Merge git://git.kernel.org/pub/scm/linux/kernel/git/gregkh/usb-2.6
[pandora-kernel.git] / drivers / ide / pci / sgiioc4.c
1 /*
2  * Copyright (c) 2003-2006 Silicon Graphics, Inc.  All Rights Reserved.
3  *
4  * This program is free software; you can redistribute it and/or modify it
5  * under the terms of version 2 of the GNU General Public License
6  * as published by the Free Software Foundation.
7  *
8  * This program is distributed in the hope that it would be useful, but
9  * WITHOUT ANY WARRANTY; without even the implied warranty of
10  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
11  *
12  * You should have received a copy of the GNU General Public
13  * License along with this program; if not, write the Free Software
14  * Foundation, Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
15  *
16  * For further information regarding this notice, see:
17  *
18  * http://oss.sgi.com/projects/GenInfo/NoticeExplan
19  */
20
21 #include <linux/module.h>
22 #include <linux/types.h>
23 #include <linux/pci.h>
24 #include <linux/delay.h>
25 #include <linux/hdreg.h>
26 #include <linux/init.h>
27 #include <linux/kernel.h>
28 #include <linux/timer.h>
29 #include <linux/mm.h>
30 #include <linux/ioport.h>
31 #include <linux/blkdev.h>
32 #include <linux/scatterlist.h>
33 #include <linux/ioc4.h>
34 #include <asm/io.h>
35
36 #include <linux/ide.h>
37
38 #define DRV_NAME "SGIIOC4"
39
40 /* IOC4 Specific Definitions */
41 #define IOC4_CMD_OFFSET         0x100
42 #define IOC4_CTRL_OFFSET        0x120
43 #define IOC4_DMA_OFFSET         0x140
44 #define IOC4_INTR_OFFSET        0x0
45
46 #define IOC4_TIMING             0x00
47 #define IOC4_DMA_PTR_L          0x01
48 #define IOC4_DMA_PTR_H          0x02
49 #define IOC4_DMA_ADDR_L         0x03
50 #define IOC4_DMA_ADDR_H         0x04
51 #define IOC4_BC_DEV             0x05
52 #define IOC4_BC_MEM             0x06
53 #define IOC4_DMA_CTRL           0x07
54 #define IOC4_DMA_END_ADDR       0x08
55
56 /* Bits in the IOC4 Control/Status Register */
57 #define IOC4_S_DMA_START        0x01
58 #define IOC4_S_DMA_STOP         0x02
59 #define IOC4_S_DMA_DIR          0x04
60 #define IOC4_S_DMA_ACTIVE       0x08
61 #define IOC4_S_DMA_ERROR        0x10
62 #define IOC4_ATA_MEMERR         0x02
63
64 /* Read/Write Directions */
65 #define IOC4_DMA_WRITE          0x04
66 #define IOC4_DMA_READ           0x00
67
68 /* Interrupt Register Offsets */
69 #define IOC4_INTR_REG           0x03
70 #define IOC4_INTR_SET           0x05
71 #define IOC4_INTR_CLEAR         0x07
72
73 #define IOC4_IDE_CACHELINE_SIZE 128
74 #define IOC4_CMD_CTL_BLK_SIZE   0x20
75 #define IOC4_SUPPORTED_FIRMWARE_REV 46
76
77 typedef struct {
78         u32 timing_reg0;
79         u32 timing_reg1;
80         u32 low_mem_ptr;
81         u32 high_mem_ptr;
82         u32 low_mem_addr;
83         u32 high_mem_addr;
84         u32 dev_byte_count;
85         u32 mem_byte_count;
86         u32 status;
87 } ioc4_dma_regs_t;
88
89 /* Each Physical Region Descriptor Entry size is 16 bytes (2 * 64 bits) */
90 /* IOC4 has only 1 IDE channel */
91 #define IOC4_PRD_BYTES       16
92 #define IOC4_PRD_ENTRIES     (PAGE_SIZE /(4*IOC4_PRD_BYTES))
93
94
95 static void
96 sgiioc4_init_hwif_ports(hw_regs_t * hw, unsigned long data_port,
97                         unsigned long ctrl_port, unsigned long irq_port)
98 {
99         unsigned long reg = data_port;
100         int i;
101
102         /* Registers are word (32 bit) aligned */
103         for (i = IDE_DATA_OFFSET; i <= IDE_STATUS_OFFSET; i++)
104                 hw->io_ports[i] = reg + i * 4;
105
106         if (ctrl_port)
107                 hw->io_ports[IDE_CONTROL_OFFSET] = ctrl_port;
108
109         if (irq_port)
110                 hw->io_ports[IDE_IRQ_OFFSET] = irq_port;
111 }
112
113 static void
114 sgiioc4_maskproc(ide_drive_t * drive, int mask)
115 {
116         writeb(mask ? (drive->ctl | 2) : (drive->ctl & ~2),
117                (void __iomem *)IDE_CONTROL_REG);
118 }
119
120
121 static int
122 sgiioc4_checkirq(ide_hwif_t * hwif)
123 {
124         unsigned long intr_addr =
125                 hwif->io_ports[IDE_IRQ_OFFSET] + IOC4_INTR_REG * 4;
126
127         if ((u8)readl((void __iomem *)intr_addr) & 0x03)
128                 return 1;
129
130         return 0;
131 }
132
133 static u8 sgiioc4_INB(unsigned long);
134
135 static int
136 sgiioc4_clearirq(ide_drive_t * drive)
137 {
138         u32 intr_reg;
139         ide_hwif_t *hwif = HWIF(drive);
140         unsigned long other_ir =
141             hwif->io_ports[IDE_IRQ_OFFSET] + (IOC4_INTR_REG << 2);
142
143         /* Code to check for PCI error conditions */
144         intr_reg = readl((void __iomem *)other_ir);
145         if (intr_reg & 0x03) { /* Valid IOC4-IDE interrupt */
146                 /*
147                  * Using sgiioc4_INB to read the IDE_STATUS_REG has a side effect
148                  * of clearing the interrupt.  The first read should clear it
149                  * if it is set.  The second read should return a "clear" status
150                  * if it got cleared.  If not, then spin for a bit trying to
151                  * clear it.
152                  */
153                 u8 stat = sgiioc4_INB(IDE_STATUS_REG);
154                 int count = 0;
155                 stat = sgiioc4_INB(IDE_STATUS_REG);
156                 while ((stat & 0x80) && (count++ < 100)) {
157                         udelay(1);
158                         stat = sgiioc4_INB(IDE_STATUS_REG);
159                 }
160
161                 if (intr_reg & 0x02) {
162                         struct pci_dev *dev = to_pci_dev(hwif->dev);
163                         /* Error when transferring DMA data on PCI bus */
164                         u32 pci_err_addr_low, pci_err_addr_high,
165                             pci_stat_cmd_reg;
166
167                         pci_err_addr_low =
168                                 readl((void __iomem *)hwif->io_ports[IDE_IRQ_OFFSET]);
169                         pci_err_addr_high =
170                                 readl((void __iomem *)(hwif->io_ports[IDE_IRQ_OFFSET] + 4));
171                         pci_read_config_dword(dev, PCI_COMMAND,
172                                               &pci_stat_cmd_reg);
173                         printk(KERN_ERR
174                                "%s(%s) : PCI Bus Error when doing DMA:"
175                                    " status-cmd reg is 0x%x\n",
176                                __FUNCTION__, drive->name, pci_stat_cmd_reg);
177                         printk(KERN_ERR
178                                "%s(%s) : PCI Error Address is 0x%x%x\n",
179                                __FUNCTION__, drive->name,
180                                pci_err_addr_high, pci_err_addr_low);
181                         /* Clear the PCI Error indicator */
182                         pci_write_config_dword(dev, PCI_COMMAND, 0x00000146);
183                 }
184
185                 /* Clear the Interrupt, Error bits on the IOC4 */
186                 writel(0x03, (void __iomem *)other_ir);
187
188                 intr_reg = readl((void __iomem *)other_ir);
189         }
190
191         return intr_reg & 3;
192 }
193
194 static void sgiioc4_ide_dma_start(ide_drive_t * drive)
195 {
196         ide_hwif_t *hwif = HWIF(drive);
197         unsigned long ioc4_dma_addr = hwif->dma_base + IOC4_DMA_CTRL * 4;
198         unsigned int reg = readl((void __iomem *)ioc4_dma_addr);
199         unsigned int temp_reg = reg | IOC4_S_DMA_START;
200
201         writel(temp_reg, (void __iomem *)ioc4_dma_addr);
202 }
203
204 static u32
205 sgiioc4_ide_dma_stop(ide_hwif_t *hwif, u64 dma_base)
206 {
207         unsigned long ioc4_dma_addr = dma_base + IOC4_DMA_CTRL * 4;
208         u32     ioc4_dma;
209         int     count;
210
211         count = 0;
212         ioc4_dma = readl((void __iomem *)ioc4_dma_addr);
213         while ((ioc4_dma & IOC4_S_DMA_STOP) && (count++ < 200)) {
214                 udelay(1);
215                 ioc4_dma = readl((void __iomem *)ioc4_dma_addr);
216         }
217         return ioc4_dma;
218 }
219
220 /* Stops the IOC4 DMA Engine */
221 static int
222 sgiioc4_ide_dma_end(ide_drive_t * drive)
223 {
224         u32 ioc4_dma, bc_dev, bc_mem, num, valid = 0, cnt = 0;
225         ide_hwif_t *hwif = HWIF(drive);
226         unsigned long dma_base = hwif->dma_base;
227         int dma_stat = 0;
228         unsigned long *ending_dma = ide_get_hwifdata(hwif);
229
230         writel(IOC4_S_DMA_STOP, (void __iomem *)(dma_base + IOC4_DMA_CTRL * 4));
231
232         ioc4_dma = sgiioc4_ide_dma_stop(hwif, dma_base);
233
234         if (ioc4_dma & IOC4_S_DMA_STOP) {
235                 printk(KERN_ERR
236                        "%s(%s): IOC4 DMA STOP bit is still 1 :"
237                        "ioc4_dma_reg 0x%x\n",
238                        __FUNCTION__, drive->name, ioc4_dma);
239                 dma_stat = 1;
240         }
241
242         /*
243          * The IOC4 will DMA 1's to the ending dma area to indicate that
244          * previous data DMA is complete.  This is necessary because of relaxed
245          * ordering between register reads and DMA writes on the Altix.
246          */
247         while ((cnt++ < 200) && (!valid)) {
248                 for (num = 0; num < 16; num++) {
249                         if (ending_dma[num]) {
250                                 valid = 1;
251                                 break;
252                         }
253                 }
254                 udelay(1);
255         }
256         if (!valid) {
257                 printk(KERN_ERR "%s(%s) : DMA incomplete\n", __FUNCTION__,
258                        drive->name);
259                 dma_stat = 1;
260         }
261
262         bc_dev = readl((void __iomem *)(dma_base + IOC4_BC_DEV * 4));
263         bc_mem = readl((void __iomem *)(dma_base + IOC4_BC_MEM * 4));
264
265         if ((bc_dev & 0x01FF) || (bc_mem & 0x1FF)) {
266                 if (bc_dev > bc_mem + 8) {
267                         printk(KERN_ERR
268                                "%s(%s): WARNING!! byte_count_dev %d "
269                                "!= byte_count_mem %d\n",
270                                __FUNCTION__, drive->name, bc_dev, bc_mem);
271                 }
272         }
273
274         drive->waiting_for_dma = 0;
275         ide_destroy_dmatable(drive);
276
277         return dma_stat;
278 }
279
280 static void sgiioc4_set_dma_mode(ide_drive_t *drive, const u8 speed)
281 {
282 }
283
284 /* returns 1 if dma irq issued, 0 otherwise */
285 static int
286 sgiioc4_ide_dma_test_irq(ide_drive_t * drive)
287 {
288         return sgiioc4_checkirq(HWIF(drive));
289 }
290
291 static void sgiioc4_dma_host_set(ide_drive_t *drive, int on)
292 {
293         if (!on)
294                 sgiioc4_clearirq(drive);
295 }
296
297 static void
298 sgiioc4_resetproc(ide_drive_t * drive)
299 {
300         sgiioc4_ide_dma_end(drive);
301         sgiioc4_clearirq(drive);
302 }
303
304 static void
305 sgiioc4_dma_lost_irq(ide_drive_t * drive)
306 {
307         sgiioc4_resetproc(drive);
308
309         ide_dma_lost_irq(drive);
310 }
311
312 static u8
313 sgiioc4_INB(unsigned long port)
314 {
315         u8 reg = (u8) readb((void __iomem *) port);
316
317         if ((port & 0xFFF) == 0x11C) {  /* Status register of IOC4 */
318                 if (reg & 0x51) {       /* Not busy...check for interrupt */
319                         unsigned long other_ir = port - 0x110;
320                         unsigned int intr_reg = (u32) readl((void __iomem *) other_ir);
321
322                         /* Clear the Interrupt, Error bits on the IOC4 */
323                         if (intr_reg & 0x03) {
324                                 writel(0x03, (void __iomem *) other_ir);
325                                 intr_reg = (u32) readl((void __iomem *) other_ir);
326                         }
327                 }
328         }
329
330         return reg;
331 }
332
333 /* Creates a dma map for the scatter-gather list entries */
334 static int __devinit
335 ide_dma_sgiioc4(ide_hwif_t * hwif, unsigned long dma_base)
336 {
337         struct pci_dev *dev = to_pci_dev(hwif->dev);
338         void __iomem *virt_dma_base;
339         int num_ports = sizeof (ioc4_dma_regs_t);
340         void *pad;
341
342         printk(KERN_INFO "%s: BM-DMA at 0x%04lx-0x%04lx\n", hwif->name,
343                dma_base, dma_base + num_ports - 1);
344
345         if (!request_mem_region(dma_base, num_ports, hwif->name)) {
346                 printk(KERN_ERR
347                        "%s(%s) -- ERROR, Addresses 0x%p to 0x%p "
348                        "ALREADY in use\n",
349                        __FUNCTION__, hwif->name, (void *) dma_base,
350                        (void *) dma_base + num_ports - 1);
351                 return -1;
352         }
353
354         virt_dma_base = ioremap(dma_base, num_ports);
355         if (virt_dma_base == NULL) {
356                 printk(KERN_ERR
357                        "%s(%s) -- ERROR, Unable to map addresses 0x%lx to 0x%lx\n",
358                        __FUNCTION__, hwif->name, dma_base, dma_base + num_ports - 1);
359                 goto dma_remap_failure;
360         }
361         hwif->dma_base = (unsigned long) virt_dma_base;
362
363         hwif->dmatable_cpu = pci_alloc_consistent(dev,
364                                           IOC4_PRD_ENTRIES * IOC4_PRD_BYTES,
365                                           &hwif->dmatable_dma);
366
367         if (!hwif->dmatable_cpu)
368                 goto dma_pci_alloc_failure;
369
370         hwif->sg_max_nents = IOC4_PRD_ENTRIES;
371
372         pad = pci_alloc_consistent(dev, IOC4_IDE_CACHELINE_SIZE,
373                                    (dma_addr_t *) &(hwif->dma_status));
374
375         if (pad) {
376                 ide_set_hwifdata(hwif, pad);
377                 return 0;
378         }
379
380         pci_free_consistent(dev, IOC4_PRD_ENTRIES * IOC4_PRD_BYTES,
381                             hwif->dmatable_cpu, hwif->dmatable_dma);
382         printk(KERN_INFO
383                "%s() -- Error! Unable to allocate DMA Maps for drive %s\n",
384                __FUNCTION__, hwif->name);
385         printk(KERN_INFO
386                "Changing from DMA to PIO mode for Drive %s\n", hwif->name);
387
388 dma_pci_alloc_failure:
389         iounmap(virt_dma_base);
390
391 dma_remap_failure:
392         release_mem_region(dma_base, num_ports);
393
394         return -1;
395 }
396
397 /* Initializes the IOC4 DMA Engine */
398 static void
399 sgiioc4_configure_for_dma(int dma_direction, ide_drive_t * drive)
400 {
401         u32 ioc4_dma;
402         ide_hwif_t *hwif = HWIF(drive);
403         unsigned long dma_base = hwif->dma_base;
404         unsigned long ioc4_dma_addr = dma_base + IOC4_DMA_CTRL * 4;
405         u32 dma_addr, ending_dma_addr;
406
407         ioc4_dma = readl((void __iomem *)ioc4_dma_addr);
408
409         if (ioc4_dma & IOC4_S_DMA_ACTIVE) {
410                 printk(KERN_WARNING
411                         "%s(%s):Warning!! DMA from previous transfer was still active\n",
412                        __FUNCTION__, drive->name);
413                 writel(IOC4_S_DMA_STOP, (void __iomem *)ioc4_dma_addr);
414                 ioc4_dma = sgiioc4_ide_dma_stop(hwif, dma_base);
415
416                 if (ioc4_dma & IOC4_S_DMA_STOP)
417                         printk(KERN_ERR
418                                "%s(%s) : IOC4 Dma STOP bit is still 1\n",
419                                __FUNCTION__, drive->name);
420         }
421
422         ioc4_dma = readl((void __iomem *)ioc4_dma_addr);
423         if (ioc4_dma & IOC4_S_DMA_ERROR) {
424                 printk(KERN_WARNING
425                        "%s(%s) : Warning!! - DMA Error during Previous"
426                        " transfer | status 0x%x\n",
427                        __FUNCTION__, drive->name, ioc4_dma);
428                 writel(IOC4_S_DMA_STOP, (void __iomem *)ioc4_dma_addr);
429                 ioc4_dma = sgiioc4_ide_dma_stop(hwif, dma_base);
430
431                 if (ioc4_dma & IOC4_S_DMA_STOP)
432                         printk(KERN_ERR
433                                "%s(%s) : IOC4 DMA STOP bit is still 1\n",
434                                __FUNCTION__, drive->name);
435         }
436
437         /* Address of the Scatter Gather List */
438         dma_addr = cpu_to_le32(hwif->dmatable_dma);
439         writel(dma_addr, (void __iomem *)(dma_base + IOC4_DMA_PTR_L * 4));
440
441         /* Address of the Ending DMA */
442         memset(ide_get_hwifdata(hwif), 0, IOC4_IDE_CACHELINE_SIZE);
443         ending_dma_addr = cpu_to_le32(hwif->dma_status);
444         writel(ending_dma_addr, (void __iomem *)(dma_base + IOC4_DMA_END_ADDR * 4));
445
446         writel(dma_direction, (void __iomem *)ioc4_dma_addr);
447         drive->waiting_for_dma = 1;
448 }
449
450 /* IOC4 Scatter Gather list Format                                       */
451 /* 128 Bit entries to support 64 bit addresses in the future             */
452 /* The Scatter Gather list Entry should be in the BIG-ENDIAN Format      */
453 /* --------------------------------------------------------------------- */
454 /* | Upper 32 bits - Zero           |           Lower 32 bits- address | */
455 /* --------------------------------------------------------------------- */
456 /* | Upper 32 bits - Zero           |EOL| 15 unused     | 16 Bit Length| */
457 /* --------------------------------------------------------------------- */
458 /* Creates the scatter gather list, DMA Table */
459 static unsigned int
460 sgiioc4_build_dma_table(ide_drive_t * drive, struct request *rq, int ddir)
461 {
462         ide_hwif_t *hwif = HWIF(drive);
463         unsigned int *table = hwif->dmatable_cpu;
464         unsigned int count = 0, i = 1;
465         struct scatterlist *sg;
466
467         hwif->sg_nents = i = ide_build_sglist(drive, rq);
468
469         if (!i)
470                 return 0;       /* sglist of length Zero */
471
472         sg = hwif->sg_table;
473         while (i && sg_dma_len(sg)) {
474                 dma_addr_t cur_addr;
475                 int cur_len;
476                 cur_addr = sg_dma_address(sg);
477                 cur_len = sg_dma_len(sg);
478
479                 while (cur_len) {
480                         if (count++ >= IOC4_PRD_ENTRIES) {
481                                 printk(KERN_WARNING
482                                        "%s: DMA table too small\n",
483                                        drive->name);
484                                 goto use_pio_instead;
485                         } else {
486                                 u32 bcount =
487                                     0x10000 - (cur_addr & 0xffff);
488
489                                 if (bcount > cur_len)
490                                         bcount = cur_len;
491
492                                 /* put the addr, length in
493                                  * the IOC4 dma-table format */
494                                 *table = 0x0;
495                                 table++;
496                                 *table = cpu_to_be32(cur_addr);
497                                 table++;
498                                 *table = 0x0;
499                                 table++;
500
501                                 *table = cpu_to_be32(bcount);
502                                 table++;
503
504                                 cur_addr += bcount;
505                                 cur_len -= bcount;
506                         }
507                 }
508
509                 sg = sg_next(sg);
510                 i--;
511         }
512
513         if (count) {
514                 table--;
515                 *table |= cpu_to_be32(0x80000000);
516                 return count;
517         }
518
519 use_pio_instead:
520         ide_destroy_dmatable(drive);
521
522         return 0;               /* revert to PIO for this request */
523 }
524
525 static int sgiioc4_ide_dma_setup(ide_drive_t *drive)
526 {
527         struct request *rq = HWGROUP(drive)->rq;
528         unsigned int count = 0;
529         int ddir;
530
531         if (rq_data_dir(rq))
532                 ddir = PCI_DMA_TODEVICE;
533         else
534                 ddir = PCI_DMA_FROMDEVICE;
535
536         if (!(count = sgiioc4_build_dma_table(drive, rq, ddir))) {
537                 /* try PIO instead of DMA */
538                 ide_map_sg(drive, rq);
539                 return 1;
540         }
541
542         if (rq_data_dir(rq))
543                 /* Writes TO the IOC4 FROM Main Memory */
544                 ddir = IOC4_DMA_READ;
545         else
546                 /* Writes FROM the IOC4 TO Main Memory */
547                 ddir = IOC4_DMA_WRITE;
548
549         sgiioc4_configure_for_dma(ddir, drive);
550
551         return 0;
552 }
553
554 static void __devinit
555 ide_init_sgiioc4(ide_hwif_t * hwif)
556 {
557         hwif->mmio = 1;
558         hwif->pio_mask = 0x00;
559         hwif->set_pio_mode = NULL; /* Sets timing for PIO mode */
560         hwif->set_dma_mode = &sgiioc4_set_dma_mode;
561         hwif->selectproc = NULL;/* Use the default routine to select drive */
562         hwif->reset_poll = NULL;/* No HBA specific reset_poll needed */
563         hwif->pre_reset = NULL; /* No HBA specific pre_set needed */
564         hwif->resetproc = &sgiioc4_resetproc;/* Reset DMA engine,
565                                                 clear interrupts */
566         hwif->maskproc = &sgiioc4_maskproc;     /* Mask on/off NIEN register */
567         hwif->quirkproc = NULL;
568         hwif->busproc = NULL;
569
570         hwif->INB = &sgiioc4_INB;
571
572         if (hwif->dma_base == 0)
573                 return;
574
575         hwif->mwdma_mask = ATA_MWDMA2_ONLY;
576
577         hwif->dma_host_set = &sgiioc4_dma_host_set;
578         hwif->dma_setup = &sgiioc4_ide_dma_setup;
579         hwif->dma_start = &sgiioc4_ide_dma_start;
580         hwif->ide_dma_end = &sgiioc4_ide_dma_end;
581         hwif->ide_dma_test_irq = &sgiioc4_ide_dma_test_irq;
582         hwif->dma_lost_irq = &sgiioc4_dma_lost_irq;
583         hwif->dma_timeout = &ide_dma_timeout;
584 }
585
586 static int __devinit
587 sgiioc4_ide_setup_pci_device(struct pci_dev *dev)
588 {
589         unsigned long cmd_base, dma_base, irqport;
590         unsigned long bar0, cmd_phys_base, ctl;
591         void __iomem *virt_base;
592         ide_hwif_t *hwif;
593         int h;
594         u8 idx[4] = { 0xff, 0xff, 0xff, 0xff };
595         hw_regs_t hw;
596
597         /*
598          * Find an empty HWIF; if none available, return -ENOMEM.
599          */
600         for (h = 0; h < MAX_HWIFS; ++h) {
601                 hwif = &ide_hwifs[h];
602                 if (hwif->chipset == ide_unknown)
603                         break;
604         }
605         if (h == MAX_HWIFS) {
606                 printk(KERN_ERR "%s: too many IDE interfaces, no room in table\n",
607                                 DRV_NAME);
608                 return -ENOMEM;
609         }
610
611         /*  Get the CmdBlk and CtrlBlk Base Registers */
612         bar0 = pci_resource_start(dev, 0);
613         virt_base = ioremap(bar0, pci_resource_len(dev, 0));
614         if (virt_base == NULL) {
615                 printk(KERN_ERR "%s: Unable to remap BAR 0 address: 0x%lx\n",
616                                 DRV_NAME, bar0);
617                 return -ENOMEM;
618         }
619         cmd_base = (unsigned long) virt_base + IOC4_CMD_OFFSET;
620         ctl = (unsigned long) virt_base + IOC4_CTRL_OFFSET;
621         irqport = (unsigned long) virt_base + IOC4_INTR_OFFSET;
622         dma_base = pci_resource_start(dev, 0) + IOC4_DMA_OFFSET;
623
624         cmd_phys_base = bar0 + IOC4_CMD_OFFSET;
625         if (!request_mem_region(cmd_phys_base, IOC4_CMD_CTL_BLK_SIZE,
626             hwif->name)) {
627                 printk(KERN_ERR
628                         "%s : %s -- ERROR, Addresses "
629                         "0x%p to 0x%p ALREADY in use\n",
630                        __FUNCTION__, hwif->name, (void *) cmd_phys_base,
631                        (void *) cmd_phys_base + IOC4_CMD_CTL_BLK_SIZE);
632                 return -ENOMEM;
633         }
634
635         /* Initialize the IO registers */
636         memset(&hw, 0, sizeof(hw));
637         sgiioc4_init_hwif_ports(&hw, cmd_base, ctl, irqport);
638         hw.irq = dev->irq;
639         hw.chipset = ide_pci;
640         hw.dev = &dev->dev;
641         ide_init_port_hw(hwif, &hw);
642
643         hwif->dev = &dev->dev;
644         hwif->channel = 0;      /* Single Channel chip */
645
646         /* The IOC4 uses MMIO rather than Port IO. */
647         default_hwif_mmiops(hwif);
648
649         /* Initializing chipset IRQ Registers */
650         writel(0x03, (void __iomem *)(irqport + IOC4_INTR_SET * 4));
651
652         if (dma_base == 0 || ide_dma_sgiioc4(hwif, dma_base))
653                 printk(KERN_INFO "%s: %s Bus-Master DMA disabled\n",
654                                  hwif->name, DRV_NAME);
655
656         ide_init_sgiioc4(hwif);
657
658         idx[0] = hwif->index;
659
660         if (ide_device_add(idx))
661                 return -EIO;
662
663         return 0;
664 }
665
666 static unsigned int __devinit
667 pci_init_sgiioc4(struct pci_dev *dev)
668 {
669         int ret;
670
671         printk(KERN_INFO "%s: IDE controller at PCI slot %s, revision %d\n",
672                          DRV_NAME, pci_name(dev), dev->revision);
673
674         if (dev->revision < IOC4_SUPPORTED_FIRMWARE_REV) {
675                 printk(KERN_ERR "Skipping %s IDE controller in slot %s: "
676                                 "firmware is obsolete - please upgrade to "
677                                 "revision46 or higher\n",
678                                 DRV_NAME, pci_name(dev));
679                 ret = -EAGAIN;
680                 goto out;
681         }
682         ret = sgiioc4_ide_setup_pci_device(dev);
683 out:
684         return ret;
685 }
686
687 int
688 ioc4_ide_attach_one(struct ioc4_driver_data *idd)
689 {
690         /* PCI-RT does not bring out IDE connection.
691          * Do not attach to this particular IOC4.
692          */
693         if (idd->idd_variant == IOC4_VARIANT_PCI_RT)
694                 return 0;
695
696         return pci_init_sgiioc4(idd->idd_pdev);
697 }
698
699 static struct ioc4_submodule ioc4_ide_submodule = {
700         .is_name = "IOC4_ide",
701         .is_owner = THIS_MODULE,
702         .is_probe = ioc4_ide_attach_one,
703 /*      .is_remove = ioc4_ide_remove_one,       */
704 };
705
706 static int __init ioc4_ide_init(void)
707 {
708         return ioc4_register_submodule(&ioc4_ide_submodule);
709 }
710
711 late_initcall(ioc4_ide_init); /* Call only after IDE init is done */
712
713 MODULE_AUTHOR("Aniket Malatpure/Jeremy Higdon");
714 MODULE_DESCRIPTION("IDE PCI driver module for SGI IOC4 Base-IO Card");
715 MODULE_LICENSE("GPL");