lio_main.c 120.6 KB
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/**********************************************************************
* Author: Cavium, Inc.
*
* Contact: support@cavium.com
*          Please include "LiquidIO" in the subject.
*
* Copyright (c) 2003-2015 Cavium, Inc.
*
* This file is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License, Version 2, as
* published by the Free Software Foundation.
*
* This file is distributed in the hope that it will be useful, but
* AS-IS and WITHOUT ANY WARRANTY; without even the implied warranty
* of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE, TITLE, or
* NONINFRINGEMENT.  See the GNU General Public License for more
* details.
*
* This file may also be available under a different license from Cavium.
* Contact Cavium, Inc. for more information
**********************************************************************/
#include <linux/pci.h>
#include <linux/firmware.h>
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#include <net/vxlan.h>
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#include <linux/kthread.h>
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#include "liquidio_common.h"
#include "octeon_droq.h"
#include "octeon_iq.h"
#include "response_manager.h"
#include "octeon_device.h"
#include "octeon_nic.h"
#include "octeon_main.h"
#include "octeon_network.h"
#include "cn66xx_regs.h"
#include "cn66xx_device.h"
#include "cn68xx_device.h"
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#include "cn23xx_pf_device.h"
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#include "liquidio_image.h"

MODULE_AUTHOR("Cavium Networks, <support@cavium.com>");
MODULE_DESCRIPTION("Cavium LiquidIO Intelligent Server Adapter Driver");
MODULE_LICENSE("GPL");
MODULE_VERSION(LIQUIDIO_VERSION);
MODULE_FIRMWARE(LIO_FW_DIR LIO_FW_BASE_NAME LIO_210SV_NAME LIO_FW_NAME_SUFFIX);
MODULE_FIRMWARE(LIO_FW_DIR LIO_FW_BASE_NAME LIO_210NV_NAME LIO_FW_NAME_SUFFIX);
MODULE_FIRMWARE(LIO_FW_DIR LIO_FW_BASE_NAME LIO_410NV_NAME LIO_FW_NAME_SUFFIX);

static int ddr_timeout = 10000;
module_param(ddr_timeout, int, 0644);
MODULE_PARM_DESC(ddr_timeout,
		 "Number of milliseconds to wait for DDR initialization. 0 waits for ddr_timeout to be set to non-zero value before starting to check");

#define DEFAULT_MSG_ENABLE (NETIF_MSG_DRV | NETIF_MSG_PROBE | NETIF_MSG_LINK)

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#define INCR_INSTRQUEUE_PKT_COUNT(octeon_dev_ptr, iq_no, field, count)  \
	(octeon_dev_ptr->instr_queue[iq_no]->stats.field += count)

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static int debug = -1;
module_param(debug, int, 0644);
MODULE_PARM_DESC(debug, "NETIF_MSG debug bits");

static char fw_type[LIO_MAX_FW_TYPE_LEN];
module_param_string(fw_type, fw_type, sizeof(fw_type), 0000);
MODULE_PARM_DESC(fw_type, "Type of firmware to be loaded. Default \"nic\"");

static int conf_type;
module_param(conf_type, int, 0);
MODULE_PARM_DESC(conf_type, "select octeon configuration 0 default 1 ovs");

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static int ptp_enable = 1;

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/* Bit mask values for lio->ifstate */
#define   LIO_IFSTATE_DROQ_OPS             0x01
#define   LIO_IFSTATE_REGISTERED           0x02
#define   LIO_IFSTATE_RUNNING              0x04
#define   LIO_IFSTATE_RX_TIMESTAMP_ENABLED 0x08

/* Polling interval for determining when NIC application is alive */
#define LIQUIDIO_STARTER_POLL_INTERVAL_MS 100

/* runtime link query interval */
#define LIQUIDIO_LINK_QUERY_INTERVAL_MS         1000

struct liquidio_if_cfg_context {
	int octeon_id;

	wait_queue_head_t wc;

	int cond;
};

struct liquidio_if_cfg_resp {
	u64 rh;
	struct liquidio_if_cfg_info cfg_info;
	u64 status;
};

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struct liquidio_rx_ctl_context {
	int octeon_id;

	wait_queue_head_t wc;

	int cond;
};

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struct oct_link_status_resp {
	u64 rh;
	struct oct_link_info link_info;
	u64 status;
};

struct oct_timestamp_resp {
	u64 rh;
	u64 timestamp;
	u64 status;
};

#define OCT_TIMESTAMP_RESP_SIZE (sizeof(struct oct_timestamp_resp))

union tx_info {
	u64 u64;
	struct {
#ifdef __BIG_ENDIAN_BITFIELD
		u16 gso_size;
		u16 gso_segs;
		u32 reserved;
#else
		u32 reserved;
		u16 gso_segs;
		u16 gso_size;
#endif
	} s;
};

/** Octeon device properties to be used by the NIC module.
 * Each octeon device in the system will be represented
 * by this structure in the NIC module.
 */

#define OCTNIC_MAX_SG  (MAX_SKB_FRAGS)

#define OCTNIC_GSO_MAX_HEADER_SIZE 128
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#define OCTNIC_GSO_MAX_SIZE                                                    \
	(CN23XX_DEFAULT_INPUT_JABBER - OCTNIC_GSO_MAX_HEADER_SIZE)
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/** Structure of a node in list of gather components maintained by
 * NIC driver for each network device.
 */
struct octnic_gather {
	/** List manipulation. Next and prev pointers. */
	struct list_head list;

	/** Size of the gather component at sg in bytes. */
	int sg_size;

	/** Number of bytes that sg was adjusted to make it 8B-aligned. */
	int adjust;

	/** Gather component that can accommodate max sized fragment list
	 *  received from the IP layer.
	 */
	struct octeon_sg_entry *sg;
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	u64 sg_dma_ptr;
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};

struct handshake {
	struct completion init;
	struct completion started;
	struct pci_dev *pci_dev;
	int init_ok;
	int started_ok;
};

struct octeon_device_priv {
	/** Tasklet structures for this device. */
	struct tasklet_struct droq_tasklet;
	unsigned long napi_mask;
};

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#ifdef CONFIG_PCI_IOV
static int liquidio_enable_sriov(struct pci_dev *dev, int num_vfs);
#endif

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static int octeon_device_init(struct octeon_device *);
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static int liquidio_stop(struct net_device *netdev);
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static void liquidio_remove(struct pci_dev *pdev);
static int liquidio_probe(struct pci_dev *pdev,
			  const struct pci_device_id *ent);

static struct handshake handshake[MAX_OCTEON_DEVICES];
static struct completion first_stage;

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static void octeon_droq_bh(unsigned long pdev)
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{
	int q_no;
	int reschedule = 0;
	struct octeon_device *oct = (struct octeon_device *)pdev;
	struct octeon_device_priv *oct_priv =
		(struct octeon_device_priv *)oct->priv;

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	for (q_no = 0; q_no < MAX_OCTEON_OUTPUT_QUEUES(oct); q_no++) {
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		if (!(oct->io_qmask.oq & BIT_ULL(q_no)))
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			continue;
		reschedule |= octeon_droq_process_packets(oct, oct->droq[q_no],
							  MAX_PACKET_BUDGET);
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		lio_enable_irq(oct->droq[q_no], NULL);
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		if (OCTEON_CN23XX_PF(oct) && oct->msix_on) {
			/* set time and cnt interrupt thresholds for this DROQ
			 * for NAPI
			 */
			int adjusted_q_no = q_no + oct->sriov_info.pf_srn;

			octeon_write_csr64(
			    oct, CN23XX_SLI_OQ_PKT_INT_LEVELS(adjusted_q_no),
			    0x5700000040ULL);
			octeon_write_csr64(
			    oct, CN23XX_SLI_OQ_PKTS_SENT(adjusted_q_no), 0);
		}
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	}

	if (reschedule)
		tasklet_schedule(&oct_priv->droq_tasklet);
}

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static int lio_wait_for_oq_pkts(struct octeon_device *oct)
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{
	struct octeon_device_priv *oct_priv =
		(struct octeon_device_priv *)oct->priv;
	int retry = 100, pkt_cnt = 0, pending_pkts = 0;
	int i;

	do {
		pending_pkts = 0;

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		for (i = 0; i < MAX_OCTEON_OUTPUT_QUEUES(oct); i++) {
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			if (!(oct->io_qmask.oq & BIT_ULL(i)))
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				continue;
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			pkt_cnt += octeon_droq_check_hw_for_pkts(oct->droq[i]);
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		}
		if (pkt_cnt > 0) {
			pending_pkts += pkt_cnt;
			tasklet_schedule(&oct_priv->droq_tasklet);
		}
		pkt_cnt = 0;
		schedule_timeout_uninterruptible(1);

	} while (retry-- && pending_pkts);

	return pkt_cnt;
}

/**
 * \brief Forces all IO queues off on a given device
 * @param oct Pointer to Octeon device
 */
static void force_io_queues_off(struct octeon_device *oct)
{
	if ((oct->chip_id == OCTEON_CN66XX) ||
	    (oct->chip_id == OCTEON_CN68XX)) {
		/* Reset the Enable bits for Input Queues. */
		octeon_write_csr(oct, CN6XXX_SLI_PKT_INSTR_ENB, 0);

		/* Reset the Enable bits for Output Queues. */
		octeon_write_csr(oct, CN6XXX_SLI_PKT_OUT_ENB, 0);
	}
}

/**
 * \brief wait for all pending requests to complete
 * @param oct Pointer to Octeon device
 *
 * Called during shutdown sequence
 */
static int wait_for_pending_requests(struct octeon_device *oct)
{
	int i, pcount = 0;

	for (i = 0; i < 100; i++) {
		pcount =
			atomic_read(&oct->response_list
				[OCTEON_ORDERED_SC_LIST].pending_req_count);
		if (pcount)
			schedule_timeout_uninterruptible(HZ / 10);
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		else
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			break;
	}

	if (pcount)
		return 1;

	return 0;
}

/**
 * \brief Cause device to go quiet so it can be safely removed/reset/etc
 * @param oct Pointer to Octeon device
 */
static inline void pcierror_quiesce_device(struct octeon_device *oct)
{
	int i;

	/* Disable the input and output queues now. No more packets will
	 * arrive from Octeon, but we should wait for all packet processing
	 * to finish.
	 */
	force_io_queues_off(oct);

	/* To allow for in-flight requests */
	schedule_timeout_uninterruptible(100);

	if (wait_for_pending_requests(oct))
		dev_err(&oct->pci_dev->dev, "There were pending requests\n");

	/* Force all requests waiting to be fetched by OCTEON to complete. */
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	for (i = 0; i < MAX_OCTEON_INSTR_QUEUES(oct); i++) {
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		struct octeon_instr_queue *iq;

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		if (!(oct->io_qmask.iq & BIT_ULL(i)))
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			continue;
		iq = oct->instr_queue[i];

		if (atomic_read(&iq->instr_pending)) {
			spin_lock_bh(&iq->lock);
			iq->fill_cnt = 0;
			iq->octeon_read_index = iq->host_write_index;
			iq->stats.instr_processed +=
				atomic_read(&iq->instr_pending);
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			lio_process_iq_request_list(oct, iq, 0);
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			spin_unlock_bh(&iq->lock);
		}
	}

	/* Force all pending ordered list requests to time out. */
	lio_process_ordered_list(oct, 1);

	/* We do not need to wait for output queue packets to be processed. */
}

/**
 * \brief Cleanup PCI AER uncorrectable error status
 * @param dev Pointer to PCI device
 */
static void cleanup_aer_uncorrect_error_status(struct pci_dev *dev)
{
	int pos = 0x100;
	u32 status, mask;

	pr_info("%s :\n", __func__);

	pci_read_config_dword(dev, pos + PCI_ERR_UNCOR_STATUS, &status);
	pci_read_config_dword(dev, pos + PCI_ERR_UNCOR_SEVER, &mask);
	if (dev->error_state == pci_channel_io_normal)
		status &= ~mask;        /* Clear corresponding nonfatal bits */
	else
		status &= mask;         /* Clear corresponding fatal bits */
	pci_write_config_dword(dev, pos + PCI_ERR_UNCOR_STATUS, status);
}

/**
 * \brief Stop all PCI IO to a given device
 * @param dev Pointer to Octeon device
 */
static void stop_pci_io(struct octeon_device *oct)
{
	/* No more instructions will be forwarded. */
	atomic_set(&oct->status, OCT_DEV_IN_RESET);

	pci_disable_device(oct->pci_dev);

	/* Disable interrupts  */
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	oct->fn_list.disable_interrupt(oct, OCTEON_ALL_INTR);
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	pcierror_quiesce_device(oct);

	/* Release the interrupt line */
	free_irq(oct->pci_dev->irq, oct);

	if (oct->flags & LIO_FLAG_MSI_ENABLED)
		pci_disable_msi(oct->pci_dev);

	dev_dbg(&oct->pci_dev->dev, "Device state is now %s\n",
		lio_get_state_string(&oct->status));

	/* making it a common function for all OCTEON models */
	cleanup_aer_uncorrect_error_status(oct->pci_dev);
}

/**
 * \brief called when PCI error is detected
 * @param pdev Pointer to PCI device
 * @param state The current pci connection state
 *
 * This function is called after a PCI bus error affecting
 * this device has been detected.
 */
static pci_ers_result_t liquidio_pcie_error_detected(struct pci_dev *pdev,
						     pci_channel_state_t state)
{
	struct octeon_device *oct = pci_get_drvdata(pdev);

	/* Non-correctable Non-fatal errors */
	if (state == pci_channel_io_normal) {
		dev_err(&oct->pci_dev->dev, "Non-correctable non-fatal error reported:\n");
		cleanup_aer_uncorrect_error_status(oct->pci_dev);
		return PCI_ERS_RESULT_CAN_RECOVER;
	}

	/* Non-correctable Fatal errors */
	dev_err(&oct->pci_dev->dev, "Non-correctable FATAL reported by PCI AER driver\n");
	stop_pci_io(oct);

	/* Always return a DISCONNECT. There is no support for recovery but only
	 * for a clean shutdown.
	 */
	return PCI_ERS_RESULT_DISCONNECT;
}

/**
 * \brief mmio handler
 * @param pdev Pointer to PCI device
 */
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static pci_ers_result_t liquidio_pcie_mmio_enabled(
				struct pci_dev *pdev __attribute__((unused)))
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{
	/* We should never hit this since we never ask for a reset for a Fatal
	 * Error. We always return DISCONNECT in io_error above.
	 * But play safe and return RECOVERED for now.
	 */
	return PCI_ERS_RESULT_RECOVERED;
}

/**
 * \brief called after the pci bus has been reset.
 * @param pdev Pointer to PCI device
 *
 * Restart the card from scratch, as if from a cold-boot. Implementation
 * resembles the first-half of the octeon_resume routine.
 */
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static pci_ers_result_t liquidio_pcie_slot_reset(
				struct pci_dev *pdev __attribute__((unused)))
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{
	/* We should never hit this since we never ask for a reset for a Fatal
	 * Error. We always return DISCONNECT in io_error above.
	 * But play safe and return RECOVERED for now.
	 */
	return PCI_ERS_RESULT_RECOVERED;
}

/**
 * \brief called when traffic can start flowing again.
 * @param pdev Pointer to PCI device
 *
 * This callback is called when the error recovery driver tells us that
 * its OK to resume normal operation. Implementation resembles the
 * second-half of the octeon_resume routine.
 */
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static void liquidio_pcie_resume(struct pci_dev *pdev __attribute__((unused)))
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{
	/* Nothing to be done here. */
}

#ifdef CONFIG_PM
/**
 * \brief called when suspending
 * @param pdev Pointer to PCI device
 * @param state state to suspend to
 */
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static int liquidio_suspend(struct pci_dev *pdev __attribute__((unused)),
			    pm_message_t state __attribute__((unused)))
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{
	return 0;
}

/**
 * \brief called when resuming
 * @param pdev Pointer to PCI device
 */
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static int liquidio_resume(struct pci_dev *pdev __attribute__((unused)))
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{
	return 0;
}
#endif

/* For PCI-E Advanced Error Recovery (AER) Interface */
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static const struct pci_error_handlers liquidio_err_handler = {
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	.error_detected = liquidio_pcie_error_detected,
	.mmio_enabled	= liquidio_pcie_mmio_enabled,
	.slot_reset	= liquidio_pcie_slot_reset,
	.resume		= liquidio_pcie_resume,
};

static const struct pci_device_id liquidio_pci_tbl[] = {
	{       /* 68xx */
		PCI_VENDOR_ID_CAVIUM, 0x91, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0
	},
	{       /* 66xx */
		PCI_VENDOR_ID_CAVIUM, 0x92, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0
	},
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	{       /* 23xx pf */
		PCI_VENDOR_ID_CAVIUM, 0x9702, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0
	},
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	{
		0, 0, 0, 0, 0, 0, 0
	}
};
MODULE_DEVICE_TABLE(pci, liquidio_pci_tbl);

static struct pci_driver liquidio_pci_driver = {
	.name		= "LiquidIO",
	.id_table	= liquidio_pci_tbl,
	.probe		= liquidio_probe,
	.remove		= liquidio_remove,
	.err_handler	= &liquidio_err_handler,    /* For AER */

#ifdef CONFIG_PM
	.suspend	= liquidio_suspend,
	.resume		= liquidio_resume,
#endif
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#ifdef CONFIG_PCI_IOV
	.sriov_configure = liquidio_enable_sriov,
#endif
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};

/**
 * \brief register PCI driver
 */
static int liquidio_init_pci(void)
{
	return pci_register_driver(&liquidio_pci_driver);
}

/**
 * \brief unregister PCI driver
 */
static void liquidio_deinit_pci(void)
{
	pci_unregister_driver(&liquidio_pci_driver);
}

/**
 * \brief check interface state
 * @param lio per-network private data
 * @param state_flag flag state to check
 */
static inline int ifstate_check(struct lio *lio, int state_flag)
{
	return atomic_read(&lio->ifstate) & state_flag;
}

/**
 * \brief set interface state
 * @param lio per-network private data
 * @param state_flag flag state to set
 */
static inline void ifstate_set(struct lio *lio, int state_flag)
{
	atomic_set(&lio->ifstate, (atomic_read(&lio->ifstate) | state_flag));
}

/**
 * \brief clear interface state
 * @param lio per-network private data
 * @param state_flag flag state to clear
 */
static inline void ifstate_reset(struct lio *lio, int state_flag)
{
	atomic_set(&lio->ifstate, (atomic_read(&lio->ifstate) & ~(state_flag)));
}

/**
 * \brief Stop Tx queues
 * @param netdev network device
 */
static inline void txqs_stop(struct net_device *netdev)
{
	if (netif_is_multiqueue(netdev)) {
		int i;

		for (i = 0; i < netdev->num_tx_queues; i++)
			netif_stop_subqueue(netdev, i);
	} else {
		netif_stop_queue(netdev);
	}
}

/**
 * \brief Start Tx queues
 * @param netdev network device
 */
static inline void txqs_start(struct net_device *netdev)
{
	if (netif_is_multiqueue(netdev)) {
		int i;

		for (i = 0; i < netdev->num_tx_queues; i++)
			netif_start_subqueue(netdev, i);
	} else {
		netif_start_queue(netdev);
	}
}

/**
 * \brief Wake Tx queues
 * @param netdev network device
 */
static inline void txqs_wake(struct net_device *netdev)
{
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	struct lio *lio = GET_LIO(netdev);

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	if (netif_is_multiqueue(netdev)) {
		int i;

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		for (i = 0; i < netdev->num_tx_queues; i++) {
			int qno = lio->linfo.txpciq[i %
				(lio->linfo.num_txpciq)].s.q_no;

			if (__netif_subqueue_stopped(netdev, i)) {
				INCR_INSTRQUEUE_PKT_COUNT(lio->oct_dev, qno,
							  tx_restart, 1);
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				netif_wake_subqueue(netdev, i);
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			}
		}
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	} else {
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		INCR_INSTRQUEUE_PKT_COUNT(lio->oct_dev, lio->txq,
					  tx_restart, 1);
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		netif_wake_queue(netdev);
	}
}

/**
 * \brief Stop Tx queue
 * @param netdev network device
 */
static void stop_txq(struct net_device *netdev)
{
	txqs_stop(netdev);
}

/**
 * \brief Start Tx queue
 * @param netdev network device
 */
static void start_txq(struct net_device *netdev)
{
	struct lio *lio = GET_LIO(netdev);

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	if (lio->linfo.link.s.link_up) {
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		txqs_start(netdev);
		return;
	}
}

/**
 * \brief Wake a queue
 * @param netdev network device
 * @param q which queue to wake
 */
static inline void wake_q(struct net_device *netdev, int q)
{
	if (netif_is_multiqueue(netdev))
		netif_wake_subqueue(netdev, q);
	else
		netif_wake_queue(netdev);
}

/**
 * \brief Stop a queue
 * @param netdev network device
 * @param q which queue to stop
 */
static inline void stop_q(struct net_device *netdev, int q)
{
	if (netif_is_multiqueue(netdev))
		netif_stop_subqueue(netdev, q);
	else
		netif_stop_queue(netdev);
}

/**
 * \brief Check Tx queue status, and take appropriate action
 * @param lio per-network private data
 * @returns 0 if full, number of queues woken up otherwise
 */
static inline int check_txq_status(struct lio *lio)
{
	int ret_val = 0;

	if (netif_is_multiqueue(lio->netdev)) {
		int numqs = lio->netdev->num_tx_queues;
		int q, iq = 0;

		/* check each sub-queue state */
		for (q = 0; q < numqs; q++) {
696 697
			iq = lio->linfo.txpciq[q %
				(lio->linfo.num_txpciq)].s.q_no;
698 699
			if (octnet_iq_is_full(lio->oct_dev, iq))
				continue;
700 701
			if (__netif_subqueue_stopped(lio->netdev, q)) {
				wake_q(lio->netdev, q);
702 703
				INCR_INSTRQUEUE_PKT_COUNT(lio->oct_dev, iq,
							  tx_restart, 1);
704 705
				ret_val++;
			}
706 707 708 709 710
		}
	} else {
		if (octnet_iq_is_full(lio->oct_dev, lio->txq))
			return 0;
		wake_q(lio->netdev, lio->txq);
711 712
		INCR_INSTRQUEUE_PKT_COUNT(lio->oct_dev, lio->txq,
					  tx_restart, 1);
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		ret_val = 1;
	}
	return ret_val;
}

/**
 * Remove the node at the head of the list. The list would be empty at
 * the end of this call if there are no more nodes in the list.
 */
static inline struct list_head *list_delete_head(struct list_head *root)
{
	struct list_head *node;

	if ((root->prev == root) && (root->next == root))
		node = NULL;
	else
		node = root->next;

	if (node)
		list_del(node);

	return node;
}

/**
738
 * \brief Delete gather lists
739 740
 * @param lio per-network private data
 */
741
static void delete_glists(struct lio *lio)
742 743
{
	struct octnic_gather *g;
744
	int i;
745

746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768
	if (!lio->glist)
		return;

	for (i = 0; i < lio->linfo.num_txpciq; i++) {
		do {
			g = (struct octnic_gather *)
				list_delete_head(&lio->glist[i]);
			if (g) {
				if (g->sg) {
					dma_unmap_single(&lio->oct_dev->
							 pci_dev->dev,
							 g->sg_dma_ptr,
							 g->sg_size,
							 DMA_TO_DEVICE);
					kfree((void *)((unsigned long)g->sg -
						       g->adjust));
				}
				kfree(g);
			}
		} while (g);
	}

	kfree((void *)lio->glist);
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	kfree((void *)lio->glist_lock);
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}

/**
773
 * \brief Setup gather lists
774 775
 * @param lio per-network private data
 */
776
static int setup_glists(struct octeon_device *oct, struct lio *lio, int num_iqs)
777
{
778
	int i, j;
779 780
	struct octnic_gather *g;

781 782 783 784
	lio->glist_lock = kcalloc(num_iqs, sizeof(*lio->glist_lock),
				  GFP_KERNEL);
	if (!lio->glist_lock)
		return 1;
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	lio->glist = kcalloc(num_iqs, sizeof(*lio->glist),
			     GFP_KERNEL);
	if (!lio->glist) {
		kfree((void *)lio->glist_lock);
		return 1;
	}
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	for (i = 0; i < num_iqs; i++) {
		int numa_node = cpu_to_node(i % num_online_cpus());
795

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		spin_lock_init(&lio->glist_lock[i]);

		INIT_LIST_HEAD(&lio->glist[i]);

		for (j = 0; j < lio->tx_qsize; j++) {
			g = kzalloc_node(sizeof(*g), GFP_KERNEL,
					 numa_node);
			if (!g)
				g = kzalloc(sizeof(*g), GFP_KERNEL);
			if (!g)
				break;

			g->sg_size = ((ROUNDUP4(OCTNIC_MAX_SG) >> 2) *
				      OCT_SG_ENTRY_SIZE);

			g->sg = kmalloc_node(g->sg_size + 8,
					     GFP_KERNEL, numa_node);
			if (!g->sg)
				g->sg = kmalloc(g->sg_size + 8, GFP_KERNEL);
			if (!g->sg) {
				kfree(g);
				break;
			}

			/* The gather component should be aligned on 64-bit
			 * boundary
			 */
			if (((unsigned long)g->sg) & 7) {
				g->adjust = 8 - (((unsigned long)g->sg) & 7);
				g->sg = (struct octeon_sg_entry *)
					((unsigned long)g->sg + g->adjust);
			}
			g->sg_dma_ptr = dma_map_single(&oct->pci_dev->dev,
						       g->sg, g->sg_size,
						       DMA_TO_DEVICE);
			if (dma_mapping_error(&oct->pci_dev->dev,
					      g->sg_dma_ptr)) {
				kfree((void *)((unsigned long)g->sg -
					       g->adjust));
				kfree(g);
				break;
			}

			list_add_tail(&g->list, &lio->glist[i]);
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		}

842 843 844
		if (j != lio->tx_qsize) {
			delete_glists(lio);
			return 1;
845 846 847
		}
	}

848
	return 0;
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}

/**
 * \brief Print link information
 * @param netdev network device
 */
static void print_link_info(struct net_device *netdev)
{
	struct lio *lio = GET_LIO(netdev);

	if (atomic_read(&lio->ifstate) & LIO_IFSTATE_REGISTERED) {
		struct oct_link_info *linfo = &lio->linfo;

862
		if (linfo->link.s.link_up) {
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			netif_info(lio, link, lio->netdev, "%d Mbps %s Duplex UP\n",
				   linfo->link.s.speed,
				   (linfo->link.s.duplex) ? "Full" : "Half");
		} else {
			netif_info(lio, link, lio->netdev, "Link Down\n");
		}
	}
}

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/**
 * \brief Routine to notify MTU change
 * @param work work_struct data structure
 */
static void octnet_link_status_change(struct work_struct *work)
{
	struct cavium_wk *wk = (struct cavium_wk *)work;
	struct lio *lio = (struct lio *)wk->ctxptr;

	rtnl_lock();
	call_netdevice_notifiers(NETDEV_CHANGEMTU, lio->netdev);
	rtnl_unlock();
}

/**
 * \brief Sets up the mtu status change work
 * @param netdev network device
 */
static inline int setup_link_status_change_wq(struct net_device *netdev)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;

	lio->link_status_wq.wq = alloc_workqueue("link-status",
						 WQ_MEM_RECLAIM, 0);
	if (!lio->link_status_wq.wq) {
		dev_err(&oct->pci_dev->dev, "unable to create cavium link status wq\n");
		return -1;
	}
	INIT_DELAYED_WORK(&lio->link_status_wq.wk.work,
			  octnet_link_status_change);
	lio->link_status_wq.wk.ctxptr = lio;

	return 0;
}

static inline void cleanup_link_status_change_wq(struct net_device *netdev)
{
	struct lio *lio = GET_LIO(netdev);

	if (lio->link_status_wq.wq) {
		cancel_delayed_work_sync(&lio->link_status_wq.wk.work);
		destroy_workqueue(lio->link_status_wq.wq);
	}
}

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/**
 * \brief Update link status
 * @param netdev network device
 * @param ls link status structure
 *
 * Called on receipt of a link status response from the core application to
 * update each interface's link status.
 */
static inline void update_link_status(struct net_device *netdev,
				      union oct_link_status *ls)
{
	struct lio *lio = GET_LIO(netdev);
930
	int changed = (lio->linfo.link.u64 != ls->u64);
931

932
	lio->linfo.link.u64 = ls->u64;
933

934
	if ((lio->intf_open) && (changed)) {
935
		print_link_info(netdev);
936
		lio->link_changes++;
937

938
		if (lio->linfo.link.s.link_up) {
939 940 941 942 943 944 945 946 947
			netif_carrier_on(netdev);
			txqs_wake(netdev);
		} else {
			netif_carrier_off(netdev);
			stop_txq(netdev);
		}
	}
}

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/* Runs in interrupt context. */
static void update_txq_status(struct octeon_device *oct, int iq_num)
{
	struct net_device *netdev;
	struct lio *lio;
	struct octeon_instr_queue *iq = oct->instr_queue[iq_num];

	netdev = oct->props[iq->ifidx].netdev;

	/* This is needed because the first IQ does not have
	 * a netdev associated with it.
	 */
	if (!netdev)
		return;

	lio = GET_LIO(netdev);
	if (netif_is_multiqueue(netdev)) {
		if (__netif_subqueue_stopped(netdev, iq->q_index) &&
		    lio->linfo.link.s.link_up &&
		    (!octnet_iq_is_full(oct, iq_num))) {
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			INCR_INSTRQUEUE_PKT_COUNT(lio->oct_dev, iq_num,
						  tx_restart, 1);
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			netif_wake_subqueue(netdev, iq->q_index);
		} else {
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			if (!octnet_iq_is_full(oct, lio->txq)) {
				INCR_INSTRQUEUE_PKT_COUNT(lio->oct_dev,
							  lio->txq,
							  tx_restart, 1);
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				wake_q(netdev, lio->txq);
977
			}
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		}
	}
}

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static
int liquidio_schedule_msix_droq_pkt_handler(struct octeon_droq *droq, u64 ret)
{
	struct octeon_device *oct = droq->oct_dev;
	struct octeon_device_priv *oct_priv =
	    (struct octeon_device_priv *)oct->priv;

	if (droq->ops.poll_mode) {
		droq->ops.napi_fn(droq);
	} else {
		if (ret & MSIX_PO_INT) {
			tasklet_schedule(&oct_priv->droq_tasklet);
			return 1;
		}
		/* this will be flushed periodically by check iq db */
		if (ret & MSIX_PI_INT)
			return 0;
	}
	return 0;
}

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/**
 * \brief Droq packet processor sceduler
 * @param oct octeon device
 */
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static void liquidio_schedule_droq_pkt_handlers(struct octeon_device *oct)
1008 1009 1010 1011 1012 1013 1014
{
	struct octeon_device_priv *oct_priv =
		(struct octeon_device_priv *)oct->priv;
	u64 oq_no;
	struct octeon_droq *droq;

	if (oct->int_status & OCT_DEV_INTR_PKT_DATA) {
1015 1016
		for (oq_no = 0; oq_no < MAX_OCTEON_OUTPUT_QUEUES(oct);
		     oq_no++) {
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			if (!(oct->droq_intr & BIT_ULL(oq_no)))
1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031
				continue;

			droq = oct->droq[oq_no];

			if (droq->ops.poll_mode) {
				droq->ops.napi_fn(droq);
				oct_priv->napi_mask |= (1 << oq_no);
			} else {
				tasklet_schedule(&oct_priv->droq_tasklet);
			}
		}
	}
}

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static irqreturn_t
liquidio_msix_intr_handler(int irq __attribute__((unused)), void *dev)
{
	u64 ret;
	struct octeon_ioq_vector *ioq_vector = (struct octeon_ioq_vector *)dev;
	struct octeon_device *oct = ioq_vector->oct_dev;
	struct octeon_droq *droq = oct->droq[ioq_vector->droq_index];

	ret = oct->fn_list.msix_interrupt_handler(ioq_vector);

	if ((ret & MSIX_PO_INT) || (ret & MSIX_PI_INT))
		liquidio_schedule_msix_droq_pkt_handler(droq, ret);

	return IRQ_HANDLED;
}

1048 1049 1050 1051 1052 1053
/**
 * \brief Interrupt handler for octeon
 * @param irq unused
 * @param dev octeon device
 */
static
1054 1055
irqreturn_t liquidio_legacy_intr_handler(int irq __attribute__((unused)),
					 void *dev)
1056 1057 1058 1059 1060
{
	struct octeon_device *oct = (struct octeon_device *)dev;
	irqreturn_t ret;

	/* Disable our interrupts for the duration of ISR */
1061
	oct->fn_list.disable_interrupt(oct, OCTEON_ALL_INTR);
1062 1063 1064 1065 1066 1067 1068 1069

	ret = oct->fn_list.process_interrupt_regs(oct);

	if (ret == IRQ_HANDLED)
		liquidio_schedule_droq_pkt_handlers(oct);

	/* Re-enable our interrupts  */
	if (!(atomic_read(&oct->status) == OCT_DEV_IN_RESET))
1070
		oct->fn_list.enable_interrupt(oct, OCTEON_ALL_INTR);
1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083

	return ret;
}

/**
 * \brief Setup interrupt for octeon device
 * @param oct octeon device
 *
 *  Enable interrupt in Octeon device as given in the PCI interrupt mask.
 */
static int octeon_setup_interrupt(struct octeon_device *oct)
{
	int irqret, err;
1084 1085 1086 1087
	struct msix_entry *msix_entries;
	int i;
	int num_ioq_vectors;
	int num_alloc_ioq_vectors;
1088

1089 1090 1091 1092
	if (OCTEON_CN23XX_PF(oct) && oct->msix_on) {
		oct->num_msix_irqs = oct->sriov_info.num_pf_rings;
		/* one non ioq interrupt for handling sli_mac_pf_int_sum */
		oct->num_msix_irqs += 1;
1093

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		oct->msix_entries = kcalloc(
		    oct->num_msix_irqs, sizeof(struct msix_entry), GFP_KERNEL);
		if (!oct->msix_entries)
			return 1;

		msix_entries = (struct msix_entry *)oct->msix_entries;
		/*Assumption is that pf msix vectors start from pf srn to pf to
		 * trs and not from 0. if not change this code
		 */
		for (i = 0; i < oct->num_msix_irqs - 1; i++)
			msix_entries[i].entry = oct->sriov_info.pf_srn + i;
		msix_entries[oct->num_msix_irqs - 1].entry =
		    oct->sriov_info.trs;
		num_alloc_ioq_vectors = pci_enable_msix_range(
						oct->pci_dev, msix_entries,
						oct->num_msix_irqs,
						oct->num_msix_irqs);
		if (num_alloc_ioq_vectors < 0) {
			dev_err(&oct->pci_dev->dev, "unable to Allocate MSI-X interrupts\n");
			kfree(oct->msix_entries);
			oct->msix_entries = NULL;
			return 1;
		}
		dev_dbg(&oct->pci_dev->dev, "OCTEON: Enough MSI-X interrupts are allocated...\n");

		num_ioq_vectors = oct->num_msix_irqs;

		/** For PF, there is one non-ioq interrupt handler */
		num_ioq_vectors -= 1;
		irqret = request_irq(msix_entries[num_ioq_vectors].vector,
				     liquidio_legacy_intr_handler, 0, "octeon",
				     oct);
		if (irqret) {
			dev_err(&oct->pci_dev->dev,
				"OCTEON: Request_irq failed for MSIX interrupt Error: %d\n",
				irqret);
			pci_disable_msix(oct->pci_dev);
			kfree(oct->msix_entries);
			oct->msix_entries = NULL;
			return 1;
		}

		for (i = 0; i < num_ioq_vectors; i++) {
			irqret = request_irq(msix_entries[i].vector,
					     liquidio_msix_intr_handler, 0,
					     "octeon", &oct->ioq_vector[i]);
			if (irqret) {
				dev_err(&oct->pci_dev->dev,
					"OCTEON: Request_irq failed for MSIX interrupt Error: %d\n",
					irqret);
				/** Freeing the non-ioq irq vector here . */
				free_irq(msix_entries[num_ioq_vectors].vector,
					 oct);

				while (i) {
					i--;
					/** clearing affinity mask. */
					irq_set_affinity_hint(
						msix_entries[i].vector, NULL);
					free_irq(msix_entries[i].vector,
						 &oct->ioq_vector[i]);
				}
				pci_disable_msix(oct->pci_dev);
				kfree(oct->msix_entries);
				oct->msix_entries = NULL;
				return 1;
			}
			oct->ioq_vector[i].vector = msix_entries[i].vector;
			/* assign the cpu mask for this msix interrupt vector */
			irq_set_affinity_hint(
					msix_entries[i].vector,
					(&oct->ioq_vector[i].affinity_mask));
		}
		dev_dbg(&oct->pci_dev->dev, "OCTEON[%d]: MSI-X enabled\n",
			oct->octeon_id);
	} else {
		err = pci_enable_msi(oct->pci_dev);
		if (err)
			dev_warn(&oct->pci_dev->dev, "Reverting to legacy interrupts. Error: %d\n",
				 err);
		else
			oct->flags |= LIO_FLAG_MSI_ENABLED;

		irqret = request_irq(oct->pci_dev->irq,
				     liquidio_legacy_intr_handler, IRQF_SHARED,
				     "octeon", oct);
		if (irqret) {
			if (oct->flags & LIO_FLAG_MSI_ENABLED)
				pci_disable_msi(oct->pci_dev);
			dev_err(&oct->pci_dev->dev, "Request IRQ failed with code: %d\n",
				irqret);
			return 1;
		}
	}
1188 1189 1190
	return 0;
}

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static int liquidio_watchdog(void *param)
{
	u64 wdog;
	u16 mask_of_stuck_cores = 0;
	u16 mask_of_crashed_cores = 0;
	int core_num;
	u8 core_is_stuck[LIO_MAX_CORES];
	u8 core_crashed[LIO_MAX_CORES];
	struct octeon_device *oct = param;

	memset(core_is_stuck, 0, sizeof(core_is_stuck));
	memset(core_crashed, 0, sizeof(core_crashed));

	while (!kthread_should_stop()) {
		mask_of_crashed_cores =
		    (u16)octeon_read_csr64(oct, CN23XX_SLI_SCRATCH2);

		for (core_num = 0; core_num < LIO_MAX_CORES; core_num++) {
			if (!core_is_stuck[core_num]) {
				wdog = lio_pci_readq(oct, CIU3_WDOG(core_num));

				/* look at watchdog state field */
				wdog &= CIU3_WDOG_MASK;
				if (wdog) {
					/* this watchdog timer has expired */
					core_is_stuck[core_num] =
						LIO_MONITOR_WDOG_EXPIRE;
					mask_of_stuck_cores |= (1 << core_num);
				}
			}

			if (!core_crashed[core_num])
				core_crashed[core_num] =
				    (mask_of_crashed_cores >> core_num) & 1;
		}

		if (mask_of_stuck_cores) {
			for (core_num = 0; core_num < LIO_MAX_CORES;
			     core_num++) {
				if (core_is_stuck[core_num] == 1) {
					dev_err(&oct->pci_dev->dev,
						"ERROR: Octeon core %d is stuck!\n",
						core_num);
					/* 2 means we have printk'd  an error
					 * so no need to repeat the same printk
					 */
					core_is_stuck[core_num] =
						LIO_MONITOR_CORE_STUCK_MSGD;
				}
			}
		}

		if (mask_of_crashed_cores) {
			for (core_num = 0; core_num < LIO_MAX_CORES;
			     core_num++) {
				if (core_crashed[core_num] == 1) {
					dev_err(&oct->pci_dev->dev,
						"ERROR: Octeon core %d crashed!  See oct-fwdump for details.\n",
						core_num);
					/* 2 means we have printk'd  an error
					 * so no need to repeat the same printk
					 */
					core_crashed[core_num] =
						LIO_MONITOR_CORE_STUCK_MSGD;
				}
			}
		}
#ifdef CONFIG_MODULE_UNLOAD
		if (mask_of_stuck_cores || mask_of_crashed_cores) {
			/* make module refcount=0 so that rmmod will work */
			long refcount;

			refcount = module_refcount(THIS_MODULE);

			while (refcount > 0) {
				module_put(THIS_MODULE);
				refcount = module_refcount(THIS_MODULE);
			}

			/* compensate for and withstand an unlikely (but still
			 * possible) race condition
			 */
			while (refcount < 0) {
				try_module_get(THIS_MODULE);
				refcount = module_refcount(THIS_MODULE);
			}
		}
#endif
		/* sleep for two seconds */
		set_current_state(TASK_INTERRUPTIBLE);
		schedule_timeout(2 * HZ);
	}

	return 0;
}

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/**
 * \brief PCI probe handler
 * @param pdev PCI device structure
 * @param ent unused
 */
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static int
liquidio_probe(struct pci_dev *pdev,
	       const struct pci_device_id *ent __attribute__((unused)))
1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305
{
	struct octeon_device *oct_dev = NULL;
	struct handshake *hs;

	oct_dev = octeon_allocate_device(pdev->device,
					 sizeof(struct octeon_device_priv));
	if (!oct_dev) {
		dev_err(&pdev->dev, "Unable to allocate device\n");
		return -ENOMEM;
	}

1306 1307 1308
	if (pdev->device == OCTEON_CN23XX_PF_VID)
		oct_dev->msix_on = LIO_FLAG_MSIX_ENABLED;

1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327
	dev_info(&pdev->dev, "Initializing device %x:%x.\n",
		 (u32)pdev->vendor, (u32)pdev->device);

	/* Assign octeon_device for this device to the private data area. */
	pci_set_drvdata(pdev, oct_dev);

	/* set linux specific device pointer */
	oct_dev->pci_dev = (void *)pdev;

	hs = &handshake[oct_dev->octeon_id];
	init_completion(&hs->init);
	init_completion(&hs->started);
	hs->pci_dev = pdev;

	if (oct_dev->octeon_id == 0)
		/* first LiquidIO NIC is detected */
		complete(&first_stage);

	if (octeon_device_init(oct_dev)) {
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		complete(&hs->init);
1329 1330 1331 1332
		liquidio_remove(pdev);
		return -ENOMEM;
	}

1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352
	if (OCTEON_CN23XX_PF(oct_dev)) {
		u64 scratch1;
		u8 bus, device, function;

		scratch1 = octeon_read_csr64(oct_dev, CN23XX_SLI_SCRATCH1);
		if (!(scratch1 & 4ULL)) {
			/* Bit 2 of SLI_SCRATCH_1 is a flag that indicates that
			 * the lio watchdog kernel thread is running for this
			 * NIC.  Each NIC gets one watchdog kernel thread.
			 */
			scratch1 |= 4ULL;
			octeon_write_csr64(oct_dev, CN23XX_SLI_SCRATCH1,
					   scratch1);

			bus = pdev->bus->number;
			device = PCI_SLOT(pdev->devfn);
			function = PCI_FUNC(pdev->devfn);
			oct_dev->watchdog_task = kthread_create(
			    liquidio_watchdog, oct_dev,
			    "liowd/%02hhx:%02hhx.%hhx", bus, device, function);
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			if (!IS_ERR(oct_dev->watchdog_task)) {
				wake_up_process(oct_dev->watchdog_task);
			} else {
				oct_dev->watchdog_task = NULL;
				dev_err(&oct_dev->pci_dev->dev,
					"failed to create kernel_thread\n");
				liquidio_remove(pdev);
				return -1;
			}
1362 1363 1364
		}
	}

1365 1366 1367
	oct_dev->rx_pause = 1;
	oct_dev->tx_pause = 1;

1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380
	dev_dbg(&oct_dev->pci_dev->dev, "Device is ready\n");

	return 0;
}

/**
 *\brief Destroy resources associated with octeon device
 * @param pdev PCI device structure
 * @param ent unused
 */
static void octeon_destroy_resources(struct octeon_device *oct)
{
	int i;
1381
	struct msix_entry *msix_entries;
1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424
	struct octeon_device_priv *oct_priv =
		(struct octeon_device_priv *)oct->priv;

	struct handshake *hs;

	switch (atomic_read(&oct->status)) {
	case OCT_DEV_RUNNING:
	case OCT_DEV_CORE_OK:

		/* No more instructions will be forwarded. */
		atomic_set(&oct->status, OCT_DEV_IN_RESET);

		oct->app_mode = CVM_DRV_INVALID_APP;
		dev_dbg(&oct->pci_dev->dev, "Device state is now %s\n",
			lio_get_state_string(&oct->status));

		schedule_timeout_uninterruptible(HZ / 10);

		/* fallthrough */
	case OCT_DEV_HOST_OK:

		/* fallthrough */
	case OCT_DEV_CONSOLE_INIT_DONE:
		/* Remove any consoles */
		octeon_remove_consoles(oct);

		/* fallthrough */
	case OCT_DEV_IO_QUEUES_DONE:
		if (wait_for_pending_requests(oct))
			dev_err(&oct->pci_dev->dev, "There were pending requests\n");

		if (lio_wait_for_instr_fetch(oct))
			dev_err(&oct->pci_dev->dev, "IQ had pending instructions\n");

		/* Disable the input and output queues now. No more packets will
		 * arrive from Octeon, but we should wait for all packet
		 * processing to finish.
		 */
		oct->fn_list.disable_io_queues(oct);

		if (lio_wait_for_oq_pkts(oct))
			dev_err(&oct->pci_dev->dev, "OQ had pending packets\n");

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	/* fallthrough */
	case OCT_DEV_INTR_SET_DONE:
1427
		/* Disable interrupts  */
1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440
		oct->fn_list.disable_interrupt(oct, OCTEON_ALL_INTR);

		if (oct->msix_on) {
			msix_entries = (struct msix_entry *)oct->msix_entries;
			for (i = 0; i < oct->num_msix_irqs - 1; i++) {
				/* clear the affinity_cpumask */
				irq_set_affinity_hint(msix_entries[i].vector,
						      NULL);
				free_irq(msix_entries[i].vector,
					 &oct->ioq_vector[i]);
			}
			/* non-iov vector's argument is oct struct */
			free_irq(msix_entries[i].vector, oct);
1441

1442 1443 1444 1445 1446 1447
			pci_disable_msix(oct->pci_dev);
			kfree(oct->msix_entries);
			oct->msix_entries = NULL;
		} else {
			/* Release the interrupt line */
			free_irq(oct->pci_dev->irq, oct);
1448

1449 1450 1451
			if (oct->flags & LIO_FLAG_MSI_ENABLED)
				pci_disable_msi(oct->pci_dev);
		}
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	/* fallthrough */
	case OCT_DEV_MSIX_ALLOC_VECTOR_DONE:
1455 1456
		if (OCTEON_CN23XX_PF(oct))
			octeon_free_ioq_vector(oct);
1457 1458 1459 1460 1461 1462

	/* fallthrough */
	case OCT_DEV_MBOX_SETUP_DONE:
		if (OCTEON_CN23XX_PF(oct))
			oct->fn_list.free_mbox(oct);

1463
	/* fallthrough */
1464 1465
	case OCT_DEV_IN_RESET:
	case OCT_DEV_DROQ_INIT_DONE:
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		/* Wait for any pending operations */
1467
		mdelay(100);
1468
		for (i = 0; i < MAX_OCTEON_OUTPUT_QUEUES(oct); i++) {
1469
			if (!(oct->io_qmask.oq & BIT_ULL(i)))
1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491
				continue;
			octeon_delete_droq(oct, i);
		}

		/* Force any pending handshakes to complete */
		for (i = 0; i < MAX_OCTEON_DEVICES; i++) {
			hs = &handshake[i];

			if (hs->pci_dev) {
				handshake[oct->octeon_id].init_ok = 0;
				complete(&handshake[oct->octeon_id].init);
				handshake[oct->octeon_id].started_ok = 0;
				complete(&handshake[oct->octeon_id].started);
			}
		}

		/* fallthrough */
	case OCT_DEV_RESP_LIST_INIT_DONE:
		octeon_delete_response_list(oct);

		/* fallthrough */
	case OCT_DEV_INSTR_QUEUE_INIT_DONE:
1492
		for (i = 0; i < MAX_OCTEON_INSTR_QUEUES(oct); i++) {
1493
			if (!(oct->io_qmask.iq & BIT_ULL(i)))
1494 1495 1496
				continue;
			octeon_delete_instr_queue(oct, i);
		}
1497 1498 1499 1500
#ifdef CONFIG_PCI_IOV
		if (oct->sriov_info.sriov_enabled)
			pci_disable_sriov(oct->pci_dev);
#endif
1501 1502 1503
		/* fallthrough */
	case OCT_DEV_SC_BUFF_POOL_INIT_DONE:
		octeon_free_sc_buffer_pool(oct);
1504 1505 1506 1507 1508 1509 1510 1511

		/* fallthrough */
	case OCT_DEV_DISPATCH_INIT_DONE:
		octeon_delete_dispatch_list(oct);
		cancel_delayed_work_sync(&oct->nic_poll_work.work);

		/* fallthrough */
	case OCT_DEV_PCI_MAP_DONE:
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		/* Soft reset the octeon device before exiting */
1513 1514
		if ((!OCTEON_CN23XX_PF(oct)) || !oct->octeon_id)
			oct->fn_list.soft_reset(oct);
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1516 1517 1518 1519
		octeon_unmap_pci_barx(oct, 0);
		octeon_unmap_pci_barx(oct, 1);

		/* fallthrough */
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	case OCT_DEV_PCI_ENABLE_DONE:
		pci_clear_master(oct->pci_dev);
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		/* Disable the device, releasing the PCI INT */
		pci_disable_device(oct->pci_dev);

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		/* fallthrough */
	case OCT_DEV_BEGIN_STATE:
1527 1528
		/* Nothing to be done here either */
		break;
1529
	}                       /* end switch (oct->status) */
1530 1531 1532 1533

	tasklet_kill(&oct_priv->droq_tasklet);
}

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/**
 * \brief Callback for rx ctrl
 * @param status status of request
 * @param buf pointer to resp structure
 */
static void rx_ctl_callback(struct octeon_device *oct,
			    u32 status,
			    void *buf)
{
	struct octeon_soft_command *sc = (struct octeon_soft_command *)buf;
	struct liquidio_rx_ctl_context *ctx;

	ctx  = (struct liquidio_rx_ctl_context *)sc->ctxptr;

	oct = lio_get_device(ctx->octeon_id);
	if (status)
		dev_err(&oct->pci_dev->dev, "rx ctl instruction failed. Status: %llx\n",
			CVM_CAST64(status));
	WRITE_ONCE(ctx->cond, 1);

	/* This barrier is required to be sure that the response has been
	 * written fully before waking up the handler
	 */
	wmb();

	wake_up_interruptible(&ctx->wc);
}

1562 1563 1564 1565 1566 1567 1568
/**
 * \brief Send Rx control command
 * @param lio per-network private data
 * @param start_stop whether to start or stop
 */
static void send_rx_ctrl_cmd(struct lio *lio, int start_stop)
{
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	struct octeon_soft_command *sc;
	struct liquidio_rx_ctl_context *ctx;
	union octnet_cmd *ncmd;
	int ctx_size = sizeof(struct liquidio_rx_ctl_context);
	struct octeon_device *oct = (struct octeon_device *)lio->oct_dev;
	int retval;
1575

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	if (oct->props[lio->ifidx].rx_on == start_stop)
		return;
1578

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	sc = (struct octeon_soft_command *)
		octeon_alloc_soft_command(oct, OCTNET_CMD_SIZE,
					  16, ctx_size);

	ncmd = (union octnet_cmd *)sc->virtdptr;
	ctx  = (struct liquidio_rx_ctl_context *)sc->ctxptr;

	WRITE_ONCE(ctx->cond, 0);
	ctx->octeon_id = lio_get_device_id(oct);
	init_waitqueue_head(&ctx->wc);

	ncmd->u64 = 0;
	ncmd->s.cmd = OCTNET_CMD_RX_CTL;
	ncmd->s.param1 = start_stop;

	octeon_swap_8B_data((u64 *)ncmd, (OCTNET_CMD_SIZE >> 3));

	sc->iq_no = lio->linfo.txpciq[0].s.q_no;

	octeon_prepare_soft_command(oct, sc, OPCODE_NIC,
				    OPCODE_NIC_CMD, 0, 0, 0);

	sc->callback = rx_ctl_callback;
	sc->callback_arg = sc;
	sc->wait_time = 5000;
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	retval = octeon_send_soft_command(oct, sc);
	if (retval == IQ_SEND_FAILED) {
1607
		netif_info(lio, rx_err, lio->netdev, "Failed to send RX Control message\n");
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	} else {
		/* Sleep on a wait queue till the cond flag indicates that the
		 * response arrived or timed-out.
		 */
		if (sleep_cond(&ctx->wc, &ctx->cond) == -EINTR)
			return;
		oct->props[lio->ifidx].rx_on = start_stop;
	}

	octeon_free_soft_command(oct, sc);
1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631
}

/**
 * \brief Destroy NIC device interface
 * @param oct octeon device
 * @param ifidx which interface to destroy
 *
 * Cleanup associated with each interface for an Octeon device  when NIC
 * module is being unloaded or if initialization fails during load.
 */
static void liquidio_destroy_nic_device(struct octeon_device *oct, int ifidx)
{
	struct net_device *netdev = oct->props[ifidx].netdev;
	struct lio *lio;
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	struct napi_struct *napi, *n;
1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644

	if (!netdev) {
		dev_err(&oct->pci_dev->dev, "%s No netdevice ptr for index %d\n",
			__func__, ifidx);
		return;
	}

	lio = GET_LIO(netdev);

	dev_dbg(&oct->pci_dev->dev, "NIC device cleanup\n");

	if (atomic_read(&lio->ifstate) & LIO_IFSTATE_RUNNING)
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		liquidio_stop(netdev);
1646

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	if (oct->props[lio->ifidx].napi_enabled == 1) {
		list_for_each_entry_safe(napi, n, &netdev->napi_list, dev_list)
			napi_disable(napi);

		oct->props[lio->ifidx].napi_enabled = 0;
1652 1653 1654

		if (OCTEON_CN23XX_PF(oct))
			oct->droq[0]->ops.poll_mode = 0;
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	}

1657 1658 1659
	if (atomic_read(&lio->ifstate) & LIO_IFSTATE_REGISTERED)
		unregister_netdev(netdev);

1660 1661
	cleanup_link_status_change_wq(netdev);

1662
	delete_glists(lio);
1663 1664 1665

	free_netdev(netdev);

1666 1667
	oct->props[ifidx].gmxport = -1;

1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685
	oct->props[ifidx].netdev = NULL;
}

/**
 * \brief Stop complete NIC functionality
 * @param oct octeon device
 */
static int liquidio_stop_nic_module(struct octeon_device *oct)
{
	int i, j;
	struct lio *lio;

	dev_dbg(&oct->pci_dev->dev, "Stopping network interfaces\n");
	if (!oct->ifcount) {
		dev_err(&oct->pci_dev->dev, "Init for Octeon was not completed\n");
		return 1;
	}

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	spin_lock_bh(&oct->cmd_resp_wqlock);
	oct->cmd_resp_state = OCT_DRV_OFFLINE;
	spin_unlock_bh(&oct->cmd_resp_wqlock);

1690 1691 1692
	for (i = 0; i < oct->ifcount; i++) {
		lio = GET_LIO(oct->props[i].netdev);
		for (j = 0; j < lio->linfo.num_rxpciq; j++)
1693 1694
			octeon_unregister_droq_ops(oct,
						   lio->linfo.rxpciq[j].s.q_no);
1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713
	}

	for (i = 0; i < oct->ifcount; i++)
		liquidio_destroy_nic_device(oct, i);

	dev_dbg(&oct->pci_dev->dev, "Network interfaces stopped\n");
	return 0;
}

/**
 * \brief Cleans up resources at unload time
 * @param pdev PCI device structure
 */
static void liquidio_remove(struct pci_dev *pdev)
{
	struct octeon_device *oct_dev = pci_get_drvdata(pdev);

	dev_dbg(&oct_dev->pci_dev->dev, "Stopping device\n");

1714 1715 1716
	if (oct_dev->watchdog_task)
		kthread_stop(oct_dev->watchdog_task);

1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740
	if (oct_dev->app_mode && (oct_dev->app_mode == CVM_DRV_NIC_APP))
		liquidio_stop_nic_module(oct_dev);

	/* Reset the octeon device and cleanup all memory allocated for
	 * the octeon device by driver.
	 */
	octeon_destroy_resources(oct_dev);

	dev_info(&oct_dev->pci_dev->dev, "Device removed\n");

	/* This octeon device has been removed. Update the global
	 * data structure to reflect this. Free the device structure.
	 */
	octeon_free_device_mem(oct_dev);
}

/**
 * \brief Identify the Octeon device and to map the BAR address space
 * @param oct octeon device
 */
static int octeon_chip_specific_setup(struct octeon_device *oct)
{
	u32 dev_id, rev_id;
	int ret = 1;
1741
	char *s;
1742 1743 1744 1745 1746 1747 1748 1749 1750

	pci_read_config_dword(oct->pci_dev, 0, &dev_id);
	pci_read_config_dword(oct->pci_dev, 8, &rev_id);
	oct->rev_id = rev_id & 0xff;

	switch (dev_id) {
	case OCTEON_CN68XX_PCIID:
		oct->chip_id = OCTEON_CN68XX;
		ret = lio_setup_cn68xx_octeon_device(oct);
1751
		s = "CN68XX";
1752 1753 1754 1755 1756
		break;

	case OCTEON_CN66XX_PCIID:
		oct->chip_id = OCTEON_CN66XX;
		ret = lio_setup_cn66xx_octeon_device(oct);
1757
		s = "CN66XX";
1758
		break;
1759

1760 1761 1762 1763 1764 1765
	case OCTEON_CN23XX_PCIID_PF:
		oct->chip_id = OCTEON_CN23XX_PF_VID;
		ret = setup_cn23xx_octeon_pf_device(oct);
		s = "CN23XX";
		break;

1766
	default:
1767
		s = "?";
1768 1769 1770 1771 1772
		dev_err(&oct->pci_dev->dev, "Unknown device found (dev_id: %x)\n",
			dev_id);
	}

	if (!ret)
1773
		dev_info(&oct->pci_dev->dev, "%s PASS%d.%d %s Version: %s\n", s,
1774 1775
			 OCTEON_MAJOR_REV(oct),
			 OCTEON_MINOR_REV(oct),
1776 1777
			 octeon_get_conf(oct)->card_name,
			 LIQUIDIO_VERSION);
1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795

	return ret;
}

/**
 * \brief PCI initialization for each Octeon device.
 * @param oct octeon device
 */
static int octeon_pci_os_setup(struct octeon_device *oct)
{
	/* setup PCI stuff first */
	if (pci_enable_device(oct->pci_dev)) {
		dev_err(&oct->pci_dev->dev, "pci_enable_device failed\n");
		return 1;
	}

	if (dma_set_mask_and_coherent(&oct->pci_dev->dev, DMA_BIT_MASK(64))) {
		dev_err(&oct->pci_dev->dev, "Unexpected DMA device capability\n");
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		pci_disable_device(oct->pci_dev);
1797 1798 1799 1800 1801 1802 1803 1804 1805
		return 1;
	}

	/* Enable PCI DMA Master. */
	pci_set_master(oct->pci_dev);

	return 0;
}

1806 1807 1808 1809 1810 1811 1812 1813 1814 1815
static inline int skb_iq(struct lio *lio, struct sk_buff *skb)
{
	int q = 0;

	if (netif_is_multiqueue(lio->netdev))
		q = skb->queue_mapping % lio->linfo.num_txpciq;

	return q;
}

1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826
/**
 * \brief Check Tx queue state for a given network buffer
 * @param lio per-network private data
 * @param skb network buffer
 */
static inline int check_txq_state(struct lio *lio, struct sk_buff *skb)
{
	int q = 0, iq = 0;

	if (netif_is_multiqueue(lio->netdev)) {
		q = skb->queue_mapping;
1827
		iq = lio->linfo.txpciq[(q % (lio->linfo.num_txpciq))].s.q_no;
1828 1829
	} else {
		iq = lio->txq;
1830
		q = iq;
1831 1832 1833 1834
	}

	if (octnet_iq_is_full(lio->oct_dev, iq))
		return 0;
1835

1836 1837
	if (__netif_subqueue_stopped(lio->netdev, q)) {
		INCR_INSTRQUEUE_PKT_COUNT(lio->oct_dev, iq, tx_restart, 1);
1838
		wake_q(lio->netdev, q);
1839
	}
1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861
	return 1;
}

/**
 * \brief Unmap and free network buffer
 * @param buf buffer
 */
static void free_netbuf(void *buf)
{
	struct sk_buff *skb;
	struct octnet_buf_free_info *finfo;
	struct lio *lio;

	finfo = (struct octnet_buf_free_info *)buf;
	skb = finfo->skb;
	lio = finfo->lio;

	dma_unmap_single(&lio->oct_dev->pci_dev->dev, finfo->dptr, skb->len,
			 DMA_TO_DEVICE);

	check_txq_state(lio, skb);

1862
	tx_buffer_free(skb);
1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874
}

/**
 * \brief Unmap and free gather buffer
 * @param buf buffer
 */
static void free_netsgbuf(void *buf)
{
	struct octnet_buf_free_info *finfo;
	struct sk_buff *skb;
	struct lio *lio;
	struct octnic_gather *g;
1875
	int i, frags, iq;
1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896

	finfo = (struct octnet_buf_free_info *)buf;
	skb = finfo->skb;
	lio = finfo->lio;
	g = finfo->g;
	frags = skb_shinfo(skb)->nr_frags;

	dma_unmap_single(&lio->oct_dev->pci_dev->dev,
			 g->sg[0].ptr[0], (skb->len - skb->data_len),
			 DMA_TO_DEVICE);

	i = 1;
	while (frags--) {
		struct skb_frag_struct *frag = &skb_shinfo(skb)->frags[i - 1];

		pci_unmap_page((lio->oct_dev)->pci_dev,
			       g->sg[(i >> 2)].ptr[(i & 3)],
			       frag->size, DMA_TO_DEVICE);
		i++;
	}

1897 1898
	dma_sync_single_for_cpu(&lio->oct_dev->pci_dev->dev,
				g->sg_dma_ptr, g->sg_size, DMA_TO_DEVICE);
1899

1900 1901 1902 1903
	iq = skb_iq(lio, skb);
	spin_lock(&lio->glist_lock[iq]);
	list_add_tail(&g->list, &lio->glist[iq]);
	spin_unlock(&lio->glist_lock[iq]);
1904 1905 1906

	check_txq_state(lio, skb);     /* mq support: sub-queue state check */

1907
	tx_buffer_free(skb);
1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919 1920
}

/**
 * \brief Unmap and free gather buffer with response
 * @param buf buffer
 */
static void free_netsgbuf_with_resp(void *buf)
{
	struct octeon_soft_command *sc;
	struct octnet_buf_free_info *finfo;
	struct sk_buff *skb;
	struct lio *lio;
	struct octnic_gather *g;
1921
	int i, frags, iq;
1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944

	sc = (struct octeon_soft_command *)buf;
	skb = (struct sk_buff *)sc->callback_arg;
	finfo = (struct octnet_buf_free_info *)&skb->cb;

	lio = finfo->lio;
	g = finfo->g;
	frags = skb_shinfo(skb)->nr_frags;

	dma_unmap_single(&lio->oct_dev->pci_dev->dev,
			 g->sg[0].ptr[0], (skb->len - skb->data_len),
			 DMA_TO_DEVICE);

	i = 1;
	while (frags--) {
		struct skb_frag_struct *frag = &skb_shinfo(skb)->frags[i - 1];

		pci_unmap_page((lio->oct_dev)->pci_dev,
			       g->sg[(i >> 2)].ptr[(i & 3)],
			       frag->size, DMA_TO_DEVICE);
		i++;
	}

1945 1946
	dma_sync_single_for_cpu(&lio->oct_dev->pci_dev->dev,
				g->sg_dma_ptr, g->sg_size, DMA_TO_DEVICE);
1947

1948 1949 1950 1951 1952
	iq = skb_iq(lio, skb);

	spin_lock(&lio->glist_lock[iq]);
	list_add_tail(&g->list, &lio->glist[iq]);
	spin_unlock(&lio->glist_lock[iq]);
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	/* Don't free the skb yet */

	check_txq_state(lio, skb);
}

/**
 * \brief Adjust ptp frequency
 * @param ptp PTP clock info
 * @param ppb how much to adjust by, in parts-per-billion
 */
static int liquidio_ptp_adjfreq(struct ptp_clock_info *ptp, s32 ppb)
{
	struct lio *lio = container_of(ptp, struct lio, ptp_info);
	struct octeon_device *oct = (struct octeon_device *)lio->oct_dev;
	u64 comp, delta;
	unsigned long flags;
	bool neg_adj = false;

	if (ppb < 0) {
		neg_adj = true;
		ppb = -ppb;
	}

	/* The hardware adds the clock compensation value to the
	 * PTP clock on every coprocessor clock cycle, so we
	 * compute the delta in terms of coprocessor clocks.
	 */
	delta = (u64)ppb << 32;
	do_div(delta, oct->coproc_clock_rate);

	spin_lock_irqsave(&lio->ptp_lock, flags);
	comp = lio_pci_readq(oct, CN6XXX_MIO_PTP_CLOCK_COMP);
	if (neg_adj)
		comp -= delta;
	else
		comp += delta;
	lio_pci_writeq(oct, comp, CN6XXX_MIO_PTP_CLOCK_COMP);
	spin_unlock_irqrestore(&lio->ptp_lock, flags);

	return 0;
}

/**
 * \brief Adjust ptp time
 * @param ptp PTP clock info
 * @param delta how much to adjust by, in nanosecs
 */
static int liquidio_ptp_adjtime(struct ptp_clock_info *ptp, s64 delta)
{
	unsigned long flags;
	struct lio *lio = container_of(ptp, struct lio, ptp_info);

	spin_lock_irqsave(&lio->ptp_lock, flags);
	lio->ptp_adjust += delta;
	spin_unlock_irqrestore(&lio->ptp_lock, flags);

	return 0;
}

/**
 * \brief Get hardware clock time, including any adjustment
 * @param ptp PTP clock info
 * @param ts timespec
 */
static int liquidio_ptp_gettime(struct ptp_clock_info *ptp,
				struct timespec64 *ts)
{
	u64 ns;
	unsigned long flags;
	struct lio *lio = container_of(ptp, struct lio, ptp_info);
	struct octeon_device *oct = (struct octeon_device *)lio->oct_dev;

	spin_lock_irqsave(&lio->ptp_lock, flags);
	ns = lio_pci_readq(oct, CN6XXX_MIO_PTP_CLOCK_HI);
	ns += lio->ptp_adjust;
	spin_unlock_irqrestore(&lio->ptp_lock, flags);

2031
	*ts = ns_to_timespec64(ns);
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	return 0;
}

/**
 * \brief Set hardware clock time. Reset adjustment
 * @param ptp PTP clock info
 * @param ts timespec
 */
static int liquidio_ptp_settime(struct ptp_clock_info *ptp,
				const struct timespec64 *ts)
{
	u64 ns;
	unsigned long flags;
	struct lio *lio = container_of(ptp, struct lio, ptp_info);
	struct octeon_device *oct = (struct octeon_device *)lio->oct_dev;

	ns = timespec_to_ns(ts);

	spin_lock_irqsave(&lio->ptp_lock, flags);
	lio_pci_writeq(oct, ns, CN6XXX_MIO_PTP_CLOCK_HI);
	lio->ptp_adjust = 0;
	spin_unlock_irqrestore(&lio->ptp_lock, flags);

	return 0;
}

/**
 * \brief Check if PTP is enabled
 * @param ptp PTP clock info
 * @param rq request
 * @param on is it on
 */
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static int
liquidio_ptp_enable(struct ptp_clock_info *ptp __attribute__((unused)),
		    struct ptp_clock_request *rq __attribute__((unused)),
		    int on __attribute__((unused)))
2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154
{
	return -EOPNOTSUPP;
}

/**
 * \brief Open PTP clock source
 * @param netdev network device
 */
static void oct_ptp_open(struct net_device *netdev)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = (struct octeon_device *)lio->oct_dev;

	spin_lock_init(&lio->ptp_lock);

	snprintf(lio->ptp_info.name, 16, "%s", netdev->name);
	lio->ptp_info.owner = THIS_MODULE;
	lio->ptp_info.max_adj = 250000000;
	lio->ptp_info.n_alarm = 0;
	lio->ptp_info.n_ext_ts = 0;
	lio->ptp_info.n_per_out = 0;
	lio->ptp_info.pps = 0;
	lio->ptp_info.adjfreq = liquidio_ptp_adjfreq;
	lio->ptp_info.adjtime = liquidio_ptp_adjtime;
	lio->ptp_info.gettime64 = liquidio_ptp_gettime;
	lio->ptp_info.settime64 = liquidio_ptp_settime;
	lio->ptp_info.enable = liquidio_ptp_enable;

	lio->ptp_adjust = 0;

	lio->ptp_clock = ptp_clock_register(&lio->ptp_info,
					     &oct->pci_dev->dev);

	if (IS_ERR(lio->ptp_clock))
		lio->ptp_clock = NULL;
}

/**
 * \brief Init PTP clock
 * @param oct octeon device
 */
static void liquidio_ptp_init(struct octeon_device *oct)
{
	u64 clock_comp, cfg;

	clock_comp = (u64)NSEC_PER_SEC << 32;
	do_div(clock_comp, oct->coproc_clock_rate);
	lio_pci_writeq(oct, clock_comp, CN6XXX_MIO_PTP_CLOCK_COMP);

	/* Enable */
	cfg = lio_pci_readq(oct, CN6XXX_MIO_PTP_CLOCK_CFG);
	lio_pci_writeq(oct, cfg | 0x01, CN6XXX_MIO_PTP_CLOCK_CFG);
}

/**
 * \brief Load firmware to device
 * @param oct octeon device
 *
 * Maps device to firmware filename, requests firmware, and downloads it
 */
static int load_firmware(struct octeon_device *oct)
{
	int ret = 0;
	const struct firmware *fw;
	char fw_name[LIO_MAX_FW_FILENAME_LEN];
	char *tmp_fw_type;

	if (strncmp(fw_type, LIO_FW_NAME_TYPE_NONE,
		    sizeof(LIO_FW_NAME_TYPE_NONE)) == 0) {
		dev_info(&oct->pci_dev->dev, "Skipping firmware load\n");
		return ret;
	}

	if (fw_type[0] == '\0')
		tmp_fw_type = LIO_FW_NAME_TYPE_NIC;
	else
		tmp_fw_type = fw_type;

	sprintf(fw_name, "%s%s%s_%s%s", LIO_FW_DIR, LIO_FW_BASE_NAME,
		octeon_get_conf(oct)->card_name, tmp_fw_type,
		LIO_FW_NAME_SUFFIX);

	ret = request_firmware(&fw, fw_name, &oct->pci_dev->dev);
	if (ret) {
		dev_err(&oct->pci_dev->dev, "Request firmware failed. Could not find file %s.\n.",
			fw_name);
2155
		release_firmware(fw);
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		return ret;
	}

	ret = octeon_download_firmware(oct, fw->data, fw->size);

	release_firmware(fw);

	return ret;
}

/**
 * \brief Setup output queue
 * @param oct octeon device
 * @param q_no which queue
 * @param num_descs how many descriptors
 * @param desc_size size of each descriptor
 * @param app_ctx application context
 */
static int octeon_setup_droq(struct octeon_device *oct, int q_no, int num_descs,
			     int desc_size, void *app_ctx)
{
	int ret_val = 0;

	dev_dbg(&oct->pci_dev->dev, "Creating Droq: %d\n", q_no);
	/* droq creation and local register settings. */
	ret_val = octeon_create_droq(oct, q_no, num_descs, desc_size, app_ctx);
2182
	if (ret_val < 0)
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		return ret_val;

	if (ret_val == 1) {
		dev_dbg(&oct->pci_dev->dev, "Using default droq %d\n", q_no);
		return 0;
	}
	/* tasklet creation for the droq */

	/* Enable the droq queues */
	octeon_set_droq_pkt_op(oct, q_no, 1);

	/* Send Credit for Octeon Output queues. Credits are always
	 * sent after the output queue is enabled.
	 */
	writel(oct->droq[q_no]->max_count,
	       oct->droq[q_no]->pkts_credit_reg);

	return ret_val;
}

/**
 * \brief Callback for getting interface configuration
 * @param status status of request
 * @param buf pointer to resp structure
 */
static void if_cfg_callback(struct octeon_device *oct,
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			    u32 status __attribute__((unused)),
2210 2211 2212 2213 2214 2215 2216
			    void *buf)
{
	struct octeon_soft_command *sc = (struct octeon_soft_command *)buf;
	struct liquidio_if_cfg_resp *resp;
	struct liquidio_if_cfg_context *ctx;

	resp = (struct liquidio_if_cfg_resp *)sc->virtrptr;
2217
	ctx = (struct liquidio_if_cfg_context *)sc->ctxptr;
2218 2219 2220 2221 2222

	oct = lio_get_device(ctx->octeon_id);
	if (resp->status)
		dev_err(&oct->pci_dev->dev, "nic if cfg instruction failed. Status: %llx\n",
			CVM_CAST64(resp->status));
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	WRITE_ONCE(ctx->cond, 1);
2224

2225 2226 2227
	snprintf(oct->fw_info.liquidio_firmware_version, 32, "%s",
		 resp->cfg_info.liquidio_firmware_version);

2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242
	/* This barrier is required to be sure that the response has been
	 * written fully before waking up the handler
	 */
	wmb();

	wake_up_interruptible(&ctx->wc);
}

/**
 * \brief Select queue based on hash
 * @param dev Net device
 * @param skb sk_buff structure
 * @returns selected queue number
 */
static u16 select_q(struct net_device *dev, struct sk_buff *skb,
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		    void *accel_priv __attribute__((unused)),
		    select_queue_fallback_t fallback __attribute__((unused)))
2245
{
2246
	u32 qindex = 0;
2247 2248 2249
	struct lio *lio;

	lio = GET_LIO(dev);
2250 2251 2252
	qindex = skb_tx_hash(dev, skb);

	return (u16)(qindex % (lio->linfo.num_txpciq));
2253 2254 2255 2256 2257 2258 2259 2260
}

/** Routine to push packets arriving on Octeon interface upto network layer.
 * @param oct_id   - octeon device id.
 * @param skbuff   - skbuff struct to be passed to network layer.
 * @param len      - size of total data received.
 * @param rh       - Control header associated with the packet
 * @param param    - additional control data with the packet
2261
 * @param arg	   - farg registered in droq_ops
2262 2263
 */
static void
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liquidio_push_packet(u32 octeon_id __attribute__((unused)),
2265 2266 2267
		     void *skbuff,
		     u32 len,
		     union octeon_rh *rh,
2268 2269
		     void *param,
		     void *arg)
2270 2271 2272 2273 2274
{
	struct napi_struct *napi = param;
	struct sk_buff *skb = (struct sk_buff *)skbuff;
	struct skb_shared_hwtstamps *shhwtstamps;
	u64 ns;
2275
	u16 vtag = 0;
2276
	struct net_device *netdev = (struct net_device *)arg;
2277 2278 2279 2280 2281
	struct octeon_droq *droq = container_of(param, struct octeon_droq,
						napi);
	if (netdev) {
		int packet_was_received;
		struct lio *lio = GET_LIO(netdev);
2282
		struct octeon_device *oct = lio->oct_dev;
2283 2284 2285 2286 2287 2288 2289 2290 2291 2292

		/* Do not proceed if the interface is not in RUNNING state. */
		if (!ifstate_check(lio, LIO_IFSTATE_RUNNING)) {
			recv_buffer_free(skb);
			droq->stats.rx_dropped++;
			return;
		}

		skb->dev = netdev;

2293
		skb_record_rx_queue(skb, droq->q_no);
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		if (likely(len > MIN_SKB_SIZE)) {
			struct octeon_skb_page_info *pg_info;
			unsigned char *va;

			pg_info = ((struct octeon_skb_page_info *)(skb->cb));
			if (pg_info->page) {
				/* For Paged allocation use the frags */
				va = page_address(pg_info->page) +
					pg_info->page_offset;
				memcpy(skb->data, va, MIN_SKB_SIZE);
				skb_put(skb, MIN_SKB_SIZE);
				skb_add_rx_frag(skb, skb_shinfo(skb)->nr_frags,
						pg_info->page,
						pg_info->page_offset +
						MIN_SKB_SIZE,
						len - MIN_SKB_SIZE,
						LIO_RXBUFFER_SZ);
			}
		} else {
			struct octeon_skb_page_info *pg_info =
				((struct octeon_skb_page_info *)(skb->cb));
			skb_copy_to_linear_data(skb, page_address(pg_info->page)
						+ pg_info->page_offset, len);
			skb_put(skb, len);
			put_page(pg_info->page);
		}
2320

2321 2322 2323 2324 2325 2326
		if (((oct->chip_id == OCTEON_CN66XX) ||
		     (oct->chip_id == OCTEON_CN68XX)) &&
		    ptp_enable) {
			if (rh->r_dh.has_hwtstamp) {
				/* timestamp is included from the hardware at
				 * the beginning of the packet.
2327
				 */
2328 2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339
				if (ifstate_check
				    (lio, LIO_IFSTATE_RX_TIMESTAMP_ENABLED)) {
					/* Nanoseconds are in the first 64-bits
					 * of the packet.
					 */
					memcpy(&ns, (skb->data), sizeof(ns));
					shhwtstamps = skb_hwtstamps(skb);
					shhwtstamps->hwtstamp =
						ns_to_ktime(ns +
							    lio->ptp_adjust);
				}
				skb_pull(skb, sizeof(ns));
2340 2341 2342 2343 2344
			}
		}

		skb->protocol = eth_type_trans(skb, skb->dev);
		if ((netdev->features & NETIF_F_RXCSUM) &&
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		    (((rh->r_dh.encap_on) &&
		      (rh->r_dh.csum_verified & CNNIC_TUN_CSUM_VERIFIED)) ||
		     (!(rh->r_dh.encap_on) &&
		      (rh->r_dh.csum_verified & CNNIC_CSUM_VERIFIED))))
2349 2350 2351 2352 2353
			/* checksum has already been verified */
			skb->ip_summed = CHECKSUM_UNNECESSARY;
		else
			skb->ip_summed = CHECKSUM_NONE;

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		/* Setting Encapsulation field on basis of status received
		 * from the firmware
		 */
		if (rh->r_dh.encap_on) {
			skb->encapsulation = 1;
			skb->csum_level = 1;
			droq->stats.rx_vxlan++;
		}

2363 2364 2365 2366 2367 2368 2369 2370 2371 2372
		/* inbound VLAN tag */
		if ((netdev->features & NETIF_F_HW_VLAN_CTAG_RX) &&
		    (rh->r_dh.vlan != 0)) {
			u16 vid = rh->r_dh.vlan;
			u16 priority = rh->r_dh.priority;

			vtag = priority << 13 | vid;
			__vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q), vtag);
		}

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		packet_was_received = napi_gro_receive(napi, skb) != GRO_DROP;

		if (packet_was_received) {
			droq->stats.rx_bytes_received += len;
			droq->stats.rx_pkts_received++;
			netdev->last_rx = jiffies;
		} else {
			droq->stats.rx_dropped++;
			netif_info(lio, rx_err, lio->netdev,
				   "droq:%d  error rx_dropped:%llu\n",
				   droq->q_no, droq->stats.rx_dropped);
		}

	} else {
		recv_buffer_free(skb);
	}
}

/**
 * \brief wrapper for calling napi_schedule
 * @param param parameters to pass to napi_schedule
 *
 * Used when scheduling on different CPUs
 */
static void napi_schedule_wrapper(void *param)
{
	struct napi_struct *napi = param;

	napi_schedule(napi);
}

/**
 * \brief callback when receive interrupt occurs and we are in NAPI mode
 * @param arg pointer to octeon output queue
 */
static void liquidio_napi_drv_callback(void *arg)
{
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	struct octeon_device *oct;
2411 2412 2413
	struct octeon_droq *droq = arg;
	int this_cpu = smp_processor_id();

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	oct = droq->oct_dev;

	if (OCTEON_CN23XX_PF(oct) || droq->cpu_id == this_cpu) {
		napi_schedule_irqoff(&droq->napi);
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	} else {
		struct call_single_data *csd = &droq->csd;

		csd->func = napi_schedule_wrapper;
		csd->info = &droq->napi;
		csd->flags = 0;

		smp_call_function_single_async(droq->cpu_id, csd);
	}
}

/**
 * \brief Entry point for NAPI polling
 * @param napi NAPI structure
 * @param budget maximum number of items to process
 */
static int liquidio_napi_poll(struct napi_struct *napi, int budget)
{
	struct octeon_droq *droq;
	int work_done;
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	int tx_done = 0, iq_no;
	struct octeon_instr_queue *iq;
	struct octeon_device *oct;
2441 2442

	droq = container_of(napi, struct octeon_droq, napi);
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	oct = droq->oct_dev;
	iq_no = droq->q_no;
	/* Handle Droq descriptors */
	work_done = octeon_process_droq_poll_cmd(oct, droq->q_no,
						 POLL_EVENT_PROCESS_PKTS,
						 budget);
2449

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	/* Flush the instruction queue */
	iq = oct->instr_queue[iq_no];
	if (iq) {
		/* Process iq buffers with in the budget limits */
		tx_done = octeon_flush_iq(oct, iq, 1, budget);
		/* Update iq read-index rather than waiting for next interrupt.
		 * Return back if tx_done is false.
		 */
		update_txq_status(oct, iq_no);
	} else {
		dev_err(&oct->pci_dev->dev, "%s:  iq (%d) num invalid\n",
			__func__, iq_no);
	}
2463

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	if ((work_done < budget) && (tx_done)) {
2465 2466 2467 2468 2469 2470
		napi_complete(napi);
		octeon_process_droq_poll_cmd(droq->oct_dev, droq->q_no,
					     POLL_EVENT_ENABLE_INTR, 0);
		return 0;
	}

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	return (!tx_done) ? (budget) : (work_done);
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}

/**
 * \brief Setup input and output queues
 * @param octeon_dev octeon device
2477
 * @param ifidx  Interface Index
2478 2479 2480 2481 2482 2483
 *
 * Note: Queues are with respect to the octeon device. Thus
 * an input queue is for egress packets, and output queues
 * are for ingress packets.
 */
static inline int setup_io_queues(struct octeon_device *octeon_dev,
2484
				  int ifidx)
2485
{
2486 2487
	struct octeon_droq_ops droq_ops;
	struct net_device *netdev;
2488 2489 2490 2491 2492 2493 2494 2495
	static int cpu_id;
	static int cpu_id_modulus;
	struct octeon_droq *droq;
	struct napi_struct *napi;
	int q, q_no, retval = 0;
	struct lio *lio;
	int num_tx_descs;

2496 2497 2498
	netdev = octeon_dev->props[ifidx].netdev;

	lio = GET_LIO(netdev);
2499

2500
	memset(&droq_ops, 0, sizeof(struct octeon_droq_ops));
2501

2502 2503 2504 2505 2506 2507 2508
	droq_ops.fptr = liquidio_push_packet;
	droq_ops.farg = (void *)netdev;

	droq_ops.poll_mode = 1;
	droq_ops.napi_fn = liquidio_napi_drv_callback;
	cpu_id = 0;
	cpu_id_modulus = num_present_cpus();
2509 2510 2511

	/* set up DROQs. */
	for (q = 0; q < lio->linfo.num_rxpciq; q++) {
2512 2513 2514 2515
		q_no = lio->linfo.rxpciq[q].s.q_no;
		dev_dbg(&octeon_dev->pci_dev->dev,
			"setup_io_queues index:%d linfo.rxpciq.s.q_no:%d\n",
			q, q_no);
2516 2517 2518 2519 2520 2521 2522 2523 2524
		retval = octeon_setup_droq(octeon_dev, q_no,
					   CFG_GET_NUM_RX_DESCS_NIC_IF
						   (octeon_get_conf(octeon_dev),
						   lio->ifidx),
					   CFG_GET_NUM_RX_BUF_SIZE_NIC_IF
						   (octeon_get_conf(octeon_dev),
						   lio->ifidx), NULL);
		if (retval) {
			dev_err(&octeon_dev->pci_dev->dev,
2525
				"%s : Runtime DROQ(RxQ) creation failed.\n",
2526 2527 2528 2529 2530 2531
				__func__);
			return 1;
		}

		droq = octeon_dev->droq[q_no];
		napi = &droq->napi;
2532 2533
		dev_dbg(&octeon_dev->pci_dev->dev, "netif_napi_add netdev:%llx oct:%llx pf_num:%d\n",
			(u64)netdev, (u64)octeon_dev, octeon_dev->pf_num);
2534
		netif_napi_add(netdev, napi, liquidio_napi_poll, 64);
2535 2536 2537 2538 2539 2540 2541 2542 2543 2544

		/* designate a CPU for this droq */
		droq->cpu_id = cpu_id;
		cpu_id++;
		if (cpu_id >= cpu_id_modulus)
			cpu_id = 0;

		octeon_register_droq_ops(octeon_dev, q_no, &droq_ops);
	}

2545 2546 2547 2548 2549 2550 2551 2552
	if (OCTEON_CN23XX_PF(octeon_dev)) {
		/* 23XX PF can receive control messages (via the first PF-owned
		 * droq) from the firmware even if the ethX interface is down,
		 * so that's why poll_mode must be off for the first droq.
		 */
		octeon_dev->droq[0]->ops.poll_mode = 0;
	}

2553 2554 2555 2556 2557
	/* set up IQs. */
	for (q = 0; q < lio->linfo.num_txpciq; q++) {
		num_tx_descs = CFG_GET_NUM_TX_DESCS_NIC_IF(octeon_get_conf
							   (octeon_dev),
							   lio->ifidx);
2558 2559 2560
		retval = octeon_setup_iq(octeon_dev, ifidx, q,
					 lio->linfo.txpciq[q], num_tx_descs,
					 netdev_get_tx_queue(netdev, q));
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
		if (retval) {
			dev_err(&octeon_dev->pci_dev->dev,
				" %s : Runtime IQ(TxQ) creation failed.\n",
				__func__);
			return 1;
		}
	}

	return 0;
}

/**
 * \brief Poll routine for checking transmit queue status
 * @param work work_struct data structure
 */
static void octnet_poll_check_txq_status(struct work_struct *work)
{
	struct cavium_wk *wk = (struct cavium_wk *)work;
	struct lio *lio = (struct lio *)wk->ctxptr;

	if (!ifstate_check(lio, LIO_IFSTATE_RUNNING))
		return;

	check_txq_status(lio);
	queue_delayed_work(lio->txq_status_wq.wq,
			   &lio->txq_status_wq.wk.work, msecs_to_jiffies(1));
}

/**
 * \brief Sets up the txq poll check
 * @param netdev network device
 */
2593
static inline int setup_tx_poll_fn(struct net_device *netdev)
2594 2595 2596 2597
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;

2598 2599
	lio->txq_status_wq.wq = alloc_workqueue("txq-status",
						WQ_MEM_RECLAIM, 0);
2600 2601
	if (!lio->txq_status_wq.wq) {
		dev_err(&oct->pci_dev->dev, "unable to create cavium txq status wq\n");
2602
		return -1;
2603 2604 2605 2606 2607 2608
	}
	INIT_DELAYED_WORK(&lio->txq_status_wq.wk.work,
			  octnet_poll_check_txq_status);
	lio->txq_status_wq.wk.ctxptr = lio;
	queue_delayed_work(lio->txq_status_wq.wq,
			   &lio->txq_status_wq.wk.work, msecs_to_jiffies(1));
2609
	return 0;
2610 2611
}

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static inline void cleanup_tx_poll_fn(struct net_device *netdev)
{
	struct lio *lio = GET_LIO(netdev);

2616 2617 2618 2619
	if (lio->txq_status_wq.wq) {
		cancel_delayed_work_sync(&lio->txq_status_wq.wk.work);
		destroy_workqueue(lio->txq_status_wq.wq);
	}
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2620 2621
}

2622 2623 2624 2625 2626 2627 2628 2629 2630 2631
/**
 * \brief Net device open for LiquidIO
 * @param netdev network device
 */
static int liquidio_open(struct net_device *netdev)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct napi_struct *napi, *n;

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2632 2633 2634 2635 2636
	if (oct->props[lio->ifidx].napi_enabled == 0) {
		list_for_each_entry_safe(napi, n, &netdev->napi_list, dev_list)
			napi_enable(napi);

		oct->props[lio->ifidx].napi_enabled = 1;
2637 2638 2639

		if (OCTEON_CN23XX_PF(oct))
			oct->droq[0]->ops.poll_mode = 1;
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	}
2641 2642 2643 2644

	oct_ptp_open(netdev);

	ifstate_set(lio, LIO_IFSTATE_RUNNING);
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2646 2647 2648 2649 2650
	/* Ready for link status updates */
	lio->intf_open = 1;

	netif_info(lio, ifup, lio->netdev, "Interface Open, ready for traffic\n");

2651 2652 2653 2654 2655 2656 2657 2658
	if (OCTEON_CN23XX_PF(oct)) {
		if (!oct->msix_on)
			if (setup_tx_poll_fn(netdev))
				return -1;
	} else {
		if (setup_tx_poll_fn(netdev))
			return -1;
	}
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2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679
	start_txq(netdev);

	/* tell Octeon to start forwarding packets to host */
	send_rx_ctrl_cmd(lio, 1);

	dev_info(&oct->pci_dev->dev, "%s interface is opened\n",
		 netdev->name);

	return 0;
}

/**
 * \brief Net device stop for LiquidIO
 * @param netdev network device
 */
static int liquidio_stop(struct net_device *netdev)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;

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	ifstate_reset(lio, LIO_IFSTATE_RUNNING);

	netif_tx_disable(netdev);

2684
	/* Inform that netif carrier is down */
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	netif_carrier_off(netdev);
2686
	lio->intf_open = 0;
2687 2688
	lio->linfo.link.s.link_up = 0;
	lio->link_changes++;
2689

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	/* Pause for a moment and wait for Octeon to flush out (to the wire) any
	 * egress packets that are in-flight.
	 */
	set_current_state(TASK_INTERRUPTIBLE);
	schedule_timeout(msecs_to_jiffies(100));
2695

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	/* Now it should be safe to tell Octeon that nic interface is down. */
2697 2698
	send_rx_ctrl_cmd(lio, 0);

2699 2700 2701 2702 2703 2704
	if (OCTEON_CN23XX_PF(oct)) {
		if (!oct->msix_on)
			cleanup_tx_poll_fn(netdev);
	} else {
		cleanup_tx_poll_fn(netdev);
	}
2705 2706 2707 2708 2709 2710 2711 2712 2713 2714 2715 2716 2717 2718 2719 2720 2721 2722 2723 2724 2725 2726 2727 2728 2729 2730 2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756 2757 2758 2759

	if (lio->ptp_clock) {
		ptp_clock_unregister(lio->ptp_clock);
		lio->ptp_clock = NULL;
	}

	dev_info(&oct->pci_dev->dev, "%s interface is stopped\n", netdev->name);

	return 0;
}

/**
 * \brief Converts a mask based on net device flags
 * @param netdev network device
 *
 * This routine generates a octnet_ifflags mask from the net device flags
 * received from the OS.
 */
static inline enum octnet_ifflags get_new_flags(struct net_device *netdev)
{
	enum octnet_ifflags f = OCTNET_IFFLAG_UNICAST;

	if (netdev->flags & IFF_PROMISC)
		f |= OCTNET_IFFLAG_PROMISC;

	if (netdev->flags & IFF_ALLMULTI)
		f |= OCTNET_IFFLAG_ALLMULTI;

	if (netdev->flags & IFF_MULTICAST) {
		f |= OCTNET_IFFLAG_MULTICAST;

		/* Accept all multicast addresses if there are more than we
		 * can handle
		 */
		if (netdev_mc_count(netdev) > MAX_OCTEON_MULTICAST_ADDR)
			f |= OCTNET_IFFLAG_ALLMULTI;
	}

	if (netdev->flags & IFF_BROADCAST)
		f |= OCTNET_IFFLAG_BROADCAST;

	return f;
}

/**
 * \brief Net device set_multicast_list
 * @param netdev network device
 */
static void liquidio_set_mcast_list(struct net_device *netdev)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct octnic_ctrl_pkt nctrl;
	struct netdev_hw_addr *ha;
	u64 *mc;
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	int ret;
2761 2762 2763 2764 2765 2766 2767
	int mc_count = min(netdev_mc_count(netdev), MAX_OCTEON_MULTICAST_ADDR);

	memset(&nctrl, 0, sizeof(struct octnic_ctrl_pkt));

	/* Create a ctrl pkt command to be sent to core app. */
	nctrl.ncmd.u64 = 0;
	nctrl.ncmd.s.cmd = OCTNET_CMD_SET_MULTI_LIST;
2768 2769
	nctrl.ncmd.s.param1 = get_new_flags(netdev);
	nctrl.ncmd.s.param2 = mc_count;
2770
	nctrl.ncmd.s.more = mc_count;
2771
	nctrl.iq_no = lio->linfo.txpciq[0].s.q_no;
2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790
	nctrl.netpndev = (u64)netdev;
	nctrl.cb_fn = liquidio_link_ctrl_cmd_completion;

	/* copy all the addresses into the udd */
	mc = &nctrl.udd[0];
	netdev_for_each_mc_addr(ha, netdev) {
		*mc = 0;
		memcpy(((u8 *)mc) + 2, ha->addr, ETH_ALEN);
		/* no need to swap bytes */

		if (++mc > &nctrl.udd[mc_count])
			break;
	}

	/* Apparently, any activity in this call from the kernel has to
	 * be atomic. So we won't wait for response.
	 */
	nctrl.wait_time = 0;

2791
	ret = octnet_send_nic_ctrl_pkt(lio->oct_dev, &nctrl);
2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806 2807 2808 2809
	if (ret < 0) {
		dev_err(&oct->pci_dev->dev, "DEVFLAGS change failed in core (ret: 0x%x)\n",
			ret);
	}
}

/**
 * \brief Net device set_mac_address
 * @param netdev network device
 */
static int liquidio_set_mac(struct net_device *netdev, void *p)
{
	int ret = 0;
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct sockaddr *addr = (struct sockaddr *)p;
	struct octnic_ctrl_pkt nctrl;

2810
	if (!is_valid_ether_addr(addr->sa_data))
2811 2812 2813 2814 2815 2816
		return -EADDRNOTAVAIL;

	memset(&nctrl, 0, sizeof(struct octnic_ctrl_pkt));

	nctrl.ncmd.u64 = 0;
	nctrl.ncmd.s.cmd = OCTNET_CMD_CHANGE_MACADDR;
2817
	nctrl.ncmd.s.param1 = 0;
2818
	nctrl.ncmd.s.more = 1;
2819
	nctrl.iq_no = lio->linfo.txpciq[0].s.q_no;
2820 2821 2822 2823 2824 2825 2826 2827
	nctrl.netpndev = (u64)netdev;
	nctrl.cb_fn = liquidio_link_ctrl_cmd_completion;
	nctrl.wait_time = 100;

	nctrl.udd[0] = 0;
	/* The MAC Address is presented in network byte order. */
	memcpy((u8 *)&nctrl.udd[0] + 2, addr->sa_data, ETH_ALEN);

2828
	ret = octnet_send_nic_ctrl_pkt(lio->oct_dev, &nctrl);
2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855
	if (ret < 0) {
		dev_err(&oct->pci_dev->dev, "MAC Address change failed\n");
		return -ENOMEM;
	}
	memcpy(netdev->dev_addr, addr->sa_data, netdev->addr_len);
	memcpy(((u8 *)&lio->linfo.hw_addr) + 2, addr->sa_data, ETH_ALEN);

	return 0;
}

/**
 * \brief Net device get_stats
 * @param netdev network device
 */
static struct net_device_stats *liquidio_get_stats(struct net_device *netdev)
{
	struct lio *lio = GET_LIO(netdev);
	struct net_device_stats *stats = &netdev->stats;
	struct octeon_device *oct;
	u64 pkts = 0, drop = 0, bytes = 0;
	struct oct_droq_stats *oq_stats;
	struct oct_iq_stats *iq_stats;
	int i, iq_no, oq_no;

	oct = lio->oct_dev;

	for (i = 0; i < lio->linfo.num_txpciq; i++) {
2856
		iq_no = lio->linfo.txpciq[i].s.q_no;
2857 2858 2859 2860 2861 2862 2863 2864 2865 2866 2867 2868 2869 2870 2871
		iq_stats = &oct->instr_queue[iq_no]->stats;
		pkts += iq_stats->tx_done;
		drop += iq_stats->tx_dropped;
		bytes += iq_stats->tx_tot_bytes;
	}

	stats->tx_packets = pkts;
	stats->tx_bytes = bytes;
	stats->tx_dropped = drop;

	pkts = 0;
	drop = 0;
	bytes = 0;

	for (i = 0; i < lio->linfo.num_rxpciq; i++) {
2872
		oq_no = lio->linfo.rxpciq[i].s.q_no;
2873 2874 2875 2876 2877 2878 2879 2880 2881 2882 2883 2884 2885 2886 2887 2888 2889 2890 2891 2892 2893 2894 2895 2896 2897 2898 2899 2900 2901 2902 2903
		oq_stats = &oct->droq[oq_no]->stats;
		pkts += oq_stats->rx_pkts_received;
		drop += (oq_stats->rx_dropped +
			 oq_stats->dropped_nodispatch +
			 oq_stats->dropped_toomany +
			 oq_stats->dropped_nomem);
		bytes += oq_stats->rx_bytes_received;
	}

	stats->rx_bytes = bytes;
	stats->rx_packets = pkts;
	stats->rx_dropped = drop;

	return stats;
}

/**
 * \brief Net device change_mtu
 * @param netdev network device
 */
static int liquidio_change_mtu(struct net_device *netdev, int new_mtu)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct octnic_ctrl_pkt nctrl;
	int ret = 0;

	memset(&nctrl, 0, sizeof(struct octnic_ctrl_pkt));

	nctrl.ncmd.u64 = 0;
	nctrl.ncmd.s.cmd = OCTNET_CMD_CHANGE_MTU;
2904 2905
	nctrl.ncmd.s.param1 = new_mtu;
	nctrl.iq_no = lio->linfo.txpciq[0].s.q_no;
2906 2907 2908 2909
	nctrl.wait_time = 100;
	nctrl.netpndev = (u64)netdev;
	nctrl.cb_fn = liquidio_link_ctrl_cmd_completion;

2910
	ret = octnet_send_nic_ctrl_pkt(lio->oct_dev, &nctrl);
2911 2912 2913 2914 2915 2916 2917 2918 2919 2920 2921 2922 2923 2924 2925 2926
	if (ret < 0) {
		dev_err(&oct->pci_dev->dev, "Failed to set MTU\n");
		return -1;
	}

	lio->mtu = new_mtu;

	return 0;
}

/**
 * \brief Handler for SIOCSHWTSTAMP ioctl
 * @param netdev network device
 * @param ifr interface request
 * @param cmd command
 */
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static int hwtstamp_ioctl(struct net_device *netdev, struct ifreq *ifr)
2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963 2964 2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975 2976 2977 2978 2979 2980 2981 2982 2983 2984 2985 2986 2987
{
	struct hwtstamp_config conf;
	struct lio *lio = GET_LIO(netdev);

	if (copy_from_user(&conf, ifr->ifr_data, sizeof(conf)))
		return -EFAULT;

	if (conf.flags)
		return -EINVAL;

	switch (conf.tx_type) {
	case HWTSTAMP_TX_ON:
	case HWTSTAMP_TX_OFF:
		break;
	default:
		return -ERANGE;
	}

	switch (conf.rx_filter) {
	case HWTSTAMP_FILTER_NONE:
		break;
	case HWTSTAMP_FILTER_ALL:
	case HWTSTAMP_FILTER_SOME:
	case HWTSTAMP_FILTER_PTP_V1_L4_EVENT:
	case HWTSTAMP_FILTER_PTP_V1_L4_SYNC:
	case HWTSTAMP_FILTER_PTP_V1_L4_DELAY_REQ:
	case HWTSTAMP_FILTER_PTP_V2_L4_EVENT:
	case HWTSTAMP_FILTER_PTP_V2_L4_SYNC:
	case HWTSTAMP_FILTER_PTP_V2_L4_DELAY_REQ:
	case HWTSTAMP_FILTER_PTP_V2_L2_EVENT:
	case HWTSTAMP_FILTER_PTP_V2_L2_SYNC:
	case HWTSTAMP_FILTER_PTP_V2_L2_DELAY_REQ:
	case HWTSTAMP_FILTER_PTP_V2_EVENT:
	case HWTSTAMP_FILTER_PTP_V2_SYNC:
	case HWTSTAMP_FILTER_PTP_V2_DELAY_REQ:
		conf.rx_filter = HWTSTAMP_FILTER_ALL;
		break;
	default:
		return -ERANGE;
	}

	if (conf.rx_filter == HWTSTAMP_FILTER_ALL)
		ifstate_set(lio, LIO_IFSTATE_RX_TIMESTAMP_ENABLED);

	else
		ifstate_reset(lio, LIO_IFSTATE_RX_TIMESTAMP_ENABLED);

	return copy_to_user(ifr->ifr_data, &conf, sizeof(conf)) ? -EFAULT : 0;
}

/**
 * \brief ioctl handler
 * @param netdev network device
 * @param ifr interface request
 * @param cmd command
 */
static int liquidio_ioctl(struct net_device *netdev, struct ifreq *ifr, int cmd)
{
	switch (cmd) {
	case SIOCSHWTSTAMP:
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		return hwtstamp_ioctl(netdev, ifr);
2989 2990 2991 2992 2993 2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018 3019 3020 3021 3022
	default:
		return -EOPNOTSUPP;
	}
}

/**
 * \brief handle a Tx timestamp response
 * @param status response status
 * @param buf pointer to skb
 */
static void handle_timestamp(struct octeon_device *oct,
			     u32 status,
			     void *buf)
{
	struct octnet_buf_free_info *finfo;
	struct octeon_soft_command *sc;
	struct oct_timestamp_resp *resp;
	struct lio *lio;
	struct sk_buff *skb = (struct sk_buff *)buf;

	finfo = (struct octnet_buf_free_info *)skb->cb;
	lio = finfo->lio;
	sc = finfo->sc;
	oct = lio->oct_dev;
	resp = (struct oct_timestamp_resp *)sc->virtrptr;

	if (status != OCTEON_REQUEST_DONE) {
		dev_err(&oct->pci_dev->dev, "Tx timestamp instruction failed. Status: %llx\n",
			CVM_CAST64(status));
		resp->timestamp = 0;
	}

	octeon_swap_8B_data(&resp->timestamp, 1);

3023
	if (unlikely((skb_shinfo(skb)->tx_flags & SKBTX_IN_PROGRESS) != 0)) {
3024 3025 3026 3027 3028 3029 3030 3031 3032 3033 3034
		struct skb_shared_hwtstamps ts;
		u64 ns = resp->timestamp;

		netif_info(lio, tx_done, lio->netdev,
			   "Got resulting SKBTX_HW_TSTAMP skb=%p ns=%016llu\n",
			   skb, (unsigned long long)ns);
		ts.hwtstamp = ns_to_ktime(ns + lio->ptp_adjust);
		skb_tstamp_tx(skb, &ts);
	}

	octeon_free_soft_command(oct, sc);
3035
	tx_buffer_free(skb);
3036 3037 3038 3039 3040 3041 3042 3043 3044
}

/* \brief Send a data packet that will be timestamped
 * @param oct octeon device
 * @param ndata pointer to network data
 * @param finfo pointer to private network data
 */
static inline int send_nic_timestamp_pkt(struct octeon_device *oct,
					 struct octnic_data_pkt *ndata,
3045
					 struct octnet_buf_free_info *finfo)
3046 3047 3048 3049 3050
{
	int retval;
	struct octeon_soft_command *sc;
	struct lio *lio;
	int ring_doorbell;
3051
	u32 len;
3052 3053 3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071 3072

	lio = finfo->lio;

	sc = octeon_alloc_soft_command_resp(oct, &ndata->cmd,
					    sizeof(struct oct_timestamp_resp));
	finfo->sc = sc;

	if (!sc) {
		dev_err(&oct->pci_dev->dev, "No memory for timestamped data packet\n");
		return IQ_SEND_FAILED;
	}

	if (ndata->reqtype == REQTYPE_NORESP_NET)
		ndata->reqtype = REQTYPE_RESP_NET;
	else if (ndata->reqtype == REQTYPE_NORESP_NET_SG)
		ndata->reqtype = REQTYPE_RESP_NET_SG;

	sc->callback = handle_timestamp;
	sc->callback_arg = finfo->skb;
	sc->iq_no = ndata->q_no;

3073 3074 3075 3076 3077 3078
	if (OCTEON_CN23XX_PF(oct))
		len = (u32)((struct octeon_instr_ih3 *)
			    (&sc->cmd.cmd3.ih3))->dlengsz;
	else
		len = (u32)((struct octeon_instr_ih2 *)
			    (&sc->cmd.cmd2.ih2))->dlengsz;
3079

3080
	ring_doorbell = 1;
3081

3082
	retval = octeon_send_command(oct, sc->iq_no, ring_doorbell, &sc->cmd,
3083
				     sc, len, ndata->reqtype);
3084

3085
	if (retval == IQ_SEND_FAILED) {
3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109
		dev_err(&oct->pci_dev->dev, "timestamp data packet failed status: %x\n",
			retval);
		octeon_free_soft_command(oct, sc);
	} else {
		netif_info(lio, tx_queued, lio->netdev, "Queued timestamp packet\n");
	}

	return retval;
}

/** \brief Transmit networks packets to the Octeon interface
 * @param skbuff   skbuff struct to be passed to network layer.
 * @param netdev    pointer to network device
 * @returns whether the packet was transmitted to the device okay or not
 *             (NETDEV_TX_OK or NETDEV_TX_BUSY)
 */
static int liquidio_xmit(struct sk_buff *skb, struct net_device *netdev)
{
	struct lio *lio;
	struct octnet_buf_free_info *finfo;
	union octnic_cmd_setup cmdsetup;
	struct octnic_data_pkt ndata;
	struct octeon_device *oct;
	struct oct_iq_stats *stats;
3110 3111
	struct octeon_instr_irh *irh;
	union tx_info *tx_info;
3112
	int status = 0;
3113
	int q_idx = 0, iq_no = 0;
3114
	int j;
3115
	u64 dptr = 0;
3116 3117 3118 3119 3120 3121
	u32 tag = 0;

	lio = GET_LIO(netdev);
	oct = lio->oct_dev;

	if (netif_is_multiqueue(netdev)) {
3122 3123 3124 3125
		q_idx = skb->queue_mapping;
		q_idx = (q_idx % (lio->linfo.num_txpciq));
		tag = q_idx;
		iq_no = lio->linfo.txpciq[q_idx].s.q_no;
3126 3127 3128 3129 3130 3131 3132 3133 3134 3135
	} else {
		iq_no = lio->txq;
	}

	stats = &oct->instr_queue[iq_no]->stats;

	/* Check for all conditions in which the current packet cannot be
	 * transmitted.
	 */
	if (!(atomic_read(&lio->ifstate) & LIO_IFSTATE_RUNNING) ||
3136
	    (!lio->linfo.link.s.link_up) ||
3137 3138 3139
	    (skb->len <= 0)) {
		netif_info(lio, tx_err, lio->netdev,
			   "Transmit failed link_status : %d\n",
3140
			   lio->linfo.link.s.link_up);
3141 3142 3143 3144 3145 3146 3147 3148 3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161 3162 3163 3164 3165 3166 3167 3168 3169 3170 3171
		goto lio_xmit_failed;
	}

	/* Use space in skb->cb to store info used to unmap and
	 * free the buffers.
	 */
	finfo = (struct octnet_buf_free_info *)skb->cb;
	finfo->lio = lio;
	finfo->skb = skb;
	finfo->sc = NULL;

	/* Prepare the attributes for the data to be passed to OSI. */
	memset(&ndata, 0, sizeof(struct octnic_data_pkt));

	ndata.buf = (void *)finfo;

	ndata.q_no = iq_no;

	if (netif_is_multiqueue(netdev)) {
		if (octnet_iq_is_full(oct, ndata.q_no)) {
			/* defer sending if queue is full */
			netif_info(lio, tx_err, lio->netdev, "Transmit failed iq:%d full\n",
				   ndata.q_no);
			stats->tx_iq_busy++;
			return NETDEV_TX_BUSY;
		}
	} else {
		if (octnet_iq_is_full(oct, lio->txq)) {
			/* defer sending if queue is full */
			stats->tx_iq_busy++;
			netif_info(lio, tx_err, lio->netdev, "Transmit failed iq:%d full\n",
3172
				   lio->txq);
3173 3174 3175 3176
			return NETDEV_TX_BUSY;
		}
	}
	/* pr_info(" XMIT - valid Qs: %d, 1st Q no: %d, cpu:  %d, q_no:%d\n",
3177
	 *	lio->linfo.num_txpciq, lio->txq, cpu, ndata.q_no);
3178 3179 3180 3181 3182
	 */

	ndata.datasize = skb->len;

	cmdsetup.u64 = 0;
3183
	cmdsetup.s.iq_no = iq_no;
3184

R
Raghu Vatsavayi 已提交
3185 3186 3187 3188 3189 3190 3191 3192
	if (skb->ip_summed == CHECKSUM_PARTIAL) {
		if (skb->encapsulation) {
			cmdsetup.s.tnl_csum = 1;
			stats->tx_vxlan++;
		} else {
			cmdsetup.s.transport_csum = 1;
		}
	}
3193 3194 3195 3196 3197 3198 3199
	if (unlikely(skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP)) {
		skb_shinfo(skb)->tx_flags |= SKBTX_IN_PROGRESS;
		cmdsetup.s.timestamp = 1;
	}

	if (skb_shinfo(skb)->nr_frags == 0) {
		cmdsetup.s.u.datasize = skb->len;
3200
		octnet_prepare_pci_cmd(oct, &ndata.cmd, &cmdsetup, tag);
3201

3202
		/* Offload checksum calculation for TCP/UDP packets */
3203 3204 3205 3206 3207
		dptr = dma_map_single(&oct->pci_dev->dev,
				      skb->data,
				      skb->len,
				      DMA_TO_DEVICE);
		if (dma_mapping_error(&oct->pci_dev->dev, dptr)) {
3208 3209 3210 3211 3212
			dev_err(&oct->pci_dev->dev, "%s DMA mapping error 1\n",
				__func__);
			return NETDEV_TX_BUSY;
		}

3213 3214 3215 3216
		if (OCTEON_CN23XX_PF(oct))
			ndata.cmd.cmd3.dptr = dptr;
		else
			ndata.cmd.cmd2.dptr = dptr;
3217
		finfo->dptr = dptr;
3218 3219 3220 3221 3222 3223 3224
		ndata.reqtype = REQTYPE_NORESP_NET;

	} else {
		int i, frags;
		struct skb_frag_struct *frag;
		struct octnic_gather *g;

3225 3226 3227 3228
		spin_lock(&lio->glist_lock[q_idx]);
		g = (struct octnic_gather *)
			list_delete_head(&lio->glist[q_idx]);
		spin_unlock(&lio->glist_lock[q_idx]);
3229 3230 3231 3232 3233 3234 3235 3236 3237

		if (!g) {
			netif_info(lio, tx_err, lio->netdev,
				   "Transmit scatter gather: glist null!\n");
			goto lio_xmit_failed;
		}

		cmdsetup.s.gather = 1;
		cmdsetup.s.u.gatherptrs = (skb_shinfo(skb)->nr_frags + 1);
3238
		octnet_prepare_pci_cmd(oct, &ndata.cmd, &cmdsetup, tag);
3239 3240 3241 3242 3243 3244 3245 3246 3247 3248 3249 3250 3251 3252 3253 3254 3255 3256 3257 3258 3259 3260 3261 3262 3263 3264

		memset(g->sg, 0, g->sg_size);

		g->sg[0].ptr[0] = dma_map_single(&oct->pci_dev->dev,
						 skb->data,
						 (skb->len - skb->data_len),
						 DMA_TO_DEVICE);
		if (dma_mapping_error(&oct->pci_dev->dev, g->sg[0].ptr[0])) {
			dev_err(&oct->pci_dev->dev, "%s DMA mapping error 2\n",
				__func__);
			return NETDEV_TX_BUSY;
		}
		add_sg_size(&g->sg[0], (skb->len - skb->data_len), 0);

		frags = skb_shinfo(skb)->nr_frags;
		i = 1;
		while (frags--) {
			frag = &skb_shinfo(skb)->frags[i - 1];

			g->sg[(i >> 2)].ptr[(i & 3)] =
				dma_map_page(&oct->pci_dev->dev,
					     frag->page.p,
					     frag->page_offset,
					     frag->size,
					     DMA_TO_DEVICE);

3265 3266 3267 3268 3269 3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280 3281 3282
			if (dma_mapping_error(&oct->pci_dev->dev,
					      g->sg[i >> 2].ptr[i & 3])) {
				dma_unmap_single(&oct->pci_dev->dev,
						 g->sg[0].ptr[0],
						 skb->len - skb->data_len,
						 DMA_TO_DEVICE);
				for (j = 1; j < i; j++) {
					frag = &skb_shinfo(skb)->frags[j - 1];
					dma_unmap_page(&oct->pci_dev->dev,
						       g->sg[j >> 2].ptr[j & 3],
						       frag->size,
						       DMA_TO_DEVICE);
				}
				dev_err(&oct->pci_dev->dev, "%s DMA mapping error 3\n",
					__func__);
				return NETDEV_TX_BUSY;
			}

3283 3284 3285 3286
			add_sg_size(&g->sg[(i >> 2)], frag->size, (i & 3));
			i++;
		}

3287 3288 3289
		dma_sync_single_for_device(&oct->pci_dev->dev, g->sg_dma_ptr,
					   g->sg_size, DMA_TO_DEVICE);
		dptr = g->sg_dma_ptr;
3290

3291 3292 3293 3294
		if (OCTEON_CN23XX_PF(oct))
			ndata.cmd.cmd3.dptr = dptr;
		else
			ndata.cmd.cmd2.dptr = dptr;
3295
		finfo->dptr = dptr;
3296 3297 3298 3299 3300
		finfo->g = g;

		ndata.reqtype = REQTYPE_NORESP_NET_SG;
	}

3301 3302 3303 3304 3305 3306 3307
	if (OCTEON_CN23XX_PF(oct)) {
		irh = (struct octeon_instr_irh *)&ndata.cmd.cmd3.irh;
		tx_info = (union tx_info *)&ndata.cmd.cmd3.ossp[0];
	} else {
		irh = (struct octeon_instr_irh *)&ndata.cmd.cmd2.irh;
		tx_info = (union tx_info *)&ndata.cmd.cmd2.ossp[0];
	}
3308

3309
	if (skb_shinfo(skb)->gso_size) {
3310 3311
		tx_info->s.gso_size = skb_shinfo(skb)->gso_size;
		tx_info->s.gso_segs = skb_shinfo(skb)->gso_segs;
3312
		stats->tx_gso++;
3313
	}
3314

3315 3316 3317 3318 3319
	/* HW insert VLAN tag */
	if (skb_vlan_tag_present(skb)) {
		irh->priority = skb_vlan_tag_get(skb) >> 13;
		irh->vlan = skb_vlan_tag_get(skb) & 0xfff;
	}
3320 3321

	if (unlikely(cmdsetup.s.timestamp))
3322
		status = send_nic_timestamp_pkt(oct, &ndata, finfo);
3323
	else
3324
		status = octnet_send_nic_data_pkt(oct, &ndata);
3325 3326 3327 3328 3329 3330 3331 3332
	if (status == IQ_SEND_FAILED)
		goto lio_xmit_failed;

	netif_info(lio, tx_queued, lio->netdev, "Transmit queued successfully\n");

	if (status == IQ_SEND_STOP)
		stop_q(lio->netdev, q_idx);

3333
	netif_trans_update(netdev);
3334

3335 3336 3337 3338
	if (skb_shinfo(skb)->gso_size)
		stats->tx_done += skb_shinfo(skb)->gso_segs;
	else
		stats->tx_done++;
3339 3340 3341 3342 3343 3344 3345 3346
	stats->tx_tot_bytes += skb->len;

	return NETDEV_TX_OK;

lio_xmit_failed:
	stats->tx_dropped++;
	netif_info(lio, tx_err, lio->netdev, "IQ%d Transmit dropped:%llu\n",
		   iq_no, stats->tx_dropped);
3347 3348 3349
	if (dptr)
		dma_unmap_single(&oct->pci_dev->dev, dptr,
				 ndata.datasize, DMA_TO_DEVICE);
3350
	tx_buffer_free(skb);
3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364 3365
	return NETDEV_TX_OK;
}

/** \brief Network device Tx timeout
 * @param netdev    pointer to network device
 */
static void liquidio_tx_timeout(struct net_device *netdev)
{
	struct lio *lio;

	lio = GET_LIO(netdev);

	netif_info(lio, tx_err, lio->netdev,
		   "Transmit timeout tx_dropped:%ld, waking up queues now!!\n",
		   netdev->stats.tx_dropped);
3366
	netif_trans_update(netdev);
3367 3368 3369
	txqs_wake(netdev);
}

R
Raghu Vatsavayi 已提交
3370 3371 3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383 3384 3385 3386 3387 3388 3389 3390 3391 3392 3393 3394 3395 3396 3397 3398 3399 3400 3401 3402 3403 3404 3405 3406 3407 3408 3409 3410 3411 3412 3413 3414 3415 3416 3417 3418 3419 3420 3421 3422 3423 3424
static int liquidio_vlan_rx_add_vid(struct net_device *netdev,
				    __be16 proto __attribute__((unused)),
				    u16 vid)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct octnic_ctrl_pkt nctrl;
	int ret = 0;

	memset(&nctrl, 0, sizeof(struct octnic_ctrl_pkt));

	nctrl.ncmd.u64 = 0;
	nctrl.ncmd.s.cmd = OCTNET_CMD_ADD_VLAN_FILTER;
	nctrl.ncmd.s.param1 = vid;
	nctrl.iq_no = lio->linfo.txpciq[0].s.q_no;
	nctrl.wait_time = 100;
	nctrl.netpndev = (u64)netdev;
	nctrl.cb_fn = liquidio_link_ctrl_cmd_completion;

	ret = octnet_send_nic_ctrl_pkt(lio->oct_dev, &nctrl);
	if (ret < 0) {
		dev_err(&oct->pci_dev->dev, "Add VLAN filter failed in core (ret: 0x%x)\n",
			ret);
	}

	return ret;
}

static int liquidio_vlan_rx_kill_vid(struct net_device *netdev,
				     __be16 proto __attribute__((unused)),
				     u16 vid)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct octnic_ctrl_pkt nctrl;
	int ret = 0;

	memset(&nctrl, 0, sizeof(struct octnic_ctrl_pkt));

	nctrl.ncmd.u64 = 0;
	nctrl.ncmd.s.cmd = OCTNET_CMD_DEL_VLAN_FILTER;
	nctrl.ncmd.s.param1 = vid;
	nctrl.iq_no = lio->linfo.txpciq[0].s.q_no;
	nctrl.wait_time = 100;
	nctrl.netpndev = (u64)netdev;
	nctrl.cb_fn = liquidio_link_ctrl_cmd_completion;

	ret = octnet_send_nic_ctrl_pkt(lio->oct_dev, &nctrl);
	if (ret < 0) {
		dev_err(&oct->pci_dev->dev, "Add VLAN filter failed in core (ret: 0x%x)\n",
			ret);
	}
	return ret;
}

R
Raghu Vatsavayi 已提交
3425 3426 3427 3428 3429 3430 3431
/** Sending command to enable/disable RX checksum offload
 * @param netdev                pointer to network device
 * @param command               OCTNET_CMD_TNL_RX_CSUM_CTL
 * @param rx_cmd_bit            OCTNET_CMD_RXCSUM_ENABLE/
 *                              OCTNET_CMD_RXCSUM_DISABLE
 * @returns                     SUCCESS or FAILURE
 */
3432 3433
static int liquidio_set_rxcsum_command(struct net_device *netdev, int command,
				       u8 rx_cmd)
R
Raghu Vatsavayi 已提交
3434 3435 3436 3437 3438 3439 3440 3441 3442 3443 3444 3445 3446 3447 3448 3449 3450 3451 3452 3453 3454 3455 3456 3457 3458 3459 3460 3461 3462 3463 3464 3465 3466 3467 3468 3469 3470 3471 3472 3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct octnic_ctrl_pkt nctrl;
	int ret = 0;

	nctrl.ncmd.u64 = 0;
	nctrl.ncmd.s.cmd = command;
	nctrl.ncmd.s.param1 = rx_cmd;
	nctrl.iq_no = lio->linfo.txpciq[0].s.q_no;
	nctrl.wait_time = 100;
	nctrl.netpndev = (u64)netdev;
	nctrl.cb_fn = liquidio_link_ctrl_cmd_completion;

	ret = octnet_send_nic_ctrl_pkt(lio->oct_dev, &nctrl);
	if (ret < 0) {
		dev_err(&oct->pci_dev->dev,
			"DEVFLAGS RXCSUM change failed in core(ret:0x%x)\n",
			ret);
	}
	return ret;
}

/** Sending command to add/delete VxLAN UDP port to firmware
 * @param netdev                pointer to network device
 * @param command               OCTNET_CMD_VXLAN_PORT_CONFIG
 * @param vxlan_port            VxLAN port to be added or deleted
 * @param vxlan_cmd_bit         OCTNET_CMD_VXLAN_PORT_ADD,
 *                              OCTNET_CMD_VXLAN_PORT_DEL
 * @returns                     SUCCESS or FAILURE
 */
static int liquidio_vxlan_port_command(struct net_device *netdev, int command,
				       u16 vxlan_port, u8 vxlan_cmd_bit)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct octnic_ctrl_pkt nctrl;
	int ret = 0;

	nctrl.ncmd.u64 = 0;
	nctrl.ncmd.s.cmd = command;
	nctrl.ncmd.s.more = vxlan_cmd_bit;
	nctrl.ncmd.s.param1 = vxlan_port;
	nctrl.iq_no = lio->linfo.txpciq[0].s.q_no;
	nctrl.wait_time = 100;
	nctrl.netpndev = (u64)netdev;
	nctrl.cb_fn = liquidio_link_ctrl_cmd_completion;

	ret = octnet_send_nic_ctrl_pkt(lio->oct_dev, &nctrl);
	if (ret < 0) {
		dev_err(&oct->pci_dev->dev,
			"VxLAN port add/delete failed in core (ret:0x%x)\n",
			ret);
	}
	return ret;
}

3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535 3536 3537 3538
/** \brief Net device fix features
 * @param netdev  pointer to network device
 * @param request features requested
 * @returns updated features list
 */
static netdev_features_t liquidio_fix_features(struct net_device *netdev,
					       netdev_features_t request)
{
	struct lio *lio = netdev_priv(netdev);

	if ((request & NETIF_F_RXCSUM) &&
	    !(lio->dev_capability & NETIF_F_RXCSUM))
		request &= ~NETIF_F_RXCSUM;

	if ((request & NETIF_F_HW_CSUM) &&
	    !(lio->dev_capability & NETIF_F_HW_CSUM))
		request &= ~NETIF_F_HW_CSUM;

	if ((request & NETIF_F_TSO) && !(lio->dev_capability & NETIF_F_TSO))
		request &= ~NETIF_F_TSO;

	if ((request & NETIF_F_TSO6) && !(lio->dev_capability & NETIF_F_TSO6))
		request &= ~NETIF_F_TSO6;

	if ((request & NETIF_F_LRO) && !(lio->dev_capability & NETIF_F_LRO))
		request &= ~NETIF_F_LRO;

	/*Disable LRO if RXCSUM is off */
	if (!(request & NETIF_F_RXCSUM) && (netdev->features & NETIF_F_LRO) &&
	    (lio->dev_capability & NETIF_F_LRO))
		request &= ~NETIF_F_LRO;

	return request;
}

/** \brief Net device set features
 * @param netdev  pointer to network device
 * @param features features to enable/disable
 */
static int liquidio_set_features(struct net_device *netdev,
				 netdev_features_t features)
{
	struct lio *lio = netdev_priv(netdev);

	if (!((netdev->features ^ features) & NETIF_F_LRO))
		return 0;

	if ((features & NETIF_F_LRO) && (lio->dev_capability & NETIF_F_LRO))
3539 3540
		liquidio_set_feature(netdev, OCTNET_CMD_LRO_ENABLE,
				     OCTNIC_LROIPV4 | OCTNIC_LROIPV6);
3541 3542
	else if (!(features & NETIF_F_LRO) &&
		 (lio->dev_capability & NETIF_F_LRO))
3543 3544
		liquidio_set_feature(netdev, OCTNET_CMD_LRO_DISABLE,
				     OCTNIC_LROIPV4 | OCTNIC_LROIPV6);
3545

R
Raghu Vatsavayi 已提交
3546 3547 3548 3549 3550 3551 3552 3553 3554 3555 3556 3557 3558 3559 3560
	/* Sending command to firmware to enable/disable RX checksum
	 * offload settings using ethtool
	 */
	if (!(netdev->features & NETIF_F_RXCSUM) &&
	    (lio->enc_dev_capability & NETIF_F_RXCSUM) &&
	    (features & NETIF_F_RXCSUM))
		liquidio_set_rxcsum_command(netdev,
					    OCTNET_CMD_TNL_RX_CSUM_CTL,
					    OCTNET_CMD_RXCSUM_ENABLE);
	else if ((netdev->features & NETIF_F_RXCSUM) &&
		 (lio->enc_dev_capability & NETIF_F_RXCSUM) &&
		 !(features & NETIF_F_RXCSUM))
		liquidio_set_rxcsum_command(netdev, OCTNET_CMD_TNL_RX_CSUM_CTL,
					    OCTNET_CMD_RXCSUM_DISABLE);

3561 3562 3563
	return 0;
}

R
Raghu Vatsavayi 已提交
3564 3565 3566 3567 3568 3569 3570 3571 3572 3573 3574 3575 3576 3577 3578 3579 3580 3581 3582 3583 3584 3585 3586 3587
static void liquidio_add_vxlan_port(struct net_device *netdev,
				    struct udp_tunnel_info *ti)
{
	if (ti->type != UDP_TUNNEL_TYPE_VXLAN)
		return;

	liquidio_vxlan_port_command(netdev,
				    OCTNET_CMD_VXLAN_PORT_CONFIG,
				    htons(ti->port),
				    OCTNET_CMD_VXLAN_PORT_ADD);
}

static void liquidio_del_vxlan_port(struct net_device *netdev,
				    struct udp_tunnel_info *ti)
{
	if (ti->type != UDP_TUNNEL_TYPE_VXLAN)
		return;

	liquidio_vxlan_port_command(netdev,
				    OCTNET_CMD_VXLAN_PORT_CONFIG,
				    htons(ti->port),
				    OCTNET_CMD_VXLAN_PORT_DEL);
}

3588 3589 3590 3591 3592 3593 3594 3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610 3611 3612 3613 3614 3615 3616 3617 3618 3619 3620 3621 3622 3623 3624 3625 3626 3627 3628 3629 3630 3631 3632 3633 3634 3635 3636 3637 3638 3639 3640 3641 3642 3643 3644 3645 3646 3647 3648 3649 3650 3651 3652 3653 3654 3655 3656 3657 3658 3659 3660 3661 3662 3663 3664 3665 3666 3667 3668 3669 3670 3671 3672 3673 3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684 3685 3686 3687 3688 3689 3690 3691 3692 3693 3694 3695 3696 3697 3698 3699 3700 3701 3702 3703 3704 3705 3706 3707 3708 3709 3710 3711 3712 3713 3714 3715 3716 3717 3718 3719 3720 3721 3722 3723 3724 3725 3726 3727 3728 3729 3730 3731 3732
static int __liquidio_set_vf_mac(struct net_device *netdev, int vfidx,
				 u8 *mac, bool is_admin_assigned)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct octnic_ctrl_pkt nctrl;

	if (!is_valid_ether_addr(mac))
		return -EINVAL;

	if (vfidx < 0 || vfidx >= oct->sriov_info.max_vfs)
		return -EINVAL;

	memset(&nctrl, 0, sizeof(struct octnic_ctrl_pkt));

	nctrl.ncmd.u64 = 0;
	nctrl.ncmd.s.cmd = OCTNET_CMD_CHANGE_MACADDR;
	/* vfidx is 0 based, but vf_num (param1) is 1 based */
	nctrl.ncmd.s.param1 = vfidx + 1;
	nctrl.ncmd.s.param2 = (is_admin_assigned ? 1 : 0);
	nctrl.ncmd.s.more = 1;
	nctrl.iq_no = lio->linfo.txpciq[0].s.q_no;
	nctrl.cb_fn = 0;
	nctrl.wait_time = LIO_CMD_WAIT_TM;

	nctrl.udd[0] = 0;
	/* The MAC Address is presented in network byte order. */
	ether_addr_copy((u8 *)&nctrl.udd[0] + 2, mac);

	oct->sriov_info.vf_macaddr[vfidx] = nctrl.udd[0];

	octnet_send_nic_ctrl_pkt(oct, &nctrl);

	return 0;
}

static int liquidio_set_vf_mac(struct net_device *netdev, int vfidx, u8 *mac)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	int retval;

	retval = __liquidio_set_vf_mac(netdev, vfidx, mac, true);
	if (!retval)
		cn23xx_tell_vf_its_macaddr_changed(oct, vfidx, mac);

	return retval;
}

static int liquidio_set_vf_vlan(struct net_device *netdev, int vfidx,
				u16 vlan, u8 qos, __be16 vlan_proto)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct octnic_ctrl_pkt nctrl;
	u16 vlantci;

	if (vfidx < 0 || vfidx >= oct->sriov_info.num_vfs_alloced)
		return -EINVAL;

	if (vlan_proto != htons(ETH_P_8021Q))
		return -EPROTONOSUPPORT;

	if (vlan >= VLAN_N_VID || qos > 7)
		return -EINVAL;

	if (vlan)
		vlantci = vlan | (u16)qos << VLAN_PRIO_SHIFT;
	else
		vlantci = 0;

	if (oct->sriov_info.vf_vlantci[vfidx] == vlantci)
		return 0;

	memset(&nctrl, 0, sizeof(struct octnic_ctrl_pkt));

	if (vlan)
		nctrl.ncmd.s.cmd = OCTNET_CMD_ADD_VLAN_FILTER;
	else
		nctrl.ncmd.s.cmd = OCTNET_CMD_DEL_VLAN_FILTER;

	nctrl.ncmd.s.param1 = vlantci;
	nctrl.ncmd.s.param2 =
	    vfidx + 1; /* vfidx is 0 based, but vf_num (param2) is 1 based */
	nctrl.ncmd.s.more = 0;
	nctrl.iq_no = lio->linfo.txpciq[0].s.q_no;
	nctrl.cb_fn = 0;
	nctrl.wait_time = LIO_CMD_WAIT_TM;

	octnet_send_nic_ctrl_pkt(oct, &nctrl);

	oct->sriov_info.vf_vlantci[vfidx] = vlantci;

	return 0;
}

static int liquidio_get_vf_config(struct net_device *netdev, int vfidx,
				  struct ifla_vf_info *ivi)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	u8 *macaddr;

	if (vfidx < 0 || vfidx >= oct->sriov_info.num_vfs_alloced)
		return -EINVAL;

	ivi->vf = vfidx;
	macaddr = 2 + (u8 *)&oct->sriov_info.vf_macaddr[vfidx];
	ether_addr_copy(&ivi->mac[0], macaddr);
	ivi->vlan = oct->sriov_info.vf_vlantci[vfidx] & VLAN_VID_MASK;
	ivi->qos = oct->sriov_info.vf_vlantci[vfidx] >> VLAN_PRIO_SHIFT;
	ivi->linkstate = oct->sriov_info.vf_linkstate[vfidx];
	return 0;
}

static int liquidio_set_vf_link_state(struct net_device *netdev, int vfidx,
				      int linkstate)
{
	struct lio *lio = GET_LIO(netdev);
	struct octeon_device *oct = lio->oct_dev;
	struct octnic_ctrl_pkt nctrl;

	if (vfidx < 0 || vfidx >= oct->sriov_info.num_vfs_alloced)
		return -EINVAL;

	if (oct->sriov_info.vf_linkstate[vfidx] == linkstate)
		return 0;

	memset(&nctrl, 0, sizeof(struct octnic_ctrl_pkt));
	nctrl.ncmd.s.cmd = OCTNET_CMD_SET_VF_LINKSTATE;
	nctrl.ncmd.s.param1 =
	    vfidx + 1; /* vfidx is 0 based, but vf_num (param1) is 1 based */
	nctrl.ncmd.s.param2 = linkstate;
	nctrl.ncmd.s.more = 0;
	nctrl.iq_no = lio->linfo.txpciq[0].s.q_no;
	nctrl.cb_fn = 0;
	nctrl.wait_time = LIO_CMD_WAIT_TM;

	octnet_send_nic_ctrl_pkt(oct, &nctrl);

	oct->sriov_info.vf_linkstate[vfidx] = linkstate;

	return 0;
}

3733 3734 3735 3736 3737 3738 3739 3740
static struct net_device_ops lionetdevops = {
	.ndo_open		= liquidio_open,
	.ndo_stop		= liquidio_stop,
	.ndo_start_xmit		= liquidio_xmit,
	.ndo_get_stats		= liquidio_get_stats,
	.ndo_set_mac_address	= liquidio_set_mac,
	.ndo_set_rx_mode	= liquidio_set_mcast_list,
	.ndo_tx_timeout		= liquidio_tx_timeout,
R
Raghu Vatsavayi 已提交
3741 3742 3743

	.ndo_vlan_rx_add_vid    = liquidio_vlan_rx_add_vid,
	.ndo_vlan_rx_kill_vid   = liquidio_vlan_rx_kill_vid,
3744 3745 3746 3747
	.ndo_change_mtu		= liquidio_change_mtu,
	.ndo_do_ioctl		= liquidio_ioctl,
	.ndo_fix_features	= liquidio_fix_features,
	.ndo_set_features	= liquidio_set_features,
R
Raghu Vatsavayi 已提交
3748 3749
	.ndo_udp_tunnel_add	= liquidio_add_vxlan_port,
	.ndo_udp_tunnel_del	= liquidio_del_vxlan_port,
3750 3751 3752 3753
	.ndo_set_vf_mac		= liquidio_set_vf_mac,
	.ndo_set_vf_vlan	= liquidio_set_vf_vlan,
	.ndo_get_vf_config	= liquidio_get_vf_config,
	.ndo_set_vf_link_state  = liquidio_set_vf_link_state,
3754 3755 3756 3757 3758 3759 3760 3761 3762 3763 3764 3765 3766 3767 3768 3769 3770 3771 3772 3773 3774 3775 3776 3777 3778 3779 3780 3781 3782 3783 3784 3785 3786 3787 3788 3789 3790 3791 3792 3793 3794 3795 3796 3797 3798 3799 3800 3801 3802 3803
};

/** \brief Entry point for the liquidio module
 */
static int __init liquidio_init(void)
{
	int i;
	struct handshake *hs;

	init_completion(&first_stage);

	octeon_init_device_list(conf_type);

	if (liquidio_init_pci())
		return -EINVAL;

	wait_for_completion_timeout(&first_stage, msecs_to_jiffies(1000));

	for (i = 0; i < MAX_OCTEON_DEVICES; i++) {
		hs = &handshake[i];
		if (hs->pci_dev) {
			wait_for_completion(&hs->init);
			if (!hs->init_ok) {
				/* init handshake failed */
				dev_err(&hs->pci_dev->dev,
					"Failed to init device\n");
				liquidio_deinit_pci();
				return -EIO;
			}
		}
	}

	for (i = 0; i < MAX_OCTEON_DEVICES; i++) {
		hs = &handshake[i];
		if (hs->pci_dev) {
			wait_for_completion_timeout(&hs->started,
						    msecs_to_jiffies(30000));
			if (!hs->started_ok) {
				/* starter handshake failed */
				dev_err(&hs->pci_dev->dev,
					"Firmware failed to start\n");
				liquidio_deinit_pci();
				return -EIO;
			}
		}
	}

	return 0;
}

3804
static int lio_nic_info(struct octeon_recv_info *recv_info, void *buf)
3805 3806 3807
{
	struct octeon_device *oct = (struct octeon_device *)buf;
	struct octeon_recv_pkt *recv_pkt = recv_info->recv_pkt;
3808
	int gmxport = 0;
3809 3810 3811
	union oct_link_status *ls;
	int i;

3812
	if (recv_pkt->buffer_size[0] != sizeof(*ls)) {
3813 3814
		dev_err(&oct->pci_dev->dev, "Malformed NIC_INFO, len=%d, ifidx=%d\n",
			recv_pkt->buffer_size[0],
3815
			recv_pkt->rh.r_nic_info.gmxport);
3816 3817 3818
		goto nic_info_err;
	}

3819
	gmxport = recv_pkt->rh.r_nic_info.gmxport;
3820 3821 3822
	ls = (union oct_link_status *)get_rbd(recv_pkt->buffer_ptr[0]);

	octeon_swap_8B_data((u64 *)ls, (sizeof(union oct_link_status)) >> 3);
3823 3824 3825 3826 3827 3828
	for (i = 0; i < oct->ifcount; i++) {
		if (oct->props[i].gmxport == gmxport) {
			update_link_status(oct->props[i].netdev, ls);
			break;
		}
	}
3829 3830 3831 3832 3833 3834 3835 3836 3837 3838 3839 3840 3841 3842 3843 3844 3845 3846 3847 3848 3849 3850 3851 3852 3853

nic_info_err:
	for (i = 0; i < recv_pkt->buffer_count; i++)
		recv_buffer_free(recv_pkt->buffer_ptr[i]);
	octeon_free_recv_info(recv_info);
	return 0;
}

/**
 * \brief Setup network interfaces
 * @param octeon_dev  octeon device
 *
 * Called during init time for each device. It assumes the NIC
 * is already up and running.  The link information for each
 * interface is passed in link_info.
 */
static int setup_nic_devices(struct octeon_device *octeon_dev)
{
	struct lio *lio = NULL;
	struct net_device *netdev;
	u8 mac[6], i, j;
	struct octeon_soft_command *sc;
	struct liquidio_if_cfg_context *ctx;
	struct liquidio_if_cfg_resp *resp;
	struct octdev_props *props;
3854
	int retval, num_iqueues, num_oqueues;
3855 3856 3857
	union oct_nic_if_cfg if_cfg;
	unsigned int base_queue;
	unsigned int gmx_port_id;
3858
	u32 resp_size, ctx_size, data_size;
3859
	u32 ifidx_or_pfnum;
3860
	struct lio_version *vdata;
3861 3862 3863 3864 3865 3866 3867 3868 3869 3870 3871 3872 3873 3874 3875 3876 3877 3878 3879 3880 3881

	/* This is to handle link status changes */
	octeon_register_dispatch_fn(octeon_dev, OPCODE_NIC,
				    OPCODE_NIC_INFO,
				    lio_nic_info, octeon_dev);

	/* REQTYPE_RESP_NET and REQTYPE_SOFT_COMMAND do not have free functions.
	 * They are handled directly.
	 */
	octeon_register_reqtype_free_fn(octeon_dev, REQTYPE_NORESP_NET,
					free_netbuf);

	octeon_register_reqtype_free_fn(octeon_dev, REQTYPE_NORESP_NET_SG,
					free_netsgbuf);

	octeon_register_reqtype_free_fn(octeon_dev, REQTYPE_RESP_NET_SG,
					free_netsgbuf_with_resp);

	for (i = 0; i < octeon_dev->ifcount; i++) {
		resp_size = sizeof(struct liquidio_if_cfg_resp);
		ctx_size = sizeof(struct liquidio_if_cfg_context);
3882
		data_size = sizeof(struct lio_version);
3883
		sc = (struct octeon_soft_command *)
3884
			octeon_alloc_soft_command(octeon_dev, data_size,
3885 3886 3887
						  resp_size, ctx_size);
		resp = (struct liquidio_if_cfg_resp *)sc->virtrptr;
		ctx  = (struct liquidio_if_cfg_context *)sc->ctxptr;
3888 3889 3890 3891 3892 3893
		vdata = (struct lio_version *)sc->virtdptr;

		*((u64 *)vdata) = 0;
		vdata->major = cpu_to_be16(LIQUIDIO_BASE_MAJOR_VERSION);
		vdata->minor = cpu_to_be16(LIQUIDIO_BASE_MINOR_VERSION);
		vdata->micro = cpu_to_be16(LIQUIDIO_BASE_MICRO_VERSION);
3894

3895 3896 3897 3898 3899 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910 3911 3912
		if (OCTEON_CN23XX_PF(octeon_dev)) {
			num_iqueues = octeon_dev->sriov_info.num_pf_rings;
			num_oqueues = octeon_dev->sriov_info.num_pf_rings;
			base_queue = octeon_dev->sriov_info.pf_srn;

			gmx_port_id = octeon_dev->pf_num;
			ifidx_or_pfnum = octeon_dev->pf_num;
		} else {
			num_iqueues = CFG_GET_NUM_TXQS_NIC_IF(
						octeon_get_conf(octeon_dev), i);
			num_oqueues = CFG_GET_NUM_RXQS_NIC_IF(
						octeon_get_conf(octeon_dev), i);
			base_queue = CFG_GET_BASE_QUE_NIC_IF(
						octeon_get_conf(octeon_dev), i);
			gmx_port_id = CFG_GET_GMXID_NIC_IF(
						octeon_get_conf(octeon_dev), i);
			ifidx_or_pfnum = i;
		}
R
Raghu Vatsavayi 已提交
3913

3914 3915
		dev_dbg(&octeon_dev->pci_dev->dev,
			"requesting config for interface %d, iqs %d, oqs %d\n",
3916
			ifidx_or_pfnum, num_iqueues, num_oqueues);
R
Raghu Vatsavayi 已提交
3917
		WRITE_ONCE(ctx->cond, 0);
3918 3919 3920 3921 3922 3923 3924 3925
		ctx->octeon_id = lio_get_device_id(octeon_dev);
		init_waitqueue_head(&ctx->wc);

		if_cfg.u64 = 0;
		if_cfg.s.num_iqueues = num_iqueues;
		if_cfg.s.num_oqueues = num_oqueues;
		if_cfg.s.base_queue = base_queue;
		if_cfg.s.gmx_port_id = gmx_port_id;
3926 3927 3928

		sc->iq_no = 0;

3929
		octeon_prepare_soft_command(octeon_dev, sc, OPCODE_NIC,
3930
					    OPCODE_NIC_IF_CFG, 0,
3931 3932 3933 3934
					    if_cfg.u64, 0);

		sc->callback = if_cfg_callback;
		sc->callback_arg = sc;
R
Raghu Vatsavayi 已提交
3935
		sc->wait_time = 3000;
3936 3937

		retval = octeon_send_soft_command(octeon_dev, sc);
3938
		if (retval == IQ_SEND_FAILED) {
3939 3940 3941 3942 3943 3944 3945 3946 3947 3948
			dev_err(&octeon_dev->pci_dev->dev,
				"iq/oq config failed status: %x\n",
				retval);
			/* Soft instr is freed by driver in case of failure. */
			goto setup_nic_dev_fail;
		}

		/* Sleep on a wait queue till the cond flag indicates that the
		 * response arrived or timed-out.
		 */
R
Raghu Vatsavayi 已提交
3949 3950 3951 3952 3953
		if (sleep_cond(&ctx->wc, &ctx->cond) == -EINTR) {
			dev_err(&octeon_dev->pci_dev->dev, "Wait interrupted\n");
			goto setup_nic_wait_intr;
		}

3954 3955 3956 3957 3958 3959 3960 3961 3962 3963 3964 3965 3966 3967 3968 3969 3970 3971 3972 3973 3974 3975 3976 3977 3978 3979 3980 3981 3982 3983
		retval = resp->status;
		if (retval) {
			dev_err(&octeon_dev->pci_dev->dev, "iq/oq config failed\n");
			goto setup_nic_dev_fail;
		}

		octeon_swap_8B_data((u64 *)(&resp->cfg_info),
				    (sizeof(struct liquidio_if_cfg_info)) >> 3);

		num_iqueues = hweight64(resp->cfg_info.iqmask);
		num_oqueues = hweight64(resp->cfg_info.oqmask);

		if (!(num_iqueues) || !(num_oqueues)) {
			dev_err(&octeon_dev->pci_dev->dev,
				"Got bad iqueues (%016llx) or oqueues (%016llx) from firmware.\n",
				resp->cfg_info.iqmask,
				resp->cfg_info.oqmask);
			goto setup_nic_dev_fail;
		}
		dev_dbg(&octeon_dev->pci_dev->dev,
			"interface %d, iqmask %016llx, oqmask %016llx, numiqueues %d, numoqueues %d\n",
			i, resp->cfg_info.iqmask, resp->cfg_info.oqmask,
			num_iqueues, num_oqueues);
		netdev = alloc_etherdev_mq(LIO_SIZE, num_iqueues);

		if (!netdev) {
			dev_err(&octeon_dev->pci_dev->dev, "Device allocation failed\n");
			goto setup_nic_dev_fail;
		}

3984
		SET_NETDEV_DEV(netdev, &octeon_dev->pci_dev->dev);
3985 3986 3987 3988 3989 3990 3991 3992 3993 3994 3995 3996 3997

		if (num_iqueues > 1)
			lionetdevops.ndo_select_queue = select_q;

		/* Associate the routines that will handle different
		 * netdev tasks.
		 */
		netdev->netdev_ops = &lionetdevops;

		lio = GET_LIO(netdev);

		memset(lio, 0, sizeof(struct lio));

3998 3999 4000 4001 4002
		lio->ifidx = ifidx_or_pfnum;

		props = &octeon_dev->props[i];
		props->gmxport = resp->cfg_info.linfo.gmxport;
		props->netdev = netdev;
4003 4004 4005 4006

		lio->linfo.num_rxpciq = num_oqueues;
		lio->linfo.num_txpciq = num_iqueues;
		for (j = 0; j < num_oqueues; j++) {
4007 4008
			lio->linfo.rxpciq[j].u64 =
				resp->cfg_info.linfo.rxpciq[j].u64;
4009 4010
		}
		for (j = 0; j < num_iqueues; j++) {
4011 4012
			lio->linfo.txpciq[j].u64 =
				resp->cfg_info.linfo.txpciq[j].u64;
4013 4014 4015 4016 4017 4018 4019
		}
		lio->linfo.hw_addr = resp->cfg_info.linfo.hw_addr;
		lio->linfo.gmxport = resp->cfg_info.linfo.gmxport;
		lio->linfo.link.u64 = resp->cfg_info.linfo.link.u64;

		lio->msg_enable = netif_msg_init(debug, DEFAULT_MSG_ENABLE);

4020 4021 4022 4023 4024 4025 4026 4027 4028 4029
		if (OCTEON_CN23XX_PF(octeon_dev) ||
		    OCTEON_CN6XXX(octeon_dev)) {
			lio->dev_capability = NETIF_F_HIGHDMA
					      | NETIF_F_IP_CSUM
					      | NETIF_F_IPV6_CSUM
					      | NETIF_F_SG | NETIF_F_RXCSUM
					      | NETIF_F_GRO
					      | NETIF_F_TSO | NETIF_F_TSO6
					      | NETIF_F_LRO;
		}
4030 4031
		netif_set_gso_max_size(netdev, OCTNIC_GSO_MAX_SIZE);

R
Raghu Vatsavayi 已提交
4032 4033 4034 4035 4036 4037 4038 4039 4040 4041 4042 4043 4044 4045 4046 4047
		/*  Copy of transmit encapsulation capabilities:
		 *  TSO, TSO6, Checksums for this device
		 */
		lio->enc_dev_capability = NETIF_F_IP_CSUM
					  | NETIF_F_IPV6_CSUM
					  | NETIF_F_GSO_UDP_TUNNEL
					  | NETIF_F_HW_CSUM | NETIF_F_SG
					  | NETIF_F_RXCSUM
					  | NETIF_F_TSO | NETIF_F_TSO6
					  | NETIF_F_LRO;

		netdev->hw_enc_features = (lio->enc_dev_capability &
					   ~NETIF_F_LRO);

		lio->dev_capability |= NETIF_F_GSO_UDP_TUNNEL;

4048
		netdev->vlan_features = lio->dev_capability;
4049
		/* Add any unchangeable hw features */
R
Raghu Vatsavayi 已提交
4050 4051
		lio->dev_capability |=  NETIF_F_HW_VLAN_CTAG_FILTER |
					NETIF_F_HW_VLAN_CTAG_RX |
4052 4053 4054
					NETIF_F_HW_VLAN_CTAG_TX;

		netdev->features = (lio->dev_capability & ~NETIF_F_LRO);
4055 4056

		netdev->hw_features = lio->dev_capability;
4057 4058 4059
		/*HW_VLAN_RX and HW_VLAN_FILTER is always on*/
		netdev->hw_features = netdev->hw_features &
			~NETIF_F_HW_VLAN_CTAG_RX;
4060

4061 4062 4063 4064
		/* MTU range: 68 - 16000 */
		netdev->min_mtu = LIO_MIN_MTU_SIZE;
		netdev->max_mtu = LIO_MAX_MTU_SIZE;

4065 4066 4067 4068 4069 4070 4071 4072 4073 4074 4075
		/* Point to the  properties for octeon device to which this
		 * interface belongs.
		 */
		lio->oct_dev = octeon_dev;
		lio->octprops = props;
		lio->netdev = netdev;

		dev_dbg(&octeon_dev->pci_dev->dev,
			"if%d gmx: %d hw_addr: 0x%llx\n", i,
			lio->linfo.gmxport, CVM_CAST64(lio->linfo.hw_addr));

4076 4077 4078 4079 4080 4081 4082 4083 4084 4085 4086 4087 4088
		for (j = 0; j < octeon_dev->sriov_info.max_vfs; j++) {
			u8 vfmac[ETH_ALEN];

			random_ether_addr(&vfmac[0]);
			if (__liquidio_set_vf_mac(netdev, j,
						  &vfmac[0], false)) {
				dev_err(&octeon_dev->pci_dev->dev,
					"Error setting VF%d MAC address\n",
					j);
				goto setup_nic_dev_fail;
			}
		}

4089 4090 4091 4092 4093 4094 4095 4096 4097
		/* 64-bit swap required on LE machines */
		octeon_swap_8B_data(&lio->linfo.hw_addr, 1);
		for (j = 0; j < 6; j++)
			mac[j] = *((u8 *)(((u8 *)&lio->linfo.hw_addr) + 2 + j));

		/* Copy MAC Address to OS network device structure */

		ether_addr_copy(netdev->dev_addr, mac);

4098 4099 4100 4101 4102
		/* By default all interfaces on a single Octeon uses the same
		 * tx and rx queues
		 */
		lio->txq = lio->linfo.txpciq[0].s.q_no;
		lio->rxq = lio->linfo.rxpciq[0].s.q_no;
4103
		if (setup_io_queues(octeon_dev, i)) {
4104 4105 4106 4107 4108 4109 4110 4111 4112
			dev_err(&octeon_dev->pci_dev->dev, "I/O queues creation failed\n");
			goto setup_nic_dev_fail;
		}

		ifstate_set(lio, LIO_IFSTATE_DROQ_OPS);

		lio->tx_qsize = octeon_get_tx_qsize(octeon_dev, lio->txq);
		lio->rx_qsize = octeon_get_rx_qsize(octeon_dev, lio->rxq);

4113
		if (setup_glists(octeon_dev, lio, num_iqueues)) {
4114 4115 4116 4117 4118 4119 4120
			dev_err(&octeon_dev->pci_dev->dev,
				"Gather list allocation failed\n");
			goto setup_nic_dev_fail;
		}

		/* Register ethtool support */
		liquidio_set_ethtool_ops(netdev);
4121 4122 4123 4124
		if (lio->oct_dev->chip_id == OCTEON_CN23XX_PF_VID)
			octeon_dev->priv_flags = OCT_PRIV_FLAG_DEFAULT;
		else
			octeon_dev->priv_flags = 0x0;
4125

4126
		if (netdev->features & NETIF_F_LRO)
4127 4128
			liquidio_set_feature(netdev, OCTNET_CMD_LRO_ENABLE,
					     OCTNIC_LROIPV4 | OCTNIC_LROIPV6);
4129

R
Raghu Vatsavayi 已提交
4130 4131
		liquidio_set_feature(netdev, OCTNET_CMD_ENABLE_VLAN_FILTER, 0);

4132
		if ((debug != -1) && (debug & NETIF_MSG_HW))
R
Raghu Vatsavayi 已提交
4133 4134
			liquidio_set_feature(netdev,
					     OCTNET_CMD_VERBOSE_ENABLE, 0);
4135

4136 4137 4138
		if (setup_link_status_change_wq(netdev))
			goto setup_nic_dev_fail;

4139 4140 4141 4142 4143 4144 4145 4146 4147 4148
		/* Register the network device with the OS */
		if (register_netdev(netdev)) {
			dev_err(&octeon_dev->pci_dev->dev, "Device registration failed\n");
			goto setup_nic_dev_fail;
		}

		dev_dbg(&octeon_dev->pci_dev->dev,
			"Setup NIC ifidx:%d mac:%02x%02x%02x%02x%02x%02x\n",
			i, mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]);
		netif_carrier_off(netdev);
4149
		lio->link_changes++;
4150 4151 4152

		ifstate_set(lio, LIO_IFSTATE_REGISTERED);

R
Raghu Vatsavayi 已提交
4153 4154 4155 4156 4157 4158 4159 4160 4161
		/* Sending command to firmware to enable Rx checksum offload
		 * by default at the time of setup of Liquidio driver for
		 * this device
		 */
		liquidio_set_rxcsum_command(netdev, OCTNET_CMD_TNL_RX_CSUM_CTL,
					    OCTNET_CMD_RXCSUM_ENABLE);
		liquidio_set_feature(netdev, OCTNET_CMD_TNL_TX_CSUM_CTL,
				     OCTNET_CMD_TXCSUM_ENABLE);

4162 4163 4164 4165 4166 4167 4168 4169 4170 4171 4172 4173
		dev_dbg(&octeon_dev->pci_dev->dev,
			"NIC ifidx:%d Setup successful\n", i);

		octeon_free_soft_command(octeon_dev, sc);
	}

	return 0;

setup_nic_dev_fail:

	octeon_free_soft_command(octeon_dev, sc);

R
Raghu Vatsavayi 已提交
4174 4175
setup_nic_wait_intr:

4176 4177 4178 4179 4180 4181 4182 4183
	while (i--) {
		dev_err(&octeon_dev->pci_dev->dev,
			"NIC ifidx:%d Setup failed\n", i);
		liquidio_destroy_nic_device(octeon_dev, i);
	}
	return -ENODEV;
}

4184 4185 4186 4187 4188 4189 4190 4191 4192 4193 4194 4195 4196 4197 4198 4199 4200 4201 4202 4203 4204 4205 4206 4207 4208 4209 4210 4211 4212 4213 4214 4215 4216 4217 4218 4219 4220 4221 4222 4223 4224 4225 4226 4227 4228 4229 4230 4231 4232 4233 4234 4235 4236 4237 4238 4239 4240 4241 4242 4243 4244 4245 4246 4247 4248 4249 4250 4251 4252 4253 4254 4255 4256 4257 4258 4259 4260 4261 4262 4263 4264 4265 4266 4267 4268 4269 4270 4271 4272 4273 4274 4275 4276 4277 4278
#ifdef CONFIG_PCI_IOV
static int octeon_enable_sriov(struct octeon_device *oct)
{
	unsigned int num_vfs_alloced = oct->sriov_info.num_vfs_alloced;
	struct pci_dev *vfdev;
	int err;
	u32 u;

	if (OCTEON_CN23XX_PF(oct) && num_vfs_alloced) {
		err = pci_enable_sriov(oct->pci_dev,
				       oct->sriov_info.num_vfs_alloced);
		if (err) {
			dev_err(&oct->pci_dev->dev,
				"OCTEON: Failed to enable PCI sriov: %d\n",
				err);
			oct->sriov_info.num_vfs_alloced = 0;
			return err;
		}
		oct->sriov_info.sriov_enabled = 1;

		/* init lookup table that maps DPI ring number to VF pci_dev
		 * struct pointer
		 */
		u = 0;
		vfdev = pci_get_device(PCI_VENDOR_ID_CAVIUM,
				       OCTEON_CN23XX_VF_VID, NULL);
		while (vfdev) {
			if (vfdev->is_virtfn &&
			    (vfdev->physfn == oct->pci_dev)) {
				oct->sriov_info.dpiring_to_vfpcidev_lut[u] =
					vfdev;
				u += oct->sriov_info.rings_per_vf;
			}
			vfdev = pci_get_device(PCI_VENDOR_ID_CAVIUM,
					       OCTEON_CN23XX_VF_VID, vfdev);
		}
	}

	return num_vfs_alloced;
}

static int lio_pci_sriov_disable(struct octeon_device *oct)
{
	int u;

	if (pci_vfs_assigned(oct->pci_dev)) {
		dev_err(&oct->pci_dev->dev, "VFs are still assigned to VMs.\n");
		return -EPERM;
	}

	pci_disable_sriov(oct->pci_dev);

	u = 0;
	while (u < MAX_POSSIBLE_VFS) {
		oct->sriov_info.dpiring_to_vfpcidev_lut[u] = NULL;
		u += oct->sriov_info.rings_per_vf;
	}

	oct->sriov_info.num_vfs_alloced = 0;
	dev_info(&oct->pci_dev->dev, "oct->pf_num:%d disabled VFs\n",
		 oct->pf_num);

	return 0;
}

static int liquidio_enable_sriov(struct pci_dev *dev, int num_vfs)
{
	struct octeon_device *oct = pci_get_drvdata(dev);
	int ret = 0;

	if ((num_vfs == oct->sriov_info.num_vfs_alloced) &&
	    (oct->sriov_info.sriov_enabled)) {
		dev_info(&oct->pci_dev->dev, "oct->pf_num:%d already enabled num_vfs:%d\n",
			 oct->pf_num, num_vfs);
		return 0;
	}

	if (!num_vfs) {
		ret = lio_pci_sriov_disable(oct);
	} else if (num_vfs > oct->sriov_info.max_vfs) {
		dev_err(&oct->pci_dev->dev,
			"OCTEON: Max allowed VFs:%d user requested:%d",
			oct->sriov_info.max_vfs, num_vfs);
		ret = -EPERM;
	} else {
		oct->sriov_info.num_vfs_alloced = num_vfs;
		ret = octeon_enable_sriov(oct);
		dev_info(&oct->pci_dev->dev, "oct->pf_num:%d num_vfs:%d\n",
			 oct->pf_num, num_vfs);
	}

	return ret;
}
#endif

4279 4280 4281 4282 4283 4284 4285 4286 4287 4288
/**
 * \brief initialize the NIC
 * @param oct octeon device
 *
 * This initialization routine is called once the Octeon device application is
 * up and running
 */
static int liquidio_init_nic_module(struct octeon_device *oct)
{
	struct oct_intrmod_cfg *intrmod_cfg;
4289
	int i, retval = 0;
4290 4291 4292 4293 4294 4295 4296 4297 4298 4299
	int num_nic_ports = CFG_GET_NUM_NIC_PORTS(octeon_get_conf(oct));

	dev_dbg(&oct->pci_dev->dev, "Initializing network interfaces\n");

	/* only default iq and oq were initialized
	 * initialize the rest as well
	 */
	/* run port_config command for each port */
	oct->ifcount = num_nic_ports;

4300
	memset(oct->props, 0, sizeof(struct octdev_props) * num_nic_ports);
4301

4302 4303 4304
	for (i = 0; i < MAX_OCTEON_LINKS; i++)
		oct->props[i].gmxport = -1;

4305 4306 4307 4308 4309 4310 4311 4312 4313 4314
	retval = setup_nic_devices(oct);
	if (retval) {
		dev_err(&oct->pci_dev->dev, "Setup NIC devices failed\n");
		goto octnet_init_failure;
	}

	liquidio_ptp_init(oct);

	/* Initialize interrupt moderation params */
	intrmod_cfg = &((struct octeon_device *)oct)->intrmod;
4315
	intrmod_cfg->rx_enable = 1;
4316
	intrmod_cfg->check_intrvl = LIO_INTRMOD_CHECK_INTERVAL;
4317 4318 4319 4320 4321 4322 4323 4324 4325 4326 4327
	intrmod_cfg->maxpkt_ratethr = LIO_INTRMOD_MAXPKT_RATETHR;
	intrmod_cfg->minpkt_ratethr = LIO_INTRMOD_MINPKT_RATETHR;
	intrmod_cfg->rx_maxcnt_trigger = LIO_INTRMOD_RXMAXCNT_TRIGGER;
	intrmod_cfg->rx_maxtmr_trigger = LIO_INTRMOD_RXMAXTMR_TRIGGER;
	intrmod_cfg->rx_mintmr_trigger = LIO_INTRMOD_RXMINTMR_TRIGGER;
	intrmod_cfg->rx_mincnt_trigger = LIO_INTRMOD_RXMINCNT_TRIGGER;
	intrmod_cfg->tx_enable = 1;
	intrmod_cfg->tx_maxcnt_trigger = LIO_INTRMOD_TXMAXCNT_TRIGGER;
	intrmod_cfg->tx_mincnt_trigger = LIO_INTRMOD_TXMINCNT_TRIGGER;
	intrmod_cfg->rx_frames = CFG_GET_OQ_INTR_PKT(octeon_get_conf(oct));
	intrmod_cfg->rx_usecs = CFG_GET_OQ_INTR_TIME(octeon_get_conf(oct));
4328
	intrmod_cfg->tx_frames = CFG_GET_IQ_INTR_PKT(octeon_get_conf(oct));
4329 4330 4331 4332 4333 4334 4335 4336 4337 4338 4339 4340 4341 4342 4343 4344 4345 4346 4347 4348 4349 4350 4351 4352 4353 4354 4355 4356 4357 4358 4359 4360 4361 4362 4363 4364 4365 4366 4367 4368 4369 4370 4371 4372 4373 4374 4375 4376 4377 4378 4379 4380 4381 4382 4383
	dev_dbg(&oct->pci_dev->dev, "Network interfaces ready\n");

	return retval;

octnet_init_failure:

	oct->ifcount = 0;

	return retval;
}

/**
 * \brief starter callback that invokes the remaining initialization work after
 * the NIC is up and running.
 * @param octptr  work struct work_struct
 */
static void nic_starter(struct work_struct *work)
{
	struct octeon_device *oct;
	struct cavium_wk *wk = (struct cavium_wk *)work;

	oct = (struct octeon_device *)wk->ctxptr;

	if (atomic_read(&oct->status) == OCT_DEV_RUNNING)
		return;

	/* If the status of the device is CORE_OK, the core
	 * application has reported its application type. Call
	 * any registered handlers now and move to the RUNNING
	 * state.
	 */
	if (atomic_read(&oct->status) != OCT_DEV_CORE_OK) {
		schedule_delayed_work(&oct->nic_poll_work.work,
				      LIQUIDIO_STARTER_POLL_INTERVAL_MS);
		return;
	}

	atomic_set(&oct->status, OCT_DEV_RUNNING);

	if (oct->app_mode && oct->app_mode == CVM_DRV_NIC_APP) {
		dev_dbg(&oct->pci_dev->dev, "Starting NIC module\n");

		if (liquidio_init_nic_module(oct))
			dev_err(&oct->pci_dev->dev, "NIC initialization failed\n");
		else
			handshake[oct->octeon_id].started_ok = 1;
	} else {
		dev_err(&oct->pci_dev->dev,
			"Unexpected application running on NIC (%d). Check firmware.\n",
			oct->app_mode);
	}

	complete(&handshake[oct->octeon_id].started);
}

4384 4385 4386 4387 4388 4389 4390 4391 4392 4393 4394 4395 4396 4397 4398 4399 4400 4401 4402 4403 4404 4405 4406 4407 4408 4409 4410 4411 4412 4413 4414 4415 4416 4417 4418 4419 4420 4421 4422 4423 4424 4425 4426 4427 4428 4429
static int
octeon_recv_vf_drv_notice(struct octeon_recv_info *recv_info, void *buf)
{
	struct octeon_device *oct = (struct octeon_device *)buf;
	struct octeon_recv_pkt *recv_pkt = recv_info->recv_pkt;
	int i, notice, vf_idx;
	u64 *data, vf_num;

	notice = recv_pkt->rh.r.ossp;
	data = (u64 *)get_rbd(recv_pkt->buffer_ptr[0]);

	/* the first 64-bit word of data is the vf_num */
	vf_num = data[0];
	octeon_swap_8B_data(&vf_num, 1);
	vf_idx = (int)vf_num - 1;

	if (notice == VF_DRV_LOADED) {
		if (!(oct->sriov_info.vf_drv_loaded_mask & BIT_ULL(vf_idx))) {
			oct->sriov_info.vf_drv_loaded_mask |= BIT_ULL(vf_idx);
			dev_info(&oct->pci_dev->dev,
				 "driver for VF%d was loaded\n", vf_idx);
			try_module_get(THIS_MODULE);
		}
	} else if (notice == VF_DRV_REMOVED) {
		if (oct->sriov_info.vf_drv_loaded_mask & BIT_ULL(vf_idx)) {
			oct->sriov_info.vf_drv_loaded_mask &= ~BIT_ULL(vf_idx);
			dev_info(&oct->pci_dev->dev,
				 "driver for VF%d was removed\n", vf_idx);
			module_put(THIS_MODULE);
		}
	} else if (notice == VF_DRV_MACADDR_CHANGED) {
		u8 *b = (u8 *)&data[1];

		oct->sriov_info.vf_macaddr[vf_idx] = data[1];
		dev_info(&oct->pci_dev->dev,
			 "VF driver changed VF%d's MAC address to %pM\n",
			 vf_idx, b + 2);
	}

	for (i = 0; i < recv_pkt->buffer_count; i++)
		recv_buffer_free(recv_pkt->buffer_ptr[i]);
	octeon_free_recv_info(recv_info);

	return 0;
}

4430 4431 4432 4433 4434 4435 4436
/**
 * \brief Device initialization for each Octeon device that is probed
 * @param octeon_dev  octeon device
 */
static int octeon_device_init(struct octeon_device *octeon_dev)
{
	int j, ret;
4437
	int fw_loaded = 0;
4438
	char bootcmd[] = "\n";
4439 4440 4441 4442 4443 4444 4445 4446 4447 4448
	struct octeon_device_priv *oct_priv =
		(struct octeon_device_priv *)octeon_dev->priv;
	atomic_set(&octeon_dev->status, OCT_DEV_BEGIN_STATE);

	/* Enable access to the octeon device and make its DMA capability
	 * known to the OS.
	 */
	if (octeon_pci_os_setup(octeon_dev))
		return 1;

R
Raghu Vatsavayi 已提交
4449 4450
	atomic_set(&octeon_dev->status, OCT_DEV_PCI_ENABLE_DONE);

4451 4452 4453 4454 4455 4456 4457 4458 4459 4460
	/* Identify the Octeon type and map the BAR address space. */
	if (octeon_chip_specific_setup(octeon_dev)) {
		dev_err(&octeon_dev->pci_dev->dev, "Chip specific setup failed\n");
		return 1;
	}

	atomic_set(&octeon_dev->status, OCT_DEV_PCI_MAP_DONE);

	octeon_dev->app_mode = CVM_DRV_INVALID_APP;

4461 4462 4463 4464 4465 4466 4467 4468 4469 4470 4471 4472 4473 4474 4475
	if (OCTEON_CN23XX_PF(octeon_dev)) {
		if (!cn23xx_fw_loaded(octeon_dev)) {
			fw_loaded = 0;
			/* Do a soft reset of the Octeon device. */
			if (octeon_dev->fn_list.soft_reset(octeon_dev))
				return 1;
			/* things might have changed */
			if (!cn23xx_fw_loaded(octeon_dev))
				fw_loaded = 0;
			else
				fw_loaded = 1;
		} else {
			fw_loaded = 1;
		}
	} else if (octeon_dev->fn_list.soft_reset(octeon_dev)) {
4476
		return 1;
4477
	}
4478 4479 4480 4481 4482 4483 4484 4485 4486 4487 4488 4489

	/* Initialize the dispatch mechanism used to push packets arriving on
	 * Octeon Output queues.
	 */
	if (octeon_init_dispatch_list(octeon_dev))
		return 1;

	octeon_register_dispatch_fn(octeon_dev, OPCODE_NIC,
				    OPCODE_NIC_CORE_DRV_ACTIVE,
				    octeon_core_drv_init,
				    octeon_dev);

4490 4491 4492
	octeon_register_dispatch_fn(octeon_dev, OPCODE_NIC,
				    OPCODE_NIC_VF_DRV_NOTICE,
				    octeon_recv_vf_drv_notice, octeon_dev);
4493 4494 4495 4496 4497 4498 4499 4500 4501
	INIT_DELAYED_WORK(&octeon_dev->nic_poll_work.work, nic_starter);
	octeon_dev->nic_poll_work.ctxptr = (void *)octeon_dev;
	schedule_delayed_work(&octeon_dev->nic_poll_work.work,
			      LIQUIDIO_STARTER_POLL_INTERVAL_MS);

	atomic_set(&octeon_dev->status, OCT_DEV_DISPATCH_INIT_DONE);

	octeon_set_io_queues_off(octeon_dev);

4502 4503 4504 4505 4506 4507 4508 4509 4510 4511 4512 4513 4514 4515 4516 4517
	if (OCTEON_CN23XX_PF(octeon_dev)) {
		ret = octeon_dev->fn_list.setup_device_regs(octeon_dev);
		if (ret) {
			dev_err(&octeon_dev->pci_dev->dev, "OCTEON: Failed to configure device registers\n");
			return ret;
		}
	}

	/* Initialize soft command buffer pool
	 */
	if (octeon_setup_sc_buffer_pool(octeon_dev)) {
		dev_err(&octeon_dev->pci_dev->dev, "sc buffer pool allocation failed\n");
		return 1;
	}
	atomic_set(&octeon_dev->status, OCT_DEV_SC_BUFF_POOL_INIT_DONE);

4518 4519 4520 4521 4522 4523 4524 4525 4526 4527 4528 4529 4530 4531 4532 4533 4534 4535 4536
	/*  Setup the data structures that manage this Octeon's Input queues. */
	if (octeon_setup_instr_queues(octeon_dev)) {
		dev_err(&octeon_dev->pci_dev->dev,
			"instruction queue initialization failed\n");
		return 1;
	}
	atomic_set(&octeon_dev->status, OCT_DEV_INSTR_QUEUE_INIT_DONE);

	/* Initialize lists to manage the requests of different types that
	 * arrive from user & kernel applications for this octeon device.
	 */
	if (octeon_setup_response_list(octeon_dev)) {
		dev_err(&octeon_dev->pci_dev->dev, "Response list allocation failed\n");
		return 1;
	}
	atomic_set(&octeon_dev->status, OCT_DEV_RESP_LIST_INIT_DONE);

	if (octeon_setup_output_queues(octeon_dev)) {
		dev_err(&octeon_dev->pci_dev->dev, "Output queue initialization failed\n");
4537
		return 1;
4538 4539 4540 4541
	}

	atomic_set(&octeon_dev->status, OCT_DEV_DROQ_INIT_DONE);

4542
	if (OCTEON_CN23XX_PF(octeon_dev)) {
4543 4544 4545 4546 4547 4548
		if (octeon_dev->fn_list.setup_mbox(octeon_dev)) {
			dev_err(&octeon_dev->pci_dev->dev, "OCTEON: Mailbox setup failed\n");
			return 1;
		}
		atomic_set(&octeon_dev->status, OCT_DEV_MBOX_SETUP_DONE);

4549 4550 4551 4552
		if (octeon_allocate_ioq_vector(octeon_dev)) {
			dev_err(&octeon_dev->pci_dev->dev, "OCTEON: ioq vector allocation failed\n");
			return 1;
		}
R
Raghu Vatsavayi 已提交
4553
		atomic_set(&octeon_dev->status, OCT_DEV_MSIX_ALLOC_VECTOR_DONE);
4554 4555 4556 4557 4558 4559 4560 4561 4562 4563 4564 4565

	} else {
		/* The input and output queue registers were setup earlier (the
		 * queues were not enabled). Any additional registers
		 * that need to be programmed should be done now.
		 */
		ret = octeon_dev->fn_list.setup_device_regs(octeon_dev);
		if (ret) {
			dev_err(&octeon_dev->pci_dev->dev,
				"Failed to configure device registers\n");
			return ret;
		}
4566 4567 4568 4569 4570 4571 4572 4573 4574
	}

	/* Initialize the tasklet that handles output queue packet processing.*/
	dev_dbg(&octeon_dev->pci_dev->dev, "Initializing droq tasklet\n");
	tasklet_init(&oct_priv->droq_tasklet, octeon_droq_bh,
		     (unsigned long)octeon_dev);

	/* Setup the interrupt handler and record the INT SUM register address
	 */
4575 4576
	if (octeon_setup_interrupt(octeon_dev))
		return 1;
4577 4578

	/* Enable Octeon device interrupts */
4579
	octeon_dev->fn_list.enable_interrupt(octeon_dev, OCTEON_ALL_INTR);
4580

R
Raghu Vatsavayi 已提交
4581 4582
	atomic_set(&octeon_dev->status, OCT_DEV_INTR_SET_DONE);

4583
	/* Enable the input and output queues for this Octeon device */
4584 4585 4586 4587 4588
	ret = octeon_dev->fn_list.enable_io_queues(octeon_dev);
	if (ret) {
		dev_err(&octeon_dev->pci_dev->dev, "Failed to enable input/output queues");
		return ret;
	}
4589 4590 4591

	atomic_set(&octeon_dev->status, OCT_DEV_IO_QUEUES_DONE);

4592 4593 4594 4595 4596 4597
	if ((!OCTEON_CN23XX_PF(octeon_dev)) || !fw_loaded) {
		dev_dbg(&octeon_dev->pci_dev->dev, "Waiting for DDR initialization...\n");
		if (!ddr_timeout) {
			dev_info(&octeon_dev->pci_dev->dev,
				 "WAITING. Set ddr_timeout to non-zero value to proceed with initialization.\n");
		}
4598

4599
		schedule_timeout_uninterruptible(HZ * LIO_RESET_SECS);
4600

4601 4602 4603 4604 4605 4606 4607 4608 4609 4610 4611 4612 4613
		/* Wait for the octeon to initialize DDR after the soft-reset.*/
		while (!ddr_timeout) {
			set_current_state(TASK_INTERRUPTIBLE);
			if (schedule_timeout(HZ / 10)) {
				/* user probably pressed Control-C */
				return 1;
			}
		}
		ret = octeon_wait_for_ddr_init(octeon_dev, &ddr_timeout);
		if (ret) {
			dev_err(&octeon_dev->pci_dev->dev,
				"DDR not initialized. Please confirm that board is configured to boot from Flash, ret: %d\n",
				ret);
R
Raghu Vatsavayi 已提交
4614 4615
			return 1;
		}
4616

4617 4618 4619 4620
		if (octeon_wait_for_bootloader(octeon_dev, 1000)) {
			dev_err(&octeon_dev->pci_dev->dev, "Board not responding\n");
			return 1;
		}
4621

4622 4623
		/* Divert uboot to take commands from host instead. */
		ret = octeon_console_send_cmd(octeon_dev, bootcmd, 50);
4624

4625 4626 4627 4628 4629 4630 4631 4632 4633 4634 4635
		dev_dbg(&octeon_dev->pci_dev->dev, "Initializing consoles\n");
		ret = octeon_init_consoles(octeon_dev);
		if (ret) {
			dev_err(&octeon_dev->pci_dev->dev, "Could not access board consoles\n");
			return 1;
		}
		ret = octeon_add_console(octeon_dev, 0);
		if (ret) {
			dev_err(&octeon_dev->pci_dev->dev, "Could not access board console\n");
			return 1;
		}
4636

4637
		atomic_set(&octeon_dev->status, OCT_DEV_CONSOLE_INIT_DONE);
4638

4639 4640 4641 4642 4643 4644 4645 4646 4647 4648 4649 4650
		dev_dbg(&octeon_dev->pci_dev->dev, "Loading firmware\n");
		ret = load_firmware(octeon_dev);
		if (ret) {
			dev_err(&octeon_dev->pci_dev->dev, "Could not load firmware to board\n");
			return 1;
		}
		/* set bit 1 of SLI_SCRATCH_1 to indicate that firmware is
		 * loaded
		 */
		if (OCTEON_CN23XX_PF(octeon_dev))
			octeon_write_csr64(octeon_dev, CN23XX_SLI_SCRATCH1,
					   2ULL);
4651 4652 4653 4654 4655 4656 4657 4658 4659 4660 4661 4662 4663 4664 4665 4666 4667 4668 4669 4670 4671 4672 4673 4674 4675 4676 4677 4678 4679 4680
	}

	handshake[octeon_dev->octeon_id].init_ok = 1;
	complete(&handshake[octeon_dev->octeon_id].init);

	atomic_set(&octeon_dev->status, OCT_DEV_HOST_OK);

	/* Send Credit for Octeon Output queues. Credits are always sent after
	 * the output queue is enabled.
	 */
	for (j = 0; j < octeon_dev->num_oqs; j++)
		writel(octeon_dev->droq[j]->max_count,
		       octeon_dev->droq[j]->pkts_credit_reg);

	/* Packets can start arriving on the output queues from this point. */
	return 0;
}

/**
 * \brief Exits the module
 */
static void __exit liquidio_exit(void)
{
	liquidio_deinit_pci();

	pr_info("LiquidIO network module is now unloaded\n");
}

module_init(liquidio_init);
module_exit(liquidio_exit);