patch-2_6_7-vs1_9_1_12
[linux-2.6.git] / drivers / atm / eni.c
1 /* drivers/atm/eni.c - Efficient Networks ENI155P device driver */
2  
3 /* Written 1995-2000 by Werner Almesberger, EPFL LRC/ICA */
4  
5
6 #include <linux/module.h>
7 #include <linux/config.h>
8 #include <linux/kernel.h>
9 #include <linux/mm.h>
10 #include <linux/pci.h>
11 #include <linux/errno.h>
12 #include <linux/atm.h>
13 #include <linux/atmdev.h>
14 #include <linux/sonet.h>
15 #include <linux/skbuff.h>
16 #include <linux/time.h>
17 #include <linux/delay.h>
18 #include <linux/uio.h>
19 #include <linux/init.h>
20 #include <linux/atm_eni.h>
21 #include <linux/bitops.h>
22 #include <asm/system.h>
23 #include <asm/io.h>
24 #include <asm/atomic.h>
25 #include <asm/uaccess.h>
26 #include <asm/string.h>
27 #include <asm/byteorder.h>
28
29 #include "tonga.h"
30 #include "midway.h"
31 #include "suni.h"
32 #include "eni.h"
33
34 #if !defined(__i386__) && !defined(__x86_64__)
35 #ifndef ioremap_nocache
36 #define ioremap_nocache(X,Y) ioremap(X,Y)
37 #endif 
38 #endif
39
40 /*
41  * TODO:
42  *
43  * Show stoppers
44  *  none
45  *
46  * Minor
47  *  - OAM support
48  *  - fix bugs listed below
49  */
50
51 /*
52  * KNOWN BUGS:
53  *
54  * - may run into JK-JK bug and deadlock
55  * - should allocate UBR channel first
56  * - buffer space allocation algorithm is stupid
57  *   (RX: should be maxSDU+maxdelay*rate
58  *    TX: should be maxSDU+min(maxSDU,maxdelay*rate) )
59  * - doesn't support OAM cells
60  * - eni_put_free may hang if not putting memory fragments that _complete_
61  *   2^n block (never happens in real life, though)
62  * - keeps IRQ even if initialization fails
63  */
64
65
66 #if 0
67 #define DPRINTK(format,args...) printk(KERN_DEBUG format,##args)
68 #else
69 #define DPRINTK(format,args...)
70 #endif
71
72
73 #ifndef CONFIG_ATM_ENI_TUNE_BURST
74 #define CONFIG_ATM_ENI_BURST_TX_8W
75 #define CONFIG_ATM_ENI_BURST_RX_4W
76 #endif
77
78
79 #ifndef CONFIG_ATM_ENI_DEBUG
80
81
82 #define NULLCHECK(x)
83
84 #define EVENT(s,a,b)
85
86
87 static void event_dump(void)
88 {
89 }
90
91
92 #else
93
94
95 /* 
96  * NULL pointer checking
97  */
98
99 #define NULLCHECK(x) \
100         if ((unsigned long) (x) < 0x30) \
101                 printk(KERN_CRIT #x "==0x%lx\n",(unsigned long) (x))
102
103 /*
104  * Very extensive activity logging. Greatly improves bug detection speed but
105  * costs a few Mbps if enabled.
106  */
107
108 #define EV 64
109
110 static const char *ev[EV];
111 static unsigned long ev_a[EV],ev_b[EV];
112 static int ec = 0;
113
114
115 static void EVENT(const char *s,unsigned long a,unsigned long b)
116 {
117         ev[ec] = s; 
118         ev_a[ec] = a;
119         ev_b[ec] = b;
120         ec = (ec+1) % EV;
121 }
122
123
124 static void event_dump(void)
125 {
126         int n,i;
127
128         for (n = 0; n < EV; n++) {
129                 i = (ec+n) % EV;
130                 printk(KERN_NOTICE);
131                 printk(ev[i] ? ev[i] : "(null)",ev_a[i],ev_b[i]);
132         }
133 }
134
135
136 #endif /* CONFIG_ATM_ENI_DEBUG */
137
138
139 /*
140  * NExx   must not be equal at end
141  * EExx   may be equal at end
142  * xxPJOK verify validity of pointer jumps
143  * xxPMOK operating on a circular buffer of "c" words
144  */
145
146 #define NEPJOK(a0,a1,b) \
147     ((a0) < (a1) ? (b) <= (a0) || (b) > (a1) : (b) <= (a0) && (b) > (a1))
148 #define EEPJOK(a0,a1,b) \
149     ((a0) < (a1) ? (b) < (a0) || (b) >= (a1) : (b) < (a0) && (b) >= (a1))
150 #define NEPMOK(a0,d,b,c) NEPJOK(a0,(a0+d) & (c-1),b)
151 #define EEPMOK(a0,d,b,c) EEPJOK(a0,(a0+d) & (c-1),b)
152
153
154 static int tx_complete = 0,dma_complete = 0,queued = 0,requeued = 0,
155   backlogged = 0,rx_enqueued = 0,rx_dequeued = 0,pushed = 0,submitted = 0,
156   putting = 0;
157
158 static struct atm_dev *eni_boards = NULL;
159
160 static u32 *cpu_zeroes = NULL; /* aligned "magic" zeroes */
161 static dma_addr_t zeroes;
162
163 /* Read/write registers on card */
164 #define eni_in(r)       readl(eni_dev->reg+(r)*4)
165 #define eni_out(v,r)    writel((v),eni_dev->reg+(r)*4)
166
167
168 /*-------------------------------- utilities --------------------------------*/
169
170
171 static void dump_mem(struct eni_dev *eni_dev)
172 {
173         int i;
174
175         for (i = 0; i < eni_dev->free_len; i++)
176                 printk(KERN_DEBUG "  %d: 0x%lx %d\n",i,
177                     eni_dev->free_list[i].start,
178                     1 << eni_dev->free_list[i].order);
179 }
180
181
182 static void dump(struct atm_dev *dev)
183 {
184         struct eni_dev *eni_dev;
185
186         int i;
187
188         eni_dev = ENI_DEV(dev);
189         printk(KERN_NOTICE "Free memory\n");
190         dump_mem(eni_dev);
191         printk(KERN_NOTICE "TX buffers\n");
192         for (i = 0; i < NR_CHAN; i++)
193                 if (eni_dev->tx[i].send)
194                         printk(KERN_NOTICE "  TX %d @ 0x%lx: %ld\n",i,
195                             eni_dev->tx[i].send,eni_dev->tx[i].words*4);
196         printk(KERN_NOTICE "RX buffers\n");
197         for (i = 0; i < 1024; i++)
198                 if (eni_dev->rx_map[i] && ENI_VCC(eni_dev->rx_map[i])->rx)
199                         printk(KERN_NOTICE "  RX %d @ 0x%lx: %ld\n",i,
200                             ENI_VCC(eni_dev->rx_map[i])->recv,
201                             ENI_VCC(eni_dev->rx_map[i])->words*4);
202         printk(KERN_NOTICE "----\n");
203 }
204
205
206 static void eni_put_free(struct eni_dev *eni_dev,unsigned long start,
207     unsigned long size)
208 {
209         struct eni_free *list;
210         int len,order;
211
212         DPRINTK("init 0x%lx+%ld(0x%lx)\n",start,size,size);
213         start += eni_dev->base_diff;
214         list = eni_dev->free_list;
215         len = eni_dev->free_len;
216         while (size) {
217                 if (len >= eni_dev->free_list_size) {
218                         printk(KERN_CRIT "eni_put_free overflow (0x%lx,%ld)\n",
219                             start,size);
220                         break;
221                 }
222                 for (order = 0; !((start | size) & (1 << order)); order++);
223                 if (MID_MIN_BUF_SIZE > (1 << order)) {
224                         printk(KERN_CRIT "eni_put_free: order %d too small\n",
225                             order);
226                         break;
227                 }
228                 list[len].start = start;
229                 list[len].order = order;
230                 len++;
231                 start += 1 << order;
232                 size -= 1 << order;
233         }
234         eni_dev->free_len = len;
235         /*dump_mem(eni_dev);*/
236 }
237
238
239 static unsigned long eni_alloc_mem(struct eni_dev *eni_dev,unsigned long *size)
240 {
241         struct eni_free *list;
242         unsigned long start;
243         int len,i,order,best_order,index;
244
245         list = eni_dev->free_list;
246         len = eni_dev->free_len;
247         if (*size < MID_MIN_BUF_SIZE) *size = MID_MIN_BUF_SIZE;
248         if (*size > MID_MAX_BUF_SIZE) return 0;
249         for (order = 0; (1 << order) < *size; order++);
250         DPRINTK("trying: %ld->%d\n",*size,order);
251         best_order = 65; /* we don't have more than 2^64 of anything ... */
252         index = 0; /* silence GCC */
253         for (i = 0; i < len; i++)
254                 if (list[i].order == order) {
255                         best_order = order;
256                         index = i;
257                         break;
258                 }
259                 else if (best_order > list[i].order && list[i].order > order) {
260                                 best_order = list[i].order;
261                                 index = i;
262                         }
263         if (best_order == 65) return 0;
264         start = list[index].start-eni_dev->base_diff;
265         list[index] = list[--len];
266         eni_dev->free_len = len;
267         *size = 1 << order;
268         eni_put_free(eni_dev,start+*size,(1 << best_order)-*size);
269         DPRINTK("%ld bytes (order %d) at 0x%lx\n",*size,order,start);
270         memset_io(start,0,*size);       /* never leak data */
271         /*dump_mem(eni_dev);*/
272         return start;
273 }
274
275
276 static void eni_free_mem(struct eni_dev *eni_dev,unsigned long start,
277     unsigned long size)
278 {
279         struct eni_free *list;
280         int len,i,order;
281
282         start += eni_dev->base_diff;
283         list = eni_dev->free_list;
284         len = eni_dev->free_len;
285         for (order = -1; size; order++) size >>= 1;
286         DPRINTK("eni_free_mem: 0x%lx+0x%lx (order %d)\n",start,size,order);
287         for (i = 0; i < len; i++)
288                 if (list[i].start == (start^(1 << order)) &&
289                     list[i].order == order) {
290                         DPRINTK("match[%d]: 0x%lx/0x%lx(0x%x), %d/%d\n",i,
291                             list[i].start,start,1 << order,list[i].order,order);
292                         list[i] = list[--len];
293                         start &= ~(unsigned long) (1 << order);
294                         order++;
295                         i = -1;
296                         continue;
297                 }
298         if (len >= eni_dev->free_list_size) {
299                 printk(KERN_ALERT "eni_free_mem overflow (0x%lx,%d)\n",start,
300                     order);
301                 return;
302         }
303         list[len].start = start;
304         list[len].order = order;
305         eni_dev->free_len = len+1;
306         /*dump_mem(eni_dev);*/
307 }
308
309
310 /*----------------------------------- RX ------------------------------------*/
311
312
313 #define ENI_VCC_NOS ((struct atm_vcc *) 1)
314
315
316 static void rx_ident_err(struct atm_vcc *vcc)
317 {
318         struct atm_dev *dev;
319         struct eni_dev *eni_dev;
320         struct eni_vcc *eni_vcc;
321
322         dev = vcc->dev;
323         eni_dev = ENI_DEV(dev);
324         /* immediately halt adapter */
325         eni_out(eni_in(MID_MC_S) &
326             ~(MID_DMA_ENABLE | MID_TX_ENABLE | MID_RX_ENABLE),MID_MC_S);
327         /* dump useful information */
328         eni_vcc = ENI_VCC(vcc);
329         printk(KERN_ALERT DEV_LABEL "(itf %d): driver error - RX ident "
330             "mismatch\n",dev->number);
331         printk(KERN_ALERT "  VCI %d, rxing %d, words %ld\n",vcc->vci,
332             eni_vcc->rxing,eni_vcc->words);
333         printk(KERN_ALERT "  host descr 0x%lx, rx pos 0x%lx, descr value "
334             "0x%x\n",eni_vcc->descr,eni_vcc->rx_pos,
335             (unsigned) readl(eni_vcc->recv+eni_vcc->descr*4));
336         printk(KERN_ALERT "  last 0x%p, servicing %d\n",eni_vcc->last,
337             eni_vcc->servicing);
338         EVENT("---dump ends here---\n",0,0);
339         printk(KERN_NOTICE "---recent events---\n");
340         event_dump();
341         ENI_DEV(dev)->fast = NULL; /* really stop it */
342         ENI_DEV(dev)->slow = NULL;
343         skb_queue_head_init(&ENI_DEV(dev)->rx_queue);
344 }
345
346
347 static int do_rx_dma(struct atm_vcc *vcc,struct sk_buff *skb,
348     unsigned long skip,unsigned long size,unsigned long eff)
349 {
350         struct eni_dev *eni_dev;
351         struct eni_vcc *eni_vcc;
352         u32 dma_rd,dma_wr;
353         u32 dma[RX_DMA_BUF*2];
354         dma_addr_t paddr;
355         unsigned long here;
356         int i,j;
357
358         eni_dev = ENI_DEV(vcc->dev);
359         eni_vcc = ENI_VCC(vcc);
360         paddr = 0; /* GCC, shut up */
361         if (skb) {
362                 paddr = pci_map_single(eni_dev->pci_dev,skb->data,skb->len,
363                     PCI_DMA_FROMDEVICE);
364                 ENI_PRV_PADDR(skb) = paddr;
365                 if (paddr & 3)
366                         printk(KERN_CRIT DEV_LABEL "(itf %d): VCI %d has "
367                             "mis-aligned RX data (0x%lx)\n",vcc->dev->number,
368                             vcc->vci,(unsigned long) paddr);
369                 ENI_PRV_SIZE(skb) = size+skip;
370                     /* PDU plus descriptor */
371                 ATM_SKB(skb)->vcc = vcc;
372         }
373         j = 0;
374         if ((eff && skip) || 1) { /* @@@ actually, skip is always == 1 ... */
375                 here = (eni_vcc->descr+skip) & (eni_vcc->words-1);
376                 dma[j++] = (here << MID_DMA_COUNT_SHIFT) | (vcc->vci
377                     << MID_DMA_VCI_SHIFT) | MID_DT_JK;
378                 j++;
379         }
380         here = (eni_vcc->descr+size+skip) & (eni_vcc->words-1);
381         if (!eff) size += skip;
382         else {
383                 unsigned long words;
384
385                 if (!size) {
386                         DPRINTK("strange things happen ...\n");
387                         EVENT("strange things happen ... (skip=%ld,eff=%ld)\n",
388                             size,eff);
389                 }
390                 words = eff;
391                 if (paddr & 15) {
392                         unsigned long init;
393
394                         init = 4-((paddr & 15) >> 2);
395                         if (init > words) init = words;
396                         dma[j++] = MID_DT_WORD | (init << MID_DMA_COUNT_SHIFT) |
397                             (vcc->vci << MID_DMA_VCI_SHIFT);
398                         dma[j++] = paddr;
399                         paddr += init << 2;
400                         words -= init;
401                 }
402 #ifdef CONFIG_ATM_ENI_BURST_RX_16W /* may work with some PCI chipsets ... */
403                 if (words & ~15) {
404                         dma[j++] = MID_DT_16W | ((words >> 4) <<
405                             MID_DMA_COUNT_SHIFT) | (vcc->vci <<
406                             MID_DMA_VCI_SHIFT);
407                         dma[j++] = paddr;
408                         paddr += (words & ~15) << 2;
409                         words &= 15;
410                 }
411 #endif
412 #ifdef CONFIG_ATM_ENI_BURST_RX_8W  /* works only with *some* PCI chipsets ... */
413                 if (words & ~7) {
414                         dma[j++] = MID_DT_8W | ((words >> 3) <<
415                             MID_DMA_COUNT_SHIFT) | (vcc->vci <<
416                             MID_DMA_VCI_SHIFT);
417                         dma[j++] = paddr;
418                         paddr += (words & ~7) << 2;
419                         words &= 7;
420                 }
421 #endif
422 #ifdef CONFIG_ATM_ENI_BURST_RX_4W /* recommended */
423                 if (words & ~3) {
424                         dma[j++] = MID_DT_4W | ((words >> 2) <<
425                             MID_DMA_COUNT_SHIFT) | (vcc->vci <<
426                             MID_DMA_VCI_SHIFT);
427                         dma[j++] = paddr;
428                         paddr += (words & ~3) << 2;
429                         words &= 3;
430                 }
431 #endif
432 #ifdef CONFIG_ATM_ENI_BURST_RX_2W /* probably useless if RX_4W, RX_8W, ... */
433                 if (words & ~1) {
434                         dma[j++] = MID_DT_2W | ((words >> 1) <<
435                             MID_DMA_COUNT_SHIFT) | (vcc->vci <<
436                             MID_DMA_VCI_SHIFT);
437                         dma[j++] = paddr;
438                         paddr += (words & ~1) << 2;
439                         words &= 1;
440                 }
441 #endif
442                 if (words) {
443                         dma[j++] = MID_DT_WORD | (words << MID_DMA_COUNT_SHIFT)
444                             | (vcc->vci << MID_DMA_VCI_SHIFT);
445                         dma[j++] = paddr;
446                 }
447         }
448         if (size != eff) {
449                 dma[j++] = (here << MID_DMA_COUNT_SHIFT) |
450                     (vcc->vci << MID_DMA_VCI_SHIFT) | MID_DT_JK;
451                 j++;
452         }
453         if (!j || j > 2*RX_DMA_BUF) {
454                 printk(KERN_CRIT DEV_LABEL "!j or j too big!!!\n");
455                 goto trouble;
456         }
457         dma[j-2] |= MID_DMA_END;
458         j = j >> 1;
459         dma_wr = eni_in(MID_DMA_WR_RX);
460         dma_rd = eni_in(MID_DMA_RD_RX);
461         /*
462          * Can I move the dma_wr pointer by 2j+1 positions without overwriting
463          * data that hasn't been read (position of dma_rd) yet ?
464          */
465         if (!NEPMOK(dma_wr,j+j+1,dma_rd,NR_DMA_RX)) { /* @@@ +1 is ugly */
466                 printk(KERN_WARNING DEV_LABEL "(itf %d): RX DMA full\n",
467                     vcc->dev->number);
468                 goto trouble;
469         }
470         for (i = 0; i < j; i++) {
471                 writel(dma[i*2],eni_dev->rx_dma+dma_wr*8);
472                 writel(dma[i*2+1],eni_dev->rx_dma+dma_wr*8+4);
473                 dma_wr = (dma_wr+1) & (NR_DMA_RX-1);
474         }
475         if (skb) {
476                 ENI_PRV_POS(skb) = eni_vcc->descr+size+1;
477                 skb_queue_tail(&eni_dev->rx_queue,skb);
478                 eni_vcc->last = skb;
479 rx_enqueued++;
480         }
481         eni_vcc->descr = here;
482         eni_out(dma_wr,MID_DMA_WR_RX);
483         return 0;
484
485 trouble:
486         if (paddr)
487                 pci_unmap_single(eni_dev->pci_dev,paddr,skb->len,
488                     PCI_DMA_FROMDEVICE);
489         if (skb) dev_kfree_skb_irq(skb);
490         return -1;
491 }
492
493
494 static void discard(struct atm_vcc *vcc,unsigned long size)
495 {
496         struct eni_vcc *eni_vcc;
497
498         eni_vcc = ENI_VCC(vcc);
499         EVENT("discard (size=%ld)\n",size,0);
500         while (do_rx_dma(vcc,NULL,1,size,0)) EVENT("BUSY LOOP",0,0);
501             /* could do a full fallback, but that might be more expensive */
502         if (eni_vcc->rxing) ENI_PRV_POS(eni_vcc->last) += size+1;
503         else eni_vcc->rx_pos = (eni_vcc->rx_pos+size+1) & (eni_vcc->words-1);
504 }
505
506
507 /*
508  * TODO: should check whether direct copies (without DMA setup, dequeuing on
509  * interrupt, etc.) aren't much faster for AAL0
510  */
511
512 static int rx_aal0(struct atm_vcc *vcc)
513 {
514         struct eni_vcc *eni_vcc;
515         unsigned long descr;
516         unsigned long length;
517         struct sk_buff *skb;
518
519         DPRINTK(">rx_aal0\n");
520         eni_vcc = ENI_VCC(vcc);
521         descr = readl(eni_vcc->recv+eni_vcc->descr*4);
522         if ((descr & MID_RED_IDEN) != (MID_RED_RX_ID << MID_RED_SHIFT)) {
523                 rx_ident_err(vcc);
524                 return 1;
525         }
526         if (descr & MID_RED_T) {
527                 DPRINTK(DEV_LABEL "(itf %d): trashing empty cell\n",
528                     vcc->dev->number);
529                 length = 0;
530                 atomic_inc(&vcc->stats->rx_err);
531         }
532         else {
533                 length = ATM_CELL_SIZE-1; /* no HEC */
534         }
535         skb = length ? atm_alloc_charge(vcc,length,GFP_ATOMIC) : NULL;
536         if (!skb) {
537                 discard(vcc,length >> 2);
538                 return 0;
539         }
540         skb_put(skb,length);
541         skb->stamp = eni_vcc->timestamp;
542         DPRINTK("got len %ld\n",length);
543         if (do_rx_dma(vcc,skb,1,length >> 2,length >> 2)) return 1;
544         eni_vcc->rxing++;
545         return 0;
546 }
547
548
549 static int rx_aal5(struct atm_vcc *vcc)
550 {
551         struct eni_vcc *eni_vcc;
552         unsigned long descr;
553         unsigned long size,eff,length;
554         struct sk_buff *skb;
555
556         EVENT("rx_aal5\n",0,0);
557         DPRINTK(">rx_aal5\n");
558         eni_vcc = ENI_VCC(vcc);
559         descr = readl(eni_vcc->recv+eni_vcc->descr*4);
560         if ((descr & MID_RED_IDEN) != (MID_RED_RX_ID << MID_RED_SHIFT)) {
561                 rx_ident_err(vcc);
562                 return 1;
563         }
564         if (descr & (MID_RED_T | MID_RED_CRC_ERR)) {
565                 if (descr & MID_RED_T) {
566                         EVENT("empty cell (descr=0x%lx)\n",descr,0);
567                         DPRINTK(DEV_LABEL "(itf %d): trashing empty cell\n",
568                             vcc->dev->number);
569                         size = 0;
570                 }
571                 else {
572                         static unsigned long silence = 0;
573
574                         if (time_after(jiffies, silence) || silence == 0) {
575                                 printk(KERN_WARNING DEV_LABEL "(itf %d): "
576                                     "discarding PDU(s) with CRC error\n",
577                                     vcc->dev->number);
578                                 silence = (jiffies+2*HZ)|1;
579                         }
580                         size = (descr & MID_RED_COUNT)*(ATM_CELL_PAYLOAD >> 2);
581                         EVENT("CRC error (descr=0x%lx,size=%ld)\n",descr,
582                             size);
583                 }
584                 eff = length = 0;
585                 atomic_inc(&vcc->stats->rx_err);
586         }
587         else {
588                 size = (descr & MID_RED_COUNT)*(ATM_CELL_PAYLOAD >> 2);
589                 DPRINTK("size=%ld\n",size);
590                 length = readl(eni_vcc->recv+(((eni_vcc->descr+size-1) &
591                     (eni_vcc->words-1)))*4) & 0xffff;
592                                 /* -trailer(2)+header(1) */
593                 if (length && length <= (size << 2)-8 && length <=
594                   ATM_MAX_AAL5_PDU) eff = (length+3) >> 2;
595                 else {                           /* ^ trailer length (8) */
596                         EVENT("bad PDU (descr=0x08%lx,length=%ld)\n",descr,
597                             length);
598                         printk(KERN_ERR DEV_LABEL "(itf %d): bad AAL5 PDU "
599                             "(VCI=%d,length=%ld,size=%ld (descr 0x%lx))\n",
600                             vcc->dev->number,vcc->vci,length,size << 2,descr);
601                         length = eff = 0;
602                         atomic_inc(&vcc->stats->rx_err);
603                 }
604         }
605         skb = eff ? atm_alloc_charge(vcc,eff << 2,GFP_ATOMIC) : NULL;
606         if (!skb) {
607                 discard(vcc,size);
608                 return 0;
609         }
610         skb_put(skb,length);
611         DPRINTK("got len %ld\n",length);
612         if (do_rx_dma(vcc,skb,1,size,eff)) return 1;
613         eni_vcc->rxing++;
614         return 0;
615 }
616
617
618 static inline int rx_vcc(struct atm_vcc *vcc)
619 {
620         unsigned long vci_dsc,tmp;
621         struct eni_vcc *eni_vcc;
622
623         eni_vcc = ENI_VCC(vcc);
624         vci_dsc = ENI_DEV(vcc->dev)->vci+vcc->vci*16;
625         EVENT("rx_vcc(1)\n",0,0);
626         while (eni_vcc->descr != (tmp = (readl(vci_dsc+4) & MID_VCI_DESCR) >>
627             MID_VCI_DESCR_SHIFT)) {
628                 EVENT("rx_vcc(2: host dsc=0x%lx, nic dsc=0x%lx)\n",
629                     eni_vcc->descr,tmp);
630                 DPRINTK("CB_DESCR %ld REG_DESCR %d\n",ENI_VCC(vcc)->descr,
631                     (((unsigned) readl(vci_dsc+4) & MID_VCI_DESCR) >>
632                     MID_VCI_DESCR_SHIFT));
633                 if (ENI_VCC(vcc)->rx(vcc)) return 1;
634         }
635         /* clear IN_SERVICE flag */
636         writel(readl(vci_dsc) & ~MID_VCI_IN_SERVICE,vci_dsc);
637         /*
638          * If new data has arrived between evaluating the while condition and
639          * clearing IN_SERVICE, we wouldn't be notified until additional data
640          * follows. So we have to loop again to be sure.
641          */
642         EVENT("rx_vcc(3)\n",0,0);
643         while (ENI_VCC(vcc)->descr != (tmp = (readl(vci_dsc+4) & MID_VCI_DESCR)
644             >> MID_VCI_DESCR_SHIFT)) {
645                 EVENT("rx_vcc(4: host dsc=0x%lx, nic dsc=0x%lx)\n",
646                     eni_vcc->descr,tmp);
647                 DPRINTK("CB_DESCR %ld REG_DESCR %d\n",ENI_VCC(vcc)->descr,
648                     (((unsigned) readl(vci_dsc+4) & MID_VCI_DESCR) >>
649                     MID_VCI_DESCR_SHIFT));
650                 if (ENI_VCC(vcc)->rx(vcc)) return 1;
651         }
652         return 0;
653 }
654
655
656 static void poll_rx(struct atm_dev *dev)
657 {
658         struct eni_dev *eni_dev;
659         struct atm_vcc *curr;
660
661         eni_dev = ENI_DEV(dev);
662         while ((curr = eni_dev->fast)) {
663                 EVENT("poll_rx.fast\n",0,0);
664                 if (rx_vcc(curr)) return;
665                 eni_dev->fast = ENI_VCC(curr)->next;
666                 ENI_VCC(curr)->next = ENI_VCC_NOS;
667                 barrier();
668                 ENI_VCC(curr)->servicing--;
669         }
670         while ((curr = eni_dev->slow)) {
671                 EVENT("poll_rx.slow\n",0,0);
672                 if (rx_vcc(curr)) return;
673                 eni_dev->slow = ENI_VCC(curr)->next;
674                 ENI_VCC(curr)->next = ENI_VCC_NOS;
675                 barrier();
676                 ENI_VCC(curr)->servicing--;
677         }
678 }
679
680
681 static void get_service(struct atm_dev *dev)
682 {
683         struct eni_dev *eni_dev;
684         struct atm_vcc *vcc;
685         unsigned long vci;
686
687         DPRINTK(">get_service\n");
688         eni_dev = ENI_DEV(dev);
689         while (eni_in(MID_SERV_WRITE) != eni_dev->serv_read) {
690                 vci = readl(eni_dev->service+eni_dev->serv_read*4);
691                 eni_dev->serv_read = (eni_dev->serv_read+1) & (NR_SERVICE-1);
692                 vcc = eni_dev->rx_map[vci & 1023];
693                 if (!vcc) {
694                         printk(KERN_CRIT DEV_LABEL "(itf %d): VCI %ld not "
695                             "found\n",dev->number,vci);
696                         continue; /* nasty but we try to go on anyway */
697                         /* @@@ nope, doesn't work */
698                 }
699                 EVENT("getting from service\n",0,0);
700                 if (ENI_VCC(vcc)->next != ENI_VCC_NOS) {
701                         EVENT("double service\n",0,0);
702                         DPRINTK("Grr, servicing VCC %ld twice\n",vci);
703                         continue;
704                 }
705                 do_gettimeofday(&ENI_VCC(vcc)->timestamp);
706                 ENI_VCC(vcc)->next = NULL;
707                 if (vcc->qos.rxtp.traffic_class == ATM_CBR) {
708                         if (eni_dev->fast)
709                                 ENI_VCC(eni_dev->last_fast)->next = vcc;
710                         else eni_dev->fast = vcc;
711                         eni_dev->last_fast = vcc;
712                 }
713                 else {
714                         if (eni_dev->slow)
715                                 ENI_VCC(eni_dev->last_slow)->next = vcc;
716                         else eni_dev->slow = vcc;
717                         eni_dev->last_slow = vcc;
718                 }
719 putting++;
720                 ENI_VCC(vcc)->servicing++;
721         }
722 }
723
724
725 static void dequeue_rx(struct atm_dev *dev)
726 {
727         struct eni_dev *eni_dev;
728         struct eni_vcc *eni_vcc;
729         struct atm_vcc *vcc;
730         struct sk_buff *skb;
731         unsigned long vci_dsc;
732         int first;
733
734         eni_dev = ENI_DEV(dev);
735         first = 1;
736         while (1) {
737                 skb = skb_dequeue(&eni_dev->rx_queue);
738                 if (!skb) {
739                         if (first) {
740                                 DPRINTK(DEV_LABEL "(itf %d): RX but not "
741                                     "rxing\n",dev->number);
742                                 EVENT("nothing to dequeue\n",0,0);
743                         }
744                         break;
745                 }
746                 EVENT("dequeued (size=%ld,pos=0x%lx)\n",ENI_PRV_SIZE(skb),
747                     ENI_PRV_POS(skb));
748 rx_dequeued++;
749                 vcc = ATM_SKB(skb)->vcc;
750                 eni_vcc = ENI_VCC(vcc);
751                 first = 0;
752                 vci_dsc = eni_dev->vci+vcc->vci*16;
753                 if (!EEPMOK(eni_vcc->rx_pos,ENI_PRV_SIZE(skb),
754                     (readl(vci_dsc+4) & MID_VCI_READ) >> MID_VCI_READ_SHIFT,
755                     eni_vcc->words)) {
756                         EVENT("requeuing\n",0,0);
757                         skb_queue_head(&eni_dev->rx_queue,skb);
758                         break;
759                 }
760                 eni_vcc->rxing--;
761                 eni_vcc->rx_pos = ENI_PRV_POS(skb) & (eni_vcc->words-1);
762                 pci_unmap_single(eni_dev->pci_dev,ENI_PRV_PADDR(skb),skb->len,
763                     PCI_DMA_TODEVICE);
764                 if (!skb->len) dev_kfree_skb_irq(skb);
765                 else {
766                         EVENT("pushing (len=%ld)\n",skb->len,0);
767                         if (vcc->qos.aal == ATM_AAL0)
768                                 *(unsigned long *) skb->data =
769                                     ntohl(*(unsigned long *) skb->data);
770                         memset(skb->cb,0,sizeof(struct eni_skb_prv));
771                         vcc->push(vcc,skb);
772                         pushed++;
773                 }
774                 atomic_inc(&vcc->stats->rx);
775         }
776         wake_up(&eni_dev->rx_wait);
777 }
778
779
780 static int open_rx_first(struct atm_vcc *vcc)
781 {
782         struct eni_dev *eni_dev;
783         struct eni_vcc *eni_vcc;
784         unsigned long size;
785
786         DPRINTK("open_rx_first\n");
787         eni_dev = ENI_DEV(vcc->dev);
788         eni_vcc = ENI_VCC(vcc);
789         eni_vcc->rx = NULL;
790         if (vcc->qos.rxtp.traffic_class == ATM_NONE) return 0;
791         size = vcc->qos.rxtp.max_sdu*eni_dev->rx_mult/100;
792         if (size > MID_MAX_BUF_SIZE && vcc->qos.rxtp.max_sdu <=
793             MID_MAX_BUF_SIZE)
794                 size = MID_MAX_BUF_SIZE;
795         eni_vcc->recv = eni_alloc_mem(eni_dev,&size);
796         DPRINTK("rx at 0x%lx\n",eni_vcc->recv);
797         eni_vcc->words = size >> 2;
798         if (!eni_vcc->recv) return -ENOBUFS;
799         eni_vcc->rx = vcc->qos.aal == ATM_AAL5 ? rx_aal5 : rx_aal0;
800         eni_vcc->descr = 0;
801         eni_vcc->rx_pos = 0;
802         eni_vcc->rxing = 0;
803         eni_vcc->servicing = 0;
804         eni_vcc->next = ENI_VCC_NOS;
805         return 0;
806 }
807
808
809 static int open_rx_second(struct atm_vcc *vcc)
810 {
811         unsigned long here;
812         struct eni_dev *eni_dev;
813         struct eni_vcc *eni_vcc;
814         unsigned long size;
815         int order;
816
817         DPRINTK("open_rx_second\n");
818         eni_dev = ENI_DEV(vcc->dev);
819         eni_vcc = ENI_VCC(vcc);
820         if (!eni_vcc->rx) return 0;
821         /* set up VCI descriptor */
822         here = eni_dev->vci+vcc->vci*16;
823         DPRINTK("loc 0x%x\n",(unsigned) (eni_vcc->recv-eni_dev->ram)/4);
824         size = eni_vcc->words >> 8;
825         for (order = -1; size; order++) size >>= 1;
826         writel(0,here+4); /* descr, read = 0 */
827         writel(0,here+8); /* write, state, count = 0 */
828         if (eni_dev->rx_map[vcc->vci])
829                 printk(KERN_CRIT DEV_LABEL "(itf %d): BUG - VCI %d already "
830                     "in use\n",vcc->dev->number,vcc->vci);
831         eni_dev->rx_map[vcc->vci] = vcc; /* now it counts */
832         writel(((vcc->qos.aal != ATM_AAL5 ? MID_MODE_RAW : MID_MODE_AAL5) <<
833             MID_VCI_MODE_SHIFT) | MID_VCI_PTI_MODE |
834             (((eni_vcc->recv-eni_dev->ram) >> (MID_LOC_SKIP+2)) <<
835             MID_VCI_LOCATION_SHIFT) | (order << MID_VCI_SIZE_SHIFT),here);
836         return 0;
837 }
838
839
840 static void close_rx(struct atm_vcc *vcc)
841 {
842         DECLARE_WAITQUEUE(wait,current);
843         unsigned long here;
844         struct eni_dev *eni_dev;
845         struct eni_vcc *eni_vcc;
846
847         eni_vcc = ENI_VCC(vcc);
848         if (!eni_vcc->rx) return;
849         eni_dev = ENI_DEV(vcc->dev);
850         if (vcc->vpi != ATM_VPI_UNSPEC && vcc->vci != ATM_VCI_UNSPEC) {
851                 here = eni_dev->vci+vcc->vci*16;
852                 /* block receiver */
853                 writel((readl(here) & ~MID_VCI_MODE) | (MID_MODE_TRASH <<
854                     MID_VCI_MODE_SHIFT),here);
855                 /* wait for receiver to become idle */
856                 udelay(27);
857                 /* discard pending cell */
858                 writel(readl(here) & ~MID_VCI_IN_SERVICE,here);
859                 /* don't accept any new ones */
860                 eni_dev->rx_map[vcc->vci] = NULL;
861                 /* wait for RX queue to drain */
862                 DPRINTK("eni_close: waiting for RX ...\n");
863                 EVENT("RX closing\n",0,0);
864                 add_wait_queue(&eni_dev->rx_wait,&wait);
865                 set_current_state(TASK_UNINTERRUPTIBLE);
866                 barrier();
867                 for (;;) {
868                         /* transition service->rx: rxing++, servicing-- */
869                         if (!eni_vcc->servicing) {
870                                 barrier();
871                                 if (!eni_vcc->rxing) break;
872                         }
873                         EVENT("drain PDUs (rx %ld, serv %ld)\n",eni_vcc->rxing,
874                             eni_vcc->servicing);
875                         printk(KERN_INFO "%d+%d RX left\n",eni_vcc->servicing,
876                             eni_vcc->rxing);
877                         schedule();
878                         set_current_state(TASK_UNINTERRUPTIBLE);
879                 }
880                 for (;;) {
881                         int at_end;
882                         u32 tmp;
883
884                         tasklet_disable(&eni_dev->task);
885                         tmp = readl(eni_dev->vci+vcc->vci*16+4) & MID_VCI_READ;
886                         at_end = eni_vcc->rx_pos == tmp >> MID_VCI_READ_SHIFT;
887                         tasklet_enable(&eni_dev->task);
888                         if (at_end) break;
889                         EVENT("drain discard (host 0x%lx, nic 0x%lx)\n",
890                             eni_vcc->rx_pos,tmp);
891                         printk(KERN_INFO "draining RX: host 0x%lx, nic 0x%x\n",
892                             eni_vcc->rx_pos,tmp);
893                         schedule();
894                         set_current_state(TASK_UNINTERRUPTIBLE);
895                 }
896                 set_current_state(TASK_RUNNING);
897                 remove_wait_queue(&eni_dev->rx_wait,&wait);
898         }
899         eni_free_mem(eni_dev,eni_vcc->recv,eni_vcc->words << 2);
900         eni_vcc->rx = NULL;
901 }
902
903
904 static int start_rx(struct atm_dev *dev)
905 {
906         struct eni_dev *eni_dev;
907
908         eni_dev = ENI_DEV(dev);
909         eni_dev->rx_map = (struct atm_vcc **) get_zeroed_page(GFP_KERNEL);
910         if (!eni_dev->rx_map) {
911                 printk(KERN_ERR DEV_LABEL "(itf %d): couldn't get free page\n",
912                     dev->number);
913                 free_page((unsigned long) eni_dev->free_list);
914                 return -ENOMEM;
915         }
916         memset(eni_dev->rx_map,0,PAGE_SIZE);
917         eni_dev->rx_mult = DEFAULT_RX_MULT;
918         eni_dev->fast = eni_dev->last_fast = NULL;
919         eni_dev->slow = eni_dev->last_slow = NULL;
920         init_waitqueue_head(&eni_dev->rx_wait);
921         skb_queue_head_init(&eni_dev->rx_queue);
922         eni_dev->serv_read = eni_in(MID_SERV_WRITE);
923         eni_out(0,MID_DMA_WR_RX);
924         return 0;
925 }
926
927
928 /*----------------------------------- TX ------------------------------------*/
929
930
931 enum enq_res { enq_ok,enq_next,enq_jam };
932
933
934 static inline void put_dma(int chan,u32 *dma,int *j,dma_addr_t paddr,
935     u32 size)
936 {
937         u32 init,words;
938
939         DPRINTK("put_dma: 0x%lx+0x%x\n",(unsigned long) paddr,size);
940         EVENT("put_dma: 0x%lx+0x%lx\n",(unsigned long) paddr,size);
941 #if 0 /* don't complain anymore */
942         if (paddr & 3)
943                 printk(KERN_ERR "put_dma: unaligned addr (0x%lx)\n",paddr);
944         if (size & 3)
945                 printk(KERN_ERR "put_dma: unaligned size (0x%lx)\n",size);
946 #endif
947         if (paddr & 3) {
948                 init = 4-(paddr & 3);
949                 if (init > size || size < 7) init = size;
950                 DPRINTK("put_dma: %lx DMA: %d/%d bytes\n",
951                     (unsigned long) paddr,init,size);
952                 dma[(*j)++] = MID_DT_BYTE | (init << MID_DMA_COUNT_SHIFT) |
953                     (chan << MID_DMA_CHAN_SHIFT);
954                 dma[(*j)++] = paddr;
955                 paddr += init;
956                 size -= init;
957         }
958         words = size >> 2;
959         size &= 3;
960         if (words && (paddr & 31)) {
961                 init = 8-((paddr & 31) >> 2);
962                 if (init > words) init = words;
963                 DPRINTK("put_dma: %lx DMA: %d/%d words\n",
964                     (unsigned long) paddr,init,words);
965                 dma[(*j)++] = MID_DT_WORD | (init << MID_DMA_COUNT_SHIFT) |
966                     (chan << MID_DMA_CHAN_SHIFT);
967                 dma[(*j)++] = paddr;
968                 paddr += init << 2;
969                 words -= init;
970         }
971 #ifdef CONFIG_ATM_ENI_BURST_TX_16W /* may work with some PCI chipsets ... */
972         if (words & ~15) {
973                 DPRINTK("put_dma: %lx DMA: %d*16/%d words\n",
974                     (unsigned long) paddr,words >> 4,words);
975                 dma[(*j)++] = MID_DT_16W | ((words >> 4) << MID_DMA_COUNT_SHIFT)
976                     | (chan << MID_DMA_CHAN_SHIFT);
977                 dma[(*j)++] = paddr;
978                 paddr += (words & ~15) << 2;
979                 words &= 15;
980         }
981 #endif
982 #ifdef CONFIG_ATM_ENI_BURST_TX_8W /* recommended */
983         if (words & ~7) {
984                 DPRINTK("put_dma: %lx DMA: %d*8/%d words\n",
985                     (unsigned long) paddr,words >> 3,words);
986                 dma[(*j)++] = MID_DT_8W | ((words >> 3) << MID_DMA_COUNT_SHIFT)
987                     | (chan << MID_DMA_CHAN_SHIFT);
988                 dma[(*j)++] = paddr;
989                 paddr += (words & ~7) << 2;
990                 words &= 7;
991         }
992 #endif
993 #ifdef CONFIG_ATM_ENI_BURST_TX_4W /* probably useless if TX_8W or TX_16W */
994         if (words & ~3) {
995                 DPRINTK("put_dma: %lx DMA: %d*4/%d words\n",
996                     (unsigned long) paddr,words >> 2,words);
997                 dma[(*j)++] = MID_DT_4W | ((words >> 2) << MID_DMA_COUNT_SHIFT)
998                     | (chan << MID_DMA_CHAN_SHIFT);
999                 dma[(*j)++] = paddr;
1000                 paddr += (words & ~3) << 2;
1001                 words &= 3;
1002         }
1003 #endif
1004 #ifdef CONFIG_ATM_ENI_BURST_TX_2W /* probably useless if TX_4W, TX_8W, ... */
1005         if (words & ~1) {
1006                 DPRINTK("put_dma: %lx DMA: %d*2/%d words\n",
1007                     (unsigned long) paddr,words >> 1,words);
1008                 dma[(*j)++] = MID_DT_2W | ((words >> 1) << MID_DMA_COUNT_SHIFT)
1009                     | (chan << MID_DMA_CHAN_SHIFT);
1010                 dma[(*j)++] = paddr;
1011                 paddr += (words & ~1) << 2;
1012                 words &= 1;
1013         }
1014 #endif
1015         if (words) {
1016                 DPRINTK("put_dma: %lx DMA: %d words\n",(unsigned long) paddr,
1017                     words);
1018                 dma[(*j)++] = MID_DT_WORD | (words << MID_DMA_COUNT_SHIFT) |
1019                     (chan << MID_DMA_CHAN_SHIFT);
1020                 dma[(*j)++] = paddr;
1021                 paddr += words << 2;
1022         }
1023         if (size) {
1024                 DPRINTK("put_dma: %lx DMA: %d bytes\n",(unsigned long) paddr,
1025                     size);
1026                 dma[(*j)++] = MID_DT_BYTE | (size << MID_DMA_COUNT_SHIFT) |
1027                     (chan << MID_DMA_CHAN_SHIFT);
1028                 dma[(*j)++] = paddr;
1029         }
1030 }
1031
1032
1033 static enum enq_res do_tx(struct sk_buff *skb)
1034 {
1035         struct atm_vcc *vcc;
1036         struct eni_dev *eni_dev;
1037         struct eni_vcc *eni_vcc;
1038         struct eni_tx *tx;
1039         dma_addr_t paddr;
1040         u32 dma_rd,dma_wr;
1041         u32 size; /* in words */
1042         int aal5,dma_size,i,j;
1043
1044         DPRINTK(">do_tx\n");
1045         NULLCHECK(skb);
1046         EVENT("do_tx: skb=0x%lx, %ld bytes\n",(unsigned long) skb,skb->len);
1047         vcc = ATM_SKB(skb)->vcc;
1048         NULLCHECK(vcc);
1049         eni_dev = ENI_DEV(vcc->dev);
1050         NULLCHECK(eni_dev);
1051         eni_vcc = ENI_VCC(vcc);
1052         tx = eni_vcc->tx;
1053         NULLCHECK(tx);
1054 #if 0 /* Enable this for testing with the "align" program */
1055         {
1056                 unsigned int hack = *((char *) skb->data)-'0';
1057
1058                 if (hack < 8) {
1059                         skb->data += hack;
1060                         skb->len -= hack;
1061                 }
1062         }
1063 #endif
1064 #if 0 /* should work now */
1065         if ((unsigned long) skb->data & 3)
1066                 printk(KERN_ERR DEV_LABEL "(itf %d): VCI %d has mis-aligned "
1067                     "TX data\n",vcc->dev->number,vcc->vci);
1068 #endif
1069         /*
1070          * Potential future IP speedup: make hard_header big enough to put
1071          * segmentation descriptor directly into PDU. Saves: 4 slave writes,
1072          * 1 DMA xfer & 2 DMA'ed bytes (protocol layering is for wimps :-)
1073          */
1074
1075         aal5 = vcc->qos.aal == ATM_AAL5;
1076         /* check space in buffer */
1077         if (!aal5)
1078                 size = (ATM_CELL_PAYLOAD >> 2)+TX_DESCR_SIZE;
1079                         /* cell without HEC plus segmentation header (includes
1080                            four-byte cell header) */
1081         else {
1082                 size = skb->len+4*AAL5_TRAILER+ATM_CELL_PAYLOAD-1;
1083                         /* add AAL5 trailer */
1084                 size = ((size-(size % ATM_CELL_PAYLOAD)) >> 2)+TX_DESCR_SIZE;
1085                                                 /* add segmentation header */
1086         }
1087         /*
1088          * Can I move tx_pos by size bytes without getting closer than TX_GAP
1089          * to the read pointer ? TX_GAP means to leave some space for what
1090          * the manual calls "too close".
1091          */
1092         if (!NEPMOK(tx->tx_pos,size+TX_GAP,
1093             eni_in(MID_TX_RDPTR(tx->index)),tx->words)) {
1094                 DPRINTK(DEV_LABEL "(itf %d): TX full (size %d)\n",
1095                     vcc->dev->number,size);
1096                 return enq_next;
1097         }
1098         /* check DMA */
1099         dma_wr = eni_in(MID_DMA_WR_TX);
1100         dma_rd = eni_in(MID_DMA_RD_TX);
1101         dma_size = 3; /* JK for descriptor and final fill, plus final size
1102                          mis-alignment fix */
1103 DPRINTK("iovcnt = %d\n",skb_shinfo(skb)->nr_frags);
1104         if (!skb_shinfo(skb)->nr_frags) dma_size += 5;
1105         else dma_size += 5*(skb_shinfo(skb)->nr_frags+1);
1106         if (dma_size > TX_DMA_BUF) {
1107                 printk(KERN_CRIT DEV_LABEL "(itf %d): needs %d DMA entries "
1108                     "(got only %d)\n",vcc->dev->number,dma_size,TX_DMA_BUF);
1109         }
1110         DPRINTK("dma_wr is %d, tx_pos is %ld\n",dma_wr,tx->tx_pos);
1111         if (dma_wr != dma_rd && ((dma_rd+NR_DMA_TX-dma_wr) & (NR_DMA_TX-1)) <
1112              dma_size) {
1113                 printk(KERN_WARNING DEV_LABEL "(itf %d): TX DMA full\n",
1114                     vcc->dev->number);
1115                 return enq_jam;
1116         }
1117         paddr = pci_map_single(eni_dev->pci_dev,skb->data,skb->len,
1118             PCI_DMA_TODEVICE);
1119         ENI_PRV_PADDR(skb) = paddr;
1120         /* prepare DMA queue entries */
1121         j = 0;
1122         eni_dev->dma[j++] = (((tx->tx_pos+TX_DESCR_SIZE) & (tx->words-1)) <<
1123              MID_DMA_COUNT_SHIFT) | (tx->index << MID_DMA_CHAN_SHIFT) |
1124              MID_DT_JK;
1125         j++;
1126         if (!skb_shinfo(skb)->nr_frags)
1127                 if (aal5) put_dma(tx->index,eni_dev->dma,&j,paddr,skb->len);
1128                 else put_dma(tx->index,eni_dev->dma,&j,paddr+4,skb->len-4);
1129         else {
1130 DPRINTK("doing direct send\n"); /* @@@ well, this doesn't work anyway */
1131                 for (i = -1; i < skb_shinfo(skb)->nr_frags; i++)
1132                         if (i == -1)
1133                                 put_dma(tx->index,eni_dev->dma,&j,(unsigned long)
1134                                     skb->data,
1135                                     skb->len - skb->data_len);
1136                         else
1137                                 put_dma(tx->index,eni_dev->dma,&j,(unsigned long)
1138                                     skb_shinfo(skb)->frags[i].page + skb_shinfo(skb)->frags[i].page_offset,
1139                                     skb_shinfo(skb)->frags[i].size);
1140         }
1141         if (skb->len & 3)
1142                 put_dma(tx->index,eni_dev->dma,&j,zeroes,4-(skb->len & 3));
1143         /* JK for AAL5 trailer - AAL0 doesn't need it, but who cares ... */
1144         eni_dev->dma[j++] = (((tx->tx_pos+size) & (tx->words-1)) <<
1145              MID_DMA_COUNT_SHIFT) | (tx->index << MID_DMA_CHAN_SHIFT) |
1146              MID_DMA_END | MID_DT_JK;
1147         j++;
1148         DPRINTK("DMA at end: %d\n",j);
1149         /* store frame */
1150         writel((MID_SEG_TX_ID << MID_SEG_ID_SHIFT) |
1151             (aal5 ? MID_SEG_AAL5 : 0) | (tx->prescaler << MID_SEG_PR_SHIFT) |
1152             (tx->resolution << MID_SEG_RATE_SHIFT) |
1153             (size/(ATM_CELL_PAYLOAD/4)),tx->send+tx->tx_pos*4);
1154 /*printk("dsc = 0x%08lx\n",(unsigned long) readl(tx->send+tx->tx_pos*4));*/
1155         writel((vcc->vci << MID_SEG_VCI_SHIFT) |
1156             (aal5 ? 0 : (skb->data[3] & 0xf)) |
1157             (ATM_SKB(skb)->atm_options & ATM_ATMOPT_CLP ? MID_SEG_CLP : 0),
1158             tx->send+((tx->tx_pos+1) & (tx->words-1))*4);
1159         DPRINTK("size: %d, len:%d\n",size,skb->len);
1160         if (aal5)
1161                 writel(skb->len,tx->send+
1162                     ((tx->tx_pos+size-AAL5_TRAILER) & (tx->words-1))*4);
1163         j = j >> 1;
1164         for (i = 0; i < j; i++) {
1165                 writel(eni_dev->dma[i*2],eni_dev->tx_dma+dma_wr*8);
1166                 writel(eni_dev->dma[i*2+1],eni_dev->tx_dma+dma_wr*8+4);
1167                 dma_wr = (dma_wr+1) & (NR_DMA_TX-1);
1168         }
1169         ENI_PRV_POS(skb) = tx->tx_pos;
1170         ENI_PRV_SIZE(skb) = size;
1171         ENI_VCC(vcc)->txing += size;
1172         tx->tx_pos = (tx->tx_pos+size) & (tx->words-1);
1173         DPRINTK("dma_wr set to %d, tx_pos is now %ld\n",dma_wr,tx->tx_pos);
1174         eni_out(dma_wr,MID_DMA_WR_TX);
1175         skb_queue_tail(&eni_dev->tx_queue,skb);
1176 queued++;
1177         return enq_ok;
1178 }
1179
1180
1181 static void poll_tx(struct atm_dev *dev)
1182 {
1183         struct eni_tx *tx;
1184         struct sk_buff *skb;
1185         enum enq_res res;
1186         int i;
1187
1188         DPRINTK(">poll_tx\n");
1189         for (i = NR_CHAN-1; i >= 0; i--) {
1190                 tx = &ENI_DEV(dev)->tx[i];
1191                 if (tx->send)
1192                         while ((skb = skb_dequeue(&tx->backlog))) {
1193                                 res = do_tx(skb);
1194                                 if (res == enq_ok) continue;
1195                                 DPRINTK("re-queuing TX PDU\n");
1196                                 skb_queue_head(&tx->backlog,skb);
1197 requeued++;
1198                                 if (res == enq_jam) return;
1199                                 break;
1200                         }
1201         }
1202 }
1203
1204
1205 static void dequeue_tx(struct atm_dev *dev)
1206 {
1207         struct eni_dev *eni_dev;
1208         struct atm_vcc *vcc;
1209         struct sk_buff *skb;
1210         struct eni_tx *tx;
1211
1212         NULLCHECK(dev);
1213         eni_dev = ENI_DEV(dev);
1214         NULLCHECK(eni_dev);
1215         while ((skb = skb_dequeue(&eni_dev->tx_queue))) {
1216                 vcc = ATM_SKB(skb)->vcc;
1217                 NULLCHECK(vcc);
1218                 tx = ENI_VCC(vcc)->tx;
1219                 NULLCHECK(ENI_VCC(vcc)->tx);
1220                 DPRINTK("dequeue_tx: next 0x%lx curr 0x%x\n",ENI_PRV_POS(skb),
1221                     (unsigned) eni_in(MID_TX_DESCRSTART(tx->index)));
1222                 if (ENI_VCC(vcc)->txing < tx->words && ENI_PRV_POS(skb) ==
1223                     eni_in(MID_TX_DESCRSTART(tx->index))) {
1224                         skb_queue_head(&eni_dev->tx_queue,skb);
1225                         break;
1226                 }
1227                 ENI_VCC(vcc)->txing -= ENI_PRV_SIZE(skb);
1228                 pci_unmap_single(eni_dev->pci_dev,ENI_PRV_PADDR(skb),skb->len,
1229                     PCI_DMA_TODEVICE);
1230                 if (vcc->pop) vcc->pop(vcc,skb);
1231                 else dev_kfree_skb_irq(skb);
1232                 atomic_inc(&vcc->stats->tx);
1233                 wake_up(&eni_dev->tx_wait);
1234 dma_complete++;
1235         }
1236 }
1237
1238
1239 static struct eni_tx *alloc_tx(struct eni_dev *eni_dev,int ubr)
1240 {
1241         int i;
1242
1243         for (i = !ubr; i < NR_CHAN; i++)
1244                 if (!eni_dev->tx[i].send) return eni_dev->tx+i;
1245         return NULL;
1246 }
1247
1248
1249 static int comp_tx(struct eni_dev *eni_dev,int *pcr,int reserved,int *pre,
1250     int *res,int unlimited)
1251 {
1252         static const int pre_div[] = { 4,16,128,2048 };
1253             /* 2^(((x+2)^2-(x+2))/2+1) */
1254
1255         if (unlimited) *pre = *res = 0;
1256         else {
1257                 if (*pcr > 0) {
1258                         int div;
1259
1260                         for (*pre = 0; *pre < 3; (*pre)++)
1261                                 if (TS_CLOCK/pre_div[*pre]/64 <= *pcr) break;
1262                         div = pre_div[*pre]**pcr;
1263                         DPRINTK("min div %d\n",div);
1264                         *res = TS_CLOCK/div-1;
1265                 }
1266                 else {
1267                         int div;
1268
1269                         if (!*pcr) *pcr = eni_dev->tx_bw+reserved;
1270                         for (*pre = 3; *pre >= 0; (*pre)--)
1271                                 if (TS_CLOCK/pre_div[*pre]/64 > -*pcr) break;
1272                         if (*pre < 3) (*pre)++; /* else fail later */
1273                         div = pre_div[*pre]*-*pcr;
1274                         DPRINTK("max div %d\n",div);
1275                         *res = (TS_CLOCK+div-1)/div-1;
1276                 }
1277                 if (*res < 0) *res = 0;
1278                 if (*res > MID_SEG_MAX_RATE) *res = MID_SEG_MAX_RATE;
1279         }
1280         *pcr = TS_CLOCK/pre_div[*pre]/(*res+1);
1281         DPRINTK("out pcr: %d (%d:%d)\n",*pcr,*pre,*res);
1282         return 0;
1283 }
1284
1285
1286 static int reserve_or_set_tx(struct atm_vcc *vcc,struct atm_trafprm *txtp,
1287     int set_rsv,int set_shp)
1288 {
1289         struct eni_dev *eni_dev = ENI_DEV(vcc->dev);
1290         struct eni_vcc *eni_vcc = ENI_VCC(vcc);
1291         struct eni_tx *tx;
1292         unsigned long size,mem;
1293         int rate,ubr,unlimited,new_tx;
1294         int pre,res,order;
1295         int error;
1296
1297         rate = atm_pcr_goal(txtp);
1298         ubr = txtp->traffic_class == ATM_UBR;
1299         unlimited = ubr && (!rate || rate <= -ATM_OC3_PCR ||
1300             rate >= ATM_OC3_PCR);
1301         if (!unlimited) {
1302                 size = txtp->max_sdu*eni_dev->tx_mult/100;
1303                 if (size > MID_MAX_BUF_SIZE && txtp->max_sdu <=
1304                     MID_MAX_BUF_SIZE)
1305                         size = MID_MAX_BUF_SIZE;
1306         }
1307         else {
1308                 if (eni_dev->ubr) {
1309                         eni_vcc->tx = eni_dev->ubr;
1310                         txtp->pcr = ATM_OC3_PCR;
1311                         return 0;
1312                 }
1313                 size = UBR_BUFFER;
1314         }
1315         new_tx = !eni_vcc->tx;
1316         mem = 0; /* for gcc */
1317         if (!new_tx) tx = eni_vcc->tx;
1318         else {
1319                 mem = eni_alloc_mem(eni_dev,&size);
1320                 if (!mem) return -ENOBUFS;
1321                 tx = alloc_tx(eni_dev,unlimited);
1322                 if (!tx) {
1323                         eni_free_mem(eni_dev,mem,size);
1324                         return -EBUSY;
1325                 }
1326                 DPRINTK("got chan %d\n",tx->index);
1327                 tx->reserved = tx->shaping = 0;
1328                 tx->send = mem;
1329                 tx->words = size >> 2;
1330                 skb_queue_head_init(&tx->backlog);
1331                 for (order = 0; size > (1 << (order+10)); order++);
1332                 eni_out((order << MID_SIZE_SHIFT) |
1333                     ((tx->send-eni_dev->ram) >> (MID_LOC_SKIP+2)),
1334                     MID_TX_PLACE(tx->index));
1335                 tx->tx_pos = eni_in(MID_TX_DESCRSTART(tx->index)) &
1336                     MID_DESCR_START;
1337         }
1338         error = comp_tx(eni_dev,&rate,tx->reserved,&pre,&res,unlimited);
1339         if (!error  && txtp->min_pcr > rate) error = -EINVAL;
1340         if (!error && txtp->max_pcr && txtp->max_pcr != ATM_MAX_PCR &&
1341             txtp->max_pcr < rate) error = -EINVAL;
1342         if (!error && !ubr && rate > eni_dev->tx_bw+tx->reserved)
1343                 error = -EINVAL;
1344         if (!error && set_rsv && !set_shp && rate < tx->shaping)
1345                 error = -EINVAL;
1346         if (!error && !set_rsv && rate > tx->reserved && !ubr)
1347                 error = -EINVAL;
1348         if (error) {
1349                 if (new_tx) {
1350                         tx->send = 0;
1351                         eni_free_mem(eni_dev,mem,size);
1352                 }
1353                 return error;
1354         }
1355         txtp->pcr = rate;
1356         if (set_rsv && !ubr) {
1357                 eni_dev->tx_bw += tx->reserved;
1358                 tx->reserved = rate;
1359                 eni_dev->tx_bw -= rate;
1360         }
1361         if (set_shp || (unlimited && new_tx)) {
1362                 if (unlimited && new_tx) eni_dev->ubr = tx;
1363                 tx->prescaler = pre;
1364                 tx->resolution = res;
1365                 tx->shaping = rate;
1366         }
1367         if (set_shp) eni_vcc->tx = tx;
1368         DPRINTK("rsv %d shp %d\n",tx->reserved,tx->shaping);
1369         return 0;
1370 }
1371
1372
1373 static int open_tx_first(struct atm_vcc *vcc)
1374 {
1375         ENI_VCC(vcc)->tx = NULL;
1376         if (vcc->qos.txtp.traffic_class == ATM_NONE) return 0;
1377         ENI_VCC(vcc)->txing = 0;
1378         return reserve_or_set_tx(vcc,&vcc->qos.txtp,1,1);
1379 }
1380
1381
1382 static int open_tx_second(struct atm_vcc *vcc)
1383 {
1384         return 0; /* nothing to do */
1385 }
1386
1387
1388 static void close_tx(struct atm_vcc *vcc)
1389 {
1390         DECLARE_WAITQUEUE(wait,current);
1391         struct eni_dev *eni_dev;
1392         struct eni_vcc *eni_vcc;
1393
1394         eni_vcc = ENI_VCC(vcc);
1395         if (!eni_vcc->tx) return;
1396         eni_dev = ENI_DEV(vcc->dev);
1397         /* wait for TX queue to drain */
1398         DPRINTK("eni_close: waiting for TX ...\n");
1399         add_wait_queue(&eni_dev->tx_wait,&wait);
1400         set_current_state(TASK_UNINTERRUPTIBLE);
1401         for (;;) {
1402                 int txing;
1403
1404                 tasklet_disable(&eni_dev->task);
1405                 txing = skb_peek(&eni_vcc->tx->backlog) || eni_vcc->txing;
1406                 tasklet_enable(&eni_dev->task);
1407                 if (!txing) break;
1408                 DPRINTK("%d TX left\n",eni_vcc->txing);
1409                 schedule();
1410                 set_current_state(TASK_UNINTERRUPTIBLE);
1411         }
1412         set_current_state(TASK_RUNNING);
1413         remove_wait_queue(&eni_dev->tx_wait,&wait);
1414         if (eni_vcc->tx != eni_dev->ubr) {
1415                 /*
1416                  * Looping a few times in here is probably far cheaper than
1417                  * keeping track of TX completions all the time, so let's poll
1418                  * a bit ...
1419                  */
1420                 while (eni_in(MID_TX_RDPTR(eni_vcc->tx->index)) !=
1421                     eni_in(MID_TX_DESCRSTART(eni_vcc->tx->index)))
1422                         schedule();
1423                 eni_free_mem(eni_dev,eni_vcc->tx->send,eni_vcc->tx->words << 2);
1424                 eni_vcc->tx->send = 0;
1425                 eni_dev->tx_bw += eni_vcc->tx->reserved;
1426         }
1427         eni_vcc->tx = NULL;
1428 }
1429
1430
1431 static int start_tx(struct atm_dev *dev)
1432 {
1433         struct eni_dev *eni_dev;
1434         int i;
1435
1436         eni_dev = ENI_DEV(dev);
1437         eni_dev->lost = 0;
1438         eni_dev->tx_bw = ATM_OC3_PCR;
1439         eni_dev->tx_mult = DEFAULT_TX_MULT;
1440         init_waitqueue_head(&eni_dev->tx_wait);
1441         eni_dev->ubr = NULL;
1442         skb_queue_head_init(&eni_dev->tx_queue);
1443         eni_out(0,MID_DMA_WR_TX);
1444         for (i = 0; i < NR_CHAN; i++) {
1445                 eni_dev->tx[i].send = 0;
1446                 eni_dev->tx[i].index = i;
1447         }
1448         return 0;
1449 }
1450
1451
1452 /*--------------------------------- common ----------------------------------*/
1453
1454
1455 #if 0 /* may become useful again when tuning things */
1456
1457 static void foo(void)
1458 {
1459 printk(KERN_INFO
1460   "tx_complete=%d,dma_complete=%d,queued=%d,requeued=%d,sub=%d,\n"
1461   "backlogged=%d,rx_enqueued=%d,rx_dequeued=%d,putting=%d,pushed=%d\n",
1462   tx_complete,dma_complete,queued,requeued,submitted,backlogged,
1463   rx_enqueued,rx_dequeued,putting,pushed);
1464 if (eni_boards) printk(KERN_INFO "loss: %ld\n",ENI_DEV(eni_boards)->lost);
1465 }
1466
1467 #endif
1468
1469
1470 static void bug_int(struct atm_dev *dev,unsigned long reason)
1471 {
1472         struct eni_dev *eni_dev;
1473
1474         DPRINTK(">bug_int\n");
1475         eni_dev = ENI_DEV(dev);
1476         if (reason & MID_DMA_ERR_ACK)
1477                 printk(KERN_CRIT DEV_LABEL "(itf %d): driver error - DMA "
1478                     "error\n",dev->number);
1479         if (reason & MID_TX_IDENT_MISM)
1480                 printk(KERN_CRIT DEV_LABEL "(itf %d): driver error - ident "
1481                     "mismatch\n",dev->number);
1482         if (reason & MID_TX_DMA_OVFL)
1483                 printk(KERN_CRIT DEV_LABEL "(itf %d): driver error - DMA "
1484                     "overflow\n",dev->number);
1485         EVENT("---dump ends here---\n",0,0);
1486         printk(KERN_NOTICE "---recent events---\n");
1487         event_dump();
1488 }
1489
1490
1491 static irqreturn_t eni_int(int irq,void *dev_id,struct pt_regs *regs)
1492 {
1493         struct atm_dev *dev;
1494         struct eni_dev *eni_dev;
1495         u32 reason;
1496
1497         DPRINTK(">eni_int\n");
1498         dev = dev_id;
1499         eni_dev = ENI_DEV(dev);
1500         reason = eni_in(MID_ISA);
1501         DPRINTK(DEV_LABEL ": int 0x%lx\n",(unsigned long) reason);
1502         /*
1503          * Must handle these two right now, because reading ISA doesn't clear
1504          * them, so they re-occur and we never make it to the tasklet. Since
1505          * they're rare, we don't mind the occasional invocation of eni_tasklet
1506          * with eni_dev->events == 0.
1507          */
1508         if (reason & MID_STAT_OVFL) {
1509                 EVENT("stat overflow\n",0,0);
1510                 eni_dev->lost += eni_in(MID_STAT) & MID_OVFL_TRASH;
1511         }
1512         if (reason & MID_SUNI_INT) {
1513                 EVENT("SUNI int\n",0,0);
1514                 dev->phy->interrupt(dev);
1515 #if 0
1516                 foo();
1517 #endif
1518         }
1519         spin_lock(&eni_dev->lock);
1520         eni_dev->events |= reason;
1521         spin_unlock(&eni_dev->lock);
1522         tasklet_schedule(&eni_dev->task);
1523         return IRQ_HANDLED;
1524 }
1525
1526
1527 static void eni_tasklet(unsigned long data)
1528 {
1529         struct atm_dev *dev = (struct atm_dev *) data;
1530         struct eni_dev *eni_dev = ENI_DEV(dev);
1531         unsigned long flags;
1532         u32 events;
1533
1534         DPRINTK("eni_tasklet (dev %p)\n",dev);
1535         spin_lock_irqsave(&eni_dev->lock,flags);
1536         events = xchg(&eni_dev->events,0);
1537         spin_unlock_irqrestore(&eni_dev->lock,flags);
1538         if (events & MID_RX_DMA_COMPLETE) {
1539                 EVENT("INT: RX DMA complete, starting dequeue_rx\n",0,0);
1540                 dequeue_rx(dev);
1541                 EVENT("dequeue_rx done, starting poll_rx\n",0,0);
1542                 poll_rx(dev);
1543                 EVENT("poll_rx done\n",0,0);
1544                 /* poll_tx ? */
1545         }
1546         if (events & MID_SERVICE) {
1547                 EVENT("INT: service, starting get_service\n",0,0);
1548                 get_service(dev);
1549                 EVENT("get_service done, starting poll_rx\n",0,0);
1550                 poll_rx(dev);
1551                 EVENT("poll_rx done\n",0,0);
1552         }
1553         if (events & MID_TX_DMA_COMPLETE) {
1554                 EVENT("INT: TX DMA COMPLETE\n",0,0);
1555                 dequeue_tx(dev);
1556         }
1557         if (events & MID_TX_COMPLETE) {
1558                 EVENT("INT: TX COMPLETE\n",0,0);
1559 tx_complete++;
1560                 wake_up(&eni_dev->tx_wait);
1561                 /* poll_rx ? */
1562         }
1563         if (events & (MID_DMA_ERR_ACK | MID_TX_IDENT_MISM | MID_TX_DMA_OVFL)) {
1564                 EVENT("bug interrupt\n",0,0);
1565                 bug_int(dev,events);
1566         }
1567         poll_tx(dev);
1568 }
1569
1570
1571 /*--------------------------------- entries ---------------------------------*/
1572
1573
1574 static const char *media_name[] __devinitdata = {
1575     "MMF", "SMF", "MMF", "03?", /*  0- 3 */
1576     "UTP", "05?", "06?", "07?", /*  4- 7 */
1577     "TAXI","09?", "10?", "11?", /*  8-11 */
1578     "12?", "13?", "14?", "15?", /* 12-15 */
1579     "MMF", "SMF", "18?", "19?", /* 16-19 */
1580     "UTP", "21?", "22?", "23?", /* 20-23 */
1581     "24?", "25?", "26?", "27?", /* 24-27 */
1582     "28?", "29?", "30?", "31?"  /* 28-31 */
1583 };
1584
1585
1586 #define SET_SEPROM \
1587   ({ if (!error && !pci_error) { \
1588     pci_error = pci_write_config_byte(eni_dev->pci_dev,PCI_TONGA_CTRL,tonga); \
1589     udelay(10); /* 10 usecs */ \
1590   } })
1591 #define GET_SEPROM \
1592   ({ if (!error && !pci_error) { \
1593     pci_error = pci_read_config_byte(eni_dev->pci_dev,PCI_TONGA_CTRL,&tonga); \
1594     udelay(10); /* 10 usecs */ \
1595   } })
1596
1597
1598 static int __devinit get_esi_asic(struct atm_dev *dev)
1599 {
1600         struct eni_dev *eni_dev;
1601         unsigned char tonga;
1602         int error,failed,pci_error;
1603         int address,i,j;
1604
1605         eni_dev = ENI_DEV(dev);
1606         error = pci_error = 0;
1607         tonga = SEPROM_MAGIC | SEPROM_DATA | SEPROM_CLK;
1608         SET_SEPROM;
1609         for (i = 0; i < ESI_LEN && !error && !pci_error; i++) {
1610                 /* start operation */
1611                 tonga |= SEPROM_DATA;
1612                 SET_SEPROM;
1613                 tonga |= SEPROM_CLK;
1614                 SET_SEPROM;
1615                 tonga &= ~SEPROM_DATA;
1616                 SET_SEPROM;
1617                 tonga &= ~SEPROM_CLK;
1618                 SET_SEPROM;
1619                 /* send address */
1620                 address = ((i+SEPROM_ESI_BASE) << 1)+1;
1621                 for (j = 7; j >= 0; j--) {
1622                         tonga = (address >> j) & 1 ? tonga | SEPROM_DATA :
1623                             tonga & ~SEPROM_DATA;
1624                         SET_SEPROM;
1625                         tonga |= SEPROM_CLK;
1626                         SET_SEPROM;
1627                         tonga &= ~SEPROM_CLK;
1628                         SET_SEPROM;
1629                 }
1630                 /* get ack */
1631                 tonga |= SEPROM_DATA;
1632                 SET_SEPROM;
1633                 tonga |= SEPROM_CLK;
1634                 SET_SEPROM;
1635                 GET_SEPROM;
1636                 failed = tonga & SEPROM_DATA;
1637                 tonga &= ~SEPROM_CLK;
1638                 SET_SEPROM;
1639                 tonga |= SEPROM_DATA;
1640                 SET_SEPROM;
1641                 if (failed) error = -EIO;
1642                 else {
1643                         dev->esi[i] = 0;
1644                         for (j = 7; j >= 0; j--) {
1645                                 dev->esi[i] <<= 1;
1646                                 tonga |= SEPROM_DATA;
1647                                 SET_SEPROM;
1648                                 tonga |= SEPROM_CLK;
1649                                 SET_SEPROM;
1650                                 GET_SEPROM;
1651                                 if (tonga & SEPROM_DATA) dev->esi[i] |= 1;
1652                                 tonga &= ~SEPROM_CLK;
1653                                 SET_SEPROM;
1654                                 tonga |= SEPROM_DATA;
1655                                 SET_SEPROM;
1656                         }
1657                         /* get ack */
1658                         tonga |= SEPROM_DATA;
1659                         SET_SEPROM;
1660                         tonga |= SEPROM_CLK;
1661                         SET_SEPROM;
1662                         GET_SEPROM;
1663                         if (!(tonga & SEPROM_DATA)) error = -EIO;
1664                         tonga &= ~SEPROM_CLK;
1665                         SET_SEPROM;
1666                         tonga |= SEPROM_DATA;
1667                         SET_SEPROM;
1668                 }
1669                 /* stop operation */
1670                 tonga &= ~SEPROM_DATA;
1671                 SET_SEPROM;
1672                 tonga |= SEPROM_CLK;
1673                 SET_SEPROM;
1674                 tonga |= SEPROM_DATA;
1675                 SET_SEPROM;
1676         }
1677         if (pci_error) {
1678                 printk(KERN_ERR DEV_LABEL "(itf %d): error reading ESI "
1679                     "(0x%02x)\n",dev->number,pci_error);
1680                 error = -EIO;
1681         }
1682         return error;
1683 }
1684
1685
1686 #undef SET_SEPROM
1687 #undef GET_SEPROM
1688
1689
1690 static int __devinit get_esi_fpga(struct atm_dev *dev,unsigned long base)
1691 {
1692         unsigned long mac_base;
1693         int i;
1694
1695         mac_base = base+EPROM_SIZE-sizeof(struct midway_eprom);
1696         for (i = 0; i < ESI_LEN; i++) dev->esi[i] = readb(mac_base+(i^3));
1697         return 0;
1698 }
1699
1700
1701 static int __devinit eni_do_init(struct atm_dev *dev)
1702 {
1703         struct midway_eprom *eprom;
1704         struct eni_dev *eni_dev;
1705         struct pci_dev *pci_dev;
1706         unsigned long real_base,base;
1707         unsigned char revision;
1708         int error,i,last;
1709
1710         DPRINTK(">eni_init\n");
1711         dev->ci_range.vpi_bits = 0;
1712         dev->ci_range.vci_bits = NR_VCI_LD;
1713         dev->link_rate = ATM_OC3_PCR;
1714         eni_dev = ENI_DEV(dev);
1715         pci_dev = eni_dev->pci_dev;
1716         real_base = pci_resource_start(pci_dev, 0);
1717         eni_dev->irq = pci_dev->irq;
1718         error = pci_read_config_byte(pci_dev,PCI_REVISION_ID,&revision);
1719         if (error) {
1720                 printk(KERN_ERR DEV_LABEL "(itf %d): init error 0x%02x\n",
1721                     dev->number,error);
1722                 return -EINVAL;
1723         }
1724         if ((error = pci_write_config_word(pci_dev,PCI_COMMAND,
1725             PCI_COMMAND_MEMORY |
1726             (eni_dev->asic ? PCI_COMMAND_PARITY | PCI_COMMAND_SERR : 0)))) {
1727                 printk(KERN_ERR DEV_LABEL "(itf %d): can't enable memory "
1728                     "(0x%02x)\n",dev->number,error);
1729                 return -EIO;
1730         }
1731         printk(KERN_NOTICE DEV_LABEL "(itf %d): rev.%d,base=0x%lx,irq=%d,",
1732             dev->number,revision,real_base,eni_dev->irq);
1733         if (!(base = (unsigned long) ioremap_nocache(real_base,MAP_MAX_SIZE))) {
1734                 printk("\n");
1735                 printk(KERN_ERR DEV_LABEL "(itf %d): can't set up page "
1736                     "mapping\n",dev->number);
1737                 return error;
1738         }
1739         eni_dev->base_diff = real_base-base;
1740         /* id may not be present in ASIC Tonga boards - check this @@@ */
1741         if (!eni_dev->asic) {
1742                 eprom = (struct midway_eprom *) (base+EPROM_SIZE-sizeof(struct
1743                     midway_eprom));
1744                 if (readl(&eprom->magic) != ENI155_MAGIC) {
1745                         printk("\n");
1746                         printk(KERN_ERR KERN_ERR DEV_LABEL "(itf %d): bad "
1747                             "magic - expected 0x%x, got 0x%x\n",dev->number,
1748                             ENI155_MAGIC,(unsigned) readl(&eprom->magic));
1749                         return -EINVAL;
1750                 }
1751         }
1752         eni_dev->phy = base+PHY_BASE;
1753         eni_dev->reg = base+REG_BASE;
1754         eni_dev->ram = base+RAM_BASE;
1755         last = MAP_MAX_SIZE-RAM_BASE;
1756         for (i = last-RAM_INCREMENT; i >= 0; i -= RAM_INCREMENT) {
1757                 writel(0x55555555,eni_dev->ram+i);
1758                 if (readl(eni_dev->ram+i) != 0x55555555) last = i;
1759                 else {
1760                         writel(0xAAAAAAAA,eni_dev->ram+i);
1761                         if (readl(eni_dev->ram+i) != 0xAAAAAAAA) last = i;
1762                         else writel(i,eni_dev->ram+i);
1763                 }
1764         }
1765         for (i = 0; i < last; i += RAM_INCREMENT)
1766                 if (readl(eni_dev->ram+i) != i) break;
1767         eni_dev->mem = i;
1768         memset_io(eni_dev->ram,0,eni_dev->mem);
1769         /* TODO: should shrink allocation now */
1770         printk("mem=%dkB (",eni_dev->mem >> 10);
1771         /* TODO: check for non-SUNI, check for TAXI ? */
1772         if (!(eni_in(MID_RES_ID_MCON) & 0x200) != !eni_dev->asic) {
1773                 printk(")\n");
1774                 printk(KERN_ERR DEV_LABEL "(itf %d): ERROR - wrong id 0x%x\n",
1775                     dev->number,(unsigned) eni_in(MID_RES_ID_MCON));
1776                 return -EINVAL;
1777         }
1778         error = eni_dev->asic ? get_esi_asic(dev) : get_esi_fpga(dev,base);
1779         if (error) return error;
1780         for (i = 0; i < ESI_LEN; i++)
1781                 printk("%s%02X",i ? "-" : "",dev->esi[i]);
1782         printk(")\n");
1783         printk(KERN_NOTICE DEV_LABEL "(itf %d): %s,%s\n",dev->number,
1784             eni_in(MID_RES_ID_MCON) & 0x200 ? "ASIC" : "FPGA",
1785             media_name[eni_in(MID_RES_ID_MCON) & DAUGTHER_ID]);
1786         return suni_init(dev);
1787 }
1788
1789
1790 static int __devinit eni_start(struct atm_dev *dev)
1791 {
1792         struct eni_dev *eni_dev;
1793         unsigned long buf,buffer_mem;
1794         int error;
1795
1796         DPRINTK(">eni_start\n");
1797         eni_dev = ENI_DEV(dev);
1798         if (request_irq(eni_dev->irq,&eni_int,SA_SHIRQ,DEV_LABEL,dev)) {
1799                 printk(KERN_ERR DEV_LABEL "(itf %d): IRQ%d is already in use\n",
1800                     dev->number,eni_dev->irq);
1801                 return -EAGAIN;
1802         }
1803         /* @@@ should release IRQ on error */
1804         pci_set_master(eni_dev->pci_dev);
1805         if ((error = pci_write_config_word(eni_dev->pci_dev,PCI_COMMAND,
1806             PCI_COMMAND_MEMORY | PCI_COMMAND_MASTER |
1807             (eni_dev->asic ? PCI_COMMAND_PARITY | PCI_COMMAND_SERR : 0)))) {
1808                 printk(KERN_ERR DEV_LABEL "(itf %d): can't enable memory+"
1809                     "master (0x%02x)\n",dev->number,error);
1810                 return error;
1811         }
1812         if ((error = pci_write_config_byte(eni_dev->pci_dev,PCI_TONGA_CTRL,
1813             END_SWAP_DMA))) {
1814                 printk(KERN_ERR DEV_LABEL "(itf %d): can't set endian swap "
1815                     "(0x%02x)\n",dev->number,error);
1816                 return error;
1817         }
1818         /* determine addresses of internal tables */
1819         eni_dev->vci = eni_dev->ram;
1820         eni_dev->rx_dma = eni_dev->ram+NR_VCI*16;
1821         eni_dev->tx_dma = eni_dev->rx_dma+NR_DMA_RX*8;
1822         eni_dev->service = eni_dev->tx_dma+NR_DMA_TX*8;
1823         buf = eni_dev->service+NR_SERVICE*4;
1824         DPRINTK("vci 0x%lx,rx 0x%lx, tx 0x%lx,srv 0x%lx,buf 0x%lx\n",
1825              eni_dev->vci,eni_dev->rx_dma,eni_dev->tx_dma,
1826              eni_dev->service,buf);
1827         spin_lock_init(&eni_dev->lock);
1828         tasklet_init(&eni_dev->task,eni_tasklet,(unsigned long) dev);
1829         eni_dev->events = 0;
1830         /* initialize memory management */
1831         buffer_mem = eni_dev->mem-(buf-eni_dev->ram);
1832         eni_dev->free_list_size = buffer_mem/MID_MIN_BUF_SIZE/2;
1833         eni_dev->free_list = (struct eni_free *) kmalloc(
1834             sizeof(struct eni_free)*(eni_dev->free_list_size+1),GFP_KERNEL);
1835         if (!eni_dev->free_list) {
1836                 printk(KERN_ERR DEV_LABEL "(itf %d): couldn't get free page\n",
1837                     dev->number);
1838                 return -ENOMEM;
1839         }
1840         eni_dev->free_len = 0;
1841         eni_put_free(eni_dev,buf,buffer_mem);
1842         memset_io(eni_dev->vci,0,16*NR_VCI); /* clear VCI table */
1843         /*
1844          * byte_addr  free (k)
1845          * 0x00000000     512  VCI table
1846          * 0x00004000     496  RX DMA
1847          * 0x00005000     492  TX DMA
1848          * 0x00006000     488  service list
1849          * 0x00007000     484  buffers
1850          * 0x00080000       0  end (512kB)
1851          */
1852         eni_out(0xffffffff,MID_IE);
1853         error = start_tx(dev);
1854         if (error) return error;
1855         error = start_rx(dev);
1856         if (error) return error;
1857         error = dev->phy->start(dev);
1858         if (error) return error;
1859         eni_out(eni_in(MID_MC_S) | (1 << MID_INT_SEL_SHIFT) |
1860             MID_TX_LOCK_MODE | MID_DMA_ENABLE | MID_TX_ENABLE | MID_RX_ENABLE,
1861             MID_MC_S);
1862             /* Tonga uses SBus INTReq1 */
1863         (void) eni_in(MID_ISA); /* clear Midway interrupts */
1864         return 0;
1865 }
1866
1867
1868 static void eni_close(struct atm_vcc *vcc)
1869 {
1870         DPRINTK(">eni_close\n");
1871         if (!ENI_VCC(vcc)) return;
1872         clear_bit(ATM_VF_READY,&vcc->flags);
1873         close_rx(vcc);
1874         close_tx(vcc);
1875         DPRINTK("eni_close: done waiting\n");
1876         /* deallocate memory */
1877         kfree(ENI_VCC(vcc));
1878         vcc->dev_data = NULL;
1879         clear_bit(ATM_VF_ADDR,&vcc->flags);
1880         /*foo();*/
1881 }
1882
1883
1884 static int eni_open(struct atm_vcc *vcc)
1885 {
1886         struct eni_dev *eni_dev;
1887         struct eni_vcc *eni_vcc;
1888         int error;
1889         short vpi = vcc->vpi;
1890         int vci = vcc->vci;
1891
1892         DPRINTK(">eni_open\n");
1893         EVENT("eni_open\n",0,0);
1894         if (!test_bit(ATM_VF_PARTIAL,&vcc->flags))
1895                 vcc->dev_data = NULL;
1896         eni_dev = ENI_DEV(vcc->dev);
1897         if (vci != ATM_VPI_UNSPEC && vpi != ATM_VCI_UNSPEC)
1898                 set_bit(ATM_VF_ADDR,&vcc->flags);
1899         if (vcc->qos.aal != ATM_AAL0 && vcc->qos.aal != ATM_AAL5)
1900                 return -EINVAL;
1901         DPRINTK(DEV_LABEL "(itf %d): open %d.%d\n",vcc->dev->number,vcc->vpi,
1902             vcc->vci);
1903         if (!test_bit(ATM_VF_PARTIAL,&vcc->flags)) {
1904                 eni_vcc = kmalloc(sizeof(struct eni_vcc),GFP_KERNEL);
1905                 if (!eni_vcc) return -ENOMEM;
1906                 vcc->dev_data = eni_vcc;
1907                 eni_vcc->tx = NULL; /* for eni_close after open_rx */
1908                 if ((error = open_rx_first(vcc))) {
1909                         eni_close(vcc);
1910                         return error;
1911                 }
1912                 if ((error = open_tx_first(vcc))) {
1913                         eni_close(vcc);
1914                         return error;
1915                 }
1916         }
1917         if (vci == ATM_VPI_UNSPEC || vpi == ATM_VCI_UNSPEC) return 0;
1918         if ((error = open_rx_second(vcc))) {
1919                 eni_close(vcc);
1920                 return error;
1921         }
1922         if ((error = open_tx_second(vcc))) {
1923                 eni_close(vcc);
1924                 return error;
1925         }
1926         set_bit(ATM_VF_READY,&vcc->flags);
1927         /* should power down SUNI while !ref_count @@@ */
1928         return 0;
1929 }
1930
1931
1932 static int eni_change_qos(struct atm_vcc *vcc,struct atm_qos *qos,int flgs)
1933 {
1934         struct eni_dev *eni_dev = ENI_DEV(vcc->dev);
1935         struct eni_tx *tx = ENI_VCC(vcc)->tx;
1936         struct sk_buff *skb;
1937         int error,rate,rsv,shp;
1938
1939         if (qos->txtp.traffic_class == ATM_NONE) return 0;
1940         if (tx == eni_dev->ubr) return -EBADFD;
1941         rate = atm_pcr_goal(&qos->txtp);
1942         if (rate < 0) rate = -rate;
1943         rsv = shp = 0;
1944         if ((flgs & ATM_MF_DEC_RSV) && rate && rate < tx->reserved) rsv = 1;
1945         if ((flgs & ATM_MF_INC_RSV) && (!rate || rate > tx->reserved)) rsv = 1;
1946         if ((flgs & ATM_MF_DEC_SHP) && rate && rate < tx->shaping) shp = 1;
1947         if ((flgs & ATM_MF_INC_SHP) && (!rate || rate > tx->shaping)) shp = 1;
1948         if (!rsv && !shp) return 0;
1949         error = reserve_or_set_tx(vcc,&qos->txtp,rsv,shp);
1950         if (error) return error;
1951         if (shp && !(flgs & ATM_MF_IMMED)) return 0;
1952         /*
1953          * Walk through the send buffer and patch the rate information in all
1954          * segmentation buffer descriptors of this VCC.
1955          */
1956         tasklet_disable(&eni_dev->task);
1957         skb_queue_walk(&eni_dev->tx_queue, skb) {
1958                 unsigned long dsc;
1959
1960                 if (ATM_SKB(skb)->vcc != vcc) continue;
1961                 dsc = tx->send+ENI_PRV_POS(skb)*4;
1962                 writel((readl(dsc) & ~(MID_SEG_RATE | MID_SEG_PR)) |
1963                     (tx->prescaler << MID_SEG_PR_SHIFT) |
1964                     (tx->resolution << MID_SEG_RATE_SHIFT), dsc);
1965         }
1966         tasklet_enable(&eni_dev->task);
1967         return 0;
1968 }
1969
1970
1971 static int eni_ioctl(struct atm_dev *dev,unsigned int cmd,void __user *arg)
1972 {
1973         struct eni_dev *eni_dev = ENI_DEV(dev);
1974
1975         if (cmd == ENI_MEMDUMP) {
1976                 if (!capable(CAP_NET_ADMIN)) return -EPERM;
1977                 printk(KERN_WARNING "Please use /proc/atm/" DEV_LABEL ":%d "
1978                     "instead of obsolete ioctl ENI_MEMDUMP\n",dev->number);
1979                 dump(dev);
1980                 return 0;
1981         }
1982         if (cmd == ENI_SETMULT) {
1983                 struct eni_multipliers mult;
1984
1985                 if (!capable(CAP_NET_ADMIN)) return -EPERM;
1986                 if (copy_from_user(&mult, arg,
1987                     sizeof(struct eni_multipliers)))
1988                         return -EFAULT;
1989                 if ((mult.tx && mult.tx <= 100) || (mult.rx &&mult.rx <= 100) ||
1990                     mult.tx > 65536 || mult.rx > 65536)
1991                         return -EINVAL;
1992                 if (mult.tx) eni_dev->tx_mult = mult.tx;
1993                 if (mult.rx) eni_dev->rx_mult = mult.rx;
1994                 return 0;
1995         }
1996         if (cmd == ATM_SETCIRANGE) {
1997                 struct atm_cirange ci;
1998
1999                 if (copy_from_user(&ci, arg,sizeof(struct atm_cirange)))
2000                         return -EFAULT;
2001                 if ((ci.vpi_bits == 0 || ci.vpi_bits == ATM_CI_MAX) &&
2002                     (ci.vci_bits == NR_VCI_LD || ci.vpi_bits == ATM_CI_MAX))
2003                     return 0;
2004                 return -EINVAL;
2005         }
2006         if (!dev->phy->ioctl) return -ENOIOCTLCMD;
2007         return dev->phy->ioctl(dev,cmd,arg);
2008 }
2009
2010
2011 static int eni_getsockopt(struct atm_vcc *vcc,int level,int optname,
2012     void __user *optval,int optlen)
2013 {
2014         return -EINVAL;
2015 }
2016
2017
2018 static int eni_setsockopt(struct atm_vcc *vcc,int level,int optname,
2019     void __user *optval,int optlen)
2020 {
2021         return -EINVAL;
2022 }
2023
2024
2025 static int eni_send(struct atm_vcc *vcc,struct sk_buff *skb)
2026 {
2027         enum enq_res res;
2028
2029         DPRINTK(">eni_send\n");
2030         if (!ENI_VCC(vcc)->tx) {
2031                 if (vcc->pop) vcc->pop(vcc,skb);
2032                 else dev_kfree_skb(skb);
2033                 return -EINVAL;
2034         }
2035         if (!skb) {
2036                 printk(KERN_CRIT "!skb in eni_send ?\n");
2037                 if (vcc->pop) vcc->pop(vcc,skb);
2038                 return -EINVAL;
2039         }
2040         if (vcc->qos.aal == ATM_AAL0) {
2041                 if (skb->len != ATM_CELL_SIZE-1) {
2042                         if (vcc->pop) vcc->pop(vcc,skb);
2043                         else dev_kfree_skb(skb);
2044                         return -EINVAL;
2045                 }
2046                 *(u32 *) skb->data = htonl(*(u32 *) skb->data);
2047         }
2048 submitted++;
2049         ATM_SKB(skb)->vcc = vcc;
2050         tasklet_disable(&ENI_DEV(vcc->dev)->task);
2051         res = do_tx(skb);
2052         tasklet_enable(&ENI_DEV(vcc->dev)->task);
2053         if (res == enq_ok) return 0;
2054         skb_queue_tail(&ENI_VCC(vcc)->tx->backlog,skb);
2055 backlogged++;
2056         tasklet_schedule(&ENI_DEV(vcc->dev)->task);
2057         return 0;
2058 }
2059
2060 static void eni_phy_put(struct atm_dev *dev,unsigned char value,
2061     unsigned long addr)
2062 {
2063         writel(value,ENI_DEV(dev)->phy+addr*4);
2064 }
2065
2066
2067
2068 static unsigned char eni_phy_get(struct atm_dev *dev,unsigned long addr)
2069 {
2070         return readl(ENI_DEV(dev)->phy+addr*4);
2071 }
2072
2073
2074 static int eni_proc_read(struct atm_dev *dev,loff_t *pos,char *page)
2075 {
2076         struct hlist_node *node;
2077         struct sock *s;
2078         static const char *signal[] = { "LOST","unknown","okay" };
2079         struct eni_dev *eni_dev = ENI_DEV(dev);
2080         struct atm_vcc *vcc;
2081         int left,i;
2082
2083         left = *pos;
2084         if (!left)
2085                 return sprintf(page,DEV_LABEL "(itf %d) signal %s, %dkB, "
2086                     "%d cps remaining\n",dev->number,signal[(int) dev->signal],
2087                     eni_dev->mem >> 10,eni_dev->tx_bw);
2088         if (!--left)
2089                 return sprintf(page,"%4sBursts: TX"
2090 #if !defined(CONFIG_ATM_ENI_BURST_TX_16W) && \
2091     !defined(CONFIG_ATM_ENI_BURST_TX_8W) && \
2092     !defined(CONFIG_ATM_ENI_BURST_TX_4W) && \
2093     !defined(CONFIG_ATM_ENI_BURST_TX_2W)
2094                     " none"
2095 #endif
2096 #ifdef CONFIG_ATM_ENI_BURST_TX_16W
2097                     " 16W"
2098 #endif
2099 #ifdef CONFIG_ATM_ENI_BURST_TX_8W
2100                     " 8W"
2101 #endif
2102 #ifdef CONFIG_ATM_ENI_BURST_TX_4W
2103                     " 4W"
2104 #endif
2105 #ifdef CONFIG_ATM_ENI_BURST_TX_2W
2106                     " 2W"
2107 #endif
2108                     ", RX"
2109 #if !defined(CONFIG_ATM_ENI_BURST_RX_16W) && \
2110     !defined(CONFIG_ATM_ENI_BURST_RX_8W) && \
2111     !defined(CONFIG_ATM_ENI_BURST_RX_4W) && \
2112     !defined(CONFIG_ATM_ENI_BURST_RX_2W)
2113                     " none"
2114 #endif
2115 #ifdef CONFIG_ATM_ENI_BURST_RX_16W
2116                     " 16W"
2117 #endif
2118 #ifdef CONFIG_ATM_ENI_BURST_RX_8W
2119                     " 8W"
2120 #endif
2121 #ifdef CONFIG_ATM_ENI_BURST_RX_4W
2122                     " 4W"
2123 #endif
2124 #ifdef CONFIG_ATM_ENI_BURST_RX_2W
2125                     " 2W"
2126 #endif
2127 #ifndef CONFIG_ATM_ENI_TUNE_BURST
2128                     " (default)"
2129 #endif
2130                     "\n","");
2131         if (!--left) 
2132                 return sprintf(page,"%4sBuffer multipliers: tx %d%%, rx %d%%\n",
2133                     "",eni_dev->tx_mult,eni_dev->rx_mult);
2134         for (i = 0; i < NR_CHAN; i++) {
2135                 struct eni_tx *tx = eni_dev->tx+i;
2136
2137                 if (!tx->send) continue;
2138                 if (!--left) {
2139                         return sprintf(page,"tx[%d]:    0x%06lx-0x%06lx "
2140                             "(%6ld bytes), rsv %d cps, shp %d cps%s\n",i,
2141                             tx->send-eni_dev->ram,
2142                             tx->send-eni_dev->ram+tx->words*4-1,tx->words*4,
2143                             tx->reserved,tx->shaping,
2144                             tx == eni_dev->ubr ? " (UBR)" : "");
2145                 }
2146                 if (--left) continue;
2147                 return sprintf(page,"%10sbacklog %u packets\n","",
2148                     skb_queue_len(&tx->backlog));
2149         }
2150         read_lock(&vcc_sklist_lock);
2151         for(i = 0; i < VCC_HTABLE_SIZE; ++i) {
2152                 struct hlist_head *head = &vcc_hash[i];
2153
2154                 sk_for_each(s, node, head) {
2155                         struct eni_vcc *eni_vcc;
2156                         int length;
2157
2158                         vcc = atm_sk(s);
2159                         if (vcc->dev != dev)
2160                                 continue;
2161                         eni_vcc = ENI_VCC(vcc);
2162                         if (--left) continue;
2163                         length = sprintf(page,"vcc %4d: ",vcc->vci);
2164                         if (eni_vcc->rx) {
2165                                 length += sprintf(page+length,"0x%06lx-0x%06lx "
2166                                     "(%6ld bytes)",
2167                                     eni_vcc->recv-eni_dev->ram,
2168                                     eni_vcc->recv-eni_dev->ram+eni_vcc->words*4-1,
2169                                     eni_vcc->words*4);
2170                                 if (eni_vcc->tx) length += sprintf(page+length,", ");
2171                         }
2172                         if (eni_vcc->tx)
2173                                 length += sprintf(page+length,"tx[%d], txing %d bytes",
2174                                     eni_vcc->tx->index,eni_vcc->txing);
2175                         page[length] = '\n';
2176                         read_unlock(&vcc_sklist_lock);
2177                         return length+1;
2178                 }
2179         }
2180         read_unlock(&vcc_sklist_lock);
2181         for (i = 0; i < eni_dev->free_len; i++) {
2182                 struct eni_free *fe = eni_dev->free_list+i;
2183                 unsigned long offset;
2184
2185                 if (--left) continue;
2186                 offset = eni_dev->ram+eni_dev->base_diff;
2187                 return sprintf(page,"free      0x%06lx-0x%06lx (%6d bytes)\n",
2188                     fe->start-offset,fe->start-offset+(1 << fe->order)-1,
2189                     1 << fe->order);
2190         }
2191         return 0;
2192 }
2193
2194
2195 static const struct atmdev_ops ops = {
2196         .open           = eni_open,
2197         .close          = eni_close,
2198         .ioctl          = eni_ioctl,
2199         .getsockopt     = eni_getsockopt,
2200         .setsockopt     = eni_setsockopt,
2201         .send           = eni_send,
2202         .phy_put        = eni_phy_put,
2203         .phy_get        = eni_phy_get,
2204         .change_qos     = eni_change_qos,
2205         .proc_read      = eni_proc_read
2206 };
2207
2208
2209 static int __devinit eni_init_one(struct pci_dev *pci_dev,
2210     const struct pci_device_id *ent)
2211 {
2212         struct atm_dev *dev;
2213         struct eni_dev *eni_dev;
2214         int error = -ENOMEM;
2215
2216         DPRINTK("eni_init_one\n");
2217
2218         if (pci_enable_device(pci_dev)) {
2219                 error = -EIO;
2220                 goto out0;
2221         }
2222
2223         eni_dev = (struct eni_dev *) kmalloc(sizeof(struct eni_dev),GFP_KERNEL);
2224         if (!eni_dev) goto out0;
2225         if (!cpu_zeroes) {
2226                 cpu_zeroes = pci_alloc_consistent(pci_dev,ENI_ZEROES_SIZE,
2227                     &zeroes);
2228                 if (!cpu_zeroes) goto out1;
2229         }
2230         dev = atm_dev_register(DEV_LABEL,&ops,-1,NULL);
2231         if (!dev) goto out2;
2232         pci_set_drvdata(pci_dev, dev);
2233         eni_dev->pci_dev = pci_dev;
2234         dev->dev_data = eni_dev;
2235         eni_dev->asic = ent->driver_data;
2236         error = eni_do_init(dev);
2237         if (error) goto out3;
2238         error = eni_start(dev);
2239         if (error) goto out3;
2240         eni_dev->more = eni_boards;
2241         eni_boards = dev;
2242         return 0;
2243 out3:
2244         atm_dev_deregister(dev);
2245 out2:
2246         pci_free_consistent(eni_dev->pci_dev,ENI_ZEROES_SIZE,cpu_zeroes,zeroes);
2247         cpu_zeroes = NULL;
2248 out1:
2249         kfree(eni_dev);
2250 out0:
2251         return error;
2252 }
2253
2254
2255 static struct pci_device_id eni_pci_tbl[] = {
2256         { PCI_VENDOR_ID_EF, PCI_DEVICE_ID_EF_ATM_FPGA, PCI_ANY_ID, PCI_ANY_ID,
2257           0, 0, 0 /* FPGA */ },
2258         { PCI_VENDOR_ID_EF, PCI_DEVICE_ID_EF_ATM_ASIC, PCI_ANY_ID, PCI_ANY_ID,
2259           0, 0, 1 /* ASIC */ },
2260         { 0, }
2261 };
2262 MODULE_DEVICE_TABLE(pci,eni_pci_tbl);
2263
2264
2265 static void __devexit eni_remove_one(struct pci_dev *pci_dev)
2266 {
2267         /* grrr */
2268 }
2269
2270
2271 static struct pci_driver eni_driver = {
2272         .name           = DEV_LABEL,
2273         .id_table       = eni_pci_tbl,
2274         .probe          = eni_init_one,
2275         .remove         = __devexit_p(eni_remove_one),
2276 };
2277
2278
2279 static int __init eni_init(void)
2280 {
2281         struct sk_buff *skb; /* dummy for sizeof */
2282
2283         if (sizeof(skb->cb) < sizeof(struct eni_skb_prv)) {
2284                 printk(KERN_ERR "eni_detect: skb->cb is too small (%Zd < %Zd)\n",
2285                     sizeof(skb->cb),sizeof(struct eni_skb_prv));
2286                 return -EIO;
2287         }
2288         if (pci_register_driver(&eni_driver) > 0) return 0;
2289         pci_unregister_driver (&eni_driver);
2290         return -ENODEV;
2291 }
2292
2293
2294 module_init(eni_init);
2295 /* @@@ since exit routine not defined, this module can not be unloaded */
2296
2297 MODULE_LICENSE("GPL");