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David Sterba099dc4f2008-02-07 10:57:12 +01001/*
2 * IPWireless 3G PCMCIA Network Driver
3 *
4 * Original code
5 * by Stephen Blackheath <stephen@blacksapphire.com>,
6 * Ben Martel <benm@symmetric.co.nz>
7 *
8 * Copyrighted as follows:
9 * Copyright (C) 2004 by Symmetric Systems Ltd (NZ)
10 *
11 * Various driver changes and rewrites, port to new kernels
12 * Copyright (C) 2006-2007 Jiri Kosina
13 *
14 * Misc code cleanups and updates
15 * Copyright (C) 2007 David Sterba
16 */
17
18#include <linux/interrupt.h>
19#include <linux/io.h>
20#include <linux/irq.h>
21#include <linux/kernel.h>
22#include <linux/list.h>
23#include <linux/slab.h>
24
25#include "hardware.h"
26#include "setup_protocol.h"
27#include "network.h"
28#include "main.h"
29
30static void ipw_send_setup_packet(struct ipw_hardware *hw);
31static void handle_received_SETUP_packet(struct ipw_hardware *ipw,
32 unsigned int address,
33 unsigned char *data, int len,
34 int is_last);
35static void ipwireless_setup_timer(unsigned long data);
36static void handle_received_CTRL_packet(struct ipw_hardware *hw,
37 unsigned int channel_idx, unsigned char *data, int len);
38
39/*#define TIMING_DIAGNOSTICS*/
40
41#ifdef TIMING_DIAGNOSTICS
42
43static struct timing_stats {
44 unsigned long last_report_time;
45 unsigned long read_time;
46 unsigned long write_time;
47 unsigned long read_bytes;
48 unsigned long write_bytes;
49 unsigned long start_time;
50};
51
52static void start_timing(void)
53{
54 timing_stats.start_time = jiffies;
55}
56
57static void end_read_timing(unsigned length)
58{
59 timing_stats.read_time += (jiffies - start_time);
60 timing_stats.read_bytes += length + 2;
61 report_timing();
62}
63
64static void end_write_timing(unsigned length)
65{
66 timing_stats.write_time += (jiffies - start_time);
67 timing_stats.write_bytes += length + 2;
68 report_timing();
69}
70
71static void report_timing(void)
72{
73 unsigned long since = jiffies - timing_stats.last_report_time;
74
75 /* If it's been more than one second... */
76 if (since >= HZ) {
77 int first = (timing_stats.last_report_time == 0);
78
79 timing_stats.last_report_time = jiffies;
80 if (!first)
81 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
David Sterba622e7132008-07-28 16:52:55 +020082 ": %u us elapsed - read %lu bytes in %u us, wrote %lu bytes in %u us\n",
David Sterba099dc4f2008-02-07 10:57:12 +010083 jiffies_to_usecs(since),
84 timing_stats.read_bytes,
85 jiffies_to_usecs(timing_stats.read_time),
86 timing_stats.write_bytes,
87 jiffies_to_usecs(timing_stats.write_time));
88
89 timing_stats.read_time = 0;
90 timing_stats.write_time = 0;
91 timing_stats.read_bytes = 0;
92 timing_stats.write_bytes = 0;
93 }
94}
95#else
96static void start_timing(void) { }
97static void end_read_timing(unsigned length) { }
98static void end_write_timing(unsigned length) { }
99#endif
100
101/* Imported IPW definitions */
102
103#define LL_MTU_V1 318
104#define LL_MTU_V2 250
105#define LL_MTU_MAX (LL_MTU_V1 > LL_MTU_V2 ? LL_MTU_V1 : LL_MTU_V2)
106
107#define PRIO_DATA 2
108#define PRIO_CTRL 1
109#define PRIO_SETUP 0
110
111/* Addresses */
112#define ADDR_SETUP_PROT 0
113
114/* Protocol ids */
115enum {
116 /* Identifier for the Com Data protocol */
117 TL_PROTOCOLID_COM_DATA = 0,
118
119 /* Identifier for the Com Control protocol */
120 TL_PROTOCOLID_COM_CTRL = 1,
121
122 /* Identifier for the Setup protocol */
123 TL_PROTOCOLID_SETUP = 2
124};
125
126/* Number of bytes in NL packet header (cannot do
127 * sizeof(nl_packet_header) since it's a bitfield) */
128#define NL_FIRST_PACKET_HEADER_SIZE 3
129
130/* Number of bytes in NL packet header (cannot do
131 * sizeof(nl_packet_header) since it's a bitfield) */
132#define NL_FOLLOWING_PACKET_HEADER_SIZE 1
133
134struct nl_first_packet_header {
135#if defined(__BIG_ENDIAN_BITFIELD)
136 unsigned char packet_rank:2;
137 unsigned char address:3;
138 unsigned char protocol:3;
139#else
140 unsigned char protocol:3;
141 unsigned char address:3;
142 unsigned char packet_rank:2;
143#endif
144 unsigned char length_lsb;
145 unsigned char length_msb;
146};
147
148struct nl_packet_header {
149#if defined(__BIG_ENDIAN_BITFIELD)
150 unsigned char packet_rank:2;
151 unsigned char address:3;
152 unsigned char protocol:3;
153#else
154 unsigned char protocol:3;
155 unsigned char address:3;
156 unsigned char packet_rank:2;
157#endif
158};
159
160/* Value of 'packet_rank' above */
161#define NL_INTERMEDIATE_PACKET 0x0
162#define NL_LAST_PACKET 0x1
163#define NL_FIRST_PACKET 0x2
164
165union nl_packet {
166 /* Network packet header of the first packet (a special case) */
167 struct nl_first_packet_header hdr_first;
168 /* Network packet header of the following packets (if any) */
169 struct nl_packet_header hdr;
170 /* Complete network packet (header + data) */
171 unsigned char rawpkt[LL_MTU_MAX];
172} __attribute__ ((__packed__));
173
174#define HW_VERSION_UNKNOWN -1
175#define HW_VERSION_1 1
176#define HW_VERSION_2 2
177
178/* IPW I/O ports */
179#define IOIER 0x00 /* Interrupt Enable Register */
180#define IOIR 0x02 /* Interrupt Source/ACK register */
181#define IODCR 0x04 /* Data Control Register */
182#define IODRR 0x06 /* Data Read Register */
183#define IODWR 0x08 /* Data Write Register */
184#define IOESR 0x0A /* Embedded Driver Status Register */
185#define IORXR 0x0C /* Rx Fifo Register (Host to Embedded) */
186#define IOTXR 0x0E /* Tx Fifo Register (Embedded to Host) */
187
188/* I/O ports and bit definitions for version 1 of the hardware */
189
190/* IER bits*/
191#define IER_RXENABLED 0x1
192#define IER_TXENABLED 0x2
193
194/* ISR bits */
195#define IR_RXINTR 0x1
196#define IR_TXINTR 0x2
197
198/* DCR bits */
199#define DCR_RXDONE 0x1
200#define DCR_TXDONE 0x2
201#define DCR_RXRESET 0x4
202#define DCR_TXRESET 0x8
203
204/* I/O ports and bit definitions for version 2 of the hardware */
205
206struct MEMCCR {
207 unsigned short reg_config_option; /* PCCOR: Configuration Option Register */
208 unsigned short reg_config_and_status; /* PCCSR: Configuration and Status Register */
209 unsigned short reg_pin_replacement; /* PCPRR: Pin Replacemant Register */
210 unsigned short reg_socket_and_copy; /* PCSCR: Socket and Copy Register */
211 unsigned short reg_ext_status; /* PCESR: Extendend Status Register */
212 unsigned short reg_io_base; /* PCIOB: I/O Base Register */
213};
214
215struct MEMINFREG {
216 unsigned short memreg_tx_old; /* TX Register (R/W) */
217 unsigned short pad1;
218 unsigned short memreg_rx_done; /* RXDone Register (R/W) */
219 unsigned short pad2;
220 unsigned short memreg_rx; /* RX Register (R/W) */
221 unsigned short pad3;
222 unsigned short memreg_pc_interrupt_ack; /* PC intr Ack Register (W) */
223 unsigned short pad4;
224 unsigned long memreg_card_present;/* Mask for Host to check (R) for
225 * CARD_PRESENT_VALUE */
226 unsigned short memreg_tx_new; /* TX2 (new) Register (R/W) */
227};
228
David Sterba099dc4f2008-02-07 10:57:12 +0100229#define CARD_PRESENT_VALUE (0xBEEFCAFEUL)
230
231#define MEMTX_TX 0x0001
232#define MEMRX_RX 0x0001
233#define MEMRX_RX_DONE 0x0001
234#define MEMRX_PCINTACKK 0x0001
David Sterba099dc4f2008-02-07 10:57:12 +0100235
236#define NL_NUM_OF_PRIORITIES 3
237#define NL_NUM_OF_PROTOCOLS 3
238#define NL_NUM_OF_ADDRESSES NO_OF_IPW_CHANNELS
239
240struct ipw_hardware {
241 unsigned int base_port;
242 short hw_version;
243 unsigned short ll_mtu;
David Sterba63c4dbd2008-07-28 16:52:44 +0200244 spinlock_t lock;
David Sterba099dc4f2008-02-07 10:57:12 +0100245
246 int initializing;
247 int init_loops;
248 struct timer_list setup_timer;
249
David Sterbaeb4e5452008-06-06 10:56:35 +0200250 /* Flag if hw is ready to send next packet */
David Sterba099dc4f2008-02-07 10:57:12 +0100251 int tx_ready;
David Sterbaeb4e5452008-06-06 10:56:35 +0200252 /* Count of pending packets to be sent */
David Sterba099dc4f2008-02-07 10:57:12 +0100253 int tx_queued;
David Sterbaeb4e5452008-06-06 10:56:35 +0200254 struct list_head tx_queue[NL_NUM_OF_PRIORITIES];
David Sterba099dc4f2008-02-07 10:57:12 +0100255
256 int rx_bytes_queued;
257 struct list_head rx_queue;
258 /* Pool of rx_packet structures that are not currently used. */
259 struct list_head rx_pool;
260 int rx_pool_size;
261 /* True if reception of data is blocked while userspace processes it. */
262 int blocking_rx;
263 /* True if there is RX data ready on the hardware. */
264 int rx_ready;
265 unsigned short last_memtx_serial;
266 /*
267 * Newer versions of the V2 card firmware send serial numbers in the
268 * MemTX register. 'serial_number_detected' is set true when we detect
269 * a non-zero serial number (indicating the new firmware). Thereafter,
270 * the driver can safely ignore the Timer Recovery re-sends to avoid
271 * out-of-sync problems.
272 */
273 int serial_number_detected;
274 struct work_struct work_rx;
275
276 /* True if we are to send the set-up data to the hardware. */
277 int to_setup;
278
279 /* Card has been removed */
280 int removed;
281 /* Saved irq value when we disable the interrupt. */
282 int irq;
283 /* True if this driver is shutting down. */
284 int shutting_down;
285 /* Modem control lines */
286 unsigned int control_lines[NL_NUM_OF_ADDRESSES];
287 struct ipw_rx_packet *packet_assembler[NL_NUM_OF_ADDRESSES];
288
289 struct tasklet_struct tasklet;
290
291 /* The handle for the network layer, for the sending of events to it. */
292 struct ipw_network *network;
293 struct MEMINFREG __iomem *memory_info_regs;
294 struct MEMCCR __iomem *memregs_CCR;
295 void (*reboot_callback) (void *data);
296 void *reboot_callback_data;
297
298 unsigned short __iomem *memreg_tx;
299};
300
301/*
302 * Packet info structure for tx packets.
303 * Note: not all the fields defined here are required for all protocols
304 */
305struct ipw_tx_packet {
306 struct list_head queue;
307 /* channel idx + 1 */
308 unsigned char dest_addr;
309 /* SETUP, CTRL or DATA */
310 unsigned char protocol;
311 /* Length of data block, which starts at the end of this structure */
312 unsigned short length;
313 /* Sending state */
314 /* Offset of where we've sent up to so far */
315 unsigned long offset;
316 /* Count of packet fragments, starting at 0 */
317 int fragment_count;
318
319 /* Called after packet is sent and before is freed */
320 void (*packet_callback) (void *cb_data, unsigned int packet_length);
321 void *callback_data;
322};
323
324/* Signals from DTE */
325#define COMCTRL_RTS 0
326#define COMCTRL_DTR 1
327
328/* Signals from DCE */
329#define COMCTRL_CTS 2
330#define COMCTRL_DCD 3
331#define COMCTRL_DSR 4
332#define COMCTRL_RI 5
333
334struct ipw_control_packet_body {
335 /* DTE signal or DCE signal */
336 unsigned char sig_no;
337 /* 0: set signal, 1: clear signal */
338 unsigned char value;
339} __attribute__ ((__packed__));
340
341struct ipw_control_packet {
342 struct ipw_tx_packet header;
343 struct ipw_control_packet_body body;
344};
345
346struct ipw_rx_packet {
347 struct list_head queue;
348 unsigned int capacity;
349 unsigned int length;
350 unsigned int protocol;
351 unsigned int channel_idx;
352};
353
David Sterba099dc4f2008-02-07 10:57:12 +0100354static char *data_type(const unsigned char *buf, unsigned length)
355{
356 struct nl_packet_header *hdr = (struct nl_packet_header *) buf;
357
358 if (length == 0)
359 return " ";
360
361 if (hdr->packet_rank & NL_FIRST_PACKET) {
362 switch (hdr->protocol) {
363 case TL_PROTOCOLID_COM_DATA: return "DATA ";
364 case TL_PROTOCOLID_COM_CTRL: return "CTRL ";
365 case TL_PROTOCOLID_SETUP: return "SETUP";
366 default: return "???? ";
367 }
368 } else
369 return " ";
370}
371
372#define DUMP_MAX_BYTES 64
373
374static void dump_data_bytes(const char *type, const unsigned char *data,
375 unsigned length)
376{
377 char prefix[56];
378
379 sprintf(prefix, IPWIRELESS_PCCARD_NAME ": %s %s ",
380 type, data_type(data, length));
381 print_hex_dump_bytes(prefix, 0, (void *)data,
382 length < DUMP_MAX_BYTES ? length : DUMP_MAX_BYTES);
383}
384
385static int do_send_fragment(struct ipw_hardware *hw, const unsigned char *data,
386 unsigned length)
387{
David Sterbad4c0deb2008-07-28 16:52:33 +0200388 unsigned i;
David Sterba099dc4f2008-02-07 10:57:12 +0100389 unsigned long flags;
390
391 start_timing();
392
393 if (length == 0)
394 return 0;
395
396 if (length > hw->ll_mtu)
397 return -1;
398
399 if (ipwireless_debug)
400 dump_data_bytes("send", data, length);
401
David Sterba63c4dbd2008-07-28 16:52:44 +0200402 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100403
David Sterbaeb4e5452008-06-06 10:56:35 +0200404 hw->tx_ready = 0;
405
David Sterba099dc4f2008-02-07 10:57:12 +0100406 if (hw->hw_version == HW_VERSION_1) {
407 outw((unsigned short) length, hw->base_port + IODWR);
408
409 for (i = 0; i < length; i += 2) {
410 unsigned short d = data[i];
411 __le16 raw_data;
412
David Sterbad4c0deb2008-07-28 16:52:33 +0200413 if (i + 1 < length)
David Sterba099dc4f2008-02-07 10:57:12 +0100414 d |= data[i + 1] << 8;
415 raw_data = cpu_to_le16(d);
416 outw(raw_data, hw->base_port + IODWR);
417 }
418
419 outw(DCR_TXDONE, hw->base_port + IODCR);
420 } else if (hw->hw_version == HW_VERSION_2) {
David Sterba2e713162008-07-28 16:52:39 +0200421 outw((unsigned short) length, hw->base_port);
David Sterba099dc4f2008-02-07 10:57:12 +0100422
423 for (i = 0; i < length; i += 2) {
424 unsigned short d = data[i];
425 __le16 raw_data;
426
David Sterbad4c0deb2008-07-28 16:52:33 +0200427 if (i + 1 < length)
David Sterba099dc4f2008-02-07 10:57:12 +0100428 d |= data[i + 1] << 8;
429 raw_data = cpu_to_le16(d);
David Sterba2e713162008-07-28 16:52:39 +0200430 outw(raw_data, hw->base_port);
David Sterba099dc4f2008-02-07 10:57:12 +0100431 }
432 while ((i & 3) != 2) {
David Sterba2e713162008-07-28 16:52:39 +0200433 outw((unsigned short) 0xDEAD, hw->base_port);
David Sterba099dc4f2008-02-07 10:57:12 +0100434 i += 2;
435 }
436 writew(MEMRX_RX, &hw->memory_info_regs->memreg_rx);
437 }
438
David Sterba63c4dbd2008-07-28 16:52:44 +0200439 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100440
441 end_write_timing(length);
442
443 return 0;
444}
445
446static int do_send_packet(struct ipw_hardware *hw, struct ipw_tx_packet *packet)
447{
448 unsigned short fragment_data_len;
449 unsigned short data_left = packet->length - packet->offset;
450 unsigned short header_size;
451 union nl_packet pkt;
452
453 header_size =
454 (packet->fragment_count == 0)
455 ? NL_FIRST_PACKET_HEADER_SIZE
456 : NL_FOLLOWING_PACKET_HEADER_SIZE;
457 fragment_data_len = hw->ll_mtu - header_size;
458 if (data_left < fragment_data_len)
459 fragment_data_len = data_left;
460
461 pkt.hdr_first.protocol = packet->protocol;
462 pkt.hdr_first.address = packet->dest_addr;
463 pkt.hdr_first.packet_rank = 0;
464
465 /* First packet? */
466 if (packet->fragment_count == 0) {
467 pkt.hdr_first.packet_rank |= NL_FIRST_PACKET;
468 pkt.hdr_first.length_lsb = (unsigned char) packet->length;
469 pkt.hdr_first.length_msb =
470 (unsigned char) (packet->length >> 8);
471 }
472
473 memcpy(pkt.rawpkt + header_size,
474 ((unsigned char *) packet) + sizeof(struct ipw_tx_packet) +
475 packet->offset, fragment_data_len);
476 packet->offset += fragment_data_len;
477 packet->fragment_count++;
478
479 /* Last packet? (May also be first packet.) */
480 if (packet->offset == packet->length)
481 pkt.hdr_first.packet_rank |= NL_LAST_PACKET;
482 do_send_fragment(hw, pkt.rawpkt, header_size + fragment_data_len);
483
484 /* If this packet has unsent data, then re-queue it. */
485 if (packet->offset < packet->length) {
486 /*
487 * Re-queue it at the head of the highest priority queue so
488 * it goes before all other packets
489 */
490 unsigned long flags;
491
David Sterba63c4dbd2008-07-28 16:52:44 +0200492 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100493 list_add(&packet->queue, &hw->tx_queue[0]);
David Sterbaeb4e5452008-06-06 10:56:35 +0200494 hw->tx_queued++;
David Sterba63c4dbd2008-07-28 16:52:44 +0200495 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100496 } else {
497 if (packet->packet_callback)
498 packet->packet_callback(packet->callback_data,
499 packet->length);
500 kfree(packet);
501 }
502
503 return 0;
504}
505
506static void ipw_setup_hardware(struct ipw_hardware *hw)
507{
508 unsigned long flags;
509
David Sterba63c4dbd2008-07-28 16:52:44 +0200510 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100511 if (hw->hw_version == HW_VERSION_1) {
512 /* Reset RX FIFO */
513 outw(DCR_RXRESET, hw->base_port + IODCR);
514 /* SB: Reset TX FIFO */
515 outw(DCR_TXRESET, hw->base_port + IODCR);
516
517 /* Enable TX and RX interrupts. */
518 outw(IER_TXENABLED | IER_RXENABLED, hw->base_port + IOIER);
519 } else {
520 /*
521 * Set INTRACK bit (bit 0), which means we must explicitly
522 * acknowledge interrupts by clearing bit 2 of reg_config_and_status.
523 */
524 unsigned short csr = readw(&hw->memregs_CCR->reg_config_and_status);
525
526 csr |= 1;
527 writew(csr, &hw->memregs_CCR->reg_config_and_status);
528 }
David Sterba63c4dbd2008-07-28 16:52:44 +0200529 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100530}
531
532/*
533 * If 'packet' is NULL, then this function allocates a new packet, setting its
534 * length to 0 and ensuring it has the specified minimum amount of free space.
535 *
536 * If 'packet' is not NULL, then this function enlarges it if it doesn't
537 * have the specified minimum amount of free space.
538 *
539 */
540static struct ipw_rx_packet *pool_allocate(struct ipw_hardware *hw,
541 struct ipw_rx_packet *packet,
542 int minimum_free_space)
543{
544
545 if (!packet) {
546 unsigned long flags;
547
David Sterba63c4dbd2008-07-28 16:52:44 +0200548 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100549 if (!list_empty(&hw->rx_pool)) {
550 packet = list_first_entry(&hw->rx_pool,
551 struct ipw_rx_packet, queue);
552 list_del(&packet->queue);
553 hw->rx_pool_size--;
David Sterba63c4dbd2008-07-28 16:52:44 +0200554 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100555 } else {
David Sterba099dc4f2008-02-07 10:57:12 +0100556 static int min_capacity = 256;
557 int new_capacity;
558
David Sterba63c4dbd2008-07-28 16:52:44 +0200559 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100560 new_capacity =
David Sterbad4c0deb2008-07-28 16:52:33 +0200561 (minimum_free_space > min_capacity
562 ? minimum_free_space
563 : min_capacity);
David Sterba099dc4f2008-02-07 10:57:12 +0100564 packet = kmalloc(sizeof(struct ipw_rx_packet)
565 + new_capacity, GFP_ATOMIC);
566 if (!packet)
567 return NULL;
568 packet->capacity = new_capacity;
569 }
570 packet->length = 0;
571 }
572
David Sterba099dc4f2008-02-07 10:57:12 +0100573 if (packet->length + minimum_free_space > packet->capacity) {
574 struct ipw_rx_packet *old_packet = packet;
575
576 packet = kmalloc(sizeof(struct ipw_rx_packet) +
577 old_packet->length + minimum_free_space,
578 GFP_ATOMIC);
Darren Jenkins43f77e92008-07-12 13:47:49 -0700579 if (!packet) {
580 kfree(old_packet);
David Sterba099dc4f2008-02-07 10:57:12 +0100581 return NULL;
Darren Jenkins43f77e92008-07-12 13:47:49 -0700582 }
David Sterba099dc4f2008-02-07 10:57:12 +0100583 memcpy(packet, old_packet,
584 sizeof(struct ipw_rx_packet)
585 + old_packet->length);
586 packet->capacity = old_packet->length + minimum_free_space;
587 kfree(old_packet);
588 }
589
590 return packet;
591}
592
593static void pool_free(struct ipw_hardware *hw, struct ipw_rx_packet *packet)
594{
595 if (hw->rx_pool_size > 6)
596 kfree(packet);
597 else {
598 hw->rx_pool_size++;
599 list_add_tail(&packet->queue, &hw->rx_pool);
600 }
601}
602
603static void queue_received_packet(struct ipw_hardware *hw,
604 unsigned int protocol, unsigned int address,
605 unsigned char *data, int length, int is_last)
606{
607 unsigned int channel_idx = address - 1;
608 struct ipw_rx_packet *packet = NULL;
609 unsigned long flags;
610
611 /* Discard packet if channel index is out of range. */
612 if (channel_idx >= NL_NUM_OF_ADDRESSES) {
613 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
614 ": data packet has bad address %u\n", address);
615 return;
616 }
617
618 /*
619 * ->packet_assembler is safe to touch unlocked, this is the only place
620 */
621 if (protocol == TL_PROTOCOLID_COM_DATA) {
622 struct ipw_rx_packet **assem =
623 &hw->packet_assembler[channel_idx];
624
625 /*
626 * Create a new packet, or assembler already contains one
627 * enlarge it by 'length' bytes.
628 */
629 (*assem) = pool_allocate(hw, *assem, length);
630 if (!(*assem)) {
631 printk(KERN_ERR IPWIRELESS_PCCARD_NAME
632 ": no memory for incomming data packet, dropped!\n");
633 return;
634 }
635 (*assem)->protocol = protocol;
636 (*assem)->channel_idx = channel_idx;
637
638 /* Append this packet data onto existing data. */
639 memcpy((unsigned char *)(*assem) +
640 sizeof(struct ipw_rx_packet)
641 + (*assem)->length, data, length);
642 (*assem)->length += length;
643 if (is_last) {
644 packet = *assem;
645 *assem = NULL;
646 /* Count queued DATA bytes only */
David Sterba63c4dbd2008-07-28 16:52:44 +0200647 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100648 hw->rx_bytes_queued += packet->length;
David Sterba63c4dbd2008-07-28 16:52:44 +0200649 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100650 }
651 } else {
652 /* If it's a CTRL packet, don't assemble, just queue it. */
653 packet = pool_allocate(hw, NULL, length);
654 if (!packet) {
655 printk(KERN_ERR IPWIRELESS_PCCARD_NAME
656 ": no memory for incomming ctrl packet, dropped!\n");
657 return;
658 }
659 packet->protocol = protocol;
660 packet->channel_idx = channel_idx;
661 memcpy((unsigned char *)packet + sizeof(struct ipw_rx_packet),
662 data, length);
663 packet->length = length;
664 }
665
666 /*
667 * If this is the last packet, then send the assembled packet on to the
668 * network layer.
669 */
670 if (packet) {
David Sterba63c4dbd2008-07-28 16:52:44 +0200671 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100672 list_add_tail(&packet->queue, &hw->rx_queue);
673 /* Block reception of incoming packets if queue is full. */
674 hw->blocking_rx =
David Sterbad4c0deb2008-07-28 16:52:33 +0200675 (hw->rx_bytes_queued >= IPWIRELESS_RX_QUEUE_SIZE);
David Sterba099dc4f2008-02-07 10:57:12 +0100676
David Sterba63c4dbd2008-07-28 16:52:44 +0200677 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100678 schedule_work(&hw->work_rx);
679 }
680}
681
682/*
683 * Workqueue callback
684 */
685static void ipw_receive_data_work(struct work_struct *work_rx)
686{
687 struct ipw_hardware *hw =
688 container_of(work_rx, struct ipw_hardware, work_rx);
689 unsigned long flags;
690
David Sterba63c4dbd2008-07-28 16:52:44 +0200691 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100692 while (!list_empty(&hw->rx_queue)) {
693 struct ipw_rx_packet *packet =
694 list_first_entry(&hw->rx_queue,
695 struct ipw_rx_packet, queue);
696
697 if (hw->shutting_down)
698 break;
699 list_del(&packet->queue);
700
701 /*
702 * Note: ipwireless_network_packet_received must be called in a
703 * process context (i.e. via schedule_work) because the tty
704 * output code can sleep in the tty_flip_buffer_push call.
705 */
706 if (packet->protocol == TL_PROTOCOLID_COM_DATA) {
707 if (hw->network != NULL) {
708 /* If the network hasn't been disconnected. */
David Sterba63c4dbd2008-07-28 16:52:44 +0200709 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100710 /*
711 * This must run unlocked due to tty processing
712 * and mutex locking
713 */
714 ipwireless_network_packet_received(
715 hw->network,
716 packet->channel_idx,
717 (unsigned char *)packet
718 + sizeof(struct ipw_rx_packet),
719 packet->length);
David Sterba63c4dbd2008-07-28 16:52:44 +0200720 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100721 }
722 /* Count queued DATA bytes only */
723 hw->rx_bytes_queued -= packet->length;
724 } else {
725 /*
726 * This is safe to be called locked, callchain does
727 * not block
728 */
729 handle_received_CTRL_packet(hw, packet->channel_idx,
730 (unsigned char *)packet
731 + sizeof(struct ipw_rx_packet),
732 packet->length);
733 }
734 pool_free(hw, packet);
735 /*
736 * Unblock reception of incoming packets if queue is no longer
737 * full.
738 */
739 hw->blocking_rx =
740 hw->rx_bytes_queued >= IPWIRELESS_RX_QUEUE_SIZE;
741 if (hw->shutting_down)
742 break;
743 }
David Sterba63c4dbd2008-07-28 16:52:44 +0200744 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100745}
746
747static void handle_received_CTRL_packet(struct ipw_hardware *hw,
748 unsigned int channel_idx,
749 unsigned char *data, int len)
750{
751 struct ipw_control_packet_body *body =
752 (struct ipw_control_packet_body *) data;
753 unsigned int changed_mask;
754
755 if (len != sizeof(struct ipw_control_packet_body)) {
756 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
757 ": control packet was %d bytes - wrong size!\n",
758 len);
759 return;
760 }
761
762 switch (body->sig_no) {
763 case COMCTRL_CTS:
764 changed_mask = IPW_CONTROL_LINE_CTS;
765 break;
766 case COMCTRL_DCD:
767 changed_mask = IPW_CONTROL_LINE_DCD;
768 break;
769 case COMCTRL_DSR:
770 changed_mask = IPW_CONTROL_LINE_DSR;
771 break;
772 case COMCTRL_RI:
773 changed_mask = IPW_CONTROL_LINE_RI;
774 break;
775 default:
776 changed_mask = 0;
777 }
778
779 if (changed_mask != 0) {
780 if (body->value)
781 hw->control_lines[channel_idx] |= changed_mask;
782 else
783 hw->control_lines[channel_idx] &= ~changed_mask;
784 if (hw->network)
785 ipwireless_network_notify_control_line_change(
786 hw->network,
787 channel_idx,
788 hw->control_lines[channel_idx],
789 changed_mask);
790 }
791}
792
793static void handle_received_packet(struct ipw_hardware *hw,
794 union nl_packet *packet,
795 unsigned short len)
796{
797 unsigned int protocol = packet->hdr.protocol;
798 unsigned int address = packet->hdr.address;
799 unsigned int header_length;
800 unsigned char *data;
801 unsigned int data_len;
802 int is_last = packet->hdr.packet_rank & NL_LAST_PACKET;
803
804 if (packet->hdr.packet_rank & NL_FIRST_PACKET)
805 header_length = NL_FIRST_PACKET_HEADER_SIZE;
806 else
807 header_length = NL_FOLLOWING_PACKET_HEADER_SIZE;
808
809 data = packet->rawpkt + header_length;
810 data_len = len - header_length;
811 switch (protocol) {
812 case TL_PROTOCOLID_COM_DATA:
813 case TL_PROTOCOLID_COM_CTRL:
814 queue_received_packet(hw, protocol, address, data, data_len,
815 is_last);
816 break;
817 case TL_PROTOCOLID_SETUP:
818 handle_received_SETUP_packet(hw, address, data, data_len,
819 is_last);
820 break;
821 }
822}
823
824static void acknowledge_data_read(struct ipw_hardware *hw)
825{
826 if (hw->hw_version == HW_VERSION_1)
827 outw(DCR_RXDONE, hw->base_port + IODCR);
828 else
829 writew(MEMRX_PCINTACKK,
830 &hw->memory_info_regs->memreg_pc_interrupt_ack);
831}
832
833/*
834 * Retrieve a packet from the IPW hardware.
835 */
836static void do_receive_packet(struct ipw_hardware *hw)
837{
838 unsigned len;
David Sterbad4c0deb2008-07-28 16:52:33 +0200839 unsigned i;
David Sterba099dc4f2008-02-07 10:57:12 +0100840 unsigned char pkt[LL_MTU_MAX];
841
842 start_timing();
843
844 if (hw->hw_version == HW_VERSION_1) {
845 len = inw(hw->base_port + IODRR);
846 if (len > hw->ll_mtu) {
847 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
David Sterba622e7132008-07-28 16:52:55 +0200848 ": received a packet of %u bytes - longer than the MTU!\n", len);
David Sterba099dc4f2008-02-07 10:57:12 +0100849 outw(DCR_RXDONE | DCR_RXRESET, hw->base_port + IODCR);
850 return;
851 }
852
853 for (i = 0; i < len; i += 2) {
854 __le16 raw_data = inw(hw->base_port + IODRR);
855 unsigned short data = le16_to_cpu(raw_data);
856
857 pkt[i] = (unsigned char) data;
858 pkt[i + 1] = (unsigned char) (data >> 8);
859 }
860 } else {
David Sterba2e713162008-07-28 16:52:39 +0200861 len = inw(hw->base_port);
David Sterba099dc4f2008-02-07 10:57:12 +0100862 if (len > hw->ll_mtu) {
863 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
David Sterba622e7132008-07-28 16:52:55 +0200864 ": received a packet of %u bytes - longer than the MTU!\n", len);
David Sterba099dc4f2008-02-07 10:57:12 +0100865 writew(MEMRX_PCINTACKK,
866 &hw->memory_info_regs->memreg_pc_interrupt_ack);
867 return;
868 }
869
870 for (i = 0; i < len; i += 2) {
David Sterba2e713162008-07-28 16:52:39 +0200871 __le16 raw_data = inw(hw->base_port);
David Sterba099dc4f2008-02-07 10:57:12 +0100872 unsigned short data = le16_to_cpu(raw_data);
873
874 pkt[i] = (unsigned char) data;
875 pkt[i + 1] = (unsigned char) (data >> 8);
876 }
877
878 while ((i & 3) != 2) {
David Sterba2e713162008-07-28 16:52:39 +0200879 inw(hw->base_port);
David Sterba099dc4f2008-02-07 10:57:12 +0100880 i += 2;
881 }
882 }
883
884 acknowledge_data_read(hw);
885
886 if (ipwireless_debug)
887 dump_data_bytes("recv", pkt, len);
888
889 handle_received_packet(hw, (union nl_packet *) pkt, len);
890
891 end_read_timing(len);
892}
893
894static int get_current_packet_priority(struct ipw_hardware *hw)
895{
896 /*
897 * If we're initializing, don't send anything of higher priority than
898 * PRIO_SETUP. The network layer therefore need not care about
899 * hardware initialization - any of its stuff will simply be queued
900 * until setup is complete.
901 */
902 return (hw->to_setup || hw->initializing
David Sterbad4c0deb2008-07-28 16:52:33 +0200903 ? PRIO_SETUP + 1 : NL_NUM_OF_PRIORITIES);
David Sterba099dc4f2008-02-07 10:57:12 +0100904}
905
906/*
907 * return 1 if something has been received from hw
908 */
909static int get_packets_from_hw(struct ipw_hardware *hw)
910{
911 int received = 0;
912 unsigned long flags;
913
David Sterba63c4dbd2008-07-28 16:52:44 +0200914 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100915 while (hw->rx_ready && !hw->blocking_rx) {
916 received = 1;
917 hw->rx_ready--;
David Sterba63c4dbd2008-07-28 16:52:44 +0200918 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100919
920 do_receive_packet(hw);
921
David Sterba63c4dbd2008-07-28 16:52:44 +0200922 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100923 }
David Sterba63c4dbd2008-07-28 16:52:44 +0200924 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100925
926 return received;
927}
928
929/*
930 * Send pending packet up to given priority, prioritize SETUP data until
931 * hardware is fully setup.
932 *
933 * return 1 if more packets can be sent
934 */
935static int send_pending_packet(struct ipw_hardware *hw, int priority_limit)
936{
937 int more_to_send = 0;
938 unsigned long flags;
939
David Sterba63c4dbd2008-07-28 16:52:44 +0200940 spin_lock_irqsave(&hw->lock, flags);
David Sterbaeb4e5452008-06-06 10:56:35 +0200941 if (hw->tx_queued && hw->tx_ready) {
David Sterba099dc4f2008-02-07 10:57:12 +0100942 int priority;
943 struct ipw_tx_packet *packet = NULL;
944
David Sterba099dc4f2008-02-07 10:57:12 +0100945 /* Pick a packet */
946 for (priority = 0; priority < priority_limit; priority++) {
947 if (!list_empty(&hw->tx_queue[priority])) {
948 packet = list_first_entry(
949 &hw->tx_queue[priority],
950 struct ipw_tx_packet,
951 queue);
952
David Sterbaeb4e5452008-06-06 10:56:35 +0200953 hw->tx_queued--;
David Sterba099dc4f2008-02-07 10:57:12 +0100954 list_del(&packet->queue);
955
956 break;
957 }
958 }
959 if (!packet) {
960 hw->tx_queued = 0;
David Sterba63c4dbd2008-07-28 16:52:44 +0200961 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100962 return 0;
963 }
David Sterbaeb4e5452008-06-06 10:56:35 +0200964
David Sterba63c4dbd2008-07-28 16:52:44 +0200965 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100966
967 /* Send */
968 do_send_packet(hw, packet);
969
970 /* Check if more to send */
David Sterba63c4dbd2008-07-28 16:52:44 +0200971 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100972 for (priority = 0; priority < priority_limit; priority++)
973 if (!list_empty(&hw->tx_queue[priority])) {
974 more_to_send = 1;
975 break;
976 }
977
978 if (!more_to_send)
979 hw->tx_queued = 0;
980 }
David Sterba63c4dbd2008-07-28 16:52:44 +0200981 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100982
983 return more_to_send;
984}
985
986/*
987 * Send and receive all queued packets.
988 */
989static void ipwireless_do_tasklet(unsigned long hw_)
990{
991 struct ipw_hardware *hw = (struct ipw_hardware *) hw_;
992 unsigned long flags;
993
David Sterba63c4dbd2008-07-28 16:52:44 +0200994 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100995 if (hw->shutting_down) {
David Sterba63c4dbd2008-07-28 16:52:44 +0200996 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +0100997 return;
998 }
999
1000 if (hw->to_setup == 1) {
1001 /*
1002 * Initial setup data sent to hardware
1003 */
1004 hw->to_setup = 2;
David Sterba63c4dbd2008-07-28 16:52:44 +02001005 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001006
1007 ipw_setup_hardware(hw);
1008 ipw_send_setup_packet(hw);
1009
1010 send_pending_packet(hw, PRIO_SETUP + 1);
1011 get_packets_from_hw(hw);
1012 } else {
1013 int priority_limit = get_current_packet_priority(hw);
1014 int again;
1015
David Sterba63c4dbd2008-07-28 16:52:44 +02001016 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001017
1018 do {
1019 again = send_pending_packet(hw, priority_limit);
1020 again |= get_packets_from_hw(hw);
1021 } while (again);
1022 }
1023}
1024
1025/*
1026 * return true if the card is physically present.
1027 */
1028static int is_card_present(struct ipw_hardware *hw)
1029{
1030 if (hw->hw_version == HW_VERSION_1)
1031 return inw(hw->base_port + IOIR) != 0xFFFF;
1032 else
1033 return readl(&hw->memory_info_regs->memreg_card_present) ==
1034 CARD_PRESENT_VALUE;
1035}
1036
1037static irqreturn_t ipwireless_handle_v1_interrupt(int irq,
1038 struct ipw_hardware *hw)
1039{
1040 unsigned short irqn;
1041
1042 irqn = inw(hw->base_port + IOIR);
1043
1044 /* Check if card is present */
1045 if (irqn == 0xFFFF)
1046 return IRQ_NONE;
1047 else if (irqn != 0) {
1048 unsigned short ack = 0;
1049 unsigned long flags;
1050
1051 /* Transmit complete. */
1052 if (irqn & IR_TXINTR) {
1053 ack |= IR_TXINTR;
David Sterba63c4dbd2008-07-28 16:52:44 +02001054 spin_lock_irqsave(&hw->lock, flags);
David Sterbaeb4e5452008-06-06 10:56:35 +02001055 hw->tx_ready = 1;
David Sterba63c4dbd2008-07-28 16:52:44 +02001056 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001057 }
1058 /* Received data */
1059 if (irqn & IR_RXINTR) {
1060 ack |= IR_RXINTR;
David Sterba63c4dbd2008-07-28 16:52:44 +02001061 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001062 hw->rx_ready++;
David Sterba63c4dbd2008-07-28 16:52:44 +02001063 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001064 }
1065 if (ack != 0) {
1066 outw(ack, hw->base_port + IOIR);
1067 tasklet_schedule(&hw->tasklet);
1068 }
1069 return IRQ_HANDLED;
1070 }
1071 return IRQ_NONE;
1072}
1073
1074static void acknowledge_pcmcia_interrupt(struct ipw_hardware *hw)
1075{
1076 unsigned short csr = readw(&hw->memregs_CCR->reg_config_and_status);
1077
1078 csr &= 0xfffd;
1079 writew(csr, &hw->memregs_CCR->reg_config_and_status);
1080}
1081
1082static irqreturn_t ipwireless_handle_v2_v3_interrupt(int irq,
1083 struct ipw_hardware *hw)
1084{
1085 int tx = 0;
1086 int rx = 0;
1087 int rx_repeat = 0;
1088 int try_mem_tx_old;
1089 unsigned long flags;
1090
1091 do {
1092
1093 unsigned short memtx = readw(hw->memreg_tx);
1094 unsigned short memtx_serial;
1095 unsigned short memrxdone =
1096 readw(&hw->memory_info_regs->memreg_rx_done);
1097
1098 try_mem_tx_old = 0;
1099
1100 /* check whether the interrupt was generated by ipwireless card */
1101 if (!(memtx & MEMTX_TX) && !(memrxdone & MEMRX_RX_DONE)) {
1102
1103 /* check if the card uses memreg_tx_old register */
1104 if (hw->memreg_tx == &hw->memory_info_regs->memreg_tx_new) {
1105 memtx = readw(&hw->memory_info_regs->memreg_tx_old);
1106 if (memtx & MEMTX_TX) {
1107 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
1108 ": Using memreg_tx_old\n");
1109 hw->memreg_tx =
1110 &hw->memory_info_regs->memreg_tx_old;
1111 } else {
1112 return IRQ_NONE;
1113 }
David Sterbad4c0deb2008-07-28 16:52:33 +02001114 } else
David Sterba099dc4f2008-02-07 10:57:12 +01001115 return IRQ_NONE;
David Sterba099dc4f2008-02-07 10:57:12 +01001116 }
1117
1118 /*
1119 * See if the card is physically present. Note that while it is
1120 * powering up, it appears not to be present.
1121 */
1122 if (!is_card_present(hw)) {
1123 acknowledge_pcmcia_interrupt(hw);
1124 return IRQ_HANDLED;
1125 }
1126
1127 memtx_serial = memtx & (unsigned short) 0xff00;
1128 if (memtx & MEMTX_TX) {
1129 writew(memtx_serial, hw->memreg_tx);
1130
1131 if (hw->serial_number_detected) {
1132 if (memtx_serial != hw->last_memtx_serial) {
1133 hw->last_memtx_serial = memtx_serial;
David Sterba63c4dbd2008-07-28 16:52:44 +02001134 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001135 hw->rx_ready++;
David Sterba63c4dbd2008-07-28 16:52:44 +02001136 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001137 rx = 1;
1138 } else
1139 /* Ignore 'Timer Recovery' duplicates. */
1140 rx_repeat = 1;
1141 } else {
1142 /*
1143 * If a non-zero serial number is seen, then enable
1144 * serial number checking.
1145 */
1146 if (memtx_serial != 0) {
1147 hw->serial_number_detected = 1;
1148 printk(KERN_DEBUG IPWIRELESS_PCCARD_NAME
1149 ": memreg_tx serial num detected\n");
1150
David Sterba63c4dbd2008-07-28 16:52:44 +02001151 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001152 hw->rx_ready++;
David Sterba63c4dbd2008-07-28 16:52:44 +02001153 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001154 }
1155 rx = 1;
1156 }
1157 }
1158 if (memrxdone & MEMRX_RX_DONE) {
1159 writew(0, &hw->memory_info_regs->memreg_rx_done);
David Sterba63c4dbd2008-07-28 16:52:44 +02001160 spin_lock_irqsave(&hw->lock, flags);
David Sterbaeb4e5452008-06-06 10:56:35 +02001161 hw->tx_ready = 1;
David Sterba63c4dbd2008-07-28 16:52:44 +02001162 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001163 tx = 1;
1164 }
1165 if (tx)
1166 writew(MEMRX_PCINTACKK,
1167 &hw->memory_info_regs->memreg_pc_interrupt_ack);
1168
1169 acknowledge_pcmcia_interrupt(hw);
1170
1171 if (tx || rx)
1172 tasklet_schedule(&hw->tasklet);
1173 else if (!rx_repeat) {
1174 if (hw->memreg_tx == &hw->memory_info_regs->memreg_tx_new) {
1175 if (hw->serial_number_detected)
1176 printk(KERN_WARNING IPWIRELESS_PCCARD_NAME
1177 ": spurious interrupt - new_tx mode\n");
1178 else {
1179 printk(KERN_WARNING IPWIRELESS_PCCARD_NAME
David Sterba622e7132008-07-28 16:52:55 +02001180 ": no valid memreg_tx value - switching to the old memreg_tx\n");
David Sterba099dc4f2008-02-07 10:57:12 +01001181 hw->memreg_tx =
1182 &hw->memory_info_regs->memreg_tx_old;
1183 try_mem_tx_old = 1;
1184 }
1185 } else
1186 printk(KERN_WARNING IPWIRELESS_PCCARD_NAME
1187 ": spurious interrupt - old_tx mode\n");
1188 }
1189
1190 } while (try_mem_tx_old == 1);
1191
1192 return IRQ_HANDLED;
1193}
1194
David Sterba2fc55772008-07-28 16:52:49 +02001195irqreturn_t ipwireless_interrupt(int irq, void *dev_id)
David Sterba099dc4f2008-02-07 10:57:12 +01001196{
1197 struct ipw_hardware *hw = dev_id;
1198
1199 if (hw->hw_version == HW_VERSION_1)
1200 return ipwireless_handle_v1_interrupt(irq, hw);
1201 else
1202 return ipwireless_handle_v2_v3_interrupt(irq, hw);
1203}
1204
1205static void flush_packets_to_hw(struct ipw_hardware *hw)
1206{
1207 int priority_limit;
1208 unsigned long flags;
1209
David Sterba63c4dbd2008-07-28 16:52:44 +02001210 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001211 priority_limit = get_current_packet_priority(hw);
David Sterba63c4dbd2008-07-28 16:52:44 +02001212 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001213
1214 while (send_pending_packet(hw, priority_limit));
1215}
1216
1217static void send_packet(struct ipw_hardware *hw, int priority,
1218 struct ipw_tx_packet *packet)
1219{
1220 unsigned long flags;
1221
David Sterba63c4dbd2008-07-28 16:52:44 +02001222 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001223 list_add_tail(&packet->queue, &hw->tx_queue[priority]);
David Sterbaeb4e5452008-06-06 10:56:35 +02001224 hw->tx_queued++;
David Sterba63c4dbd2008-07-28 16:52:44 +02001225 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001226
1227 flush_packets_to_hw(hw);
1228}
1229
1230/* Create data packet, non-atomic allocation */
1231static void *alloc_data_packet(int data_size,
1232 unsigned char dest_addr,
1233 unsigned char protocol)
1234{
1235 struct ipw_tx_packet *packet = kzalloc(
1236 sizeof(struct ipw_tx_packet) + data_size,
1237 GFP_ATOMIC);
1238
1239 if (!packet)
1240 return NULL;
1241
1242 INIT_LIST_HEAD(&packet->queue);
1243 packet->dest_addr = dest_addr;
1244 packet->protocol = protocol;
1245 packet->length = data_size;
1246
1247 return packet;
1248}
1249
1250static void *alloc_ctrl_packet(int header_size,
1251 unsigned char dest_addr,
1252 unsigned char protocol,
1253 unsigned char sig_no)
1254{
1255 /*
1256 * sig_no is located right after ipw_tx_packet struct in every
1257 * CTRL or SETUP packets, we can use ipw_control_packet as a
1258 * common struct
1259 */
1260 struct ipw_control_packet *packet = kzalloc(header_size, GFP_ATOMIC);
1261
1262 if (!packet)
1263 return NULL;
1264
1265 INIT_LIST_HEAD(&packet->header.queue);
1266 packet->header.dest_addr = dest_addr;
1267 packet->header.protocol = protocol;
1268 packet->header.length = header_size - sizeof(struct ipw_tx_packet);
1269 packet->body.sig_no = sig_no;
1270
1271 return packet;
1272}
1273
1274int ipwireless_send_packet(struct ipw_hardware *hw, unsigned int channel_idx,
1275 unsigned char *data, unsigned int length,
1276 void (*callback) (void *cb, unsigned int length),
1277 void *callback_data)
1278{
1279 struct ipw_tx_packet *packet;
1280
David Sterbad4c0deb2008-07-28 16:52:33 +02001281 packet = alloc_data_packet(length, (channel_idx + 1),
1282 TL_PROTOCOLID_COM_DATA);
David Sterba099dc4f2008-02-07 10:57:12 +01001283 if (!packet)
1284 return -ENOMEM;
1285 packet->packet_callback = callback;
1286 packet->callback_data = callback_data;
David Sterbad4c0deb2008-07-28 16:52:33 +02001287 memcpy((unsigned char *) packet + sizeof(struct ipw_tx_packet), data,
1288 length);
David Sterba099dc4f2008-02-07 10:57:12 +01001289
1290 send_packet(hw, PRIO_DATA, packet);
1291 return 0;
1292}
1293
1294static int set_control_line(struct ipw_hardware *hw, int prio,
1295 unsigned int channel_idx, int line, int state)
1296{
1297 struct ipw_control_packet *packet;
1298 int protocolid = TL_PROTOCOLID_COM_CTRL;
1299
1300 if (prio == PRIO_SETUP)
1301 protocolid = TL_PROTOCOLID_SETUP;
1302
1303 packet = alloc_ctrl_packet(sizeof(struct ipw_control_packet),
David Sterbad4c0deb2008-07-28 16:52:33 +02001304 (channel_idx + 1), protocolid, line);
David Sterba099dc4f2008-02-07 10:57:12 +01001305 if (!packet)
1306 return -ENOMEM;
1307 packet->header.length = sizeof(struct ipw_control_packet_body);
David Sterbad4c0deb2008-07-28 16:52:33 +02001308 packet->body.value = (state == 0 ? 0 : 1);
David Sterba099dc4f2008-02-07 10:57:12 +01001309 send_packet(hw, prio, &packet->header);
1310 return 0;
1311}
1312
1313
1314static int set_DTR(struct ipw_hardware *hw, int priority,
1315 unsigned int channel_idx, int state)
1316{
1317 if (state != 0)
1318 hw->control_lines[channel_idx] |= IPW_CONTROL_LINE_DTR;
1319 else
1320 hw->control_lines[channel_idx] &= ~IPW_CONTROL_LINE_DTR;
1321
1322 return set_control_line(hw, priority, channel_idx, COMCTRL_DTR, state);
1323}
1324
1325static int set_RTS(struct ipw_hardware *hw, int priority,
1326 unsigned int channel_idx, int state)
1327{
1328 if (state != 0)
1329 hw->control_lines[channel_idx] |= IPW_CONTROL_LINE_RTS;
1330 else
1331 hw->control_lines[channel_idx] &= ~IPW_CONTROL_LINE_RTS;
1332
1333 return set_control_line(hw, priority, channel_idx, COMCTRL_RTS, state);
1334}
1335
1336int ipwireless_set_DTR(struct ipw_hardware *hw, unsigned int channel_idx,
1337 int state)
1338{
1339 return set_DTR(hw, PRIO_CTRL, channel_idx, state);
1340}
1341
1342int ipwireless_set_RTS(struct ipw_hardware *hw, unsigned int channel_idx,
1343 int state)
1344{
1345 return set_RTS(hw, PRIO_CTRL, channel_idx, state);
1346}
1347
1348struct ipw_setup_get_version_query_packet {
1349 struct ipw_tx_packet header;
1350 struct tl_setup_get_version_qry body;
1351};
1352
1353struct ipw_setup_config_packet {
1354 struct ipw_tx_packet header;
1355 struct tl_setup_config_msg body;
1356};
1357
1358struct ipw_setup_config_done_packet {
1359 struct ipw_tx_packet header;
1360 struct tl_setup_config_done_msg body;
1361};
1362
1363struct ipw_setup_open_packet {
1364 struct ipw_tx_packet header;
1365 struct tl_setup_open_msg body;
1366};
1367
1368struct ipw_setup_info_packet {
1369 struct ipw_tx_packet header;
1370 struct tl_setup_info_msg body;
1371};
1372
1373struct ipw_setup_reboot_msg_ack {
1374 struct ipw_tx_packet header;
1375 struct TlSetupRebootMsgAck body;
1376};
1377
1378/* This handles the actual initialization of the card */
1379static void __handle_setup_get_version_rsp(struct ipw_hardware *hw)
1380{
1381 struct ipw_setup_config_packet *config_packet;
1382 struct ipw_setup_config_done_packet *config_done_packet;
1383 struct ipw_setup_open_packet *open_packet;
1384 struct ipw_setup_info_packet *info_packet;
1385 int port;
1386 unsigned int channel_idx;
1387
1388 /* generate config packet */
1389 for (port = 1; port <= NL_NUM_OF_ADDRESSES; port++) {
1390 config_packet = alloc_ctrl_packet(
1391 sizeof(struct ipw_setup_config_packet),
1392 ADDR_SETUP_PROT,
1393 TL_PROTOCOLID_SETUP,
1394 TL_SETUP_SIGNO_CONFIG_MSG);
1395 if (!config_packet)
1396 goto exit_nomem;
1397 config_packet->header.length = sizeof(struct tl_setup_config_msg);
1398 config_packet->body.port_no = port;
1399 config_packet->body.prio_data = PRIO_DATA;
1400 config_packet->body.prio_ctrl = PRIO_CTRL;
1401 send_packet(hw, PRIO_SETUP, &config_packet->header);
1402 }
1403 config_done_packet = alloc_ctrl_packet(
1404 sizeof(struct ipw_setup_config_done_packet),
1405 ADDR_SETUP_PROT,
1406 TL_PROTOCOLID_SETUP,
1407 TL_SETUP_SIGNO_CONFIG_DONE_MSG);
1408 if (!config_done_packet)
1409 goto exit_nomem;
1410 config_done_packet->header.length = sizeof(struct tl_setup_config_done_msg);
1411 send_packet(hw, PRIO_SETUP, &config_done_packet->header);
1412
1413 /* generate open packet */
1414 for (port = 1; port <= NL_NUM_OF_ADDRESSES; port++) {
1415 open_packet = alloc_ctrl_packet(
1416 sizeof(struct ipw_setup_open_packet),
1417 ADDR_SETUP_PROT,
1418 TL_PROTOCOLID_SETUP,
1419 TL_SETUP_SIGNO_OPEN_MSG);
1420 if (!open_packet)
1421 goto exit_nomem;
1422 open_packet->header.length = sizeof(struct tl_setup_open_msg);
1423 open_packet->body.port_no = port;
1424 send_packet(hw, PRIO_SETUP, &open_packet->header);
1425 }
1426 for (channel_idx = 0;
1427 channel_idx < NL_NUM_OF_ADDRESSES; channel_idx++) {
1428 int ret;
1429
1430 ret = set_DTR(hw, PRIO_SETUP, channel_idx,
1431 (hw->control_lines[channel_idx] &
1432 IPW_CONTROL_LINE_DTR) != 0);
1433 if (ret) {
1434 printk(KERN_ERR IPWIRELESS_PCCARD_NAME
1435 ": error setting DTR (%d)\n", ret);
1436 return;
1437 }
1438
1439 set_RTS(hw, PRIO_SETUP, channel_idx,
1440 (hw->control_lines [channel_idx] &
1441 IPW_CONTROL_LINE_RTS) != 0);
1442 if (ret) {
1443 printk(KERN_ERR IPWIRELESS_PCCARD_NAME
1444 ": error setting RTS (%d)\n", ret);
1445 return;
1446 }
1447 }
1448 /*
1449 * For NDIS we assume that we are using sync PPP frames, for COM async.
1450 * This driver uses NDIS mode too. We don't bother with translation
1451 * from async -> sync PPP.
1452 */
1453 info_packet = alloc_ctrl_packet(sizeof(struct ipw_setup_info_packet),
1454 ADDR_SETUP_PROT,
1455 TL_PROTOCOLID_SETUP,
1456 TL_SETUP_SIGNO_INFO_MSG);
1457 if (!info_packet)
1458 goto exit_nomem;
1459 info_packet->header.length = sizeof(struct tl_setup_info_msg);
1460 info_packet->body.driver_type = NDISWAN_DRIVER;
1461 info_packet->body.major_version = NDISWAN_DRIVER_MAJOR_VERSION;
1462 info_packet->body.minor_version = NDISWAN_DRIVER_MINOR_VERSION;
1463 send_packet(hw, PRIO_SETUP, &info_packet->header);
1464
1465 /* Initialization is now complete, so we clear the 'to_setup' flag */
1466 hw->to_setup = 0;
1467
1468 return;
1469
1470exit_nomem:
1471 printk(KERN_ERR IPWIRELESS_PCCARD_NAME
1472 ": not enough memory to alloc control packet\n");
1473 hw->to_setup = -1;
1474}
1475
1476static void handle_setup_get_version_rsp(struct ipw_hardware *hw,
1477 unsigned char vers_no)
1478{
1479 del_timer(&hw->setup_timer);
1480 hw->initializing = 0;
1481 printk(KERN_INFO IPWIRELESS_PCCARD_NAME ": card is ready.\n");
1482
1483 if (vers_no == TL_SETUP_VERSION)
1484 __handle_setup_get_version_rsp(hw);
1485 else
David Sterba622e7132008-07-28 16:52:55 +02001486 printk(KERN_ERR IPWIRELESS_PCCARD_NAME
David Sterba099dc4f2008-02-07 10:57:12 +01001487 ": invalid hardware version no %u\n",
1488 (unsigned int) vers_no);
1489}
1490
1491static void ipw_send_setup_packet(struct ipw_hardware *hw)
1492{
1493 struct ipw_setup_get_version_query_packet *ver_packet;
1494
1495 ver_packet = alloc_ctrl_packet(
1496 sizeof(struct ipw_setup_get_version_query_packet),
1497 ADDR_SETUP_PROT, TL_PROTOCOLID_SETUP,
1498 TL_SETUP_SIGNO_GET_VERSION_QRY);
1499 ver_packet->header.length = sizeof(struct tl_setup_get_version_qry);
1500
1501 /*
1502 * Response is handled in handle_received_SETUP_packet
1503 */
1504 send_packet(hw, PRIO_SETUP, &ver_packet->header);
1505}
1506
1507static void handle_received_SETUP_packet(struct ipw_hardware *hw,
1508 unsigned int address,
1509 unsigned char *data, int len,
1510 int is_last)
1511{
1512 union ipw_setup_rx_msg *rx_msg = (union ipw_setup_rx_msg *) data;
1513
1514 if (address != ADDR_SETUP_PROT) {
1515 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
1516 ": setup packet has bad address %d\n", address);
1517 return;
1518 }
1519
1520 switch (rx_msg->sig_no) {
1521 case TL_SETUP_SIGNO_GET_VERSION_RSP:
1522 if (hw->to_setup)
1523 handle_setup_get_version_rsp(hw,
1524 rx_msg->version_rsp_msg.version);
1525 break;
1526
1527 case TL_SETUP_SIGNO_OPEN_MSG:
1528 if (ipwireless_debug) {
1529 unsigned int channel_idx = rx_msg->open_msg.port_no - 1;
1530
1531 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
1532 ": OPEN_MSG [channel %u] reply received\n",
1533 channel_idx);
1534 }
1535 break;
1536
1537 case TL_SETUP_SIGNO_INFO_MSG_ACK:
1538 if (ipwireless_debug)
1539 printk(KERN_DEBUG IPWIRELESS_PCCARD_NAME
1540 ": card successfully configured as NDISWAN\n");
1541 break;
1542
1543 case TL_SETUP_SIGNO_REBOOT_MSG:
1544 if (hw->to_setup)
1545 printk(KERN_DEBUG IPWIRELESS_PCCARD_NAME
1546 ": Setup not completed - ignoring reboot msg\n");
1547 else {
1548 struct ipw_setup_reboot_msg_ack *packet;
1549
1550 printk(KERN_DEBUG IPWIRELESS_PCCARD_NAME
1551 ": Acknowledging REBOOT message\n");
1552 packet = alloc_ctrl_packet(
1553 sizeof(struct ipw_setup_reboot_msg_ack),
1554 ADDR_SETUP_PROT, TL_PROTOCOLID_SETUP,
1555 TL_SETUP_SIGNO_REBOOT_MSG_ACK);
1556 packet->header.length =
1557 sizeof(struct TlSetupRebootMsgAck);
1558 send_packet(hw, PRIO_SETUP, &packet->header);
1559 if (hw->reboot_callback)
1560 hw->reboot_callback(hw->reboot_callback_data);
1561 }
1562 break;
1563
1564 default:
1565 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
1566 ": unknown setup message %u received\n",
1567 (unsigned int) rx_msg->sig_no);
1568 }
1569}
1570
1571static void do_close_hardware(struct ipw_hardware *hw)
1572{
1573 unsigned int irqn;
1574
1575 if (hw->hw_version == HW_VERSION_1) {
1576 /* Disable TX and RX interrupts. */
1577 outw(0, hw->base_port + IOIER);
1578
1579 /* Acknowledge any outstanding interrupt requests */
1580 irqn = inw(hw->base_port + IOIR);
1581 if (irqn & IR_TXINTR)
1582 outw(IR_TXINTR, hw->base_port + IOIR);
1583 if (irqn & IR_RXINTR)
1584 outw(IR_RXINTR, hw->base_port + IOIR);
1585
1586 synchronize_irq(hw->irq);
1587 }
1588}
1589
1590struct ipw_hardware *ipwireless_hardware_create(void)
1591{
1592 int i;
1593 struct ipw_hardware *hw =
1594 kzalloc(sizeof(struct ipw_hardware), GFP_KERNEL);
1595
1596 if (!hw)
1597 return NULL;
1598
1599 hw->irq = -1;
1600 hw->initializing = 1;
1601 hw->tx_ready = 1;
1602 hw->rx_bytes_queued = 0;
1603 hw->rx_pool_size = 0;
1604 hw->last_memtx_serial = (unsigned short) 0xffff;
1605 for (i = 0; i < NL_NUM_OF_PRIORITIES; i++)
1606 INIT_LIST_HEAD(&hw->tx_queue[i]);
1607
1608 INIT_LIST_HEAD(&hw->rx_queue);
1609 INIT_LIST_HEAD(&hw->rx_pool);
David Sterba63c4dbd2008-07-28 16:52:44 +02001610 spin_lock_init(&hw->lock);
David Sterba099dc4f2008-02-07 10:57:12 +01001611 tasklet_init(&hw->tasklet, ipwireless_do_tasklet, (unsigned long) hw);
1612 INIT_WORK(&hw->work_rx, ipw_receive_data_work);
1613 setup_timer(&hw->setup_timer, ipwireless_setup_timer,
1614 (unsigned long) hw);
1615
1616 return hw;
1617}
1618
1619void ipwireless_init_hardware_v1(struct ipw_hardware *hw,
1620 unsigned int base_port,
1621 void __iomem *attr_memory,
1622 void __iomem *common_memory,
1623 int is_v2_card,
1624 void (*reboot_callback) (void *data),
1625 void *reboot_callback_data)
1626{
1627 if (hw->removed) {
1628 hw->removed = 0;
1629 enable_irq(hw->irq);
1630 }
1631 hw->base_port = base_port;
David Sterbad4c0deb2008-07-28 16:52:33 +02001632 hw->hw_version = (is_v2_card ? HW_VERSION_2 : HW_VERSION_1);
1633 hw->ll_mtu = (hw->hw_version == HW_VERSION_1 ? LL_MTU_V1 : LL_MTU_V2);
David Sterba099dc4f2008-02-07 10:57:12 +01001634 hw->memregs_CCR = (struct MEMCCR __iomem *)
1635 ((unsigned short __iomem *) attr_memory + 0x200);
1636 hw->memory_info_regs = (struct MEMINFREG __iomem *) common_memory;
1637 hw->memreg_tx = &hw->memory_info_regs->memreg_tx_new;
1638 hw->reboot_callback = reboot_callback;
1639 hw->reboot_callback_data = reboot_callback_data;
1640}
1641
1642void ipwireless_init_hardware_v2_v3(struct ipw_hardware *hw)
1643{
1644 hw->initializing = 1;
1645 hw->init_loops = 0;
1646 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
1647 ": waiting for card to start up...\n");
1648 ipwireless_setup_timer((unsigned long) hw);
1649}
1650
1651static void ipwireless_setup_timer(unsigned long data)
1652{
1653 struct ipw_hardware *hw = (struct ipw_hardware *) data;
1654
1655 hw->init_loops++;
1656
1657 if (hw->init_loops == TL_SETUP_MAX_VERSION_QRY &&
1658 hw->hw_version == HW_VERSION_2 &&
1659 hw->memreg_tx == &hw->memory_info_regs->memreg_tx_new) {
1660 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
1661 ": failed to startup using TX2, trying TX\n");
1662
1663 hw->memreg_tx = &hw->memory_info_regs->memreg_tx_old;
1664 hw->init_loops = 0;
1665 }
1666 /* Give up after a certain number of retries */
1667 if (hw->init_loops == TL_SETUP_MAX_VERSION_QRY) {
1668 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
1669 ": card failed to start up!\n");
1670 hw->initializing = 0;
1671 } else {
1672 /* Do not attempt to write to the board if it is not present. */
1673 if (is_card_present(hw)) {
1674 unsigned long flags;
1675
David Sterba63c4dbd2008-07-28 16:52:44 +02001676 spin_lock_irqsave(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001677 hw->to_setup = 1;
1678 hw->tx_ready = 1;
David Sterba63c4dbd2008-07-28 16:52:44 +02001679 spin_unlock_irqrestore(&hw->lock, flags);
David Sterba099dc4f2008-02-07 10:57:12 +01001680 tasklet_schedule(&hw->tasklet);
1681 }
1682
1683 mod_timer(&hw->setup_timer,
1684 jiffies + msecs_to_jiffies(TL_SETUP_VERSION_QRY_TMO));
1685 }
1686}
1687
1688/*
1689 * Stop any interrupts from executing so that, once this function returns,
1690 * other layers of the driver can be sure they won't get any more callbacks.
1691 * Thus must be called on a proper process context.
1692 */
1693void ipwireless_stop_interrupts(struct ipw_hardware *hw)
1694{
1695 if (!hw->shutting_down) {
1696 /* Tell everyone we are going down. */
1697 hw->shutting_down = 1;
1698 del_timer(&hw->setup_timer);
1699
1700 /* Prevent the hardware from sending any more interrupts */
1701 do_close_hardware(hw);
1702 }
1703}
1704
1705void ipwireless_hardware_free(struct ipw_hardware *hw)
1706{
1707 int i;
1708 struct ipw_rx_packet *rp, *rq;
1709 struct ipw_tx_packet *tp, *tq;
1710
1711 ipwireless_stop_interrupts(hw);
1712
1713 flush_scheduled_work();
1714
1715 for (i = 0; i < NL_NUM_OF_ADDRESSES; i++)
1716 if (hw->packet_assembler[i] != NULL)
1717 kfree(hw->packet_assembler[i]);
1718
1719 for (i = 0; i < NL_NUM_OF_PRIORITIES; i++)
1720 list_for_each_entry_safe(tp, tq, &hw->tx_queue[i], queue) {
1721 list_del(&tp->queue);
1722 kfree(tp);
1723 }
1724
1725 list_for_each_entry_safe(rp, rq, &hw->rx_queue, queue) {
1726 list_del(&rp->queue);
1727 kfree(rp);
1728 }
1729
1730 list_for_each_entry_safe(rp, rq, &hw->rx_pool, queue) {
1731 list_del(&rp->queue);
1732 kfree(rp);
1733 }
1734 kfree(hw);
1735}
1736
1737/*
1738 * Associate the specified network with this hardware, so it will receive events
1739 * from it.
1740 */
1741void ipwireless_associate_network(struct ipw_hardware *hw,
1742 struct ipw_network *network)
1743{
1744 hw->network = network;
1745}