_rate)

{
	int i;

	for (i = 0; i < p_hwfn->qm_info.num_vports; i++)
		p_hwfn->qm_info.qm_vport_params[i].vport_wfq = 1;
}

static void qed_disable_wfq_for_all_vports(struct qed_hwfn *p_hwfn,
					   struct qed_ptt *p_ptt,
					   u32 min_pf_rate)
{
	struct init_qm_vport_params *vport_params;
	int i;

	vport_params = p_hwfn->qm_info.qm_vport_params;

	for (i = 0; i < p_hwfn->qm_info.num_vports; i++) {
		qed_init_wfq_default_param(p_hwfn, min_pf_rate);
		qed_init_vport_wfq(p_hwfn, p_ptt,
				   vport_params[i].first_tx_pq_id,
				   vport_params[i].vport_wfq);
	}
}

/* This function performs several validations for WFQ
 * configuration and required min rate for a given vport
 * 1. req_rate must be greater than one percent of min_pf_rate.
 * 2. req_rate should not cause other vports [not configured for WFQ explicitly]
 *    rates to get less than one percent of min_pf_rate.
 * 3. total_req_min_rate [all vports min rate sum] shouldn't exceed min_pf_rate.
 */
static int qed_init_wfq_param(struct qed_hwfn *p_hwfn,
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Yuval Mintz 已提交
2803
			      u16 vport_id, u32 req_rate, u32 min_pf_rate)
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{
	u32 total_req_min_rate = 0, total_left_rate = 0, left_rate_per_vp = 0;
	int non_requested_count = 0, req_count = 0, i, num_vports;

	num_vports = p_hwfn->qm_info.num_vports;

	/* Accounting for the vports which are configured for WFQ explicitly */
	for (i = 0; i < num_vports; i++) {
		u32 tmp_speed;

		if ((i != vport_id) &&
		    p_hwfn->qm_info.wfq_data[i].configured) {
			req_count++;
			tmp_speed = p_hwfn->qm_info.wfq_data[i].min_speed;
			total_req_min_rate += tmp_speed;
		}
	}

	/* Include current vport data as well */
	req_count++;
	total_req_min_rate += req_rate;
	non_requested_count = num_vports - req_count;

	if (req_rate < min_pf_rate / QED_WFQ_UNIT) {
		DP_VERBOSE(p_hwfn, NETIF_MSG_LINK,
			   "Vport [%d] - Requested rate[%d Mbps] is less than one percent of configured PF min rate[%d Mbps]\n",
			   vport_id, req_rate, min_pf_rate);
		return -EINVAL;
	}

	if (num_vports > QED_WFQ_UNIT) {
		DP_VERBOSE(p_hwfn, NETIF_MSG_LINK,
			   "Number of vports is greater than %d\n",
			   QED_WFQ_UNIT);
		return -EINVAL;
	}

	if (total_req_min_rate > min_pf_rate) {
		DP_VERBOSE(p_hwfn, NETIF_MSG_LINK,
			   "Total requested min rate for all vports[%d Mbps] is greater than configured PF min rate[%d Mbps]\n",
			   total_req_min_rate, min_pf_rate);
		return -EINVAL;
	}

	total_left_rate	= min_pf_rate - total_req_min_rate;

	left_rate_per_vp = total_left_rate / non_requested_count;
	if (left_rate_per_vp <  min_pf_rate / QED_WFQ_UNIT) {
		DP_VERBOSE(p_hwfn, NETIF_MSG_LINK,
			   "Non WFQ configured vports rate [%d Mbps] is less than one percent of configured PF min rate[%d Mbps]\n",
			   left_rate_per_vp, min_pf_rate);
		return -EINVAL;
	}

	p_hwfn->qm_info.wfq_data[vport_id].min_speed = req_rate;
	p_hwfn->qm_info.wfq_data[vport_id].configured = true;

	for (i = 0; i < num_vports; i++) {
		if (p_hwfn->qm_info.wfq_data[i].configured)
			continue;

		p_hwfn->qm_info.wfq_data[i].min_speed = left_rate_per_vp;
	}

	return 0;
}

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static int __qed_configure_vport_wfq(struct qed_hwfn *p_hwfn,
				     struct qed_ptt *p_ptt, u16 vp_id, u32 rate)
{
	struct qed_mcp_link_state *p_link;
	int rc = 0;

	p_link = &p_hwfn->cdev->hwfns[0].mcp_info->link_output;

	if (!p_link->min_pf_rate) {
		p_hwfn->qm_info.wfq_data[vp_id].min_speed = rate;
		p_hwfn->qm_info.wfq_data[vp_id].configured = true;
		return rc;
	}

	rc = qed_init_wfq_param(p_hwfn, vp_id, rate, p_link->min_pf_rate);

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	if (!rc)
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		qed_configure_wfq_for_all_vports(p_hwfn, p_ptt,
						 p_link->min_pf_rate);
	else
		DP_NOTICE(p_hwfn,
			  "Validation failed while configuring min rate\n");

	return rc;
}

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static int __qed_configure_vp_wfq_on_link_change(struct qed_hwfn *p_hwfn,
						 struct qed_ptt *p_ptt,
						 u32 min_pf_rate)
{
	bool use_wfq = false;
	int rc = 0;
	u16 i;

	/* Validate all pre configured vports for wfq */
	for (i = 0; i < p_hwfn->qm_info.num_vports; i++) {
		u32 rate;

		if (!p_hwfn->qm_info.wfq_data[i].configured)
			continue;

		rate = p_hwfn->qm_info.wfq_data[i].min_speed;
		use_wfq = true;

		rc = qed_init_wfq_param(p_hwfn, i, rate, min_pf_rate);
		if (rc) {
			DP_NOTICE(p_hwfn,
				  "WFQ validation failed while configuring min rate\n");
			break;
		}
	}

	if (!rc && use_wfq)
		qed_configure_wfq_for_all_vports(p_hwfn, p_ptt, min_pf_rate);
	else
		qed_disable_wfq_for_all_vports(p_hwfn, p_ptt, min_pf_rate);

	return rc;
}

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/* Main API for qed clients to configure vport min rate.
 * vp_id - vport id in PF Range[0 - (total_num_vports_per_pf - 1)]
 * rate - Speed in Mbps needs to be assigned to a given vport.
 */
int qed_configure_vport_wfq(struct qed_dev *cdev, u16 vp_id, u32 rate)
{
	int i, rc = -EINVAL;

	/* Currently not supported; Might change in future */
	if (cdev->num_hwfns > 1) {
		DP_NOTICE(cdev,
			  "WFQ configuration is not supported for this device\n");
		return rc;
	}

	for_each_hwfn(cdev, i) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];
		struct qed_ptt *p_ptt;

		p_ptt = qed_ptt_acquire(p_hwfn);
		if (!p_ptt)
			return -EBUSY;

		rc = __qed_configure_vport_wfq(p_hwfn, p_ptt, vp_id, rate);

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		if (rc) {
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			qed_ptt_release(p_hwfn, p_ptt);
			return rc;
		}

		qed_ptt_release(p_hwfn, p_ptt);
	}

	return rc;
}

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/* API to configure WFQ from mcp link change */
void qed_configure_vp_wfq_on_link_change(struct qed_dev *cdev, u32 min_pf_rate)
{
	int i;

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	if (cdev->num_hwfns > 1) {
		DP_VERBOSE(cdev,
			   NETIF_MSG_LINK,
			   "WFQ configuration is not supported for this device\n");
		return;
	}

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	for_each_hwfn(cdev, i) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];

		__qed_configure_vp_wfq_on_link_change(p_hwfn,
						      p_hwfn->p_dpc_ptt,
						      min_pf_rate);
	}
}
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int __qed_configure_pf_max_bandwidth(struct qed_hwfn *p_hwfn,
				     struct qed_ptt *p_ptt,
				     struct qed_mcp_link_state *p_link,
				     u8 max_bw)
{
	int rc = 0;

	p_hwfn->mcp_info->func_info.bandwidth_max = max_bw;

	if (!p_link->line_speed && (max_bw != 100))
		return rc;

	p_link->speed = (p_link->line_speed * max_bw) / 100;
	p_hwfn->qm_info.pf_rl = p_link->speed;

	/* Since the limiter also affects Tx-switched traffic, we don't want it
	 * to limit such traffic in case there's no actual limit.
	 * In that case, set limit to imaginary high boundary.
	 */
	if (max_bw == 100)
		p_hwfn->qm_info.pf_rl = 100000;

	rc = qed_init_pf_rl(p_hwfn, p_ptt, p_hwfn->rel_pf_id,
			    p_hwfn->qm_info.pf_rl);

	DP_VERBOSE(p_hwfn, NETIF_MSG_LINK,
		   "Configured MAX bandwidth to be %08x Mb/sec\n",
		   p_link->speed);

	return rc;
}

/* Main API to configure PF max bandwidth where bw range is [1 - 100] */
int qed_configure_pf_max_bandwidth(struct qed_dev *cdev, u8 max_bw)
{
	int i, rc = -EINVAL;

	if (max_bw < 1 || max_bw > 100) {
		DP_NOTICE(cdev, "PF max bw valid range is [1-100]\n");
		return rc;
	}

	for_each_hwfn(cdev, i) {
		struct qed_hwfn	*p_hwfn = &cdev->hwfns[i];
		struct qed_hwfn *p_lead = QED_LEADING_HWFN(cdev);
		struct qed_mcp_link_state *p_link;
		struct qed_ptt *p_ptt;

		p_link = &p_lead->mcp_info->link_output;

		p_ptt = qed_ptt_acquire(p_hwfn);
		if (!p_ptt)
			return -EBUSY;

		rc = __qed_configure_pf_max_bandwidth(p_hwfn, p_ptt,
						      p_link, max_bw);

		qed_ptt_release(p_hwfn, p_ptt);

		if (rc)
			break;
	}

	return rc;
}
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int __qed_configure_pf_min_bandwidth(struct qed_hwfn *p_hwfn,
				     struct qed_ptt *p_ptt,
				     struct qed_mcp_link_state *p_link,
				     u8 min_bw)
{
	int rc = 0;

	p_hwfn->mcp_info->func_info.bandwidth_min = min_bw;
	p_hwfn->qm_info.pf_wfq = min_bw;

	if (!p_link->line_speed)
		return rc;

	p_link->min_pf_rate = (p_link->line_speed * min_bw) / 100;

	rc = qed_init_pf_wfq(p_hwfn, p_ptt, p_hwfn->rel_pf_id, min_bw);

	DP_VERBOSE(p_hwfn, NETIF_MSG_LINK,
		   "Configured MIN bandwidth to be %d Mb/sec\n",
		   p_link->min_pf_rate);

	return rc;
}

/* Main API to configure PF min bandwidth where bw range is [1-100] */
int qed_configure_pf_min_bandwidth(struct qed_dev *cdev, u8 min_bw)
{
	int i, rc = -EINVAL;

	if (min_bw < 1 || min_bw > 100) {
		DP_NOTICE(cdev, "PF min bw valid range is [1-100]\n");
		return rc;
	}

	for_each_hwfn(cdev, i) {
		struct qed_hwfn *p_hwfn = &cdev->hwfns[i];
		struct qed_hwfn *p_lead = QED_LEADING_HWFN(cdev);
		struct qed_mcp_link_state *p_link;
		struct qed_ptt *p_ptt;

		p_link = &p_lead->mcp_info->link_output;

		p_ptt = qed_ptt_acquire(p_hwfn);
		if (!p_ptt)
			return -EBUSY;

		rc = __qed_configure_pf_min_bandwidth(p_hwfn, p_ptt,
						      p_link, min_bw);
		if (rc) {
			qed_ptt_release(p_hwfn, p_ptt);
			return rc;
		}

		if (p_link->min_pf_rate) {
			u32 min_rate = p_link->min_pf_rate;

			rc = __qed_configure_vp_wfq_on_link_change(p_hwfn,
								   p_ptt,
								   min_rate);
		}

		qed_ptt_release(p_hwfn, p_ptt);
	}

	return rc;
}
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void qed_clean_wfq_db(struct qed_hwfn *p_hwfn, struct qed_ptt *p_ptt)
{
	struct qed_mcp_link_state *p_link;

	p_link = &p_hwfn->mcp_info->link_output;

	if (p_link->min_pf_rate)
		qed_disable_wfq_for_all_vports(p_hwfn, p_ptt,
					       p_link->min_pf_rate);

	memset(p_hwfn->qm_info.wfq_data, 0,
	       sizeof(*p_hwfn->qm_info.wfq_data) * p_hwfn->qm_info.num_vports);
}