1f2148a47SJeff Kirsher /* via-rhine.c: A Linux Ethernet device driver for VIA Rhine family chips. */ 2f2148a47SJeff Kirsher /* 3f2148a47SJeff Kirsher Written 1998-2001 by Donald Becker. 4f2148a47SJeff Kirsher 5f2148a47SJeff Kirsher Current Maintainer: Roger Luethi <rl@hellgate.ch> 6f2148a47SJeff Kirsher 7f2148a47SJeff Kirsher This software may be used and distributed according to the terms of 8f2148a47SJeff Kirsher the GNU General Public License (GPL), incorporated herein by reference. 9f2148a47SJeff Kirsher Drivers based on or derived from this code fall under the GPL and must 10f2148a47SJeff Kirsher retain the authorship, copyright and license notice. This file is not 11f2148a47SJeff Kirsher a complete program and may only be used when the entire operating 12f2148a47SJeff Kirsher system is licensed under the GPL. 13f2148a47SJeff Kirsher 14f2148a47SJeff Kirsher This driver is designed for the VIA VT86C100A Rhine-I. 15f2148a47SJeff Kirsher It also works with the Rhine-II (6102) and Rhine-III (6105/6105L/6105LOM 16f2148a47SJeff Kirsher and management NIC 6105M). 17f2148a47SJeff Kirsher 18f2148a47SJeff Kirsher The author may be reached as becker@scyld.com, or C/O 19f2148a47SJeff Kirsher Scyld Computing Corporation 20f2148a47SJeff Kirsher 410 Severn Ave., Suite 210 21f2148a47SJeff Kirsher Annapolis MD 21403 22f2148a47SJeff Kirsher 23f2148a47SJeff Kirsher 24f2148a47SJeff Kirsher This driver contains some changes from the original Donald Becker 25f2148a47SJeff Kirsher version. He may or may not be interested in bug reports on this 26f2148a47SJeff Kirsher code. You can find his versions at: 27f2148a47SJeff Kirsher http://www.scyld.com/network/via-rhine.html 28f2148a47SJeff Kirsher [link no longer provides useful info -jgarzik] 29f2148a47SJeff Kirsher 30f2148a47SJeff Kirsher */ 31f2148a47SJeff Kirsher 32f2148a47SJeff Kirsher #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 33f2148a47SJeff Kirsher 34f2148a47SJeff Kirsher #define DRV_NAME "via-rhine" 35f2148a47SJeff Kirsher #define DRV_VERSION "1.5.0" 36f2148a47SJeff Kirsher #define DRV_RELDATE "2010-10-09" 37f2148a47SJeff Kirsher 38eb939922SRusty Russell #include <linux/types.h> 39f2148a47SJeff Kirsher 40f2148a47SJeff Kirsher /* A few user-configurable values. 41f2148a47SJeff Kirsher These may be modified when a driver module is loaded. */ 42fc3e0f8aSFrancois Romieu static int debug = 0; 43fc3e0f8aSFrancois Romieu #define RHINE_MSG_DEFAULT \ 44fc3e0f8aSFrancois Romieu (0x0000) 45f2148a47SJeff Kirsher 46f2148a47SJeff Kirsher /* Set the copy breakpoint for the copy-only-tiny-frames scheme. 47f2148a47SJeff Kirsher Setting to > 1518 effectively disables this feature. */ 48f2148a47SJeff Kirsher #if defined(__alpha__) || defined(__arm__) || defined(__hppa__) || \ 49f2148a47SJeff Kirsher defined(CONFIG_SPARC) || defined(__ia64__) || \ 50f2148a47SJeff Kirsher defined(__sh__) || defined(__mips__) 51f2148a47SJeff Kirsher static int rx_copybreak = 1518; 52f2148a47SJeff Kirsher #else 53f2148a47SJeff Kirsher static int rx_copybreak; 54f2148a47SJeff Kirsher #endif 55f2148a47SJeff Kirsher 56f2148a47SJeff Kirsher /* Work-around for broken BIOSes: they are unable to get the chip back out of 57f2148a47SJeff Kirsher power state D3 so PXE booting fails. bootparam(7): via-rhine.avoid_D3=1 */ 58eb939922SRusty Russell static bool avoid_D3; 59f2148a47SJeff Kirsher 60f2148a47SJeff Kirsher /* 61f2148a47SJeff Kirsher * In case you are looking for 'options[]' or 'full_duplex[]', they 62f2148a47SJeff Kirsher * are gone. Use ethtool(8) instead. 63f2148a47SJeff Kirsher */ 64f2148a47SJeff Kirsher 65f2148a47SJeff Kirsher /* Maximum number of multicast addresses to filter (vs. rx-all-multicast). 66f2148a47SJeff Kirsher The Rhine has a 64 element 8390-like hash table. */ 67f2148a47SJeff Kirsher static const int multicast_filter_limit = 32; 68f2148a47SJeff Kirsher 69f2148a47SJeff Kirsher 70f2148a47SJeff Kirsher /* Operational parameters that are set at compile time. */ 71f2148a47SJeff Kirsher 72f2148a47SJeff Kirsher /* Keep the ring sizes a power of two for compile efficiency. 73f2148a47SJeff Kirsher The compiler will convert <unsigned>'%'<2^N> into a bit mask. 74f2148a47SJeff Kirsher Making the Tx ring too large decreases the effectiveness of channel 75f2148a47SJeff Kirsher bonding and packet priority. 76f2148a47SJeff Kirsher There are no ill effects from too-large receive rings. */ 77f2148a47SJeff Kirsher #define TX_RING_SIZE 16 78f2148a47SJeff Kirsher #define TX_QUEUE_LEN 10 /* Limit ring entries actually used. */ 79f2148a47SJeff Kirsher #define RX_RING_SIZE 64 80f2148a47SJeff Kirsher 81f2148a47SJeff Kirsher /* Operational parameters that usually are not changed. */ 82f2148a47SJeff Kirsher 83f2148a47SJeff Kirsher /* Time in jiffies before concluding the transmitter is hung. */ 84f2148a47SJeff Kirsher #define TX_TIMEOUT (2*HZ) 85f2148a47SJeff Kirsher 86f2148a47SJeff Kirsher #define PKT_BUF_SZ 1536 /* Size of each temporary Rx buffer.*/ 87f2148a47SJeff Kirsher 88f2148a47SJeff Kirsher #include <linux/module.h> 89f2148a47SJeff Kirsher #include <linux/moduleparam.h> 90f2148a47SJeff Kirsher #include <linux/kernel.h> 91f2148a47SJeff Kirsher #include <linux/string.h> 92f2148a47SJeff Kirsher #include <linux/timer.h> 93f2148a47SJeff Kirsher #include <linux/errno.h> 94f2148a47SJeff Kirsher #include <linux/ioport.h> 95f2148a47SJeff Kirsher #include <linux/interrupt.h> 96f2148a47SJeff Kirsher #include <linux/pci.h> 97f2148a47SJeff Kirsher #include <linux/dma-mapping.h> 98f2148a47SJeff Kirsher #include <linux/netdevice.h> 99f2148a47SJeff Kirsher #include <linux/etherdevice.h> 100f2148a47SJeff Kirsher #include <linux/skbuff.h> 101f2148a47SJeff Kirsher #include <linux/init.h> 102f2148a47SJeff Kirsher #include <linux/delay.h> 103f2148a47SJeff Kirsher #include <linux/mii.h> 104f2148a47SJeff Kirsher #include <linux/ethtool.h> 105f2148a47SJeff Kirsher #include <linux/crc32.h> 106f2148a47SJeff Kirsher #include <linux/if_vlan.h> 107f2148a47SJeff Kirsher #include <linux/bitops.h> 108f2148a47SJeff Kirsher #include <linux/workqueue.h> 109f2148a47SJeff Kirsher #include <asm/processor.h> /* Processor type for cache alignment. */ 110f2148a47SJeff Kirsher #include <asm/io.h> 111f2148a47SJeff Kirsher #include <asm/irq.h> 112f2148a47SJeff Kirsher #include <asm/uaccess.h> 113f2148a47SJeff Kirsher #include <linux/dmi.h> 114f2148a47SJeff Kirsher 115f2148a47SJeff Kirsher /* These identify the driver base version and may not be removed. */ 116f2148a47SJeff Kirsher static const char version[] __devinitconst = 117f2148a47SJeff Kirsher "v1.10-LK" DRV_VERSION " " DRV_RELDATE " Written by Donald Becker"; 118f2148a47SJeff Kirsher 119f2148a47SJeff Kirsher /* This driver was written to use PCI memory space. Some early versions 120f2148a47SJeff Kirsher of the Rhine may only work correctly with I/O space accesses. */ 121f2148a47SJeff Kirsher #ifdef CONFIG_VIA_RHINE_MMIO 122f2148a47SJeff Kirsher #define USE_MMIO 123f2148a47SJeff Kirsher #else 124f2148a47SJeff Kirsher #endif 125f2148a47SJeff Kirsher 126f2148a47SJeff Kirsher MODULE_AUTHOR("Donald Becker <becker@scyld.com>"); 127f2148a47SJeff Kirsher MODULE_DESCRIPTION("VIA Rhine PCI Fast Ethernet driver"); 128f2148a47SJeff Kirsher MODULE_LICENSE("GPL"); 129f2148a47SJeff Kirsher 130f2148a47SJeff Kirsher module_param(debug, int, 0); 131f2148a47SJeff Kirsher module_param(rx_copybreak, int, 0); 132f2148a47SJeff Kirsher module_param(avoid_D3, bool, 0); 133fc3e0f8aSFrancois Romieu MODULE_PARM_DESC(debug, "VIA Rhine debug message flags"); 134f2148a47SJeff Kirsher MODULE_PARM_DESC(rx_copybreak, "VIA Rhine copy breakpoint for copy-only-tiny-frames"); 135f2148a47SJeff Kirsher MODULE_PARM_DESC(avoid_D3, "Avoid power state D3 (work-around for broken BIOSes)"); 136f2148a47SJeff Kirsher 137f2148a47SJeff Kirsher #define MCAM_SIZE 32 138f2148a47SJeff Kirsher #define VCAM_SIZE 32 139f2148a47SJeff Kirsher 140f2148a47SJeff Kirsher /* 141f2148a47SJeff Kirsher Theory of Operation 142f2148a47SJeff Kirsher 143f2148a47SJeff Kirsher I. Board Compatibility 144f2148a47SJeff Kirsher 145f2148a47SJeff Kirsher This driver is designed for the VIA 86c100A Rhine-II PCI Fast Ethernet 146f2148a47SJeff Kirsher controller. 147f2148a47SJeff Kirsher 148f2148a47SJeff Kirsher II. Board-specific settings 149f2148a47SJeff Kirsher 150f2148a47SJeff Kirsher Boards with this chip are functional only in a bus-master PCI slot. 151f2148a47SJeff Kirsher 152f2148a47SJeff Kirsher Many operational settings are loaded from the EEPROM to the Config word at 153f2148a47SJeff Kirsher offset 0x78. For most of these settings, this driver assumes that they are 154f2148a47SJeff Kirsher correct. 155f2148a47SJeff Kirsher If this driver is compiled to use PCI memory space operations the EEPROM 156f2148a47SJeff Kirsher must be configured to enable memory ops. 157f2148a47SJeff Kirsher 158f2148a47SJeff Kirsher III. Driver operation 159f2148a47SJeff Kirsher 160f2148a47SJeff Kirsher IIIa. Ring buffers 161f2148a47SJeff Kirsher 162f2148a47SJeff Kirsher This driver uses two statically allocated fixed-size descriptor lists 163f2148a47SJeff Kirsher formed into rings by a branch from the final descriptor to the beginning of 164f2148a47SJeff Kirsher the list. The ring sizes are set at compile time by RX/TX_RING_SIZE. 165f2148a47SJeff Kirsher 166f2148a47SJeff Kirsher IIIb/c. Transmit/Receive Structure 167f2148a47SJeff Kirsher 168f2148a47SJeff Kirsher This driver attempts to use a zero-copy receive and transmit scheme. 169f2148a47SJeff Kirsher 170f2148a47SJeff Kirsher Alas, all data buffers are required to start on a 32 bit boundary, so 171f2148a47SJeff Kirsher the driver must often copy transmit packets into bounce buffers. 172f2148a47SJeff Kirsher 173f2148a47SJeff Kirsher The driver allocates full frame size skbuffs for the Rx ring buffers at 174f2148a47SJeff Kirsher open() time and passes the skb->data field to the chip as receive data 175f2148a47SJeff Kirsher buffers. When an incoming frame is less than RX_COPYBREAK bytes long, 176f2148a47SJeff Kirsher a fresh skbuff is allocated and the frame is copied to the new skbuff. 177f2148a47SJeff Kirsher When the incoming frame is larger, the skbuff is passed directly up the 178f2148a47SJeff Kirsher protocol stack. Buffers consumed this way are replaced by newly allocated 179f2148a47SJeff Kirsher skbuffs in the last phase of rhine_rx(). 180f2148a47SJeff Kirsher 181f2148a47SJeff Kirsher The RX_COPYBREAK value is chosen to trade-off the memory wasted by 182f2148a47SJeff Kirsher using a full-sized skbuff for small frames vs. the copying costs of larger 183f2148a47SJeff Kirsher frames. New boards are typically used in generously configured machines 184f2148a47SJeff Kirsher and the underfilled buffers have negligible impact compared to the benefit of 185f2148a47SJeff Kirsher a single allocation size, so the default value of zero results in never 186f2148a47SJeff Kirsher copying packets. When copying is done, the cost is usually mitigated by using 187f2148a47SJeff Kirsher a combined copy/checksum routine. Copying also preloads the cache, which is 188f2148a47SJeff Kirsher most useful with small frames. 189f2148a47SJeff Kirsher 190f2148a47SJeff Kirsher Since the VIA chips are only able to transfer data to buffers on 32 bit 191f2148a47SJeff Kirsher boundaries, the IP header at offset 14 in an ethernet frame isn't 192f2148a47SJeff Kirsher longword aligned for further processing. Copying these unaligned buffers 193f2148a47SJeff Kirsher has the beneficial effect of 16-byte aligning the IP header. 194f2148a47SJeff Kirsher 195f2148a47SJeff Kirsher IIId. Synchronization 196f2148a47SJeff Kirsher 197f2148a47SJeff Kirsher The driver runs as two independent, single-threaded flows of control. One 198f2148a47SJeff Kirsher is the send-packet routine, which enforces single-threaded use by the 199f2148a47SJeff Kirsher netdev_priv(dev)->lock spinlock. The other thread is the interrupt handler, 200f2148a47SJeff Kirsher which is single threaded by the hardware and interrupt handling software. 201f2148a47SJeff Kirsher 202f2148a47SJeff Kirsher The send packet thread has partial control over the Tx ring. It locks the 203f2148a47SJeff Kirsher netdev_priv(dev)->lock whenever it's queuing a Tx packet. If the next slot in 204f2148a47SJeff Kirsher the ring is not available it stops the transmit queue by 205f2148a47SJeff Kirsher calling netif_stop_queue. 206f2148a47SJeff Kirsher 207f2148a47SJeff Kirsher The interrupt handler has exclusive control over the Rx ring and records stats 208f2148a47SJeff Kirsher from the Tx ring. After reaping the stats, it marks the Tx queue entry as 209f2148a47SJeff Kirsher empty by incrementing the dirty_tx mark. If at least half of the entries in 210f2148a47SJeff Kirsher the Rx ring are available the transmit queue is woken up if it was stopped. 211f2148a47SJeff Kirsher 212f2148a47SJeff Kirsher IV. Notes 213f2148a47SJeff Kirsher 214f2148a47SJeff Kirsher IVb. References 215f2148a47SJeff Kirsher 216f2148a47SJeff Kirsher Preliminary VT86C100A manual from http://www.via.com.tw/ 217f2148a47SJeff Kirsher http://www.scyld.com/expert/100mbps.html 218f2148a47SJeff Kirsher http://www.scyld.com/expert/NWay.html 219f2148a47SJeff Kirsher ftp://ftp.via.com.tw/public/lan/Products/NIC/VT86C100A/Datasheet/VT86C100A03.pdf 220f2148a47SJeff Kirsher ftp://ftp.via.com.tw/public/lan/Products/NIC/VT6102/Datasheet/VT6102_021.PDF 221f2148a47SJeff Kirsher 222f2148a47SJeff Kirsher 223f2148a47SJeff Kirsher IVc. Errata 224f2148a47SJeff Kirsher 225f2148a47SJeff Kirsher The VT86C100A manual is not reliable information. 226f2148a47SJeff Kirsher The 3043 chip does not handle unaligned transmit or receive buffers, resulting 227f2148a47SJeff Kirsher in significant performance degradation for bounce buffer copies on transmit 228f2148a47SJeff Kirsher and unaligned IP headers on receive. 229f2148a47SJeff Kirsher The chip does not pad to minimum transmit length. 230f2148a47SJeff Kirsher 231f2148a47SJeff Kirsher */ 232f2148a47SJeff Kirsher 233f2148a47SJeff Kirsher 234f2148a47SJeff Kirsher /* This table drives the PCI probe routines. It's mostly boilerplate in all 235f2148a47SJeff Kirsher of the drivers, and will likely be provided by some future kernel. 236f2148a47SJeff Kirsher Note the matching code -- the first table entry matchs all 56** cards but 237f2148a47SJeff Kirsher second only the 1234 card. 238f2148a47SJeff Kirsher */ 239f2148a47SJeff Kirsher 240f2148a47SJeff Kirsher enum rhine_revs { 241f2148a47SJeff Kirsher VT86C100A = 0x00, 242f2148a47SJeff Kirsher VTunknown0 = 0x20, 243f2148a47SJeff Kirsher VT6102 = 0x40, 244f2148a47SJeff Kirsher VT8231 = 0x50, /* Integrated MAC */ 245f2148a47SJeff Kirsher VT8233 = 0x60, /* Integrated MAC */ 246f2148a47SJeff Kirsher VT8235 = 0x74, /* Integrated MAC */ 247f2148a47SJeff Kirsher VT8237 = 0x78, /* Integrated MAC */ 248f2148a47SJeff Kirsher VTunknown1 = 0x7C, 249f2148a47SJeff Kirsher VT6105 = 0x80, 250f2148a47SJeff Kirsher VT6105_B0 = 0x83, 251f2148a47SJeff Kirsher VT6105L = 0x8A, 252f2148a47SJeff Kirsher VT6107 = 0x8C, 253f2148a47SJeff Kirsher VTunknown2 = 0x8E, 254f2148a47SJeff Kirsher VT6105M = 0x90, /* Management adapter */ 255f2148a47SJeff Kirsher }; 256f2148a47SJeff Kirsher 257f2148a47SJeff Kirsher enum rhine_quirks { 258f2148a47SJeff Kirsher rqWOL = 0x0001, /* Wake-On-LAN support */ 259f2148a47SJeff Kirsher rqForceReset = 0x0002, 260f2148a47SJeff Kirsher rq6patterns = 0x0040, /* 6 instead of 4 patterns for WOL */ 261f2148a47SJeff Kirsher rqStatusWBRace = 0x0080, /* Tx Status Writeback Error possible */ 262f2148a47SJeff Kirsher rqRhineI = 0x0100, /* See comment below */ 263f2148a47SJeff Kirsher }; 264f2148a47SJeff Kirsher /* 265f2148a47SJeff Kirsher * rqRhineI: VT86C100A (aka Rhine-I) uses different bits to enable 266f2148a47SJeff Kirsher * MMIO as well as for the collision counter and the Tx FIFO underflow 267f2148a47SJeff Kirsher * indicator. In addition, Tx and Rx buffers need to 4 byte aligned. 268f2148a47SJeff Kirsher */ 269f2148a47SJeff Kirsher 270f2148a47SJeff Kirsher /* Beware of PCI posted writes */ 271f2148a47SJeff Kirsher #define IOSYNC do { ioread8(ioaddr + StationAddr); } while (0) 272f2148a47SJeff Kirsher 273f2148a47SJeff Kirsher static DEFINE_PCI_DEVICE_TABLE(rhine_pci_tbl) = { 274f2148a47SJeff Kirsher { 0x1106, 0x3043, PCI_ANY_ID, PCI_ANY_ID, }, /* VT86C100A */ 275f2148a47SJeff Kirsher { 0x1106, 0x3065, PCI_ANY_ID, PCI_ANY_ID, }, /* VT6102 */ 276f2148a47SJeff Kirsher { 0x1106, 0x3106, PCI_ANY_ID, PCI_ANY_ID, }, /* 6105{,L,LOM} */ 277f2148a47SJeff Kirsher { 0x1106, 0x3053, PCI_ANY_ID, PCI_ANY_ID, }, /* VT6105M */ 278f2148a47SJeff Kirsher { } /* terminate list */ 279f2148a47SJeff Kirsher }; 280f2148a47SJeff Kirsher MODULE_DEVICE_TABLE(pci, rhine_pci_tbl); 281f2148a47SJeff Kirsher 282f2148a47SJeff Kirsher 283f2148a47SJeff Kirsher /* Offsets to the device registers. */ 284f2148a47SJeff Kirsher enum register_offsets { 285f2148a47SJeff Kirsher StationAddr=0x00, RxConfig=0x06, TxConfig=0x07, ChipCmd=0x08, 286f2148a47SJeff Kirsher ChipCmd1=0x09, TQWake=0x0A, 287f2148a47SJeff Kirsher IntrStatus=0x0C, IntrEnable=0x0E, 288f2148a47SJeff Kirsher MulticastFilter0=0x10, MulticastFilter1=0x14, 289f2148a47SJeff Kirsher RxRingPtr=0x18, TxRingPtr=0x1C, GFIFOTest=0x54, 290f2148a47SJeff Kirsher MIIPhyAddr=0x6C, MIIStatus=0x6D, PCIBusConfig=0x6E, PCIBusConfig1=0x6F, 291f2148a47SJeff Kirsher MIICmd=0x70, MIIRegAddr=0x71, MIIData=0x72, MACRegEEcsr=0x74, 292f2148a47SJeff Kirsher ConfigA=0x78, ConfigB=0x79, ConfigC=0x7A, ConfigD=0x7B, 293f2148a47SJeff Kirsher RxMissed=0x7C, RxCRCErrs=0x7E, MiscCmd=0x81, 294f2148a47SJeff Kirsher StickyHW=0x83, IntrStatus2=0x84, 295f2148a47SJeff Kirsher CamMask=0x88, CamCon=0x92, CamAddr=0x93, 296f2148a47SJeff Kirsher WOLcrSet=0xA0, PwcfgSet=0xA1, WOLcgSet=0xA3, WOLcrClr=0xA4, 297f2148a47SJeff Kirsher WOLcrClr1=0xA6, WOLcgClr=0xA7, 298f2148a47SJeff Kirsher PwrcsrSet=0xA8, PwrcsrSet1=0xA9, PwrcsrClr=0xAC, PwrcsrClr1=0xAD, 299f2148a47SJeff Kirsher }; 300f2148a47SJeff Kirsher 301f2148a47SJeff Kirsher /* Bits in ConfigD */ 302f2148a47SJeff Kirsher enum backoff_bits { 303f2148a47SJeff Kirsher BackOptional=0x01, BackModify=0x02, 304f2148a47SJeff Kirsher BackCaptureEffect=0x04, BackRandom=0x08 305f2148a47SJeff Kirsher }; 306f2148a47SJeff Kirsher 307f2148a47SJeff Kirsher /* Bits in the TxConfig (TCR) register */ 308f2148a47SJeff Kirsher enum tcr_bits { 309f2148a47SJeff Kirsher TCR_PQEN=0x01, 310f2148a47SJeff Kirsher TCR_LB0=0x02, /* loopback[0] */ 311f2148a47SJeff Kirsher TCR_LB1=0x04, /* loopback[1] */ 312f2148a47SJeff Kirsher TCR_OFSET=0x08, 313f2148a47SJeff Kirsher TCR_RTGOPT=0x10, 314f2148a47SJeff Kirsher TCR_RTFT0=0x20, 315f2148a47SJeff Kirsher TCR_RTFT1=0x40, 316f2148a47SJeff Kirsher TCR_RTSF=0x80, 317f2148a47SJeff Kirsher }; 318f2148a47SJeff Kirsher 319f2148a47SJeff Kirsher /* Bits in the CamCon (CAMC) register */ 320f2148a47SJeff Kirsher enum camcon_bits { 321f2148a47SJeff Kirsher CAMC_CAMEN=0x01, 322f2148a47SJeff Kirsher CAMC_VCAMSL=0x02, 323f2148a47SJeff Kirsher CAMC_CAMWR=0x04, 324f2148a47SJeff Kirsher CAMC_CAMRD=0x08, 325f2148a47SJeff Kirsher }; 326f2148a47SJeff Kirsher 327f2148a47SJeff Kirsher /* Bits in the PCIBusConfig1 (BCR1) register */ 328f2148a47SJeff Kirsher enum bcr1_bits { 329f2148a47SJeff Kirsher BCR1_POT0=0x01, 330f2148a47SJeff Kirsher BCR1_POT1=0x02, 331f2148a47SJeff Kirsher BCR1_POT2=0x04, 332f2148a47SJeff Kirsher BCR1_CTFT0=0x08, 333f2148a47SJeff Kirsher BCR1_CTFT1=0x10, 334f2148a47SJeff Kirsher BCR1_CTSF=0x20, 335f2148a47SJeff Kirsher BCR1_TXQNOBK=0x40, /* for VT6105 */ 336f2148a47SJeff Kirsher BCR1_VIDFR=0x80, /* for VT6105 */ 337f2148a47SJeff Kirsher BCR1_MED0=0x40, /* for VT6102 */ 338f2148a47SJeff Kirsher BCR1_MED1=0x80, /* for VT6102 */ 339f2148a47SJeff Kirsher }; 340f2148a47SJeff Kirsher 341f2148a47SJeff Kirsher #ifdef USE_MMIO 342f2148a47SJeff Kirsher /* Registers we check that mmio and reg are the same. */ 343f2148a47SJeff Kirsher static const int mmio_verify_registers[] = { 344f2148a47SJeff Kirsher RxConfig, TxConfig, IntrEnable, ConfigA, ConfigB, ConfigC, ConfigD, 345f2148a47SJeff Kirsher 0 346f2148a47SJeff Kirsher }; 347f2148a47SJeff Kirsher #endif 348f2148a47SJeff Kirsher 349f2148a47SJeff Kirsher /* Bits in the interrupt status/mask registers. */ 350f2148a47SJeff Kirsher enum intr_status_bits { 3517ab87ff4SFrancois Romieu IntrRxDone = 0x0001, 3527ab87ff4SFrancois Romieu IntrTxDone = 0x0002, 3537ab87ff4SFrancois Romieu IntrRxErr = 0x0004, 3547ab87ff4SFrancois Romieu IntrTxError = 0x0008, 3557ab87ff4SFrancois Romieu IntrRxEmpty = 0x0020, 356f2148a47SJeff Kirsher IntrPCIErr = 0x0040, 3577ab87ff4SFrancois Romieu IntrStatsMax = 0x0080, 3587ab87ff4SFrancois Romieu IntrRxEarly = 0x0100, 3597ab87ff4SFrancois Romieu IntrTxUnderrun = 0x0210, 3607ab87ff4SFrancois Romieu IntrRxOverflow = 0x0400, 3617ab87ff4SFrancois Romieu IntrRxDropped = 0x0800, 3627ab87ff4SFrancois Romieu IntrRxNoBuf = 0x1000, 3637ab87ff4SFrancois Romieu IntrTxAborted = 0x2000, 3647ab87ff4SFrancois Romieu IntrLinkChange = 0x4000, 365f2148a47SJeff Kirsher IntrRxWakeUp = 0x8000, 366f2148a47SJeff Kirsher IntrTxDescRace = 0x080000, /* mapped from IntrStatus2 */ 3677ab87ff4SFrancois Romieu IntrNormalSummary = IntrRxDone | IntrTxDone, 3687ab87ff4SFrancois Romieu IntrTxErrSummary = IntrTxDescRace | IntrTxAborted | IntrTxError | 3697ab87ff4SFrancois Romieu IntrTxUnderrun, 370f2148a47SJeff Kirsher }; 371f2148a47SJeff Kirsher 372f2148a47SJeff Kirsher /* Bits in WOLcrSet/WOLcrClr and PwrcsrSet/PwrcsrClr */ 373f2148a47SJeff Kirsher enum wol_bits { 374f2148a47SJeff Kirsher WOLucast = 0x10, 375f2148a47SJeff Kirsher WOLmagic = 0x20, 376f2148a47SJeff Kirsher WOLbmcast = 0x30, 377f2148a47SJeff Kirsher WOLlnkon = 0x40, 378f2148a47SJeff Kirsher WOLlnkoff = 0x80, 379f2148a47SJeff Kirsher }; 380f2148a47SJeff Kirsher 381f2148a47SJeff Kirsher /* The Rx and Tx buffer descriptors. */ 382f2148a47SJeff Kirsher struct rx_desc { 383f2148a47SJeff Kirsher __le32 rx_status; 384f2148a47SJeff Kirsher __le32 desc_length; /* Chain flag, Buffer/frame length */ 385f2148a47SJeff Kirsher __le32 addr; 386f2148a47SJeff Kirsher __le32 next_desc; 387f2148a47SJeff Kirsher }; 388f2148a47SJeff Kirsher struct tx_desc { 389f2148a47SJeff Kirsher __le32 tx_status; 390f2148a47SJeff Kirsher __le32 desc_length; /* Chain flag, Tx Config, Frame length */ 391f2148a47SJeff Kirsher __le32 addr; 392f2148a47SJeff Kirsher __le32 next_desc; 393f2148a47SJeff Kirsher }; 394f2148a47SJeff Kirsher 395f2148a47SJeff Kirsher /* Initial value for tx_desc.desc_length, Buffer size goes to bits 0-10 */ 396f2148a47SJeff Kirsher #define TXDESC 0x00e08000 397f2148a47SJeff Kirsher 398f2148a47SJeff Kirsher enum rx_status_bits { 399f2148a47SJeff Kirsher RxOK=0x8000, RxWholePkt=0x0300, RxErr=0x008F 400f2148a47SJeff Kirsher }; 401f2148a47SJeff Kirsher 402f2148a47SJeff Kirsher /* Bits in *_desc.*_status */ 403f2148a47SJeff Kirsher enum desc_status_bits { 404f2148a47SJeff Kirsher DescOwn=0x80000000 405f2148a47SJeff Kirsher }; 406f2148a47SJeff Kirsher 407f2148a47SJeff Kirsher /* Bits in *_desc.*_length */ 408f2148a47SJeff Kirsher enum desc_length_bits { 409f2148a47SJeff Kirsher DescTag=0x00010000 410f2148a47SJeff Kirsher }; 411f2148a47SJeff Kirsher 412f2148a47SJeff Kirsher /* Bits in ChipCmd. */ 413f2148a47SJeff Kirsher enum chip_cmd_bits { 414f2148a47SJeff Kirsher CmdInit=0x01, CmdStart=0x02, CmdStop=0x04, CmdRxOn=0x08, 415f2148a47SJeff Kirsher CmdTxOn=0x10, Cmd1TxDemand=0x20, CmdRxDemand=0x40, 416f2148a47SJeff Kirsher Cmd1EarlyRx=0x01, Cmd1EarlyTx=0x02, Cmd1FDuplex=0x04, 417f2148a47SJeff Kirsher Cmd1NoTxPoll=0x08, Cmd1Reset=0x80, 418f2148a47SJeff Kirsher }; 419f2148a47SJeff Kirsher 420f2148a47SJeff Kirsher struct rhine_private { 421f2148a47SJeff Kirsher /* Bit mask for configured VLAN ids */ 422f2148a47SJeff Kirsher unsigned long active_vlans[BITS_TO_LONGS(VLAN_N_VID)]; 423f2148a47SJeff Kirsher 424f2148a47SJeff Kirsher /* Descriptor rings */ 425f2148a47SJeff Kirsher struct rx_desc *rx_ring; 426f2148a47SJeff Kirsher struct tx_desc *tx_ring; 427f2148a47SJeff Kirsher dma_addr_t rx_ring_dma; 428f2148a47SJeff Kirsher dma_addr_t tx_ring_dma; 429f2148a47SJeff Kirsher 430f2148a47SJeff Kirsher /* The addresses of receive-in-place skbuffs. */ 431f2148a47SJeff Kirsher struct sk_buff *rx_skbuff[RX_RING_SIZE]; 432f2148a47SJeff Kirsher dma_addr_t rx_skbuff_dma[RX_RING_SIZE]; 433f2148a47SJeff Kirsher 434f2148a47SJeff Kirsher /* The saved address of a sent-in-place packet/buffer, for later free(). */ 435f2148a47SJeff Kirsher struct sk_buff *tx_skbuff[TX_RING_SIZE]; 436f2148a47SJeff Kirsher dma_addr_t tx_skbuff_dma[TX_RING_SIZE]; 437f2148a47SJeff Kirsher 438f2148a47SJeff Kirsher /* Tx bounce buffers (Rhine-I only) */ 439f2148a47SJeff Kirsher unsigned char *tx_buf[TX_RING_SIZE]; 440f2148a47SJeff Kirsher unsigned char *tx_bufs; 441f2148a47SJeff Kirsher dma_addr_t tx_bufs_dma; 442f2148a47SJeff Kirsher 443f2148a47SJeff Kirsher struct pci_dev *pdev; 444f2148a47SJeff Kirsher long pioaddr; 445f2148a47SJeff Kirsher struct net_device *dev; 446f2148a47SJeff Kirsher struct napi_struct napi; 447f2148a47SJeff Kirsher spinlock_t lock; 4487ab87ff4SFrancois Romieu struct mutex task_lock; 4497ab87ff4SFrancois Romieu bool task_enable; 4507ab87ff4SFrancois Romieu struct work_struct slow_event_task; 451f2148a47SJeff Kirsher struct work_struct reset_task; 452f2148a47SJeff Kirsher 453fc3e0f8aSFrancois Romieu u32 msg_enable; 454fc3e0f8aSFrancois Romieu 455f2148a47SJeff Kirsher /* Frequently used values: keep some adjacent for cache effect. */ 456f2148a47SJeff Kirsher u32 quirks; 457f2148a47SJeff Kirsher struct rx_desc *rx_head_desc; 458f2148a47SJeff Kirsher unsigned int cur_rx, dirty_rx; /* Producer/consumer ring indices */ 459f2148a47SJeff Kirsher unsigned int cur_tx, dirty_tx; 460f2148a47SJeff Kirsher unsigned int rx_buf_sz; /* Based on MTU+slack. */ 461f2148a47SJeff Kirsher u8 wolopts; 462f2148a47SJeff Kirsher 463f2148a47SJeff Kirsher u8 tx_thresh, rx_thresh; 464f2148a47SJeff Kirsher 465f2148a47SJeff Kirsher struct mii_if_info mii_if; 466f2148a47SJeff Kirsher void __iomem *base; 467f2148a47SJeff Kirsher }; 468f2148a47SJeff Kirsher 469f2148a47SJeff Kirsher #define BYTE_REG_BITS_ON(x, p) do { iowrite8((ioread8((p))|(x)), (p)); } while (0) 470f2148a47SJeff Kirsher #define WORD_REG_BITS_ON(x, p) do { iowrite16((ioread16((p))|(x)), (p)); } while (0) 471f2148a47SJeff Kirsher #define DWORD_REG_BITS_ON(x, p) do { iowrite32((ioread32((p))|(x)), (p)); } while (0) 472f2148a47SJeff Kirsher 473f2148a47SJeff Kirsher #define BYTE_REG_BITS_IS_ON(x, p) (ioread8((p)) & (x)) 474f2148a47SJeff Kirsher #define WORD_REG_BITS_IS_ON(x, p) (ioread16((p)) & (x)) 475f2148a47SJeff Kirsher #define DWORD_REG_BITS_IS_ON(x, p) (ioread32((p)) & (x)) 476f2148a47SJeff Kirsher 477f2148a47SJeff Kirsher #define BYTE_REG_BITS_OFF(x, p) do { iowrite8(ioread8((p)) & (~(x)), (p)); } while (0) 478f2148a47SJeff Kirsher #define WORD_REG_BITS_OFF(x, p) do { iowrite16(ioread16((p)) & (~(x)), (p)); } while (0) 479f2148a47SJeff Kirsher #define DWORD_REG_BITS_OFF(x, p) do { iowrite32(ioread32((p)) & (~(x)), (p)); } while (0) 480f2148a47SJeff Kirsher 481f2148a47SJeff Kirsher #define BYTE_REG_BITS_SET(x, m, p) do { iowrite8((ioread8((p)) & (~(m)))|(x), (p)); } while (0) 482f2148a47SJeff Kirsher #define WORD_REG_BITS_SET(x, m, p) do { iowrite16((ioread16((p)) & (~(m)))|(x), (p)); } while (0) 483f2148a47SJeff Kirsher #define DWORD_REG_BITS_SET(x, m, p) do { iowrite32((ioread32((p)) & (~(m)))|(x), (p)); } while (0) 484f2148a47SJeff Kirsher 485f2148a47SJeff Kirsher 486f2148a47SJeff Kirsher static int mdio_read(struct net_device *dev, int phy_id, int location); 487f2148a47SJeff Kirsher static void mdio_write(struct net_device *dev, int phy_id, int location, int value); 488f2148a47SJeff Kirsher static int rhine_open(struct net_device *dev); 489f2148a47SJeff Kirsher static void rhine_reset_task(struct work_struct *work); 4907ab87ff4SFrancois Romieu static void rhine_slow_event_task(struct work_struct *work); 491f2148a47SJeff Kirsher static void rhine_tx_timeout(struct net_device *dev); 492f2148a47SJeff Kirsher static netdev_tx_t rhine_start_tx(struct sk_buff *skb, 493f2148a47SJeff Kirsher struct net_device *dev); 494f2148a47SJeff Kirsher static irqreturn_t rhine_interrupt(int irq, void *dev_instance); 495f2148a47SJeff Kirsher static void rhine_tx(struct net_device *dev); 496f2148a47SJeff Kirsher static int rhine_rx(struct net_device *dev, int limit); 497f2148a47SJeff Kirsher static void rhine_set_rx_mode(struct net_device *dev); 498f2148a47SJeff Kirsher static struct net_device_stats *rhine_get_stats(struct net_device *dev); 499f2148a47SJeff Kirsher static int netdev_ioctl(struct net_device *dev, struct ifreq *rq, int cmd); 500f2148a47SJeff Kirsher static const struct ethtool_ops netdev_ethtool_ops; 501f2148a47SJeff Kirsher static int rhine_close(struct net_device *dev); 5028e586137SJiri Pirko static int rhine_vlan_rx_add_vid(struct net_device *dev, unsigned short vid); 5038e586137SJiri Pirko static int rhine_vlan_rx_kill_vid(struct net_device *dev, unsigned short vid); 5047ab87ff4SFrancois Romieu static void rhine_restart_tx(struct net_device *dev); 505f2148a47SJeff Kirsher 506a384a33bSFrancois Romieu static void rhine_wait_bit(struct rhine_private *rp, u8 reg, u8 mask, bool high) 507a384a33bSFrancois Romieu { 508a384a33bSFrancois Romieu void __iomem *ioaddr = rp->base; 509a384a33bSFrancois Romieu int i; 510a384a33bSFrancois Romieu 511a384a33bSFrancois Romieu for (i = 0; i < 1024; i++) { 512a384a33bSFrancois Romieu if (high ^ !!(ioread8(ioaddr + reg) & mask)) 513a384a33bSFrancois Romieu break; 514a384a33bSFrancois Romieu udelay(10); 515a384a33bSFrancois Romieu } 516a384a33bSFrancois Romieu if (i > 64) { 517fc3e0f8aSFrancois Romieu netif_dbg(rp, hw, rp->dev, "%s bit wait (%02x/%02x) cycle " 518a384a33bSFrancois Romieu "count: %04d\n", high ? "high" : "low", reg, mask, i); 519a384a33bSFrancois Romieu } 520a384a33bSFrancois Romieu } 521a384a33bSFrancois Romieu 522a384a33bSFrancois Romieu static void rhine_wait_bit_high(struct rhine_private *rp, u8 reg, u8 mask) 523a384a33bSFrancois Romieu { 524a384a33bSFrancois Romieu rhine_wait_bit(rp, reg, mask, true); 525a384a33bSFrancois Romieu } 526a384a33bSFrancois Romieu 527a384a33bSFrancois Romieu static void rhine_wait_bit_low(struct rhine_private *rp, u8 reg, u8 mask) 528a384a33bSFrancois Romieu { 529a384a33bSFrancois Romieu rhine_wait_bit(rp, reg, mask, false); 530a384a33bSFrancois Romieu } 531f2148a47SJeff Kirsher 532a20a28bcSFrancois Romieu static u32 rhine_get_events(struct rhine_private *rp) 533f2148a47SJeff Kirsher { 534f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 535f2148a47SJeff Kirsher u32 intr_status; 536f2148a47SJeff Kirsher 537f2148a47SJeff Kirsher intr_status = ioread16(ioaddr + IntrStatus); 538f2148a47SJeff Kirsher /* On Rhine-II, Bit 3 indicates Tx descriptor write-back race. */ 539f2148a47SJeff Kirsher if (rp->quirks & rqStatusWBRace) 540f2148a47SJeff Kirsher intr_status |= ioread8(ioaddr + IntrStatus2) << 16; 541f2148a47SJeff Kirsher return intr_status; 542f2148a47SJeff Kirsher } 543f2148a47SJeff Kirsher 544a20a28bcSFrancois Romieu static void rhine_ack_events(struct rhine_private *rp, u32 mask) 545a20a28bcSFrancois Romieu { 546a20a28bcSFrancois Romieu void __iomem *ioaddr = rp->base; 547a20a28bcSFrancois Romieu 548a20a28bcSFrancois Romieu if (rp->quirks & rqStatusWBRace) 549a20a28bcSFrancois Romieu iowrite8(mask >> 16, ioaddr + IntrStatus2); 550a20a28bcSFrancois Romieu iowrite16(mask, ioaddr + IntrStatus); 5517ab87ff4SFrancois Romieu mmiowb(); 552a20a28bcSFrancois Romieu } 553a20a28bcSFrancois Romieu 554f2148a47SJeff Kirsher /* 555f2148a47SJeff Kirsher * Get power related registers into sane state. 556f2148a47SJeff Kirsher * Notify user about past WOL event. 557f2148a47SJeff Kirsher */ 558f2148a47SJeff Kirsher static void rhine_power_init(struct net_device *dev) 559f2148a47SJeff Kirsher { 560f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 561f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 562f2148a47SJeff Kirsher u16 wolstat; 563f2148a47SJeff Kirsher 564f2148a47SJeff Kirsher if (rp->quirks & rqWOL) { 565f2148a47SJeff Kirsher /* Make sure chip is in power state D0 */ 566f2148a47SJeff Kirsher iowrite8(ioread8(ioaddr + StickyHW) & 0xFC, ioaddr + StickyHW); 567f2148a47SJeff Kirsher 568f2148a47SJeff Kirsher /* Disable "force PME-enable" */ 569f2148a47SJeff Kirsher iowrite8(0x80, ioaddr + WOLcgClr); 570f2148a47SJeff Kirsher 571f2148a47SJeff Kirsher /* Clear power-event config bits (WOL) */ 572f2148a47SJeff Kirsher iowrite8(0xFF, ioaddr + WOLcrClr); 573f2148a47SJeff Kirsher /* More recent cards can manage two additional patterns */ 574f2148a47SJeff Kirsher if (rp->quirks & rq6patterns) 575f2148a47SJeff Kirsher iowrite8(0x03, ioaddr + WOLcrClr1); 576f2148a47SJeff Kirsher 577f2148a47SJeff Kirsher /* Save power-event status bits */ 578f2148a47SJeff Kirsher wolstat = ioread8(ioaddr + PwrcsrSet); 579f2148a47SJeff Kirsher if (rp->quirks & rq6patterns) 580f2148a47SJeff Kirsher wolstat |= (ioread8(ioaddr + PwrcsrSet1) & 0x03) << 8; 581f2148a47SJeff Kirsher 582f2148a47SJeff Kirsher /* Clear power-event status bits */ 583f2148a47SJeff Kirsher iowrite8(0xFF, ioaddr + PwrcsrClr); 584f2148a47SJeff Kirsher if (rp->quirks & rq6patterns) 585f2148a47SJeff Kirsher iowrite8(0x03, ioaddr + PwrcsrClr1); 586f2148a47SJeff Kirsher 587f2148a47SJeff Kirsher if (wolstat) { 588f2148a47SJeff Kirsher char *reason; 589f2148a47SJeff Kirsher switch (wolstat) { 590f2148a47SJeff Kirsher case WOLmagic: 591f2148a47SJeff Kirsher reason = "Magic packet"; 592f2148a47SJeff Kirsher break; 593f2148a47SJeff Kirsher case WOLlnkon: 594f2148a47SJeff Kirsher reason = "Link went up"; 595f2148a47SJeff Kirsher break; 596f2148a47SJeff Kirsher case WOLlnkoff: 597f2148a47SJeff Kirsher reason = "Link went down"; 598f2148a47SJeff Kirsher break; 599f2148a47SJeff Kirsher case WOLucast: 600f2148a47SJeff Kirsher reason = "Unicast packet"; 601f2148a47SJeff Kirsher break; 602f2148a47SJeff Kirsher case WOLbmcast: 603f2148a47SJeff Kirsher reason = "Multicast/broadcast packet"; 604f2148a47SJeff Kirsher break; 605f2148a47SJeff Kirsher default: 606f2148a47SJeff Kirsher reason = "Unknown"; 607f2148a47SJeff Kirsher } 608f2148a47SJeff Kirsher netdev_info(dev, "Woke system up. Reason: %s\n", 609f2148a47SJeff Kirsher reason); 610f2148a47SJeff Kirsher } 611f2148a47SJeff Kirsher } 612f2148a47SJeff Kirsher } 613f2148a47SJeff Kirsher 614f2148a47SJeff Kirsher static void rhine_chip_reset(struct net_device *dev) 615f2148a47SJeff Kirsher { 616f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 617f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 618fc3e0f8aSFrancois Romieu u8 cmd1; 619f2148a47SJeff Kirsher 620f2148a47SJeff Kirsher iowrite8(Cmd1Reset, ioaddr + ChipCmd1); 621f2148a47SJeff Kirsher IOSYNC; 622f2148a47SJeff Kirsher 623f2148a47SJeff Kirsher if (ioread8(ioaddr + ChipCmd1) & Cmd1Reset) { 624f2148a47SJeff Kirsher netdev_info(dev, "Reset not complete yet. Trying harder.\n"); 625f2148a47SJeff Kirsher 626f2148a47SJeff Kirsher /* Force reset */ 627f2148a47SJeff Kirsher if (rp->quirks & rqForceReset) 628f2148a47SJeff Kirsher iowrite8(0x40, ioaddr + MiscCmd); 629f2148a47SJeff Kirsher 630f2148a47SJeff Kirsher /* Reset can take somewhat longer (rare) */ 631a384a33bSFrancois Romieu rhine_wait_bit_low(rp, ChipCmd1, Cmd1Reset); 632f2148a47SJeff Kirsher } 633f2148a47SJeff Kirsher 634fc3e0f8aSFrancois Romieu cmd1 = ioread8(ioaddr + ChipCmd1); 635fc3e0f8aSFrancois Romieu netif_info(rp, hw, dev, "Reset %s\n", (cmd1 & Cmd1Reset) ? 636f2148a47SJeff Kirsher "failed" : "succeeded"); 637f2148a47SJeff Kirsher } 638f2148a47SJeff Kirsher 639f2148a47SJeff Kirsher #ifdef USE_MMIO 640f2148a47SJeff Kirsher static void enable_mmio(long pioaddr, u32 quirks) 641f2148a47SJeff Kirsher { 642f2148a47SJeff Kirsher int n; 643f2148a47SJeff Kirsher if (quirks & rqRhineI) { 644f2148a47SJeff Kirsher /* More recent docs say that this bit is reserved ... */ 645f2148a47SJeff Kirsher n = inb(pioaddr + ConfigA) | 0x20; 646f2148a47SJeff Kirsher outb(n, pioaddr + ConfigA); 647f2148a47SJeff Kirsher } else { 648f2148a47SJeff Kirsher n = inb(pioaddr + ConfigD) | 0x80; 649f2148a47SJeff Kirsher outb(n, pioaddr + ConfigD); 650f2148a47SJeff Kirsher } 651f2148a47SJeff Kirsher } 652f2148a47SJeff Kirsher #endif 653f2148a47SJeff Kirsher 654f2148a47SJeff Kirsher /* 655f2148a47SJeff Kirsher * Loads bytes 0x00-0x05, 0x6E-0x6F, 0x78-0x7B from EEPROM 656f2148a47SJeff Kirsher * (plus 0x6C for Rhine-I/II) 657f2148a47SJeff Kirsher */ 658f2148a47SJeff Kirsher static void __devinit rhine_reload_eeprom(long pioaddr, struct net_device *dev) 659f2148a47SJeff Kirsher { 660f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 661f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 662a384a33bSFrancois Romieu int i; 663f2148a47SJeff Kirsher 664f2148a47SJeff Kirsher outb(0x20, pioaddr + MACRegEEcsr); 665a384a33bSFrancois Romieu for (i = 0; i < 1024; i++) { 666a384a33bSFrancois Romieu if (!(inb(pioaddr + MACRegEEcsr) & 0x20)) 667a384a33bSFrancois Romieu break; 668a384a33bSFrancois Romieu } 669a384a33bSFrancois Romieu if (i > 512) 670a384a33bSFrancois Romieu pr_info("%4d cycles used @ %s:%d\n", i, __func__, __LINE__); 671f2148a47SJeff Kirsher 672f2148a47SJeff Kirsher #ifdef USE_MMIO 673f2148a47SJeff Kirsher /* 674f2148a47SJeff Kirsher * Reloading from EEPROM overwrites ConfigA-D, so we must re-enable 675f2148a47SJeff Kirsher * MMIO. If reloading EEPROM was done first this could be avoided, but 676f2148a47SJeff Kirsher * it is not known if that still works with the "win98-reboot" problem. 677f2148a47SJeff Kirsher */ 678f2148a47SJeff Kirsher enable_mmio(pioaddr, rp->quirks); 679f2148a47SJeff Kirsher #endif 680f2148a47SJeff Kirsher 681f2148a47SJeff Kirsher /* Turn off EEPROM-controlled wake-up (magic packet) */ 682f2148a47SJeff Kirsher if (rp->quirks & rqWOL) 683f2148a47SJeff Kirsher iowrite8(ioread8(ioaddr + ConfigA) & 0xFC, ioaddr + ConfigA); 684f2148a47SJeff Kirsher 685f2148a47SJeff Kirsher } 686f2148a47SJeff Kirsher 687f2148a47SJeff Kirsher #ifdef CONFIG_NET_POLL_CONTROLLER 688f2148a47SJeff Kirsher static void rhine_poll(struct net_device *dev) 689f2148a47SJeff Kirsher { 690f2148a47SJeff Kirsher disable_irq(dev->irq); 691f2148a47SJeff Kirsher rhine_interrupt(dev->irq, (void *)dev); 692f2148a47SJeff Kirsher enable_irq(dev->irq); 693f2148a47SJeff Kirsher } 694f2148a47SJeff Kirsher #endif 695f2148a47SJeff Kirsher 696269f3114SFrancois Romieu static void rhine_kick_tx_threshold(struct rhine_private *rp) 697269f3114SFrancois Romieu { 698269f3114SFrancois Romieu if (rp->tx_thresh < 0xe0) { 699269f3114SFrancois Romieu void __iomem *ioaddr = rp->base; 700269f3114SFrancois Romieu 701269f3114SFrancois Romieu rp->tx_thresh += 0x20; 702269f3114SFrancois Romieu BYTE_REG_BITS_SET(rp->tx_thresh, 0x80, ioaddr + TxConfig); 703269f3114SFrancois Romieu } 704269f3114SFrancois Romieu } 705269f3114SFrancois Romieu 7067ab87ff4SFrancois Romieu static void rhine_tx_err(struct rhine_private *rp, u32 status) 7077ab87ff4SFrancois Romieu { 7087ab87ff4SFrancois Romieu struct net_device *dev = rp->dev; 7097ab87ff4SFrancois Romieu 7107ab87ff4SFrancois Romieu if (status & IntrTxAborted) { 711fc3e0f8aSFrancois Romieu netif_info(rp, tx_err, dev, 712fc3e0f8aSFrancois Romieu "Abort %08x, frame dropped\n", status); 7137ab87ff4SFrancois Romieu } 7147ab87ff4SFrancois Romieu 7157ab87ff4SFrancois Romieu if (status & IntrTxUnderrun) { 7167ab87ff4SFrancois Romieu rhine_kick_tx_threshold(rp); 717fc3e0f8aSFrancois Romieu netif_info(rp, tx_err ,dev, "Transmitter underrun, " 718fc3e0f8aSFrancois Romieu "Tx threshold now %02x\n", rp->tx_thresh); 7197ab87ff4SFrancois Romieu } 7207ab87ff4SFrancois Romieu 721fc3e0f8aSFrancois Romieu if (status & IntrTxDescRace) 722fc3e0f8aSFrancois Romieu netif_info(rp, tx_err, dev, "Tx descriptor write-back race\n"); 7237ab87ff4SFrancois Romieu 7247ab87ff4SFrancois Romieu if ((status & IntrTxError) && 7257ab87ff4SFrancois Romieu (status & (IntrTxAborted | IntrTxUnderrun | IntrTxDescRace)) == 0) { 7267ab87ff4SFrancois Romieu rhine_kick_tx_threshold(rp); 727fc3e0f8aSFrancois Romieu netif_info(rp, tx_err, dev, "Unspecified error. " 728fc3e0f8aSFrancois Romieu "Tx threshold now %02x\n", rp->tx_thresh); 7297ab87ff4SFrancois Romieu } 7307ab87ff4SFrancois Romieu 7317ab87ff4SFrancois Romieu rhine_restart_tx(dev); 7327ab87ff4SFrancois Romieu } 7337ab87ff4SFrancois Romieu 7347ab87ff4SFrancois Romieu static void rhine_update_rx_crc_and_missed_errord(struct rhine_private *rp) 7357ab87ff4SFrancois Romieu { 7367ab87ff4SFrancois Romieu void __iomem *ioaddr = rp->base; 7377ab87ff4SFrancois Romieu struct net_device_stats *stats = &rp->dev->stats; 7387ab87ff4SFrancois Romieu 7397ab87ff4SFrancois Romieu stats->rx_crc_errors += ioread16(ioaddr + RxCRCErrs); 7407ab87ff4SFrancois Romieu stats->rx_missed_errors += ioread16(ioaddr + RxMissed); 7417ab87ff4SFrancois Romieu 7427ab87ff4SFrancois Romieu /* 7437ab87ff4SFrancois Romieu * Clears the "tally counters" for CRC errors and missed frames(?). 7447ab87ff4SFrancois Romieu * It has been reported that some chips need a write of 0 to clear 7457ab87ff4SFrancois Romieu * these, for others the counters are set to 1 when written to and 7467ab87ff4SFrancois Romieu * instead cleared when read. So we clear them both ways ... 7477ab87ff4SFrancois Romieu */ 7487ab87ff4SFrancois Romieu iowrite32(0, ioaddr + RxMissed); 7497ab87ff4SFrancois Romieu ioread16(ioaddr + RxCRCErrs); 7507ab87ff4SFrancois Romieu ioread16(ioaddr + RxMissed); 7517ab87ff4SFrancois Romieu } 7527ab87ff4SFrancois Romieu 7537ab87ff4SFrancois Romieu #define RHINE_EVENT_NAPI_RX (IntrRxDone | \ 7547ab87ff4SFrancois Romieu IntrRxErr | \ 7557ab87ff4SFrancois Romieu IntrRxEmpty | \ 7567ab87ff4SFrancois Romieu IntrRxOverflow | \ 7577ab87ff4SFrancois Romieu IntrRxDropped | \ 7587ab87ff4SFrancois Romieu IntrRxNoBuf | \ 7597ab87ff4SFrancois Romieu IntrRxWakeUp) 7607ab87ff4SFrancois Romieu 7617ab87ff4SFrancois Romieu #define RHINE_EVENT_NAPI_TX_ERR (IntrTxError | \ 7627ab87ff4SFrancois Romieu IntrTxAborted | \ 7637ab87ff4SFrancois Romieu IntrTxUnderrun | \ 7647ab87ff4SFrancois Romieu IntrTxDescRace) 7657ab87ff4SFrancois Romieu #define RHINE_EVENT_NAPI_TX (IntrTxDone | RHINE_EVENT_NAPI_TX_ERR) 7667ab87ff4SFrancois Romieu 7677ab87ff4SFrancois Romieu #define RHINE_EVENT_NAPI (RHINE_EVENT_NAPI_RX | \ 7687ab87ff4SFrancois Romieu RHINE_EVENT_NAPI_TX | \ 7697ab87ff4SFrancois Romieu IntrStatsMax) 7707ab87ff4SFrancois Romieu #define RHINE_EVENT_SLOW (IntrPCIErr | IntrLinkChange) 7717ab87ff4SFrancois Romieu #define RHINE_EVENT (RHINE_EVENT_NAPI | RHINE_EVENT_SLOW) 7727ab87ff4SFrancois Romieu 773f2148a47SJeff Kirsher static int rhine_napipoll(struct napi_struct *napi, int budget) 774f2148a47SJeff Kirsher { 775f2148a47SJeff Kirsher struct rhine_private *rp = container_of(napi, struct rhine_private, napi); 776f2148a47SJeff Kirsher struct net_device *dev = rp->dev; 777f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 7787ab87ff4SFrancois Romieu u16 enable_mask = RHINE_EVENT & 0xffff; 7797ab87ff4SFrancois Romieu int work_done = 0; 7807ab87ff4SFrancois Romieu u32 status; 781f2148a47SJeff Kirsher 7827ab87ff4SFrancois Romieu status = rhine_get_events(rp); 7837ab87ff4SFrancois Romieu rhine_ack_events(rp, status & ~RHINE_EVENT_SLOW); 7847ab87ff4SFrancois Romieu 7857ab87ff4SFrancois Romieu if (status & RHINE_EVENT_NAPI_RX) 7867ab87ff4SFrancois Romieu work_done += rhine_rx(dev, budget); 7877ab87ff4SFrancois Romieu 7887ab87ff4SFrancois Romieu if (status & RHINE_EVENT_NAPI_TX) { 7897ab87ff4SFrancois Romieu if (status & RHINE_EVENT_NAPI_TX_ERR) { 7907ab87ff4SFrancois Romieu /* Avoid scavenging before Tx engine turned off */ 791a384a33bSFrancois Romieu rhine_wait_bit_low(rp, ChipCmd, CmdTxOn); 792fc3e0f8aSFrancois Romieu if (ioread8(ioaddr + ChipCmd) & CmdTxOn) 793fc3e0f8aSFrancois Romieu netif_warn(rp, tx_err, dev, "Tx still on\n"); 7947ab87ff4SFrancois Romieu } 795fc3e0f8aSFrancois Romieu 7967ab87ff4SFrancois Romieu rhine_tx(dev); 7977ab87ff4SFrancois Romieu 7987ab87ff4SFrancois Romieu if (status & RHINE_EVENT_NAPI_TX_ERR) 7997ab87ff4SFrancois Romieu rhine_tx_err(rp, status); 8007ab87ff4SFrancois Romieu } 8017ab87ff4SFrancois Romieu 8027ab87ff4SFrancois Romieu if (status & IntrStatsMax) { 8037ab87ff4SFrancois Romieu spin_lock(&rp->lock); 8047ab87ff4SFrancois Romieu rhine_update_rx_crc_and_missed_errord(rp); 8057ab87ff4SFrancois Romieu spin_unlock(&rp->lock); 8067ab87ff4SFrancois Romieu } 8077ab87ff4SFrancois Romieu 8087ab87ff4SFrancois Romieu if (status & RHINE_EVENT_SLOW) { 8097ab87ff4SFrancois Romieu enable_mask &= ~RHINE_EVENT_SLOW; 8107ab87ff4SFrancois Romieu schedule_work(&rp->slow_event_task); 8117ab87ff4SFrancois Romieu } 812f2148a47SJeff Kirsher 813f2148a47SJeff Kirsher if (work_done < budget) { 814f2148a47SJeff Kirsher napi_complete(napi); 8157ab87ff4SFrancois Romieu iowrite16(enable_mask, ioaddr + IntrEnable); 8167ab87ff4SFrancois Romieu mmiowb(); 817f2148a47SJeff Kirsher } 818f2148a47SJeff Kirsher return work_done; 819f2148a47SJeff Kirsher } 820f2148a47SJeff Kirsher 821f2148a47SJeff Kirsher static void __devinit rhine_hw_init(struct net_device *dev, long pioaddr) 822f2148a47SJeff Kirsher { 823f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 824f2148a47SJeff Kirsher 825f2148a47SJeff Kirsher /* Reset the chip to erase previous misconfiguration. */ 826f2148a47SJeff Kirsher rhine_chip_reset(dev); 827f2148a47SJeff Kirsher 828f2148a47SJeff Kirsher /* Rhine-I needs extra time to recuperate before EEPROM reload */ 829f2148a47SJeff Kirsher if (rp->quirks & rqRhineI) 830f2148a47SJeff Kirsher msleep(5); 831f2148a47SJeff Kirsher 832f2148a47SJeff Kirsher /* Reload EEPROM controlled bytes cleared by soft reset */ 833f2148a47SJeff Kirsher rhine_reload_eeprom(pioaddr, dev); 834f2148a47SJeff Kirsher } 835f2148a47SJeff Kirsher 836f2148a47SJeff Kirsher static const struct net_device_ops rhine_netdev_ops = { 837f2148a47SJeff Kirsher .ndo_open = rhine_open, 838f2148a47SJeff Kirsher .ndo_stop = rhine_close, 839f2148a47SJeff Kirsher .ndo_start_xmit = rhine_start_tx, 840f2148a47SJeff Kirsher .ndo_get_stats = rhine_get_stats, 841afc4b13dSJiri Pirko .ndo_set_rx_mode = rhine_set_rx_mode, 842f2148a47SJeff Kirsher .ndo_change_mtu = eth_change_mtu, 843f2148a47SJeff Kirsher .ndo_validate_addr = eth_validate_addr, 844f2148a47SJeff Kirsher .ndo_set_mac_address = eth_mac_addr, 845f2148a47SJeff Kirsher .ndo_do_ioctl = netdev_ioctl, 846f2148a47SJeff Kirsher .ndo_tx_timeout = rhine_tx_timeout, 847f2148a47SJeff Kirsher .ndo_vlan_rx_add_vid = rhine_vlan_rx_add_vid, 848f2148a47SJeff Kirsher .ndo_vlan_rx_kill_vid = rhine_vlan_rx_kill_vid, 849f2148a47SJeff Kirsher #ifdef CONFIG_NET_POLL_CONTROLLER 850f2148a47SJeff Kirsher .ndo_poll_controller = rhine_poll, 851f2148a47SJeff Kirsher #endif 852f2148a47SJeff Kirsher }; 853f2148a47SJeff Kirsher 854f2148a47SJeff Kirsher static int __devinit rhine_init_one(struct pci_dev *pdev, 855f2148a47SJeff Kirsher const struct pci_device_id *ent) 856f2148a47SJeff Kirsher { 857f2148a47SJeff Kirsher struct net_device *dev; 858f2148a47SJeff Kirsher struct rhine_private *rp; 859f2148a47SJeff Kirsher int i, rc; 860f2148a47SJeff Kirsher u32 quirks; 861f2148a47SJeff Kirsher long pioaddr; 862f2148a47SJeff Kirsher long memaddr; 863f2148a47SJeff Kirsher void __iomem *ioaddr; 864f2148a47SJeff Kirsher int io_size, phy_id; 865f2148a47SJeff Kirsher const char *name; 866f2148a47SJeff Kirsher #ifdef USE_MMIO 867f2148a47SJeff Kirsher int bar = 1; 868f2148a47SJeff Kirsher #else 869f2148a47SJeff Kirsher int bar = 0; 870f2148a47SJeff Kirsher #endif 871f2148a47SJeff Kirsher 872f2148a47SJeff Kirsher /* when built into the kernel, we only print version if device is found */ 873f2148a47SJeff Kirsher #ifndef MODULE 874f2148a47SJeff Kirsher pr_info_once("%s\n", version); 875f2148a47SJeff Kirsher #endif 876f2148a47SJeff Kirsher 877f2148a47SJeff Kirsher io_size = 256; 878f2148a47SJeff Kirsher phy_id = 0; 879f2148a47SJeff Kirsher quirks = 0; 880f2148a47SJeff Kirsher name = "Rhine"; 881f2148a47SJeff Kirsher if (pdev->revision < VTunknown0) { 882f2148a47SJeff Kirsher quirks = rqRhineI; 883f2148a47SJeff Kirsher io_size = 128; 884f2148a47SJeff Kirsher } 885f2148a47SJeff Kirsher else if (pdev->revision >= VT6102) { 886f2148a47SJeff Kirsher quirks = rqWOL | rqForceReset; 887f2148a47SJeff Kirsher if (pdev->revision < VT6105) { 888f2148a47SJeff Kirsher name = "Rhine II"; 889f2148a47SJeff Kirsher quirks |= rqStatusWBRace; /* Rhine-II exclusive */ 890f2148a47SJeff Kirsher } 891f2148a47SJeff Kirsher else { 892f2148a47SJeff Kirsher phy_id = 1; /* Integrated PHY, phy_id fixed to 1 */ 893f2148a47SJeff Kirsher if (pdev->revision >= VT6105_B0) 894f2148a47SJeff Kirsher quirks |= rq6patterns; 895f2148a47SJeff Kirsher if (pdev->revision < VT6105M) 896f2148a47SJeff Kirsher name = "Rhine III"; 897f2148a47SJeff Kirsher else 898f2148a47SJeff Kirsher name = "Rhine III (Management Adapter)"; 899f2148a47SJeff Kirsher } 900f2148a47SJeff Kirsher } 901f2148a47SJeff Kirsher 902f2148a47SJeff Kirsher rc = pci_enable_device(pdev); 903f2148a47SJeff Kirsher if (rc) 904f2148a47SJeff Kirsher goto err_out; 905f2148a47SJeff Kirsher 906f2148a47SJeff Kirsher /* this should always be supported */ 907f2148a47SJeff Kirsher rc = pci_set_dma_mask(pdev, DMA_BIT_MASK(32)); 908f2148a47SJeff Kirsher if (rc) { 909f2148a47SJeff Kirsher dev_err(&pdev->dev, 910f2148a47SJeff Kirsher "32-bit PCI DMA addresses not supported by the card!?\n"); 911f2148a47SJeff Kirsher goto err_out; 912f2148a47SJeff Kirsher } 913f2148a47SJeff Kirsher 914f2148a47SJeff Kirsher /* sanity check */ 915f2148a47SJeff Kirsher if ((pci_resource_len(pdev, 0) < io_size) || 916f2148a47SJeff Kirsher (pci_resource_len(pdev, 1) < io_size)) { 917f2148a47SJeff Kirsher rc = -EIO; 918f2148a47SJeff Kirsher dev_err(&pdev->dev, "Insufficient PCI resources, aborting\n"); 919f2148a47SJeff Kirsher goto err_out; 920f2148a47SJeff Kirsher } 921f2148a47SJeff Kirsher 922f2148a47SJeff Kirsher pioaddr = pci_resource_start(pdev, 0); 923f2148a47SJeff Kirsher memaddr = pci_resource_start(pdev, 1); 924f2148a47SJeff Kirsher 925f2148a47SJeff Kirsher pci_set_master(pdev); 926f2148a47SJeff Kirsher 927f2148a47SJeff Kirsher dev = alloc_etherdev(sizeof(struct rhine_private)); 928f2148a47SJeff Kirsher if (!dev) { 929f2148a47SJeff Kirsher rc = -ENOMEM; 930f2148a47SJeff Kirsher goto err_out; 931f2148a47SJeff Kirsher } 932f2148a47SJeff Kirsher SET_NETDEV_DEV(dev, &pdev->dev); 933f2148a47SJeff Kirsher 934f2148a47SJeff Kirsher rp = netdev_priv(dev); 935f2148a47SJeff Kirsher rp->dev = dev; 936f2148a47SJeff Kirsher rp->quirks = quirks; 937f2148a47SJeff Kirsher rp->pioaddr = pioaddr; 938f2148a47SJeff Kirsher rp->pdev = pdev; 939fc3e0f8aSFrancois Romieu rp->msg_enable = netif_msg_init(debug, RHINE_MSG_DEFAULT); 940f2148a47SJeff Kirsher 941f2148a47SJeff Kirsher rc = pci_request_regions(pdev, DRV_NAME); 942f2148a47SJeff Kirsher if (rc) 943f2148a47SJeff Kirsher goto err_out_free_netdev; 944f2148a47SJeff Kirsher 945f2148a47SJeff Kirsher ioaddr = pci_iomap(pdev, bar, io_size); 946f2148a47SJeff Kirsher if (!ioaddr) { 947f2148a47SJeff Kirsher rc = -EIO; 948f2148a47SJeff Kirsher dev_err(&pdev->dev, 949f2148a47SJeff Kirsher "ioremap failed for device %s, region 0x%X @ 0x%lX\n", 950f2148a47SJeff Kirsher pci_name(pdev), io_size, memaddr); 951f2148a47SJeff Kirsher goto err_out_free_res; 952f2148a47SJeff Kirsher } 953f2148a47SJeff Kirsher 954f2148a47SJeff Kirsher #ifdef USE_MMIO 955f2148a47SJeff Kirsher enable_mmio(pioaddr, quirks); 956f2148a47SJeff Kirsher 957f2148a47SJeff Kirsher /* Check that selected MMIO registers match the PIO ones */ 958f2148a47SJeff Kirsher i = 0; 959f2148a47SJeff Kirsher while (mmio_verify_registers[i]) { 960f2148a47SJeff Kirsher int reg = mmio_verify_registers[i++]; 961f2148a47SJeff Kirsher unsigned char a = inb(pioaddr+reg); 962f2148a47SJeff Kirsher unsigned char b = readb(ioaddr+reg); 963f2148a47SJeff Kirsher if (a != b) { 964f2148a47SJeff Kirsher rc = -EIO; 965f2148a47SJeff Kirsher dev_err(&pdev->dev, 966f2148a47SJeff Kirsher "MMIO do not match PIO [%02x] (%02x != %02x)\n", 967f2148a47SJeff Kirsher reg, a, b); 968f2148a47SJeff Kirsher goto err_out_unmap; 969f2148a47SJeff Kirsher } 970f2148a47SJeff Kirsher } 971f2148a47SJeff Kirsher #endif /* USE_MMIO */ 972f2148a47SJeff Kirsher 973f2148a47SJeff Kirsher dev->base_addr = (unsigned long)ioaddr; 974f2148a47SJeff Kirsher rp->base = ioaddr; 975f2148a47SJeff Kirsher 976f2148a47SJeff Kirsher /* Get chip registers into a sane state */ 977f2148a47SJeff Kirsher rhine_power_init(dev); 978f2148a47SJeff Kirsher rhine_hw_init(dev, pioaddr); 979f2148a47SJeff Kirsher 980f2148a47SJeff Kirsher for (i = 0; i < 6; i++) 981f2148a47SJeff Kirsher dev->dev_addr[i] = ioread8(ioaddr + StationAddr + i); 982f2148a47SJeff Kirsher 983f2148a47SJeff Kirsher if (!is_valid_ether_addr(dev->dev_addr)) { 984f2148a47SJeff Kirsher /* Report it and use a random ethernet address instead */ 985f2148a47SJeff Kirsher netdev_err(dev, "Invalid MAC address: %pM\n", dev->dev_addr); 986*f2cedb63SDanny Kukawka eth_hw_addr_random(dev); 987f2148a47SJeff Kirsher netdev_info(dev, "Using random MAC address: %pM\n", 988f2148a47SJeff Kirsher dev->dev_addr); 989f2148a47SJeff Kirsher } 990f2148a47SJeff Kirsher memcpy(dev->perm_addr, dev->dev_addr, dev->addr_len); 991f2148a47SJeff Kirsher 992f2148a47SJeff Kirsher /* For Rhine-I/II, phy_id is loaded from EEPROM */ 993f2148a47SJeff Kirsher if (!phy_id) 994f2148a47SJeff Kirsher phy_id = ioread8(ioaddr + 0x6C); 995f2148a47SJeff Kirsher 996f2148a47SJeff Kirsher dev->irq = pdev->irq; 997f2148a47SJeff Kirsher 998f2148a47SJeff Kirsher spin_lock_init(&rp->lock); 9997ab87ff4SFrancois Romieu mutex_init(&rp->task_lock); 1000f2148a47SJeff Kirsher INIT_WORK(&rp->reset_task, rhine_reset_task); 10017ab87ff4SFrancois Romieu INIT_WORK(&rp->slow_event_task, rhine_slow_event_task); 1002f2148a47SJeff Kirsher 1003f2148a47SJeff Kirsher rp->mii_if.dev = dev; 1004f2148a47SJeff Kirsher rp->mii_if.mdio_read = mdio_read; 1005f2148a47SJeff Kirsher rp->mii_if.mdio_write = mdio_write; 1006f2148a47SJeff Kirsher rp->mii_if.phy_id_mask = 0x1f; 1007f2148a47SJeff Kirsher rp->mii_if.reg_num_mask = 0x1f; 1008f2148a47SJeff Kirsher 1009f2148a47SJeff Kirsher /* The chip-specific entries in the device structure. */ 1010f2148a47SJeff Kirsher dev->netdev_ops = &rhine_netdev_ops; 1011f2148a47SJeff Kirsher dev->ethtool_ops = &netdev_ethtool_ops, 1012f2148a47SJeff Kirsher dev->watchdog_timeo = TX_TIMEOUT; 1013f2148a47SJeff Kirsher 1014f2148a47SJeff Kirsher netif_napi_add(dev, &rp->napi, rhine_napipoll, 64); 1015f2148a47SJeff Kirsher 1016f2148a47SJeff Kirsher if (rp->quirks & rqRhineI) 1017f2148a47SJeff Kirsher dev->features |= NETIF_F_SG|NETIF_F_HW_CSUM; 1018f2148a47SJeff Kirsher 1019f2148a47SJeff Kirsher if (pdev->revision >= VT6105M) 1020f2148a47SJeff Kirsher dev->features |= NETIF_F_HW_VLAN_TX | NETIF_F_HW_VLAN_RX | 1021f2148a47SJeff Kirsher NETIF_F_HW_VLAN_FILTER; 1022f2148a47SJeff Kirsher 1023f2148a47SJeff Kirsher /* dev->name not defined before register_netdev()! */ 1024f2148a47SJeff Kirsher rc = register_netdev(dev); 1025f2148a47SJeff Kirsher if (rc) 1026f2148a47SJeff Kirsher goto err_out_unmap; 1027f2148a47SJeff Kirsher 1028f2148a47SJeff Kirsher netdev_info(dev, "VIA %s at 0x%lx, %pM, IRQ %d\n", 1029f2148a47SJeff Kirsher name, 1030f2148a47SJeff Kirsher #ifdef USE_MMIO 1031f2148a47SJeff Kirsher memaddr, 1032f2148a47SJeff Kirsher #else 1033f2148a47SJeff Kirsher (long)ioaddr, 1034f2148a47SJeff Kirsher #endif 1035f2148a47SJeff Kirsher dev->dev_addr, pdev->irq); 1036f2148a47SJeff Kirsher 1037f2148a47SJeff Kirsher pci_set_drvdata(pdev, dev); 1038f2148a47SJeff Kirsher 1039f2148a47SJeff Kirsher { 1040f2148a47SJeff Kirsher u16 mii_cmd; 1041f2148a47SJeff Kirsher int mii_status = mdio_read(dev, phy_id, 1); 1042f2148a47SJeff Kirsher mii_cmd = mdio_read(dev, phy_id, MII_BMCR) & ~BMCR_ISOLATE; 1043f2148a47SJeff Kirsher mdio_write(dev, phy_id, MII_BMCR, mii_cmd); 1044f2148a47SJeff Kirsher if (mii_status != 0xffff && mii_status != 0x0000) { 1045f2148a47SJeff Kirsher rp->mii_if.advertising = mdio_read(dev, phy_id, 4); 1046f2148a47SJeff Kirsher netdev_info(dev, 1047f2148a47SJeff Kirsher "MII PHY found at address %d, status 0x%04x advertising %04x Link %04x\n", 1048f2148a47SJeff Kirsher phy_id, 1049f2148a47SJeff Kirsher mii_status, rp->mii_if.advertising, 1050f2148a47SJeff Kirsher mdio_read(dev, phy_id, 5)); 1051f2148a47SJeff Kirsher 1052f2148a47SJeff Kirsher /* set IFF_RUNNING */ 1053f2148a47SJeff Kirsher if (mii_status & BMSR_LSTATUS) 1054f2148a47SJeff Kirsher netif_carrier_on(dev); 1055f2148a47SJeff Kirsher else 1056f2148a47SJeff Kirsher netif_carrier_off(dev); 1057f2148a47SJeff Kirsher 1058f2148a47SJeff Kirsher } 1059f2148a47SJeff Kirsher } 1060f2148a47SJeff Kirsher rp->mii_if.phy_id = phy_id; 1061fc3e0f8aSFrancois Romieu if (avoid_D3) 1062fc3e0f8aSFrancois Romieu netif_info(rp, probe, dev, "No D3 power state at shutdown\n"); 1063f2148a47SJeff Kirsher 1064f2148a47SJeff Kirsher return 0; 1065f2148a47SJeff Kirsher 1066f2148a47SJeff Kirsher err_out_unmap: 1067f2148a47SJeff Kirsher pci_iounmap(pdev, ioaddr); 1068f2148a47SJeff Kirsher err_out_free_res: 1069f2148a47SJeff Kirsher pci_release_regions(pdev); 1070f2148a47SJeff Kirsher err_out_free_netdev: 1071f2148a47SJeff Kirsher free_netdev(dev); 1072f2148a47SJeff Kirsher err_out: 1073f2148a47SJeff Kirsher return rc; 1074f2148a47SJeff Kirsher } 1075f2148a47SJeff Kirsher 1076f2148a47SJeff Kirsher static int alloc_ring(struct net_device* dev) 1077f2148a47SJeff Kirsher { 1078f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1079f2148a47SJeff Kirsher void *ring; 1080f2148a47SJeff Kirsher dma_addr_t ring_dma; 1081f2148a47SJeff Kirsher 1082f2148a47SJeff Kirsher ring = pci_alloc_consistent(rp->pdev, 1083f2148a47SJeff Kirsher RX_RING_SIZE * sizeof(struct rx_desc) + 1084f2148a47SJeff Kirsher TX_RING_SIZE * sizeof(struct tx_desc), 1085f2148a47SJeff Kirsher &ring_dma); 1086f2148a47SJeff Kirsher if (!ring) { 1087f2148a47SJeff Kirsher netdev_err(dev, "Could not allocate DMA memory\n"); 1088f2148a47SJeff Kirsher return -ENOMEM; 1089f2148a47SJeff Kirsher } 1090f2148a47SJeff Kirsher if (rp->quirks & rqRhineI) { 1091f2148a47SJeff Kirsher rp->tx_bufs = pci_alloc_consistent(rp->pdev, 1092f2148a47SJeff Kirsher PKT_BUF_SZ * TX_RING_SIZE, 1093f2148a47SJeff Kirsher &rp->tx_bufs_dma); 1094f2148a47SJeff Kirsher if (rp->tx_bufs == NULL) { 1095f2148a47SJeff Kirsher pci_free_consistent(rp->pdev, 1096f2148a47SJeff Kirsher RX_RING_SIZE * sizeof(struct rx_desc) + 1097f2148a47SJeff Kirsher TX_RING_SIZE * sizeof(struct tx_desc), 1098f2148a47SJeff Kirsher ring, ring_dma); 1099f2148a47SJeff Kirsher return -ENOMEM; 1100f2148a47SJeff Kirsher } 1101f2148a47SJeff Kirsher } 1102f2148a47SJeff Kirsher 1103f2148a47SJeff Kirsher rp->rx_ring = ring; 1104f2148a47SJeff Kirsher rp->tx_ring = ring + RX_RING_SIZE * sizeof(struct rx_desc); 1105f2148a47SJeff Kirsher rp->rx_ring_dma = ring_dma; 1106f2148a47SJeff Kirsher rp->tx_ring_dma = ring_dma + RX_RING_SIZE * sizeof(struct rx_desc); 1107f2148a47SJeff Kirsher 1108f2148a47SJeff Kirsher return 0; 1109f2148a47SJeff Kirsher } 1110f2148a47SJeff Kirsher 1111f2148a47SJeff Kirsher static void free_ring(struct net_device* dev) 1112f2148a47SJeff Kirsher { 1113f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1114f2148a47SJeff Kirsher 1115f2148a47SJeff Kirsher pci_free_consistent(rp->pdev, 1116f2148a47SJeff Kirsher RX_RING_SIZE * sizeof(struct rx_desc) + 1117f2148a47SJeff Kirsher TX_RING_SIZE * sizeof(struct tx_desc), 1118f2148a47SJeff Kirsher rp->rx_ring, rp->rx_ring_dma); 1119f2148a47SJeff Kirsher rp->tx_ring = NULL; 1120f2148a47SJeff Kirsher 1121f2148a47SJeff Kirsher if (rp->tx_bufs) 1122f2148a47SJeff Kirsher pci_free_consistent(rp->pdev, PKT_BUF_SZ * TX_RING_SIZE, 1123f2148a47SJeff Kirsher rp->tx_bufs, rp->tx_bufs_dma); 1124f2148a47SJeff Kirsher 1125f2148a47SJeff Kirsher rp->tx_bufs = NULL; 1126f2148a47SJeff Kirsher 1127f2148a47SJeff Kirsher } 1128f2148a47SJeff Kirsher 1129f2148a47SJeff Kirsher static void alloc_rbufs(struct net_device *dev) 1130f2148a47SJeff Kirsher { 1131f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1132f2148a47SJeff Kirsher dma_addr_t next; 1133f2148a47SJeff Kirsher int i; 1134f2148a47SJeff Kirsher 1135f2148a47SJeff Kirsher rp->dirty_rx = rp->cur_rx = 0; 1136f2148a47SJeff Kirsher 1137f2148a47SJeff Kirsher rp->rx_buf_sz = (dev->mtu <= 1500 ? PKT_BUF_SZ : dev->mtu + 32); 1138f2148a47SJeff Kirsher rp->rx_head_desc = &rp->rx_ring[0]; 1139f2148a47SJeff Kirsher next = rp->rx_ring_dma; 1140f2148a47SJeff Kirsher 1141f2148a47SJeff Kirsher /* Init the ring entries */ 1142f2148a47SJeff Kirsher for (i = 0; i < RX_RING_SIZE; i++) { 1143f2148a47SJeff Kirsher rp->rx_ring[i].rx_status = 0; 1144f2148a47SJeff Kirsher rp->rx_ring[i].desc_length = cpu_to_le32(rp->rx_buf_sz); 1145f2148a47SJeff Kirsher next += sizeof(struct rx_desc); 1146f2148a47SJeff Kirsher rp->rx_ring[i].next_desc = cpu_to_le32(next); 1147f2148a47SJeff Kirsher rp->rx_skbuff[i] = NULL; 1148f2148a47SJeff Kirsher } 1149f2148a47SJeff Kirsher /* Mark the last entry as wrapping the ring. */ 1150f2148a47SJeff Kirsher rp->rx_ring[i-1].next_desc = cpu_to_le32(rp->rx_ring_dma); 1151f2148a47SJeff Kirsher 1152f2148a47SJeff Kirsher /* Fill in the Rx buffers. Handle allocation failure gracefully. */ 1153f2148a47SJeff Kirsher for (i = 0; i < RX_RING_SIZE; i++) { 1154f2148a47SJeff Kirsher struct sk_buff *skb = netdev_alloc_skb(dev, rp->rx_buf_sz); 1155f2148a47SJeff Kirsher rp->rx_skbuff[i] = skb; 1156f2148a47SJeff Kirsher if (skb == NULL) 1157f2148a47SJeff Kirsher break; 1158f2148a47SJeff Kirsher 1159f2148a47SJeff Kirsher rp->rx_skbuff_dma[i] = 1160f2148a47SJeff Kirsher pci_map_single(rp->pdev, skb->data, rp->rx_buf_sz, 1161f2148a47SJeff Kirsher PCI_DMA_FROMDEVICE); 1162f2148a47SJeff Kirsher 1163f2148a47SJeff Kirsher rp->rx_ring[i].addr = cpu_to_le32(rp->rx_skbuff_dma[i]); 1164f2148a47SJeff Kirsher rp->rx_ring[i].rx_status = cpu_to_le32(DescOwn); 1165f2148a47SJeff Kirsher } 1166f2148a47SJeff Kirsher rp->dirty_rx = (unsigned int)(i - RX_RING_SIZE); 1167f2148a47SJeff Kirsher } 1168f2148a47SJeff Kirsher 1169f2148a47SJeff Kirsher static void free_rbufs(struct net_device* dev) 1170f2148a47SJeff Kirsher { 1171f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1172f2148a47SJeff Kirsher int i; 1173f2148a47SJeff Kirsher 1174f2148a47SJeff Kirsher /* Free all the skbuffs in the Rx queue. */ 1175f2148a47SJeff Kirsher for (i = 0; i < RX_RING_SIZE; i++) { 1176f2148a47SJeff Kirsher rp->rx_ring[i].rx_status = 0; 1177f2148a47SJeff Kirsher rp->rx_ring[i].addr = cpu_to_le32(0xBADF00D0); /* An invalid address. */ 1178f2148a47SJeff Kirsher if (rp->rx_skbuff[i]) { 1179f2148a47SJeff Kirsher pci_unmap_single(rp->pdev, 1180f2148a47SJeff Kirsher rp->rx_skbuff_dma[i], 1181f2148a47SJeff Kirsher rp->rx_buf_sz, PCI_DMA_FROMDEVICE); 1182f2148a47SJeff Kirsher dev_kfree_skb(rp->rx_skbuff[i]); 1183f2148a47SJeff Kirsher } 1184f2148a47SJeff Kirsher rp->rx_skbuff[i] = NULL; 1185f2148a47SJeff Kirsher } 1186f2148a47SJeff Kirsher } 1187f2148a47SJeff Kirsher 1188f2148a47SJeff Kirsher static void alloc_tbufs(struct net_device* dev) 1189f2148a47SJeff Kirsher { 1190f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1191f2148a47SJeff Kirsher dma_addr_t next; 1192f2148a47SJeff Kirsher int i; 1193f2148a47SJeff Kirsher 1194f2148a47SJeff Kirsher rp->dirty_tx = rp->cur_tx = 0; 1195f2148a47SJeff Kirsher next = rp->tx_ring_dma; 1196f2148a47SJeff Kirsher for (i = 0; i < TX_RING_SIZE; i++) { 1197f2148a47SJeff Kirsher rp->tx_skbuff[i] = NULL; 1198f2148a47SJeff Kirsher rp->tx_ring[i].tx_status = 0; 1199f2148a47SJeff Kirsher rp->tx_ring[i].desc_length = cpu_to_le32(TXDESC); 1200f2148a47SJeff Kirsher next += sizeof(struct tx_desc); 1201f2148a47SJeff Kirsher rp->tx_ring[i].next_desc = cpu_to_le32(next); 1202f2148a47SJeff Kirsher if (rp->quirks & rqRhineI) 1203f2148a47SJeff Kirsher rp->tx_buf[i] = &rp->tx_bufs[i * PKT_BUF_SZ]; 1204f2148a47SJeff Kirsher } 1205f2148a47SJeff Kirsher rp->tx_ring[i-1].next_desc = cpu_to_le32(rp->tx_ring_dma); 1206f2148a47SJeff Kirsher 1207f2148a47SJeff Kirsher } 1208f2148a47SJeff Kirsher 1209f2148a47SJeff Kirsher static void free_tbufs(struct net_device* dev) 1210f2148a47SJeff Kirsher { 1211f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1212f2148a47SJeff Kirsher int i; 1213f2148a47SJeff Kirsher 1214f2148a47SJeff Kirsher for (i = 0; i < TX_RING_SIZE; i++) { 1215f2148a47SJeff Kirsher rp->tx_ring[i].tx_status = 0; 1216f2148a47SJeff Kirsher rp->tx_ring[i].desc_length = cpu_to_le32(TXDESC); 1217f2148a47SJeff Kirsher rp->tx_ring[i].addr = cpu_to_le32(0xBADF00D0); /* An invalid address. */ 1218f2148a47SJeff Kirsher if (rp->tx_skbuff[i]) { 1219f2148a47SJeff Kirsher if (rp->tx_skbuff_dma[i]) { 1220f2148a47SJeff Kirsher pci_unmap_single(rp->pdev, 1221f2148a47SJeff Kirsher rp->tx_skbuff_dma[i], 1222f2148a47SJeff Kirsher rp->tx_skbuff[i]->len, 1223f2148a47SJeff Kirsher PCI_DMA_TODEVICE); 1224f2148a47SJeff Kirsher } 1225f2148a47SJeff Kirsher dev_kfree_skb(rp->tx_skbuff[i]); 1226f2148a47SJeff Kirsher } 1227f2148a47SJeff Kirsher rp->tx_skbuff[i] = NULL; 1228f2148a47SJeff Kirsher rp->tx_buf[i] = NULL; 1229f2148a47SJeff Kirsher } 1230f2148a47SJeff Kirsher } 1231f2148a47SJeff Kirsher 1232f2148a47SJeff Kirsher static void rhine_check_media(struct net_device *dev, unsigned int init_media) 1233f2148a47SJeff Kirsher { 1234f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1235f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 1236f2148a47SJeff Kirsher 1237fc3e0f8aSFrancois Romieu mii_check_media(&rp->mii_if, netif_msg_link(rp), init_media); 1238f2148a47SJeff Kirsher 1239f2148a47SJeff Kirsher if (rp->mii_if.full_duplex) 1240f2148a47SJeff Kirsher iowrite8(ioread8(ioaddr + ChipCmd1) | Cmd1FDuplex, 1241f2148a47SJeff Kirsher ioaddr + ChipCmd1); 1242f2148a47SJeff Kirsher else 1243f2148a47SJeff Kirsher iowrite8(ioread8(ioaddr + ChipCmd1) & ~Cmd1FDuplex, 1244f2148a47SJeff Kirsher ioaddr + ChipCmd1); 1245fc3e0f8aSFrancois Romieu 1246fc3e0f8aSFrancois Romieu netif_info(rp, link, dev, "force_media %d, carrier %d\n", 1247f2148a47SJeff Kirsher rp->mii_if.force_media, netif_carrier_ok(dev)); 1248f2148a47SJeff Kirsher } 1249f2148a47SJeff Kirsher 1250f2148a47SJeff Kirsher /* Called after status of force_media possibly changed */ 1251f2148a47SJeff Kirsher static void rhine_set_carrier(struct mii_if_info *mii) 1252f2148a47SJeff Kirsher { 1253fc3e0f8aSFrancois Romieu struct net_device *dev = mii->dev; 1254fc3e0f8aSFrancois Romieu struct rhine_private *rp = netdev_priv(dev); 1255fc3e0f8aSFrancois Romieu 1256f2148a47SJeff Kirsher if (mii->force_media) { 1257f2148a47SJeff Kirsher /* autoneg is off: Link is always assumed to be up */ 1258fc3e0f8aSFrancois Romieu if (!netif_carrier_ok(dev)) 1259fc3e0f8aSFrancois Romieu netif_carrier_on(dev); 1260fc3e0f8aSFrancois Romieu } else /* Let MMI library update carrier status */ 1261fc3e0f8aSFrancois Romieu rhine_check_media(dev, 0); 1262fc3e0f8aSFrancois Romieu 1263fc3e0f8aSFrancois Romieu netif_info(rp, link, dev, "force_media %d, carrier %d\n", 1264fc3e0f8aSFrancois Romieu mii->force_media, netif_carrier_ok(dev)); 1265f2148a47SJeff Kirsher } 1266f2148a47SJeff Kirsher 1267f2148a47SJeff Kirsher /** 1268f2148a47SJeff Kirsher * rhine_set_cam - set CAM multicast filters 1269f2148a47SJeff Kirsher * @ioaddr: register block of this Rhine 1270f2148a47SJeff Kirsher * @idx: multicast CAM index [0..MCAM_SIZE-1] 1271f2148a47SJeff Kirsher * @addr: multicast address (6 bytes) 1272f2148a47SJeff Kirsher * 1273f2148a47SJeff Kirsher * Load addresses into multicast filters. 1274f2148a47SJeff Kirsher */ 1275f2148a47SJeff Kirsher static void rhine_set_cam(void __iomem *ioaddr, int idx, u8 *addr) 1276f2148a47SJeff Kirsher { 1277f2148a47SJeff Kirsher int i; 1278f2148a47SJeff Kirsher 1279f2148a47SJeff Kirsher iowrite8(CAMC_CAMEN, ioaddr + CamCon); 1280f2148a47SJeff Kirsher wmb(); 1281f2148a47SJeff Kirsher 1282f2148a47SJeff Kirsher /* Paranoid -- idx out of range should never happen */ 1283f2148a47SJeff Kirsher idx &= (MCAM_SIZE - 1); 1284f2148a47SJeff Kirsher 1285f2148a47SJeff Kirsher iowrite8((u8) idx, ioaddr + CamAddr); 1286f2148a47SJeff Kirsher 1287f2148a47SJeff Kirsher for (i = 0; i < 6; i++, addr++) 1288f2148a47SJeff Kirsher iowrite8(*addr, ioaddr + MulticastFilter0 + i); 1289f2148a47SJeff Kirsher udelay(10); 1290f2148a47SJeff Kirsher wmb(); 1291f2148a47SJeff Kirsher 1292f2148a47SJeff Kirsher iowrite8(CAMC_CAMWR | CAMC_CAMEN, ioaddr + CamCon); 1293f2148a47SJeff Kirsher udelay(10); 1294f2148a47SJeff Kirsher 1295f2148a47SJeff Kirsher iowrite8(0, ioaddr + CamCon); 1296f2148a47SJeff Kirsher } 1297f2148a47SJeff Kirsher 1298f2148a47SJeff Kirsher /** 1299f2148a47SJeff Kirsher * rhine_set_vlan_cam - set CAM VLAN filters 1300f2148a47SJeff Kirsher * @ioaddr: register block of this Rhine 1301f2148a47SJeff Kirsher * @idx: VLAN CAM index [0..VCAM_SIZE-1] 1302f2148a47SJeff Kirsher * @addr: VLAN ID (2 bytes) 1303f2148a47SJeff Kirsher * 1304f2148a47SJeff Kirsher * Load addresses into VLAN filters. 1305f2148a47SJeff Kirsher */ 1306f2148a47SJeff Kirsher static void rhine_set_vlan_cam(void __iomem *ioaddr, int idx, u8 *addr) 1307f2148a47SJeff Kirsher { 1308f2148a47SJeff Kirsher iowrite8(CAMC_CAMEN | CAMC_VCAMSL, ioaddr + CamCon); 1309f2148a47SJeff Kirsher wmb(); 1310f2148a47SJeff Kirsher 1311f2148a47SJeff Kirsher /* Paranoid -- idx out of range should never happen */ 1312f2148a47SJeff Kirsher idx &= (VCAM_SIZE - 1); 1313f2148a47SJeff Kirsher 1314f2148a47SJeff Kirsher iowrite8((u8) idx, ioaddr + CamAddr); 1315f2148a47SJeff Kirsher 1316f2148a47SJeff Kirsher iowrite16(*((u16 *) addr), ioaddr + MulticastFilter0 + 6); 1317f2148a47SJeff Kirsher udelay(10); 1318f2148a47SJeff Kirsher wmb(); 1319f2148a47SJeff Kirsher 1320f2148a47SJeff Kirsher iowrite8(CAMC_CAMWR | CAMC_CAMEN, ioaddr + CamCon); 1321f2148a47SJeff Kirsher udelay(10); 1322f2148a47SJeff Kirsher 1323f2148a47SJeff Kirsher iowrite8(0, ioaddr + CamCon); 1324f2148a47SJeff Kirsher } 1325f2148a47SJeff Kirsher 1326f2148a47SJeff Kirsher /** 1327f2148a47SJeff Kirsher * rhine_set_cam_mask - set multicast CAM mask 1328f2148a47SJeff Kirsher * @ioaddr: register block of this Rhine 1329f2148a47SJeff Kirsher * @mask: multicast CAM mask 1330f2148a47SJeff Kirsher * 1331f2148a47SJeff Kirsher * Mask sets multicast filters active/inactive. 1332f2148a47SJeff Kirsher */ 1333f2148a47SJeff Kirsher static void rhine_set_cam_mask(void __iomem *ioaddr, u32 mask) 1334f2148a47SJeff Kirsher { 1335f2148a47SJeff Kirsher iowrite8(CAMC_CAMEN, ioaddr + CamCon); 1336f2148a47SJeff Kirsher wmb(); 1337f2148a47SJeff Kirsher 1338f2148a47SJeff Kirsher /* write mask */ 1339f2148a47SJeff Kirsher iowrite32(mask, ioaddr + CamMask); 1340f2148a47SJeff Kirsher 1341f2148a47SJeff Kirsher /* disable CAMEN */ 1342f2148a47SJeff Kirsher iowrite8(0, ioaddr + CamCon); 1343f2148a47SJeff Kirsher } 1344f2148a47SJeff Kirsher 1345f2148a47SJeff Kirsher /** 1346f2148a47SJeff Kirsher * rhine_set_vlan_cam_mask - set VLAN CAM mask 1347f2148a47SJeff Kirsher * @ioaddr: register block of this Rhine 1348f2148a47SJeff Kirsher * @mask: VLAN CAM mask 1349f2148a47SJeff Kirsher * 1350f2148a47SJeff Kirsher * Mask sets VLAN filters active/inactive. 1351f2148a47SJeff Kirsher */ 1352f2148a47SJeff Kirsher static void rhine_set_vlan_cam_mask(void __iomem *ioaddr, u32 mask) 1353f2148a47SJeff Kirsher { 1354f2148a47SJeff Kirsher iowrite8(CAMC_CAMEN | CAMC_VCAMSL, ioaddr + CamCon); 1355f2148a47SJeff Kirsher wmb(); 1356f2148a47SJeff Kirsher 1357f2148a47SJeff Kirsher /* write mask */ 1358f2148a47SJeff Kirsher iowrite32(mask, ioaddr + CamMask); 1359f2148a47SJeff Kirsher 1360f2148a47SJeff Kirsher /* disable CAMEN */ 1361f2148a47SJeff Kirsher iowrite8(0, ioaddr + CamCon); 1362f2148a47SJeff Kirsher } 1363f2148a47SJeff Kirsher 1364f2148a47SJeff Kirsher /** 1365f2148a47SJeff Kirsher * rhine_init_cam_filter - initialize CAM filters 1366f2148a47SJeff Kirsher * @dev: network device 1367f2148a47SJeff Kirsher * 1368f2148a47SJeff Kirsher * Initialize (disable) hardware VLAN and multicast support on this 1369f2148a47SJeff Kirsher * Rhine. 1370f2148a47SJeff Kirsher */ 1371f2148a47SJeff Kirsher static void rhine_init_cam_filter(struct net_device *dev) 1372f2148a47SJeff Kirsher { 1373f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1374f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 1375f2148a47SJeff Kirsher 1376f2148a47SJeff Kirsher /* Disable all CAMs */ 1377f2148a47SJeff Kirsher rhine_set_vlan_cam_mask(ioaddr, 0); 1378f2148a47SJeff Kirsher rhine_set_cam_mask(ioaddr, 0); 1379f2148a47SJeff Kirsher 1380f2148a47SJeff Kirsher /* disable hardware VLAN support */ 1381f2148a47SJeff Kirsher BYTE_REG_BITS_ON(TCR_PQEN, ioaddr + TxConfig); 1382f2148a47SJeff Kirsher BYTE_REG_BITS_OFF(BCR1_VIDFR, ioaddr + PCIBusConfig1); 1383f2148a47SJeff Kirsher } 1384f2148a47SJeff Kirsher 1385f2148a47SJeff Kirsher /** 1386f2148a47SJeff Kirsher * rhine_update_vcam - update VLAN CAM filters 1387f2148a47SJeff Kirsher * @rp: rhine_private data of this Rhine 1388f2148a47SJeff Kirsher * 1389f2148a47SJeff Kirsher * Update VLAN CAM filters to match configuration change. 1390f2148a47SJeff Kirsher */ 1391f2148a47SJeff Kirsher static void rhine_update_vcam(struct net_device *dev) 1392f2148a47SJeff Kirsher { 1393f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1394f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 1395f2148a47SJeff Kirsher u16 vid; 1396f2148a47SJeff Kirsher u32 vCAMmask = 0; /* 32 vCAMs (6105M and better) */ 1397f2148a47SJeff Kirsher unsigned int i = 0; 1398f2148a47SJeff Kirsher 1399f2148a47SJeff Kirsher for_each_set_bit(vid, rp->active_vlans, VLAN_N_VID) { 1400f2148a47SJeff Kirsher rhine_set_vlan_cam(ioaddr, i, (u8 *)&vid); 1401f2148a47SJeff Kirsher vCAMmask |= 1 << i; 1402f2148a47SJeff Kirsher if (++i >= VCAM_SIZE) 1403f2148a47SJeff Kirsher break; 1404f2148a47SJeff Kirsher } 1405f2148a47SJeff Kirsher rhine_set_vlan_cam_mask(ioaddr, vCAMmask); 1406f2148a47SJeff Kirsher } 1407f2148a47SJeff Kirsher 14088e586137SJiri Pirko static int rhine_vlan_rx_add_vid(struct net_device *dev, unsigned short vid) 1409f2148a47SJeff Kirsher { 1410f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1411f2148a47SJeff Kirsher 14127ab87ff4SFrancois Romieu spin_lock_bh(&rp->lock); 1413f2148a47SJeff Kirsher set_bit(vid, rp->active_vlans); 1414f2148a47SJeff Kirsher rhine_update_vcam(dev); 14157ab87ff4SFrancois Romieu spin_unlock_bh(&rp->lock); 14168e586137SJiri Pirko return 0; 1417f2148a47SJeff Kirsher } 1418f2148a47SJeff Kirsher 14198e586137SJiri Pirko static int rhine_vlan_rx_kill_vid(struct net_device *dev, unsigned short vid) 1420f2148a47SJeff Kirsher { 1421f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1422f2148a47SJeff Kirsher 14237ab87ff4SFrancois Romieu spin_lock_bh(&rp->lock); 1424f2148a47SJeff Kirsher clear_bit(vid, rp->active_vlans); 1425f2148a47SJeff Kirsher rhine_update_vcam(dev); 14267ab87ff4SFrancois Romieu spin_unlock_bh(&rp->lock); 14278e586137SJiri Pirko return 0; 1428f2148a47SJeff Kirsher } 1429f2148a47SJeff Kirsher 1430f2148a47SJeff Kirsher static void init_registers(struct net_device *dev) 1431f2148a47SJeff Kirsher { 1432f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1433f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 1434f2148a47SJeff Kirsher int i; 1435f2148a47SJeff Kirsher 1436f2148a47SJeff Kirsher for (i = 0; i < 6; i++) 1437f2148a47SJeff Kirsher iowrite8(dev->dev_addr[i], ioaddr + StationAddr + i); 1438f2148a47SJeff Kirsher 1439f2148a47SJeff Kirsher /* Initialize other registers. */ 1440f2148a47SJeff Kirsher iowrite16(0x0006, ioaddr + PCIBusConfig); /* Tune configuration??? */ 1441f2148a47SJeff Kirsher /* Configure initial FIFO thresholds. */ 1442f2148a47SJeff Kirsher iowrite8(0x20, ioaddr + TxConfig); 1443f2148a47SJeff Kirsher rp->tx_thresh = 0x20; 1444f2148a47SJeff Kirsher rp->rx_thresh = 0x60; /* Written in rhine_set_rx_mode(). */ 1445f2148a47SJeff Kirsher 1446f2148a47SJeff Kirsher iowrite32(rp->rx_ring_dma, ioaddr + RxRingPtr); 1447f2148a47SJeff Kirsher iowrite32(rp->tx_ring_dma, ioaddr + TxRingPtr); 1448f2148a47SJeff Kirsher 1449f2148a47SJeff Kirsher rhine_set_rx_mode(dev); 1450f2148a47SJeff Kirsher 1451f2148a47SJeff Kirsher if (rp->pdev->revision >= VT6105M) 1452f2148a47SJeff Kirsher rhine_init_cam_filter(dev); 1453f2148a47SJeff Kirsher 1454f2148a47SJeff Kirsher napi_enable(&rp->napi); 1455f2148a47SJeff Kirsher 14567ab87ff4SFrancois Romieu iowrite16(RHINE_EVENT & 0xffff, ioaddr + IntrEnable); 1457f2148a47SJeff Kirsher 1458f2148a47SJeff Kirsher iowrite16(CmdStart | CmdTxOn | CmdRxOn | (Cmd1NoTxPoll << 8), 1459f2148a47SJeff Kirsher ioaddr + ChipCmd); 1460f2148a47SJeff Kirsher rhine_check_media(dev, 1); 1461f2148a47SJeff Kirsher } 1462f2148a47SJeff Kirsher 1463f2148a47SJeff Kirsher /* Enable MII link status auto-polling (required for IntrLinkChange) */ 1464a384a33bSFrancois Romieu static void rhine_enable_linkmon(struct rhine_private *rp) 1465f2148a47SJeff Kirsher { 1466a384a33bSFrancois Romieu void __iomem *ioaddr = rp->base; 1467a384a33bSFrancois Romieu 1468f2148a47SJeff Kirsher iowrite8(0, ioaddr + MIICmd); 1469f2148a47SJeff Kirsher iowrite8(MII_BMSR, ioaddr + MIIRegAddr); 1470f2148a47SJeff Kirsher iowrite8(0x80, ioaddr + MIICmd); 1471f2148a47SJeff Kirsher 1472a384a33bSFrancois Romieu rhine_wait_bit_high(rp, MIIRegAddr, 0x20); 1473f2148a47SJeff Kirsher 1474f2148a47SJeff Kirsher iowrite8(MII_BMSR | 0x40, ioaddr + MIIRegAddr); 1475f2148a47SJeff Kirsher } 1476f2148a47SJeff Kirsher 1477f2148a47SJeff Kirsher /* Disable MII link status auto-polling (required for MDIO access) */ 1478a384a33bSFrancois Romieu static void rhine_disable_linkmon(struct rhine_private *rp) 1479f2148a47SJeff Kirsher { 1480a384a33bSFrancois Romieu void __iomem *ioaddr = rp->base; 1481a384a33bSFrancois Romieu 1482f2148a47SJeff Kirsher iowrite8(0, ioaddr + MIICmd); 1483f2148a47SJeff Kirsher 1484a384a33bSFrancois Romieu if (rp->quirks & rqRhineI) { 1485f2148a47SJeff Kirsher iowrite8(0x01, ioaddr + MIIRegAddr); // MII_BMSR 1486f2148a47SJeff Kirsher 1487f2148a47SJeff Kirsher /* Can be called from ISR. Evil. */ 1488f2148a47SJeff Kirsher mdelay(1); 1489f2148a47SJeff Kirsher 1490f2148a47SJeff Kirsher /* 0x80 must be set immediately before turning it off */ 1491f2148a47SJeff Kirsher iowrite8(0x80, ioaddr + MIICmd); 1492f2148a47SJeff Kirsher 1493a384a33bSFrancois Romieu rhine_wait_bit_high(rp, MIIRegAddr, 0x20); 1494f2148a47SJeff Kirsher 1495f2148a47SJeff Kirsher /* Heh. Now clear 0x80 again. */ 1496f2148a47SJeff Kirsher iowrite8(0, ioaddr + MIICmd); 1497f2148a47SJeff Kirsher } 1498f2148a47SJeff Kirsher else 1499a384a33bSFrancois Romieu rhine_wait_bit_high(rp, MIIRegAddr, 0x80); 1500f2148a47SJeff Kirsher } 1501f2148a47SJeff Kirsher 1502f2148a47SJeff Kirsher /* Read and write over the MII Management Data I/O (MDIO) interface. */ 1503f2148a47SJeff Kirsher 1504f2148a47SJeff Kirsher static int mdio_read(struct net_device *dev, int phy_id, int regnum) 1505f2148a47SJeff Kirsher { 1506f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1507f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 1508f2148a47SJeff Kirsher int result; 1509f2148a47SJeff Kirsher 1510a384a33bSFrancois Romieu rhine_disable_linkmon(rp); 1511f2148a47SJeff Kirsher 1512f2148a47SJeff Kirsher /* rhine_disable_linkmon already cleared MIICmd */ 1513f2148a47SJeff Kirsher iowrite8(phy_id, ioaddr + MIIPhyAddr); 1514f2148a47SJeff Kirsher iowrite8(regnum, ioaddr + MIIRegAddr); 1515f2148a47SJeff Kirsher iowrite8(0x40, ioaddr + MIICmd); /* Trigger read */ 1516a384a33bSFrancois Romieu rhine_wait_bit_low(rp, MIICmd, 0x40); 1517f2148a47SJeff Kirsher result = ioread16(ioaddr + MIIData); 1518f2148a47SJeff Kirsher 1519a384a33bSFrancois Romieu rhine_enable_linkmon(rp); 1520f2148a47SJeff Kirsher return result; 1521f2148a47SJeff Kirsher } 1522f2148a47SJeff Kirsher 1523f2148a47SJeff Kirsher static void mdio_write(struct net_device *dev, int phy_id, int regnum, int value) 1524f2148a47SJeff Kirsher { 1525f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1526f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 1527f2148a47SJeff Kirsher 1528a384a33bSFrancois Romieu rhine_disable_linkmon(rp); 1529f2148a47SJeff Kirsher 1530f2148a47SJeff Kirsher /* rhine_disable_linkmon already cleared MIICmd */ 1531f2148a47SJeff Kirsher iowrite8(phy_id, ioaddr + MIIPhyAddr); 1532f2148a47SJeff Kirsher iowrite8(regnum, ioaddr + MIIRegAddr); 1533f2148a47SJeff Kirsher iowrite16(value, ioaddr + MIIData); 1534f2148a47SJeff Kirsher iowrite8(0x20, ioaddr + MIICmd); /* Trigger write */ 1535a384a33bSFrancois Romieu rhine_wait_bit_low(rp, MIICmd, 0x20); 1536f2148a47SJeff Kirsher 1537a384a33bSFrancois Romieu rhine_enable_linkmon(rp); 1538f2148a47SJeff Kirsher } 1539f2148a47SJeff Kirsher 15407ab87ff4SFrancois Romieu static void rhine_task_disable(struct rhine_private *rp) 15417ab87ff4SFrancois Romieu { 15427ab87ff4SFrancois Romieu mutex_lock(&rp->task_lock); 15437ab87ff4SFrancois Romieu rp->task_enable = false; 15447ab87ff4SFrancois Romieu mutex_unlock(&rp->task_lock); 15457ab87ff4SFrancois Romieu 15467ab87ff4SFrancois Romieu cancel_work_sync(&rp->slow_event_task); 15477ab87ff4SFrancois Romieu cancel_work_sync(&rp->reset_task); 15487ab87ff4SFrancois Romieu } 15497ab87ff4SFrancois Romieu 15507ab87ff4SFrancois Romieu static void rhine_task_enable(struct rhine_private *rp) 15517ab87ff4SFrancois Romieu { 15527ab87ff4SFrancois Romieu mutex_lock(&rp->task_lock); 15537ab87ff4SFrancois Romieu rp->task_enable = true; 15547ab87ff4SFrancois Romieu mutex_unlock(&rp->task_lock); 15557ab87ff4SFrancois Romieu } 15567ab87ff4SFrancois Romieu 1557f2148a47SJeff Kirsher static int rhine_open(struct net_device *dev) 1558f2148a47SJeff Kirsher { 1559f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1560f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 1561f2148a47SJeff Kirsher int rc; 1562f2148a47SJeff Kirsher 1563f2148a47SJeff Kirsher rc = request_irq(rp->pdev->irq, rhine_interrupt, IRQF_SHARED, dev->name, 1564f2148a47SJeff Kirsher dev); 1565f2148a47SJeff Kirsher if (rc) 1566f2148a47SJeff Kirsher return rc; 1567f2148a47SJeff Kirsher 1568fc3e0f8aSFrancois Romieu netif_dbg(rp, ifup, dev, "%s() irq %d\n", __func__, rp->pdev->irq); 1569f2148a47SJeff Kirsher 1570f2148a47SJeff Kirsher rc = alloc_ring(dev); 1571f2148a47SJeff Kirsher if (rc) { 1572f2148a47SJeff Kirsher free_irq(rp->pdev->irq, dev); 1573f2148a47SJeff Kirsher return rc; 1574f2148a47SJeff Kirsher } 1575f2148a47SJeff Kirsher alloc_rbufs(dev); 1576f2148a47SJeff Kirsher alloc_tbufs(dev); 1577f2148a47SJeff Kirsher rhine_chip_reset(dev); 15787ab87ff4SFrancois Romieu rhine_task_enable(rp); 1579f2148a47SJeff Kirsher init_registers(dev); 1580fc3e0f8aSFrancois Romieu 1581fc3e0f8aSFrancois Romieu netif_dbg(rp, ifup, dev, "%s() Done - status %04x MII status: %04x\n", 1582f2148a47SJeff Kirsher __func__, ioread16(ioaddr + ChipCmd), 1583f2148a47SJeff Kirsher mdio_read(dev, rp->mii_if.phy_id, MII_BMSR)); 1584f2148a47SJeff Kirsher 1585f2148a47SJeff Kirsher netif_start_queue(dev); 1586f2148a47SJeff Kirsher 1587f2148a47SJeff Kirsher return 0; 1588f2148a47SJeff Kirsher } 1589f2148a47SJeff Kirsher 1590f2148a47SJeff Kirsher static void rhine_reset_task(struct work_struct *work) 1591f2148a47SJeff Kirsher { 1592f2148a47SJeff Kirsher struct rhine_private *rp = container_of(work, struct rhine_private, 1593f2148a47SJeff Kirsher reset_task); 1594f2148a47SJeff Kirsher struct net_device *dev = rp->dev; 1595f2148a47SJeff Kirsher 15967ab87ff4SFrancois Romieu mutex_lock(&rp->task_lock); 15977ab87ff4SFrancois Romieu 15987ab87ff4SFrancois Romieu if (!rp->task_enable) 15997ab87ff4SFrancois Romieu goto out_unlock; 1600f2148a47SJeff Kirsher 1601f2148a47SJeff Kirsher napi_disable(&rp->napi); 1602f2148a47SJeff Kirsher spin_lock_bh(&rp->lock); 1603f2148a47SJeff Kirsher 1604f2148a47SJeff Kirsher /* clear all descriptors */ 1605f2148a47SJeff Kirsher free_tbufs(dev); 1606f2148a47SJeff Kirsher free_rbufs(dev); 1607f2148a47SJeff Kirsher alloc_tbufs(dev); 1608f2148a47SJeff Kirsher alloc_rbufs(dev); 1609f2148a47SJeff Kirsher 1610f2148a47SJeff Kirsher /* Reinitialize the hardware. */ 1611f2148a47SJeff Kirsher rhine_chip_reset(dev); 1612f2148a47SJeff Kirsher init_registers(dev); 1613f2148a47SJeff Kirsher 1614f2148a47SJeff Kirsher spin_unlock_bh(&rp->lock); 1615f2148a47SJeff Kirsher 1616f2148a47SJeff Kirsher dev->trans_start = jiffies; /* prevent tx timeout */ 1617f2148a47SJeff Kirsher dev->stats.tx_errors++; 1618f2148a47SJeff Kirsher netif_wake_queue(dev); 16197ab87ff4SFrancois Romieu 16207ab87ff4SFrancois Romieu out_unlock: 16217ab87ff4SFrancois Romieu mutex_unlock(&rp->task_lock); 1622f2148a47SJeff Kirsher } 1623f2148a47SJeff Kirsher 1624f2148a47SJeff Kirsher static void rhine_tx_timeout(struct net_device *dev) 1625f2148a47SJeff Kirsher { 1626f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1627f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 1628f2148a47SJeff Kirsher 1629f2148a47SJeff Kirsher netdev_warn(dev, "Transmit timed out, status %04x, PHY status %04x, resetting...\n", 1630f2148a47SJeff Kirsher ioread16(ioaddr + IntrStatus), 1631f2148a47SJeff Kirsher mdio_read(dev, rp->mii_if.phy_id, MII_BMSR)); 1632f2148a47SJeff Kirsher 1633f2148a47SJeff Kirsher schedule_work(&rp->reset_task); 1634f2148a47SJeff Kirsher } 1635f2148a47SJeff Kirsher 1636f2148a47SJeff Kirsher static netdev_tx_t rhine_start_tx(struct sk_buff *skb, 1637f2148a47SJeff Kirsher struct net_device *dev) 1638f2148a47SJeff Kirsher { 1639f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1640f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 1641f2148a47SJeff Kirsher unsigned entry; 1642f2148a47SJeff Kirsher 1643f2148a47SJeff Kirsher /* Caution: the write order is important here, set the field 1644f2148a47SJeff Kirsher with the "ownership" bits last. */ 1645f2148a47SJeff Kirsher 1646f2148a47SJeff Kirsher /* Calculate the next Tx descriptor entry. */ 1647f2148a47SJeff Kirsher entry = rp->cur_tx % TX_RING_SIZE; 1648f2148a47SJeff Kirsher 1649f2148a47SJeff Kirsher if (skb_padto(skb, ETH_ZLEN)) 1650f2148a47SJeff Kirsher return NETDEV_TX_OK; 1651f2148a47SJeff Kirsher 1652f2148a47SJeff Kirsher rp->tx_skbuff[entry] = skb; 1653f2148a47SJeff Kirsher 1654f2148a47SJeff Kirsher if ((rp->quirks & rqRhineI) && 1655f2148a47SJeff Kirsher (((unsigned long)skb->data & 3) || skb_shinfo(skb)->nr_frags != 0 || skb->ip_summed == CHECKSUM_PARTIAL)) { 1656f2148a47SJeff Kirsher /* Must use alignment buffer. */ 1657f2148a47SJeff Kirsher if (skb->len > PKT_BUF_SZ) { 1658f2148a47SJeff Kirsher /* packet too long, drop it */ 1659f2148a47SJeff Kirsher dev_kfree_skb(skb); 1660f2148a47SJeff Kirsher rp->tx_skbuff[entry] = NULL; 1661f2148a47SJeff Kirsher dev->stats.tx_dropped++; 1662f2148a47SJeff Kirsher return NETDEV_TX_OK; 1663f2148a47SJeff Kirsher } 1664f2148a47SJeff Kirsher 1665f2148a47SJeff Kirsher /* Padding is not copied and so must be redone. */ 1666f2148a47SJeff Kirsher skb_copy_and_csum_dev(skb, rp->tx_buf[entry]); 1667f2148a47SJeff Kirsher if (skb->len < ETH_ZLEN) 1668f2148a47SJeff Kirsher memset(rp->tx_buf[entry] + skb->len, 0, 1669f2148a47SJeff Kirsher ETH_ZLEN - skb->len); 1670f2148a47SJeff Kirsher rp->tx_skbuff_dma[entry] = 0; 1671f2148a47SJeff Kirsher rp->tx_ring[entry].addr = cpu_to_le32(rp->tx_bufs_dma + 1672f2148a47SJeff Kirsher (rp->tx_buf[entry] - 1673f2148a47SJeff Kirsher rp->tx_bufs)); 1674f2148a47SJeff Kirsher } else { 1675f2148a47SJeff Kirsher rp->tx_skbuff_dma[entry] = 1676f2148a47SJeff Kirsher pci_map_single(rp->pdev, skb->data, skb->len, 1677f2148a47SJeff Kirsher PCI_DMA_TODEVICE); 1678f2148a47SJeff Kirsher rp->tx_ring[entry].addr = cpu_to_le32(rp->tx_skbuff_dma[entry]); 1679f2148a47SJeff Kirsher } 1680f2148a47SJeff Kirsher 1681f2148a47SJeff Kirsher rp->tx_ring[entry].desc_length = 1682f2148a47SJeff Kirsher cpu_to_le32(TXDESC | (skb->len >= ETH_ZLEN ? skb->len : ETH_ZLEN)); 1683f2148a47SJeff Kirsher 1684f2148a47SJeff Kirsher if (unlikely(vlan_tx_tag_present(skb))) { 1685f2148a47SJeff Kirsher rp->tx_ring[entry].tx_status = cpu_to_le32((vlan_tx_tag_get(skb)) << 16); 1686f2148a47SJeff Kirsher /* request tagging */ 1687f2148a47SJeff Kirsher rp->tx_ring[entry].desc_length |= cpu_to_le32(0x020000); 1688f2148a47SJeff Kirsher } 1689f2148a47SJeff Kirsher else 1690f2148a47SJeff Kirsher rp->tx_ring[entry].tx_status = 0; 1691f2148a47SJeff Kirsher 1692f2148a47SJeff Kirsher /* lock eth irq */ 1693f2148a47SJeff Kirsher wmb(); 1694f2148a47SJeff Kirsher rp->tx_ring[entry].tx_status |= cpu_to_le32(DescOwn); 1695f2148a47SJeff Kirsher wmb(); 1696f2148a47SJeff Kirsher 1697f2148a47SJeff Kirsher rp->cur_tx++; 1698f2148a47SJeff Kirsher 1699f2148a47SJeff Kirsher /* Non-x86 Todo: explicitly flush cache lines here. */ 1700f2148a47SJeff Kirsher 1701f2148a47SJeff Kirsher if (vlan_tx_tag_present(skb)) 1702f2148a47SJeff Kirsher /* Tx queues are bits 7-0 (first Tx queue: bit 7) */ 1703f2148a47SJeff Kirsher BYTE_REG_BITS_ON(1 << 7, ioaddr + TQWake); 1704f2148a47SJeff Kirsher 1705f2148a47SJeff Kirsher /* Wake the potentially-idle transmit channel */ 1706f2148a47SJeff Kirsher iowrite8(ioread8(ioaddr + ChipCmd1) | Cmd1TxDemand, 1707f2148a47SJeff Kirsher ioaddr + ChipCmd1); 1708f2148a47SJeff Kirsher IOSYNC; 1709f2148a47SJeff Kirsher 1710f2148a47SJeff Kirsher if (rp->cur_tx == rp->dirty_tx + TX_QUEUE_LEN) 1711f2148a47SJeff Kirsher netif_stop_queue(dev); 1712f2148a47SJeff Kirsher 1713fc3e0f8aSFrancois Romieu netif_dbg(rp, tx_queued, dev, "Transmit frame #%d queued in slot %d\n", 1714f2148a47SJeff Kirsher rp->cur_tx - 1, entry); 1715fc3e0f8aSFrancois Romieu 1716f2148a47SJeff Kirsher return NETDEV_TX_OK; 1717f2148a47SJeff Kirsher } 1718f2148a47SJeff Kirsher 17197ab87ff4SFrancois Romieu static void rhine_irq_disable(struct rhine_private *rp) 17207ab87ff4SFrancois Romieu { 17217ab87ff4SFrancois Romieu iowrite16(0x0000, rp->base + IntrEnable); 17227ab87ff4SFrancois Romieu mmiowb(); 17237ab87ff4SFrancois Romieu } 17247ab87ff4SFrancois Romieu 1725f2148a47SJeff Kirsher /* The interrupt handler does all of the Rx thread work and cleans up 1726f2148a47SJeff Kirsher after the Tx thread. */ 1727f2148a47SJeff Kirsher static irqreturn_t rhine_interrupt(int irq, void *dev_instance) 1728f2148a47SJeff Kirsher { 1729f2148a47SJeff Kirsher struct net_device *dev = dev_instance; 1730f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 17317ab87ff4SFrancois Romieu u32 status; 1732f2148a47SJeff Kirsher int handled = 0; 1733f2148a47SJeff Kirsher 17347ab87ff4SFrancois Romieu status = rhine_get_events(rp); 1735f2148a47SJeff Kirsher 1736fc3e0f8aSFrancois Romieu netif_dbg(rp, intr, dev, "Interrupt, status %08x\n", status); 1737f2148a47SJeff Kirsher 17387ab87ff4SFrancois Romieu if (status & RHINE_EVENT) { 17397ab87ff4SFrancois Romieu handled = 1; 1740f2148a47SJeff Kirsher 17417ab87ff4SFrancois Romieu rhine_irq_disable(rp); 1742f2148a47SJeff Kirsher napi_schedule(&rp->napi); 1743f2148a47SJeff Kirsher } 1744f2148a47SJeff Kirsher 17457ab87ff4SFrancois Romieu if (status & ~(IntrLinkChange | IntrStatsMax | RHINE_EVENT_NAPI)) { 1746fc3e0f8aSFrancois Romieu netif_err(rp, intr, dev, "Something Wicked happened! %08x\n", 17477ab87ff4SFrancois Romieu status); 1748f2148a47SJeff Kirsher } 1749f2148a47SJeff Kirsher 1750f2148a47SJeff Kirsher return IRQ_RETVAL(handled); 1751f2148a47SJeff Kirsher } 1752f2148a47SJeff Kirsher 1753f2148a47SJeff Kirsher /* This routine is logically part of the interrupt handler, but isolated 1754f2148a47SJeff Kirsher for clarity. */ 1755f2148a47SJeff Kirsher static void rhine_tx(struct net_device *dev) 1756f2148a47SJeff Kirsher { 1757f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1758f2148a47SJeff Kirsher int txstatus = 0, entry = rp->dirty_tx % TX_RING_SIZE; 1759f2148a47SJeff Kirsher 1760f2148a47SJeff Kirsher /* find and cleanup dirty tx descriptors */ 1761f2148a47SJeff Kirsher while (rp->dirty_tx != rp->cur_tx) { 1762f2148a47SJeff Kirsher txstatus = le32_to_cpu(rp->tx_ring[entry].tx_status); 1763fc3e0f8aSFrancois Romieu netif_dbg(rp, tx_done, dev, "Tx scavenge %d status %08x\n", 1764f2148a47SJeff Kirsher entry, txstatus); 1765f2148a47SJeff Kirsher if (txstatus & DescOwn) 1766f2148a47SJeff Kirsher break; 1767f2148a47SJeff Kirsher if (txstatus & 0x8000) { 1768fc3e0f8aSFrancois Romieu netif_dbg(rp, tx_done, dev, 1769fc3e0f8aSFrancois Romieu "Transmit error, Tx status %08x\n", txstatus); 1770f2148a47SJeff Kirsher dev->stats.tx_errors++; 1771f2148a47SJeff Kirsher if (txstatus & 0x0400) 1772f2148a47SJeff Kirsher dev->stats.tx_carrier_errors++; 1773f2148a47SJeff Kirsher if (txstatus & 0x0200) 1774f2148a47SJeff Kirsher dev->stats.tx_window_errors++; 1775f2148a47SJeff Kirsher if (txstatus & 0x0100) 1776f2148a47SJeff Kirsher dev->stats.tx_aborted_errors++; 1777f2148a47SJeff Kirsher if (txstatus & 0x0080) 1778f2148a47SJeff Kirsher dev->stats.tx_heartbeat_errors++; 1779f2148a47SJeff Kirsher if (((rp->quirks & rqRhineI) && txstatus & 0x0002) || 1780f2148a47SJeff Kirsher (txstatus & 0x0800) || (txstatus & 0x1000)) { 1781f2148a47SJeff Kirsher dev->stats.tx_fifo_errors++; 1782f2148a47SJeff Kirsher rp->tx_ring[entry].tx_status = cpu_to_le32(DescOwn); 1783f2148a47SJeff Kirsher break; /* Keep the skb - we try again */ 1784f2148a47SJeff Kirsher } 1785f2148a47SJeff Kirsher /* Transmitter restarted in 'abnormal' handler. */ 1786f2148a47SJeff Kirsher } else { 1787f2148a47SJeff Kirsher if (rp->quirks & rqRhineI) 1788f2148a47SJeff Kirsher dev->stats.collisions += (txstatus >> 3) & 0x0F; 1789f2148a47SJeff Kirsher else 1790f2148a47SJeff Kirsher dev->stats.collisions += txstatus & 0x0F; 1791fc3e0f8aSFrancois Romieu netif_dbg(rp, tx_done, dev, "collisions: %1.1x:%1.1x\n", 1792fc3e0f8aSFrancois Romieu (txstatus >> 3) & 0xF, txstatus & 0xF); 1793f2148a47SJeff Kirsher dev->stats.tx_bytes += rp->tx_skbuff[entry]->len; 1794f2148a47SJeff Kirsher dev->stats.tx_packets++; 1795f2148a47SJeff Kirsher } 1796f2148a47SJeff Kirsher /* Free the original skb. */ 1797f2148a47SJeff Kirsher if (rp->tx_skbuff_dma[entry]) { 1798f2148a47SJeff Kirsher pci_unmap_single(rp->pdev, 1799f2148a47SJeff Kirsher rp->tx_skbuff_dma[entry], 1800f2148a47SJeff Kirsher rp->tx_skbuff[entry]->len, 1801f2148a47SJeff Kirsher PCI_DMA_TODEVICE); 1802f2148a47SJeff Kirsher } 1803f2148a47SJeff Kirsher dev_kfree_skb_irq(rp->tx_skbuff[entry]); 1804f2148a47SJeff Kirsher rp->tx_skbuff[entry] = NULL; 1805f2148a47SJeff Kirsher entry = (++rp->dirty_tx) % TX_RING_SIZE; 1806f2148a47SJeff Kirsher } 1807f2148a47SJeff Kirsher if ((rp->cur_tx - rp->dirty_tx) < TX_QUEUE_LEN - 4) 1808f2148a47SJeff Kirsher netif_wake_queue(dev); 1809f2148a47SJeff Kirsher } 1810f2148a47SJeff Kirsher 1811f2148a47SJeff Kirsher /** 1812f2148a47SJeff Kirsher * rhine_get_vlan_tci - extract TCI from Rx data buffer 1813f2148a47SJeff Kirsher * @skb: pointer to sk_buff 1814f2148a47SJeff Kirsher * @data_size: used data area of the buffer including CRC 1815f2148a47SJeff Kirsher * 1816f2148a47SJeff Kirsher * If hardware VLAN tag extraction is enabled and the chip indicates a 802.1Q 1817f2148a47SJeff Kirsher * packet, the extracted 802.1Q header (2 bytes TPID + 2 bytes TCI) is 4-byte 1818f2148a47SJeff Kirsher * aligned following the CRC. 1819f2148a47SJeff Kirsher */ 1820f2148a47SJeff Kirsher static inline u16 rhine_get_vlan_tci(struct sk_buff *skb, int data_size) 1821f2148a47SJeff Kirsher { 1822f2148a47SJeff Kirsher u8 *trailer = (u8 *)skb->data + ((data_size + 3) & ~3) + 2; 1823f2148a47SJeff Kirsher return be16_to_cpup((__be16 *)trailer); 1824f2148a47SJeff Kirsher } 1825f2148a47SJeff Kirsher 1826f2148a47SJeff Kirsher /* Process up to limit frames from receive ring */ 1827f2148a47SJeff Kirsher static int rhine_rx(struct net_device *dev, int limit) 1828f2148a47SJeff Kirsher { 1829f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1830f2148a47SJeff Kirsher int count; 1831f2148a47SJeff Kirsher int entry = rp->cur_rx % RX_RING_SIZE; 1832f2148a47SJeff Kirsher 1833fc3e0f8aSFrancois Romieu netif_dbg(rp, rx_status, dev, "%s(), entry %d status %08x\n", __func__, 1834fc3e0f8aSFrancois Romieu entry, le32_to_cpu(rp->rx_head_desc->rx_status)); 1835f2148a47SJeff Kirsher 1836f2148a47SJeff Kirsher /* If EOP is set on the next entry, it's a new packet. Send it up. */ 1837f2148a47SJeff Kirsher for (count = 0; count < limit; ++count) { 1838f2148a47SJeff Kirsher struct rx_desc *desc = rp->rx_head_desc; 1839f2148a47SJeff Kirsher u32 desc_status = le32_to_cpu(desc->rx_status); 1840f2148a47SJeff Kirsher u32 desc_length = le32_to_cpu(desc->desc_length); 1841f2148a47SJeff Kirsher int data_size = desc_status >> 16; 1842f2148a47SJeff Kirsher 1843f2148a47SJeff Kirsher if (desc_status & DescOwn) 1844f2148a47SJeff Kirsher break; 1845f2148a47SJeff Kirsher 1846fc3e0f8aSFrancois Romieu netif_dbg(rp, rx_status, dev, "%s() status %08x\n", __func__, 1847fc3e0f8aSFrancois Romieu desc_status); 1848f2148a47SJeff Kirsher 1849f2148a47SJeff Kirsher if ((desc_status & (RxWholePkt | RxErr)) != RxWholePkt) { 1850f2148a47SJeff Kirsher if ((desc_status & RxWholePkt) != RxWholePkt) { 1851f2148a47SJeff Kirsher netdev_warn(dev, 1852f2148a47SJeff Kirsher "Oversized Ethernet frame spanned multiple buffers, " 1853f2148a47SJeff Kirsher "entry %#x length %d status %08x!\n", 1854f2148a47SJeff Kirsher entry, data_size, 1855f2148a47SJeff Kirsher desc_status); 1856f2148a47SJeff Kirsher netdev_warn(dev, 1857f2148a47SJeff Kirsher "Oversized Ethernet frame %p vs %p\n", 1858f2148a47SJeff Kirsher rp->rx_head_desc, 1859f2148a47SJeff Kirsher &rp->rx_ring[entry]); 1860f2148a47SJeff Kirsher dev->stats.rx_length_errors++; 1861f2148a47SJeff Kirsher } else if (desc_status & RxErr) { 1862f2148a47SJeff Kirsher /* There was a error. */ 1863fc3e0f8aSFrancois Romieu netif_dbg(rp, rx_err, dev, 1864fc3e0f8aSFrancois Romieu "%s() Rx error %08x\n", __func__, 1865fc3e0f8aSFrancois Romieu desc_status); 1866f2148a47SJeff Kirsher dev->stats.rx_errors++; 1867f2148a47SJeff Kirsher if (desc_status & 0x0030) 1868f2148a47SJeff Kirsher dev->stats.rx_length_errors++; 1869f2148a47SJeff Kirsher if (desc_status & 0x0048) 1870f2148a47SJeff Kirsher dev->stats.rx_fifo_errors++; 1871f2148a47SJeff Kirsher if (desc_status & 0x0004) 1872f2148a47SJeff Kirsher dev->stats.rx_frame_errors++; 1873f2148a47SJeff Kirsher if (desc_status & 0x0002) { 1874f2148a47SJeff Kirsher /* this can also be updated outside the interrupt handler */ 1875f2148a47SJeff Kirsher spin_lock(&rp->lock); 1876f2148a47SJeff Kirsher dev->stats.rx_crc_errors++; 1877f2148a47SJeff Kirsher spin_unlock(&rp->lock); 1878f2148a47SJeff Kirsher } 1879f2148a47SJeff Kirsher } 1880f2148a47SJeff Kirsher } else { 1881f2148a47SJeff Kirsher struct sk_buff *skb = NULL; 1882f2148a47SJeff Kirsher /* Length should omit the CRC */ 1883f2148a47SJeff Kirsher int pkt_len = data_size - 4; 1884f2148a47SJeff Kirsher u16 vlan_tci = 0; 1885f2148a47SJeff Kirsher 1886f2148a47SJeff Kirsher /* Check if the packet is long enough to accept without 1887f2148a47SJeff Kirsher copying to a minimally-sized skbuff. */ 1888f2148a47SJeff Kirsher if (pkt_len < rx_copybreak) 1889f2148a47SJeff Kirsher skb = netdev_alloc_skb_ip_align(dev, pkt_len); 1890f2148a47SJeff Kirsher if (skb) { 1891f2148a47SJeff Kirsher pci_dma_sync_single_for_cpu(rp->pdev, 1892f2148a47SJeff Kirsher rp->rx_skbuff_dma[entry], 1893f2148a47SJeff Kirsher rp->rx_buf_sz, 1894f2148a47SJeff Kirsher PCI_DMA_FROMDEVICE); 1895f2148a47SJeff Kirsher 1896f2148a47SJeff Kirsher skb_copy_to_linear_data(skb, 1897f2148a47SJeff Kirsher rp->rx_skbuff[entry]->data, 1898f2148a47SJeff Kirsher pkt_len); 1899f2148a47SJeff Kirsher skb_put(skb, pkt_len); 1900f2148a47SJeff Kirsher pci_dma_sync_single_for_device(rp->pdev, 1901f2148a47SJeff Kirsher rp->rx_skbuff_dma[entry], 1902f2148a47SJeff Kirsher rp->rx_buf_sz, 1903f2148a47SJeff Kirsher PCI_DMA_FROMDEVICE); 1904f2148a47SJeff Kirsher } else { 1905f2148a47SJeff Kirsher skb = rp->rx_skbuff[entry]; 1906f2148a47SJeff Kirsher if (skb == NULL) { 1907f2148a47SJeff Kirsher netdev_err(dev, "Inconsistent Rx descriptor chain\n"); 1908f2148a47SJeff Kirsher break; 1909f2148a47SJeff Kirsher } 1910f2148a47SJeff Kirsher rp->rx_skbuff[entry] = NULL; 1911f2148a47SJeff Kirsher skb_put(skb, pkt_len); 1912f2148a47SJeff Kirsher pci_unmap_single(rp->pdev, 1913f2148a47SJeff Kirsher rp->rx_skbuff_dma[entry], 1914f2148a47SJeff Kirsher rp->rx_buf_sz, 1915f2148a47SJeff Kirsher PCI_DMA_FROMDEVICE); 1916f2148a47SJeff Kirsher } 1917f2148a47SJeff Kirsher 1918f2148a47SJeff Kirsher if (unlikely(desc_length & DescTag)) 1919f2148a47SJeff Kirsher vlan_tci = rhine_get_vlan_tci(skb, data_size); 1920f2148a47SJeff Kirsher 1921f2148a47SJeff Kirsher skb->protocol = eth_type_trans(skb, dev); 1922f2148a47SJeff Kirsher 1923f2148a47SJeff Kirsher if (unlikely(desc_length & DescTag)) 1924f2148a47SJeff Kirsher __vlan_hwaccel_put_tag(skb, vlan_tci); 1925f2148a47SJeff Kirsher netif_receive_skb(skb); 1926f2148a47SJeff Kirsher dev->stats.rx_bytes += pkt_len; 1927f2148a47SJeff Kirsher dev->stats.rx_packets++; 1928f2148a47SJeff Kirsher } 1929f2148a47SJeff Kirsher entry = (++rp->cur_rx) % RX_RING_SIZE; 1930f2148a47SJeff Kirsher rp->rx_head_desc = &rp->rx_ring[entry]; 1931f2148a47SJeff Kirsher } 1932f2148a47SJeff Kirsher 1933f2148a47SJeff Kirsher /* Refill the Rx ring buffers. */ 1934f2148a47SJeff Kirsher for (; rp->cur_rx - rp->dirty_rx > 0; rp->dirty_rx++) { 1935f2148a47SJeff Kirsher struct sk_buff *skb; 1936f2148a47SJeff Kirsher entry = rp->dirty_rx % RX_RING_SIZE; 1937f2148a47SJeff Kirsher if (rp->rx_skbuff[entry] == NULL) { 1938f2148a47SJeff Kirsher skb = netdev_alloc_skb(dev, rp->rx_buf_sz); 1939f2148a47SJeff Kirsher rp->rx_skbuff[entry] = skb; 1940f2148a47SJeff Kirsher if (skb == NULL) 1941f2148a47SJeff Kirsher break; /* Better luck next round. */ 1942f2148a47SJeff Kirsher rp->rx_skbuff_dma[entry] = 1943f2148a47SJeff Kirsher pci_map_single(rp->pdev, skb->data, 1944f2148a47SJeff Kirsher rp->rx_buf_sz, 1945f2148a47SJeff Kirsher PCI_DMA_FROMDEVICE); 1946f2148a47SJeff Kirsher rp->rx_ring[entry].addr = cpu_to_le32(rp->rx_skbuff_dma[entry]); 1947f2148a47SJeff Kirsher } 1948f2148a47SJeff Kirsher rp->rx_ring[entry].rx_status = cpu_to_le32(DescOwn); 1949f2148a47SJeff Kirsher } 1950f2148a47SJeff Kirsher 1951f2148a47SJeff Kirsher return count; 1952f2148a47SJeff Kirsher } 1953f2148a47SJeff Kirsher 1954f2148a47SJeff Kirsher static void rhine_restart_tx(struct net_device *dev) { 1955f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 1956f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 1957f2148a47SJeff Kirsher int entry = rp->dirty_tx % TX_RING_SIZE; 1958f2148a47SJeff Kirsher u32 intr_status; 1959f2148a47SJeff Kirsher 1960f2148a47SJeff Kirsher /* 1961f2148a47SJeff Kirsher * If new errors occurred, we need to sort them out before doing Tx. 1962f2148a47SJeff Kirsher * In that case the ISR will be back here RSN anyway. 1963f2148a47SJeff Kirsher */ 1964a20a28bcSFrancois Romieu intr_status = rhine_get_events(rp); 1965f2148a47SJeff Kirsher 1966f2148a47SJeff Kirsher if ((intr_status & IntrTxErrSummary) == 0) { 1967f2148a47SJeff Kirsher 1968f2148a47SJeff Kirsher /* We know better than the chip where it should continue. */ 1969f2148a47SJeff Kirsher iowrite32(rp->tx_ring_dma + entry * sizeof(struct tx_desc), 1970f2148a47SJeff Kirsher ioaddr + TxRingPtr); 1971f2148a47SJeff Kirsher 1972f2148a47SJeff Kirsher iowrite8(ioread8(ioaddr + ChipCmd) | CmdTxOn, 1973f2148a47SJeff Kirsher ioaddr + ChipCmd); 1974f2148a47SJeff Kirsher 1975f2148a47SJeff Kirsher if (rp->tx_ring[entry].desc_length & cpu_to_le32(0x020000)) 1976f2148a47SJeff Kirsher /* Tx queues are bits 7-0 (first Tx queue: bit 7) */ 1977f2148a47SJeff Kirsher BYTE_REG_BITS_ON(1 << 7, ioaddr + TQWake); 1978f2148a47SJeff Kirsher 1979f2148a47SJeff Kirsher iowrite8(ioread8(ioaddr + ChipCmd1) | Cmd1TxDemand, 1980f2148a47SJeff Kirsher ioaddr + ChipCmd1); 1981f2148a47SJeff Kirsher IOSYNC; 1982f2148a47SJeff Kirsher } 1983f2148a47SJeff Kirsher else { 1984f2148a47SJeff Kirsher /* This should never happen */ 1985fc3e0f8aSFrancois Romieu netif_warn(rp, tx_err, dev, "another error occurred %08x\n", 1986fc3e0f8aSFrancois Romieu intr_status); 1987f2148a47SJeff Kirsher } 1988f2148a47SJeff Kirsher 1989f2148a47SJeff Kirsher } 1990f2148a47SJeff Kirsher 19917ab87ff4SFrancois Romieu static void rhine_slow_event_task(struct work_struct *work) 1992f2148a47SJeff Kirsher { 19937ab87ff4SFrancois Romieu struct rhine_private *rp = 19947ab87ff4SFrancois Romieu container_of(work, struct rhine_private, slow_event_task); 19957ab87ff4SFrancois Romieu struct net_device *dev = rp->dev; 19967ab87ff4SFrancois Romieu u32 intr_status; 1997f2148a47SJeff Kirsher 19987ab87ff4SFrancois Romieu mutex_lock(&rp->task_lock); 19997ab87ff4SFrancois Romieu 20007ab87ff4SFrancois Romieu if (!rp->task_enable) 20017ab87ff4SFrancois Romieu goto out_unlock; 20027ab87ff4SFrancois Romieu 20037ab87ff4SFrancois Romieu intr_status = rhine_get_events(rp); 20047ab87ff4SFrancois Romieu rhine_ack_events(rp, intr_status & RHINE_EVENT_SLOW); 2005f2148a47SJeff Kirsher 2006f2148a47SJeff Kirsher if (intr_status & IntrLinkChange) 2007f2148a47SJeff Kirsher rhine_check_media(dev, 0); 2008f2148a47SJeff Kirsher 2009fc3e0f8aSFrancois Romieu if (intr_status & IntrPCIErr) 2010fc3e0f8aSFrancois Romieu netif_warn(rp, hw, dev, "PCI error\n"); 2011fc3e0f8aSFrancois Romieu 20127ab87ff4SFrancois Romieu napi_disable(&rp->napi); 20137ab87ff4SFrancois Romieu rhine_irq_disable(rp); 20147ab87ff4SFrancois Romieu /* Slow and safe. Consider __napi_schedule as a replacement ? */ 20157ab87ff4SFrancois Romieu napi_enable(&rp->napi); 20167ab87ff4SFrancois Romieu napi_schedule(&rp->napi); 2017f2148a47SJeff Kirsher 20187ab87ff4SFrancois Romieu out_unlock: 20197ab87ff4SFrancois Romieu mutex_unlock(&rp->task_lock); 2020f2148a47SJeff Kirsher } 2021f2148a47SJeff Kirsher 2022f2148a47SJeff Kirsher static struct net_device_stats *rhine_get_stats(struct net_device *dev) 2023f2148a47SJeff Kirsher { 2024f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2025f2148a47SJeff Kirsher 20267ab87ff4SFrancois Romieu spin_lock_bh(&rp->lock); 20277ab87ff4SFrancois Romieu rhine_update_rx_crc_and_missed_errord(rp); 20287ab87ff4SFrancois Romieu spin_unlock_bh(&rp->lock); 2029f2148a47SJeff Kirsher 2030f2148a47SJeff Kirsher return &dev->stats; 2031f2148a47SJeff Kirsher } 2032f2148a47SJeff Kirsher 2033f2148a47SJeff Kirsher static void rhine_set_rx_mode(struct net_device *dev) 2034f2148a47SJeff Kirsher { 2035f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2036f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 2037f2148a47SJeff Kirsher u32 mc_filter[2]; /* Multicast hash filter */ 2038f2148a47SJeff Kirsher u8 rx_mode = 0x0C; /* Note: 0x02=accept runt, 0x01=accept errs */ 2039f2148a47SJeff Kirsher struct netdev_hw_addr *ha; 2040f2148a47SJeff Kirsher 2041f2148a47SJeff Kirsher if (dev->flags & IFF_PROMISC) { /* Set promiscuous. */ 2042f2148a47SJeff Kirsher rx_mode = 0x1C; 2043f2148a47SJeff Kirsher iowrite32(0xffffffff, ioaddr + MulticastFilter0); 2044f2148a47SJeff Kirsher iowrite32(0xffffffff, ioaddr + MulticastFilter1); 2045f2148a47SJeff Kirsher } else if ((netdev_mc_count(dev) > multicast_filter_limit) || 2046f2148a47SJeff Kirsher (dev->flags & IFF_ALLMULTI)) { 2047f2148a47SJeff Kirsher /* Too many to match, or accept all multicasts. */ 2048f2148a47SJeff Kirsher iowrite32(0xffffffff, ioaddr + MulticastFilter0); 2049f2148a47SJeff Kirsher iowrite32(0xffffffff, ioaddr + MulticastFilter1); 2050f2148a47SJeff Kirsher } else if (rp->pdev->revision >= VT6105M) { 2051f2148a47SJeff Kirsher int i = 0; 2052f2148a47SJeff Kirsher u32 mCAMmask = 0; /* 32 mCAMs (6105M and better) */ 2053f2148a47SJeff Kirsher netdev_for_each_mc_addr(ha, dev) { 2054f2148a47SJeff Kirsher if (i == MCAM_SIZE) 2055f2148a47SJeff Kirsher break; 2056f2148a47SJeff Kirsher rhine_set_cam(ioaddr, i, ha->addr); 2057f2148a47SJeff Kirsher mCAMmask |= 1 << i; 2058f2148a47SJeff Kirsher i++; 2059f2148a47SJeff Kirsher } 2060f2148a47SJeff Kirsher rhine_set_cam_mask(ioaddr, mCAMmask); 2061f2148a47SJeff Kirsher } else { 2062f2148a47SJeff Kirsher memset(mc_filter, 0, sizeof(mc_filter)); 2063f2148a47SJeff Kirsher netdev_for_each_mc_addr(ha, dev) { 2064f2148a47SJeff Kirsher int bit_nr = ether_crc(ETH_ALEN, ha->addr) >> 26; 2065f2148a47SJeff Kirsher 2066f2148a47SJeff Kirsher mc_filter[bit_nr >> 5] |= 1 << (bit_nr & 31); 2067f2148a47SJeff Kirsher } 2068f2148a47SJeff Kirsher iowrite32(mc_filter[0], ioaddr + MulticastFilter0); 2069f2148a47SJeff Kirsher iowrite32(mc_filter[1], ioaddr + MulticastFilter1); 2070f2148a47SJeff Kirsher } 2071f2148a47SJeff Kirsher /* enable/disable VLAN receive filtering */ 2072f2148a47SJeff Kirsher if (rp->pdev->revision >= VT6105M) { 2073f2148a47SJeff Kirsher if (dev->flags & IFF_PROMISC) 2074f2148a47SJeff Kirsher BYTE_REG_BITS_OFF(BCR1_VIDFR, ioaddr + PCIBusConfig1); 2075f2148a47SJeff Kirsher else 2076f2148a47SJeff Kirsher BYTE_REG_BITS_ON(BCR1_VIDFR, ioaddr + PCIBusConfig1); 2077f2148a47SJeff Kirsher } 2078f2148a47SJeff Kirsher BYTE_REG_BITS_ON(rx_mode, ioaddr + RxConfig); 2079f2148a47SJeff Kirsher } 2080f2148a47SJeff Kirsher 2081f2148a47SJeff Kirsher static void netdev_get_drvinfo(struct net_device *dev, struct ethtool_drvinfo *info) 2082f2148a47SJeff Kirsher { 2083f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2084f2148a47SJeff Kirsher 208523020ab3SRick Jones strlcpy(info->driver, DRV_NAME, sizeof(info->driver)); 208623020ab3SRick Jones strlcpy(info->version, DRV_VERSION, sizeof(info->version)); 208723020ab3SRick Jones strlcpy(info->bus_info, pci_name(rp->pdev), sizeof(info->bus_info)); 2088f2148a47SJeff Kirsher } 2089f2148a47SJeff Kirsher 2090f2148a47SJeff Kirsher static int netdev_get_settings(struct net_device *dev, struct ethtool_cmd *cmd) 2091f2148a47SJeff Kirsher { 2092f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2093f2148a47SJeff Kirsher int rc; 2094f2148a47SJeff Kirsher 20957ab87ff4SFrancois Romieu mutex_lock(&rp->task_lock); 2096f2148a47SJeff Kirsher rc = mii_ethtool_gset(&rp->mii_if, cmd); 20977ab87ff4SFrancois Romieu mutex_unlock(&rp->task_lock); 2098f2148a47SJeff Kirsher 2099f2148a47SJeff Kirsher return rc; 2100f2148a47SJeff Kirsher } 2101f2148a47SJeff Kirsher 2102f2148a47SJeff Kirsher static int netdev_set_settings(struct net_device *dev, struct ethtool_cmd *cmd) 2103f2148a47SJeff Kirsher { 2104f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2105f2148a47SJeff Kirsher int rc; 2106f2148a47SJeff Kirsher 21077ab87ff4SFrancois Romieu mutex_lock(&rp->task_lock); 2108f2148a47SJeff Kirsher rc = mii_ethtool_sset(&rp->mii_if, cmd); 2109f2148a47SJeff Kirsher rhine_set_carrier(&rp->mii_if); 21107ab87ff4SFrancois Romieu mutex_unlock(&rp->task_lock); 2111f2148a47SJeff Kirsher 2112f2148a47SJeff Kirsher return rc; 2113f2148a47SJeff Kirsher } 2114f2148a47SJeff Kirsher 2115f2148a47SJeff Kirsher static int netdev_nway_reset(struct net_device *dev) 2116f2148a47SJeff Kirsher { 2117f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2118f2148a47SJeff Kirsher 2119f2148a47SJeff Kirsher return mii_nway_restart(&rp->mii_if); 2120f2148a47SJeff Kirsher } 2121f2148a47SJeff Kirsher 2122f2148a47SJeff Kirsher static u32 netdev_get_link(struct net_device *dev) 2123f2148a47SJeff Kirsher { 2124f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2125f2148a47SJeff Kirsher 2126f2148a47SJeff Kirsher return mii_link_ok(&rp->mii_if); 2127f2148a47SJeff Kirsher } 2128f2148a47SJeff Kirsher 2129f2148a47SJeff Kirsher static u32 netdev_get_msglevel(struct net_device *dev) 2130f2148a47SJeff Kirsher { 2131fc3e0f8aSFrancois Romieu struct rhine_private *rp = netdev_priv(dev); 2132fc3e0f8aSFrancois Romieu 2133fc3e0f8aSFrancois Romieu return rp->msg_enable; 2134f2148a47SJeff Kirsher } 2135f2148a47SJeff Kirsher 2136f2148a47SJeff Kirsher static void netdev_set_msglevel(struct net_device *dev, u32 value) 2137f2148a47SJeff Kirsher { 2138fc3e0f8aSFrancois Romieu struct rhine_private *rp = netdev_priv(dev); 2139fc3e0f8aSFrancois Romieu 2140fc3e0f8aSFrancois Romieu rp->msg_enable = value; 2141f2148a47SJeff Kirsher } 2142f2148a47SJeff Kirsher 2143f2148a47SJeff Kirsher static void rhine_get_wol(struct net_device *dev, struct ethtool_wolinfo *wol) 2144f2148a47SJeff Kirsher { 2145f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2146f2148a47SJeff Kirsher 2147f2148a47SJeff Kirsher if (!(rp->quirks & rqWOL)) 2148f2148a47SJeff Kirsher return; 2149f2148a47SJeff Kirsher 2150f2148a47SJeff Kirsher spin_lock_irq(&rp->lock); 2151f2148a47SJeff Kirsher wol->supported = WAKE_PHY | WAKE_MAGIC | 2152f2148a47SJeff Kirsher WAKE_UCAST | WAKE_MCAST | WAKE_BCAST; /* Untested */ 2153f2148a47SJeff Kirsher wol->wolopts = rp->wolopts; 2154f2148a47SJeff Kirsher spin_unlock_irq(&rp->lock); 2155f2148a47SJeff Kirsher } 2156f2148a47SJeff Kirsher 2157f2148a47SJeff Kirsher static int rhine_set_wol(struct net_device *dev, struct ethtool_wolinfo *wol) 2158f2148a47SJeff Kirsher { 2159f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2160f2148a47SJeff Kirsher u32 support = WAKE_PHY | WAKE_MAGIC | 2161f2148a47SJeff Kirsher WAKE_UCAST | WAKE_MCAST | WAKE_BCAST; /* Untested */ 2162f2148a47SJeff Kirsher 2163f2148a47SJeff Kirsher if (!(rp->quirks & rqWOL)) 2164f2148a47SJeff Kirsher return -EINVAL; 2165f2148a47SJeff Kirsher 2166f2148a47SJeff Kirsher if (wol->wolopts & ~support) 2167f2148a47SJeff Kirsher return -EINVAL; 2168f2148a47SJeff Kirsher 2169f2148a47SJeff Kirsher spin_lock_irq(&rp->lock); 2170f2148a47SJeff Kirsher rp->wolopts = wol->wolopts; 2171f2148a47SJeff Kirsher spin_unlock_irq(&rp->lock); 2172f2148a47SJeff Kirsher 2173f2148a47SJeff Kirsher return 0; 2174f2148a47SJeff Kirsher } 2175f2148a47SJeff Kirsher 2176f2148a47SJeff Kirsher static const struct ethtool_ops netdev_ethtool_ops = { 2177f2148a47SJeff Kirsher .get_drvinfo = netdev_get_drvinfo, 2178f2148a47SJeff Kirsher .get_settings = netdev_get_settings, 2179f2148a47SJeff Kirsher .set_settings = netdev_set_settings, 2180f2148a47SJeff Kirsher .nway_reset = netdev_nway_reset, 2181f2148a47SJeff Kirsher .get_link = netdev_get_link, 2182f2148a47SJeff Kirsher .get_msglevel = netdev_get_msglevel, 2183f2148a47SJeff Kirsher .set_msglevel = netdev_set_msglevel, 2184f2148a47SJeff Kirsher .get_wol = rhine_get_wol, 2185f2148a47SJeff Kirsher .set_wol = rhine_set_wol, 2186f2148a47SJeff Kirsher }; 2187f2148a47SJeff Kirsher 2188f2148a47SJeff Kirsher static int netdev_ioctl(struct net_device *dev, struct ifreq *rq, int cmd) 2189f2148a47SJeff Kirsher { 2190f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2191f2148a47SJeff Kirsher int rc; 2192f2148a47SJeff Kirsher 2193f2148a47SJeff Kirsher if (!netif_running(dev)) 2194f2148a47SJeff Kirsher return -EINVAL; 2195f2148a47SJeff Kirsher 21967ab87ff4SFrancois Romieu mutex_lock(&rp->task_lock); 2197f2148a47SJeff Kirsher rc = generic_mii_ioctl(&rp->mii_if, if_mii(rq), cmd, NULL); 2198f2148a47SJeff Kirsher rhine_set_carrier(&rp->mii_if); 21997ab87ff4SFrancois Romieu mutex_unlock(&rp->task_lock); 2200f2148a47SJeff Kirsher 2201f2148a47SJeff Kirsher return rc; 2202f2148a47SJeff Kirsher } 2203f2148a47SJeff Kirsher 2204f2148a47SJeff Kirsher static int rhine_close(struct net_device *dev) 2205f2148a47SJeff Kirsher { 2206f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2207f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 2208f2148a47SJeff Kirsher 22097ab87ff4SFrancois Romieu rhine_task_disable(rp); 2210f2148a47SJeff Kirsher napi_disable(&rp->napi); 2211f2148a47SJeff Kirsher netif_stop_queue(dev); 2212f2148a47SJeff Kirsher 2213fc3e0f8aSFrancois Romieu netif_dbg(rp, ifdown, dev, "Shutting down ethercard, status was %04x\n", 2214f2148a47SJeff Kirsher ioread16(ioaddr + ChipCmd)); 2215f2148a47SJeff Kirsher 2216f2148a47SJeff Kirsher /* Switch to loopback mode to avoid hardware races. */ 2217f2148a47SJeff Kirsher iowrite8(rp->tx_thresh | 0x02, ioaddr + TxConfig); 2218f2148a47SJeff Kirsher 22197ab87ff4SFrancois Romieu rhine_irq_disable(rp); 2220f2148a47SJeff Kirsher 2221f2148a47SJeff Kirsher /* Stop the chip's Tx and Rx processes. */ 2222f2148a47SJeff Kirsher iowrite16(CmdStop, ioaddr + ChipCmd); 2223f2148a47SJeff Kirsher 2224f2148a47SJeff Kirsher free_irq(rp->pdev->irq, dev); 2225f2148a47SJeff Kirsher free_rbufs(dev); 2226f2148a47SJeff Kirsher free_tbufs(dev); 2227f2148a47SJeff Kirsher free_ring(dev); 2228f2148a47SJeff Kirsher 2229f2148a47SJeff Kirsher return 0; 2230f2148a47SJeff Kirsher } 2231f2148a47SJeff Kirsher 2232f2148a47SJeff Kirsher 2233f2148a47SJeff Kirsher static void __devexit rhine_remove_one(struct pci_dev *pdev) 2234f2148a47SJeff Kirsher { 2235f2148a47SJeff Kirsher struct net_device *dev = pci_get_drvdata(pdev); 2236f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2237f2148a47SJeff Kirsher 2238f2148a47SJeff Kirsher unregister_netdev(dev); 2239f2148a47SJeff Kirsher 2240f2148a47SJeff Kirsher pci_iounmap(pdev, rp->base); 2241f2148a47SJeff Kirsher pci_release_regions(pdev); 2242f2148a47SJeff Kirsher 2243f2148a47SJeff Kirsher free_netdev(dev); 2244f2148a47SJeff Kirsher pci_disable_device(pdev); 2245f2148a47SJeff Kirsher pci_set_drvdata(pdev, NULL); 2246f2148a47SJeff Kirsher } 2247f2148a47SJeff Kirsher 2248f2148a47SJeff Kirsher static void rhine_shutdown (struct pci_dev *pdev) 2249f2148a47SJeff Kirsher { 2250f2148a47SJeff Kirsher struct net_device *dev = pci_get_drvdata(pdev); 2251f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2252f2148a47SJeff Kirsher void __iomem *ioaddr = rp->base; 2253f2148a47SJeff Kirsher 2254f2148a47SJeff Kirsher if (!(rp->quirks & rqWOL)) 2255f2148a47SJeff Kirsher return; /* Nothing to do for non-WOL adapters */ 2256f2148a47SJeff Kirsher 2257f2148a47SJeff Kirsher rhine_power_init(dev); 2258f2148a47SJeff Kirsher 2259f2148a47SJeff Kirsher /* Make sure we use pattern 0, 1 and not 4, 5 */ 2260f2148a47SJeff Kirsher if (rp->quirks & rq6patterns) 2261f2148a47SJeff Kirsher iowrite8(0x04, ioaddr + WOLcgClr); 2262f2148a47SJeff Kirsher 22637ab87ff4SFrancois Romieu spin_lock(&rp->lock); 22647ab87ff4SFrancois Romieu 2265f2148a47SJeff Kirsher if (rp->wolopts & WAKE_MAGIC) { 2266f2148a47SJeff Kirsher iowrite8(WOLmagic, ioaddr + WOLcrSet); 2267f2148a47SJeff Kirsher /* 2268f2148a47SJeff Kirsher * Turn EEPROM-controlled wake-up back on -- some hardware may 2269f2148a47SJeff Kirsher * not cooperate otherwise. 2270f2148a47SJeff Kirsher */ 2271f2148a47SJeff Kirsher iowrite8(ioread8(ioaddr + ConfigA) | 0x03, ioaddr + ConfigA); 2272f2148a47SJeff Kirsher } 2273f2148a47SJeff Kirsher 2274f2148a47SJeff Kirsher if (rp->wolopts & (WAKE_BCAST|WAKE_MCAST)) 2275f2148a47SJeff Kirsher iowrite8(WOLbmcast, ioaddr + WOLcgSet); 2276f2148a47SJeff Kirsher 2277f2148a47SJeff Kirsher if (rp->wolopts & WAKE_PHY) 2278f2148a47SJeff Kirsher iowrite8(WOLlnkon | WOLlnkoff, ioaddr + WOLcrSet); 2279f2148a47SJeff Kirsher 2280f2148a47SJeff Kirsher if (rp->wolopts & WAKE_UCAST) 2281f2148a47SJeff Kirsher iowrite8(WOLucast, ioaddr + WOLcrSet); 2282f2148a47SJeff Kirsher 2283f2148a47SJeff Kirsher if (rp->wolopts) { 2284f2148a47SJeff Kirsher /* Enable legacy WOL (for old motherboards) */ 2285f2148a47SJeff Kirsher iowrite8(0x01, ioaddr + PwcfgSet); 2286f2148a47SJeff Kirsher iowrite8(ioread8(ioaddr + StickyHW) | 0x04, ioaddr + StickyHW); 2287f2148a47SJeff Kirsher } 2288f2148a47SJeff Kirsher 22897ab87ff4SFrancois Romieu spin_unlock(&rp->lock); 22907ab87ff4SFrancois Romieu 2291e92b9b3bSFrancois Romieu if (system_state == SYSTEM_POWER_OFF && !avoid_D3) { 2292f2148a47SJeff Kirsher iowrite8(ioread8(ioaddr + StickyHW) | 0x03, ioaddr + StickyHW); 2293f2148a47SJeff Kirsher 2294e92b9b3bSFrancois Romieu pci_wake_from_d3(pdev, true); 2295e92b9b3bSFrancois Romieu pci_set_power_state(pdev, PCI_D3hot); 2296e92b9b3bSFrancois Romieu } 2297f2148a47SJeff Kirsher } 2298f2148a47SJeff Kirsher 2299e92b9b3bSFrancois Romieu #ifdef CONFIG_PM_SLEEP 2300e92b9b3bSFrancois Romieu static int rhine_suspend(struct device *device) 2301f2148a47SJeff Kirsher { 2302e92b9b3bSFrancois Romieu struct pci_dev *pdev = to_pci_dev(device); 2303f2148a47SJeff Kirsher struct net_device *dev = pci_get_drvdata(pdev); 2304f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2305f2148a47SJeff Kirsher 2306f2148a47SJeff Kirsher if (!netif_running(dev)) 2307f2148a47SJeff Kirsher return 0; 2308f2148a47SJeff Kirsher 23097ab87ff4SFrancois Romieu rhine_task_disable(rp); 23107ab87ff4SFrancois Romieu rhine_irq_disable(rp); 2311f2148a47SJeff Kirsher napi_disable(&rp->napi); 2312f2148a47SJeff Kirsher 2313f2148a47SJeff Kirsher netif_device_detach(dev); 2314f2148a47SJeff Kirsher 2315f2148a47SJeff Kirsher rhine_shutdown(pdev); 2316f2148a47SJeff Kirsher 2317f2148a47SJeff Kirsher return 0; 2318f2148a47SJeff Kirsher } 2319f2148a47SJeff Kirsher 2320e92b9b3bSFrancois Romieu static int rhine_resume(struct device *device) 2321f2148a47SJeff Kirsher { 2322e92b9b3bSFrancois Romieu struct pci_dev *pdev = to_pci_dev(device); 2323f2148a47SJeff Kirsher struct net_device *dev = pci_get_drvdata(pdev); 2324f2148a47SJeff Kirsher struct rhine_private *rp = netdev_priv(dev); 2325f2148a47SJeff Kirsher 2326f2148a47SJeff Kirsher if (!netif_running(dev)) 2327f2148a47SJeff Kirsher return 0; 2328f2148a47SJeff Kirsher 2329f2148a47SJeff Kirsher #ifdef USE_MMIO 2330f2148a47SJeff Kirsher enable_mmio(rp->pioaddr, rp->quirks); 2331f2148a47SJeff Kirsher #endif 2332f2148a47SJeff Kirsher rhine_power_init(dev); 2333f2148a47SJeff Kirsher free_tbufs(dev); 2334f2148a47SJeff Kirsher free_rbufs(dev); 2335f2148a47SJeff Kirsher alloc_tbufs(dev); 2336f2148a47SJeff Kirsher alloc_rbufs(dev); 23377ab87ff4SFrancois Romieu rhine_task_enable(rp); 23387ab87ff4SFrancois Romieu spin_lock_bh(&rp->lock); 2339f2148a47SJeff Kirsher init_registers(dev); 23407ab87ff4SFrancois Romieu spin_unlock_bh(&rp->lock); 2341f2148a47SJeff Kirsher 2342f2148a47SJeff Kirsher netif_device_attach(dev); 2343f2148a47SJeff Kirsher 2344f2148a47SJeff Kirsher return 0; 2345f2148a47SJeff Kirsher } 2346e92b9b3bSFrancois Romieu 2347e92b9b3bSFrancois Romieu static SIMPLE_DEV_PM_OPS(rhine_pm_ops, rhine_suspend, rhine_resume); 2348e92b9b3bSFrancois Romieu #define RHINE_PM_OPS (&rhine_pm_ops) 2349e92b9b3bSFrancois Romieu 2350e92b9b3bSFrancois Romieu #else 2351e92b9b3bSFrancois Romieu 2352e92b9b3bSFrancois Romieu #define RHINE_PM_OPS NULL 2353e92b9b3bSFrancois Romieu 2354e92b9b3bSFrancois Romieu #endif /* !CONFIG_PM_SLEEP */ 2355f2148a47SJeff Kirsher 2356f2148a47SJeff Kirsher static struct pci_driver rhine_driver = { 2357f2148a47SJeff Kirsher .name = DRV_NAME, 2358f2148a47SJeff Kirsher .id_table = rhine_pci_tbl, 2359f2148a47SJeff Kirsher .probe = rhine_init_one, 2360f2148a47SJeff Kirsher .remove = __devexit_p(rhine_remove_one), 2361f2148a47SJeff Kirsher .shutdown = rhine_shutdown, 2362e92b9b3bSFrancois Romieu .driver.pm = RHINE_PM_OPS, 2363f2148a47SJeff Kirsher }; 2364f2148a47SJeff Kirsher 2365f2148a47SJeff Kirsher static struct dmi_system_id __initdata rhine_dmi_table[] = { 2366f2148a47SJeff Kirsher { 2367f2148a47SJeff Kirsher .ident = "EPIA-M", 2368f2148a47SJeff Kirsher .matches = { 2369f2148a47SJeff Kirsher DMI_MATCH(DMI_BIOS_VENDOR, "Award Software International, Inc."), 2370f2148a47SJeff Kirsher DMI_MATCH(DMI_BIOS_VERSION, "6.00 PG"), 2371f2148a47SJeff Kirsher }, 2372f2148a47SJeff Kirsher }, 2373f2148a47SJeff Kirsher { 2374f2148a47SJeff Kirsher .ident = "KV7", 2375f2148a47SJeff Kirsher .matches = { 2376f2148a47SJeff Kirsher DMI_MATCH(DMI_BIOS_VENDOR, "Phoenix Technologies, LTD"), 2377f2148a47SJeff Kirsher DMI_MATCH(DMI_BIOS_VERSION, "6.00 PG"), 2378f2148a47SJeff Kirsher }, 2379f2148a47SJeff Kirsher }, 2380f2148a47SJeff Kirsher { NULL } 2381f2148a47SJeff Kirsher }; 2382f2148a47SJeff Kirsher 2383f2148a47SJeff Kirsher static int __init rhine_init(void) 2384f2148a47SJeff Kirsher { 2385f2148a47SJeff Kirsher /* when a module, this is printed whether or not devices are found in probe */ 2386f2148a47SJeff Kirsher #ifdef MODULE 2387f2148a47SJeff Kirsher pr_info("%s\n", version); 2388f2148a47SJeff Kirsher #endif 2389f2148a47SJeff Kirsher if (dmi_check_system(rhine_dmi_table)) { 2390f2148a47SJeff Kirsher /* these BIOSes fail at PXE boot if chip is in D3 */ 2391eb939922SRusty Russell avoid_D3 = true; 2392f2148a47SJeff Kirsher pr_warn("Broken BIOS detected, avoid_D3 enabled\n"); 2393f2148a47SJeff Kirsher } 2394f2148a47SJeff Kirsher else if (avoid_D3) 2395f2148a47SJeff Kirsher pr_info("avoid_D3 set\n"); 2396f2148a47SJeff Kirsher 2397f2148a47SJeff Kirsher return pci_register_driver(&rhine_driver); 2398f2148a47SJeff Kirsher } 2399f2148a47SJeff Kirsher 2400f2148a47SJeff Kirsher 2401f2148a47SJeff Kirsher static void __exit rhine_cleanup(void) 2402f2148a47SJeff Kirsher { 2403f2148a47SJeff Kirsher pci_unregister_driver(&rhine_driver); 2404f2148a47SJeff Kirsher } 2405f2148a47SJeff Kirsher 2406f2148a47SJeff Kirsher 2407f2148a47SJeff Kirsher module_init(rhine_init); 2408f2148a47SJeff Kirsher module_exit(rhine_cleanup); 2409