fec_main.c 49.4 KB
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/*
 * Fast Ethernet Controller (FEC) driver for Motorola MPC8xx.
 * Copyright (c) 1997 Dan Malek (dmalek@jlc.net)
 *
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 * Right now, I am very wasteful with the buffers.  I allocate memory
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 * pages and then divide them into 2K frame buffers.  This way I know I
 * have buffers large enough to hold one frame within one buffer descriptor.
 * Once I get this working, I will use 64 or 128 byte CPM buffers, which
 * will be much more memory efficient and will easily handle lots of
 * small packets.
 *
 * Much better multiple PHY support by Magnus Damm.
 * Copyright (c) 2000 Ericsson Radio Systems AB.
 *
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 * Support for FEC controller of ColdFire processors.
 * Copyright (c) 2001-2005 Greg Ungerer (gerg@snapgear.com)
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 *
 * Bug fixes and cleanup by Philippe De Muyter (phdm@macqel.be)
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 * Copyright (c) 2004-2006 Macq Electronique SA.
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 *
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 * Copyright (C) 2010-2011 Freescale Semiconductor, Inc.
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 */

#include <linux/module.h>
#include <linux/kernel.h>
#include <linux/string.h>
#include <linux/ptrace.h>
#include <linux/errno.h>
#include <linux/ioport.h>
#include <linux/slab.h>
#include <linux/interrupt.h>
#include <linux/init.h>
#include <linux/delay.h>
#include <linux/netdevice.h>
#include <linux/etherdevice.h>
#include <linux/skbuff.h>
#include <linux/spinlock.h>
#include <linux/workqueue.h>
#include <linux/bitops.h>
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#include <linux/io.h>
#include <linux/irq.h>
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#include <linux/clk.h>
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#include <linux/platform_device.h>
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#include <linux/phy.h>
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#include <linux/fec.h>
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#include <linux/of.h>
#include <linux/of_device.h>
#include <linux/of_gpio.h>
#include <linux/of_net.h>
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#include <linux/pinctrl/consumer.h>
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#include <linux/regulator/consumer.h>
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#include <asm/cacheflush.h>
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#ifndef CONFIG_ARM
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#include <asm/coldfire.h>
#include <asm/mcfsim.h>
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#endif
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#include "fec.h"

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#if defined(CONFIG_ARM)
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#define FEC_ALIGNMENT	0xf
#else
#define FEC_ALIGNMENT	0x3
#endif

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#define DRIVER_NAME	"fec"
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#define FEC_NAPI_WEIGHT	64
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/* Pause frame feild and FIFO threshold */
#define FEC_ENET_FCE	(1 << 5)
#define FEC_ENET_RSEM_V	0x84
#define FEC_ENET_RSFL_V	16
#define FEC_ENET_RAEM_V	0x8
#define FEC_ENET_RAFL_V	0x8
#define FEC_ENET_OPD_V	0xFFF0

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/* Controller is ENET-MAC */
#define FEC_QUIRK_ENET_MAC		(1 << 0)
/* Controller needs driver to swap frame */
#define FEC_QUIRK_SWAP_FRAME		(1 << 1)
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/* Controller uses gasket */
#define FEC_QUIRK_USE_GASKET		(1 << 2)
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/* Controller has GBIT support */
#define FEC_QUIRK_HAS_GBIT		(1 << 3)
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/* Controller has extend desc buffer */
#define FEC_QUIRK_HAS_BUFDESC_EX	(1 << 4)
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static struct platform_device_id fec_devtype[] = {
	{
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		/* keep it for coldfire */
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		.name = DRIVER_NAME,
		.driver_data = 0,
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	}, {
		.name = "imx25-fec",
		.driver_data = FEC_QUIRK_USE_GASKET,
	}, {
		.name = "imx27-fec",
		.driver_data = 0,
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	}, {
		.name = "imx28-fec",
		.driver_data = FEC_QUIRK_ENET_MAC | FEC_QUIRK_SWAP_FRAME,
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	}, {
		.name = "imx6q-fec",
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		.driver_data = FEC_QUIRK_ENET_MAC | FEC_QUIRK_HAS_GBIT |
				FEC_QUIRK_HAS_BUFDESC_EX,
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	}, {
		.name = "mvf-fec",
		.driver_data = FEC_QUIRK_ENET_MAC,
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	}, {
		/* sentinel */
	}
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};
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MODULE_DEVICE_TABLE(platform, fec_devtype);
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enum imx_fec_type {
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	IMX25_FEC = 1,	/* runs on i.mx25/50/53 */
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	IMX27_FEC,	/* runs on i.mx27/35/51 */
	IMX28_FEC,
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	IMX6Q_FEC,
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	MVF_FEC,
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};

static const struct of_device_id fec_dt_ids[] = {
	{ .compatible = "fsl,imx25-fec", .data = &fec_devtype[IMX25_FEC], },
	{ .compatible = "fsl,imx27-fec", .data = &fec_devtype[IMX27_FEC], },
	{ .compatible = "fsl,imx28-fec", .data = &fec_devtype[IMX28_FEC], },
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	{ .compatible = "fsl,imx6q-fec", .data = &fec_devtype[IMX6Q_FEC], },
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	{ .compatible = "fsl,mvf-fec", .data = &fec_devtype[MVF_FEC], },
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	{ /* sentinel */ }
};
MODULE_DEVICE_TABLE(of, fec_dt_ids);

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static unsigned char macaddr[ETH_ALEN];
module_param_array(macaddr, byte, NULL, 0);
MODULE_PARM_DESC(macaddr, "FEC Ethernet MAC address");
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#if defined(CONFIG_M5272)
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/*
 * Some hardware gets it MAC address out of local flash memory.
 * if this is non-zero then assume it is the address to get MAC from.
 */
#if defined(CONFIG_NETtel)
#define	FEC_FLASHMAC	0xf0006006
#elif defined(CONFIG_GILBARCONAP) || defined(CONFIG_SCALES)
#define	FEC_FLASHMAC	0xf0006000
#elif defined(CONFIG_CANCam)
#define	FEC_FLASHMAC	0xf0020000
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#elif defined (CONFIG_M5272C3)
#define	FEC_FLASHMAC	(0xffe04000 + 4)
#elif defined(CONFIG_MOD5272)
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#define FEC_FLASHMAC	0xffc0406b
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#else
#define	FEC_FLASHMAC	0
#endif
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#endif /* CONFIG_M5272 */
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#if (((RX_RING_SIZE + TX_RING_SIZE) * 32) > PAGE_SIZE)
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#error "FEC: descriptor ring size constants too large"
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#endif

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/* Interrupt events/masks. */
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#define FEC_ENET_HBERR	((uint)0x80000000)	/* Heartbeat error */
#define FEC_ENET_BABR	((uint)0x40000000)	/* Babbling receiver */
#define FEC_ENET_BABT	((uint)0x20000000)	/* Babbling transmitter */
#define FEC_ENET_GRA	((uint)0x10000000)	/* Graceful stop complete */
#define FEC_ENET_TXF	((uint)0x08000000)	/* Full frame transmitted */
#define FEC_ENET_TXB	((uint)0x04000000)	/* A buffer was transmitted */
#define FEC_ENET_RXF	((uint)0x02000000)	/* Full frame received */
#define FEC_ENET_RXB	((uint)0x01000000)	/* A buffer was received */
#define FEC_ENET_MII	((uint)0x00800000)	/* MII interrupt */
#define FEC_ENET_EBERR	((uint)0x00400000)	/* SDMA bus error */

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#define FEC_DEFAULT_IMASK (FEC_ENET_TXF | FEC_ENET_RXF | FEC_ENET_MII)
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#define FEC_RX_DISABLED_IMASK (FEC_DEFAULT_IMASK & (~FEC_ENET_RXF))
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/* The FEC stores dest/src/type, data, and checksum for receive packets.
 */
#define PKT_MAXBUF_SIZE		1518
#define PKT_MINBUF_SIZE		64
#define PKT_MAXBLR_SIZE		1520

/*
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 * The 5270/5271/5280/5282/532x RX control register also contains maximum frame
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 * size bits. Other FEC hardware does not, so we need to take that into
 * account when setting it.
 */
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#if defined(CONFIG_M523x) || defined(CONFIG_M527x) || defined(CONFIG_M528x) || \
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    defined(CONFIG_M520x) || defined(CONFIG_M532x) || defined(CONFIG_ARM)
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#define	OPT_FRAME_SIZE	(PKT_MAXBUF_SIZE << 16)
#else
#define	OPT_FRAME_SIZE	0
#endif

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/* FEC MII MMFR bits definition */
#define FEC_MMFR_ST		(1 << 30)
#define FEC_MMFR_OP_READ	(2 << 28)
#define FEC_MMFR_OP_WRITE	(1 << 28)
#define FEC_MMFR_PA(v)		((v & 0x1f) << 23)
#define FEC_MMFR_RA(v)		((v & 0x1f) << 18)
#define FEC_MMFR_TA		(2 << 16)
#define FEC_MMFR_DATA(v)	(v & 0xffff)
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#define FEC_MII_TIMEOUT		30000 /* us */
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/* Transmitter timeout */
#define TX_TIMEOUT (2 * HZ)
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#define FEC_PAUSE_FLAG_AUTONEG	0x1
#define FEC_PAUSE_FLAG_ENABLE	0x2

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static int mii_cnt;

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static struct bufdesc *fec_enet_get_nextdesc(struct bufdesc *bdp, int is_ex)
{
	struct bufdesc_ex *ex = (struct bufdesc_ex *)bdp;
	if (is_ex)
		return (struct bufdesc *)(ex + 1);
	else
		return bdp + 1;
}

static struct bufdesc *fec_enet_get_prevdesc(struct bufdesc *bdp, int is_ex)
{
	struct bufdesc_ex *ex = (struct bufdesc_ex *)bdp;
	if (is_ex)
		return (struct bufdesc *)(ex - 1);
	else
		return bdp - 1;
}

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static void *swap_buffer(void *bufaddr, int len)
{
	int i;
	unsigned int *buf = bufaddr;

	for (i = 0; i < (len + 3) / 4; i++, buf++)
		*buf = cpu_to_be32(*buf);

	return bufaddr;
}

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static netdev_tx_t
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fec_enet_start_xmit(struct sk_buff *skb, struct net_device *ndev)
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{
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	struct fec_enet_private *fep = netdev_priv(ndev);
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	const struct platform_device_id *id_entry =
				platform_get_device_id(fep->pdev);
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	struct bufdesc *bdp;
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	void *bufaddr;
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	unsigned short	status;
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	unsigned int index;
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	if (!fep->link) {
		/* Link is down or autonegotiation is in progress. */
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		return NETDEV_TX_BUSY;
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	}

	/* Fill in a Tx ring entry */
	bdp = fep->cur_tx;

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	status = bdp->cbd_sc;
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	if (status & BD_ENET_TX_READY) {
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		/* Ooops.  All transmit buffers are full.  Bail out.
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		 * This should not happen, since ndev->tbusy should be set.
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		 */
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		printk("%s: tx queue full!.\n", ndev->name);
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		return NETDEV_TX_BUSY;
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	}

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	/* Clear all of the status flags */
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	status &= ~BD_ENET_TX_STATS;
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	/* Set buffer length and buffer pointer */
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	bufaddr = skb->data;
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	bdp->cbd_datlen = skb->len;

	/*
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	 * On some FEC implementations data must be aligned on
	 * 4-byte boundaries. Use bounce buffers to copy data
	 * and get it aligned. Ugh.
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	 */
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	if (fep->bufdesc_ex)
		index = (struct bufdesc_ex *)bdp -
			(struct bufdesc_ex *)fep->tx_bd_base;
	else
		index = bdp - fep->tx_bd_base;

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	if (((unsigned long) bufaddr) & FEC_ALIGNMENT) {
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		memcpy(fep->tx_bounce[index], skb->data, skb->len);
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		bufaddr = fep->tx_bounce[index];
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	}

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	/*
	 * Some design made an incorrect assumption on endian mode of
	 * the system that it's running on. As the result, driver has to
	 * swap every frame going to and coming from the controller.
	 */
	if (id_entry->driver_data & FEC_QUIRK_SWAP_FRAME)
		swap_buffer(bufaddr, skb->len);

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	/* Save skb pointer */
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	fep->tx_skbuff[index] = skb;
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	/* Push the data cache so the CPM does not get stale memory
	 * data.
	 */
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	bdp->cbd_bufaddr = dma_map_single(&fep->pdev->dev, bufaddr,
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			FEC_ENET_TX_FRSIZE, DMA_TO_DEVICE);
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	/* Send it on its way.  Tell FEC it's ready, interrupt when done,
	 * it's the last BD of the frame, and to put the CRC on the end.
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	 */
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	status |= (BD_ENET_TX_READY | BD_ENET_TX_INTR
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			| BD_ENET_TX_LAST | BD_ENET_TX_TC);
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	bdp->cbd_sc = status;
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	if (fep->bufdesc_ex) {

		struct bufdesc_ex *ebdp = (struct bufdesc_ex *)bdp;
		ebdp->cbd_bdu = 0;
		if (unlikely(skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP &&
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			fep->hwts_tx_en)) {
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			ebdp->cbd_esc = (BD_ENET_TX_TS | BD_ENET_TX_INT);
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			skb_shinfo(skb)->tx_flags |= SKBTX_IN_PROGRESS;
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		} else {
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			ebdp->cbd_esc = BD_ENET_TX_INT;
		}
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	}
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	/* If this was the last BD in the ring, start at the beginning again. */
	if (status & BD_ENET_TX_WRAP)
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		bdp = fep->tx_bd_base;
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	else
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		bdp = fec_enet_get_nextdesc(bdp, fep->bufdesc_ex);
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	fep->cur_tx = bdp;

	if (fep->cur_tx == fep->dirty_tx)
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		netif_stop_queue(ndev);
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	/* Trigger transmission start */
	writel(0, fep->hwp + FEC_X_DES_ACTIVE);
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	skb_tx_timestamp(skb);

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	return NETDEV_TX_OK;
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}

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/* Init RX & TX buffer descriptors
 */
static void fec_enet_bd_init(struct net_device *dev)
{
	struct fec_enet_private *fep = netdev_priv(dev);
	struct bufdesc *bdp;
	unsigned int i;

	/* Initialize the receive buffer descriptors. */
	bdp = fep->rx_bd_base;
	for (i = 0; i < RX_RING_SIZE; i++) {

		/* Initialize the BD for every fragment in the page. */
		if (bdp->cbd_bufaddr)
			bdp->cbd_sc = BD_ENET_RX_EMPTY;
		else
			bdp->cbd_sc = 0;
		bdp = fec_enet_get_nextdesc(bdp, fep->bufdesc_ex);
	}

	/* Set the last buffer to wrap */
	bdp = fec_enet_get_prevdesc(bdp, fep->bufdesc_ex);
	bdp->cbd_sc |= BD_SC_WRAP;

	fep->cur_rx = fep->rx_bd_base;

	/* ...and the same for transmit */
	bdp = fep->tx_bd_base;
	fep->cur_tx = bdp;
	for (i = 0; i < TX_RING_SIZE; i++) {

		/* Initialize the BD for every fragment in the page. */
		bdp->cbd_sc = 0;
		if (bdp->cbd_bufaddr && fep->tx_skbuff[i]) {
			dev_kfree_skb_any(fep->tx_skbuff[i]);
			fep->tx_skbuff[i] = NULL;
		}
		bdp->cbd_bufaddr = 0;
		bdp = fec_enet_get_nextdesc(bdp, fep->bufdesc_ex);
	}

	/* Set the last buffer to wrap */
	bdp = fec_enet_get_prevdesc(bdp, fep->bufdesc_ex);
	bdp->cbd_sc |= BD_SC_WRAP;
	fep->dirty_tx = bdp;
}

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/* This function is called to start or restart the FEC during a link
 * change.  This only happens when switching between half and full
 * duplex.
 */
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static void
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fec_restart(struct net_device *ndev, int duplex)
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{
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	struct fec_enet_private *fep = netdev_priv(ndev);
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	const struct platform_device_id *id_entry =
				platform_get_device_id(fep->pdev);
	int i;
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	u32 temp_mac[2];
	u32 rcntl = OPT_FRAME_SIZE | 0x04;
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	u32 ecntl = 0x2; /* ETHEREN */
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	/* Whack a reset.  We should wait for this. */
	writel(1, fep->hwp + FEC_ECNTRL);
	udelay(10);
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	/*
	 * enet-mac reset will reset mac address registers too,
	 * so need to reconfigure it.
	 */
	if (id_entry->driver_data & FEC_QUIRK_ENET_MAC) {
		memcpy(&temp_mac, ndev->dev_addr, ETH_ALEN);
		writel(cpu_to_be32(temp_mac[0]), fep->hwp + FEC_ADDR_LOW);
		writel(cpu_to_be32(temp_mac[1]), fep->hwp + FEC_ADDR_HIGH);
	}
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	/* Clear any outstanding interrupt. */
	writel(0xffc00000, fep->hwp + FEC_IEVENT);
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	/* Reset all multicast.	*/
	writel(0, fep->hwp + FEC_GRP_HASH_TABLE_HIGH);
	writel(0, fep->hwp + FEC_GRP_HASH_TABLE_LOW);
#ifndef CONFIG_M5272
	writel(0, fep->hwp + FEC_HASH_TABLE_HIGH);
	writel(0, fep->hwp + FEC_HASH_TABLE_LOW);
#endif
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	/* Set maximum receive buffer size. */
	writel(PKT_MAXBLR_SIZE, fep->hwp + FEC_R_BUFF_SIZE);
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	fec_enet_bd_init(ndev);

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	/* Set receive and transmit descriptor base. */
	writel(fep->bd_dma, fep->hwp + FEC_R_DES_START);
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	if (fep->bufdesc_ex)
		writel((unsigned long)fep->bd_dma + sizeof(struct bufdesc_ex)
			* RX_RING_SIZE, fep->hwp + FEC_X_DES_START);
	else
		writel((unsigned long)fep->bd_dma + sizeof(struct bufdesc)
			* RX_RING_SIZE,	fep->hwp + FEC_X_DES_START);
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	for (i = 0; i <= TX_RING_MOD_MASK; i++) {
		if (fep->tx_skbuff[i]) {
			dev_kfree_skb_any(fep->tx_skbuff[i]);
			fep->tx_skbuff[i] = NULL;
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		}
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	}
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	/* Enable MII mode */
	if (duplex) {
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		/* FD enable */
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		writel(0x04, fep->hwp + FEC_X_CNTRL);
	} else {
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		/* No Rcv on Xmit */
		rcntl |= 0x02;
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		writel(0x0, fep->hwp + FEC_X_CNTRL);
	}
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	fep->full_duplex = duplex;

	/* Set MII speed */
	writel(fep->phy_speed, fep->hwp + FEC_MII_SPEED);

	/*
	 * The phy interface and speed need to get configured
	 * differently on enet-mac.
	 */
	if (id_entry->driver_data & FEC_QUIRK_ENET_MAC) {
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		/* Enable flow control and length check */
		rcntl |= 0x40000000 | 0x00000020;
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		/* RGMII, RMII or MII */
		if (fep->phy_interface == PHY_INTERFACE_MODE_RGMII)
			rcntl |= (1 << 6);
		else if (fep->phy_interface == PHY_INTERFACE_MODE_RMII)
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			rcntl |= (1 << 8);
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		else
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			rcntl &= ~(1 << 8);
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		/* 1G, 100M or 10M */
		if (fep->phy_dev) {
			if (fep->phy_dev->speed == SPEED_1000)
				ecntl |= (1 << 5);
			else if (fep->phy_dev->speed == SPEED_100)
				rcntl &= ~(1 << 9);
			else
				rcntl |= (1 << 9);
		}
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	} else {
#ifdef FEC_MIIGSK_ENR
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		if (id_entry->driver_data & FEC_QUIRK_USE_GASKET) {
504
			u32 cfgr;
505 506 507 508 509 510 511 512
			/* disable the gasket and wait */
			writel(0, fep->hwp + FEC_MIIGSK_ENR);
			while (readl(fep->hwp + FEC_MIIGSK_ENR) & 4)
				udelay(1);

			/*
			 * configure the gasket:
			 *   RMII, 50 MHz, no loopback, no echo
513
			 *   MII, 25 MHz, no loopback, no echo
514
			 */
515 516 517 518 519
			cfgr = (fep->phy_interface == PHY_INTERFACE_MODE_RMII)
				? BM_MIIGSK_CFGR_RMII : BM_MIIGSK_CFGR_MII;
			if (fep->phy_dev && fep->phy_dev->speed == SPEED_10)
				cfgr |= BM_MIIGSK_CFGR_FRCONT_10M;
			writel(cfgr, fep->hwp + FEC_MIIGSK_CFGR);
520 521 522

			/* re-enable the gasket */
			writel(2, fep->hwp + FEC_MIIGSK_ENR);
523
		}
524 525
#endif
	}
526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544

	/* enable pause frame*/
	if ((fep->pause_flag & FEC_PAUSE_FLAG_ENABLE) ||
	    ((fep->pause_flag & FEC_PAUSE_FLAG_AUTONEG) &&
	     fep->phy_dev && fep->phy_dev->pause)) {
		rcntl |= FEC_ENET_FCE;

		/* set FIFO thresh hold parameter to reduce overrun */
		writel(FEC_ENET_RSEM_V, fep->hwp + FEC_R_FIFO_RSEM);
		writel(FEC_ENET_RSFL_V, fep->hwp + FEC_R_FIFO_RSFL);
		writel(FEC_ENET_RAEM_V, fep->hwp + FEC_R_FIFO_RAEM);
		writel(FEC_ENET_RAFL_V, fep->hwp + FEC_R_FIFO_RAFL);

		/* OPD */
		writel(FEC_ENET_OPD_V, fep->hwp + FEC_OPD);
	} else {
		rcntl &= ~FEC_ENET_FCE;
	}

545
	writel(rcntl, fep->hwp + FEC_R_CNTRL);
546

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	if (id_entry->driver_data & FEC_QUIRK_ENET_MAC) {
		/* enable ENET endian swap */
		ecntl |= (1 << 8);
		/* enable ENET store and forward mode */
		writel(1 << 8, fep->hwp + FEC_X_WMRK);
	}

554 555
	if (fep->bufdesc_ex)
		ecntl |= (1 << 4);
556

557
	/* And last, enable the transmit and receive processing */
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	writel(ecntl, fep->hwp + FEC_ECNTRL);
559 560
	writel(0, fep->hwp + FEC_R_DES_ACTIVE);

561 562 563
	if (fep->bufdesc_ex)
		fec_ptp_start_cyclecounter(ndev);

564 565 566 567 568 569 570 571
	/* Enable interrupts we wish to service */
	writel(FEC_DEFAULT_IMASK, fep->hwp + FEC_IMASK);
}

static void
fec_stop(struct net_device *ndev)
{
	struct fec_enet_private *fep = netdev_priv(ndev);
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	const struct platform_device_id *id_entry =
				platform_get_device_id(fep->pdev);
574
	u32 rmii_mode = readl(fep->hwp + FEC_R_CNTRL) & (1 << 8);
575 576 577 578 579 580 581 582 583 584 585 586 587 588

	/* We cannot expect a graceful transmit stop without link !!! */
	if (fep->link) {
		writel(1, fep->hwp + FEC_X_CNTRL); /* Graceful transmit stop */
		udelay(10);
		if (!(readl(fep->hwp + FEC_IEVENT) & FEC_ENET_GRA))
			printk("fec_stop : Graceful transmit stop did not complete !\n");
	}

	/* Whack a reset.  We should wait for this. */
	writel(1, fep->hwp + FEC_ECNTRL);
	udelay(10);
	writel(fep->phy_speed, fep->hwp + FEC_MII_SPEED);
	writel(FEC_DEFAULT_IMASK, fep->hwp + FEC_IMASK);
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	/* We have to keep ENET enabled to have MII interrupt stay working */
591
	if (id_entry->driver_data & FEC_QUIRK_ENET_MAC) {
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		writel(2, fep->hwp + FEC_ECNTRL);
593 594
		writel(rmii_mode, fep->hwp + FEC_R_CNTRL);
	}
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}


598 599 600 601 602 603 604 605 606 607 608
static void
fec_timeout(struct net_device *ndev)
{
	struct fec_enet_private *fep = netdev_priv(ndev);

	ndev->stats.tx_errors++;

	fec_restart(ndev, fep->full_duplex);
	netif_wake_queue(ndev);
}

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static void
610
fec_enet_tx(struct net_device *ndev)
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{
	struct	fec_enet_private *fep;
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613
	struct bufdesc *bdp;
614
	unsigned short status;
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615
	struct	sk_buff	*skb;
616
	int	index = 0;
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617

618
	fep = netdev_priv(ndev);
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	bdp = fep->dirty_tx;

621 622 623 624 625 626
	/* get next bdp of dirty_tx */
	if (bdp->cbd_sc & BD_ENET_TX_WRAP)
		bdp = fep->tx_bd_base;
	else
		bdp = fec_enet_get_nextdesc(bdp, fep->bufdesc_ex);

627
	while (((status = bdp->cbd_sc) & BD_ENET_TX_READY) == 0) {
628 629 630

		/* current queue is empty */
		if (bdp == fep->cur_tx)
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631 632
			break;

633 634 635 636 637 638
		if (fep->bufdesc_ex)
			index = (struct bufdesc_ex *)bdp -
				(struct bufdesc_ex *)fep->tx_bd_base;
		else
			index = bdp - fep->tx_bd_base;

639 640
		dma_unmap_single(&fep->pdev->dev, bdp->cbd_bufaddr,
				FEC_ENET_TX_FRSIZE, DMA_TO_DEVICE);
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641
		bdp->cbd_bufaddr = 0;
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642

643 644
		skb = fep->tx_skbuff[index];

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645
		/* Check for errors. */
646
		if (status & (BD_ENET_TX_HB | BD_ENET_TX_LC |
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647 648
				   BD_ENET_TX_RL | BD_ENET_TX_UN |
				   BD_ENET_TX_CSL)) {
649
			ndev->stats.tx_errors++;
650
			if (status & BD_ENET_TX_HB)  /* No heartbeat */
651
				ndev->stats.tx_heartbeat_errors++;
652
			if (status & BD_ENET_TX_LC)  /* Late collision */
653
				ndev->stats.tx_window_errors++;
654
			if (status & BD_ENET_TX_RL)  /* Retrans limit */
655
				ndev->stats.tx_aborted_errors++;
656
			if (status & BD_ENET_TX_UN)  /* Underrun */
657
				ndev->stats.tx_fifo_errors++;
658
			if (status & BD_ENET_TX_CSL) /* Carrier lost */
659
				ndev->stats.tx_carrier_errors++;
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660
		} else {
661
			ndev->stats.tx_packets++;
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		}

664 665
		if (unlikely(skb_shinfo(skb)->tx_flags & SKBTX_IN_PROGRESS) &&
			fep->bufdesc_ex) {
666 667
			struct skb_shared_hwtstamps shhwtstamps;
			unsigned long flags;
668
			struct bufdesc_ex *ebdp = (struct bufdesc_ex *)bdp;
669 670 671 672

			memset(&shhwtstamps, 0, sizeof(shhwtstamps));
			spin_lock_irqsave(&fep->tmreg_lock, flags);
			shhwtstamps.hwtstamp = ns_to_ktime(
673
				timecounter_cyc2time(&fep->tc, ebdp->ts));
674 675 676
			spin_unlock_irqrestore(&fep->tmreg_lock, flags);
			skb_tstamp_tx(skb, &shhwtstamps);
		}
677

678
		if (status & BD_ENET_TX_READY)
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679
			printk("HEY! Enet xmit interrupt and TX_READY.\n");
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680

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681 682 683
		/* Deferred means some collisions occurred during transmit,
		 * but we eventually sent the packet OK.
		 */
684
		if (status & BD_ENET_TX_DEF)
685
			ndev->stats.collisions++;
686

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687
		/* Free the sk buffer associated with this last transmit */
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688
		dev_kfree_skb_any(skb);
689 690 691
		fep->tx_skbuff[index] = NULL;

		fep->dirty_tx = bdp;
692

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693
		/* Update pointer to next buffer descriptor to be transmitted */
694
		if (status & BD_ENET_TX_WRAP)
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695 696
			bdp = fep->tx_bd_base;
		else
697
			bdp = fec_enet_get_nextdesc(bdp, fep->bufdesc_ex);
698

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699
		/* Since we have freed up a buffer, the ring is no longer full
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700
		 */
701
		if (fep->dirty_tx != fep->cur_tx) {
702 703
			if (netif_queue_stopped(ndev))
				netif_wake_queue(ndev);
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		}
	}
706
	return;
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}


/* During a receive, the cur_rx points to the current incoming buffer.
 * When we update through the ring, if the next incoming buffer has
 * not been given to the system, we just set the empty indicator,
 * effectively tossing the packet.
 */
715 716
static int
fec_enet_rx(struct net_device *ndev, int budget)
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{
718
	struct fec_enet_private *fep = netdev_priv(ndev);
719 720
	const struct platform_device_id *id_entry =
				platform_get_device_id(fep->pdev);
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	struct bufdesc *bdp;
722
	unsigned short status;
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	struct	sk_buff	*skb;
	ushort	pkt_len;
	__u8 *data;
726
	int	pkt_received = 0;
727

728 729
#ifdef CONFIG_M532x
	flush_cache_all();
730
#endif
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731 732 733 734 735 736

	/* First, grab all of the stats for the incoming packet.
	 * These get messed up if we get called due to a busy condition.
	 */
	bdp = fep->cur_rx;

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737
	while (!((status = bdp->cbd_sc) & BD_ENET_RX_EMPTY)) {
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739 740 741 742
		if (pkt_received >= budget)
			break;
		pkt_received++;

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743 744 745 746 747
		/* Since we have allocated space to hold a complete frame,
		 * the last indicator should be set.
		 */
		if ((status & BD_ENET_RX_LAST) == 0)
			printk("FEC ENET: rcv is not +last\n");
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748

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749 750
		if (!fep->opened)
			goto rx_processing_done;
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751

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		/* Check for errors. */
		if (status & (BD_ENET_RX_LG | BD_ENET_RX_SH | BD_ENET_RX_NO |
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754
			   BD_ENET_RX_CR | BD_ENET_RX_OV)) {
755
			ndev->stats.rx_errors++;
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756 757
			if (status & (BD_ENET_RX_LG | BD_ENET_RX_SH)) {
				/* Frame too long or too short. */
758
				ndev->stats.rx_length_errors++;
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759 760
			}
			if (status & BD_ENET_RX_NO)	/* Frame alignment */
761
				ndev->stats.rx_frame_errors++;
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762
			if (status & BD_ENET_RX_CR)	/* CRC Error */
763
				ndev->stats.rx_crc_errors++;
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764
			if (status & BD_ENET_RX_OV)	/* FIFO overrun */
765
				ndev->stats.rx_fifo_errors++;
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766 767
		}

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768 769 770 771 772
		/* Report late collisions as a frame error.
		 * On this error, the BD is closed, but we don't know what we
		 * have in the buffer.  So, just drop this frame on the floor.
		 */
		if (status & BD_ENET_RX_CL) {
773 774
			ndev->stats.rx_errors++;
			ndev->stats.rx_frame_errors++;
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775 776
			goto rx_processing_done;
		}
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778
		/* Process the incoming frame. */
779
		ndev->stats.rx_packets++;
S
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780
		pkt_len = bdp->cbd_datlen;
781
		ndev->stats.rx_bytes += pkt_len;
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782
		data = (__u8*)__va(bdp->cbd_bufaddr);
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783

784 785
		dma_unmap_single(&fep->pdev->dev, bdp->cbd_bufaddr,
				FEC_ENET_TX_FRSIZE, DMA_FROM_DEVICE);
786

787 788 789
		if (id_entry->driver_data & FEC_QUIRK_SWAP_FRAME)
			swap_buffer(data, pkt_len);

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790 791 792 793 794
		/* This does 16 byte alignment, exactly what we need.
		 * The packet length includes FCS, but we don't want to
		 * include that when passing upstream as it messes up
		 * bridging applications.
		 */
795
		skb = netdev_alloc_skb(ndev, pkt_len - 4 + NET_IP_ALIGN);
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796

S
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797
		if (unlikely(!skb)) {
798
			ndev->stats.rx_dropped++;
S
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799
		} else {
S
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800
			skb_reserve(skb, NET_IP_ALIGN);
S
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801 802
			skb_put(skb, pkt_len - 4);	/* Make room */
			skb_copy_to_linear_data(skb, data, pkt_len - 4);
803
			skb->protocol = eth_type_trans(skb, ndev);
804

805
			/* Get receive timestamp from the skb */
806
			if (fep->hwts_rx_en && fep->bufdesc_ex) {
807 808 809
				struct skb_shared_hwtstamps *shhwtstamps =
							    skb_hwtstamps(skb);
				unsigned long flags;
810 811
				struct bufdesc_ex *ebdp =
					(struct bufdesc_ex *)bdp;
812 813 814 815 816

				memset(shhwtstamps, 0, sizeof(*shhwtstamps));

				spin_lock_irqsave(&fep->tmreg_lock, flags);
				shhwtstamps->hwtstamp = ns_to_ktime(
817
				    timecounter_cyc2time(&fep->tc, ebdp->ts));
818 819
				spin_unlock_irqrestore(&fep->tmreg_lock, flags);
			}
820

821
			if (!skb_defer_rx_timestamp(skb))
822
				napi_gro_receive(&fep->napi, skb);
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823
		}
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824

825 826
		bdp->cbd_bufaddr = dma_map_single(&fep->pdev->dev, data,
				FEC_ENET_TX_FRSIZE, DMA_FROM_DEVICE);
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827 828 829
rx_processing_done:
		/* Clear the status flags for this buffer */
		status &= ~BD_ENET_RX_STATS;
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831 832 833
		/* Mark the buffer empty */
		status |= BD_ENET_RX_EMPTY;
		bdp->cbd_sc = status;
834

835 836 837 838 839 840 841
		if (fep->bufdesc_ex) {
			struct bufdesc_ex *ebdp = (struct bufdesc_ex *)bdp;

			ebdp->cbd_esc = BD_ENET_RX_INT;
			ebdp->cbd_prot = 0;
			ebdp->cbd_bdu = 0;
		}
842

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843 844 845 846
		/* Update BD pointer to next entry */
		if (status & BD_ENET_RX_WRAP)
			bdp = fep->rx_bd_base;
		else
847
			bdp = fec_enet_get_nextdesc(bdp, fep->bufdesc_ex);
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848 849 850 851 852 853
		/* Doing this here will keep the FEC running while we process
		 * incoming frames.  On a heavily loaded network, we should be
		 * able to keep up at the expense of system resources.
		 */
		writel(0, fep->hwp + FEC_R_DES_ACTIVE);
	}
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854
	fep->cur_rx = bdp;
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855

856
	return pkt_received;
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857 858
}

859 860 861 862 863 864 865 866 867 868 869 870
static irqreturn_t
fec_enet_interrupt(int irq, void *dev_id)
{
	struct net_device *ndev = dev_id;
	struct fec_enet_private *fep = netdev_priv(ndev);
	uint int_events;
	irqreturn_t ret = IRQ_NONE;

	do {
		int_events = readl(fep->hwp + FEC_IEVENT);
		writel(int_events, fep->hwp + FEC_IEVENT);

871
		if (int_events & (FEC_ENET_RXF | FEC_ENET_TXF)) {
872
			ret = IRQ_HANDLED;
873 874 875 876 877 878 879

			/* Disable the RX interrupt */
			if (napi_schedule_prep(&fep->napi)) {
				writel(FEC_RX_DISABLED_IMASK,
					fep->hwp + FEC_IMASK);
				__napi_schedule(&fep->napi);
			}
880 881 882 883 884 885 886 887 888 889 890
		}

		if (int_events & FEC_ENET_MII) {
			ret = IRQ_HANDLED;
			complete(&fep->mdio_done);
		}
	} while (int_events);

	return ret;
}

891 892 893 894 895
static int fec_enet_rx_napi(struct napi_struct *napi, int budget)
{
	struct net_device *ndev = napi->dev;
	int pkts = fec_enet_rx(ndev, budget);
	struct fec_enet_private *fep = netdev_priv(ndev);
896

897 898
	fec_enet_tx(ndev);

899 900 901 902 903 904
	if (pkts < budget) {
		napi_complete(napi);
		writel(FEC_DEFAULT_IMASK, fep->hwp + FEC_IMASK);
	}
	return pkts;
}
905

906
/* ------------------------------------------------------------------------- */
907
static void fec_get_mac(struct net_device *ndev)
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908
{
909
	struct fec_enet_private *fep = netdev_priv(ndev);
910
	struct fec_platform_data *pdata = fep->pdev->dev.platform_data;
911
	unsigned char *iap, tmpaddr[ETH_ALEN];
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913 914 915 916 917 918 919 920
	/*
	 * try to get mac address in following order:
	 *
	 * 1) module parameter via kernel command line in form
	 *    fec.macaddr=0x00,0x04,0x9f,0x01,0x30,0xe0
	 */
	iap = macaddr;

921 922 923 924 925 926 927 928 929 930 931 932
	/*
	 * 2) from device tree data
	 */
	if (!is_valid_ether_addr(iap)) {
		struct device_node *np = fep->pdev->dev.of_node;
		if (np) {
			const char *mac = of_get_mac_address(np);
			if (mac)
				iap = (unsigned char *) mac;
		}
	}

933
	/*
934
	 * 3) from flash or fuse (via platform data)
935 936 937 938 939 940 941
	 */
	if (!is_valid_ether_addr(iap)) {
#ifdef CONFIG_M5272
		if (FEC_FLASHMAC)
			iap = (unsigned char *)FEC_FLASHMAC;
#else
		if (pdata)
942
			iap = (unsigned char *)&pdata->mac;
943 944 945 946
#endif
	}

	/*
947
	 * 4) FEC mac registers set by bootloader
948 949 950 951 952 953
	 */
	if (!is_valid_ether_addr(iap)) {
		*((unsigned long *) &tmpaddr[0]) =
			be32_to_cpu(readl(fep->hwp + FEC_ADDR_LOW));
		*((unsigned short *) &tmpaddr[4]) =
			be16_to_cpu(readl(fep->hwp + FEC_ADDR_HIGH) >> 16);
954
		iap = &tmpaddr[0];
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	}

957
	memcpy(ndev->dev_addr, iap, ETH_ALEN);
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959 960
	/* Adjust MAC if using macaddr */
	if (iap == macaddr)
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		 ndev->dev_addr[ETH_ALEN-1] = macaddr[ETH_ALEN-1] + fep->dev_id;
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962 963
}

964
/* ------------------------------------------------------------------------- */
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965

966 967 968
/*
 * Phy section
 */
969
static void fec_enet_adjust_link(struct net_device *ndev)
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970
{
971
	struct fec_enet_private *fep = netdev_priv(ndev);
972 973
	struct phy_device *phy_dev = fep->phy_dev;
	unsigned long flags;
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975
	int status_change = 0;
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976

977
	spin_lock_irqsave(&fep->hw_lock, flags);
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979 980 981 982 983
	/* Prevent a state halted on mii error */
	if (fep->mii_timeout && phy_dev->state == PHY_HALTED) {
		phy_dev->state = PHY_RESUMING;
		goto spin_unlock;
	}
L
Linus Torvalds 已提交
984

985
	if (phy_dev->link) {
986
		if (!fep->link) {
987
			fep->link = phy_dev->link;
988 989
			status_change = 1;
		}
L
Linus Torvalds 已提交
990

991 992 993 994 995 996 997 998 999 1000
		if (fep->full_duplex != phy_dev->duplex)
			status_change = 1;

		if (phy_dev->speed != fep->speed) {
			fep->speed = phy_dev->speed;
			status_change = 1;
		}

		/* if any of the above changed restart the FEC */
		if (status_change)
1001
			fec_restart(ndev, phy_dev->duplex);
1002 1003
	} else {
		if (fep->link) {
1004
			fec_stop(ndev);
1005 1006
			status_change = 1;
		}
L
Linus Torvalds 已提交
1007
	}
1008

1009 1010
spin_unlock:
	spin_unlock_irqrestore(&fep->hw_lock, flags);
L
Linus Torvalds 已提交
1011

1012 1013 1014
	if (status_change)
		phy_print_status(phy_dev);
}
L
Linus Torvalds 已提交
1015

1016
static int fec_enet_mdio_read(struct mii_bus *bus, int mii_id, int regnum)
L
Linus Torvalds 已提交
1017
{
1018
	struct fec_enet_private *fep = bus->priv;
1019
	unsigned long time_left;
L
Linus Torvalds 已提交
1020

1021
	fep->mii_timeout = 0;
1022
	init_completion(&fep->mdio_done);
1023 1024 1025 1026 1027 1028 1029

	/* start a read op */
	writel(FEC_MMFR_ST | FEC_MMFR_OP_READ |
		FEC_MMFR_PA(mii_id) | FEC_MMFR_RA(regnum) |
		FEC_MMFR_TA, fep->hwp + FEC_MII_DATA);

	/* wait for end of transfer */
1030 1031 1032 1033 1034 1035
	time_left = wait_for_completion_timeout(&fep->mdio_done,
			usecs_to_jiffies(FEC_MII_TIMEOUT));
	if (time_left == 0) {
		fep->mii_timeout = 1;
		printk(KERN_ERR "FEC: MDIO read timeout\n");
		return -ETIMEDOUT;
L
Linus Torvalds 已提交
1036 1037
	}

1038 1039
	/* return value */
	return FEC_MMFR_DATA(readl(fep->hwp + FEC_MII_DATA));
1040
}
1041

1042 1043
static int fec_enet_mdio_write(struct mii_bus *bus, int mii_id, int regnum,
			   u16 value)
L
Linus Torvalds 已提交
1044
{
1045
	struct fec_enet_private *fep = bus->priv;
1046
	unsigned long time_left;
L
Linus Torvalds 已提交
1047

1048
	fep->mii_timeout = 0;
1049
	init_completion(&fep->mdio_done);
L
Linus Torvalds 已提交
1050

1051 1052
	/* start a write op */
	writel(FEC_MMFR_ST | FEC_MMFR_OP_WRITE |
1053 1054 1055 1056 1057
		FEC_MMFR_PA(mii_id) | FEC_MMFR_RA(regnum) |
		FEC_MMFR_TA | FEC_MMFR_DATA(value),
		fep->hwp + FEC_MII_DATA);

	/* wait for end of transfer */
1058 1059 1060 1061 1062 1063
	time_left = wait_for_completion_timeout(&fep->mdio_done,
			usecs_to_jiffies(FEC_MII_TIMEOUT));
	if (time_left == 0) {
		fep->mii_timeout = 1;
		printk(KERN_ERR "FEC: MDIO write timeout\n");
		return -ETIMEDOUT;
1064
	}
L
Linus Torvalds 已提交
1065

1066 1067
	return 0;
}
L
Linus Torvalds 已提交
1068

1069
static int fec_enet_mdio_reset(struct mii_bus *bus)
L
Linus Torvalds 已提交
1070
{
1071
	return 0;
L
Linus Torvalds 已提交
1072 1073
}

1074
static int fec_enet_mii_probe(struct net_device *ndev)
1075
{
1076
	struct fec_enet_private *fep = netdev_priv(ndev);
S
Shawn Guo 已提交
1077 1078
	const struct platform_device_id *id_entry =
				platform_get_device_id(fep->pdev);
1079
	struct phy_device *phy_dev = NULL;
1080 1081 1082
	char mdio_bus_id[MII_BUS_ID_SIZE];
	char phy_name[MII_BUS_ID_SIZE + 3];
	int phy_id;
S
Shawn Guo 已提交
1083
	int dev_id = fep->dev_id;
1084

1085 1086
	fep->phy_dev = NULL;

1087 1088 1089 1090 1091 1092 1093 1094
	/* check for attached phy */
	for (phy_id = 0; (phy_id < PHY_MAX_ADDR); phy_id++) {
		if ((fep->mii_bus->phy_mask & (1 << phy_id)))
			continue;
		if (fep->mii_bus->phy_map[phy_id] == NULL)
			continue;
		if (fep->mii_bus->phy_map[phy_id]->phy_id == 0)
			continue;
1095 1096
		if (dev_id--)
			continue;
1097 1098
		strncpy(mdio_bus_id, fep->mii_bus->id, MII_BUS_ID_SIZE);
		break;
1099
	}
L
Linus Torvalds 已提交
1100

1101
	if (phy_id >= PHY_MAX_ADDR) {
L
Lothar Waßmann 已提交
1102 1103 1104
		printk(KERN_INFO
			"%s: no PHY, assuming direct connection to switch\n",
			ndev->name);
1105
		strncpy(mdio_bus_id, "fixed-0", MII_BUS_ID_SIZE);
1106 1107 1108
		phy_id = 0;
	}

1109
	snprintf(phy_name, sizeof(phy_name), PHY_ID_FMT, mdio_bus_id, phy_id);
1110
	phy_dev = phy_connect(ndev, phy_name, &fec_enet_adjust_link,
S
Shawn Guo 已提交
1111
			      fep->phy_interface);
1112
	if (IS_ERR(phy_dev)) {
1113
		printk(KERN_ERR "%s: could not attach to PHY\n", ndev->name);
1114
		return PTR_ERR(phy_dev);
1115
	}
L
Linus Torvalds 已提交
1116

1117
	/* mask with MAC supported features */
1118
	if (id_entry->driver_data & FEC_QUIRK_HAS_GBIT) {
S
Shawn Guo 已提交
1119
		phy_dev->supported &= PHY_GBIT_FEATURES;
1120 1121
		phy_dev->supported |= SUPPORTED_Pause;
	}
S
Shawn Guo 已提交
1122 1123 1124
	else
		phy_dev->supported &= PHY_BASIC_FEATURES;

1125
	phy_dev->advertising = phy_dev->supported;
L
Linus Torvalds 已提交
1126

1127 1128 1129
	fep->phy_dev = phy_dev;
	fep->link = 0;
	fep->full_duplex = 0;
L
Linus Torvalds 已提交
1130

L
Lothar Waßmann 已提交
1131 1132 1133
	printk(KERN_INFO
		"%s: Freescale FEC PHY driver [%s] (mii_bus:phy_addr=%s, irq=%d)\n",
		ndev->name,
1134 1135 1136
		fep->phy_dev->drv->name, dev_name(&fep->phy_dev->dev),
		fep->phy_dev->irq);

1137
	return 0;
L
Linus Torvalds 已提交
1138 1139
}

1140
static int fec_enet_mii_init(struct platform_device *pdev)
1141
{
1142
	static struct mii_bus *fec0_mii_bus;
1143 1144
	struct net_device *ndev = platform_get_drvdata(pdev);
	struct fec_enet_private *fep = netdev_priv(ndev);
1145 1146
	const struct platform_device_id *id_entry =
				platform_get_device_id(fep->pdev);
1147
	int err = -ENXIO, i;
1148

1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164
	/*
	 * The dual fec interfaces are not equivalent with enet-mac.
	 * Here are the differences:
	 *
	 *  - fec0 supports MII & RMII modes while fec1 only supports RMII
	 *  - fec0 acts as the 1588 time master while fec1 is slave
	 *  - external phys can only be configured by fec0
	 *
	 * That is to say fec1 can not work independently. It only works
	 * when fec0 is working. The reason behind this design is that the
	 * second interface is added primarily for Switch mode.
	 *
	 * Because of the last point above, both phys are attached on fec0
	 * mdio interface in board design, and need to be configured by
	 * fec0 mii_bus.
	 */
S
Shawn Guo 已提交
1165
	if ((id_entry->driver_data & FEC_QUIRK_ENET_MAC) && fep->dev_id > 0) {
1166
		/* fec1 uses fec0 mii_bus */
L
Lothar Waßmann 已提交
1167 1168 1169 1170 1171 1172
		if (mii_cnt && fec0_mii_bus) {
			fep->mii_bus = fec0_mii_bus;
			mii_cnt++;
			return 0;
		}
		return -ENOENT;
1173 1174
	}

1175
	fep->mii_timeout = 0;
L
Linus Torvalds 已提交
1176

1177 1178
	/*
	 * Set MII speed to 2.5 MHz (= clk_get_rate() / 2 * phy_speed)
S
Shawn Guo 已提交
1179 1180 1181 1182 1183
	 *
	 * The formula for FEC MDC is 'ref_freq / (MII_SPEED x 2)' while
	 * for ENET-MAC is 'ref_freq / ((MII_SPEED + 1) x 2)'.  The i.MX28
	 * Reference Manual has an error on this, and gets fixed on i.MX6Q
	 * document.
1184
	 */
1185
	fep->phy_speed = DIV_ROUND_UP(clk_get_rate(fep->clk_ahb), 5000000);
S
Shawn Guo 已提交
1186 1187 1188
	if (id_entry->driver_data & FEC_QUIRK_ENET_MAC)
		fep->phy_speed--;
	fep->phy_speed <<= 1;
1189
	writel(fep->phy_speed, fep->hwp + FEC_MII_SPEED);
L
Linus Torvalds 已提交
1190

1191 1192 1193 1194
	fep->mii_bus = mdiobus_alloc();
	if (fep->mii_bus == NULL) {
		err = -ENOMEM;
		goto err_out;
L
Linus Torvalds 已提交
1195 1196
	}

1197 1198 1199 1200
	fep->mii_bus->name = "fec_enet_mii_bus";
	fep->mii_bus->read = fec_enet_mdio_read;
	fep->mii_bus->write = fec_enet_mdio_write;
	fep->mii_bus->reset = fec_enet_mdio_reset;
1201 1202
	snprintf(fep->mii_bus->id, MII_BUS_ID_SIZE, "%s-%x",
		pdev->name, fep->dev_id + 1);
1203 1204 1205 1206 1207 1208 1209
	fep->mii_bus->priv = fep;
	fep->mii_bus->parent = &pdev->dev;

	fep->mii_bus->irq = kmalloc(sizeof(int) * PHY_MAX_ADDR, GFP_KERNEL);
	if (!fep->mii_bus->irq) {
		err = -ENOMEM;
		goto err_out_free_mdiobus;
L
Linus Torvalds 已提交
1210 1211
	}

1212 1213
	for (i = 0; i < PHY_MAX_ADDR; i++)
		fep->mii_bus->irq[i] = PHY_POLL;
L
Linus Torvalds 已提交
1214

1215 1216
	if (mdiobus_register(fep->mii_bus))
		goto err_out_free_mdio_irq;
L
Linus Torvalds 已提交
1217

L
Lothar Waßmann 已提交
1218 1219
	mii_cnt++;

1220 1221 1222 1223
	/* save fec0 mii_bus */
	if (id_entry->driver_data & FEC_QUIRK_ENET_MAC)
		fec0_mii_bus = fep->mii_bus;

1224
	return 0;
L
Linus Torvalds 已提交
1225

1226 1227 1228 1229 1230 1231
err_out_free_mdio_irq:
	kfree(fep->mii_bus->irq);
err_out_free_mdiobus:
	mdiobus_free(fep->mii_bus);
err_out:
	return err;
L
Linus Torvalds 已提交
1232 1233
}

1234
static void fec_enet_mii_remove(struct fec_enet_private *fep)
L
Linus Torvalds 已提交
1235
{
L
Lothar Waßmann 已提交
1236 1237 1238 1239 1240
	if (--mii_cnt == 0) {
		mdiobus_unregister(fep->mii_bus);
		kfree(fep->mii_bus->irq);
		mdiobus_free(fep->mii_bus);
	}
L
Linus Torvalds 已提交
1241 1242
}

1243
static int fec_enet_get_settings(struct net_device *ndev,
1244
				  struct ethtool_cmd *cmd)
L
Linus Torvalds 已提交
1245
{
1246
	struct fec_enet_private *fep = netdev_priv(ndev);
1247
	struct phy_device *phydev = fep->phy_dev;
L
Linus Torvalds 已提交
1248

1249 1250
	if (!phydev)
		return -ENODEV;
L
Linus Torvalds 已提交
1251

1252
	return phy_ethtool_gset(phydev, cmd);
L
Linus Torvalds 已提交
1253 1254
}

1255
static int fec_enet_set_settings(struct net_device *ndev,
1256
				 struct ethtool_cmd *cmd)
L
Linus Torvalds 已提交
1257
{
1258
	struct fec_enet_private *fep = netdev_priv(ndev);
1259
	struct phy_device *phydev = fep->phy_dev;
L
Linus Torvalds 已提交
1260

1261 1262
	if (!phydev)
		return -ENODEV;
L
Linus Torvalds 已提交
1263

1264
	return phy_ethtool_sset(phydev, cmd);
L
Linus Torvalds 已提交
1265 1266
}

1267
static void fec_enet_get_drvinfo(struct net_device *ndev,
1268
				 struct ethtool_drvinfo *info)
L
Linus Torvalds 已提交
1269
{
1270
	struct fec_enet_private *fep = netdev_priv(ndev);
1271

1272 1273 1274 1275
	strlcpy(info->driver, fep->pdev->dev.driver->name,
		sizeof(info->driver));
	strlcpy(info->version, "Revision: 1.0", sizeof(info->version));
	strlcpy(info->bus_info, dev_name(&ndev->dev), sizeof(info->bus_info));
L
Linus Torvalds 已提交
1276 1277
}

1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306
static int fec_enet_get_ts_info(struct net_device *ndev,
				struct ethtool_ts_info *info)
{
	struct fec_enet_private *fep = netdev_priv(ndev);

	if (fep->bufdesc_ex) {

		info->so_timestamping = SOF_TIMESTAMPING_TX_SOFTWARE |
					SOF_TIMESTAMPING_RX_SOFTWARE |
					SOF_TIMESTAMPING_SOFTWARE |
					SOF_TIMESTAMPING_TX_HARDWARE |
					SOF_TIMESTAMPING_RX_HARDWARE |
					SOF_TIMESTAMPING_RAW_HARDWARE;
		if (fep->ptp_clock)
			info->phc_index = ptp_clock_index(fep->ptp_clock);
		else
			info->phc_index = -1;

		info->tx_types = (1 << HWTSTAMP_TX_OFF) |
				 (1 << HWTSTAMP_TX_ON);

		info->rx_filters = (1 << HWTSTAMP_FILTER_NONE) |
				   (1 << HWTSTAMP_FILTER_ALL);
		return 0;
	} else {
		return ethtool_op_get_ts_info(ndev, info);
	}
}

1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352
static void fec_enet_get_pauseparam(struct net_device *ndev,
				    struct ethtool_pauseparam *pause)
{
	struct fec_enet_private *fep = netdev_priv(ndev);

	pause->autoneg = (fep->pause_flag & FEC_PAUSE_FLAG_AUTONEG) != 0;
	pause->tx_pause = (fep->pause_flag & FEC_PAUSE_FLAG_ENABLE) != 0;
	pause->rx_pause = pause->tx_pause;
}

static int fec_enet_set_pauseparam(struct net_device *ndev,
				   struct ethtool_pauseparam *pause)
{
	struct fec_enet_private *fep = netdev_priv(ndev);

	if (pause->tx_pause != pause->rx_pause) {
		netdev_info(ndev,
			"hardware only support enable/disable both tx and rx");
		return -EINVAL;
	}

	fep->pause_flag = 0;

	/* tx pause must be same as rx pause */
	fep->pause_flag |= pause->rx_pause ? FEC_PAUSE_FLAG_ENABLE : 0;
	fep->pause_flag |= pause->autoneg ? FEC_PAUSE_FLAG_AUTONEG : 0;

	if (pause->rx_pause || pause->autoneg) {
		fep->phy_dev->supported |= ADVERTISED_Pause;
		fep->phy_dev->advertising |= ADVERTISED_Pause;
	} else {
		fep->phy_dev->supported &= ~ADVERTISED_Pause;
		fep->phy_dev->advertising &= ~ADVERTISED_Pause;
	}

	if (pause->autoneg) {
		if (netif_running(ndev))
			fec_stop(ndev);
		phy_start_aneg(fep->phy_dev);
	}
	if (netif_running(ndev))
		fec_restart(ndev, 0);

	return 0;
}

S
stephen hemminger 已提交
1353
static const struct ethtool_ops fec_enet_ethtool_ops = {
1354 1355
	.get_pauseparam		= fec_enet_get_pauseparam,
	.set_pauseparam		= fec_enet_set_pauseparam,
1356 1357 1358 1359
	.get_settings		= fec_enet_get_settings,
	.set_settings		= fec_enet_set_settings,
	.get_drvinfo		= fec_enet_get_drvinfo,
	.get_link		= ethtool_op_get_link,
1360
	.get_ts_info		= fec_enet_get_ts_info,
1361
};
L
Linus Torvalds 已提交
1362

1363
static int fec_enet_ioctl(struct net_device *ndev, struct ifreq *rq, int cmd)
L
Linus Torvalds 已提交
1364
{
1365
	struct fec_enet_private *fep = netdev_priv(ndev);
1366
	struct phy_device *phydev = fep->phy_dev;
L
Linus Torvalds 已提交
1367

1368
	if (!netif_running(ndev))
1369
		return -EINVAL;
L
Linus Torvalds 已提交
1370

1371 1372 1373
	if (!phydev)
		return -ENODEV;

1374
	if (cmd == SIOCSHWTSTAMP && fep->bufdesc_ex)
1375
		return fec_ptp_ioctl(ndev, rq, cmd);
1376

1377
	return phy_mii_ioctl(phydev, rq, cmd);
L
Linus Torvalds 已提交
1378 1379
}

1380
static void fec_enet_free_buffers(struct net_device *ndev)
S
Sascha Hauer 已提交
1381
{
1382
	struct fec_enet_private *fep = netdev_priv(ndev);
1383
	unsigned int i;
S
Sascha Hauer 已提交
1384 1385 1386 1387 1388 1389 1390 1391
	struct sk_buff *skb;
	struct bufdesc	*bdp;

	bdp = fep->rx_bd_base;
	for (i = 0; i < RX_RING_SIZE; i++) {
		skb = fep->rx_skbuff[i];

		if (bdp->cbd_bufaddr)
1392
			dma_unmap_single(&fep->pdev->dev, bdp->cbd_bufaddr,
S
Sascha Hauer 已提交
1393 1394 1395
					FEC_ENET_RX_FRSIZE, DMA_FROM_DEVICE);
		if (skb)
			dev_kfree_skb(skb);
1396
		bdp = fec_enet_get_nextdesc(bdp, fep->bufdesc_ex);
S
Sascha Hauer 已提交
1397 1398 1399 1400 1401 1402 1403
	}

	bdp = fep->tx_bd_base;
	for (i = 0; i < TX_RING_SIZE; i++)
		kfree(fep->tx_bounce[i]);
}

1404
static int fec_enet_alloc_buffers(struct net_device *ndev)
S
Sascha Hauer 已提交
1405
{
1406
	struct fec_enet_private *fep = netdev_priv(ndev);
1407
	unsigned int i;
S
Sascha Hauer 已提交
1408 1409 1410 1411 1412
	struct sk_buff *skb;
	struct bufdesc	*bdp;

	bdp = fep->rx_bd_base;
	for (i = 0; i < RX_RING_SIZE; i++) {
1413
		skb = netdev_alloc_skb(ndev, FEC_ENET_RX_FRSIZE);
S
Sascha Hauer 已提交
1414
		if (!skb) {
1415
			fec_enet_free_buffers(ndev);
S
Sascha Hauer 已提交
1416 1417 1418 1419
			return -ENOMEM;
		}
		fep->rx_skbuff[i] = skb;

1420
		bdp->cbd_bufaddr = dma_map_single(&fep->pdev->dev, skb->data,
S
Sascha Hauer 已提交
1421 1422
				FEC_ENET_RX_FRSIZE, DMA_FROM_DEVICE);
		bdp->cbd_sc = BD_ENET_RX_EMPTY;
1423 1424 1425 1426 1427 1428 1429

		if (fep->bufdesc_ex) {
			struct bufdesc_ex *ebdp = (struct bufdesc_ex *)bdp;
			ebdp->cbd_esc = BD_ENET_RX_INT;
		}

		bdp = fec_enet_get_nextdesc(bdp, fep->bufdesc_ex);
S
Sascha Hauer 已提交
1430 1431 1432
	}

	/* Set the last buffer to wrap. */
1433
	bdp = fec_enet_get_prevdesc(bdp, fep->bufdesc_ex);
S
Sascha Hauer 已提交
1434 1435 1436 1437 1438 1439 1440 1441
	bdp->cbd_sc |= BD_SC_WRAP;

	bdp = fep->tx_bd_base;
	for (i = 0; i < TX_RING_SIZE; i++) {
		fep->tx_bounce[i] = kmalloc(FEC_ENET_TX_FRSIZE, GFP_KERNEL);

		bdp->cbd_sc = 0;
		bdp->cbd_bufaddr = 0;
1442

1443 1444
		if (fep->bufdesc_ex) {
			struct bufdesc_ex *ebdp = (struct bufdesc_ex *)bdp;
1445
			ebdp->cbd_esc = BD_ENET_TX_INT;
1446 1447 1448
		}

		bdp = fec_enet_get_nextdesc(bdp, fep->bufdesc_ex);
S
Sascha Hauer 已提交
1449 1450 1451
	}

	/* Set the last buffer to wrap. */
1452
	bdp = fec_enet_get_prevdesc(bdp, fep->bufdesc_ex);
S
Sascha Hauer 已提交
1453 1454 1455 1456 1457
	bdp->cbd_sc |= BD_SC_WRAP;

	return 0;
}

L
Linus Torvalds 已提交
1458
static int
1459
fec_enet_open(struct net_device *ndev)
L
Linus Torvalds 已提交
1460
{
1461
	struct fec_enet_private *fep = netdev_priv(ndev);
S
Sascha Hauer 已提交
1462
	int ret;
L
Linus Torvalds 已提交
1463

1464 1465
	napi_enable(&fep->napi);

L
Linus Torvalds 已提交
1466 1467 1468 1469
	/* I should reset the ring buffers here, but I don't yet know
	 * a simple way to do that.
	 */

1470
	ret = fec_enet_alloc_buffers(ndev);
S
Sascha Hauer 已提交
1471 1472 1473
	if (ret)
		return ret;

1474
	/* Probe and connect to PHY when open the interface */
1475
	ret = fec_enet_mii_probe(ndev);
1476
	if (ret) {
1477
		fec_enet_free_buffers(ndev);
1478 1479
		return ret;
	}
1480
	phy_start(fep->phy_dev);
1481
	netif_start_queue(ndev);
L
Linus Torvalds 已提交
1482
	fep->opened = 1;
S
Sascha Hauer 已提交
1483
	return 0;
L
Linus Torvalds 已提交
1484 1485 1486
}

static int
1487
fec_enet_close(struct net_device *ndev)
L
Linus Torvalds 已提交
1488
{
1489
	struct fec_enet_private *fep = netdev_priv(ndev);
L
Linus Torvalds 已提交
1490

S
Sascha Hauer 已提交
1491
	/* Don't know what to do yet. */
1492
	napi_disable(&fep->napi);
L
Linus Torvalds 已提交
1493
	fep->opened = 0;
1494 1495
	netif_stop_queue(ndev);
	fec_stop(ndev);
L
Linus Torvalds 已提交
1496

1497 1498
	if (fep->phy_dev) {
		phy_stop(fep->phy_dev);
1499
		phy_disconnect(fep->phy_dev);
1500
	}
1501

1502
	fec_enet_free_buffers(ndev);
S
Sascha Hauer 已提交
1503

L
Linus Torvalds 已提交
1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519
	return 0;
}

/* Set or clear the multicast filter for this adaptor.
 * Skeleton taken from sunlance driver.
 * The CPM Ethernet implementation allows Multicast as well as individual
 * MAC address filtering.  Some of the drivers check to make sure it is
 * a group multicast address, and discard those that are not.  I guess I
 * will do the same for now, but just remove the test if you want
 * individual filtering as well (do the upper net layers want or support
 * this kind of feature?).
 */

#define HASH_BITS	6		/* #bits in hash */
#define CRC32_POLY	0xEDB88320

1520
static void set_multicast_list(struct net_device *ndev)
L
Linus Torvalds 已提交
1521
{
1522
	struct fec_enet_private *fep = netdev_priv(ndev);
1523
	struct netdev_hw_addr *ha;
1524
	unsigned int i, bit, data, crc, tmp;
L
Linus Torvalds 已提交
1525 1526
	unsigned char hash;

1527
	if (ndev->flags & IFF_PROMISC) {
S
Sascha Hauer 已提交
1528 1529 1530
		tmp = readl(fep->hwp + FEC_R_CNTRL);
		tmp |= 0x8;
		writel(tmp, fep->hwp + FEC_R_CNTRL);
1531 1532
		return;
	}
L
Linus Torvalds 已提交
1533

1534 1535 1536 1537
	tmp = readl(fep->hwp + FEC_R_CNTRL);
	tmp &= ~0x8;
	writel(tmp, fep->hwp + FEC_R_CNTRL);

1538
	if (ndev->flags & IFF_ALLMULTI) {
1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552
		/* Catch all multicast addresses, so set the
		 * filter to all 1's
		 */
		writel(0xffffffff, fep->hwp + FEC_GRP_HASH_TABLE_HIGH);
		writel(0xffffffff, fep->hwp + FEC_GRP_HASH_TABLE_LOW);

		return;
	}

	/* Clear filter and add the addresses in hash register
	 */
	writel(0, fep->hwp + FEC_GRP_HASH_TABLE_HIGH);
	writel(0, fep->hwp + FEC_GRP_HASH_TABLE_LOW);

1553
	netdev_for_each_mc_addr(ha, ndev) {
1554 1555 1556
		/* calculate crc32 value of mac address */
		crc = 0xffffffff;

1557
		for (i = 0; i < ndev->addr_len; i++) {
1558
			data = ha->addr[i];
1559 1560 1561
			for (bit = 0; bit < 8; bit++, data >>= 1) {
				crc = (crc >> 1) ^
				(((crc ^ data) & 1) ? CRC32_POLY : 0);
L
Linus Torvalds 已提交
1562 1563
			}
		}
1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578

		/* only upper 6 bits (HASH_BITS) are used
		 * which point to specific bit in he hash registers
		 */
		hash = (crc >> (32 - HASH_BITS)) & 0x3f;

		if (hash > 31) {
			tmp = readl(fep->hwp + FEC_GRP_HASH_TABLE_HIGH);
			tmp |= 1 << (hash - 32);
			writel(tmp, fep->hwp + FEC_GRP_HASH_TABLE_HIGH);
		} else {
			tmp = readl(fep->hwp + FEC_GRP_HASH_TABLE_LOW);
			tmp |= 1 << hash;
			writel(tmp, fep->hwp + FEC_GRP_HASH_TABLE_LOW);
		}
L
Linus Torvalds 已提交
1579 1580 1581
	}
}

S
Sascha Hauer 已提交
1582
/* Set a MAC change in hardware. */
S
Sascha Hauer 已提交
1583
static int
1584
fec_set_mac_address(struct net_device *ndev, void *p)
L
Linus Torvalds 已提交
1585
{
1586
	struct fec_enet_private *fep = netdev_priv(ndev);
S
Sascha Hauer 已提交
1587 1588 1589 1590 1591
	struct sockaddr *addr = p;

	if (!is_valid_ether_addr(addr->sa_data))
		return -EADDRNOTAVAIL;

1592
	memcpy(ndev->dev_addr, addr->sa_data, ndev->addr_len);
L
Linus Torvalds 已提交
1593

1594 1595
	writel(ndev->dev_addr[3] | (ndev->dev_addr[2] << 8) |
		(ndev->dev_addr[1] << 16) | (ndev->dev_addr[0] << 24),
S
Sascha Hauer 已提交
1596
		fep->hwp + FEC_ADDR_LOW);
1597
	writel((ndev->dev_addr[5] << 16) | (ndev->dev_addr[4] << 24),
1598
		fep->hwp + FEC_ADDR_HIGH);
S
Sascha Hauer 已提交
1599
	return 0;
L
Linus Torvalds 已提交
1600 1601
}

1602
#ifdef CONFIG_NET_POLL_CONTROLLER
1603 1604
/**
 * fec_poll_controller - FEC Poll controller function
1605 1606 1607 1608 1609
 * @dev: The FEC network adapter
 *
 * Polled functionality used by netconsole and others in non interrupt mode
 *
 */
1610
static void fec_poll_controller(struct net_device *dev)
1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624
{
	int i;
	struct fec_enet_private *fep = netdev_priv(dev);

	for (i = 0; i < FEC_IRQ_NUM; i++) {
		if (fep->irq[i] > 0) {
			disable_irq(fep->irq[i]);
			fec_enet_interrupt(fep->irq[i], dev);
			enable_irq(fep->irq[i]);
		}
	}
}
#endif

S
Sascha Hauer 已提交
1625 1626 1627 1628
static const struct net_device_ops fec_netdev_ops = {
	.ndo_open		= fec_enet_open,
	.ndo_stop		= fec_enet_close,
	.ndo_start_xmit		= fec_enet_start_xmit,
1629
	.ndo_set_rx_mode	= set_multicast_list,
1630
	.ndo_change_mtu		= eth_change_mtu,
S
Sascha Hauer 已提交
1631 1632 1633
	.ndo_validate_addr	= eth_validate_addr,
	.ndo_tx_timeout		= fec_timeout,
	.ndo_set_mac_address	= fec_set_mac_address,
1634
	.ndo_do_ioctl		= fec_enet_ioctl,
1635 1636 1637
#ifdef CONFIG_NET_POLL_CONTROLLER
	.ndo_poll_controller	= fec_poll_controller,
#endif
S
Sascha Hauer 已提交
1638 1639
};

L
Linus Torvalds 已提交
1640 1641
 /*
  * XXX:  We need to clean up on failure exits here.
1642
  *
L
Linus Torvalds 已提交
1643
  */
1644
static int fec_enet_init(struct net_device *ndev)
L
Linus Torvalds 已提交
1645
{
1646
	struct fec_enet_private *fep = netdev_priv(ndev);
S
Sascha Hauer 已提交
1647
	struct bufdesc *cbd_base;
L
Linus Torvalds 已提交
1648

S
Sascha Hauer 已提交
1649 1650
	/* Allocate memory for buffer descriptors. */
	cbd_base = dma_alloc_coherent(NULL, PAGE_SIZE, &fep->bd_dma,
1651 1652
				      GFP_KERNEL);
	if (!cbd_base)
1653 1654
		return -ENOMEM;

1655
	memset(cbd_base, 0, PAGE_SIZE);
1656 1657
	spin_lock_init(&fep->hw_lock);

1658
	fep->netdev = ndev;
L
Linus Torvalds 已提交
1659

1660
	/* Get the Ethernet address */
1661
	fec_get_mac(ndev);
L
Linus Torvalds 已提交
1662

S
Sascha Hauer 已提交
1663
	/* Set receive and transmit descriptor base. */
L
Linus Torvalds 已提交
1664
	fep->rx_bd_base = cbd_base;
1665 1666 1667 1668 1669
	if (fep->bufdesc_ex)
		fep->tx_bd_base = (struct bufdesc *)
			(((struct bufdesc_ex *)cbd_base) + RX_RING_SIZE);
	else
		fep->tx_bd_base = cbd_base + RX_RING_SIZE;
L
Linus Torvalds 已提交
1670

S
Sascha Hauer 已提交
1671
	/* The FEC Ethernet specific entries in the device structure */
1672 1673 1674
	ndev->watchdog_timeo = TX_TIMEOUT;
	ndev->netdev_ops = &fec_netdev_ops;
	ndev->ethtool_ops = &fec_enet_ethtool_ops;
1675

1676 1677 1678
	writel(FEC_RX_DISABLED_IMASK, fep->hwp + FEC_IMASK);
	netif_napi_add(ndev, &fep->napi, fec_enet_rx_napi, FEC_NAPI_WEIGHT);

1679
	fec_restart(ndev, 0);
L
Linus Torvalds 已提交
1680 1681 1682 1683

	return 0;
}

1684
#ifdef CONFIG_OF
1685
static void fec_reset_phy(struct platform_device *pdev)
1686 1687
{
	int err, phy_reset;
1688
	int msec = 1;
1689 1690 1691
	struct device_node *np = pdev->dev.of_node;

	if (!np)
1692
		return;
1693

1694 1695 1696 1697 1698
	of_property_read_u32(np, "phy-reset-duration", &msec);
	/* A sane reset duration should not be longer than 1s */
	if (msec > 1000)
		msec = 1;

1699
	phy_reset = of_get_named_gpio(np, "phy-reset-gpios", 0);
1700 1701 1702
	if (!gpio_is_valid(phy_reset))
		return;

1703 1704
	err = devm_gpio_request_one(&pdev->dev, phy_reset,
				    GPIOF_OUT_INIT_LOW, "phy-reset");
1705
	if (err) {
1706
		dev_err(&pdev->dev, "failed to get phy-reset-gpios: %d\n", err);
1707
		return;
1708
	}
1709
	msleep(msec);
1710 1711 1712
	gpio_set_value(phy_reset, 1);
}
#else /* CONFIG_OF */
1713
static void fec_reset_phy(struct platform_device *pdev)
1714 1715 1716 1717 1718 1719 1720 1721
{
	/*
	 * In case of platform probe, the reset has been done
	 * by machine code.
	 */
}
#endif /* CONFIG_OF */

1722
static int
1723 1724 1725
fec_probe(struct platform_device *pdev)
{
	struct fec_enet_private *fep;
1726
	struct fec_platform_data *pdata;
1727 1728 1729
	struct net_device *ndev;
	int i, irq, ret = 0;
	struct resource *r;
1730
	const struct of_device_id *of_id;
S
Shawn Guo 已提交
1731
	static int dev_id;
S
Shawn Guo 已提交
1732
	struct pinctrl *pinctrl;
1733
	struct regulator *reg_phy;
1734 1735 1736 1737

	of_id = of_match_device(fec_dt_ids, &pdev->dev);
	if (of_id)
		pdev->id_entry = of_id->data;
1738 1739 1740 1741 1742 1743 1744

	r = platform_get_resource(pdev, IORESOURCE_MEM, 0);
	if (!r)
		return -ENXIO;

	/* Init network device */
	ndev = alloc_etherdev(sizeof(struct fec_enet_private));
1745 1746
	if (!ndev)
		return -ENOMEM;
1747 1748 1749 1750 1751 1752

	SET_NETDEV_DEV(ndev, &pdev->dev);

	/* setup board info structure */
	fep = netdev_priv(ndev);

1753 1754 1755 1756 1757
	/* default enable pause frame auto negotiation */
	if (pdev->id_entry &&
	    (pdev->id_entry->driver_data & FEC_QUIRK_HAS_GBIT))
		fep->pause_flag |= FEC_PAUSE_FLAG_AUTONEG;

1758
	fep->hwp = devm_request_and_ioremap(&pdev->dev, r);
1759
	fep->pdev = pdev;
S
Shawn Guo 已提交
1760
	fep->dev_id = dev_id++;
1761

1762 1763
	fep->bufdesc_ex = 0;

1764
	if (!fep->hwp) {
1765 1766 1767 1768 1769 1770
		ret = -ENOMEM;
		goto failed_ioremap;
	}

	platform_set_drvdata(pdev, ndev);

1771
	ret = of_get_phy_mode(pdev->dev.of_node);
1772 1773 1774 1775 1776 1777 1778 1779 1780 1781
	if (ret < 0) {
		pdata = pdev->dev.platform_data;
		if (pdata)
			fep->phy_interface = pdata->phy;
		else
			fep->phy_interface = PHY_INTERFACE_MODE_MII;
	} else {
		fep->phy_interface = ret;
	}

S
Shawn Guo 已提交
1782 1783 1784 1785 1786 1787
	pinctrl = devm_pinctrl_get_select_default(&pdev->dev);
	if (IS_ERR(pinctrl)) {
		ret = PTR_ERR(pinctrl);
		goto failed_pin;
	}

1788 1789 1790
	fep->clk_ipg = devm_clk_get(&pdev->dev, "ipg");
	if (IS_ERR(fep->clk_ipg)) {
		ret = PTR_ERR(fep->clk_ipg);
1791 1792
		goto failed_clk;
	}
1793 1794 1795 1796 1797 1798 1799

	fep->clk_ahb = devm_clk_get(&pdev->dev, "ahb");
	if (IS_ERR(fep->clk_ahb)) {
		ret = PTR_ERR(fep->clk_ahb);
		goto failed_clk;
	}

1800
	fep->clk_ptp = devm_clk_get(&pdev->dev, "ptp");
F
Fabio Estevam 已提交
1801 1802
	fep->bufdesc_ex =
		pdev->id_entry->driver_data & FEC_QUIRK_HAS_BUFDESC_EX;
1803 1804
	if (IS_ERR(fep->clk_ptp)) {
		ret = PTR_ERR(fep->clk_ptp);
1805
		fep->bufdesc_ex = 0;
1806 1807
	}

1808 1809
	clk_prepare_enable(fep->clk_ahb);
	clk_prepare_enable(fep->clk_ipg);
1810 1811 1812
	if (!IS_ERR(fep->clk_ptp))
		clk_prepare_enable(fep->clk_ptp);

1813 1814 1815 1816 1817 1818 1819 1820 1821 1822
	reg_phy = devm_regulator_get(&pdev->dev, "phy");
	if (!IS_ERR(reg_phy)) {
		ret = regulator_enable(reg_phy);
		if (ret) {
			dev_err(&pdev->dev,
				"Failed to enable phy regulator: %d\n", ret);
			goto failed_regulator;
		}
	}

1823 1824
	fec_reset_phy(pdev);

F
Fabio Estevam 已提交
1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849
	if (fep->bufdesc_ex)
		fec_ptp_init(ndev, pdev);

	ret = fec_enet_init(ndev);
	if (ret)
		goto failed_init;

	for (i = 0; i < FEC_IRQ_NUM; i++) {
		irq = platform_get_irq(pdev, i);
		if (irq < 0) {
			if (i)
				break;
			ret = irq;
			goto failed_irq;
		}
		ret = request_irq(irq, fec_enet_interrupt, IRQF_DISABLED, pdev->name, ndev);
		if (ret) {
			while (--i >= 0) {
				irq = platform_get_irq(pdev, i);
				free_irq(irq, ndev);
			}
			goto failed_irq;
		}
	}

1850 1851 1852 1853
	ret = fec_enet_mii_init(pdev);
	if (ret)
		goto failed_mii_init;

1854 1855 1856
	/* Carrier starts down, phylib will bring it up */
	netif_carrier_off(ndev);

1857 1858 1859 1860
	ret = register_netdev(ndev);
	if (ret)
		goto failed_register;

F
Fabio Estevam 已提交
1861 1862 1863
	if (fep->bufdesc_ex && fep->ptp_clock)
		netdev_info(ndev, "registered PHC device %d\n", fep->dev_id);

1864 1865 1866
	return 0;

failed_register:
1867 1868
	fec_enet_mii_remove(fep);
failed_mii_init:
F
Fabio Estevam 已提交
1869 1870 1871 1872 1873 1874 1875
failed_init:
	for (i = 0; i < FEC_IRQ_NUM; i++) {
		irq = platform_get_irq(pdev, i);
		if (irq > 0)
			free_irq(irq, ndev);
	}
failed_irq:
1876
failed_regulator:
1877 1878
	clk_disable_unprepare(fep->clk_ahb);
	clk_disable_unprepare(fep->clk_ipg);
1879 1880
	if (!IS_ERR(fep->clk_ptp))
		clk_disable_unprepare(fep->clk_ptp);
S
Shawn Guo 已提交
1881
failed_pin:
1882 1883 1884 1885 1886 1887 1888
failed_clk:
failed_ioremap:
	free_netdev(ndev);

	return ret;
}

1889
static int
1890 1891 1892 1893
fec_drv_remove(struct platform_device *pdev)
{
	struct net_device *ndev = platform_get_drvdata(pdev);
	struct fec_enet_private *fep = netdev_priv(ndev);
L
Lothar Waßmann 已提交
1894
	int i;
1895

L
Lothar Waßmann 已提交
1896
	unregister_netdev(ndev);
1897
	fec_enet_mii_remove(fep);
1898 1899 1900 1901
	del_timer_sync(&fep->time_keep);
	clk_disable_unprepare(fep->clk_ptp);
	if (fep->ptp_clock)
		ptp_clock_unregister(fep->ptp_clock);
1902 1903
	clk_disable_unprepare(fep->clk_ahb);
	clk_disable_unprepare(fep->clk_ipg);
1904 1905 1906 1907 1908
	for (i = 0; i < FEC_IRQ_NUM; i++) {
		int irq = platform_get_irq(pdev, i);
		if (irq > 0)
			free_irq(irq, ndev);
	}
1909
	free_netdev(ndev);
1910

1911 1912
	platform_set_drvdata(pdev, NULL);

1913 1914 1915
	return 0;
}

1916
#ifdef CONFIG_PM
1917
static int
E
Eric Benard 已提交
1918
fec_suspend(struct device *dev)
1919
{
E
Eric Benard 已提交
1920
	struct net_device *ndev = dev_get_drvdata(dev);
1921
	struct fec_enet_private *fep = netdev_priv(ndev);
1922

1923 1924 1925
	if (netif_running(ndev)) {
		fec_stop(ndev);
		netif_device_detach(ndev);
1926
	}
1927 1928
	clk_disable_unprepare(fep->clk_ahb);
	clk_disable_unprepare(fep->clk_ipg);
1929

1930 1931 1932 1933
	return 0;
}

static int
E
Eric Benard 已提交
1934
fec_resume(struct device *dev)
1935
{
E
Eric Benard 已提交
1936
	struct net_device *ndev = dev_get_drvdata(dev);
1937
	struct fec_enet_private *fep = netdev_priv(ndev);
1938

1939 1940
	clk_prepare_enable(fep->clk_ahb);
	clk_prepare_enable(fep->clk_ipg);
1941 1942 1943
	if (netif_running(ndev)) {
		fec_restart(ndev, fep->full_duplex);
		netif_device_attach(ndev);
1944
	}
1945

1946 1947 1948
	return 0;
}

1949 1950 1951 1952 1953 1954 1955 1956
static const struct dev_pm_ops fec_pm_ops = {
	.suspend	= fec_suspend,
	.resume		= fec_resume,
	.freeze		= fec_suspend,
	.thaw		= fec_resume,
	.poweroff	= fec_suspend,
	.restore	= fec_resume,
};
E
Eric Benard 已提交
1957
#endif
1958

1959 1960
static struct platform_driver fec_driver = {
	.driver	= {
1961
		.name	= DRIVER_NAME,
E
Eric Benard 已提交
1962 1963 1964 1965
		.owner	= THIS_MODULE,
#ifdef CONFIG_PM
		.pm	= &fec_pm_ops,
#endif
1966
		.of_match_table = fec_dt_ids,
1967
	},
1968
	.id_table = fec_devtype,
E
Eric Benard 已提交
1969
	.probe	= fec_probe,
1970
	.remove	= fec_drv_remove,
1971 1972
};

1973
module_platform_driver(fec_driver);
L
Linus Torvalds 已提交
1974 1975

MODULE_LICENSE("GPL");