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switch: resetting and enabling vlan write for gigabit switches
This patch makes it possible to reset and enable writing vlans to recent switchs. This is based on a patch by jcharest and the Broadcom SDK. SVN-Revision: 35585
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@ -693,12 +693,16 @@ static int handle_enable_vlan_read(void *driver, char *buf, int nr)
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static int handle_enable_vlan_write(void *driver, char *buf, int nr)
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static int handle_enable_vlan_write(void *driver, char *buf, int nr)
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{
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{
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__u16 val16;
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int disable = ((buf[0] != '1') ? 1 : 0);
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int disable = ((buf[0] != '1') ? 1 : 0);
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val16 = robo_read16(ROBO_VLAN_PAGE, ROBO_VLAN_CTRL0);
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robo_write16(ROBO_VLAN_PAGE, ROBO_VLAN_CTRL0, disable ? 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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val16 | (1 << 7) /* 802.1Q VLAN */ | (3 << 5) /* mac check and hash */);
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val16 = robo_read16(ROBO_VLAN_PAGE, ROBO_VLAN_CTRL1);
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robo_write16(ROBO_VLAN_PAGE, ROBO_VLAN_CTRL1, disable ? 0 :
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robo_write16(ROBO_VLAN_PAGE, ROBO_VLAN_CTRL1, disable ? 0 :
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(robo.devid == ROBO_DEVICE_ID_5325 ? (1 << 1) :
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val16 | (robo.devid == ROBO_DEVICE_ID_5325 ? (1 << 1) :
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0) | (1 << 2) | (1 << 3)); /* RSV multicast */
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0) | (1 << 2) | (1 << 3)); /* RSV multicast */
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if (robo.devid != ROBO_DEVICE_ID_5325)
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if (robo.devid != ROBO_DEVICE_ID_5325)
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@ -712,15 +716,11 @@ static int handle_enable_vlan_write(void *driver, char *buf, int nr)
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return 0;
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return 0;
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}
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}
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static int handle_reset(void *driver, char *buf, int nr)
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static void handle_reset_old(switch_driver *d, char *buf, int nr)
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{
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{
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switch_driver *d = (switch_driver *) driver;
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int j;
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int j;
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__u16 val16;
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__u16 val16;
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/* disable switching */
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set_switch(0);
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/* reset vlans */
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/* reset vlans */
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for (j = 0; j <= ((robo.is_5365) ? VLAN_ID_MAX_5365 : VLAN_ID_MAX); j++) {
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for (j = 0; j <= ((robo.is_5365) ? VLAN_ID_MAX_5365 : VLAN_ID_MAX); j++) {
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/* write config now */
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/* write config now */
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@ -733,6 +733,44 @@ static int handle_reset(void *driver, char *buf, int nr)
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ROBO_VLAN_TABLE_ACCESS,
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ROBO_VLAN_TABLE_ACCESS,
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val16);
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val16);
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}
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}
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}
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static void handle_reset_new(switch_driver *d, char *buf, int nr)
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{
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int j;
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__u8 vtbl_entry, vtbl_index, vtbl_access;
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if ((robo.devid == ROBO_DEVICE_ID_5395) ||
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(robo.devid == ROBO_DEVICE_ID_53115)) {
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vtbl_access = ROBO_VTBL_ACCESS_5395;
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vtbl_index = ROBO_VTBL_INDX_5395;
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vtbl_entry = ROBO_VTBL_ENTRY_5395;
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} else {
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vtbl_access = ROBO_VTBL_ACCESS;
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vtbl_index = ROBO_VTBL_INDX;
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vtbl_entry = ROBO_VTBL_ENTRY;
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}
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for (j = 0; j <= VLAN_ID_MAX; j++) {
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/* write config now */
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robo_write32(ROBO_ARLIO_PAGE, vtbl_entry, 0);
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robo_write16(ROBO_ARLIO_PAGE, vtbl_index, j);
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robo_write16(ROBO_ARLIO_PAGE, vtbl_access, 1 << 7);
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}
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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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int j;
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switch_driver *d = (switch_driver *) driver;
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/* disable switching */
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set_switch(0);
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if (robo.devid != ROBO_DEVICE_ID_5325)
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handle_reset_new(d, buf, nr);
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else
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handle_reset_old(d, buf, nr);
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/* reset ports to a known good state */
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/* reset ports to a known good state */
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for (j = 0; j < d->ports; j++) {
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for (j = 0; j < d->ports; j++) {
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