📄 pegasus.c
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/*** Pegasus: USB 10/100Mbps/HomePNA (1Mbps) Controller**** Copyright (c) 1999-2001 Petko Manolov (pmanolov@lnxw.com)** **** ChangeLog:** .... Most of the time spend reading sources & docs.** v0.2.x First official release for the Linux kernel.** v0.3.0 Beutified and structured, some bugs fixed.** v0.3.x URBifying bulk requests and bugfixing. First relatively** stable release. Still can touch device's registers only** from top-halves.** v0.4.0 Control messages remained unurbified are now URBs.** Now we can touch the HW at any time.** v0.4.9 Control urbs again use process context to wait. Argh...** Some long standing bugs (enable_net_traffic) fixed.** Also nasty trick about resubmiting control urb from** interrupt context used. Please let me know how it** behaves. Pegasus II support added since this version.** TODO: suppressing HCD warnings spewage on disconnect.** v0.4.13 Ethernet address is now set at probe(), not at open()** time as this seems to break dhcpd. *//* * 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, MA 02111-1307 USA */#include <linux/sched.h>#include <linux/slab.h>#include <linux/init.h>#include <linux/delay.h>#include <linux/netdevice.h>#include <linux/etherdevice.h>#include <linux/usb.h>#include <linux/module.h>#include "pegasus.h"/* * Version Information */#define DRIVER_VERSION "v0.4.22 (2001/12/07)"#define DRIVER_AUTHOR "Petko Manolov <pmanolov@lnxw.com>"#define DRIVER_DESC "Pegasus/Pegasus II USB Ethernet driver"#define PEGASUS_USE_INTR#define PEGASUS_WRITE_EEPROMstatic int loopback = 0;static int mii_mode = 0;static int multicast_filter_limit = 32;static struct usb_eth_dev usb_dev_id[] = {#define PEGASUS_DEV(pn, vid, pid, flags) \ {name:pn, vendor:vid, device:pid, private:flags},#include "pegasus.h"#undef PEGASUS_DEV {NULL, 0, 0, 0}};static struct usb_device_id pegasus_ids[] = {#define PEGASUS_DEV(pn, vid, pid, flags) \ {match_flags: USB_DEVICE_ID_MATCH_DEVICE, idVendor:vid, idProduct:pid},#include "pegasus.h"#undef PEGASUS_DEV { }};MODULE_AUTHOR( DRIVER_AUTHOR );MODULE_DESCRIPTION( DRIVER_DESC );MODULE_LICENSE("GPL");MODULE_PARM(loopback, "i");MODULE_PARM(mii_mode, "i");MODULE_PARM_DESC(loopback, "Enable MAC loopback mode (bit 0)");MODULE_PARM_DESC(mii_mode, "Enable HomePNA mode (bit 0),default=MII mode = 0");MODULE_DEVICE_TABLE (usb, pegasus_ids);static int update_eth_regs_async( pegasus_t * );/* Aargh!!! I _really_ hate such tweaks */static void ctrl_callback( urb_t *urb ){ pegasus_t *pegasus = urb->context; if ( !pegasus ) return; switch ( urb->status ) { case USB_ST_NOERROR: if ( pegasus->flags & ETH_REGS_CHANGE ) { pegasus->flags &= ~ETH_REGS_CHANGE; pegasus->flags |= ETH_REGS_CHANGED; update_eth_regs_async( pegasus ); return; } break; case USB_ST_URB_PENDING: return; case USB_ST_URB_KILLED: break; default: warn( __FUNCTION__ " status %d", urb->status); } pegasus->flags &= ~ETH_REGS_CHANGED; wake_up(&pegasus->ctrl_wait );}static int get_registers(pegasus_t *pegasus, __u16 indx, __u16 size, void *data){ int ret; unsigned char *buffer; DECLARE_WAITQUEUE(wait, current); buffer = kmalloc(size,GFP_KERNEL); if (!buffer) { err("unable to allocate memory for configuration descriptors"); return 0; } memcpy(buffer,data,size); add_wait_queue(&pegasus->ctrl_wait, &wait); set_current_state(TASK_UNINTERRUPTIBLE); while ( pegasus->flags & ETH_REGS_CHANGED ) schedule(); remove_wait_queue(&pegasus->ctrl_wait, &wait); set_current_state(TASK_RUNNING); pegasus->dr.requesttype = PEGASUS_REQT_READ; pegasus->dr.request = PEGASUS_REQ_GET_REGS; pegasus->dr.value = cpu_to_le16 (0); pegasus->dr.index = cpu_to_le16p(&indx); pegasus->dr.length = cpu_to_le16p(&size); pegasus->ctrl_urb.transfer_buffer_length = size; FILL_CONTROL_URB( &pegasus->ctrl_urb, pegasus->usb, usb_rcvctrlpipe(pegasus->usb,0), (char *)&pegasus->dr, buffer, size, ctrl_callback, pegasus ); add_wait_queue( &pegasus->ctrl_wait, &wait ); set_current_state( TASK_UNINTERRUPTIBLE ); if ( (ret = usb_submit_urb( &pegasus->ctrl_urb )) ) { err( __FUNCTION__ " BAD CTRLs %d", ret); goto out; } schedule();out: remove_wait_queue( &pegasus->ctrl_wait, &wait ); memcpy(data,buffer,size); kfree(buffer); return ret;}static int set_registers(pegasus_t *pegasus, __u16 indx, __u16 size, void *data){ int ret; unsigned char *buffer; DECLARE_WAITQUEUE(wait, current); buffer = kmalloc(size, GFP_KERNEL); if (!buffer) { err("unable to allocate memory for configuration descriptors"); return 0; } memcpy(buffer, data, size); add_wait_queue(&pegasus->ctrl_wait, &wait); set_current_state(TASK_UNINTERRUPTIBLE); while ( pegasus->flags & ETH_REGS_CHANGED ) schedule(); remove_wait_queue(&pegasus->ctrl_wait, &wait); set_current_state(TASK_RUNNING); pegasus->dr.requesttype = PEGASUS_REQT_WRITE; pegasus->dr.request = PEGASUS_REQ_SET_REGS; pegasus->dr.value = cpu_to_le16 (0); pegasus->dr.index = cpu_to_le16p( &indx ); pegasus->dr.length = cpu_to_le16p( &size ); pegasus->ctrl_urb.transfer_buffer_length = size; FILL_CONTROL_URB( &pegasus->ctrl_urb, pegasus->usb, usb_sndctrlpipe(pegasus->usb,0), (char *)&pegasus->dr, buffer, size, ctrl_callback, pegasus ); add_wait_queue( &pegasus->ctrl_wait, &wait ); set_current_state( TASK_UNINTERRUPTIBLE ); if ( (ret = usb_submit_urb( &pegasus->ctrl_urb )) ) { err( __FUNCTION__ " BAD CTRL %d", ret); goto out; } schedule();out: remove_wait_queue( &pegasus->ctrl_wait, &wait ); kfree(buffer); return ret;}static int set_register( pegasus_t *pegasus, __u16 indx, __u8 data ){ int ret; unsigned char *buffer; __u16 dat = data; DECLARE_WAITQUEUE(wait, current); buffer = kmalloc(1, GFP_KERNEL); if (!buffer) { err("unable to allocate memory for configuration descriptors"); return 0; } memcpy(buffer, &data, 1); add_wait_queue(&pegasus->ctrl_wait, &wait); set_current_state(TASK_UNINTERRUPTIBLE); while ( pegasus->flags & ETH_REGS_CHANGED ) schedule(); remove_wait_queue(&pegasus->ctrl_wait, &wait); set_current_state(TASK_RUNNING); pegasus->dr.requesttype = PEGASUS_REQT_WRITE; pegasus->dr.request = PEGASUS_REQ_SET_REG; pegasus->dr.value = cpu_to_le16p( &dat); pegasus->dr.index = cpu_to_le16p( &indx ); pegasus->dr.length = cpu_to_le16( 1 ); pegasus->ctrl_urb.transfer_buffer_length = 1; FILL_CONTROL_URB( &pegasus->ctrl_urb, pegasus->usb, usb_sndctrlpipe(pegasus->usb,0), (char *)&pegasus->dr, buffer, 1, ctrl_callback, pegasus ); add_wait_queue( &pegasus->ctrl_wait, &wait ); set_current_state( TASK_UNINTERRUPTIBLE ); if ( (ret = usb_submit_urb( &pegasus->ctrl_urb )) ) { err( __FUNCTION__ " BAD CTRL %d", ret); goto out; } schedule();out: remove_wait_queue( &pegasus->ctrl_wait, &wait ); kfree(buffer); return ret;}static int update_eth_regs_async( pegasus_t *pegasus ){ int ret; pegasus->dr.requesttype = PEGASUS_REQT_WRITE; pegasus->dr.request = PEGASUS_REQ_SET_REGS; pegasus->dr.value = 0; pegasus->dr.index = cpu_to_le16(EthCtrl0); pegasus->dr.length = cpu_to_le16(3); pegasus->ctrl_urb.transfer_buffer_length = 3; FILL_CONTROL_URB( &pegasus->ctrl_urb, pegasus->usb, usb_sndctrlpipe(pegasus->usb,0), (char *)&pegasus->dr, pegasus->eth_regs, 3, ctrl_callback, pegasus ); if ( (ret = usb_submit_urb( &pegasus->ctrl_urb )) ) err( __FUNCTION__ " BAD CTRL %d, flags %x",ret,pegasus->flags ); return ret;}static int read_mii_word( pegasus_t *pegasus, __u8 phy, __u8 indx, __u16 *regd ){ int i; __u8 data[4] = { phy, 0, 0, indx }; __u16 regdi; set_register( pegasus, PhyCtrl, 0 ); set_registers( pegasus, PhyAddr, sizeof(data), data ); set_register( pegasus, PhyCtrl, (indx | PHY_READ) ); for (i = 0; i < REG_TIMEOUT; i++) { get_registers(pegasus, PhyCtrl, 1, data); if ( data[0] & PHY_DONE ) break; } if ( i < REG_TIMEOUT ) { get_registers( pegasus, PhyData, 2, ®di ); *regd = le16_to_cpu(regdi); return 0; } warn( __FUNCTION__ " failed" ); return 1;}static int write_mii_word( pegasus_t *pegasus, __u8 phy, __u8 indx, __u16 regd ){ int i; __u8 data[4] = { phy, 0, 0, indx }; *(data + 1) = cpu_to_le16p( ®d ); set_register( pegasus, PhyCtrl, 0 ); set_registers( pegasus, PhyAddr, 4, data ); set_register( pegasus, PhyCtrl, (indx | PHY_WRITE) ); for (i = 0; i < REG_TIMEOUT; i++) { get_registers(pegasus, PhyCtrl, 1, data); if ( data[0] & PHY_DONE ) break; } if ( i < REG_TIMEOUT ) return 0; warn( __FUNCTION__ " failed" ); return 1;}static int read_eprom_word( pegasus_t *pegasus, __u8 index, __u16 *retdata ){ int i; __u8 tmp; __u16 retdatai; set_register( pegasus, EpromCtrl, 0 ); set_register( pegasus, EpromOffset, index ); set_register( pegasus, EpromCtrl, EPROM_READ); for ( i=0; i < REG_TIMEOUT; i++ ) { get_registers( pegasus, EpromCtrl, 1, &tmp ); if ( tmp & EPROM_DONE ) break; } if ( i < REG_TIMEOUT ) { get_registers( pegasus, EpromData, 2, &retdatai ); *retdata = le16_to_cpu (retdatai); return 0; } warn( __FUNCTION__ " failed" ); return -1;}#ifdef PEGASUS_WRITE_EEPROMstatic inline void enable_eprom_write( pegasus_t *pegasus ){ __u8 tmp; get_registers( pegasus, EthCtrl2, 1, &tmp ); set_register( pegasus, EthCtrl2, tmp | EPROM_WR_ENABLE );}static inline void disable_eprom_write( pegasus_t *pegasus ){ __u8 tmp; get_registers( pegasus, EthCtrl2, 1, &tmp ); set_register( pegasus, EpromCtrl, 0 ); set_register( pegasus, EthCtrl2, tmp & ~EPROM_WR_ENABLE );}static int write_eprom_word( pegasus_t *pegasus, __u8 index, __u16 data ){ int i, tmp; __u8 d[4] = {0x3f, 0, 0, EPROM_WRITE}; set_registers( pegasus, EpromOffset, 4, d ); enable_eprom_write( pegasus ); set_register( pegasus, EpromOffset, index ); set_registers( pegasus, EpromData, 2, &data ); set_register( pegasus, EpromCtrl, EPROM_WRITE ); for ( i=0; i < REG_TIMEOUT; i++ ) { get_registers( pegasus, EpromCtrl, 1, &tmp ); if ( tmp & EPROM_DONE ) break; } disable_eprom_write( pegasus ); if ( i < REG_TIMEOUT ) return 0; warn( __FUNCTION__ " failed" ); return -1;}#endif /* PEGASUS_WRITE_EEPROM */static inline void get_node_id( pegasus_t *pegasus, __u8 *id ){ int i; __u16 w16; for (i = 0; i < 3; i++) { read_eprom_word( pegasus, i, &w16); ((__u16 *) id)[i] = cpu_to_le16p (&w16); }}static void set_ethernet_addr( pegasus_t *pegasus ){ __u8 node_id[6]; get_node_id(pegasus, node_id); set_registers( pegasus, EthID, sizeof(node_id), node_id ); memcpy( pegasus->net->dev_addr, node_id, sizeof(node_id) );}static inline int reset_mac( pegasus_t *pegasus ){ __u8 data = 0x8; int i; set_register(pegasus, EthCtrl1, data); for (i = 0; i < REG_TIMEOUT; i++) { get_registers(pegasus, EthCtrl1, 1, &data); if (~data & 0x08) { if (loopback & 1) break; if ( mii_mode && (pegasus->features & HAS_HOME_PNA) ) set_register( pegasus, Gpio1, 0x34 ); else set_register( pegasus, Gpio1, 0x26 ); set_register( pegasus, Gpio0, pegasus->features ); set_register( pegasus, Gpio0, DEFAULT_GPIO_SET ); break; } } if ( i == REG_TIMEOUT ) return 1; if ( usb_dev_id[pegasus->dev_index].vendor == VENDOR_LINKSYS || usb_dev_id[pegasus->dev_index].vendor == VENDOR_DLINK ) { __u16 auxmode; read_mii_word( pegasus, 0, 0x1b, &auxmode ); write_mii_word( pegasus, 0, 0x1b, auxmode | 4 ); } return 0;}static int enable_net_traffic( struct net_device *dev, struct usb_device *usb ){ __u16 linkpart, bmsr; __u8 data[4]; pegasus_t *pegasus = dev->priv;
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