xref: /linux/arch/powerpc/platforms/ps3/spu.c (revision fab183d632628381b466a41479489541ac0e29a0)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  *  PS3 Platform spu routines.
4  *
5  *  Copyright (C) 2006 Sony Computer Entertainment Inc.
6  *  Copyright 2006 Sony Corp.
7  */
8 
9 #include <linux/kernel.h>
10 #include <linux/init.h>
11 #include <linux/slab.h>
12 #include <linux/mmzone.h>
13 #include <linux/export.h>
14 #include <linux/io.h>
15 #include <linux/mm.h>
16 #include <linux/processor.h>
17 
18 #include <asm/spu.h>
19 #include <asm/spu_priv1.h>
20 #include <asm/lv1call.h>
21 #include <asm/ps3.h>
22 
23 #include "../cell/spufs/spufs.h"
24 #include "platform.h"
25 
26 /* spu_management_ops */
27 
28 /**
29  * enum spe_type - Type of spe to create.
30  * @SPE_TYPE_LOGICAL: Standard logical spe.
31  *
32  * For use with lv1_construct_logical_spe().  The current HV does not support
33  * any types other than those listed.
34  */
35 
36 enum spe_type {
37 	SPE_TYPE_LOGICAL = 0,
38 };
39 
40 /**
41  * struct spe_shadow - logical spe shadow register area.
42  *
43  * Read-only shadow of spe registers.
44  */
45 
46 struct spe_shadow {
47 	u8 padding_0140[0x0140];
48 	u64 int_status_class0_RW;       /* 0x0140 */
49 	u64 int_status_class1_RW;       /* 0x0148 */
50 	u64 int_status_class2_RW;       /* 0x0150 */
51 	u8 padding_0158[0x0610-0x0158];
52 	u64 mfc_dsisr_RW;               /* 0x0610 */
53 	u8 padding_0618[0x0620-0x0618];
54 	u64 mfc_dar_RW;                 /* 0x0620 */
55 	u8 padding_0628[0x0800-0x0628];
56 	u64 mfc_dsipr_R;                /* 0x0800 */
57 	u8 padding_0808[0x0810-0x0808];
58 	u64 mfc_lscrr_R;                /* 0x0810 */
59 	u8 padding_0818[0x0c00-0x0818];
60 	u64 mfc_cer_R;                  /* 0x0c00 */
61 	u8 padding_0c08[0x0f00-0x0c08];
62 	u64 spe_execution_status;       /* 0x0f00 */
63 	u8 padding_0f08[0x1000-0x0f08];
64 };
65 
66 /**
67  * enum spe_ex_state - Logical spe execution state.
68  * @SPE_EX_STATE_UNEXECUTABLE: Uninitialized.
69  * @SPE_EX_STATE_EXECUTABLE: Enabled, not ready.
70  * @SPE_EX_STATE_EXECUTED: Ready for use.
71  *
72  * The execution state (status) of the logical spe as reported in
73  * struct spe_shadow:spe_execution_status.
74  */
75 
76 enum spe_ex_state {
77 	SPE_EX_STATE_UNEXECUTABLE = 0,
78 	SPE_EX_STATE_EXECUTABLE = 2,
79 	SPE_EX_STATE_EXECUTED = 3,
80 };
81 
82 /**
83  * struct priv1_cache - Cached values of priv1 registers.
84  * @masks[]: Array of cached spe interrupt masks, indexed by class.
85  * @sr1: Cached mfc_sr1 register.
86  * @tclass_id: Cached mfc_tclass_id register.
87  */
88 
89 struct priv1_cache {
90 	u64 masks[3];
91 	u64 sr1;
92 	u64 tclass_id;
93 };
94 
95 /**
96  * struct spu_pdata - Platform state variables.
97  * @spe_id: HV spe id returned by lv1_construct_logical_spe().
98  * @resource_id: HV spe resource id returned by
99  * 	ps3_repository_read_spe_resource_id().
100  * @priv2_addr: lpar address of spe priv2 area returned by
101  * 	lv1_construct_logical_spe().
102  * @shadow_addr: lpar address of spe register shadow area returned by
103  * 	lv1_construct_logical_spe().
104  * @shadow: Virtual (ioremap) address of spe register shadow area.
105  * @cache: Cached values of priv1 registers.
106  */
107 
108 struct spu_pdata {
109 	u64 spe_id;
110 	u64 resource_id;
111 	u64 priv2_addr;
112 	u64 shadow_addr;
113 	struct spe_shadow __iomem *shadow;
114 	struct priv1_cache cache;
115 };
116 
spu_pdata(struct spu * spu)117 static struct spu_pdata *spu_pdata(struct spu *spu)
118 {
119 	return spu->pdata;
120 }
121 
122 #define dump_areas(_a, _b, _c, _d, _e) \
123 	_dump_areas(_a, _b, _c, _d, _e, __func__, __LINE__)
_dump_areas(unsigned int spe_id,unsigned long priv2,unsigned long problem,unsigned long ls,unsigned long shadow,const char * func,int line)124 static void _dump_areas(unsigned int spe_id, unsigned long priv2,
125 	unsigned long problem, unsigned long ls, unsigned long shadow,
126 	const char* func, int line)
127 {
128 	pr_debug("%s:%d: spe_id:  %xh (%u)\n", func, line, spe_id, spe_id);
129 	pr_debug("%s:%d: priv2:   %lxh\n", func, line, priv2);
130 	pr_debug("%s:%d: problem: %lxh\n", func, line, problem);
131 	pr_debug("%s:%d: ls:      %lxh\n", func, line, ls);
132 	pr_debug("%s:%d: shadow:  %lxh\n", func, line, shadow);
133 }
134 
ps3_get_spe_id(void * arg)135 u64 ps3_get_spe_id(void *arg)
136 {
137 	return spu_pdata(arg)->spe_id;
138 }
139 EXPORT_SYMBOL_GPL(ps3_get_spe_id);
140 
get_vas_id(void)141 static unsigned long __init get_vas_id(void)
142 {
143 	u64 id;
144 
145 	lv1_get_logical_ppe_id(&id);
146 	lv1_get_virtual_address_space_id_of_ppe(&id);
147 
148 	return id;
149 }
150 
construct_spu(struct spu * spu)151 static int __init construct_spu(struct spu *spu)
152 {
153 	int result;
154 	u64 unused;
155 	u64 problem_phys;
156 	u64 local_store_phys;
157 
158 	result = lv1_construct_logical_spe(PAGE_SHIFT, PAGE_SHIFT, PAGE_SHIFT,
159 		PAGE_SHIFT, PAGE_SHIFT, get_vas_id(), SPE_TYPE_LOGICAL,
160 		&spu_pdata(spu)->priv2_addr, &problem_phys,
161 		&local_store_phys, &unused,
162 		&spu_pdata(spu)->shadow_addr,
163 		&spu_pdata(spu)->spe_id);
164 	spu->problem_phys = problem_phys;
165 	spu->local_store_phys = local_store_phys;
166 
167 	if (result) {
168 		pr_debug("%s:%d: lv1_construct_logical_spe failed: %s\n",
169 			__func__, __LINE__, ps3_result(result));
170 		return result;
171 	}
172 
173 	return result;
174 }
175 
spu_unmap(struct spu * spu)176 static void spu_unmap(struct spu *spu)
177 {
178 	iounmap(spu->priv2);
179 	iounmap(spu->problem);
180 	iounmap((__force u8 __iomem *)spu->local_store);
181 	iounmap(spu_pdata(spu)->shadow);
182 }
183 
184 /**
185  * setup_areas - Map the spu regions into the address space.
186  *
187  * The current HV requires the spu shadow regs to be mapped with the
188  * PTE page protection bits set as read-only.
189  *
190  * Returns: %0 on success or -errno on error.
191  */
192 
setup_areas(struct spu * spu)193 static int __init setup_areas(struct spu *spu)
194 {
195 	spu_pdata(spu)->shadow = ioremap_prot(spu_pdata(spu)->shadow_addr,
196 					      sizeof(struct spe_shadow),
197 					      pgprot_noncached_wc(PAGE_KERNEL_RO));
198 	if (!spu_pdata(spu)->shadow) {
199 		pr_debug("%s:%d: ioremap shadow failed\n", __func__, __LINE__);
200 		goto fail_ioremap;
201 	}
202 
203 	spu->local_store = (__force void *)ioremap_wc(spu->local_store_phys, LS_SIZE);
204 
205 	if (!spu->local_store) {
206 		pr_debug("%s:%d: ioremap local_store failed\n",
207 			__func__, __LINE__);
208 		goto fail_ioremap;
209 	}
210 
211 	spu->problem = ioremap(spu->problem_phys,
212 		sizeof(struct spu_problem));
213 
214 	if (!spu->problem) {
215 		pr_debug("%s:%d: ioremap problem failed\n", __func__, __LINE__);
216 		goto fail_ioremap;
217 	}
218 
219 	spu->priv2 = ioremap(spu_pdata(spu)->priv2_addr,
220 		sizeof(struct spu_priv2));
221 
222 	if (!spu->priv2) {
223 		pr_debug("%s:%d: ioremap priv2 failed\n", __func__, __LINE__);
224 		goto fail_ioremap;
225 	}
226 
227 	dump_areas(spu_pdata(spu)->spe_id, spu_pdata(spu)->priv2_addr,
228 		spu->problem_phys, spu->local_store_phys,
229 		spu_pdata(spu)->shadow_addr);
230 	dump_areas(spu_pdata(spu)->spe_id, (unsigned long)spu->priv2,
231 		(unsigned long)spu->problem, (unsigned long)spu->local_store,
232 		(unsigned long)spu_pdata(spu)->shadow);
233 
234 	return 0;
235 
236 fail_ioremap:
237 	spu_unmap(spu);
238 
239 	return -ENOMEM;
240 }
241 
setup_interrupts(struct spu * spu)242 static int __init setup_interrupts(struct spu *spu)
243 {
244 	int result;
245 
246 	result = ps3_spe_irq_setup(PS3_BINDING_CPU_ANY, spu_pdata(spu)->spe_id,
247 		0, &spu->irqs[0]);
248 
249 	if (result)
250 		goto fail_alloc_0;
251 
252 	result = ps3_spe_irq_setup(PS3_BINDING_CPU_ANY, spu_pdata(spu)->spe_id,
253 		1, &spu->irqs[1]);
254 
255 	if (result)
256 		goto fail_alloc_1;
257 
258 	result = ps3_spe_irq_setup(PS3_BINDING_CPU_ANY, spu_pdata(spu)->spe_id,
259 		2, &spu->irqs[2]);
260 
261 	if (result)
262 		goto fail_alloc_2;
263 
264 	return result;
265 
266 fail_alloc_2:
267 	ps3_spe_irq_destroy(spu->irqs[1]);
268 fail_alloc_1:
269 	ps3_spe_irq_destroy(spu->irqs[0]);
270 fail_alloc_0:
271 	spu->irqs[0] = spu->irqs[1] = spu->irqs[2] = 0;
272 	return result;
273 }
274 
enable_spu(struct spu * spu)275 static int __init enable_spu(struct spu *spu)
276 {
277 	int result;
278 
279 	result = lv1_enable_logical_spe(spu_pdata(spu)->spe_id,
280 		spu_pdata(spu)->resource_id);
281 
282 	if (result) {
283 		pr_debug("%s:%d: lv1_enable_logical_spe failed: %s\n",
284 			__func__, __LINE__, ps3_result(result));
285 		goto fail_enable;
286 	}
287 
288 	result = setup_areas(spu);
289 
290 	if (result)
291 		goto fail_areas;
292 
293 	result = setup_interrupts(spu);
294 
295 	if (result)
296 		goto fail_interrupts;
297 
298 	return 0;
299 
300 fail_interrupts:
301 	spu_unmap(spu);
302 fail_areas:
303 	lv1_disable_logical_spe(spu_pdata(spu)->spe_id, 0);
304 fail_enable:
305 	return result;
306 }
307 
ps3_destroy_spu(struct spu * spu)308 static int ps3_destroy_spu(struct spu *spu)
309 {
310 	int result;
311 
312 	pr_debug("%s:%d spu_%d\n", __func__, __LINE__, spu->number);
313 
314 	result = lv1_disable_logical_spe(spu_pdata(spu)->spe_id, 0);
315 	BUG_ON(result);
316 
317 	ps3_spe_irq_destroy(spu->irqs[2]);
318 	ps3_spe_irq_destroy(spu->irqs[1]);
319 	ps3_spe_irq_destroy(spu->irqs[0]);
320 
321 	spu->irqs[0] = spu->irqs[1] = spu->irqs[2] = 0;
322 
323 	spu_unmap(spu);
324 
325 	result = lv1_destruct_logical_spe(spu_pdata(spu)->spe_id);
326 	BUG_ON(result);
327 
328 	kfree(spu->pdata);
329 	spu->pdata = NULL;
330 
331 	return 0;
332 }
333 
ps3_create_spu(struct spu * spu,void * data)334 static int __init ps3_create_spu(struct spu *spu, void *data)
335 {
336 	int result;
337 
338 	pr_debug("%s:%d spu_%d\n", __func__, __LINE__, spu->number);
339 
340 	spu->pdata = kzalloc_obj(struct spu_pdata);
341 
342 	if (!spu->pdata) {
343 		result = -ENOMEM;
344 		goto fail_malloc;
345 	}
346 
347 	spu_pdata(spu)->resource_id = (unsigned long)data;
348 
349 	/* Init cached reg values to HV defaults. */
350 
351 	spu_pdata(spu)->cache.sr1 = 0x33;
352 
353 	result = construct_spu(spu);
354 
355 	if (result)
356 		goto fail_construct;
357 
358 	/* For now, just go ahead and enable it. */
359 
360 	result = enable_spu(spu);
361 
362 	if (result)
363 		goto fail_enable;
364 
365 	while (in_be64(&spu_pdata(spu)->shadow->spe_execution_status) !=
366 	       SPE_EX_STATE_EXECUTED)
367 		cpu_relax();
368 
369 	return result;
370 
371 fail_enable:
372 fail_construct:
373 	ps3_destroy_spu(spu);
374 fail_malloc:
375 	return result;
376 }
377 
ps3_enumerate_spus(int (* fn)(void * data))378 static int __init ps3_enumerate_spus(int (*fn)(void *data))
379 {
380 	int result;
381 	unsigned int num_resource_id;
382 	unsigned int i;
383 
384 	result = ps3_repository_read_num_spu_resource_id(&num_resource_id);
385 
386 	pr_debug("%s:%d: num_resource_id %u\n", __func__, __LINE__,
387 		num_resource_id);
388 
389 	/*
390 	 * For now, just create logical spus equal to the number
391 	 * of physical spus reserved for the partition.
392 	 */
393 
394 	for (i = 0; i < num_resource_id; i++) {
395 		enum ps3_spu_resource_type resource_type;
396 		unsigned int resource_id;
397 
398 		result = ps3_repository_read_spu_resource_id(i,
399 			&resource_type, &resource_id);
400 
401 		if (result)
402 			break;
403 
404 		if (resource_type == PS3_SPU_RESOURCE_TYPE_EXCLUSIVE) {
405 			result = fn((void*)(unsigned long)resource_id);
406 
407 			if (result)
408 				break;
409 		}
410 	}
411 
412 	if (result) {
413 		printk(KERN_WARNING "%s:%d: Error initializing spus\n",
414 			__func__, __LINE__);
415 		return result;
416 	}
417 
418 	return num_resource_id;
419 }
420 
ps3_init_affinity(void)421 static int ps3_init_affinity(void)
422 {
423 	return 0;
424 }
425 
426 /**
427  * ps3_enable_spu - Enable SPU run control.
428  *
429  * An outstanding enhancement for the PS3 would be to add a guard to check
430  * for incorrect access to the spu problem state when the spu context is
431  * disabled.  This check could be implemented with a flag added to the spu
432  * context that would inhibit mapping problem state pages, and a routine
433  * to unmap spu problem state pages.  When the spu is enabled with
434  * ps3_enable_spu() the flag would be set allowing pages to be mapped,
435  * and when the spu is disabled with ps3_disable_spu() the flag would be
436  * cleared and the mapped problem state pages would be unmapped.
437  */
438 
ps3_enable_spu(struct spu_context * ctx)439 static void ps3_enable_spu(struct spu_context *ctx)
440 {
441 }
442 
ps3_disable_spu(struct spu_context * ctx)443 static void ps3_disable_spu(struct spu_context *ctx)
444 {
445 	ctx->ops->runcntl_stop(ctx);
446 }
447 
448 static const struct spu_management_ops spu_management_ps3_ops = {
449 	.enumerate_spus = ps3_enumerate_spus,
450 	.create_spu = ps3_create_spu,
451 	.destroy_spu = ps3_destroy_spu,
452 	.enable_spu = ps3_enable_spu,
453 	.disable_spu = ps3_disable_spu,
454 	.init_affinity = ps3_init_affinity,
455 };
456 
457 /* spu_priv1_ops */
458 
int_mask_and(struct spu * spu,int class,u64 mask)459 static void int_mask_and(struct spu *spu, int class, u64 mask)
460 {
461 	u64 old_mask;
462 
463 	/* are these serialized by caller??? */
464 	old_mask = spu_int_mask_get(spu, class);
465 	spu_int_mask_set(spu, class, old_mask & mask);
466 }
467 
int_mask_or(struct spu * spu,int class,u64 mask)468 static void int_mask_or(struct spu *spu, int class, u64 mask)
469 {
470 	u64 old_mask;
471 
472 	old_mask = spu_int_mask_get(spu, class);
473 	spu_int_mask_set(spu, class, old_mask | mask);
474 }
475 
int_mask_set(struct spu * spu,int class,u64 mask)476 static void int_mask_set(struct spu *spu, int class, u64 mask)
477 {
478 	spu_pdata(spu)->cache.masks[class] = mask;
479 	lv1_set_spe_interrupt_mask(spu_pdata(spu)->spe_id, class,
480 		spu_pdata(spu)->cache.masks[class]);
481 }
482 
int_mask_get(struct spu * spu,int class)483 static u64 int_mask_get(struct spu *spu, int class)
484 {
485 	return spu_pdata(spu)->cache.masks[class];
486 }
487 
int_stat_clear(struct spu * spu,int class,u64 stat)488 static void int_stat_clear(struct spu *spu, int class, u64 stat)
489 {
490 	/* Note that MFC_DSISR will be cleared when class1[MF] is set. */
491 
492 	lv1_clear_spe_interrupt_status(spu_pdata(spu)->spe_id, class,
493 		stat, 0);
494 }
495 
int_stat_get(struct spu * spu,int class)496 static u64 int_stat_get(struct spu *spu, int class)
497 {
498 	u64 stat;
499 
500 	lv1_get_spe_interrupt_status(spu_pdata(spu)->spe_id, class, &stat);
501 	return stat;
502 }
503 
cpu_affinity_set(struct spu * spu,int cpu)504 static void cpu_affinity_set(struct spu *spu, int cpu)
505 {
506 	/* No support. */
507 }
508 
mfc_dar_get(struct spu * spu)509 static u64 mfc_dar_get(struct spu *spu)
510 {
511 	return in_be64(&spu_pdata(spu)->shadow->mfc_dar_RW);
512 }
513 
mfc_dsisr_set(struct spu * spu,u64 dsisr)514 static void mfc_dsisr_set(struct spu *spu, u64 dsisr)
515 {
516 	/* Nothing to do, cleared in int_stat_clear(). */
517 }
518 
mfc_dsisr_get(struct spu * spu)519 static u64 mfc_dsisr_get(struct spu *spu)
520 {
521 	return in_be64(&spu_pdata(spu)->shadow->mfc_dsisr_RW);
522 }
523 
mfc_sdr_setup(struct spu * spu)524 static void mfc_sdr_setup(struct spu *spu)
525 {
526 	/* Nothing to do. */
527 }
528 
mfc_sr1_set(struct spu * spu,u64 sr1)529 static void mfc_sr1_set(struct spu *spu, u64 sr1)
530 {
531 	/* Check bits allowed by HV. */
532 
533 	static const u64 allowed = ~(MFC_STATE1_LOCAL_STORAGE_DECODE_MASK
534 		| MFC_STATE1_PROBLEM_STATE_MASK);
535 
536 	BUG_ON((sr1 & allowed) != (spu_pdata(spu)->cache.sr1 & allowed));
537 
538 	spu_pdata(spu)->cache.sr1 = sr1;
539 	lv1_set_spe_privilege_state_area_1_register(
540 		spu_pdata(spu)->spe_id,
541 		offsetof(struct spu_priv1, mfc_sr1_RW),
542 		spu_pdata(spu)->cache.sr1);
543 }
544 
mfc_sr1_get(struct spu * spu)545 static u64 mfc_sr1_get(struct spu *spu)
546 {
547 	return spu_pdata(spu)->cache.sr1;
548 }
549 
mfc_tclass_id_set(struct spu * spu,u64 tclass_id)550 static void mfc_tclass_id_set(struct spu *spu, u64 tclass_id)
551 {
552 	spu_pdata(spu)->cache.tclass_id = tclass_id;
553 	lv1_set_spe_privilege_state_area_1_register(
554 		spu_pdata(spu)->spe_id,
555 		offsetof(struct spu_priv1, mfc_tclass_id_RW),
556 		spu_pdata(spu)->cache.tclass_id);
557 }
558 
mfc_tclass_id_get(struct spu * spu)559 static u64 mfc_tclass_id_get(struct spu *spu)
560 {
561 	return spu_pdata(spu)->cache.tclass_id;
562 }
563 
tlb_invalidate(struct spu * spu)564 static void tlb_invalidate(struct spu *spu)
565 {
566 	/* Nothing to do. */
567 }
568 
resource_allocation_groupID_set(struct spu * spu,u64 id)569 static void resource_allocation_groupID_set(struct spu *spu, u64 id)
570 {
571 	/* No support. */
572 }
573 
resource_allocation_groupID_get(struct spu * spu)574 static u64 resource_allocation_groupID_get(struct spu *spu)
575 {
576 	return 0; /* No support. */
577 }
578 
resource_allocation_enable_set(struct spu * spu,u64 enable)579 static void resource_allocation_enable_set(struct spu *spu, u64 enable)
580 {
581 	/* No support. */
582 }
583 
resource_allocation_enable_get(struct spu * spu)584 static u64 resource_allocation_enable_get(struct spu *spu)
585 {
586 	return 0; /* No support. */
587 }
588 
589 static const struct spu_priv1_ops spu_priv1_ps3_ops = {
590 	.int_mask_and = int_mask_and,
591 	.int_mask_or = int_mask_or,
592 	.int_mask_set = int_mask_set,
593 	.int_mask_get = int_mask_get,
594 	.int_stat_clear = int_stat_clear,
595 	.int_stat_get = int_stat_get,
596 	.cpu_affinity_set = cpu_affinity_set,
597 	.mfc_dar_get = mfc_dar_get,
598 	.mfc_dsisr_set = mfc_dsisr_set,
599 	.mfc_dsisr_get = mfc_dsisr_get,
600 	.mfc_sdr_setup = mfc_sdr_setup,
601 	.mfc_sr1_set = mfc_sr1_set,
602 	.mfc_sr1_get = mfc_sr1_get,
603 	.mfc_tclass_id_set = mfc_tclass_id_set,
604 	.mfc_tclass_id_get = mfc_tclass_id_get,
605 	.tlb_invalidate = tlb_invalidate,
606 	.resource_allocation_groupID_set = resource_allocation_groupID_set,
607 	.resource_allocation_groupID_get = resource_allocation_groupID_get,
608 	.resource_allocation_enable_set = resource_allocation_enable_set,
609 	.resource_allocation_enable_get = resource_allocation_enable_get,
610 };
611 
ps3_spu_set_platform(void)612 void ps3_spu_set_platform(void)
613 {
614 	spu_priv1_ops = &spu_priv1_ps3_ops;
615 	spu_management_ops = &spu_management_ps3_ops;
616 }
617