[SCSI] sun3: Provide a dummy NCR5380_exit()
[pandora-kernel.git] / drivers / scsi / sun3_scsi.c
1 /*
2  * Sun3 SCSI stuff by Erik Verbruggen (erik@bigmama.xtdnet.nl)
3  *
4  * Sun3 DMA routines added by Sam Creasey (sammy@sammy.net)
5  *
6  * Adapted from mac_scsinew.c:
7  */
8 /*
9  * Generic Macintosh NCR5380 driver
10  *
11  * Copyright 1998, Michael Schmitz <mschmitz@lbl.gov>
12  *
13  * derived in part from:
14  */
15 /*
16  * Generic Generic NCR5380 driver
17  *
18  * Copyright 1995, Russell King
19  *
20  * ALPHA RELEASE 1.
21  *
22  * For more information, please consult
23  *
24  * NCR 5380 Family
25  * SCSI Protocol Controller
26  * Databook
27  *
28  * NCR Microelectronics
29  * 1635 Aeroplaza Drive
30  * Colorado Springs, CO 80916
31  * 1+ (719) 578-3400
32  * 1+ (800) 334-5454
33  */
34
35
36 /*
37  * This is from mac_scsi.h, but hey, maybe this is useful for Sun3 too! :)
38  *
39  * Options :
40  *
41  * PARITY - enable parity checking.  Not supported.
42  *
43  * SCSI2 - enable support for SCSI-II tagged queueing.  Untested.
44  *
45  * USLEEP - enable support for devices that don't disconnect.  Untested.
46  */
47
48 /*
49  * $Log: sun3_NCR5380.c,v $
50  */
51
52 #define AUTOSENSE
53
54 #include <linux/types.h>
55 #include <linux/stddef.h>
56 #include <linux/ctype.h>
57 #include <linux/delay.h>
58
59 #include <linux/module.h>
60 #include <linux/signal.h>
61 #include <linux/ioport.h>
62 #include <linux/init.h>
63 #include <linux/blkdev.h>
64
65 #include <asm/io.h>
66 #include <asm/system.h>
67
68 #include <asm/sun3ints.h>
69 #include <asm/dvma.h>
70 #include <asm/idprom.h>
71 #include <asm/machines.h>
72
73 /* dma on! */
74 #define REAL_DMA
75
76 #include "scsi.h"
77 #include "initio.h"
78 #include <scsi/scsi_host.h>
79 #include "sun3_scsi.h"
80
81 static void NCR5380_print(struct Scsi_Host *instance);
82
83 /* #define OLDDMA */
84
85 #define USE_WRAPPER
86 /*#define RESET_BOOT */
87 #define DRIVER_SETUP
88
89 #define NDEBUG 0
90
91 /*
92  * BUG can be used to trigger a strange code-size related hang on 2.1 kernels
93  */
94 #ifdef BUG
95 #undef RESET_BOOT
96 #undef DRIVER_SETUP
97 #endif
98
99 /* #define SUPPORT_TAGS */
100
101 #define ENABLE_IRQ()    enable_irq( IRQ_SUN3_SCSI ); 
102
103
104 static irqreturn_t scsi_sun3_intr(int irq, void *dummy);
105 static inline unsigned char sun3scsi_read(int reg);
106 static inline void sun3scsi_write(int reg, int value);
107
108 static int setup_can_queue = -1;
109 module_param(setup_can_queue, int, 0);
110 static int setup_cmd_per_lun = -1;
111 module_param(setup_cmd_per_lun, int, 0);
112 static int setup_sg_tablesize = -1;
113 module_param(setup_sg_tablesize, int, 0);
114 #ifdef SUPPORT_TAGS
115 static int setup_use_tagged_queuing = -1;
116 module_param(setup_use_tagged_queuing, int, 0);
117 #endif
118 static int setup_hostid = -1;
119 module_param(setup_hostid, int, 0);
120
121 static struct scsi_cmnd *sun3_dma_setup_done = NULL;
122
123 #define AFTER_RESET_DELAY       (HZ/2)
124
125 /* ms to wait after hitting dma regs */
126 #define SUN3_DMA_DELAY 10
127
128 /* dvma buffer to allocate -- 32k should hopefully be more than sufficient */
129 #define SUN3_DVMA_BUFSIZE 0xe000
130
131 /* minimum number of bytes to do dma on */
132 #define SUN3_DMA_MINSIZE 128
133
134 static volatile unsigned char *sun3_scsi_regp;
135 static volatile struct sun3_dma_regs *dregs;
136 #ifdef OLDDMA
137 static unsigned char *dmabuf = NULL; /* dma memory buffer */
138 #endif
139 static struct sun3_udc_regs *udc_regs = NULL;
140 static unsigned char *sun3_dma_orig_addr = NULL;
141 static unsigned long sun3_dma_orig_count = 0;
142 static int sun3_dma_active = 0;
143 static unsigned long last_residual = 0;
144
145 /*
146  * NCR 5380 register access functions
147  */
148
149 static inline unsigned char sun3scsi_read(int reg)
150 {
151         return( sun3_scsi_regp[reg] );
152 }
153
154 static inline void sun3scsi_write(int reg, int value)
155 {
156         sun3_scsi_regp[reg] = value;
157 }
158
159 /* dma controller register access functions */
160
161 static inline unsigned short sun3_udc_read(unsigned char reg)
162 {
163         unsigned short ret;
164
165         dregs->udc_addr = UDC_CSR;
166         udelay(SUN3_DMA_DELAY);
167         ret = dregs->udc_data;
168         udelay(SUN3_DMA_DELAY);
169         
170         return ret;
171 }
172
173 static inline void sun3_udc_write(unsigned short val, unsigned char reg)
174 {
175         dregs->udc_addr = reg;
176         udelay(SUN3_DMA_DELAY);
177         dregs->udc_data = val;
178         udelay(SUN3_DMA_DELAY);
179 }
180
181 /*
182  * XXX: status debug
183  */
184 static struct Scsi_Host *default_instance;
185
186 /*
187  * Function : int sun3scsi_detect(struct scsi_host_template * tpnt)
188  *
189  * Purpose : initializes mac NCR5380 driver based on the
190  *      command line / compile time port and irq definitions.
191  *
192  * Inputs : tpnt - template for this SCSI adapter.
193  *
194  * Returns : 1 if a host adapter was found, 0 if not.
195  *
196  */
197  
198 int __init sun3scsi_detect(struct scsi_host_template * tpnt)
199 {
200         unsigned long ioaddr;
201         static int called = 0;
202         struct Scsi_Host *instance;
203
204         /* check that this machine has an onboard 5380 */
205         switch(idprom->id_machtype) {
206         case SM_SUN3|SM_3_50:
207         case SM_SUN3|SM_3_60:
208                 break;
209
210         default:
211                 return 0;
212         }
213
214         if(called)
215                 return 0;
216
217         tpnt->proc_name = "Sun3 5380 SCSI";
218
219         /* setup variables */
220         tpnt->can_queue =
221                 (setup_can_queue > 0) ? setup_can_queue : CAN_QUEUE;
222         tpnt->cmd_per_lun =
223                 (setup_cmd_per_lun > 0) ? setup_cmd_per_lun : CMD_PER_LUN;
224         tpnt->sg_tablesize = 
225                 (setup_sg_tablesize >= 0) ? setup_sg_tablesize : SG_TABLESIZE;
226
227         if (setup_hostid >= 0)
228                 tpnt->this_id = setup_hostid;
229         else {
230                 /* use 7 as default */
231                 tpnt->this_id = 7;
232         }
233
234         ioaddr = (unsigned long)ioremap(IOBASE_SUN3_SCSI, PAGE_SIZE);
235         sun3_scsi_regp = (unsigned char *)ioaddr;
236
237         dregs = (struct sun3_dma_regs *)(((unsigned char *)ioaddr) + 8);
238
239         if((udc_regs = dvma_malloc(sizeof(struct sun3_udc_regs)))
240            == NULL) {
241              printk("SUN3 Scsi couldn't allocate DVMA memory!\n");
242              return 0;
243         }
244 #ifdef OLDDMA
245         if((dmabuf = dvma_malloc_align(SUN3_DVMA_BUFSIZE, 0x10000)) == NULL) {
246              printk("SUN3 Scsi couldn't allocate DVMA memory!\n");
247              return 0;
248         }
249 #endif
250 #ifdef SUPPORT_TAGS
251         if (setup_use_tagged_queuing < 0)
252                 setup_use_tagged_queuing = USE_TAGGED_QUEUING;
253 #endif
254
255         instance = scsi_register (tpnt, sizeof(struct NCR5380_hostdata));
256         if(instance == NULL)
257                 return 0;
258                 
259         default_instance = instance;
260
261         instance->io_port = (unsigned long) ioaddr;
262         instance->irq = IRQ_SUN3_SCSI;
263
264         NCR5380_init(instance, 0);
265
266         instance->n_io_port = 32;
267
268         ((struct NCR5380_hostdata *)instance->hostdata)->ctrl = 0;
269
270         if (request_irq(instance->irq, scsi_sun3_intr,
271                              0, "Sun3SCSI-5380", instance)) {
272 #ifndef REAL_DMA
273                 printk("scsi%d: IRQ%d not free, interrupts disabled\n",
274                        instance->host_no, instance->irq);
275                 instance->irq = SCSI_IRQ_NONE;
276 #else
277                 printk("scsi%d: IRQ%d not free, bailing out\n",
278                        instance->host_no, instance->irq);
279                 return 0;
280 #endif
281         }
282         
283         printk("scsi%d: Sun3 5380 at port %lX irq", instance->host_no, instance->io_port);
284         if (instance->irq == SCSI_IRQ_NONE)
285                 printk ("s disabled");
286         else
287                 printk (" %d", instance->irq);
288         printk(" options CAN_QUEUE=%d CMD_PER_LUN=%d release=%d",
289                instance->can_queue, instance->cmd_per_lun,
290                SUN3SCSI_PUBLIC_RELEASE);
291         printk("\nscsi%d:", instance->host_no);
292         NCR5380_print_options(instance);
293         printk("\n");
294
295         dregs->csr = 0;
296         udelay(SUN3_DMA_DELAY);
297         dregs->csr = CSR_SCSI | CSR_FIFO | CSR_INTR;
298         udelay(SUN3_DMA_DELAY);
299         dregs->fifo_count = 0;
300
301         called = 1;
302
303 #ifdef RESET_BOOT
304         sun3_scsi_reset_boot(instance);
305 #endif
306
307         return 1;
308 }
309
310 int sun3scsi_release (struct Scsi_Host *shpnt)
311 {
312         if (shpnt->irq != SCSI_IRQ_NONE)
313                 free_irq(shpnt->irq, shpnt);
314
315         iounmap((void *)sun3_scsi_regp);
316
317         NCR5380_exit(shpnt);
318         return 0;
319 }
320
321 #ifdef RESET_BOOT
322 /*
323  * Our 'bus reset on boot' function
324  */
325
326 static void sun3_scsi_reset_boot(struct Scsi_Host *instance)
327 {
328         unsigned long end;
329
330         NCR5380_local_declare();
331         NCR5380_setup(instance);
332         
333         /*
334          * Do a SCSI reset to clean up the bus during initialization. No
335          * messing with the queues, interrupts, or locks necessary here.
336          */
337
338         printk( "Sun3 SCSI: resetting the SCSI bus..." );
339
340         /* switch off SCSI IRQ - catch an interrupt without IRQ bit set else */
341 //              sun3_disable_irq( IRQ_SUN3_SCSI );
342
343         /* get in phase */
344         NCR5380_write( TARGET_COMMAND_REG,
345                       PHASE_SR_TO_TCR( NCR5380_read(STATUS_REG) ));
346
347         /* assert RST */
348         NCR5380_write( INITIATOR_COMMAND_REG, ICR_BASE | ICR_ASSERT_RST );
349
350         /* The min. reset hold time is 25us, so 40us should be enough */
351         udelay( 50 );
352
353         /* reset RST and interrupt */
354         NCR5380_write( INITIATOR_COMMAND_REG, ICR_BASE );
355         NCR5380_read( RESET_PARITY_INTERRUPT_REG );
356
357         for( end = jiffies + AFTER_RESET_DELAY; time_before(jiffies, end); )
358                 barrier();
359
360         /* switch on SCSI IRQ again */
361 //              sun3_enable_irq( IRQ_SUN3_SCSI );
362
363         printk( " done\n" );
364 }
365 #endif
366
367 const char * sun3scsi_info (struct Scsi_Host *spnt) {
368     return "";
369 }
370
371 // safe bits for the CSR
372 #define CSR_GOOD 0x060f
373
374 static irqreturn_t scsi_sun3_intr(int irq, void *dummy)
375 {
376         unsigned short csr = dregs->csr;
377         int handled = 0;
378
379         if(csr & ~CSR_GOOD) {
380                 if(csr & CSR_DMA_BUSERR) {
381                         printk("scsi%d: bus error in dma\n", default_instance->host_no);
382                 }
383
384                 if(csr & CSR_DMA_CONFLICT) {
385                         printk("scsi%d: dma conflict\n", default_instance->host_no);
386                 }
387                 handled = 1;
388         }
389
390         if(csr & (CSR_SDB_INT | CSR_DMA_INT)) {
391                 NCR5380_intr(irq, dummy);
392                 handled = 1;
393         }
394
395         return IRQ_RETVAL(handled);
396 }
397
398 /*
399  * Debug stuff - to be called on NMI, or sysrq key. Use at your own risk; 
400  * reentering NCR5380_print_status seems to have ugly side effects
401  */
402
403 /* this doesn't seem to get used at all -- sam */
404 #if 0
405 void sun3_sun3_debug (void)
406 {
407         unsigned long flags;
408         NCR5380_local_declare();
409
410         if (default_instance) {
411                         local_irq_save(flags);
412                         NCR5380_print_status(default_instance);
413                         local_irq_restore(flags);
414         }
415 }
416 #endif
417
418
419 /* sun3scsi_dma_setup() -- initialize the dma controller for a read/write */
420 static unsigned long sun3scsi_dma_setup(void *data, unsigned long count, int write_flag)
421 {
422 #ifdef OLDDMA
423         if(write_flag) 
424                 memcpy(dmabuf, data, count);
425         else {
426                 sun3_dma_orig_addr = data;
427                 sun3_dma_orig_count = count;
428         }
429 #else
430         void *addr;
431
432         if(sun3_dma_orig_addr != NULL)
433                 dvma_unmap(sun3_dma_orig_addr);
434
435 //      addr = sun3_dvma_page((unsigned long)data, (unsigned long)dmabuf);
436         addr = (void *)dvma_map((unsigned long) data, count);
437                 
438         sun3_dma_orig_addr = addr;
439         sun3_dma_orig_count = count;
440 #endif
441         dregs->fifo_count = 0;
442         sun3_udc_write(UDC_RESET, UDC_CSR);
443         
444         /* reset fifo */
445         dregs->csr &= ~CSR_FIFO;
446         dregs->csr |= CSR_FIFO;
447         
448         /* set direction */
449         if(write_flag)
450                 dregs->csr |= CSR_SEND;
451         else
452                 dregs->csr &= ~CSR_SEND;
453         
454         /* byte count for fifo */
455         dregs->fifo_count = count;
456
457         sun3_udc_write(UDC_RESET, UDC_CSR);
458         
459         /* reset fifo */
460         dregs->csr &= ~CSR_FIFO;
461         dregs->csr |= CSR_FIFO;
462         
463         if(dregs->fifo_count != count) { 
464                 printk("scsi%d: fifo_mismatch %04x not %04x\n",
465                        default_instance->host_no, dregs->fifo_count,
466                        (unsigned int) count);
467                 NCR5380_print(default_instance);
468         }
469
470         /* setup udc */
471 #ifdef OLDDMA
472         udc_regs->addr_hi = ((dvma_vtob(dmabuf) & 0xff0000) >> 8);
473         udc_regs->addr_lo = (dvma_vtob(dmabuf) & 0xffff);
474 #else
475         udc_regs->addr_hi = (((unsigned long)(addr) & 0xff0000) >> 8);
476         udc_regs->addr_lo = ((unsigned long)(addr) & 0xffff);
477 #endif
478         udc_regs->count = count/2; /* count in words */
479         udc_regs->mode_hi = UDC_MODE_HIWORD;
480         if(write_flag) {
481                 if(count & 1)
482                         udc_regs->count++;
483                 udc_regs->mode_lo = UDC_MODE_LSEND;
484                 udc_regs->rsel = UDC_RSEL_SEND;
485         } else {
486                 udc_regs->mode_lo = UDC_MODE_LRECV;
487                 udc_regs->rsel = UDC_RSEL_RECV;
488         }
489         
490         /* announce location of regs block */
491         sun3_udc_write(((dvma_vtob(udc_regs) & 0xff0000) >> 8),
492                        UDC_CHN_HI); 
493
494         sun3_udc_write((dvma_vtob(udc_regs) & 0xffff), UDC_CHN_LO);
495
496         /* set dma master on */
497         sun3_udc_write(0xd, UDC_MODE);
498
499         /* interrupt enable */
500         sun3_udc_write(UDC_INT_ENABLE, UDC_CSR);
501         
502         return count;
503
504 }
505
506 static inline unsigned long sun3scsi_dma_count(struct Scsi_Host *instance)
507 {
508         unsigned short resid;
509
510         dregs->udc_addr = 0x32; 
511         udelay(SUN3_DMA_DELAY);
512         resid = dregs->udc_data;
513         udelay(SUN3_DMA_DELAY);
514         resid *= 2;
515
516         return (unsigned long) resid;
517 }
518
519 static inline unsigned long sun3scsi_dma_residual(struct Scsi_Host *instance)
520 {
521         return last_residual;
522 }
523
524 static inline unsigned long sun3scsi_dma_xfer_len(unsigned long wanted,
525                                                   struct scsi_cmnd *cmd,
526                                                   int write_flag)
527 {
528         if (cmd->request->cmd_type == REQ_TYPE_FS)
529                 return wanted;
530         else
531                 return 0;
532 }
533
534 static inline int sun3scsi_dma_start(unsigned long count, unsigned char *data)
535 {
536
537     sun3_udc_write(UDC_CHN_START, UDC_CSR);
538     
539     return 0;
540 }
541
542 /* clean up after our dma is done */
543 static int sun3scsi_dma_finish(int write_flag)
544 {
545         unsigned short count;
546         unsigned short fifo;
547         int ret = 0;
548         
549         sun3_dma_active = 0;
550 #if 1
551         // check to empty the fifo on a read
552         if(!write_flag) {
553                 int tmo = 20000; /* .2 sec */
554                 
555                 while(1) {
556                         if(dregs->csr & CSR_FIFO_EMPTY)
557                                 break;
558
559                         if(--tmo <= 0) {
560                                 printk("sun3scsi: fifo failed to empty!\n");
561                                 return 1;
562                         }
563                         udelay(10);
564                 }
565         }
566                 
567 #endif
568
569         count = sun3scsi_dma_count(default_instance);
570 #ifdef OLDDMA
571
572         /* if we've finished a read, copy out the data we read */
573         if(sun3_dma_orig_addr) {
574                 /* check for residual bytes after dma end */
575                 if(count && (NCR5380_read(BUS_AND_STATUS_REG) &
576                              (BASR_PHASE_MATCH | BASR_ACK))) {
577                         printk("scsi%d: sun3_scsi_finish: read overrun baby... ", default_instance->host_no);
578                         printk("basr now %02x\n", NCR5380_read(BUS_AND_STATUS_REG));
579                         ret = count;
580                 }
581                 
582                 /* copy in what we dma'd no matter what */
583                 memcpy(sun3_dma_orig_addr, dmabuf, sun3_dma_orig_count);
584                 sun3_dma_orig_addr = NULL;
585
586         }
587 #else
588
589         fifo = dregs->fifo_count;
590         last_residual = fifo;
591
592         /* empty bytes from the fifo which didn't make it */
593         if((!write_flag) && (count - fifo) == 2) {
594                 unsigned short data;
595                 unsigned char *vaddr;
596
597                 data = dregs->fifo_data;
598                 vaddr = (unsigned char *)dvma_btov(sun3_dma_orig_addr);
599                 
600                 vaddr += (sun3_dma_orig_count - fifo);
601
602                 vaddr[-2] = (data & 0xff00) >> 8;
603                 vaddr[-1] = (data & 0xff);
604         }
605
606         dvma_unmap(sun3_dma_orig_addr);
607         sun3_dma_orig_addr = NULL;
608 #endif
609         sun3_udc_write(UDC_RESET, UDC_CSR);
610         dregs->fifo_count = 0;
611         dregs->csr &= ~CSR_SEND;
612
613         /* reset fifo */
614         dregs->csr &= ~CSR_FIFO;
615         dregs->csr |= CSR_FIFO;
616         
617         sun3_dma_setup_done = NULL;
618
619         return ret;
620
621 }
622         
623 #include "sun3_NCR5380.c"
624
625 static struct scsi_host_template driver_template = {
626         .name                   = SUN3_SCSI_NAME,
627         .detect                 = sun3scsi_detect,
628         .release                = sun3scsi_release,
629         .info                   = sun3scsi_info,
630         .queuecommand           = sun3scsi_queue_command,
631         .eh_abort_handler       = sun3scsi_abort,
632         .eh_bus_reset_handler   = sun3scsi_bus_reset,
633         .can_queue              = CAN_QUEUE,
634         .this_id                = 7,
635         .sg_tablesize           = SG_TABLESIZE,
636         .cmd_per_lun            = CMD_PER_LUN,
637         .use_clustering         = DISABLE_CLUSTERING
638 };
639
640
641 #include "scsi_module.c"
642
643 MODULE_LICENSE("GPL");