diff options
Diffstat (limited to 'target/linux/generic/files/drivers')
24 files changed, 6306 insertions, 586 deletions
diff --git a/target/linux/generic/files/drivers/char/gpio_dev.c b/target/linux/generic/files/drivers/char/gpio_dev.c deleted file mode 100644 index c74157302..000000000 --- a/target/linux/generic/files/drivers/char/gpio_dev.c +++ /dev/null @@ -1,181 +0,0 @@ -/* - * character device wrapper for generic gpio layer - * - * This program is free software; you can redistribute it and/or modify - * it under the terms of the GNU General Public License as published by - * the Free Software Foundation; either version 2 of the License, or - * (at your option) any later version. - * - * This program is distributed in the hope that 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., 59 Temple Place, Suite 330, Boston, MA02111-1307USA - * - * Feedback, Bugs... blogic@openwrt.org - * - * dpg 20100106 - */ - -#include <linux/module.h> -#include <linux/errno.h> -#include <linux/init.h> -#include <asm/uaccess.h> -#include <asm/io.h> -#include <asm/gpio.h> -#include <asm/atomic.h> -#include <linux/init.h> -#include <linux/genhd.h> -#include <linux/device.h> -#include <linux/platform_device.h> -#include <linux/gpio_dev.h> -#include <linux/fs.h> - -#define DRVNAME "gpiodev" -#define DEVNAME "gpio" - -static int dev_major; -static struct class *gpiodev_class; - - -/* third argument of user space ioctl ('arg' here) contains the <pin> */ -static int -gpio_ioctl(struct file *file, unsigned int cmd, unsigned long arg) -{ - int retval = 0; - - switch (cmd) - { - case GPIO_GET: - retval = gpio_get_value(arg); - break; - case GPIO_SET: - gpio_set_value(arg, 1); - break; - case GPIO_CLEAR: - gpio_set_value(arg, 0); - break; - case GPIO_DIR_IN: - retval = gpio_direction_input(arg); - break; - case GPIO_DIR_OUT: - retval = gpio_direction_output(arg, 0); - break; - case GPIO_DIR_HIGH: - retval = gpio_direction_output(arg, 1); - break; - case GPIO_REQUEST: - /* should be first ioctl operation on <pin> */ - retval = gpio_request(arg, DRVNAME); - break; - case GPIO_FREE: - /* should be last ioctl operation on <pin> */ - /* may be needed first if previous user missed this ioctl */ - gpio_free(arg); - break; - case GPIO_CAN_SLEEP: - retval = gpio_cansleep(arg); - break; - default: - retval = -EINVAL; - /* = -ENOTTY; // correct return but ... */ - break; - } - return retval; -} - -/* Allow co-incident opens */ -static int -gpio_open(struct inode *inode, struct file *file) -{ - int result = 0; - unsigned int dev_minor = MINOR(inode->i_rdev); - - if (dev_minor != 0) - { - printk(KERN_ERR DRVNAME ": trying to access unknown minor device -> %d\n", dev_minor); - result = -ENODEV; - goto out; - } -out: - return result; -} - -static int -gpio_close(struct inode * inode, struct file * file) -{ - /* could track all <pin>s requested by this fd and gpio_free() - * them here - */ - return 0; -} - -struct file_operations gpio_fops = { - unlocked_ioctl: gpio_ioctl, - open: gpio_open, - release: gpio_close -}; - -static int -gpio_probe(struct platform_device *dev) -{ - int result = 0; - - dev_major = register_chrdev(0, DEVNAME, &gpio_fops); - if (!dev_major) - { - printk(KERN_ERR DRVNAME ": Error whilst opening %s \n", DEVNAME); - result = -ENODEV; - goto out; - } - gpiodev_class = class_create(THIS_MODULE, DRVNAME); - device_create(gpiodev_class, NULL, MKDEV(dev_major, 0), dev, DEVNAME); - printk(KERN_INFO DRVNAME ": gpio device registered with major %d\n", dev_major); -out: - return result; -} - -static int -gpio_remove(struct platform_device *dev) -{ - device_destroy(gpiodev_class, MKDEV(dev_major, 0)); - class_destroy(gpiodev_class); - unregister_chrdev(dev_major, DEVNAME); - return 0; -} - -static struct -platform_driver gpio_driver = { - .probe = gpio_probe, - .remove = gpio_remove, - .driver = { - .name = "GPIODEV", - .owner = THIS_MODULE, - }, -}; - -static int __init -gpio_mod_init(void) -{ - int ret = platform_driver_register(&gpio_driver); - if (ret) - printk(KERN_INFO DRVNAME ": Error registering platfom driver!\n"); - - return ret; -} - -static void __exit -gpio_mod_exit(void) -{ - platform_driver_unregister(&gpio_driver); -} - -module_init (gpio_mod_init); -module_exit (gpio_mod_exit); - -MODULE_LICENSE("GPL"); -MODULE_AUTHOR("John Crispin / OpenWrt +"); -MODULE_DESCRIPTION("Character device for for generic gpio api"); diff --git a/target/linux/generic/files/drivers/input/misc/gpio_buttons.c b/target/linux/generic/files/drivers/input/misc/gpio_buttons.c index 51288a3f9..af5491434 100644 --- a/target/linux/generic/files/drivers/input/misc/gpio_buttons.c +++ b/target/linux/generic/files/drivers/input/misc/gpio_buttons.c @@ -82,7 +82,7 @@ static void gpio_buttons_poll(struct input_polled_dev *dev) } } -static int __devinit gpio_buttons_probe(struct platform_device *pdev) +static int gpio_buttons_probe(struct platform_device *pdev) { struct gpio_buttons_platform_data *pdata = pdev->dev.platform_data; struct device *dev = &pdev->dev; @@ -186,7 +186,7 @@ err_free_bdev: return error; } -static int __devexit gpio_buttons_remove(struct platform_device *pdev) +static int gpio_buttons_remove(struct platform_device *pdev) { struct gpio_buttons_dev *bdev = platform_get_drvdata(pdev); struct gpio_buttons_platform_data *pdata = bdev->pdata; @@ -207,7 +207,7 @@ static int __devexit gpio_buttons_remove(struct platform_device *pdev) static struct platform_driver gpio_buttons_driver = { .probe = gpio_buttons_probe, - .remove = __devexit_p(gpio_buttons_remove), + .remove = gpio_buttons_remove, .driver = { .name = DRV_NAME, .owner = THIS_MODULE, diff --git a/target/linux/generic/files/drivers/mtd/myloader.c b/target/linux/generic/files/drivers/mtd/myloader.c index a13752dd9..33459819d 100644 --- a/target/linux/generic/files/drivers/mtd/myloader.c +++ b/target/linux/generic/files/drivers/mtd/myloader.c @@ -72,8 +72,8 @@ static int myloader_parse_partitions(struct mtd_info *master, printk(KERN_DEBUG "%s: searching for MyLoader partition table" " at offset 0x%lx\n", master->name, offset); - ret = master->read(master, offset, sizeof(*buf), &retlen, - (void *)buf); + ret = mtd_read(master, offset, sizeof(*buf), &retlen, + (void *)buf); if (ret) goto out_free_buf; diff --git a/target/linux/generic/files/drivers/net/phy/ar8216.c b/target/linux/generic/files/drivers/net/phy/ar8216.c index 4df2dbbdb..b6df6425a 100644 --- a/target/linux/generic/files/drivers/net/phy/ar8216.c +++ b/target/linux/generic/files/drivers/net/phy/ar8216.c @@ -32,6 +32,9 @@ #include <linux/etherdevice.h> #include <linux/lockdep.h> #include <linux/ar8216_platform.h> +#include <linux/workqueue.h> +#include <linux/of_device.h> + #include "ar8216.h" /* size of the vlan table */ @@ -39,9 +42,12 @@ #define AR8X16_PROBE_RETRIES 10 #define AR8X16_MAX_PORTS 8 -struct ar8216_priv; +#define AR8XXX_MIB_WORK_DELAY 2000 /* msecs */ + +struct ar8xxx_priv; -#define AR8XXX_CAP_GIGE BIT(0) +#define AR8XXX_CAP_GIGE BIT(0) +#define AR8XXX_CAP_MIB_COUNTERS BIT(1) enum { AR8XXX_VER_AR8216 = 0x01, @@ -50,69 +56,202 @@ enum { AR8XXX_VER_AR8327 = 0x12, }; +struct ar8xxx_mib_desc { + unsigned int size; + unsigned int offset; + const char *name; +}; + struct ar8xxx_chip { unsigned long caps; - int (*hw_init)(struct ar8216_priv *priv); - void (*init_globals)(struct ar8216_priv *priv); - void (*init_port)(struct ar8216_priv *priv, int port); - void (*setup_port)(struct ar8216_priv *priv, int port, u32 egress, + int (*hw_init)(struct ar8xxx_priv *priv); + void (*init_globals)(struct ar8xxx_priv *priv); + void (*init_port)(struct ar8xxx_priv *priv, int port); + void (*setup_port)(struct ar8xxx_priv *priv, int port, u32 egress, u32 ingress, u32 members, u32 pvid); - u32 (*read_port_status)(struct ar8216_priv *priv, int port); - int (*atu_flush)(struct ar8216_priv *priv); - void (*vtu_flush)(struct ar8216_priv *priv); - void (*vtu_load_vlan)(struct ar8216_priv *priv, u32 vid, u32 port_mask); + u32 (*read_port_status)(struct ar8xxx_priv *priv, int port); + int (*atu_flush)(struct ar8xxx_priv *priv); + void (*vtu_flush)(struct ar8xxx_priv *priv); + void (*vtu_load_vlan)(struct ar8xxx_priv *priv, u32 vid, u32 port_mask); + + const struct ar8xxx_mib_desc *mib_decs; + unsigned num_mibs; }; -struct ar8216_priv { +struct ar8327_data { + u32 port0_status; + u32 port6_status; +}; + +struct ar8xxx_priv { struct switch_dev dev; + struct mii_bus *mii_bus; struct phy_device *phy; - u32 (*read)(struct ar8216_priv *priv, int reg); - void (*write)(struct ar8216_priv *priv, int reg, u32 val); + u32 (*read)(struct ar8xxx_priv *priv, int reg); + void (*write)(struct ar8xxx_priv *priv, int reg, u32 val); const struct net_device_ops *ndo_old; struct net_device_ops ndo; struct mutex reg_mutex; u8 chip_ver; u8 chip_rev; const struct ar8xxx_chip *chip; + union { + struct ar8327_data ar8327; + } chip_data; bool initialized; bool port4_phy; - char buf[80]; + char buf[2048]; bool init; bool mii_lo_first; + struct mutex mib_lock; + struct delayed_work mib_work; + int mib_next_port; + u64 *mib_stats; + + struct list_head list; + unsigned int use_count; + /* all fields below are cleared on reset */ bool vlan; u16 vlan_id[AR8X16_MAX_VLANS]; u8 vlan_table[AR8X16_MAX_VLANS]; u8 vlan_tagged; u16 pvid[AR8X16_MAX_PORTS]; + + /* mirroring */ + bool mirror_rx; + bool mirror_tx; + int source_port; + int monitor_port; }; -#define to_ar8216(_dev) container_of(_dev, struct ar8216_priv, dev) +#define MIB_DESC(_s , _o, _n) \ + { \ + .size = (_s), \ + .offset = (_o), \ + .name = (_n), \ + } -static inline bool ar8xxx_has_gige(struct ar8216_priv *priv) +static const struct ar8xxx_mib_desc ar8216_mibs[] = { + MIB_DESC(1, AR8216_STATS_RXBROAD, "RxBroad"), + MIB_DESC(1, AR8216_STATS_RXPAUSE, "RxPause"), + MIB_DESC(1, AR8216_STATS_RXMULTI, "RxMulti"), + MIB_DESC(1, AR8216_STATS_RXFCSERR, "RxFcsErr"), + MIB_DESC(1, AR8216_STATS_RXALIGNERR, "RxAlignErr"), + MIB_DESC(1, AR8216_STATS_RXRUNT, "RxRunt"), + MIB_DESC(1, AR8216_STATS_RXFRAGMENT, "RxFragment"), + MIB_DESC(1, AR8216_STATS_RX64BYTE, "Rx64Byte"), + MIB_DESC(1, AR8216_STATS_RX128BYTE, "Rx128Byte"), + MIB_DESC(1, AR8216_STATS_RX256BYTE, "Rx256Byte"), + MIB_DESC(1, AR8216_STATS_RX512BYTE, "Rx512Byte"), + MIB_DESC(1, AR8216_STATS_RX1024BYTE, "Rx1024Byte"), + MIB_DESC(1, AR8216_STATS_RXMAXBYTE, "RxMaxByte"), + MIB_DESC(1, AR8216_STATS_RXTOOLONG, "RxTooLong"), + MIB_DESC(2, AR8216_STATS_RXGOODBYTE, "RxGoodByte"), + MIB_DESC(2, AR8216_STATS_RXBADBYTE, "RxBadByte"), + MIB_DESC(1, AR8216_STATS_RXOVERFLOW, "RxOverFlow"), + MIB_DESC(1, AR8216_STATS_FILTERED, "Filtered"), + MIB_DESC(1, AR8216_STATS_TXBROAD, "TxBroad"), + MIB_DESC(1, AR8216_STATS_TXPAUSE, "TxPause"), + MIB_DESC(1, AR8216_STATS_TXMULTI, "TxMulti"), + MIB_DESC(1, AR8216_STATS_TXUNDERRUN, "TxUnderRun"), + MIB_DESC(1, AR8216_STATS_TX64BYTE, "Tx64Byte"), + MIB_DESC(1, AR8216_STATS_TX128BYTE, "Tx128Byte"), + MIB_DESC(1, AR8216_STATS_TX256BYTE, "Tx256Byte"), + MIB_DESC(1, AR8216_STATS_TX512BYTE, "Tx512Byte"), + MIB_DESC(1, AR8216_STATS_TX1024BYTE, "Tx1024Byte"), + MIB_DESC(1, AR8216_STATS_TXMAXBYTE, "TxMaxByte"), + MIB_DESC(1, AR8216_STATS_TXOVERSIZE, "TxOverSize"), + MIB_DESC(2, AR8216_STATS_TXBYTE, "TxByte"), + MIB_DESC(1, AR8216_STATS_TXCOLLISION, "TxCollision"), + MIB_DESC(1, AR8216_STATS_TXABORTCOL, "TxAbortCol"), + MIB_DESC(1, AR8216_STATS_TXMULTICOL, "TxMultiCol"), + MIB_DESC(1, AR8216_STATS_TXSINGLECOL, "TxSingleCol"), + MIB_DESC(1, AR8216_STATS_TXEXCDEFER, "TxExcDefer"), + MIB_DESC(1, AR8216_STATS_TXDEFER, "TxDefer"), + MIB_DESC(1, AR8216_STATS_TXLATECOL, "TxLateCol"), +}; + +static const struct ar8xxx_mib_desc ar8236_mibs[] = { + MIB_DESC(1, AR8236_STATS_RXBROAD, "RxBroad"), + MIB_DESC(1, AR8236_STATS_RXPAUSE, "RxPause"), + MIB_DESC(1, AR8236_STATS_RXMULTI, "RxMulti"), + MIB_DESC(1, AR8236_STATS_RXFCSERR, "RxFcsErr"), + MIB_DESC(1, AR8236_STATS_RXALIGNERR, "RxAlignErr"), + MIB_DESC(1, AR8236_STATS_RXRUNT, "RxRunt"), + MIB_DESC(1, AR8236_STATS_RXFRAGMENT, "RxFragment"), + MIB_DESC(1, AR8236_STATS_RX64BYTE, "Rx64Byte"), + MIB_DESC(1, AR8236_STATS_RX128BYTE, "Rx128Byte"), + MIB_DESC(1, AR8236_STATS_RX256BYTE, "Rx256Byte"), + MIB_DESC(1, AR8236_STATS_RX512BYTE, "Rx512Byte"), + MIB_DESC(1, AR8236_STATS_RX1024BYTE, "Rx1024Byte"), + MIB_DESC(1, AR8236_STATS_RX1518BYTE, "Rx1518Byte"), + MIB_DESC(1, AR8236_STATS_RXMAXBYTE, "RxMaxByte"), + MIB_DESC(1, AR8236_STATS_RXTOOLONG, "RxTooLong"), + MIB_DESC(2, AR8236_STATS_RXGOODBYTE, "RxGoodByte"), + MIB_DESC(2, AR8236_STATS_RXBADBYTE, "RxBadByte"), + MIB_DESC(1, AR8236_STATS_RXOVERFLOW, "RxOverFlow"), + MIB_DESC(1, AR8236_STATS_FILTERED, "Filtered"), + MIB_DESC(1, AR8236_STATS_TXBROAD, "TxBroad"), + MIB_DESC(1, AR8236_STATS_TXPAUSE, "TxPause"), + MIB_DESC(1, AR8236_STATS_TXMULTI, "TxMulti"), + MIB_DESC(1, AR8236_STATS_TXUNDERRUN, "TxUnderRun"), + MIB_DESC(1, AR8236_STATS_TX64BYTE, "Tx64Byte"), + MIB_DESC(1, AR8236_STATS_TX128BYTE, "Tx128Byte"), + MIB_DESC(1, AR8236_STATS_TX256BYTE, "Tx256Byte"), + MIB_DESC(1, AR8236_STATS_TX512BYTE, "Tx512Byte"), + MIB_DESC(1, AR8236_STATS_TX1024BYTE, "Tx1024Byte"), + MIB_DESC(1, AR8236_STATS_TX1518BYTE, "Tx1518Byte"), + MIB_DESC(1, AR8236_STATS_TXMAXBYTE, "TxMaxByte"), + MIB_DESC(1, AR8236_STATS_TXOVERSIZE, "TxOverSize"), + MIB_DESC(2, AR8236_STATS_TXBYTE, "TxByte"), + MIB_DESC(1, AR8236_STATS_TXCOLLISION, "TxCollision"), + MIB_DESC(1, AR8236_STATS_TXABORTCOL, "TxAbortCol"), + MIB_DESC(1, AR8236_STATS_TXMULTICOL, "TxMultiCol"), + MIB_DESC(1, AR8236_STATS_TXSINGLECOL, "TxSingleCol"), + MIB_DESC(1, AR8236_STATS_TXEXCDEFER, "TxExcDefer"), + MIB_DESC(1, AR8236_STATS_TXDEFER, "TxDefer"), + MIB_DESC(1, AR8236_STATS_TXLATECOL, "TxLateCol"), +}; + +static DEFINE_MUTEX(ar8xxx_dev_list_lock); +static LIST_HEAD(ar8xxx_dev_list); + +static inline struct ar8xxx_priv * +swdev_to_ar8xxx(struct switch_dev *swdev) +{ + return container_of(swdev, struct ar8xxx_priv, dev); +} + +static inline bool ar8xxx_has_gige(struct ar8xxx_priv *priv) { return priv->chip->caps & AR8XXX_CAP_GIGE; } -static inline bool chip_is_ar8216(struct ar8216_priv *priv) +static inline bool ar8xxx_has_mib_counters(struct ar8xxx_priv *priv) +{ + return priv->chip->caps & AR8XXX_CAP_MIB_COUNTERS; +} + +static inline bool chip_is_ar8216(struct ar8xxx_priv *priv) { return priv->chip_ver == AR8XXX_VER_AR8216; } -static inline bool chip_is_ar8236(struct ar8216_priv *priv) +static inline bool chip_is_ar8236(struct ar8xxx_priv *priv) { return priv->chip_ver == AR8XXX_VER_AR8236; } -static inline bool chip_is_ar8316(struct ar8216_priv *priv) +static inline bool chip_is_ar8316(struct ar8xxx_priv *priv) { return priv->chip_ver == AR8XXX_VER_AR8316; } -static inline bool chip_is_ar8327(struct ar8216_priv *priv) +static inline bool chip_is_ar8327(struct ar8xxx_priv *priv) { return priv->chip_ver == AR8XXX_VER_AR8327; } @@ -131,10 +270,9 @@ split_addr(u32 regaddr, u16 *r1, u16 *r2, u16 *page) } static u32 -ar8216_mii_read(struct ar8216_priv *priv, int reg) +ar8xxx_mii_read(struct ar8xxx_priv *priv, int reg) { - struct phy_device *phy = priv->phy; - struct mii_bus *bus = phy->bus; + struct mii_bus *bus = priv->mii_bus; u16 r1, r2, page; u16 lo, hi; @@ -153,10 +291,9 @@ ar8216_mii_read(struct ar8216_priv *priv, int reg) } static void -ar8216_mii_write(struct ar8216_priv *priv, int reg, u32 val) +ar8xxx_mii_write(struct ar8xxx_priv *priv, int reg, u32 val) { - struct phy_device *phy = priv->phy; - struct mii_bus *bus = phy->bus; + struct mii_bus *bus = priv->mii_bus; u16 r1, r2, r3; u16 lo, hi; @@ -180,10 +317,10 @@ ar8216_mii_write(struct ar8216_priv *priv, int reg, u32 val) } static void -ar8216_phy_dbg_write(struct ar8216_priv *priv, int phy_addr, +ar8xxx_phy_dbg_write(struct ar8xxx_priv *priv, int phy_addr, u16 dbg_addr, u16 dbg_data) { - struct mii_bus *bus = priv->phy->bus; + struct mii_bus *bus = priv->mii_bus; mutex_lock(&bus->mdio_lock); bus->write(bus, phy_addr, MII_ATH_DBG_ADDR, dbg_addr); @@ -192,9 +329,9 @@ ar8216_phy_dbg_write(struct ar8216_priv *priv, int phy_addr, } static void -ar8216_phy_mmd_write(struct ar8216_priv *priv, int phy_addr, u16 addr, u16 data) +ar8xxx_phy_mmd_write(struct ar8xxx_priv *priv, int phy_addr, u16 addr, u16 data) { - struct mii_bus *bus = priv->phy->bus; + struct mii_bus *bus = priv->mii_bus; mutex_lock(&bus->mdio_lock); bus->write(bus, phy_addr, MII_ATH_MMD_ADDR, addr); @@ -203,7 +340,7 @@ ar8216_phy_mmd_write(struct ar8216_priv *priv, int phy_addr, u16 addr, u16 data) } static u32 -ar8216_rmw(struct ar8216_priv *priv, int reg, u32 mask, u32 val) +ar8xxx_rmw(struct ar8xxx_priv *priv, int reg, u32 mask, u32 val) { u32 v; @@ -217,8 +354,120 @@ ar8216_rmw(struct ar8216_priv *priv, int reg, u32 mask, u32 val) return v; } +static inline void +ar8xxx_reg_set(struct ar8xxx_priv *priv, int reg, u32 val) +{ + u32 v; + + lockdep_assert_held(&priv->reg_mutex); + + v = priv->read(priv, reg); + v |= val; + priv->write(priv, reg, v); +} + +static int +ar8xxx_reg_wait(struct ar8xxx_priv *priv, u32 reg, u32 mask, u32 val, + unsigned timeout) +{ + int i; + + for (i = 0; i < timeout; i++) { + u32 t; + + t = priv->read(priv, reg); + if ((t & mask) == val) + return 0; + + usleep_range(1000, 2000); + } + + return -ETIMEDOUT; +} + +static int +ar8xxx_mib_op(struct ar8xxx_priv *priv, u32 op) +{ + unsigned mib_func; + int ret; + + lockdep_assert_held(&priv->mib_lock); + + if (chip_is_ar8327(priv)) + mib_func = AR8327_REG_MIB_FUNC; + else + mib_func = AR8216_REG_MIB_FUNC; + + mutex_lock(&priv->reg_mutex); + /* Capture the hardware statistics for all ports */ + ar8xxx_rmw(priv, mib_func, AR8216_MIB_FUNC, (op << AR8216_MIB_FUNC_S)); + mutex_unlock(&priv->reg_mutex); + + /* Wait for the capturing to complete. */ + ret = ar8xxx_reg_wait(priv, mib_func, AR8216_MIB_BUSY, 0, 10); + if (ret) + goto out; + + ret = 0; + +out: + return ret; +} + +static int +ar8xxx_mib_capture(struct ar8xxx_priv *priv) +{ + return ar8xxx_mib_op(priv, AR8216_MIB_FUNC_CAPTURE); +} + +static int +ar8xxx_mib_flush(struct ar8xxx_priv *priv) +{ + return ar8xxx_mib_op(priv, AR8216_MIB_FUNC_FLUSH); +} + static void -ar8216_read_port_link(struct ar8216_priv *priv, int port, +ar8xxx_mib_fetch_port_stat(struct ar8xxx_priv *priv, int port, bool flush) +{ + unsigned int base; + u64 *mib_stats; + int i; + + WARN_ON(port >= priv->dev.ports); + + lockdep_assert_held(&priv->mib_lock); + + if (chip_is_ar8327(priv)) + base = AR8327_REG_PORT_STATS_BASE(port); + else if (chip_is_ar8236(priv) || + chip_is_ar8316(priv)) + base = AR8236_REG_PORT_STATS_BASE(port); + else + base = AR8216_REG_PORT_STATS_BASE(port); + + mib_stats = &priv->mib_stats[port * priv->chip->num_mibs]; + for (i = 0; i < priv->chip->num_mibs; i++) { + const struct ar8xxx_mib_desc *mib; + u64 t; + + mib = &priv->chip->mib_decs[i]; + t = priv->read(priv, base + mib->offset); + if (mib->size == 2) { + u64 hi; + + hi = priv->read(priv, base + mib->offset + 4); + t |= hi << 32; + } + + if (flush) + mib_stats[i] = 0; + else + mib_stats[i] += t; + } +} + +static void +ar8216_read_port_link(struct ar8xxx_priv *priv, int port, struct switch_port_link *link) { u32 status; @@ -263,7 +512,7 @@ ar8216_read_port_link(struct ar8216_priv *priv, int port, static struct sk_buff * ar8216_mangle_tx(struct net_device *dev, struct sk_buff *skb) { - struct ar8216_priv *priv = dev->phy_ptr; + struct ar8xxx_priv *priv = dev->phy_ptr; unsigned char *buf; if (unlikely(!priv)) @@ -292,7 +541,7 @@ error: static void ar8216_mangle_rx(struct net_device *dev, struct sk_buff *skb) { - struct ar8216_priv *priv; + struct ar8xxx_priv *priv; unsigned char *buf; int port, vlan; @@ -327,7 +576,7 @@ ar8216_mangle_rx(struct net_device *dev, struct sk_buff *skb) } static int -ar8216_wait_bit(struct ar8216_priv *priv, int reg, u32 mask, u32 val) +ar8216_wait_bit(struct ar8xxx_priv *priv, int reg, u32 mask, u32 val) { int timeout = 20; u32 t = 0; @@ -349,7 +598,7 @@ ar8216_wait_bit(struct ar8216_priv *priv, int reg, u32 mask, u32 val) } static void -ar8216_vtu_op(struct ar8216_priv *priv, u32 op, u32 val) +ar8216_vtu_op(struct ar8xxx_priv *priv, u32 op, u32 val) { if (ar8216_wait_bit(priv, AR8216_REG_VTU, AR8216_VTU_ACTIVE, 0)) return; @@ -363,13 +612,13 @@ ar8216_vtu_op(struct ar8216_priv *priv, u32 op, u32 val) } static void -ar8216_vtu_flush(struct ar8216_priv *priv) +ar8216_vtu_flush(struct ar8xxx_priv *priv) { ar8216_vtu_op(priv, AR8216_VTU_OP_FLUSH, 0); } static void -ar8216_vtu_load_vlan(struct ar8216_priv *priv, u32 vid, u32 port_mask) +ar8216_vtu_load_vlan(struct ar8xxx_priv *priv, u32 vid, u32 port_mask) { u32 op; @@ -378,7 +627,7 @@ ar8216_vtu_load_vlan(struct ar8216_priv *priv, u32 vid, u32 port_mask) } static int -ar8216_atu_flush(struct ar8216_priv *priv) +ar8216_atu_flush(struct ar8xxx_priv *priv) { int ret; @@ -390,13 +639,13 @@ ar8216_atu_flush(struct ar8216_priv *priv) } static u32 -ar8216_read_port_status(struct ar8216_priv *priv, int port) +ar8216_read_port_status(struct ar8xxx_priv *priv, int port) { return priv->read(priv, AR8216_REG_PORT_STATUS(port)); } static void -ar8216_setup_port(struct ar8216_priv *priv, int port, u32 egress, u32 ingress, +ar8216_setup_port(struct ar8xxx_priv *priv, int port, u32 egress, u32 ingress, u32 members, u32 pvid) { u32 header; @@ -406,7 +655,7 @@ ar8216_setup_port(struct ar8216_priv *priv, int port, u32 egress, u32 ingress, else header = 0; - ar8216_rmw(priv, AR8216_REG_PORT_CTRL(port), + ar8xxx_rmw(priv, AR8216_REG_PORT_CTRL(port), AR8216_PORT_CTRL_LEARN | AR8216_PORT_CTRL_VLAN_MODE | AR8216_PORT_CTRL_SINGLE_VLAN | AR8216_PORT_CTRL_STATE | AR8216_PORT_CTRL_HEADER | AR8216_PORT_CTRL_LEARN_LOCK, @@ -414,7 +663,7 @@ ar8216_setup_port(struct ar8216_priv *priv, int port, u32 egress, u32 ingress, (egress << AR8216_PORT_CTRL_VLAN_MODE_S) | (AR8216_PORT_STATE_FORWARD << AR8216_PORT_CTRL_STATE_S)); - ar8216_rmw(priv, AR8216_REG_PORT_VLAN(port), + ar8xxx_rmw(priv, AR8216_REG_PORT_VLAN(port), AR8216_PORT_VLAN_DEST_PORTS | AR8216_PORT_VLAN_MODE | AR8216_PORT_VLAN_DEFAULT_ID, (members << AR8216_PORT_VLAN_DEST_PORTS_S) | @@ -423,23 +672,23 @@ ar8216_setup_port(struct ar8216_priv *priv, int port, u32 egress, u32 ingress, } static int -ar8216_hw_init(struct ar8216_priv *priv) +ar8216_hw_init(struct ar8xxx_priv *priv) { return 0; } static void -ar8216_init_globals(struct ar8216_priv *priv) +ar8216_init_globals(struct ar8xxx_priv *priv) { /* standard atheros magic */ priv->write(priv, 0x38, 0xc000050e); - ar8216_rmw(priv, AR8216_REG_GLOBAL_CTRL, + ar8xxx_rmw(priv, AR8216_REG_GLOBAL_CTRL, AR8216_GCTRL_MTU, 1518 + 8 + 2); } static void -ar8216_init_port(struct ar8216_priv *priv, int port) +ar8216_init_port(struct ar8xxx_priv *priv, int port) { /* Enable port learning and tx */ priv->write(priv, AR8216_REG_PORT_CTRL(port), @@ -465,6 +714,8 @@ ar8216_init_port(struct ar8216_priv *priv, int port) } static const struct ar8xxx_chip ar8216_chip = { + .caps = AR8XXX_CAP_MIB_COUNTERS, + .hw_init = ar8216_hw_init, .init_globals = ar8216_init_globals, .init_port = ar8216_init_port, @@ -473,13 +724,16 @@ static const struct ar8xxx_chip ar8216_chip = { .atu_flush = ar8216_atu_flush, .vtu_flush = ar8216_vtu_flush, .vtu_load_vlan = ar8216_vtu_load_vlan, + + .num_mibs = ARRAY_SIZE(ar8216_mibs), + .mib_decs = ar8216_mibs, }; static void -ar8236_setup_port(struct ar8216_priv *priv, int port, u32 egress, u32 ingress, +ar8236_setup_port(struct ar8xxx_priv *priv, int port, u32 egress, u32 ingress, u32 members, u32 pvid) { - ar8216_rmw(priv, AR8216_REG_PORT_CTRL(port), + ar8xxx_rmw(priv, AR8216_REG_PORT_CTRL(port), AR8216_PORT_CTRL_LEARN | AR8216_PORT_CTRL_VLAN_MODE | AR8216_PORT_CTRL_SINGLE_VLAN | AR8216_PORT_CTRL_STATE | AR8216_PORT_CTRL_HEADER | AR8216_PORT_CTRL_LEARN_LOCK, @@ -487,11 +741,11 @@ ar8236_setup_port(struct ar8216_priv *priv, int port, u32 egress, u32 ingress, (egress << AR8216_PORT_CTRL_VLAN_MODE_S) | (AR8216_PORT_STATE_FORWARD << AR8216_PORT_CTRL_STATE_S)); - ar8216_rmw(priv, AR8236_REG_PORT_VLAN(port), + ar8xxx_rmw(priv, AR8236_REG_PORT_VLAN(port), AR8236_PORT_VLAN_DEFAULT_ID, (pvid << AR8236_PORT_VLAN_DEFAULT_ID_S)); - ar8216_rmw(priv, AR8236_REG_PORT_VLAN2(port), + ar8xxx_rmw(priv, AR8236_REG_PORT_VLAN2(port), AR8236_PORT_VLAN2_VLAN_MODE | AR8236_PORT_VLAN2_MEMBER, (ingress << AR8236_PORT_VLAN2_VLAN_MODE_S) | @@ -499,7 +753,7 @@ ar8236_setup_port(struct ar8216_priv *priv, int port, u32 egress, u32 ingress, } static int -ar8236_hw_init(struct ar8216_priv *priv) +ar8236_hw_init(struct ar8xxx_priv *priv) { int i; struct mii_bus *bus; @@ -508,7 +762,7 @@ ar8236_hw_init(struct ar8216_priv *priv) return 0; /* Initialize the PHYs */ - bus = priv->phy->bus; + bus = priv->mii_bus; for (i = 0; i < 5; i++) { mdiobus_write(bus, i, MII_ADVERTISE, ADVERTISE_ALL | ADVERTISE_PAUSE_CAP | @@ -522,14 +776,20 @@ ar8236_hw_init(struct ar8216_priv *priv) } static void -ar8236_init_globals(struct ar8216_priv *priv) +ar8236_init_globals(struct ar8xxx_priv *priv) { /* enable jumbo frames */ - ar8216_rmw(priv, AR8216_REG_GLOBAL_CTRL, + ar8xxx_rmw(priv, AR8216_REG_GLOBAL_CTRL, AR8316_GCTRL_MTU, 9018 + 8 + 2); + + /* Enable MIB counters */ + ar8xxx_rmw(priv, AR8216_REG_MIB_FUNC, AR8216_MIB_FUNC | AR8236_MIB_EN, + (AR8216_MIB_FUNC_NO_OP << AR8216_MIB_FUNC_S) | + AR8236_MIB_EN); } static const struct ar8xxx_chip ar8236_chip = { + .caps = AR8XXX_CAP_MIB_COUNTERS, .hw_init = ar8236_hw_init, .init_globals = ar8236_init_globals, .init_port = ar8216_init_port, @@ -538,70 +798,74 @@ static const struct ar8xxx_chip ar8236_chip = { .atu_flush = ar8216_atu_flush, .vtu_flush = ar8216_vtu_flush, .vtu_load_vlan = ar8216_vtu_load_vlan, + + .num_mibs = ARRAY_SIZE(ar8236_mibs), + .mib_decs = ar8236_mibs, }; static int -ar8316_hw_init(struct ar8216_priv *priv) +ar8316_hw_init(struct ar8xxx_priv *priv) { int i; u32 val, newval; struct mii_bus *bus; - val = priv->read(priv, 0x8); + val = priv->read(priv, AR8316_REG_POSTRIP); if (priv->phy->interface == PHY_INTERFACE_MODE_RGMII) { if (priv->port4_phy) { /* value taken from Ubiquiti RouterStation Pro */ newval = 0x81461bea; - printk(KERN_INFO "ar8316: Using port 4 as PHY\n"); + pr_info("ar8316: Using port 4 as PHY\n"); } else { newval = 0x01261be2; - printk(KERN_INFO "ar8316: Using port 4 as switch port\n"); + pr_info("ar8316: Using port 4 as switch port\n"); } } else if (priv->phy->interface == PHY_INTERFACE_MODE_GMII) { /* value taken from AVM Fritz!Box 7390 sources */ newval = 0x010e5b71; } else { /* no known value for phy interface */ - printk(KERN_ERR "ar8316: unsupported mii mode: %d.\n", - priv->phy->interface); + pr_err("ar8316: unsupported mii mode: %d.\n", + priv->phy->interface); return -EINVAL; } if (val == newval) goto out; - priv->write(priv, 0x8, newval); + priv->write(priv, AR8316_REG_POSTRIP, newval); + + if (priv->port4_phy && + priv->phy->interface == PHY_INTERFACE_MODE_RGMII) { + /* work around for phy4 rgmii mode */ + ar8xxx_phy_dbg_write(priv, 4, 0x12, 0x480c); + /* rx delay */ + ar8xxx_phy_dbg_write(priv, 4, 0x0, 0x824e); + /* tx delay */ + ar8xxx_phy_dbg_write(priv, 4, 0x5, 0x3d47); + msleep(1000); + } /* Initialize the ports */ - bus = priv->phy->bus; + bus = priv->mii_bus; for (i = 0; i < 5; i++) { - if ((i == 4) && priv->port4_phy && - priv->phy->interface == PHY_INTERFACE_MODE_RGMII) { - /* work around for phy4 rgmii mode */ - ar8216_phy_dbg_write(priv, i, 0x12, 0x480c); - /* rx delay */ - ar8216_phy_dbg_write(priv, i, 0x0, 0x824e); - /* tx delay */ - ar8216_phy_dbg_write(priv, i, 0x5, 0x3d47); - msleep(1000); - } - /* initialize the port itself */ mdiobus_write(bus, i, MII_ADVERTISE, ADVERTISE_ALL | ADVERTISE_PAUSE_CAP | ADVERTISE_PAUSE_ASYM); mdiobus_write(bus, i, MII_CTRL1000, ADVERTISE_1000FULL); mdiobus_write(bus, i, MII_BMCR, BMCR_RESET | BMCR_ANENABLE); - msleep(1000); } + msleep(1000); + out: priv->initialized = true; return 0; } static void -ar8316_init_globals(struct ar8216_priv *priv) +ar8316_init_globals(struct ar8xxx_priv *priv) { /* standard atheros magic */ priv->write(priv, 0x38, 0xc000050e); @@ -610,12 +874,17 @@ ar8316_init_globals(struct ar8216_priv *priv) priv->write(priv, AR8216_REG_FLOOD_MASK, 0x003f003f); /* enable jumbo frames */ - ar8216_rmw(priv, AR8216_REG_GLOBAL_CTRL, + ar8xxx_rmw(priv, AR8216_REG_GLOBAL_CTRL, AR8316_GCTRL_MTU, 9018 + 8 + 2); + + /* Enable MIB counters */ + ar8xxx_rmw(priv, AR8216_REG_MIB_FUNC, AR8216_MIB_FUNC | AR8236_MIB_EN, + (AR8216_MIB_FUNC_NO_OP << AR8216_MIB_FUNC_S) | + AR8236_MIB_EN); } static const struct ar8xxx_chip ar8316_chip = { - .caps = AR8XXX_CAP_GIGE, + .caps = AR8XXX_CAP_GIGE | AR8XXX_CAP_MIB_COUNTERS, .hw_init = ar8316_hw_init, .init_globals = ar8316_init_globals, .init_port = ar8216_init_port, @@ -624,6 +893,9 @@ static const struct ar8xxx_chip ar8316_chip = { .atu_flush = ar8216_atu_flush, .vtu_flush = ar8216_vtu_flush, .vtu_load_vlan = ar8216_vtu_load_vlan, + + .num_mibs = ARRAY_SIZE(ar8236_mibs), + .mib_decs = ar8236_mibs, }; static u32 @@ -657,6 +929,23 @@ ar8327_get_pad_cfg(struct ar8327_pad_cfg *cfg) case AR8327_PAD_MAC_SGMII: t = AR8327_PAD_SGMII_EN; + + /* + * WAR for the QUalcomm Atheros AP136 board. + * It seems that RGMII TX/RX delay settings needs to be + * applied for SGMII mode as well, The ethernet is not + * reliable without this. + */ + t |= cfg->txclk_delay_sel << AR8327_PAD_RGMII_TXCLK_DELAY_SEL_S; + t |= cfg->rxclk_delay_sel << AR8327_PAD_RGMII_RXCLK_DELAY_SEL_S; + if (cfg->rxclk_delay_en) + t |= AR8327_PAD_RGMII_RXCLK_DELAY_EN; + if (cfg->txclk_delay_en) + t |= AR8327_PAD_RGMII_TXCLK_DELAY_EN; + + if (cfg->sgmii_delay_en) + t |= AR8327_PAD_SGMII_DELAY_EN; + break; case AR8327_PAD_MAC2PHY_MII: @@ -704,45 +993,76 @@ ar8327_get_pad_cfg(struct ar8327_pad_cfg *cfg) } static void -ar8327_phy_fixup(struct ar8216_priv *priv, int phy) +ar8327_phy_fixup(struct ar8xxx_priv *priv, int phy) { switch (priv->chip_rev) { case 1: /* For 100M waveform */ - ar8216_phy_dbg_write(priv, phy, 0, 0x02ea); + ar8xxx_phy_dbg_write(priv, phy, 0, 0x02ea); /* Turn on Gigabit clock */ - ar8216_phy_dbg_write(priv, phy, 0x3d, 0x68a0); + ar8xxx_phy_dbg_write(priv, phy, 0x3d, 0x68a0); break; case 2: - ar8216_phy_mmd_write(priv, phy, 0x7, 0x3c); - ar8216_phy_mmd_write(priv, phy, 0x4007, 0x0); + ar8xxx_phy_mmd_write(priv, phy, 0x7, 0x3c); + ar8xxx_phy_mmd_write(priv, phy, 0x4007, 0x0); /* fallthrough */ case 4: - ar8216_phy_mmd_write(priv, phy, 0x3, 0x800d); - ar8216_phy_mmd_write(priv, phy, 0x4003, 0x803f); + ar8xxx_phy_mmd_write(priv, phy, 0x3, 0x800d); + ar8xxx_phy_mmd_write(priv, phy, 0x4003, 0x803f); + + ar8xxx_phy_dbg_write(priv, phy, 0x3d, 0x6860); + ar8xxx_phy_dbg_write(priv, phy, 0x5, 0x2c46); + ar8xxx_phy_dbg_write(priv, phy, 0x3c, 0x6000); + break; + } +} + +static u32 +ar8327_get_port_init_status(struct ar8327_port_cfg *cfg) +{ + u32 t; + + if (!cfg->force_link) + return AR8216_PORT_STATUS_LINK_AUTO; - ar8216_phy_dbg_write(priv, phy, 0x3d, 0x6860); - ar8216_phy_dbg_write(priv, phy, 0x5, 0x2c46); - ar8216_phy_dbg_write(priv, phy, 0x3c, 0x6000); + t = AR8216_PORT_STATUS_TXMAC | AR8216_PORT_STATUS_RXMAC; + t |= cfg->duplex ? AR8216_PORT_STATUS_DUPLEX : 0; + t |= cfg->rxpause ? AR8216_PORT_STATUS_RXFLOW : 0; + t |= cfg->txpause ? AR8216_PORT_STATUS_TXFLOW : 0; + + switch (cfg->speed) { + case AR8327_PORT_SPEED_10: + t |= AR8216_PORT_SPEED_10M; + break; + case AR8327_PORT_SPEED_100: + t |= AR8216_PORT_SPEED_100M; + break; + case AR8327_PORT_SPEED_1000: + t |= AR8216_PORT_SPEED_1000M; break; } + + return t; } static int -ar8327_hw_init(struct ar8216_priv *priv) +ar8327_hw_config_pdata(struct ar8xxx_priv *priv, + struct ar8327_platform_data *pdata) { - struct ar8327_platform_data *pdata; struct ar8327_led_cfg *led_cfg; - struct mii_bus *bus; + struct ar8327_data *data; u32 pos, new_pos; u32 t; - int i; - pdata = priv->phy->dev.platform_data; if (!pdata) return -EINVAL; + data = &priv->chip_data.ar8327; + + data->port0_status = ar8327_get_port_init_status(&pdata->port0_cfg); + data->port6_status = ar8327_get_port_init_status(&pdata->port6_cfg); + t = ar8327_get_pad_cfg(pdata->pad0_cfg); priv->write(priv, AR8327_REG_PAD0_MODE, t); t = ar8327_get_pad_cfg(pdata->pad5_cfg); @@ -771,7 +1091,70 @@ ar8327_hw_init(struct ar8216_priv *priv) priv->write(priv, AR8327_REG_POWER_ON_STRIP, new_pos); } - bus = priv->phy->bus; + return 0; +} + +#ifdef CONFIG_OF +static int +ar8327_hw_config_of(struct ar8xxx_priv *priv, struct device_node *np) +{ + const __be32 *paddr; + int len; + int i; + + paddr = of_get_property(np, "qca,ar8327-initvals", &len); + if (!paddr || len < (2 * sizeof(*paddr))) + return -EINVAL; + + len /= sizeof(*paddr); + + for (i = 0; i < len - 1; i += 2) { + u32 reg; + u32 val; + + reg = be32_to_cpup(paddr + i); + val = be32_to_cpup(paddr + i + 1); + + switch (reg) { + case AR8327_REG_PORT_STATUS(0): + priv->chip_data.ar8327.port0_status = val; + break; + case AR8327_REG_PORT_STATUS(6): + priv->chip_data.ar8327.port6_status = val; + break; + default: + priv->write(priv, reg, val); + break; + } + } + + return 0; +} +#else +static inline int +ar8327_hw_config_of(struct ar8xxx_priv *priv, struct device_node *np) +{ + return -EINVAL; +} +#endif + +static int +ar8327_hw_init(struct ar8xxx_priv *priv) +{ + struct mii_bus *bus; + int ret; + int i; + + if (priv->phy->dev.of_node) + ret = ar8327_hw_config_of(priv, priv->phy->dev.of_node); + else + ret = ar8327_hw_config_pdata(priv, + priv->phy->dev.platform_data); + + if (ret) + return ret; + + bus = priv->mii_bus; for (i = 0; i < AR8327_NUM_PHYS; i++) { ar8327_phy_fixup(priv, i); @@ -789,7 +1172,7 @@ ar8327_hw_init(struct ar8216_priv *priv) } static void -ar8327_init_globals(struct ar8216_priv *priv) +ar8327_init_globals(struct ar8xxx_priv *priv) { u32 t; @@ -805,62 +1188,32 @@ ar8327_init_globals(struct ar8216_priv *priv) priv->write(priv, AR8327_REG_FWD_CTRL1, t); /* setup MTU */ - ar8216_rmw(priv, AR8327_REG_MAX_FRAME_SIZE, + ar8xxx_rmw(priv, AR8327_REG_MAX_FRAME_SIZE, AR8327_MAX_FRAME_SIZE_MTU, 1518 + 8 + 2); -} - -static void -ar8327_init_cpuport(struct ar8216_priv *priv) -{ - struct ar8327_platform_data *pdata; - struct ar8327_port_cfg *cfg; - u32 t; - - pdata = priv->phy->dev.platform_data; - if (!pdata) - return; - - cfg = &pdata->cpuport_cfg; - if (!cfg->force_link) { - priv->write(priv, AR8327_REG_PORT_STATUS(AR8216_PORT_CPU), - AR8216_PORT_STATUS_LINK_AUTO); - return; - } - - t = AR8216_PORT_STATUS_TXMAC | AR8216_PORT_STATUS_RXMAC; - t |= cfg->duplex ? AR8216_PORT_STATUS_DUPLEX : 0; - t |= cfg->rxpause ? AR8216_PORT_STATUS_RXFLOW : 0; - t |= cfg->txpause ? AR8216_PORT_STATUS_TXFLOW : 0; - switch (cfg->speed) { - case AR8327_PORT_SPEED_10: - t |= AR8216_PORT_SPEED_10M; - break; - case AR8327_PORT_SPEED_100: - t |= AR8216_PORT_SPEED_100M; - break; - case AR8327_PORT_SPEED_1000: - t |= AR8216_PORT_SPEED_1000M; - break; - } - priv->write(priv, AR8327_REG_PORT_STATUS(AR8216_PORT_CPU), t); + /* Enable MIB counters */ + ar8xxx_reg_set(priv, AR8327_REG_MODULE_EN, + AR8327_MODULE_EN_MIB); } static void -ar8327_init_port(struct ar8216_priv *priv, int port) +ar8327_init_port(struct ar8xxx_priv *priv, int port) { u32 t; - if (port == AR8216_PORT_CPU) { - ar8327_init_cpuport(priv); - } else { + if (port == AR8216_PORT_CPU) + t = priv->chip_data.ar8327.port0_status; + else if (port == 6) + t = priv->chip_data.ar8327.port6_status; + else t = AR8216_PORT_STATUS_LINK_AUTO; - priv->write(priv, AR8327_REG_PORT_STATUS(port), t); - } + priv->write(priv, AR8327_REG_PORT_STATUS(port), t); priv->write(priv, AR8327_REG_PORT_HEADER(port), 0); - priv->write(priv, AR8327_REG_PORT_VLAN0(port), 0); + t = 1 << AR8327_PORT_VLAN0_DEF_SVID_S; + t |= 1 << AR8327_PORT_VLAN0_DEF_CVID_S; + priv->write(priv, AR8327_REG_PORT_VLAN0(port), t); t = AR8327_PORT_VLAN1_OUT_MODE_UNTOUCH << AR8327_PORT_VLAN1_OUT_MODE_S; priv->write(priv, AR8327_REG_PORT_VLAN1(port), t); @@ -871,13 +1224,13 @@ ar8327_init_port(struct ar8216_priv *priv, int port) } static u32 -ar8327_read_port_status(struct ar8216_priv *priv, int port) +ar8327_read_port_status(struct ar8xxx_priv *priv, int port) { return priv->read(priv, AR8327_REG_PORT_STATUS(port)); } static int -ar8327_atu_flush(struct ar8216_priv *priv) +ar8327_atu_flush(struct ar8xxx_priv *priv) { int ret; @@ -891,7 +1244,7 @@ ar8327_atu_flush(struct ar8216_priv *priv) } static void -ar8327_vtu_op(struct ar8216_priv *priv, u32 op, u32 val) +ar8327_vtu_op(struct ar8xxx_priv *priv, u32 op, u32 val) { if (ar8216_wait_bit(priv, AR8327_REG_VTU_FUNC1, AR8327_VTU_FUNC1_BUSY, 0)) @@ -905,13 +1258,13 @@ ar8327_vtu_op(struct ar8216_priv *priv, u32 op, u32 val) } static void -ar8327_vtu_flush(struct ar8216_priv *priv) +ar8327_vtu_flush(struct ar8xxx_priv *priv) { ar8327_vtu_op(priv, AR8327_VTU_FUNC1_OP_FLUSH, 0); } static void -ar8327_vtu_load_vlan(struct ar8216_priv *priv, u32 vid, u32 port_mask) +ar8327_vtu_load_vlan(struct ar8xxx_priv *priv, u32 vid, u32 port_mask) { u32 op; u32 val; @@ -937,7 +1290,7 @@ ar8327_vtu_load_vlan(struct ar8216_priv *priv, u32 vid, u32 port_mask) } static void -ar8327_setup_port(struct ar8216_priv *priv, int port, u32 egress, u32 ingress, +ar8327_setup_port(struct ar8xxx_priv *priv, int port, u32 egress, u32 ingress, u32 members, u32 pvid) { u32 t; @@ -972,7 +1325,7 @@ ar8327_setup_port(struct ar8216_priv *priv, int port, u32 egress, u32 ingress, } static const struct ar8xxx_chip ar8327_chip = { - .caps = AR8XXX_CAP_GIGE, + .caps = AR8XXX_CAP_GIGE | AR8XXX_CAP_MIB_COUNTERS, .hw_init = ar8327_hw_init, .init_globals = ar8327_init_globals, .init_port = ar8327_init_port, @@ -981,31 +1334,34 @@ static const struct ar8xxx_chip ar8327_chip = { .atu_flush = ar8327_atu_flush, .vtu_flush = ar8327_vtu_flush, .vtu_load_vlan = ar8327_vtu_load_vlan, + + .num_mibs = ARRAY_SIZE(ar8236_mibs), + .mib_decs = ar8236_mibs, }; static int -ar8216_sw_set_vlan(struct switch_dev *dev, const struct switch_attr *attr, +ar8xxx_sw_set_vlan(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); priv->vlan = !!val->value.i; return 0; } static int -ar8216_sw_get_vlan(struct switch_dev *dev, const struct switch_attr *attr, +ar8xxx_sw_get_vlan(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); val->value.i = priv->vlan; return 0; } static int -ar8216_sw_set_pvid(struct switch_dev *dev, int port, int vlan) +ar8xxx_sw_set_pvid(struct switch_dev *dev, int port, int vlan) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); /* make sure no invalid PVIDs get set */ @@ -1017,45 +1373,45 @@ ar8216_sw_set_pvid(struct switch_dev *dev, int port, int vlan) } static int -ar8216_sw_get_pvid(struct switch_dev *dev, int port, int *vlan) +ar8xxx_sw_get_pvid(struct switch_dev *dev, int port, int *vlan) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); *vlan = priv->pvid[port]; return 0; } static int -ar8216_sw_set_vid(struct switch_dev *dev, const struct switch_attr *attr, +ar8xxx_sw_set_vid(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); priv->vlan_id[val->port_vlan] = val->value.i; return 0; } static int -ar8216_sw_get_vid(struct switch_dev *dev, const struct switch_attr *attr, +ar8xxx_sw_get_vid(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); val->value.i = priv->vlan_id[val->port_vlan]; return 0; } static int -ar8216_sw_get_port_link(struct switch_dev *dev, int port, +ar8xxx_sw_get_port_link(struct switch_dev *dev, int port, struct switch_port_link *link) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); ar8216_read_port_link(priv, port, link); return 0; } static int -ar8216_sw_get_ports(struct switch_dev *dev, struct switch_val *val) +ar8xxx_sw_get_ports(struct switch_dev *dev, struct switch_val *val) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); u8 ports = priv->vlan_table[val->port_vlan]; int i; @@ -1077,9 +1433,9 @@ ar8216_sw_get_ports(struct switch_dev *dev, struct switch_val *val) } static int -ar8216_sw_set_ports(struct switch_dev *dev, struct switch_val *val) +ar8xxx_sw_set_ports(struct switch_dev *dev, struct switch_val *val) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); u8 *vt = &priv->vlan_table[val->port_vlan]; int i, j; @@ -1107,10 +1463,102 @@ ar8216_sw_set_ports(struct switch_dev *dev, struct switch_val *val) return 0; } +static void +ar8327_set_mirror_regs(struct ar8xxx_priv *priv) +{ + int port; + + /* reset all mirror registers */ + ar8xxx_rmw(priv, AR8327_REG_FWD_CTRL0, + AR8327_FWD_CTRL0_MIRROR_PORT, + (0xF << AR8327_FWD_CTRL0_MIRROR_PORT_S)); + for (port = 0; port < AR8327_NUM_PORTS; port++) { + ar8xxx_rmw(priv, AR8327_REG_PORT_LOOKUP(port), + AR8327_PORT_LOOKUP_ING_MIRROR_EN, + 0); + + ar8xxx_rmw(priv, AR8327_REG_PORT_HOL_CTRL1(port), + AR8327_PORT_HOL_CTRL1_EG_MIRROR_EN, + 0); + } + + /* now enable mirroring if necessary */ + if (priv->source_port >= AR8327_NUM_PORTS || + priv->monitor_port >= AR8327_NUM_PORTS || + priv->source_port == priv->monitor_port) { + return; + } + + ar8xxx_rmw(priv, AR8327_REG_FWD_CTRL0, + AR8327_FWD_CTRL0_MIRROR_PORT, + (priv->monitor_port << AR8327_FWD_CTRL0_MIRROR_PORT_S)); + + if (priv->mirror_rx) + ar8xxx_rmw(priv, AR8327_REG_PORT_LOOKUP(priv->source_port), + AR8327_PORT_LOOKUP_ING_MIRROR_EN, + AR8327_PORT_LOOKUP_ING_MIRROR_EN); + + if (priv->mirror_tx) + ar8xxx_rmw(priv, AR8327_REG_PORT_HOL_CTRL1(priv->source_port), + AR8327_PORT_HOL_CTRL1_EG_MIRROR_EN, + AR8327_PORT_HOL_CTRL1_EG_MIRROR_EN); +} + +static void +ar8216_set_mirror_regs(struct ar8xxx_priv *priv) +{ + int port; + + /* reset all mirror registers */ + ar8xxx_rmw(priv, AR8216_REG_GLOBAL_CPUPORT, + AR8216_GLOBAL_CPUPORT_MIRROR_PORT, + (0xF << AR8216_GLOBAL_CPUPORT_MIRROR_PORT_S)); + for (port = 0; port < AR8216_NUM_PORTS; port++) { + ar8xxx_rmw(priv, AR8216_REG_PORT_CTRL(port), + AR8216_PORT_CTRL_MIRROR_RX, + 0); + + ar8xxx_rmw(priv, AR8216_REG_PORT_CTRL(port), + AR8216_PORT_CTRL_MIRROR_TX, + 0); + } + + /* now enable mirroring if necessary */ + if (priv->source_port >= AR8216_NUM_PORTS || + priv->monitor_port >= AR8216_NUM_PORTS || + priv->source_port == priv->monitor_port) { + return; + } + + ar8xxx_rmw(priv, AR8216_REG_GLOBAL_CPUPORT, + AR8216_GLOBAL_CPUPORT_MIRROR_PORT, + (priv->monitor_port << AR8216_GLOBAL_CPUPORT_MIRROR_PORT_S)); + + if (priv->mirror_rx) + ar8xxx_rmw(priv, AR8216_REG_PORT_CTRL(priv->source_port), + AR8216_PORT_CTRL_MIRROR_RX, + AR8216_PORT_CTRL_MIRROR_RX); + + if (priv->mirror_tx) + ar8xxx_rmw(priv, AR8216_REG_PORT_CTRL(priv->source_port), + AR8216_PORT_CTRL_MIRROR_TX, + AR8216_PORT_CTRL_MIRROR_TX); +} + +static void +ar8xxx_set_mirror_regs(struct ar8xxx_priv *priv) +{ + if (chip_is_ar8327(priv)) { + ar8327_set_mirror_regs(priv); + } else { + ar8216_set_mirror_regs(priv); + } +} + static int -ar8216_sw_hw_apply(struct switch_dev *dev) +ar8xxx_sw_hw_apply(struct switch_dev *dev) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); u8 portmask[AR8X16_MAX_PORTS]; int i, j; @@ -1170,19 +1618,22 @@ ar8216_sw_hw_apply(struct switch_dev *dev) priv->chip->setup_port(priv, i, egress, ingress, portmask[i], pvid); } + + ar8xxx_set_mirror_regs(priv); + mutex_unlock(&priv->reg_mutex); return 0; } static int -ar8216_sw_reset_switch(struct switch_dev *dev) +ar8xxx_sw_reset_switch(struct switch_dev *dev) { - struct ar8216_priv *priv = to_ar8216(dev); + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); int i; mutex_lock(&priv->reg_mutex); - memset(&priv->vlan, 0, sizeof(struct ar8216_priv) - - offsetof(struct ar8216_priv, vlan)); + memset(&priv->vlan, 0, sizeof(struct ar8xxx_priv) - + offsetof(struct ar8xxx_priv, vlan)); for (i = 0; i < AR8X16_MAX_VLANS; i++) priv->vlan_id[i] = i; @@ -1191,67 +1642,401 @@ ar8216_sw_reset_switch(struct switch_dev *dev) for (i = 0; i < dev->ports; i++) priv->chip->init_port(priv, i); + priv->mirror_rx = false; + priv->mirror_tx = false; + priv->source_port = 0; + priv->monitor_port = 0; + priv->chip->init_globals(priv); + + mutex_unlock(&priv->reg_mutex); + + return ar8xxx_sw_hw_apply(dev); +} + +static int +ar8xxx_sw_set_reset_mibs(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + unsigned int len; + int ret; + + if (!ar8xxx_has_mib_counters(priv)) + return -EOPNOTSUPP; + + mutex_lock(&priv->mib_lock); + + len = priv->dev.ports * priv->chip->num_mibs * + sizeof(*priv->mib_stats); + memset(priv->mib_stats, '\0', len); + ret = ar8xxx_mib_flush(priv); + if (ret) + goto unlock; + + ret = 0; + +unlock: + mutex_unlock(&priv->mib_lock); + return ret; +} + +static int +ar8xxx_sw_set_mirror_rx_enable(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + + mutex_lock(&priv->reg_mutex); + priv->mirror_rx = !!val->value.i; + ar8xxx_set_mirror_regs(priv); + mutex_unlock(&priv->reg_mutex); + + return 0; +} + +static int +ar8xxx_sw_get_mirror_rx_enable(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + val->value.i = priv->mirror_rx; + return 0; +} + +static int +ar8xxx_sw_set_mirror_tx_enable(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + + mutex_lock(&priv->reg_mutex); + priv->mirror_tx = !!val->value.i; + ar8xxx_set_mirror_regs(priv); mutex_unlock(&priv->reg_mutex); - return ar8216_sw_hw_apply(dev); + return 0; +} + +static int +ar8xxx_sw_get_mirror_tx_enable(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + val->value.i = priv->mirror_tx; + return 0; } -static struct switch_attr ar8216_globals[] = { +static int +ar8xxx_sw_set_mirror_monitor_port(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + + mutex_lock(&priv->reg_mutex); + priv->monitor_port = val->value.i; + ar8xxx_set_mirror_regs(priv); + mutex_unlock(&priv->reg_mutex); + + return 0; +} + +static int +ar8xxx_sw_get_mirror_monitor_port(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + val->value.i = priv->monitor_port; + return 0; +} + +static int +ar8xxx_sw_set_mirror_source_port(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + + mutex_lock(&priv->reg_mutex); + priv->source_port = val->value.i; + ar8xxx_set_mirror_regs(priv); + mutex_unlock(&priv->reg_mutex); + + return 0; +} + +static int +ar8xxx_sw_get_mirror_source_port(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + val->value.i = priv->source_port; + return 0; +} + +static int +ar8xxx_sw_set_port_reset_mib(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + int port; + int ret; + + if (!ar8xxx_has_mib_counters(priv)) + return -EOPNOTSUPP; + + port = val->port_vlan; + if (port >= dev->ports) + return -EINVAL; + + mutex_lock(&priv->mib_lock); + ret = ar8xxx_mib_capture(priv); + if (ret) + goto unlock; + + ar8xxx_mib_fetch_port_stat(priv, port, true); + + ret = 0; + +unlock: + mutex_unlock(&priv->mib_lock); + return ret; +} + +static int +ar8xxx_sw_get_port_mib(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct ar8xxx_priv *priv = swdev_to_ar8xxx(dev); + const struct ar8xxx_chip *chip = priv->chip; + u64 *mib_stats; + int port; + int ret; + char *buf = priv->buf; + int i, len = 0; + + if (!ar8xxx_has_mib_counters(priv)) + return -EOPNOTSUPP; + + port = val->port_vlan; + if (port >= dev->ports) + return -EINVAL; + + mutex_lock(&priv->mib_lock); + ret = ar8xxx_mib_capture(priv); + if (ret) + goto unlock; + + ar8xxx_mib_fetch_port_stat(priv, port, false); + + len += snprintf(buf + len, sizeof(priv->buf) - len, + "Port %d MIB counters\n", + port); + + mib_stats = &priv->mib_stats[port * chip->num_mibs]; + for (i = 0; i < chip->num_mibs; i++) + len += snprintf(buf + len, sizeof(priv->buf) - len, + "%-12s: %llu\n", + chip->mib_decs[i].name, + mib_stats[i]); + + val->value.s = buf; + val->len = len; + + ret = 0; + +unlock: + mutex_unlock(&priv->mib_lock); + return ret; +} + +static struct switch_attr ar8xxx_sw_attr_globals[] = { { .type = SWITCH_TYPE_INT, .name = "enable_vlan", .description = "Enable VLAN mode", - .set = ar8216_sw_set_vlan, - .get = ar8216_sw_get_vlan, + .set = ar8xxx_sw_set_vlan, + .get = ar8xxx_sw_get_vlan, .max = 1 }, + { + .type = SWITCH_TYPE_NOVAL, + .name = "reset_mibs", + .description = "Reset all MIB counters", + .set = ar8xxx_sw_set_reset_mibs, + }, + { + .type = SWITCH_TYPE_INT, + .name = "enable_mirror_rx", + .description = "Enable mirroring of RX packets", + .set = ar8xxx_sw_set_mirror_rx_enable, + .get = ar8xxx_sw_get_mirror_rx_enable, + .max = 1 + }, + { + .type = SWITCH_TYPE_INT, + .name = "enable_mirror_tx", + .description = "Enable mirroring of TX packets", + .set = ar8xxx_sw_set_mirror_tx_enable, + .get = ar8xxx_sw_get_mirror_tx_enable, + .max = 1 + }, + { + .type = SWITCH_TYPE_INT, + .name = "mirror_monitor_port", + .description = "Mirror monitor port", + .set = ar8xxx_sw_set_mirror_monitor_port, + .get = ar8xxx_sw_get_mirror_monitor_port, + .max = AR8216_NUM_PORTS - 1 + }, + { + .type = SWITCH_TYPE_INT, + .name = "mirror_source_port", + .description = "Mirror source port", + .set = ar8xxx_sw_set_mirror_source_port, + .get = ar8xxx_sw_get_mirror_source_port, + .max = AR8216_NUM_PORTS - 1 + }, +}; + +static struct switch_attr ar8327_sw_attr_globals[] = { + { + .type = SWITCH_TYPE_INT, + .name = "enable_vlan", + .description = "Enable VLAN mode", + .set = ar8xxx_sw_set_vlan, + .get = ar8xxx_sw_get_vlan, + .max = 1 + }, + { + .type = SWITCH_TYPE_NOVAL, + .name = "reset_mibs", + .description = "Reset all MIB counters", + .set = ar8xxx_sw_set_reset_mibs, + }, + { + .type = SWITCH_TYPE_INT, + .name = "enable_mirror_rx", + .description = "Enable mirroring of RX packets", + .set = ar8xxx_sw_set_mirror_rx_enable, + .get = ar8xxx_sw_get_mirror_rx_enable, + .max = 1 + }, + { + .type = SWITCH_TYPE_INT, + .name = "enable_mirror_tx", + .description = "Enable mirroring of TX packets", + .set = ar8xxx_sw_set_mirror_tx_enable, + .get = ar8xxx_sw_get_mirror_tx_enable, + .max = 1 + }, + { + .type = SWITCH_TYPE_INT, + .name = "mirror_monitor_port", + .description = "Mirror monitor port", + .set = ar8xxx_sw_set_mirror_monitor_port, + .get = ar8xxx_sw_get_mirror_monitor_port, + .max = AR8327_NUM_PORTS - 1 + }, + { + .type = SWITCH_TYPE_INT, + .name = "mirror_source_port", + .description = "Mirror source port", + .set = ar8xxx_sw_set_mirror_source_port, + .get = ar8xxx_sw_get_mirror_source_port, + .max = AR8327_NUM_PORTS - 1 + }, }; -static struct switch_attr ar8216_port[] = { +static struct switch_attr ar8xxx_sw_attr_port[] = { + { + .type = SWITCH_TYPE_NOVAL, + .name = "reset_mib", + .description = "Reset single port MIB counters", + .set = ar8xxx_sw_set_port_reset_mib, + }, + { + .type = SWITCH_TYPE_STRING, + .name = "mib", + .description = "Get port's MIB counters", + .set = NULL, + .get = ar8xxx_sw_get_port_mib, + }, }; -static struct switch_attr ar8216_vlan[] = { +static struct switch_attr ar8xxx_sw_attr_vlan[] = { { .type = SWITCH_TYPE_INT, .name = "vid", .description = "VLAN ID (0-4094)", - .set = ar8216_sw_set_vid, - .get = ar8216_sw_get_vid, + .set = ar8xxx_sw_set_vid, + .get = ar8xxx_sw_get_vid, .max = 4094, }, }; -static const struct switch_dev_ops ar8216_sw_ops = { +static const struct switch_dev_ops ar8xxx_sw_ops = { + .attr_global = { + .attr = ar8xxx_sw_attr_globals, + .n_attr = ARRAY_SIZE(ar8xxx_sw_attr_globals), + }, + .attr_port = { + .attr = ar8xxx_sw_attr_port, + .n_attr = ARRAY_SIZE(ar8xxx_sw_attr_port), + }, + .attr_vlan = { + .attr = ar8xxx_sw_attr_vlan, + .n_attr = ARRAY_SIZE(ar8xxx_sw_attr_vlan), + }, + .get_port_pvid = ar8xxx_sw_get_pvid, + .set_port_pvid = ar8xxx_sw_set_pvid, + .get_vlan_ports = ar8xxx_sw_get_ports, + .set_vlan_ports = ar8xxx_sw_set_ports, + .apply_config = ar8xxx_sw_hw_apply, + .reset_switch = ar8xxx_sw_reset_switch, + .get_port_link = ar8xxx_sw_get_port_link, +}; + +static const struct switch_dev_ops ar8327_sw_ops = { .attr_global = { - .attr = ar8216_globals, - .n_attr = ARRAY_SIZE(ar8216_globals), + .attr = ar8327_sw_attr_globals, + .n_attr = ARRAY_SIZE(ar8327_sw_attr_globals), }, .attr_port = { - .attr = ar8216_port, - .n_attr = ARRAY_SIZE(ar8216_port), + .attr = ar8xxx_sw_attr_port, + .n_attr = ARRAY_SIZE(ar8xxx_sw_attr_port), }, .attr_vlan = { - .attr = ar8216_vlan, - .n_attr = ARRAY_SIZE(ar8216_vlan), + .attr = ar8xxx_sw_attr_vlan, + .n_attr = ARRAY_SIZE(ar8xxx_sw_attr_vlan), }, - .get_port_pvid = ar8216_sw_get_pvid, - .set_port_pvid = ar8216_sw_set_pvid, - .get_vlan_ports = ar8216_sw_get_ports, - .set_vlan_ports = ar8216_sw_set_ports, - .apply_config = ar8216_sw_hw_apply, - .reset_switch = ar8216_sw_reset_switch, - .get_port_link = ar8216_sw_get_port_link, + .get_port_pvid = ar8xxx_sw_get_pvid, + .set_port_pvid = ar8xxx_sw_set_pvid, + .get_vlan_ports = ar8xxx_sw_get_ports, + .set_vlan_ports = ar8xxx_sw_set_ports, + .apply_config = ar8xxx_sw_hw_apply, + .reset_switch = ar8xxx_sw_reset_switch, + .get_port_link = ar8xxx_sw_get_port_link, }; static int -ar8216_id_chip(struct ar8216_priv *priv) +ar8xxx_id_chip(struct ar8xxx_priv *priv) { u32 val; u16 id; int i; - val = ar8216_mii_read(priv, AR8216_REG_CTRL); + val = priv->read(priv, AR8216_REG_CTRL); if (val == ~0) return -ENODEV; @@ -1259,7 +2044,7 @@ ar8216_id_chip(struct ar8216_priv *priv) for (i = 0; i < AR8X16_PROBE_RETRIES; i++) { u16 t; - val = ar8216_mii_read(priv, AR8216_REG_CTRL); + val = priv->read(priv, AR8216_REG_CTRL); if (val == ~0) return -ENODEV; @@ -1286,11 +2071,8 @@ ar8216_id_chip(struct ar8216_priv *priv) priv->chip = &ar8327_chip; break; default: - printk(KERN_DEBUG - "ar8216: Unknown Atheros device [ver=%d, rev=%d, phy_id=%04x%04x]\n", - priv->chip_ver, priv->chip_rev, - mdiobus_read(priv->phy->bus, priv->phy->addr, 2), - mdiobus_read(priv->phy->bus, priv->phy->addr, 3)); + pr_err("ar8216: Unknown Atheros device [ver=%d, rev=%d]\n", + priv->chip_ver, priv->chip_rev); return -ENODEV; } @@ -1298,87 +2080,127 @@ ar8216_id_chip(struct ar8216_priv *priv) return 0; } +static void +ar8xxx_mib_work_func(struct work_struct *work) +{ + struct ar8xxx_priv *priv; + int err; + + priv = container_of(work, struct ar8xxx_priv, mib_work.work); + + mutex_lock(&priv->mib_lock); + + err = ar8xxx_mib_capture(priv); + if (err) + goto next_port; + + ar8xxx_mib_fetch_port_stat(priv, priv->mib_next_port, false); + +next_port: + priv->mib_next_port++; + if (priv->mib_next_port >= priv->dev.ports) + priv->mib_next_port = 0; + + mutex_unlock(&priv->mib_lock); + schedule_delayed_work(&priv->mib_work, + msecs_to_jiffies(AR8XXX_MIB_WORK_DELAY)); +} + static int -ar8216_config_init(struct phy_device *pdev) +ar8xxx_mib_init(struct ar8xxx_priv *priv) { - struct ar8216_priv *priv = pdev->priv; - struct net_device *dev = pdev->attached_dev; - struct switch_dev *swdev; - int ret; + unsigned int len; - if (!priv) { - priv = kzalloc(sizeof(struct ar8216_priv), GFP_KERNEL); - if (priv == NULL) - return -ENOMEM; - } + if (!ar8xxx_has_mib_counters(priv)) + return 0; - priv->phy = pdev; + BUG_ON(!priv->chip->mib_decs || !priv->chip->num_mibs); - ret = ar8216_id_chip(priv); - if (ret) - goto err_free_priv; + len = priv->dev.ports * priv->chip->num_mibs * + sizeof(*priv->mib_stats); + priv->mib_stats = kzalloc(len, GFP_KERNEL); - if (pdev->addr != 0) { - if (ar8xxx_has_gige(priv)) { - pdev->supported |= SUPPORTED_1000baseT_Full; - pdev->advertising |= ADVERTISED_1000baseT_Full; - } + if (!priv->mib_stats) + return -ENOMEM; - if (chip_is_ar8316(priv)) { - /* check if we're attaching to the switch twice */ - pdev = pdev->bus->phy_map[0]; - if (!pdev) { - kfree(priv); - return 0; - } + return 0; +} - /* switch device has not been initialized, reuse priv */ - if (!pdev->priv) { - priv->port4_phy = true; - pdev->priv = priv; - return 0; - } +static void +ar8xxx_mib_start(struct ar8xxx_priv *priv) +{ + if (!ar8xxx_has_mib_counters(priv)) + return; - kfree(priv); + schedule_delayed_work(&priv->mib_work, + msecs_to_jiffies(AR8XXX_MIB_WORK_DELAY)); +} - /* switch device has been initialized, reinit */ - priv = pdev->priv; - priv->dev.ports = (AR8216_NUM_PORTS - 1); - priv->initialized = false; - priv->port4_phy = true; - ar8316_hw_init(priv); - return 0; - } +static void +ar8xxx_mib_stop(struct ar8xxx_priv *priv) +{ + if (!ar8xxx_has_mib_counters(priv)) + return; - kfree(priv); - return 0; - } + cancel_delayed_work(&priv->mib_work); +} - if (ar8xxx_has_gige(priv)) - pdev->supported = SUPPORTED_1000baseT_Full; - else - pdev->supported = SUPPORTED_100baseT_Full; - pdev->advertising = pdev->supported; +static struct ar8xxx_priv * +ar8xxx_create(void) +{ + struct ar8xxx_priv *priv; + + priv = kzalloc(sizeof(struct ar8xxx_priv), GFP_KERNEL); + if (priv == NULL) + return NULL; mutex_init(&priv->reg_mutex); - priv->read = ar8216_mii_read; - priv->write = ar8216_mii_write; + mutex_init(&priv->mib_lock); + INIT_DELAYED_WORK(&priv->mib_work, ar8xxx_mib_work_func); + + return priv; +} - pdev->priv = priv; +static void +ar8xxx_free(struct ar8xxx_priv *priv) +{ + kfree(priv->mib_stats); + kfree(priv); +} + +static struct ar8xxx_priv * +ar8xxx_create_mii(struct mii_bus *bus) +{ + struct ar8xxx_priv *priv; + + priv = ar8xxx_create(); + if (priv) { + priv->mii_bus = bus; + priv->read = ar8xxx_mii_read; + priv->write = ar8xxx_mii_write; + } + + return priv; +} + +static int +ar8xxx_probe_switch(struct ar8xxx_priv *priv) +{ + struct switch_dev *swdev; + int ret; + + ret = ar8xxx_id_chip(priv); + if (ret) + return ret; swdev = &priv->dev; swdev->cpu_port = AR8216_PORT_CPU; - swdev->ops = &ar8216_sw_ops; - swdev->ports = AR8216_NUM_PORTS; + swdev->ops = &ar8xxx_sw_ops; if (chip_is_ar8316(priv)) { swdev->name = "Atheros AR8316"; swdev->vlans = AR8X16_MAX_VLANS; - - if (priv->port4_phy) { - /* port 5 connected to the other mac, therefore unusable */ - swdev->ports = (AR8216_NUM_PORTS - 1); - } + swdev->ports = AR8216_NUM_PORTS; } else if (chip_is_ar8236(priv)) { swdev->name = "Atheros AR8236"; swdev->vlans = AR8216_NUM_VLANS; @@ -1387,50 +2209,89 @@ ar8216_config_init(struct phy_device *pdev) swdev->name = "Atheros AR8327"; swdev->vlans = AR8X16_MAX_VLANS; swdev->ports = AR8327_NUM_PORTS; + swdev->ops = &ar8327_sw_ops; } else { swdev->name = "Atheros AR8216"; swdev->vlans = AR8216_NUM_VLANS; + swdev->ports = AR8216_NUM_PORTS; } - ret = register_switch(&priv->dev, pdev->attached_dev); + ret = ar8xxx_mib_init(priv); if (ret) - goto err_free_priv; + return ret; - printk(KERN_INFO "%s: %s switch driver attached.\n", - pdev->attached_dev->name, swdev->name); + return 0; +} + +static int +ar8xxx_start(struct ar8xxx_priv *priv) +{ + int ret; priv->init = true; ret = priv->chip->hw_init(priv); if (ret) - goto err_free_priv; + return ret; - ret = ar8216_sw_reset_switch(&priv->dev); + ret = ar8xxx_sw_reset_switch(&priv->dev); if (ret) - goto err_free_priv; + return ret; + + priv->init = false; + + ar8xxx_mib_start(priv); + + return 0; +} + +static int +ar8xxx_phy_config_init(struct phy_device *phydev) +{ + struct ar8xxx_priv *priv = phydev->priv; + struct net_device *dev = phydev->attached_dev; + int ret; - dev->phy_ptr = priv; + if (WARN_ON(!priv)) + return -ENODEV; + + if (chip_is_ar8327(priv)) + return 0; + + priv->phy = phydev; + + if (phydev->addr != 0) { + if (chip_is_ar8316(priv)) { + /* switch device has been initialized, reinit */ + priv->dev.ports = (AR8216_NUM_PORTS - 1); + priv->initialized = false; + priv->port4_phy = true; + ar8316_hw_init(priv); + return 0; + } + + return 0; + } + + ret = ar8xxx_start(priv); + if (ret) + return ret; /* VID fixup only needed on ar8216 */ - if (chip_is_ar8216(priv) && pdev->addr == 0) { + if (chip_is_ar8216(priv)) { + dev->phy_ptr = priv; dev->priv_flags |= IFF_NO_IP_ALIGN; dev->eth_mangle_rx = ar8216_mangle_rx; dev->eth_mangle_tx = ar8216_mangle_tx; } - priv->init = false; - return 0; - -err_free_priv: - kfree(priv); - return ret; } static int -ar8216_read_status(struct phy_device *phydev) +ar8xxx_phy_read_status(struct phy_device *phydev) { - struct ar8216_priv *priv = phydev->priv; + struct ar8xxx_priv *priv = phydev->priv; struct switch_port_link link; int ret; @@ -1470,7 +2331,7 @@ ar8216_read_status(struct phy_device *phydev) } static int -ar8216_config_aneg(struct phy_device *phydev) +ar8xxx_phy_config_aneg(struct phy_device *phydev) { if (phydev->addr == 0) return 0; @@ -1478,59 +2339,192 @@ ar8216_config_aneg(struct phy_device *phydev) return genphy_config_aneg(phydev); } +static const u32 ar8xxx_phy_ids[] = { + 0x004dd033, + 0x004dd034, + 0x004dd041, + 0x004dd042, +}; + +static bool +ar8xxx_phy_match(u32 phy_id) +{ + int i; + + for (i = 0; i < ARRAY_SIZE(ar8xxx_phy_ids); i++) + if (phy_id == ar8xxx_phy_ids[i]) + return true; + + return false; +} + +static bool +ar8xxx_is_possible(struct mii_bus *bus) +{ + unsigned i; + + for (i = 0; i < 4; i++) { + u32 phy_id; + + phy_id = mdiobus_read(bus, i, MII_PHYSID1) << 16; + phy_id |= mdiobus_read(bus, i, MII_PHYSID2); + if (!ar8xxx_phy_match(phy_id)) { + pr_debug("ar8xxx: unknown PHY at %s:%02x id:%08x\n", + dev_name(&bus->dev), i, phy_id); + return false; + } + } + + return true; +} + static int -ar8216_probe(struct phy_device *pdev) +ar8xxx_phy_probe(struct phy_device *phydev) { - struct ar8216_priv priv; + struct ar8xxx_priv *priv; + struct switch_dev *swdev; + int ret; + + /* skip PHYs at unused adresses */ + if (phydev->addr != 0 && phydev->addr != 4) + return -ENODEV; + + if (!ar8xxx_is_possible(phydev->bus)) + return -ENODEV; + + mutex_lock(&ar8xxx_dev_list_lock); + list_for_each_entry(priv, &ar8xxx_dev_list, list) + if (priv->mii_bus == phydev->bus) + goto found; + + priv = ar8xxx_create_mii(phydev->bus); + if (priv == NULL) { + ret = -ENOMEM; + goto unlock; + } + + ret = ar8xxx_probe_switch(priv); + if (ret) + goto free_priv; + + swdev = &priv->dev; + swdev->alias = dev_name(&priv->mii_bus->dev); + ret = register_switch(swdev, NULL); + if (ret) + goto free_priv; + + pr_info("%s: %s switch registered on %s\n", + swdev->devname, swdev->name, dev_name(&priv->mii_bus->dev)); + +found: + priv->use_count++; + + if (phydev->addr == 0) { + if (ar8xxx_has_gige(priv)) { + phydev->supported = SUPPORTED_1000baseT_Full; + phydev->advertising = ADVERTISED_1000baseT_Full; + } else { + phydev->supported = SUPPORTED_100baseT_Full; + phydev->advertising = ADVERTISED_100baseT_Full; + } + + if (chip_is_ar8327(priv)) { + priv->phy = phydev; + + ret = ar8xxx_start(priv); + if (ret) + goto err_unregister_switch; + } + } else { + if (ar8xxx_has_gige(priv)) { + phydev->supported |= SUPPORTED_1000baseT_Full; + phydev->advertising |= ADVERTISED_1000baseT_Full; + } + } + + phydev->priv = priv; + + list_add(&priv->list, &ar8xxx_dev_list); - priv.phy = pdev; - return ar8216_id_chip(&priv); + mutex_unlock(&ar8xxx_dev_list_lock); + + return 0; + +err_unregister_switch: + if (--priv->use_count) + goto unlock; + + unregister_switch(&priv->dev); + +free_priv: + ar8xxx_free(priv); +unlock: + mutex_unlock(&ar8xxx_dev_list_lock); + return ret; } static void -ar8216_remove(struct phy_device *pdev) +ar8xxx_phy_detach(struct phy_device *phydev) { - struct ar8216_priv *priv = pdev->priv; - struct net_device *dev = pdev->attached_dev; + struct net_device *dev = phydev->attached_dev; - if (!priv) + if (!dev) return; + dev->phy_ptr = NULL; dev->priv_flags &= ~IFF_NO_IP_ALIGN; dev->eth_mangle_rx = NULL; dev->eth_mangle_tx = NULL; +} - if (pdev->addr == 0) - unregister_switch(&priv->dev); - kfree(priv); +static void +ar8xxx_phy_remove(struct phy_device *phydev) +{ + struct ar8xxx_priv *priv = phydev->priv; + + if (WARN_ON(!priv)) + return; + + phydev->priv = NULL; + if (--priv->use_count > 0) + return; + + mutex_lock(&ar8xxx_dev_list_lock); + list_del(&priv->list); + mutex_unlock(&ar8xxx_dev_list_lock); + + unregister_switch(&priv->dev); + ar8xxx_mib_stop(priv); + ar8xxx_free(priv); } -static struct phy_driver ar8216_driver = { +static struct phy_driver ar8xxx_phy_driver = { .phy_id = 0x004d0000, .name = "Atheros AR8216/AR8236/AR8316", .phy_id_mask = 0xffff0000, .features = PHY_BASIC_FEATURES, - .probe = ar8216_probe, - .remove = ar8216_remove, - .config_init = &ar8216_config_init, - .config_aneg = &ar8216_config_aneg, - .read_status = &ar8216_read_status, + .probe = ar8xxx_phy_probe, + .remove = ar8xxx_phy_remove, + .detach = ar8xxx_phy_detach, + .config_init = ar8xxx_phy_config_init, + .config_aneg = ar8xxx_phy_config_aneg, + .read_status = ar8xxx_phy_read_status, .driver = { .owner = THIS_MODULE }, }; int __init -ar8216_init(void) +ar8xxx_init(void) { - return phy_driver_register(&ar8216_driver); + return phy_driver_register(&ar8xxx_phy_driver); } void __exit -ar8216_exit(void) +ar8xxx_exit(void) { - phy_driver_unregister(&ar8216_driver); + phy_driver_unregister(&ar8xxx_phy_driver); } -module_init(ar8216_init); -module_exit(ar8216_exit); +module_init(ar8xxx_init); +module_exit(ar8xxx_exit); MODULE_LICENSE("GPL"); diff --git a/target/linux/generic/files/drivers/net/phy/ar8216.h b/target/linux/generic/files/drivers/net/phy/ar8216.h index 8948c5205..086d58fba 100644 --- a/target/linux/generic/files/drivers/net/phy/ar8216.h +++ b/target/linux/generic/files/drivers/net/phy/ar8216.h @@ -94,6 +94,21 @@ #define AR8216_ATU_CTRL_AGE_TIME BITS(0, 16) #define AR8216_ATU_CTRL_AGE_TIME_S 0 +#define AR8216_REG_MIB_FUNC 0x0080 +#define AR8216_MIB_TIMER BITS(0, 16) +#define AR8216_MIB_AT_HALF_EN BIT(16) +#define AR8216_MIB_BUSY BIT(17) +#define AR8216_MIB_FUNC BITS(24, 3) +#define AR8216_MIB_FUNC_S 24 +#define AR8216_MIB_FUNC_NO_OP 0x0 +#define AR8216_MIB_FUNC_FLUSH 0x1 +#define AR8216_MIB_FUNC_CAPTURE 0x3 +#define AR8236_MIB_EN BIT(30) + +#define AR8216_REG_GLOBAL_CPUPORT 0x0078 +#define AR8216_GLOBAL_CPUPORT_MIRROR_PORT BITS(4, 4) +#define AR8216_GLOBAL_CPUPORT_MIRROR_PORT_S 4 + #define AR8216_PORT_OFFSET(_i) (0x0100 * (_i + 1)) #define AR8216_REG_PORT_STATUS(_i) (AR8216_PORT_OFFSET(_i) + 0x0000) #define AR8216_PORT_STATUS_SPEED BITS(0,2) @@ -149,6 +164,45 @@ #define AR8216_REG_PORT_RATE(_i) (AR8216_PORT_OFFSET(_i) + 0x000c) #define AR8216_REG_PORT_PRIO(_i) (AR8216_PORT_OFFSET(_i) + 0x0010) +#define AR8216_REG_PORT_STATS_BASE(_i) (0x19000 + (_i) * 0xa0) + +#define AR8216_STATS_RXBROAD 0x00 +#define AR8216_STATS_RXPAUSE 0x04 +#define AR8216_STATS_RXMULTI 0x08 +#define AR8216_STATS_RXFCSERR 0x0c +#define AR8216_STATS_RXALIGNERR 0x10 +#define AR8216_STATS_RXRUNT 0x14 +#define AR8216_STATS_RXFRAGMENT 0x18 +#define AR8216_STATS_RX64BYTE 0x1c +#define AR8216_STATS_RX128BYTE 0x20 +#define AR8216_STATS_RX256BYTE 0x24 +#define AR8216_STATS_RX512BYTE 0x28 +#define AR8216_STATS_RX1024BYTE 0x2c +#define AR8216_STATS_RXMAXBYTE 0x30 +#define AR8216_STATS_RXTOOLONG 0x34 +#define AR8216_STATS_RXGOODBYTE 0x38 +#define AR8216_STATS_RXBADBYTE 0x40 +#define AR8216_STATS_RXOVERFLOW 0x48 +#define AR8216_STATS_FILTERED 0x4c +#define AR8216_STATS_TXBROAD 0x50 +#define AR8216_STATS_TXPAUSE 0x54 +#define AR8216_STATS_TXMULTI 0x58 +#define AR8216_STATS_TXUNDERRUN 0x5c +#define AR8216_STATS_TX64BYTE 0x60 +#define AR8216_STATS_TX128BYTE 0x64 +#define AR8216_STATS_TX256BYTE 0x68 +#define AR8216_STATS_TX512BYTE 0x6c +#define AR8216_STATS_TX1024BYTE 0x70 +#define AR8216_STATS_TXMAXBYTE 0x74 +#define AR8216_STATS_TXOVERSIZE 0x78 +#define AR8216_STATS_TXBYTE 0x7c +#define AR8216_STATS_TXCOLLISION 0x84 +#define AR8216_STATS_TXABORTCOL 0x88 +#define AR8216_STATS_TXMULTICOL 0x8c +#define AR8216_STATS_TXSINGLECOL 0x90 +#define AR8216_STATS_TXEXCDEFER 0x94 +#define AR8216_STATS_TXDEFER 0x98 +#define AR8216_STATS_TXLATECOL 0x9c #define AR8236_REG_PORT_VLAN(_i) (AR8216_PORT_OFFSET((_i)) + 0x0008) #define AR8236_PORT_VLAN_DEFAULT_ID BITS(16, 12) @@ -163,6 +217,78 @@ #define AR8236_PORT_VLAN2_VLAN_MODE BITS(30, 2) #define AR8236_PORT_VLAN2_VLAN_MODE_S 30 +#define AR8236_REG_PORT_STATS_BASE(_i) (0x20000 + (_i) * 0x100) + +#define AR8236_STATS_RXBROAD 0x00 +#define AR8236_STATS_RXPAUSE 0x04 +#define AR8236_STATS_RXMULTI 0x08 +#define AR8236_STATS_RXFCSERR 0x0c +#define AR8236_STATS_RXALIGNERR 0x10 +#define AR8236_STATS_RXRUNT 0x14 +#define AR8236_STATS_RXFRAGMENT 0x18 +#define AR8236_STATS_RX64BYTE 0x1c +#define AR8236_STATS_RX128BYTE 0x20 +#define AR8236_STATS_RX256BYTE 0x24 +#define AR8236_STATS_RX512BYTE 0x28 +#define AR8236_STATS_RX1024BYTE 0x2c +#define AR8236_STATS_RX1518BYTE 0x30 +#define AR8236_STATS_RXMAXBYTE 0x34 +#define AR8236_STATS_RXTOOLONG 0x38 +#define AR8236_STATS_RXGOODBYTE 0x3c +#define AR8236_STATS_RXBADBYTE 0x44 +#define AR8236_STATS_RXOVERFLOW 0x4c +#define AR8236_STATS_FILTERED 0x50 +#define AR8236_STATS_TXBROAD 0x54 +#define AR8236_STATS_TXPAUSE 0x58 +#define AR8236_STATS_TXMULTI 0x5c +#define AR8236_STATS_TXUNDERRUN 0x60 +#define AR8236_STATS_TX64BYTE 0x64 +#define AR8236_STATS_TX128BYTE 0x68 +#define AR8236_STATS_TX256BYTE 0x6c +#define AR8236_STATS_TX512BYTE 0x70 +#define AR8236_STATS_TX1024BYTE 0x74 +#define AR8236_STATS_TX1518BYTE 0x78 +#define AR8236_STATS_TXMAXBYTE 0x7c +#define AR8236_STATS_TXOVERSIZE 0x80 +#define AR8236_STATS_TXBYTE 0x84 +#define AR8236_STATS_TXCOLLISION 0x8c +#define AR8236_STATS_TXABORTCOL 0x90 +#define AR8236_STATS_TXMULTICOL 0x94 +#define AR8236_STATS_TXSINGLECOL 0x98 +#define AR8236_STATS_TXEXCDEFER 0x9c +#define AR8236_STATS_TXDEFER 0xa0 +#define AR8236_STATS_TXLATECOL 0xa4 + +#define AR8316_REG_POSTRIP 0x0008 +#define AR8316_POSTRIP_MAC0_GMII_EN BIT(0) +#define AR8316_POSTRIP_MAC0_RGMII_EN BIT(1) +#define AR8316_POSTRIP_PHY4_GMII_EN BIT(2) +#define AR8316_POSTRIP_PHY4_RGMII_EN BIT(3) +#define AR8316_POSTRIP_MAC0_MAC_MODE BIT(4) +#define AR8316_POSTRIP_RTL_MODE BIT(5) +#define AR8316_POSTRIP_RGMII_RXCLK_DELAY_EN BIT(6) +#define AR8316_POSTRIP_RGMII_TXCLK_DELAY_EN BIT(7) +#define AR8316_POSTRIP_SERDES_EN BIT(8) +#define AR8316_POSTRIP_SEL_ANA_RST BIT(9) +#define AR8316_POSTRIP_GATE_25M_EN BIT(10) +#define AR8316_POSTRIP_SEL_CLK25M BIT(11) +#define AR8316_POSTRIP_HIB_PULSE_HW BIT(12) +#define AR8316_POSTRIP_DBG_MODE_I BIT(13) +#define AR8316_POSTRIP_MAC5_MAC_MODE BIT(14) +#define AR8316_POSTRIP_MAC5_PHY_MODE BIT(15) +#define AR8316_POSTRIP_POWER_DOWN_HW BIT(16) +#define AR8316_POSTRIP_LPW_STATE_EN BIT(17) +#define AR8316_POSTRIP_MAN_EN BIT(18) +#define AR8316_POSTRIP_PHY_PLL_ON BIT(19) +#define AR8316_POSTRIP_LPW_EXIT BIT(20) +#define AR8316_POSTRIP_TXDELAY_S0 BIT(21) +#define AR8316_POSTRIP_TXDELAY_S1 BIT(22) +#define AR8316_POSTRIP_RXDELAY_S0 BIT(23) +#define AR8316_POSTRIP_LED_OPEN_EN BIT(24) +#define AR8316_POSTRIP_SPI_EN BIT(25) +#define AR8316_POSTRIP_RXDELAY_S1 BIT(26) +#define AR8316_POSTRIP_POWER_ON_SEL BIT(31) + #define AR8327_NUM_PORTS 7 #define AR8327_NUM_PHYS 5 #define AR8327_PORTS_ALL 0x7f @@ -189,6 +315,7 @@ #define AR8327_PAD_PHYX_GMII_EN BIT(16) #define AR8327_PAD_PHYX_RGMII_EN BIT(17) #define AR8327_PAD_PHYX_MII_EN BIT(18) +#define AR8327_PAD_SGMII_DELAY_EN BIT(19) #define AR8327_PAD_RGMII_RXCLK_DELAY_SEL BITS(20, 2) #define AR8327_PAD_RGMII_RXCLK_DELAY_SEL_S 20 #define AR8327_PAD_RGMII_TXCLK_DELAY_SEL BITS(22, 2) @@ -207,6 +334,13 @@ #define AR8327_REG_INT_STATUS1 0x024 #define AR8327_REG_INT_MASK0 0x028 #define AR8327_REG_INT_MASK1 0x02c + +#define AR8327_REG_MODULE_EN 0x030 +#define AR8327_MODULE_EN_MIB BIT(0) + +#define AR8327_REG_MIB_FUNC 0x034 +#define AR8327_MIB_CPU_KEEP BIT(20) + #define AR8327_REG_SERVICE_TAG 0x048 #define AR8327_REG_LED_CTRL0 0x050 #define AR8327_REG_LED_CTRL1 0x054 @@ -303,9 +437,15 @@ #define AR8327_PORT_LOOKUP_STATE BITS(16, 3) #define AR8327_PORT_LOOKUP_STATE_S 16 #define AR8327_PORT_LOOKUP_LEARN BIT(20) +#define AR8327_PORT_LOOKUP_ING_MIRROR_EN BIT(25) #define AR8327_REG_PORT_PRIO(_i) (0x664 + (_i) * 0xc) +#define AR8327_REG_PORT_HOL_CTRL1(_i) (0x974 + (_i) * 0x8) +#define AR8327_PORT_HOL_CTRL1_EG_MIRROR_EN BIT(16) + +#define AR8327_REG_PORT_STATS_BASE(_i) (0x1000 + (_i) * 0x100) + /* port speed */ enum { AR8216_PORT_SPEED_10M = 0, diff --git a/target/linux/generic/files/drivers/net/phy/b53/Kconfig b/target/linux/generic/files/drivers/net/phy/b53/Kconfig new file mode 100644 index 000000000..3b514fb62 --- /dev/null +++ b/target/linux/generic/files/drivers/net/phy/b53/Kconfig @@ -0,0 +1,30 @@ +menuconfig B53 + tristate "Broadcom bcm53xx managed switch support" + depends on SWCONFIG + help + This driver adds support for Broadcom managed switch chips. It supports + BCM5325E, BCM5365, BCM539x, BCM53115 and BCM53125 as well as BCM63XX + integrated switches. + +config B53_SPI_DRIVER + tristate "B53 SPI connected switch driver" + depends on B53 && SPI + help + Select to enable support for registering switches configured through SPI. + +config B53_PHY_DRIVER + tristate "B53 MDIO connected switch driver" + depends on B53 + select B53_PHY_FIXUP + help + Select to enable support for registering switches configured through MDIO. + +config B53_MMAP_DRIVER + tristate "B53 MMAP connected switch driver" + depends on B53 + help + Select to enable support for memory-mapped switches like the BCM63XX + integrated switches. + +config B53_PHY_FIXUP + bool diff --git a/target/linux/generic/files/drivers/net/phy/b53/Makefile b/target/linux/generic/files/drivers/net/phy/b53/Makefile new file mode 100644 index 000000000..146196e08 --- /dev/null +++ b/target/linux/generic/files/drivers/net/phy/b53/Makefile @@ -0,0 +1,9 @@ +obj-$(CONFIG_B53) += b53_common.o + +obj-$(CONFIG_B53_PHY_FIXUP) += b53_phy_fixup.o + +obj-$(CONFIG_B53_MMAP_DRIVER) += b53_mmap.o +obj-$(CONFIG_B53_PHY_DRIVER) += b53_mdio.o +obj-$(CONFIG_B53_SPI_DRIVER) += b53_spi.o + +ccflags-y += -Werror diff --git a/target/linux/generic/files/drivers/net/phy/b53/b53_common.c b/target/linux/generic/files/drivers/net/phy/b53/b53_common.c new file mode 100644 index 000000000..c74bf7fbc --- /dev/null +++ b/target/linux/generic/files/drivers/net/phy/b53/b53_common.c @@ -0,0 +1,1292 @@ +/* + * B53 switch driver main logic + * + * Copyright (C) 2011-2013 Jonas Gorski <jogo@openwrt.org> + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt + +#include <linux/delay.h> +#include <linux/export.h> +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/switch.h> +#include <linux/platform_data/b53.h> + +#include "b53_regs.h" +#include "b53_priv.h" + +/* buffer size needed for displaying all MIBs with max'd values */ +#define B53_BUF_SIZE 1188 + +struct b53_mib_desc { + u8 size; + u8 offset; + const char *name; +}; + + +/* BCM5365 MIB counters */ +static const struct b53_mib_desc b53_mibs_65[] = { + { 8, 0x00, "TxOctets" }, + { 4, 0x08, "TxDropPkts" }, + { 4, 0x10, "TxBroadcastPkts" }, + { 4, 0x14, "TxMulticastPkts" }, + { 4, 0x18, "TxUnicastPkts" }, + { 4, 0x1c, "TxCollisions" }, + { 4, 0x20, "TxSingleCollision" }, + { 4, 0x24, "TxMultipleCollision" }, + { 4, 0x28, "TxDeferredTransmit" }, + { 4, 0x2c, "TxLateCollision" }, + { 4, 0x30, "TxExcessiveCollision" }, + { 4, 0x38, "TxPausePkts" }, + { 8, 0x44, "RxOctets" }, + { 4, 0x4c, "RxUndersizePkts" }, + { 4, 0x50, "RxPausePkts" }, + { 4, 0x54, "Pkts64Octets" }, + { 4, 0x58, "Pkts65to127Octets" }, + { 4, 0x5c, "Pkts128to255Octets" }, + { 4, 0x60, "Pkts256to511Octets" }, + { 4, 0x64, "Pkts512to1023Octets" }, + { 4, 0x68, "Pkts1024to1522Octets" }, + { 4, 0x6c, "RxOversizePkts" }, + { 4, 0x70, "RxJabbers" }, + { 4, 0x74, "RxAlignmentErrors" }, + { 4, 0x78, "RxFCSErrors" }, + { 8, 0x7c, "RxGoodOctets" }, + { 4, 0x84, "RxDropPkts" }, + { 4, 0x88, "RxUnicastPkts" }, + { 4, 0x8c, "RxMulticastPkts" }, + { 4, 0x90, "RxBroadcastPkts" }, + { 4, 0x94, "RxSAChanges" }, + { 4, 0x98, "RxFragments" }, + { }, +}; + +/* BCM63xx MIB counters */ +static const struct b53_mib_desc b53_mibs_63xx[] = { + { 8, 0x00, "TxOctets" }, + { 4, 0x08, "TxDropPkts" }, + { 4, 0x0c, "TxQoSPkts" }, + { 4, 0x10, "TxBroadcastPkts" }, + { 4, 0x14, "TxMulticastPkts" }, + { 4, 0x18, "TxUnicastPkts" }, + { 4, 0x1c, "TxCollisions" }, + { 4, 0x20, "TxSingleCollision" }, + { 4, 0x24, "TxMultipleCollision" }, + { 4, 0x28, "TxDeferredTransmit" }, + { 4, 0x2c, "TxLateCollision" }, + { 4, 0x30, "TxExcessiveCollision" }, + { 4, 0x38, "TxPausePkts" }, + { 8, 0x3c, "TxQoSOctets" }, + { 8, 0x44, "RxOctets" }, + { 4, 0x4c, "RxUndersizePkts" }, + { 4, 0x50, "RxPausePkts" }, + { 4, 0x54, "Pkts64Octets" }, + { 4, 0x58, "Pkts65to127Octets" }, + { 4, 0x5c, "Pkts128to255Octets" }, + { 4, 0x60, "Pkts256to511Octets" }, + { 4, 0x64, "Pkts512to1023Octets" }, + { 4, 0x68, "Pkts1024to1522Octets" }, + { 4, 0x6c, "RxOversizePkts" }, + { 4, 0x70, "RxJabbers" }, + { 4, 0x74, "RxAlignmentErrors" }, + { 4, 0x78, "RxFCSErrors" }, + { 8, 0x7c, "RxGoodOctets" }, + { 4, 0x84, "RxDropPkts" }, + { 4, 0x88, "RxUnicastPkts" }, + { 4, 0x8c, "RxMulticastPkts" }, + { 4, 0x90, "RxBroadcastPkts" }, + { 4, 0x94, "RxSAChanges" }, + { 4, 0x98, "RxFragments" }, + { 4, 0xa0, "RxSymbolErrors" }, + { 4, 0xa4, "RxQoSPkts" }, + { 8, 0xa8, "RxQoSOctets" }, + { 4, 0xb0, "Pkts1523to2047Octets" }, + { 4, 0xb4, "Pkts2048to4095Octets" }, + { 4, 0xb8, "Pkts4096to8191Octets" }, + { 4, 0xbc, "Pkts8192to9728Octets" }, + { 4, 0xc0, "RxDiscarded" }, + { } +}; + +/* MIB counters */ +static const struct b53_mib_desc b53_mibs[] = { + { 8, 0x00, "TxOctets" }, + { 4, 0x08, "TxDropPkts" }, + { 4, 0x10, "TxBroadcastPkts" }, + { 4, 0x14, "TxMulticastPkts" }, + { 4, 0x18, "TxUnicastPkts" }, + { 4, 0x1c, "TxCollisions" }, + { 4, 0x20, "TxSingleCollision" }, + { 4, 0x24, "TxMultipleCollision" }, + { 4, 0x28, "TxDeferredTransmit" }, + { 4, 0x2c, "TxLateCollision" }, + { 4, 0x30, "TxExcessiveCollision" }, + { 4, 0x38, "TxPausePkts" }, + { 8, 0x50, "RxOctets" }, + { 4, 0x58, "RxUndersizePkts" }, + { 4, 0x5c, "RxPausePkts" }, + { 4, 0x60, "Pkts64Octets" }, + { 4, 0x64, "Pkts65to127Octets" }, + { 4, 0x68, "Pkts128to255Octets" }, + { 4, 0x6c, "Pkts256to511Octets" }, + { 4, 0x70, "Pkts512to1023Octets" }, + { 4, 0x74, "Pkts1024to1522Octets" }, + { 4, 0x78, "RxOversizePkts" }, + { 4, 0x7c, "RxJabbers" }, + { 4, 0x80, "RxAlignmentErrors" }, + { 4, 0x84, "RxFCSErrors" }, + { 8, 0x88, "RxGoodOctets" }, + { 4, 0x90, "RxDropPkts" }, + { 4, 0x94, "RxUnicastPkts" }, + { 4, 0x98, "RxMulticastPkts" }, + { 4, 0x9c, "RxBroadcastPkts" }, + { 4, 0xa0, "RxSAChanges" }, + { 4, 0xa4, "RxFragments" }, + { 4, 0xa8, "RxJumboPkts" }, + { 4, 0xac, "RxSymbolErrors" }, + { 4, 0xc0, "RxDiscarded" }, + { } +}; + +static int b53_do_vlan_op(struct b53_device *dev, u8 op) +{ + unsigned int i; + + b53_write8(dev, B53_ARLIO_PAGE, dev->vta_regs[0], VTA_START_CMD | op); + + for (i = 0; i < 10; i++) { + u8 vta; + + b53_read8(dev, B53_ARLIO_PAGE, dev->vta_regs[0], &vta); + if (!(vta & VTA_START_CMD)) + return 0; + + usleep_range(100, 200); + } + + return -EIO; +} + +static void b53_set_vlan_entry(struct b53_device *dev, u16 vid, u16 members, + u16 untag) +{ + if (is5325(dev)) { + u32 entry = 0; + + if (members) + entry = (untag << VA_UNTAG_S) | members | VA_VALID_25; + + b53_write32(dev, B53_VLAN_PAGE, B53_VLAN_WRITE_25, entry); + b53_write16(dev, B53_VLAN_PAGE, B53_VLAN_TABLE_ACCESS_25, vid | + VTA_RW_STATE_WR | VTA_RW_OP_EN); + } else if (is5365(dev)) { + u16 entry = 0; + + if (members) + entry = (untag << VA_UNTAG_S) | members | VA_VALID_65; + + b53_write16(dev, B53_VLAN_PAGE, B53_VLAN_WRITE_65, entry); + b53_write16(dev, B53_VLAN_PAGE, B53_VLAN_TABLE_ACCESS_65, vid | + VTA_RW_STATE_WR | VTA_RW_OP_EN); + } else { + b53_write16(dev, B53_ARLIO_PAGE, dev->vta_regs[1], vid); + b53_write32(dev, B53_ARLIO_PAGE, dev->vta_regs[2], + (untag << VTE_UNTAG_S) | members); + + b53_do_vlan_op(dev, VTA_CMD_WRITE); + } +} + +void b53_set_forwarding(struct b53_device *dev, int enable) +{ + u8 mgmt; + + b53_read8(dev, B53_CTRL_PAGE, B53_SWITCH_MODE, &mgmt); + + if (enable) + mgmt |= SM_SW_FWD_EN; + else + mgmt &= ~SM_SW_FWD_EN; + + b53_write8(dev, B53_CTRL_PAGE, B53_SWITCH_MODE, mgmt); +} + +static void b53_enable_vlan(struct b53_device *dev, int enable) +{ + u8 mgmt, vc0, vc1, vc4 = 0, vc5; + + b53_read8(dev, B53_CTRL_PAGE, B53_SWITCH_MODE, &mgmt); + b53_read8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL0, &vc0); + b53_read8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL1, &vc1); + + if (is5325(dev) || is5365(dev)) { + b53_read8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL4_25, &vc4); + b53_read8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL5_25, &vc5); + } else if (is63xx(dev)) { + b53_read8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL4_63XX, &vc4); + b53_read8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL5_63XX, &vc5); + } else { + b53_read8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL4, &vc4); + b53_read8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL5, &vc5); + } + + mgmt &= ~SM_SW_FWD_MODE; + + if (enable) { + vc0 |= VC0_VLAN_EN | VC0_VID_CHK_EN | VC0_VID_HASH_VID; + vc1 |= VC1_RX_MCST_UNTAG_EN | VC1_RX_MCST_FWD_EN; + vc4 &= ~VC4_ING_VID_CHECK_MASK; + vc4 |= VC4_ING_VID_VIO_DROP << VC4_ING_VID_CHECK_S; + vc5 |= VC5_DROP_VTABLE_MISS; + + if (is5325(dev)) + vc0 &= ~VC0_RESERVED_1; + + if (is5325(dev) || is5365(dev)) + vc1 |= VC1_RX_MCST_TAG_EN; + + if (!is5325(dev) && !is5365(dev)) { + if (dev->allow_vid_4095) + vc5 |= VC5_VID_FFF_EN; + else + vc5 &= ~VC5_VID_FFF_EN; + } + } else { + vc0 &= ~(VC0_VLAN_EN | VC0_VID_CHK_EN | VC0_VID_HASH_VID); + vc1 &= ~(VC1_RX_MCST_UNTAG_EN | VC1_RX_MCST_FWD_EN); + vc4 &= ~VC4_ING_VID_CHECK_MASK; + vc5 &= ~VC5_DROP_VTABLE_MISS; + + if (is5325(dev) || is5365(dev)) + vc4 |= VC4_ING_VID_VIO_FWD << VC4_ING_VID_CHECK_S; + else + vc4 |= VC4_ING_VID_VIO_TO_IMP << VC4_ING_VID_CHECK_S; + + if (is5325(dev) || is5365(dev)) + vc1 &= ~VC1_RX_MCST_TAG_EN; + + if (!is5325(dev) && !is5365(dev)) + vc5 &= ~VC5_VID_FFF_EN; + } + + b53_write8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL0, vc0); + b53_write8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL1, vc1); + + if (is5325(dev) || is5365(dev)) { + /* enable the high 8 bit vid check on 5325 */ + if (is5325(dev) && enable) + b53_write8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL3, + VC3_HIGH_8BIT_EN); + else + b53_write8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL3, 0); + + b53_write8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL4_25, vc4); + b53_write8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL5_25, vc5); + } else if (is63xx(dev)) { + b53_write16(dev, B53_VLAN_PAGE, B53_VLAN_CTRL3_63XX, 0); + b53_write8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL4_63XX, vc4); + b53_write8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL5_63XX, vc5); + } else { + b53_write16(dev, B53_VLAN_PAGE, B53_VLAN_CTRL3, 0); + b53_write8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL4, vc4); + b53_write8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL5, vc5); + } + + b53_write8(dev, B53_CTRL_PAGE, B53_SWITCH_MODE, mgmt); +} + +static int b53_set_jumbo(struct b53_device *dev, int enable, int allow_10_100) +{ + u32 port_mask = 0; + u16 max_size = JMS_MIN_SIZE; + + if (is5325(dev) || is5365(dev)) + return -EINVAL; + + if (enable) { + port_mask = dev->enabled_ports; + max_size = JMS_MAX_SIZE; + if (allow_10_100) + port_mask |= JPM_10_100_JUMBO_EN; + } + + b53_write32(dev, B53_JUMBO_PAGE, dev->jumbo_pm_reg, port_mask); + return b53_write16(dev, B53_JUMBO_PAGE, dev->jumbo_size_reg, max_size); +} + +static int b53_flush_arl(struct b53_device *dev) +{ + unsigned int i; + + b53_write8(dev, B53_CTRL_PAGE, B53_FAST_AGE_CTRL, + FAST_AGE_DONE | FAST_AGE_DYNAMIC | FAST_AGE_STATIC); + + for (i = 0; i < 10; i++) { + u8 fast_age_ctrl; + + b53_read8(dev, B53_CTRL_PAGE, B53_FAST_AGE_CTRL, + &fast_age_ctrl); + + if (!(fast_age_ctrl & FAST_AGE_DONE)) + return 0; + + mdelay(1); + } + + pr_warn("time out while flushing ARL\n"); + + return -EINVAL; +} + +static void b53_enable_ports(struct b53_device *dev) +{ + unsigned i; + + b53_for_each_port(dev, i) { + u8 port_ctrl; + u16 pvlan_mask; + + /* + * prevent leaking packets between wan and lan in unmanaged + * mode through port vlans. + */ + if (dev->enable_vlan || is_cpu_port(dev, i)) + pvlan_mask = 0x1ff; + else if (is531x5(dev)) + /* BCM53115 may use a different port as cpu port */ + pvlan_mask = BIT(dev->sw_dev.cpu_port); + else + pvlan_mask = BIT(B53_CPU_PORT); + + /* BCM5325 CPU port is at 8 */ + if ((is5325(dev) || is5365(dev)) && i == B53_CPU_PORT_25) + i = B53_CPU_PORT; + + if (dev->chip_id == BCM5398_DEVICE_ID && (i == 6 || i == 7)) + /* disable unused ports 6 & 7 */ + port_ctrl = PORT_CTRL_RX_DISABLE | PORT_CTRL_TX_DISABLE; + else if (i == B53_CPU_PORT) + port_ctrl = PORT_CTRL_RX_BCST_EN | + PORT_CTRL_RX_MCST_EN | + PORT_CTRL_RX_UCST_EN; + else + port_ctrl = 0; + + b53_write16(dev, B53_PVLAN_PAGE, B53_PVLAN_PORT_MASK(i), + pvlan_mask); + + /* port state is handled by bcm63xx_enet driver */ + if (!is63xx(dev)) + b53_write8(dev, B53_CTRL_PAGE, B53_PORT_CTRL(i), + port_ctrl); + } +} + +static void b53_enable_mib(struct b53_device *dev) +{ + u8 gc; + + b53_read8(dev, B53_CTRL_PAGE, B53_GLOBAL_CONFIG, &gc); + + gc &= ~(GC_RESET_MIB | GC_MIB_AC_EN); + + b53_write8(dev, B53_CTRL_PAGE, B53_GLOBAL_CONFIG, gc); +} + +static int b53_apply(struct b53_device *dev) +{ + int i; + + /* clear all vlan entries */ + if (is5325(dev) || is5365(dev)) { + for (i = 1; i < dev->sw_dev.vlans; i++) + b53_set_vlan_entry(dev, i, 0, 0); + } else { + b53_do_vlan_op(dev, VTA_CMD_CLEAR); + } + + b53_enable_vlan(dev, dev->enable_vlan); + + /* fill VLAN table */ + if (dev->enable_vlan) { + for (i = 0; i < dev->sw_dev.vlans; i++) { + struct b53_vlan *vlan = &dev->vlans[i]; + + if (!vlan->members) + continue; + + b53_set_vlan_entry(dev, i, vlan->members, vlan->untag); + } + + b53_for_each_port(dev, i) + b53_write16(dev, B53_VLAN_PAGE, + B53_VLAN_PORT_DEF_TAG(i), + dev->ports[i].pvid); + } else { + b53_for_each_port(dev, i) + b53_write16(dev, B53_VLAN_PAGE, + B53_VLAN_PORT_DEF_TAG(i), 1); + + } + + b53_enable_ports(dev); + + if (!is5325(dev) && !is5365(dev)) + b53_set_jumbo(dev, dev->enable_jumbo, 1); + + return 0; +} + +static int b53_switch_reset(struct b53_device *dev) +{ + u8 mgmt; + + b53_read8(dev, B53_CTRL_PAGE, B53_SWITCH_MODE, &mgmt); + + if (!(mgmt & SM_SW_FWD_EN)) { + mgmt &= ~SM_SW_FWD_MODE; + mgmt |= SM_SW_FWD_EN; + + b53_write8(dev, B53_CTRL_PAGE, B53_SWITCH_MODE, mgmt); + b53_read8(dev, B53_CTRL_PAGE, B53_SWITCH_MODE, &mgmt); + + if (!(mgmt & SM_SW_FWD_EN)) { + pr_err("Failed to enable switch!\n"); + return -EINVAL; + } + } + + /* enable all ports */ + b53_enable_ports(dev); + + /* configure MII port if necessary */ + if (is5325(dev)) { + u8 mii_port_override; + + b53_read8(dev, B53_CTRL_PAGE, B53_PORT_OVERRIDE_CTRL, + &mii_port_override); + /* reverse mii needs to be enabled */ + if (!(mii_port_override & PORT_OVERRIDE_RV_MII_25)) { + b53_write8(dev, B53_CTRL_PAGE, B53_PORT_OVERRIDE_CTRL, + mii_port_override | PORT_OVERRIDE_RV_MII_25); + b53_read8(dev, B53_CTRL_PAGE, B53_PORT_OVERRIDE_CTRL, + &mii_port_override); + + if (!(mii_port_override & PORT_OVERRIDE_RV_MII_25)) { + pr_err("Failed to enable reverse MII mode\n"); + return -EINVAL; + } + } + } else if (is531x5(dev) && dev->sw_dev.cpu_port == B53_CPU_PORT) { + u8 mii_port_override; + + b53_read8(dev, B53_CTRL_PAGE, B53_PORT_OVERRIDE_CTRL, + &mii_port_override); + b53_write8(dev, B53_CTRL_PAGE, B53_PORT_OVERRIDE_CTRL, + mii_port_override | PORT_OVERRIDE_EN | + PORT_OVERRIDE_LINK); + } + + b53_enable_mib(dev); + + return b53_flush_arl(dev); +} + +/* + * Swconfig glue functions + */ + +static int b53_global_get_vlan_enable(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct b53_device *priv = sw_to_b53(dev); + + val->value.i = priv->enable_vlan; + + return 0; +} + +static int b53_global_set_vlan_enable(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct b53_device *priv = sw_to_b53(dev); + + priv->enable_vlan = val->value.i; + + return 0; +} + +static int b53_global_get_jumbo_enable(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct b53_device *priv = sw_to_b53(dev); + + val->value.i = priv->enable_jumbo; + + return 0; +} + +static int b53_global_set_jumbo_enable(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct b53_device *priv = sw_to_b53(dev); + + priv->enable_jumbo = val->value.i; + + return 0; +} + +static int b53_global_get_4095_enable(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct b53_device *priv = sw_to_b53(dev); + + val->value.i = priv->allow_vid_4095; + + return 0; +} + +static int b53_global_set_4095_enable(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct b53_device *priv = sw_to_b53(dev); + + priv->allow_vid_4095 = val->value.i; + + return 0; +} + +static int b53_global_get_ports(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct b53_device *priv = sw_to_b53(dev); + + val->len = snprintf(priv->buf, B53_BUF_SIZE, "0x%04x", + priv->enabled_ports); + val->value.s = priv->buf; + + return 0; +} + +static int b53_port_get_pvid(struct switch_dev *dev, int port, int *val) +{ + struct b53_device *priv = sw_to_b53(dev); + + *val = priv->ports[port].pvid; + + return 0; +} + +static int b53_port_set_pvid(struct switch_dev *dev, int port, int val) +{ + struct b53_device *priv = sw_to_b53(dev); + + if (val > 15 && is5325(priv)) + return -EINVAL; + if (val == 4095 && !priv->allow_vid_4095) + return -EINVAL; + + priv->ports[port].pvid = val; + + return 0; +} + +static int b53_vlan_get_ports(struct switch_dev *dev, struct switch_val *val) +{ + struct b53_device *priv = sw_to_b53(dev); + struct switch_port *port = &val->value.ports[0]; + struct b53_vlan *vlan = &priv->vlans[val->port_vlan]; + int i; + + val->len = 0; + + if (!vlan->members) + return 0; + + for (i = 0; i < dev->ports; i++) { + if (!(vlan->members & BIT(i))) + continue; + + + if (!(vlan->untag & BIT(i))) + port->flags = BIT(SWITCH_PORT_FLAG_TAGGED); + else + port->flags = 0; + + port->id = i; + val->len++; + port++; + } + + return 0; +} + +static int b53_vlan_set_ports(struct switch_dev *dev, struct switch_val *val) +{ + struct b53_device *priv = sw_to_b53(dev); + struct switch_port *port; + struct b53_vlan *vlan = &priv->vlans[val->port_vlan]; + int i; + + /* only BCM5325 and BCM5365 supports VID 0 */ + if (val->port_vlan == 0 && !is5325(priv) && !is5365(priv)) + return -EINVAL; + + /* VLAN 4095 needs special handling */ + if (val->port_vlan == 4095 && !priv->allow_vid_4095) + return -EINVAL; + + port = &val->value.ports[0]; + vlan->members = 0; + vlan->untag = 0; + for (i = 0; i < val->len; i++, port++) { + vlan->members |= BIT(port->id); + + if (!(port->flags & BIT(SWITCH_PORT_FLAG_TAGGED))) { + vlan->untag |= BIT(port->id); + priv->ports[port->id].pvid = val->port_vlan; + }; + } + + /* ignore disabled ports */ + vlan->members &= priv->enabled_ports; + vlan->untag &= priv->enabled_ports; + + return 0; +} + +static int b53_port_get_link(struct switch_dev *dev, int port, + struct switch_port_link *link) +{ + struct b53_device *priv = sw_to_b53(dev); + + if (is_cpu_port(priv, port)) { + link->link = 1; + link->duplex = 1; + link->speed = is5325(priv) || is5365(priv) ? + SWITCH_PORT_SPEED_100 : SWITCH_PORT_SPEED_1000; + link->aneg = 0; + } else if (priv->enabled_ports & BIT(port)) { + u32 speed; + u16 lnk, duplex; + + b53_read16(priv, B53_STAT_PAGE, B53_LINK_STAT, &lnk); + b53_read16(priv, B53_STAT_PAGE, priv->duplex_reg, &duplex); + + lnk = (lnk >> port) & 1; + duplex = (duplex >> port) & 1; + + if (is5325(priv) || is5365(priv)) { + u16 tmp; + + b53_read16(priv, B53_STAT_PAGE, B53_SPEED_STAT, &tmp); + speed = SPEED_PORT_FE(tmp, port); + } else { + b53_read32(priv, B53_STAT_PAGE, B53_SPEED_STAT, &speed); + speed = SPEED_PORT_GE(speed, port); + } + + link->link = lnk; + if (lnk) { + link->duplex = duplex; + switch (speed) { + case SPEED_STAT_10M: + link->speed = SWITCH_PORT_SPEED_10; + break; + case SPEED_STAT_100M: + link->speed = SWITCH_PORT_SPEED_100; + break; + case SPEED_STAT_1000M: + link->speed = SWITCH_PORT_SPEED_1000; + break; + } + } + + link->aneg = 1; + } else { + link->link = 0; + } + + return 0; + +} + +static int b53_global_reset_switch(struct switch_dev *dev) +{ + struct b53_device *priv = sw_to_b53(dev); + + /* reset vlans */ + priv->enable_vlan = 0; + priv->enable_jumbo = 0; + priv->allow_vid_4095 = 0; + + memset(priv->vlans, 0, sizeof(priv->vlans) * dev->vlans); + memset(priv->ports, 0, sizeof(priv->ports) * dev->ports); + + return b53_switch_reset(priv); +} + +static int b53_global_apply_config(struct switch_dev *dev) +{ + struct b53_device *priv = sw_to_b53(dev); + + /* disable switching */ + b53_set_forwarding(priv, 0); + + b53_apply(priv); + + /* enable switching */ + b53_set_forwarding(priv, 1); + + return 0; +} + + +static int b53_global_reset_mib(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct b53_device *priv = sw_to_b53(dev); + u8 gc; + + b53_read8(priv, B53_MGMT_PAGE, B53_GLOBAL_CONFIG, &gc); + + b53_write8(priv, B53_MGMT_PAGE, B53_GLOBAL_CONFIG, gc | GC_RESET_MIB); + mdelay(1); + b53_write8(priv, B53_MGMT_PAGE, B53_GLOBAL_CONFIG, gc & ~GC_RESET_MIB); + mdelay(1); + + return 0; +} + +static int b53_port_get_mib(struct switch_dev *sw_dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct b53_device *dev = sw_to_b53(sw_dev); + const struct b53_mib_desc *mibs; + int port = val->port_vlan; + int len = 0; + + if (!(BIT(port) & dev->enabled_ports)) + return -1; + + if (is5365(dev)) { + if (port == 5) + port = 8; + + mibs = b53_mibs_65; + } else if (is63xx(dev)) { + mibs = b53_mibs_63xx; + } else { + mibs = b53_mibs; + } + + dev->buf[0] = 0; + + for (; mibs->size > 0; mibs++) { + u64 val; + + if (mibs->size == 8) { + b53_read64(dev, B53_MIB_PAGE(port), mibs->offset, &val); + } else { + u32 val32; + + b53_read32(dev, B53_MIB_PAGE(port), mibs->offset, + &val32); + val = val32; + } + + len += snprintf(dev->buf + len, B53_BUF_SIZE - len, + "%-20s: %llu\n", mibs->name, val); + } + + val->len = len; + val->value.s = dev->buf; + + return 0; +} + +static struct switch_attr b53_global_ops_25[] = { + { + .type = SWITCH_TYPE_INT, + .name = "enable_vlan", + .description = "Enable VLAN mode", + .set = b53_global_set_vlan_enable, + .get = b53_global_get_vlan_enable, + .max = 1, + }, + { + .type = SWITCH_TYPE_STRING, + .name = "ports", + .description = "Available ports (as bitmask)", + .get = b53_global_get_ports, + }, +}; + +static struct switch_attr b53_global_ops_65[] = { + { + .type = SWITCH_TYPE_INT, + .name = "enable_vlan", + .description = "Enable VLAN mode", + .set = b53_global_set_vlan_enable, + .get = b53_global_get_vlan_enable, + .max = 1, + }, + { + .type = SWITCH_TYPE_STRING, + .name = "ports", + .description = "Available ports (as bitmask)", + .get = b53_global_get_ports, + }, + { + .type = SWITCH_TYPE_INT, + .name = "reset_mib", + .description = "Reset MIB counters", + .set = b53_global_reset_mib, + }, +}; + +static struct switch_attr b53_global_ops[] = { + { + .type = SWITCH_TYPE_INT, + .name = "enable_vlan", + .description = "Enable VLAN mode", + .set = b53_global_set_vlan_enable, + .get = b53_global_get_vlan_enable, + .max = 1, + }, + { + .type = SWITCH_TYPE_STRING, + .name = "ports", + .description = "Available Ports (as bitmask)", + .get = b53_global_get_ports, + }, + { + .type = SWITCH_TYPE_INT, + .name = "reset_mib", + .description = "Reset MIB counters", + .set = b53_global_reset_mib, + }, + { + .type = SWITCH_TYPE_INT, + .name = "enable_jumbo", + .description = "Enable Jumbo Frames", + .set = b53_global_set_jumbo_enable, + .get = b53_global_get_jumbo_enable, + .max = 1, + }, + { + .type = SWITCH_TYPE_INT, + .name = "allow_vid_4095", + .description = "Allow VID 4095", + .set = b53_global_set_4095_enable, + .get = b53_global_get_4095_enable, + .max = 1, + }, +}; + +static struct switch_attr b53_port_ops[] = { + { + .type = SWITCH_TYPE_STRING, + .name = "mib", + .description = "Get port's MIB counters", + .get = b53_port_get_mib, + }, +}; + +static struct switch_attr b53_no_ops[] = { +}; + +static const struct switch_dev_ops b53_switch_ops_25 = { + .attr_global = { + .attr = b53_global_ops_25, + .n_attr = ARRAY_SIZE(b53_global_ops_25), + }, + .attr_port = { + .attr = b53_no_ops, + .n_attr = ARRAY_SIZE(b53_no_ops), + }, + .attr_vlan = { + .attr = b53_no_ops, + .n_attr = ARRAY_SIZE(b53_no_ops), + }, + + .get_vlan_ports = b53_vlan_get_ports, + .set_vlan_ports = b53_vlan_set_ports, + .get_port_pvid = b53_port_get_pvid, + .set_port_pvid = b53_port_set_pvid, + .apply_config = b53_global_apply_config, + .reset_switch = b53_global_reset_switch, + .get_port_link = b53_port_get_link, +}; + +static const struct switch_dev_ops b53_switch_ops_65 = { + .attr_global = { + .attr = b53_global_ops_65, + .n_attr = ARRAY_SIZE(b53_global_ops_65), + }, + .attr_port = { + .attr = b53_no_ops, + .n_attr = ARRAY_SIZE(b53_port_ops), + }, + .attr_vlan = { + .attr = b53_no_ops, + .n_attr = ARRAY_SIZE(b53_no_ops), + }, + + .get_vlan_ports = b53_vlan_get_ports, + .set_vlan_ports = b53_vlan_set_ports, + .get_port_pvid = b53_port_get_pvid, + .set_port_pvid = b53_port_set_pvid, + .apply_config = b53_global_apply_config, + .reset_switch = b53_global_reset_switch, + .get_port_link = b53_port_get_link, +}; + +static const struct switch_dev_ops b53_switch_ops = { + .attr_global = { + .attr = b53_global_ops, + .n_attr = ARRAY_SIZE(b53_global_ops), + }, + .attr_port = { + .attr = b53_port_ops, + .n_attr = ARRAY_SIZE(b53_port_ops), + }, + .attr_vlan = { + .attr = b53_no_ops, + .n_attr = ARRAY_SIZE(b53_no_ops), + }, + + .get_vlan_ports = b53_vlan_get_ports, + .set_vlan_ports = b53_vlan_set_ports, + .get_port_pvid = b53_port_get_pvid, + .set_port_pvid = b53_port_set_pvid, + .apply_config = b53_global_apply_config, + .reset_switch = b53_global_reset_switch, + .get_port_link = b53_port_get_link, +}; + +struct b53_chip_data { + u32 chip_id; + const char *dev_name; + const char *alias; + u16 vlans; + u16 enabled_ports; + u8 cpu_port; + u8 vta_regs[3]; + u8 duplex_reg; + u8 jumbo_pm_reg; + u8 jumbo_size_reg; + const struct switch_dev_ops *sw_ops; +}; + +#define B53_VTA_REGS \ + { B53_VT_ACCESS, B53_VT_INDEX, B53_VT_ENTRY } +#define B53_VTA_REGS_9798 \ + { B53_VT_ACCESS_9798, B53_VT_INDEX_9798, B53_VT_ENTRY_9798 } +#define B53_VTA_REGS_63XX \ + { B53_VT_ACCESS_63XX, B53_VT_INDEX_63XX, B53_VT_ENTRY_63XX } + +static const struct b53_chip_data b53_switch_chips[] = { + { + .chip_id = BCM5325_DEVICE_ID, + .dev_name = "BCM5325", + .alias = "bcm5325", + .vlans = 16, + .enabled_ports = 0x1f, + .cpu_port = B53_CPU_PORT_25, + .duplex_reg = B53_DUPLEX_STAT_FE, + .sw_ops = &b53_switch_ops_25, + }, + { + .chip_id = BCM5365_DEVICE_ID, + .dev_name = "BCM5365", + .alias = "bcm5365", + .vlans = 256, + .enabled_ports = 0x1f, + .cpu_port = B53_CPU_PORT_25, + .duplex_reg = B53_DUPLEX_STAT_FE, + .sw_ops = &b53_switch_ops_65, + }, + { + .chip_id = BCM5395_DEVICE_ID, + .dev_name = "BCM5395", + .alias = "bcm5395", + .vlans = 4096, + .enabled_ports = 0x1f, + .cpu_port = B53_CPU_PORT, + .vta_regs = B53_VTA_REGS, + .duplex_reg = B53_DUPLEX_STAT_GE, + .jumbo_pm_reg = B53_JUMBO_PORT_MASK, + .jumbo_size_reg = B53_JUMBO_MAX_SIZE, + .sw_ops = &b53_switch_ops, + }, + { + .chip_id = BCM5397_DEVICE_ID, + .dev_name = "BCM5397", + .alias = "bcm5397", + .vlans = 4096, + .enabled_ports = 0x1f, + .cpu_port = B53_CPU_PORT, + .vta_regs = B53_VTA_REGS_9798, + .duplex_reg = B53_DUPLEX_STAT_GE, + .jumbo_pm_reg = B53_JUMBO_PORT_MASK, + .jumbo_size_reg = B53_JUMBO_MAX_SIZE, + .sw_ops = &b53_switch_ops, + }, + { + .chip_id = BCM5398_DEVICE_ID, + .dev_name = "BCM5398", + .alias = "bcm5398", + .vlans = 4096, + .enabled_ports = 0x7f, + .cpu_port = B53_CPU_PORT, + .vta_regs = B53_VTA_REGS_9798, + .duplex_reg = B53_DUPLEX_STAT_GE, + .jumbo_pm_reg = B53_JUMBO_PORT_MASK, + .jumbo_size_reg = B53_JUMBO_MAX_SIZE, + .sw_ops = &b53_switch_ops, + }, + { + .chip_id = BCM53115_DEVICE_ID, + .dev_name = "BCM53115", + .alias = "bcm53115", + .vlans = 4096, + .enabled_ports = 0x1f, + .vta_regs = B53_VTA_REGS, + .cpu_port = B53_CPU_PORT, + .duplex_reg = B53_DUPLEX_STAT_GE, + .jumbo_pm_reg = B53_JUMBO_PORT_MASK, + .jumbo_size_reg = B53_JUMBO_MAX_SIZE, + .sw_ops = &b53_switch_ops, + }, + { + .chip_id = BCM53125_DEVICE_ID, + .dev_name = "BCM53125", + .alias = "bcm53125", + .vlans = 4096, + .enabled_ports = 0x1f, + .cpu_port = B53_CPU_PORT, + .vta_regs = B53_VTA_REGS, + .duplex_reg = B53_DUPLEX_STAT_GE, + .jumbo_pm_reg = B53_JUMBO_PORT_MASK, + .jumbo_size_reg = B53_JUMBO_MAX_SIZE, + .sw_ops = &b53_switch_ops, + }, + { + .chip_id = BCM63XX_DEVICE_ID, + .dev_name = "BCM63xx", + .alias = "bcm63xx", + .vlans = 4096, + .enabled_ports = 0, /* pdata must provide them */ + .cpu_port = B53_CPU_PORT, + .vta_regs = B53_VTA_REGS_63XX, + .duplex_reg = B53_DUPLEX_STAT_63XX, + .jumbo_pm_reg = B53_JUMBO_PORT_MASK_63XX, + .jumbo_size_reg = B53_JUMBO_MAX_SIZE_63XX, + .sw_ops = &b53_switch_ops, + }, +}; + +int b53_switch_init(struct b53_device *dev) +{ + struct switch_dev *sw_dev = &dev->sw_dev; + unsigned i; + + for (i = 0; i < ARRAY_SIZE(b53_switch_chips); i++) { + const struct b53_chip_data *chip = &b53_switch_chips[i]; + + if (chip->chip_id == dev->chip_id) { + sw_dev->name = chip->dev_name; + if (!sw_dev->alias) + sw_dev->alias = chip->alias; + if (!dev->enabled_ports) + dev->enabled_ports = chip->enabled_ports; + dev->duplex_reg = chip->duplex_reg; + dev->vta_regs[0] = chip->vta_regs[0]; + dev->vta_regs[1] = chip->vta_regs[1]; + dev->vta_regs[2] = chip->vta_regs[2]; + dev->jumbo_pm_reg = chip->jumbo_pm_reg; + sw_dev->ops = chip->sw_ops; + sw_dev->cpu_port = chip->cpu_port; + sw_dev->vlans = chip->vlans; + break; + } + } + + if (!sw_dev->name) + return -EINVAL; + + /* check which BCM5325x version we have */ + if (is5325(dev)) { + u8 vc4; + + b53_read8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL4_25, &vc4); + + /* check reserved bits */ + switch (vc4 & 3) { + case 1: + /* BCM5325E */ + break; + case 3: + /* BCM5325F - do not use port 4 */ + dev->enabled_ports &= ~BIT(4); + break; + default: + /* BCM5325M */ + return -EINVAL; + } + } else if (dev->chip_id == BCM53115_DEVICE_ID) { + u64 strap_value; + + b53_read48(dev, B53_STAT_PAGE, B53_STRAP_VALUE, &strap_value); + /* use second IMP port if GMII is enabled */ + if (strap_value & SV_GMII_CTRL_115) + sw_dev->cpu_port = 5; + } + + /* cpu port is always last */ + sw_dev->ports = sw_dev->cpu_port + 1; + dev->enabled_ports |= BIT(sw_dev->cpu_port); + + dev->ports = devm_kzalloc(dev->dev, + sizeof(struct b53_port) * sw_dev->ports, + GFP_KERNEL); + if (!dev->ports) + return -ENOMEM; + + dev->vlans = devm_kzalloc(dev->dev, + sizeof(struct b53_vlan) * sw_dev->vlans, + GFP_KERNEL); + if (!dev->vlans) + return -ENOMEM; + + dev->buf = devm_kzalloc(dev->dev, B53_BUF_SIZE, GFP_KERNEL); + if (!dev->buf) + return -ENOMEM; + + return b53_switch_reset(dev); +} + +struct b53_device *b53_switch_alloc(struct device *base, struct b53_io_ops *ops, + void *priv) +{ + struct b53_device *dev; + + dev = devm_kzalloc(base, sizeof(*dev), GFP_KERNEL); + if (!dev) + return NULL; + + dev->dev = base; + dev->ops = ops; + dev->priv = priv; + mutex_init(&dev->reg_mutex); + + return dev; +} +EXPORT_SYMBOL(b53_switch_alloc); + +int b53_switch_detect(struct b53_device *dev) +{ + u32 id32; + u16 tmp; + u8 id8; + int ret; + + ret = b53_read8(dev, B53_MGMT_PAGE, B53_DEVICE_ID, &id8); + if (ret) + return ret; + + switch (id8) { + case 0: + /* + * BCM5325 and BCM5365 do not have this register so reads + * return 0. But the read operation did succeed, so assume + * this is one of them. + * + * Next check if we can write to the 5325's VTA register; for + * 5365 it is read only. + */ + + b53_write16(dev, B53_VLAN_PAGE, B53_VLAN_TABLE_ACCESS_25, 0xf); + b53_read16(dev, B53_VLAN_PAGE, B53_VLAN_TABLE_ACCESS_25, &tmp); + + if (tmp == 0xf) + dev->chip_id = BCM5325_DEVICE_ID; + else + dev->chip_id = BCM5365_DEVICE_ID; + break; + case BCM5395_DEVICE_ID: + case BCM5397_DEVICE_ID: + case BCM5398_DEVICE_ID: + dev->chip_id = id8; + break; + default: + ret = b53_read32(dev, B53_MGMT_PAGE, B53_DEVICE_ID, &id32); + if (ret) + return ret; + + switch (id32) { + case BCM53115_DEVICE_ID: + case BCM53125_DEVICE_ID: + dev->chip_id = id32; + break; + default: + pr_err("unsupported switch detected (BCM53%02x/BCM%x)\n", + id8, id32); + return -ENODEV; + } + } + + return b53_read8(dev, B53_MGMT_PAGE, B53_REV_ID, &dev->core_rev); +} +EXPORT_SYMBOL(b53_switch_detect); + +int b53_switch_register(struct b53_device *dev) +{ + int ret; + + if (dev->pdata) { + dev->chip_id = dev->pdata->chip_id; + dev->enabled_ports = dev->pdata->enabled_ports; + dev->sw_dev.alias = dev->pdata->alias; + } + + if (!dev->chip_id && b53_switch_detect(dev)) + return -EINVAL; + + ret = b53_switch_init(dev); + if (ret) + return ret; + + pr_info("found switch: %s, rev %i\n", dev->sw_dev.name, dev->core_rev); + + return register_switch(&dev->sw_dev, NULL); +} +EXPORT_SYMBOL(b53_switch_register); + +MODULE_AUTHOR("Jonas Gorski <jogo@openwrt.org>"); +MODULE_DESCRIPTION("B53 switch library"); +MODULE_LICENSE("Dual BSD/GPL"); diff --git a/target/linux/generic/files/drivers/net/phy/b53/b53_mdio.c b/target/linux/generic/files/drivers/net/phy/b53/b53_mdio.c new file mode 100644 index 000000000..1ba05914e --- /dev/null +++ b/target/linux/generic/files/drivers/net/phy/b53/b53_mdio.c @@ -0,0 +1,401 @@ +/* + * B53 register access through MII registers + * + * Copyright (C) 2011-2013 Jonas Gorski <jogo@openwrt.org> + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include <linux/kernel.h> +#include <linux/phy.h> +#include <linux/module.h> + +#include "b53_priv.h" + +#define B53_PSEUDO_PHY 0x1e /* Register Access Pseudo PHY */ + +/* MII registers */ +#define REG_MII_PAGE 0x10 /* MII Page register */ +#define REG_MII_ADDR 0x11 /* MII Address register */ +#define REG_MII_DATA0 0x18 /* MII Data register 0 */ +#define REG_MII_DATA1 0x19 /* MII Data register 1 */ +#define REG_MII_DATA2 0x1a /* MII Data register 2 */ +#define REG_MII_DATA3 0x1b /* MII Data register 3 */ + +#define REG_MII_PAGE_ENABLE BIT(0) +#define REG_MII_ADDR_WRITE BIT(0) +#define REG_MII_ADDR_READ BIT(1) + +static int b53_mdio_op(struct b53_device *dev, u8 page, u8 reg, u16 op) +{ + int i; + u16 v; + int ret; + struct mii_bus *bus = dev->priv; + + if (dev->current_page != page) { + /* set page number */ + v = (page << 8) | REG_MII_PAGE_ENABLE; + ret = mdiobus_write(bus, B53_PSEUDO_PHY, REG_MII_PAGE, v); + if (ret) + return ret; + dev->current_page = page; + } + + /* set register address */ + v = (reg << 8) | op; + ret = mdiobus_write(bus, B53_PSEUDO_PHY, REG_MII_ADDR, v); + if (ret) + return ret; + + /* check if operation completed */ + for (i = 0; i < 5; ++i) { + v = mdiobus_read(bus, B53_PSEUDO_PHY, REG_MII_ADDR); + if (!(v & (REG_MII_ADDR_WRITE | REG_MII_ADDR_READ))) + break; + usleep_range(10, 100); + } + + if (WARN_ON(i == 5)) + return -EIO; + + return 0; +} + +static int b53_mdio_read8(struct b53_device *dev, u8 page, u8 reg, u8 *val) +{ + struct mii_bus *bus = dev->priv; + int ret; + + ret = b53_mdio_op(dev, page, reg, REG_MII_ADDR_READ); + if (ret) + return ret; + + *val = mdiobus_read(bus, B53_PSEUDO_PHY, REG_MII_DATA0) & 0xff; + + return 0; +} + +static int b53_mdio_read16(struct b53_device *dev, u8 page, u8 reg, u16 *val) +{ + struct mii_bus *bus = dev->priv; + int ret; + + ret = b53_mdio_op(dev, page, reg, REG_MII_ADDR_READ); + if (ret) + return ret; + + *val = mdiobus_read(bus, B53_PSEUDO_PHY, REG_MII_DATA0); + + return 0; +} + +static int b53_mdio_read32(struct b53_device *dev, u8 page, u8 reg, u32 *val) +{ + struct mii_bus *bus = dev->priv; + int ret; + + ret = b53_mdio_op(dev, page, reg, REG_MII_ADDR_READ); + if (ret) + return ret; + + *val = mdiobus_read(bus, B53_PSEUDO_PHY, REG_MII_DATA0); + *val |= mdiobus_read(bus, B53_PSEUDO_PHY, REG_MII_DATA1) << 16; + + return 0; +} + +static int b53_mdio_read48(struct b53_device *dev, u8 page, u8 reg, u64 *val) +{ + struct mii_bus *bus = dev->priv; + u64 temp = 0; + int i; + int ret; + + ret = b53_mdio_op(dev, page, reg, REG_MII_ADDR_READ); + if (ret) + return ret; + + for (i = 2; i >= 0; i--) { + temp <<= 16; + temp |= mdiobus_read(bus, B53_PSEUDO_PHY, REG_MII_DATA0 + i); + } + + *val = temp; + + return 0; +} + +static int b53_mdio_read64(struct b53_device *dev, u8 page, u8 reg, u64 *val) +{ + struct mii_bus *bus = dev->priv; + u64 temp = 0; + int i; + int ret; + + ret = b53_mdio_op(dev, page, reg, REG_MII_ADDR_READ); + if (ret) + return ret; + + for (i = 3; i >= 0; i--) { + temp <<= 16; + temp |= mdiobus_read(bus, B53_PSEUDO_PHY, REG_MII_DATA0 + i); + } + + *val = temp; + + return 0; +} + +static int b53_mdio_write8(struct b53_device *dev, u8 page, u8 reg, u8 value) +{ + struct mii_bus *bus = dev->priv; + int ret; + + ret = mdiobus_write(bus, B53_PSEUDO_PHY, REG_MII_DATA0, value); + if (ret) + return ret; + + return b53_mdio_op(dev, page, reg, REG_MII_ADDR_WRITE); +} + +static int b53_mdio_write16(struct b53_device *dev, u8 page, u8 reg, + u16 value) +{ + struct mii_bus *bus = dev->priv; + int ret; + + ret = mdiobus_write(bus, B53_PSEUDO_PHY, REG_MII_DATA0, value); + if (ret) + return ret; + + return b53_mdio_op(dev, page, reg, REG_MII_ADDR_WRITE); +} + +static int b53_mdio_write32(struct b53_device *dev, u8 page, u8 reg, + u32 value) +{ + struct mii_bus *bus = dev->priv; + unsigned int i; + u32 temp = value; + + for (i = 0; i < 2; i++) { + int ret = mdiobus_write(bus, B53_PSEUDO_PHY, REG_MII_DATA0 + i, + temp & 0xffff); + if (ret) + return ret; + temp >>= 16; + } + + return b53_mdio_op(dev, page, reg, REG_MII_ADDR_WRITE); + +} + +static int b53_mdio_write48(struct b53_device *dev, u8 page, u8 reg, + u64 value) +{ + struct mii_bus *bus = dev->priv; + unsigned i; + u64 temp = value; + + for (i = 0; i < 3; i++) { + int ret = mdiobus_write(bus, B53_PSEUDO_PHY, REG_MII_DATA0 + i, + temp & 0xffff); + if (ret) + return ret; + temp >>= 16; + } + + return b53_mdio_op(dev, page, reg, REG_MII_ADDR_WRITE); + +} + +static int b53_mdio_write64(struct b53_device *dev, u8 page, u8 reg, + u64 value) +{ + struct mii_bus *bus = dev->priv; + unsigned i; + u64 temp = value; + + for (i = 0; i < 4; i++) { + int ret = mdiobus_write(bus, B53_PSEUDO_PHY, REG_MII_DATA0 + i, + temp & 0xffff); + if (ret) + return ret; + temp >>= 16; + } + + return b53_mdio_op(dev, page, reg, REG_MII_ADDR_WRITE); +} + +static struct b53_io_ops b53_mdio_ops = { + .read8 = b53_mdio_read8, + .read16 = b53_mdio_read16, + .read32 = b53_mdio_read32, + .read48 = b53_mdio_read48, + .read64 = b53_mdio_read64, + .write8 = b53_mdio_write8, + .write16 = b53_mdio_write16, + .write32 = b53_mdio_write32, + .write48 = b53_mdio_write48, + .write64 = b53_mdio_write64, +}; + +static int b53_phy_probe(struct phy_device *phydev) +{ + struct b53_device dev; + int ret; + + /* allow the generic phy driver to take over */ + if (phydev->addr != B53_PSEUDO_PHY && phydev->addr != 0) + return -ENODEV; + + dev.current_page = 0xff; + dev.priv = phydev->bus; + dev.ops = &b53_mdio_ops; + dev.pdata = NULL; + mutex_init(&dev.reg_mutex); + + ret = b53_switch_detect(&dev); + if (ret) + return ret; + + if (is5325(&dev) || is5365(&dev)) + phydev->supported = SUPPORTED_100baseT_Full; + else + phydev->supported = SUPPORTED_1000baseT_Full; + + phydev->advertising = phydev->supported; + + return 0; +} + +static int b53_phy_config_init(struct phy_device *phydev) +{ + struct b53_device *dev; + int ret; + + dev = b53_switch_alloc(&phydev->dev, &b53_mdio_ops, phydev->bus); + if (!dev) + return -ENOMEM; + + /* we don't use page 0xff, so force a page set */ + dev->current_page = 0xff; + /* force the ethX as alias */ + dev->sw_dev.alias = phydev->attached_dev->name; + + ret = b53_switch_register(dev); + if (ret) { + pr_info("failed to register switch: %i\n", ret); + return ret; + } + + phydev->priv = dev; + + return 0; +} + +static void b53_phy_remove(struct phy_device *phydev) +{ + struct b53_device *priv = phydev->priv; + + if (!priv) + return; + + b53_switch_remove(priv); + + phydev->priv = NULL; +} + +static int b53_phy_config_aneg(struct phy_device *phydev) +{ + return 0; +} + +static int b53_phy_read_status(struct phy_device *phydev) +{ + struct b53_device *priv = phydev->priv; + + if (is5325(priv) || is5365(priv)) + phydev->speed = 100; + else + phydev->speed = 1000; + + phydev->duplex = DUPLEX_FULL; + phydev->link = 1; + phydev->state = PHY_RUNNING; + + netif_carrier_on(phydev->attached_dev); + phydev->adjust_link(phydev->attached_dev); + + return 0; +} + +/* BCM5325, BCM539x */ +static struct phy_driver b53_phy_driver_id1 = { + .phy_id = 0x0143bc00, + .name = "Broadcom B53 (1)", + .phy_id_mask = 0x1ffffc00, + .features = 0, + .probe = b53_phy_probe, + .remove = b53_phy_remove, + .config_aneg = b53_phy_config_aneg, + .config_init = b53_phy_config_init, + .read_status = b53_phy_read_status, + .driver = { + .owner = THIS_MODULE, + }, +}; + +/* BCM53125 */ +static struct phy_driver b53_phy_driver_id2 = { + .phy_id = 0x03625c00, + .name = "Broadcom B53 (2)", + .phy_id_mask = 0x1ffffc00, + .features = 0, + .probe = b53_phy_probe, + .remove = b53_phy_remove, + .config_aneg = b53_phy_config_aneg, + .config_init = b53_phy_config_init, + .read_status = b53_phy_read_status, + .driver = { + .owner = THIS_MODULE, + }, +}; + +int __init b53_phy_driver_register(void) +{ + int ret; + + ret = phy_driver_register(&b53_phy_driver_id1); + if (ret) + return ret; + + ret = phy_driver_register(&b53_phy_driver_id2); + if (ret) + phy_driver_unregister(&b53_phy_driver_id1); + + return ret; +} + +void __exit b53_phy_driver_unregister(void) +{ + phy_driver_unregister(&b53_phy_driver_id2); + phy_driver_unregister(&b53_phy_driver_id1); +} + +module_init(b53_phy_driver_register); +module_exit(b53_phy_driver_unregister); + +MODULE_DESCRIPTION("B53 MDIO access driver"); +MODULE_LICENSE("Dual BSD/GPL"); diff --git a/target/linux/generic/files/drivers/net/phy/b53/b53_mmap.c b/target/linux/generic/files/drivers/net/phy/b53/b53_mmap.c new file mode 100644 index 000000000..1fd01581a --- /dev/null +++ b/target/linux/generic/files/drivers/net/phy/b53/b53_mmap.c @@ -0,0 +1,241 @@ +/* + * B53 register access through memory mapped registers + * + * Copyright (C) 2012-2013 Jonas Gorski <jogo@openwrt.org> + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/platform_device.h> +#include <linux/platform_data/b53.h> + +#include "b53_priv.h" + +static int b53_mmap_read8(struct b53_device *dev, u8 page, u8 reg, u8 *val) +{ + u8 __iomem *regs = dev->priv; + + *val = readb(regs + (page << 8) + reg); + + return 0; +} + +static int b53_mmap_read16(struct b53_device *dev, u8 page, u8 reg, u16 *val) +{ + u8 __iomem *regs = dev->priv; + + if (WARN_ON(reg % 2)) + return -EINVAL; + + if (dev->pdata && dev->pdata->big_endian) + *val = readw_be(regs + (page << 8) + reg); + else + *val = readw(regs + (page << 8) + reg); + + return 0; +} + +static int b53_mmap_read32(struct b53_device *dev, u8 page, u8 reg, u32 *val) +{ + u8 __iomem *regs = dev->priv; + + if (WARN_ON(reg % 4)) + return -EINVAL; + + if (dev->pdata && dev->pdata->big_endian) + *val = readl_be(regs + (page << 8) + reg); + else + *val = readl(regs + (page << 8) + reg); + + return 0; +} + +static int b53_mmap_read48(struct b53_device *dev, u8 page, u8 reg, u64 *val) +{ + u8 __iomem *regs = dev->priv; + + if (WARN_ON(reg % 4)) + return -EINVAL; + + if (dev->pdata && dev->pdata->big_endian) { + *val = readl_be(regs + (page << 8) + reg); + *val <<= 16; + *val |= readw_be(regs + (page << 8) + reg + 4); + } else { + *val |= readw(regs + (page << 8) + reg + 4); + *val <<= 32; + *val = readl(regs + (page << 8) + reg); + } + + return 0; +} + +static int b53_mmap_read64(struct b53_device *dev, u8 page, u8 reg, u64 *val) +{ + u8 __iomem *regs = dev->priv; + u32 hi, lo; + + if (WARN_ON(reg % 4)) + return -EINVAL; + + if (dev->pdata && dev->pdata->big_endian) { + lo = readl_be(regs + (page << 8) + reg); + hi = readl_be(regs + (page << 8) + reg + 4); + } else { + lo = readl(regs + (page << 8) + reg); + hi = readl(regs + (page << 8) + reg + 4); + } + + *val = ((u64)hi << 32) | lo; + + return 0; +} + +static int b53_mmap_write8(struct b53_device *dev, u8 page, u8 reg, u8 value) +{ + u8 __iomem *regs = dev->priv; + + writeb(value, regs + (page << 8) + reg); + + return 0; +} + +static int b53_mmap_write16(struct b53_device *dev, u8 page, u8 reg, + u16 value) +{ + u8 __iomem *regs = dev->priv; + + if (WARN_ON(reg % 2)) + return -EINVAL; + + if (dev->pdata && dev->pdata->big_endian) + writew_be(value, regs + (page << 8) + reg); + else + writew(value, regs + (page << 8) + reg); + + return 0; +} + +static int b53_mmap_write32(struct b53_device *dev, u8 page, u8 reg, + u32 value) +{ + u8 __iomem *regs = dev->priv; + + if (WARN_ON(reg % 4)) + return -EINVAL; + + if (dev->pdata && dev->pdata->big_endian) + writel_be(value, regs + (page << 8) + reg); + else + writel(value, regs + (page << 8) + reg); + + return 0; +} + +static int b53_mmap_write48(struct b53_device *dev, u8 page, u8 reg, + u64 value) +{ + u8 __iomem *regs = dev->priv; + + if (WARN_ON(reg % 4)) + return -EINVAL; + + if (dev->pdata && dev->pdata->big_endian) { + writel_be((u32)(value >> 16), regs + (page << 8) + reg); + writew_be((u16)value, regs + (page << 8) + reg + 4); + } else { + writel((u32)value, regs + (page << 8) + reg); + writew((u16)(value >> 32), regs + (page << 8) + reg + 4); + } + + return 0; +} + +static int b53_mmap_write64(struct b53_device *dev, u8 page, u8 reg, + u64 value) +{ + u8 __iomem *regs = dev->priv; + + if (WARN_ON(reg % 4)) + return -EINVAL; + + if (dev->pdata && dev->pdata->big_endian) { + writel_be((u32)(value >> 32), regs + (page << 8) + reg); + writel_be((u32)value, regs + (page << 8) + reg + 4); + } else { + writel((u32)value, regs + (page << 8) + reg); + writel((u32)(value >> 32), regs + (page << 8) + reg + 4); + } + + return 0; +} + +static struct b53_io_ops b53_mmap_ops = { + .read8 = b53_mmap_read8, + .read16 = b53_mmap_read16, + .read32 = b53_mmap_read32, + .read48 = b53_mmap_read48, + .read64 = b53_mmap_read64, + .write8 = b53_mmap_write8, + .write16 = b53_mmap_write16, + .write32 = b53_mmap_write32, + .write48 = b53_mmap_write48, + .write64 = b53_mmap_write64, +}; + +static int b53_mmap_probe(struct platform_device *pdev) +{ + struct b53_platform_data *pdata = pdev->dev.platform_data; + struct b53_device *dev; + + if (!pdata) + return -EINVAL; + + dev = b53_switch_alloc(&pdev->dev, &b53_mmap_ops, pdata->regs); + if (!dev) + return -ENOMEM; + + if (pdata) + dev->pdata = pdata; + + pdev->dev.platform_data = dev; + + return b53_switch_register(dev); +} + +static int b53_mmap_remove(struct platform_device *pdev) +{ + struct b53_device *dev = pdev->dev.platform_data; + + if (dev) { + pdev->dev.platform_data = dev->pdata; + b53_switch_remove(dev); + } + + return 0; +} + +static struct platform_driver b53_mmap_driver = { + .probe = b53_mmap_probe, + .remove = b53_mmap_remove, + .driver = { + .name = "b53-switch", + }, +}; + +module_platform_driver(b53_mmap_driver); +MODULE_AUTHOR("Jonas Gorski <jogo@openwrt.org>"); +MODULE_DESCRIPTION("B53 MMAP access driver"); +MODULE_LICENSE("Dual BSD/GPL"); diff --git a/target/linux/generic/files/drivers/net/phy/b53/b53_phy_fixup.c b/target/linux/generic/files/drivers/net/phy/b53/b53_phy_fixup.c new file mode 100644 index 000000000..447f30b64 --- /dev/null +++ b/target/linux/generic/files/drivers/net/phy/b53/b53_phy_fixup.c @@ -0,0 +1,53 @@ +/* + * B53 PHY Fixup call + * + * Copyright (C) 2013 Jonas Gorski <jogo@openwrt.org> + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include <linux/init.h> +#include <linux/kernel.h> +#include <linux/phy.h> + +#define B53_PSEUDO_PHY 0x1e /* Register Access Pseudo PHY */ + +#define B53_BRCM_OUI_1 0x0143bc00 +#define B53_BRCM_OUI_2 0x03625c00 + +static int b53_phy_fixup(struct phy_device *dev) +{ + u32 phy_id; + struct mii_bus *bus = dev->bus; + + if (dev->addr != B53_PSEUDO_PHY) + return 0; + + /* read the first port's id */ + phy_id = mdiobus_read(bus, 0, 2) << 16; + phy_id |= mdiobus_read(bus, 0, 3); + + if ((phy_id & 0xfffffc00) == B53_BRCM_OUI_1 || + (phy_id & 0xfffffc00) == B53_BRCM_OUI_2) { + dev->phy_id = phy_id; + } + + return 0; +} + +int __init b53_phy_fixup_register(void) +{ + return phy_register_fixup_for_id(PHY_ANY_ID, b53_phy_fixup); +} + +subsys_initcall(b53_phy_fixup_register); diff --git a/target/linux/generic/files/drivers/net/phy/b53/b53_priv.h b/target/linux/generic/files/drivers/net/phy/b53/b53_priv.h new file mode 100644 index 000000000..fca74ae4b --- /dev/null +++ b/target/linux/generic/files/drivers/net/phy/b53/b53_priv.h @@ -0,0 +1,278 @@ +/* + * B53 common definitions + * + * Copyright (C) 2011-2013 Jonas Gorski <jogo@openwrt.org> + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#ifndef __B53_PRIV_H +#define __B53_PRIV_H + +#include <linux/kernel.h> +#include <linux/mutex.h> +#include <linux/switch.h> + +struct b53_device; + +struct b53_io_ops { + int (*read8)(struct b53_device *dev, u8 page, u8 reg, u8 *value); + int (*read16)(struct b53_device *dev, u8 page, u8 reg, u16 *value); + int (*read32)(struct b53_device *dev, u8 page, u8 reg, u32 *value); + int (*read48)(struct b53_device *dev, u8 page, u8 reg, u64 *value); + int (*read64)(struct b53_device *dev, u8 page, u8 reg, u64 *value); + int (*write8)(struct b53_device *dev, u8 page, u8 reg, u8 value); + int (*write16)(struct b53_device *dev, u8 page, u8 reg, u16 value); + int (*write32)(struct b53_device *dev, u8 page, u8 reg, u32 value); + int (*write48)(struct b53_device *dev, u8 page, u8 reg, u64 value); + int (*write64)(struct b53_device *dev, u8 page, u8 reg, u64 value); +}; + +enum { + BCM5325_DEVICE_ID = 0x25, + BCM5365_DEVICE_ID = 0x65, + BCM5395_DEVICE_ID = 0x95, + BCM5397_DEVICE_ID = 0x97, + BCM5398_DEVICE_ID = 0x98, + BCM53115_DEVICE_ID = 0x53115, + BCM53125_DEVICE_ID = 0x53125, + BCM63XX_DEVICE_ID = 0x6300, +}; + +#define B53_N_PORTS 9 +#define B53_N_PORTS_25 6 + +struct b53_vlan { + unsigned int members:B53_N_PORTS; + unsigned int untag:B53_N_PORTS; +}; + +struct b53_port { + unsigned int pvid:12; +}; + +struct b53_device { + struct switch_dev sw_dev; + struct b53_platform_data *pdata; + + struct mutex reg_mutex; + const struct b53_io_ops *ops; + + /* chip specific data */ + u32 chip_id; + u8 core_rev; + u8 vta_regs[3]; + u8 duplex_reg; + u8 jumbo_pm_reg; + u8 jumbo_size_reg; + + /* used ports mask */ + u16 enabled_ports; + + /* connect specific data */ + u8 current_page; + struct device *dev; + void *priv; + + /* run time configuration */ + unsigned enable_vlan:1; + unsigned enable_jumbo:1; + unsigned allow_vid_4095:1; + + struct b53_port *ports; + struct b53_vlan *vlans; + + char *buf; +}; + +#define b53_for_each_port(dev, i) \ + for (i = 0; i < B53_N_PORTS; i++) \ + if (dev->enabled_ports & BIT(i)) + + + +static inline int is5325(struct b53_device *dev) +{ + return dev->chip_id == BCM5325_DEVICE_ID; +} + +static inline int is5365(struct b53_device *dev) +{ +#ifdef CONFIG_BCM47XX + return dev->chip_id == BCM5365_DEVICE_ID; +#else + return 0; +#endif +} + +static inline int is5397_98(struct b53_device *dev) +{ + return dev->chip_id == BCM5397_DEVICE_ID || + dev->chip_id == BCM5398_DEVICE_ID; +} + +static inline int is531x5(struct b53_device *dev) +{ + return dev->chip_id == BCM53115_DEVICE_ID || + dev->chip_id == BCM53125_DEVICE_ID; +} + +static inline int is63xx(struct b53_device *dev) +{ +#ifdef CONFIG_BCM63XX + return dev->chip_id == BCM63XX_DEVICE_ID; +#else + return 0; +#endif +} + +#define B53_CPU_PORT_25 5 +#define B53_CPU_PORT 8 + +static inline int is_cpu_port(struct b53_device *dev, int port) +{ + return dev->sw_dev.cpu_port == port; +} + +static inline struct b53_device *sw_to_b53(struct switch_dev *sw) +{ + return container_of(sw, struct b53_device, sw_dev); +} + +struct b53_device *b53_switch_alloc(struct device *base, struct b53_io_ops *ops, + void *priv); + +int b53_switch_detect(struct b53_device *dev); + +int b53_switch_register(struct b53_device *dev); + +static inline void b53_switch_remove(struct b53_device *dev) +{ + unregister_switch(&dev->sw_dev); +} + +static inline int b53_read8(struct b53_device *dev, u8 page, u8 reg, u8 *val) +{ + int ret; + + mutex_lock(&dev->reg_mutex); + ret = dev->ops->read8(dev, page, reg, val); + mutex_unlock(&dev->reg_mutex); + + return ret; +} + +static inline int b53_read16(struct b53_device *dev, u8 page, u8 reg, u16 *val) +{ + int ret; + + mutex_lock(&dev->reg_mutex); + ret = dev->ops->read16(dev, page, reg, val); + mutex_unlock(&dev->reg_mutex); + + return ret; +} + +static inline int b53_read32(struct b53_device *dev, u8 page, u8 reg, u32 *val) +{ + int ret; + + mutex_lock(&dev->reg_mutex); + ret = dev->ops->read32(dev, page, reg, val); + mutex_unlock(&dev->reg_mutex); + + return ret; +} + +static inline int b53_read48(struct b53_device *dev, u8 page, u8 reg, u64 *val) +{ + int ret; + + mutex_lock(&dev->reg_mutex); + ret = dev->ops->read48(dev, page, reg, val); + mutex_unlock(&dev->reg_mutex); + + return ret; +} + +static inline int b53_read64(struct b53_device *dev, u8 page, u8 reg, u64 *val) +{ + int ret; + + mutex_lock(&dev->reg_mutex); + ret = dev->ops->read64(dev, page, reg, val); + mutex_unlock(&dev->reg_mutex); + + return ret; +} + +static inline int b53_write8(struct b53_device *dev, u8 page, u8 reg, u8 value) +{ + int ret; + + mutex_lock(&dev->reg_mutex); + ret = dev->ops->write8(dev, page, reg, value); + mutex_unlock(&dev->reg_mutex); + + return ret; +} + +static inline int b53_write16(struct b53_device *dev, u8 page, u8 reg, + u16 value) +{ + int ret; + + mutex_lock(&dev->reg_mutex); + ret = dev->ops->write16(dev, page, reg, value); + mutex_unlock(&dev->reg_mutex); + + return ret; +} + +static inline int b53_write32(struct b53_device *dev, u8 page, u8 reg, + u32 value) +{ + int ret; + + mutex_lock(&dev->reg_mutex); + ret = dev->ops->write32(dev, page, reg, value); + mutex_unlock(&dev->reg_mutex); + + return ret; +} + +static inline int b53_write48(struct b53_device *dev, u8 page, u8 reg, + u64 value) +{ + int ret; + + mutex_lock(&dev->reg_mutex); + ret = dev->ops->write48(dev, page, reg, value); + mutex_unlock(&dev->reg_mutex); + + return ret; +} + +static inline int b53_write64(struct b53_device *dev, u8 page, u8 reg, + u64 value) +{ + int ret; + + mutex_lock(&dev->reg_mutex); + ret = dev->ops->write64(dev, page, reg, value); + mutex_unlock(&dev->reg_mutex); + + return ret; +} + +#endif diff --git a/target/linux/generic/files/drivers/net/phy/b53/b53_regs.h b/target/linux/generic/files/drivers/net/phy/b53/b53_regs.h new file mode 100644 index 000000000..7b8f539be --- /dev/null +++ b/target/linux/generic/files/drivers/net/phy/b53/b53_regs.h @@ -0,0 +1,308 @@ +/* + * B53 register definitions + * + * Copyright (C) 2004 Broadcom Corporation + * Copyright (C) 2011-2013 Jonas Gorski <jogo@openwrt.org> + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#ifndef __B53_REGS_H +#define __B53_REGS_H + +/* Management Port (SMP) Page offsets */ +#define B53_CTRL_PAGE 0x00 /* Control */ +#define B53_STAT_PAGE 0x01 /* Status */ +#define B53_MGMT_PAGE 0x02 /* Management Mode */ +#define B53_MIB_AC_PAGE 0x03 /* MIB Autocast */ +#define B53_ARLCTRL_PAGE 0x04 /* ARL Control */ +#define B53_ARLIO_PAGE 0x05 /* ARL Access */ +#define B53_FRAMEBUF_PAGE 0x06 /* Management frame access */ +#define B53_MEM_ACCESS_PAGE 0x08 /* Memory access */ + +/* PHY Registers */ +#define B53_PORT_MII_PAGE(i) (0x10 + i) /* Port i MII Registers */ +#define B53_IM_PORT_PAGE 0x18 /* Inverse MII Port (to EMAC) */ +#define B53_ALL_PORT_PAGE 0x19 /* All ports MII (broadcast) */ + +/* MIB registers */ +#define B53_MIB_PAGE(i) (0x20 + i) + +/* Quality of Service (QoS) Registers */ +#define B53_QOS_PAGE 0x30 + +/* Port VLAN Page */ +#define B53_PVLAN_PAGE 0x31 + +/* VLAN Registers */ +#define B53_VLAN_PAGE 0x34 + +/* Jumbo Frame Registers */ +#define B53_JUMBO_PAGE 0x40 + +/************************************************************************* + * Control Page registers + *************************************************************************/ + +/* Port Control Register (8 bit) */ +#define B53_PORT_CTRL(i) (0x00 + i) +#define PORT_CTRL_RX_DISABLE BIT(0) +#define PORT_CTRL_TX_DISABLE BIT(1) +#define PORT_CTRL_RX_BCST_EN BIT(2) /* Broadcast RX (P8 only) */ +#define PORT_CTRL_RX_MCST_EN BIT(3) /* Multicast RX (P8 only) */ +#define PORT_CTRL_RX_UCST_EN BIT(4) /* Unicast RX (P8 only) */ +#define PORT_CTRL_STP_STATE_S 5 +#define PORT_CTRL_STP_STATE_MASK (0x3 << PORT_CTRL_STP_STATE_S) + +/* SMP Control Register (8 bit) */ +#define B53_SMP_CTRL 0x0a + +/* Switch Mode Control Register (8 bit) */ +#define B53_SWITCH_MODE 0x0b +#define SM_SW_FWD_MODE BIT(0) /* 1 = Managed Mode */ +#define SM_SW_FWD_EN BIT(1) /* Forwarding Enable */ + +/* IMP Port state override register (8 bit) */ +#define B53_PORT_OVERRIDE_CTRL 0x0e +#define PORT_OVERRIDE_LINK BIT(0) +#define PORT_OVERRIDE_HALF_DUPLEX BIT(1) /* 0 = Full Duplex */ +#define PORT_OVERRIDE_SPEED_S 2 +#define PORT_OVERRIDE_SPEED_10M (0 << PORT_OVERRIDE_SPEED_S) +#define PORT_OVERRIDE_SPEED_100M (1 << PORT_OVERRIDE_SPEED_S) +#define PORT_OVERRIDE_SPEED_1000M (2 << PORT_OVERRIDE_SPEED_S) +#define PORT_OVERRIDE_RV_MII_25 BIT(4) /* BCM5325 only */ +#define PORT_OVERRIDE_RX_FLOW BIT(4) +#define PORT_OVERRIDE_TX_FLOW BIT(5) +#define PORT_OVERRIDE_EN BIT(7) /* Use the register contents */ + +/* Power-down mode control */ +#define B53_PD_MODE_CTRL_25 0x0f + +/* IP Multicast control (8 bit) */ +#define B53_IP_MULTICAST_CTRL 0x21 +#define B53_IPMC_FWD_EN BIT(1) +#define B53_UC_FWD_EN BIT(6) +#define B53_MC_FWD_EN BIT(7) + +/* (16 bit) */ +#define B53_UC_FLOOD_MASK 0x32 +#define B53_MC_FLOOD_MASK 0x34 +#define B53_IPMC_FLOOD_MASK 0x36 + +/* Software reset register (8 bit) */ +#define B53_SOFTRESET 0x79 + +/* Fast Aging Control register (8 bit) */ +#define B53_FAST_AGE_CTRL 0x88 +#define FAST_AGE_STATIC BIT(0) +#define FAST_AGE_DYNAMIC BIT(1) +#define FAST_AGE_PORT BIT(2) +#define FAST_AGE_VLAN BIT(3) +#define FAST_AGE_STP BIT(4) +#define FAST_AGE_MC BIT(5) +#define FAST_AGE_DONE BIT(7) + +/************************************************************************* + * Status Page registers + *************************************************************************/ + +/* Link Status Summary Register (16bit) */ +#define B53_LINK_STAT 0x00 + +/* Link Status Change Register (16 bit) */ +#define B53_LINK_STAT_CHANGE 0x02 + +/* Port Speed Summary Register (16 bit for FE, 32 bit for GE) */ +#define B53_SPEED_STAT 0x04 +#define SPEED_PORT_FE(reg, port) (((reg) >> (port)) & 1) +#define SPEED_PORT_GE(reg, port) (((reg) >> 2 * (port)) & 3) +#define SPEED_STAT_10M 0 +#define SPEED_STAT_100M 1 +#define SPEED_STAT_1000M 2 + +/* Duplex Status Summary (16 bit) */ +#define B53_DUPLEX_STAT_FE 0x06 +#define B53_DUPLEX_STAT_GE 0x08 +#define B53_DUPLEX_STAT_63XX 0x0c + +/* Strap Value (48 bit) */ +#define B53_STRAP_VALUE 0x70 +#define SV_GMII_CTRL_115 BIT(27) + +/************************************************************************* + * Management Mode Page Registers + *************************************************************************/ + +/* Global Management Config Register (8 bit) */ +#define B53_GLOBAL_CONFIG 0x00 +#define GC_RESET_MIB 0x01 +#define GC_RX_BPDU_EN 0x02 +#define GC_MIB_AC_HDR_EN 0x10 +#define GC_MIB_AC_EN 0x20 +#define GC_FRM_MGMT_PORT_M 0xC0 +#define GC_FRM_MGMT_PORT_04 0x00 +#define GC_FRM_MGMT_PORT_MII 0x80 + +/* Device ID register (8 or 32 bit) */ +#define B53_DEVICE_ID 0x30 + +/* Revision ID register (8 bit) */ +#define B53_REV_ID 0x40 + +/************************************************************************* + * ARL Access Page Registers + *************************************************************************/ + +/* VLAN Table Access Register (8 bit) */ +#define B53_VT_ACCESS 0x80 +#define B53_VT_ACCESS_9798 0x60 /* for BCM5397/BCM5398 */ +#define B53_VT_ACCESS_63XX 0x60 /* for BCM6328/62/68 */ +#define VTA_CMD_WRITE 0 +#define VTA_CMD_READ 1 +#define VTA_CMD_CLEAR 2 +#define VTA_START_CMD BIT(7) + +/* VLAN Table Index Register (16 bit) */ +#define B53_VT_INDEX 0x81 +#define B53_VT_INDEX_9798 0x61 +#define B53_VT_INDEX_63XX 0x62 + +/* VLAN Table Entry Register (32 bit) */ +#define B53_VT_ENTRY 0x83 +#define B53_VT_ENTRY_9798 0x63 +#define B53_VT_ENTRY_63XX 0x64 +#define VTE_MEMBERS 0x1ff +#define VTE_UNTAG_S 9 +#define VTE_UNTAG (0x1ff << 9) + +/************************************************************************* + * Port VLAN Registers + *************************************************************************/ + +/* Port VLAN mask (16 bit) IMP port is always 8, also on 5325 & co */ +#define B53_PVLAN_PORT_MASK(i) ((i) * 2) + +/************************************************************************* + * 802.1Q Page Registers + *************************************************************************/ + +/* Global QoS Control (8 bit) */ +#define B53_QOS_GLOBAL_CTL 0x00 + +/* Enable 802.1Q for individual Ports (16 bit) */ +#define B53_802_1P_EN 0x04 + +/************************************************************************* + * VLAN Page Registers + *************************************************************************/ + +/* VLAN Control 0 (8 bit) */ +#define B53_VLAN_CTRL0 0x00 +#define VC0_8021PF_CTRL_MASK 0x3 +#define VC0_8021PF_CTRL_NONE 0x0 +#define VC0_8021PF_CTRL_CHANGE_PRI 0x1 +#define VC0_8021PF_CTRL_CHANGE_VID 0x2 +#define VC0_8021PF_CTRL_CHANGE_BOTH 0x3 +#define VC0_8021QF_CTRL_MASK 0xc +#define VC0_8021QF_CTRL_CHANGE_PRI 0x1 +#define VC0_8021QF_CTRL_CHANGE_VID 0x2 +#define VC0_8021QF_CTRL_CHANGE_BOTH 0x3 +#define VC0_RESERVED_1 BIT(1) +#define VC0_DROP_VID_MISS BIT(4) +#define VC0_VID_HASH_VID BIT(5) +#define VC0_VID_CHK_EN BIT(6) /* Use VID,DA or VID,SA */ +#define VC0_VLAN_EN BIT(7) /* 802.1Q VLAN Enabled */ + +/* VLAN Control 1 (8 bit) */ +#define B53_VLAN_CTRL1 0x01 +#define VC1_RX_MCST_TAG_EN BIT(1) +#define VC1_RX_MCST_FWD_EN BIT(2) +#define VC1_RX_MCST_UNTAG_EN BIT(3) + +/* VLAN Control 2 (8 bit) */ +#define B53_VLAN_CTRL2 0x02 + +/* VLAN Control 3 (8 bit when BCM5325, 16 bit else) */ +#define B53_VLAN_CTRL3 0x03 +#define B53_VLAN_CTRL3_63XX 0x04 +#define VC3_MAXSIZE_1532 BIT(6) /* 5325 only */ +#define VC3_HIGH_8BIT_EN BIT(7) /* 5325 only */ + +/* VLAN Control 4 (8 bit) */ +#define B53_VLAN_CTRL4 0x05 +#define B53_VLAN_CTRL4_25 0x04 +#define B53_VLAN_CTRL4_63XX 0x06 +#define VC4_ING_VID_CHECK_S 6 +#define VC4_ING_VID_CHECK_MASK (0x3 << VC4_ING_VID_CHECK_S) +#define VC4_ING_VID_VIO_FWD 0 /* forward, but do not learn */ +#define VC4_ING_VID_VIO_DROP 1 /* drop VID violations */ +#define VC4_NO_ING_VID_CHK 2 /* do not check */ +#define VC4_ING_VID_VIO_TO_IMP 3 /* redirect to MII port */ + +/* VLAN Control 5 (8 bit) */ +#define B53_VLAN_CTRL5 0x06 +#define B53_VLAN_CTRL5_25 0x05 +#define B53_VLAN_CTRL5_63XX 0x07 +#define VC5_VID_FFF_EN BIT(2) +#define VC5_DROP_VTABLE_MISS BIT(3) + +/* VLAN Control 6 (8 bit) */ +#define B53_VLAN_CTRL6 0x07 +#define B53_VLAN_CTRL6_63XX 0x08 + +/* VLAN Table Access Register (16 bit) */ +#define B53_VLAN_TABLE_ACCESS_25 0x06 /* BCM5325E/5350 */ +#define B53_VLAN_TABLE_ACCESS_65 0x08 /* BCM5365 */ +#define VTA_VID_LOW_MASK_25 0xf +#define VTA_VID_LOW_MASK_65 0xff +#define VTA_VID_HIGH_S_25 4 +#define VTA_VID_HIGH_S_65 8 +#define VTA_VID_HIGH_MASK_25 (0xff << VTA_VID_HIGH_S_25E) +#define VTA_VID_HIGH_MASK_65 (0xf << VTA_VID_HIGH_S_65) +#define VTA_RW_STATE BIT(12) +#define VTA_RW_STATE_RD 0 +#define VTA_RW_STATE_WR BIT(12) +#define VTA_RW_OP_EN BIT(13) + +/* VLAN Read/Write Registers for (16/32 bit) */ +#define B53_VLAN_WRITE_25 0x08 +#define B53_VLAN_WRITE_65 0x0a +#define B53_VLAN_READ 0x0c +#define VA_MEMBER_MASK 0x3f +#define VA_UNTAG_S 6 +#define VA_UNTAG_MASK (0x3f << VA_UNTAG_S) +#define VA_VID_HIGH_S 12 +#define VA_VID_HIGH_MASK (0xffff << VA_VID_HIGH_S) +#define VA_VALID_25 BIT(20) +#define VA_VALID_25_R4 BIT(24) +#define VA_VALID_65 BIT(14) + +/* VLAN Port Default Tag (16 bit) */ +#define B53_VLAN_PORT_DEF_TAG(i) (0x10 + 2 * (i)) + +/************************************************************************* + * Jumbo Frame Page Registers + *************************************************************************/ + +/* Jumbo Enable Port Mask (bit i == port i enabled) (32 bit) */ +#define B53_JUMBO_PORT_MASK 0x01 +#define B53_JUMBO_PORT_MASK_63XX 0x04 +#define JPM_10_100_JUMBO_EN BIT(24) /* GigE always enabled */ + +/* Good Frame Max Size without 802.1Q TAG (16 bit) */ +#define B53_JUMBO_MAX_SIZE 0x05 +#define B53_JUMBO_MAX_SIZE_63XX 0x08 +#define JMS_MIN_SIZE 1518 +#define JMS_MAX_SIZE 9724 + +#endif /* !__B53_REGS_H */ diff --git a/target/linux/generic/files/drivers/net/phy/b53/b53_spi.c b/target/linux/generic/files/drivers/net/phy/b53/b53_spi.c new file mode 100644 index 000000000..6050fea32 --- /dev/null +++ b/target/linux/generic/files/drivers/net/phy/b53/b53_spi.c @@ -0,0 +1,329 @@ +/* + * B53 register access through SPI + * + * Copyright (C) 2011-2013 Jonas Gorski <jogo@openwrt.org> + * + * Permission to use, copy, modify, and/or distribute this software for any + * purpose with or without fee is hereby granted, provided that the above + * copyright notice and this permission notice appear in all copies. + * + * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES + * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF + * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR + * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES + * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN + * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF + * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. + */ + +#include <asm/unaligned.h> + +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/spi/spi.h> +#include <linux/platform_data/b53.h> + +#include "b53_priv.h" + +#define B53_SPI_DATA 0xf0 + +#define B53_SPI_STATUS 0xfe +#define B53_SPI_CMD_SPIF BIT(7) +#define B53_SPI_CMD_RACK BIT(5) + +#define B53_SPI_CMD_READ 0x00 +#define B53_SPI_CMD_WRITE 0x01 +#define B53_SPI_CMD_NORMAL 0x60 +#define B53_SPI_CMD_FAST 0x10 + +#define B53_SPI_PAGE_SELECT 0xff + +static inline int b53_spi_read_reg(struct spi_device *spi, u8 reg, u8 *val, + unsigned len) +{ + u8 txbuf[2]; + + txbuf[0] = B53_SPI_CMD_NORMAL | B53_SPI_CMD_READ; + txbuf[1] = reg; + + return spi_write_then_read(spi, txbuf, 2, val, len); +} + +static inline int b53_spi_clear_status(struct spi_device *spi) +{ + unsigned int i; + u8 rxbuf; + int ret; + + for (i = 0; i < 10; i++) { + ret = b53_spi_read_reg(spi, B53_SPI_STATUS, &rxbuf, 1); + if (ret) + return ret; + + if (!(rxbuf & B53_SPI_CMD_SPIF)) + break; + + mdelay(1); + } + + if (i == 10) + return -EIO; + + return 0; +} + +static inline int b53_spi_set_page(struct spi_device *spi, u8 page) +{ + u8 txbuf[3]; + + txbuf[0] = B53_SPI_CMD_NORMAL | B53_SPI_CMD_WRITE; + txbuf[1] = B53_SPI_PAGE_SELECT; + txbuf[2] = page; + + return spi_write(spi, txbuf, sizeof(txbuf)); +} + +static inline int b53_prepare_reg_access(struct spi_device *spi, u8 page) +{ + int ret = b53_spi_clear_status(spi); + if (ret) + return ret; + + return b53_spi_set_page(spi, page); +} + +static int b53_spi_prepare_reg_read(struct spi_device *spi, u8 reg) +{ + u8 rxbuf; + int retry_count; + int ret; + + ret = b53_spi_read_reg(spi, reg, &rxbuf, 1); + if (ret) + return ret; + + for (retry_count = 0; retry_count < 10; retry_count++) { + ret = b53_spi_read_reg(spi, B53_SPI_STATUS, &rxbuf, 1); + if (ret) + return ret; + + if (rxbuf & B53_SPI_CMD_RACK) + break; + + mdelay(1); + } + + if (retry_count == 10) + return -EIO; + + return 0; +} + +static int b53_spi_read(struct b53_device *dev, u8 page, u8 reg, u8 *data, + unsigned len) +{ + struct spi_device *spi = dev->priv; + int ret; + + ret = b53_prepare_reg_access(spi, page); + if (ret) + return ret; + + ret = b53_spi_prepare_reg_read(spi, reg); + if (ret) + return ret; + + return b53_spi_read_reg(spi, B53_SPI_DATA, data, len); +} + +static int b53_spi_read8(struct b53_device *dev, u8 page, u8 reg, u8 *val) +{ + return b53_spi_read(dev, page, reg, val, 1); +} + +static int b53_spi_read16(struct b53_device *dev, u8 page, u8 reg, u16 *val) +{ + int ret = b53_spi_read(dev, page, reg, (u8 *)val, 2); + if (!ret) + *val = le16_to_cpu(*val); + + return ret; +} + +static int b53_spi_read32(struct b53_device *dev, u8 page, u8 reg, u32 *val) +{ + int ret = b53_spi_read(dev, page, reg, (u8 *)val, 4); + if (!ret) + *val = le32_to_cpu(*val); + + return ret; +} + +static int b53_spi_read48(struct b53_device *dev, u8 page, u8 reg, u64 *val) +{ + int ret; + + *val = 0; + ret = b53_spi_read(dev, page, reg, (u8 *)val, 6); + if (!ret) + *val = le64_to_cpu(*val); + + return ret; +} + +static int b53_spi_read64(struct b53_device *dev, u8 page, u8 reg, u64 *val) +{ + int ret = b53_spi_read(dev, page, reg, (u8 *)val, 8); + if (!ret) + *val = le64_to_cpu(*val); + + return ret; +} + +static int b53_spi_write8(struct b53_device *dev, u8 page, u8 reg, u8 value) +{ + struct spi_device *spi = dev->priv; + int ret; + u8 txbuf[3]; + + ret = b53_prepare_reg_access(spi, page); + if (ret) + return ret; + + txbuf[0] = B53_SPI_CMD_NORMAL | B53_SPI_CMD_WRITE; + txbuf[1] = reg; + txbuf[2] = value; + + return spi_write(spi, txbuf, sizeof(txbuf)); +} + +static int b53_spi_write16(struct b53_device *dev, u8 page, u8 reg, u16 value) +{ + struct spi_device *spi = dev->priv; + int ret; + u8 txbuf[4]; + + ret = b53_prepare_reg_access(spi, page); + if (ret) + return ret; + + txbuf[0] = B53_SPI_CMD_NORMAL | B53_SPI_CMD_WRITE; + txbuf[1] = reg; + put_unaligned_le16(value, &txbuf[2]); + + return spi_write(spi, txbuf, sizeof(txbuf)); +} + +static int b53_spi_write32(struct b53_device *dev, u8 page, u8 reg, u32 value) +{ + struct spi_device *spi = dev->priv; + int ret; + u8 txbuf[6]; + + ret = b53_prepare_reg_access(spi, page); + if (ret) + return ret; + + txbuf[0] = B53_SPI_CMD_NORMAL | B53_SPI_CMD_WRITE; + txbuf[1] = reg; + put_unaligned_le32(value, &txbuf[2]); + + return spi_write(spi, txbuf, sizeof(txbuf)); +} + +static int b53_spi_write48(struct b53_device *dev, u8 page, u8 reg, u64 value) +{ + struct spi_device *spi = dev->priv; + int ret; + u8 txbuf[10]; + + ret = b53_prepare_reg_access(spi, page); + if (ret) + return ret; + + txbuf[0] = B53_SPI_CMD_NORMAL | B53_SPI_CMD_WRITE; + txbuf[1] = reg; + put_unaligned_le64(value, &txbuf[2]); + + return spi_write(spi, txbuf, sizeof(txbuf) - 2); +} + +static int b53_spi_write64(struct b53_device *dev, u8 page, u8 reg, u64 value) +{ + struct spi_device *spi = dev->priv; + int ret; + u8 txbuf[10]; + + ret = b53_prepare_reg_access(spi, page); + if (ret) + return ret; + + txbuf[0] = B53_SPI_CMD_NORMAL | B53_SPI_CMD_WRITE; + txbuf[1] = reg; + put_unaligned_le64(value, &txbuf[2]); + + return spi_write(spi, txbuf, sizeof(txbuf)); +} + +static struct b53_io_ops b53_spi_ops = { + .read8 = b53_spi_read8, + .read16 = b53_spi_read16, + .read32 = b53_spi_read32, + .read48 = b53_spi_read48, + .read64 = b53_spi_read64, + .write8 = b53_spi_write8, + .write16 = b53_spi_write16, + .write32 = b53_spi_write32, + .write48 = b53_spi_write48, + .write64 = b53_spi_write64, +}; + +static int b53_spi_probe(struct spi_device *spi) +{ + struct b53_device *dev; + int ret; + + dev = b53_switch_alloc(&spi->dev, &b53_spi_ops, spi); + if (!dev) + return -ENOMEM; + + if (spi->dev.platform_data) + dev->pdata = spi->dev.platform_data; + + ret = b53_switch_register(dev); + if (ret) + return ret; + + spi->dev.platform_data = dev; + + return 0; +} + +static int b53_spi_remove(struct spi_device *spi) +{ + struct b53_device *dev = spi->dev.platform_data; + + if (dev) { + struct b53_platform_data *pdata = dev->pdata; + b53_switch_remove(dev); + spi->dev.platform_data = pdata; + } + + return 0; +} + +static struct spi_driver b53_spi_driver = { + .driver = { + .name = "b53-switch", + .bus = &spi_bus_type, + .owner = THIS_MODULE, + }, + .probe = b53_spi_probe, + .remove = b53_spi_remove, +}; + +module_spi_driver(b53_spi_driver); + +MODULE_AUTHOR("Jonas Gorski <jogo@openwrt.org>"); +MODULE_DESCRIPTION("B53 SPI access driver"); +MODULE_LICENSE("Dual BSD/GPL"); diff --git a/target/linux/generic/files/drivers/net/phy/mvswitch.c b/target/linux/generic/files/drivers/net/phy/mvswitch.c index d754951ac..af73ec22a 100644 --- a/target/linux/generic/files/drivers/net/phy/mvswitch.c +++ b/target/linux/generic/files/drivers/net/phy/mvswitch.c @@ -348,16 +348,26 @@ mvswitch_config_aneg(struct phy_device *phydev) } static void -mvswitch_remove(struct phy_device *pdev) +mvswitch_detach(struct phy_device *pdev) { struct mvswitch_priv *priv = to_mvsw(pdev); struct net_device *dev = pdev->attached_dev; + if (!dev) + return; + dev->phy_ptr = NULL; dev->eth_mangle_rx = NULL; dev->eth_mangle_tx = NULL; dev->features = priv->orig_features; dev->priv_flags &= ~IFF_NO_IP_ALIGN; +} + +static void +mvswitch_remove(struct phy_device *pdev) +{ + struct mvswitch_priv *priv = to_mvsw(pdev); + kfree(priv); } @@ -399,6 +409,7 @@ static struct phy_driver mvswitch_driver = { .features = PHY_BASIC_FEATURES, .probe = &mvswitch_probe, .remove = &mvswitch_remove, + .detach = &mvswitch_detach, .config_init = &mvswitch_config_init, .config_aneg = &mvswitch_config_aneg, .read_status = &mvswitch_read_status, diff --git a/target/linux/generic/files/drivers/net/phy/rtl8366_smi.c b/target/linux/generic/files/drivers/net/phy/rtl8366_smi.c index be85274e7..e2b4f02ef 100644 --- a/target/linux/generic/files/drivers/net/phy/rtl8366_smi.c +++ b/target/linux/generic/files/drivers/net/phy/rtl8366_smi.c @@ -15,6 +15,9 @@ #include <linux/gpio.h> #include <linux/spinlock.h> #include <linux/skbuff.h> +#include <linux/of.h> +#include <linux/of_platform.h> +#include <linux/of_gpio.h> #include <linux/rtl8366.h> #ifdef CONFIG_RTL8366_SMI_DEBUG_FS @@ -1106,6 +1109,7 @@ int rtl8366_sw_set_vlan_ports(struct switch_dev *dev, struct switch_val *val) port = &val->value.ports[0]; for (i = 0; i < val->len; i++, port++) { + int pvid = 0; member |= BIT(port->id); if (!(port->flags & BIT(SWITCH_PORT_FLAG_TAGGED))) @@ -1115,9 +1119,14 @@ int rtl8366_sw_set_vlan_ports(struct switch_dev *dev, struct switch_val *val) * To ensure that we have a valid MC entry for this VLAN, * initialize the port VLAN ID here. */ - err = rtl8366_set_pvid(smi, port->id, val->port_vlan); + err = rtl8366_get_pvid(smi, port->id, &pvid); if (err < 0) return err; + if (pvid == 0) { + err = rtl8366_set_pvid(smi, port->id, val->port_vlan); + if (err < 0) + return err; + } } return rtl8366_set_vlan(smi, val->port_vlan, member, untag, 0); @@ -1370,6 +1379,71 @@ void rtl8366_smi_cleanup(struct rtl8366_smi *smi) } EXPORT_SYMBOL_GPL(rtl8366_smi_cleanup); +#ifdef CONFIG_OF +int rtl8366_smi_probe_of(struct platform_device *pdev, struct rtl8366_smi *smi) +{ + int sck = of_get_named_gpio(pdev->dev.of_node, "gpio-sck", 0); + int sda = of_get_named_gpio(pdev->dev.of_node, "gpio-sda", 0); + + if (!gpio_is_valid(sck) || !gpio_is_valid(sda)) { + dev_err(&pdev->dev, "gpios missing in devictree\n"); + return -EINVAL; + } + + smi->gpio_sda = sda; + smi->gpio_sck = sck; + + return 0; +} +#else +static inline int rtl8366_smi_probe_of(struct platform_device *pdev, struct rtl8366_smi *smi) +{ + return -ENODEV; +} +#endif + +int rtl8366_smi_probe_plat(struct platform_device *pdev, struct rtl8366_smi *smi) +{ + struct rtl8366_platform_data *pdata = pdev->dev.platform_data; + + if (!pdev->dev.platform_data) { + dev_err(&pdev->dev, "no platform data specified\n"); + return -EINVAL; + } + + smi->gpio_sda = pdata->gpio_sda; + smi->gpio_sck = pdata->gpio_sck; + smi->hw_reset = pdata->hw_reset; + + return 0; +} + + +struct rtl8366_smi *rtl8366_smi_probe(struct platform_device *pdev) +{ + struct rtl8366_smi *smi; + int err; + + smi = rtl8366_smi_alloc(&pdev->dev); + if (!smi) + return NULL; + + if (pdev->dev.of_node) + err = rtl8366_smi_probe_of(pdev, smi); + else + err = rtl8366_smi_probe_plat(pdev, smi); + + if (err) + goto free_smi; + + return smi; + +free_smi: + kfree(smi); + return NULL; +} +EXPORT_SYMBOL_GPL(rtl8366_smi_probe); + MODULE_DESCRIPTION("Realtek RTL8366 SMI interface driver"); MODULE_AUTHOR("Gabor Juhos <juhosg@openwrt.org>"); MODULE_LICENSE("GPL v2"); diff --git a/target/linux/generic/files/drivers/net/phy/rtl8366_smi.h b/target/linux/generic/files/drivers/net/phy/rtl8366_smi.h index 700f83c1a..bd41385be 100644 --- a/target/linux/generic/files/drivers/net/phy/rtl8366_smi.h +++ b/target/linux/generic/files/drivers/net/phy/rtl8366_smi.h @@ -13,6 +13,7 @@ #include <linux/phy.h> #include <linux/switch.h> +#include <linux/platform_device.h> struct rtl8366_smi_ops; struct rtl8366_vlan_ops; @@ -146,4 +147,6 @@ int rtl8366_sw_set_vlan_enable(struct switch_dev *dev, const struct switch_attr *attr, struct switch_val *val); +struct rtl8366_smi* rtl8366_smi_probe(struct platform_device *pdev); + #endif /* _RTL8366_SMI_H */ diff --git a/target/linux/generic/files/drivers/net/phy/rtl8366rb.c b/target/linux/generic/files/drivers/net/phy/rtl8366rb.c index 775949792..d3674afcb 100644 --- a/target/linux/generic/files/drivers/net/phy/rtl8366rb.c +++ b/target/linux/generic/files/drivers/net/phy/rtl8366rb.c @@ -13,7 +13,9 @@ #include <linux/kernel.h> #include <linux/module.h> #include <linux/init.h> -#include <linux/platform_device.h> +#include <linux/device.h> +#include <linux/of.h> +#include <linux/of_platform.h> #include <linux/delay.h> #include <linux/skbuff.h> #include <linux/rtl8366.h> @@ -1168,10 +1170,9 @@ static struct rtl8366_smi_ops rtl8366rb_smi_ops = { .enable_port = rtl8366rb_enable_port, }; -static int __devinit rtl8366rb_probe(struct platform_device *pdev) +static int rtl8366rb_probe(struct platform_device *pdev) { static int rtl8366_smi_version_printed; - struct rtl8366_platform_data *pdata; struct rtl8366_smi *smi; int err; @@ -1179,22 +1180,9 @@ static int __devinit rtl8366rb_probe(struct platform_device *pdev) printk(KERN_NOTICE RTL8366RB_DRIVER_DESC " version " RTL8366RB_DRIVER_VER"\n"); - pdata = pdev->dev.platform_data; - if (!pdata) { - dev_err(&pdev->dev, "no platform data specified\n"); - err = -EINVAL; - goto err_out; - } - - smi = rtl8366_smi_alloc(&pdev->dev); - if (!smi) { - err = -ENOMEM; - goto err_out; - } - - smi->gpio_sda = pdata->gpio_sda; - smi->gpio_sck = pdata->gpio_sck; - smi->hw_reset = pdata->hw_reset; + smi = rtl8366_smi_probe(pdev); + if (!smi) + return -ENODEV; smi->clk_delay = 10; smi->cmd_read = 0xa9; @@ -1223,11 +1211,10 @@ static int __devinit rtl8366rb_probe(struct platform_device *pdev) rtl8366_smi_cleanup(smi); err_free_smi: kfree(smi); - err_out: return err; } -static int __devexit rtl8366rb_remove(struct platform_device *pdev) +static int rtl8366rb_remove(struct platform_device *pdev) { struct rtl8366_smi *smi = platform_get_drvdata(pdev); @@ -1241,13 +1228,22 @@ static int __devexit rtl8366rb_remove(struct platform_device *pdev) return 0; } +#ifdef CONFIG_OF +static const struct of_device_id rtl8366rb_match[] = { + { .compatible = "rtl8366rb" }, + {}, +}; +MODULE_DEVICE_TABLE(of, rtl8366rb_match); +#endif + static struct platform_driver rtl8366rb_driver = { .driver = { .name = RTL8366RB_DRIVER_NAME, .owner = THIS_MODULE, + .of_match_table = of_match_ptr(rtl8366rb_match), }, .probe = rtl8366rb_probe, - .remove = __devexit_p(rtl8366rb_remove), + .remove = rtl8366rb_remove, }; static int __init rtl8366rb_module_init(void) diff --git a/target/linux/generic/files/drivers/net/phy/rtl8366s.c b/target/linux/generic/files/drivers/net/phy/rtl8366s.c index 77427d6c9..3dc2a87ae 100644 --- a/target/linux/generic/files/drivers/net/phy/rtl8366s.c +++ b/target/linux/generic/files/drivers/net/phy/rtl8366s.c @@ -12,7 +12,9 @@ #include <linux/kernel.h> #include <linux/module.h> #include <linux/init.h> -#include <linux/platform_device.h> +#include <linux/device.h> +#include <linux/of.h> +#include <linux/of_platform.h> #include <linux/delay.h> #include <linux/skbuff.h> #include <linux/rtl8366.h> @@ -254,7 +256,7 @@ static int rtl8366s_setup(struct rtl8366_smi *smi) int err; pdata = smi->parent->platform_data; - if (pdata->num_initvals && pdata->initvals) { + if (pdata && pdata->num_initvals && pdata->initvals) { unsigned i; dev_info(smi->parent, "applying initvals\n"); @@ -1048,10 +1050,9 @@ static struct rtl8366_smi_ops rtl8366s_smi_ops = { .enable_port = rtl8366s_enable_port, }; -static int __devinit rtl8366s_probe(struct platform_device *pdev) +static int rtl8366s_probe(struct platform_device *pdev) { static int rtl8366_smi_version_printed; - struct rtl8366_platform_data *pdata; struct rtl8366_smi *smi; int err; @@ -1059,22 +1060,9 @@ static int __devinit rtl8366s_probe(struct platform_device *pdev) printk(KERN_NOTICE RTL8366S_DRIVER_DESC " version " RTL8366S_DRIVER_VER"\n"); - pdata = pdev->dev.platform_data; - if (!pdata) { - dev_err(&pdev->dev, "no platform data specified\n"); - err = -EINVAL; - goto err_out; - } - - smi = rtl8366_smi_alloc(&pdev->dev); - if (!smi) { - err = -ENOMEM; - goto err_out; - } - - smi->gpio_sda = pdata->gpio_sda; - smi->gpio_sck = pdata->gpio_sck; - smi->hw_reset = pdata->hw_reset; + smi = rtl8366_smi_probe(pdev); + if (!smi) + return -ENODEV; smi->clk_delay = 10; smi->cmd_read = 0xa9; @@ -1103,11 +1091,10 @@ static int __devinit rtl8366s_probe(struct platform_device *pdev) rtl8366_smi_cleanup(smi); err_free_smi: kfree(smi); - err_out: return err; } -static int __devexit rtl8366s_remove(struct platform_device *pdev) +static int rtl8366s_remove(struct platform_device *pdev) { struct rtl8366_smi *smi = platform_get_drvdata(pdev); @@ -1121,13 +1108,24 @@ static int __devexit rtl8366s_remove(struct platform_device *pdev) return 0; } +#ifdef CONFIG_OF +static const struct of_device_id rtl8366s_match[] = { + { .compatible = "realtek,rtl8366s" }, + {}, +}; +MODULE_DEVICE_TABLE(of, rtl8366s_match); +#endif + static struct platform_driver rtl8366s_driver = { .driver = { .name = RTL8366S_DRIVER_NAME, .owner = THIS_MODULE, +#ifdef CONFIG_OF + .of_match_table = of_match_ptr(rtl8366s_match), +#endif }, .probe = rtl8366s_probe, - .remove = __devexit_p(rtl8366s_remove), + .remove = rtl8366s_remove, }; static int __init rtl8366s_module_init(void) diff --git a/target/linux/generic/files/drivers/net/phy/rtl8367.c b/target/linux/generic/files/drivers/net/phy/rtl8367.c index ee2a04701..3cd811e75 100644 --- a/target/linux/generic/files/drivers/net/phy/rtl8367.c +++ b/target/linux/generic/files/drivers/net/phy/rtl8367.c @@ -11,7 +11,9 @@ #include <linux/kernel.h> #include <linux/module.h> #include <linux/init.h> -#include <linux/platform_device.h> +#include <linux/device.h> +#include <linux/of.h> +#include <linux/of_platform.h> #include <linux/delay.h> #include <linux/skbuff.h> #include <linux/rtl8367.h> @@ -1071,6 +1073,51 @@ static int rtl8367_led_blinkrate_set(struct rtl8366_smi *smi, unsigned int rate) return 0; } +#ifdef CONFIG_OF +static int rtl8367_extif_init_of(struct rtl8366_smi *smi, int id, + const char *name) +{ + struct rtl8367_extif_config *cfg; + const __be32 *prop; + int size; + int err; + + prop = of_get_property(smi->parent->of_node, name, &size); + if (!prop) + return rtl8367_extif_init(smi, id, NULL); + + if (size != (9 * sizeof(*prop))) { + dev_err(smi->parent, "%s property is invalid\n", name); + return -EINVAL; + } + + cfg = kzalloc(sizeof(struct rtl8367_extif_config), GFP_KERNEL); + if (!cfg) + return -ENOMEM; + + cfg->txdelay = be32_to_cpup(prop++); + cfg->rxdelay = be32_to_cpup(prop++); + cfg->mode = be32_to_cpup(prop++); + cfg->ability.force_mode = be32_to_cpup(prop++); + cfg->ability.txpause = be32_to_cpup(prop++); + cfg->ability.rxpause = be32_to_cpup(prop++); + cfg->ability.link = be32_to_cpup(prop++); + cfg->ability.duplex = be32_to_cpup(prop++); + cfg->ability.speed = be32_to_cpup(prop++); + + err = rtl8367_extif_init(smi, id, cfg); + kfree(cfg); + + return err; +} +#else +static int rtl8367_extif_init_of(struct rtl8366_smi *smi, int id, + const char *name) +{ + return -EINVAL; +} +#endif + static int rtl8367_setup(struct rtl8366_smi *smi) { struct rtl8367_platform_data *pdata; @@ -1084,13 +1131,23 @@ static int rtl8367_setup(struct rtl8366_smi *smi) return err; /* initialize external interfaces */ - err = rtl8367_extif_init(smi, 0, pdata->extif0_cfg); - if (err) - return err; + if (smi->parent->of_node) { + err = rtl8367_extif_init_of(smi, 0, "realtek,extif0"); + if (err) + return err; - err = rtl8367_extif_init(smi, 1, pdata->extif1_cfg); - if (err) - return err; + err = rtl8367_extif_init_of(smi, 1, "realtek,extif1"); + if (err) + return err; + } else { + err = rtl8367_extif_init(smi, 0, pdata->extif0_cfg); + if (err) + return err; + + err = rtl8367_extif_init(smi, 1, pdata->extif1_cfg); + if (err) + return err; + } /* set maximum packet length to 1536 bytes */ REG_RMW(smi, RTL8367_SWC0_REG, RTL8367_SWC0_MAX_LENGTH_MASK, @@ -1671,28 +1728,14 @@ static struct rtl8366_smi_ops rtl8367_smi_ops = { .enable_port = rtl8367_enable_port, }; -static int __devinit rtl8367_probe(struct platform_device *pdev) +static int rtl8367_probe(struct platform_device *pdev) { - struct rtl8367_platform_data *pdata; struct rtl8366_smi *smi; int err; - pdata = pdev->dev.platform_data; - if (!pdata) { - dev_err(&pdev->dev, "no platform data specified\n"); - err = -EINVAL; - goto err_out; - } - - smi = rtl8366_smi_alloc(&pdev->dev); - if (!smi) { - err = -ENOMEM; - goto err_out; - } - - smi->gpio_sda = pdata->gpio_sda; - smi->gpio_sck = pdata->gpio_sck; - smi->hw_reset = pdata->hw_reset; + smi = rtl8366_smi_probe(pdev); + if (!smi) + return -ENODEV; smi->clk_delay = 1500; smi->cmd_read = 0xb9; @@ -1721,11 +1764,10 @@ static int __devinit rtl8367_probe(struct platform_device *pdev) rtl8366_smi_cleanup(smi); err_free_smi: kfree(smi); - err_out: return err; } -static int __devexit rtl8367_remove(struct platform_device *pdev) +static int rtl8367_remove(struct platform_device *pdev) { struct rtl8366_smi *smi = platform_get_drvdata(pdev); @@ -1747,13 +1789,24 @@ static void rtl8367_shutdown(struct platform_device *pdev) rtl8367_reset_chip(smi); } +#ifdef CONFIG_OF +static const struct of_device_id rtl8367_match[] = { + { .compatible = "realtek,rtl8367" }, + {}, +}; +MODULE_DEVICE_TABLE(of, rtl8367_match); +#endif + static struct platform_driver rtl8367_driver = { .driver = { .name = RTL8367_DRIVER_NAME, .owner = THIS_MODULE, +#ifdef CONFIG_OF + .of_match_table = of_match_ptr(rtl8367_match), +#endif }, .probe = rtl8367_probe, - .remove = __devexit_p(rtl8367_remove), + .remove = rtl8367_remove, .shutdown = rtl8367_shutdown, }; diff --git a/target/linux/generic/files/drivers/net/phy/rtl8367b.c b/target/linux/generic/files/drivers/net/phy/rtl8367b.c new file mode 100644 index 000000000..a82f696d7 --- /dev/null +++ b/target/linux/generic/files/drivers/net/phy/rtl8367b.c @@ -0,0 +1,1602 @@ +/* + * Platform driver for the Realtek RTL8367R-VB ethernet switches + * + * Copyright (C) 2012 Gabor Juhos <juhosg@openwrt.org> + * + * This program is free software; you can redistribute it and/or modify it + * under the terms of the GNU General Public License version 2 as published + * by the Free Software Foundation. + */ + +#include <linux/kernel.h> +#include <linux/module.h> +#include <linux/init.h> +#include <linux/device.h> +#include <linux/of.h> +#include <linux/of_platform.h> +#include <linux/delay.h> +#include <linux/skbuff.h> +#include <linux/rtl8367.h> + +#include "rtl8366_smi.h" + +#define RTL8367B_RESET_DELAY 1000 /* msecs*/ + +#define RTL8367B_PHY_ADDR_MAX 8 +#define RTL8367B_PHY_REG_MAX 31 + +#define RTL8367B_VID_MASK 0x3fff +#define RTL8367B_FID_MASK 0xf +#define RTL8367B_UNTAG_MASK 0xff +#define RTL8367B_MEMBER_MASK 0xff + +#define RTL8367B_PORT_MISC_CFG_REG(_p) (0x000e + 0x20 * (_p)) +#define RTL8367B_PORT_MISC_CFG_EGRESS_MODE_SHIFT 4 +#define RTL8367B_PORT_MISC_CFG_EGRESS_MODE_MASK 0x3 +#define RTL8367B_PORT_MISC_CFG_EGRESS_MODE_ORIGINAL 0 +#define RTL8367B_PORT_MISC_CFG_EGRESS_MODE_KEEP 1 +#define RTL8367B_PORT_MISC_CFG_EGRESS_MODE_PRI 2 +#define RTL8367B_PORT_MISC_CFG_EGRESS_MODE_REAL 3 + +#define RTL8367B_BYPASS_LINE_RATE_REG 0x03f7 + +#define RTL8367B_TA_CTRL_REG 0x0500 /*GOOD*/ +#define RTL8367B_TA_CTRL_SPA_SHIFT 8 +#define RTL8367B_TA_CTRL_SPA_MASK 0x7 +#define RTL8367B_TA_CTRL_METHOD BIT(4)/*GOOD*/ +#define RTL8367B_TA_CTRL_CMD_SHIFT 3 +#define RTL8367B_TA_CTRL_CMD_READ 0 +#define RTL8367B_TA_CTRL_CMD_WRITE 1 +#define RTL8367B_TA_CTRL_TABLE_SHIFT 0 /*GOOD*/ +#define RTL8367B_TA_CTRL_TABLE_ACLRULE 1 +#define RTL8367B_TA_CTRL_TABLE_ACLACT 2 +#define RTL8367B_TA_CTRL_TABLE_CVLAN 3 +#define RTL8367B_TA_CTRL_TABLE_L2 4 +#define RTL8367B_TA_CTRL_CVLAN_READ \ + ((RTL8367B_TA_CTRL_CMD_READ << RTL8367B_TA_CTRL_CMD_SHIFT) | \ + RTL8367B_TA_CTRL_TABLE_CVLAN) +#define RTL8367B_TA_CTRL_CVLAN_WRITE \ + ((RTL8367B_TA_CTRL_CMD_WRITE << RTL8367B_TA_CTRL_CMD_SHIFT) | \ + RTL8367B_TA_CTRL_TABLE_CVLAN) + +#define RTL8367B_TA_ADDR_REG 0x0501/*GOOD*/ +#define RTL8367B_TA_ADDR_MASK 0x3fff/*GOOD*/ + +#define RTL8367B_TA_LUT_REG 0x0502/*GOOD*/ + +#define RTL8367B_TA_WRDATA_REG(_x) (0x0510 + (_x))/*GOOD*/ +#define RTL8367B_TA_VLAN_NUM_WORDS 2 +#define RTL8367B_TA_VLAN_VID_MASK RTL8367B_VID_MASK +#define RTL8367B_TA_VLAN0_MEMBER_SHIFT 0 +#define RTL8367B_TA_VLAN0_MEMBER_MASK RTL8367B_MEMBER_MASK +#define RTL8367B_TA_VLAN0_UNTAG_SHIFT 8 +#define RTL8367B_TA_VLAN0_UNTAG_MASK RTL8367B_MEMBER_MASK +#define RTL8367B_TA_VLAN1_FID_SHIFT 0 +#define RTL8367B_TA_VLAN1_FID_MASK RTL8367B_FID_MASK + +#define RTL8367B_TA_RDDATA_REG(_x) (0x0520 + (_x))/*GOOD*/ + +#define RTL8367B_VLAN_PVID_CTRL_REG(_p) (0x0700 + (_p) / 2) /*GOOD*/ +#define RTL8367B_VLAN_PVID_CTRL_MASK 0x1f /*GOOD*/ +#define RTL8367B_VLAN_PVID_CTRL_SHIFT(_p) (8 * ((_p) % 2)) /*GOOD*/ + +#define RTL8367B_VLAN_MC_BASE(_x) (0x0728 + (_x) * 4) /*GOOD*/ +#define RTL8367B_VLAN_MC_NUM_WORDS 4 /*GOOD*/ +#define RTL8367B_VLAN_MC0_MEMBER_SHIFT 0/*GOOD*/ +#define RTL8367B_VLAN_MC0_MEMBER_MASK RTL8367B_MEMBER_MASK/*GOOD*/ +#define RTL8367B_VLAN_MC1_FID_SHIFT 0/*GOOD*/ +#define RTL8367B_VLAN_MC1_FID_MASK RTL8367B_FID_MASK/*GOOD*/ +#define RTL8367B_VLAN_MC3_EVID_SHIFT 0/*GOOD*/ +#define RTL8367B_VLAN_MC3_EVID_MASK RTL8367B_VID_MASK/*GOOD*/ + +#define RTL8367B_VLAN_CTRL_REG 0x07a8 /*GOOD*/ +#define RTL8367B_VLAN_CTRL_ENABLE BIT(0) + +#define RTL8367B_VLAN_INGRESS_REG 0x07a9 /*GOOD*/ + +#define RTL8367B_PORT_ISOLATION_REG(_p) (0x08a2 + (_p)) /*GOOD*/ + +#define RTL8367B_MIB_COUNTER_REG(_x) (0x1000 + (_x)) /*GOOD*/ +#define RTL8367B_MIB_COUNTER_PORT_OFFSET 0x007c /*GOOD*/ + +#define RTL8367B_MIB_ADDRESS_REG 0x1004 /*GOOD*/ + +#define RTL8367B_MIB_CTRL0_REG(_x) (0x1005 + (_x)) /*GOOD*/ +#define RTL8367B_MIB_CTRL0_GLOBAL_RESET_MASK BIT(11) /*GOOD*/ +#define RTL8367B_MIB_CTRL0_QM_RESET_MASK BIT(10) /*GOOD*/ +#define RTL8367B_MIB_CTRL0_PORT_RESET_MASK(_p) BIT(2 + (_p)) /*GOOD*/ +#define RTL8367B_MIB_CTRL0_RESET_MASK BIT(1) /*GOOD*/ +#define RTL8367B_MIB_CTRL0_BUSY_MASK BIT(0) /*GOOD*/ + +#define RTL8367B_SWC0_REG 0x1200/*GOOD*/ +#define RTL8367B_SWC0_MAX_LENGTH_SHIFT 13/*GOOD*/ +#define RTL8367B_SWC0_MAX_LENGTH(_x) ((_x) << 13) /*GOOD*/ +#define RTL8367B_SWC0_MAX_LENGTH_MASK RTL8367B_SWC0_MAX_LENGTH(0x3) +#define RTL8367B_SWC0_MAX_LENGTH_1522 RTL8367B_SWC0_MAX_LENGTH(0) +#define RTL8367B_SWC0_MAX_LENGTH_1536 RTL8367B_SWC0_MAX_LENGTH(1) +#define RTL8367B_SWC0_MAX_LENGTH_1552 RTL8367B_SWC0_MAX_LENGTH(2) +#define RTL8367B_SWC0_MAX_LENGTH_16000 RTL8367B_SWC0_MAX_LENGTH(3) + +#define RTL8367B_CHIP_NUMBER_REG 0x1300/*GOOD*/ + +#define RTL8367B_CHIP_VER_REG 0x1301/*GOOD*/ +#define RTL8367B_CHIP_VER_RLVID_SHIFT 12/*GOOD*/ +#define RTL8367B_CHIP_VER_RLVID_MASK 0xf/*GOOD*/ +#define RTL8367B_CHIP_VER_MCID_SHIFT 8/*GOOD*/ +#define RTL8367B_CHIP_VER_MCID_MASK 0xf/*GOOD*/ +#define RTL8367B_CHIP_VER_BOID_SHIFT 4/*GOOD*/ +#define RTL8367B_CHIP_VER_BOID_MASK 0xf/*GOOD*/ +#define RTL8367B_CHIP_VER_AFE_SHIFT 0/*GOOD*/ +#define RTL8367B_CHIP_VER_AFE_MASK 0x1/*GOOD*/ + +#define RTL8367B_CHIP_MODE_REG 0x1302 +#define RTL8367B_CHIP_MODE_MASK 0x7 + +#define RTL8367B_CHIP_DEBUG0_REG 0x1303 +#define RTL8367B_CHIP_DEBUG0_DUMMY0(_x) BIT(8 + (_x)) + +#define RTL8367B_CHIP_DEBUG1_REG 0x1304 + +#define RTL8367B_DIS_REG 0x1305 +#define RTL8367B_DIS_SKIP_MII_RXER(_x) BIT(12 + (_x)) +#define RTL8367B_DIS_RGMII_SHIFT(_x) (4 * (_x)) +#define RTL8367B_DIS_RGMII_MASK 0x7 + +#define RTL8367B_EXT_RGMXF_REG(_x) (0x1306 + (_x)) +#define RTL8367B_EXT_RGMXF_DUMMY0_SHIFT 5 +#define RTL8367B_EXT_RGMXF_DUMMY0_MASK 0x7ff +#define RTL8367B_EXT_RGMXF_TXDELAY_SHIFT 3 +#define RTL8367B_EXT_RGMXF_TXDELAY_MASK 1 +#define RTL8367B_EXT_RGMXF_RXDELAY_MASK 0x7 + +#define RTL8367B_DI_FORCE_REG(_x) (0x1310 + (_x)) +#define RTL8367B_DI_FORCE_MODE BIT(12) +#define RTL8367B_DI_FORCE_NWAY BIT(7) +#define RTL8367B_DI_FORCE_TXPAUSE BIT(6) +#define RTL8367B_DI_FORCE_RXPAUSE BIT(5) +#define RTL8367B_DI_FORCE_LINK BIT(4) +#define RTL8367B_DI_FORCE_DUPLEX BIT(2) +#define RTL8367B_DI_FORCE_SPEED_MASK 3 +#define RTL8367B_DI_FORCE_SPEED_10 0 +#define RTL8367B_DI_FORCE_SPEED_100 1 +#define RTL8367B_DI_FORCE_SPEED_1000 2 + +#define RTL8367B_MAC_FORCE_REG(_x) (0x1312 + (_x)) + +#define RTL8367B_CHIP_RESET_REG 0x1322 /*GOOD*/ +#define RTL8367B_CHIP_RESET_SW BIT(1) /*GOOD*/ +#define RTL8367B_CHIP_RESET_HW BIT(0) /*GOOD*/ + +#define RTL8367B_PORT_STATUS_REG(_p) (0x1352 + (_p)) /*GOOD*/ +#define RTL8367B_PORT_STATUS_EN_1000_SPI BIT(11) /*GOOD*/ +#define RTL8367B_PORT_STATUS_EN_100_SPI BIT(10)/*GOOD*/ +#define RTL8367B_PORT_STATUS_NWAY_FAULT BIT(9)/*GOOD*/ +#define RTL8367B_PORT_STATUS_LINK_MASTER BIT(8)/*GOOD*/ +#define RTL8367B_PORT_STATUS_NWAY BIT(7)/*GOOD*/ +#define RTL8367B_PORT_STATUS_TXPAUSE BIT(6)/*GOOD*/ +#define RTL8367B_PORT_STATUS_RXPAUSE BIT(5)/*GOOD*/ +#define RTL8367B_PORT_STATUS_LINK BIT(4)/*GOOD*/ +#define RTL8367B_PORT_STATUS_DUPLEX BIT(2)/*GOOD*/ +#define RTL8367B_PORT_STATUS_SPEED_MASK 0x0003/*GOOD*/ +#define RTL8367B_PORT_STATUS_SPEED_10 0/*GOOD*/ +#define RTL8367B_PORT_STATUS_SPEED_100 1/*GOOD*/ +#define RTL8367B_PORT_STATUS_SPEED_1000 2/*GOOD*/ + +#define RTL8367B_RTL_MAGIC_ID_REG 0x13c2 +#define RTL8367B_RTL_MAGIC_ID_VAL 0x0249 + +#define RTL8367B_IA_CTRL_REG 0x1f00 +#define RTL8367B_IA_CTRL_RW(_x) ((_x) << 1) +#define RTL8367B_IA_CTRL_RW_READ RTL8367B_IA_CTRL_RW(0) +#define RTL8367B_IA_CTRL_RW_WRITE RTL8367B_IA_CTRL_RW(1) +#define RTL8367B_IA_CTRL_CMD_MASK BIT(0) + +#define RTL8367B_IA_STATUS_REG 0x1f01 +#define RTL8367B_IA_STATUS_PHY_BUSY BIT(2) +#define RTL8367B_IA_STATUS_SDS_BUSY BIT(1) +#define RTL8367B_IA_STATUS_MDX_BUSY BIT(0) + +#define RTL8367B_IA_ADDRESS_REG 0x1f02 +#define RTL8367B_IA_WRITE_DATA_REG 0x1f03 +#define RTL8367B_IA_READ_DATA_REG 0x1f04 + +#define RTL8367B_INTERNAL_PHY_REG(_a, _r) (0x2000 + 32 * (_a) + (_r)) + +#define RTL8367B_NUM_MIB_COUNTERS 58 + +#define RTL8367B_CPU_PORT_NUM 5 +#define RTL8367B_NUM_PORTS 8 +#define RTL8367B_NUM_VLANS 32 +#define RTL8367B_NUM_VIDS 4096 +#define RTL8367B_PRIORITYMAX 7 +#define RTL8367B_FIDMAX 7 + +#define RTL8367B_PORT_0 BIT(0) +#define RTL8367B_PORT_1 BIT(1) +#define RTL8367B_PORT_2 BIT(2) +#define RTL8367B_PORT_3 BIT(3) +#define RTL8367B_PORT_4 BIT(4) +#define RTL8367B_PORT_E0 BIT(5) /* External port 0 */ +#define RTL8367B_PORT_E1 BIT(6) /* External port 1 */ +#define RTL8367B_PORT_E2 BIT(7) /* External port 2 */ + +#define RTL8367B_PORTS_ALL \ + (RTL8367B_PORT_0 | RTL8367B_PORT_1 | RTL8367B_PORT_2 | \ + RTL8367B_PORT_3 | RTL8367B_PORT_4 | RTL8367B_PORT_E0 | \ + RTL8367B_PORT_E1 | RTL8367B_PORT_E2) + +#define RTL8367B_PORTS_ALL_BUT_CPU \ + (RTL8367B_PORT_0 | RTL8367B_PORT_1 | RTL8367B_PORT_2 | \ + RTL8367B_PORT_3 | RTL8367B_PORT_4 | RTL8367B_PORT_E1 | \ + RTL8367B_PORT_E2) + +struct rtl8367b_initval { + u16 reg; + u16 val; +}; + +static struct rtl8366_mib_counter +rtl8367b_mib_counters[RTL8367B_NUM_MIB_COUNTERS] = { + {0, 0, 4, "ifInOctets" }, + {0, 4, 2, "dot3StatsFCSErrors" }, + {0, 6, 2, "dot3StatsSymbolErrors" }, + {0, 8, 2, "dot3InPauseFrames" }, + {0, 10, 2, "dot3ControlInUnknownOpcodes" }, + {0, 12, 2, "etherStatsFragments" }, + {0, 14, 2, "etherStatsJabbers" }, + {0, 16, 2, "ifInUcastPkts" }, + {0, 18, 2, "etherStatsDropEvents" }, + {0, 20, 2, "ifInMulticastPkts" }, + {0, 22, 2, "ifInBroadcastPkts" }, + {0, 24, 2, "inMldChecksumError" }, + {0, 26, 2, "inIgmpChecksumError" }, + {0, 28, 2, "inMldSpecificQuery" }, + {0, 30, 2, "inMldGeneralQuery" }, + {0, 32, 2, "inIgmpSpecificQuery" }, + {0, 34, 2, "inIgmpGeneralQuery" }, + {0, 36, 2, "inMldLeaves" }, + {0, 38, 2, "inIgmpLeaves" }, + + {0, 40, 4, "etherStatsOctets" }, + {0, 44, 2, "etherStatsUnderSizePkts" }, + {0, 46, 2, "etherOversizeStats" }, + {0, 48, 2, "etherStatsPkts64Octets" }, + {0, 50, 2, "etherStatsPkts65to127Octets" }, + {0, 52, 2, "etherStatsPkts128to255Octets" }, + {0, 54, 2, "etherStatsPkts256to511Octets" }, + {0, 56, 2, "etherStatsPkts512to1023Octets" }, + {0, 58, 2, "etherStatsPkts1024to1518Octets" }, + + {0, 60, 4, "ifOutOctets" }, + {0, 64, 2, "dot3StatsSingleCollisionFrames" }, + {0, 66, 2, "dot3StatMultipleCollisionFrames" }, + {0, 68, 2, "dot3sDeferredTransmissions" }, + {0, 70, 2, "dot3StatsLateCollisions" }, + {0, 72, 2, "etherStatsCollisions" }, + {0, 74, 2, "dot3StatsExcessiveCollisions" }, + {0, 76, 2, "dot3OutPauseFrames" }, + {0, 78, 2, "ifOutDiscards" }, + {0, 80, 2, "dot1dTpPortInDiscards" }, + {0, 82, 2, "ifOutUcastPkts" }, + {0, 84, 2, "ifOutMulticastPkts" }, + {0, 86, 2, "ifOutBroadcastPkts" }, + {0, 88, 2, "outOampduPkts" }, + {0, 90, 2, "inOampduPkts" }, + {0, 92, 2, "inIgmpJoinsSuccess" }, + {0, 94, 2, "inIgmpJoinsFail" }, + {0, 96, 2, "inMldJoinsSuccess" }, + {0, 98, 2, "inMldJoinsFail" }, + {0, 100, 2, "inReportSuppressionDrop" }, + {0, 102, 2, "inLeaveSuppressionDrop" }, + {0, 104, 2, "outIgmpReports" }, + {0, 106, 2, "outIgmpLeaves" }, + {0, 108, 2, "outIgmpGeneralQuery" }, + {0, 110, 2, "outIgmpSpecificQuery" }, + {0, 112, 2, "outMldReports" }, + {0, 114, 2, "outMldLeaves" }, + {0, 116, 2, "outMldGeneralQuery" }, + {0, 118, 2, "outMldSpecificQuery" }, + {0, 120, 2, "inKnownMulticastPkts" }, +}; + +#define REG_RD(_smi, _reg, _val) \ + do { \ + err = rtl8366_smi_read_reg(_smi, _reg, _val); \ + if (err) \ + return err; \ + } while (0) + +#define REG_WR(_smi, _reg, _val) \ + do { \ + err = rtl8366_smi_write_reg(_smi, _reg, _val); \ + if (err) \ + return err; \ + } while (0) + +#define REG_RMW(_smi, _reg, _mask, _val) \ + do { \ + err = rtl8366_smi_rmwr(_smi, _reg, _mask, _val); \ + if (err) \ + return err; \ + } while (0) + +static const struct rtl8367b_initval rtl8367r_vb_initvals_0[] = { + {0x1B03, 0x0876}, {0x1200, 0x7FC4}, {0x0301, 0x0026}, {0x1722, 0x0E14}, + {0x205F, 0x0002}, {0x2059, 0x1A00}, {0x205F, 0x0000}, {0x207F, 0x0002}, + {0x2077, 0x0000}, {0x2078, 0x0000}, {0x2079, 0x0000}, {0x207A, 0x0000}, + {0x207B, 0x0000}, {0x207F, 0x0000}, {0x205F, 0x0002}, {0x2053, 0x0000}, + {0x2054, 0x0000}, {0x2055, 0x0000}, {0x2056, 0x0000}, {0x2057, 0x0000}, + {0x205F, 0x0000}, {0x12A4, 0x110A}, {0x12A6, 0x150A}, {0x13F1, 0x0013}, + {0x13F4, 0x0010}, {0x13F5, 0x0000}, {0x0018, 0x0F00}, {0x0038, 0x0F00}, + {0x0058, 0x0F00}, {0x0078, 0x0F00}, {0x0098, 0x0F00}, {0x12B6, 0x0C02}, + {0x12B7, 0x030F}, {0x12B8, 0x11FF}, {0x12BC, 0x0004}, {0x1362, 0x0115}, + {0x1363, 0x0002}, {0x1363, 0x0000}, {0x133F, 0x0030}, {0x133E, 0x000E}, + {0x221F, 0x0007}, {0x221E, 0x002D}, {0x2218, 0xF030}, {0x221F, 0x0007}, + {0x221E, 0x0023}, {0x2216, 0x0005}, {0x2215, 0x00B9}, {0x2219, 0x0044}, + {0x2215, 0x00BA}, {0x2219, 0x0020}, {0x2215, 0x00BB}, {0x2219, 0x00C1}, + {0x2215, 0x0148}, {0x2219, 0x0096}, {0x2215, 0x016E}, {0x2219, 0x0026}, + {0x2216, 0x0000}, {0x2216, 0x0000}, {0x221E, 0x002D}, {0x2218, 0xF010}, + {0x221F, 0x0007}, {0x221E, 0x0020}, {0x2215, 0x0D00}, {0x221F, 0x0000}, + {0x221F, 0x0000}, {0x2217, 0x2160}, {0x221F, 0x0001}, {0x2210, 0xF25E}, + {0x221F, 0x0007}, {0x221E, 0x0042}, {0x2215, 0x0F00}, {0x2215, 0x0F00}, + {0x2216, 0x7408}, {0x2215, 0x0E00}, {0x2215, 0x0F00}, {0x2215, 0x0F01}, + {0x2216, 0x4000}, {0x2215, 0x0E01}, {0x2215, 0x0F01}, {0x2215, 0x0F02}, + {0x2216, 0x9400}, {0x2215, 0x0E02}, {0x2215, 0x0F02}, {0x2215, 0x0F03}, + {0x2216, 0x7408}, {0x2215, 0x0E03}, {0x2215, 0x0F03}, {0x2215, 0x0F04}, + {0x2216, 0x4008}, {0x2215, 0x0E04}, {0x2215, 0x0F04}, {0x2215, 0x0F05}, + {0x2216, 0x9400}, {0x2215, 0x0E05}, {0x2215, 0x0F05}, {0x2215, 0x0F06}, + {0x2216, 0x0803}, {0x2215, 0x0E06}, {0x2215, 0x0F06}, {0x2215, 0x0D00}, + {0x2215, 0x0100}, {0x221F, 0x0001}, {0x2210, 0xF05E}, {0x221F, 0x0000}, + {0x2217, 0x2100}, {0x221F, 0x0000}, {0x220D, 0x0003}, {0x220E, 0x0015}, + {0x220D, 0x4003}, {0x220E, 0x0006}, {0x221F, 0x0000}, {0x2200, 0x1340}, + {0x133F, 0x0010}, {0x12A0, 0x0058}, {0x12A1, 0x0058}, {0x133E, 0x000E}, + {0x133F, 0x0030}, {0x221F, 0x0000}, {0x2210, 0x0166}, {0x221F, 0x0000}, + {0x133E, 0x000E}, {0x133F, 0x0010}, {0x133F, 0x0030}, {0x133E, 0x000E}, + {0x221F, 0x0005}, {0x2205, 0xFFF6}, {0x2206, 0x0080}, {0x2205, 0x8B6E}, + {0x2206, 0x0000}, {0x220F, 0x0100}, {0x2205, 0x8000}, {0x2206, 0x0280}, + {0x2206, 0x28F7}, {0x2206, 0x00E0}, {0x2206, 0xFFF7}, {0x2206, 0xA080}, + {0x2206, 0x02AE}, {0x2206, 0xF602}, {0x2206, 0x0153}, {0x2206, 0x0201}, + {0x2206, 0x6602}, {0x2206, 0x80B9}, {0x2206, 0xE08B}, {0x2206, 0x8CE1}, + {0x2206, 0x8B8D}, {0x2206, 0x1E01}, {0x2206, 0xE18B}, {0x2206, 0x8E1E}, + {0x2206, 0x01A0}, {0x2206, 0x00E7}, {0x2206, 0xAEDB}, {0x2206, 0xEEE0}, + {0x2206, 0x120E}, {0x2206, 0xEEE0}, {0x2206, 0x1300}, {0x2206, 0xEEE0}, + {0x2206, 0x2001}, {0x2206, 0xEEE0}, {0x2206, 0x2166}, {0x2206, 0xEEE0}, + {0x2206, 0xC463}, {0x2206, 0xEEE0}, {0x2206, 0xC5E8}, {0x2206, 0xEEE0}, + {0x2206, 0xC699}, {0x2206, 0xEEE0}, {0x2206, 0xC7C2}, {0x2206, 0xEEE0}, + {0x2206, 0xC801}, {0x2206, 0xEEE0}, {0x2206, 0xC913}, {0x2206, 0xEEE0}, + {0x2206, 0xCA30}, {0x2206, 0xEEE0}, {0x2206, 0xCB3E}, {0x2206, 0xEEE0}, + {0x2206, 0xDCE1}, {0x2206, 0xEEE0}, {0x2206, 0xDD00}, {0x2206, 0xEEE2}, + {0x2206, 0x0001}, {0x2206, 0xEEE2}, {0x2206, 0x0100}, {0x2206, 0xEEE4}, + {0x2206, 0x8860}, {0x2206, 0xEEE4}, {0x2206, 0x8902}, {0x2206, 0xEEE4}, + {0x2206, 0x8C00}, {0x2206, 0xEEE4}, {0x2206, 0x8D30}, {0x2206, 0xEEEA}, + {0x2206, 0x1480}, {0x2206, 0xEEEA}, {0x2206, 0x1503}, {0x2206, 0xEEEA}, + {0x2206, 0xC600}, {0x2206, 0xEEEA}, {0x2206, 0xC706}, {0x2206, 0xEE85}, + {0x2206, 0xEE00}, {0x2206, 0xEE85}, {0x2206, 0xEF00}, {0x2206, 0xEE8B}, + {0x2206, 0x6750}, {0x2206, 0xEE8B}, {0x2206, 0x6632}, {0x2206, 0xEE8A}, + {0x2206, 0xD448}, {0x2206, 0xEE8A}, {0x2206, 0xD548}, {0x2206, 0xEE8A}, + {0x2206, 0xD649}, {0x2206, 0xEE8A}, {0x2206, 0xD7F8}, {0x2206, 0xEE8B}, + {0x2206, 0x85E2}, {0x2206, 0xEE8B}, {0x2206, 0x8700}, {0x2206, 0xEEFF}, + {0x2206, 0xF600}, {0x2206, 0xEEFF}, {0x2206, 0xF7FC}, {0x2206, 0x04F8}, + {0x2206, 0xE08B}, {0x2206, 0x8EAD}, {0x2206, 0x2023}, {0x2206, 0xF620}, + {0x2206, 0xE48B}, {0x2206, 0x8E02}, {0x2206, 0x2877}, {0x2206, 0x0225}, + {0x2206, 0xC702}, {0x2206, 0x26A1}, {0x2206, 0x0281}, {0x2206, 0xB302}, + {0x2206, 0x8496}, {0x2206, 0x0202}, {0x2206, 0xA102}, {0x2206, 0x27F1}, + {0x2206, 0x0228}, {0x2206, 0xF902}, {0x2206, 0x2AA0}, {0x2206, 0x0282}, + {0x2206, 0xB8E0}, {0x2206, 0x8B8E}, {0x2206, 0xAD21}, {0x2206, 0x08F6}, + {0x2206, 0x21E4}, {0x2206, 0x8B8E}, {0x2206, 0x0202}, {0x2206, 0x80E0}, + {0x2206, 0x8B8E}, {0x2206, 0xAD22}, {0x2206, 0x05F6}, {0x2206, 0x22E4}, + {0x2206, 0x8B8E}, {0x2206, 0xE08B}, {0x2206, 0x8EAD}, {0x2206, 0x2305}, + {0x2206, 0xF623}, {0x2206, 0xE48B}, {0x2206, 0x8EE0}, {0x2206, 0x8B8E}, + {0x2206, 0xAD24}, {0x2206, 0x08F6}, {0x2206, 0x24E4}, {0x2206, 0x8B8E}, + {0x2206, 0x0227}, {0x2206, 0x6AE0}, {0x2206, 0x8B8E}, {0x2206, 0xAD25}, + {0x2206, 0x05F6}, {0x2206, 0x25E4}, {0x2206, 0x8B8E}, {0x2206, 0xE08B}, + {0x2206, 0x8EAD}, {0x2206, 0x260B}, {0x2206, 0xF626}, {0x2206, 0xE48B}, + {0x2206, 0x8E02}, {0x2206, 0x830D}, {0x2206, 0x021D}, {0x2206, 0x6BE0}, + {0x2206, 0x8B8E}, {0x2206, 0xAD27}, {0x2206, 0x05F6}, {0x2206, 0x27E4}, + {0x2206, 0x8B8E}, {0x2206, 0x0281}, {0x2206, 0x4402}, {0x2206, 0x045C}, + {0x2206, 0xFC04}, {0x2206, 0xF8E0}, {0x2206, 0x8B83}, {0x2206, 0xAD23}, + {0x2206, 0x30E0}, {0x2206, 0xE022}, {0x2206, 0xE1E0}, {0x2206, 0x2359}, + {0x2206, 0x02E0}, {0x2206, 0x85EF}, {0x2206, 0xE585}, {0x2206, 0xEFAC}, + {0x2206, 0x2907}, {0x2206, 0x1F01}, {0x2206, 0x9E51}, {0x2206, 0xAD29}, + {0x2206, 0x20E0}, {0x2206, 0x8B83}, {0x2206, 0xAD21}, {0x2206, 0x06E1}, + {0x2206, 0x8B84}, {0x2206, 0xAD28}, {0x2206, 0x42E0}, {0x2206, 0x8B85}, + {0x2206, 0xAD21}, {0x2206, 0x06E1}, {0x2206, 0x8B84}, {0x2206, 0xAD29}, + {0x2206, 0x36BF}, {0x2206, 0x34BF}, {0x2206, 0x022C}, {0x2206, 0x31AE}, + {0x2206, 0x2EE0}, {0x2206, 0x8B83}, {0x2206, 0xAD21}, {0x2206, 0x10E0}, + {0x2206, 0x8B84}, {0x2206, 0xF620}, {0x2206, 0xE48B}, {0x2206, 0x84EE}, + {0x2206, 0x8ADA}, {0x2206, 0x00EE}, {0x2206, 0x8ADB}, {0x2206, 0x00E0}, + {0x2206, 0x8B85}, {0x2206, 0xAD21}, {0x2206, 0x0CE0}, {0x2206, 0x8B84}, + {0x2206, 0xF621}, {0x2206, 0xE48B}, {0x2206, 0x84EE}, {0x2206, 0x8B72}, + {0x2206, 0xFFBF}, {0x2206, 0x34C2}, {0x2206, 0x022C}, {0x2206, 0x31FC}, + {0x2206, 0x04F8}, {0x2206, 0xFAEF}, {0x2206, 0x69E0}, {0x2206, 0x8B85}, + {0x2206, 0xAD21}, {0x2206, 0x42E0}, {0x2206, 0xE022}, {0x2206, 0xE1E0}, + {0x2206, 0x2358}, {0x2206, 0xC059}, {0x2206, 0x021E}, {0x2206, 0x01E1}, + {0x2206, 0x8B72}, {0x2206, 0x1F10}, {0x2206, 0x9E2F}, {0x2206, 0xE48B}, + {0x2206, 0x72AD}, {0x2206, 0x2123}, {0x2206, 0xE18B}, {0x2206, 0x84F7}, + {0x2206, 0x29E5}, {0x2206, 0x8B84}, {0x2206, 0xAC27}, {0x2206, 0x10AC}, + {0x2206, 0x2605}, {0x2206, 0x0205}, {0x2206, 0x23AE}, {0x2206, 0x1602}, + {0x2206, 0x0535}, {0x2206, 0x0282}, {0x2206, 0x30AE}, {0x2206, 0x0E02}, + {0x2206, 0x056A}, {0x2206, 0x0282}, {0x2206, 0x75AE}, {0x2206, 0x0602}, + {0x2206, 0x04DC}, {0x2206, 0x0282}, {0x2206, 0x04EF}, {0x2206, 0x96FE}, + {0x2206, 0xFC04}, {0x2206, 0xF8F9}, {0x2206, 0xE08B}, {0x2206, 0x87AD}, + {0x2206, 0x2321}, {0x2206, 0xE0EA}, {0x2206, 0x14E1}, {0x2206, 0xEA15}, + {0x2206, 0xAD26}, {0x2206, 0x18F6}, {0x2206, 0x27E4}, {0x2206, 0xEA14}, + {0x2206, 0xE5EA}, {0x2206, 0x15F6}, {0x2206, 0x26E4}, {0x2206, 0xEA14}, + {0x2206, 0xE5EA}, {0x2206, 0x15F7}, {0x2206, 0x27E4}, {0x2206, 0xEA14}, + {0x2206, 0xE5EA}, {0x2206, 0x15FD}, {0x2206, 0xFC04}, {0x2206, 0xF8F9}, + {0x2206, 0xE08B}, {0x2206, 0x87AD}, {0x2206, 0x233A}, {0x2206, 0xAD22}, + {0x2206, 0x37E0}, {0x2206, 0xE020}, {0x2206, 0xE1E0}, {0x2206, 0x21AC}, + {0x2206, 0x212E}, {0x2206, 0xE0EA}, {0x2206, 0x14E1}, {0x2206, 0xEA15}, + {0x2206, 0xF627}, {0x2206, 0xE4EA}, {0x2206, 0x14E5}, {0x2206, 0xEA15}, + {0x2206, 0xE2EA}, {0x2206, 0x12E3}, {0x2206, 0xEA13}, {0x2206, 0x5A8F}, + {0x2206, 0x6A20}, {0x2206, 0xE6EA}, {0x2206, 0x12E7}, {0x2206, 0xEA13}, + {0x2206, 0xF726}, {0x2206, 0xE4EA}, {0x2206, 0x14E5}, {0x2206, 0xEA15}, + {0x2206, 0xF727}, {0x2206, 0xE4EA}, {0x2206, 0x14E5}, {0x2206, 0xEA15}, + {0x2206, 0xFDFC}, {0x2206, 0x04F8}, {0x2206, 0xF9E0}, {0x2206, 0x8B87}, + {0x2206, 0xAD23}, {0x2206, 0x38AD}, {0x2206, 0x2135}, {0x2206, 0xE0E0}, + {0x2206, 0x20E1}, {0x2206, 0xE021}, {0x2206, 0xAC21}, {0x2206, 0x2CE0}, + {0x2206, 0xEA14}, {0x2206, 0xE1EA}, {0x2206, 0x15F6}, {0x2206, 0x27E4}, + {0x2206, 0xEA14}, {0x2206, 0xE5EA}, {0x2206, 0x15E2}, {0x2206, 0xEA12}, + {0x2206, 0xE3EA}, {0x2206, 0x135A}, {0x2206, 0x8FE6}, {0x2206, 0xEA12}, + {0x2206, 0xE7EA}, {0x2206, 0x13F7}, {0x2206, 0x26E4}, {0x2206, 0xEA14}, + {0x2206, 0xE5EA}, {0x2206, 0x15F7}, {0x2206, 0x27E4}, {0x2206, 0xEA14}, + {0x2206, 0xE5EA}, {0x2206, 0x15FD}, {0x2206, 0xFC04}, {0x2206, 0xF8FA}, + {0x2206, 0xEF69}, {0x2206, 0xE08B}, {0x2206, 0x86AD}, {0x2206, 0x2146}, + {0x2206, 0xE0E0}, {0x2206, 0x22E1}, {0x2206, 0xE023}, {0x2206, 0x58C0}, + {0x2206, 0x5902}, {0x2206, 0x1E01}, {0x2206, 0xE18B}, {0x2206, 0x651F}, + {0x2206, 0x109E}, {0x2206, 0x33E4}, {0x2206, 0x8B65}, {0x2206, 0xAD21}, + {0x2206, 0x22AD}, {0x2206, 0x272A}, {0x2206, 0xD400}, {0x2206, 0x01BF}, + {0x2206, 0x34F2}, {0x2206, 0x022C}, {0x2206, 0xA2BF}, {0x2206, 0x34F5}, + {0x2206, 0x022C}, {0x2206, 0xE0E0}, {0x2206, 0x8B67}, {0x2206, 0x1B10}, + {0x2206, 0xAA14}, {0x2206, 0xE18B}, {0x2206, 0x660D}, {0x2206, 0x1459}, + {0x2206, 0x0FAE}, {0x2206, 0x05E1}, {0x2206, 0x8B66}, {0x2206, 0x590F}, + {0x2206, 0xBF85}, {0x2206, 0x6102}, {0x2206, 0x2CA2}, {0x2206, 0xEF96}, + {0x2206, 0xFEFC}, {0x2206, 0x04F8}, {0x2206, 0xF9FA}, {0x2206, 0xFBEF}, + {0x2206, 0x79E2}, {0x2206, 0x8AD2}, {0x2206, 0xAC19}, {0x2206, 0x2DE0}, + {0x2206, 0xE036}, {0x2206, 0xE1E0}, {0x2206, 0x37EF}, {0x2206, 0x311F}, + {0x2206, 0x325B}, {0x2206, 0x019E}, {0x2206, 0x1F7A}, {0x2206, 0x0159}, + {0x2206, 0x019F}, {0x2206, 0x0ABF}, {0x2206, 0x348E}, {0x2206, 0x022C}, + {0x2206, 0x31F6}, {0x2206, 0x06AE}, {0x2206, 0x0FF6}, {0x2206, 0x0302}, + {0x2206, 0x0470}, {0x2206, 0xF703}, {0x2206, 0xF706}, {0x2206, 0xBF34}, + {0x2206, 0x9302}, {0x2206, 0x2C31}, {0x2206, 0xAC1A}, {0x2206, 0x25E0}, + {0x2206, 0xE022}, {0x2206, 0xE1E0}, {0x2206, 0x23EF}, {0x2206, 0x300D}, + {0x2206, 0x311F}, {0x2206, 0x325B}, {0x2206, 0x029E}, {0x2206, 0x157A}, + {0x2206, 0x0258}, {0x2206, 0xC4A0}, {0x2206, 0x0408}, {0x2206, 0xBF34}, + {0x2206, 0x9E02}, {0x2206, 0x2C31}, {0x2206, 0xAE06}, {0x2206, 0xBF34}, + {0x2206, 0x9C02}, {0x2206, 0x2C31}, {0x2206, 0xAC1B}, {0x2206, 0x4AE0}, + {0x2206, 0xE012}, {0x2206, 0xE1E0}, {0x2206, 0x13EF}, {0x2206, 0x300D}, + {0x2206, 0x331F}, {0x2206, 0x325B}, {0x2206, 0x1C9E}, {0x2206, 0x3AEF}, + {0x2206, 0x325B}, {0x2206, 0x1C9F}, {0x2206, 0x09BF}, {0x2206, 0x3498}, + {0x2206, 0x022C}, {0x2206, 0x3102}, {0x2206, 0x83C5}, {0x2206, 0x5A03}, + {0x2206, 0x0D03}, {0x2206, 0x581C}, {0x2206, 0x1E20}, {0x2206, 0x0207}, + {0x2206, 0xA0A0}, {0x2206, 0x000E}, {0x2206, 0x0284}, {0x2206, 0x17AD}, + {0x2206, 0x1817}, {0x2206, 0xBF34}, {0x2206, 0x9A02}, {0x2206, 0x2C31}, + {0x2206, 0xAE0F}, {0x2206, 0xBF34}, {0x2206, 0xC802}, {0x2206, 0x2C31}, + {0x2206, 0xBF34}, {0x2206, 0xC502}, {0x2206, 0x2C31}, {0x2206, 0x0284}, + {0x2206, 0x52E6}, {0x2206, 0x8AD2}, {0x2206, 0xEF97}, {0x2206, 0xFFFE}, + {0x2206, 0xFDFC}, {0x2206, 0x04F8}, {0x2206, 0xBF34}, {0x2206, 0xDA02}, + {0x2206, 0x2CE0}, {0x2206, 0xE58A}, {0x2206, 0xD3BF}, {0x2206, 0x34D4}, + {0x2206, 0x022C}, {0x2206, 0xE00C}, {0x2206, 0x1159}, {0x2206, 0x02E0}, + {0x2206, 0x8AD3}, {0x2206, 0x1E01}, {0x2206, 0xE48A}, {0x2206, 0xD3D1}, + {0x2206, 0x00BF}, {0x2206, 0x34DA}, {0x2206, 0x022C}, {0x2206, 0xA2D1}, + {0x2206, 0x01BF}, {0x2206, 0x34D4}, {0x2206, 0x022C}, {0x2206, 0xA2BF}, + {0x2206, 0x34CB}, {0x2206, 0x022C}, {0x2206, 0xE0E5}, {0x2206, 0x8ACE}, + {0x2206, 0xBF85}, {0x2206, 0x6702}, {0x2206, 0x2CE0}, {0x2206, 0xE58A}, + {0x2206, 0xCFBF}, {0x2206, 0x8564}, {0x2206, 0x022C}, {0x2206, 0xE0E5}, + {0x2206, 0x8AD0}, {0x2206, 0xBF85}, {0x2206, 0x6A02}, {0x2206, 0x2CE0}, + {0x2206, 0xE58A}, {0x2206, 0xD1FC}, {0x2206, 0x04F8}, {0x2206, 0xE18A}, + {0x2206, 0xD1BF}, {0x2206, 0x856A}, {0x2206, 0x022C}, {0x2206, 0xA2E1}, + {0x2206, 0x8AD0}, {0x2206, 0xBF85}, {0x2206, 0x6402}, {0x2206, 0x2CA2}, + {0x2206, 0xE18A}, {0x2206, 0xCFBF}, {0x2206, 0x8567}, {0x2206, 0x022C}, + {0x2206, 0xA2E1}, {0x2206, 0x8ACE}, {0x2206, 0xBF34}, {0x2206, 0xCB02}, + {0x2206, 0x2CA2}, {0x2206, 0xE18A}, {0x2206, 0xD3BF}, {0x2206, 0x34DA}, + {0x2206, 0x022C}, {0x2206, 0xA2E1}, {0x2206, 0x8AD3}, {0x2206, 0x0D11}, + {0x2206, 0xBF34}, {0x2206, 0xD402}, {0x2206, 0x2CA2}, {0x2206, 0xFC04}, + {0x2206, 0xF9A0}, {0x2206, 0x0405}, {0x2206, 0xE38A}, {0x2206, 0xD4AE}, + {0x2206, 0x13A0}, {0x2206, 0x0805}, {0x2206, 0xE38A}, {0x2206, 0xD5AE}, + {0x2206, 0x0BA0}, {0x2206, 0x0C05}, {0x2206, 0xE38A}, {0x2206, 0xD6AE}, + {0x2206, 0x03E3}, {0x2206, 0x8AD7}, {0x2206, 0xEF13}, {0x2206, 0xBF34}, + {0x2206, 0xCB02}, {0x2206, 0x2CA2}, {0x2206, 0xEF13}, {0x2206, 0x0D11}, + {0x2206, 0xBF85}, {0x2206, 0x6702}, {0x2206, 0x2CA2}, {0x2206, 0xEF13}, + {0x2206, 0x0D14}, {0x2206, 0xBF85}, {0x2206, 0x6402}, {0x2206, 0x2CA2}, + {0x2206, 0xEF13}, {0x2206, 0x0D17}, {0x2206, 0xBF85}, {0x2206, 0x6A02}, + {0x2206, 0x2CA2}, {0x2206, 0xFD04}, {0x2206, 0xF8E0}, {0x2206, 0x8B85}, + {0x2206, 0xAD27}, {0x2206, 0x2DE0}, {0x2206, 0xE036}, {0x2206, 0xE1E0}, + {0x2206, 0x37E1}, {0x2206, 0x8B73}, {0x2206, 0x1F10}, {0x2206, 0x9E20}, + {0x2206, 0xE48B}, {0x2206, 0x73AC}, {0x2206, 0x200B}, {0x2206, 0xAC21}, + {0x2206, 0x0DAC}, {0x2206, 0x250F}, {0x2206, 0xAC27}, {0x2206, 0x0EAE}, + {0x2206, 0x0F02}, {0x2206, 0x84CC}, {0x2206, 0xAE0A}, {0x2206, 0x0284}, + {0x2206, 0xD1AE}, {0x2206, 0x05AE}, {0x2206, 0x0302}, {0x2206, 0x84D8}, + {0x2206, 0xFC04}, {0x2206, 0xEE8B}, {0x2206, 0x6800}, {0x2206, 0x0402}, + {0x2206, 0x84E5}, {0x2206, 0x0285}, {0x2206, 0x2804}, {0x2206, 0x0285}, + {0x2206, 0x4904}, {0x2206, 0xEE8B}, {0x2206, 0x6800}, {0x2206, 0xEE8B}, + {0x2206, 0x6902}, {0x2206, 0x04F8}, {0x2206, 0xF9E0}, {0x2206, 0x8B85}, + {0x2206, 0xAD26}, {0x2206, 0x38D0}, {0x2206, 0x0B02}, {0x2206, 0x2B4D}, + {0x2206, 0x5882}, {0x2206, 0x7882}, {0x2206, 0x9F2D}, {0x2206, 0xE08B}, + {0x2206, 0x68E1}, {0x2206, 0x8B69}, {0x2206, 0x1F10}, {0x2206, 0x9EC8}, + {0x2206, 0x10E4}, {0x2206, 0x8B68}, {0x2206, 0xE0E0}, {0x2206, 0x00E1}, + {0x2206, 0xE001}, {0x2206, 0xF727}, {0x2206, 0xE4E0}, {0x2206, 0x00E5}, + {0x2206, 0xE001}, {0x2206, 0xE2E0}, {0x2206, 0x20E3}, {0x2206, 0xE021}, + {0x2206, 0xAD30}, {0x2206, 0xF7F6}, {0x2206, 0x27E4}, {0x2206, 0xE000}, + {0x2206, 0xE5E0}, {0x2206, 0x01FD}, {0x2206, 0xFC04}, {0x2206, 0xF8FA}, + {0x2206, 0xEF69}, {0x2206, 0xE08B}, {0x2206, 0x86AD}, {0x2206, 0x2212}, + {0x2206, 0xE0E0}, {0x2206, 0x14E1}, {0x2206, 0xE015}, {0x2206, 0xAD26}, + {0x2206, 0x9CE1}, {0x2206, 0x85E0}, {0x2206, 0xBF85}, {0x2206, 0x6D02}, + {0x2206, 0x2CA2}, {0x2206, 0xEF96}, {0x2206, 0xFEFC}, {0x2206, 0x04F8}, + {0x2206, 0xFAEF}, {0x2206, 0x69E0}, {0x2206, 0x8B86}, {0x2206, 0xAD22}, + {0x2206, 0x09E1}, {0x2206, 0x85E1}, {0x2206, 0xBF85}, {0x2206, 0x6D02}, + {0x2206, 0x2CA2}, {0x2206, 0xEF96}, {0x2206, 0xFEFC}, {0x2206, 0x0464}, + {0x2206, 0xE48C}, {0x2206, 0xFDE4}, {0x2206, 0x80CA}, {0x2206, 0xE480}, + {0x2206, 0x66E0}, {0x2206, 0x8E70}, {0x2206, 0xE076}, {0x2205, 0xE142}, + {0x2206, 0x0701}, {0x2205, 0xE140}, {0x2206, 0x0405}, {0x220F, 0x0000}, + {0x221F, 0x0000}, {0x2200, 0x1340}, {0x133E, 0x000E}, {0x133F, 0x0010}, + {0x13EB, 0x11BB} +}; + +static const struct rtl8367b_initval rtl8367r_vb_initvals_1[] = { + {0x1B03, 0x0876}, {0x1200, 0x7FC4}, {0x1305, 0xC000}, {0x121E, 0x03CA}, + {0x1233, 0x0352}, {0x1234, 0x0064}, {0x1237, 0x0096}, {0x1238, 0x0078}, + {0x1239, 0x0084}, {0x123A, 0x0030}, {0x205F, 0x0002}, {0x2059, 0x1A00}, + {0x205F, 0x0000}, {0x207F, 0x0002}, {0x2077, 0x0000}, {0x2078, 0x0000}, + {0x2079, 0x0000}, {0x207A, 0x0000}, {0x207B, 0x0000}, {0x207F, 0x0000}, + {0x205F, 0x0002}, {0x2053, 0x0000}, {0x2054, 0x0000}, {0x2055, 0x0000}, + {0x2056, 0x0000}, {0x2057, 0x0000}, {0x205F, 0x0000}, {0x133F, 0x0030}, + {0x133E, 0x000E}, {0x221F, 0x0005}, {0x2205, 0x8B86}, {0x2206, 0x800E}, + {0x221F, 0x0000}, {0x133F, 0x0010}, {0x12A3, 0x2200}, {0x6107, 0xE58B}, + {0x6103, 0xA970}, {0x0018, 0x0F00}, {0x0038, 0x0F00}, {0x0058, 0x0F00}, + {0x0078, 0x0F00}, {0x0098, 0x0F00}, {0x133F, 0x0030}, {0x133E, 0x000E}, + {0x221F, 0x0005}, {0x2205, 0x8B6E}, {0x2206, 0x0000}, {0x220F, 0x0100}, + {0x2205, 0xFFF6}, {0x2206, 0x0080}, {0x2205, 0x8000}, {0x2206, 0x0280}, + {0x2206, 0x2BF7}, {0x2206, 0x00E0}, {0x2206, 0xFFF7}, {0x2206, 0xA080}, + {0x2206, 0x02AE}, {0x2206, 0xF602}, {0x2206, 0x0153}, {0x2206, 0x0201}, + {0x2206, 0x6602}, {0x2206, 0x8044}, {0x2206, 0x0201}, {0x2206, 0x7CE0}, + {0x2206, 0x8B8C}, {0x2206, 0xE18B}, {0x2206, 0x8D1E}, {0x2206, 0x01E1}, + {0x2206, 0x8B8E}, {0x2206, 0x1E01}, {0x2206, 0xA000}, {0x2206, 0xE4AE}, + {0x2206, 0xD8EE}, {0x2206, 0x85C0}, {0x2206, 0x00EE}, {0x2206, 0x85C1}, + {0x2206, 0x00EE}, {0x2206, 0x8AFC}, {0x2206, 0x07EE}, {0x2206, 0x8AFD}, + {0x2206, 0x73EE}, {0x2206, 0xFFF6}, {0x2206, 0x00EE}, {0x2206, 0xFFF7}, + {0x2206, 0xFC04}, {0x2206, 0xF8E0}, {0x2206, 0x8B8E}, {0x2206, 0xAD20}, + {0x2206, 0x0302}, {0x2206, 0x8050}, {0x2206, 0xFC04}, {0x2206, 0xF8F9}, + {0x2206, 0xE08B}, {0x2206, 0x85AD}, {0x2206, 0x2548}, {0x2206, 0xE08A}, + {0x2206, 0xE4E1}, {0x2206, 0x8AE5}, {0x2206, 0x7C00}, {0x2206, 0x009E}, + {0x2206, 0x35EE}, {0x2206, 0x8AE4}, {0x2206, 0x00EE}, {0x2206, 0x8AE5}, + {0x2206, 0x00E0}, {0x2206, 0x8AFC}, {0x2206, 0xE18A}, {0x2206, 0xFDE2}, + {0x2206, 0x85C0}, {0x2206, 0xE385}, {0x2206, 0xC102}, {0x2206, 0x2DAC}, + {0x2206, 0xAD20}, {0x2206, 0x12EE}, {0x2206, 0x8AE4}, {0x2206, 0x03EE}, + {0x2206, 0x8AE5}, {0x2206, 0xB7EE}, {0x2206, 0x85C0}, {0x2206, 0x00EE}, + {0x2206, 0x85C1}, {0x2206, 0x00AE}, {0x2206, 0x1115}, {0x2206, 0xE685}, + {0x2206, 0xC0E7}, {0x2206, 0x85C1}, {0x2206, 0xAE08}, {0x2206, 0xEE85}, + {0x2206, 0xC000}, {0x2206, 0xEE85}, {0x2206, 0xC100}, {0x2206, 0xFDFC}, + {0x2206, 0x0400}, {0x2205, 0xE142}, {0x2206, 0x0701}, {0x2205, 0xE140}, + {0x2206, 0x0405}, {0x220F, 0x0000}, {0x221F, 0x0000}, {0x133E, 0x000E}, + {0x133F, 0x0010}, {0x13EB, 0x11BB}, {0x207F, 0x0002}, {0x2073, 0x1D22}, + {0x207F, 0x0000}, {0x133F, 0x0030}, {0x133E, 0x000E}, {0x2200, 0x1340}, + {0x133E, 0x000E}, {0x133F, 0x0010}, +}; + +static int rtl8367b_write_initvals(struct rtl8366_smi *smi, + const struct rtl8367b_initval *initvals, + int count) +{ + int err; + int i; + + for (i = 0; i < count; i++) + REG_WR(smi, initvals[i].reg, initvals[i].val); + + return 0; +} + +static int rtl8367b_read_phy_reg(struct rtl8366_smi *smi, + u32 phy_addr, u32 phy_reg, u32 *val) +{ + int timeout; + u32 data; + int err; + + if (phy_addr > RTL8367B_PHY_ADDR_MAX) + return -EINVAL; + + if (phy_reg > RTL8367B_PHY_REG_MAX) + return -EINVAL; + + REG_RD(smi, RTL8367B_IA_STATUS_REG, &data); + if (data & RTL8367B_IA_STATUS_PHY_BUSY) + return -ETIMEDOUT; + + /* prepare address */ + REG_WR(smi, RTL8367B_IA_ADDRESS_REG, + RTL8367B_INTERNAL_PHY_REG(phy_addr, phy_reg)); + + /* send read command */ + REG_WR(smi, RTL8367B_IA_CTRL_REG, + RTL8367B_IA_CTRL_CMD_MASK | RTL8367B_IA_CTRL_RW_READ); + + timeout = 5; + do { + REG_RD(smi, RTL8367B_IA_STATUS_REG, &data); + if ((data & RTL8367B_IA_STATUS_PHY_BUSY) == 0) + break; + + if (timeout--) { + dev_err(smi->parent, "phy read timed out\n"); + return -ETIMEDOUT; + } + + udelay(1); + } while (1); + + /* read data */ + REG_RD(smi, RTL8367B_IA_READ_DATA_REG, val); + + dev_dbg(smi->parent, "phy_read: addr:%02x, reg:%02x, val:%04x\n", + phy_addr, phy_reg, *val); + return 0; +} + +static int rtl8367b_write_phy_reg(struct rtl8366_smi *smi, + u32 phy_addr, u32 phy_reg, u32 val) +{ + int timeout; + u32 data; + int err; + + dev_dbg(smi->parent, "phy_write: addr:%02x, reg:%02x, val:%04x\n", + phy_addr, phy_reg, val); + + if (phy_addr > RTL8367B_PHY_ADDR_MAX) + return -EINVAL; + + if (phy_reg > RTL8367B_PHY_REG_MAX) + return -EINVAL; + + REG_RD(smi, RTL8367B_IA_STATUS_REG, &data); + if (data & RTL8367B_IA_STATUS_PHY_BUSY) + return -ETIMEDOUT; + + /* preapre data */ + REG_WR(smi, RTL8367B_IA_WRITE_DATA_REG, val); + + /* prepare address */ + REG_WR(smi, RTL8367B_IA_ADDRESS_REG, + RTL8367B_INTERNAL_PHY_REG(phy_addr, phy_reg)); + + /* send write command */ + REG_WR(smi, RTL8367B_IA_CTRL_REG, + RTL8367B_IA_CTRL_CMD_MASK | RTL8367B_IA_CTRL_RW_WRITE); + + timeout = 5; + do { + REG_RD(smi, RTL8367B_IA_STATUS_REG, &data); + if ((data & RTL8367B_IA_STATUS_PHY_BUSY) == 0) + break; + + if (timeout--) { + dev_err(smi->parent, "phy write timed out\n"); + return -ETIMEDOUT; + } + + udelay(1); + } while (1); + + return 0; +} + +static int rtl8367b_init_regs(struct rtl8366_smi *smi) +{ + const struct rtl8367b_initval *initvals; + u32 chip_ver; + u32 rlvid; + int count; + int err; + + REG_WR(smi, RTL8367B_RTL_MAGIC_ID_REG, RTL8367B_RTL_MAGIC_ID_VAL); + REG_RD(smi, RTL8367B_CHIP_VER_REG, &chip_ver); + + rlvid = (chip_ver >> RTL8367B_CHIP_VER_RLVID_SHIFT) & + RTL8367B_CHIP_VER_RLVID_MASK; + + switch (rlvid) { + case 0: + initvals = rtl8367r_vb_initvals_0; + count = ARRAY_SIZE(rtl8367r_vb_initvals_0); + break; + + case 1: + initvals = rtl8367r_vb_initvals_1; + count = ARRAY_SIZE(rtl8367r_vb_initvals_1); + break; + + default: + dev_err(smi->parent, "unknow rlvid %u\n", rlvid); + return -ENODEV; + } + + /* TODO: disable RLTP */ + + return rtl8367b_write_initvals(smi, initvals, count); +} + +static int rtl8367b_reset_chip(struct rtl8366_smi *smi) +{ + int timeout = 10; + int err; + u32 data; + + REG_WR(smi, RTL8367B_CHIP_RESET_REG, RTL8367B_CHIP_RESET_HW); + msleep(RTL8367B_RESET_DELAY); + + do { + REG_RD(smi, RTL8367B_CHIP_RESET_REG, &data); + if (!(data & RTL8367B_CHIP_RESET_HW)) + break; + + msleep(1); + } while (--timeout); + + if (!timeout) { + dev_err(smi->parent, "chip reset timed out\n"); + return -ETIMEDOUT; + } + + return 0; +} + +static int rtl8367b_extif_set_mode(struct rtl8366_smi *smi, int id, + enum rtl8367_extif_mode mode) +{ + int err; + + /* set port mode */ + switch (mode) { + case RTL8367_EXTIF_MODE_RGMII: + case RTL8367_EXTIF_MODE_RGMII_33V: + REG_WR(smi, RTL8367B_CHIP_DEBUG0_REG, 0x0367); + REG_WR(smi, RTL8367B_CHIP_DEBUG1_REG, 0x7777); + break; + + case RTL8367_EXTIF_MODE_TMII_MAC: + case RTL8367_EXTIF_MODE_TMII_PHY: + REG_RMW(smi, RTL8367B_BYPASS_LINE_RATE_REG, + BIT((id + 1) % 2), BIT((id + 1) % 2)); + break; + + case RTL8367_EXTIF_MODE_GMII: + REG_RMW(smi, RTL8367B_CHIP_DEBUG0_REG, + RTL8367B_CHIP_DEBUG0_DUMMY0(id), + RTL8367B_CHIP_DEBUG0_DUMMY0(id)); + REG_RMW(smi, RTL8367B_EXT_RGMXF_REG(id), BIT(6), BIT(6)); + break; + + case RTL8367_EXTIF_MODE_MII_MAC: + case RTL8367_EXTIF_MODE_MII_PHY: + case RTL8367_EXTIF_MODE_DISABLED: + REG_RMW(smi, RTL8367B_BYPASS_LINE_RATE_REG, + BIT((id + 1) % 2), 0); + REG_RMW(smi, RTL8367B_EXT_RGMXF_REG(id), BIT(6), 0); + break; + + default: + dev_err(smi->parent, + "invalid mode for external interface %d\n", id); + return -EINVAL; + } + + REG_RMW(smi, RTL8367B_DIS_REG, + RTL8367B_DIS_RGMII_MASK << RTL8367B_DIS_RGMII_SHIFT(id), + mode << RTL8367B_DIS_RGMII_SHIFT(id)); + + return 0; +} + +static int rtl8367b_extif_set_force(struct rtl8366_smi *smi, int id, + struct rtl8367_port_ability *pa) +{ + u32 mask; + u32 val; + int err; + + mask = (RTL8367B_DI_FORCE_MODE | + RTL8367B_DI_FORCE_NWAY | + RTL8367B_DI_FORCE_TXPAUSE | + RTL8367B_DI_FORCE_RXPAUSE | + RTL8367B_DI_FORCE_LINK | + RTL8367B_DI_FORCE_DUPLEX | + RTL8367B_DI_FORCE_SPEED_MASK); + + val = pa->speed; + val |= pa->force_mode ? RTL8367B_DI_FORCE_MODE : 0; + val |= pa->nway ? RTL8367B_DI_FORCE_NWAY : 0; + val |= pa->txpause ? RTL8367B_DI_FORCE_TXPAUSE : 0; + val |= pa->rxpause ? RTL8367B_DI_FORCE_RXPAUSE : 0; + val |= pa->link ? RTL8367B_DI_FORCE_LINK : 0; + val |= pa->duplex ? RTL8367B_DI_FORCE_DUPLEX : 0; + + REG_RMW(smi, RTL8367B_DI_FORCE_REG(id), mask, val); + + return 0; +} + +static int rtl8367b_extif_set_rgmii_delay(struct rtl8366_smi *smi, int id, + unsigned txdelay, unsigned rxdelay) +{ + u32 mask; + u32 val; + int err; + + mask = (RTL8367B_EXT_RGMXF_RXDELAY_MASK | + (RTL8367B_EXT_RGMXF_TXDELAY_MASK << + RTL8367B_EXT_RGMXF_TXDELAY_SHIFT)); + + val = rxdelay; + val |= txdelay << RTL8367B_EXT_RGMXF_TXDELAY_SHIFT; + + REG_RMW(smi, RTL8367B_EXT_RGMXF_REG(id), mask, val); + + return 0; +} + +static int rtl8367b_extif_init(struct rtl8366_smi *smi, int id, + struct rtl8367_extif_config *cfg) +{ + enum rtl8367_extif_mode mode; + int err; + + mode = (cfg) ? cfg->mode : RTL8367_EXTIF_MODE_DISABLED; + + err = rtl8367b_extif_set_mode(smi, id, mode); + if (err) + return err; + + if (mode != RTL8367_EXTIF_MODE_DISABLED) { + err = rtl8367b_extif_set_force(smi, id, &cfg->ability); + if (err) + return err; + + err = rtl8367b_extif_set_rgmii_delay(smi, id, cfg->txdelay, + cfg->rxdelay); + if (err) + return err; + } + + return 0; +} + +#ifdef CONFIG_OF +static int rtl8367b_extif_init_of(struct rtl8366_smi *smi, int id, + const char *name) +{ + struct rtl8367_extif_config *cfg; + const __be32 *prop; + int size; + int err; + + prop = of_get_property(smi->parent->of_node, name, &size); + if (!prop) + return rtl8367b_extif_init(smi, id, NULL); + + if (size != (9 * sizeof(*prop))) { + dev_err(smi->parent, "%s property is invalid\n", name); + return -EINVAL; + } + + cfg = kzalloc(sizeof(struct rtl8367_extif_config), GFP_KERNEL); + if (!cfg) + return -ENOMEM; + + cfg->txdelay = be32_to_cpup(prop++); + cfg->rxdelay = be32_to_cpup(prop++); + cfg->mode = be32_to_cpup(prop++); + cfg->ability.force_mode = be32_to_cpup(prop++); + cfg->ability.txpause = be32_to_cpup(prop++); + cfg->ability.rxpause = be32_to_cpup(prop++); + cfg->ability.link = be32_to_cpup(prop++); + cfg->ability.duplex = be32_to_cpup(prop++); + cfg->ability.speed = be32_to_cpup(prop++); + + err = rtl8367b_extif_init(smi, id, cfg); + kfree(cfg); + + return err; +} +#else +static int rtl8367b_extif_init_of(struct rtl8366_smi *smi, int id, + const char *name) +{ + return -EINVAL; +} +#endif + +static int rtl8367b_setup(struct rtl8366_smi *smi) +{ + struct rtl8367_platform_data *pdata; + int err; + int i; + + pdata = smi->parent->platform_data; + + err = rtl8367b_init_regs(smi); + if (err) + return err; + + /* initialize external interfaces */ + if (smi->parent->of_node) { + err = rtl8367b_extif_init_of(smi, 0, "realtek,extif0"); + if (err) + return err; + + err = rtl8367b_extif_init_of(smi, 1, "realtek,extif1"); + if (err) + return err; + } else { + err = rtl8367b_extif_init(smi, 0, pdata->extif0_cfg); + if (err) + return err; + + err = rtl8367b_extif_init(smi, 1, pdata->extif1_cfg); + if (err) + return err; + } + + /* set maximum packet length to 1536 bytes */ + REG_RMW(smi, RTL8367B_SWC0_REG, RTL8367B_SWC0_MAX_LENGTH_MASK, + RTL8367B_SWC0_MAX_LENGTH_1536); + + /* + * discard VLAN tagged packets if the port is not a member of + * the VLAN with which the packets is associated. + */ + REG_WR(smi, RTL8367B_VLAN_INGRESS_REG, RTL8367B_PORTS_ALL); + + /* + * Setup egress tag mode for each port. + */ + for (i = 0; i < RTL8367B_NUM_PORTS; i++) + REG_RMW(smi, + RTL8367B_PORT_MISC_CFG_REG(i), + RTL8367B_PORT_MISC_CFG_EGRESS_MODE_MASK << + RTL8367B_PORT_MISC_CFG_EGRESS_MODE_SHIFT, + RTL8367B_PORT_MISC_CFG_EGRESS_MODE_ORIGINAL << + RTL8367B_PORT_MISC_CFG_EGRESS_MODE_SHIFT); + + return 0; +} + +static int rtl8367b_get_mib_counter(struct rtl8366_smi *smi, int counter, + int port, unsigned long long *val) +{ + struct rtl8366_mib_counter *mib; + int offset; + int i; + int err; + u32 addr, data; + u64 mibvalue; + + if (port > RTL8367B_NUM_PORTS || + counter >= RTL8367B_NUM_MIB_COUNTERS) + return -EINVAL; + + mib = &rtl8367b_mib_counters[counter]; + addr = RTL8367B_MIB_COUNTER_PORT_OFFSET * port + mib->offset; + + /* + * Writing access counter address first + * then ASIC will prepare 64bits counter wait for being retrived + */ + REG_WR(smi, RTL8367B_MIB_ADDRESS_REG, addr >> 2); + + /* read MIB control register */ + REG_RD(smi, RTL8367B_MIB_CTRL0_REG(0), &data); + + if (data & RTL8367B_MIB_CTRL0_BUSY_MASK) + return -EBUSY; + + if (data & RTL8367B_MIB_CTRL0_RESET_MASK) + return -EIO; + + if (mib->length == 4) + offset = 3; + else + offset = (mib->offset + 1) % 4; + + mibvalue = 0; + for (i = 0; i < mib->length; i++) { + REG_RD(smi, RTL8367B_MIB_COUNTER_REG(offset - i), &data); + mibvalue = (mibvalue << 16) | (data & 0xFFFF); + } + + *val = mibvalue; + return 0; +} + +static int rtl8367b_get_vlan_4k(struct rtl8366_smi *smi, u32 vid, + struct rtl8366_vlan_4k *vlan4k) +{ + u32 data[RTL8367B_TA_VLAN_NUM_WORDS]; + int err; + int i; + + memset(vlan4k, '\0', sizeof(struct rtl8366_vlan_4k)); + + if (vid >= RTL8367B_NUM_VIDS) + return -EINVAL; + + /* write VID */ + REG_WR(smi, RTL8367B_TA_ADDR_REG, vid); + + /* write table access control word */ + REG_WR(smi, RTL8367B_TA_CTRL_REG, RTL8367B_TA_CTRL_CVLAN_READ); + + for (i = 0; i < ARRAY_SIZE(data); i++) + REG_RD(smi, RTL8367B_TA_RDDATA_REG(i), &data[i]); + + vlan4k->vid = vid; + vlan4k->member = (data[0] >> RTL8367B_TA_VLAN0_MEMBER_SHIFT) & + RTL8367B_TA_VLAN0_MEMBER_MASK; + vlan4k->untag = (data[0] >> RTL8367B_TA_VLAN0_UNTAG_SHIFT) & + RTL8367B_TA_VLAN0_UNTAG_MASK; + vlan4k->fid = (data[1] >> RTL8367B_TA_VLAN1_FID_SHIFT) & + RTL8367B_TA_VLAN1_FID_MASK; + + return 0; +} + +static int rtl8367b_set_vlan_4k(struct rtl8366_smi *smi, + const struct rtl8366_vlan_4k *vlan4k) +{ + u32 data[RTL8367B_TA_VLAN_NUM_WORDS]; + int err; + int i; + + if (vlan4k->vid >= RTL8367B_NUM_VIDS || + vlan4k->member > RTL8367B_TA_VLAN0_MEMBER_MASK || + vlan4k->untag > RTL8367B_UNTAG_MASK || + vlan4k->fid > RTL8367B_FIDMAX) + return -EINVAL; + + memset(data, 0, sizeof(data)); + + data[0] = (vlan4k->member & RTL8367B_TA_VLAN0_MEMBER_MASK) << + RTL8367B_TA_VLAN0_MEMBER_SHIFT; + data[0] |= (vlan4k->untag & RTL8367B_TA_VLAN0_UNTAG_MASK) << + RTL8367B_TA_VLAN0_UNTAG_SHIFT; + data[1] = (vlan4k->fid & RTL8367B_TA_VLAN1_FID_MASK) << + RTL8367B_TA_VLAN1_FID_SHIFT; + + for (i = 0; i < ARRAY_SIZE(data); i++) + REG_WR(smi, RTL8367B_TA_WRDATA_REG(i), data[i]); + + /* write VID */ + REG_WR(smi, RTL8367B_TA_ADDR_REG, + vlan4k->vid & RTL8367B_TA_VLAN_VID_MASK); + + /* write table access control word */ + REG_WR(smi, RTL8367B_TA_CTRL_REG, RTL8367B_TA_CTRL_CVLAN_WRITE); + + return 0; +} + +static int rtl8367b_get_vlan_mc(struct rtl8366_smi *smi, u32 index, + struct rtl8366_vlan_mc *vlanmc) +{ + u32 data[RTL8367B_VLAN_MC_NUM_WORDS]; + int err; + int i; + + memset(vlanmc, '\0', sizeof(struct rtl8366_vlan_mc)); + + if (index >= RTL8367B_NUM_VLANS) + return -EINVAL; + + for (i = 0; i < ARRAY_SIZE(data); i++) + REG_RD(smi, RTL8367B_VLAN_MC_BASE(index) + i, &data[i]); + + vlanmc->member = (data[0] >> RTL8367B_VLAN_MC0_MEMBER_SHIFT) & + RTL8367B_VLAN_MC0_MEMBER_MASK; + vlanmc->fid = (data[1] >> RTL8367B_VLAN_MC1_FID_SHIFT) & + RTL8367B_VLAN_MC1_FID_MASK; + vlanmc->vid = (data[3] >> RTL8367B_VLAN_MC3_EVID_SHIFT) & + RTL8367B_VLAN_MC3_EVID_MASK; + + return 0; +} + +static int rtl8367b_set_vlan_mc(struct rtl8366_smi *smi, u32 index, + const struct rtl8366_vlan_mc *vlanmc) +{ + u32 data[RTL8367B_VLAN_MC_NUM_WORDS]; + int err; + int i; + + if (index >= RTL8367B_NUM_VLANS || + vlanmc->vid >= RTL8367B_NUM_VIDS || + vlanmc->priority > RTL8367B_PRIORITYMAX || + vlanmc->member > RTL8367B_VLAN_MC0_MEMBER_MASK || + vlanmc->untag > RTL8367B_UNTAG_MASK || + vlanmc->fid > RTL8367B_FIDMAX) + return -EINVAL; + + data[0] = (vlanmc->member & RTL8367B_VLAN_MC0_MEMBER_MASK) << + RTL8367B_VLAN_MC0_MEMBER_SHIFT; + data[1] = (vlanmc->fid & RTL8367B_VLAN_MC1_FID_MASK) << + RTL8367B_VLAN_MC1_FID_SHIFT; + data[2] = 0; + data[3] = (vlanmc->vid & RTL8367B_VLAN_MC3_EVID_MASK) << + RTL8367B_VLAN_MC3_EVID_SHIFT; + + for (i = 0; i < ARRAY_SIZE(data); i++) + REG_WR(smi, RTL8367B_VLAN_MC_BASE(index) + i, data[i]); + + return 0; +} + +static int rtl8367b_get_mc_index(struct rtl8366_smi *smi, int port, int *val) +{ + u32 data; + int err; + + if (port >= RTL8367B_NUM_PORTS) + return -EINVAL; + + REG_RD(smi, RTL8367B_VLAN_PVID_CTRL_REG(port), &data); + + *val = (data >> RTL8367B_VLAN_PVID_CTRL_SHIFT(port)) & + RTL8367B_VLAN_PVID_CTRL_MASK; + + return 0; +} + +static int rtl8367b_set_mc_index(struct rtl8366_smi *smi, int port, int index) +{ + if (port >= RTL8367B_NUM_PORTS || index >= RTL8367B_NUM_VLANS) + return -EINVAL; + + return rtl8366_smi_rmwr(smi, RTL8367B_VLAN_PVID_CTRL_REG(port), + RTL8367B_VLAN_PVID_CTRL_MASK << + RTL8367B_VLAN_PVID_CTRL_SHIFT(port), + (index & RTL8367B_VLAN_PVID_CTRL_MASK) << + RTL8367B_VLAN_PVID_CTRL_SHIFT(port)); +} + +static int rtl8367b_enable_vlan(struct rtl8366_smi *smi, int enable) +{ + return rtl8366_smi_rmwr(smi, RTL8367B_VLAN_CTRL_REG, + RTL8367B_VLAN_CTRL_ENABLE, + (enable) ? RTL8367B_VLAN_CTRL_ENABLE : 0); +} + +static int rtl8367b_enable_vlan4k(struct rtl8366_smi *smi, int enable) +{ + return 0; +} + +static int rtl8367b_is_vlan_valid(struct rtl8366_smi *smi, unsigned vlan) +{ + unsigned max = RTL8367B_NUM_VLANS; + + if (smi->vlan4k_enabled) + max = RTL8367B_NUM_VIDS - 1; + + if (vlan == 0 || vlan >= max) + return 0; + + return 1; +} + +static int rtl8367b_enable_port(struct rtl8366_smi *smi, int port, int enable) +{ + int err; + + REG_WR(smi, RTL8367B_PORT_ISOLATION_REG(port), + (enable) ? RTL8367B_PORTS_ALL : 0); + + return 0; +} + +static int rtl8367b_sw_reset_mibs(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct rtl8366_smi *smi = sw_to_rtl8366_smi(dev); + + return rtl8366_smi_rmwr(smi, RTL8367B_MIB_CTRL0_REG(0), 0, + RTL8367B_MIB_CTRL0_GLOBAL_RESET_MASK); +} + +static int rtl8367b_sw_get_port_link(struct switch_dev *dev, + int port, + struct switch_port_link *link) +{ + struct rtl8366_smi *smi = sw_to_rtl8366_smi(dev); + u32 data = 0; + u32 speed; + + if (port >= RTL8367B_NUM_PORTS) + return -EINVAL; + + rtl8366_smi_read_reg(smi, RTL8367B_PORT_STATUS_REG(port), &data); + + link->link = !!(data & RTL8367B_PORT_STATUS_LINK); + if (!link->link) + return 0; + + link->duplex = !!(data & RTL8367B_PORT_STATUS_DUPLEX); + link->rx_flow = !!(data & RTL8367B_PORT_STATUS_RXPAUSE); + link->tx_flow = !!(data & RTL8367B_PORT_STATUS_TXPAUSE); + link->aneg = !!(data & RTL8367B_PORT_STATUS_NWAY); + + speed = (data & RTL8367B_PORT_STATUS_SPEED_MASK); + switch (speed) { + case 0: + link->speed = SWITCH_PORT_SPEED_10; + break; + case 1: + link->speed = SWITCH_PORT_SPEED_100; + break; + case 2: + link->speed = SWITCH_PORT_SPEED_1000; + break; + default: + link->speed = SWITCH_PORT_SPEED_UNKNOWN; + break; + } + + return 0; +} + +static int rtl8367b_sw_get_max_length(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct rtl8366_smi *smi = sw_to_rtl8366_smi(dev); + u32 data; + + rtl8366_smi_read_reg(smi, RTL8367B_SWC0_REG, &data); + val->value.i = (data & RTL8367B_SWC0_MAX_LENGTH_MASK) >> + RTL8367B_SWC0_MAX_LENGTH_SHIFT; + + return 0; +} + +static int rtl8367b_sw_set_max_length(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct rtl8366_smi *smi = sw_to_rtl8366_smi(dev); + u32 max_len; + + switch (val->value.i) { + case 0: + max_len = RTL8367B_SWC0_MAX_LENGTH_1522; + break; + case 1: + max_len = RTL8367B_SWC0_MAX_LENGTH_1536; + break; + case 2: + max_len = RTL8367B_SWC0_MAX_LENGTH_1552; + break; + case 3: + max_len = RTL8367B_SWC0_MAX_LENGTH_16000; + break; + default: + return -EINVAL; + } + + return rtl8366_smi_rmwr(smi, RTL8367B_SWC0_REG, + RTL8367B_SWC0_MAX_LENGTH_MASK, max_len); +} + + +static int rtl8367b_sw_reset_port_mibs(struct switch_dev *dev, + const struct switch_attr *attr, + struct switch_val *val) +{ + struct rtl8366_smi *smi = sw_to_rtl8366_smi(dev); + int port; + + port = val->port_vlan; + if (port >= RTL8367B_NUM_PORTS) + return -EINVAL; + + return rtl8366_smi_rmwr(smi, RTL8367B_MIB_CTRL0_REG(port / 8), 0, + RTL8367B_MIB_CTRL0_PORT_RESET_MASK(port % 8)); +} + +static struct switch_attr rtl8367b_globals[] = { + { + .type = SWITCH_TYPE_INT, + .name = "enable_vlan", + .description = "Enable VLAN mode", + .set = rtl8366_sw_set_vlan_enable, + .get = rtl8366_sw_get_vlan_enable, + .max = 1, + .ofs = 1 + }, { + .type = SWITCH_TYPE_INT, + .name = "enable_vlan4k", + .description = "Enable VLAN 4K mode", + .set = rtl8366_sw_set_vlan_enable, + .get = rtl8366_sw_get_vlan_enable, + .max = 1, + .ofs = 2 + }, { + .type = SWITCH_TYPE_NOVAL, + .name = "reset_mibs", + .description = "Reset all MIB counters", + .set = rtl8367b_sw_reset_mibs, + }, { + .type = SWITCH_TYPE_INT, + .name = "max_length", + .description = "Get/Set the maximum length of valid packets" + "(0:1522, 1:1536, 2:1552, 3:16000)", + .set = rtl8367b_sw_set_max_length, + .get = rtl8367b_sw_get_max_length, + .max = 3, + } +}; + +static struct switch_attr rtl8367b_port[] = { + { + .type = SWITCH_TYPE_NOVAL, + .name = "reset_mib", + .description = "Reset single port MIB counters", + .set = rtl8367b_sw_reset_port_mibs, + }, { + .type = SWITCH_TYPE_STRING, + .name = "mib", + .description = "Get MIB counters for port", + .max = 33, + .set = NULL, + .get = rtl8366_sw_get_port_mib, + }, +}; + +static struct switch_attr rtl8367b_vlan[] = { + { + .type = SWITCH_TYPE_STRING, + .name = "info", + .description = "Get vlan information", + .max = 1, + .set = NULL, + .get = rtl8366_sw_get_vlan_info, + }, +}; + +static const struct switch_dev_ops rtl8367b_sw_ops = { + .attr_global = { + .attr = rtl8367b_globals, + .n_attr = ARRAY_SIZE(rtl8367b_globals), + }, + .attr_port = { + .attr = rtl8367b_port, + .n_attr = ARRAY_SIZE(rtl8367b_port), + }, + .attr_vlan = { + .attr = rtl8367b_vlan, + .n_attr = ARRAY_SIZE(rtl8367b_vlan), + }, + + .get_vlan_ports = rtl8366_sw_get_vlan_ports, + .set_vlan_ports = rtl8366_sw_set_vlan_ports, + .get_port_pvid = rtl8366_sw_get_port_pvid, + .set_port_pvid = rtl8366_sw_set_port_pvid, + .reset_switch = rtl8366_sw_reset_switch, + .get_port_link = rtl8367b_sw_get_port_link, +}; + +static int rtl8367b_switch_init(struct rtl8366_smi *smi) +{ + struct switch_dev *dev = &smi->sw_dev; + int err; + + dev->name = "RTL8367B"; + dev->cpu_port = RTL8367B_CPU_PORT_NUM; + dev->ports = RTL8367B_NUM_PORTS; + dev->vlans = RTL8367B_NUM_VIDS; + dev->ops = &rtl8367b_sw_ops; + dev->alias = dev_name(smi->parent); + + err = register_switch(dev, NULL); + if (err) + dev_err(smi->parent, "switch registration failed\n"); + + return err; +} + +static void rtl8367b_switch_cleanup(struct rtl8366_smi *smi) +{ + unregister_switch(&smi->sw_dev); +} + +static int rtl8367b_mii_read(struct mii_bus *bus, int addr, int reg) +{ + struct rtl8366_smi *smi = bus->priv; + u32 val = 0; + int err; + + err = rtl8367b_read_phy_reg(smi, addr, reg, &val); + if (err) + return 0xffff; + + return val; +} + +static int rtl8367b_mii_write(struct mii_bus *bus, int addr, int reg, u16 val) +{ + struct rtl8366_smi *smi = bus->priv; + u32 t; + int err; + + err = rtl8367b_write_phy_reg(smi, addr, reg, val); + if (err) + return err; + + /* flush write */ + (void) rtl8367b_read_phy_reg(smi, addr, reg, &t); + + return err; +} + +static int rtl8367b_detect(struct rtl8366_smi *smi) +{ + const char *chip_name; + u32 chip_num; + u32 chip_ver; + u32 chip_mode; + int ret; + + /* TODO: improve chip detection */ + rtl8366_smi_write_reg(smi, RTL8367B_RTL_MAGIC_ID_REG, + RTL8367B_RTL_MAGIC_ID_VAL); + + ret = rtl8366_smi_read_reg(smi, RTL8367B_CHIP_NUMBER_REG, &chip_num); + if (ret) { + dev_err(smi->parent, "unable to read %s register\n", + "chip number"); + return ret; + } + + ret = rtl8366_smi_read_reg(smi, RTL8367B_CHIP_VER_REG, &chip_ver); + if (ret) { + dev_err(smi->parent, "unable to read %s register\n", + "chip version"); + return ret; + } + + ret = rtl8366_smi_read_reg(smi, RTL8367B_CHIP_MODE_REG, &chip_mode); + if (ret) { + dev_err(smi->parent, "unable to read %s register\n", + "chip mode"); + return ret; + } + + switch (chip_ver) { + case 0x1000: + chip_name = "8367RB"; + break; + case 0x1010: + chip_name = "8367R-VB"; + break; + default: + dev_err(smi->parent, + "unknown chip num:%04x ver:%04x, mode:%04x\n", + chip_num, chip_ver, chip_mode); + return -ENODEV; + } + + dev_info(smi->parent, "RTL%s chip found\n", chip_name); + + return 0; +} + +static struct rtl8366_smi_ops rtl8367b_smi_ops = { + .detect = rtl8367b_detect, + .reset_chip = rtl8367b_reset_chip, + .setup = rtl8367b_setup, + + .mii_read = rtl8367b_mii_read, + .mii_write = rtl8367b_mii_write, + + .get_vlan_mc = rtl8367b_get_vlan_mc, + .set_vlan_mc = rtl8367b_set_vlan_mc, + .get_vlan_4k = rtl8367b_get_vlan_4k, + .set_vlan_4k = rtl8367b_set_vlan_4k, + .get_mc_index = rtl8367b_get_mc_index, + .set_mc_index = rtl8367b_set_mc_index, + .get_mib_counter = rtl8367b_get_mib_counter, + .is_vlan_valid = rtl8367b_is_vlan_valid, + .enable_vlan = rtl8367b_enable_vlan, + .enable_vlan4k = rtl8367b_enable_vlan4k, + .enable_port = rtl8367b_enable_port, +}; + +static int rtl8367b_probe(struct platform_device *pdev) +{ + struct rtl8366_smi *smi; + int err; + + smi = rtl8366_smi_probe(pdev); + if (!smi) + return -ENODEV; + + smi->clk_delay = 1500; + smi->cmd_read = 0xb9; + smi->cmd_write = 0xb8; + smi->ops = &rtl8367b_smi_ops; + smi->cpu_port = RTL8367B_CPU_PORT_NUM; + smi->num_ports = RTL8367B_NUM_PORTS; + smi->num_vlan_mc = RTL8367B_NUM_VLANS; + smi->mib_counters = rtl8367b_mib_counters; + smi->num_mib_counters = ARRAY_SIZE(rtl8367b_mib_counters); + + err = rtl8366_smi_init(smi); + if (err) + goto err_free_smi; + + platform_set_drvdata(pdev, smi); + + err = rtl8367b_switch_init(smi); + if (err) + goto err_clear_drvdata; + + return 0; + + err_clear_drvdata: + platform_set_drvdata(pdev, NULL); + rtl8366_smi_cleanup(smi); + err_free_smi: + kfree(smi); + return err; +} + +static int rtl8367b_remove(struct platform_device *pdev) +{ + struct rtl8366_smi *smi = platform_get_drvdata(pdev); + + if (smi) { + rtl8367b_switch_cleanup(smi); + platform_set_drvdata(pdev, NULL); + rtl8366_smi_cleanup(smi); + kfree(smi); + } + + return 0; +} + +static void rtl8367b_shutdown(struct platform_device *pdev) +{ + struct rtl8366_smi *smi = platform_get_drvdata(pdev); + + if (smi) + rtl8367b_reset_chip(smi); +} + +#ifdef CONFIG_OF +static const struct of_device_id rtl8367b_match[] = { + { .compatible = "realtek,rtl8367b" }, + { .compatible = "rtl8367b" }, + {}, +}; +MODULE_DEVICE_TABLE(of, rtl8367b_match); +#endif + +static struct platform_driver rtl8367b_driver = { + .driver = { + .name = RTL8367B_DRIVER_NAME, + .owner = THIS_MODULE, +#ifdef CONFIG_OF + .of_match_table = of_match_ptr(rtl8367b_match), +#endif + }, + .probe = rtl8367b_probe, + .remove = rtl8367b_remove, + .shutdown = rtl8367b_shutdown, +}; + +module_platform_driver(rtl8367b_driver); + +MODULE_DESCRIPTION(RTL8367B_DRIVER_DESC); +MODULE_AUTHOR("Gabor Juhos <juhosg@openwrt.org>"); +MODULE_LICENSE("GPL v2"); +MODULE_ALIAS("platform:" RTL8367B_DRIVER_NAME); + diff --git a/target/linux/generic/files/drivers/net/phy/swconfig.c b/target/linux/generic/files/drivers/net/phy/swconfig.c index e772c9448..4e6d7136f 100644 --- a/target/linux/generic/files/drivers/net/phy/swconfig.c +++ b/target/linux/generic/files/drivers/net/phy/swconfig.c @@ -23,6 +23,7 @@ #include <linux/capability.h> #include <linux/skbuff.h> #include <linux/switch.h> +#include <linux/of.h> //#define DEBUG 1 #ifdef DEBUG @@ -376,17 +377,21 @@ swconfig_dump_attr(struct swconfig_callback *cb, void *arg) int id = cb->args[0]; void *hdr; - hdr = genlmsg_put(msg, info->snd_pid, info->snd_seq, &switch_fam, + hdr = genlmsg_put(msg, info->snd_portid, info->snd_seq, &switch_fam, NLM_F_MULTI, SWITCH_CMD_NEW_ATTR); if (IS_ERR(hdr)) return -1; - NLA_PUT_U32(msg, SWITCH_ATTR_OP_ID, id); - NLA_PUT_U32(msg, SWITCH_ATTR_OP_TYPE, op->type); - NLA_PUT_STRING(msg, SWITCH_ATTR_OP_NAME, op->name); + if (nla_put_u32(msg, SWITCH_ATTR_OP_ID, id)) + goto nla_put_failure; + if (nla_put_u32(msg, SWITCH_ATTR_OP_TYPE, op->type)) + goto nla_put_failure; + if (nla_put_string(msg, SWITCH_ATTR_OP_NAME, op->name)) + goto nla_put_failure; if (op->description) - NLA_PUT_STRING(msg, SWITCH_ATTR_OP_DESCRIPTION, - op->description); + if (nla_put_string(msg, SWITCH_ATTR_OP_DESCRIPTION, + op->description)) + goto nla_put_failure; return genlmsg_end(msg, hdr); nla_put_failure: @@ -711,9 +716,12 @@ swconfig_send_port(struct swconfig_callback *cb, void *arg) if (!p) goto error; - NLA_PUT_U32(cb->msg, SWITCH_PORT_ID, port->id); - if (port->flags & (1 << SWITCH_PORT_FLAG_TAGGED)) - NLA_PUT_FLAG(cb->msg, SWITCH_PORT_FLAG_TAGGED); + if (nla_put_u32(cb->msg, SWITCH_PORT_ID, port->id)) + goto nla_put_failure; + if (port->flags & (1 << SWITCH_PORT_FLAG_TAGGED)) { + if (nla_put_flag(cb->msg, SWITCH_PORT_FLAG_TAGGED)) + goto nla_put_failure; + } nla_nest_end(cb->msg, p); return 0; @@ -791,17 +799,19 @@ swconfig_get_attr(struct sk_buff *skb, struct genl_info *info) if (!msg) goto error; - hdr = genlmsg_put(msg, info->snd_pid, info->snd_seq, &switch_fam, + hdr = genlmsg_put(msg, info->snd_portid, info->snd_seq, &switch_fam, 0, cmd); if (IS_ERR(hdr)) goto nla_put_failure; switch(attr->type) { case SWITCH_TYPE_INT: - NLA_PUT_U32(msg, SWITCH_ATTR_OP_VALUE_INT, val.value.i); + if (nla_put_u32(msg, SWITCH_ATTR_OP_VALUE_INT, val.value.i)) + goto nla_put_failure; break; case SWITCH_TYPE_STRING: - NLA_PUT_STRING(msg, SWITCH_ATTR_OP_VALUE_STR, val.value.s); + if (nla_put_string(msg, SWITCH_ATTR_OP_VALUE_STR, val.value.s)) + goto nla_put_failure; break; case SWITCH_TYPE_PORTS: err = swconfig_send_ports(&msg, info, @@ -835,21 +845,46 @@ static int swconfig_send_switch(struct sk_buff *msg, u32 pid, u32 seq, int flags, const struct switch_dev *dev) { + struct nlattr *p = NULL, *m = NULL; void *hdr; + int i; hdr = genlmsg_put(msg, pid, seq, &switch_fam, flags, SWITCH_CMD_NEW_ATTR); if (IS_ERR(hdr)) return -1; - NLA_PUT_U32(msg, SWITCH_ATTR_ID, dev->id); - NLA_PUT_STRING(msg, SWITCH_ATTR_DEV_NAME, dev->devname); - NLA_PUT_STRING(msg, SWITCH_ATTR_ALIAS, dev->alias); - NLA_PUT_STRING(msg, SWITCH_ATTR_NAME, dev->name); - NLA_PUT_U32(msg, SWITCH_ATTR_VLANS, dev->vlans); - NLA_PUT_U32(msg, SWITCH_ATTR_PORTS, dev->ports); - NLA_PUT_U32(msg, SWITCH_ATTR_CPU_PORT, dev->cpu_port); + if (nla_put_u32(msg, SWITCH_ATTR_ID, dev->id)) + goto nla_put_failure; + if (nla_put_string(msg, SWITCH_ATTR_DEV_NAME, dev->devname)) + goto nla_put_failure; + if (nla_put_string(msg, SWITCH_ATTR_ALIAS, dev->alias)) + goto nla_put_failure; + if (nla_put_string(msg, SWITCH_ATTR_NAME, dev->name)) + goto nla_put_failure; + if (nla_put_u32(msg, SWITCH_ATTR_VLANS, dev->vlans)) + goto nla_put_failure; + if (nla_put_u32(msg, SWITCH_ATTR_PORTS, dev->ports)) + goto nla_put_failure; + if (nla_put_u32(msg, SWITCH_ATTR_CPU_PORT, dev->cpu_port)) + goto nla_put_failure; + m = nla_nest_start(msg, SWITCH_ATTR_PORTMAP); + if (!m) + goto nla_put_failure; + for (i = 0; i < dev->ports; i++) { + p = nla_nest_start(msg, SWITCH_ATTR_PORTS); + if (!p) + continue; + if (dev->portmap[i].s) { + if (nla_put_string(msg, SWITCH_PORTMAP_SEGMENT, dev->portmap[i].s)) + goto nla_put_failure; + if (nla_put_u32(msg, SWITCH_PORTMAP_VIRT, dev->portmap[i].virt)) + goto nla_put_failure; + } + nla_nest_end(msg, p); + } + nla_nest_end(msg, m); return genlmsg_end(msg, hdr); nla_put_failure: genlmsg_cancel(msg, hdr); @@ -867,7 +902,7 @@ static int swconfig_dump_switches(struct sk_buff *skb, list_for_each_entry(dev, &swdevs, dev_list) { if (++idx <= start) continue; - if (swconfig_send_switch(skb, NETLINK_CB(cb->skb).pid, + if (swconfig_send_switch(skb, NETLINK_CB(cb->skb).portid, cb->nlh->nlmsg_seq, NLM_F_MULTI, dev) < 0) break; @@ -938,6 +973,49 @@ static struct genl_ops swconfig_ops[] = { } }; +#ifdef CONFIG_OF +void +of_switch_load_portmap(struct switch_dev *dev) +{ + struct device_node *port; + + if (!dev->of_node) + return; + + for_each_child_of_node(dev->of_node, port) { + const __be32 *prop; + const char *segment; + int size, phys; + + if (!of_device_is_compatible(port, "swconfig,port")) + continue; + + if (of_property_read_string(port, "swconfig,segment", &segment)) + continue; + + prop = of_get_property(port, "swconfig,portmap", &size); + if (!prop) + continue; + + if (size != (2 * sizeof(*prop))) { + pr_err("%s: failed to parse port mapping\n", port->name); + continue; + } + + phys = be32_to_cpup(prop++); + if ((phys < 0) | (phys >= dev->ports)) { + pr_err("%s: physical port index out of range\n", port->name); + continue; + } + + dev->portmap[phys].s = kstrdup(segment, GFP_KERNEL); + dev->portmap[phys].virt = be32_to_cpup(prop); + pr_debug("Found port: %s, physical: %d, virtual: %d\n", + segment, phys, dev->portmap[phys].virt); + } +} +#endif + int register_switch(struct switch_dev *dev, struct net_device *netdev) { @@ -960,6 +1038,12 @@ register_switch(struct switch_dev *dev, struct net_device *netdev) GFP_KERNEL); if (!dev->portbuf) return -ENOMEM; + dev->portmap = kzalloc(sizeof(struct switch_portmap) * dev->ports, + GFP_KERNEL); + if (!dev->portmap) { + kfree(dev->portbuf); + return -ENOMEM; + } } swconfig_defaults_init(dev); mutex_init(&dev->sw_mutex); @@ -981,6 +1065,11 @@ register_switch(struct switch_dev *dev, struct net_device *netdev) return -ENFILE; } +#ifdef CONFIG_OF + if (dev->ports) + of_switch_load_portmap(dev); +#endif + /* fill device name */ snprintf(dev->devname, IFNAMSIZ, SWCONFIG_DEVNAME, i); diff --git a/target/linux/generic/files/drivers/net/phy/swconfig_leds.c b/target/linux/generic/files/drivers/net/phy/swconfig_leds.c index 6f54cc15b..2fc5d554d 100644 --- a/target/linux/generic/files/drivers/net/phy/swconfig_leds.c +++ b/target/linux/generic/files/drivers/net/phy/swconfig_leds.c @@ -46,7 +46,7 @@ static void swconfig_trig_set_brightness(struct swconfig_trig_data *trig_data, enum led_brightness brightness) { - led_brightness_set(trig_data->led_cdev, brightness); + led_set_brightness(trig_data->led_cdev, brightness); trig_data->prev_brightness = brightness; } @@ -209,7 +209,7 @@ swconfig_trig_led_event(struct switch_led_trigger *sw_trig, link = !!(sw_trig->port_link & port_mask); if (!link) { if (link != trig_data->prev_link) - led_brightness_set(trig_data->led_cdev, LED_OFF); + led_set_brightness(trig_data->led_cdev, LED_OFF); } else { unsigned long traffic; int i; diff --git a/target/linux/generic/files/drivers/pwm/gpio-pwm.c b/target/linux/generic/files/drivers/pwm/gpio-pwm.c index dff5d1d62..58e518fe7 100644 --- a/target/linux/generic/files/drivers/pwm/gpio-pwm.c +++ b/target/linux/generic/files/drivers/pwm/gpio-pwm.c @@ -205,7 +205,7 @@ gpio_pwm_request(struct pwm_channel *p) return 0; } -static int __devinit +static int gpio_pwm_probe(struct platform_device *pdev) { struct gpio_pwm *gp; @@ -256,7 +256,7 @@ err_alloc: return ret; } -static int __devexit +static int gpio_pwm_remove(struct platform_device *pdev) { struct gpio_pwm *gp = platform_get_drvdata(pdev); @@ -277,7 +277,7 @@ static struct platform_driver gpio_pwm_driver = { .owner = THIS_MODULE, }, .probe = gpio_pwm_probe, - .remove = __devexit_p(gpio_pwm_remove), + .remove = gpio_pwm_remove, }; static int __init gpio_pwm_init(void) |