1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /* $Id: cosa.c,v 1.31 2000/03/08 17:47:16 kas Exp $ */
3 
4 /*
5  *  Copyright (C) 1995-1997  Jan "Yenya" Kasprzak <kas@fi.muni.cz>
6  *  Generic HDLC port Copyright (C) 2008 Krzysztof Halasa <khc@pm.waw.pl>
7  */
8 
9 /*
10  * The driver for the SRP and COSA synchronous serial cards.
11  *
12  * HARDWARE INFO
13  *
14  * Both cards are developed at the Institute of Computer Science,
15  * Masaryk University (https://www.ics.muni.cz/). The hardware is
16  * developed by Jiri Novotny <novotny@ics.muni.cz>. More information
17  * and the photo of both cards is available at
18  * http://www.pavoucek.cz/cosa.html. The card documentation, firmwares
19  * and other goods can be downloaded from ftp://ftp.ics.muni.cz/pub/cosa/.
20  * For Linux-specific utilities, see below in the "Software info" section.
21  * If you want to order the card, contact Jiri Novotny.
22  *
23  * The SRP (serial port?, the Czech word "srp" means "sickle") card
24  * is a 2-port intelligent (with its own 8-bit CPU) synchronous serial card
25  * with V.24 interfaces up to 80kb/s each.
26  *
27  * The COSA (communication serial adapter?, the Czech word "kosa" means
28  * "scythe") is a next-generation sync/async board with two interfaces
29  * - currently any of V.24, X.21, V.35 and V.36 can be selected.
30  * It has a 16-bit SAB80166 CPU and can do up to 10 Mb/s per channel.
31  * The 8-channels version is in development.
32  *
33  * Both types have downloadable firmware and communicate via ISA DMA.
34  * COSA can be also a bus-mastering device.
35  *
36  * SOFTWARE INFO
37  *
38  * The homepage of the Linux driver is at https://www.fi.muni.cz/~kas/cosa/.
39  * The CVS tree of Linux driver can be viewed there, as well as the
40  * firmware binaries and user-space utilities for downloading the firmware
41  * into the card and setting up the card.
42  *
43  * The Linux driver (unlike the present *BSD drivers :-) can work even
44  * for the COSA and SRP in one computer and allows each channel to work
45  * in one of the two modes (character or network device).
46  *
47  * AUTHOR
48  *
49  * The Linux driver was written by Jan "Yenya" Kasprzak <kas@fi.muni.cz>.
50  *
51  * You can mail me bugfixes and even success reports. I am especially
52  * interested in the SMP and/or muliti-channel success/failure reports
53  * (I wonder if I did the locking properly :-).
54  *
55  * THE AUTHOR USED THE FOLLOWING SOURCES WHEN PROGRAMMING THE DRIVER
56  *
57  * The COSA/SRP NetBSD driver by Zdenek Salvet and Ivos Cernohlavek
58  * The skeleton.c by Donald Becker
59  * The SDL Riscom/N2 driver by Mike Natale
60  * The Comtrol Hostess SV11 driver by Alan Cox
61  * The Sync PPP/Cisco HDLC layer (syncppp.c) ported to Linux by Alan Cox
62  */
63 
64 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
65 
66 #include <linux/module.h>
67 #include <linux/kernel.h>
68 #include <linux/sched/signal.h>
69 #include <linux/slab.h>
70 #include <linux/poll.h>
71 #include <linux/fs.h>
72 #include <linux/interrupt.h>
73 #include <linux/delay.h>
74 #include <linux/hdlc.h>
75 #include <linux/errno.h>
76 #include <linux/ioport.h>
77 #include <linux/netdevice.h>
78 #include <linux/spinlock.h>
79 #include <linux/mutex.h>
80 #include <linux/device.h>
81 #include <asm/io.h>
82 #include <asm/dma.h>
83 #include <asm/byteorder.h>
84 
85 #undef COSA_SLOW_IO	/* for testing purposes only */
86 
87 #include "cosa.h"
88 
89 /* Maximum length of the identification string. */
90 #define COSA_MAX_ID_STRING	128
91 
92 /* Maximum length of the channel name */
93 #define COSA_MAX_NAME		(sizeof("cosaXXXcXXX")+1)
94 
95 /* Per-channel data structure */
96 
97 struct channel_data {
98 	int usage;	/* Usage count; >0 for chrdev, -1 for netdev */
99 	int num;	/* Number of the channel */
100 	struct cosa_data *cosa;	/* Pointer to the per-card structure */
101 	int txsize;	/* Size of transmitted data */
102 	char *txbuf;	/* Transmit buffer */
103 	char name[COSA_MAX_NAME];	/* channel name */
104 
105 	/* The HW layer interface */
106 	/* routine called from the RX interrupt */
107 	char *(*setup_rx)(struct channel_data *channel, int size);
108 	/* routine called when the RX is done (from the EOT interrupt) */
109 	int (*rx_done)(struct channel_data *channel);
110 	/* routine called when the TX is done (from the EOT interrupt) */
111 	int (*tx_done)(struct channel_data *channel, int size);
112 
113 	/* Character device parts */
114 	struct mutex rlock;
115 	struct semaphore wsem;
116 	char *rxdata;
117 	int rxsize;
118 	wait_queue_head_t txwaitq, rxwaitq;
119 	int tx_status, rx_status;
120 
121 	/* generic HDLC device parts */
122 	struct net_device *netdev;
123 	struct sk_buff *rx_skb, *tx_skb;
124 };
125 
126 /* cosa->firmware_status bits */
127 #define COSA_FW_RESET		(1<<0)	/* Is the ROM monitor active? */
128 #define COSA_FW_DOWNLOAD	(1<<1)	/* Is the microcode downloaded? */
129 #define COSA_FW_START		(1<<2)	/* Is the microcode running? */
130 
131 struct cosa_data {
132 	int num;			/* Card number */
133 	char name[COSA_MAX_NAME];	/* Card name - e.g "cosa0" */
134 	unsigned int datareg, statusreg;	/* I/O ports */
135 	unsigned short irq, dma;	/* IRQ and DMA number */
136 	unsigned short startaddr;	/* Firmware start address */
137 	unsigned short busmaster;	/* Use busmastering? */
138 	int nchannels;			/* # of channels on this card */
139 	int driver_status;		/* For communicating with firmware */
140 	int firmware_status;		/* Downloaded, reseted, etc. */
141 	unsigned long rxbitmap, txbitmap;/* Bitmap of channels who are willing to send/receive data */
142 	unsigned long rxtx;		/* RX or TX in progress? */
143 	int enabled;
144 	int usage;				/* usage count */
145 	int txchan, txsize, rxsize;
146 	struct channel_data *rxchan;
147 	char *bouncebuf;
148 	char *txbuf, *rxbuf;
149 	struct channel_data *chan;
150 	spinlock_t lock;	/* For exclusive operations on this structure */
151 	char id_string[COSA_MAX_ID_STRING];	/* ROM monitor ID string */
152 	char *type;				/* card type */
153 };
154 
155 /*
156  * Define this if you want all the possible ports to be autoprobed.
157  * It is here but it probably is not a good idea to use this.
158  */
159 /* #define COSA_ISA_AUTOPROBE	1 */
160 
161 /*
162  * Character device major number. 117 was allocated for us.
163  * The value of 0 means to allocate a first free one.
164  */
165 static DEFINE_MUTEX(cosa_chardev_mutex);
166 static int cosa_major = 117;
167 
168 /*
169  * Encoding of the minor numbers:
170  * The lowest CARD_MINOR_BITS bits means the channel on the single card,
171  * the highest bits means the card number.
172  */
173 #define CARD_MINOR_BITS	4	/* How many bits in minor number are reserved
174 				 * for the single card */
175 /*
176  * The following depends on CARD_MINOR_BITS. Unfortunately, the "MODULE_STRING"
177  * macro doesn't like anything other than the raw number as an argument :-(
178  */
179 #define MAX_CARDS	16
180 /* #define MAX_CARDS	(1 << (8-CARD_MINOR_BITS)) */
181 
182 #define DRIVER_RX_READY		0x0001
183 #define DRIVER_TX_READY		0x0002
184 #define DRIVER_TXMAP_SHIFT	2
185 #define DRIVER_TXMAP_MASK	0x0c	/* FIXME: 0xfc for 8-channel version */
186 
187 /*
188  * for cosa->rxtx - indicates whether either transmit or receive is
189  * in progress. These values are mean number of the bit.
190  */
191 #define TXBIT 0
192 #define RXBIT 1
193 #define IRQBIT 2
194 
195 #define COSA_MTU 2000	/* FIXME: I don't know this exactly */
196 
197 #undef DEBUG_DATA //1	/* Dump the data read or written to the channel */
198 #undef DEBUG_IRQS //1	/* Print the message when the IRQ is received */
199 #undef DEBUG_IO   //1	/* Dump the I/O traffic */
200 
201 #define TX_TIMEOUT	(5*HZ)
202 
203 /* Maybe the following should be allocated dynamically */
204 static struct cosa_data cosa_cards[MAX_CARDS];
205 static int nr_cards;
206 
207 #ifdef COSA_ISA_AUTOPROBE
208 static int io[MAX_CARDS+1]  = { 0x220, 0x228, 0x210, 0x218, 0, };
209 /* NOTE: DMA is not autoprobed!!! */
210 static int dma[MAX_CARDS+1] = { 1, 7, 1, 7, 1, 7, 1, 7, 0, };
211 #else
212 static int io[MAX_CARDS+1];
213 static int dma[MAX_CARDS+1];
214 #endif
215 /* IRQ can be safely autoprobed */
216 static int irq[MAX_CARDS+1] = { -1, -1, -1, -1, -1, -1, 0, };
217 
218 /* for class stuff*/
219 static struct class *cosa_class;
220 
221 #ifdef MODULE
222 module_param_hw_array(io, int, ioport, NULL, 0);
223 MODULE_PARM_DESC(io, "The I/O bases of the COSA or SRP cards");
224 module_param_hw_array(irq, int, irq, NULL, 0);
225 MODULE_PARM_DESC(irq, "The IRQ lines of the COSA or SRP cards");
226 module_param_hw_array(dma, int, dma, NULL, 0);
227 MODULE_PARM_DESC(dma, "The DMA channels of the COSA or SRP cards");
228 
229 MODULE_AUTHOR("Jan \"Yenya\" Kasprzak, <kas@fi.muni.cz>");
230 MODULE_DESCRIPTION("Modular driver for the COSA or SRP synchronous card");
231 MODULE_LICENSE("GPL");
232 #endif
233 
234 /* I use this mainly for testing purposes */
235 #ifdef COSA_SLOW_IO
236 #define cosa_outb outb_p
237 #define cosa_outw outw_p
238 #define cosa_inb  inb_p
239 #define cosa_inw  inw_p
240 #else
241 #define cosa_outb outb
242 #define cosa_outw outw
243 #define cosa_inb  inb
244 #define cosa_inw  inw
245 #endif
246 
247 #define is_8bit(cosa)		(!(cosa->datareg & 0x08))
248 
249 #define cosa_getstatus(cosa)	(cosa_inb(cosa->statusreg))
250 #define cosa_putstatus(cosa, stat)	(cosa_outb(stat, cosa->statusreg))
251 #define cosa_getdata16(cosa)	(cosa_inw(cosa->datareg))
252 #define cosa_getdata8(cosa)	(cosa_inb(cosa->datareg))
253 #define cosa_putdata16(cosa, dt)	(cosa_outw(dt, cosa->datareg))
254 #define cosa_putdata8(cosa, dt)	(cosa_outb(dt, cosa->datareg))
255 
256 /* Initialization stuff */
257 static int cosa_probe(int ioaddr, int irq, int dma);
258 
259 /* HW interface */
260 static void cosa_enable_rx(struct channel_data *chan);
261 static void cosa_disable_rx(struct channel_data *chan);
262 static int cosa_start_tx(struct channel_data *channel, char *buf, int size);
263 static void cosa_kick(struct cosa_data *cosa);
264 static int cosa_dma_able(struct channel_data *chan, char *buf, int data);
265 
266 /* Network device stuff */
267 static int cosa_net_attach(struct net_device *dev, unsigned short encoding,
268 			   unsigned short parity);
269 static int cosa_net_open(struct net_device *d);
270 static int cosa_net_close(struct net_device *d);
271 static void cosa_net_timeout(struct net_device *d, unsigned int txqueue);
272 static netdev_tx_t cosa_net_tx(struct sk_buff *skb, struct net_device *d);
273 static char *cosa_net_setup_rx(struct channel_data *channel, int size);
274 static int cosa_net_rx_done(struct channel_data *channel);
275 static int cosa_net_tx_done(struct channel_data *channel, int size);
276 static int cosa_net_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd);
277 
278 /* Character device */
279 static char *chrdev_setup_rx(struct channel_data *channel, int size);
280 static int chrdev_rx_done(struct channel_data *channel);
281 static int chrdev_tx_done(struct channel_data *channel, int size);
282 static ssize_t cosa_read(struct file *file,
283 	char __user *buf, size_t count, loff_t *ppos);
284 static ssize_t cosa_write(struct file *file,
285 	const char __user *buf, size_t count, loff_t *ppos);
286 static unsigned int cosa_poll(struct file *file, poll_table *poll);
287 static int cosa_open(struct inode *inode, struct file *file);
288 static int cosa_release(struct inode *inode, struct file *file);
289 static long cosa_chardev_ioctl(struct file *file, unsigned int cmd,
290 				unsigned long arg);
291 #ifdef COSA_FASYNC_WORKING
292 static int cosa_fasync(struct inode *inode, struct file *file, int on);
293 #endif
294 
295 static const struct file_operations cosa_fops = {
296 	.owner		= THIS_MODULE,
297 	.llseek		= no_llseek,
298 	.read		= cosa_read,
299 	.write		= cosa_write,
300 	.poll		= cosa_poll,
301 	.unlocked_ioctl	= cosa_chardev_ioctl,
302 	.open		= cosa_open,
303 	.release	= cosa_release,
304 #ifdef COSA_FASYNC_WORKING
305 	.fasync		= cosa_fasync,
306 #endif
307 };
308 
309 /* Ioctls */
310 static int cosa_start(struct cosa_data *cosa, int address);
311 static int cosa_reset(struct cosa_data *cosa);
312 static int cosa_download(struct cosa_data *cosa, void __user *a);
313 static int cosa_readmem(struct cosa_data *cosa, void __user *a);
314 
315 /* COSA/SRP ROM monitor */
316 static int download(struct cosa_data *cosa, const char __user *data, int addr, int len);
317 static int startmicrocode(struct cosa_data *cosa, int address);
318 static int readmem(struct cosa_data *cosa, char __user *data, int addr, int len);
319 static int cosa_reset_and_read_id(struct cosa_data *cosa, char *id);
320 
321 /* Auxiliary functions */
322 static int get_wait_data(struct cosa_data *cosa);
323 static int put_wait_data(struct cosa_data *cosa, int data);
324 static int puthexnumber(struct cosa_data *cosa, int number);
325 static void put_driver_status(struct cosa_data *cosa);
326 static void put_driver_status_nolock(struct cosa_data *cosa);
327 
328 /* Interrupt handling */
329 static irqreturn_t cosa_interrupt(int irq, void *cosa);
330 
331 /* I/O ops debugging */
332 #ifdef DEBUG_IO
333 static void debug_data_in(struct cosa_data *cosa, int data);
334 static void debug_data_out(struct cosa_data *cosa, int data);
335 static void debug_data_cmd(struct cosa_data *cosa, int data);
336 static void debug_status_in(struct cosa_data *cosa, int status);
337 static void debug_status_out(struct cosa_data *cosa, int status);
338 #endif
339 
dev_to_chan(struct net_device * dev)340 static inline struct channel_data* dev_to_chan(struct net_device *dev)
341 {
342 	return (struct channel_data *)dev_to_hdlc(dev)->priv;
343 }
344 
345 /* ---------- Initialization stuff ---------- */
346 
cosa_init(void)347 static int __init cosa_init(void)
348 {
349 	int i, err = 0;
350 
351 	if (cosa_major > 0) {
352 		if (register_chrdev(cosa_major, "cosa", &cosa_fops)) {
353 			pr_warn("unable to get major %d\n", cosa_major);
354 			err = -EIO;
355 			goto out;
356 		}
357 	} else {
358 		if (!(cosa_major=register_chrdev(0, "cosa", &cosa_fops))) {
359 			pr_warn("unable to register chardev\n");
360 			err = -EIO;
361 			goto out;
362 		}
363 	}
364 	for (i=0; i<MAX_CARDS; i++)
365 		cosa_cards[i].num = -1;
366 	for (i=0; io[i] != 0 && i < MAX_CARDS; i++)
367 		cosa_probe(io[i], irq[i], dma[i]);
368 	if (!nr_cards) {
369 		pr_warn("no devices found\n");
370 		unregister_chrdev(cosa_major, "cosa");
371 		err = -ENODEV;
372 		goto out;
373 	}
374 	cosa_class = class_create(THIS_MODULE, "cosa");
375 	if (IS_ERR(cosa_class)) {
376 		err = PTR_ERR(cosa_class);
377 		goto out_chrdev;
378 	}
379 	for (i = 0; i < nr_cards; i++)
380 		device_create(cosa_class, NULL, MKDEV(cosa_major, i), NULL,
381 			      "cosa%d", i);
382 	err = 0;
383 	goto out;
384 
385 out_chrdev:
386 	unregister_chrdev(cosa_major, "cosa");
387 out:
388 	return err;
389 }
390 module_init(cosa_init);
391 
cosa_exit(void)392 static void __exit cosa_exit(void)
393 {
394 	struct cosa_data *cosa;
395 	int i;
396 
397 	for (i = 0; i < nr_cards; i++)
398 		device_destroy(cosa_class, MKDEV(cosa_major, i));
399 	class_destroy(cosa_class);
400 
401 	for (cosa = cosa_cards; nr_cards--; cosa++) {
402 		/* Clean up the per-channel data */
403 		for (i = 0; i < cosa->nchannels; i++) {
404 			/* Chardev driver has no alloc'd per-channel data */
405 			unregister_hdlc_device(cosa->chan[i].netdev);
406 			free_netdev(cosa->chan[i].netdev);
407 		}
408 		/* Clean up the per-card data */
409 		kfree(cosa->chan);
410 		kfree(cosa->bouncebuf);
411 		free_irq(cosa->irq, cosa);
412 		free_dma(cosa->dma);
413 		release_region(cosa->datareg, is_8bit(cosa) ? 2 : 4);
414 	}
415 	unregister_chrdev(cosa_major, "cosa");
416 }
417 module_exit(cosa_exit);
418 
419 static const struct net_device_ops cosa_ops = {
420 	.ndo_open       = cosa_net_open,
421 	.ndo_stop       = cosa_net_close,
422 	.ndo_start_xmit = hdlc_start_xmit,
423 	.ndo_do_ioctl   = cosa_net_ioctl,
424 	.ndo_tx_timeout = cosa_net_timeout,
425 };
426 
cosa_probe(int base,int irq,int dma)427 static int cosa_probe(int base, int irq, int dma)
428 {
429 	struct cosa_data *cosa = cosa_cards+nr_cards;
430 	int i, err = 0;
431 
432 	memset(cosa, 0, sizeof(struct cosa_data));
433 
434 	/* Checking validity of parameters: */
435 	/* IRQ should be 2-7 or 10-15; negative IRQ means autoprobe */
436 	if ((irq >= 0  && irq < 2) || irq > 15 || (irq < 10 && irq > 7)) {
437 		pr_info("invalid IRQ %d\n", irq);
438 		return -1;
439 	}
440 	/* I/O address should be between 0x100 and 0x3ff and should be
441 	 * multiple of 8. */
442 	if (base < 0x100 || base > 0x3ff || base & 0x7) {
443 		pr_info("invalid I/O address 0x%x\n", base);
444 		return -1;
445 	}
446 	/* DMA should be 0,1 or 3-7 */
447 	if (dma < 0 || dma == 4 || dma > 7) {
448 		pr_info("invalid DMA %d\n", dma);
449 		return -1;
450 	}
451 	/* and finally, on 16-bit COSA DMA should be 4-7 and
452 	 * I/O base should not be multiple of 0x10 */
453 	if (((base & 0x8) && dma < 4) || (!(base & 0x8) && dma > 3)) {
454 		pr_info("8/16 bit base and DMA mismatch (base=0x%x, dma=%d)\n",
455 			base, dma);
456 		return -1;
457 	}
458 
459 	cosa->dma = dma;
460 	cosa->datareg = base;
461 	cosa->statusreg = is_8bit(cosa)?base+1:base+2;
462 	spin_lock_init(&cosa->lock);
463 
464 	if (!request_region(base, is_8bit(cosa)?2:4,"cosa"))
465 		return -1;
466 
467 	if (cosa_reset_and_read_id(cosa, cosa->id_string) < 0) {
468 		printk(KERN_DEBUG "probe at 0x%x failed.\n", base);
469 		err = -1;
470 		goto err_out;
471 	}
472 
473 	/* Test the validity of identification string */
474 	if (!strncmp(cosa->id_string, "SRP", 3))
475 		cosa->type = "srp";
476 	else if (!strncmp(cosa->id_string, "COSA", 4))
477 		cosa->type = is_8bit(cosa)? "cosa8": "cosa16";
478 	else {
479 /* Print a warning only if we are not autoprobing */
480 #ifndef COSA_ISA_AUTOPROBE
481 		pr_info("valid signature not found at 0x%x\n", base);
482 #endif
483 		err = -1;
484 		goto err_out;
485 	}
486 	/* Update the name of the region now we know the type of card */
487 	release_region(base, is_8bit(cosa)?2:4);
488 	if (!request_region(base, is_8bit(cosa)?2:4, cosa->type)) {
489 		printk(KERN_DEBUG "changing name at 0x%x failed.\n", base);
490 		return -1;
491 	}
492 
493 	/* Now do IRQ autoprobe */
494 	if (irq < 0) {
495 		unsigned long irqs;
496 /*		pr_info("IRQ autoprobe\n"); */
497 		irqs = probe_irq_on();
498 		/*
499 		 * Enable interrupt on tx buffer empty (it sure is)
500 		 * really sure ?
501 		 * FIXME: When this code is not used as module, we should
502 		 * probably call udelay() instead of the interruptible sleep.
503 		 */
504 		set_current_state(TASK_INTERRUPTIBLE);
505 		cosa_putstatus(cosa, SR_TX_INT_ENA);
506 		schedule_timeout(msecs_to_jiffies(300));
507 		irq = probe_irq_off(irqs);
508 		/* Disable all IRQs from the card */
509 		cosa_putstatus(cosa, 0);
510 		/* Empty the received data register */
511 		cosa_getdata8(cosa);
512 
513 		if (irq < 0) {
514 			pr_info("multiple interrupts obtained (%d, board at 0x%x)\n",
515 				irq, cosa->datareg);
516 			err = -1;
517 			goto err_out;
518 		}
519 		if (irq == 0) {
520 			pr_info("no interrupt obtained (board at 0x%x)\n",
521 				cosa->datareg);
522 		/*	return -1; */
523 		}
524 	}
525 
526 	cosa->irq = irq;
527 	cosa->num = nr_cards;
528 	cosa->usage = 0;
529 	cosa->nchannels = 2;	/* FIXME: how to determine this? */
530 
531 	if (request_irq(cosa->irq, cosa_interrupt, 0, cosa->type, cosa)) {
532 		err = -1;
533 		goto err_out;
534 	}
535 	if (request_dma(cosa->dma, cosa->type)) {
536 		err = -1;
537 		goto err_out1;
538 	}
539 
540 	cosa->bouncebuf = kmalloc(COSA_MTU, GFP_KERNEL|GFP_DMA);
541 	if (!cosa->bouncebuf) {
542 		err = -ENOMEM;
543 		goto err_out2;
544 	}
545 	sprintf(cosa->name, "cosa%d", cosa->num);
546 
547 	/* Initialize the per-channel data */
548 	cosa->chan = kcalloc(cosa->nchannels, sizeof(struct channel_data), GFP_KERNEL);
549 	if (!cosa->chan) {
550 		err = -ENOMEM;
551 		goto err_out3;
552 	}
553 
554 	for (i = 0; i < cosa->nchannels; i++) {
555 		struct channel_data *chan = &cosa->chan[i];
556 
557 		chan->cosa = cosa;
558 		chan->num = i;
559 		sprintf(chan->name, "cosa%dc%d", chan->cosa->num, i);
560 
561 		/* Initialize the chardev data structures */
562 		mutex_init(&chan->rlock);
563 		sema_init(&chan->wsem, 1);
564 
565 		/* Register the network interface */
566 		if (!(chan->netdev = alloc_hdlcdev(chan))) {
567 			pr_warn("%s: alloc_hdlcdev failed\n", chan->name);
568 			err = -ENOMEM;
569 			goto err_hdlcdev;
570 		}
571 		dev_to_hdlc(chan->netdev)->attach = cosa_net_attach;
572 		dev_to_hdlc(chan->netdev)->xmit = cosa_net_tx;
573 		chan->netdev->netdev_ops = &cosa_ops;
574 		chan->netdev->watchdog_timeo = TX_TIMEOUT;
575 		chan->netdev->base_addr = chan->cosa->datareg;
576 		chan->netdev->irq = chan->cosa->irq;
577 		chan->netdev->dma = chan->cosa->dma;
578 		err = register_hdlc_device(chan->netdev);
579 		if (err) {
580 			netdev_warn(chan->netdev,
581 				    "register_hdlc_device() failed\n");
582 			free_netdev(chan->netdev);
583 			goto err_hdlcdev;
584 		}
585 	}
586 
587 	pr_info("cosa%d: %s (%s at 0x%x irq %d dma %d), %d channels\n",
588 		cosa->num, cosa->id_string, cosa->type,
589 		cosa->datareg, cosa->irq, cosa->dma, cosa->nchannels);
590 
591 	return nr_cards++;
592 
593 err_hdlcdev:
594 	while (i-- > 0) {
595 		unregister_hdlc_device(cosa->chan[i].netdev);
596 		free_netdev(cosa->chan[i].netdev);
597 	}
598 	kfree(cosa->chan);
599 err_out3:
600 	kfree(cosa->bouncebuf);
601 err_out2:
602 	free_dma(cosa->dma);
603 err_out1:
604 	free_irq(cosa->irq, cosa);
605 err_out:
606 	release_region(cosa->datareg,is_8bit(cosa)?2:4);
607 	pr_notice("cosa%d: allocating resources failed\n", cosa->num);
608 	return err;
609 }
610 
611 
612 /*---------- network device ---------- */
613 
cosa_net_attach(struct net_device * dev,unsigned short encoding,unsigned short parity)614 static int cosa_net_attach(struct net_device *dev, unsigned short encoding,
615 			   unsigned short parity)
616 {
617 	if (encoding == ENCODING_NRZ && parity == PARITY_CRC16_PR1_CCITT)
618 		return 0;
619 	return -EINVAL;
620 }
621 
cosa_net_open(struct net_device * dev)622 static int cosa_net_open(struct net_device *dev)
623 {
624 	struct channel_data *chan = dev_to_chan(dev);
625 	int err;
626 	unsigned long flags;
627 
628 	if (!(chan->cosa->firmware_status & COSA_FW_START)) {
629 		pr_notice("%s: start the firmware first (status %d)\n",
630 			  chan->cosa->name, chan->cosa->firmware_status);
631 		return -EPERM;
632 	}
633 	spin_lock_irqsave(&chan->cosa->lock, flags);
634 	if (chan->usage != 0) {
635 		pr_warn("%s: cosa_net_open called with usage count %d\n",
636 			chan->name, chan->usage);
637 		spin_unlock_irqrestore(&chan->cosa->lock, flags);
638 		return -EBUSY;
639 	}
640 	chan->setup_rx = cosa_net_setup_rx;
641 	chan->tx_done = cosa_net_tx_done;
642 	chan->rx_done = cosa_net_rx_done;
643 	chan->usage = -1;
644 	chan->cosa->usage++;
645 	spin_unlock_irqrestore(&chan->cosa->lock, flags);
646 
647 	err = hdlc_open(dev);
648 	if (err) {
649 		spin_lock_irqsave(&chan->cosa->lock, flags);
650 		chan->usage = 0;
651 		chan->cosa->usage--;
652 		spin_unlock_irqrestore(&chan->cosa->lock, flags);
653 		return err;
654 	}
655 
656 	netif_start_queue(dev);
657 	cosa_enable_rx(chan);
658 	return 0;
659 }
660 
cosa_net_tx(struct sk_buff * skb,struct net_device * dev)661 static netdev_tx_t cosa_net_tx(struct sk_buff *skb,
662 				     struct net_device *dev)
663 {
664 	struct channel_data *chan = dev_to_chan(dev);
665 
666 	netif_stop_queue(dev);
667 
668 	chan->tx_skb = skb;
669 	cosa_start_tx(chan, skb->data, skb->len);
670 	return NETDEV_TX_OK;
671 }
672 
cosa_net_timeout(struct net_device * dev,unsigned int txqueue)673 static void cosa_net_timeout(struct net_device *dev, unsigned int txqueue)
674 {
675 	struct channel_data *chan = dev_to_chan(dev);
676 
677 	if (test_bit(RXBIT, &chan->cosa->rxtx)) {
678 		chan->netdev->stats.rx_errors++;
679 		chan->netdev->stats.rx_missed_errors++;
680 	} else {
681 		chan->netdev->stats.tx_errors++;
682 		chan->netdev->stats.tx_aborted_errors++;
683 	}
684 	cosa_kick(chan->cosa);
685 	if (chan->tx_skb) {
686 		dev_kfree_skb(chan->tx_skb);
687 		chan->tx_skb = NULL;
688 	}
689 	netif_wake_queue(dev);
690 }
691 
cosa_net_close(struct net_device * dev)692 static int cosa_net_close(struct net_device *dev)
693 {
694 	struct channel_data *chan = dev_to_chan(dev);
695 	unsigned long flags;
696 
697 	netif_stop_queue(dev);
698 	hdlc_close(dev);
699 	cosa_disable_rx(chan);
700 	spin_lock_irqsave(&chan->cosa->lock, flags);
701 	if (chan->rx_skb) {
702 		kfree_skb(chan->rx_skb);
703 		chan->rx_skb = NULL;
704 	}
705 	if (chan->tx_skb) {
706 		kfree_skb(chan->tx_skb);
707 		chan->tx_skb = NULL;
708 	}
709 	chan->usage = 0;
710 	chan->cosa->usage--;
711 	spin_unlock_irqrestore(&chan->cosa->lock, flags);
712 	return 0;
713 }
714 
cosa_net_setup_rx(struct channel_data * chan,int size)715 static char *cosa_net_setup_rx(struct channel_data *chan, int size)
716 {
717 	/*
718 	 * We can safely fall back to non-dma-able memory, because we have
719 	 * the cosa->bouncebuf pre-allocated.
720 	 */
721 	kfree_skb(chan->rx_skb);
722 	chan->rx_skb = dev_alloc_skb(size);
723 	if (chan->rx_skb == NULL) {
724 		pr_notice("%s: Memory squeeze, dropping packet\n", chan->name);
725 		chan->netdev->stats.rx_dropped++;
726 		return NULL;
727 	}
728 	netif_trans_update(chan->netdev);
729 	return skb_put(chan->rx_skb, size);
730 }
731 
cosa_net_rx_done(struct channel_data * chan)732 static int cosa_net_rx_done(struct channel_data *chan)
733 {
734 	if (!chan->rx_skb) {
735 		pr_warn("%s: rx_done with empty skb!\n", chan->name);
736 		chan->netdev->stats.rx_errors++;
737 		chan->netdev->stats.rx_frame_errors++;
738 		return 0;
739 	}
740 	chan->rx_skb->protocol = hdlc_type_trans(chan->rx_skb, chan->netdev);
741 	chan->rx_skb->dev = chan->netdev;
742 	skb_reset_mac_header(chan->rx_skb);
743 	chan->netdev->stats.rx_packets++;
744 	chan->netdev->stats.rx_bytes += chan->cosa->rxsize;
745 	netif_rx(chan->rx_skb);
746 	chan->rx_skb = NULL;
747 	return 0;
748 }
749 
750 /* ARGSUSED */
cosa_net_tx_done(struct channel_data * chan,int size)751 static int cosa_net_tx_done(struct channel_data *chan, int size)
752 {
753 	if (!chan->tx_skb) {
754 		pr_warn("%s: tx_done with empty skb!\n", chan->name);
755 		chan->netdev->stats.tx_errors++;
756 		chan->netdev->stats.tx_aborted_errors++;
757 		return 1;
758 	}
759 	dev_consume_skb_irq(chan->tx_skb);
760 	chan->tx_skb = NULL;
761 	chan->netdev->stats.tx_packets++;
762 	chan->netdev->stats.tx_bytes += size;
763 	netif_wake_queue(chan->netdev);
764 	return 1;
765 }
766 
767 /*---------- Character device ---------- */
768 
cosa_read(struct file * file,char __user * buf,size_t count,loff_t * ppos)769 static ssize_t cosa_read(struct file *file,
770 	char __user *buf, size_t count, loff_t *ppos)
771 {
772 	DECLARE_WAITQUEUE(wait, current);
773 	unsigned long flags;
774 	struct channel_data *chan = file->private_data;
775 	struct cosa_data *cosa = chan->cosa;
776 	char *kbuf;
777 
778 	if (!(cosa->firmware_status & COSA_FW_START)) {
779 		pr_notice("%s: start the firmware first (status %d)\n",
780 			  cosa->name, cosa->firmware_status);
781 		return -EPERM;
782 	}
783 	if (mutex_lock_interruptible(&chan->rlock))
784 		return -ERESTARTSYS;
785 
786 	chan->rxdata = kmalloc(COSA_MTU, GFP_DMA|GFP_KERNEL);
787 	if (chan->rxdata == NULL) {
788 		mutex_unlock(&chan->rlock);
789 		return -ENOMEM;
790 	}
791 
792 	chan->rx_status = 0;
793 	cosa_enable_rx(chan);
794 	spin_lock_irqsave(&cosa->lock, flags);
795 	add_wait_queue(&chan->rxwaitq, &wait);
796 	while (!chan->rx_status) {
797 		set_current_state(TASK_INTERRUPTIBLE);
798 		spin_unlock_irqrestore(&cosa->lock, flags);
799 		schedule();
800 		spin_lock_irqsave(&cosa->lock, flags);
801 		if (signal_pending(current) && chan->rx_status == 0) {
802 			chan->rx_status = 1;
803 			remove_wait_queue(&chan->rxwaitq, &wait);
804 			__set_current_state(TASK_RUNNING);
805 			spin_unlock_irqrestore(&cosa->lock, flags);
806 			mutex_unlock(&chan->rlock);
807 			return -ERESTARTSYS;
808 		}
809 	}
810 	remove_wait_queue(&chan->rxwaitq, &wait);
811 	__set_current_state(TASK_RUNNING);
812 	kbuf = chan->rxdata;
813 	count = chan->rxsize;
814 	spin_unlock_irqrestore(&cosa->lock, flags);
815 	mutex_unlock(&chan->rlock);
816 
817 	if (copy_to_user(buf, kbuf, count)) {
818 		kfree(kbuf);
819 		return -EFAULT;
820 	}
821 	kfree(kbuf);
822 	return count;
823 }
824 
chrdev_setup_rx(struct channel_data * chan,int size)825 static char *chrdev_setup_rx(struct channel_data *chan, int size)
826 {
827 	/* Expect size <= COSA_MTU */
828 	chan->rxsize = size;
829 	return chan->rxdata;
830 }
831 
chrdev_rx_done(struct channel_data * chan)832 static int chrdev_rx_done(struct channel_data *chan)
833 {
834 	if (chan->rx_status) { /* Reader has died */
835 		kfree(chan->rxdata);
836 		up(&chan->wsem);
837 	}
838 	chan->rx_status = 1;
839 	wake_up_interruptible(&chan->rxwaitq);
840 	return 1;
841 }
842 
843 
cosa_write(struct file * file,const char __user * buf,size_t count,loff_t * ppos)844 static ssize_t cosa_write(struct file *file,
845 	const char __user *buf, size_t count, loff_t *ppos)
846 {
847 	DECLARE_WAITQUEUE(wait, current);
848 	struct channel_data *chan = file->private_data;
849 	struct cosa_data *cosa = chan->cosa;
850 	unsigned long flags;
851 	char *kbuf;
852 
853 	if (!(cosa->firmware_status & COSA_FW_START)) {
854 		pr_notice("%s: start the firmware first (status %d)\n",
855 			  cosa->name, cosa->firmware_status);
856 		return -EPERM;
857 	}
858 	if (down_interruptible(&chan->wsem))
859 		return -ERESTARTSYS;
860 
861 	if (count > COSA_MTU)
862 		count = COSA_MTU;
863 
864 	/* Allocate the buffer */
865 	kbuf = kmalloc(count, GFP_KERNEL|GFP_DMA);
866 	if (kbuf == NULL) {
867 		up(&chan->wsem);
868 		return -ENOMEM;
869 	}
870 	if (copy_from_user(kbuf, buf, count)) {
871 		up(&chan->wsem);
872 		kfree(kbuf);
873 		return -EFAULT;
874 	}
875 	chan->tx_status=0;
876 	cosa_start_tx(chan, kbuf, count);
877 
878 	spin_lock_irqsave(&cosa->lock, flags);
879 	add_wait_queue(&chan->txwaitq, &wait);
880 	while (!chan->tx_status) {
881 		set_current_state(TASK_INTERRUPTIBLE);
882 		spin_unlock_irqrestore(&cosa->lock, flags);
883 		schedule();
884 		spin_lock_irqsave(&cosa->lock, flags);
885 		if (signal_pending(current) && chan->tx_status == 0) {
886 			chan->tx_status = 1;
887 			remove_wait_queue(&chan->txwaitq, &wait);
888 			__set_current_state(TASK_RUNNING);
889 			chan->tx_status = 1;
890 			spin_unlock_irqrestore(&cosa->lock, flags);
891 			up(&chan->wsem);
892 			kfree(kbuf);
893 			return -ERESTARTSYS;
894 		}
895 	}
896 	remove_wait_queue(&chan->txwaitq, &wait);
897 	__set_current_state(TASK_RUNNING);
898 	up(&chan->wsem);
899 	spin_unlock_irqrestore(&cosa->lock, flags);
900 	kfree(kbuf);
901 	return count;
902 }
903 
chrdev_tx_done(struct channel_data * chan,int size)904 static int chrdev_tx_done(struct channel_data *chan, int size)
905 {
906 	if (chan->tx_status) { /* Writer was interrupted */
907 		kfree(chan->txbuf);
908 		up(&chan->wsem);
909 	}
910 	chan->tx_status = 1;
911 	wake_up_interruptible(&chan->txwaitq);
912 	return 1;
913 }
914 
cosa_poll(struct file * file,poll_table * poll)915 static __poll_t cosa_poll(struct file *file, poll_table *poll)
916 {
917 	pr_info("cosa_poll is here\n");
918 	return 0;
919 }
920 
cosa_open(struct inode * inode,struct file * file)921 static int cosa_open(struct inode *inode, struct file *file)
922 {
923 	struct cosa_data *cosa;
924 	struct channel_data *chan;
925 	unsigned long flags;
926 	int n;
927 	int ret = 0;
928 
929 	mutex_lock(&cosa_chardev_mutex);
930 	if ((n=iminor(file_inode(file))>>CARD_MINOR_BITS)
931 		>= nr_cards) {
932 		ret = -ENODEV;
933 		goto out;
934 	}
935 	cosa = cosa_cards+n;
936 
937 	if ((n=iminor(file_inode(file))
938 		& ((1<<CARD_MINOR_BITS)-1)) >= cosa->nchannels) {
939 		ret = -ENODEV;
940 		goto out;
941 	}
942 	chan = cosa->chan + n;
943 
944 	file->private_data = chan;
945 
946 	spin_lock_irqsave(&cosa->lock, flags);
947 
948 	if (chan->usage < 0) { /* in netdev mode */
949 		spin_unlock_irqrestore(&cosa->lock, flags);
950 		ret = -EBUSY;
951 		goto out;
952 	}
953 	cosa->usage++;
954 	chan->usage++;
955 
956 	chan->tx_done = chrdev_tx_done;
957 	chan->setup_rx = chrdev_setup_rx;
958 	chan->rx_done = chrdev_rx_done;
959 	spin_unlock_irqrestore(&cosa->lock, flags);
960 out:
961 	mutex_unlock(&cosa_chardev_mutex);
962 	return ret;
963 }
964 
cosa_release(struct inode * inode,struct file * file)965 static int cosa_release(struct inode *inode, struct file *file)
966 {
967 	struct channel_data *channel = file->private_data;
968 	struct cosa_data *cosa;
969 	unsigned long flags;
970 
971 	cosa = channel->cosa;
972 	spin_lock_irqsave(&cosa->lock, flags);
973 	cosa->usage--;
974 	channel->usage--;
975 	spin_unlock_irqrestore(&cosa->lock, flags);
976 	return 0;
977 }
978 
979 #ifdef COSA_FASYNC_WORKING
980 static struct fasync_struct *fasync[256] = { NULL, };
981 
982 /* To be done ... */
cosa_fasync(struct inode * inode,struct file * file,int on)983 static int cosa_fasync(struct inode *inode, struct file *file, int on)
984 {
985         int port = iminor(inode);
986 
987 	return fasync_helper(inode, file, on, &fasync[port]);
988 }
989 #endif
990 
991 
992 /* ---------- Ioctls ---------- */
993 
994 /*
995  * Ioctl subroutines can safely be made inline, because they are called
996  * only from cosa_ioctl().
997  */
cosa_reset(struct cosa_data * cosa)998 static inline int cosa_reset(struct cosa_data *cosa)
999 {
1000 	char idstring[COSA_MAX_ID_STRING];
1001 	if (cosa->usage > 1)
1002 		pr_info("cosa%d: WARNING: reset requested with cosa->usage > 1 (%d). Odd things may happen.\n",
1003 			cosa->num, cosa->usage);
1004 	cosa->firmware_status &= ~(COSA_FW_RESET|COSA_FW_START);
1005 	if (cosa_reset_and_read_id(cosa, idstring) < 0) {
1006 		pr_notice("cosa%d: reset failed\n", cosa->num);
1007 		return -EIO;
1008 	}
1009 	pr_info("cosa%d: resetting device: %s\n", cosa->num, idstring);
1010 	cosa->firmware_status |= COSA_FW_RESET;
1011 	return 0;
1012 }
1013 
1014 /* High-level function to download data into COSA memory. Calls download() */
cosa_download(struct cosa_data * cosa,void __user * arg)1015 static inline int cosa_download(struct cosa_data *cosa, void __user *arg)
1016 {
1017 	struct cosa_download d;
1018 	int i;
1019 
1020 	if (cosa->usage > 1)
1021 		pr_info("%s: WARNING: download of microcode requested with cosa->usage > 1 (%d). Odd things may happen.\n",
1022 			cosa->name, cosa->usage);
1023 	if (!(cosa->firmware_status & COSA_FW_RESET)) {
1024 		pr_notice("%s: reset the card first (status %d)\n",
1025 			  cosa->name, cosa->firmware_status);
1026 		return -EPERM;
1027 	}
1028 
1029 	if (copy_from_user(&d, arg, sizeof(d)))
1030 		return -EFAULT;
1031 
1032 	if (d.addr < 0 || d.addr > COSA_MAX_FIRMWARE_SIZE)
1033 		return -EINVAL;
1034 	if (d.len < 0 || d.len > COSA_MAX_FIRMWARE_SIZE)
1035 		return -EINVAL;
1036 
1037 
1038 	/* If something fails, force the user to reset the card */
1039 	cosa->firmware_status &= ~(COSA_FW_RESET|COSA_FW_DOWNLOAD);
1040 
1041 	i = download(cosa, d.code, d.len, d.addr);
1042 	if (i < 0) {
1043 		pr_notice("cosa%d: microcode download failed: %d\n",
1044 			  cosa->num, i);
1045 		return -EIO;
1046 	}
1047 	pr_info("cosa%d: downloading microcode - 0x%04x bytes at 0x%04x\n",
1048 		cosa->num, d.len, d.addr);
1049 	cosa->firmware_status |= COSA_FW_RESET|COSA_FW_DOWNLOAD;
1050 	return 0;
1051 }
1052 
1053 /* High-level function to read COSA memory. Calls readmem() */
cosa_readmem(struct cosa_data * cosa,void __user * arg)1054 static inline int cosa_readmem(struct cosa_data *cosa, void __user *arg)
1055 {
1056 	struct cosa_download d;
1057 	int i;
1058 
1059 	if (cosa->usage > 1)
1060 		pr_info("cosa%d: WARNING: readmem requested with cosa->usage > 1 (%d). Odd things may happen.\n",
1061 			cosa->num, cosa->usage);
1062 	if (!(cosa->firmware_status & COSA_FW_RESET)) {
1063 		pr_notice("%s: reset the card first (status %d)\n",
1064 			  cosa->name, cosa->firmware_status);
1065 		return -EPERM;
1066 	}
1067 
1068 	if (copy_from_user(&d, arg, sizeof(d)))
1069 		return -EFAULT;
1070 
1071 	/* If something fails, force the user to reset the card */
1072 	cosa->firmware_status &= ~COSA_FW_RESET;
1073 
1074 	i = readmem(cosa, d.code, d.len, d.addr);
1075 	if (i < 0) {
1076 		pr_notice("cosa%d: reading memory failed: %d\n", cosa->num, i);
1077 		return -EIO;
1078 	}
1079 	pr_info("cosa%d: reading card memory - 0x%04x bytes at 0x%04x\n",
1080 		cosa->num, d.len, d.addr);
1081 	cosa->firmware_status |= COSA_FW_RESET;
1082 	return 0;
1083 }
1084 
1085 /* High-level function to start microcode. Calls startmicrocode(). */
cosa_start(struct cosa_data * cosa,int address)1086 static inline int cosa_start(struct cosa_data *cosa, int address)
1087 {
1088 	int i;
1089 
1090 	if (cosa->usage > 1)
1091 		pr_info("cosa%d: WARNING: start microcode requested with cosa->usage > 1 (%d). Odd things may happen.\n",
1092 			cosa->num, cosa->usage);
1093 
1094 	if ((cosa->firmware_status & (COSA_FW_RESET|COSA_FW_DOWNLOAD))
1095 		!= (COSA_FW_RESET|COSA_FW_DOWNLOAD)) {
1096 		pr_notice("%s: download the microcode and/or reset the card first (status %d)\n",
1097 			  cosa->name, cosa->firmware_status);
1098 		return -EPERM;
1099 	}
1100 	cosa->firmware_status &= ~COSA_FW_RESET;
1101 	if ((i=startmicrocode(cosa, address)) < 0) {
1102 		pr_notice("cosa%d: start microcode at 0x%04x failed: %d\n",
1103 			  cosa->num, address, i);
1104 		return -EIO;
1105 	}
1106 	pr_info("cosa%d: starting microcode at 0x%04x\n", cosa->num, address);
1107 	cosa->startaddr = address;
1108 	cosa->firmware_status |= COSA_FW_START;
1109 	return 0;
1110 }
1111 
1112 /* Buffer of size at least COSA_MAX_ID_STRING is expected */
cosa_getidstr(struct cosa_data * cosa,char __user * string)1113 static inline int cosa_getidstr(struct cosa_data *cosa, char __user *string)
1114 {
1115 	int l = strlen(cosa->id_string)+1;
1116 	if (copy_to_user(string, cosa->id_string, l))
1117 		return -EFAULT;
1118 	return l;
1119 }
1120 
1121 /* Buffer of size at least COSA_MAX_ID_STRING is expected */
cosa_gettype(struct cosa_data * cosa,char __user * string)1122 static inline int cosa_gettype(struct cosa_data *cosa, char __user *string)
1123 {
1124 	int l = strlen(cosa->type)+1;
1125 	if (copy_to_user(string, cosa->type, l))
1126 		return -EFAULT;
1127 	return l;
1128 }
1129 
cosa_ioctl_common(struct cosa_data * cosa,struct channel_data * channel,unsigned int cmd,unsigned long arg)1130 static int cosa_ioctl_common(struct cosa_data *cosa,
1131 	struct channel_data *channel, unsigned int cmd, unsigned long arg)
1132 {
1133 	void __user *argp = (void __user *)arg;
1134 	switch (cmd) {
1135 	case COSAIORSET:	/* Reset the device */
1136 		if (!capable(CAP_NET_ADMIN))
1137 			return -EACCES;
1138 		return cosa_reset(cosa);
1139 	case COSAIOSTRT:	/* Start the firmware */
1140 		if (!capable(CAP_SYS_RAWIO))
1141 			return -EACCES;
1142 		return cosa_start(cosa, arg);
1143 	case COSAIODOWNLD:	/* Download the firmware */
1144 		if (!capable(CAP_SYS_RAWIO))
1145 			return -EACCES;
1146 
1147 		return cosa_download(cosa, argp);
1148 	case COSAIORMEM:
1149 		if (!capable(CAP_SYS_RAWIO))
1150 			return -EACCES;
1151 		return cosa_readmem(cosa, argp);
1152 	case COSAIORTYPE:
1153 		return cosa_gettype(cosa, argp);
1154 	case COSAIORIDSTR:
1155 		return cosa_getidstr(cosa, argp);
1156 	case COSAIONRCARDS:
1157 		return nr_cards;
1158 	case COSAIONRCHANS:
1159 		return cosa->nchannels;
1160 	case COSAIOBMSET:
1161 		if (!capable(CAP_SYS_RAWIO))
1162 			return -EACCES;
1163 		if (is_8bit(cosa))
1164 			return -EINVAL;
1165 		if (arg != COSA_BM_OFF && arg != COSA_BM_ON)
1166 			return -EINVAL;
1167 		cosa->busmaster = arg;
1168 		return 0;
1169 	case COSAIOBMGET:
1170 		return cosa->busmaster;
1171 	}
1172 	return -ENOIOCTLCMD;
1173 }
1174 
cosa_net_ioctl(struct net_device * dev,struct ifreq * ifr,int cmd)1175 static int cosa_net_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd)
1176 {
1177 	int rv;
1178 	struct channel_data *chan = dev_to_chan(dev);
1179 	rv = cosa_ioctl_common(chan->cosa, chan, cmd,
1180 			       (unsigned long)ifr->ifr_data);
1181 	if (rv != -ENOIOCTLCMD)
1182 		return rv;
1183 	return hdlc_ioctl(dev, ifr, cmd);
1184 }
1185 
cosa_chardev_ioctl(struct file * file,unsigned int cmd,unsigned long arg)1186 static long cosa_chardev_ioctl(struct file *file, unsigned int cmd,
1187 							unsigned long arg)
1188 {
1189 	struct channel_data *channel = file->private_data;
1190 	struct cosa_data *cosa;
1191 	long ret;
1192 
1193 	mutex_lock(&cosa_chardev_mutex);
1194 	cosa = channel->cosa;
1195 	ret = cosa_ioctl_common(cosa, channel, cmd, arg);
1196 	mutex_unlock(&cosa_chardev_mutex);
1197 	return ret;
1198 }
1199 
1200 
1201 /*---------- HW layer interface ---------- */
1202 
1203 /*
1204  * The higher layer can bind itself to the HW layer by setting the callbacks
1205  * in the channel_data structure and by using these routines.
1206  */
cosa_enable_rx(struct channel_data * chan)1207 static void cosa_enable_rx(struct channel_data *chan)
1208 {
1209 	struct cosa_data *cosa = chan->cosa;
1210 
1211 	if (!test_and_set_bit(chan->num, &cosa->rxbitmap))
1212 		put_driver_status(cosa);
1213 }
1214 
cosa_disable_rx(struct channel_data * chan)1215 static void cosa_disable_rx(struct channel_data *chan)
1216 {
1217 	struct cosa_data *cosa = chan->cosa;
1218 
1219 	if (test_and_clear_bit(chan->num, &cosa->rxbitmap))
1220 		put_driver_status(cosa);
1221 }
1222 
1223 /*
1224  * FIXME: This routine probably should check for cosa_start_tx() called when
1225  * the previous transmit is still unfinished. In this case the non-zero
1226  * return value should indicate to the caller that the queuing(sp?) up
1227  * the transmit has failed.
1228  */
cosa_start_tx(struct channel_data * chan,char * buf,int len)1229 static int cosa_start_tx(struct channel_data *chan, char *buf, int len)
1230 {
1231 	struct cosa_data *cosa = chan->cosa;
1232 	unsigned long flags;
1233 #ifdef DEBUG_DATA
1234 	int i;
1235 
1236 	pr_info("cosa%dc%d: starting tx(0x%x)",
1237 		chan->cosa->num, chan->num, len);
1238 	for (i=0; i<len; i++)
1239 		pr_cont(" %02x", buf[i]&0xff);
1240 	pr_cont("\n");
1241 #endif
1242 	spin_lock_irqsave(&cosa->lock, flags);
1243 	chan->txbuf = buf;
1244 	chan->txsize = len;
1245 	if (len > COSA_MTU)
1246 		chan->txsize = COSA_MTU;
1247 	spin_unlock_irqrestore(&cosa->lock, flags);
1248 
1249 	/* Tell the firmware we are ready */
1250 	set_bit(chan->num, &cosa->txbitmap);
1251 	put_driver_status(cosa);
1252 
1253 	return 0;
1254 }
1255 
put_driver_status(struct cosa_data * cosa)1256 static void put_driver_status(struct cosa_data *cosa)
1257 {
1258 	unsigned long flags;
1259 	int status;
1260 
1261 	spin_lock_irqsave(&cosa->lock, flags);
1262 
1263 	status = (cosa->rxbitmap ? DRIVER_RX_READY : 0)
1264 		| (cosa->txbitmap ? DRIVER_TX_READY : 0)
1265 		| (cosa->txbitmap? ~(cosa->txbitmap<<DRIVER_TXMAP_SHIFT)
1266 			&DRIVER_TXMAP_MASK : 0);
1267 	if (!cosa->rxtx) {
1268 		if (cosa->rxbitmap|cosa->txbitmap) {
1269 			if (!cosa->enabled) {
1270 				cosa_putstatus(cosa, SR_RX_INT_ENA);
1271 #ifdef DEBUG_IO
1272 				debug_status_out(cosa, SR_RX_INT_ENA);
1273 #endif
1274 				cosa->enabled = 1;
1275 			}
1276 		} else if (cosa->enabled) {
1277 			cosa->enabled = 0;
1278 			cosa_putstatus(cosa, 0);
1279 #ifdef DEBUG_IO
1280 			debug_status_out(cosa, 0);
1281 #endif
1282 		}
1283 		cosa_putdata8(cosa, status);
1284 #ifdef DEBUG_IO
1285 		debug_data_cmd(cosa, status);
1286 #endif
1287 	}
1288 	spin_unlock_irqrestore(&cosa->lock, flags);
1289 }
1290 
put_driver_status_nolock(struct cosa_data * cosa)1291 static void put_driver_status_nolock(struct cosa_data *cosa)
1292 {
1293 	int status;
1294 
1295 	status = (cosa->rxbitmap ? DRIVER_RX_READY : 0)
1296 		| (cosa->txbitmap ? DRIVER_TX_READY : 0)
1297 		| (cosa->txbitmap? ~(cosa->txbitmap<<DRIVER_TXMAP_SHIFT)
1298 			&DRIVER_TXMAP_MASK : 0);
1299 
1300 	if (cosa->rxbitmap|cosa->txbitmap) {
1301 		cosa_putstatus(cosa, SR_RX_INT_ENA);
1302 #ifdef DEBUG_IO
1303 		debug_status_out(cosa, SR_RX_INT_ENA);
1304 #endif
1305 		cosa->enabled = 1;
1306 	} else {
1307 		cosa_putstatus(cosa, 0);
1308 #ifdef DEBUG_IO
1309 		debug_status_out(cosa, 0);
1310 #endif
1311 		cosa->enabled = 0;
1312 	}
1313 	cosa_putdata8(cosa, status);
1314 #ifdef DEBUG_IO
1315 	debug_data_cmd(cosa, status);
1316 #endif
1317 }
1318 
1319 /*
1320  * The "kickme" function: When the DMA times out, this is called to
1321  * clean up the driver status.
1322  * FIXME: Preliminary support, the interface is probably wrong.
1323  */
cosa_kick(struct cosa_data * cosa)1324 static void cosa_kick(struct cosa_data *cosa)
1325 {
1326 	unsigned long flags, flags1;
1327 	char *s = "(probably) IRQ";
1328 
1329 	if (test_bit(RXBIT, &cosa->rxtx))
1330 		s = "RX DMA";
1331 	if (test_bit(TXBIT, &cosa->rxtx))
1332 		s = "TX DMA";
1333 
1334 	pr_info("%s: %s timeout - restarting\n", cosa->name, s);
1335 	spin_lock_irqsave(&cosa->lock, flags);
1336 	cosa->rxtx = 0;
1337 
1338 	flags1 = claim_dma_lock();
1339 	disable_dma(cosa->dma);
1340 	clear_dma_ff(cosa->dma);
1341 	release_dma_lock(flags1);
1342 
1343 	/* FIXME: Anything else? */
1344 	udelay(100);
1345 	cosa_putstatus(cosa, 0);
1346 	udelay(100);
1347 	(void) cosa_getdata8(cosa);
1348 	udelay(100);
1349 	cosa_putdata8(cosa, 0);
1350 	udelay(100);
1351 	put_driver_status_nolock(cosa);
1352 	spin_unlock_irqrestore(&cosa->lock, flags);
1353 }
1354 
1355 /*
1356  * Check if the whole buffer is DMA-able. It means it is below the 16M of
1357  * physical memory and doesn't span the 64k boundary. For now it seems
1358  * SKB's never do this, but we'll check this anyway.
1359  */
cosa_dma_able(struct channel_data * chan,char * buf,int len)1360 static int cosa_dma_able(struct channel_data *chan, char *buf, int len)
1361 {
1362 	static int count;
1363 	unsigned long b = (unsigned long)buf;
1364 	if (b+len >= MAX_DMA_ADDRESS)
1365 		return 0;
1366 	if ((b^ (b+len)) & 0x10000) {
1367 		if (count++ < 5)
1368 			pr_info("%s: packet spanning a 64k boundary\n",
1369 				chan->name);
1370 		return 0;
1371 	}
1372 	return 1;
1373 }
1374 
1375 
1376 /* ---------- The SRP/COSA ROM monitor functions ---------- */
1377 
1378 /*
1379  * Downloading SRP microcode: say "w" to SRP monitor, it answers by "w=",
1380  * drivers need to say 4-digit hex number meaning start address of the microcode
1381  * separated by a single space. Monitor replies by saying " =". Now driver
1382  * has to write 4-digit hex number meaning the last byte address ended
1383  * by a single space. Monitor has to reply with a space. Now the download
1384  * begins. After the download monitor replies with "\r\n." (CR LF dot).
1385  */
download(struct cosa_data * cosa,const char __user * microcode,int length,int address)1386 static int download(struct cosa_data *cosa, const char __user *microcode, int length, int address)
1387 {
1388 	int i;
1389 
1390 	if (put_wait_data(cosa, 'w') == -1) return -1;
1391 	if ((i=get_wait_data(cosa)) != 'w') { printk("dnld: 0x%04x\n",i); return -2;}
1392 	if (get_wait_data(cosa) != '=') return -3;
1393 
1394 	if (puthexnumber(cosa, address) < 0) return -4;
1395 	if (put_wait_data(cosa, ' ') == -1) return -10;
1396 	if (get_wait_data(cosa) != ' ') return -11;
1397 	if (get_wait_data(cosa) != '=') return -12;
1398 
1399 	if (puthexnumber(cosa, address+length-1) < 0) return -13;
1400 	if (put_wait_data(cosa, ' ') == -1) return -18;
1401 	if (get_wait_data(cosa) != ' ') return -19;
1402 
1403 	while (length--) {
1404 		char c;
1405 #ifndef SRP_DOWNLOAD_AT_BOOT
1406 		if (get_user(c, microcode))
1407 			return -23; /* ??? */
1408 #else
1409 		c = *microcode;
1410 #endif
1411 		if (put_wait_data(cosa, c) == -1)
1412 			return -20;
1413 		microcode++;
1414 	}
1415 
1416 	if (get_wait_data(cosa) != '\r') return -21;
1417 	if (get_wait_data(cosa) != '\n') return -22;
1418 	if (get_wait_data(cosa) != '.') return -23;
1419 #if 0
1420 	printk(KERN_DEBUG "cosa%d: download completed.\n", cosa->num);
1421 #endif
1422 	return 0;
1423 }
1424 
1425 
1426 /*
1427  * Starting microcode is done via the "g" command of the SRP monitor.
1428  * The chat should be the following: "g" "g=" "<addr><CR>"
1429  * "<CR><CR><LF><CR><LF>".
1430  */
startmicrocode(struct cosa_data * cosa,int address)1431 static int startmicrocode(struct cosa_data *cosa, int address)
1432 {
1433 	if (put_wait_data(cosa, 'g') == -1) return -1;
1434 	if (get_wait_data(cosa) != 'g') return -2;
1435 	if (get_wait_data(cosa) != '=') return -3;
1436 
1437 	if (puthexnumber(cosa, address) < 0) return -4;
1438 	if (put_wait_data(cosa, '\r') == -1) return -5;
1439 
1440 	if (get_wait_data(cosa) != '\r') return -6;
1441 	if (get_wait_data(cosa) != '\r') return -7;
1442 	if (get_wait_data(cosa) != '\n') return -8;
1443 	if (get_wait_data(cosa) != '\r') return -9;
1444 	if (get_wait_data(cosa) != '\n') return -10;
1445 #if 0
1446 	printk(KERN_DEBUG "cosa%d: microcode started\n", cosa->num);
1447 #endif
1448 	return 0;
1449 }
1450 
1451 /*
1452  * Reading memory is done via the "r" command of the SRP monitor.
1453  * The chat is the following "r" "r=" "<addr> " " =" "<last_byte> " " "
1454  * Then driver can read the data and the conversation is finished
1455  * by SRP monitor sending "<CR><LF>." (dot at the end).
1456  *
1457  * This routine is not needed during the normal operation and serves
1458  * for debugging purposes only.
1459  */
readmem(struct cosa_data * cosa,char __user * microcode,int length,int address)1460 static int readmem(struct cosa_data *cosa, char __user *microcode, int length, int address)
1461 {
1462 	if (put_wait_data(cosa, 'r') == -1) return -1;
1463 	if ((get_wait_data(cosa)) != 'r') return -2;
1464 	if ((get_wait_data(cosa)) != '=') return -3;
1465 
1466 	if (puthexnumber(cosa, address) < 0) return -4;
1467 	if (put_wait_data(cosa, ' ') == -1) return -5;
1468 	if (get_wait_data(cosa) != ' ') return -6;
1469 	if (get_wait_data(cosa) != '=') return -7;
1470 
1471 	if (puthexnumber(cosa, address+length-1) < 0) return -8;
1472 	if (put_wait_data(cosa, ' ') == -1) return -9;
1473 	if (get_wait_data(cosa) != ' ') return -10;
1474 
1475 	while (length--) {
1476 		char c;
1477 		int i;
1478 		if ((i=get_wait_data(cosa)) == -1) {
1479 			pr_info("0x%04x bytes remaining\n", length);
1480 			return -11;
1481 		}
1482 		c=i;
1483 #if 1
1484 		if (put_user(c, microcode))
1485 			return -23; /* ??? */
1486 #else
1487 		*microcode = c;
1488 #endif
1489 		microcode++;
1490 	}
1491 
1492 	if (get_wait_data(cosa) != '\r') return -21;
1493 	if (get_wait_data(cosa) != '\n') return -22;
1494 	if (get_wait_data(cosa) != '.') return -23;
1495 #if 0
1496 	printk(KERN_DEBUG "cosa%d: readmem completed.\n", cosa->num);
1497 #endif
1498 	return 0;
1499 }
1500 
1501 /*
1502  * This function resets the device and reads the initial prompt
1503  * of the device's ROM monitor.
1504  */
cosa_reset_and_read_id(struct cosa_data * cosa,char * idstring)1505 static int cosa_reset_and_read_id(struct cosa_data *cosa, char *idstring)
1506 {
1507 	int i=0, id=0, prev=0, curr=0;
1508 
1509 	/* Reset the card ... */
1510 	cosa_putstatus(cosa, 0);
1511 	cosa_getdata8(cosa);
1512 	cosa_putstatus(cosa, SR_RST);
1513 	msleep(500);
1514 	/* Disable all IRQs from the card */
1515 	cosa_putstatus(cosa, 0);
1516 
1517 	/*
1518 	 * Try to read the ID string. The card then prints out the
1519 	 * identification string ended by the "\n\x2e".
1520 	 *
1521 	 * The following loop is indexed through i (instead of id)
1522 	 * to avoid looping forever when for any reason
1523 	 * the port returns '\r', '\n' or '\x2e' permanently.
1524 	 */
1525 	for (i=0; i<COSA_MAX_ID_STRING-1; i++, prev=curr) {
1526 		if ((curr = get_wait_data(cosa)) == -1) {
1527 			return -1;
1528 		}
1529 		curr &= 0xff;
1530 		if (curr != '\r' && curr != '\n' && curr != 0x2e)
1531 			idstring[id++] = curr;
1532 		if (curr == 0x2e && prev == '\n')
1533 			break;
1534 	}
1535 	/* Perhaps we should fail when i==COSA_MAX_ID_STRING-1 ? */
1536 	idstring[id] = '\0';
1537 	return id;
1538 }
1539 
1540 
1541 /* ---------- Auxiliary routines for COSA/SRP monitor ---------- */
1542 
1543 /*
1544  * This routine gets the data byte from the card waiting for the SR_RX_RDY
1545  * bit to be set in a loop. It should be used in the exceptional cases
1546  * only (for example when resetting the card or downloading the firmware.
1547  */
get_wait_data(struct cosa_data * cosa)1548 static int get_wait_data(struct cosa_data *cosa)
1549 {
1550 	int retries = 1000;
1551 
1552 	while (--retries) {
1553 		/* read data and return them */
1554 		if (cosa_getstatus(cosa) & SR_RX_RDY) {
1555 			short r;
1556 			r = cosa_getdata8(cosa);
1557 #if 0
1558 			pr_info("get_wait_data returning after %d retries\n",
1559 				999-retries);
1560 #endif
1561 			return r;
1562 		}
1563 		/* sleep if not ready to read */
1564 		schedule_timeout_interruptible(1);
1565 	}
1566 	pr_info("timeout in get_wait_data (status 0x%x)\n",
1567 		cosa_getstatus(cosa));
1568 	return -1;
1569 }
1570 
1571 /*
1572  * This routine puts the data byte to the card waiting for the SR_TX_RDY
1573  * bit to be set in a loop. It should be used in the exceptional cases
1574  * only (for example when resetting the card or downloading the firmware).
1575  */
put_wait_data(struct cosa_data * cosa,int data)1576 static int put_wait_data(struct cosa_data *cosa, int data)
1577 {
1578 	int retries = 1000;
1579 	while (--retries) {
1580 		/* read data and return them */
1581 		if (cosa_getstatus(cosa) & SR_TX_RDY) {
1582 			cosa_putdata8(cosa, data);
1583 #if 0
1584 			pr_info("Putdata: %d retries\n", 999-retries);
1585 #endif
1586 			return 0;
1587 		}
1588 #if 0
1589 		/* sleep if not ready to read */
1590 		schedule_timeout_interruptible(1);
1591 #endif
1592 	}
1593 	pr_info("cosa%d: timeout in put_wait_data (status 0x%x)\n",
1594 		cosa->num, cosa_getstatus(cosa));
1595 	return -1;
1596 }
1597 
1598 /*
1599  * The following routine puts the hexadecimal number into the SRP monitor
1600  * and verifies the proper echo of the sent bytes. Returns 0 on success,
1601  * negative number on failure (-1,-3,-5,-7) means that put_wait_data() failed,
1602  * (-2,-4,-6,-8) means that reading echo failed.
1603  */
puthexnumber(struct cosa_data * cosa,int number)1604 static int puthexnumber(struct cosa_data *cosa, int number)
1605 {
1606 	char temp[5];
1607 	int i;
1608 
1609 	/* Well, I should probably replace this by something faster. */
1610 	sprintf(temp, "%04X", number);
1611 	for (i=0; i<4; i++) {
1612 		if (put_wait_data(cosa, temp[i]) == -1) {
1613 			pr_notice("cosa%d: puthexnumber failed to write byte %d\n",
1614 				  cosa->num, i);
1615 			return -1-2*i;
1616 		}
1617 		if (get_wait_data(cosa) != temp[i]) {
1618 			pr_notice("cosa%d: puthexhumber failed to read echo of byte %d\n",
1619 				  cosa->num, i);
1620 			return -2-2*i;
1621 		}
1622 	}
1623 	return 0;
1624 }
1625 
1626 
1627 /* ---------- Interrupt routines ---------- */
1628 
1629 /*
1630  * There are three types of interrupt:
1631  * At the beginning of transmit - this handled is in tx_interrupt(),
1632  * at the beginning of receive - it is in rx_interrupt() and
1633  * at the end of transmit/receive - it is the eot_interrupt() function.
1634  * These functions are multiplexed by cosa_interrupt() according to the
1635  * COSA status byte. I have moved the rx/tx/eot interrupt handling into
1636  * separate functions to make it more readable. These functions are inline,
1637  * so there should be no overhead of function call.
1638  *
1639  * In the COSA bus-master mode, we need to tell the card the address of a
1640  * buffer. Unfortunately, COSA may be too slow for us, so we must busy-wait.
1641  * It's time to use the bottom half :-(
1642  */
1643 
1644 /*
1645  * Transmit interrupt routine - called when COSA is willing to obtain
1646  * data from the OS. The most tricky part of the routine is selection
1647  * of channel we (OS) want to send packet for. For SRP we should probably
1648  * use the round-robin approach. The newer COSA firmwares have a simple
1649  * flow-control - in the status word has bits 2 and 3 set to 1 means that the
1650  * channel 0 or 1 doesn't want to receive data.
1651  *
1652  * It seems there is a bug in COSA firmware (need to trace it further):
1653  * When the driver status says that the kernel has no more data for transmit
1654  * (e.g. at the end of TX DMA) and then the kernel changes its mind
1655  * (e.g. new packet is queued to hard_start_xmit()), the card issues
1656  * the TX interrupt but does not mark the channel as ready-to-transmit.
1657  * The fix seems to be to push the packet to COSA despite its request.
1658  * We first try to obey the card's opinion, and then fall back to forced TX.
1659  */
tx_interrupt(struct cosa_data * cosa,int status)1660 static inline void tx_interrupt(struct cosa_data *cosa, int status)
1661 {
1662 	unsigned long flags, flags1;
1663 #ifdef DEBUG_IRQS
1664 	pr_info("cosa%d: SR_DOWN_REQUEST status=0x%04x\n", cosa->num, status);
1665 #endif
1666 	spin_lock_irqsave(&cosa->lock, flags);
1667 	set_bit(TXBIT, &cosa->rxtx);
1668 	if (!test_bit(IRQBIT, &cosa->rxtx)) {
1669 		/* flow control, see the comment above */
1670 		int i=0;
1671 		if (!cosa->txbitmap) {
1672 			pr_warn("%s: No channel wants data in TX IRQ. Expect DMA timeout.\n",
1673 				cosa->name);
1674 			put_driver_status_nolock(cosa);
1675 			clear_bit(TXBIT, &cosa->rxtx);
1676 			spin_unlock_irqrestore(&cosa->lock, flags);
1677 			return;
1678 		}
1679 		while (1) {
1680 			cosa->txchan++;
1681 			i++;
1682 			if (cosa->txchan >= cosa->nchannels)
1683 				cosa->txchan = 0;
1684 			if (!(cosa->txbitmap & (1<<cosa->txchan)))
1685 				continue;
1686 			if (~status & (1 << (cosa->txchan+DRIVER_TXMAP_SHIFT)))
1687 				break;
1688 			/* in second pass, accept first ready-to-TX channel */
1689 			if (i > cosa->nchannels) {
1690 				/* Can be safely ignored */
1691 #ifdef DEBUG_IRQS
1692 				printk(KERN_DEBUG "%s: Forcing TX "
1693 					"to not-ready channel %d\n",
1694 					cosa->name, cosa->txchan);
1695 #endif
1696 				break;
1697 			}
1698 		}
1699 
1700 		cosa->txsize = cosa->chan[cosa->txchan].txsize;
1701 		if (cosa_dma_able(cosa->chan+cosa->txchan,
1702 			cosa->chan[cosa->txchan].txbuf, cosa->txsize)) {
1703 			cosa->txbuf = cosa->chan[cosa->txchan].txbuf;
1704 		} else {
1705 			memcpy(cosa->bouncebuf, cosa->chan[cosa->txchan].txbuf,
1706 				cosa->txsize);
1707 			cosa->txbuf = cosa->bouncebuf;
1708 		}
1709 	}
1710 
1711 	if (is_8bit(cosa)) {
1712 		if (!test_bit(IRQBIT, &cosa->rxtx)) {
1713 			cosa_putstatus(cosa, SR_TX_INT_ENA);
1714 			cosa_putdata8(cosa, ((cosa->txchan << 5) & 0xe0)|
1715 				((cosa->txsize >> 8) & 0x1f));
1716 #ifdef DEBUG_IO
1717 			debug_status_out(cosa, SR_TX_INT_ENA);
1718 			debug_data_out(cosa, ((cosa->txchan << 5) & 0xe0)|
1719                                 ((cosa->txsize >> 8) & 0x1f));
1720 			debug_data_in(cosa, cosa_getdata8(cosa));
1721 #else
1722 			cosa_getdata8(cosa);
1723 #endif
1724 			set_bit(IRQBIT, &cosa->rxtx);
1725 			spin_unlock_irqrestore(&cosa->lock, flags);
1726 			return;
1727 		} else {
1728 			clear_bit(IRQBIT, &cosa->rxtx);
1729 			cosa_putstatus(cosa, 0);
1730 			cosa_putdata8(cosa, cosa->txsize&0xff);
1731 #ifdef DEBUG_IO
1732 			debug_status_out(cosa, 0);
1733 			debug_data_out(cosa, cosa->txsize&0xff);
1734 #endif
1735 		}
1736 	} else {
1737 		cosa_putstatus(cosa, SR_TX_INT_ENA);
1738 		cosa_putdata16(cosa, ((cosa->txchan<<13) & 0xe000)
1739 			| (cosa->txsize & 0x1fff));
1740 #ifdef DEBUG_IO
1741 		debug_status_out(cosa, SR_TX_INT_ENA);
1742 		debug_data_out(cosa, ((cosa->txchan<<13) & 0xe000)
1743                         | (cosa->txsize & 0x1fff));
1744 		debug_data_in(cosa, cosa_getdata8(cosa));
1745 		debug_status_out(cosa, 0);
1746 #else
1747 		cosa_getdata8(cosa);
1748 #endif
1749 		cosa_putstatus(cosa, 0);
1750 	}
1751 
1752 	if (cosa->busmaster) {
1753 		unsigned long addr = virt_to_bus(cosa->txbuf);
1754 		int count=0;
1755 		pr_info("busmaster IRQ\n");
1756 		while (!(cosa_getstatus(cosa)&SR_TX_RDY)) {
1757 			count++;
1758 			udelay(10);
1759 			if (count > 1000) break;
1760 		}
1761 		pr_info("status %x\n", cosa_getstatus(cosa));
1762 		pr_info("ready after %d loops\n", count);
1763 		cosa_putdata16(cosa, (addr >> 16)&0xffff);
1764 
1765 		count = 0;
1766 		while (!(cosa_getstatus(cosa)&SR_TX_RDY)) {
1767 			count++;
1768 			if (count > 1000) break;
1769 			udelay(10);
1770 		}
1771 		pr_info("ready after %d loops\n", count);
1772 		cosa_putdata16(cosa, addr &0xffff);
1773 		flags1 = claim_dma_lock();
1774 		set_dma_mode(cosa->dma, DMA_MODE_CASCADE);
1775 		enable_dma(cosa->dma);
1776 		release_dma_lock(flags1);
1777 	} else {
1778 		/* start the DMA */
1779 		flags1 = claim_dma_lock();
1780 		disable_dma(cosa->dma);
1781 		clear_dma_ff(cosa->dma);
1782 		set_dma_mode(cosa->dma, DMA_MODE_WRITE);
1783 		set_dma_addr(cosa->dma, virt_to_bus(cosa->txbuf));
1784 		set_dma_count(cosa->dma, cosa->txsize);
1785 		enable_dma(cosa->dma);
1786 		release_dma_lock(flags1);
1787 	}
1788 	cosa_putstatus(cosa, SR_TX_DMA_ENA|SR_USR_INT_ENA);
1789 #ifdef DEBUG_IO
1790 	debug_status_out(cosa, SR_TX_DMA_ENA|SR_USR_INT_ENA);
1791 #endif
1792 	spin_unlock_irqrestore(&cosa->lock, flags);
1793 }
1794 
rx_interrupt(struct cosa_data * cosa,int status)1795 static inline void rx_interrupt(struct cosa_data *cosa, int status)
1796 {
1797 	unsigned long flags;
1798 #ifdef DEBUG_IRQS
1799 	pr_info("cosa%d: SR_UP_REQUEST\n", cosa->num);
1800 #endif
1801 
1802 	spin_lock_irqsave(&cosa->lock, flags);
1803 	set_bit(RXBIT, &cosa->rxtx);
1804 
1805 	if (is_8bit(cosa)) {
1806 		if (!test_bit(IRQBIT, &cosa->rxtx)) {
1807 			set_bit(IRQBIT, &cosa->rxtx);
1808 			put_driver_status_nolock(cosa);
1809 			cosa->rxsize = cosa_getdata8(cosa) <<8;
1810 #ifdef DEBUG_IO
1811 			debug_data_in(cosa, cosa->rxsize >> 8);
1812 #endif
1813 			spin_unlock_irqrestore(&cosa->lock, flags);
1814 			return;
1815 		} else {
1816 			clear_bit(IRQBIT, &cosa->rxtx);
1817 			cosa->rxsize |= cosa_getdata8(cosa) & 0xff;
1818 #ifdef DEBUG_IO
1819 			debug_data_in(cosa, cosa->rxsize & 0xff);
1820 #endif
1821 #if 0
1822 			pr_info("cosa%d: receive rxsize = (0x%04x)\n",
1823 				cosa->num, cosa->rxsize);
1824 #endif
1825 		}
1826 	} else {
1827 		cosa->rxsize = cosa_getdata16(cosa);
1828 #ifdef DEBUG_IO
1829 		debug_data_in(cosa, cosa->rxsize);
1830 #endif
1831 #if 0
1832 		pr_info("cosa%d: receive rxsize = (0x%04x)\n",
1833 			cosa->num, cosa->rxsize);
1834 #endif
1835 	}
1836 	if (((cosa->rxsize & 0xe000) >> 13) >= cosa->nchannels) {
1837 		pr_warn("%s: rx for unknown channel (0x%04x)\n",
1838 			cosa->name, cosa->rxsize);
1839 		spin_unlock_irqrestore(&cosa->lock, flags);
1840 		goto reject;
1841 	}
1842 	cosa->rxchan = cosa->chan + ((cosa->rxsize & 0xe000) >> 13);
1843 	cosa->rxsize &= 0x1fff;
1844 	spin_unlock_irqrestore(&cosa->lock, flags);
1845 
1846 	cosa->rxbuf = NULL;
1847 	if (cosa->rxchan->setup_rx)
1848 		cosa->rxbuf = cosa->rxchan->setup_rx(cosa->rxchan, cosa->rxsize);
1849 
1850 	if (!cosa->rxbuf) {
1851 reject:		/* Reject the packet */
1852 		pr_info("cosa%d: rejecting packet on channel %d\n",
1853 			cosa->num, cosa->rxchan->num);
1854 		cosa->rxbuf = cosa->bouncebuf;
1855 	}
1856 
1857 	/* start the DMA */
1858 	flags = claim_dma_lock();
1859 	disable_dma(cosa->dma);
1860 	clear_dma_ff(cosa->dma);
1861 	set_dma_mode(cosa->dma, DMA_MODE_READ);
1862 	if (cosa_dma_able(cosa->rxchan, cosa->rxbuf, cosa->rxsize & 0x1fff)) {
1863 		set_dma_addr(cosa->dma, virt_to_bus(cosa->rxbuf));
1864 	} else {
1865 		set_dma_addr(cosa->dma, virt_to_bus(cosa->bouncebuf));
1866 	}
1867 	set_dma_count(cosa->dma, (cosa->rxsize&0x1fff));
1868 	enable_dma(cosa->dma);
1869 	release_dma_lock(flags);
1870 	spin_lock_irqsave(&cosa->lock, flags);
1871 	cosa_putstatus(cosa, SR_RX_DMA_ENA|SR_USR_INT_ENA);
1872 	if (!is_8bit(cosa) && (status & SR_TX_RDY))
1873 		cosa_putdata8(cosa, DRIVER_RX_READY);
1874 #ifdef DEBUG_IO
1875 	debug_status_out(cosa, SR_RX_DMA_ENA|SR_USR_INT_ENA);
1876 	if (!is_8bit(cosa) && (status & SR_TX_RDY))
1877 		debug_data_cmd(cosa, DRIVER_RX_READY);
1878 #endif
1879 	spin_unlock_irqrestore(&cosa->lock, flags);
1880 }
1881 
eot_interrupt(struct cosa_data * cosa,int status)1882 static inline void eot_interrupt(struct cosa_data *cosa, int status)
1883 {
1884 	unsigned long flags, flags1;
1885 	spin_lock_irqsave(&cosa->lock, flags);
1886 	flags1 = claim_dma_lock();
1887 	disable_dma(cosa->dma);
1888 	clear_dma_ff(cosa->dma);
1889 	release_dma_lock(flags1);
1890 	if (test_bit(TXBIT, &cosa->rxtx)) {
1891 		struct channel_data *chan = cosa->chan+cosa->txchan;
1892 		if (chan->tx_done)
1893 			if (chan->tx_done(chan, cosa->txsize))
1894 				clear_bit(chan->num, &cosa->txbitmap);
1895 	} else if (test_bit(RXBIT, &cosa->rxtx)) {
1896 #ifdef DEBUG_DATA
1897 	{
1898 		int i;
1899 		pr_info("cosa%dc%d: done rx(0x%x)",
1900 			cosa->num, cosa->rxchan->num, cosa->rxsize);
1901 		for (i=0; i<cosa->rxsize; i++)
1902 			pr_cont(" %02x", cosa->rxbuf[i]&0xff);
1903 		pr_cont("\n");
1904 	}
1905 #endif
1906 		/* Packet for unknown channel? */
1907 		if (cosa->rxbuf == cosa->bouncebuf)
1908 			goto out;
1909 		if (!cosa_dma_able(cosa->rxchan, cosa->rxbuf, cosa->rxsize))
1910 			memcpy(cosa->rxbuf, cosa->bouncebuf, cosa->rxsize);
1911 		if (cosa->rxchan->rx_done)
1912 			if (cosa->rxchan->rx_done(cosa->rxchan))
1913 				clear_bit(cosa->rxchan->num, &cosa->rxbitmap);
1914 	} else {
1915 		pr_notice("cosa%d: unexpected EOT interrupt\n", cosa->num);
1916 	}
1917 	/*
1918 	 * Clear the RXBIT, TXBIT and IRQBIT (the latest should be
1919 	 * cleared anyway). We should do it as soon as possible
1920 	 * so that we can tell the COSA we are done and to give it a time
1921 	 * for recovery.
1922 	 */
1923 out:
1924 	cosa->rxtx = 0;
1925 	put_driver_status_nolock(cosa);
1926 	spin_unlock_irqrestore(&cosa->lock, flags);
1927 }
1928 
cosa_interrupt(int irq,void * cosa_)1929 static irqreturn_t cosa_interrupt(int irq, void *cosa_)
1930 {
1931 	unsigned status;
1932 	int count = 0;
1933 	struct cosa_data *cosa = cosa_;
1934 again:
1935 	status = cosa_getstatus(cosa);
1936 #ifdef DEBUG_IRQS
1937 	pr_info("cosa%d: got IRQ, status 0x%02x\n", cosa->num, status & 0xff);
1938 #endif
1939 #ifdef DEBUG_IO
1940 	debug_status_in(cosa, status);
1941 #endif
1942 	switch (status & SR_CMD_FROM_SRP_MASK) {
1943 	case SR_DOWN_REQUEST:
1944 		tx_interrupt(cosa, status);
1945 		break;
1946 	case SR_UP_REQUEST:
1947 		rx_interrupt(cosa, status);
1948 		break;
1949 	case SR_END_OF_TRANSFER:
1950 		eot_interrupt(cosa, status);
1951 		break;
1952 	default:
1953 		/* We may be too fast for SRP. Try to wait a bit more. */
1954 		if (count++ < 100) {
1955 			udelay(100);
1956 			goto again;
1957 		}
1958 		pr_info("cosa%d: unknown status 0x%02x in IRQ after %d retries\n",
1959 			cosa->num, status & 0xff, count);
1960 	}
1961 #ifdef DEBUG_IRQS
1962 	if (count)
1963 		pr_info("%s: %d-times got unknown status in IRQ\n",
1964 			cosa->name, count);
1965 	else
1966 		pr_info("%s: returning from IRQ\n", cosa->name);
1967 #endif
1968 	return IRQ_HANDLED;
1969 }
1970 
1971 
1972 /* ---------- I/O debugging routines ---------- */
1973 /*
1974  * These routines can be used to monitor COSA/SRP I/O and to printk()
1975  * the data being transferred on the data and status I/O port in a
1976  * readable way.
1977  */
1978 
1979 #ifdef DEBUG_IO
debug_status_in(struct cosa_data * cosa,int status)1980 static void debug_status_in(struct cosa_data *cosa, int status)
1981 {
1982 	char *s;
1983 	switch (status & SR_CMD_FROM_SRP_MASK) {
1984 	case SR_UP_REQUEST:
1985 		s = "RX_REQ";
1986 		break;
1987 	case SR_DOWN_REQUEST:
1988 		s = "TX_REQ";
1989 		break;
1990 	case SR_END_OF_TRANSFER:
1991 		s = "ET_REQ";
1992 		break;
1993 	default:
1994 		s = "NO_REQ";
1995 		break;
1996 	}
1997 	pr_info("%s: IO: status -> 0x%02x (%s%s%s%s)\n",
1998 		cosa->name,
1999 		status,
2000 		status & SR_USR_RQ ? "USR_RQ|" : "",
2001 		status & SR_TX_RDY ? "TX_RDY|" : "",
2002 		status & SR_RX_RDY ? "RX_RDY|" : "",
2003 		s);
2004 }
2005 
debug_status_out(struct cosa_data * cosa,int status)2006 static void debug_status_out(struct cosa_data *cosa, int status)
2007 {
2008 	pr_info("%s: IO: status <- 0x%02x (%s%s%s%s%s%s)\n",
2009 		cosa->name,
2010 		status,
2011 		status & SR_RX_DMA_ENA  ? "RXDMA|"  : "!rxdma|",
2012 		status & SR_TX_DMA_ENA  ? "TXDMA|"  : "!txdma|",
2013 		status & SR_RST         ? "RESET|"  : "",
2014 		status & SR_USR_INT_ENA ? "USRINT|" : "!usrint|",
2015 		status & SR_TX_INT_ENA  ? "TXINT|"  : "!txint|",
2016 		status & SR_RX_INT_ENA  ? "RXINT"   : "!rxint");
2017 }
2018 
debug_data_in(struct cosa_data * cosa,int data)2019 static void debug_data_in(struct cosa_data *cosa, int data)
2020 {
2021 	pr_info("%s: IO: data -> 0x%04x\n", cosa->name, data);
2022 }
2023 
debug_data_out(struct cosa_data * cosa,int data)2024 static void debug_data_out(struct cosa_data *cosa, int data)
2025 {
2026 	pr_info("%s: IO: data <- 0x%04x\n", cosa->name, data);
2027 }
2028 
debug_data_cmd(struct cosa_data * cosa,int data)2029 static void debug_data_cmd(struct cosa_data *cosa, int data)
2030 {
2031 	pr_info("%s: IO: data <- 0x%04x (%s|%s)\n",
2032 		cosa->name, data,
2033 		data & SR_RDY_RCV ? "RX_RDY" : "!rx_rdy",
2034 		data & SR_RDY_SND ? "TX_RDY" : "!tx_rdy");
2035 }
2036 #endif
2037 
2038 /* EOF -- this file has not been truncated */
2039