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1 config MIPS
2 bool
3 default y
4 # Horrible source of confusion. Die, die, die ...
5 select EMBEDDED
6 select RTC_LIB
7
8 mainmenu "Linux/MIPS Kernel Configuration"
9
10 menu "Machine selection"
11
12 config ZONE_DMA
13 bool
14
15 choice
16 prompt "System type"
17 default SGI_IP22
18
19 config MACH_ALCHEMY
20 bool "Alchemy processor based machines"
21
22 config BASLER_EXCITE
23 bool "Basler eXcite smart camera"
24 select CEVT_R4K
25 select CSRC_R4K
26 select DMA_COHERENT
27 select HW_HAS_PCI
28 select IRQ_CPU
29 select IRQ_CPU_RM7K
30 select IRQ_CPU_RM9K
31 select MIPS_RM9122
32 select SYS_HAS_CPU_RM9000
33 select SYS_SUPPORTS_32BIT_KERNEL
34 select SYS_SUPPORTS_BIG_ENDIAN
35 select SYS_SUPPORTS_KGDB
36 help
37 The eXcite is a smart camera platform manufactured by
38 Basler Vision Technologies AG.
39
40 config BASLER_EXCITE_PROTOTYPE
41 bool "Support for pre-release units"
42 depends on BASLER_EXCITE
43 default n
44 help
45 Pre-series (prototype) units are different from later ones in
46 some ways. Select this option if you have one of these. Please
47 note that a kernel built with this option selected will not be
48 able to run on normal units.
49
50 config BCM47XX
51 bool "BCM47XX based boards"
52 select CEVT_R4K
53 select CSRC_R4K
54 select DMA_NONCOHERENT
55 select HW_HAS_PCI
56 select IRQ_CPU
57 select SYS_HAS_CPU_MIPS32_R1
58 select SYS_SUPPORTS_32BIT_KERNEL
59 select SYS_SUPPORTS_LITTLE_ENDIAN
60 select SSB
61 select SSB_DRIVER_MIPS
62 select SSB_DRIVER_EXTIF
63 select SSB_PCICORE_HOSTMODE if PCI
64 select GENERIC_GPIO
65 select SYS_HAS_EARLY_PRINTK
66 select CFE
67 help
68 Support for BCM47XX based boards
69
70 config MIPS_COBALT
71 bool "Cobalt Server"
72 select CEVT_R4K
73 select CSRC_R4K
74 select CEVT_GT641XX
75 select DMA_NONCOHERENT
76 select HW_HAS_PCI
77 select I8253
78 select I8259
79 select IRQ_CPU
80 select IRQ_GT641XX
81 select PCI_GT64XXX_PCI0
82 select SYS_HAS_CPU_NEVADA
83 select SYS_HAS_EARLY_PRINTK
84 select SYS_SUPPORTS_32BIT_KERNEL
85 select SYS_SUPPORTS_64BIT_KERNEL if EXPERIMENTAL
86 select SYS_SUPPORTS_LITTLE_ENDIAN
87 select GENERIC_HARDIRQS_NO__DO_IRQ
88
89 config MACH_DECSTATION
90 bool "DECstations"
91 select BOOT_ELF32
92 select CEVT_R4K
93 select CSRC_R4K
94 select DMA_NONCOHERENT
95 select NO_IOPORT
96 select IRQ_CPU
97 select SYS_HAS_CPU_R3000
98 select SYS_HAS_CPU_R4X00
99 select SYS_SUPPORTS_32BIT_KERNEL
100 select SYS_SUPPORTS_64BIT_KERNEL if EXPERIMENTAL
101 select SYS_SUPPORTS_LITTLE_ENDIAN
102 select SYS_SUPPORTS_128HZ
103 select SYS_SUPPORTS_256HZ
104 select SYS_SUPPORTS_1024HZ
105 help
106 This enables support for DEC's MIPS based workstations. For details
107 see the Linux/MIPS FAQ on <http://www.linux-mips.org/> and the
108 DECstation porting pages on <http://decstation.unix-ag.org/>.
109
110 If you have one of the following DECstation Models you definitely
111 want to choose R4xx0 for the CPU Type:
112
113 DECstation 5000/50
114 DECstation 5000/150
115 DECstation 5000/260
116 DECsystem 5900/260
117
118 otherwise choose R3000.
119
120 config MACH_JAZZ
121 bool "Jazz family of machines"
122 select ARC
123 select ARC32
124 select ARCH_MAY_HAVE_PC_FDC
125 select CEVT_R4K
126 select CSRC_R4K
127 select GENERIC_ISA_DMA
128 select IRQ_CPU
129 select I8253
130 select I8259
131 select ISA
132 select PCSPEAKER
133 select SYS_HAS_CPU_R4X00
134 select SYS_SUPPORTS_32BIT_KERNEL
135 select SYS_SUPPORTS_64BIT_KERNEL if EXPERIMENTAL
136 select SYS_SUPPORTS_100HZ
137 select GENERIC_HARDIRQS_NO__DO_IRQ
138 help
139 This a family of machines based on the MIPS R4030 chipset which was
140 used by several vendors to build RISC/os and Windows NT workstations.
141 Members include the Acer PICA, MIPS Magnum 4000, MIPS Millenium and
142 Olivetti M700-10 workstations.
143
144 config LASAT
145 bool "LASAT Networks platforms"
146 select CEVT_R4K
147 select CSRC_R4K
148 select DMA_NONCOHERENT
149 select SYS_HAS_EARLY_PRINTK
150 select HW_HAS_PCI
151 select IRQ_CPU
152 select PCI_GT64XXX_PCI0
153 select MIPS_NILE4
154 select R5000_CPU_SCACHE
155 select SYS_HAS_CPU_R5000
156 select SYS_SUPPORTS_32BIT_KERNEL
157 select SYS_SUPPORTS_64BIT_KERNEL if BROKEN
158 select SYS_SUPPORTS_LITTLE_ENDIAN
159 select GENERIC_HARDIRQS_NO__DO_IRQ
160
161 config LEMOTE_FULONG
162 bool "Lemote Fulong mini-PC"
163 select ARCH_SPARSEMEM_ENABLE
164 select CEVT_R4K
165 select CSRC_R4K
166 select SYS_HAS_CPU_LOONGSON2
167 select DMA_NONCOHERENT
168 select BOOT_ELF32
169 select BOARD_SCACHE
170 select HAVE_STD_PC_SERIAL_PORT
171 select HW_HAS_PCI
172 select I8259
173 select ISA
174 select IRQ_CPU
175 select SYS_SUPPORTS_32BIT_KERNEL
176 select SYS_SUPPORTS_64BIT_KERNEL
177 select SYS_SUPPORTS_LITTLE_ENDIAN
178 select SYS_SUPPORTS_HIGHMEM
179 select SYS_HAS_EARLY_PRINTK
180 select GENERIC_HARDIRQS_NO__DO_IRQ
181 select GENERIC_ISA_DMA_SUPPORT_BROKEN
182 select CPU_HAS_WB
183 help
184 Lemote Fulong mini-PC board based on the Chinese Loongson-2E CPU and
185 an FPGA northbridge
186
187 config MIPS_ATLAS
188 bool "MIPS Atlas board"
189 select BOOT_ELF32
190 select CEVT_R4K
191 select CSRC_R4K
192 select DMA_NONCOHERENT
193 select SYS_HAS_EARLY_PRINTK
194 select IRQ_CPU
195 select HW_HAS_PCI
196 select MIPS_BOARDS_GEN
197 select MIPS_BONITO64
198 select PCI_GT64XXX_PCI0
199 select MIPS_MSC
200 select RM7000_CPU_SCACHE
201 select SWAP_IO_SPACE
202 select SYS_HAS_CPU_MIPS32_R1
203 select SYS_HAS_CPU_MIPS32_R2
204 select SYS_HAS_CPU_MIPS64_R1
205 select SYS_HAS_CPU_NEVADA
206 select SYS_HAS_CPU_RM7000
207 select SYS_SUPPORTS_32BIT_KERNEL
208 select SYS_SUPPORTS_64BIT_KERNEL
209 select SYS_SUPPORTS_BIG_ENDIAN
210 select SYS_SUPPORTS_LITTLE_ENDIAN
211 select SYS_SUPPORTS_MULTITHREADING if EXPERIMENTAL
212 select SYS_SUPPORTS_SMARTMIPS
213 select GENERIC_HARDIRQS_NO__DO_IRQ
214 help
215 This enables support for the MIPS Technologies Atlas evaluation
216 board.
217
218 config MIPS_MALTA
219 bool "MIPS Malta board"
220 select ARCH_MAY_HAVE_PC_FDC
221 select BOOT_ELF32
222 select CEVT_R4K
223 select CSRC_R4K
224 select DMA_NONCOHERENT
225 select GENERIC_ISA_DMA
226 select IRQ_CPU
227 select HW_HAS_PCI
228 select I8253
229 select I8259
230 select MIPS_BOARDS_GEN
231 select MIPS_BONITO64
232 select MIPS_CPU_SCACHE
233 select PCI_GT64XXX_PCI0
234 select MIPS_MSC
235 select SWAP_IO_SPACE
236 select SYS_HAS_CPU_MIPS32_R1
237 select SYS_HAS_CPU_MIPS32_R2
238 select SYS_HAS_CPU_MIPS64_R1
239 select SYS_HAS_CPU_NEVADA
240 select SYS_HAS_CPU_RM7000
241 select SYS_HAS_EARLY_PRINTK
242 select SYS_SUPPORTS_32BIT_KERNEL
243 select SYS_SUPPORTS_64BIT_KERNEL
244 select SYS_SUPPORTS_BIG_ENDIAN
245 select SYS_SUPPORTS_LITTLE_ENDIAN
246 select SYS_SUPPORTS_MULTITHREADING
247 select SYS_SUPPORTS_SMARTMIPS
248 help
249 This enables support for the MIPS Technologies Malta evaluation
250 board.
251
252 config MIPS_SEAD
253 bool "MIPS SEAD board"
254 select CEVT_R4K
255 select CSRC_R4K
256 select IRQ_CPU
257 select DMA_NONCOHERENT
258 select SYS_HAS_EARLY_PRINTK
259 select MIPS_BOARDS_GEN
260 select SYS_HAS_CPU_MIPS32_R1
261 select SYS_HAS_CPU_MIPS32_R2
262 select SYS_HAS_CPU_MIPS64_R1
263 select SYS_SUPPORTS_32BIT_KERNEL
264 select SYS_SUPPORTS_64BIT_KERNEL if EXPERIMENTAL
265 select SYS_SUPPORTS_BIG_ENDIAN
266 select SYS_SUPPORTS_LITTLE_ENDIAN
267 select SYS_SUPPORTS_SMARTMIPS
268 help
269 This enables support for the MIPS Technologies SEAD evaluation
270 board.
271
272 config MIPS_SIM
273 bool 'MIPS simulator (MIPSsim)'
274 select CEVT_R4K
275 select CSRC_R4K
276 select DMA_NONCOHERENT
277 select SYS_HAS_EARLY_PRINTK
278 select IRQ_CPU
279 select BOOT_RAW
280 select SYS_HAS_CPU_MIPS32_R1
281 select SYS_HAS_CPU_MIPS32_R2
282 select SYS_HAS_EARLY_PRINTK
283 select SYS_SUPPORTS_32BIT_KERNEL
284 select SYS_SUPPORTS_BIG_ENDIAN
285 select SYS_SUPPORTS_MULTITHREADING
286 select SYS_SUPPORTS_LITTLE_ENDIAN
287 help
288 This option enables support for MIPS Technologies MIPSsim software
289 emulator.
290
291 config MARKEINS
292 bool "NEC EMMA2RH Mark-eins"
293 select CEVT_R4K
294 select CSRC_R4K
295 select DMA_NONCOHERENT
296 select HW_HAS_PCI
297 select IRQ_CPU
298 select SWAP_IO_SPACE
299 select SYS_SUPPORTS_32BIT_KERNEL
300 select SYS_SUPPORTS_BIG_ENDIAN
301 select SYS_SUPPORTS_LITTLE_ENDIAN
302 select SYS_HAS_CPU_R5000
303 help
304 This enables support for the R5432-based NEC Mark-eins
305 boards with R5500 CPU.
306
307 config MACH_VR41XX
308 bool "NEC VR4100 series based machines"
309 select CEVT_R4K
310 select CSRC_R4K
311 select SYS_HAS_CPU_VR41XX
312 select GENERIC_HARDIRQS_NO__DO_IRQ
313
314 config PNX8550_JBS
315 bool "Philips PNX8550 based JBS board"
316 select PNX8550
317 select SYS_SUPPORTS_LITTLE_ENDIAN
318
319 config PNX8550_STB810
320 bool "Philips PNX8550 based STB810 board"
321 select PNX8550
322 select SYS_SUPPORTS_LITTLE_ENDIAN
323
324 config PMC_MSP
325 bool "PMC-Sierra MSP chipsets"
326 depends on EXPERIMENTAL
327 select DMA_NONCOHERENT
328 select SWAP_IO_SPACE
329 select NO_EXCEPT_FILL
330 select BOOT_RAW
331 select SYS_HAS_CPU_MIPS32_R1
332 select SYS_HAS_CPU_MIPS32_R2
333 select SYS_SUPPORTS_32BIT_KERNEL
334 select SYS_SUPPORTS_BIG_ENDIAN
335 select SYS_SUPPORTS_KGDB
336 select IRQ_CPU
337 select SERIAL_8250
338 select SERIAL_8250_CONSOLE
339 help
340 This adds support for the PMC-Sierra family of Multi-Service
341 Processor System-On-A-Chips. These parts include a number
342 of integrated peripherals, interfaces and DSPs in addition to
343 a variety of MIPS cores.
344
345 config PMC_YOSEMITE
346 bool "PMC-Sierra Yosemite eval board"
347 select CEVT_R4K
348 select CSRC_R4K
349 select DMA_COHERENT
350 select HW_HAS_PCI
351 select IRQ_CPU
352 select IRQ_CPU_RM7K
353 select IRQ_CPU_RM9K
354 select SWAP_IO_SPACE
355 select SYS_HAS_CPU_RM9000
356 select SYS_HAS_EARLY_PRINTK
357 select SYS_SUPPORTS_32BIT_KERNEL
358 select SYS_SUPPORTS_64BIT_KERNEL
359 select SYS_SUPPORTS_BIG_ENDIAN
360 select SYS_SUPPORTS_HIGHMEM
361 select SYS_SUPPORTS_KGDB
362 select SYS_SUPPORTS_SMP
363 help
364 Yosemite is an evaluation board for the RM9000x2 processor
365 manufactured by PMC-Sierra.
366
367 config QEMU
368 bool "Qemu"
369 select CEVT_R4K
370 select CSRC_R4K
371 select DMA_COHERENT
372 select GENERIC_ISA_DMA
373 select HAVE_STD_PC_SERIAL_PORT
374 select I8253
375 select I8259
376 select IRQ_CPU
377 select ISA
378 select PCSPEAKER
379 select SWAP_IO_SPACE
380 select SYS_HAS_CPU_MIPS32_R1
381 select SYS_HAS_EARLY_PRINTK
382 select SYS_SUPPORTS_32BIT_KERNEL
383 select SYS_SUPPORTS_BIG_ENDIAN
384 select SYS_SUPPORTS_LITTLE_ENDIAN
385 select GENERIC_HARDIRQS_NO__DO_IRQ
386 select NR_CPUS_DEFAULT_1
387 select SYS_SUPPORTS_SMP
388 help
389 Qemu is a software emulator which among other architectures also
390 can simulate a MIPS32 4Kc system. This patch adds support for the
391 system architecture that currently is being simulated by Qemu. It
392 will eventually be removed again when Qemu has the capability to
393 simulate actual MIPS hardware platforms. More information on Qemu
394 can be found at http://www.linux-mips.org/wiki/Qemu.
395
396 config SGI_IP22
397 bool "SGI IP22 (Indy/Indigo2)"
398 select ARC
399 select ARC32
400 select BOOT_ELF32
401 select CEVT_R4K
402 select CSRC_R4K
403 select DMA_NONCOHERENT
404 select HW_HAS_EISA
405 select I8253
406 select I8259
407 select IP22_CPU_SCACHE
408 select IRQ_CPU
409 select GENERIC_ISA_DMA_SUPPORT_BROKEN
410 select SWAP_IO_SPACE
411 select SYS_HAS_CPU_R4X00
412 select SYS_HAS_CPU_R5000
413 select SYS_HAS_EARLY_PRINTK
414 select SYS_SUPPORTS_32BIT_KERNEL
415 select SYS_SUPPORTS_64BIT_KERNEL
416 select SYS_SUPPORTS_BIG_ENDIAN
417 help
418 This are the SGI Indy, Challenge S and Indigo2, as well as certain
419 OEM variants like the Tandem CMN B006S. To compile a Linux kernel
420 that runs on these, say Y here.
421
422 config SGI_IP27
423 bool "SGI IP27 (Origin200/2000)"
424 select ARC
425 select ARC64
426 select BOOT_ELF64
427 select DMA_IP27
428 select SYS_HAS_EARLY_PRINTK
429 select HW_HAS_PCI
430 select NR_CPUS_DEFAULT_64
431 select SYS_HAS_CPU_R10000
432 select SYS_SUPPORTS_64BIT_KERNEL
433 select SYS_SUPPORTS_BIG_ENDIAN
434 select SYS_SUPPORTS_KGDB
435 select SYS_SUPPORTS_NUMA
436 select SYS_SUPPORTS_SMP
437 select GENERIC_HARDIRQS_NO__DO_IRQ
438 help
439 This are the SGI Origin 200, Origin 2000 and Onyx 2 Graphics
440 workstations. To compile a Linux kernel that runs on these, say Y
441 here.
442
443 config SGI_IP32
444 bool "SGI IP32 (O2)"
445 select ARC
446 select ARC32
447 select BOOT_ELF32
448 select CEVT_R4K
449 select CSRC_R4K
450 select DMA_NONCOHERENT
451 select HW_HAS_PCI
452 select IRQ_CPU
453 select R5000_CPU_SCACHE
454 select RM7000_CPU_SCACHE
455 select SYS_HAS_CPU_R5000
456 select SYS_HAS_CPU_R10000 if BROKEN
457 select SYS_HAS_CPU_RM7000
458 select SYS_HAS_CPU_NEVADA
459 select SYS_SUPPORTS_64BIT_KERNEL
460 select SYS_SUPPORTS_BIG_ENDIAN
461 help
462 If you want this kernel to run on SGI O2 workstation, say Y here.
463
464 config SIBYTE_CRHINE
465 bool "Sibyte BCM91120C-CRhine"
466 depends on EXPERIMENTAL
467 select BOOT_ELF32
468 select DMA_COHERENT
469 select SIBYTE_BCM1120
470 select SWAP_IO_SPACE
471 select SYS_HAS_CPU_SB1
472 select SYS_SUPPORTS_BIG_ENDIAN
473 select SYS_SUPPORTS_LITTLE_ENDIAN
474
475 config SIBYTE_CARMEL
476 bool "Sibyte BCM91120x-Carmel"
477 depends on EXPERIMENTAL
478 select BOOT_ELF32
479 select DMA_COHERENT
480 select SIBYTE_BCM1120
481 select SWAP_IO_SPACE
482 select SYS_HAS_CPU_SB1
483 select SYS_SUPPORTS_BIG_ENDIAN
484 select SYS_SUPPORTS_LITTLE_ENDIAN
485
486 config SIBYTE_CRHONE
487 bool "Sibyte BCM91125C-CRhone"
488 depends on EXPERIMENTAL
489 select BOOT_ELF32
490 select DMA_COHERENT
491 select SIBYTE_BCM1125
492 select SWAP_IO_SPACE
493 select SYS_HAS_CPU_SB1
494 select SYS_SUPPORTS_BIG_ENDIAN
495 select SYS_SUPPORTS_HIGHMEM
496 select SYS_SUPPORTS_LITTLE_ENDIAN
497
498 config SIBYTE_RHONE
499 bool "Sibyte BCM91125E-Rhone"
500 depends on EXPERIMENTAL
501 select BOOT_ELF32
502 select DMA_COHERENT
503 select SIBYTE_BCM1125H
504 select SWAP_IO_SPACE
505 select SYS_HAS_CPU_SB1
506 select SYS_SUPPORTS_BIG_ENDIAN
507 select SYS_SUPPORTS_LITTLE_ENDIAN
508
509 config SIBYTE_SWARM
510 bool "Sibyte BCM91250A-SWARM"
511 select BOOT_ELF32
512 select DMA_COHERENT
513 select NR_CPUS_DEFAULT_2
514 select SIBYTE_SB1250
515 select SWAP_IO_SPACE
516 select SYS_HAS_CPU_SB1
517 select SYS_SUPPORTS_BIG_ENDIAN
518 select SYS_SUPPORTS_HIGHMEM
519 select SYS_SUPPORTS_KGDB
520 select SYS_SUPPORTS_LITTLE_ENDIAN
521 select ZONE_DMA32 if 64BIT
522
523 config SIBYTE_LITTLESUR
524 bool "Sibyte BCM91250C2-LittleSur"
525 depends on EXPERIMENTAL
526 select BOOT_ELF32
527 select DMA_COHERENT
528 select NR_CPUS_DEFAULT_2
529 select SIBYTE_SB1250
530 select SWAP_IO_SPACE
531 select SYS_HAS_CPU_SB1
532 select SYS_SUPPORTS_BIG_ENDIAN
533 select SYS_SUPPORTS_HIGHMEM
534 select SYS_SUPPORTS_LITTLE_ENDIAN
535
536 config SIBYTE_SENTOSA
537 bool "Sibyte BCM91250E-Sentosa"
538 depends on EXPERIMENTAL
539 select BOOT_ELF32
540 select DMA_COHERENT
541 select NR_CPUS_DEFAULT_2
542 select SIBYTE_SB1250
543 select SWAP_IO_SPACE
544 select SYS_HAS_CPU_SB1
545 select SYS_SUPPORTS_BIG_ENDIAN
546 select SYS_SUPPORTS_LITTLE_ENDIAN
547
548 config SIBYTE_PTSWARM
549 bool "Sibyte BCM91250PT-PTSWARM"
550 depends on EXPERIMENTAL
551 select BOOT_ELF32
552 select DMA_COHERENT
553 select NR_CPUS_DEFAULT_2
554 select SIBYTE_SB1250
555 select SWAP_IO_SPACE
556 select SYS_HAS_CPU_SB1
557 select SYS_SUPPORTS_BIG_ENDIAN
558 select SYS_SUPPORTS_HIGHMEM
559 select SYS_SUPPORTS_LITTLE_ENDIAN
560
561 config SIBYTE_BIGSUR
562 bool "Sibyte BCM91480B-BigSur"
563 select BOOT_ELF32
564 select DMA_COHERENT
565 select NR_CPUS_DEFAULT_4
566 select SIBYTE_BCM1x80
567 select SWAP_IO_SPACE
568 select SYS_HAS_CPU_SB1
569 select SYS_SUPPORTS_BIG_ENDIAN
570 select SYS_SUPPORTS_HIGHMEM
571 select SYS_SUPPORTS_LITTLE_ENDIAN
572 select ZONE_DMA32 if 64BIT
573
574 config SNI_RM
575 bool "SNI RM200/300/400"
576 select ARC if CPU_LITTLE_ENDIAN
577 select ARC32 if CPU_LITTLE_ENDIAN
578 select ARCH_MAY_HAVE_PC_FDC
579 select BOOT_ELF32
580 select CEVT_R4K
581 select CSRC_R4K
582 select DMA_NONCOHERENT
583 select GENERIC_ISA_DMA
584 select HW_HAS_EISA
585 select HW_HAS_PCI
586 select IRQ_CPU
587 select I8253
588 select I8259
589 select ISA
590 select PCSPEAKER
591 select SWAP_IO_SPACE if CPU_BIG_ENDIAN
592 select SYS_HAS_CPU_R4X00
593 select SYS_HAS_CPU_R5000
594 select SYS_HAS_CPU_R10000
595 select R5000_CPU_SCACHE
596 select SYS_HAS_EARLY_PRINTK
597 select SYS_SUPPORTS_32BIT_KERNEL
598 select SYS_SUPPORTS_64BIT_KERNEL if EXPERIMENTAL
599 select SYS_SUPPORTS_BIG_ENDIAN
600 select SYS_SUPPORTS_HIGHMEM
601 select SYS_SUPPORTS_LITTLE_ENDIAN
602 help
603 The SNI RM200/300/400 are MIPS-based machines manufactured by
604 Siemens Nixdorf Informationssysteme (SNI), parent company of Pyramid
605 Technology and now in turn merged with Fujitsu. Say Y here to
606 support this machine type.
607
608 config TOSHIBA_JMR3927
609 bool "Toshiba JMR-TX3927 board"
610 select CEVT_TXX9
611 select DMA_NONCOHERENT
612 select HW_HAS_PCI
613 select MIPS_TX3927
614 select IRQ_TXX9
615 select SWAP_IO_SPACE
616 select SYS_HAS_CPU_TX39XX
617 select SYS_SUPPORTS_32BIT_KERNEL
618 select SYS_SUPPORTS_LITTLE_ENDIAN
619 select SYS_SUPPORTS_BIG_ENDIAN
620 select GENERIC_HARDIRQS_NO__DO_IRQ
621
622 config TOSHIBA_RBTX4927
623 bool "Toshiba RBTX49[23]7 board"
624 select CEVT_R4K
625 select CSRC_R4K
626 select CEVT_TXX9
627 select DMA_NONCOHERENT
628 select HAS_TXX9_SERIAL
629 select HW_HAS_PCI
630 select IRQ_CPU
631 select IRQ_TXX9
632 select I8259 if TOSHIBA_FPCIB0
633 select SWAP_IO_SPACE
634 select SYS_HAS_CPU_TX49XX
635 select SYS_SUPPORTS_32BIT_KERNEL
636 select SYS_SUPPORTS_64BIT_KERNEL
637 select SYS_SUPPORTS_LITTLE_ENDIAN
638 select SYS_SUPPORTS_BIG_ENDIAN
639 select SYS_SUPPORTS_KGDB
640 select GENERIC_HARDIRQS_NO__DO_IRQ
641 help
642 This Toshiba board is based on the TX4927 processor. Say Y here to
643 support this machine type
644
645 config TOSHIBA_RBTX4938
646 bool "Toshiba RBTX4938 board"
647 select CEVT_R4K
648 select CSRC_R4K
649 select CEVT_TXX9
650 select DMA_NONCOHERENT
651 select HAS_TXX9_SERIAL
652 select HW_HAS_PCI
653 select IRQ_CPU
654 select IRQ_TXX9
655 select SWAP_IO_SPACE
656 select SYS_HAS_CPU_TX49XX
657 select SYS_SUPPORTS_32BIT_KERNEL
658 select SYS_SUPPORTS_LITTLE_ENDIAN
659 select SYS_SUPPORTS_BIG_ENDIAN
660 select SYS_SUPPORTS_KGDB
661 select GENERIC_HARDIRQS_NO__DO_IRQ
662 select GENERIC_GPIO
663 help
664 This Toshiba board is based on the TX4938 processor. Say Y here to
665 support this machine type
666
667 config WR_PPMC
668 bool "Wind River PPMC board"
669 select CEVT_R4K
670 select CSRC_R4K
671 select IRQ_CPU
672 select BOOT_ELF32
673 select DMA_NONCOHERENT
674 select HW_HAS_PCI
675 select PCI_GT64XXX_PCI0
676 select SWAP_IO_SPACE
677 select SYS_HAS_CPU_MIPS32_R1
678 select SYS_HAS_CPU_MIPS32_R2
679 select SYS_HAS_CPU_MIPS64_R1
680 select SYS_HAS_CPU_NEVADA
681 select SYS_HAS_CPU_RM7000
682 select SYS_SUPPORTS_32BIT_KERNEL
683 select SYS_SUPPORTS_64BIT_KERNEL
684 select SYS_SUPPORTS_BIG_ENDIAN
685 select SYS_SUPPORTS_LITTLE_ENDIAN
686 help
687 This enables support for the Wind River MIPS32 4KC PPMC evaluation
688 board, which is based on GT64120 bridge chip.
689
690 endchoice
691
692 source "arch/mips/au1000/Kconfig"
693 source "arch/mips/jazz/Kconfig"
694 source "arch/mips/lasat/Kconfig"
695 source "arch/mips/pmc-sierra/Kconfig"
696 source "arch/mips/sgi-ip27/Kconfig"
697 source "arch/mips/sibyte/Kconfig"
698 source "arch/mips/tx4927/Kconfig"
699 source "arch/mips/tx4938/Kconfig"
700 source "arch/mips/vr41xx/Kconfig"
701
702 endmenu
703
704 config RWSEM_GENERIC_SPINLOCK
705 bool
706 default y
707
708 config RWSEM_XCHGADD_ALGORITHM
709 bool
710
711 config ARCH_HAS_ILOG2_U32
712 bool
713 default n
714
715 config ARCH_HAS_ILOG2_U64
716 bool
717 default n
718
719 config ARCH_SUPPORTS_OPROFILE
720 bool
721 default y if !MIPS_MT_SMTC
722
723 config GENERIC_FIND_NEXT_BIT
724 bool
725 default y
726
727 config GENERIC_HWEIGHT
728 bool
729 default y
730
731 config GENERIC_CALIBRATE_DELAY
732 bool
733 default y
734
735 config GENERIC_CLOCKEVENTS
736 bool
737 default y
738
739 config GENERIC_TIME
740 bool
741 default y
742
743 config GENERIC_CMOS_UPDATE
744 bool
745 default y
746
747 config SCHED_NO_NO_OMIT_FRAME_POINTER
748 bool
749 default y
750
751 config GENERIC_HARDIRQS_NO__DO_IRQ
752 bool
753 default n
754
755 #
756 # Select some configuration options automatically based on user selections.
757 #
758 config ARC
759 bool
760
761 config ARCH_MAY_HAVE_PC_FDC
762 bool
763
764 config BOOT_RAW
765 bool
766
767 config CEVT_BCM1480
768 bool
769
770 config CEVT_GT641XX
771 bool
772
773 config CEVT_R4K
774 bool
775
776 config CEVT_SB1250
777 bool
778
779 config CEVT_TXX9
780 bool
781
782 config CSRC_BCM1480
783 bool
784
785 config CSRC_R4K
786 bool
787
788 config CSRC_SB1250
789 bool
790
791 config CFE
792 bool
793
794 config DMA_COHERENT
795 bool
796
797 config DMA_IP27
798 bool
799
800 config DMA_IP32
801 bool
802 select DMA_NEED_PCI_MAP_STATE
803
804 config DMA_NONCOHERENT
805 bool
806 select DMA_NEED_PCI_MAP_STATE
807
808 config DMA_NEED_PCI_MAP_STATE
809 bool
810
811 config EARLY_PRINTK
812 bool "Early printk" if EMBEDDED && DEBUG_KERNEL
813 depends on SYS_HAS_EARLY_PRINTK
814 default y
815 help
816 This option enables special console drivers which allow the kernel
817 to print messages very early in the bootup process.
818
819 This is useful for kernel debugging when your machine crashes very
820 early before the console code is initialized. For normal operation,
821 it is not recommended because it looks ugly on some machines and
822 doesn't cooperate with an X server. You should normally say N here,
823 unless you want to debug such a crash.
824
825 config SYS_HAS_EARLY_PRINTK
826 bool
827
828 config HOTPLUG_CPU
829 bool
830 default n
831
832 config I8259
833 bool
834
835 config MIPS_BONITO64
836 bool
837
838 config MIPS_MSC
839 bool
840
841 config MIPS_NILE4
842 bool
843
844 config MIPS_DISABLE_OBSOLETE_IDE
845 bool
846
847 config NO_IOPORT
848 def_bool n
849
850 config GENERIC_ISA_DMA
851 bool
852 select ZONE_DMA if GENERIC_ISA_DMA_SUPPORT_BROKEN=n
853
854 config GENERIC_ISA_DMA_SUPPORT_BROKEN
855 bool
856 select GENERIC_ISA_DMA
857
858 config GENERIC_GPIO
859 bool
860
861 #
862 # Endianess selection. Sufficiently obscure so many users don't know what to
863 # answer,so we try hard to limit the available choices. Also the use of a
864 # choice statement should be more obvious to the user.
865 #
866 choice
867 prompt "Endianess selection"
868 help
869 Some MIPS machines can be configured for either little or big endian
870 byte order. These modes require different kernels and a different
871 Linux distribution. In general there is one preferred byteorder for a
872 particular system but some systems are just as commonly used in the
873 one or the other endianness.
874
875 config CPU_BIG_ENDIAN
876 bool "Big endian"
877 depends on SYS_SUPPORTS_BIG_ENDIAN
878
879 config CPU_LITTLE_ENDIAN
880 bool "Little endian"
881 depends on SYS_SUPPORTS_LITTLE_ENDIAN
882 help
883
884 endchoice
885
886 config SYS_SUPPORTS_APM_EMULATION
887 bool
888
889 config SYS_SUPPORTS_BIG_ENDIAN
890 bool
891
892 config SYS_SUPPORTS_LITTLE_ENDIAN
893 bool
894
895 config IRQ_CPU
896 bool
897
898 config IRQ_CPU_RM7K
899 bool
900
901 config IRQ_CPU_RM9K
902 bool
903
904 config IRQ_MSP_SLP
905 bool
906
907 config IRQ_MSP_CIC
908 bool
909
910 config IRQ_TXX9
911 bool
912
913 config IRQ_GT641XX
914 bool
915
916 config MIPS_BOARDS_GEN
917 bool
918
919 config PCI_GT64XXX_PCI0
920 bool
921
922 config NO_EXCEPT_FILL
923 bool
924
925 config MIPS_TX3927
926 bool
927 select HAS_TXX9_SERIAL
928
929 config MIPS_RM9122
930 bool
931 select SERIAL_RM9000
932
933 config PNX8550
934 bool
935 select SOC_PNX8550
936
937 config SOC_PNX8550
938 bool
939 select DMA_NONCOHERENT
940 select HW_HAS_PCI
941 select SYS_HAS_CPU_MIPS32_R1
942 select SYS_HAS_EARLY_PRINTK
943 select SYS_SUPPORTS_32BIT_KERNEL
944 select GENERIC_HARDIRQS_NO__DO_IRQ
945 select SYS_SUPPORTS_KGDB
946 select GENERIC_GPIO
947
948 config SWAP_IO_SPACE
949 bool
950
951 config EMMA2RH
952 bool
953 depends on MARKEINS
954 default y
955
956 config SERIAL_RM9000
957 bool
958
959 config ARC32
960 bool
961
962 config BOOT_ELF32
963 bool
964
965 config MIPS_L1_CACHE_SHIFT
966 int
967 default "4" if MACH_DECSTATION
968 default "7" if SGI_IP27 || SNI_RM
969 default "4" if PMC_MSP4200_EVAL
970 default "5"
971
972 config HAVE_STD_PC_SERIAL_PORT
973 bool
974
975 config ARC_CONSOLE
976 bool "ARC console support"
977 depends on SGI_IP22 || (SNI_RM && CPU_LITTLE_ENDIAN)
978
979 config ARC_MEMORY
980 bool
981 depends on MACH_JAZZ || SNI_RM || SGI_IP32
982 default y
983
984 config ARC_PROMLIB
985 bool
986 depends on MACH_JAZZ || SNI_RM || SGI_IP22 || SGI_IP32
987 default y
988
989 config ARC64
990 bool
991
992 config BOOT_ELF64
993 bool
994
995 menu "CPU selection"
996
997 choice
998 prompt "CPU type"
999 default CPU_R4X00
1000
1001 config CPU_LOONGSON2
1002 bool "Loongson 2"
1003 depends on SYS_HAS_CPU_LOONGSON2
1004 select CPU_SUPPORTS_32BIT_KERNEL
1005 select CPU_SUPPORTS_64BIT_KERNEL
1006 select CPU_SUPPORTS_HIGHMEM
1007 help
1008 The Loongson 2E processor implements the MIPS III instruction set
1009 with many extensions.
1010
1011 config CPU_MIPS32_R1
1012 bool "MIPS32 Release 1"
1013 depends on SYS_HAS_CPU_MIPS32_R1
1014 select CPU_HAS_LLSC
1015 select CPU_HAS_PREFETCH
1016 select CPU_SUPPORTS_32BIT_KERNEL
1017 select CPU_SUPPORTS_HIGHMEM
1018 help
1019 Choose this option to build a kernel for release 1 or later of the
1020 MIPS32 architecture. Most modern embedded systems with a 32-bit
1021 MIPS processor are based on a MIPS32 processor. If you know the
1022 specific type of processor in your system, choose those that one
1023 otherwise CPU_MIPS32_R1 is a safe bet for any MIPS32 system.
1024 Release 2 of the MIPS32 architecture is available since several
1025 years so chances are you even have a MIPS32 Release 2 processor
1026 in which case you should choose CPU_MIPS32_R2 instead for better
1027 performance.
1028
1029 config CPU_MIPS32_R2
1030 bool "MIPS32 Release 2"
1031 depends on SYS_HAS_CPU_MIPS32_R2
1032 select CPU_HAS_LLSC
1033 select CPU_HAS_PREFETCH
1034 select CPU_SUPPORTS_32BIT_KERNEL
1035 select CPU_SUPPORTS_HIGHMEM
1036 help
1037 Choose this option to build a kernel for release 2 or later of the
1038 MIPS32 architecture. Most modern embedded systems with a 32-bit
1039 MIPS processor are based on a MIPS32 processor. If you know the
1040 specific type of processor in your system, choose those that one
1041 otherwise CPU_MIPS32_R1 is a safe bet for any MIPS32 system.
1042
1043 config CPU_MIPS64_R1
1044 bool "MIPS64 Release 1"
1045 depends on SYS_HAS_CPU_MIPS64_R1
1046 select CPU_HAS_LLSC
1047 select CPU_HAS_PREFETCH
1048 select CPU_SUPPORTS_32BIT_KERNEL
1049 select CPU_SUPPORTS_64BIT_KERNEL
1050 select CPU_SUPPORTS_HIGHMEM
1051 help
1052 Choose this option to build a kernel for release 1 or later of the
1053 MIPS64 architecture. Many modern embedded systems with a 64-bit
1054 MIPS processor are based on a MIPS64 processor. If you know the
1055 specific type of processor in your system, choose those that one
1056 otherwise CPU_MIPS64_R1 is a safe bet for any MIPS64 system.
1057 Release 2 of the MIPS64 architecture is available since several
1058 years so chances are you even have a MIPS64 Release 2 processor
1059 in which case you should choose CPU_MIPS64_R2 instead for better
1060 performance.
1061
1062 config CPU_MIPS64_R2
1063 bool "MIPS64 Release 2"
1064 depends on SYS_HAS_CPU_MIPS64_R2
1065 select CPU_HAS_LLSC
1066 select CPU_HAS_PREFETCH
1067 select CPU_SUPPORTS_32BIT_KERNEL
1068 select CPU_SUPPORTS_64BIT_KERNEL
1069 select CPU_SUPPORTS_HIGHMEM
1070 help
1071 Choose this option to build a kernel for release 2 or later of the
1072 MIPS64 architecture. Many modern embedded systems with a 64-bit
1073 MIPS processor are based on a MIPS64 processor. If you know the
1074 specific type of processor in your system, choose those that one
1075 otherwise CPU_MIPS64_R1 is a safe bet for any MIPS64 system.
1076
1077 config CPU_R3000
1078 bool "R3000"
1079 depends on SYS_HAS_CPU_R3000
1080 select CPU_HAS_WB
1081 select CPU_SUPPORTS_32BIT_KERNEL
1082 select CPU_SUPPORTS_HIGHMEM
1083 help
1084 Please make sure to pick the right CPU type. Linux/MIPS is not
1085 designed to be generic, i.e. Kernels compiled for R3000 CPUs will
1086 *not* work on R4000 machines and vice versa. However, since most
1087 of the supported machines have an R4000 (or similar) CPU, R4x00
1088 might be a safe bet. If the resulting kernel does not work,
1089 try to recompile with R3000.
1090
1091 config CPU_TX39XX
1092 bool "R39XX"
1093 depends on SYS_HAS_CPU_TX39XX
1094 select CPU_SUPPORTS_32BIT_KERNEL
1095
1096 config CPU_VR41XX
1097 bool "R41xx"
1098 depends on SYS_HAS_CPU_VR41XX
1099 select CPU_SUPPORTS_32BIT_KERNEL
1100 select CPU_SUPPORTS_64BIT_KERNEL
1101 help
1102 The options selects support for the NEC VR4100 series of processors.
1103 Only choose this option if you have one of these processors as a
1104 kernel built with this option will not run on any other type of
1105 processor or vice versa.
1106
1107 config CPU_R4300
1108 bool "R4300"
1109 depends on SYS_HAS_CPU_R4300
1110 select CPU_HAS_LLSC
1111 select CPU_SUPPORTS_32BIT_KERNEL
1112 select CPU_SUPPORTS_64BIT_KERNEL
1113 help
1114 MIPS Technologies R4300-series processors.
1115
1116 config CPU_R4X00
1117 bool "R4x00"
1118 depends on SYS_HAS_CPU_R4X00
1119 select CPU_HAS_LLSC
1120 select CPU_SUPPORTS_32BIT_KERNEL
1121 select CPU_SUPPORTS_64BIT_KERNEL
1122 help
1123 MIPS Technologies R4000-series processors other than 4300, including
1124 the R4000, R4400, R4600, and 4700.
1125
1126 config CPU_TX49XX
1127 bool "R49XX"
1128 depends on SYS_HAS_CPU_TX49XX
1129 select CPU_HAS_LLSC
1130 select CPU_HAS_PREFETCH
1131 select CPU_SUPPORTS_32BIT_KERNEL
1132 select CPU_SUPPORTS_64BIT_KERNEL
1133
1134 config CPU_R5000
1135 bool "R5000"
1136 depends on SYS_HAS_CPU_R5000
1137 select CPU_HAS_LLSC
1138 select CPU_SUPPORTS_32BIT_KERNEL
1139 select CPU_SUPPORTS_64BIT_KERNEL
1140 help
1141 MIPS Technologies R5000-series processors other than the Nevada.
1142
1143 config CPU_R5432
1144 bool "R5432"
1145 depends on SYS_HAS_CPU_R5432
1146 select CPU_HAS_LLSC
1147 select CPU_SUPPORTS_32BIT_KERNEL
1148 select CPU_SUPPORTS_64BIT_KERNEL
1149
1150 config CPU_R6000
1151 bool "R6000"
1152 depends on EXPERIMENTAL
1153 select CPU_HAS_LLSC
1154 depends on SYS_HAS_CPU_R6000
1155 select CPU_SUPPORTS_32BIT_KERNEL
1156 help
1157 MIPS Technologies R6000 and R6000A series processors. Note these
1158 processors are extremely rare and the support for them is incomplete.
1159
1160 config CPU_NEVADA
1161 bool "RM52xx"
1162 depends on SYS_HAS_CPU_NEVADA
1163 select CPU_HAS_LLSC
1164 select CPU_SUPPORTS_32BIT_KERNEL
1165 select CPU_SUPPORTS_64BIT_KERNEL
1166 help
1167 QED / PMC-Sierra RM52xx-series ("Nevada") processors.
1168
1169 config CPU_R8000
1170 bool "R8000"
1171 depends on EXPERIMENTAL
1172 depends on SYS_HAS_CPU_R8000
1173 select CPU_HAS_LLSC
1174 select CPU_HAS_PREFETCH
1175 select CPU_SUPPORTS_64BIT_KERNEL
1176 help
1177 MIPS Technologies R8000 processors. Note these processors are
1178 uncommon and the support for them is incomplete.
1179
1180 config CPU_R10000
1181 bool "R10000"
1182 depends on SYS_HAS_CPU_R10000
1183 select CPU_HAS_LLSC
1184 select CPU_HAS_PREFETCH
1185 select CPU_SUPPORTS_32BIT_KERNEL
1186 select CPU_SUPPORTS_64BIT_KERNEL
1187 select CPU_SUPPORTS_HIGHMEM
1188 help
1189 MIPS Technologies R10000-series processors.
1190
1191 config CPU_RM7000
1192 bool "RM7000"
1193 depends on SYS_HAS_CPU_RM7000
1194 select CPU_HAS_LLSC
1195 select CPU_HAS_PREFETCH
1196 select CPU_SUPPORTS_32BIT_KERNEL
1197 select CPU_SUPPORTS_64BIT_KERNEL
1198 select CPU_SUPPORTS_HIGHMEM
1199
1200 config CPU_RM9000
1201 bool "RM9000"
1202 depends on SYS_HAS_CPU_RM9000
1203 select CPU_HAS_LLSC
1204 select CPU_HAS_PREFETCH
1205 select CPU_SUPPORTS_32BIT_KERNEL
1206 select CPU_SUPPORTS_64BIT_KERNEL
1207 select CPU_SUPPORTS_HIGHMEM
1208 select WEAK_ORDERING
1209
1210 config CPU_SB1
1211 bool "SB1"
1212 depends on SYS_HAS_CPU_SB1
1213 select CPU_HAS_LLSC
1214 select CPU_SUPPORTS_32BIT_KERNEL
1215 select CPU_SUPPORTS_64BIT_KERNEL
1216 select CPU_SUPPORTS_HIGHMEM
1217 select WEAK_ORDERING
1218
1219 endchoice
1220
1221 config SYS_HAS_CPU_LOONGSON2
1222 bool
1223
1224 config SYS_HAS_CPU_MIPS32_R1
1225 bool
1226
1227 config SYS_HAS_CPU_MIPS32_R2
1228 bool
1229
1230 config SYS_HAS_CPU_MIPS64_R1
1231 bool
1232
1233 config SYS_HAS_CPU_MIPS64_R2
1234 bool
1235
1236 config SYS_HAS_CPU_R3000
1237 bool
1238
1239 config SYS_HAS_CPU_TX39XX
1240 bool
1241
1242 config SYS_HAS_CPU_VR41XX
1243 bool
1244
1245 config SYS_HAS_CPU_R4300
1246 bool
1247
1248 config SYS_HAS_CPU_R4X00
1249 bool
1250
1251 config SYS_HAS_CPU_TX49XX
1252 bool
1253
1254 config SYS_HAS_CPU_R5000
1255 bool
1256
1257 config SYS_HAS_CPU_R5432
1258 bool
1259
1260 config SYS_HAS_CPU_R6000
1261 bool
1262
1263 config SYS_HAS_CPU_NEVADA
1264 bool
1265
1266 config SYS_HAS_CPU_R8000
1267 bool
1268
1269 config SYS_HAS_CPU_R10000
1270 bool
1271
1272 config SYS_HAS_CPU_RM7000
1273 bool
1274
1275 config SYS_HAS_CPU_RM9000
1276 bool
1277
1278 config SYS_HAS_CPU_SB1
1279 bool
1280
1281 #
1282 # CPU may reorder R->R, R->W, W->R, W->W
1283 # Reordering beyond LL and SC is handled in WEAK_REORDERING_BEYOND_LLSC
1284 #
1285 config WEAK_ORDERING
1286 bool
1287
1288 #
1289 # CPU may reorder reads and writes beyond LL/SC
1290 # CPU may reorder R->LL, R->LL, W->LL, W->LL, R->SC, R->SC, W->SC, W->SC
1291 #
1292 config WEAK_REORDERING_BEYOND_LLSC
1293 bool
1294 endmenu
1295
1296 #
1297 # These two indicate any level of the MIPS32 and MIPS64 architecture
1298 #
1299 config CPU_MIPS32
1300 bool
1301 default y if CPU_MIPS32_R1 || CPU_MIPS32_R2
1302
1303 config CPU_MIPS64
1304 bool
1305 default y if CPU_MIPS64_R1 || CPU_MIPS64_R2
1306
1307 #
1308 # These two indicate the revision of the architecture, either Release 1 or Release 2
1309 #
1310 config CPU_MIPSR1
1311 bool
1312 default y if CPU_MIPS32_R1 || CPU_MIPS64_R1
1313
1314 config CPU_MIPSR2
1315 bool
1316 default y if CPU_MIPS32_R2 || CPU_MIPS64_R2
1317
1318 config SYS_SUPPORTS_32BIT_KERNEL
1319 bool
1320 config SYS_SUPPORTS_64BIT_KERNEL
1321 bool
1322 config CPU_SUPPORTS_32BIT_KERNEL
1323 bool
1324 config CPU_SUPPORTS_64BIT_KERNEL
1325 bool
1326
1327 menu "Kernel type"
1328
1329 choice
1330
1331 prompt "Kernel code model"
1332 help
1333 You should only select this option if you have a workload that
1334 actually benefits from 64-bit processing or if your machine has
1335 large memory. You will only be presented a single option in this
1336 menu if your system does not support both 32-bit and 64-bit kernels.
1337
1338 config 32BIT
1339 bool "32-bit kernel"
1340 depends on CPU_SUPPORTS_32BIT_KERNEL && SYS_SUPPORTS_32BIT_KERNEL
1341 select TRAD_SIGNALS
1342 help
1343 Select this option if you want to build a 32-bit kernel.
1344 config 64BIT
1345 bool "64-bit kernel"
1346 depends on CPU_SUPPORTS_64BIT_KERNEL && SYS_SUPPORTS_64BIT_KERNEL
1347 help
1348 Select this option if you want to build a 64-bit kernel.
1349
1350 endchoice
1351
1352 choice
1353 prompt "Kernel page size"
1354 default PAGE_SIZE_4KB
1355
1356 config PAGE_SIZE_4KB
1357 bool "4kB"
1358 help
1359 This option select the standard 4kB Linux page size. On some
1360 R3000-family processors this is the only available page size. Using
1361 4kB page size will minimize memory consumption and is therefore
1362 recommended for low memory systems.
1363
1364 config PAGE_SIZE_8KB
1365 bool "8kB"
1366 depends on EXPERIMENTAL && CPU_R8000
1367 help
1368 Using 8kB page size will result in higher performance kernel at
1369 the price of higher memory consumption. This option is available
1370 only on the R8000 processor. Not that at the time of this writing
1371 this option is still high experimental; there are also issues with
1372 compatibility of user applications.
1373
1374 config PAGE_SIZE_16KB
1375 bool "16kB"
1376 depends on !CPU_R3000 && !CPU_TX39XX
1377 help
1378 Using 16kB page size will result in higher performance kernel at
1379 the price of higher memory consumption. This option is available on
1380 all non-R3000 family processors. Note that you will need a suitable
1381 Linux distribution to support this.
1382
1383 config PAGE_SIZE_64KB
1384 bool "64kB"
1385 depends on EXPERIMENTAL && !CPU_R3000 && !CPU_TX39XX
1386 help
1387 Using 64kB page size will result in higher performance kernel at
1388 the price of higher memory consumption. This option is available on
1389 all non-R3000 family processor. Not that at the time of this
1390 writing this option is still high experimental.
1391
1392 endchoice
1393
1394 config BOARD_SCACHE
1395 bool
1396
1397 config IP22_CPU_SCACHE
1398 bool
1399 select BOARD_SCACHE
1400
1401 #
1402 # Support for a MIPS32 / MIPS64 style S-caches
1403 #
1404 config MIPS_CPU_SCACHE
1405 bool
1406 select BOARD_SCACHE
1407
1408 config R5000_CPU_SCACHE
1409 bool
1410 select BOARD_SCACHE
1411
1412 config RM7000_CPU_SCACHE
1413 bool
1414 select BOARD_SCACHE
1415
1416 config SIBYTE_DMA_PAGEOPS
1417 bool "Use DMA to clear/copy pages"
1418 depends on CPU_SB1
1419 help
1420 Instead of using the CPU to zero and copy pages, use a Data Mover
1421 channel. These DMA channels are otherwise unused by the standard
1422 SiByte Linux port. Seems to give a small performance benefit.
1423
1424 config CPU_HAS_PREFETCH
1425 bool
1426
1427 choice
1428 prompt "MIPS MT options"
1429
1430 config MIPS_MT_DISABLED
1431 bool "Disable multithreading support."
1432 help
1433 Use this option if your workload can't take advantage of
1434 MIPS hardware multithreading support. On systems that don't have
1435 the option of an MT-enabled processor this option will be the only
1436 option in this menu.
1437
1438 config MIPS_MT_SMP
1439 bool "Use 1 TC on each available VPE for SMP"
1440 depends on SYS_SUPPORTS_MULTITHREADING
1441 select CPU_MIPSR2_IRQ_VI
1442 select CPU_MIPSR2_IRQ_EI
1443 select MIPS_MT
1444 select NR_CPUS_DEFAULT_2
1445 select SMP
1446 select SYS_SUPPORTS_SMP
1447 help
1448 This is a kernel model which is also known a VSMP or lately
1449 has been marketesed into SMVP.
1450
1451 config MIPS_MT_SMTC
1452 bool "SMTC: Use all TCs on all VPEs for SMP"
1453 depends on CPU_MIPS32_R2
1454 #depends on CPU_MIPS64_R2 # once there is hardware ...
1455 depends on SYS_SUPPORTS_MULTITHREADING
1456 select GENERIC_CLOCKEVENTS_BROADCAST
1457 select CPU_MIPSR2_IRQ_VI
1458 select CPU_MIPSR2_IRQ_EI
1459 select MIPS_MT
1460 select NR_CPUS_DEFAULT_8
1461 select SMP
1462 select SYS_SUPPORTS_SMP
1463 help
1464 This is a kernel model which is known a SMTC or lately has been
1465 marketesed into SMVP.
1466
1467 endchoice
1468
1469 config MIPS_MT
1470 bool
1471
1472 config SYS_SUPPORTS_MULTITHREADING
1473 bool
1474
1475 config MIPS_MT_FPAFF
1476 bool "Dynamic FPU affinity for FP-intensive threads"
1477 default y
1478 depends on MIPS_MT_SMP || MIPS_MT_SMTC
1479
1480 config MIPS_VPE_LOADER
1481 bool "VPE loader support."
1482 depends on SYS_SUPPORTS_MULTITHREADING
1483 select CPU_MIPSR2_IRQ_VI
1484 select CPU_MIPSR2_IRQ_EI
1485 select MIPS_MT
1486 help
1487 Includes a loader for loading an elf relocatable object
1488 onto another VPE and running it.
1489
1490 config MIPS_MT_SMTC_INSTANT_REPLAY
1491 bool "Low-latency Dispatch of Deferred SMTC IPIs"
1492 depends on MIPS_MT_SMTC && !PREEMPT
1493 default y
1494 help
1495 SMTC pseudo-interrupts between TCs are deferred and queued
1496 if the target TC is interrupt-inhibited (IXMT). In the first
1497 SMTC prototypes, these queued IPIs were serviced on return
1498 to user mode, or on entry into the kernel idle loop. The
1499 INSTANT_REPLAY option dispatches them as part of local_irq_restore()
1500 processing, which adds runtime overhead (hence the option to turn
1501 it off), but ensures that IPIs are handled promptly even under
1502 heavy I/O interrupt load.
1503
1504 config MIPS_MT_SMTC_IM_BACKSTOP
1505 bool "Use per-TC register bits as backstop for inhibited IM bits"
1506 depends on MIPS_MT_SMTC
1507 default y
1508 help
1509 To support multiple TC microthreads acting as "CPUs" within
1510 a VPE, VPE-wide interrupt mask bits must be specially manipulated
1511 during interrupt handling. To support legacy drivers and interrupt
1512 controller management code, SMTC has a "backstop" to track and
1513 if necessary restore the interrupt mask. This has some performance
1514 impact on interrupt service overhead. Disable it only if you know
1515 what you are doing.
1516
1517 config MIPS_MT_SMTC_IRQAFF
1518 bool "Support IRQ affinity API"
1519 depends on MIPS_MT_SMTC
1520 default n
1521 help
1522 Enables SMP IRQ affinity API (/proc/irq/*/smp_affinity, etc.)
1523 for SMTC Linux kernel. Requires platform support, of which
1524 an example can be found in the MIPS kernel i8259 and Malta
1525 platform code. It is recommended that MIPS_MT_SMTC_INSTANT_REPLAY
1526 be enabled if MIPS_MT_SMTC_IRQAFF is used. Adds overhead to
1527 interrupt dispatch, and should be used only if you know what
1528 you are doing.
1529
1530 config MIPS_VPE_LOADER_TOM
1531 bool "Load VPE program into memory hidden from linux"
1532 depends on MIPS_VPE_LOADER
1533 default y
1534 help
1535 The loader can use memory that is present but has been hidden from
1536 Linux using the kernel command line option "mem=xxMB". It's up to
1537 you to ensure the amount you put in the option and the space your
1538 program requires is less or equal to the amount physically present.
1539
1540 # this should possibly be in drivers/char, but it is rather cpu related. Hmmm
1541 config MIPS_VPE_APSP_API
1542 bool "Enable support for AP/SP API (RTLX)"
1543 depends on MIPS_VPE_LOADER
1544 help
1545
1546 config MIPS_APSP_KSPD
1547 bool "Enable KSPD"
1548 depends on MIPS_VPE_APSP_API
1549 default y
1550 help
1551 KSPD is a kernel daemon that accepts syscall requests from the SP
1552 side, actions them and returns the results. It also handles the
1553 "exit" syscall notifying other kernel modules the SP program is
1554 exiting. You probably want to say yes here.
1555
1556 config SB1_PASS_1_WORKAROUNDS
1557 bool
1558 depends on CPU_SB1_PASS_1
1559 default y
1560
1561 config SB1_PASS_2_WORKAROUNDS
1562 bool
1563 depends on CPU_SB1 && (CPU_SB1_PASS_2_2 || CPU_SB1_PASS_2)
1564 default y
1565
1566 config SB1_PASS_2_1_WORKAROUNDS
1567 bool
1568 depends on CPU_SB1 && CPU_SB1_PASS_2
1569 default y
1570
1571 config 64BIT_PHYS_ADDR
1572 bool
1573
1574 config CPU_HAS_LLSC
1575 bool
1576
1577 config CPU_HAS_SMARTMIPS
1578 depends on SYS_SUPPORTS_SMARTMIPS
1579 bool "Support for the SmartMIPS ASE"
1580 help
1581 SmartMIPS is a extension of the MIPS32 architecture aimed at
1582 increased security at both hardware and software level for
1583 smartcards. Enabling this option will allow proper use of the
1584 SmartMIPS instructions by Linux applications. However a kernel with
1585 this option will not work on a MIPS core without SmartMIPS core. If
1586 you don't know you probably don't have SmartMIPS and should say N
1587 here.
1588
1589 config CPU_HAS_WB
1590 bool
1591
1592 config 64BIT_CONTEXT
1593 bool "Save 64bit integer registers"
1594 depends on 32BIT && CPU_LOONGSON2
1595 help
1596 Loongson2 CPU is 64bit , when used in 32BIT mode, its integer
1597 registers can still be accessed as 64bit, mainly for multimedia
1598 instructions. We must have all 64bit save/restored to make sure
1599 those instructions to get correct result.
1600
1601 #
1602 # Vectored interrupt mode is an R2 feature
1603 #
1604 config CPU_MIPSR2_IRQ_VI
1605 bool
1606
1607 #
1608 # Extended interrupt mode is an R2 feature
1609 #
1610 config CPU_MIPSR2_IRQ_EI
1611 bool
1612
1613 config CPU_HAS_SYNC
1614 bool
1615 depends on !CPU_R3000
1616 default y
1617
1618 config GENERIC_CLOCKEVENTS_BROADCAST
1619 bool
1620
1621 #
1622 # Use the generic interrupt handling code in kernel/irq/:
1623 #
1624 config GENERIC_HARDIRQS
1625 bool
1626 default y
1627
1628 config GENERIC_IRQ_PROBE
1629 bool
1630 default y
1631
1632 config IRQ_PER_CPU
1633 bool
1634
1635 #
1636 # - Highmem only makes sense for the 32-bit kernel.
1637 # - The current highmem code will only work properly on physically indexed
1638 # caches such as R3000, SB1, R7000 or those that look like they're virtually
1639 # indexed such as R4000/R4400 SC and MC versions or R10000. So for the
1640 # moment we protect the user and offer the highmem option only on machines
1641 # where it's known to be safe. This will not offer highmem on a few systems
1642 # such as MIPS32 and MIPS64 CPUs which may have virtual and physically
1643 # indexed CPUs but we're playing safe.
1644 # - We use SYS_SUPPORTS_HIGHMEM to offer highmem only for systems where we
1645 # know they might have memory configurations that could make use of highmem
1646 # support.
1647 #
1648 config HIGHMEM
1649 bool "High Memory Support"
1650 depends on 32BIT && CPU_SUPPORTS_HIGHMEM && SYS_SUPPORTS_HIGHMEM
1651
1652 config CPU_SUPPORTS_HIGHMEM
1653 bool
1654
1655 config SYS_SUPPORTS_HIGHMEM
1656 bool
1657
1658 config SYS_SUPPORTS_SMARTMIPS
1659 bool
1660
1661 config ARCH_FLATMEM_ENABLE
1662 def_bool y
1663 depends on !NUMA
1664
1665 config ARCH_DISCONTIGMEM_ENABLE
1666 bool
1667 default y if SGI_IP27
1668 help
1669 Say Y to support efficient handling of discontiguous physical memory,
1670 for architectures which are either NUMA (Non-Uniform Memory Access)
1671 or have huge holes in the physical address space for other reasons.
1672 See <file:Documentation/vm/numa> for more.
1673
1674 config ARCH_POPULATES_NODE_MAP
1675 def_bool y
1676
1677 config ARCH_SPARSEMEM_ENABLE
1678 bool
1679 select SPARSEMEM_STATIC
1680
1681 config NUMA
1682 bool "NUMA Support"
1683 depends on SYS_SUPPORTS_NUMA
1684 help
1685 Say Y to compile the kernel to support NUMA (Non-Uniform Memory
1686 Access). This option improves performance on systems with more
1687 than two nodes; on two node systems it is generally better to
1688 leave it disabled; on single node systems disable this option
1689 disabled.
1690
1691 config SYS_SUPPORTS_NUMA
1692 bool
1693
1694 config NODES_SHIFT
1695 int
1696 default "6"
1697 depends on NEED_MULTIPLE_NODES
1698
1699 source "mm/Kconfig"
1700
1701 config SMP
1702 bool "Multi-Processing support"
1703 depends on SYS_SUPPORTS_SMP
1704 select IRQ_PER_CPU
1705 help
1706 This enables support for systems with more than one CPU. If you have
1707 a system with only one CPU, like most personal computers, say N. If
1708 you have a system with more than one CPU, say Y.
1709
1710 If you say N here, the kernel will run on single and multiprocessor
1711 machines, but will use only one CPU of a multiprocessor machine. If
1712 you say Y here, the kernel will run on many, but not all,
1713 singleprocessor machines. On a singleprocessor machine, the kernel
1714 will run faster if you say N here.
1715
1716 People using multiprocessor machines who say Y here should also say
1717 Y to "Enhanced Real Time Clock Support", below.
1718
1719 See also the <file:Documentation/smp.txt> and the SMP-HOWTO
1720 available at <http://www.tldp.org/docs.html#howto>.
1721
1722 If you don't know what to do here, say N.
1723
1724 config SYS_SUPPORTS_SMP
1725 bool
1726
1727 config NR_CPUS_DEFAULT_1
1728 bool
1729
1730 config NR_CPUS_DEFAULT_2
1731 bool
1732
1733 config NR_CPUS_DEFAULT_4
1734 bool
1735
1736 config NR_CPUS_DEFAULT_8
1737 bool
1738
1739 config NR_CPUS_DEFAULT_16
1740 bool
1741
1742 config NR_CPUS_DEFAULT_32
1743 bool
1744
1745 config NR_CPUS_DEFAULT_64
1746 bool
1747
1748 config NR_CPUS
1749 int "Maximum number of CPUs (2-64)"
1750 range 1 64 if NR_CPUS_DEFAULT_1
1751 depends on SMP
1752 default "1" if NR_CPUS_DEFAULT_1
1753 default "2" if NR_CPUS_DEFAULT_2
1754 default "4" if NR_CPUS_DEFAULT_4
1755 default "8" if NR_CPUS_DEFAULT_8
1756 default "16" if NR_CPUS_DEFAULT_16
1757 default "32" if NR_CPUS_DEFAULT_32
1758 default "64" if NR_CPUS_DEFAULT_64
1759 help
1760 This allows you to specify the maximum number of CPUs which this
1761 kernel will support. The maximum supported value is 32 for 32-bit
1762 kernel and 64 for 64-bit kernels; the minimum value which makes
1763 sense is 1 for Qemu (useful only for kernel debugging purposes)
1764 and 2 for all others.
1765
1766 This is purely to save memory - each supported CPU adds
1767 approximately eight kilobytes to the kernel image. For best
1768 performance should round up your number of processors to the next
1769 power of two.
1770
1771 source "kernel/time/Kconfig"
1772
1773 #
1774 # Timer Interrupt Frequency Configuration
1775 #
1776
1777 choice
1778 prompt "Timer frequency"
1779 default HZ_250
1780 help
1781 Allows the configuration of the timer frequency.
1782
1783 config HZ_48
1784 bool "48 HZ" if SYS_SUPPORTS_48HZ
1785
1786 config HZ_100
1787 bool "100 HZ" if SYS_SUPPORTS_100HZ || SYS_SUPPORTS_ARBIT_HZ
1788
1789 config HZ_128
1790 bool "128 HZ" if SYS_SUPPORTS_128HZ || SYS_SUPPORTS_ARBIT_HZ
1791
1792 config HZ_250
1793 bool "250 HZ" if SYS_SUPPORTS_250HZ || SYS_SUPPORTS_ARBIT_HZ
1794
1795 config HZ_256
1796 bool "256 HZ" if SYS_SUPPORTS_256HZ || SYS_SUPPORTS_ARBIT_HZ
1797
1798 config HZ_1000
1799 bool "1000 HZ" if SYS_SUPPORTS_1000HZ || SYS_SUPPORTS_ARBIT_HZ
1800
1801 config HZ_1024
1802 bool "1024 HZ" if SYS_SUPPORTS_1024HZ || SYS_SUPPORTS_ARBIT_HZ
1803
1804 endchoice
1805
1806 config SYS_SUPPORTS_48HZ
1807 bool
1808
1809 config SYS_SUPPORTS_100HZ
1810 bool
1811
1812 config SYS_SUPPORTS_128HZ
1813 bool
1814
1815 config SYS_SUPPORTS_250HZ
1816 bool
1817
1818 config SYS_SUPPORTS_256HZ
1819 bool
1820
1821 config SYS_SUPPORTS_1000HZ
1822 bool
1823
1824 config SYS_SUPPORTS_1024HZ
1825 bool
1826
1827 config SYS_SUPPORTS_ARBIT_HZ
1828 bool
1829 default y if !SYS_SUPPORTS_48HZ && !SYS_SUPPORTS_100HZ && \
1830 !SYS_SUPPORTS_128HZ && !SYS_SUPPORTS_250HZ && \
1831 !SYS_SUPPORTS_256HZ && !SYS_SUPPORTS_1000HZ && \
1832 !SYS_SUPPORTS_1024HZ
1833
1834 config HZ
1835 int
1836 default 48 if HZ_48
1837 default 100 if HZ_100
1838 default 128 if HZ_128
1839 default 250 if HZ_250
1840 default 256 if HZ_256
1841 default 1000 if HZ_1000
1842 default 1024 if HZ_1024
1843
1844 source "kernel/Kconfig.preempt"
1845
1846 config MIPS_INSANE_LARGE
1847 bool "Support for large 64-bit configurations"
1848 depends on CPU_R10000 && 64BIT
1849 help
1850 MIPS R10000 does support a 44 bit / 16TB address space as opposed to
1851 previous 64-bit processors which only supported 40 bit / 1TB. If you
1852 need processes of more than 1TB virtual address space, say Y here.
1853 This will result in additional memory usage, so it is not
1854 recommended for normal users.
1855
1856 config KEXEC
1857 bool "Kexec system call (EXPERIMENTAL)"
1858 depends on EXPERIMENTAL
1859 help
1860 kexec is a system call that implements the ability to shutdown your
1861 current kernel, and to start another kernel. It is like a reboot
1862 but it is independent of the system firmware. And like a reboot
1863 you can start any kernel with it, not just Linux.
1864
1865 The name comes from the similarity to the exec system call.
1866
1867 It is an ongoing process to be certain the hardware in a machine
1868 is properly shutdown, so do not be surprised if this code does not
1869 initially work for you. It may help to enable device hotplugging
1870 support. As of this writing the exact hardware interface is
1871 strongly in flux, so no good recommendation can be made.
1872
1873 config SECCOMP
1874 bool "Enable seccomp to safely compute untrusted bytecode"
1875 depends on PROC_FS
1876 default y
1877 help
1878 This kernel feature is useful for number crunching applications
1879 that may need to compute untrusted bytecode during their
1880 execution. By using pipes or other transports made available to
1881 the process as file descriptors supporting the read/write
1882 syscalls, it's possible to isolate those applications in
1883 their own address space using seccomp. Once seccomp is
1884 enabled via /proc/<pid>/seccomp, it cannot be disabled
1885 and the task is only allowed to execute a few safe syscalls
1886 defined by each seccomp mode.
1887
1888 If unsure, say Y. Only embedded should say N here.
1889
1890 endmenu
1891
1892 config RWSEM_GENERIC_SPINLOCK
1893 bool
1894 default y
1895
1896 config LOCKDEP_SUPPORT
1897 bool
1898 default y
1899
1900 config STACKTRACE_SUPPORT
1901 bool
1902 default y
1903
1904 source "init/Kconfig"
1905
1906 menu "Bus options (PCI, PCMCIA, EISA, ISA, TC)"
1907
1908 config HW_HAS_EISA
1909 bool
1910 config HW_HAS_PCI
1911 bool
1912
1913 config PCI
1914 bool "Support for PCI controller"
1915 depends on HW_HAS_PCI
1916 select PCI_DOMAINS
1917 help
1918 Find out whether you have a PCI motherboard. PCI is the name of a
1919 bus system, i.e. the way the CPU talks to the other stuff inside
1920 your box. Other bus systems are ISA, EISA, or VESA. If you have PCI,
1921 say Y, otherwise N.
1922
1923 The PCI-HOWTO, available from
1924 <http://www.tldp.org/docs.html#howto>, contains valuable
1925 information about which PCI hardware does work under Linux and which
1926 doesn't.
1927
1928 config PCI_DOMAINS
1929 bool
1930
1931 source "drivers/pci/Kconfig"
1932
1933 #
1934 # ISA support is now enabled via select. Too many systems still have the one
1935 # or other ISA chip on the board that users don't know about so don't expect
1936 # users to choose the right thing ...
1937 #
1938 config ISA
1939 bool
1940
1941 config EISA
1942 bool "EISA support"
1943 depends on HW_HAS_EISA
1944 select ISA
1945 select GENERIC_ISA_DMA
1946 ---help---
1947 The Extended Industry Standard Architecture (EISA) bus was
1948 developed as an open alternative to the IBM MicroChannel bus.
1949
1950 The EISA bus provided some of the features of the IBM MicroChannel
1951 bus while maintaining backward compatibility with cards made for
1952 the older ISA bus. The EISA bus saw limited use between 1988 and
1953 1995 when it was made obsolete by the PCI bus.
1954
1955 Say Y here if you are building a kernel for an EISA-based machine.
1956
1957 Otherwise, say N.
1958
1959 source "drivers/eisa/Kconfig"
1960
1961 config TC
1962 bool "TURBOchannel support"
1963 depends on MACH_DECSTATION
1964 help
1965 TurboChannel is a DEC (now Compaq (now HP)) bus for Alpha and MIPS
1966 processors. Documentation on writing device drivers for TurboChannel
1967 is available at:
1968 <http://www.cs.arizona.edu/computer.help/policy/DIGITAL_unix/AA-PS3HD-TET1_html/TITLE.html>.
1969
1970 #config ACCESSBUS
1971 # bool "Access.Bus support"
1972 # depends on TC
1973
1974 config MMU
1975 bool
1976 default y
1977
1978 config I8253
1979 bool
1980
1981 config PCSPEAKER
1982 bool
1983
1984 config ZONE_DMA32
1985 bool
1986
1987 source "drivers/pcmcia/Kconfig"
1988
1989 source "drivers/pci/hotplug/Kconfig"
1990
1991 endmenu
1992
1993 menu "Executable file formats"
1994
1995 source "fs/Kconfig.binfmt"
1996
1997 config TRAD_SIGNALS
1998 bool
1999
2000 config BINFMT_IRIX
2001 bool "Include IRIX binary compatibility"
2002 depends on CPU_BIG_ENDIAN && 32BIT && BROKEN
2003
2004 config MIPS32_COMPAT
2005 bool "Kernel support for Linux/MIPS 32-bit binary compatibility"
2006 depends on 64BIT
2007 help
2008 Select this option if you want Linux/MIPS 32-bit binary
2009 compatibility. Since all software available for Linux/MIPS is
2010 currently 32-bit you should say Y here.
2011
2012 config COMPAT
2013 bool
2014 depends on MIPS32_COMPAT
2015 default y
2016
2017 config SYSVIPC_COMPAT
2018 bool
2019 depends on COMPAT && SYSVIPC
2020 default y
2021
2022 config MIPS32_O32
2023 bool "Kernel support for o32 binaries"
2024 depends on MIPS32_COMPAT
2025 help
2026 Select this option if you want to run o32 binaries. These are pure
2027 32-bit binaries as used by the 32-bit Linux/MIPS port. Most of
2028 existing binaries are in this format.
2029
2030 If unsure, say Y.
2031
2032 config MIPS32_N32
2033 bool "Kernel support for n32 binaries"
2034 depends on MIPS32_COMPAT
2035 help
2036 Select this option if you want to run n32 binaries. These are
2037 64-bit binaries using 32-bit quantities for addressing and certain
2038 data that would normally be 64-bit. They are used in special
2039 cases.
2040
2041 If unsure, say N.
2042
2043 config BINFMT_ELF32
2044 bool
2045 default y if MIPS32_O32 || MIPS32_N32
2046
2047 endmenu
2048
2049 menu "Power management options"
2050
2051 source "kernel/power/Kconfig"
2052
2053 endmenu
2054
2055 source "net/Kconfig"
2056
2057 source "drivers/Kconfig"
2058
2059 source "fs/Kconfig"
2060
2061 source "kernel/Kconfig.instrumentation"
2062
2063 source "arch/mips/Kconfig.debug"
2064
2065 source "security/Kconfig"
2066
2067 source "crypto/Kconfig"
2068
2069 source "lib/Kconfig"