if_em.h revision 1.26
1/**************************************************************************
2
3Copyright (c) 2001-2003, Intel Corporation
4All rights reserved.
5
6Redistribution and use in source and binary forms, with or without
7modification, are permitted provided that the following conditions are met:
8
9 1. Redistributions of source code must retain the above copyright notice,
10    this list of conditions and the following disclaimer.
11
12 2. Redistributions in binary form must reproduce the above copyright
13    notice, this list of conditions and the following disclaimer in the
14    documentation and/or other materials provided with the distribution.
15
16 3. Neither the name of the Intel Corporation nor the names of its
17    contributors may be used to endorse or promote products derived from
18    this software without specific prior written permission.
19
20THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
21AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
22IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
23ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
24LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
25CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
26SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
27INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
28CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
29ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
30POSSIBILITY OF SUCH DAMAGE.
31
32***************************************************************************/
33
34/* $FreeBSD: if_em.h,v 1.26 2004/09/01 23:22:41 pdeuskar Exp $ */
35/* $OpenBSD: if_em.h,v 1.26 2006/07/07 02:56:18 brad Exp $ */
36
37#ifndef _EM_H_DEFINED_
38#define _EM_H_DEFINED_
39
40#include "bpfilter.h"
41#include "vlan.h"
42
43#include <sys/param.h>
44#include <sys/systm.h>
45#include <sys/sockio.h>
46#include <sys/mbuf.h>
47#include <sys/malloc.h>
48#include <sys/kernel.h>
49#include <sys/device.h>
50#include <sys/socket.h>
51
52#include <net/if.h>
53#include <net/if_dl.h>
54#include <net/if_media.h>
55
56#ifdef INET
57#include <netinet/in.h>
58#include <netinet/in_systm.h>
59#include <netinet/in_var.h>
60#include <netinet/ip.h>
61#include <netinet/if_ether.h>
62#include <netinet/tcp.h>
63#include <netinet/udp.h>
64#endif
65
66#if NVLAN > 0
67#include <net/if_types.h>
68#include <net/if_vlan_var.h>
69#endif
70
71#if NBPFILTER > 0
72#include <net/bpf.h>
73#endif
74
75#include <uvm/uvm_extern.h>
76
77#include <dev/pci/pcireg.h>
78#include <dev/pci/pcivar.h>
79#include <dev/pci/pcidevs.h>
80
81#include <dev/pci/if_em_hw.h>
82
83/* Tunables */
84
85/*
86 * EM_TXD: Maximum number of Transmit Descriptors
87 * Valid Range: 80-256 for 82542 and 82543-based adapters
88 *              80-4096 for others
89 * Default Value: 256
90 *   This value is the number of transmit descriptors allocated by the driver.
91 *   Increasing this value allows the driver to queue more transmits. Each
92 *   descriptor is 16 bytes.
93 *   Since TDLEN should be multiple of 128bytes, the number of transmit
94 *   desscriptors should meet the following condition.
95 *      (num_tx_desc * sizeof(struct em_tx_desc)) % 128 == 0
96 */
97#define EM_MIN_TXD			12
98#define EM_MAX_TXD_82543		256
99#define EM_MAX_TXD			512
100
101/*
102 * EM_RXD - Maximum number of receive Descriptors
103 * Valid Range: 80-256 for 82542 and 82543-based adapters
104 *              80-4096 for others
105 * Default Value: 256
106 *   This value is the number of receive descriptors allocated by the driver.
107 *   Increasing this value allows the driver to buffer more incoming packets.
108 *   Each descriptor is 16 bytes.  A receive buffer is also allocated for each
109 *   descriptor. The maximum MTU size is 16110.
110 *   Since TDLEN should be multiple of 128bytes, the number of transmit
111 *   desscriptors should meet the following condition.
112 *      (num_tx_desc * sizeof(struct em_tx_desc)) % 128 == 0
113 */
114#define EM_MIN_RXD			12
115#define EM_MAX_RXD			256
116
117/*
118 * EM_TIDV - Transmit Interrupt Delay Value
119 * Valid Range: 0-65535 (0=off)
120 * Default Value: 64
121 *   This value delays the generation of transmit interrupts in units of
122 *   1.024 microseconds. Transmit interrupt reduction can improve CPU
123 *   efficiency if properly tuned for specific network traffic. If the
124 *   system is reporting dropped transmits, this value may be set too high
125 *   causing the driver to run out of available transmit descriptors.
126 */
127#define EM_TIDV				64
128
129/*
130 * EM_TADV - Transmit Absolute Interrupt Delay Value (Not valid for 82542/82543/82544)
131 * Valid Range: 0-65535 (0=off)
132 * Default Value: 64
133 *   This value, in units of 1.024 microseconds, limits the delay in which a
134 *   transmit interrupt is generated. Useful only if EM_TIDV is non-zero,
135 *   this value ensures that an interrupt is generated after the initial
136 *   packet is sent on the wire within the set amount of time.  Proper tuning,
137 *   along with EM_TIDV, may improve traffic throughput in specific
138 *   network conditions.
139 */
140#define EM_TADV				64
141
142/*
143 * EM_RDTR - Receive Interrupt Delay Timer (Packet Timer)
144 * Valid Range: 0-65535 (0=off)
145 * Default Value: 0
146 *   This value delays the generation of receive interrupts in units of 1.024
147 *   microseconds.  Receive interrupt reduction can improve CPU efficiency if
148 *   properly tuned for specific network traffic. Increasing this value adds
149 *   extra latency to frame reception and can end up decreasing the throughput
150 *   of TCP traffic. If the system is reporting dropped receives, this value
151 *   may be set too high, causing the driver to run out of available receive
152 *   descriptors.
153 *
154 *   CAUTION: When setting EM_RDTR to a value other than 0, adapters
155 *            may hang (stop transmitting) under certain network conditions.
156 *            If this occurs a WATCHDOG message is logged in the system event log.
157 *            In addition, the controller is automatically reset, restoring the
158 *            network connection. To eliminate the potential for the hang
159 *            ensure that EM_RDTR is set to 0.
160 */
161#define EM_RDTR				0
162
163/*
164 * Receive Interrupt Absolute Delay Timer (Not valid for 82542/82543/82544)
165 * Valid Range: 0-65535 (0=off)
166 * Default Value: 64
167 *   This value, in units of 1.024 microseconds, limits the delay in which a
168 *   receive interrupt is generated. Useful only if EM_RDTR is non-zero,
169 *   this value ensures that an interrupt is generated after the initial
170 *   packet is received within the set amount of time.  Proper tuning,
171 *   along with EM_RDTR, may improve traffic throughput in specific network
172 *   conditions.
173 */
174#define EM_RADV				64
175
176/*
177 * This parameter controls the duration of transmit watchdog timer.
178 */
179#define EM_TX_TIMEOUT			5	/* set to 5 seconds */
180
181/*
182 * This parameter controls when the driver calls the routine to reclaim
183 * transmit descriptors.
184 */
185#define EM_TX_CLEANUP_THRESHOLD		(sc->num_tx_desc / 8)
186
187/*
188 * This parameter controls whether or not autonegotation is enabled.
189 *              0 - Disable autonegotiation
190 *              1 - Enable  autonegotiation
191 */
192#define DO_AUTO_NEG			1
193
194/*
195 * This parameter control whether or not the driver will wait for
196 * autonegotiation to complete.
197 *              1 - Wait for autonegotiation to complete
198 *              0 - Don't wait for autonegotiation to complete
199 */
200#define WAIT_FOR_AUTO_NEG_DEFAULT	0
201
202/*
203 * EM_MASTER_SLAVE is only defined to enable a workaround for a known compatibility issue
204 * with 82541/82547 devices and some switches.  See the "Known Limitations" section of
205 * the README file for a complete description and a list of affected switches.
206 *
207 *              0 = Hardware default
208 *              1 = Master mode
209 *              2 = Slave mode
210 *              3 = Auto master/slave
211 */
212/* #define EM_MASTER_SLAVE	2 */
213
214/* Tunables -- End */
215
216#define AUTONEG_ADV_DEFAULT		(ADVERTISE_10_HALF | ADVERTISE_10_FULL | \
217					 ADVERTISE_100_HALF | ADVERTISE_100_FULL | \
218					 ADVERTISE_1000_FULL)
219
220#define EM_MMBA				0x0010 /* Mem base address */
221#define EM_FLASH			0x0014 /* Flash memory on ICH8 */
222#define EM_ROUNDUP(size, unit) (((size) + (unit) - 1) & ~((unit) - 1))
223
224#define EM_SMARTSPEED_DOWNSHIFT		3
225#define EM_SMARTSPEED_MAX		15
226
227#define MAX_NUM_MULTICAST_ADDRESSES	128
228
229/* Defines for printing debug information */
230#define DEBUG_INIT	0
231#define DEBUG_IOCTL	0
232#define DEBUG_HW	0
233
234#define INIT_DEBUGOUT(S)		if (DEBUG_INIT)  printf(S "\n")
235#define INIT_DEBUGOUT1(S, A)		if (DEBUG_INIT)  printf(S "\n", A)
236#define INIT_DEBUGOUT2(S, A, B)		if (DEBUG_INIT)  printf(S "\n", A, B)
237#define IOCTL_DEBUGOUT(S)		if (DEBUG_IOCTL) printf(S "\n")
238#define IOCTL_DEBUGOUT1(S, A)		if (DEBUG_IOCTL) printf(S "\n", A)
239#define IOCTL_DEBUGOUT2(S, A, B)	if (DEBUG_IOCTL) printf(S "\n", A, B)
240#define HW_DEBUGOUT(S)			if (DEBUG_HW) printf(S "\n")
241#define HW_DEBUGOUT1(S, A)		if (DEBUG_HW) printf(S "\n", A)
242#define HW_DEBUGOUT2(S, A, B)		if (DEBUG_HW) printf(S "\n", A, B)
243
244/* Supported RX Buffer Sizes */
245#define EM_RXBUFFER_2048	2048
246#define EM_RXBUFFER_4096	4096
247#define EM_RXBUFFER_8192	8192
248#define EM_RXBUFFER_16384	16384
249
250#define EM_MAX_SCATTER		64
251
252struct em_buffer {
253	struct mbuf	*m_head;
254	bus_dmamap_t	map;		/* bus_dma map for packet */
255};
256
257struct em_q {
258	bus_dmamap_t	map;		/* bus_dma map for packet */
259};
260
261/*
262 * Bus dma allocation structure used by
263 * em_dma_malloc and em_dma_free.
264 */
265struct em_dma_alloc {
266	bus_addr_t		dma_paddr;
267	caddr_t			dma_vaddr;
268	bus_dma_tag_t		dma_tag;
269	bus_dmamap_t		dma_map;
270	bus_dma_segment_t	dma_seg;
271	bus_size_t		dma_size;
272	int			dma_nseg;
273};
274
275typedef enum _XSUM_CONTEXT_T {
276	OFFLOAD_NONE,
277	OFFLOAD_TCP_IP,
278	OFFLOAD_UDP_IP
279} XSUM_CONTEXT_T;
280
281/* For 82544 PCI-X Workaround */
282typedef struct _ADDRESS_LENGTH_PAIR
283{
284	u_int64_t	address;
285	u_int32_t	length;
286} ADDRESS_LENGTH_PAIR, *PADDRESS_LENGTH_PAIR;
287
288typedef struct _DESCRIPTOR_PAIR
289{
290	ADDRESS_LENGTH_PAIR descriptor[4];
291	u_int32_t	elements;
292} DESC_ARRAY, *PDESC_ARRAY;
293
294/* Our adapter structure */
295struct em_softc {
296	struct device	sc_dv;
297	struct arpcom	interface_data;
298	struct em_hw	hw;
299
300	/* OpenBSD operating-system-specific structures */
301	struct em_osdep	osdep;
302	struct ifmedia	media;
303	int		io_rid;
304
305	void		*sc_intrhand;
306	struct timeout	em_intr_enable;
307	struct timeout	timer_handle;
308	struct timeout	tx_fifo_timer_handle;
309	void		*sc_powerhook;
310	void		*sc_shutdownhook;
311
312	/* Info about the board itself */
313	u_int32_t	part_num;
314	u_int8_t	link_active;
315	u_int16_t	link_speed;
316	u_int16_t	link_duplex;
317	u_int32_t	smartspeed;
318	u_int32_t	tx_int_delay;
319	u_int32_t	tx_abs_int_delay;
320	u_int32_t	rx_int_delay;
321	u_int32_t	rx_abs_int_delay;
322
323	XSUM_CONTEXT_T	active_checksum_context;
324
325	/*
326	 * Transmit definitions
327	 *
328	 * We have an array of num_tx_desc descriptors (handled
329	 * by the controller) paired with an array of tx_buffers
330	 * (at tx_buffer_area).
331	 * The index of the next available descriptor is next_avail_tx_desc.
332	 * The number of remaining tx_desc is num_tx_desc_avail.
333	 */
334	struct em_dma_alloc	txdma;		/* bus_dma glue for tx desc */
335	struct em_tx_desc	*tx_desc_base;
336	u_int32_t		next_avail_tx_desc;
337	u_int32_t		oldest_used_tx_desc;
338	volatile u_int16_t	num_tx_desc_avail;
339	u_int16_t		num_tx_desc;
340	u_int32_t		txd_cmd;
341	struct em_buffer	*tx_buffer_area;
342	bus_dma_tag_t		txtag;		/* dma tag for tx */
343
344	/*
345	 * Receive definitions
346	 *
347	 * we have an array of num_rx_desc rx_desc (handled by the
348	 * controller), and paired with an array of rx_buffers
349	 * (at rx_buffer_area).
350	 * The next pair to check on receive is at offset next_rx_desc_to_check
351	 */
352	struct em_dma_alloc	rxdma;		/* bus_dma glue for rx desc */
353	struct em_rx_desc	*rx_desc_base;
354	u_int32_t		next_rx_desc_to_check;
355	u_int16_t		num_rx_desc;
356	u_int32_t		rx_buffer_len;
357	struct em_buffer	*rx_buffer_area;
358	bus_dma_tag_t		rxtag;
359
360	/* Jumbo frame */
361	struct mbuf		*fmp;
362	struct mbuf		*lmp;
363
364	/* Misc stats maintained by the driver */
365	unsigned long		dropped_pkts;
366	unsigned long		mbuf_alloc_failed;
367	unsigned long		mbuf_cluster_failed;
368	unsigned long		no_tx_desc_avail1;
369	unsigned long		no_tx_desc_avail2;
370	unsigned long		no_tx_map_avail;
371	unsigned long		no_tx_dma_setup;
372	unsigned long		watchdog_events;
373	unsigned long		rx_overruns;
374
375	/* Used in for 82547 10Mb Half workaround */
376	#define EM_PBA_BYTES_SHIFT	0xA
377	#define EM_TX_HEAD_ADDR_SHIFT	7
378	#define EM_PBA_TX_MASK		0xFFFF0000
379	#define EM_FIFO_HDR		0x10
380
381	#define EM_82547_PKT_THRESH	0x3e0
382
383	u_int32_t	tx_fifo_size;
384	u_int32_t	tx_fifo_head;
385	u_int32_t	tx_fifo_head_addr;
386	u_int64_t	tx_fifo_reset_cnt;
387	u_int64_t	tx_fifo_wrk_cnt;
388	u_int32_t	tx_head_addr;
389
390	/* For 82544 PCI-X Workaround */
391	boolean_t	pcix_82544;
392
393	struct em_hw_stats stats;
394};
395
396#endif /* _EM_H_DEFINED_ */
397