2 * This file is subject to the terms and conditions of the GNU General Public
3 * License. See the file "COPYING" in the main directory of this archive
6 * Copyright (C) 2004, 2005 MIPS Technologies, Inc. All rights reserved.
7 * Copyright (C) 2013 Imagination Technologies Ltd.
9 #include <linux/kernel.h>
10 #include <linux/device.h>
12 #include <linux/slab.h>
13 #include <linux/export.h>
15 #include <asm/mipsregs.h>
16 #include <asm/mipsmtregs.h>
17 #include <asm/mips_mt.h>
22 /* The number of TCs and VPEs physically available on the core */
23 static int hw_tcs
, hw_vpes
;
25 /* We are prepared so configure and start the VPE... */
26 int vpe_run(struct vpe
*v
)
28 unsigned long flags
, val
, dmt_flag
;
29 struct vpe_notifications
*notifier
;
30 unsigned int vpeflags
;
33 /* check we are the Master VPE */
34 local_irq_save(flags
);
35 val
= read_c0_vpeconf0();
36 if (!(val
& VPECONF0_MVP
)) {
37 pr_warn("VPE loader: only Master VPE's are able to config MT\n");
38 local_irq_restore(flags
);
46 if (list_empty(&v
->tc
)) {
49 local_irq_restore(flags
);
51 pr_warn("VPE loader: No TC's associated with VPE %d\n",
57 t
= list_first_entry(&v
->tc
, struct tc
, tc
);
59 /* Put MVPE's into 'configuration state' */
60 set_c0_mvpcontrol(MVPCONTROL_VPC
);
64 /* should check it is halted, and not activated */
65 if ((read_tc_c0_tcstatus() & TCSTATUS_A
) ||
66 !(read_tc_c0_tchalt() & TCHALT_H
)) {
69 local_irq_restore(flags
);
71 pr_warn("VPE loader: TC %d is already active!\n",
78 * Write the address we want it to start running from in the TCPC
81 write_tc_c0_tcrestart((unsigned long)v
->__start
);
82 write_tc_c0_tccontext((unsigned long)0);
85 * Mark the TC as activated, not interrupt exempt and not dynamically
88 val
= read_tc_c0_tcstatus();
89 val
= (val
& ~(TCSTATUS_DA
| TCSTATUS_IXMT
)) | TCSTATUS_A
;
90 write_tc_c0_tcstatus(val
);
92 write_tc_c0_tchalt(read_tc_c0_tchalt() & ~TCHALT_H
);
95 * The sde-kit passes 'memsize' to __start in $a3, so set something
96 * here... Or set $a3 to zero and define DFLT_STACK_SIZE and
97 * DFLT_HEAP_SIZE when you compile your program
100 mttgpr(7, physical_memsize
);
104 * bind the TC to VPE 1 as late as possible so we only have the final
105 * VPE registers to set up, and so an EJTAG probe can trigger on it
107 write_tc_c0_tcbind((read_tc_c0_tcbind() & ~TCBIND_CURVPE
) | 1);
109 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() & ~(VPECONF0_VPA
));
111 back_to_back_c0_hazard();
113 /* Set up the XTC bit in vpeconf0 to point at our tc */
114 write_vpe_c0_vpeconf0((read_vpe_c0_vpeconf0() & ~(VPECONF0_XTC
))
115 | (t
->index
<< VPECONF0_XTC_SHIFT
));
117 back_to_back_c0_hazard();
119 /* enable this VPE */
120 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() | VPECONF0_VPA
);
122 /* clear out any left overs from a previous program */
123 write_vpe_c0_status(0);
124 write_vpe_c0_cause(0);
126 /* take system out of configuration state */
127 clear_c0_mvpcontrol(MVPCONTROL_VPC
);
130 * SMVP kernels manage VPE enable independently, but uniprocessor
131 * kernels need to turn it on, even if that wasn't the pre-dvpe() state.
139 local_irq_restore(flags
);
141 list_for_each_entry(notifier
, &v
->notify
, list
)
142 notifier
->start(VPE_MODULE_MINOR
);
147 void cleanup_tc(struct tc
*tc
)
150 unsigned int mtflags
, vpflags
;
153 local_irq_save(flags
);
156 /* Put MVPE's into 'configuration state' */
157 set_c0_mvpcontrol(MVPCONTROL_VPC
);
160 tmp
= read_tc_c0_tcstatus();
162 /* mark not allocated and not dynamically allocatable */
163 tmp
&= ~(TCSTATUS_A
| TCSTATUS_DA
);
164 tmp
|= TCSTATUS_IXMT
; /* interrupt exempt */
165 write_tc_c0_tcstatus(tmp
);
167 write_tc_c0_tchalt(TCHALT_H
);
170 clear_c0_mvpcontrol(MVPCONTROL_VPC
);
173 local_irq_restore(flags
);
176 /* module wrapper entry points */
178 void *vpe_alloc(void)
184 for (i
= 1; i
< MAX_VPES
; i
++) {
187 v
->state
= VPE_STATE_INUSE
;
193 EXPORT_SYMBOL(vpe_alloc
);
195 /* start running from here */
196 int vpe_start(void *vpe
, unsigned long start
)
203 EXPORT_SYMBOL(vpe_start
);
205 /* halt it for now */
206 int vpe_stop(void *vpe
)
210 unsigned int evpe_flags
;
214 t
= list_entry(v
->tc
.next
, struct tc
, tc
);
217 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() & ~VPECONF0_VPA
);
224 EXPORT_SYMBOL(vpe_stop
);
226 /* I've done with it thank you */
227 int vpe_free(void *vpe
)
231 unsigned int evpe_flags
;
233 t
= list_entry(v
->tc
.next
, struct tc
, tc
);
239 /* Put MVPE's into 'configuration state' */
240 set_c0_mvpcontrol(MVPCONTROL_VPC
);
243 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() & ~VPECONF0_VPA
);
246 write_tc_c0_tchalt(TCHALT_H
);
249 /* mark the TC unallocated */
250 write_tc_c0_tcstatus(read_tc_c0_tcstatus() & ~TCSTATUS_A
);
252 v
->state
= VPE_STATE_UNUSED
;
254 clear_c0_mvpcontrol(MVPCONTROL_VPC
);
259 EXPORT_SYMBOL(vpe_free
);
261 static ssize_t
store_kill(struct device
*dev
, struct device_attribute
*attr
,
262 const char *buf
, size_t len
)
264 struct vpe
*vpe
= get_vpe(aprp_cpu_index());
265 struct vpe_notifications
*notifier
;
267 list_for_each_entry(notifier
, &vpe
->notify
, list
)
268 notifier
->stop(aprp_cpu_index());
270 release_progmem(vpe
->load_addr
);
271 cleanup_tc(get_tc(aprp_cpu_index()));
277 static DEVICE_ATTR(kill
, S_IWUSR
, NULL
, store_kill
);
279 static ssize_t
ntcs_show(struct device
*cd
, struct device_attribute
*attr
,
282 struct vpe
*vpe
= get_vpe(aprp_cpu_index());
284 return sprintf(buf
, "%d\n", vpe
->ntcs
);
287 static ssize_t
ntcs_store(struct device
*dev
, struct device_attribute
*attr
,
288 const char *buf
, size_t len
)
290 struct vpe
*vpe
= get_vpe(aprp_cpu_index());
294 ret
= kstrtoul(buf
, 0, &new);
298 if (new == 0 || new > (hw_tcs
- aprp_cpu_index()))
305 static DEVICE_ATTR_RW(ntcs
);
307 static struct attribute
*vpe_attrs
[] = {
312 ATTRIBUTE_GROUPS(vpe
);
314 static void vpe_device_release(struct device
*cd
)
319 static struct class vpe_class
= {
321 .owner
= THIS_MODULE
,
322 .dev_release
= vpe_device_release
,
323 .dev_groups
= vpe_groups
,
326 static struct device vpe_device
;
328 int __init
vpe_module_init(void)
330 unsigned int mtflags
, vpflags
;
331 unsigned long flags
, val
;
332 struct vpe
*v
= NULL
;
336 if (!cpu_has_mipsmt
) {
337 pr_warn("VPE loader: not a MIPS MT capable processor\n");
342 pr_warn("No VPEs reserved for AP/SP, not initialize VPE loader\n"
343 "Pass maxvpes=<n> argument as kernel argument\n");
348 if (aprp_cpu_index() == 0) {
349 pr_warn("No TCs reserved for AP/SP, not initialize VPE loader\n"
350 "Pass maxtcs=<n> argument as kernel argument\n");
355 major
= register_chrdev(0, VPE_MODULE_NAME
, &vpe_fops
);
357 pr_warn("VPE loader: unable to register character device\n");
361 err
= class_register(&vpe_class
);
363 pr_err("vpe_class registration failed\n");
367 device_initialize(&vpe_device
);
368 vpe_device
.class = &vpe_class
,
369 vpe_device
.parent
= NULL
,
370 dev_set_name(&vpe_device
, "vpe1");
371 vpe_device
.devt
= MKDEV(major
, VPE_MODULE_MINOR
);
372 err
= device_add(&vpe_device
);
374 pr_err("Adding vpe_device failed\n");
378 local_irq_save(flags
);
382 /* Put MVPE's into 'configuration state' */
383 set_c0_mvpcontrol(MVPCONTROL_VPC
);
385 val
= read_c0_mvpconf0();
386 hw_tcs
= (val
& MVPCONF0_PTC
) + 1;
387 hw_vpes
= ((val
& MVPCONF0_PVPE
) >> MVPCONF0_PVPE_SHIFT
) + 1;
389 for (tc
= aprp_cpu_index(); tc
< hw_tcs
; tc
++) {
391 * Must re-enable multithreading temporarily or in case we
392 * reschedule send IPIs or similar we might hang.
394 clear_c0_mvpcontrol(MVPCONTROL_VPC
);
397 local_irq_restore(flags
);
404 local_irq_save(flags
);
407 set_c0_mvpcontrol(MVPCONTROL_VPC
);
415 pr_warn("VPE: unable to allocate VPE\n");
419 v
->ntcs
= hw_tcs
- aprp_cpu_index();
421 /* add the tc to the list of this vpe's tc's. */
422 list_add(&t
->tc
, &v
->tc
);
424 /* deactivate all but vpe0 */
425 if (tc
>= aprp_cpu_index()) {
426 unsigned long tmp
= read_vpe_c0_vpeconf0();
428 tmp
&= ~VPECONF0_VPA
;
432 write_vpe_c0_vpeconf0(tmp
);
435 /* disable multi-threading with TC's */
436 write_vpe_c0_vpecontrol(read_vpe_c0_vpecontrol() &
439 if (tc
>= vpelimit
) {
441 * Set config to be the same as vpe0,
442 * particularly kseg0 coherency alg
444 write_vpe_c0_config(read_c0_config());
449 t
->pvpe
= v
; /* set the parent vpe */
451 if (tc
>= aprp_cpu_index()) {
457 * A TC that is bound to any other VPE gets bound to
458 * VPE0, ideally I'd like to make it homeless but it
459 * doesn't appear to let me bind a TC to a non-existent
460 * VPE. Which is perfectly reasonable.
462 * The (un)bound state is visible to an EJTAG probe so
465 tmp
= read_tc_c0_tcbind();
466 if (tmp
& TCBIND_CURVPE
) {
467 /* tc is bound >vpe0 */
468 write_tc_c0_tcbind(tmp
& ~TCBIND_CURVPE
);
470 t
->pvpe
= get_vpe(0); /* set the parent vpe */
474 write_tc_c0_tchalt(TCHALT_H
);
477 tmp
= read_tc_c0_tcstatus();
479 /* mark not activated and not dynamically allocatable */
480 tmp
&= ~(TCSTATUS_A
| TCSTATUS_DA
);
481 tmp
|= TCSTATUS_IXMT
; /* interrupt exempt */
482 write_tc_c0_tcstatus(tmp
);
487 /* release config state */
488 clear_c0_mvpcontrol(MVPCONTROL_VPC
);
492 local_irq_restore(flags
);
497 device_del(&vpe_device
);
500 class_unregister(&vpe_class
);
503 unregister_chrdev(major
, VPE_MODULE_NAME
);
508 void __exit
vpe_module_exit(void)
512 device_del(&vpe_device
);
513 class_unregister(&vpe_class
);
514 unregister_chrdev(major
, VPE_MODULE_NAME
);
516 /* No locking needed here */
517 list_for_each_entry_safe(v
, n
, &vpecontrol
.vpe_list
, list
) {
518 if (v
->state
!= VPE_STATE_UNUSED
)