xref: /linux/arch/alpha/kernel/sys_dp264.c (revision 59e6295fac26b8e85c1ea859cdd89fa1e47519d7)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  *	linux/arch/alpha/kernel/sys_dp264.c
4  *
5  *	Copyright (C) 1995 David A Rusling
6  *	Copyright (C) 1996, 1999 Jay A Estabrook
7  *	Copyright (C) 1998, 1999 Richard Henderson
8  *
9  *	Modified by Christopher C. Chimelis, 2001 to
10  *	add support for the addition of Shark to the
11  *	Tsunami family.
12  *
13  * Code supporting the DP264 (EV6+TSUNAMI).
14  */
15 
16 #include <linux/kernel.h>
17 #include <linux/types.h>
18 #include <linux/mm.h>
19 #include <linux/sched.h>
20 #include <linux/pci.h>
21 #include <linux/init.h>
22 #include <linux/bitops.h>
23 
24 #include <asm/ptrace.h>
25 #include <asm/dma.h>
26 #include <asm/irq.h>
27 #include <asm/mmu_context.h>
28 #include <asm/io.h>
29 #include <asm/core_tsunami.h>
30 #include <asm/hwrpb.h>
31 #include <asm/tlbflush.h>
32 
33 #include "proto.h"
34 #include "irq_impl.h"
35 #include "pci_impl.h"
36 #include "machvec_impl.h"
37 
38 
39 /* Note mask bit is true for ENABLED irqs.  */
40 static unsigned long cached_irq_mask;
41 /* dp264 boards handle at max four CPUs */
42 static unsigned long cpu_irq_affinity[4] = { 0UL, 0UL, 0UL, 0UL };
43 
44 static DEFINE_RAW_SPINLOCK(dp264_irq_lock);
45 
46 static void
47 tsunami_update_irq_hw(unsigned long mask)
48 {
49 	register tsunami_cchip *cchip = TSUNAMI_cchip;
50 	unsigned long isa_enable = 1UL << 55;
51 	register int bcpu = boot_cpuid;
52 
53 #ifdef CONFIG_SMP
54 	volatile unsigned long *dim0, *dim1, *dim2, *dim3;
55 	unsigned long mask0, mask1, mask2, mask3, dummy;
56 
57 	mask &= ~isa_enable;
58 	mask0 = mask & cpu_irq_affinity[0];
59 	mask1 = mask & cpu_irq_affinity[1];
60 	mask2 = mask & cpu_irq_affinity[2];
61 	mask3 = mask & cpu_irq_affinity[3];
62 
63 	if (bcpu == 0) mask0 |= isa_enable;
64 	else if (bcpu == 1) mask1 |= isa_enable;
65 	else if (bcpu == 2) mask2 |= isa_enable;
66 	else mask3 |= isa_enable;
67 
68 	dim0 = &cchip->dim0.csr;
69 	dim1 = &cchip->dim1.csr;
70 	dim2 = &cchip->dim2.csr;
71 	dim3 = &cchip->dim3.csr;
72 	if (!cpu_possible(0)) dim0 = &dummy;
73 	if (!cpu_possible(1)) dim1 = &dummy;
74 	if (!cpu_possible(2)) dim2 = &dummy;
75 	if (!cpu_possible(3)) dim3 = &dummy;
76 
77 	*dim0 = mask0;
78 	*dim1 = mask1;
79 	*dim2 = mask2;
80 	*dim3 = mask3;
81 	mb();
82 	*dim0;
83 	*dim1;
84 	*dim2;
85 	*dim3;
86 #else
87 	volatile unsigned long *dimB;
88 	if (bcpu == 0) dimB = &cchip->dim0.csr;
89 	else if (bcpu == 1) dimB = &cchip->dim1.csr;
90 	else if (bcpu == 2) dimB = &cchip->dim2.csr;
91 	else dimB = &cchip->dim3.csr;
92 
93 	*dimB = mask | isa_enable;
94 	mb();
95 	*dimB;
96 #endif
97 }
98 
99 static void
100 dp264_enable_irq(struct irq_data *d)
101 {
102 	unsigned long flags;
103 
104 	raw_spin_lock_irqsave(&dp264_irq_lock, flags);
105 	cached_irq_mask |= 1UL << d->irq;
106 	tsunami_update_irq_hw(cached_irq_mask);
107 	raw_spin_unlock_irqrestore(&dp264_irq_lock, flags);
108 }
109 
110 static void
111 dp264_disable_irq(struct irq_data *d)
112 {
113 	unsigned long flags;
114 
115 	raw_spin_lock_irqsave(&dp264_irq_lock, flags);
116 	cached_irq_mask &= ~(1UL << d->irq);
117 	tsunami_update_irq_hw(cached_irq_mask);
118 	raw_spin_unlock_irqrestore(&dp264_irq_lock, flags);
119 }
120 
121 static void
122 clipper_enable_irq(struct irq_data *d)
123 {
124 	unsigned long flags;
125 
126 	raw_spin_lock_irqsave(&dp264_irq_lock, flags);
127 	cached_irq_mask |= 1UL << (d->irq - 16);
128 	tsunami_update_irq_hw(cached_irq_mask);
129 	raw_spin_unlock_irqrestore(&dp264_irq_lock, flags);
130 }
131 
132 static void
133 clipper_disable_irq(struct irq_data *d)
134 {
135 	unsigned long flags;
136 
137 	raw_spin_lock_irqsave(&dp264_irq_lock, flags);
138 	cached_irq_mask &= ~(1UL << (d->irq - 16));
139 	tsunami_update_irq_hw(cached_irq_mask);
140 	raw_spin_unlock_irqrestore(&dp264_irq_lock, flags);
141 }
142 
143 static void
144 cpu_set_irq_affinity(unsigned int irq, cpumask_t affinity)
145 {
146 	int cpu;
147 
148 	for (cpu = 0; cpu < 4; cpu++) {
149 		unsigned long aff = cpu_irq_affinity[cpu];
150 		if (cpumask_test_cpu(cpu, &affinity))
151 			aff |= 1UL << irq;
152 		else
153 			aff &= ~(1UL << irq);
154 		cpu_irq_affinity[cpu] = aff;
155 	}
156 }
157 
158 static int
159 dp264_set_affinity(struct irq_data *d, const struct cpumask *affinity,
160 		   bool force)
161 {
162 	unsigned long flags;
163 
164 	raw_spin_lock_irqsave(&dp264_irq_lock, flags);
165 	cpu_set_irq_affinity(d->irq, *affinity);
166 	tsunami_update_irq_hw(cached_irq_mask);
167 	raw_spin_unlock_irqrestore(&dp264_irq_lock, flags);
168 
169 	return 0;
170 }
171 
172 static int
173 clipper_set_affinity(struct irq_data *d, const struct cpumask *affinity,
174 		     bool force)
175 {
176 	unsigned long flags;
177 
178 	raw_spin_lock_irqsave(&dp264_irq_lock, flags);
179 	cpu_set_irq_affinity(d->irq - 16, *affinity);
180 	tsunami_update_irq_hw(cached_irq_mask);
181 	raw_spin_unlock_irqrestore(&dp264_irq_lock, flags);
182 
183 	return 0;
184 }
185 
186 static struct irq_chip dp264_irq_type = {
187 	.name			= "DP264",
188 	.irq_unmask		= dp264_enable_irq,
189 	.irq_mask		= dp264_disable_irq,
190 	.irq_mask_ack		= dp264_disable_irq,
191 	.irq_set_affinity	= dp264_set_affinity,
192 };
193 
194 static struct irq_chip clipper_irq_type = {
195 	.name			= "CLIPPER",
196 	.irq_unmask		= clipper_enable_irq,
197 	.irq_mask		= clipper_disable_irq,
198 	.irq_mask_ack		= clipper_disable_irq,
199 	.irq_set_affinity	= clipper_set_affinity,
200 };
201 
202 static void
203 dp264_device_interrupt(unsigned long vector)
204 {
205 	unsigned long pld;
206 	unsigned int i;
207 
208 	/* Read the interrupt summary register of TSUNAMI */
209 	pld = TSUNAMI_cchip->dir0.csr;
210 
211 	/*
212 	 * Now for every possible bit set, work through them and call
213 	 * the appropriate interrupt handler.
214 	 */
215 	while (pld) {
216 		i = ffz(~pld);
217 		pld &= pld - 1; /* clear least bit set */
218 		if (i == 55)
219 			isa_device_interrupt(vector);
220 		else
221 			handle_irq(16 + i);
222 	}
223 }
224 
225 static void
226 dp264_srm_device_interrupt(unsigned long vector)
227 {
228 	int irq;
229 
230 	irq = (vector - 0x800) >> 4;
231 
232 	/*
233 	 * The SRM console reports PCI interrupts with a vector calculated by:
234 	 *
235 	 *	0x900 + (0x10 * DRIR-bit)
236 	 *
237 	 * So bit 16 shows up as IRQ 32, etc.
238 	 *
239 	 * On DP264/BRICK/MONET, we adjust it down by 16 because at least
240 	 * that many of the low order bits of the DRIR are not used, and
241 	 * so we don't count them.
242 	 */
243 	if (irq >= 32)
244 		irq -= 16;
245 
246 	handle_irq(irq);
247 }
248 
249 static void
250 clipper_srm_device_interrupt(unsigned long vector)
251 {
252 	int irq;
253 
254 	irq = (vector - 0x800) >> 4;
255 
256 /*
257 	 * The SRM console reports PCI interrupts with a vector calculated by:
258 	 *
259 	 *	0x900 + (0x10 * DRIR-bit)
260 	 *
261 	 * So bit 16 shows up as IRQ 32, etc.
262 	 *
263 	 * CLIPPER uses bits 8-47 for PCI interrupts, so we do not need
264 	 * to scale down the vector reported, we just use it.
265 	 *
266 	 * Eg IRQ 24 is DRIR bit 8, etc, etc
267 	 */
268 	handle_irq(irq);
269 }
270 
271 static void __init
272 init_tsunami_irqs(struct irq_chip * ops, int imin, int imax)
273 {
274 	long i;
275 	for (i = imin; i <= imax; ++i) {
276 		irq_set_chip_and_handler(i, ops, handle_level_irq);
277 		irq_set_status_flags(i, IRQ_LEVEL);
278 	}
279 }
280 
281 static void __init
282 dp264_init_irq(void)
283 {
284 	outb(0, DMA1_RESET_REG);
285 	outb(0, DMA2_RESET_REG);
286 	outb(DMA_MODE_CASCADE, DMA2_MODE_REG);
287 	outb(0, DMA2_MASK_REG);
288 
289 	if (alpha_using_srm)
290 		alpha_mv.device_interrupt = dp264_srm_device_interrupt;
291 
292 	tsunami_update_irq_hw(0);
293 
294 	init_i8259a_irqs();
295 	init_tsunami_irqs(&dp264_irq_type, 16, 47);
296 }
297 
298 static void __init
299 clipper_init_irq(void)
300 {
301 	outb(0, DMA1_RESET_REG);
302 	outb(0, DMA2_RESET_REG);
303 	outb(DMA_MODE_CASCADE, DMA2_MODE_REG);
304 	outb(0, DMA2_MASK_REG);
305 
306 	if (alpha_using_srm)
307 		alpha_mv.device_interrupt = clipper_srm_device_interrupt;
308 
309 	tsunami_update_irq_hw(0);
310 
311 	init_i8259a_irqs();
312 	init_tsunami_irqs(&clipper_irq_type, 24, 63);
313 }
314 
315 
316 /*
317  * PCI Fixup configuration.
318  *
319  * Summary @ TSUNAMI_CSR_DIM0:
320  * Bit      Meaning
321  * 0-17     Unused
322  *18        Interrupt SCSI B (Adaptec 7895 builtin)
323  *19        Interrupt SCSI A (Adaptec 7895 builtin)
324  *20        Interrupt Line D from slot 2 PCI0
325  *21        Interrupt Line C from slot 2 PCI0
326  *22        Interrupt Line B from slot 2 PCI0
327  *23        Interrupt Line A from slot 2 PCI0
328  *24        Interrupt Line D from slot 1 PCI0
329  *25        Interrupt Line C from slot 1 PCI0
330  *26        Interrupt Line B from slot 1 PCI0
331  *27        Interrupt Line A from slot 1 PCI0
332  *28        Interrupt Line D from slot 0 PCI0
333  *29        Interrupt Line C from slot 0 PCI0
334  *30        Interrupt Line B from slot 0 PCI0
335  *31        Interrupt Line A from slot 0 PCI0
336  *
337  *32        Interrupt Line D from slot 3 PCI1
338  *33        Interrupt Line C from slot 3 PCI1
339  *34        Interrupt Line B from slot 3 PCI1
340  *35        Interrupt Line A from slot 3 PCI1
341  *36        Interrupt Line D from slot 2 PCI1
342  *37        Interrupt Line C from slot 2 PCI1
343  *38        Interrupt Line B from slot 2 PCI1
344  *39        Interrupt Line A from slot 2 PCI1
345  *40        Interrupt Line D from slot 1 PCI1
346  *41        Interrupt Line C from slot 1 PCI1
347  *42        Interrupt Line B from slot 1 PCI1
348  *43        Interrupt Line A from slot 1 PCI1
349  *44        Interrupt Line D from slot 0 PCI1
350  *45        Interrupt Line C from slot 0 PCI1
351  *46        Interrupt Line B from slot 0 PCI1
352  *47        Interrupt Line A from slot 0 PCI1
353  *48-52     Unused
354  *53        PCI0 NMI (from Cypress)
355  *54        PCI0 SMI INT (from Cypress)
356  *55        PCI0 ISA Interrupt (from Cypress)
357  *56-60     Unused
358  *61        PCI1 Bus Error
359  *62        PCI0 Bus Error
360  *63        Reserved
361  *
362  * IdSel
363  *   5	 Cypress Bridge I/O
364  *   6	 SCSI Adaptec builtin
365  *   7	 64 bit PCI option slot 0 (all busses)
366  *   8	 64 bit PCI option slot 1 (all busses)
367  *   9	 64 bit PCI option slot 2 (all busses)
368  *  10	 64 bit PCI option slot 3 (not bus 0)
369  */
370 
371 static int
372 isa_irq_fixup(const struct pci_dev *dev, int irq)
373 {
374 	u8 irq8;
375 
376 	if (irq > 0)
377 		return irq;
378 
379 	/* This interrupt is routed via ISA bridge, so we'll
380 	   just have to trust whatever value the console might
381 	   have assigned.  */
382 	pci_read_config_byte(dev, PCI_INTERRUPT_LINE, &irq8);
383 
384 	return irq8 & 0xf;
385 }
386 
387 static int
388 dp264_map_irq(const struct pci_dev *dev, u8 slot, u8 pin)
389 {
390 	static char irq_tab[6][5] = {
391 		/*INT    INTA   INTB   INTC   INTD */
392 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 5 ISA Bridge */
393 		{ 16+ 3, 16+ 3, 16+ 2, 16+ 2, 16+ 2}, /* IdSel 6 SCSI builtin*/
394 		{ 16+15, 16+15, 16+14, 16+13, 16+12}, /* IdSel 7 slot 0 */
395 		{ 16+11, 16+11, 16+10, 16+ 9, 16+ 8}, /* IdSel 8 slot 1 */
396 		{ 16+ 7, 16+ 7, 16+ 6, 16+ 5, 16+ 4}, /* IdSel 9 slot 2 */
397 		{ 16+ 3, 16+ 3, 16+ 2, 16+ 1, 16+ 0}  /* IdSel 10 slot 3 */
398 	};
399 	const long min_idsel = 5, max_idsel = 10, irqs_per_slot = 5;
400 	struct pci_controller *hose = dev->sysdata;
401 	int irq = COMMON_TABLE_LOOKUP;
402 
403 	if (irq > 0)
404 		irq += 16 * hose->index;
405 
406 	return isa_irq_fixup(dev, irq);
407 }
408 
409 static int
410 monet_map_irq(const struct pci_dev *dev, u8 slot, u8 pin)
411 {
412 	static char irq_tab[13][5] = {
413 		/*INT    INTA   INTB   INTC   INTD */
414 		{    45,    45,    45,    45,    45}, /* IdSel 3 21143 PCI1 */
415 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 4 unused */
416 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 5 unused */
417 		{    47,    47,    47,    47,    47}, /* IdSel 6 SCSI PCI1 */
418 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 7 ISA Bridge */
419 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 8 P2P PCI1 */
420 #if 1
421 		{    28,    28,    29,    30,    31}, /* IdSel 14 slot 4 PCI2*/
422 		{    24,    24,    25,    26,    27}, /* IdSel 15 slot 5 PCI2*/
423 #else
424 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 9 unused */
425 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 10 unused */
426 #endif
427 		{    40,    40,    41,    42,    43}, /* IdSel 11 slot 1 PCI0*/
428 		{    36,    36,    37,    38,    39}, /* IdSel 12 slot 2 PCI0*/
429 		{    32,    32,    33,    34,    35}, /* IdSel 13 slot 3 PCI0*/
430 		{    28,    28,    29,    30,    31}, /* IdSel 14 slot 4 PCI2*/
431 		{    24,    24,    25,    26,    27}  /* IdSel 15 slot 5 PCI2*/
432 	};
433 	const long min_idsel = 3, max_idsel = 15, irqs_per_slot = 5;
434 
435 	return isa_irq_fixup(dev, COMMON_TABLE_LOOKUP);
436 }
437 
438 static u8
439 monet_swizzle(struct pci_dev *dev, u8 *pinp)
440 {
441 	struct pci_controller *hose = dev->sysdata;
442 	int slot, pin = *pinp;
443 
444 	if (!dev->bus->parent) {
445 		slot = PCI_SLOT(dev->devfn);
446 	}
447 	/* Check for the built-in bridge on hose 1. */
448 	else if (hose->index == 1 && PCI_SLOT(dev->bus->self->devfn) == 8) {
449 		slot = PCI_SLOT(dev->devfn);
450 	} else {
451 		/* Must be a card-based bridge.  */
452 		do {
453 			/* Check for built-in bridge on hose 1. */
454 			if (hose->index == 1 &&
455 			    PCI_SLOT(dev->bus->self->devfn) == 8) {
456 				slot = PCI_SLOT(dev->devfn);
457 				break;
458 			}
459 			pin = pci_swizzle_interrupt_pin(dev, pin);
460 
461 			/* Move up the chain of bridges.  */
462 			dev = dev->bus->self;
463 			/* Slot of the next bridge.  */
464 			slot = PCI_SLOT(dev->devfn);
465 		} while (dev->bus->self);
466 	}
467 	*pinp = pin;
468 	return slot;
469 }
470 
471 static int
472 webbrick_map_irq(const struct pci_dev *dev, u8 slot, u8 pin)
473 {
474 	static char irq_tab[13][5] = {
475 		/*INT    INTA   INTB   INTC   INTD */
476 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 7 ISA Bridge */
477 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 8 unused */
478 		{    29,    29,    29,    29,    29}, /* IdSel 9 21143 #1 */
479 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 10 unused */
480 		{    30,    30,    30,    30,    30}, /* IdSel 11 21143 #2 */
481 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 12 unused */
482 		{    -1,    -1,    -1,    -1,    -1}, /* IdSel 13 unused */
483 		{    35,    35,    34,    33,    32}, /* IdSel 14 slot 0 */
484 		{    39,    39,    38,    37,    36}, /* IdSel 15 slot 1 */
485 		{    43,    43,    42,    41,    40}, /* IdSel 16 slot 2 */
486 		{    47,    47,    46,    45,    44}, /* IdSel 17 slot 3 */
487 	};
488 	const long min_idsel = 7, max_idsel = 17, irqs_per_slot = 5;
489 
490 	return isa_irq_fixup(dev, COMMON_TABLE_LOOKUP);
491 }
492 
493 static int
494 clipper_map_irq(const struct pci_dev *dev, u8 slot, u8 pin)
495 {
496 	static char irq_tab[7][5] = {
497 		/*INT    INTA   INTB   INTC   INTD */
498 		{ 16+ 8, 16+ 8, 16+ 9, 16+10, 16+11}, /* IdSel 1 slot 1 */
499 		{ 16+12, 16+12, 16+13, 16+14, 16+15}, /* IdSel 2 slot 2 */
500 		{ 16+16, 16+16, 16+17, 16+18, 16+19}, /* IdSel 3 slot 3 */
501 		{ 16+20, 16+20, 16+21, 16+22, 16+23}, /* IdSel 4 slot 4 */
502 		{ 16+24, 16+24, 16+25, 16+26, 16+27}, /* IdSel 5 slot 5 */
503 		{ 16+28, 16+28, 16+29, 16+30, 16+31}, /* IdSel 6 slot 6 */
504 		{    -1,    -1,    -1,    -1,    -1}  /* IdSel 7 ISA Bridge */
505 	};
506 	const long min_idsel = 1, max_idsel = 7, irqs_per_slot = 5;
507 	struct pci_controller *hose = dev->sysdata;
508 	int irq = COMMON_TABLE_LOOKUP;
509 
510 	if (irq > 0)
511 		irq += 16 * hose->index;
512 
513 	return isa_irq_fixup(dev, irq);
514 }
515 
516 static void __init
517 dp264_init_pci(void)
518 {
519 	common_init_pci();
520 	SMC669_Init(0);
521 	locate_and_init_vga(NULL);
522 }
523 
524 static void __init
525 monet_init_pci(void)
526 {
527 	common_init_pci();
528 	SMC669_Init(1);
529 	es1888_init();
530 	locate_and_init_vga(NULL);
531 }
532 
533 static void __init
534 clipper_init_pci(void)
535 {
536 	common_init_pci();
537 	locate_and_init_vga(NULL);
538 }
539 
540 static void __init
541 webbrick_init_arch(void)
542 {
543 	tsunami_init_arch();
544 
545 	/* Tsunami caches 4 PTEs at a time; DS10 has only 1 hose. */
546 	hose_head->sg_isa->align_entry = 4;
547 	hose_head->sg_pci->align_entry = 4;
548 }
549 
550 
551 /*
552  * The System Vectors
553  */
554 
555 struct alpha_machine_vector dp264_mv __initmv = {
556 	.vector_name		= "DP264",
557 	DO_EV6_MMU,
558 	DO_DEFAULT_RTC,
559 	DO_TSUNAMI_IO,
560 	.machine_check		= tsunami_machine_check,
561 	.max_isa_dma_address	= ALPHA_MAX_ISA_DMA_ADDRESS,
562 	.min_io_address		= DEFAULT_IO_BASE,
563 	.min_mem_address	= DEFAULT_MEM_BASE,
564 	.pci_dac_offset		= TSUNAMI_DAC_OFFSET,
565 
566 	.nr_irqs		= 64,
567 	.device_interrupt	= dp264_device_interrupt,
568 
569 	.init_arch		= tsunami_init_arch,
570 	.init_irq		= dp264_init_irq,
571 	.init_rtc		= common_init_rtc,
572 	.init_pci		= dp264_init_pci,
573 	.kill_arch		= tsunami_kill_arch,
574 	.pci_map_irq		= dp264_map_irq,
575 	.pci_swizzle		= common_swizzle,
576 };
577 ALIAS_MV(dp264)
578 
579 struct alpha_machine_vector monet_mv __initmv = {
580 	.vector_name		= "Monet",
581 	DO_EV6_MMU,
582 	DO_DEFAULT_RTC,
583 	DO_TSUNAMI_IO,
584 	.machine_check		= tsunami_machine_check,
585 	.max_isa_dma_address	= ALPHA_MAX_ISA_DMA_ADDRESS,
586 	.min_io_address		= DEFAULT_IO_BASE,
587 	.min_mem_address	= DEFAULT_MEM_BASE,
588 	.pci_dac_offset		= TSUNAMI_DAC_OFFSET,
589 
590 	.nr_irqs		= 64,
591 	.device_interrupt	= dp264_device_interrupt,
592 
593 	.init_arch		= tsunami_init_arch,
594 	.init_irq		= dp264_init_irq,
595 	.init_rtc		= common_init_rtc,
596 	.init_pci		= monet_init_pci,
597 	.kill_arch		= tsunami_kill_arch,
598 	.pci_map_irq		= monet_map_irq,
599 	.pci_swizzle		= monet_swizzle,
600 };
601 
602 struct alpha_machine_vector webbrick_mv __initmv = {
603 	.vector_name		= "Webbrick",
604 	DO_EV6_MMU,
605 	DO_DEFAULT_RTC,
606 	DO_TSUNAMI_IO,
607 	.machine_check		= tsunami_machine_check,
608 	.max_isa_dma_address	= ALPHA_MAX_ISA_DMA_ADDRESS,
609 	.min_io_address		= DEFAULT_IO_BASE,
610 	.min_mem_address	= DEFAULT_MEM_BASE,
611 	.pci_dac_offset		= TSUNAMI_DAC_OFFSET,
612 
613 	.nr_irqs		= 64,
614 	.device_interrupt	= dp264_device_interrupt,
615 
616 	.init_arch		= webbrick_init_arch,
617 	.init_irq		= dp264_init_irq,
618 	.init_rtc		= common_init_rtc,
619 	.init_pci		= common_init_pci,
620 	.kill_arch		= tsunami_kill_arch,
621 	.pci_map_irq		= webbrick_map_irq,
622 	.pci_swizzle		= common_swizzle,
623 };
624 
625 struct alpha_machine_vector clipper_mv __initmv = {
626 	.vector_name		= "Clipper",
627 	DO_EV6_MMU,
628 	DO_DEFAULT_RTC,
629 	DO_TSUNAMI_IO,
630 	.machine_check		= tsunami_machine_check,
631 	.max_isa_dma_address	= ALPHA_MAX_ISA_DMA_ADDRESS,
632 	.min_io_address		= DEFAULT_IO_BASE,
633 	.min_mem_address	= DEFAULT_MEM_BASE,
634 	.pci_dac_offset		= TSUNAMI_DAC_OFFSET,
635 
636 	.nr_irqs		= 64,
637 	.device_interrupt	= dp264_device_interrupt,
638 
639 	.init_arch		= tsunami_init_arch,
640 	.init_irq		= clipper_init_irq,
641 	.init_rtc		= common_init_rtc,
642 	.init_pci		= clipper_init_pci,
643 	.kill_arch		= tsunami_kill_arch,
644 	.pci_map_irq		= clipper_map_irq,
645 	.pci_swizzle		= common_swizzle,
646 };
647 
648 /* Sharks strongly resemble Clipper, at least as far
649  * as interrupt routing, etc, so we're using the
650  * same functions as Clipper does
651  */
652 
653 struct alpha_machine_vector shark_mv __initmv = {
654 	.vector_name		= "Shark",
655 	DO_EV6_MMU,
656 	DO_DEFAULT_RTC,
657 	DO_TSUNAMI_IO,
658 	.machine_check		= tsunami_machine_check,
659 	.max_isa_dma_address	= ALPHA_MAX_ISA_DMA_ADDRESS,
660 	.min_io_address		= DEFAULT_IO_BASE,
661 	.min_mem_address	= DEFAULT_MEM_BASE,
662 	.pci_dac_offset		= TSUNAMI_DAC_OFFSET,
663 
664 	.nr_irqs		= 64,
665 	.device_interrupt	= dp264_device_interrupt,
666 
667 	.init_arch		= tsunami_init_arch,
668 	.init_irq		= clipper_init_irq,
669 	.init_rtc		= common_init_rtc,
670 	.init_pci		= common_init_pci,
671 	.kill_arch		= tsunami_kill_arch,
672 	.pci_map_irq		= clipper_map_irq,
673 	.pci_swizzle		= common_swizzle,
674 };
675 
676 /* No alpha_mv alias for webbrick/monet/clipper, since we compile them
677    in unconditionally with DP264; setup_arch knows how to cope.  */
678