stmmac_main.c 82.9 KB
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/*******************************************************************************
  This is the driver for the ST MAC 10/100/1000 on-chip Ethernet controllers.
  ST Ethernet IPs are built around a Synopsys IP Core.

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	Copyright(C) 2007-2011 STMicroelectronics Ltd
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  This program is free software; you can redistribute it and/or modify it
  under the terms and conditions of the GNU General Public License,
  version 2, as published by the Free Software Foundation.

  This program is distributed in the hope it will be useful, but WITHOUT
  ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
  more details.

  You should have received a copy of the GNU General Public License along with
  this program; if not, write to the Free Software Foundation, Inc.,
  51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA.

  The full GNU General Public License is included in this distribution in
  the file called "COPYING".

  Author: Giuseppe Cavallaro <peppe.cavallaro@st.com>

  Documentation available at:
	http://www.stlinux.com
  Support available at:
	https://bugzilla.stlinux.com/
*******************************************************************************/

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#include <linux/clk.h>
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#include <linux/kernel.h>
#include <linux/interrupt.h>
#include <linux/ip.h>
#include <linux/tcp.h>
#include <linux/skbuff.h>
#include <linux/ethtool.h>
#include <linux/if_ether.h>
#include <linux/crc32.h>
#include <linux/mii.h>
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#include <linux/if.h>
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#include <linux/if_vlan.h>
#include <linux/dma-mapping.h>
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#include <linux/slab.h>
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#include <linux/prefetch.h>
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#include <linux/pinctrl/consumer.h>
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#ifdef CONFIG_STMMAC_DEBUG_FS
#include <linux/debugfs.h>
#include <linux/seq_file.h>
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#endif /* CONFIG_STMMAC_DEBUG_FS */
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#include <linux/net_tstamp.h>
#include "stmmac_ptp.h"
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#include "stmmac.h"
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#include <linux/reset.h>
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#define STMMAC_ALIGN(x)	L1_CACHE_ALIGN(x)

/* Module parameters */
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#define TX_TIMEO	5000
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static int watchdog = TX_TIMEO;
module_param(watchdog, int, S_IRUGO | S_IWUSR);
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MODULE_PARM_DESC(watchdog, "Transmit timeout in milliseconds (default 5s)");
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static int debug = -1;
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module_param(debug, int, S_IRUGO | S_IWUSR);
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MODULE_PARM_DESC(debug, "Message Level (-1: default, 0: no output, 16: all)");
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static int phyaddr = -1;
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module_param(phyaddr, int, S_IRUGO);
MODULE_PARM_DESC(phyaddr, "Physical device address");

#define DMA_TX_SIZE 256
static int dma_txsize = DMA_TX_SIZE;
module_param(dma_txsize, int, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(dma_txsize, "Number of descriptors in the TX list");

#define DMA_RX_SIZE 256
static int dma_rxsize = DMA_RX_SIZE;
module_param(dma_rxsize, int, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(dma_rxsize, "Number of descriptors in the RX list");

static int flow_ctrl = FLOW_OFF;
module_param(flow_ctrl, int, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(flow_ctrl, "Flow control ability [on/off]");

static int pause = PAUSE_TIME;
module_param(pause, int, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(pause, "Flow Control Pause Time");

#define TC_DEFAULT 64
static int tc = TC_DEFAULT;
module_param(tc, int, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(tc, "DMA threshold control value");

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#define	DEFAULT_BUFSIZE	1536
static int buf_sz = DEFAULT_BUFSIZE;
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module_param(buf_sz, int, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(buf_sz, "DMA buffer size");

static const u32 default_msg_level = (NETIF_MSG_DRV | NETIF_MSG_PROBE |
				      NETIF_MSG_LINK | NETIF_MSG_IFUP |
				      NETIF_MSG_IFDOWN | NETIF_MSG_TIMER);

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#define STMMAC_DEFAULT_LPI_TIMER	1000
static int eee_timer = STMMAC_DEFAULT_LPI_TIMER;
module_param(eee_timer, int, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(eee_timer, "LPI tx expiration time in msec");
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#define STMMAC_LPI_T(x) (jiffies + msecs_to_jiffies(x))
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/* By default the driver will use the ring mode to manage tx and rx descriptors
 * but passing this value so user can force to use the chain instead of the ring
 */
static unsigned int chain_mode;
module_param(chain_mode, int, S_IRUGO);
MODULE_PARM_DESC(chain_mode, "To use chain instead of ring mode");

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static irqreturn_t stmmac_interrupt(int irq, void *dev_id);

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#ifdef CONFIG_STMMAC_DEBUG_FS
static int stmmac_init_fs(struct net_device *dev);
static void stmmac_exit_fs(void);
#endif

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#define STMMAC_COAL_TIMER(x) (jiffies + usecs_to_jiffies(x))

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/**
 * stmmac_verify_args - verify the driver parameters.
 * Description: it verifies if some wrong parameter is passed to the driver.
 * Note that wrong parameters are replaced with the default values.
 */
static void stmmac_verify_args(void)
{
	if (unlikely(watchdog < 0))
		watchdog = TX_TIMEO;
	if (unlikely(dma_rxsize < 0))
		dma_rxsize = DMA_RX_SIZE;
	if (unlikely(dma_txsize < 0))
		dma_txsize = DMA_TX_SIZE;
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	if (unlikely((buf_sz < DEFAULT_BUFSIZE) || (buf_sz > BUF_SIZE_16KiB)))
		buf_sz = DEFAULT_BUFSIZE;
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	if (unlikely(flow_ctrl > 1))
		flow_ctrl = FLOW_AUTO;
	else if (likely(flow_ctrl < 0))
		flow_ctrl = FLOW_OFF;
	if (unlikely((pause < 0) || (pause > 0xffff)))
		pause = PAUSE_TIME;
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	if (eee_timer < 0)
		eee_timer = STMMAC_DEFAULT_LPI_TIMER;
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}

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/**
 * stmmac_clk_csr_set - dynamically set the MDC clock
 * @priv: driver private structure
 * Description: this is to dynamically set the MDC clock according to the csr
 * clock input.
 * Note:
 *	If a specific clk_csr value is passed from the platform
 *	this means that the CSR Clock Range selection cannot be
 *	changed at run-time and it is fixed (as reported in the driver
 *	documentation). Viceversa the driver will try to set the MDC
 *	clock dynamically according to the actual clock input.
 */
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static void stmmac_clk_csr_set(struct stmmac_priv *priv)
{
	u32 clk_rate;

	clk_rate = clk_get_rate(priv->stmmac_clk);

	/* Platform provided default clk_csr would be assumed valid
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	 * for all other cases except for the below mentioned ones.
	 * For values higher than the IEEE 802.3 specified frequency
	 * we can not estimate the proper divider as it is not known
	 * the frequency of clk_csr_i. So we do not change the default
	 * divider.
	 */
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	if (!(priv->clk_csr & MAC_CSR_H_FRQ_MASK)) {
		if (clk_rate < CSR_F_35M)
			priv->clk_csr = STMMAC_CSR_20_35M;
		else if ((clk_rate >= CSR_F_35M) && (clk_rate < CSR_F_60M))
			priv->clk_csr = STMMAC_CSR_35_60M;
		else if ((clk_rate >= CSR_F_60M) && (clk_rate < CSR_F_100M))
			priv->clk_csr = STMMAC_CSR_60_100M;
		else if ((clk_rate >= CSR_F_100M) && (clk_rate < CSR_F_150M))
			priv->clk_csr = STMMAC_CSR_100_150M;
		else if ((clk_rate >= CSR_F_150M) && (clk_rate < CSR_F_250M))
			priv->clk_csr = STMMAC_CSR_150_250M;
		else if ((clk_rate >= CSR_F_250M) && (clk_rate < CSR_F_300M))
			priv->clk_csr = STMMAC_CSR_250_300M;
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	}
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}

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static void print_pkt(unsigned char *buf, int len)
{
	int j;
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	pr_debug("len = %d byte, buf addr: 0x%p", len, buf);
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	for (j = 0; j < len; j++) {
		if ((j % 16) == 0)
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			pr_debug("\n %03x:", j);
		pr_debug(" %02x", buf[j]);
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	}
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	pr_debug("\n");
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}

/* minimum number of free TX descriptors required to wake up TX process */
#define STMMAC_TX_THRESH(x)	(x->dma_tx_size/4)

static inline u32 stmmac_tx_avail(struct stmmac_priv *priv)
{
	return priv->dirty_tx + priv->dma_tx_size - priv->cur_tx - 1;
}

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/**
 * stmmac_hw_fix_mac_speed: callback for speed selection
 * @priv: driver private structure
 * Description: on some platforms (e.g. ST), some HW system configuraton
 * registers have to be set according to the link speed negotiated.
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 */
static inline void stmmac_hw_fix_mac_speed(struct stmmac_priv *priv)
{
	struct phy_device *phydev = priv->phydev;

	if (likely(priv->plat->fix_mac_speed))
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		priv->plat->fix_mac_speed(priv->plat->bsp_priv, phydev->speed);
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}

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/**
 * stmmac_enable_eee_mode: Check and enter in LPI mode
 * @priv: driver private structure
 * Description: this function is to verify and enter in LPI mode for EEE.
 */
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static void stmmac_enable_eee_mode(struct stmmac_priv *priv)
{
	/* Check and enter in LPI mode */
	if ((priv->dirty_tx == priv->cur_tx) &&
	    (priv->tx_path_in_lpi_mode == false))
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		priv->hw->mac->set_eee_mode(priv->hw);
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}

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/**
 * stmmac_disable_eee_mode: disable/exit from EEE
 * @priv: driver private structure
 * Description: this function is to exit and disable EEE in case of
 * LPI state is true. This is called by the xmit.
 */
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void stmmac_disable_eee_mode(struct stmmac_priv *priv)
{
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	priv->hw->mac->reset_eee_mode(priv->hw);
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	del_timer_sync(&priv->eee_ctrl_timer);
	priv->tx_path_in_lpi_mode = false;
}

/**
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 * stmmac_eee_ctrl_timer: EEE TX SW timer.
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 * @arg : data hook
 * Description:
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 *  if there is no data transfer and if we are not in LPI state,
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 *  then MAC Transmitter can be moved to LPI state.
 */
static void stmmac_eee_ctrl_timer(unsigned long arg)
{
	struct stmmac_priv *priv = (struct stmmac_priv *)arg;

	stmmac_enable_eee_mode(priv);
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	mod_timer(&priv->eee_ctrl_timer, STMMAC_LPI_T(eee_timer));
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}

/**
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 * stmmac_eee_init: init EEE
 * @priv: driver private structure
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 * Description:
 *  If the EEE support has been enabled while configuring the driver,
 *  if the GMAC actually supports the EEE (from the HW cap reg) and the
 *  phy can also manage EEE, so enable the LPI state and start the timer
 *  to verify if the tx path can enter in LPI state.
 */
bool stmmac_eee_init(struct stmmac_priv *priv)
{
	bool ret = false;

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	/* Using PCS we cannot dial with the phy registers at this stage
	 * so we do not support extra feature like EEE.
	 */
	if ((priv->pcs == STMMAC_PCS_RGMII) || (priv->pcs == STMMAC_PCS_TBI) ||
	    (priv->pcs == STMMAC_PCS_RTBI))
		goto out;

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	/* MAC core supports the EEE feature. */
	if (priv->dma_cap.eee) {
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		int tx_lpi_timer = priv->tx_lpi_timer;

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		/* Check if the PHY supports EEE */
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		if (phy_init_eee(priv->phydev, 1)) {
			/* To manage at run-time if the EEE cannot be supported
			 * anymore (for example because the lp caps have been
			 * changed).
			 * In that case the driver disable own timers.
			 */
			if (priv->eee_active) {
				pr_debug("stmmac: disable EEE\n");
				del_timer_sync(&priv->eee_ctrl_timer);
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				priv->hw->mac->set_eee_timer(priv->hw, 0,
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							     tx_lpi_timer);
			}
			priv->eee_active = 0;
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			goto out;
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		}
		/* Activate the EEE and start timers */
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		if (!priv->eee_active) {
			priv->eee_active = 1;
			init_timer(&priv->eee_ctrl_timer);
			priv->eee_ctrl_timer.function = stmmac_eee_ctrl_timer;
			priv->eee_ctrl_timer.data = (unsigned long)priv;
			priv->eee_ctrl_timer.expires = STMMAC_LPI_T(eee_timer);
			add_timer(&priv->eee_ctrl_timer);

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			priv->hw->mac->set_eee_timer(priv->hw,
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						     STMMAC_DEFAULT_LIT_LS,
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						     tx_lpi_timer);
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		} else
			/* Set HW EEE according to the speed */
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			priv->hw->mac->set_eee_pls(priv->hw,
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						   priv->phydev->link);
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		pr_debug("stmmac: Energy-Efficient Ethernet initialized\n");
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		ret = true;
	}
out:
	return ret;
}

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/* stmmac_get_tx_hwtstamp: get HW TX timestamps
 * @priv: driver private structure
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 * @entry : descriptor index to be used.
 * @skb : the socket buffer
 * Description :
 * This function will read timestamp from the descriptor & pass it to stack.
 * and also perform some sanity checks.
 */
static void stmmac_get_tx_hwtstamp(struct stmmac_priv *priv,
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				   unsigned int entry, struct sk_buff *skb)
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{
	struct skb_shared_hwtstamps shhwtstamp;
	u64 ns;
	void *desc = NULL;

	if (!priv->hwts_tx_en)
		return;

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	/* exit if skb doesn't support hw tstamp */
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	if (likely(!skb || !(skb_shinfo(skb)->tx_flags & SKBTX_IN_PROGRESS)))
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		return;

	if (priv->adv_ts)
		desc = (priv->dma_etx + entry);
	else
		desc = (priv->dma_tx + entry);

	/* check tx tstamp status */
	if (!priv->hw->desc->get_tx_timestamp_status((struct dma_desc *)desc))
		return;

	/* get the valid tstamp */
	ns = priv->hw->desc->get_timestamp(desc, priv->adv_ts);

	memset(&shhwtstamp, 0, sizeof(struct skb_shared_hwtstamps));
	shhwtstamp.hwtstamp = ns_to_ktime(ns);
	/* pass tstamp to stack */
	skb_tstamp_tx(skb, &shhwtstamp);

	return;
}

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/* stmmac_get_rx_hwtstamp: get HW RX timestamps
 * @priv: driver private structure
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 * @entry : descriptor index to be used.
 * @skb : the socket buffer
 * Description :
 * This function will read received packet's timestamp from the descriptor
 * and pass it to stack. It also perform some sanity checks.
 */
static void stmmac_get_rx_hwtstamp(struct stmmac_priv *priv,
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				   unsigned int entry, struct sk_buff *skb)
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{
	struct skb_shared_hwtstamps *shhwtstamp = NULL;
	u64 ns;
	void *desc = NULL;

	if (!priv->hwts_rx_en)
		return;

	if (priv->adv_ts)
		desc = (priv->dma_erx + entry);
	else
		desc = (priv->dma_rx + entry);

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	/* exit if rx tstamp is not valid */
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	if (!priv->hw->desc->get_rx_timestamp_status(desc, priv->adv_ts))
		return;

	/* get valid tstamp */
	ns = priv->hw->desc->get_timestamp(desc, priv->adv_ts);
	shhwtstamp = skb_hwtstamps(skb);
	memset(shhwtstamp, 0, sizeof(struct skb_shared_hwtstamps));
	shhwtstamp->hwtstamp = ns_to_ktime(ns);
}

/**
 *  stmmac_hwtstamp_ioctl - control hardware timestamping.
 *  @dev: device pointer.
 *  @ifr: An IOCTL specefic structure, that can contain a pointer to
 *  a proprietary structure used to pass information to the driver.
 *  Description:
 *  This function configures the MAC to enable/disable both outgoing(TX)
 *  and incoming(RX) packets time stamping based on user input.
 *  Return Value:
 *  0 on success and an appropriate -ve integer on failure.
 */
static int stmmac_hwtstamp_ioctl(struct net_device *dev, struct ifreq *ifr)
{
	struct stmmac_priv *priv = netdev_priv(dev);
	struct hwtstamp_config config;
	struct timespec now;
	u64 temp = 0;
	u32 ptp_v2 = 0;
	u32 tstamp_all = 0;
	u32 ptp_over_ipv4_udp = 0;
	u32 ptp_over_ipv6_udp = 0;
	u32 ptp_over_ethernet = 0;
	u32 snap_type_sel = 0;
	u32 ts_master_en = 0;
	u32 ts_event_en = 0;
	u32 value = 0;

	if (!(priv->dma_cap.time_stamp || priv->adv_ts)) {
		netdev_alert(priv->dev, "No support for HW time stamping\n");
		priv->hwts_tx_en = 0;
		priv->hwts_rx_en = 0;

		return -EOPNOTSUPP;
	}

	if (copy_from_user(&config, ifr->ifr_data,
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			   sizeof(struct hwtstamp_config)))
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		return -EFAULT;

	pr_debug("%s config flags:0x%x, tx_type:0x%x, rx_filter:0x%x\n",
		 __func__, config.flags, config.tx_type, config.rx_filter);

	/* reserved for future extensions */
	if (config.flags)
		return -EINVAL;

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	if (config.tx_type != HWTSTAMP_TX_OFF &&
	    config.tx_type != HWTSTAMP_TX_ON)
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		return -ERANGE;

	if (priv->adv_ts) {
		switch (config.rx_filter) {
		case HWTSTAMP_FILTER_NONE:
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			/* time stamp no incoming packet at all */
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			config.rx_filter = HWTSTAMP_FILTER_NONE;
			break;

		case HWTSTAMP_FILTER_PTP_V1_L4_EVENT:
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			/* PTP v1, UDP, any kind of event packet */
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			config.rx_filter = HWTSTAMP_FILTER_PTP_V1_L4_EVENT;
			/* take time stamp for all event messages */
			snap_type_sel = PTP_TCR_SNAPTYPSEL_1;

			ptp_over_ipv4_udp = PTP_TCR_TSIPV4ENA;
			ptp_over_ipv6_udp = PTP_TCR_TSIPV6ENA;
			break;

		case HWTSTAMP_FILTER_PTP_V1_L4_SYNC:
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			/* PTP v1, UDP, Sync packet */
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			config.rx_filter = HWTSTAMP_FILTER_PTP_V1_L4_SYNC;
			/* take time stamp for SYNC messages only */
			ts_event_en = PTP_TCR_TSEVNTENA;

			ptp_over_ipv4_udp = PTP_TCR_TSIPV4ENA;
			ptp_over_ipv6_udp = PTP_TCR_TSIPV6ENA;
			break;

		case HWTSTAMP_FILTER_PTP_V1_L4_DELAY_REQ:
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			/* PTP v1, UDP, Delay_req packet */
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			config.rx_filter = HWTSTAMP_FILTER_PTP_V1_L4_DELAY_REQ;
			/* take time stamp for Delay_Req messages only */
			ts_master_en = PTP_TCR_TSMSTRENA;
			ts_event_en = PTP_TCR_TSEVNTENA;

			ptp_over_ipv4_udp = PTP_TCR_TSIPV4ENA;
			ptp_over_ipv6_udp = PTP_TCR_TSIPV6ENA;
			break;

		case HWTSTAMP_FILTER_PTP_V2_L4_EVENT:
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			/* PTP v2, UDP, any kind of event packet */
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			config.rx_filter = HWTSTAMP_FILTER_PTP_V2_L4_EVENT;
			ptp_v2 = PTP_TCR_TSVER2ENA;
			/* take time stamp for all event messages */
			snap_type_sel = PTP_TCR_SNAPTYPSEL_1;

			ptp_over_ipv4_udp = PTP_TCR_TSIPV4ENA;
			ptp_over_ipv6_udp = PTP_TCR_TSIPV6ENA;
			break;

		case HWTSTAMP_FILTER_PTP_V2_L4_SYNC:
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			/* PTP v2, UDP, Sync packet */
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			config.rx_filter = HWTSTAMP_FILTER_PTP_V2_L4_SYNC;
			ptp_v2 = PTP_TCR_TSVER2ENA;
			/* take time stamp for SYNC messages only */
			ts_event_en = PTP_TCR_TSEVNTENA;

			ptp_over_ipv4_udp = PTP_TCR_TSIPV4ENA;
			ptp_over_ipv6_udp = PTP_TCR_TSIPV6ENA;
			break;

		case HWTSTAMP_FILTER_PTP_V2_L4_DELAY_REQ:
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			/* PTP v2, UDP, Delay_req packet */
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			config.rx_filter = HWTSTAMP_FILTER_PTP_V2_L4_DELAY_REQ;
			ptp_v2 = PTP_TCR_TSVER2ENA;
			/* take time stamp for Delay_Req messages only */
			ts_master_en = PTP_TCR_TSMSTRENA;
			ts_event_en = PTP_TCR_TSEVNTENA;

			ptp_over_ipv4_udp = PTP_TCR_TSIPV4ENA;
			ptp_over_ipv6_udp = PTP_TCR_TSIPV6ENA;
			break;

		case HWTSTAMP_FILTER_PTP_V2_EVENT:
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			/* PTP v2/802.AS1 any layer, any kind of event packet */
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			config.rx_filter = HWTSTAMP_FILTER_PTP_V2_EVENT;
			ptp_v2 = PTP_TCR_TSVER2ENA;
			/* take time stamp for all event messages */
			snap_type_sel = PTP_TCR_SNAPTYPSEL_1;

			ptp_over_ipv4_udp = PTP_TCR_TSIPV4ENA;
			ptp_over_ipv6_udp = PTP_TCR_TSIPV6ENA;
			ptp_over_ethernet = PTP_TCR_TSIPENA;
			break;

		case HWTSTAMP_FILTER_PTP_V2_SYNC:
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			/* PTP v2/802.AS1, any layer, Sync packet */
544 545 546 547 548 549 550 551 552 553 554
			config.rx_filter = HWTSTAMP_FILTER_PTP_V2_SYNC;
			ptp_v2 = PTP_TCR_TSVER2ENA;
			/* take time stamp for SYNC messages only */
			ts_event_en = PTP_TCR_TSEVNTENA;

			ptp_over_ipv4_udp = PTP_TCR_TSIPV4ENA;
			ptp_over_ipv6_udp = PTP_TCR_TSIPV6ENA;
			ptp_over_ethernet = PTP_TCR_TSIPENA;
			break;

		case HWTSTAMP_FILTER_PTP_V2_DELAY_REQ:
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			/* PTP v2/802.AS1, any layer, Delay_req packet */
556 557 558 559 560 561 562 563 564 565 566 567
			config.rx_filter = HWTSTAMP_FILTER_PTP_V2_DELAY_REQ;
			ptp_v2 = PTP_TCR_TSVER2ENA;
			/* take time stamp for Delay_Req messages only */
			ts_master_en = PTP_TCR_TSMSTRENA;
			ts_event_en = PTP_TCR_TSEVNTENA;

			ptp_over_ipv4_udp = PTP_TCR_TSIPV4ENA;
			ptp_over_ipv6_udp = PTP_TCR_TSIPV6ENA;
			ptp_over_ethernet = PTP_TCR_TSIPENA;
			break;

		case HWTSTAMP_FILTER_ALL:
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Giuseppe CAVALLARO 已提交
568
			/* time stamp any incoming packet */
569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586 587
			config.rx_filter = HWTSTAMP_FILTER_ALL;
			tstamp_all = PTP_TCR_TSENALL;
			break;

		default:
			return -ERANGE;
		}
	} else {
		switch (config.rx_filter) {
		case HWTSTAMP_FILTER_NONE:
			config.rx_filter = HWTSTAMP_FILTER_NONE;
			break;
		default:
			/* PTP v1, UDP, any kind of event packet */
			config.rx_filter = HWTSTAMP_FILTER_PTP_V1_L4_EVENT;
			break;
		}
	}
	priv->hwts_rx_en = ((config.rx_filter == HWTSTAMP_FILTER_NONE) ? 0 : 1);
588
	priv->hwts_tx_en = config.tx_type == HWTSTAMP_TX_ON;
589 590 591 592 593

	if (!priv->hwts_tx_en && !priv->hwts_rx_en)
		priv->hw->ptp->config_hw_tstamping(priv->ioaddr, 0);
	else {
		value = (PTP_TCR_TSENA | PTP_TCR_TSCFUPDT | PTP_TCR_TSCTRLSSR |
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594 595 596
			 tstamp_all | ptp_v2 | ptp_over_ethernet |
			 ptp_over_ipv6_udp | ptp_over_ipv4_udp | ts_event_en |
			 ts_master_en | snap_type_sel);
597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613

		priv->hw->ptp->config_hw_tstamping(priv->ioaddr, value);

		/* program Sub Second Increment reg */
		priv->hw->ptp->config_sub_second_increment(priv->ioaddr);

		/* calculate default added value:
		 * formula is :
		 * addend = (2^32)/freq_div_ratio;
		 * where, freq_div_ratio = STMMAC_SYSCLOCK/50MHz
		 * hence, addend = ((2^32) * 50MHz)/STMMAC_SYSCLOCK;
		 * NOTE: STMMAC_SYSCLOCK should be >= 50MHz to
		 *       achive 20ns accuracy.
		 *
		 * 2^x * y == (y << x), hence
		 * 2^32 * 50000000 ==> (50000000 << 32)
		 */
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		temp = (u64) (50000000ULL << 32);
615 616 617 618 619 620 621 622 623 624 625 626 627 628
		priv->default_addend = div_u64(temp, STMMAC_SYSCLOCK);
		priv->hw->ptp->config_addend(priv->ioaddr,
					     priv->default_addend);

		/* initialize system time */
		getnstimeofday(&now);
		priv->hw->ptp->init_systime(priv->ioaddr, now.tv_sec,
					    now.tv_nsec);
	}

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

629 630 631 632 633 634 635
/**
 * stmmac_init_ptp: init PTP
 * @priv: driver private structure
 * Description: this is to verify if the HW supports the PTPv1 or v2.
 * This is done by looking at the HW cap. register.
 * Also it registers the ptp driver.
 */
636
static int stmmac_init_ptp(struct stmmac_priv *priv)
637
{
638 639 640
	if (!(priv->dma_cap.time_stamp || priv->dma_cap.atime_stamp))
		return -EOPNOTSUPP;

641 642 643 644 645 646 647 648 649
	priv->adv_ts = 0;
	if (priv->dma_cap.atime_stamp && priv->extend_desc)
		priv->adv_ts = 1;

	if (netif_msg_hw(priv) && priv->dma_cap.time_stamp)
		pr_debug("IEEE 1588-2002 Time Stamp supported\n");

	if (netif_msg_hw(priv) && priv->adv_ts)
		pr_debug("IEEE 1588-2008 Advanced Time Stamp supported\n");
650 651 652 653

	priv->hw->ptp = &stmmac_ptp;
	priv->hwts_tx_en = 0;
	priv->hwts_rx_en = 0;
654 655 656 657 658 659 660

	return stmmac_ptp_register(priv);
}

static void stmmac_release_ptp(struct stmmac_priv *priv)
{
	stmmac_ptp_unregister(priv);
661 662
}

663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679
/**
 * stmmac_adjust_link
 * @dev: net device structure
 * Description: it adjusts the link parameters.
 */
static void stmmac_adjust_link(struct net_device *dev)
{
	struct stmmac_priv *priv = netdev_priv(dev);
	struct phy_device *phydev = priv->phydev;
	unsigned long flags;
	int new_state = 0;
	unsigned int fc = priv->flow_ctrl, pause_time = priv->pause;

	if (phydev == NULL)
		return;

	spin_lock_irqsave(&priv->lock, flags);
680

681
	if (phydev->link) {
682
		u32 ctrl = readl(priv->ioaddr + MAC_CTRL_REG);
683 684 685 686 687 688

		/* Now we make sure that we can be in full duplex mode.
		 * If not, we operate in half-duplex mode. */
		if (phydev->duplex != priv->oldduplex) {
			new_state = 1;
			if (!(phydev->duplex))
689
				ctrl &= ~priv->hw->link.duplex;
690
			else
691
				ctrl |= priv->hw->link.duplex;
692 693 694 695
			priv->oldduplex = phydev->duplex;
		}
		/* Flow Control operation */
		if (phydev->pause)
696
			priv->hw->mac->flow_ctrl(priv->hw, phydev->duplex,
697
						 fc, pause_time);
698 699 700 701 702

		if (phydev->speed != priv->speed) {
			new_state = 1;
			switch (phydev->speed) {
			case 1000:
703
				if (likely(priv->plat->has_gmac))
704
					ctrl &= ~priv->hw->link.port;
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Giuseppe CAVALLARO 已提交
705
				stmmac_hw_fix_mac_speed(priv);
706 707 708
				break;
			case 100:
			case 10:
709
				if (priv->plat->has_gmac) {
710
					ctrl |= priv->hw->link.port;
711
					if (phydev->speed == SPEED_100) {
712
						ctrl |= priv->hw->link.speed;
713
					} else {
714
						ctrl &= ~(priv->hw->link.speed);
715 716
					}
				} else {
717
					ctrl &= ~priv->hw->link.port;
718
				}
719
				stmmac_hw_fix_mac_speed(priv);
720 721 722
				break;
			default:
				if (netif_msg_link(priv))
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Giuseppe CAVALLARO 已提交
723 724
					pr_warn("%s: Speed (%d) not 10/100\n",
						dev->name, phydev->speed);
725 726 727 728 729 730
				break;
			}

			priv->speed = phydev->speed;
		}

731
		writel(ctrl, priv->ioaddr + MAC_CTRL_REG);
732 733 734 735 736 737 738 739 740 741 742 743 744 745 746

		if (!priv->oldlink) {
			new_state = 1;
			priv->oldlink = 1;
		}
	} else if (priv->oldlink) {
		new_state = 1;
		priv->oldlink = 0;
		priv->speed = 0;
		priv->oldduplex = -1;
	}

	if (new_state && netif_msg_link(priv))
		phy_print_status(phydev);

G
Giuseppe CAVALLARO 已提交
747 748 749 750
	/* At this stage, it could be needed to setup the EEE or adjust some
	 * MAC related HW registers.
	 */
	priv->eee_enabled = stmmac_eee_init(priv);
751

752 753 754
	spin_unlock_irqrestore(&priv->lock, flags);
}

755 756 757 758 759 760 761
/**
 * stmmac_check_pcs_mode: verify if RGMII/SGMII is supported
 * @priv: driver private structure
 * Description: this is to verify if the HW supports the PCS.
 * Physical Coding Sublayer (PCS) interface that can be used when the MAC is
 * configured for the TBI, RTBI, or SGMII PHY interface.
 */
762 763 764 765 766
static void stmmac_check_pcs_mode(struct stmmac_priv *priv)
{
	int interface = priv->plat->interface;

	if (priv->dma_cap.pcs) {
B
Byungho An 已提交
767 768 769 770
		if ((interface == PHY_INTERFACE_MODE_RGMII) ||
		    (interface == PHY_INTERFACE_MODE_RGMII_ID) ||
		    (interface == PHY_INTERFACE_MODE_RGMII_RXID) ||
		    (interface == PHY_INTERFACE_MODE_RGMII_TXID)) {
771 772
			pr_debug("STMMAC: PCS RGMII support enable\n");
			priv->pcs = STMMAC_PCS_RGMII;
B
Byungho An 已提交
773
		} else if (interface == PHY_INTERFACE_MODE_SGMII) {
774 775 776 777 778 779
			pr_debug("STMMAC: PCS SGMII support enable\n");
			priv->pcs = STMMAC_PCS_SGMII;
		}
	}
}

780 781 782 783 784 785 786 787 788 789 790 791
/**
 * stmmac_init_phy - PHY initialization
 * @dev: net device structure
 * Description: it initializes the driver's PHY state, and attaches the PHY
 * to the mac driver.
 *  Return value:
 *  0 on success
 */
static int stmmac_init_phy(struct net_device *dev)
{
	struct stmmac_priv *priv = netdev_priv(dev);
	struct phy_device *phydev;
792
	char phy_id_fmt[MII_BUS_ID_SIZE + 3];
793
	char bus_id[MII_BUS_ID_SIZE];
794
	int interface = priv->plat->interface;
795
	int max_speed = priv->plat->max_speed;
796 797 798 799
	priv->oldlink = 0;
	priv->speed = 0;
	priv->oldduplex = -1;

800 801
	if (priv->plat->phy_bus_name)
		snprintf(bus_id, MII_BUS_ID_SIZE, "%s-%x",
G
Giuseppe CAVALLARO 已提交
802
			 priv->plat->phy_bus_name, priv->plat->bus_id);
803 804
	else
		snprintf(bus_id, MII_BUS_ID_SIZE, "stmmac-%x",
G
Giuseppe CAVALLARO 已提交
805
			 priv->plat->bus_id);
806

807
	snprintf(phy_id_fmt, MII_BUS_ID_SIZE + 3, PHY_ID_FMT, bus_id,
808
		 priv->plat->phy_addr);
809
	pr_debug("stmmac_init_phy:  trying to attach to %s\n", phy_id_fmt);
810

811
	phydev = phy_connect(dev, phy_id_fmt, &stmmac_adjust_link, interface);
812 813 814 815 816 817

	if (IS_ERR(phydev)) {
		pr_err("%s: Could not attach to PHY\n", dev->name);
		return PTR_ERR(phydev);
	}

818
	/* Stop Advertising 1000BASE Capability if interface is not GMII */
819
	if ((interface == PHY_INTERFACE_MODE_MII) ||
820 821
	    (interface == PHY_INTERFACE_MODE_RMII) ||
		(max_speed < 1000 &&  max_speed > 0))
822 823
		phydev->advertising &= ~(SUPPORTED_1000baseT_Half |
					 SUPPORTED_1000baseT_Full);
824

825 826 827 828 829 830 831 832 833 834 835 836
	/*
	 * Broken HW is sometimes missing the pull-up resistor on the
	 * MDIO line, which results in reads to non-existent devices returning
	 * 0 rather than 0xffff. Catch this here and treat 0 as a non-existent
	 * device as well.
	 * Note: phydev->phy_id is the result of reading the UID PHY registers.
	 */
	if (phydev->phy_id == 0) {
		phy_disconnect(phydev);
		return -ENODEV;
	}
	pr_debug("stmmac_init_phy:  %s: attached to PHY (UID 0x%x)"
837
		 " Link = %d\n", dev->name, phydev->phy_id, phydev->link);
838 839 840 841 842 843 844

	priv->phydev = phydev;

	return 0;
}

/**
845 846
 * stmmac_display_ring: display ring
 * @head: pointer to the head of the ring passed.
847
 * @size: size of the ring.
848
 * @extend_desc: to verify if extended descriptors are used.
849
 * Description: display the control/status and buffer descriptors.
850
 */
851
static void stmmac_display_ring(void *head, int size, int extend_desc)
852 853
{
	int i;
G
Giuseppe CAVALLARO 已提交
854 855
	struct dma_extended_desc *ep = (struct dma_extended_desc *)head;
	struct dma_desc *p = (struct dma_desc *)head;
856

857
	for (i = 0; i < size; i++) {
858 859 860 861
		u64 x;
		if (extend_desc) {
			x = *(u64 *) ep;
			pr_info("%d [0x%x]: 0x%x 0x%x 0x%x 0x%x\n",
G
Giuseppe CAVALLARO 已提交
862 863
				i, (unsigned int)virt_to_phys(ep),
				(unsigned int)x, (unsigned int)(x >> 32),
864 865 866 867 868
				ep->basic.des2, ep->basic.des3);
			ep++;
		} else {
			x = *(u64 *) p;
			pr_info("%d [0x%x]: 0x%x 0x%x 0x%x 0x%x",
G
Giuseppe CAVALLARO 已提交
869 870
				i, (unsigned int)virt_to_phys(p),
				(unsigned int)x, (unsigned int)(x >> 32),
871 872 873
				p->des2, p->des3);
			p++;
		}
874 875 876 877
		pr_info("\n");
	}
}

878 879 880 881 882 883 884
static void stmmac_display_rings(struct stmmac_priv *priv)
{
	unsigned int txsize = priv->dma_tx_size;
	unsigned int rxsize = priv->dma_rx_size;

	if (priv->extend_desc) {
		pr_info("Extended RX descriptor ring:\n");
G
Giuseppe CAVALLARO 已提交
885
		stmmac_display_ring((void *)priv->dma_erx, rxsize, 1);
886
		pr_info("Extended TX descriptor ring:\n");
G
Giuseppe CAVALLARO 已提交
887
		stmmac_display_ring((void *)priv->dma_etx, txsize, 1);
888 889 890 891 892 893 894 895
	} else {
		pr_info("RX descriptor ring:\n");
		stmmac_display_ring((void *)priv->dma_rx, rxsize, 0);
		pr_info("TX descriptor ring:\n");
		stmmac_display_ring((void *)priv->dma_tx, txsize, 0);
	}
}

896 897 898 899 900 901 902 903
static int stmmac_set_bfsize(int mtu, int bufsize)
{
	int ret = bufsize;

	if (mtu >= BUF_SIZE_4KiB)
		ret = BUF_SIZE_8KiB;
	else if (mtu >= BUF_SIZE_2KiB)
		ret = BUF_SIZE_4KiB;
904
	else if (mtu > DEFAULT_BUFSIZE)
905 906
		ret = BUF_SIZE_2KiB;
	else
907
		ret = DEFAULT_BUFSIZE;
908 909 910 911

	return ret;
}

912 913 914 915 916 917
/**
 * stmmac_clear_descriptors: clear descriptors
 * @priv: driver private structure
 * Description: this function is called to clear the tx and rx descriptors
 * in case of both basic and extended descriptors are used.
 */
918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951
static void stmmac_clear_descriptors(struct stmmac_priv *priv)
{
	int i;
	unsigned int txsize = priv->dma_tx_size;
	unsigned int rxsize = priv->dma_rx_size;

	/* Clear the Rx/Tx descriptors */
	for (i = 0; i < rxsize; i++)
		if (priv->extend_desc)
			priv->hw->desc->init_rx_desc(&priv->dma_erx[i].basic,
						     priv->use_riwt, priv->mode,
						     (i == rxsize - 1));
		else
			priv->hw->desc->init_rx_desc(&priv->dma_rx[i],
						     priv->use_riwt, priv->mode,
						     (i == rxsize - 1));
	for (i = 0; i < txsize; i++)
		if (priv->extend_desc)
			priv->hw->desc->init_tx_desc(&priv->dma_etx[i].basic,
						     priv->mode,
						     (i == txsize - 1));
		else
			priv->hw->desc->init_tx_desc(&priv->dma_tx[i],
						     priv->mode,
						     (i == txsize - 1));
}

static int stmmac_init_rx_buffers(struct stmmac_priv *priv, struct dma_desc *p,
				  int i)
{
	struct sk_buff *skb;

	skb = __netdev_alloc_skb(priv->dev, priv->dma_buf_sz + NET_IP_ALIGN,
				 GFP_KERNEL);
952
	if (!skb) {
953
		pr_err("%s: Rx init fails; skb is NULL\n", __func__);
954
		return -ENOMEM;
955 956 957 958 959 960
	}
	skb_reserve(skb, NET_IP_ALIGN);
	priv->rx_skbuff[i] = skb;
	priv->rx_skbuff_dma[i] = dma_map_single(priv->device, skb->data,
						priv->dma_buf_sz,
						DMA_FROM_DEVICE);
961 962 963 964 965
	if (dma_mapping_error(priv->device, priv->rx_skbuff_dma[i])) {
		pr_err("%s: DMA mapping error\n", __func__);
		dev_kfree_skb_any(skb);
		return -EINVAL;
	}
966 967 968

	p->des2 = priv->rx_skbuff_dma[i];

G
Giuseppe CAVALLARO 已提交
969
	if ((priv->hw->mode->init_desc3) &&
970
	    (priv->dma_buf_sz == BUF_SIZE_16KiB))
G
Giuseppe CAVALLARO 已提交
971
		priv->hw->mode->init_desc3(p);
972 973 974 975

	return 0;
}

976 977 978 979 980 981 982 983 984 985
static void stmmac_free_rx_buffers(struct stmmac_priv *priv, int i)
{
	if (priv->rx_skbuff[i]) {
		dma_unmap_single(priv->device, priv->rx_skbuff_dma[i],
				 priv->dma_buf_sz, DMA_FROM_DEVICE);
		dev_kfree_skb_any(priv->rx_skbuff[i]);
	}
	priv->rx_skbuff[i] = NULL;
}

986 987 988 989
/**
 * init_dma_desc_rings - init the RX/TX descriptor rings
 * @dev: net device structure
 * Description:  this function initializes the DMA RX/TX descriptors
990 991
 * and allocates the socket buffers. It suppors the chained and ring
 * modes.
992
 */
993
static int init_dma_desc_rings(struct net_device *dev)
994 995 996 997 998
{
	int i;
	struct stmmac_priv *priv = netdev_priv(dev);
	unsigned int txsize = priv->dma_tx_size;
	unsigned int rxsize = priv->dma_rx_size;
999
	unsigned int bfsize = 0;
1000
	int ret = -ENOMEM;
1001

G
Giuseppe CAVALLARO 已提交
1002 1003
	if (priv->hw->mode->set_16kib_bfsize)
		bfsize = priv->hw->mode->set_16kib_bfsize(dev->mtu);
1004

1005
	if (bfsize < BUF_SIZE_16KiB)
1006
		bfsize = stmmac_set_bfsize(dev->mtu, priv->dma_buf_sz);
1007

1008 1009
	priv->dma_buf_sz = bfsize;

1010 1011 1012
	if (netif_msg_probe(priv))
		pr_debug("%s: txsize %d, rxsize %d, bfsize %d\n", __func__,
			 txsize, rxsize, bfsize);
1013

1014
	if (netif_msg_probe(priv)) {
1015 1016
		pr_debug("(%s) dma_rx_phy=0x%08x dma_tx_phy=0x%08x\n", __func__,
			 (u32) priv->dma_rx_phy, (u32) priv->dma_tx_phy);
1017

1018 1019 1020
		/* RX INITIALIZATION */
		pr_debug("\tSKB addresses:\nskb\t\tskb data\tdma data\n");
	}
1021
	for (i = 0; i < rxsize; i++) {
1022 1023 1024 1025 1026
		struct dma_desc *p;
		if (priv->extend_desc)
			p = &((priv->dma_erx + i)->basic);
		else
			p = priv->dma_rx + i;
1027

1028 1029 1030
		ret = stmmac_init_rx_buffers(priv, p, i);
		if (ret)
			goto err_init_rx_buffers;
1031

1032 1033 1034 1035
		if (netif_msg_probe(priv))
			pr_debug("[%p]\t[%p]\t[%x]\n", priv->rx_skbuff[i],
				 priv->rx_skbuff[i]->data,
				 (unsigned int)priv->rx_skbuff_dma[i]);
1036 1037 1038 1039 1040
	}
	priv->cur_rx = 0;
	priv->dirty_rx = (unsigned int)(i - rxsize);
	buf_sz = bfsize;

1041 1042 1043
	/* Setup the chained descriptor addresses */
	if (priv->mode == STMMAC_CHAIN_MODE) {
		if (priv->extend_desc) {
G
Giuseppe CAVALLARO 已提交
1044 1045 1046 1047
			priv->hw->mode->init(priv->dma_erx, priv->dma_rx_phy,
					     rxsize, 1);
			priv->hw->mode->init(priv->dma_etx, priv->dma_tx_phy,
					     txsize, 1);
1048
		} else {
G
Giuseppe CAVALLARO 已提交
1049 1050 1051 1052
			priv->hw->mode->init(priv->dma_rx, priv->dma_rx_phy,
					     rxsize, 0);
			priv->hw->mode->init(priv->dma_tx, priv->dma_tx_phy,
					     txsize, 0);
1053 1054 1055
		}
	}

1056 1057
	/* TX INITIALIZATION */
	for (i = 0; i < txsize; i++) {
1058 1059 1060 1061 1062 1063
		struct dma_desc *p;
		if (priv->extend_desc)
			p = &((priv->dma_etx + i)->basic);
		else
			p = priv->dma_tx + i;
		p->des2 = 0;
1064
		priv->tx_skbuff_dma[i] = 0;
1065 1066
		priv->tx_skbuff[i] = NULL;
	}
1067

1068 1069 1070
	priv->dirty_tx = 0;
	priv->cur_tx = 0;

1071
	stmmac_clear_descriptors(priv);
1072

1073 1074
	if (netif_msg_hw(priv))
		stmmac_display_rings(priv);
1075 1076 1077 1078 1079 1080

	return 0;
err_init_rx_buffers:
	while (--i >= 0)
		stmmac_free_rx_buffers(priv, i);
	return ret;
1081 1082 1083 1084 1085 1086
}

static void dma_free_rx_skbufs(struct stmmac_priv *priv)
{
	int i;

1087 1088
	for (i = 0; i < priv->dma_rx_size; i++)
		stmmac_free_rx_buffers(priv, i);
1089 1090 1091 1092 1093 1094 1095
}

static void dma_free_tx_skbufs(struct stmmac_priv *priv)
{
	int i;

	for (i = 0; i < priv->dma_tx_size; i++) {
1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109
		struct dma_desc *p;

		if (priv->extend_desc)
			p = &((priv->dma_etx + i)->basic);
		else
			p = priv->dma_tx + i;

		if (priv->tx_skbuff_dma[i]) {
			dma_unmap_single(priv->device,
					 priv->tx_skbuff_dma[i],
					 priv->hw->desc->get_tx_len(p),
					 DMA_TO_DEVICE);
			priv->tx_skbuff_dma[i] = 0;
		}
1110

1111
		if (priv->tx_skbuff[i] != NULL) {
1112 1113 1114 1115 1116 1117
			dev_kfree_skb_any(priv->tx_skbuff[i]);
			priv->tx_skbuff[i] = NULL;
		}
	}
}

1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196
static int alloc_dma_desc_resources(struct stmmac_priv *priv)
{
	unsigned int txsize = priv->dma_tx_size;
	unsigned int rxsize = priv->dma_rx_size;
	int ret = -ENOMEM;

	priv->rx_skbuff_dma = kmalloc_array(rxsize, sizeof(dma_addr_t),
					    GFP_KERNEL);
	if (!priv->rx_skbuff_dma)
		return -ENOMEM;

	priv->rx_skbuff = kmalloc_array(rxsize, sizeof(struct sk_buff *),
					GFP_KERNEL);
	if (!priv->rx_skbuff)
		goto err_rx_skbuff;

	priv->tx_skbuff_dma = kmalloc_array(txsize, sizeof(dma_addr_t),
					    GFP_KERNEL);
	if (!priv->tx_skbuff_dma)
		goto err_tx_skbuff_dma;

	priv->tx_skbuff = kmalloc_array(txsize, sizeof(struct sk_buff *),
					GFP_KERNEL);
	if (!priv->tx_skbuff)
		goto err_tx_skbuff;

	if (priv->extend_desc) {
		priv->dma_erx = dma_alloc_coherent(priv->device, rxsize *
						   sizeof(struct
							  dma_extended_desc),
						   &priv->dma_rx_phy,
						   GFP_KERNEL);
		if (!priv->dma_erx)
			goto err_dma;

		priv->dma_etx = dma_alloc_coherent(priv->device, txsize *
						   sizeof(struct
							  dma_extended_desc),
						   &priv->dma_tx_phy,
						   GFP_KERNEL);
		if (!priv->dma_etx) {
			dma_free_coherent(priv->device, priv->dma_rx_size *
					sizeof(struct dma_extended_desc),
					priv->dma_erx, priv->dma_rx_phy);
			goto err_dma;
		}
	} else {
		priv->dma_rx = dma_alloc_coherent(priv->device, rxsize *
						  sizeof(struct dma_desc),
						  &priv->dma_rx_phy,
						  GFP_KERNEL);
		if (!priv->dma_rx)
			goto err_dma;

		priv->dma_tx = dma_alloc_coherent(priv->device, txsize *
						  sizeof(struct dma_desc),
						  &priv->dma_tx_phy,
						  GFP_KERNEL);
		if (!priv->dma_tx) {
			dma_free_coherent(priv->device, priv->dma_rx_size *
					sizeof(struct dma_desc),
					priv->dma_rx, priv->dma_rx_phy);
			goto err_dma;
		}
	}

	return 0;

err_dma:
	kfree(priv->tx_skbuff);
err_tx_skbuff:
	kfree(priv->tx_skbuff_dma);
err_tx_skbuff_dma:
	kfree(priv->rx_skbuff);
err_rx_skbuff:
	kfree(priv->rx_skbuff_dma);
	return ret;
}

1197 1198 1199 1200 1201 1202
static void free_dma_desc_resources(struct stmmac_priv *priv)
{
	/* Release the DMA TX/RX socket buffers */
	dma_free_rx_skbufs(priv);
	dma_free_tx_skbufs(priv);

G
Giuseppe CAVALLARO 已提交
1203
	/* Free DMA regions of consistent memory previously allocated */
1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218
	if (!priv->extend_desc) {
		dma_free_coherent(priv->device,
				  priv->dma_tx_size * sizeof(struct dma_desc),
				  priv->dma_tx, priv->dma_tx_phy);
		dma_free_coherent(priv->device,
				  priv->dma_rx_size * sizeof(struct dma_desc),
				  priv->dma_rx, priv->dma_rx_phy);
	} else {
		dma_free_coherent(priv->device, priv->dma_tx_size *
				  sizeof(struct dma_extended_desc),
				  priv->dma_etx, priv->dma_tx_phy);
		dma_free_coherent(priv->device, priv->dma_rx_size *
				  sizeof(struct dma_extended_desc),
				  priv->dma_erx, priv->dma_rx_phy);
	}
1219 1220
	kfree(priv->rx_skbuff_dma);
	kfree(priv->rx_skbuff);
1221
	kfree(priv->tx_skbuff_dma);
1222 1223 1224 1225 1226
	kfree(priv->tx_skbuff);
}

/**
 *  stmmac_dma_operation_mode - HW DMA operation mode
1227
 *  @priv: driver private structure
1228
 *  Description: it sets the DMA operation mode: tx/rx DMA thresholds
1229
 *  or Store-And-Forward capability.
1230 1231 1232
 */
static void stmmac_dma_operation_mode(struct stmmac_priv *priv)
{
1233 1234 1235
	if (priv->plat->force_thresh_dma_mode)
		priv->hw->dma->dma_mode(priv->ioaddr, tc, tc);
	else if (priv->plat->force_sf_dma_mode || priv->plat->tx_coe) {
1236 1237 1238
		/*
		 * In case of GMAC, SF mode can be enabled
		 * to perform the TX COE in HW. This depends on:
1239 1240 1241 1242
		 * 1) TX COE if actually supported
		 * 2) There is no bugged Jumbo frame support
		 *    that needs to not insert csum in the TDES.
		 */
G
Giuseppe CAVALLARO 已提交
1243
		priv->hw->dma->dma_mode(priv->ioaddr, SF_DMA_MODE, SF_DMA_MODE);
1244 1245 1246
		tc = SF_DMA_MODE;
	} else
		priv->hw->dma->dma_mode(priv->ioaddr, tc, SF_DMA_MODE);
1247 1248 1249
}

/**
1250
 * stmmac_tx_clean:
1251
 * @priv: driver private structure
1252 1253
 * Description: it reclaims resources after transmission completes.
 */
1254
static void stmmac_tx_clean(struct stmmac_priv *priv)
1255 1256 1257
{
	unsigned int txsize = priv->dma_tx_size;

1258 1259
	spin_lock(&priv->tx_lock);

1260 1261
	priv->xstats.tx_clean++;

1262 1263 1264 1265
	while (priv->dirty_tx != priv->cur_tx) {
		int last;
		unsigned int entry = priv->dirty_tx % txsize;
		struct sk_buff *skb = priv->tx_skbuff[entry];
1266 1267 1268
		struct dma_desc *p;

		if (priv->extend_desc)
G
Giuseppe CAVALLARO 已提交
1269
			p = (struct dma_desc *)(priv->dma_etx + entry);
1270 1271
		else
			p = priv->dma_tx + entry;
1272 1273

		/* Check if the descriptor is owned by the DMA. */
1274
		if (priv->hw->desc->get_tx_owner(p))
1275 1276
			break;

1277
		/* Verify tx error by looking at the last segment. */
1278
		last = priv->hw->desc->get_tx_ls(p);
1279 1280
		if (likely(last)) {
			int tx_error =
G
Giuseppe CAVALLARO 已提交
1281 1282 1283
			    priv->hw->desc->tx_status(&priv->dev->stats,
						      &priv->xstats, p,
						      priv->ioaddr);
1284 1285 1286 1287 1288
			if (likely(tx_error == 0)) {
				priv->dev->stats.tx_packets++;
				priv->xstats.tx_pkt_n++;
			} else
				priv->dev->stats.tx_errors++;
1289 1290

			stmmac_get_tx_hwtstamp(priv, entry, skb);
1291
		}
1292 1293 1294
		if (netif_msg_tx_done(priv))
			pr_debug("%s: curr %d, dirty %d\n", __func__,
				 priv->cur_tx, priv->dirty_tx);
1295

1296 1297 1298
		if (likely(priv->tx_skbuff_dma[entry])) {
			dma_unmap_single(priv->device,
					 priv->tx_skbuff_dma[entry],
1299
					 priv->hw->desc->get_tx_len(p),
1300
					 DMA_TO_DEVICE);
1301 1302
			priv->tx_skbuff_dma[entry] = 0;
		}
G
Giuseppe CAVALLARO 已提交
1303
		priv->hw->mode->clean_desc3(priv, p);
1304 1305

		if (likely(skb != NULL)) {
1306
			dev_consume_skb_any(skb);
1307 1308 1309
			priv->tx_skbuff[entry] = NULL;
		}

1310
		priv->hw->desc->release_tx_desc(p, priv->mode);
1311

1312
		priv->dirty_tx++;
1313 1314 1315 1316 1317
	}
	if (unlikely(netif_queue_stopped(priv->dev) &&
		     stmmac_tx_avail(priv) > STMMAC_TX_THRESH(priv))) {
		netif_tx_lock(priv->dev);
		if (netif_queue_stopped(priv->dev) &&
G
Giuseppe CAVALLARO 已提交
1318
		    stmmac_tx_avail(priv) > STMMAC_TX_THRESH(priv)) {
1319 1320
			if (netif_msg_tx_done(priv))
				pr_debug("%s: restart transmit\n", __func__);
1321 1322 1323 1324
			netif_wake_queue(priv->dev);
		}
		netif_tx_unlock(priv->dev);
	}
1325 1326 1327

	if ((priv->eee_enabled) && (!priv->tx_path_in_lpi_mode)) {
		stmmac_enable_eee_mode(priv);
G
Giuseppe CAVALLARO 已提交
1328
		mod_timer(&priv->eee_ctrl_timer, STMMAC_LPI_T(eee_timer));
1329
	}
1330
	spin_unlock(&priv->tx_lock);
1331 1332
}

1333
static inline void stmmac_enable_dma_irq(struct stmmac_priv *priv)
1334
{
1335
	priv->hw->dma->enable_dma_irq(priv->ioaddr);
1336 1337
}

1338
static inline void stmmac_disable_dma_irq(struct stmmac_priv *priv)
1339
{
1340
	priv->hw->dma->disable_dma_irq(priv->ioaddr);
1341 1342 1343
}

/**
1344 1345
 * stmmac_tx_err: irq tx error mng function
 * @priv: driver private structure
1346 1347 1348 1349 1350
 * Description: it cleans the descriptors and restarts the transmission
 * in case of errors.
 */
static void stmmac_tx_err(struct stmmac_priv *priv)
{
1351 1352
	int i;
	int txsize = priv->dma_tx_size;
1353 1354
	netif_stop_queue(priv->dev);

1355
	priv->hw->dma->stop_tx(priv->ioaddr);
1356
	dma_free_tx_skbufs(priv);
1357 1358 1359 1360 1361 1362 1363 1364 1365
	for (i = 0; i < txsize; i++)
		if (priv->extend_desc)
			priv->hw->desc->init_tx_desc(&priv->dma_etx[i].basic,
						     priv->mode,
						     (i == txsize - 1));
		else
			priv->hw->desc->init_tx_desc(&priv->dma_tx[i],
						     priv->mode,
						     (i == txsize - 1));
1366 1367
	priv->dirty_tx = 0;
	priv->cur_tx = 0;
1368
	priv->hw->dma->start_tx(priv->ioaddr);
1369 1370 1371 1372 1373

	priv->dev->stats.tx_errors++;
	netif_wake_queue(priv->dev);
}

1374 1375 1376 1377 1378 1379 1380 1381
/**
 * stmmac_dma_interrupt: DMA ISR
 * @priv: driver private structure
 * Description: this is the DMA ISR. It is called by the main ISR.
 * It calls the dwmac dma routine to understand which type of interrupt
 * happened. In case of there is a Normal interrupt and either TX or RX
 * interrupt happened so the NAPI is scheduled.
 */
1382 1383 1384 1385
static void stmmac_dma_interrupt(struct stmmac_priv *priv)
{
	int status;

1386
	status = priv->hw->dma->dma_interrupt(priv->ioaddr, &priv->xstats);
1387 1388 1389 1390 1391 1392 1393
	if (likely((status & handle_rx)) || (status & handle_tx)) {
		if (likely(napi_schedule_prep(&priv->napi))) {
			stmmac_disable_dma_irq(priv);
			__napi_schedule(&priv->napi);
		}
	}
	if (unlikely(status & tx_hard_error_bump_tc)) {
1394 1395 1396
		/* Try to bump up the dma threshold on this failure */
		if (unlikely(tc != SF_DMA_MODE) && (tc <= 256)) {
			tc += 64;
1397
			priv->hw->dma->dma_mode(priv->ioaddr, tc, SF_DMA_MODE);
1398
			priv->xstats.threshold = tc;
1399
		}
1400 1401
	} else if (unlikely(status == tx_hard_error))
		stmmac_tx_err(priv);
1402 1403
}

1404 1405 1406 1407 1408
/**
 * stmmac_mmc_setup: setup the Mac Management Counters (MMC)
 * @priv: driver private structure
 * Description: this masks the MMC irq, in fact, the counters are managed in SW.
 */
1409 1410 1411
static void stmmac_mmc_setup(struct stmmac_priv *priv)
{
	unsigned int mode = MMC_CNTRL_RESET_ON_READ | MMC_CNTRL_COUNTER_RESET |
G
Giuseppe CAVALLARO 已提交
1412
	    MMC_CNTRL_PRESET | MMC_CNTRL_FULL_HALF_PRESET;
1413 1414

	dwmac_mmc_intr_all_mask(priv->ioaddr);
G
Giuseppe CAVALLARO 已提交
1415 1416 1417 1418 1419

	if (priv->dma_cap.rmon) {
		dwmac_mmc_ctrl(priv->ioaddr, mode);
		memset(&priv->mmc, 0, sizeof(struct stmmac_counters));
	} else
1420
		pr_info(" No MAC Management Counters available\n");
1421 1422
}

1423 1424 1425 1426
static u32 stmmac_get_synopsys_id(struct stmmac_priv *priv)
{
	u32 hwid = priv->hw->synopsys_uid;

G
Giuseppe CAVALLARO 已提交
1427
	/* Check Synopsys Id (not available on old chips) */
1428 1429 1430 1431
	if (likely(hwid)) {
		u32 uid = ((hwid & 0x0000ff00) >> 8);
		u32 synid = (hwid & 0x000000ff);

1432
		pr_info("stmmac - user ID: 0x%x, Synopsys ID: 0x%x\n",
1433 1434 1435 1436 1437 1438
			uid, synid);

		return synid;
	}
	return 0;
}
1439

1440
/**
1441 1442 1443 1444 1445
 * stmmac_selec_desc_mode: to select among: normal/alternate/extend descriptors
 * @priv: driver private structure
 * Description: select the Enhanced/Alternate or Normal descriptors.
 * In case of Enhanced/Alternate, it looks at the extended descriptors are
 * supported by the HW cap. register.
1446
 */
1447 1448 1449 1450
static void stmmac_selec_desc_mode(struct stmmac_priv *priv)
{
	if (priv->plat->enh_desc) {
		pr_info(" Enhanced/Alternate descriptors\n");
1451 1452 1453 1454 1455 1456 1457 1458

		/* GMAC older than 3.50 has no extended descriptors */
		if (priv->synopsys_id >= DWMAC_CORE_3_50) {
			pr_info("\tEnabled extended descriptors\n");
			priv->extend_desc = 1;
		} else
			pr_warn("Extended descriptors not supported\n");

1459 1460 1461 1462 1463 1464 1465 1466
		priv->hw->desc = &enh_desc_ops;
	} else {
		pr_info(" Normal descriptors\n");
		priv->hw->desc = &ndesc_ops;
	}
}

/**
1467 1468
 * stmmac_get_hw_features: get MAC capabilities from the HW cap. register.
 * @priv: driver private structure
1469 1470 1471 1472 1473
 * Description:
 *  new GMAC chip generations have a new register to indicate the
 *  presence of the optional feature/functions.
 *  This can be also used to override the value passed through the
 *  platform and necessary for old MAC10/100 and GMAC chips.
1474 1475 1476
 */
static int stmmac_get_hw_features(struct stmmac_priv *priv)
{
1477
	u32 hw_cap = 0;
1478

1479 1480
	if (priv->hw->dma->get_hw_feature) {
		hw_cap = priv->hw->dma->get_hw_feature(priv->ioaddr);
1481

1482 1483 1484 1485
		priv->dma_cap.mbps_10_100 = (hw_cap & DMA_HW_FEAT_MIISEL);
		priv->dma_cap.mbps_1000 = (hw_cap & DMA_HW_FEAT_GMIISEL) >> 1;
		priv->dma_cap.half_duplex = (hw_cap & DMA_HW_FEAT_HDSEL) >> 2;
		priv->dma_cap.hash_filter = (hw_cap & DMA_HW_FEAT_HASHSEL) >> 4;
G
Giuseppe CAVALLARO 已提交
1486
		priv->dma_cap.multi_addr = (hw_cap & DMA_HW_FEAT_ADDMAC) >> 5;
1487 1488 1489
		priv->dma_cap.pcs = (hw_cap & DMA_HW_FEAT_PCSSEL) >> 6;
		priv->dma_cap.sma_mdio = (hw_cap & DMA_HW_FEAT_SMASEL) >> 8;
		priv->dma_cap.pmt_remote_wake_up =
G
Giuseppe CAVALLARO 已提交
1490
		    (hw_cap & DMA_HW_FEAT_RWKSEL) >> 9;
1491
		priv->dma_cap.pmt_magic_frame =
G
Giuseppe CAVALLARO 已提交
1492
		    (hw_cap & DMA_HW_FEAT_MGKSEL) >> 10;
1493
		/* MMC */
1494
		priv->dma_cap.rmon = (hw_cap & DMA_HW_FEAT_MMCSEL) >> 11;
G
Giuseppe CAVALLARO 已提交
1495
		/* IEEE 1588-2002 */
1496
		priv->dma_cap.time_stamp =
G
Giuseppe CAVALLARO 已提交
1497 1498
		    (hw_cap & DMA_HW_FEAT_TSVER1SEL) >> 12;
		/* IEEE 1588-2008 */
1499
		priv->dma_cap.atime_stamp =
G
Giuseppe CAVALLARO 已提交
1500
		    (hw_cap & DMA_HW_FEAT_TSVER2SEL) >> 13;
1501
		/* 802.3az - Energy-Efficient Ethernet (EEE) */
1502 1503
		priv->dma_cap.eee = (hw_cap & DMA_HW_FEAT_EEESEL) >> 14;
		priv->dma_cap.av = (hw_cap & DMA_HW_FEAT_AVSEL) >> 15;
1504
		/* TX and RX csum */
1505 1506
		priv->dma_cap.tx_coe = (hw_cap & DMA_HW_FEAT_TXCOESEL) >> 16;
		priv->dma_cap.rx_coe_type1 =
G
Giuseppe CAVALLARO 已提交
1507
		    (hw_cap & DMA_HW_FEAT_RXTYP1COE) >> 17;
1508
		priv->dma_cap.rx_coe_type2 =
G
Giuseppe CAVALLARO 已提交
1509
		    (hw_cap & DMA_HW_FEAT_RXTYP2COE) >> 18;
1510
		priv->dma_cap.rxfifo_over_2048 =
G
Giuseppe CAVALLARO 已提交
1511
		    (hw_cap & DMA_HW_FEAT_RXFIFOSIZE) >> 19;
1512
		/* TX and RX number of channels */
1513
		priv->dma_cap.number_rx_channel =
G
Giuseppe CAVALLARO 已提交
1514
		    (hw_cap & DMA_HW_FEAT_RXCHCNT) >> 20;
1515
		priv->dma_cap.number_tx_channel =
G
Giuseppe CAVALLARO 已提交
1516 1517 1518
		    (hw_cap & DMA_HW_FEAT_TXCHCNT) >> 22;
		/* Alternate (enhanced) DESC mode */
		priv->dma_cap.enh_desc = (hw_cap & DMA_HW_FEAT_ENHDESSEL) >> 24;
1519
	}
1520 1521 1522 1523

	return hw_cap;
}

1524 1525 1526 1527 1528 1529 1530
/**
 * stmmac_check_ether_addr: check if the MAC addr is valid
 * @priv: driver private structure
 * Description:
 * it is to verify if the MAC address is valid, in case of failures it
 * generates a random MAC address
 */
1531 1532 1533
static void stmmac_check_ether_addr(struct stmmac_priv *priv)
{
	if (!is_valid_ether_addr(priv->dev->dev_addr)) {
1534
		priv->hw->mac->get_umac_addr(priv->hw,
1535
					     priv->dev->dev_addr, 0);
G
Giuseppe CAVALLARO 已提交
1536
		if (!is_valid_ether_addr(priv->dev->dev_addr))
1537
			eth_hw_addr_random(priv->dev);
1538 1539
		pr_info("%s: device MAC address %pM\n", priv->dev->name,
			priv->dev->dev_addr);
1540 1541 1542
	}
}

1543 1544 1545 1546 1547 1548 1549 1550
/**
 * stmmac_init_dma_engine: DMA init.
 * @priv: driver private structure
 * Description:
 * It inits the DMA invoking the specific MAC/GMAC callback.
 * Some DMA parameters can be passed from the platform;
 * in case of these are not passed a default is kept for the MAC or GMAC.
 */
1551 1552 1553
static int stmmac_init_dma_engine(struct stmmac_priv *priv)
{
	int pbl = DEFAULT_DMA_PBL, fixed_burst = 0, burst_len = 0;
1554
	int mixed_burst = 0;
1555
	int atds = 0;
1556 1557 1558 1559

	if (priv->plat->dma_cfg) {
		pbl = priv->plat->dma_cfg->pbl;
		fixed_burst = priv->plat->dma_cfg->fixed_burst;
1560
		mixed_burst = priv->plat->dma_cfg->mixed_burst;
1561 1562 1563
		burst_len = priv->plat->dma_cfg->burst_len;
	}

1564 1565 1566
	if (priv->extend_desc && (priv->mode == STMMAC_RING_MODE))
		atds = 1;

1567
	return priv->hw->dma->init(priv->ioaddr, pbl, fixed_burst, mixed_burst,
1568
				   burst_len, priv->dma_tx_phy,
1569
				   priv->dma_rx_phy, atds);
1570 1571
}

1572
/**
1573
 * stmmac_tx_timer: mitigation sw timer for tx.
1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585
 * @data: data pointer
 * Description:
 * This is the timer handler to directly invoke the stmmac_tx_clean.
 */
static void stmmac_tx_timer(unsigned long data)
{
	struct stmmac_priv *priv = (struct stmmac_priv *)data;

	stmmac_tx_clean(priv);
}

/**
1586 1587
 * stmmac_init_tx_coalesce: init tx mitigation options.
 * @priv: driver private structure
1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603
 * Description:
 * This inits the transmit coalesce parameters: i.e. timer rate,
 * timer handler and default threshold used for enabling the
 * interrupt on completion bit.
 */
static void stmmac_init_tx_coalesce(struct stmmac_priv *priv)
{
	priv->tx_coal_frames = STMMAC_TX_FRAMES;
	priv->tx_coal_timer = STMMAC_COAL_TX_TIMER;
	init_timer(&priv->txtimer);
	priv->txtimer.expires = STMMAC_COAL_TIMER(priv->tx_coal_timer);
	priv->txtimer.data = (unsigned long)priv;
	priv->txtimer.function = stmmac_tx_timer;
	add_timer(&priv->txtimer);
}

1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630
/**
 * stmmac_hw_setup: setup mac in a usable state.
 *  @dev : pointer to the device structure.
 *  Description:
 *  This function sets up the ip in a usable state.
 *  Return value:
 *  0 on success and an appropriate (-)ve integer as defined in errno.h
 *  file on failure.
 */
static int stmmac_hw_setup(struct net_device *dev)
{
	struct stmmac_priv *priv = netdev_priv(dev);
	int ret;

	ret = init_dma_desc_rings(dev);
	if (ret < 0) {
		pr_err("%s: DMA descriptors initialization failed\n", __func__);
		return ret;
	}
	/* DMA initialization and SW reset */
	ret = stmmac_init_dma_engine(priv);
	if (ret < 0) {
		pr_err("%s: DMA engine initialization failed\n", __func__);
		return ret;
	}

	/* Copy the MAC addr into the HW  */
1631
	priv->hw->mac->set_umac_addr(priv->hw, dev->dev_addr, 0);
1632 1633 1634 1635 1636 1637

	/* If required, perform hw setup of the bus. */
	if (priv->plat->bus_setup)
		priv->plat->bus_setup(priv->ioaddr);

	/* Initialize the MAC Core */
1638
	priv->hw->mac->core_init(priv->hw, dev->mtu);
1639

1640 1641 1642 1643 1644 1645
	ret = priv->hw->mac->rx_ipc(priv->hw);
	if (!ret) {
		pr_warn(" RX IPC Checksum Offload disabled\n");
		priv->plat->rx_coe = STMMAC_RX_COE_NONE;
	}

1646 1647 1648 1649 1650 1651 1652 1653 1654
	/* Enable the MAC Rx/Tx */
	stmmac_set_mac(priv->ioaddr, true);

	/* Set the HW DMA mode and the COE */
	stmmac_dma_operation_mode(priv);

	stmmac_mmc_setup(priv);

	ret = stmmac_init_ptp(priv);
1655
	if (ret && ret != -EOPNOTSUPP)
1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669
		pr_warn("%s: failed PTP initialisation\n", __func__);

#ifdef CONFIG_STMMAC_DEBUG_FS
	ret = stmmac_init_fs(dev);
	if (ret < 0)
		pr_warn("%s: failed debugFS registration\n", __func__);
#endif
	/* Start the ball rolling... */
	pr_debug("%s: DMA RX/TX processes started...\n", dev->name);
	priv->hw->dma->start_tx(priv->ioaddr);
	priv->hw->dma->start_rx(priv->ioaddr);

	/* Dump DMA/MAC registers */
	if (netif_msg_hw(priv)) {
1670
		priv->hw->mac->dump_regs(priv->hw);
1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684
		priv->hw->dma->dump_regs(priv->ioaddr);
	}
	priv->tx_lpi_timer = STMMAC_DEFAULT_TWT_LS;

	priv->eee_enabled = stmmac_eee_init(priv);

	stmmac_init_tx_coalesce(priv);

	if ((priv->use_riwt) && (priv->hw->dma->rx_watchdog)) {
		priv->rx_riwt = MAX_DMA_RIWT;
		priv->hw->dma->rx_watchdog(priv->ioaddr, MAX_DMA_RIWT);
	}

	if (priv->pcs && priv->hw->mac->ctrl_ane)
1685
		priv->hw->mac->ctrl_ane(priv->hw, 0);
1686 1687 1688 1689

	return 0;
}

1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703
/**
 *  stmmac_open - open entry point of the driver
 *  @dev : pointer to the device structure.
 *  Description:
 *  This function is the open entry point of the driver.
 *  Return value:
 *  0 on success and an appropriate (-)ve integer as defined in errno.h
 *  file on failure.
 */
static int stmmac_open(struct net_device *dev)
{
	struct stmmac_priv *priv = netdev_priv(dev);
	int ret;

1704 1705
	stmmac_check_ether_addr(priv);

1706 1707
	if (priv->pcs != STMMAC_PCS_RGMII && priv->pcs != STMMAC_PCS_TBI &&
	    priv->pcs != STMMAC_PCS_RTBI) {
1708 1709 1710 1711
		ret = stmmac_init_phy(dev);
		if (ret) {
			pr_err("%s: Cannot attach to PHY (error: %d)\n",
			       __func__, ret);
1712
			return ret;
1713
		}
1714
	}
1715

1716 1717 1718 1719
	/* Extra statistics */
	memset(&priv->xstats, 0, sizeof(struct stmmac_extra_stats));
	priv->xstats.threshold = tc;

1720 1721 1722 1723
	/* Create and initialize the TX/RX descriptors chains. */
	priv->dma_tx_size = STMMAC_ALIGN(dma_txsize);
	priv->dma_rx_size = STMMAC_ALIGN(dma_rxsize);
	priv->dma_buf_sz = STMMAC_ALIGN(buf_sz);
1724

1725
	ret = alloc_dma_desc_resources(priv);
1726 1727 1728 1729 1730
	if (ret < 0) {
		pr_err("%s: DMA descriptors allocation failed\n", __func__);
		goto dma_desc_error;
	}

1731
	ret = stmmac_hw_setup(dev);
1732
	if (ret < 0) {
1733
		pr_err("%s: Hw setup failed\n", __func__);
1734
		goto init_error;
1735 1736
	}

1737 1738
	if (priv->phydev)
		phy_start(priv->phydev);
1739

1740 1741
	/* Request the IRQ lines */
	ret = request_irq(dev->irq, stmmac_interrupt,
G
Giuseppe CAVALLARO 已提交
1742
			  IRQF_SHARED, dev->name, dev);
1743 1744 1745
	if (unlikely(ret < 0)) {
		pr_err("%s: ERROR: allocating the IRQ %d (error: %d)\n",
		       __func__, dev->irq, ret);
1746
		goto init_error;
1747 1748
	}

1749 1750 1751 1752 1753
	/* Request the Wake IRQ in case of another line is used for WoL */
	if (priv->wol_irq != dev->irq) {
		ret = request_irq(priv->wol_irq, stmmac_interrupt,
				  IRQF_SHARED, dev->name, dev);
		if (unlikely(ret < 0)) {
G
Giuseppe CAVALLARO 已提交
1754 1755
			pr_err("%s: ERROR: allocating the WoL IRQ %d (%d)\n",
			       __func__, priv->wol_irq, ret);
1756
			goto wolirq_error;
1757 1758 1759
		}
	}

1760
	/* Request the IRQ lines */
1761
	if (priv->lpi_irq > 0) {
1762 1763 1764 1765 1766
		ret = request_irq(priv->lpi_irq, stmmac_interrupt, IRQF_SHARED,
				  dev->name, dev);
		if (unlikely(ret < 0)) {
			pr_err("%s: ERROR: allocating the LPI IRQ %d (%d)\n",
			       __func__, priv->lpi_irq, ret);
1767
			goto lpiirq_error;
1768 1769 1770
		}
	}

1771 1772
	napi_enable(&priv->napi);
	netif_start_queue(dev);
1773

1774
	return 0;
1775

1776
lpiirq_error:
1777 1778
	if (priv->wol_irq != dev->irq)
		free_irq(priv->wol_irq, dev);
1779
wolirq_error:
1780 1781
	free_irq(dev->irq, dev);

1782 1783
init_error:
	free_dma_desc_resources(priv);
1784
dma_desc_error:
1785 1786
	if (priv->phydev)
		phy_disconnect(priv->phydev);
1787

1788
	return ret;
1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800
}

/**
 *  stmmac_release - close entry point of the driver
 *  @dev : device pointer.
 *  Description:
 *  This is the stop entry point of the driver.
 */
static int stmmac_release(struct net_device *dev)
{
	struct stmmac_priv *priv = netdev_priv(dev);

1801 1802 1803
	if (priv->eee_enabled)
		del_timer_sync(&priv->eee_ctrl_timer);

1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814
	/* Stop and disconnect the PHY */
	if (priv->phydev) {
		phy_stop(priv->phydev);
		phy_disconnect(priv->phydev);
		priv->phydev = NULL;
	}

	netif_stop_queue(dev);

	napi_disable(&priv->napi);

1815 1816
	del_timer_sync(&priv->txtimer);

1817 1818
	/* Free the IRQ lines */
	free_irq(dev->irq, dev);
1819 1820
	if (priv->wol_irq != dev->irq)
		free_irq(priv->wol_irq, dev);
1821
	if (priv->lpi_irq > 0)
1822
		free_irq(priv->lpi_irq, dev);
1823 1824

	/* Stop TX/RX DMA and clear the descriptors */
1825 1826
	priv->hw->dma->stop_tx(priv->ioaddr);
	priv->hw->dma->stop_rx(priv->ioaddr);
1827 1828 1829 1830

	/* Release and free the Rx/Tx resources */
	free_dma_desc_resources(priv);

1831
	/* Disable the MAC Rx/Tx */
1832
	stmmac_set_mac(priv->ioaddr, false);
1833 1834 1835

	netif_carrier_off(dev);

1836 1837 1838 1839
#ifdef CONFIG_STMMAC_DEBUG_FS
	stmmac_exit_fs();
#endif

1840 1841
	stmmac_release_ptp(priv);

1842 1843 1844 1845
	return 0;
}

/**
1846
 *  stmmac_xmit: Tx entry point of the driver
1847 1848
 *  @skb : the socket buffer
 *  @dev : device pointer
1849 1850 1851
 *  Description : this is the tx entry point of the driver.
 *  It programs the chain or the ring and supports oversized frames
 *  and SG feature.
1852 1853 1854 1855 1856 1857
 */
static netdev_tx_t stmmac_xmit(struct sk_buff *skb, struct net_device *dev)
{
	struct stmmac_priv *priv = netdev_priv(dev);
	unsigned int txsize = priv->dma_tx_size;
	unsigned int entry;
1858
	int i, csum_insertion = 0, is_jumbo = 0;
1859 1860
	int nfrags = skb_shinfo(skb)->nr_frags;
	struct dma_desc *desc, *first;
1861
	unsigned int nopaged_len = skb_headlen(skb);
G
Giuseppe CAVALLARO 已提交
1862
	unsigned int enh_desc = priv->plat->enh_desc;
1863 1864 1865 1866 1867

	if (unlikely(stmmac_tx_avail(priv) < nfrags + 1)) {
		if (!netif_queue_stopped(dev)) {
			netif_stop_queue(dev);
			/* This is a hard error, log it. */
G
Giuseppe CAVALLARO 已提交
1868
			pr_err("%s: Tx Ring full when queue awake\n", __func__);
1869 1870 1871 1872
		}
		return NETDEV_TX_BUSY;
	}

1873 1874
	spin_lock(&priv->tx_lock);

1875 1876 1877
	if (priv->tx_path_in_lpi_mode)
		stmmac_disable_eee_mode(priv);

1878 1879
	entry = priv->cur_tx % txsize;

1880
	csum_insertion = (skb->ip_summed == CHECKSUM_PARTIAL);
1881

1882
	if (priv->extend_desc)
G
Giuseppe CAVALLARO 已提交
1883
		desc = (struct dma_desc *)(priv->dma_etx + entry);
1884 1885 1886
	else
		desc = priv->dma_tx + entry;

1887 1888
	first = desc;

1889
	/* To program the descriptors according to the size of the frame */
G
Giuseppe CAVALLARO 已提交
1890 1891 1892
	if (enh_desc)
		is_jumbo = priv->hw->mode->is_jumbo_frm(skb->len, enh_desc);

1893
	if (likely(!is_jumbo)) {
1894
		desc->des2 = dma_map_single(priv->device, skb->data,
G
Giuseppe CAVALLARO 已提交
1895
					    nopaged_len, DMA_TO_DEVICE);
1896
		priv->tx_skbuff_dma[entry] = desc->des2;
1897
		priv->hw->desc->prepare_tx_desc(desc, 1, nopaged_len,
1898
						csum_insertion, priv->mode);
G
Giuseppe CAVALLARO 已提交
1899
	} else {
1900
		desc = first;
G
Giuseppe CAVALLARO 已提交
1901 1902
		entry = priv->hw->mode->jumbo_frm(priv, skb, csum_insertion);
	}
1903 1904

	for (i = 0; i < nfrags; i++) {
E
Eric Dumazet 已提交
1905 1906
		const skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
		int len = skb_frag_size(frag);
1907

1908
		priv->tx_skbuff[entry] = NULL;
1909
		entry = (++priv->cur_tx) % txsize;
1910
		if (priv->extend_desc)
G
Giuseppe CAVALLARO 已提交
1911
			desc = (struct dma_desc *)(priv->dma_etx + entry);
1912 1913
		else
			desc = priv->dma_tx + entry;
1914

1915 1916
		desc->des2 = skb_frag_dma_map(priv->device, frag, 0, len,
					      DMA_TO_DEVICE);
1917
		priv->tx_skbuff_dma[entry] = desc->des2;
1918 1919
		priv->hw->desc->prepare_tx_desc(desc, 0, len, csum_insertion,
						priv->mode);
1920
		wmb();
1921
		priv->hw->desc->set_tx_owner(desc);
1922
		wmb();
1923 1924
	}

1925 1926
	priv->tx_skbuff[entry] = skb;

1927
	/* Finalize the latest segment. */
1928
	priv->hw->desc->close_tx_desc(desc);
1929

1930
	wmb();
1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942
	/* According to the coalesce parameter the IC bit for the latest
	 * segment could be reset and the timer re-started to invoke the
	 * stmmac_tx function. This approach takes care about the fragments.
	 */
	priv->tx_count_frames += nfrags + 1;
	if (priv->tx_coal_frames > priv->tx_count_frames) {
		priv->hw->desc->clear_tx_ic(desc);
		priv->xstats.tx_reset_ic_bit++;
		mod_timer(&priv->txtimer,
			  STMMAC_COAL_TIMER(priv->tx_coal_timer));
	} else
		priv->tx_count_frames = 0;
1943

1944
	/* To avoid raise condition */
1945
	priv->hw->desc->set_tx_owner(first);
1946
	wmb();
1947 1948 1949 1950

	priv->cur_tx++;

	if (netif_msg_pktdata(priv)) {
1951
		pr_debug("%s: curr %d dirty=%d entry=%d, first=%p, nfrags=%d",
G
Giuseppe CAVALLARO 已提交
1952 1953
			__func__, (priv->cur_tx % txsize),
			(priv->dirty_tx % txsize), entry, first, nfrags);
1954

1955 1956 1957 1958 1959
		if (priv->extend_desc)
			stmmac_display_ring((void *)priv->dma_etx, txsize, 1);
		else
			stmmac_display_ring((void *)priv->dma_tx, txsize, 0);

1960
		pr_debug(">>> frame to be transmitted: ");
1961 1962 1963
		print_pkt(skb->data, skb->len);
	}
	if (unlikely(stmmac_tx_avail(priv) <= (MAX_SKB_FRAGS + 1))) {
1964 1965
		if (netif_msg_hw(priv))
			pr_debug("%s: stop transmitted packets\n", __func__);
1966 1967 1968 1969 1970
		netif_stop_queue(dev);
	}

	dev->stats.tx_bytes += skb->len;

1971 1972 1973 1974 1975 1976 1977 1978 1979
	if (unlikely((skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP) &&
		     priv->hwts_tx_en)) {
		/* declare that device is doing timestamping */
		skb_shinfo(skb)->tx_flags |= SKBTX_IN_PROGRESS;
		priv->hw->desc->enable_tx_timestamp(first);
	}

	if (!priv->hwts_tx_en)
		skb_tx_timestamp(skb);
1980

1981 1982
	priv->hw->dma->enable_dma_transmission(priv->ioaddr);

1983 1984
	spin_unlock(&priv->tx_lock);

1985 1986 1987
	return NETDEV_TX_OK;
}

1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004
static void stmmac_rx_vlan(struct net_device *dev, struct sk_buff *skb)
{
	struct ethhdr *ehdr;
	u16 vlanid;

	if ((dev->features & NETIF_F_HW_VLAN_CTAG_RX) ==
	    NETIF_F_HW_VLAN_CTAG_RX &&
	    !__vlan_get_tag(skb, &vlanid)) {
		/* pop the vlan tag */
		ehdr = (struct ethhdr *)skb->data;
		memmove(skb->data + VLAN_HLEN, ehdr, ETH_ALEN * 2);
		skb_pull(skb, VLAN_HLEN);
		__vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q), vlanid);
	}
}


2005 2006 2007 2008 2009 2010
/**
 * stmmac_rx_refill: refill used skb preallocated buffers
 * @priv: driver private structure
 * Description : this is to reallocate the skb for the reception process
 * that is based on zero-copy.
 */
2011 2012 2013 2014 2015 2016 2017
static inline void stmmac_rx_refill(struct stmmac_priv *priv)
{
	unsigned int rxsize = priv->dma_rx_size;
	int bfsize = priv->dma_buf_sz;

	for (; priv->cur_rx - priv->dirty_rx > 0; priv->dirty_rx++) {
		unsigned int entry = priv->dirty_rx % rxsize;
2018 2019 2020
		struct dma_desc *p;

		if (priv->extend_desc)
G
Giuseppe CAVALLARO 已提交
2021
			p = (struct dma_desc *)(priv->dma_erx + entry);
2022 2023 2024
		else
			p = priv->dma_rx + entry;

2025 2026 2027
		if (likely(priv->rx_skbuff[entry] == NULL)) {
			struct sk_buff *skb;

E
Eric Dumazet 已提交
2028
			skb = netdev_alloc_skb_ip_align(priv->dev, bfsize);
2029 2030 2031 2032 2033 2034 2035 2036 2037

			if (unlikely(skb == NULL))
				break;

			priv->rx_skbuff[entry] = skb;
			priv->rx_skbuff_dma[entry] =
			    dma_map_single(priv->device, skb->data, bfsize,
					   DMA_FROM_DEVICE);

2038
			p->des2 = priv->rx_skbuff_dma[entry];
2039

G
Giuseppe CAVALLARO 已提交
2040
			priv->hw->mode->refill_desc3(priv, p);
2041

2042 2043
			if (netif_msg_rx_status(priv))
				pr_debug("\trefill entry #%d\n", entry);
2044
		}
2045
		wmb();
2046
		priv->hw->desc->set_rx_owner(p);
2047
		wmb();
2048 2049 2050
	}
}

2051 2052 2053 2054 2055 2056 2057
/**
 * stmmac_rx_refill: refill used skb preallocated buffers
 * @priv: driver private structure
 * @limit: napi bugget.
 * Description :  this the function called by the napi poll method.
 * It gets all the frames inside the ring.
 */
2058 2059 2060 2061 2062 2063
static int stmmac_rx(struct stmmac_priv *priv, int limit)
{
	unsigned int rxsize = priv->dma_rx_size;
	unsigned int entry = priv->cur_rx % rxsize;
	unsigned int next_entry;
	unsigned int count = 0;
G
Giuseppe CAVALLARO 已提交
2064
	int coe = priv->plat->rx_coe;
2065

2066 2067
	if (netif_msg_rx_status(priv)) {
		pr_debug("%s: descriptor ring:\n", __func__);
2068
		if (priv->extend_desc)
G
Giuseppe CAVALLARO 已提交
2069
			stmmac_display_ring((void *)priv->dma_erx, rxsize, 1);
2070 2071
		else
			stmmac_display_ring((void *)priv->dma_rx, rxsize, 0);
2072
	}
2073
	while (count < limit) {
2074
		int status;
2075
		struct dma_desc *p;
2076

2077
		if (priv->extend_desc)
G
Giuseppe CAVALLARO 已提交
2078
			p = (struct dma_desc *)(priv->dma_erx + entry);
2079
		else
G
Giuseppe CAVALLARO 已提交
2080
			p = priv->dma_rx + entry;
2081 2082

		if (priv->hw->desc->get_rx_owner(p))
2083 2084 2085 2086 2087
			break;

		count++;

		next_entry = (++priv->cur_rx) % rxsize;
2088
		if (priv->extend_desc)
2089
			prefetch(priv->dma_erx + next_entry);
2090
		else
2091
			prefetch(priv->dma_rx + next_entry);
2092 2093

		/* read the status of the incoming frame */
2094 2095 2096 2097 2098 2099 2100
		status = priv->hw->desc->rx_status(&priv->dev->stats,
						   &priv->xstats, p);
		if ((priv->extend_desc) && (priv->hw->desc->rx_extended_status))
			priv->hw->desc->rx_extended_status(&priv->dev->stats,
							   &priv->xstats,
							   priv->dma_erx +
							   entry);
2101
		if (unlikely(status == discard_frame)) {
2102
			priv->dev->stats.rx_errors++;
2103 2104 2105 2106 2107 2108 2109 2110
			if (priv->hwts_rx_en && !priv->extend_desc) {
				/* DESC2 & DESC3 will be overwitten by device
				 * with timestamp value, hence reinitialize
				 * them in stmmac_rx_refill() function so that
				 * device can reuse it.
				 */
				priv->rx_skbuff[entry] = NULL;
				dma_unmap_single(priv->device,
G
Giuseppe CAVALLARO 已提交
2111 2112 2113
						 priv->rx_skbuff_dma[entry],
						 priv->dma_buf_sz,
						 DMA_FROM_DEVICE);
2114 2115
			}
		} else {
2116
			struct sk_buff *skb;
2117
			int frame_len;
2118

G
Giuseppe CAVALLARO 已提交
2119 2120
			frame_len = priv->hw->desc->get_rx_frame_len(p, coe);

2121
			/* ACS is set; GMAC core strips PAD/FCS for IEEE 802.3
G
Giuseppe CAVALLARO 已提交
2122 2123
			 * Type frames (LLC/LLC-SNAP)
			 */
2124 2125
			if (unlikely(status != llc_snap))
				frame_len -= ETH_FCS_LEN;
2126

2127
			if (netif_msg_rx_status(priv)) {
2128
				pr_debug("\tdesc: %p [entry %d] buff=0x%x\n",
G
Giuseppe CAVALLARO 已提交
2129
					 p, entry, p->des2);
2130 2131 2132 2133
				if (frame_len > ETH_FRAME_LEN)
					pr_debug("\tframe size %d, COE: %d\n",
						 frame_len, status);
			}
2134 2135 2136
			skb = priv->rx_skbuff[entry];
			if (unlikely(!skb)) {
				pr_err("%s: Inconsistent Rx descriptor chain\n",
G
Giuseppe CAVALLARO 已提交
2137
				       priv->dev->name);
2138 2139 2140 2141 2142 2143
				priv->dev->stats.rx_dropped++;
				break;
			}
			prefetch(skb->data - NET_IP_ALIGN);
			priv->rx_skbuff[entry] = NULL;

2144 2145
			stmmac_get_rx_hwtstamp(priv, entry, skb);

2146 2147 2148 2149
			skb_put(skb, frame_len);
			dma_unmap_single(priv->device,
					 priv->rx_skbuff_dma[entry],
					 priv->dma_buf_sz, DMA_FROM_DEVICE);
2150

2151
			if (netif_msg_pktdata(priv)) {
2152
				pr_debug("frame received (%dbytes)", frame_len);
2153 2154
				print_pkt(skb->data, frame_len);
			}
2155

2156 2157
			stmmac_rx_vlan(priv->dev, skb);

2158 2159
			skb->protocol = eth_type_trans(skb, priv->dev);

G
Giuseppe CAVALLARO 已提交
2160
			if (unlikely(!coe))
2161
				skb_checksum_none_assert(skb);
2162
			else
2163
				skb->ip_summed = CHECKSUM_UNNECESSARY;
2164 2165

			napi_gro_receive(&priv->napi, skb);
2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185

			priv->dev->stats.rx_packets++;
			priv->dev->stats.rx_bytes += frame_len;
		}
		entry = next_entry;
	}

	stmmac_rx_refill(priv);

	priv->xstats.rx_pkt_n += count;

	return count;
}

/**
 *  stmmac_poll - stmmac poll method (NAPI)
 *  @napi : pointer to the napi structure.
 *  @budget : maximum number of packets that the current CPU can receive from
 *	      all interfaces.
 *  Description :
2186
 *  To look at the incoming frames and clear the tx resources.
2187 2188 2189 2190 2191 2192
 */
static int stmmac_poll(struct napi_struct *napi, int budget)
{
	struct stmmac_priv *priv = container_of(napi, struct stmmac_priv, napi);
	int work_done = 0;

2193 2194
	priv->xstats.napi_poll++;
	stmmac_tx_clean(priv);
2195

2196
	work_done = stmmac_rx(priv, budget);
2197 2198
	if (work_done < budget) {
		napi_complete(napi);
2199
		stmmac_enable_dma_irq(priv);
2200 2201 2202 2203 2204 2205 2206 2207
	}
	return work_done;
}

/**
 *  stmmac_tx_timeout
 *  @dev : Pointer to net device structure
 *  Description: this function is called when a packet transmission fails to
2208
 *   complete within a reasonable time. The driver will mark the error in the
2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220
 *   netdev structure and arrange for the device to be reset to a sane state
 *   in order to transmit a new packet.
 */
static void stmmac_tx_timeout(struct net_device *dev)
{
	struct stmmac_priv *priv = netdev_priv(dev);

	/* Clear Tx resources and restart transmitting again */
	stmmac_tx_err(priv);
}

/**
2221
 *  stmmac_set_rx_mode - entry point for multicast addressing
2222 2223 2224 2225 2226 2227 2228
 *  @dev : pointer to the device structure
 *  Description:
 *  This function is a driver entry point which gets called by the kernel
 *  whenever multicast addresses must be enabled/disabled.
 *  Return value:
 *  void.
 */
2229
static void stmmac_set_rx_mode(struct net_device *dev)
2230 2231 2232 2233
{
	struct stmmac_priv *priv = netdev_priv(dev);

	spin_lock(&priv->lock);
2234
	priv->hw->mac->set_filter(priv->hw, dev);
2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258
	spin_unlock(&priv->lock);
}

/**
 *  stmmac_change_mtu - entry point to change MTU size for the device.
 *  @dev : device pointer.
 *  @new_mtu : the new MTU size for the device.
 *  Description: the Maximum Transfer Unit (MTU) is used by the network layer
 *  to drive packet transmission. Ethernet has an MTU of 1500 octets
 *  (ETH_DATA_LEN). This value can be changed with ifconfig.
 *  Return value:
 *  0 on success and an appropriate (-)ve integer as defined in errno.h
 *  file on failure.
 */
static int stmmac_change_mtu(struct net_device *dev, int new_mtu)
{
	struct stmmac_priv *priv = netdev_priv(dev);
	int max_mtu;

	if (netif_running(dev)) {
		pr_err("%s: must be stopped to change its MTU\n", dev->name);
		return -EBUSY;
	}

2259
	if (priv->plat->enh_desc)
2260 2261
		max_mtu = JUMBO_LEN;
	else
2262
		max_mtu = SKB_MAX_HEAD(NET_SKB_PAD + NET_IP_ALIGN);
2263

2264 2265 2266
	if (priv->plat->maxmtu < max_mtu)
		max_mtu = priv->plat->maxmtu;

2267 2268 2269 2270 2271
	if ((new_mtu < 46) || (new_mtu > max_mtu)) {
		pr_err("%s: invalid MTU, max MTU is: %d\n", dev->name, max_mtu);
		return -EINVAL;
	}

2272 2273 2274 2275 2276 2277
	dev->mtu = new_mtu;
	netdev_update_features(dev);

	return 0;
}

2278
static netdev_features_t stmmac_fix_features(struct net_device *dev,
G
Giuseppe CAVALLARO 已提交
2279
					     netdev_features_t features)
2280 2281 2282
{
	struct stmmac_priv *priv = netdev_priv(dev);

2283
	if (priv->plat->rx_coe == STMMAC_RX_COE_NONE)
2284
		features &= ~NETIF_F_RXCSUM;
2285 2286
	else if (priv->plat->rx_coe == STMMAC_RX_COE_TYPE1)
		features &= ~NETIF_F_IPV6_CSUM;
2287 2288 2289
	if (!priv->plat->tx_coe)
		features &= ~NETIF_F_ALL_CSUM;

2290 2291 2292
	/* Some GMAC devices have a bugged Jumbo frame support that
	 * needs to have the Tx COE disabled for oversized frames
	 * (due to limited buffer sizes). In this case we disable
G
Giuseppe CAVALLARO 已提交
2293 2294
	 * the TX csum insertionin the TDES and not use SF.
	 */
2295 2296
	if (priv->plat->bugged_jumbo && (dev->mtu > ETH_DATA_LEN))
		features &= ~NETIF_F_ALL_CSUM;
2297

2298
	return features;
2299 2300
}

2301 2302 2303 2304 2305 2306 2307 2308
/**
 *  stmmac_interrupt - main ISR
 *  @irq: interrupt number.
 *  @dev_id: to pass the net device pointer.
 *  Description: this is the main driver interrupt service routine.
 *  It calls the DMA ISR and also the core ISR to manage PMT, MMC, LPI
 *  interrupts.
 */
2309 2310 2311 2312 2313
static irqreturn_t stmmac_interrupt(int irq, void *dev_id)
{
	struct net_device *dev = (struct net_device *)dev_id;
	struct stmmac_priv *priv = netdev_priv(dev);

2314 2315 2316
	if (priv->irq_wake)
		pm_wakeup_event(priv->device, 0);

2317 2318 2319 2320 2321
	if (unlikely(!dev)) {
		pr_err("%s: invalid dev pointer\n", __func__);
		return IRQ_NONE;
	}

2322 2323
	/* To handle GMAC own interrupts */
	if (priv->plat->has_gmac) {
2324
		int status = priv->hw->mac->host_irq_status(priv->hw,
2325
							    &priv->xstats);
2326 2327
		if (unlikely(status)) {
			/* For LPI we need to save the tx status */
2328
			if (status & CORE_IRQ_TX_PATH_IN_LPI_MODE)
2329
				priv->tx_path_in_lpi_mode = true;
2330
			if (status & CORE_IRQ_TX_PATH_EXIT_LPI_MODE)
2331 2332 2333
				priv->tx_path_in_lpi_mode = false;
		}
	}
2334

2335
	/* To handle DMA interrupts */
2336
	stmmac_dma_interrupt(priv);
2337 2338 2339 2340 2341 2342

	return IRQ_HANDLED;
}

#ifdef CONFIG_NET_POLL_CONTROLLER
/* Polling receive - used by NETCONSOLE and other diagnostic tools
G
Giuseppe CAVALLARO 已提交
2343 2344
 * to allow network I/O with interrupts disabled.
 */
2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359
static void stmmac_poll_controller(struct net_device *dev)
{
	disable_irq(dev->irq);
	stmmac_interrupt(dev->irq, dev);
	enable_irq(dev->irq);
}
#endif

/**
 *  stmmac_ioctl - Entry point for the Ioctl
 *  @dev: Device pointer.
 *  @rq: An IOCTL specefic structure, that can contain a pointer to
 *  a proprietary structure used to pass information to the driver.
 *  @cmd: IOCTL command
 *  Description:
2360
 *  Currently it supports the phy_mii_ioctl(...) and HW time stamping.
2361 2362 2363 2364
 */
static int stmmac_ioctl(struct net_device *dev, struct ifreq *rq, int cmd)
{
	struct stmmac_priv *priv = netdev_priv(dev);
2365
	int ret = -EOPNOTSUPP;
2366 2367 2368 2369

	if (!netif_running(dev))
		return -EINVAL;

2370 2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383
	switch (cmd) {
	case SIOCGMIIPHY:
	case SIOCGMIIREG:
	case SIOCSMIIREG:
		if (!priv->phydev)
			return -EINVAL;
		ret = phy_mii_ioctl(priv->phydev, rq, cmd);
		break;
	case SIOCSHWTSTAMP:
		ret = stmmac_hwtstamp_ioctl(dev, rq);
		break;
	default:
		break;
	}
2384

2385 2386 2387
	return ret;
}

2388 2389 2390
#ifdef CONFIG_STMMAC_DEBUG_FS
static struct dentry *stmmac_fs_dir;
static struct dentry *stmmac_rings_status;
2391
static struct dentry *stmmac_dma_cap;
2392

2393
static void sysfs_display_ring(void *head, int size, int extend_desc,
G
Giuseppe CAVALLARO 已提交
2394
			       struct seq_file *seq)
2395 2396
{
	int i;
G
Giuseppe CAVALLARO 已提交
2397 2398
	struct dma_extended_desc *ep = (struct dma_extended_desc *)head;
	struct dma_desc *p = (struct dma_desc *)head;
2399

2400 2401 2402 2403 2404
	for (i = 0; i < size; i++) {
		u64 x;
		if (extend_desc) {
			x = *(u64 *) ep;
			seq_printf(seq, "%d [0x%x]: 0x%x 0x%x 0x%x 0x%x\n",
G
Giuseppe CAVALLARO 已提交
2405 2406
				   i, (unsigned int)virt_to_phys(ep),
				   (unsigned int)x, (unsigned int)(x >> 32),
2407 2408 2409 2410 2411
				   ep->basic.des2, ep->basic.des3);
			ep++;
		} else {
			x = *(u64 *) p;
			seq_printf(seq, "%d [0x%x]: 0x%x 0x%x 0x%x 0x%x\n",
G
Giuseppe CAVALLARO 已提交
2412 2413
				   i, (unsigned int)virt_to_phys(ep),
				   (unsigned int)x, (unsigned int)(x >> 32),
2414 2415 2416
				   p->des2, p->des3);
			p++;
		}
2417 2418
		seq_printf(seq, "\n");
	}
2419
}
2420

2421 2422 2423 2424 2425 2426
static int stmmac_sysfs_ring_read(struct seq_file *seq, void *v)
{
	struct net_device *dev = seq->private;
	struct stmmac_priv *priv = netdev_priv(dev);
	unsigned int txsize = priv->dma_tx_size;
	unsigned int rxsize = priv->dma_rx_size;
2427

2428 2429
	if (priv->extend_desc) {
		seq_printf(seq, "Extended RX descriptor ring:\n");
G
Giuseppe CAVALLARO 已提交
2430
		sysfs_display_ring((void *)priv->dma_erx, rxsize, 1, seq);
2431
		seq_printf(seq, "Extended TX descriptor ring:\n");
G
Giuseppe CAVALLARO 已提交
2432
		sysfs_display_ring((void *)priv->dma_etx, txsize, 1, seq);
2433 2434 2435 2436 2437
	} else {
		seq_printf(seq, "RX descriptor ring:\n");
		sysfs_display_ring((void *)priv->dma_rx, rxsize, 0, seq);
		seq_printf(seq, "TX descriptor ring:\n");
		sysfs_display_ring((void *)priv->dma_tx, txsize, 0, seq);
2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448 2449 2450 2451 2452
	}

	return 0;
}

static int stmmac_sysfs_ring_open(struct inode *inode, struct file *file)
{
	return single_open(file, stmmac_sysfs_ring_read, inode->i_private);
}

static const struct file_operations stmmac_rings_status_fops = {
	.owner = THIS_MODULE,
	.open = stmmac_sysfs_ring_open,
	.read = seq_read,
	.llseek = seq_lseek,
2453
	.release = single_release,
2454 2455
};

2456 2457 2458 2459 2460
static int stmmac_sysfs_dma_cap_read(struct seq_file *seq, void *v)
{
	struct net_device *dev = seq->private;
	struct stmmac_priv *priv = netdev_priv(dev);

2461
	if (!priv->hw_cap_support) {
2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524
		seq_printf(seq, "DMA HW features not supported\n");
		return 0;
	}

	seq_printf(seq, "==============================\n");
	seq_printf(seq, "\tDMA HW features\n");
	seq_printf(seq, "==============================\n");

	seq_printf(seq, "\t10/100 Mbps %s\n",
		   (priv->dma_cap.mbps_10_100) ? "Y" : "N");
	seq_printf(seq, "\t1000 Mbps %s\n",
		   (priv->dma_cap.mbps_1000) ? "Y" : "N");
	seq_printf(seq, "\tHalf duple %s\n",
		   (priv->dma_cap.half_duplex) ? "Y" : "N");
	seq_printf(seq, "\tHash Filter: %s\n",
		   (priv->dma_cap.hash_filter) ? "Y" : "N");
	seq_printf(seq, "\tMultiple MAC address registers: %s\n",
		   (priv->dma_cap.multi_addr) ? "Y" : "N");
	seq_printf(seq, "\tPCS (TBI/SGMII/RTBI PHY interfatces): %s\n",
		   (priv->dma_cap.pcs) ? "Y" : "N");
	seq_printf(seq, "\tSMA (MDIO) Interface: %s\n",
		   (priv->dma_cap.sma_mdio) ? "Y" : "N");
	seq_printf(seq, "\tPMT Remote wake up: %s\n",
		   (priv->dma_cap.pmt_remote_wake_up) ? "Y" : "N");
	seq_printf(seq, "\tPMT Magic Frame: %s\n",
		   (priv->dma_cap.pmt_magic_frame) ? "Y" : "N");
	seq_printf(seq, "\tRMON module: %s\n",
		   (priv->dma_cap.rmon) ? "Y" : "N");
	seq_printf(seq, "\tIEEE 1588-2002 Time Stamp: %s\n",
		   (priv->dma_cap.time_stamp) ? "Y" : "N");
	seq_printf(seq, "\tIEEE 1588-2008 Advanced Time Stamp:%s\n",
		   (priv->dma_cap.atime_stamp) ? "Y" : "N");
	seq_printf(seq, "\t802.3az - Energy-Efficient Ethernet (EEE) %s\n",
		   (priv->dma_cap.eee) ? "Y" : "N");
	seq_printf(seq, "\tAV features: %s\n", (priv->dma_cap.av) ? "Y" : "N");
	seq_printf(seq, "\tChecksum Offload in TX: %s\n",
		   (priv->dma_cap.tx_coe) ? "Y" : "N");
	seq_printf(seq, "\tIP Checksum Offload (type1) in RX: %s\n",
		   (priv->dma_cap.rx_coe_type1) ? "Y" : "N");
	seq_printf(seq, "\tIP Checksum Offload (type2) in RX: %s\n",
		   (priv->dma_cap.rx_coe_type2) ? "Y" : "N");
	seq_printf(seq, "\tRXFIFO > 2048bytes: %s\n",
		   (priv->dma_cap.rxfifo_over_2048) ? "Y" : "N");
	seq_printf(seq, "\tNumber of Additional RX channel: %d\n",
		   priv->dma_cap.number_rx_channel);
	seq_printf(seq, "\tNumber of Additional TX channel: %d\n",
		   priv->dma_cap.number_tx_channel);
	seq_printf(seq, "\tEnhanced descriptors: %s\n",
		   (priv->dma_cap.enh_desc) ? "Y" : "N");

	return 0;
}

static int stmmac_sysfs_dma_cap_open(struct inode *inode, struct file *file)
{
	return single_open(file, stmmac_sysfs_dma_cap_read, inode->i_private);
}

static const struct file_operations stmmac_dma_cap_fops = {
	.owner = THIS_MODULE,
	.open = stmmac_sysfs_dma_cap_open,
	.read = seq_read,
	.llseek = seq_lseek,
2525
	.release = single_release,
2526 2527
};

2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541
static int stmmac_init_fs(struct net_device *dev)
{
	/* Create debugfs entries */
	stmmac_fs_dir = debugfs_create_dir(STMMAC_RESOURCE_NAME, NULL);

	if (!stmmac_fs_dir || IS_ERR(stmmac_fs_dir)) {
		pr_err("ERROR %s, debugfs create directory failed\n",
		       STMMAC_RESOURCE_NAME);

		return -ENOMEM;
	}

	/* Entry to report DMA RX/TX rings */
	stmmac_rings_status = debugfs_create_file("descriptors_status",
G
Giuseppe CAVALLARO 已提交
2542 2543
						  S_IRUGO, stmmac_fs_dir, dev,
						  &stmmac_rings_status_fops);
2544 2545 2546 2547 2548 2549 2550 2551

	if (!stmmac_rings_status || IS_ERR(stmmac_rings_status)) {
		pr_info("ERROR creating stmmac ring debugfs file\n");
		debugfs_remove(stmmac_fs_dir);

		return -ENOMEM;
	}

2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563
	/* Entry to report the DMA HW features */
	stmmac_dma_cap = debugfs_create_file("dma_cap", S_IRUGO, stmmac_fs_dir,
					     dev, &stmmac_dma_cap_fops);

	if (!stmmac_dma_cap || IS_ERR(stmmac_dma_cap)) {
		pr_info("ERROR creating stmmac MMC debugfs file\n");
		debugfs_remove(stmmac_rings_status);
		debugfs_remove(stmmac_fs_dir);

		return -ENOMEM;
	}

2564 2565 2566 2567 2568 2569
	return 0;
}

static void stmmac_exit_fs(void)
{
	debugfs_remove(stmmac_rings_status);
2570
	debugfs_remove(stmmac_dma_cap);
2571 2572 2573 2574
	debugfs_remove(stmmac_fs_dir);
}
#endif /* CONFIG_STMMAC_DEBUG_FS */

2575 2576 2577 2578 2579
static const struct net_device_ops stmmac_netdev_ops = {
	.ndo_open = stmmac_open,
	.ndo_start_xmit = stmmac_xmit,
	.ndo_stop = stmmac_release,
	.ndo_change_mtu = stmmac_change_mtu,
2580
	.ndo_fix_features = stmmac_fix_features,
2581
	.ndo_set_rx_mode = stmmac_set_rx_mode,
2582 2583 2584 2585 2586 2587 2588 2589
	.ndo_tx_timeout = stmmac_tx_timeout,
	.ndo_do_ioctl = stmmac_ioctl,
#ifdef CONFIG_NET_POLL_CONTROLLER
	.ndo_poll_controller = stmmac_poll_controller,
#endif
	.ndo_set_mac_address = eth_mac_addr,
};

2590 2591
/**
 *  stmmac_hw_init - Init the MAC device
2592
 *  @priv: driver private structure
2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603
 *  Description: this function detects which MAC device
 *  (GMAC/MAC10-100) has to attached, checks the HW capability
 *  (if supported) and sets the driver's features (for example
 *  to use the ring or chaine mode or support the normal/enh
 *  descriptor structure).
 */
static int stmmac_hw_init(struct stmmac_priv *priv)
{
	struct mac_device_info *mac;

	/* Identify the MAC HW device */
2604 2605
	if (priv->plat->has_gmac) {
		priv->dev->priv_flags |= IFF_UNICAST_FLT;
2606 2607 2608
		mac = dwmac1000_setup(priv->ioaddr,
				      priv->plat->multicast_filter_bins,
				      priv->plat->unicast_filter_entries);
2609
	} else {
2610
		mac = dwmac100_setup(priv->ioaddr);
2611
	}
2612 2613 2614 2615 2616 2617
	if (!mac)
		return -ENOMEM;

	priv->hw = mac;

	/* Get and dump the chip ID */
2618
	priv->synopsys_id = stmmac_get_synopsys_id(priv);
2619

2620
	/* To use the chained or ring mode */
G
Giuseppe CAVALLARO 已提交
2621
	if (chain_mode) {
G
Giuseppe CAVALLARO 已提交
2622
		priv->hw->mode = &chain_mode_ops;
2623 2624 2625
		pr_info(" Chain mode enabled\n");
		priv->mode = STMMAC_CHAIN_MODE;
	} else {
G
Giuseppe CAVALLARO 已提交
2626
		priv->hw->mode = &ring_mode_ops;
2627 2628 2629 2630
		pr_info(" Ring mode enabled\n");
		priv->mode = STMMAC_RING_MODE;
	}

2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641 2642
	/* Get the HW capability (new GMAC newer than 3.50a) */
	priv->hw_cap_support = stmmac_get_hw_features(priv);
	if (priv->hw_cap_support) {
		pr_info(" DMA HW capability register supported");

		/* We can override some gmac/dma configuration fields: e.g.
		 * enh_desc, tx_coe (e.g. that are passed through the
		 * platform) with the values from the HW capability
		 * register (if supported).
		 */
		priv->plat->enh_desc = priv->dma_cap.enh_desc;
		priv->plat->pmt = priv->dma_cap.pmt_remote_wake_up;
2643 2644 2645 2646 2647 2648 2649 2650

		priv->plat->tx_coe = priv->dma_cap.tx_coe;

		if (priv->dma_cap.rx_coe_type2)
			priv->plat->rx_coe = STMMAC_RX_COE_TYPE2;
		else if (priv->dma_cap.rx_coe_type1)
			priv->plat->rx_coe = STMMAC_RX_COE_TYPE1;

2651 2652 2653
	} else
		pr_info(" No HW DMA feature register supported");

2654 2655 2656
	/* To use alternate (extended) or normal descriptor structures */
	stmmac_selec_desc_mode(priv);

2657 2658 2659
	if (priv->plat->rx_coe)
		pr_info(" RX Checksum Offload Engine supported (type %d)\n",
			priv->plat->rx_coe);
2660 2661 2662 2663 2664 2665 2666 2667
	if (priv->plat->tx_coe)
		pr_info(" TX Checksum insertion supported\n");

	if (priv->plat->pmt) {
		pr_info(" Wake-Up On Lan supported\n");
		device_set_wakeup_capable(priv->device, 1);
	}

2668
	return 0;
2669 2670
}

2671
/**
2672 2673
 * stmmac_dvr_probe
 * @device: device pointer
2674 2675
 * @plat_dat: platform data pointer
 * @addr: iobase memory address
2676 2677
 * Description: this is the main probe function used to
 * call the alloc_etherdev, allocate the priv structure.
2678
 */
2679
struct stmmac_priv *stmmac_dvr_probe(struct device *device,
2680 2681
				     struct plat_stmmacenet_data *plat_dat,
				     void __iomem *addr)
2682 2683
{
	int ret = 0;
2684 2685
	struct net_device *ndev = NULL;
	struct stmmac_priv *priv;
2686

2687
	ndev = alloc_etherdev(sizeof(struct stmmac_priv));
2688
	if (!ndev)
2689 2690 2691 2692 2693 2694 2695
		return NULL;

	SET_NETDEV_DEV(ndev, device);

	priv = netdev_priv(ndev);
	priv->device = device;
	priv->dev = ndev;
2696

2697
	ether_setup(ndev);
2698

2699
	stmmac_set_ethtool_ops(ndev);
2700 2701 2702 2703 2704 2705 2706
	priv->pause = pause;
	priv->plat = plat_dat;
	priv->ioaddr = addr;
	priv->dev->base_addr = (unsigned long)addr;

	/* Verify driver arguments */
	stmmac_verify_args();
2707

2708
	/* Override with kernel parameters if supplied XXX CRS XXX
G
Giuseppe CAVALLARO 已提交
2709 2710
	 * this needs to have multiple instances
	 */
2711 2712 2713
	if ((phyaddr >= 0) && (phyaddr <= 31))
		priv->plat->phy_addr = phyaddr;

2714 2715 2716 2717
	priv->stmmac_clk = devm_clk_get(priv->device, STMMAC_RESOURCE_NAME);
	if (IS_ERR(priv->stmmac_clk)) {
		dev_warn(priv->device, "%s: warning: cannot get CSR clock\n",
			 __func__);
2718
		ret = PTR_ERR(priv->stmmac_clk);
2719 2720 2721 2722
		goto error_clk_get;
	}
	clk_prepare_enable(priv->stmmac_clk);

2723 2724 2725 2726 2727 2728 2729 2730 2731 2732 2733 2734 2735
	priv->stmmac_rst = devm_reset_control_get(priv->device,
						  STMMAC_RESOURCE_NAME);
	if (IS_ERR(priv->stmmac_rst)) {
		if (PTR_ERR(priv->stmmac_rst) == -EPROBE_DEFER) {
			ret = -EPROBE_DEFER;
			goto error_hw_init;
		}
		dev_info(priv->device, "no reset control found\n");
		priv->stmmac_rst = NULL;
	}
	if (priv->stmmac_rst)
		reset_control_deassert(priv->stmmac_rst);

2736
	/* Init MAC and get the capabilities */
2737 2738
	ret = stmmac_hw_init(priv);
	if (ret)
2739
		goto error_hw_init;
2740 2741

	ndev->netdev_ops = &stmmac_netdev_ops;
2742

2743 2744
	ndev->hw_features = NETIF_F_SG | NETIF_F_IP_CSUM | NETIF_F_IPV6_CSUM |
			    NETIF_F_RXCSUM;
2745 2746
	ndev->features |= ndev->hw_features | NETIF_F_HIGHDMA;
	ndev->watchdog_timeo = msecs_to_jiffies(watchdog);
2747 2748
#ifdef STMMAC_VLAN_TAG_USED
	/* Both mac100 and gmac support receive VLAN tag detection */
2749
	ndev->features |= NETIF_F_HW_VLAN_CTAG_RX;
2750 2751 2752 2753 2754 2755
#endif
	priv->msg_enable = netif_msg_init(debug, default_msg_level);

	if (flow_ctrl)
		priv->flow_ctrl = FLOW_AUTO;	/* RX/TX pause on */

2756 2757 2758 2759 2760 2761 2762 2763 2764 2765
	/* Rx Watchdog is available in the COREs newer than the 3.40.
	 * In some case, for example on bugged HW this feature
	 * has to be disable and this can be done by passing the
	 * riwt_off field from the platform.
	 */
	if ((priv->synopsys_id >= DWMAC_CORE_3_50) && (!priv->plat->riwt_off)) {
		priv->use_riwt = 1;
		pr_info(" Enable RX Mitigation via HW Watchdog Timer\n");
	}

2766
	netif_napi_add(ndev, &priv->napi, stmmac_poll, 64);
2767

2768
	spin_lock_init(&priv->lock);
2769
	spin_lock_init(&priv->tx_lock);
2770

2771
	ret = register_netdev(ndev);
2772
	if (ret) {
2773
		pr_err("%s: ERROR %i registering the device\n", __func__, ret);
2774
		goto error_netdev_register;
2775 2776
	}

2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787
	/* If a specific clk_csr value is passed from the platform
	 * this means that the CSR Clock Range selection cannot be
	 * changed at run-time and it is fixed. Viceversa the driver'll try to
	 * set the MDC clock dynamically according to the csr actual
	 * clock input.
	 */
	if (!priv->plat->clk_csr)
		stmmac_clk_csr_set(priv);
	else
		priv->clk_csr = priv->plat->clk_csr;

2788 2789
	stmmac_check_pcs_mode(priv);

2790 2791
	if (priv->pcs != STMMAC_PCS_RGMII && priv->pcs != STMMAC_PCS_TBI &&
	    priv->pcs != STMMAC_PCS_RTBI) {
2792 2793 2794 2795 2796 2797 2798
		/* MDIO bus Registration */
		ret = stmmac_mdio_register(ndev);
		if (ret < 0) {
			pr_debug("%s: MDIO bus (id: %d) registration failed",
				 __func__, priv->plat->bus_id);
			goto error_mdio_register;
		}
2799 2800
	}

2801
	return priv;
2802

2803
error_mdio_register:
2804
	unregister_netdev(ndev);
2805 2806
error_netdev_register:
	netif_napi_del(&priv->napi);
2807 2808 2809
error_hw_init:
	clk_disable_unprepare(priv->stmmac_clk);
error_clk_get:
2810
	free_netdev(ndev);
2811

2812
	return ERR_PTR(ret);
2813 2814 2815 2816
}

/**
 * stmmac_dvr_remove
2817
 * @ndev: net device pointer
2818
 * Description: this function resets the TX/RX processes, disables the MAC RX/TX
2819
 * changes the link status, releases the DMA descriptor rings.
2820
 */
2821
int stmmac_dvr_remove(struct net_device *ndev)
2822
{
2823
	struct stmmac_priv *priv = netdev_priv(ndev);
2824 2825 2826

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

2827 2828
	priv->hw->dma->stop_rx(priv->ioaddr);
	priv->hw->dma->stop_tx(priv->ioaddr);
2829

2830
	stmmac_set_mac(priv->ioaddr, false);
2831 2832
	if (priv->pcs != STMMAC_PCS_RGMII && priv->pcs != STMMAC_PCS_TBI &&
	    priv->pcs != STMMAC_PCS_RTBI)
2833
		stmmac_mdio_unregister(ndev);
2834 2835
	netif_carrier_off(ndev);
	unregister_netdev(ndev);
2836 2837
	if (priv->stmmac_rst)
		reset_control_assert(priv->stmmac_rst);
2838
	clk_disable_unprepare(priv->stmmac_clk);
2839 2840 2841 2842 2843 2844
	free_netdev(ndev);

	return 0;
}

#ifdef CONFIG_PM
2845
int stmmac_suspend(struct net_device *ndev)
2846
{
2847
	struct stmmac_priv *priv = netdev_priv(ndev);
2848
	unsigned long flags;
2849

2850
	if (!ndev || !netif_running(ndev))
2851 2852
		return 0;

2853 2854 2855
	if (priv->phydev)
		phy_stop(priv->phydev);

2856
	spin_lock_irqsave(&priv->lock, flags);
2857

2858 2859
	netif_device_detach(ndev);
	netif_stop_queue(ndev);
2860

2861 2862 2863 2864 2865
	napi_disable(&priv->napi);

	/* Stop TX/RX DMA */
	priv->hw->dma->stop_tx(priv->ioaddr);
	priv->hw->dma->stop_rx(priv->ioaddr);
2866 2867

	stmmac_clear_descriptors(priv);
2868 2869

	/* Enable Power down mode by programming the PMT regs */
2870
	if (device_may_wakeup(priv->device)) {
2871
		priv->hw->mac->pmt(priv->hw, priv->wolopts);
2872 2873
		priv->irq_wake = 1;
	} else {
2874
		stmmac_set_mac(priv->ioaddr, false);
2875
		pinctrl_pm_select_sleep_state(priv->device);
2876
		/* Disable clock in case of PWM is off */
2877
		clk_disable_unprepare(priv->stmmac_clk);
2878
	}
2879
	spin_unlock_irqrestore(&priv->lock, flags);
2880 2881 2882 2883

	priv->oldlink = 0;
	priv->speed = 0;
	priv->oldduplex = -1;
2884 2885 2886
	return 0;
}

2887
int stmmac_resume(struct net_device *ndev)
2888
{
2889
	struct stmmac_priv *priv = netdev_priv(ndev);
2890
	unsigned long flags;
2891

2892
	if (!netif_running(ndev))
2893 2894
		return 0;

2895
	spin_lock_irqsave(&priv->lock, flags);
2896

2897 2898 2899 2900
	/* Power Down bit, into the PM register, is cleared
	 * automatically as soon as a magic packet or a Wake-up frame
	 * is received. Anyway, it's better to manually clear
	 * this bit because it can generate problems while resuming
G
Giuseppe CAVALLARO 已提交
2901 2902
	 * from another devices (e.g. serial console).
	 */
2903
	if (device_may_wakeup(priv->device)) {
2904
		priv->hw->mac->pmt(priv->hw, 0);
2905
		priv->irq_wake = 0;
2906
	} else {
2907
		pinctrl_pm_select_default_state(priv->device);
2908
		/* enable the clk prevously disabled */
2909
		clk_prepare_enable(priv->stmmac_clk);
2910 2911 2912 2913
		/* reset the phy so that it's ready */
		if (priv->mii)
			stmmac_mdio_reset(priv->mii);
	}
2914

2915
	netif_device_attach(ndev);
2916

2917
	stmmac_hw_setup(ndev);
2918 2919 2920

	napi_enable(&priv->napi);

2921
	netif_start_queue(ndev);
2922

2923
	spin_unlock_irqrestore(&priv->lock, flags);
2924 2925 2926 2927

	if (priv->phydev)
		phy_start(priv->phydev);

2928 2929
	return 0;
}
2930
#endif /* CONFIG_PM */
2931

2932 2933 2934
/* Driver can be configured w/ and w/ both PCI and Platf drivers
 * depending on the configuration selected.
 */
2935 2936
static int __init stmmac_init(void)
{
2937
	int ret;
2938

2939 2940 2941 2942 2943 2944
	ret = stmmac_register_platform();
	if (ret)
		goto err;
	ret = stmmac_register_pci();
	if (ret)
		goto err_pci;
2945
	return 0;
2946 2947 2948 2949 2950
err_pci:
	stmmac_unregister_platform();
err:
	pr_err("stmmac: driver registration failed\n");
	return ret;
2951 2952 2953 2954
}

static void __exit stmmac_exit(void)
{
2955 2956
	stmmac_unregister_platform();
	stmmac_unregister_pci();
2957 2958 2959 2960 2961
}

module_init(stmmac_init);
module_exit(stmmac_exit);

2962 2963 2964 2965 2966 2967 2968 2969
#ifndef MODULE
static int __init stmmac_cmdline_opt(char *str)
{
	char *opt;

	if (!str || !*str)
		return -EINVAL;
	while ((opt = strsep(&str, ",")) != NULL) {
2970
		if (!strncmp(opt, "debug:", 6)) {
2971
			if (kstrtoint(opt + 6, 0, &debug))
2972 2973
				goto err;
		} else if (!strncmp(opt, "phyaddr:", 8)) {
2974
			if (kstrtoint(opt + 8, 0, &phyaddr))
2975 2976
				goto err;
		} else if (!strncmp(opt, "dma_txsize:", 11)) {
2977
			if (kstrtoint(opt + 11, 0, &dma_txsize))
2978 2979
				goto err;
		} else if (!strncmp(opt, "dma_rxsize:", 11)) {
2980
			if (kstrtoint(opt + 11, 0, &dma_rxsize))
2981 2982
				goto err;
		} else if (!strncmp(opt, "buf_sz:", 7)) {
2983
			if (kstrtoint(opt + 7, 0, &buf_sz))
2984 2985
				goto err;
		} else if (!strncmp(opt, "tc:", 3)) {
2986
			if (kstrtoint(opt + 3, 0, &tc))
2987 2988
				goto err;
		} else if (!strncmp(opt, "watchdog:", 9)) {
2989
			if (kstrtoint(opt + 9, 0, &watchdog))
2990 2991
				goto err;
		} else if (!strncmp(opt, "flow_ctrl:", 10)) {
2992
			if (kstrtoint(opt + 10, 0, &flow_ctrl))
2993 2994
				goto err;
		} else if (!strncmp(opt, "pause:", 6)) {
2995
			if (kstrtoint(opt + 6, 0, &pause))
2996
				goto err;
2997
		} else if (!strncmp(opt, "eee_timer:", 10)) {
2998 2999
			if (kstrtoint(opt + 10, 0, &eee_timer))
				goto err;
3000 3001 3002
		} else if (!strncmp(opt, "chain_mode:", 11)) {
			if (kstrtoint(opt + 11, 0, &chain_mode))
				goto err;
3003
		}
3004 3005
	}
	return 0;
3006 3007 3008 3009

err:
	pr_err("%s: ERROR broken module parameter conversion", __func__);
	return -EINVAL;
3010 3011 3012
}

__setup("stmmaceth=", stmmac_cmdline_opt);
G
Giuseppe CAVALLARO 已提交
3013
#endif /* MODULE */
3014 3015 3016 3017

MODULE_DESCRIPTION("STMMAC 10/100/1000 Ethernet device driver");
MODULE_AUTHOR("Giuseppe Cavallaro <peppe.cavallaro@st.com>");
MODULE_LICENSE("GPL");