2 * Copyright (C) 2004, 2005 MIPS Technologies, Inc. All rights reserved.
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.
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
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.
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.
27 * To load and run, simply cat a SP 'program file' to /dev/vpe1.
28 * i.e cat spapp >/dev/vpe1.
31 #include <linux/kernel.h>
32 #include <linux/module.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>
47 #include <asm/mipsmtregs.h>
48 #include <asm/cacheflush.h>
49 #include <asm/atomic.h>
51 #include <asm/processor.h>
52 #include <asm/system.h>
56 typedef void *vpe_handle
;
58 #ifndef ARCH_SHF_SMALL
59 #define ARCH_SHF_SMALL 0
62 /* If this is set, the section belongs in the init part of the module */
63 #define INIT_OFFSET_MASK (1UL << (BITS_PER_LONG-1))
65 static char module_name
[] = "vpe";
68 #ifdef CONFIG_MIPS_APSP_KSPD
69 static struct kspd_notifications kspd_events
;
70 static int kspd_events_reqd
= 0;
73 /* grab the likely amount of memory we will need. */
74 #ifdef CONFIG_MIPS_VPE_LOADER_TOM
75 #define P_SIZE (2 * 1024 * 1024)
77 /* add an overhead to the max kmalloc size for non-striped symbols/etc */
78 #define P_SIZE (256 * 1024)
81 extern unsigned long physical_memsize
;
84 #define VPE_PATH_MAX 256
100 enum vpe_state state
;
102 /* (device) minor associated with this vpe */
105 /* elfloader stuff */
110 unsigned int uid
, gid
;
111 char cwd
[VPE_PATH_MAX
];
113 unsigned long __start
;
115 /* tc's associated with this vpe */
118 /* The list of vpe's */
119 struct list_head list
;
121 /* shared symbol address */
124 /* the list of who wants to know when something major happens */
125 struct list_head notify
;
135 /* The list of TC's with this VPE */
138 /* The global list of tc's */
139 struct list_head list
;
143 /* Virtual processing elements */
144 struct list_head vpe_list
;
146 /* Thread contexts */
147 struct list_head tc_list
;
149 .vpe_list
= LIST_HEAD_INIT(vpecontrol
.vpe_list
),
150 .tc_list
= LIST_HEAD_INIT(vpecontrol
.tc_list
)
153 static void release_progmem(void *ptr
);
154 /* static __attribute_used__ void dump_vpe(struct vpe * v); */
155 extern void save_gp_address(unsigned int secbase
, unsigned int rel
);
157 /* get the vpe associated with this minor */
158 struct vpe
*get_vpe(int minor
)
165 list_for_each_entry(v
, &vpecontrol
.vpe_list
, list
) {
166 if (v
->minor
== minor
)
173 /* get the vpe associated with this minor */
174 struct tc
*get_tc(int index
)
178 list_for_each_entry(t
, &vpecontrol
.tc_list
, list
) {
179 if (t
->index
== index
)
186 struct tc
*get_tc_unused(void)
190 list_for_each_entry(t
, &vpecontrol
.tc_list
, list
) {
191 if (t
->state
== TC_STATE_UNUSED
)
198 /* allocate a vpe and associate it with this minor (or index) */
199 struct vpe
*alloc_vpe(int minor
)
203 if ((v
= kzalloc(sizeof(struct vpe
), GFP_KERNEL
)) == NULL
) {
207 INIT_LIST_HEAD(&v
->tc
);
208 list_add_tail(&v
->list
, &vpecontrol
.vpe_list
);
210 INIT_LIST_HEAD(&v
->notify
);
215 /* allocate a tc. At startup only tc0 is running, all other can be halted. */
216 struct tc
*alloc_tc(int index
)
220 if ((t
= kzalloc(sizeof(struct tc
), GFP_KERNEL
)) == NULL
) {
224 INIT_LIST_HEAD(&t
->tc
);
225 list_add_tail(&t
->list
, &vpecontrol
.tc_list
);
232 /* clean up and free everything */
233 void release_vpe(struct vpe
*v
)
241 void dump_mtregs(void)
245 val
= read_c0_config3();
246 printk("config3 0x%lx MT %ld\n", val
,
247 (val
& CONFIG3_MT
) >> CONFIG3_MT_SHIFT
);
249 val
= read_c0_mvpcontrol();
250 printk("MVPControl 0x%lx, STLB %ld VPC %ld EVP %ld\n", val
,
251 (val
& MVPCONTROL_STLB
) >> MVPCONTROL_STLB_SHIFT
,
252 (val
& MVPCONTROL_VPC
) >> MVPCONTROL_VPC_SHIFT
,
253 (val
& MVPCONTROL_EVP
));
255 val
= read_c0_mvpconf0();
256 printk("mvpconf0 0x%lx, PVPE %ld PTC %ld M %ld\n", val
,
257 (val
& MVPCONF0_PVPE
) >> MVPCONF0_PVPE_SHIFT
,
258 val
& MVPCONF0_PTC
, (val
& MVPCONF0_M
) >> MVPCONF0_M_SHIFT
);
261 /* Find some VPE program space */
262 static void *alloc_progmem(unsigned long len
)
264 #ifdef CONFIG_MIPS_VPE_LOADER_TOM
265 /* this means you must tell linux to use less memory than you physically have */
266 return pfn_to_kaddr(max_pfn
);
268 // simple grab some mem for now
269 return kmalloc(len
, GFP_KERNEL
);
273 static void release_progmem(void *ptr
)
275 #ifndef CONFIG_MIPS_VPE_LOADER_TOM
280 /* Update size with this section: return offset. */
281 static long get_offset(unsigned long *size
, Elf_Shdr
* sechdr
)
285 ret
= ALIGN(*size
, sechdr
->sh_addralign
? : 1);
286 *size
= ret
+ sechdr
->sh_size
;
290 /* Lay out the SHF_ALLOC sections in a way not dissimilar to how ld
291 might -- code, read-only data, read-write data, small data. Tally
292 sizes, and place the offsets into sh_entsize fields: high bit means it
294 static void layout_sections(struct module
*mod
, const Elf_Ehdr
* hdr
,
295 Elf_Shdr
* sechdrs
, const char *secstrings
)
297 static unsigned long const masks
[][2] = {
298 /* NOTE: all executable code must be the first section
299 * in this array; otherwise modify the text_size
300 * finder in the two loops below */
301 {SHF_EXECINSTR
| SHF_ALLOC
, ARCH_SHF_SMALL
},
302 {SHF_ALLOC
, SHF_WRITE
| ARCH_SHF_SMALL
},
303 {SHF_WRITE
| SHF_ALLOC
, ARCH_SHF_SMALL
},
304 {ARCH_SHF_SMALL
| SHF_ALLOC
, 0}
308 for (i
= 0; i
< hdr
->e_shnum
; i
++)
309 sechdrs
[i
].sh_entsize
= ~0UL;
311 for (m
= 0; m
< ARRAY_SIZE(masks
); ++m
) {
312 for (i
= 0; i
< hdr
->e_shnum
; ++i
) {
313 Elf_Shdr
*s
= &sechdrs
[i
];
315 // || strncmp(secstrings + s->sh_name, ".init", 5) == 0)
316 if ((s
->sh_flags
& masks
[m
][0]) != masks
[m
][0]
317 || (s
->sh_flags
& masks
[m
][1])
318 || s
->sh_entsize
!= ~0UL)
320 s
->sh_entsize
= get_offset(&mod
->core_size
, s
);
324 mod
->core_text_size
= mod
->core_size
;
330 /* from module-elf32.c, but subverted a little */
333 struct mips_hi16
*next
;
338 static struct mips_hi16
*mips_hi16_list
;
339 static unsigned int gp_offs
, gp_addr
;
341 static int apply_r_mips_none(struct module
*me
, uint32_t *location
,
347 static int apply_r_mips_gprel16(struct module
*me
, uint32_t *location
,
352 if( !(*location
& 0xffff) ) {
353 rel
= (int)v
- gp_addr
;
356 /* .sbss + gp(relative) + offset */
358 rel
= (int)(short)((int)v
+ gp_offs
+
359 (int)(short)(*location
& 0xffff) - gp_addr
);
362 if( (rel
> 32768) || (rel
< -32768) ) {
363 printk(KERN_DEBUG
"VPE loader: apply_r_mips_gprel16: "
364 "relative address 0x%x out of range of gp register\n",
369 *location
= (*location
& 0xffff0000) | (rel
& 0xffff);
374 static int apply_r_mips_pc16(struct module
*me
, uint32_t *location
,
378 rel
= (((unsigned int)v
- (unsigned int)location
));
379 rel
>>= 2; // because the offset is in _instructions_ not bytes.
380 rel
-= 1; // and one instruction less due to the branch delay slot.
382 if( (rel
> 32768) || (rel
< -32768) ) {
383 printk(KERN_DEBUG
"VPE loader: "
384 "apply_r_mips_pc16: relative address out of range 0x%x\n", rel
);
388 *location
= (*location
& 0xffff0000) | (rel
& 0xffff);
393 static int apply_r_mips_32(struct module
*me
, uint32_t *location
,
401 static int apply_r_mips_26(struct module
*me
, uint32_t *location
,
405 printk(KERN_DEBUG
"VPE loader: apply_r_mips_26 "
406 " unaligned relocation\n");
411 * Not desperately convinced this is a good check of an overflow condition
412 * anyway. But it gets in the way of handling undefined weak symbols which
413 * we want to set to zero.
414 * if ((v & 0xf0000000) != (((unsigned long)location + 4) & 0xf0000000)) {
416 * "module %s: relocation overflow\n",
422 *location
= (*location
& ~0x03ffffff) |
423 ((*location
+ (v
>> 2)) & 0x03ffffff);
427 static int apply_r_mips_hi16(struct module
*me
, uint32_t *location
,
433 * We cannot relocate this one now because we don't know the value of
434 * the carry we need to add. Save the information, and let LO16 do the
437 n
= kmalloc(sizeof *n
, GFP_KERNEL
);
443 n
->next
= mips_hi16_list
;
449 static int apply_r_mips_lo16(struct module
*me
, uint32_t *location
,
452 unsigned long insnlo
= *location
;
453 Elf32_Addr val
, vallo
;
455 /* Sign extend the addend we extract from the lo insn. */
456 vallo
= ((insnlo
& 0xffff) ^ 0x8000) - 0x8000;
458 if (mips_hi16_list
!= NULL
) {
463 struct mips_hi16
*next
;
467 * The value for the HI16 had best be the same.
470 printk(KERN_DEBUG
"VPE loader: "
471 "apply_r_mips_lo16/hi16: "
472 "inconsistent value information\n");
477 * Do the HI16 relocation. Note that we actually don't
478 * need to know anything about the LO16 itself, except
479 * where to find the low 16 bits of the addend needed
483 val
= ((insn
& 0xffff) << 16) + vallo
;
487 * Account for the sign extension that will happen in
490 val
= ((val
>> 16) + ((val
& 0x8000) != 0)) & 0xffff;
492 insn
= (insn
& ~0xffff) | val
;
500 mips_hi16_list
= NULL
;
504 * Ok, we're done with the HI16 relocs. Now deal with the LO16.
507 insnlo
= (insnlo
& ~0xffff) | (val
& 0xffff);
513 static int (*reloc_handlers
[]) (struct module
*me
, uint32_t *location
,
515 [R_MIPS_NONE
] = apply_r_mips_none
,
516 [R_MIPS_32
] = apply_r_mips_32
,
517 [R_MIPS_26
] = apply_r_mips_26
,
518 [R_MIPS_HI16
] = apply_r_mips_hi16
,
519 [R_MIPS_LO16
] = apply_r_mips_lo16
,
520 [R_MIPS_GPREL16
] = apply_r_mips_gprel16
,
521 [R_MIPS_PC16
] = apply_r_mips_pc16
524 static char *rstrs
[] = {
525 [R_MIPS_NONE
] = "MIPS_NONE",
526 [R_MIPS_32
] = "MIPS_32",
527 [R_MIPS_26
] = "MIPS_26",
528 [R_MIPS_HI16
] = "MIPS_HI16",
529 [R_MIPS_LO16
] = "MIPS_LO16",
530 [R_MIPS_GPREL16
] = "MIPS_GPREL16",
531 [R_MIPS_PC16
] = "MIPS_PC16"
534 int apply_relocations(Elf32_Shdr
*sechdrs
,
536 unsigned int symindex
,
540 Elf32_Rel
*rel
= (void *) sechdrs
[relsec
].sh_addr
;
547 for (i
= 0; i
< sechdrs
[relsec
].sh_size
/ sizeof(*rel
); i
++) {
548 Elf32_Word r_info
= rel
[i
].r_info
;
550 /* This is where to make the change */
551 location
= (void *)sechdrs
[sechdrs
[relsec
].sh_info
].sh_addr
553 /* This is the symbol it is referring to */
554 sym
= (Elf32_Sym
*)sechdrs
[symindex
].sh_addr
555 + ELF32_R_SYM(r_info
);
557 if (!sym
->st_value
) {
558 printk(KERN_DEBUG
"%s: undefined weak symbol %s\n",
559 me
->name
, strtab
+ sym
->st_name
);
560 /* just print the warning, dont barf */
565 res
= reloc_handlers
[ELF32_R_TYPE(r_info
)](me
, location
, v
);
567 char *r
= rstrs
[ELF32_R_TYPE(r_info
)];
568 printk(KERN_WARNING
"VPE loader: .text+0x%x "
569 "relocation type %s for symbol \"%s\" failed\n",
570 rel
[i
].r_offset
, r
? r
: "UNKNOWN",
571 strtab
+ sym
->st_name
);
579 void save_gp_address(unsigned int secbase
, unsigned int rel
)
581 gp_addr
= secbase
+ rel
;
582 gp_offs
= gp_addr
- (secbase
& 0xffff0000);
584 /* end module-elf32.c */
588 /* Change all symbols so that sh_value encodes the pointer directly. */
589 static void simplify_symbols(Elf_Shdr
* sechdrs
,
590 unsigned int symindex
,
592 const char *secstrings
,
593 unsigned int nsecs
, struct module
*mod
)
595 Elf_Sym
*sym
= (void *)sechdrs
[symindex
].sh_addr
;
596 unsigned long secbase
, bssbase
= 0;
597 unsigned int i
, n
= sechdrs
[symindex
].sh_size
/ sizeof(Elf_Sym
);
600 /* find the .bss section for COMMON symbols */
601 for (i
= 0; i
< nsecs
; i
++) {
602 if (strncmp(secstrings
+ sechdrs
[i
].sh_name
, ".bss", 4) == 0) {
603 bssbase
= sechdrs
[i
].sh_addr
;
608 for (i
= 1; i
< n
; i
++) {
609 switch (sym
[i
].st_shndx
) {
611 /* Allocate space for the symbol in the .bss section.
612 st_value is currently size.
613 We want it to have the address of the symbol. */
615 size
= sym
[i
].st_value
;
616 sym
[i
].st_value
= bssbase
;
622 /* Don't need to do anything */
629 case SHN_MIPS_SCOMMON
:
630 printk(KERN_DEBUG
"simplify_symbols: ignoring SHN_MIPS_SCOMMON"
631 "symbol <%s> st_shndx %d\n", strtab
+ sym
[i
].st_name
,
637 secbase
= sechdrs
[sym
[i
].st_shndx
].sh_addr
;
639 if (strncmp(strtab
+ sym
[i
].st_name
, "_gp", 3) == 0) {
640 save_gp_address(secbase
, sym
[i
].st_value
);
643 sym
[i
].st_value
+= secbase
;
649 #ifdef DEBUG_ELFLOADER
650 static void dump_elfsymbols(Elf_Shdr
* sechdrs
, unsigned int symindex
,
651 const char *strtab
, struct module
*mod
)
653 Elf_Sym
*sym
= (void *)sechdrs
[symindex
].sh_addr
;
654 unsigned int i
, n
= sechdrs
[symindex
].sh_size
/ sizeof(Elf_Sym
);
656 printk(KERN_DEBUG
"dump_elfsymbols: n %d\n", n
);
657 for (i
= 1; i
< n
; i
++) {
658 printk(KERN_DEBUG
" i %d name <%s> 0x%x\n", i
,
659 strtab
+ sym
[i
].st_name
, sym
[i
].st_value
);
664 static void dump_tc(struct tc
*t
)
669 printk(KERN_DEBUG
"VPE loader: TC index %d targtc %ld "
670 "TCStatus 0x%lx halt 0x%lx\n",
671 t
->index
, read_c0_vpecontrol() & VPECONTROL_TARGTC
,
672 read_tc_c0_tcstatus(), read_tc_c0_tchalt());
674 printk(KERN_DEBUG
" tcrestart 0x%lx\n", read_tc_c0_tcrestart());
675 printk(KERN_DEBUG
" tcbind 0x%lx\n", read_tc_c0_tcbind());
677 val
= read_c0_vpeconf0();
678 printk(KERN_DEBUG
" VPEConf0 0x%lx MVP %ld\n", val
,
679 (val
& VPECONF0_MVP
) >> VPECONF0_MVP_SHIFT
);
681 printk(KERN_DEBUG
" c0 status 0x%lx\n", read_vpe_c0_status());
682 printk(KERN_DEBUG
" c0 cause 0x%lx\n", read_vpe_c0_cause());
684 printk(KERN_DEBUG
" c0 badvaddr 0x%lx\n", read_vpe_c0_badvaddr());
685 printk(KERN_DEBUG
" c0 epc 0x%lx\n", read_vpe_c0_epc());
688 static void dump_tclist(void)
692 list_for_each_entry(t
, &vpecontrol
.tc_list
, list
) {
697 /* We are prepared so configure and start the VPE... */
698 int vpe_run(struct vpe
* v
)
700 struct vpe_notifications
*n
;
701 unsigned long val
, dmt_flag
;
704 /* check we are the Master VPE */
705 val
= read_c0_vpeconf0();
706 if (!(val
& VPECONF0_MVP
)) {
708 "VPE loader: only Master VPE's are allowed to configure MT\n");
712 /* disable MT (using dvpe) */
715 if (!list_empty(&v
->tc
)) {
716 if ((t
= list_entry(v
->tc
.next
, struct tc
, tc
)) == NULL
) {
717 printk(KERN_WARNING
"VPE loader: TC %d is already in use.\n",
722 printk(KERN_WARNING
"VPE loader: No TC's associated with VPE %d\n",
727 /* Put MVPE's into 'configuration state' */
728 set_c0_mvpcontrol(MVPCONTROL_VPC
);
732 /* should check it is halted, and not activated */
733 if ((read_tc_c0_tcstatus() & TCSTATUS_A
) || !(read_tc_c0_tchalt() & TCHALT_H
)) {
734 printk(KERN_WARNING
"VPE loader: TC %d is already doing something!\n",
741 * Disable multi-threaded execution whilst we activate, clear the
742 * halt bit and bound the tc to the other VPE...
746 /* Write the address we want it to start running from in the TCPC register. */
747 write_tc_c0_tcrestart((unsigned long)v
->__start
);
748 write_tc_c0_tccontext((unsigned long)0);
750 * Mark the TC as activated, not interrupt exempt and not dynamically
753 val
= read_tc_c0_tcstatus();
754 val
= (val
& ~(TCSTATUS_DA
| TCSTATUS_IXMT
)) | TCSTATUS_A
;
755 write_tc_c0_tcstatus(val
);
757 write_tc_c0_tchalt(read_tc_c0_tchalt() & ~TCHALT_H
);
760 * The sde-kit passes 'memsize' to __start in $a3, so set something
761 * here... Or set $a3 to zero and define DFLT_STACK_SIZE and
762 * DFLT_HEAP_SIZE when you compile your program
764 mttgpr(7, physical_memsize
);
769 * bind the TC to VPE 1 as late as possible so we only have the final
770 * VPE registers to set up, and so an EJTAG probe can trigger on it
772 write_tc_c0_tcbind((read_tc_c0_tcbind() & ~TCBIND_CURVPE
) | v
->minor
);
774 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() & ~(VPECONF0_VPA
));
776 back_to_back_c0_hazard();
778 /* Set up the XTC bit in vpeconf0 to point at our tc */
779 write_vpe_c0_vpeconf0( (read_vpe_c0_vpeconf0() & ~(VPECONF0_XTC
))
780 | (t
->index
<< VPECONF0_XTC_SHIFT
));
782 back_to_back_c0_hazard();
784 /* enable this VPE */
785 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() | VPECONF0_VPA
);
787 /* clear out any left overs from a previous program */
788 write_vpe_c0_status(0);
789 write_vpe_c0_cause(0);
791 /* take system out of configuration state */
792 clear_c0_mvpcontrol(MVPCONTROL_VPC
);
794 /* now safe to re-enable multi-threading */
800 list_for_each_entry(n
, &v
->notify
, list
) {
807 static int find_vpe_symbols(struct vpe
* v
, Elf_Shdr
* sechdrs
,
808 unsigned int symindex
, const char *strtab
,
811 Elf_Sym
*sym
= (void *)sechdrs
[symindex
].sh_addr
;
812 unsigned int i
, n
= sechdrs
[symindex
].sh_size
/ sizeof(Elf_Sym
);
814 for (i
= 1; i
< n
; i
++) {
815 if (strcmp(strtab
+ sym
[i
].st_name
, "__start") == 0) {
816 v
->__start
= sym
[i
].st_value
;
819 if (strcmp(strtab
+ sym
[i
].st_name
, "vpe_shared") == 0) {
820 v
->shared_ptr
= (void *)sym
[i
].st_value
;
824 if ( (v
->__start
== 0) || (v
->shared_ptr
== NULL
))
831 * Allocates a VPE with some program code space(the load address), copies the
832 * contents of the program (p)buffer performing relocatations/etc, free's it
835 int vpe_elfload(struct vpe
* v
)
840 char *secstrings
, *strtab
= NULL
;
841 unsigned int len
, i
, symindex
= 0, strindex
= 0, relocate
= 0;
842 struct module mod
; // so we can re-use the relocations code
844 memset(&mod
, 0, sizeof(struct module
));
845 strcpy(mod
.name
, "VPE loader");
847 hdr
= (Elf_Ehdr
*) v
->pbuffer
;
850 /* Sanity checks against insmoding binaries or wrong arch,
852 if (memcmp(hdr
->e_ident
, ELFMAG
, 4) != 0
853 || (hdr
->e_type
!= ET_REL
&& hdr
->e_type
!= ET_EXEC
)
854 || !elf_check_arch(hdr
)
855 || hdr
->e_shentsize
!= sizeof(*sechdrs
)) {
857 "VPE loader: program wrong arch or weird elf version\n");
862 if (hdr
->e_type
== ET_REL
)
865 if (len
< hdr
->e_shoff
+ hdr
->e_shnum
* sizeof(Elf_Shdr
)) {
866 printk(KERN_ERR
"VPE loader: program length %u truncated\n",
872 /* Convenience variables */
873 sechdrs
= (void *)hdr
+ hdr
->e_shoff
;
874 secstrings
= (void *)hdr
+ sechdrs
[hdr
->e_shstrndx
].sh_offset
;
875 sechdrs
[0].sh_addr
= 0;
877 /* And these should exist, but gcc whinges if we don't init them */
878 symindex
= strindex
= 0;
881 for (i
= 1; i
< hdr
->e_shnum
; i
++) {
882 if (sechdrs
[i
].sh_type
!= SHT_NOBITS
883 && len
< sechdrs
[i
].sh_offset
+ sechdrs
[i
].sh_size
) {
884 printk(KERN_ERR
"VPE program length %u truncated\n",
889 /* Mark all sections sh_addr with their address in the
891 sechdrs
[i
].sh_addr
= (size_t) hdr
+ sechdrs
[i
].sh_offset
;
893 /* Internal symbols and strings. */
894 if (sechdrs
[i
].sh_type
== SHT_SYMTAB
) {
896 strindex
= sechdrs
[i
].sh_link
;
897 strtab
= (char *)hdr
+ sechdrs
[strindex
].sh_offset
;
900 layout_sections(&mod
, hdr
, sechdrs
, secstrings
);
903 v
->load_addr
= alloc_progmem(mod
.core_size
);
904 memset(v
->load_addr
, 0, mod
.core_size
);
906 printk("VPE loader: loading to %p\n", v
->load_addr
);
909 for (i
= 0; i
< hdr
->e_shnum
; i
++) {
912 if (!(sechdrs
[i
].sh_flags
& SHF_ALLOC
))
915 dest
= v
->load_addr
+ sechdrs
[i
].sh_entsize
;
917 if (sechdrs
[i
].sh_type
!= SHT_NOBITS
)
918 memcpy(dest
, (void *)sechdrs
[i
].sh_addr
,
920 /* Update sh_addr to point to copy in image. */
921 sechdrs
[i
].sh_addr
= (unsigned long)dest
;
923 printk(KERN_DEBUG
" section sh_name %s sh_addr 0x%x\n",
924 secstrings
+ sechdrs
[i
].sh_name
, sechdrs
[i
].sh_addr
);
927 /* Fix up syms, so that st_value is a pointer to location. */
928 simplify_symbols(sechdrs
, symindex
, strtab
, secstrings
,
931 /* Now do relocations. */
932 for (i
= 1; i
< hdr
->e_shnum
; i
++) {
933 const char *strtab
= (char *)sechdrs
[strindex
].sh_addr
;
934 unsigned int info
= sechdrs
[i
].sh_info
;
936 /* Not a valid relocation section? */
937 if (info
>= hdr
->e_shnum
)
940 /* Don't bother with non-allocated sections */
941 if (!(sechdrs
[info
].sh_flags
& SHF_ALLOC
))
944 if (sechdrs
[i
].sh_type
== SHT_REL
)
945 err
= apply_relocations(sechdrs
, strtab
, symindex
, i
,
947 else if (sechdrs
[i
].sh_type
== SHT_RELA
)
948 err
= apply_relocate_add(sechdrs
, strtab
, symindex
, i
,
955 for (i
= 0; i
< hdr
->e_shnum
; i
++) {
957 /* Internal symbols and strings. */
958 if (sechdrs
[i
].sh_type
== SHT_SYMTAB
) {
960 strindex
= sechdrs
[i
].sh_link
;
961 strtab
= (char *)hdr
+ sechdrs
[strindex
].sh_offset
;
963 /* mark the symtab's address for when we try to find the
965 sechdrs
[i
].sh_addr
= (size_t) hdr
+ sechdrs
[i
].sh_offset
;
968 /* filter sections we dont want in the final image */
969 if (!(sechdrs
[i
].sh_flags
& SHF_ALLOC
) ||
970 (sechdrs
[i
].sh_type
== SHT_MIPS_REGINFO
)) {
971 printk( KERN_DEBUG
" ignoring section, "
972 "name %s type %x address 0x%x \n",
973 secstrings
+ sechdrs
[i
].sh_name
,
974 sechdrs
[i
].sh_type
, sechdrs
[i
].sh_addr
);
978 if (sechdrs
[i
].sh_addr
< (unsigned int)v
->load_addr
) {
979 printk( KERN_WARNING
"VPE loader: "
980 "fully linked image has invalid section, "
981 "name %s type %x address 0x%x, before load "
983 secstrings
+ sechdrs
[i
].sh_name
,
984 sechdrs
[i
].sh_type
, sechdrs
[i
].sh_addr
,
985 (unsigned int)v
->load_addr
);
989 printk(KERN_DEBUG
" copying section sh_name %s, sh_addr 0x%x "
990 "size 0x%x0 from x%p\n",
991 secstrings
+ sechdrs
[i
].sh_name
, sechdrs
[i
].sh_addr
,
992 sechdrs
[i
].sh_size
, hdr
+ sechdrs
[i
].sh_offset
);
994 if (sechdrs
[i
].sh_type
!= SHT_NOBITS
)
995 memcpy((void *)sechdrs
[i
].sh_addr
,
996 (char *)hdr
+ sechdrs
[i
].sh_offset
,
999 memset((void *)sechdrs
[i
].sh_addr
, 0, sechdrs
[i
].sh_size
);
1003 /* make sure it's physically written out */
1004 flush_icache_range((unsigned long)v
->load_addr
,
1005 (unsigned long)v
->load_addr
+ v
->len
);
1007 if ((find_vpe_symbols(v
, sechdrs
, symindex
, strtab
, &mod
)) < 0) {
1008 if (v
->__start
== 0) {
1009 printk(KERN_WARNING
"VPE loader: program does not contain "
1010 "a __start symbol\n");
1014 if (v
->shared_ptr
== NULL
)
1015 printk(KERN_WARNING
"VPE loader: "
1016 "program does not contain vpe_shared symbol.\n"
1017 " Unable to use AMVP (AP/SP) facilities.\n");
1020 printk(" elf loaded\n");
1024 __attribute_used__
void dump_vpe(struct vpe
* v
)
1030 printk(KERN_DEBUG
"VPEControl 0x%lx\n", read_vpe_c0_vpecontrol());
1031 printk(KERN_DEBUG
"VPEConf0 0x%lx\n", read_vpe_c0_vpeconf0());
1033 list_for_each_entry(t
, &vpecontrol
.tc_list
, list
)
1037 static void cleanup_tc(struct tc
*tc
)
1041 /* Put MVPE's into 'configuration state' */
1042 set_c0_mvpcontrol(MVPCONTROL_VPC
);
1045 tmp
= read_tc_c0_tcstatus();
1047 /* mark not allocated and not dynamically allocatable */
1048 tmp
&= ~(TCSTATUS_A
| TCSTATUS_DA
);
1049 tmp
|= TCSTATUS_IXMT
; /* interrupt exempt */
1050 write_tc_c0_tcstatus(tmp
);
1052 write_tc_c0_tchalt(TCHALT_H
);
1054 /* bind it to anything other than VPE1 */
1055 write_tc_c0_tcbind(read_tc_c0_tcbind() & ~TCBIND_CURVPE
); // | TCBIND_CURVPE
1057 clear_c0_mvpcontrol(MVPCONTROL_VPC
);
1060 static int getcwd(char *buff
, int size
)
1062 mm_segment_t old_fs
;
1068 ret
= sys_getcwd(buff
,size
);
1075 /* checks VPE is unused and gets ready to load program */
1076 static int vpe_open(struct inode
*inode
, struct file
*filp
)
1080 struct vpe_notifications
*not;
1082 /* assume only 1 device at the mo. */
1083 if ((minor
= iminor(inode
)) != 1) {
1084 printk(KERN_WARNING
"VPE loader: only vpe1 is supported\n");
1088 if ((v
= get_vpe(minor
)) == NULL
) {
1089 printk(KERN_WARNING
"VPE loader: unable to get vpe\n");
1093 if (v
->state
!= VPE_STATE_UNUSED
) {
1096 printk(KERN_DEBUG
"VPE loader: tc in use dumping regs\n");
1098 dump_tc(get_tc(minor
));
1100 list_for_each_entry(not, &v
->notify
, list
) {
1104 release_progmem(v
->load_addr
);
1105 cleanup_tc(get_tc(minor
));
1108 // allocate it so when we get write ops we know it's expected.
1109 v
->state
= VPE_STATE_INUSE
;
1111 /* this of-course trashes what was there before... */
1112 v
->pbuffer
= vmalloc(P_SIZE
);
1114 v
->load_addr
= NULL
;
1117 v
->uid
= filp
->f_uid
;
1118 v
->gid
= filp
->f_gid
;
1120 #ifdef CONFIG_MIPS_APSP_KSPD
1121 /* get kspd to tell us when a syscall_exit happens */
1122 if (!kspd_events_reqd
) {
1123 kspd_notify(&kspd_events
);
1129 ret
= getcwd(v
->cwd
, VPE_PATH_MAX
);
1131 printk(KERN_WARNING
"VPE loader: open, getcwd returned %d\n", ret
);
1133 v
->shared_ptr
= NULL
;
1138 static int vpe_release(struct inode
*inode
, struct file
*filp
)
1144 minor
= iminor(inode
);
1145 if ((v
= get_vpe(minor
)) == NULL
)
1148 // simple case of fire and forget, so tell the VPE to run...
1150 hdr
= (Elf_Ehdr
*) v
->pbuffer
;
1151 if (memcmp(hdr
->e_ident
, ELFMAG
, 4) == 0) {
1152 if (vpe_elfload(v
) >= 0)
1155 printk(KERN_WARNING
"VPE loader: ELF load failed.\n");
1159 printk(KERN_WARNING
"VPE loader: only elf files are supported\n");
1163 /* It's good to be able to run the SP and if it chokes have a look at
1164 the /dev/rt?. But if we reset the pointer to the shared struct we
1165 loose what has happened. So perhaps if garbage is sent to the vpe
1166 device, use it as a trigger for the reset. Hopefully a nice
1167 executable will be along shortly. */
1169 v
->shared_ptr
= NULL
;
1171 // cleanup any temp buffers
1178 static ssize_t
vpe_write(struct file
*file
, const char __user
* buffer
,
1179 size_t count
, loff_t
* ppos
)
1185 minor
= iminor(file
->f_path
.dentry
->d_inode
);
1186 if ((v
= get_vpe(minor
)) == NULL
)
1189 if (v
->pbuffer
== NULL
) {
1190 printk(KERN_ERR
"VPE loader: no buffer for program\n");
1194 if ((count
+ v
->len
) > v
->plen
) {
1196 "VPE loader: elf size too big. Perhaps strip uneeded symbols\n");
1200 count
-= copy_from_user(v
->pbuffer
+ v
->len
, buffer
, count
);
1208 static struct file_operations vpe_fops
= {
1209 .owner
= THIS_MODULE
,
1211 .release
= vpe_release
,
1215 /* module wrapper entry points */
1217 vpe_handle
vpe_alloc(void)
1223 for (i
= 1; i
< MAX_VPES
; i
++) {
1224 if ((v
= get_vpe(i
)) != NULL
) {
1225 v
->state
= VPE_STATE_INUSE
;
1232 EXPORT_SYMBOL(vpe_alloc
);
1234 /* start running from here */
1235 int vpe_start(vpe_handle vpe
, unsigned long start
)
1237 struct vpe
*v
= vpe
;
1243 EXPORT_SYMBOL(vpe_start
);
1245 /* halt it for now */
1246 int vpe_stop(vpe_handle vpe
)
1248 struct vpe
*v
= vpe
;
1250 unsigned int evpe_flags
;
1252 evpe_flags
= dvpe();
1254 if ((t
= list_entry(v
->tc
.next
, struct tc
, tc
)) != NULL
) {
1257 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() & ~VPECONF0_VPA
);
1265 EXPORT_SYMBOL(vpe_stop
);
1267 /* I've done with it thank you */
1268 int vpe_free(vpe_handle vpe
)
1270 struct vpe
*v
= vpe
;
1272 unsigned int evpe_flags
;
1274 if ((t
= list_entry(v
->tc
.next
, struct tc
, tc
)) == NULL
) {
1278 evpe_flags
= dvpe();
1280 /* Put MVPE's into 'configuration state' */
1281 set_c0_mvpcontrol(MVPCONTROL_VPC
);
1284 write_vpe_c0_vpeconf0(read_vpe_c0_vpeconf0() & ~VPECONF0_VPA
);
1286 /* mark the TC unallocated and halt'ed */
1287 write_tc_c0_tcstatus(read_tc_c0_tcstatus() & ~TCSTATUS_A
);
1288 write_tc_c0_tchalt(TCHALT_H
);
1290 v
->state
= VPE_STATE_UNUSED
;
1292 clear_c0_mvpcontrol(MVPCONTROL_VPC
);
1298 EXPORT_SYMBOL(vpe_free
);
1300 void *vpe_get_shared(int index
)
1304 if ((v
= get_vpe(index
)) == NULL
)
1307 return v
->shared_ptr
;
1310 EXPORT_SYMBOL(vpe_get_shared
);
1312 int vpe_getuid(int index
)
1316 if ((v
= get_vpe(index
)) == NULL
)
1322 EXPORT_SYMBOL(vpe_getuid
);
1324 int vpe_getgid(int index
)
1328 if ((v
= get_vpe(index
)) == NULL
)
1334 EXPORT_SYMBOL(vpe_getgid
);
1336 int vpe_notify(int index
, struct vpe_notifications
*notify
)
1340 if ((v
= get_vpe(index
)) == NULL
)
1343 list_add(¬ify
->list
, &v
->notify
);
1347 EXPORT_SYMBOL(vpe_notify
);
1349 char *vpe_getcwd(int index
)
1353 if ((v
= get_vpe(index
)) == NULL
)
1359 EXPORT_SYMBOL(vpe_getcwd
);
1361 #ifdef CONFIG_MIPS_APSP_KSPD
1362 static void kspd_sp_exit( int sp_id
)
1364 cleanup_tc(get_tc(sp_id
));
1368 static int __init
vpe_module_init(void)
1370 struct vpe
*v
= NULL
;
1375 if (!cpu_has_mipsmt
) {
1376 printk("VPE loader: not a MIPS MT capable processor\n");
1380 major
= register_chrdev(0, module_name
, &vpe_fops
);
1382 printk("VPE loader: unable to register character device\n");
1389 /* Put MVPE's into 'configuration state' */
1390 set_c0_mvpcontrol(MVPCONTROL_VPC
);
1392 /* dump_mtregs(); */
1395 val
= read_c0_mvpconf0();
1396 for (i
= 0; i
< ((val
& MVPCONF0_PTC
) + 1); i
++) {
1400 if (i
< ((val
& MVPCONF0_PVPE
) >> MVPCONF0_PVPE_SHIFT
) + 1) {
1403 if ((v
= alloc_vpe(i
)) == NULL
) {
1404 printk(KERN_WARNING
"VPE: unable to allocate VPE\n");
1408 /* add the tc to the list of this vpe's tc's. */
1409 list_add(&t
->tc
, &v
->tc
);
1411 /* deactivate all but vpe0 */
1413 unsigned long tmp
= read_vpe_c0_vpeconf0();
1415 tmp
&= ~VPECONF0_VPA
;
1418 tmp
|= VPECONF0_MVP
;
1419 write_vpe_c0_vpeconf0(tmp
);
1422 /* disable multi-threading with TC's */
1423 write_vpe_c0_vpecontrol(read_vpe_c0_vpecontrol() & ~VPECONTROL_TE
);
1426 write_vpe_c0_status((read_c0_status() &
1427 ~(ST0_IM
| ST0_IE
| ST0_KSU
))
1431 * Set config to be the same as vpe0,
1432 * particularly kseg0 coherency alg
1434 write_vpe_c0_config(read_c0_config());
1439 t
->pvpe
= v
; /* set the parent vpe */
1446 /* Any TC that is bound to VPE0 gets left as is - in case
1447 we are running SMTC on VPE0. A TC that is bound to any
1448 other VPE gets bound to VPE0, ideally I'd like to make
1449 it homeless but it doesn't appear to let me bind a TC
1450 to a non-existent VPE. Which is perfectly reasonable.
1452 The (un)bound state is visible to an EJTAG probe so may
1456 if (((tmp
= read_tc_c0_tcbind()) & TCBIND_CURVPE
)) {
1457 /* tc is bound >vpe0 */
1458 write_tc_c0_tcbind(tmp
& ~TCBIND_CURVPE
);
1460 t
->pvpe
= get_vpe(0); /* set the parent vpe */
1463 tmp
= read_tc_c0_tcstatus();
1465 /* mark not activated and not dynamically allocatable */
1466 tmp
&= ~(TCSTATUS_A
| TCSTATUS_DA
);
1467 tmp
|= TCSTATUS_IXMT
; /* interrupt exempt */
1468 write_tc_c0_tcstatus(tmp
);
1470 write_tc_c0_tchalt(TCHALT_H
);
1474 /* release config state */
1475 clear_c0_mvpcontrol(MVPCONTROL_VPC
);
1477 #ifdef CONFIG_MIPS_APSP_KSPD
1478 kspd_events
.kspd_sp_exit
= kspd_sp_exit
;
1483 static void __exit
vpe_module_exit(void)
1487 list_for_each_entry_safe(v
, n
, &vpecontrol
.vpe_list
, list
) {
1488 if (v
->state
!= VPE_STATE_UNUSED
) {
1493 unregister_chrdev(major
, module_name
);
1496 module_init(vpe_module_init
);
1497 module_exit(vpe_module_exit
);
1498 MODULE_DESCRIPTION("MIPS VPE Loader");
1499 MODULE_AUTHOR("Elizabeth Oldham, MIPS Technologies, Inc.");
1500 MODULE_LICENSE("GPL");