mirror of https://github.com/hak5/openwrt-owl.git
parent
7eb747e49a
commit
cecf4df4d5
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@ -32,6 +32,7 @@
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#include "gpio.h"
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#define DRIVER_NAME "adm6996"
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#define DRIVER_VERSION "0.01"
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static int eecs = 2;
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static int eesk = 3;
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@ -57,8 +58,9 @@ MODULE_PARM(force, "i");
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#define adm_write16(cs, w) { __u16 val = hton16(w); adm_write(cs, (__u8 *)&val, sizeof(val)*8); }
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#define adm_write32(cs, i) { uint32 val = hton32(i); adm_write(cs, (__u8 *)&val, sizeof(val)*8); }
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#define atoi(str) simple_strtoul(((str != NULL) ? str : ""), NULL, 0)
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extern int getintvar(char **vars, char *name);
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extern char *nvram_get(char *name);
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static void adm_write(int cs, char *buf, unsigned int bits)
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@ -442,11 +444,8 @@ static int detect_adm()
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int ret = 0;
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#if defined(BCMGPIO2) || defined(BCMGPIO)
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#ifdef LINUX_2_4
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int boardflags = getintvar(NULL, "boardflags");
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#else
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extern int boardflags;
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#endif
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int boardflags = atoi(nvram_get("boardflags"));
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if ((boardflags & 0x80) || force)
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ret = 1;
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else
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@ -454,13 +453,6 @@ static int detect_adm()
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#else
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ret = 1;
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#endif
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if (ret == 1) {
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int i = adm_rreg(0, 0);
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if ((i == 0) || (i == 0xffff)) {
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printk("No ADM6996 chip detected.\n");
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ret = 0;
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}
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}
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return ret;
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}
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@ -475,7 +467,7 @@ static int __init adm_init()
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{NULL, NULL, NULL}
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};
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switch_config port[] = {
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{"enabled", handle_port_enable_read, handle_port_enable_write},
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{"enable", handle_port_enable_read, handle_port_enable_write},
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{"media", handle_port_media_read, handle_port_media_write},
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{NULL, NULL, NULL}
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};
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@ -485,6 +477,7 @@ static int __init adm_init()
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};
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switch_driver driver = {
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name: DRIVER_NAME,
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version: DRIVER_VERSION,
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interface: "eth0",
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ports: 6,
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cpuport: 5,
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@ -131,30 +131,50 @@ static ssize_t switch_proc_write(struct file *file, const char *buf, size_t coun
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return ret;
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}
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static void add_handlers(switch_driver *driver, switch_config *handlers, struct proc_dir_entry *parent, int nr)
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static int handle_driver_name(void *driver, char *buf, int nr)
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{
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char *name = ((switch_driver *) driver)->name;
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return sprintf(buf, "%s\n", name);
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}
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static int handle_driver_version(void *driver, char *buf, int nr)
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{
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char *version = ((switch_driver *) driver)->version;
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strcpy(buf, version);
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return sprintf(buf, "%s\n", version);
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}
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static void add_handler(switch_driver *driver, switch_config *handler, struct proc_dir_entry *parent, int nr)
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{
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switch_priv *priv = (switch_priv *) driver->data;
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switch_proc_handler *tmp;
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int i, mode;
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struct proc_dir_entry *p;
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int mode;
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for (i = 0; handlers[i].name != NULL; i++) {
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tmp = kmalloc(sizeof(switch_proc_handler), GFP_KERNEL);
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switch_proc_handler *tmp;
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tmp = (switch_proc_handler *) kmalloc(sizeof(switch_proc_handler), GFP_KERNEL);
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INIT_LIST_HEAD(&tmp->list);
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tmp->parent = parent;
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tmp->nr = nr;
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tmp->driver = driver;
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memcpy(&tmp->handler, &(handlers[i]), sizeof(switch_config));
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memcpy(&tmp->handler, handler, sizeof(switch_config));
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list_add(&tmp->list, &priv->data.list);
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mode = 0;
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if (handlers[i].read != NULL) mode |= S_IRUSR;
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if (handlers[i].write != NULL) mode |= S_IWUSR;
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if (handler->read != NULL) mode |= S_IRUSR;
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if (handler->write != NULL) mode |= S_IWUSR;
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if ((p = create_proc_entry(handlers[i].name, mode, parent)) != NULL) {
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if ((p = create_proc_entry(handler->name, mode, parent)) != NULL) {
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p->data = (void *) tmp;
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p->proc_fops = &switch_proc_fops;
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}
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}
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static inline void add_handlers(switch_driver *driver, switch_config *handlers, struct proc_dir_entry *parent, int nr)
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{
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int i;
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for (i = 0; handlers[i].name != NULL; i++) {
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add_handler(driver, &(handlers[i]), parent, nr);
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}
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}
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@ -202,6 +222,12 @@ static void do_unregister(switch_driver *driver)
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kfree(priv);
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}
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switch_config global_driver_handlers[] = {
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{"driver", handle_driver_name, NULL},
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{"version", handle_driver_version, NULL},
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{NULL, NULL, NULL}
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};
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static int do_register(switch_driver *driver)
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{
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switch_priv *priv;
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@ -216,8 +242,10 @@ static int do_register(switch_driver *driver)
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priv->nr = drv_num++;
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priv->driver_dir = proc_mkdir(driver->interface, switch_root);
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if (driver->driver_handlers != NULL)
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if (driver->driver_handlers != NULL) {
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add_handlers(driver, driver->driver_handlers, priv->driver_dir, 0);
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add_handlers(driver, global_driver_handlers, priv->driver_dir, 0);
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}
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priv->port_dir = proc_mkdir("port", priv->driver_dir);
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priv->ports = kmalloc((driver->ports + 1) * sizeof(struct proc_dir_entry *), GFP_KERNEL);
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@ -27,6 +27,7 @@ typedef struct {
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typedef struct {
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struct list_head list;
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char *name;
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char *version;
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char *interface;
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int cpuport;
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int ports;
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@ -34,6 +34,7 @@
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#include "etc53xx.h"
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#define DRIVER_NAME "bcm53xx"
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#define DRIVER_VERSION "0.01"
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#define ROBO_PHY_ADDR 0x1E /* robo switch phy address */
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@ -332,6 +333,75 @@ static int handle_vlan_port_write(void *driver, char *buf, int nr)
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return 0;
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}
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#define set_switch(state) \
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robo_write16(ROBO_CTRL_PAGE, ROBO_SWITCH_MODE, (robo_read16(ROBO_CTRL_PAGE, ROBO_SWITCH_MODE) & ~2) | (state ? 2 : 0));
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static int handle_enable_read(void *driver, char *buf, int nr)
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{
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return sprintf(buf, "%d\n", (((robo_read16(ROBO_CTRL_PAGE, ROBO_SWITCH_MODE) & 2) == 2) ? 1 : 0));
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}
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static int handle_enable_write(void *driver, char *buf, int nr)
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{
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set_switch(buf[0] == '1');
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return 0;
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}
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static int handle_enable_vlan_read(void *driver, char *buf, int nr)
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{
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return sprintf(buf, "%d\n", (((robo_read16(ROBO_VLAN_PAGE, ROBO_VLAN_CTRL0) & (1 << 7)) == (1 << 7)) ? 1 : 0));
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}
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static int handle_enable_vlan_write(void *driver, char *buf, int nr)
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{
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int disable = ((buf[0] != '1') ? 1 : 0);
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robo_write16(ROBO_VLAN_PAGE, ROBO_VLAN_CTRL0, disable ? 0 :
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(1 << 7) /* 802.1Q VLAN */ | (3 << 5) /* mac check and hash */);
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robo_write16(ROBO_VLAN_PAGE, ROBO_VLAN_CTRL1, disable ? 0 :
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(1 << 1) | (1 << 2) | (1 << 3) /* RSV multicast */);
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robo_write16(ROBO_VLAN_PAGE, ROBO_VLAN_CTRL4, disable ? 0 :
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(1 << 6) /* drop invalid VID frames */);
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robo_write16(ROBO_VLAN_PAGE, ROBO_VLAN_CTRL5, disable ? 0 :
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(1 << 3) /* drop miss V table frames */);
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return 0;
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}
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static int handle_reset(void *driver, char *buf, int nr)
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{
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switch_driver *d = (switch_driver *) driver;
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switch_vlan_config *c = switch_parse_vlan(d, buf);
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int j;
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__u16 val16;
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if (c == NULL)
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return -EINVAL;
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/* disable switching */
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set_switch(0);
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/* reset vlans */
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for (j = 0; j <= (is_5350 ? VLAN_ID_MAX5350 : VLAN_ID_MAX); j++) {
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/* write config now */
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val16 = (j) /* vlan */ | (1 << 12) /* write */ | (1 << 13) /* enable */;
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if (is_5350)
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robo_write32(ROBO_VLAN_PAGE, ROBO_VLAN_WRITE_5350, 0);
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else
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robo_write16(ROBO_VLAN_PAGE, ROBO_VLAN_WRITE, 0);
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robo_write16(ROBO_VLAN_PAGE, (is_5350 ? ROBO_VLAN_TABLE_ACCESS_5350 : ROBO_VLAN_TABLE_ACCESS), val16);
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}
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/* enable switching */
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set_switch(1);
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/* enable vlans */
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handle_enable_vlan_write(driver, "1", 0);
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return 0;
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}
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static int __init robo_init()
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{
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char *device = "ethX";
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if (notfound)
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return -ENODEV;
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else {
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switch_config main[] = {
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{"enable", handle_enable_read, handle_enable_write},
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{"enable_vlan", handle_enable_vlan_read, handle_enable_vlan_write},
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{"reset", NULL, handle_reset},
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{NULL, NULL, NULL}
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};
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switch_config vlan[] = {
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{"ports", handle_vlan_port_read, handle_vlan_port_write},
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{NULL, NULL, NULL}
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};
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switch_driver driver = {
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name: DRIVER_NAME,
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version: DRIVER_VERSION,
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interface: device,
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cpuport: 5,
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ports: 6,
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vlans: 16,
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driver_handlers: NULL,
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driver_handlers: main,
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port_handlers: NULL,
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vlan_handlers: vlan,
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};
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