[MIPS] Get rid of __ilog2
[deliverable/linux.git] / arch / mips / kernel / vpe.c
CommitLineData
e01402b1
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1/*
2 * Copyright (C) 2004, 2005 MIPS Technologies, Inc. All rights reserved.
3 *
4 * This program is free software; you can distribute it and/or modify it
5 * under the terms of the GNU General Public License (Version 2) as
6 * published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
11 * for more details.
12 *
13 * You should have received a copy of the GNU General Public License along
14 * with this program; if not, write to the Free Software Foundation, Inc.,
15 * 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
e01402b1
RB
16 */
17
18/*
19 * VPE support module
20 *
21 * Provides support for loading a MIPS SP program on VPE1.
22 * The SP enviroment is rather simple, no tlb's. It needs to be relocatable
23 * (or partially linked). You should initialise your stack in the startup
24 * code. This loader looks for the symbol __start and sets up
25 * execution to resume from there. The MIPS SDE kit contains suitable examples.
26 *
27 * To load and run, simply cat a SP 'program file' to /dev/vpe1.
28 * i.e cat spapp >/dev/vpe1.
e01402b1 29 */
e01402b1 30#include <linux/kernel.h>
27a3bbaf 31#include <linux/device.h>
e01402b1
RB
32#include <linux/module.h>
33#include <linux/fs.h>
34#include <linux/init.h>
35#include <asm/uaccess.h>
36#include <linux/slab.h>
37#include <linux/list.h>
38#include <linux/vmalloc.h>
39#include <linux/elf.h>
40#include <linux/seq_file.h>
41#include <linux/syscalls.h>
42#include <linux/moduleloader.h>
43#include <linux/interrupt.h>
44#include <linux/poll.h>
45#include <linux/bootmem.h>
46#include <asm/mipsregs.h>
340ee4b9 47#include <asm/mipsmtregs.h>
e01402b1
RB
48#include <asm/cacheflush.h>
49#include <asm/atomic.h>
50#include <asm/cpu.h>
27a3bbaf 51#include <asm/mips_mt.h>
e01402b1
RB
52#include <asm/processor.h>
53#include <asm/system.h>
2600990e
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54#include <asm/vpe.h>
55#include <asm/kspd.h>
e01402b1
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56
57typedef void *vpe_handle;
58
e01402b1
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59#ifndef ARCH_SHF_SMALL
60#define ARCH_SHF_SMALL 0
61#endif
62
63/* If this is set, the section belongs in the init part of the module */
64#define INIT_OFFSET_MASK (1UL << (BITS_PER_LONG-1))
65
41790e04
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66/*
67 * The number of TCs and VPEs physically available on the core
68 */
69static int hw_tcs, hw_vpes;
e01402b1 70static char module_name[] = "vpe";
307bd284 71static int major;
27a3bbaf 72static const int minor = 1; /* fixed for now */
e01402b1 73
2600990e
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74#ifdef CONFIG_MIPS_APSP_KSPD
75 static struct kspd_notifications kspd_events;
76static int kspd_events_reqd = 0;
77#endif
78
e01402b1
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79/* grab the likely amount of memory we will need. */
80#ifdef CONFIG_MIPS_VPE_LOADER_TOM
81#define P_SIZE (2 * 1024 * 1024)
82#else
83/* add an overhead to the max kmalloc size for non-striped symbols/etc */
84#define P_SIZE (256 * 1024)
85#endif
86
2600990e
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87extern unsigned long physical_memsize;
88
e01402b1 89#define MAX_VPES 16
2600990e 90#define VPE_PATH_MAX 256
e01402b1
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91
92enum vpe_state {
93 VPE_STATE_UNUSED = 0,
94 VPE_STATE_INUSE,
95 VPE_STATE_RUNNING
96};
97
98enum tc_state {
99 TC_STATE_UNUSED = 0,
100 TC_STATE_INUSE,
101 TC_STATE_RUNNING,
102 TC_STATE_DYNAMIC
103};
104
307bd284 105struct vpe {
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106 enum vpe_state state;
107
108 /* (device) minor associated with this vpe */
109 int minor;
110
111 /* elfloader stuff */
112 void *load_addr;
571e0bed 113 unsigned long len;
e01402b1 114 char *pbuffer;
571e0bed 115 unsigned long plen;
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116 unsigned int uid, gid;
117 char cwd[VPE_PATH_MAX];
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118
119 unsigned long __start;
120
121 /* tc's associated with this vpe */
122 struct list_head tc;
123
124 /* The list of vpe's */
125 struct list_head list;
126
127 /* shared symbol address */
128 void *shared_ptr;
2600990e
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129
130 /* the list of who wants to know when something major happens */
131 struct list_head notify;
41790e04
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132
133 unsigned int ntcs;
307bd284
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134};
135
136struct tc {
137 enum tc_state state;
138 int index;
139
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140 struct vpe *pvpe; /* parent VPE */
141 struct list_head tc; /* The list of TC's with this VPE */
142 struct list_head list; /* The global list of tc's */
307bd284 143};
e01402b1 144
9cfdf6f1 145struct {
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146 /* Virtual processing elements */
147 struct list_head vpe_list;
148
149 /* Thread contexts */
150 struct list_head tc_list;
9cfdf6f1
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151} vpecontrol = {
152 .vpe_list = LIST_HEAD_INIT(vpecontrol.vpe_list),
153 .tc_list = LIST_HEAD_INIT(vpecontrol.tc_list)
154};
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155
156static void release_progmem(void *ptr);
e01402b1
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157extern void save_gp_address(unsigned int secbase, unsigned int rel);
158
159/* get the vpe associated with this minor */
160struct vpe *get_vpe(int minor)
161{
162 struct vpe *v;
163
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164 if (!cpu_has_mipsmt)
165 return NULL;
166
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167 list_for_each_entry(v, &vpecontrol.vpe_list, list) {
168 if (v->minor == minor)
169 return v;
170 }
171
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172 return NULL;
173}
174
175/* get the vpe associated with this minor */
176struct tc *get_tc(int index)
177{
178 struct tc *t;
179
180 list_for_each_entry(t, &vpecontrol.tc_list, list) {
181 if (t->index == index)
182 return t;
183 }
184
e01402b1
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185 return NULL;
186}
187
188struct tc *get_tc_unused(void)
189{
190 struct tc *t;
191
192 list_for_each_entry(t, &vpecontrol.tc_list, list) {
193 if (t->state == TC_STATE_UNUSED)
194 return t;
195 }
196
e01402b1
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197 return NULL;
198}
199
200/* allocate a vpe and associate it with this minor (or index) */
201struct vpe *alloc_vpe(int minor)
202{
203 struct vpe *v;
204
307bd284 205 if ((v = kzalloc(sizeof(struct vpe), GFP_KERNEL)) == NULL) {
e01402b1
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206 return NULL;
207 }
208
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209 INIT_LIST_HEAD(&v->tc);
210 list_add_tail(&v->list, &vpecontrol.vpe_list);
211
2600990e 212 INIT_LIST_HEAD(&v->notify);
e01402b1
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213 v->minor = minor;
214 return v;
215}
216
217/* allocate a tc. At startup only tc0 is running, all other can be halted. */
218struct tc *alloc_tc(int index)
219{
07cc0c9e 220 struct tc *tc;
e01402b1 221
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222 if ((tc = kzalloc(sizeof(struct tc), GFP_KERNEL)) == NULL)
223 goto out;
e01402b1 224
07cc0c9e
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225 INIT_LIST_HEAD(&tc->tc);
226 tc->index = index;
227 list_add_tail(&tc->list, &vpecontrol.tc_list);
e01402b1 228
07cc0c9e
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229out:
230 return tc;
e01402b1
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231}
232
233/* clean up and free everything */
234void release_vpe(struct vpe *v)
235{
236 list_del(&v->list);
237 if (v->load_addr)
238 release_progmem(v);
239 kfree(v);
240}
241
242void dump_mtregs(void)
243{
244 unsigned long val;
245
246 val = read_c0_config3();
247 printk("config3 0x%lx MT %ld\n", val,
248 (val & CONFIG3_MT) >> CONFIG3_MT_SHIFT);
249
e01402b1
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250 val = read_c0_mvpcontrol();
251 printk("MVPControl 0x%lx, STLB %ld VPC %ld EVP %ld\n", val,
252 (val & MVPCONTROL_STLB) >> MVPCONTROL_STLB_SHIFT,
253 (val & MVPCONTROL_VPC) >> MVPCONTROL_VPC_SHIFT,
254 (val & MVPCONTROL_EVP));
255
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256 val = read_c0_mvpconf0();
257 printk("mvpconf0 0x%lx, PVPE %ld PTC %ld M %ld\n", val,
258 (val & MVPCONF0_PVPE) >> MVPCONF0_PVPE_SHIFT,
259 val & MVPCONF0_PTC, (val & MVPCONF0_M) >> MVPCONF0_M_SHIFT);
e01402b1
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260}
261
262/* Find some VPE program space */
571e0bed 263static void *alloc_progmem(unsigned long len)
e01402b1 264{
5408c490
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265 void *addr;
266
e01402b1 267#ifdef CONFIG_MIPS_VPE_LOADER_TOM
5408c490
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268 /*
269 * This means you must tell Linux to use less memory than you
270 * physically have, for example by passing a mem= boot argument.
271 */
9f2546ad 272 addr = pfn_to_kaddr(max_low_pfn);
5408c490 273 memset(addr, 0, len);
e01402b1 274#else
5408c490
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275 /* simple grab some mem for now */
276 addr = kzalloc(len, GFP_KERNEL);
e01402b1 277#endif
5408c490
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278
279 return addr;
e01402b1
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280}
281
282static void release_progmem(void *ptr)
283{
284#ifndef CONFIG_MIPS_VPE_LOADER_TOM
285 kfree(ptr);
286#endif
287}
288
289/* Update size with this section: return offset. */
290static long get_offset(unsigned long *size, Elf_Shdr * sechdr)
291{
292 long ret;
293
294 ret = ALIGN(*size, sechdr->sh_addralign ? : 1);
295 *size = ret + sechdr->sh_size;
296 return ret;
297}
298
299/* Lay out the SHF_ALLOC sections in a way not dissimilar to how ld
300 might -- code, read-only data, read-write data, small data. Tally
301 sizes, and place the offsets into sh_entsize fields: high bit means it
302 belongs in init. */
303static void layout_sections(struct module *mod, const Elf_Ehdr * hdr,
304 Elf_Shdr * sechdrs, const char *secstrings)
305{
306 static unsigned long const masks[][2] = {
307 /* NOTE: all executable code must be the first section
308 * in this array; otherwise modify the text_size
309 * finder in the two loops below */
310 {SHF_EXECINSTR | SHF_ALLOC, ARCH_SHF_SMALL},
311 {SHF_ALLOC, SHF_WRITE | ARCH_SHF_SMALL},
312 {SHF_WRITE | SHF_ALLOC, ARCH_SHF_SMALL},
313 {ARCH_SHF_SMALL | SHF_ALLOC, 0}
314 };
315 unsigned int m, i;
316
317 for (i = 0; i < hdr->e_shnum; i++)
318 sechdrs[i].sh_entsize = ~0UL;
319
320 for (m = 0; m < ARRAY_SIZE(masks); ++m) {
321 for (i = 0; i < hdr->e_shnum; ++i) {
322 Elf_Shdr *s = &sechdrs[i];
323
324 // || strncmp(secstrings + s->sh_name, ".init", 5) == 0)
325 if ((s->sh_flags & masks[m][0]) != masks[m][0]
326 || (s->sh_flags & masks[m][1])
327 || s->sh_entsize != ~0UL)
328 continue;
329 s->sh_entsize = get_offset(&mod->core_size, s);
330 }
331
332 if (m == 0)
333 mod->core_text_size = mod->core_size;
334
335 }
336}
337
338
339/* from module-elf32.c, but subverted a little */
340
341struct mips_hi16 {
342 struct mips_hi16 *next;
343 Elf32_Addr *addr;
344 Elf32_Addr value;
345};
346
347static struct mips_hi16 *mips_hi16_list;
348static unsigned int gp_offs, gp_addr;
349
350static int apply_r_mips_none(struct module *me, uint32_t *location,
351 Elf32_Addr v)
352{
353 return 0;
354}
355
356static int apply_r_mips_gprel16(struct module *me, uint32_t *location,
357 Elf32_Addr v)
358{
359 int rel;
360
361 if( !(*location & 0xffff) ) {
362 rel = (int)v - gp_addr;
363 }
364 else {
365 /* .sbss + gp(relative) + offset */
366 /* kludge! */
367 rel = (int)(short)((int)v + gp_offs +
368 (int)(short)(*location & 0xffff) - gp_addr);
369 }
370
371 if( (rel > 32768) || (rel < -32768) ) {
2600990e
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372 printk(KERN_DEBUG "VPE loader: apply_r_mips_gprel16: "
373 "relative address 0x%x out of range of gp register\n",
374 rel);
e01402b1
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375 return -ENOEXEC;
376 }
377
378 *location = (*location & 0xffff0000) | (rel & 0xffff);
379
380 return 0;
381}
382
383static int apply_r_mips_pc16(struct module *me, uint32_t *location,
384 Elf32_Addr v)
385{
386 int rel;
387 rel = (((unsigned int)v - (unsigned int)location));
388 rel >>= 2; // because the offset is in _instructions_ not bytes.
389 rel -= 1; // and one instruction less due to the branch delay slot.
390
391 if( (rel > 32768) || (rel < -32768) ) {
2600990e
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392 printk(KERN_DEBUG "VPE loader: "
393 "apply_r_mips_pc16: relative address out of range 0x%x\n", rel);
e01402b1
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394 return -ENOEXEC;
395 }
396
397 *location = (*location & 0xffff0000) | (rel & 0xffff);
398
399 return 0;
400}
401
402static int apply_r_mips_32(struct module *me, uint32_t *location,
403 Elf32_Addr v)
404{
405 *location += v;
406
407 return 0;
408}
409
410static int apply_r_mips_26(struct module *me, uint32_t *location,
411 Elf32_Addr v)
412{
413 if (v % 4) {
2600990e
RB
414 printk(KERN_DEBUG "VPE loader: apply_r_mips_26 "
415 " unaligned relocation\n");
e01402b1
RB
416 return -ENOEXEC;
417 }
418
307bd284
RB
419/*
420 * Not desperately convinced this is a good check of an overflow condition
421 * anyway. But it gets in the way of handling undefined weak symbols which
422 * we want to set to zero.
423 * if ((v & 0xf0000000) != (((unsigned long)location + 4) & 0xf0000000)) {
424 * printk(KERN_ERR
425 * "module %s: relocation overflow\n",
426 * me->name);
427 * return -ENOEXEC;
428 * }
429 */
e01402b1
RB
430
431 *location = (*location & ~0x03ffffff) |
432 ((*location + (v >> 2)) & 0x03ffffff);
433 return 0;
434}
435
436static int apply_r_mips_hi16(struct module *me, uint32_t *location,
437 Elf32_Addr v)
438{
439 struct mips_hi16 *n;
440
441 /*
442 * We cannot relocate this one now because we don't know the value of
443 * the carry we need to add. Save the information, and let LO16 do the
444 * actual relocation.
445 */
446 n = kmalloc(sizeof *n, GFP_KERNEL);
447 if (!n)
448 return -ENOMEM;
449
450 n->addr = location;
451 n->value = v;
452 n->next = mips_hi16_list;
453 mips_hi16_list = n;
454
455 return 0;
456}
457
458static int apply_r_mips_lo16(struct module *me, uint32_t *location,
459 Elf32_Addr v)
460{
461 unsigned long insnlo = *location;
462 Elf32_Addr val, vallo;
463
464 /* Sign extend the addend we extract from the lo insn. */
465 vallo = ((insnlo & 0xffff) ^ 0x8000) - 0x8000;
466
467 if (mips_hi16_list != NULL) {
468 struct mips_hi16 *l;
469
470 l = mips_hi16_list;
471 while (l != NULL) {
472 struct mips_hi16 *next;
473 unsigned long insn;
474
475 /*
476 * The value for the HI16 had best be the same.
477 */
2600990e
RB
478 if (v != l->value) {
479 printk(KERN_DEBUG "VPE loader: "
b1e3afa0 480 "apply_r_mips_lo16/hi16: \t"
2600990e
RB
481 "inconsistent value information\n");
482 return -ENOEXEC;
e01402b1
RB
483 }
484
e01402b1
RB
485 /*
486 * Do the HI16 relocation. Note that we actually don't
487 * need to know anything about the LO16 itself, except
488 * where to find the low 16 bits of the addend needed
489 * by the LO16.
490 */
491 insn = *l->addr;
492 val = ((insn & 0xffff) << 16) + vallo;
493 val += v;
494
495 /*
496 * Account for the sign extension that will happen in
497 * the low bits.
498 */
499 val = ((val >> 16) + ((val & 0x8000) != 0)) & 0xffff;
500
501 insn = (insn & ~0xffff) | val;
502 *l->addr = insn;
503
504 next = l->next;
505 kfree(l);
506 l = next;
507 }
508
509 mips_hi16_list = NULL;
510 }
511
512 /*
513 * Ok, we're done with the HI16 relocs. Now deal with the LO16.
514 */
515 val = v + vallo;
516 insnlo = (insnlo & ~0xffff) | (val & 0xffff);
517 *location = insnlo;
518
519 return 0;
e01402b1
RB
520}
521
522static int (*reloc_handlers[]) (struct module *me, uint32_t *location,
523 Elf32_Addr v) = {
524 [R_MIPS_NONE] = apply_r_mips_none,
525 [R_MIPS_32] = apply_r_mips_32,
526 [R_MIPS_26] = apply_r_mips_26,
527 [R_MIPS_HI16] = apply_r_mips_hi16,
528 [R_MIPS_LO16] = apply_r_mips_lo16,
529 [R_MIPS_GPREL16] = apply_r_mips_gprel16,
530 [R_MIPS_PC16] = apply_r_mips_pc16
531};
532
2600990e 533static char *rstrs[] = {
e0daad44 534 [R_MIPS_NONE] = "MIPS_NONE",
2600990e
RB
535 [R_MIPS_32] = "MIPS_32",
536 [R_MIPS_26] = "MIPS_26",
537 [R_MIPS_HI16] = "MIPS_HI16",
538 [R_MIPS_LO16] = "MIPS_LO16",
539 [R_MIPS_GPREL16] = "MIPS_GPREL16",
540 [R_MIPS_PC16] = "MIPS_PC16"
541};
e01402b1
RB
542
543int apply_relocations(Elf32_Shdr *sechdrs,
544 const char *strtab,
545 unsigned int symindex,
546 unsigned int relsec,
547 struct module *me)
548{
549 Elf32_Rel *rel = (void *) sechdrs[relsec].sh_addr;
550 Elf32_Sym *sym;
551 uint32_t *location;
552 unsigned int i;
553 Elf32_Addr v;
554 int res;
555
556 for (i = 0; i < sechdrs[relsec].sh_size / sizeof(*rel); i++) {
557 Elf32_Word r_info = rel[i].r_info;
558
559 /* This is where to make the change */
560 location = (void *)sechdrs[sechdrs[relsec].sh_info].sh_addr
561 + rel[i].r_offset;
562 /* This is the symbol it is referring to */
563 sym = (Elf32_Sym *)sechdrs[symindex].sh_addr
564 + ELF32_R_SYM(r_info);
565
566 if (!sym->st_value) {
567 printk(KERN_DEBUG "%s: undefined weak symbol %s\n",
568 me->name, strtab + sym->st_name);
569 /* just print the warning, dont barf */
570 }
571
572 v = sym->st_value;
573
574 res = reloc_handlers[ELF32_R_TYPE(r_info)](me, location, v);
575 if( res ) {
2600990e
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576 char *r = rstrs[ELF32_R_TYPE(r_info)];
577 printk(KERN_WARNING "VPE loader: .text+0x%x "
578 "relocation type %s for symbol \"%s\" failed\n",
579 rel[i].r_offset, r ? r : "UNKNOWN",
580 strtab + sym->st_name);
e01402b1 581 return res;
2600990e 582 }
e01402b1
RB
583 }
584
585 return 0;
586}
587
588void save_gp_address(unsigned int secbase, unsigned int rel)
589{
590 gp_addr = secbase + rel;
591 gp_offs = gp_addr - (secbase & 0xffff0000);
592}
593/* end module-elf32.c */
594
595
596
597/* Change all symbols so that sh_value encodes the pointer directly. */
2600990e 598static void simplify_symbols(Elf_Shdr * sechdrs,
e01402b1
RB
599 unsigned int symindex,
600 const char *strtab,
601 const char *secstrings,
602 unsigned int nsecs, struct module *mod)
603{
604 Elf_Sym *sym = (void *)sechdrs[symindex].sh_addr;
605 unsigned long secbase, bssbase = 0;
606 unsigned int i, n = sechdrs[symindex].sh_size / sizeof(Elf_Sym);
2600990e 607 int size;
e01402b1
RB
608
609 /* find the .bss section for COMMON symbols */
610 for (i = 0; i < nsecs; i++) {
2600990e 611 if (strncmp(secstrings + sechdrs[i].sh_name, ".bss", 4) == 0) {
e01402b1 612 bssbase = sechdrs[i].sh_addr;
2600990e
RB
613 break;
614 }
e01402b1
RB
615 }
616
617 for (i = 1; i < n; i++) {
618 switch (sym[i].st_shndx) {
619 case SHN_COMMON:
2600990e
RB
620 /* Allocate space for the symbol in the .bss section.
621 st_value is currently size.
e01402b1
RB
622 We want it to have the address of the symbol. */
623
624 size = sym[i].st_value;
625 sym[i].st_value = bssbase;
626
627 bssbase += size;
628 break;
629
630 case SHN_ABS:
631 /* Don't need to do anything */
632 break;
633
634 case SHN_UNDEF:
635 /* ret = -ENOENT; */
636 break;
637
638 case SHN_MIPS_SCOMMON:
b1e3afa0 639 printk(KERN_DEBUG "simplify_symbols: ignoring SHN_MIPS_SCOMMON "
2600990e
RB
640 "symbol <%s> st_shndx %d\n", strtab + sym[i].st_name,
641 sym[i].st_shndx);
e01402b1
RB
642 // .sbss section
643 break;
644
645 default:
646 secbase = sechdrs[sym[i].st_shndx].sh_addr;
647
648 if (strncmp(strtab + sym[i].st_name, "_gp", 3) == 0) {
649 save_gp_address(secbase, sym[i].st_value);
650 }
651
652 sym[i].st_value += secbase;
653 break;
654 }
e01402b1 655 }
e01402b1
RB
656}
657
658#ifdef DEBUG_ELFLOADER
659static void dump_elfsymbols(Elf_Shdr * sechdrs, unsigned int symindex,
660 const char *strtab, struct module *mod)
661{
662 Elf_Sym *sym = (void *)sechdrs[symindex].sh_addr;
663 unsigned int i, n = sechdrs[symindex].sh_size / sizeof(Elf_Sym);
664
665 printk(KERN_DEBUG "dump_elfsymbols: n %d\n", n);
666 for (i = 1; i < n; i++) {
667 printk(KERN_DEBUG " i %d name <%s> 0x%x\n", i,
668 strtab + sym[i].st_name, sym[i].st_value);
669 }
670}
671#endif
672
e01402b1 673/* We are prepared so configure and start the VPE... */
be6e1437 674static int vpe_run(struct vpe * v)
e01402b1 675{
07cc0c9e 676 unsigned long flags, val, dmt_flag;
2600990e 677 struct vpe_notifications *n;
07cc0c9e 678 unsigned int vpeflags;
e01402b1
RB
679 struct tc *t;
680
681 /* check we are the Master VPE */
07cc0c9e 682 local_irq_save(flags);
e01402b1
RB
683 val = read_c0_vpeconf0();
684 if (!(val & VPECONF0_MVP)) {
685 printk(KERN_WARNING
2600990e 686 "VPE loader: only Master VPE's are allowed to configure MT\n");
07cc0c9e
RB
687 local_irq_restore(flags);
688
e01402b1
RB
689 return -1;
690 }
691
07cc0c9e
RB
692 dmt_flag = dmt();
693 vpeflags = dvpe();
e01402b1 694
2600990e 695 if (!list_empty(&v->tc)) {
e0daad44 696 if ((t = list_entry(v->tc.next, struct tc, tc)) == NULL) {
07cc0c9e
RB
697 evpe(vpeflags);
698 emt(dmt_flag);
699 local_irq_restore(flags);
700
701 printk(KERN_WARNING
702 "VPE loader: TC %d is already in use.\n",
703 t->index);
e0daad44
RB
704 return -ENOEXEC;
705 }
706 } else {
07cc0c9e
RB
707 evpe(vpeflags);
708 emt(dmt_flag);
709 local_irq_restore(flags);
710
711 printk(KERN_WARNING
712 "VPE loader: No TC's associated with VPE %d\n",
e0daad44 713 v->minor);
07cc0c9e 714
e0daad44
RB
715 return -ENOEXEC;
716 }
2600990e 717
e01402b1 718 /* Put MVPE's into 'configuration state' */
340ee4b9 719 set_c0_mvpcontrol(MVPCONTROL_VPC);
e01402b1 720
e01402b1
RB
721 settc(t->index);
722
e01402b1
RB
723 /* should check it is halted, and not activated */
724 if ((read_tc_c0_tcstatus() & TCSTATUS_A) || !(read_tc_c0_tchalt() & TCHALT_H)) {
07cc0c9e
RB
725 evpe(vpeflags);
726 emt(dmt_flag);
727 local_irq_restore(flags);
728
729 printk(KERN_WARNING "VPE loader: TC %d is already active!\n",
e01402b1 730 t->index);
07cc0c9e 731
e01402b1
RB
732 return -ENOEXEC;
733 }
734
735 /* Write the address we want it to start running from in the TCPC register. */
736 write_tc_c0_tcrestart((unsigned long)v->__start);
e01402b1 737 write_tc_c0_tccontext((unsigned long)0);
07cc0c9e 738
2600990e
RB
739 /*
740 * Mark the TC as activated, not interrupt exempt and not dynamically
741 * allocatable
742 */
e01402b1
RB
743 val = read_tc_c0_tcstatus();
744 val = (val & ~(TCSTATUS_DA | TCSTATUS_IXMT)) | TCSTATUS_A;
745 write_tc_c0_tcstatus(val);
746
747 write_tc_c0_tchalt(read_tc_c0_tchalt() & ~TCHALT_H);
748
e01402b1
RB
749 /*
750 * The sde-kit passes 'memsize' to __start in $a3, so set something
2600990e 751 * here... Or set $a3 to zero and define DFLT_STACK_SIZE and
e01402b1
RB
752 * DFLT_HEAP_SIZE when you compile your program
753 */
41790e04 754 mttgpr(6, v->ntcs);
07cc0c9e 755 mttgpr(7, physical_memsize);
2600990e
RB
756
757 /* set up VPE1 */
758 /*
759 * bind the TC to VPE 1 as late as possible so we only have the final
760 * VPE registers to set up, and so an EJTAG probe can trigger on it
761 */
07cc0c9e 762 write_tc_c0_tcbind((read_tc_c0_tcbind() & ~TCBIND_CURVPE) | 1);
e01402b1 763
a94d7020
EO
764 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() & ~(VPECONF0_VPA));
765
766 back_to_back_c0_hazard();
767
e0daad44
RB
768 /* Set up the XTC bit in vpeconf0 to point at our tc */
769 write_vpe_c0_vpeconf0( (read_vpe_c0_vpeconf0() & ~(VPECONF0_XTC))
770 | (t->index << VPECONF0_XTC_SHIFT));
e01402b1 771
a94d7020
EO
772 back_to_back_c0_hazard();
773
e0daad44
RB
774 /* enable this VPE */
775 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() | VPECONF0_VPA);
e01402b1
RB
776
777 /* clear out any left overs from a previous program */
2600990e 778 write_vpe_c0_status(0);
e01402b1
RB
779 write_vpe_c0_cause(0);
780
781 /* take system out of configuration state */
340ee4b9 782 clear_c0_mvpcontrol(MVPCONTROL_VPC);
e01402b1 783
b618336a
KK
784 /*
785 * SMTC/SMVP kernels manage VPE enable independently,
786 * but uniprocessor kernels need to turn it on, even
787 * if that wasn't the pre-dvpe() state.
788 */
07cc0c9e 789#ifdef CONFIG_SMP
07cc0c9e 790 evpe(vpeflags);
b618336a
KK
791#else
792 evpe(EVPE_ENABLE);
07cc0c9e
RB
793#endif
794 emt(dmt_flag);
795 local_irq_restore(flags);
e01402b1 796
07cc0c9e
RB
797 list_for_each_entry(n, &v->notify, list)
798 n->start(minor);
2600990e 799
e01402b1
RB
800 return 0;
801}
802
2600990e 803static int find_vpe_symbols(struct vpe * v, Elf_Shdr * sechdrs,
e01402b1
RB
804 unsigned int symindex, const char *strtab,
805 struct module *mod)
806{
807 Elf_Sym *sym = (void *)sechdrs[symindex].sh_addr;
808 unsigned int i, n = sechdrs[symindex].sh_size / sizeof(Elf_Sym);
809
810 for (i = 1; i < n; i++) {
811 if (strcmp(strtab + sym[i].st_name, "__start") == 0) {
812 v->__start = sym[i].st_value;
813 }
814
815 if (strcmp(strtab + sym[i].st_name, "vpe_shared") == 0) {
816 v->shared_ptr = (void *)sym[i].st_value;
817 }
818 }
819
2600990e
RB
820 if ( (v->__start == 0) || (v->shared_ptr == NULL))
821 return -1;
822
e01402b1
RB
823 return 0;
824}
825
307bd284 826/*
2600990e
RB
827 * Allocates a VPE with some program code space(the load address), copies the
828 * contents of the program (p)buffer performing relocatations/etc, free's it
829 * when finished.
830 */
be6e1437 831static int vpe_elfload(struct vpe * v)
e01402b1
RB
832{
833 Elf_Ehdr *hdr;
834 Elf_Shdr *sechdrs;
835 long err = 0;
836 char *secstrings, *strtab = NULL;
2600990e 837 unsigned int len, i, symindex = 0, strindex = 0, relocate = 0;
e01402b1
RB
838 struct module mod; // so we can re-use the relocations code
839
840 memset(&mod, 0, sizeof(struct module));
2600990e 841 strcpy(mod.name, "VPE loader");
e01402b1
RB
842
843 hdr = (Elf_Ehdr *) v->pbuffer;
844 len = v->plen;
845
846 /* Sanity checks against insmoding binaries or wrong arch,
847 weird elf version */
848 if (memcmp(hdr->e_ident, ELFMAG, 4) != 0
2600990e
RB
849 || (hdr->e_type != ET_REL && hdr->e_type != ET_EXEC)
850 || !elf_check_arch(hdr)
e01402b1
RB
851 || hdr->e_shentsize != sizeof(*sechdrs)) {
852 printk(KERN_WARNING
2600990e 853 "VPE loader: program wrong arch or weird elf version\n");
e01402b1
RB
854
855 return -ENOEXEC;
856 }
857
2600990e
RB
858 if (hdr->e_type == ET_REL)
859 relocate = 1;
860
e01402b1 861 if (len < hdr->e_shoff + hdr->e_shnum * sizeof(Elf_Shdr)) {
2600990e
RB
862 printk(KERN_ERR "VPE loader: program length %u truncated\n",
863 len);
864
e01402b1
RB
865 return -ENOEXEC;
866 }
867
868 /* Convenience variables */
869 sechdrs = (void *)hdr + hdr->e_shoff;
870 secstrings = (void *)hdr + sechdrs[hdr->e_shstrndx].sh_offset;
871 sechdrs[0].sh_addr = 0;
872
873 /* And these should exist, but gcc whinges if we don't init them */
874 symindex = strindex = 0;
875
2600990e
RB
876 if (relocate) {
877 for (i = 1; i < hdr->e_shnum; i++) {
878 if (sechdrs[i].sh_type != SHT_NOBITS
879 && len < sechdrs[i].sh_offset + sechdrs[i].sh_size) {
880 printk(KERN_ERR "VPE program length %u truncated\n",
881 len);
882 return -ENOEXEC;
883 }
e01402b1 884
2600990e
RB
885 /* Mark all sections sh_addr with their address in the
886 temporary image. */
887 sechdrs[i].sh_addr = (size_t) hdr + sechdrs[i].sh_offset;
e01402b1 888
2600990e
RB
889 /* Internal symbols and strings. */
890 if (sechdrs[i].sh_type == SHT_SYMTAB) {
891 symindex = i;
892 strindex = sechdrs[i].sh_link;
893 strtab = (char *)hdr + sechdrs[strindex].sh_offset;
894 }
e01402b1 895 }
2600990e 896 layout_sections(&mod, hdr, sechdrs, secstrings);
e01402b1
RB
897 }
898
e01402b1 899 v->load_addr = alloc_progmem(mod.core_size);
5408c490
RB
900 if (!v->load_addr)
901 return -ENOMEM;
e01402b1 902
5408c490 903 pr_info("VPE loader: loading to %p\n", v->load_addr);
e01402b1 904
2600990e
RB
905 if (relocate) {
906 for (i = 0; i < hdr->e_shnum; i++) {
907 void *dest;
e01402b1 908
2600990e
RB
909 if (!(sechdrs[i].sh_flags & SHF_ALLOC))
910 continue;
e01402b1 911
2600990e 912 dest = v->load_addr + sechdrs[i].sh_entsize;
e01402b1 913
2600990e
RB
914 if (sechdrs[i].sh_type != SHT_NOBITS)
915 memcpy(dest, (void *)sechdrs[i].sh_addr,
916 sechdrs[i].sh_size);
917 /* Update sh_addr to point to copy in image. */
918 sechdrs[i].sh_addr = (unsigned long)dest;
e01402b1 919
2600990e
RB
920 printk(KERN_DEBUG " section sh_name %s sh_addr 0x%x\n",
921 secstrings + sechdrs[i].sh_name, sechdrs[i].sh_addr);
922 }
e01402b1 923
2600990e
RB
924 /* Fix up syms, so that st_value is a pointer to location. */
925 simplify_symbols(sechdrs, symindex, strtab, secstrings,
926 hdr->e_shnum, &mod);
927
928 /* Now do relocations. */
929 for (i = 1; i < hdr->e_shnum; i++) {
930 const char *strtab = (char *)sechdrs[strindex].sh_addr;
931 unsigned int info = sechdrs[i].sh_info;
932
933 /* Not a valid relocation section? */
934 if (info >= hdr->e_shnum)
935 continue;
936
937 /* Don't bother with non-allocated sections */
938 if (!(sechdrs[info].sh_flags & SHF_ALLOC))
939 continue;
940
941 if (sechdrs[i].sh_type == SHT_REL)
942 err = apply_relocations(sechdrs, strtab, symindex, i,
943 &mod);
944 else if (sechdrs[i].sh_type == SHT_RELA)
945 err = apply_relocate_add(sechdrs, strtab, symindex, i,
946 &mod);
947 if (err < 0)
948 return err;
949
950 }
951 } else {
bdf5d42c 952 struct elf_phdr *phdr = (struct elf_phdr *) ((char *)hdr + hdr->e_phoff);
2600990e 953
bdf5d42c 954 for (i = 0; i < hdr->e_phnum; i++) {
b618336a
KK
955 if (phdr->p_type == PT_LOAD) {
956 memcpy((void *)phdr->p_paddr,
957 (char *)hdr + phdr->p_offset,
958 phdr->p_filesz);
959 memset((void *)phdr->p_paddr + phdr->p_filesz,
960 0, phdr->p_memsz - phdr->p_filesz);
961 }
962 phdr++;
bdf5d42c
RB
963 }
964
965 for (i = 0; i < hdr->e_shnum; i++) {
2600990e
RB
966 /* Internal symbols and strings. */
967 if (sechdrs[i].sh_type == SHT_SYMTAB) {
968 symindex = i;
969 strindex = sechdrs[i].sh_link;
970 strtab = (char *)hdr + sechdrs[strindex].sh_offset;
971
972 /* mark the symtab's address for when we try to find the
973 magic symbols */
974 sechdrs[i].sh_addr = (size_t) hdr + sechdrs[i].sh_offset;
975 }
e01402b1
RB
976 }
977 }
978
979 /* make sure it's physically written out */
980 flush_icache_range((unsigned long)v->load_addr,
981 (unsigned long)v->load_addr + v->len);
982
983 if ((find_vpe_symbols(v, sechdrs, symindex, strtab, &mod)) < 0) {
2600990e
RB
984 if (v->__start == 0) {
985 printk(KERN_WARNING "VPE loader: program does not contain "
986 "a __start symbol\n");
987 return -ENOEXEC;
988 }
e01402b1 989
2600990e
RB
990 if (v->shared_ptr == NULL)
991 printk(KERN_WARNING "VPE loader: "
992 "program does not contain vpe_shared symbol.\n"
993 " Unable to use AMVP (AP/SP) facilities.\n");
e01402b1
RB
994 }
995
996 printk(" elf loaded\n");
2600990e 997 return 0;
e01402b1
RB
998}
999
2600990e
RB
1000static void cleanup_tc(struct tc *tc)
1001{
07cc0c9e
RB
1002 unsigned long flags;
1003 unsigned int mtflags, vpflags;
2600990e
RB
1004 int tmp;
1005
07cc0c9e
RB
1006 local_irq_save(flags);
1007 mtflags = dmt();
1008 vpflags = dvpe();
2600990e
RB
1009 /* Put MVPE's into 'configuration state' */
1010 set_c0_mvpcontrol(MVPCONTROL_VPC);
1011
1012 settc(tc->index);
1013 tmp = read_tc_c0_tcstatus();
1014
1015 /* mark not allocated and not dynamically allocatable */
1016 tmp &= ~(TCSTATUS_A | TCSTATUS_DA);
1017 tmp |= TCSTATUS_IXMT; /* interrupt exempt */
1018 write_tc_c0_tcstatus(tmp);
1019
1020 write_tc_c0_tchalt(TCHALT_H);
7c3a622d 1021 mips_ihb();
2600990e
RB
1022
1023 /* bind it to anything other than VPE1 */
07cc0c9e 1024// write_tc_c0_tcbind(read_tc_c0_tcbind() & ~TCBIND_CURVPE); // | TCBIND_CURVPE
2600990e
RB
1025
1026 clear_c0_mvpcontrol(MVPCONTROL_VPC);
07cc0c9e
RB
1027 evpe(vpflags);
1028 emt(mtflags);
1029 local_irq_restore(flags);
2600990e
RB
1030}
1031
1032static int getcwd(char *buff, int size)
1033{
1034 mm_segment_t old_fs;
1035 int ret;
1036
1037 old_fs = get_fs();
1038 set_fs(KERNEL_DS);
1039
21a151d8 1040 ret = sys_getcwd(buff, size);
2600990e
RB
1041
1042 set_fs(old_fs);
1043
1044 return ret;
1045}
1046
1047/* checks VPE is unused and gets ready to load program */
e01402b1
RB
1048static int vpe_open(struct inode *inode, struct file *filp)
1049{
c4c4018b 1050 enum vpe_state state;
2600990e 1051 struct vpe_notifications *not;
07cc0c9e
RB
1052 struct vpe *v;
1053 int ret;
e01402b1 1054
07cc0c9e
RB
1055 if (minor != iminor(inode)) {
1056 /* assume only 1 device at the moment. */
2600990e 1057 printk(KERN_WARNING "VPE loader: only vpe1 is supported\n");
e01402b1
RB
1058 return -ENODEV;
1059 }
1060
07cc0c9e 1061 if ((v = get_vpe(tclimit)) == NULL) {
2600990e 1062 printk(KERN_WARNING "VPE loader: unable to get vpe\n");
e01402b1
RB
1063 return -ENODEV;
1064 }
1065
c4c4018b
RB
1066 state = xchg(&v->state, VPE_STATE_INUSE);
1067 if (state != VPE_STATE_UNUSED) {
2600990e 1068 printk(KERN_DEBUG "VPE loader: tc in use dumping regs\n");
e01402b1 1069
2600990e 1070 list_for_each_entry(not, &v->notify, list) {
07cc0c9e 1071 not->stop(tclimit);
2600990e 1072 }
e01402b1 1073
2600990e 1074 release_progmem(v->load_addr);
07cc0c9e 1075 cleanup_tc(get_tc(tclimit));
e01402b1
RB
1076 }
1077
e01402b1
RB
1078 /* this of-course trashes what was there before... */
1079 v->pbuffer = vmalloc(P_SIZE);
1080 v->plen = P_SIZE;
1081 v->load_addr = NULL;
1082 v->len = 0;
1083
2600990e
RB
1084 v->uid = filp->f_uid;
1085 v->gid = filp->f_gid;
1086
1087#ifdef CONFIG_MIPS_APSP_KSPD
1088 /* get kspd to tell us when a syscall_exit happens */
1089 if (!kspd_events_reqd) {
1090 kspd_notify(&kspd_events);
1091 kspd_events_reqd++;
1092 }
1093#endif
1094
1095 v->cwd[0] = 0;
1096 ret = getcwd(v->cwd, VPE_PATH_MAX);
1097 if (ret < 0)
1098 printk(KERN_WARNING "VPE loader: open, getcwd returned %d\n", ret);
1099
1100 v->shared_ptr = NULL;
1101 v->__start = 0;
07cc0c9e 1102
e01402b1
RB
1103 return 0;
1104}
1105
1106static int vpe_release(struct inode *inode, struct file *filp)
1107{
307bd284 1108 struct vpe *v;
e01402b1 1109 Elf_Ehdr *hdr;
07cc0c9e 1110 int ret = 0;
e01402b1 1111
07cc0c9e
RB
1112 v = get_vpe(tclimit);
1113 if (v == NULL)
e01402b1
RB
1114 return -ENODEV;
1115
e01402b1
RB
1116 hdr = (Elf_Ehdr *) v->pbuffer;
1117 if (memcmp(hdr->e_ident, ELFMAG, 4) == 0) {
07cc0c9e 1118 if (vpe_elfload(v) >= 0) {
e01402b1 1119 vpe_run(v);
07cc0c9e 1120 } else {
2600990e 1121 printk(KERN_WARNING "VPE loader: ELF load failed.\n");
e01402b1
RB
1122 ret = -ENOEXEC;
1123 }
1124 } else {
2600990e 1125 printk(KERN_WARNING "VPE loader: only elf files are supported\n");
e01402b1
RB
1126 ret = -ENOEXEC;
1127 }
1128
2600990e
RB
1129 /* It's good to be able to run the SP and if it chokes have a look at
1130 the /dev/rt?. But if we reset the pointer to the shared struct we
1131 loose what has happened. So perhaps if garbage is sent to the vpe
1132 device, use it as a trigger for the reset. Hopefully a nice
1133 executable will be along shortly. */
1134 if (ret < 0)
1135 v->shared_ptr = NULL;
1136
e01402b1
RB
1137 // cleanup any temp buffers
1138 if (v->pbuffer)
1139 vfree(v->pbuffer);
1140 v->plen = 0;
1141 return ret;
1142}
1143
1144static ssize_t vpe_write(struct file *file, const char __user * buffer,
1145 size_t count, loff_t * ppos)
1146{
e01402b1 1147 size_t ret = count;
307bd284 1148 struct vpe *v;
e01402b1 1149
07cc0c9e
RB
1150 if (iminor(file->f_path.dentry->d_inode) != minor)
1151 return -ENODEV;
1152
1153 v = get_vpe(tclimit);
1154 if (v == NULL)
e01402b1
RB
1155 return -ENODEV;
1156
1157 if (v->pbuffer == NULL) {
2600990e 1158 printk(KERN_ERR "VPE loader: no buffer for program\n");
e01402b1
RB
1159 return -ENOMEM;
1160 }
1161
1162 if ((count + v->len) > v->plen) {
1163 printk(KERN_WARNING
2600990e 1164 "VPE loader: elf size too big. Perhaps strip uneeded symbols\n");
e01402b1
RB
1165 return -ENOMEM;
1166 }
1167
1168 count -= copy_from_user(v->pbuffer + v->len, buffer, count);
2600990e 1169 if (!count)
e01402b1 1170 return -EFAULT;
e01402b1
RB
1171
1172 v->len += count;
1173 return ret;
1174}
1175
5dfe4c96 1176static const struct file_operations vpe_fops = {
e01402b1
RB
1177 .owner = THIS_MODULE,
1178 .open = vpe_open,
1179 .release = vpe_release,
1180 .write = vpe_write
1181};
1182
1183/* module wrapper entry points */
1184/* give me a vpe */
1185vpe_handle vpe_alloc(void)
1186{
1187 int i;
1188 struct vpe *v;
1189
1190 /* find a vpe */
1191 for (i = 1; i < MAX_VPES; i++) {
1192 if ((v = get_vpe(i)) != NULL) {
1193 v->state = VPE_STATE_INUSE;
1194 return v;
1195 }
1196 }
1197 return NULL;
1198}
1199
1200EXPORT_SYMBOL(vpe_alloc);
1201
1202/* start running from here */
1203int vpe_start(vpe_handle vpe, unsigned long start)
1204{
1205 struct vpe *v = vpe;
1206
1207 v->__start = start;
1208 return vpe_run(v);
1209}
1210
1211EXPORT_SYMBOL(vpe_start);
1212
1213/* halt it for now */
1214int vpe_stop(vpe_handle vpe)
1215{
1216 struct vpe *v = vpe;
1217 struct tc *t;
1218 unsigned int evpe_flags;
1219
1220 evpe_flags = dvpe();
1221
1222 if ((t = list_entry(v->tc.next, struct tc, tc)) != NULL) {
1223
1224 settc(t->index);
1225 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() & ~VPECONF0_VPA);
1226 }
1227
1228 evpe(evpe_flags);
1229
1230 return 0;
1231}
1232
1233EXPORT_SYMBOL(vpe_stop);
1234
1235/* I've done with it thank you */
1236int vpe_free(vpe_handle vpe)
1237{
1238 struct vpe *v = vpe;
1239 struct tc *t;
1240 unsigned int evpe_flags;
1241
1242 if ((t = list_entry(v->tc.next, struct tc, tc)) == NULL) {
1243 return -ENOEXEC;
1244 }
1245
1246 evpe_flags = dvpe();
1247
1248 /* Put MVPE's into 'configuration state' */
340ee4b9 1249 set_c0_mvpcontrol(MVPCONTROL_VPC);
e01402b1
RB
1250
1251 settc(t->index);
1252 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() & ~VPECONF0_VPA);
1253
7c3a622d 1254 /* halt the TC */
e01402b1 1255 write_tc_c0_tchalt(TCHALT_H);
7c3a622d
NS
1256 mips_ihb();
1257
1258 /* mark the TC unallocated */
1259 write_tc_c0_tcstatus(read_tc_c0_tcstatus() & ~TCSTATUS_A);
e01402b1
RB
1260
1261 v->state = VPE_STATE_UNUSED;
1262
340ee4b9 1263 clear_c0_mvpcontrol(MVPCONTROL_VPC);
e01402b1
RB
1264 evpe(evpe_flags);
1265
1266 return 0;
1267}
1268
1269EXPORT_SYMBOL(vpe_free);
1270
1271void *vpe_get_shared(int index)
1272{
1273 struct vpe *v;
1274
2600990e 1275 if ((v = get_vpe(index)) == NULL)
e01402b1 1276 return NULL;
e01402b1
RB
1277
1278 return v->shared_ptr;
1279}
1280
1281EXPORT_SYMBOL(vpe_get_shared);
1282
2600990e
RB
1283int vpe_getuid(int index)
1284{
1285 struct vpe *v;
1286
1287 if ((v = get_vpe(index)) == NULL)
1288 return -1;
1289
1290 return v->uid;
1291}
1292
1293EXPORT_SYMBOL(vpe_getuid);
1294
1295int vpe_getgid(int index)
1296{
1297 struct vpe *v;
1298
1299 if ((v = get_vpe(index)) == NULL)
1300 return -1;
1301
1302 return v->gid;
1303}
1304
1305EXPORT_SYMBOL(vpe_getgid);
1306
1307int vpe_notify(int index, struct vpe_notifications *notify)
1308{
1309 struct vpe *v;
1310
1311 if ((v = get_vpe(index)) == NULL)
1312 return -1;
1313
1314 list_add(&notify->list, &v->notify);
1315 return 0;
1316}
1317
1318EXPORT_SYMBOL(vpe_notify);
1319
1320char *vpe_getcwd(int index)
1321{
1322 struct vpe *v;
1323
1324 if ((v = get_vpe(index)) == NULL)
1325 return NULL;
1326
1327 return v->cwd;
1328}
1329
1330EXPORT_SYMBOL(vpe_getcwd);
1331
1332#ifdef CONFIG_MIPS_APSP_KSPD
1333static void kspd_sp_exit( int sp_id)
1334{
1335 cleanup_tc(get_tc(sp_id));
1336}
1337#endif
1338
736fad17
KS
1339static ssize_t store_kill(struct device *dev, struct device_attribute *attr,
1340 const char *buf, size_t len)
0f5d0df3
RB
1341{
1342 struct vpe *vpe = get_vpe(tclimit);
1343 struct vpe_notifications *not;
1344
1345 list_for_each_entry(not, &vpe->notify, list) {
1346 not->stop(tclimit);
1347 }
1348
1349 release_progmem(vpe->load_addr);
1350 cleanup_tc(get_tc(tclimit));
1351 vpe_stop(vpe);
1352 vpe_free(vpe);
1353
1354 return len;
1355}
1356
736fad17
KS
1357static ssize_t show_ntcs(struct device *cd, struct device_attribute *attr,
1358 char *buf)
41790e04
RB
1359{
1360 struct vpe *vpe = get_vpe(tclimit);
1361
1362 return sprintf(buf, "%d\n", vpe->ntcs);
1363}
1364
736fad17
KS
1365static ssize_t store_ntcs(struct device *dev, struct device_attribute *attr,
1366 const char *buf, size_t len)
41790e04
RB
1367{
1368 struct vpe *vpe = get_vpe(tclimit);
1369 unsigned long new;
1370 char *endp;
1371
1372 new = simple_strtoul(buf, &endp, 0);
1373 if (endp == buf)
1374 goto out_einval;
1375
1376 if (new == 0 || new > (hw_tcs - tclimit))
1377 goto out_einval;
1378
1379 vpe->ntcs = new;
1380
1381 return len;
1382
1383out_einval:
1384 return -EINVAL;;
1385}
1386
736fad17 1387static struct device_attribute vpe_class_attributes[] = {
0f5d0df3 1388 __ATTR(kill, S_IWUSR, NULL, store_kill),
41790e04
RB
1389 __ATTR(ntcs, S_IRUGO | S_IWUSR, show_ntcs, store_ntcs),
1390 {}
1391};
1392
736fad17 1393static void vpe_device_release(struct device *cd)
41790e04
RB
1394{
1395 kfree(cd);
1396}
1397
1398struct class vpe_class = {
1399 .name = "vpe",
1400 .owner = THIS_MODULE,
736fad17
KS
1401 .dev_release = vpe_device_release,
1402 .dev_attrs = vpe_class_attributes,
41790e04
RB
1403};
1404
736fad17 1405struct device vpe_device;
27a3bbaf 1406
e01402b1
RB
1407static int __init vpe_module_init(void)
1408{
07cc0c9e 1409 unsigned int mtflags, vpflags;
07cc0c9e 1410 unsigned long flags, val;
e01402b1
RB
1411 struct vpe *v = NULL;
1412 struct tc *t;
41790e04 1413 int tc, err;
e01402b1
RB
1414
1415 if (!cpu_has_mipsmt) {
1416 printk("VPE loader: not a MIPS MT capable processor\n");
1417 return -ENODEV;
1418 }
1419
07cc0c9e
RB
1420 if (vpelimit == 0) {
1421 printk(KERN_WARNING "No VPEs reserved for AP/SP, not "
1422 "initializing VPE loader.\nPass maxvpes=<n> argument as "
1423 "kernel argument\n");
1424
1425 return -ENODEV;
1426 }
1427
1428 if (tclimit == 0) {
1429 printk(KERN_WARNING "No TCs reserved for AP/SP, not "
1430 "initializing VPE loader.\nPass maxtcs=<n> argument as "
1431 "kernel argument\n");
1432
1433 return -ENODEV;
1434 }
1435
682e852e
AD
1436 major = register_chrdev(0, module_name, &vpe_fops);
1437 if (major < 0) {
e01402b1 1438 printk("VPE loader: unable to register character device\n");
307bd284 1439 return major;
e01402b1
RB
1440 }
1441
41790e04
RB
1442 err = class_register(&vpe_class);
1443 if (err) {
1444 printk(KERN_ERR "vpe_class registration failed\n");
27a3bbaf
RB
1445 goto out_chrdev;
1446 }
41790e04 1447
736fad17 1448 device_initialize(&vpe_device);
41790e04
RB
1449 vpe_device.class = &vpe_class,
1450 vpe_device.parent = NULL,
736fad17 1451 strlcpy(vpe_device.bus_id, "vpe1", BUS_ID_SIZE);
41790e04 1452 vpe_device.devt = MKDEV(major, minor);
736fad17 1453 err = device_add(&vpe_device);
41790e04
RB
1454 if (err) {
1455 printk(KERN_ERR "Adding vpe_device failed\n");
1456 goto out_class;
1457 }
27a3bbaf 1458
07cc0c9e
RB
1459 local_irq_save(flags);
1460 mtflags = dmt();
1461 vpflags = dvpe();
e01402b1
RB
1462
1463 /* Put MVPE's into 'configuration state' */
340ee4b9 1464 set_c0_mvpcontrol(MVPCONTROL_VPC);
e01402b1
RB
1465
1466 /* dump_mtregs(); */
1467
e01402b1 1468 val = read_c0_mvpconf0();
07cc0c9e
RB
1469 hw_tcs = (val & MVPCONF0_PTC) + 1;
1470 hw_vpes = ((val & MVPCONF0_PVPE) >> MVPCONF0_PVPE_SHIFT) + 1;
1471
1472 for (tc = tclimit; tc < hw_tcs; tc++) {
1473 /*
1474 * Must re-enable multithreading temporarily or in case we
1475 * reschedule send IPIs or similar we might hang.
1476 */
1477 clear_c0_mvpcontrol(MVPCONTROL_VPC);
1478 evpe(vpflags);
1479 emt(mtflags);
1480 local_irq_restore(flags);
1481 t = alloc_tc(tc);
1482 if (!t) {
1483 err = -ENOMEM;
1484 goto out;
1485 }
1486
1487 local_irq_save(flags);
1488 mtflags = dmt();
1489 vpflags = dvpe();
1490 set_c0_mvpcontrol(MVPCONTROL_VPC);
e01402b1
RB
1491
1492 /* VPE's */
07cc0c9e
RB
1493 if (tc < hw_tcs) {
1494 settc(tc);
e01402b1 1495
07cc0c9e 1496 if ((v = alloc_vpe(tc)) == NULL) {
e01402b1 1497 printk(KERN_WARNING "VPE: unable to allocate VPE\n");
07cc0c9e
RB
1498
1499 goto out_reenable;
e01402b1
RB
1500 }
1501
41790e04
RB
1502 v->ntcs = hw_tcs - tclimit;
1503
2600990e
RB
1504 /* add the tc to the list of this vpe's tc's. */
1505 list_add(&t->tc, &v->tc);
e01402b1
RB
1506
1507 /* deactivate all but vpe0 */
07cc0c9e 1508 if (tc >= tclimit) {
e01402b1
RB
1509 unsigned long tmp = read_vpe_c0_vpeconf0();
1510
1511 tmp &= ~VPECONF0_VPA;
1512
1513 /* master VPE */
1514 tmp |= VPECONF0_MVP;
1515 write_vpe_c0_vpeconf0(tmp);
1516 }
1517
1518 /* disable multi-threading with TC's */
1519 write_vpe_c0_vpecontrol(read_vpe_c0_vpecontrol() & ~VPECONTROL_TE);
1520
07cc0c9e 1521 if (tc >= vpelimit) {
2600990e
RB
1522 /*
1523 * Set config to be the same as vpe0,
1524 * particularly kseg0 coherency alg
1525 */
e01402b1
RB
1526 write_vpe_c0_config(read_c0_config());
1527 }
e01402b1
RB
1528 }
1529
1530 /* TC's */
1531 t->pvpe = v; /* set the parent vpe */
1532
07cc0c9e 1533 if (tc >= tclimit) {
e01402b1
RB
1534 unsigned long tmp;
1535
07cc0c9e 1536 settc(tc);
e01402b1 1537
2600990e
RB
1538 /* Any TC that is bound to VPE0 gets left as is - in case
1539 we are running SMTC on VPE0. A TC that is bound to any
1540 other VPE gets bound to VPE0, ideally I'd like to make
1541 it homeless but it doesn't appear to let me bind a TC
1542 to a non-existent VPE. Which is perfectly reasonable.
1543
1544 The (un)bound state is visible to an EJTAG probe so may
1545 notify GDB...
1546 */
1547
1548 if (((tmp = read_tc_c0_tcbind()) & TCBIND_CURVPE)) {
1549 /* tc is bound >vpe0 */
1550 write_tc_c0_tcbind(tmp & ~TCBIND_CURVPE);
1551
1552 t->pvpe = get_vpe(0); /* set the parent vpe */
1553 }
e01402b1 1554
7c3a622d
NS
1555 /* halt the TC */
1556 write_tc_c0_tchalt(TCHALT_H);
1557 mips_ihb();
1558
e01402b1
RB
1559 tmp = read_tc_c0_tcstatus();
1560
2600990e 1561 /* mark not activated and not dynamically allocatable */
e01402b1
RB
1562 tmp &= ~(TCSTATUS_A | TCSTATUS_DA);
1563 tmp |= TCSTATUS_IXMT; /* interrupt exempt */
1564 write_tc_c0_tcstatus(tmp);
e01402b1
RB
1565 }
1566 }
1567
07cc0c9e 1568out_reenable:
e01402b1 1569 /* release config state */
340ee4b9 1570 clear_c0_mvpcontrol(MVPCONTROL_VPC);
e01402b1 1571
07cc0c9e
RB
1572 evpe(vpflags);
1573 emt(mtflags);
1574 local_irq_restore(flags);
1575
2600990e
RB
1576#ifdef CONFIG_MIPS_APSP_KSPD
1577 kspd_events.kspd_sp_exit = kspd_sp_exit;
1578#endif
e01402b1 1579 return 0;
27a3bbaf 1580
41790e04
RB
1581out_class:
1582 class_unregister(&vpe_class);
27a3bbaf
RB
1583out_chrdev:
1584 unregister_chrdev(major, module_name);
1585
07cc0c9e 1586out:
27a3bbaf 1587 return err;
e01402b1
RB
1588}
1589
1590static void __exit vpe_module_exit(void)
1591{
1592 struct vpe *v, *n;
1593
1594 list_for_each_entry_safe(v, n, &vpecontrol.vpe_list, list) {
1595 if (v->state != VPE_STATE_UNUSED) {
1596 release_vpe(v);
1597 }
1598 }
1599
736fad17 1600 device_del(&vpe_device);
e01402b1
RB
1601 unregister_chrdev(major, module_name);
1602}
1603
1604module_init(vpe_module_init);
1605module_exit(vpe_module_exit);
1606MODULE_DESCRIPTION("MIPS VPE Loader");
2600990e 1607MODULE_AUTHOR("Elizabeth Oldham, MIPS Technologies, Inc.");
e01402b1 1608MODULE_LICENSE("GPL");
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