xref: /openbmc/linux/arch/arm/Kconfig (revision 80ecbd24)
1config ARM
2	bool
3	default y
4	select ARCH_BINFMT_ELF_RANDOMIZE_PIE
5	select ARCH_HAS_ATOMIC64_DEC_IF_POSITIVE
6	select ARCH_HAVE_CUSTOM_GPIO_H
7	select ARCH_HAS_TICK_BROADCAST if GENERIC_CLOCKEVENTS_BROADCAST
8	select ARCH_WANT_IPC_PARSE_VERSION
9	select BUILDTIME_EXTABLE_SORT if MMU
10	select CPU_PM if (SUSPEND || CPU_IDLE)
11	select DCACHE_WORD_ACCESS if (CPU_V6 || CPU_V6K || CPU_V7) && !CPU_BIG_ENDIAN && MMU
12	select GENERIC_ATOMIC64 if (CPU_V7M || CPU_V6 || !CPU_32v6K || !AEABI)
13	select GENERIC_CLOCKEVENTS_BROADCAST if SMP
14	select GENERIC_IRQ_PROBE
15	select GENERIC_IRQ_SHOW
16	select GENERIC_PCI_IOMAP
17	select GENERIC_SCHED_CLOCK
18	select GENERIC_SMP_IDLE_THREAD
19	select GENERIC_IDLE_POLL_SETUP
20	select GENERIC_STRNCPY_FROM_USER
21	select GENERIC_STRNLEN_USER
22	select HARDIRQS_SW_RESEND
23	select HAVE_ARCH_JUMP_LABEL if !XIP_KERNEL
24	select HAVE_ARCH_KGDB
25	select HAVE_ARCH_SECCOMP_FILTER
26	select HAVE_ARCH_TRACEHOOK
27	select HAVE_BPF_JIT
28	select HAVE_C_RECORDMCOUNT
29	select HAVE_DEBUG_KMEMLEAK
30	select HAVE_DMA_API_DEBUG
31	select HAVE_DMA_ATTRS
32	select HAVE_DMA_CONTIGUOUS if MMU
33	select HAVE_DYNAMIC_FTRACE if (!XIP_KERNEL)
34	select HAVE_FTRACE_MCOUNT_RECORD if (!XIP_KERNEL)
35	select HAVE_FUNCTION_GRAPH_TRACER if (!THUMB2_KERNEL)
36	select HAVE_FUNCTION_TRACER if (!XIP_KERNEL)
37	select HAVE_GENERIC_DMA_COHERENT
38	select HAVE_GENERIC_HARDIRQS
39	select HAVE_HW_BREAKPOINT if (PERF_EVENTS && (CPU_V6 || CPU_V6K || CPU_V7))
40	select HAVE_IDE if PCI || ISA || PCMCIA
41	select HAVE_IRQ_TIME_ACCOUNTING
42	select HAVE_KERNEL_GZIP
43	select HAVE_KERNEL_LZ4
44	select HAVE_KERNEL_LZMA
45	select HAVE_KERNEL_LZO
46	select HAVE_KERNEL_XZ
47	select HAVE_KPROBES if !XIP_KERNEL
48	select HAVE_KRETPROBES if (HAVE_KPROBES)
49	select HAVE_MEMBLOCK
50	select HAVE_OPROFILE if (HAVE_PERF_EVENTS)
51	select HAVE_PERF_EVENTS
52	select HAVE_REGS_AND_STACK_ACCESS_API
53	select HAVE_SYSCALL_TRACEPOINTS
54	select HAVE_UID16
55	select KTIME_SCALAR
56	select PERF_USE_VMALLOC
57	select RTC_LIB
58	select SYS_SUPPORTS_APM_EMULATION
59	select HAVE_MOD_ARCH_SPECIFIC if ARM_UNWIND
60	select MODULES_USE_ELF_REL
61	select CLONE_BACKWARDS
62	select OLD_SIGSUSPEND3
63	select OLD_SIGACTION
64	select HAVE_CONTEXT_TRACKING
65	help
66	  The ARM series is a line of low-power-consumption RISC chip designs
67	  licensed by ARM Ltd and targeted at embedded applications and
68	  handhelds such as the Compaq IPAQ.  ARM-based PCs are no longer
69	  manufactured, but legacy ARM-based PC hardware remains popular in
70	  Europe.  There is an ARM Linux project with a web page at
71	  <http://www.arm.linux.org.uk/>.
72
73config ARM_HAS_SG_CHAIN
74	bool
75
76config NEED_SG_DMA_LENGTH
77	bool
78
79config ARM_DMA_USE_IOMMU
80	bool
81	select ARM_HAS_SG_CHAIN
82	select NEED_SG_DMA_LENGTH
83
84if ARM_DMA_USE_IOMMU
85
86config ARM_DMA_IOMMU_ALIGNMENT
87	int "Maximum PAGE_SIZE order of alignment for DMA IOMMU buffers"
88	range 4 9
89	default 8
90	help
91	  DMA mapping framework by default aligns all buffers to the smallest
92	  PAGE_SIZE order which is greater than or equal to the requested buffer
93	  size. This works well for buffers up to a few hundreds kilobytes, but
94	  for larger buffers it just a waste of address space. Drivers which has
95	  relatively small addressing window (like 64Mib) might run out of
96	  virtual space with just a few allocations.
97
98	  With this parameter you can specify the maximum PAGE_SIZE order for
99	  DMA IOMMU buffers. Larger buffers will be aligned only to this
100	  specified order. The order is expressed as a power of two multiplied
101	  by the PAGE_SIZE.
102
103endif
104
105config HAVE_PWM
106	bool
107
108config MIGHT_HAVE_PCI
109	bool
110
111config SYS_SUPPORTS_APM_EMULATION
112	bool
113
114config HAVE_TCM
115	bool
116	select GENERIC_ALLOCATOR
117
118config HAVE_PROC_CPU
119	bool
120
121config NO_IOPORT
122	bool
123
124config EISA
125	bool
126	---help---
127	  The Extended Industry Standard Architecture (EISA) bus was
128	  developed as an open alternative to the IBM MicroChannel bus.
129
130	  The EISA bus provided some of the features of the IBM MicroChannel
131	  bus while maintaining backward compatibility with cards made for
132	  the older ISA bus.  The EISA bus saw limited use between 1988 and
133	  1995 when it was made obsolete by the PCI bus.
134
135	  Say Y here if you are building a kernel for an EISA-based machine.
136
137	  Otherwise, say N.
138
139config SBUS
140	bool
141
142config STACKTRACE_SUPPORT
143	bool
144	default y
145
146config HAVE_LATENCYTOP_SUPPORT
147	bool
148	depends on !SMP
149	default y
150
151config LOCKDEP_SUPPORT
152	bool
153	default y
154
155config TRACE_IRQFLAGS_SUPPORT
156	bool
157	default y
158
159config RWSEM_GENERIC_SPINLOCK
160	bool
161	default y
162
163config RWSEM_XCHGADD_ALGORITHM
164	bool
165
166config ARCH_HAS_ILOG2_U32
167	bool
168
169config ARCH_HAS_ILOG2_U64
170	bool
171
172config ARCH_HAS_CPUFREQ
173	bool
174	help
175	  Internal node to signify that the ARCH has CPUFREQ support
176	  and that the relevant menu configurations are displayed for
177	  it.
178
179config ARCH_HAS_BANDGAP
180	bool
181
182config GENERIC_HWEIGHT
183	bool
184	default y
185
186config GENERIC_CALIBRATE_DELAY
187	bool
188	default y
189
190config ARCH_MAY_HAVE_PC_FDC
191	bool
192
193config ZONE_DMA
194	bool
195
196config NEED_DMA_MAP_STATE
197       def_bool y
198
199config ARCH_HAS_DMA_SET_COHERENT_MASK
200	bool
201
202config GENERIC_ISA_DMA
203	bool
204
205config FIQ
206	bool
207
208config NEED_RET_TO_USER
209	bool
210
211config ARCH_MTD_XIP
212	bool
213
214config VECTORS_BASE
215	hex
216	default 0xffff0000 if MMU || CPU_HIGH_VECTOR
217	default DRAM_BASE if REMAP_VECTORS_TO_RAM
218	default 0x00000000
219	help
220	  The base address of exception vectors.  This must be two pages
221	  in size.
222
223config ARM_PATCH_PHYS_VIRT
224	bool "Patch physical to virtual translations at runtime" if EMBEDDED
225	default y
226	depends on !XIP_KERNEL && MMU
227	depends on !ARCH_REALVIEW || !SPARSEMEM
228	help
229	  Patch phys-to-virt and virt-to-phys translation functions at
230	  boot and module load time according to the position of the
231	  kernel in system memory.
232
233	  This can only be used with non-XIP MMU kernels where the base
234	  of physical memory is at a 16MB boundary.
235
236	  Only disable this option if you know that you do not require
237	  this feature (eg, building a kernel for a single machine) and
238	  you need to shrink the kernel to the minimal size.
239
240config NEED_MACH_GPIO_H
241	bool
242	help
243	  Select this when mach/gpio.h is required to provide special
244	  definitions for this platform. The need for mach/gpio.h should
245	  be avoided when possible.
246
247config NEED_MACH_IO_H
248	bool
249	help
250	  Select this when mach/io.h is required to provide special
251	  definitions for this platform.  The need for mach/io.h should
252	  be avoided when possible.
253
254config NEED_MACH_MEMORY_H
255	bool
256	help
257	  Select this when mach/memory.h is required to provide special
258	  definitions for this platform.  The need for mach/memory.h should
259	  be avoided when possible.
260
261config PHYS_OFFSET
262	hex "Physical address of main memory" if MMU
263	depends on !ARM_PATCH_PHYS_VIRT && !NEED_MACH_MEMORY_H
264	default DRAM_BASE if !MMU
265	help
266	  Please provide the physical address corresponding to the
267	  location of main memory in your system.
268
269config GENERIC_BUG
270	def_bool y
271	depends on BUG
272
273source "init/Kconfig"
274
275source "kernel/Kconfig.freezer"
276
277menu "System Type"
278
279config MMU
280	bool "MMU-based Paged Memory Management Support"
281	default y
282	help
283	  Select if you want MMU-based virtualised addressing space
284	  support by paged memory management. If unsure, say 'Y'.
285
286#
287# The "ARM system type" choice list is ordered alphabetically by option
288# text.  Please add new entries in the option alphabetic order.
289#
290choice
291	prompt "ARM system type"
292	default ARCH_VERSATILE if !MMU
293	default ARCH_MULTIPLATFORM if MMU
294
295config ARCH_MULTIPLATFORM
296	bool "Allow multiple platforms to be selected"
297	depends on MMU
298	select ARM_PATCH_PHYS_VIRT
299	select AUTO_ZRELADDR
300	select COMMON_CLK
301	select MULTI_IRQ_HANDLER
302	select SPARSE_IRQ
303	select USE_OF
304
305config ARCH_INTEGRATOR
306	bool "ARM Ltd. Integrator family"
307	select ARCH_HAS_CPUFREQ
308	select ARM_AMBA
309	select COMMON_CLK
310	select COMMON_CLK_VERSATILE
311	select GENERIC_CLOCKEVENTS
312	select HAVE_TCM
313	select ICST
314	select MULTI_IRQ_HANDLER
315	select NEED_MACH_MEMORY_H
316	select PLAT_VERSATILE
317	select SPARSE_IRQ
318	select VERSATILE_FPGA_IRQ
319	help
320	  Support for ARM's Integrator platform.
321
322config ARCH_REALVIEW
323	bool "ARM Ltd. RealView family"
324	select ARCH_WANT_OPTIONAL_GPIOLIB
325	select ARM_AMBA
326	select ARM_TIMER_SP804
327	select COMMON_CLK
328	select COMMON_CLK_VERSATILE
329	select GENERIC_CLOCKEVENTS
330	select GPIO_PL061 if GPIOLIB
331	select ICST
332	select NEED_MACH_MEMORY_H
333	select PLAT_VERSATILE
334	select PLAT_VERSATILE_CLCD
335	help
336	  This enables support for ARM Ltd RealView boards.
337
338config ARCH_VERSATILE
339	bool "ARM Ltd. Versatile family"
340	select ARCH_WANT_OPTIONAL_GPIOLIB
341	select ARM_AMBA
342	select ARM_TIMER_SP804
343	select ARM_VIC
344	select CLKDEV_LOOKUP
345	select GENERIC_CLOCKEVENTS
346	select HAVE_MACH_CLKDEV
347	select ICST
348	select PLAT_VERSATILE
349	select PLAT_VERSATILE_CLCD
350	select PLAT_VERSATILE_CLOCK
351	select VERSATILE_FPGA_IRQ
352	help
353	  This enables support for ARM Ltd Versatile board.
354
355config ARCH_AT91
356	bool "Atmel AT91"
357	select ARCH_REQUIRE_GPIOLIB
358	select CLKDEV_LOOKUP
359	select HAVE_CLK
360	select IRQ_DOMAIN
361	select NEED_MACH_GPIO_H
362	select NEED_MACH_IO_H if PCCARD
363	select PINCTRL
364	select PINCTRL_AT91 if USE_OF
365	help
366	  This enables support for systems based on Atmel
367	  AT91RM9200 and AT91SAM9* processors.
368
369config ARCH_CLPS711X
370	bool "Cirrus Logic CLPS711x/EP721x/EP731x-based"
371	select ARCH_REQUIRE_GPIOLIB
372	select AUTO_ZRELADDR
373	select CLKDEV_LOOKUP
374	select CLKSRC_MMIO
375	select COMMON_CLK
376	select CPU_ARM720T
377	select GENERIC_CLOCKEVENTS
378	select MFD_SYSCON
379	select MULTI_IRQ_HANDLER
380	select SPARSE_IRQ
381	help
382	  Support for Cirrus Logic 711x/721x/731x based boards.
383
384config ARCH_GEMINI
385	bool "Cortina Systems Gemini"
386	select ARCH_REQUIRE_GPIOLIB
387	select ARCH_USES_GETTIMEOFFSET
388	select NEED_MACH_GPIO_H
389	select CPU_FA526
390	help
391	  Support for the Cortina Systems Gemini family SoCs
392
393config ARCH_EBSA110
394	bool "EBSA-110"
395	select ARCH_USES_GETTIMEOFFSET
396	select CPU_SA110
397	select ISA
398	select NEED_MACH_IO_H
399	select NEED_MACH_MEMORY_H
400	select NO_IOPORT
401	help
402	  This is an evaluation board for the StrongARM processor available
403	  from Digital. It has limited hardware on-board, including an
404	  Ethernet interface, two PCMCIA sockets, two serial ports and a
405	  parallel port.
406
407config ARCH_EP93XX
408	bool "EP93xx-based"
409	select ARCH_HAS_HOLES_MEMORYMODEL
410	select ARCH_REQUIRE_GPIOLIB
411	select ARCH_USES_GETTIMEOFFSET
412	select ARM_AMBA
413	select ARM_VIC
414	select CLKDEV_LOOKUP
415	select CPU_ARM920T
416	select NEED_MACH_MEMORY_H
417	help
418	  This enables support for the Cirrus EP93xx series of CPUs.
419
420config ARCH_FOOTBRIDGE
421	bool "FootBridge"
422	select CPU_SA110
423	select FOOTBRIDGE
424	select GENERIC_CLOCKEVENTS
425	select HAVE_IDE
426	select NEED_MACH_IO_H if !MMU
427	select NEED_MACH_MEMORY_H
428	help
429	  Support for systems based on the DC21285 companion chip
430	  ("FootBridge"), such as the Simtec CATS and the Rebel NetWinder.
431
432config ARCH_NETX
433	bool "Hilscher NetX based"
434	select ARM_VIC
435	select CLKSRC_MMIO
436	select CPU_ARM926T
437	select GENERIC_CLOCKEVENTS
438	help
439	  This enables support for systems based on the Hilscher NetX Soc
440
441config ARCH_IOP13XX
442	bool "IOP13xx-based"
443	depends on MMU
444	select ARCH_SUPPORTS_MSI
445	select CPU_XSC3
446	select NEED_MACH_MEMORY_H
447	select NEED_RET_TO_USER
448	select PCI
449	select PLAT_IOP
450	select VMSPLIT_1G
451	help
452	  Support for Intel's IOP13XX (XScale) family of processors.
453
454config ARCH_IOP32X
455	bool "IOP32x-based"
456	depends on MMU
457	select ARCH_REQUIRE_GPIOLIB
458	select CPU_XSCALE
459	select NEED_MACH_GPIO_H
460	select NEED_RET_TO_USER
461	select PCI
462	select PLAT_IOP
463	help
464	  Support for Intel's 80219 and IOP32X (XScale) family of
465	  processors.
466
467config ARCH_IOP33X
468	bool "IOP33x-based"
469	depends on MMU
470	select ARCH_REQUIRE_GPIOLIB
471	select CPU_XSCALE
472	select NEED_MACH_GPIO_H
473	select NEED_RET_TO_USER
474	select PCI
475	select PLAT_IOP
476	help
477	  Support for Intel's IOP33X (XScale) family of processors.
478
479config ARCH_IXP4XX
480	bool "IXP4xx-based"
481	depends on MMU
482	select ARCH_HAS_DMA_SET_COHERENT_MASK
483	select ARCH_REQUIRE_GPIOLIB
484	select CLKSRC_MMIO
485	select CPU_XSCALE
486	select DMABOUNCE if PCI
487	select GENERIC_CLOCKEVENTS
488	select MIGHT_HAVE_PCI
489	select NEED_MACH_IO_H
490	select USB_EHCI_BIG_ENDIAN_MMIO
491	select USB_EHCI_BIG_ENDIAN_DESC
492	help
493	  Support for Intel's IXP4XX (XScale) family of processors.
494
495config ARCH_DOVE
496	bool "Marvell Dove"
497	select ARCH_REQUIRE_GPIOLIB
498	select CPU_PJ4
499	select GENERIC_CLOCKEVENTS
500	select MIGHT_HAVE_PCI
501	select PINCTRL
502	select PINCTRL_DOVE
503	select PLAT_ORION_LEGACY
504	select USB_ARCH_HAS_EHCI
505	select MVEBU_MBUS
506	help
507	  Support for the Marvell Dove SoC 88AP510
508
509config ARCH_KIRKWOOD
510	bool "Marvell Kirkwood"
511	select ARCH_HAS_CPUFREQ
512	select ARCH_REQUIRE_GPIOLIB
513	select CPU_FEROCEON
514	select GENERIC_CLOCKEVENTS
515	select PCI
516	select PCI_QUIRKS
517	select PINCTRL
518	select PINCTRL_KIRKWOOD
519	select PLAT_ORION_LEGACY
520	select MVEBU_MBUS
521	help
522	  Support for the following Marvell Kirkwood series SoCs:
523	  88F6180, 88F6192 and 88F6281.
524
525config ARCH_MV78XX0
526	bool "Marvell MV78xx0"
527	select ARCH_REQUIRE_GPIOLIB
528	select CPU_FEROCEON
529	select GENERIC_CLOCKEVENTS
530	select PCI
531	select PLAT_ORION_LEGACY
532	select MVEBU_MBUS
533	help
534	  Support for the following Marvell MV78xx0 series SoCs:
535	  MV781x0, MV782x0.
536
537config ARCH_ORION5X
538	bool "Marvell Orion"
539	depends on MMU
540	select ARCH_REQUIRE_GPIOLIB
541	select CPU_FEROCEON
542	select GENERIC_CLOCKEVENTS
543	select PCI
544	select PLAT_ORION_LEGACY
545	select MVEBU_MBUS
546	help
547	  Support for the following Marvell Orion 5x series SoCs:
548	  Orion-1 (5181), Orion-VoIP (5181L), Orion-NAS (5182),
549	  Orion-2 (5281), Orion-1-90 (6183).
550
551config ARCH_MMP
552	bool "Marvell PXA168/910/MMP2"
553	depends on MMU
554	select ARCH_REQUIRE_GPIOLIB
555	select CLKDEV_LOOKUP
556	select GENERIC_ALLOCATOR
557	select GENERIC_CLOCKEVENTS
558	select GPIO_PXA
559	select IRQ_DOMAIN
560	select NEED_MACH_GPIO_H
561	select PINCTRL
562	select PLAT_PXA
563	select SPARSE_IRQ
564	help
565	  Support for Marvell's PXA168/PXA910(MMP) and MMP2 processor line.
566
567config ARCH_KS8695
568	bool "Micrel/Kendin KS8695"
569	select ARCH_REQUIRE_GPIOLIB
570	select CLKSRC_MMIO
571	select CPU_ARM922T
572	select GENERIC_CLOCKEVENTS
573	select NEED_MACH_MEMORY_H
574	help
575	  Support for Micrel/Kendin KS8695 "Centaur" (ARM922T) based
576	  System-on-Chip devices.
577
578config ARCH_W90X900
579	bool "Nuvoton W90X900 CPU"
580	select ARCH_REQUIRE_GPIOLIB
581	select CLKDEV_LOOKUP
582	select CLKSRC_MMIO
583	select CPU_ARM926T
584	select GENERIC_CLOCKEVENTS
585	help
586	  Support for Nuvoton (Winbond logic dept.) ARM9 processor,
587	  At present, the w90x900 has been renamed nuc900, regarding
588	  the ARM series product line, you can login the following
589	  link address to know more.
590
591	  <http://www.nuvoton.com/hq/enu/ProductAndSales/ProductLines/
592		ConsumerElectronicsIC/ARMMicrocontroller/ARMMicrocontroller>
593
594config ARCH_LPC32XX
595	bool "NXP LPC32XX"
596	select ARCH_REQUIRE_GPIOLIB
597	select ARM_AMBA
598	select CLKDEV_LOOKUP
599	select CLKSRC_MMIO
600	select CPU_ARM926T
601	select GENERIC_CLOCKEVENTS
602	select HAVE_IDE
603	select HAVE_PWM
604	select USB_ARCH_HAS_OHCI
605	select USE_OF
606	help
607	  Support for the NXP LPC32XX family of processors
608
609config ARCH_PXA
610	bool "PXA2xx/PXA3xx-based"
611	depends on MMU
612	select ARCH_HAS_CPUFREQ
613	select ARCH_MTD_XIP
614	select ARCH_REQUIRE_GPIOLIB
615	select ARM_CPU_SUSPEND if PM
616	select AUTO_ZRELADDR
617	select CLKDEV_LOOKUP
618	select CLKSRC_MMIO
619	select GENERIC_CLOCKEVENTS
620	select GPIO_PXA
621	select HAVE_IDE
622	select MULTI_IRQ_HANDLER
623	select NEED_MACH_GPIO_H
624	select PLAT_PXA
625	select SPARSE_IRQ
626	help
627	  Support for Intel/Marvell's PXA2xx/PXA3xx processor line.
628
629config ARCH_MSM
630	bool "Qualcomm MSM"
631	select ARCH_REQUIRE_GPIOLIB
632	select CLKDEV_LOOKUP
633	select COMMON_CLK
634	select GENERIC_CLOCKEVENTS
635	help
636	  Support for Qualcomm MSM/QSD based systems.  This runs on the
637	  apps processor of the MSM/QSD and depends on a shared memory
638	  interface to the modem processor which runs the baseband
639	  stack and controls some vital subsystems
640	  (clock and power control, etc).
641
642config ARCH_SHMOBILE
643	bool "Renesas SH-Mobile / R-Mobile"
644	select ARM_PATCH_PHYS_VIRT
645	select CLKDEV_LOOKUP
646	select GENERIC_CLOCKEVENTS
647	select HAVE_ARM_SCU if SMP
648	select HAVE_ARM_TWD if LOCAL_TIMERS
649	select HAVE_CLK
650	select HAVE_MACH_CLKDEV
651	select HAVE_SMP
652	select MIGHT_HAVE_CACHE_L2X0
653	select MULTI_IRQ_HANDLER
654	select NO_IOPORT
655	select PINCTRL
656	select PM_GENERIC_DOMAINS if PM
657	select SPARSE_IRQ
658	help
659	  Support for Renesas's SH-Mobile and R-Mobile ARM platforms.
660
661config ARCH_RPC
662	bool "RiscPC"
663	select ARCH_ACORN
664	select ARCH_MAY_HAVE_PC_FDC
665	select ARCH_SPARSEMEM_ENABLE
666	select ARCH_USES_GETTIMEOFFSET
667	select FIQ
668	select HAVE_IDE
669	select HAVE_PATA_PLATFORM
670	select ISA_DMA_API
671	select NEED_MACH_IO_H
672	select NEED_MACH_MEMORY_H
673	select NO_IOPORT
674	select VIRT_TO_BUS
675	help
676	  On the Acorn Risc-PC, Linux can support the internal IDE disk and
677	  CD-ROM interface, serial and parallel port, and the floppy drive.
678
679config ARCH_SA1100
680	bool "SA1100-based"
681	select ARCH_HAS_CPUFREQ
682	select ARCH_MTD_XIP
683	select ARCH_REQUIRE_GPIOLIB
684	select ARCH_SPARSEMEM_ENABLE
685	select CLKDEV_LOOKUP
686	select CLKSRC_MMIO
687	select CPU_FREQ
688	select CPU_SA1100
689	select GENERIC_CLOCKEVENTS
690	select HAVE_IDE
691	select ISA
692	select NEED_MACH_GPIO_H
693	select NEED_MACH_MEMORY_H
694	select SPARSE_IRQ
695	help
696	  Support for StrongARM 11x0 based boards.
697
698config ARCH_S3C24XX
699	bool "Samsung S3C24XX SoCs"
700	select ARCH_HAS_CPUFREQ
701	select ARCH_REQUIRE_GPIOLIB
702	select CLKDEV_LOOKUP
703	select CLKSRC_MMIO
704	select GENERIC_CLOCKEVENTS
705	select GPIO_SAMSUNG
706	select HAVE_CLK
707	select HAVE_S3C2410_I2C if I2C
708	select HAVE_S3C2410_WATCHDOG if WATCHDOG
709	select HAVE_S3C_RTC if RTC_CLASS
710	select MULTI_IRQ_HANDLER
711	select NEED_MACH_GPIO_H
712	select NEED_MACH_IO_H
713	select SAMSUNG_ATAGS
714	help
715	  Samsung S3C2410, S3C2412, S3C2413, S3C2416, S3C2440, S3C2442, S3C2443
716	  and S3C2450 SoCs based systems, such as the Simtec Electronics BAST
717	  (<http://www.simtec.co.uk/products/EB110ITX/>), the IPAQ 1940 or the
718	  Samsung SMDK2410 development board (and derivatives).
719
720config ARCH_S3C64XX
721	bool "Samsung S3C64XX"
722	select ARCH_HAS_CPUFREQ
723	select ARCH_REQUIRE_GPIOLIB
724	select ARM_VIC
725	select CLKDEV_LOOKUP
726	select CLKSRC_MMIO
727	select CPU_V6
728	select GENERIC_CLOCKEVENTS
729	select GPIO_SAMSUNG
730	select HAVE_CLK
731	select HAVE_S3C2410_I2C if I2C
732	select HAVE_S3C2410_WATCHDOG if WATCHDOG
733	select HAVE_TCM
734	select NEED_MACH_GPIO_H
735	select NO_IOPORT
736	select PLAT_SAMSUNG
737	select S3C_DEV_NAND
738	select S3C_GPIO_TRACK
739	select SAMSUNG_ATAGS
740	select SAMSUNG_CLKSRC
741	select SAMSUNG_GPIOLIB_4BIT
742	select SAMSUNG_IRQ_VIC_TIMER
743	select SAMSUNG_WDT_RESET
744	select USB_ARCH_HAS_OHCI
745	help
746	  Samsung S3C64XX series based systems
747
748config ARCH_S5P64X0
749	bool "Samsung S5P6440 S5P6450"
750	select CLKDEV_LOOKUP
751	select CLKSRC_MMIO
752	select CPU_V6
753	select GENERIC_CLOCKEVENTS
754	select GPIO_SAMSUNG
755	select HAVE_CLK
756	select HAVE_S3C2410_I2C if I2C
757	select HAVE_S3C2410_WATCHDOG if WATCHDOG
758	select HAVE_S3C_RTC if RTC_CLASS
759	select NEED_MACH_GPIO_H
760	select SAMSUNG_WDT_RESET
761	select SAMSUNG_ATAGS
762	help
763	  Samsung S5P64X0 CPU based systems, such as the Samsung SMDK6440,
764	  SMDK6450.
765
766config ARCH_S5PC100
767	bool "Samsung S5PC100"
768	select ARCH_REQUIRE_GPIOLIB
769	select CLKDEV_LOOKUP
770	select CLKSRC_MMIO
771	select CPU_V7
772	select GENERIC_CLOCKEVENTS
773	select GPIO_SAMSUNG
774	select HAVE_CLK
775	select HAVE_S3C2410_I2C if I2C
776	select HAVE_S3C2410_WATCHDOG if WATCHDOG
777	select HAVE_S3C_RTC if RTC_CLASS
778	select NEED_MACH_GPIO_H
779	select SAMSUNG_WDT_RESET
780	select SAMSUNG_ATAGS
781	help
782	  Samsung S5PC100 series based systems
783
784config ARCH_S5PV210
785	bool "Samsung S5PV210/S5PC110"
786	select ARCH_HAS_CPUFREQ
787	select ARCH_HAS_HOLES_MEMORYMODEL
788	select ARCH_SPARSEMEM_ENABLE
789	select CLKDEV_LOOKUP
790	select CLKSRC_MMIO
791	select CPU_V7
792	select GENERIC_CLOCKEVENTS
793	select GPIO_SAMSUNG
794	select HAVE_CLK
795	select HAVE_S3C2410_I2C if I2C
796	select HAVE_S3C2410_WATCHDOG if WATCHDOG
797	select HAVE_S3C_RTC if RTC_CLASS
798	select NEED_MACH_GPIO_H
799	select NEED_MACH_MEMORY_H
800	select SAMSUNG_ATAGS
801	help
802	  Samsung S5PV210/S5PC110 series based systems
803
804config ARCH_EXYNOS
805	bool "Samsung EXYNOS"
806	select ARCH_HAS_CPUFREQ
807	select ARCH_HAS_HOLES_MEMORYMODEL
808	select ARCH_REQUIRE_GPIOLIB
809	select ARCH_SPARSEMEM_ENABLE
810	select ARM_GIC
811	select CLKDEV_LOOKUP
812	select COMMON_CLK
813	select CPU_V7
814	select GENERIC_CLOCKEVENTS
815	select HAVE_CLK
816	select HAVE_S3C2410_I2C if I2C
817	select HAVE_S3C2410_WATCHDOG if WATCHDOG
818	select HAVE_S3C_RTC if RTC_CLASS
819	select NEED_MACH_MEMORY_H
820	select SPARSE_IRQ
821	select USE_OF
822	help
823	  Support for SAMSUNG's EXYNOS SoCs (EXYNOS4/5)
824
825config ARCH_SHARK
826	bool "Shark"
827	select ARCH_USES_GETTIMEOFFSET
828	select CPU_SA110
829	select ISA
830	select ISA_DMA
831	select NEED_MACH_MEMORY_H
832	select PCI
833	select VIRT_TO_BUS
834	select ZONE_DMA
835	help
836	  Support for the StrongARM based Digital DNARD machine, also known
837	  as "Shark" (<http://www.shark-linux.de/shark.html>).
838
839config ARCH_DAVINCI
840	bool "TI DaVinci"
841	select ARCH_HAS_HOLES_MEMORYMODEL
842	select ARCH_REQUIRE_GPIOLIB
843	select CLKDEV_LOOKUP
844	select GENERIC_ALLOCATOR
845	select GENERIC_CLOCKEVENTS
846	select GENERIC_IRQ_CHIP
847	select HAVE_IDE
848	select NEED_MACH_GPIO_H
849	select TI_PRIV_EDMA
850	select USE_OF
851	select ZONE_DMA
852	help
853	  Support for TI's DaVinci platform.
854
855config ARCH_OMAP1
856	bool "TI OMAP1"
857	depends on MMU
858	select ARCH_HAS_CPUFREQ
859	select ARCH_HAS_HOLES_MEMORYMODEL
860	select ARCH_OMAP
861	select ARCH_REQUIRE_GPIOLIB
862	select CLKDEV_LOOKUP
863	select CLKSRC_MMIO
864	select GENERIC_CLOCKEVENTS
865	select GENERIC_IRQ_CHIP
866	select HAVE_CLK
867	select HAVE_IDE
868	select IRQ_DOMAIN
869	select NEED_MACH_IO_H if PCCARD
870	select NEED_MACH_MEMORY_H
871	help
872	  Support for older TI OMAP1 (omap7xx, omap15xx or omap16xx)
873
874endchoice
875
876menu "Multiple platform selection"
877	depends on ARCH_MULTIPLATFORM
878
879comment "CPU Core family selection"
880
881config ARCH_MULTI_V4T
882	bool "ARMv4T based platforms (ARM720T, ARM920T, ...)"
883	depends on !ARCH_MULTI_V6_V7
884	select ARCH_MULTI_V4_V5
885	select CPU_ARM920T if !(CPU_ARM7TDMI || CPU_ARM720T || \
886		CPU_ARM740T || CPU_ARM9TDMI || CPU_ARM922T || \
887		CPU_ARM925T || CPU_ARM940T)
888
889config ARCH_MULTI_V5
890	bool "ARMv5 based platforms (ARM926T, XSCALE, PJ1, ...)"
891	depends on !ARCH_MULTI_V6_V7
892	select ARCH_MULTI_V4_V5
893	select CPU_ARM926T if (!CPU_ARM946E || CPU_ARM1020 || \
894		CPU_ARM1020E || CPU_ARM1022 || CPU_ARM1026 || \
895		CPU_XSCALE || CPU_XSC3 || CPU_MOHAWK || CPU_FEROCEON)
896
897config ARCH_MULTI_V4_V5
898	bool
899
900config ARCH_MULTI_V6
901	bool "ARMv6 based platforms (ARM11)"
902	select ARCH_MULTI_V6_V7
903	select CPU_V6
904
905config ARCH_MULTI_V7
906	bool "ARMv7 based platforms (Cortex-A, PJ4, Scorpion, Krait)"
907	default y
908	select ARCH_MULTI_V6_V7
909	select CPU_V7
910
911config ARCH_MULTI_V6_V7
912	bool
913
914config ARCH_MULTI_CPU_AUTO
915	def_bool !(ARCH_MULTI_V4 || ARCH_MULTI_V4T || ARCH_MULTI_V6_V7)
916	select ARCH_MULTI_V5
917
918endmenu
919
920#
921# This is sorted alphabetically by mach-* pathname.  However, plat-*
922# Kconfigs may be included either alphabetically (according to the
923# plat- suffix) or along side the corresponding mach-* source.
924#
925source "arch/arm/mach-mvebu/Kconfig"
926
927source "arch/arm/mach-at91/Kconfig"
928
929source "arch/arm/mach-bcm/Kconfig"
930
931source "arch/arm/mach-bcm2835/Kconfig"
932
933source "arch/arm/mach-clps711x/Kconfig"
934
935source "arch/arm/mach-cns3xxx/Kconfig"
936
937source "arch/arm/mach-davinci/Kconfig"
938
939source "arch/arm/mach-dove/Kconfig"
940
941source "arch/arm/mach-ep93xx/Kconfig"
942
943source "arch/arm/mach-footbridge/Kconfig"
944
945source "arch/arm/mach-gemini/Kconfig"
946
947source "arch/arm/mach-highbank/Kconfig"
948
949source "arch/arm/mach-integrator/Kconfig"
950
951source "arch/arm/mach-iop32x/Kconfig"
952
953source "arch/arm/mach-iop33x/Kconfig"
954
955source "arch/arm/mach-iop13xx/Kconfig"
956
957source "arch/arm/mach-ixp4xx/Kconfig"
958
959source "arch/arm/mach-keystone/Kconfig"
960
961source "arch/arm/mach-kirkwood/Kconfig"
962
963source "arch/arm/mach-ks8695/Kconfig"
964
965source "arch/arm/mach-msm/Kconfig"
966
967source "arch/arm/mach-mv78xx0/Kconfig"
968
969source "arch/arm/mach-imx/Kconfig"
970
971source "arch/arm/mach-mxs/Kconfig"
972
973source "arch/arm/mach-netx/Kconfig"
974
975source "arch/arm/mach-nomadik/Kconfig"
976
977source "arch/arm/mach-nspire/Kconfig"
978
979source "arch/arm/plat-omap/Kconfig"
980
981source "arch/arm/mach-omap1/Kconfig"
982
983source "arch/arm/mach-omap2/Kconfig"
984
985source "arch/arm/mach-orion5x/Kconfig"
986
987source "arch/arm/mach-picoxcell/Kconfig"
988
989source "arch/arm/mach-pxa/Kconfig"
990source "arch/arm/plat-pxa/Kconfig"
991
992source "arch/arm/mach-mmp/Kconfig"
993
994source "arch/arm/mach-realview/Kconfig"
995
996source "arch/arm/mach-rockchip/Kconfig"
997
998source "arch/arm/mach-sa1100/Kconfig"
999
1000source "arch/arm/plat-samsung/Kconfig"
1001
1002source "arch/arm/mach-socfpga/Kconfig"
1003
1004source "arch/arm/mach-spear/Kconfig"
1005
1006source "arch/arm/mach-sti/Kconfig"
1007
1008source "arch/arm/mach-s3c24xx/Kconfig"
1009
1010if ARCH_S3C64XX
1011source "arch/arm/mach-s3c64xx/Kconfig"
1012endif
1013
1014source "arch/arm/mach-s5p64x0/Kconfig"
1015
1016source "arch/arm/mach-s5pc100/Kconfig"
1017
1018source "arch/arm/mach-s5pv210/Kconfig"
1019
1020source "arch/arm/mach-exynos/Kconfig"
1021
1022source "arch/arm/mach-shmobile/Kconfig"
1023
1024source "arch/arm/mach-sunxi/Kconfig"
1025
1026source "arch/arm/mach-prima2/Kconfig"
1027
1028source "arch/arm/mach-tegra/Kconfig"
1029
1030source "arch/arm/mach-u300/Kconfig"
1031
1032source "arch/arm/mach-ux500/Kconfig"
1033
1034source "arch/arm/mach-versatile/Kconfig"
1035
1036source "arch/arm/mach-vexpress/Kconfig"
1037source "arch/arm/plat-versatile/Kconfig"
1038
1039source "arch/arm/mach-virt/Kconfig"
1040
1041source "arch/arm/mach-vt8500/Kconfig"
1042
1043source "arch/arm/mach-w90x900/Kconfig"
1044
1045source "arch/arm/mach-zynq/Kconfig"
1046
1047# Definitions to make life easier
1048config ARCH_ACORN
1049	bool
1050
1051config PLAT_IOP
1052	bool
1053	select GENERIC_CLOCKEVENTS
1054
1055config PLAT_ORION
1056	bool
1057	select CLKSRC_MMIO
1058	select COMMON_CLK
1059	select GENERIC_IRQ_CHIP
1060	select IRQ_DOMAIN
1061
1062config PLAT_ORION_LEGACY
1063	bool
1064	select PLAT_ORION
1065
1066config PLAT_PXA
1067	bool
1068
1069config PLAT_VERSATILE
1070	bool
1071
1072config ARM_TIMER_SP804
1073	bool
1074	select CLKSRC_MMIO
1075	select CLKSRC_OF if OF
1076
1077source arch/arm/mm/Kconfig
1078
1079config ARM_NR_BANKS
1080	int
1081	default 16 if ARCH_EP93XX
1082	default 8
1083
1084config IWMMXT
1085	bool "Enable iWMMXt support" if !CPU_PJ4
1086	depends on CPU_XSCALE || CPU_XSC3 || CPU_MOHAWK || CPU_PJ4
1087	default y if PXA27x || PXA3xx || ARCH_MMP || CPU_PJ4
1088	help
1089	  Enable support for iWMMXt context switching at run time if
1090	  running on a CPU that supports it.
1091
1092config XSCALE_PMU
1093	bool
1094	depends on CPU_XSCALE
1095	default y
1096
1097config MULTI_IRQ_HANDLER
1098	bool
1099	help
1100	  Allow each machine to specify it's own IRQ handler at run time.
1101
1102if !MMU
1103source "arch/arm/Kconfig-nommu"
1104endif
1105
1106config PJ4B_ERRATA_4742
1107	bool "PJ4B Errata 4742: IDLE Wake Up Commands can Cause the CPU Core to Cease Operation"
1108	depends on CPU_PJ4B && MACH_ARMADA_370
1109	default y
1110	help
1111	  When coming out of either a Wait for Interrupt (WFI) or a Wait for
1112	  Event (WFE) IDLE states, a specific timing sensitivity exists between
1113	  the retiring WFI/WFE instructions and the newly issued subsequent
1114	  instructions.  This sensitivity can result in a CPU hang scenario.
1115	  Workaround:
1116	  The software must insert either a Data Synchronization Barrier (DSB)
1117	  or Data Memory Barrier (DMB) command immediately after the WFI/WFE
1118	  instruction
1119
1120config ARM_ERRATA_326103
1121	bool "ARM errata: FSR write bit incorrect on a SWP to read-only memory"
1122	depends on CPU_V6
1123	help
1124	  Executing a SWP instruction to read-only memory does not set bit 11
1125	  of the FSR on the ARM 1136 prior to r1p0. This causes the kernel to
1126	  treat the access as a read, preventing a COW from occurring and
1127	  causing the faulting task to livelock.
1128
1129config ARM_ERRATA_411920
1130	bool "ARM errata: Invalidation of the Instruction Cache operation can fail"
1131	depends on CPU_V6 || CPU_V6K
1132	help
1133	  Invalidation of the Instruction Cache operation can
1134	  fail. This erratum is present in 1136 (before r1p4), 1156 and 1176.
1135	  It does not affect the MPCore. This option enables the ARM Ltd.
1136	  recommended workaround.
1137
1138config ARM_ERRATA_430973
1139	bool "ARM errata: Stale prediction on replaced interworking branch"
1140	depends on CPU_V7
1141	help
1142	  This option enables the workaround for the 430973 Cortex-A8
1143	  (r1p0..r1p2) erratum. If a code sequence containing an ARM/Thumb
1144	  interworking branch is replaced with another code sequence at the
1145	  same virtual address, whether due to self-modifying code or virtual
1146	  to physical address re-mapping, Cortex-A8 does not recover from the
1147	  stale interworking branch prediction. This results in Cortex-A8
1148	  executing the new code sequence in the incorrect ARM or Thumb state.
1149	  The workaround enables the BTB/BTAC operations by setting ACTLR.IBE
1150	  and also flushes the branch target cache at every context switch.
1151	  Note that setting specific bits in the ACTLR register may not be
1152	  available in non-secure mode.
1153
1154config ARM_ERRATA_458693
1155	bool "ARM errata: Processor deadlock when a false hazard is created"
1156	depends on CPU_V7
1157	depends on !ARCH_MULTIPLATFORM
1158	help
1159	  This option enables the workaround for the 458693 Cortex-A8 (r2p0)
1160	  erratum. For very specific sequences of memory operations, it is
1161	  possible for a hazard condition intended for a cache line to instead
1162	  be incorrectly associated with a different cache line. This false
1163	  hazard might then cause a processor deadlock. The workaround enables
1164	  the L1 caching of the NEON accesses and disables the PLD instruction
1165	  in the ACTLR register. Note that setting specific bits in the ACTLR
1166	  register may not be available in non-secure mode.
1167
1168config ARM_ERRATA_460075
1169	bool "ARM errata: Data written to the L2 cache can be overwritten with stale data"
1170	depends on CPU_V7
1171	depends on !ARCH_MULTIPLATFORM
1172	help
1173	  This option enables the workaround for the 460075 Cortex-A8 (r2p0)
1174	  erratum. Any asynchronous access to the L2 cache may encounter a
1175	  situation in which recent store transactions to the L2 cache are lost
1176	  and overwritten with stale memory contents from external memory. The
1177	  workaround disables the write-allocate mode for the L2 cache via the
1178	  ACTLR register. Note that setting specific bits in the ACTLR register
1179	  may not be available in non-secure mode.
1180
1181config ARM_ERRATA_742230
1182	bool "ARM errata: DMB operation may be faulty"
1183	depends on CPU_V7 && SMP
1184	depends on !ARCH_MULTIPLATFORM
1185	help
1186	  This option enables the workaround for the 742230 Cortex-A9
1187	  (r1p0..r2p2) erratum. Under rare circumstances, a DMB instruction
1188	  between two write operations may not ensure the correct visibility
1189	  ordering of the two writes. This workaround sets a specific bit in
1190	  the diagnostic register of the Cortex-A9 which causes the DMB
1191	  instruction to behave as a DSB, ensuring the correct behaviour of
1192	  the two writes.
1193
1194config ARM_ERRATA_742231
1195	bool "ARM errata: Incorrect hazard handling in the SCU may lead to data corruption"
1196	depends on CPU_V7 && SMP
1197	depends on !ARCH_MULTIPLATFORM
1198	help
1199	  This option enables the workaround for the 742231 Cortex-A9
1200	  (r2p0..r2p2) erratum. Under certain conditions, specific to the
1201	  Cortex-A9 MPCore micro-architecture, two CPUs working in SMP mode,
1202	  accessing some data located in the same cache line, may get corrupted
1203	  data due to bad handling of the address hazard when the line gets
1204	  replaced from one of the CPUs at the same time as another CPU is
1205	  accessing it. This workaround sets specific bits in the diagnostic
1206	  register of the Cortex-A9 which reduces the linefill issuing
1207	  capabilities of the processor.
1208
1209config PL310_ERRATA_588369
1210	bool "PL310 errata: Clean & Invalidate maintenance operations do not invalidate clean lines"
1211	depends on CACHE_L2X0
1212	help
1213	   The PL310 L2 cache controller implements three types of Clean &
1214	   Invalidate maintenance operations: by Physical Address
1215	   (offset 0x7F0), by Index/Way (0x7F8) and by Way (0x7FC).
1216	   They are architecturally defined to behave as the execution of a
1217	   clean operation followed immediately by an invalidate operation,
1218	   both performing to the same memory location. This functionality
1219	   is not correctly implemented in PL310 as clean lines are not
1220	   invalidated as a result of these operations.
1221
1222config ARM_ERRATA_643719
1223	bool "ARM errata: LoUIS bit field in CLIDR register is incorrect"
1224	depends on CPU_V7 && SMP
1225	help
1226	  This option enables the workaround for the 643719 Cortex-A9 (prior to
1227	  r1p0) erratum. On affected cores the LoUIS bit field of the CLIDR
1228	  register returns zero when it should return one. The workaround
1229	  corrects this value, ensuring cache maintenance operations which use
1230	  it behave as intended and avoiding data corruption.
1231
1232config ARM_ERRATA_720789
1233	bool "ARM errata: TLBIASIDIS and TLBIMVAIS operations can broadcast a faulty ASID"
1234	depends on CPU_V7
1235	help
1236	  This option enables the workaround for the 720789 Cortex-A9 (prior to
1237	  r2p0) erratum. A faulty ASID can be sent to the other CPUs for the
1238	  broadcasted CP15 TLB maintenance operations TLBIASIDIS and TLBIMVAIS.
1239	  As a consequence of this erratum, some TLB entries which should be
1240	  invalidated are not, resulting in an incoherency in the system page
1241	  tables. The workaround changes the TLB flushing routines to invalidate
1242	  entries regardless of the ASID.
1243
1244config PL310_ERRATA_727915
1245	bool "PL310 errata: Background Clean & Invalidate by Way operation can cause data corruption"
1246	depends on CACHE_L2X0
1247	help
1248	  PL310 implements the Clean & Invalidate by Way L2 cache maintenance
1249	  operation (offset 0x7FC). This operation runs in background so that
1250	  PL310 can handle normal accesses while it is in progress. Under very
1251	  rare circumstances, due to this erratum, write data can be lost when
1252	  PL310 treats a cacheable write transaction during a Clean &
1253	  Invalidate by Way operation.
1254
1255config ARM_ERRATA_743622
1256	bool "ARM errata: Faulty hazard checking in the Store Buffer may lead to data corruption"
1257	depends on CPU_V7
1258	depends on !ARCH_MULTIPLATFORM
1259	help
1260	  This option enables the workaround for the 743622 Cortex-A9
1261	  (r2p*) erratum. Under very rare conditions, a faulty
1262	  optimisation in the Cortex-A9 Store Buffer may lead to data
1263	  corruption. This workaround sets a specific bit in the diagnostic
1264	  register of the Cortex-A9 which disables the Store Buffer
1265	  optimisation, preventing the defect from occurring. This has no
1266	  visible impact on the overall performance or power consumption of the
1267	  processor.
1268
1269config ARM_ERRATA_751472
1270	bool "ARM errata: Interrupted ICIALLUIS may prevent completion of broadcasted operation"
1271	depends on CPU_V7
1272	depends on !ARCH_MULTIPLATFORM
1273	help
1274	  This option enables the workaround for the 751472 Cortex-A9 (prior
1275	  to r3p0) erratum. An interrupted ICIALLUIS operation may prevent the
1276	  completion of a following broadcasted operation if the second
1277	  operation is received by a CPU before the ICIALLUIS has completed,
1278	  potentially leading to corrupted entries in the cache or TLB.
1279
1280config PL310_ERRATA_753970
1281	bool "PL310 errata: cache sync operation may be faulty"
1282	depends on CACHE_PL310
1283	help
1284	  This option enables the workaround for the 753970 PL310 (r3p0) erratum.
1285
1286	  Under some condition the effect of cache sync operation on
1287	  the store buffer still remains when the operation completes.
1288	  This means that the store buffer is always asked to drain and
1289	  this prevents it from merging any further writes. The workaround
1290	  is to replace the normal offset of cache sync operation (0x730)
1291	  by another offset targeting an unmapped PL310 register 0x740.
1292	  This has the same effect as the cache sync operation: store buffer
1293	  drain and waiting for all buffers empty.
1294
1295config ARM_ERRATA_754322
1296	bool "ARM errata: possible faulty MMU translations following an ASID switch"
1297	depends on CPU_V7
1298	help
1299	  This option enables the workaround for the 754322 Cortex-A9 (r2p*,
1300	  r3p*) erratum. A speculative memory access may cause a page table walk
1301	  which starts prior to an ASID switch but completes afterwards. This
1302	  can populate the micro-TLB with a stale entry which may be hit with
1303	  the new ASID. This workaround places two dsb instructions in the mm
1304	  switching code so that no page table walks can cross the ASID switch.
1305
1306config ARM_ERRATA_754327
1307	bool "ARM errata: no automatic Store Buffer drain"
1308	depends on CPU_V7 && SMP
1309	help
1310	  This option enables the workaround for the 754327 Cortex-A9 (prior to
1311	  r2p0) erratum. The Store Buffer does not have any automatic draining
1312	  mechanism and therefore a livelock may occur if an external agent
1313	  continuously polls a memory location waiting to observe an update.
1314	  This workaround defines cpu_relax() as smp_mb(), preventing correctly
1315	  written polling loops from denying visibility of updates to memory.
1316
1317config ARM_ERRATA_364296
1318	bool "ARM errata: Possible cache data corruption with hit-under-miss enabled"
1319	depends on CPU_V6
1320	help
1321	  This options enables the workaround for the 364296 ARM1136
1322	  r0p2 erratum (possible cache data corruption with
1323	  hit-under-miss enabled). It sets the undocumented bit 31 in
1324	  the auxiliary control register and the FI bit in the control
1325	  register, thus disabling hit-under-miss without putting the
1326	  processor into full low interrupt latency mode. ARM11MPCore
1327	  is not affected.
1328
1329config ARM_ERRATA_764369
1330	bool "ARM errata: Data cache line maintenance operation by MVA may not succeed"
1331	depends on CPU_V7 && SMP
1332	help
1333	  This option enables the workaround for erratum 764369
1334	  affecting Cortex-A9 MPCore with two or more processors (all
1335	  current revisions). Under certain timing circumstances, a data
1336	  cache line maintenance operation by MVA targeting an Inner
1337	  Shareable memory region may fail to proceed up to either the
1338	  Point of Coherency or to the Point of Unification of the
1339	  system. This workaround adds a DSB instruction before the
1340	  relevant cache maintenance functions and sets a specific bit
1341	  in the diagnostic control register of the SCU.
1342
1343config PL310_ERRATA_769419
1344	bool "PL310 errata: no automatic Store Buffer drain"
1345	depends on CACHE_L2X0
1346	help
1347	  On revisions of the PL310 prior to r3p2, the Store Buffer does
1348	  not automatically drain. This can cause normal, non-cacheable
1349	  writes to be retained when the memory system is idle, leading
1350	  to suboptimal I/O performance for drivers using coherent DMA.
1351	  This option adds a write barrier to the cpu_idle loop so that,
1352	  on systems with an outer cache, the store buffer is drained
1353	  explicitly.
1354
1355config ARM_ERRATA_775420
1356       bool "ARM errata: A data cache maintenance operation which aborts, might lead to deadlock"
1357       depends on CPU_V7
1358       help
1359	 This option enables the workaround for the 775420 Cortex-A9 (r2p2,
1360	 r2p6,r2p8,r2p10,r3p0) erratum. In case a date cache maintenance
1361	 operation aborts with MMU exception, it might cause the processor
1362	 to deadlock. This workaround puts DSB before executing ISB if
1363	 an abort may occur on cache maintenance.
1364
1365config ARM_ERRATA_798181
1366	bool "ARM errata: TLBI/DSB failure on Cortex-A15"
1367	depends on CPU_V7 && SMP
1368	help
1369	  On Cortex-A15 (r0p0..r3p2) the TLBI*IS/DSB operations are not
1370	  adequately shooting down all use of the old entries. This
1371	  option enables the Linux kernel workaround for this erratum
1372	  which sends an IPI to the CPUs that are running the same ASID
1373	  as the one being invalidated.
1374
1375endmenu
1376
1377source "arch/arm/common/Kconfig"
1378
1379menu "Bus support"
1380
1381config ARM_AMBA
1382	bool
1383
1384config ISA
1385	bool
1386	help
1387	  Find out whether you have ISA slots on your motherboard.  ISA is the
1388	  name of a bus system, i.e. the way the CPU talks to the other stuff
1389	  inside your box.  Other bus systems are PCI, EISA, MicroChannel
1390	  (MCA) or VESA.  ISA is an older system, now being displaced by PCI;
1391	  newer boards don't support it.  If you have ISA, say Y, otherwise N.
1392
1393# Select ISA DMA controller support
1394config ISA_DMA
1395	bool
1396	select ISA_DMA_API
1397
1398# Select ISA DMA interface
1399config ISA_DMA_API
1400	bool
1401
1402config PCI
1403	bool "PCI support" if MIGHT_HAVE_PCI
1404	help
1405	  Find out whether you have a PCI motherboard. PCI is the name of a
1406	  bus system, i.e. the way the CPU talks to the other stuff inside
1407	  your box. Other bus systems are ISA, EISA, MicroChannel (MCA) or
1408	  VESA. If you have PCI, say Y, otherwise N.
1409
1410config PCI_DOMAINS
1411	bool
1412	depends on PCI
1413
1414config PCI_NANOENGINE
1415	bool "BSE nanoEngine PCI support"
1416	depends on SA1100_NANOENGINE
1417	help
1418	  Enable PCI on the BSE nanoEngine board.
1419
1420config PCI_SYSCALL
1421	def_bool PCI
1422
1423# Select the host bridge type
1424config PCI_HOST_VIA82C505
1425	bool
1426	depends on PCI && ARCH_SHARK
1427	default y
1428
1429config PCI_HOST_ITE8152
1430	bool
1431	depends on PCI && MACH_ARMCORE
1432	default y
1433	select DMABOUNCE
1434
1435source "drivers/pci/Kconfig"
1436source "drivers/pci/pcie/Kconfig"
1437
1438source "drivers/pcmcia/Kconfig"
1439
1440endmenu
1441
1442menu "Kernel Features"
1443
1444config HAVE_SMP
1445	bool
1446	help
1447	  This option should be selected by machines which have an SMP-
1448	  capable CPU.
1449
1450	  The only effect of this option is to make the SMP-related
1451	  options available to the user for configuration.
1452
1453config SMP
1454	bool "Symmetric Multi-Processing"
1455	depends on CPU_V6K || CPU_V7
1456	depends on GENERIC_CLOCKEVENTS
1457	depends on HAVE_SMP
1458	depends on MMU || ARM_MPU
1459	select USE_GENERIC_SMP_HELPERS
1460	help
1461	  This enables support for systems with more than one CPU. If you have
1462	  a system with only one CPU, like most personal computers, say N. If
1463	  you have a system with more than one CPU, say Y.
1464
1465	  If you say N here, the kernel will run on single and multiprocessor
1466	  machines, but will use only one CPU of a multiprocessor machine. If
1467	  you say Y here, the kernel will run on many, but not all, single
1468	  processor machines. On a single processor machine, the kernel will
1469	  run faster if you say N here.
1470
1471	  See also <file:Documentation/x86/i386/IO-APIC.txt>,
1472	  <file:Documentation/nmi_watchdog.txt> and the SMP-HOWTO available at
1473	  <http://tldp.org/HOWTO/SMP-HOWTO.html>.
1474
1475	  If you don't know what to do here, say N.
1476
1477config SMP_ON_UP
1478	bool "Allow booting SMP kernel on uniprocessor systems (EXPERIMENTAL)"
1479	depends on SMP && !XIP_KERNEL && MMU
1480	default y
1481	help
1482	  SMP kernels contain instructions which fail on non-SMP processors.
1483	  Enabling this option allows the kernel to modify itself to make
1484	  these instructions safe.  Disabling it allows about 1K of space
1485	  savings.
1486
1487	  If you don't know what to do here, say Y.
1488
1489config ARM_CPU_TOPOLOGY
1490	bool "Support cpu topology definition"
1491	depends on SMP && CPU_V7
1492	default y
1493	help
1494	  Support ARM cpu topology definition. The MPIDR register defines
1495	  affinity between processors which is then used to describe the cpu
1496	  topology of an ARM System.
1497
1498config SCHED_MC
1499	bool "Multi-core scheduler support"
1500	depends on ARM_CPU_TOPOLOGY
1501	help
1502	  Multi-core scheduler support improves the CPU scheduler's decision
1503	  making when dealing with multi-core CPU chips at a cost of slightly
1504	  increased overhead in some places. If unsure say N here.
1505
1506config SCHED_SMT
1507	bool "SMT scheduler support"
1508	depends on ARM_CPU_TOPOLOGY
1509	help
1510	  Improves the CPU scheduler's decision making when dealing with
1511	  MultiThreading at a cost of slightly increased overhead in some
1512	  places. If unsure say N here.
1513
1514config HAVE_ARM_SCU
1515	bool
1516	help
1517	  This option enables support for the ARM system coherency unit
1518
1519config HAVE_ARM_ARCH_TIMER
1520	bool "Architected timer support"
1521	depends on CPU_V7
1522	select ARM_ARCH_TIMER
1523	help
1524	  This option enables support for the ARM architected timer
1525
1526config HAVE_ARM_TWD
1527	bool
1528	depends on SMP
1529	select CLKSRC_OF if OF
1530	help
1531	  This options enables support for the ARM timer and watchdog unit
1532
1533config MCPM
1534	bool "Multi-Cluster Power Management"
1535	depends on CPU_V7 && SMP
1536	help
1537	  This option provides the common power management infrastructure
1538	  for (multi-)cluster based systems, such as big.LITTLE based
1539	  systems.
1540
1541choice
1542	prompt "Memory split"
1543	default VMSPLIT_3G
1544	help
1545	  Select the desired split between kernel and user memory.
1546
1547	  If you are not absolutely sure what you are doing, leave this
1548	  option alone!
1549
1550	config VMSPLIT_3G
1551		bool "3G/1G user/kernel split"
1552	config VMSPLIT_2G
1553		bool "2G/2G user/kernel split"
1554	config VMSPLIT_1G
1555		bool "1G/3G user/kernel split"
1556endchoice
1557
1558config PAGE_OFFSET
1559	hex
1560	default 0x40000000 if VMSPLIT_1G
1561	default 0x80000000 if VMSPLIT_2G
1562	default 0xC0000000
1563
1564config NR_CPUS
1565	int "Maximum number of CPUs (2-32)"
1566	range 2 32
1567	depends on SMP
1568	default "4"
1569
1570config HOTPLUG_CPU
1571	bool "Support for hot-pluggable CPUs"
1572	depends on SMP
1573	help
1574	  Say Y here to experiment with turning CPUs off and on.  CPUs
1575	  can be controlled through /sys/devices/system/cpu.
1576
1577config ARM_PSCI
1578	bool "Support for the ARM Power State Coordination Interface (PSCI)"
1579	depends on CPU_V7
1580	help
1581	  Say Y here if you want Linux to communicate with system firmware
1582	  implementing the PSCI specification for CPU-centric power
1583	  management operations described in ARM document number ARM DEN
1584	  0022A ("Power State Coordination Interface System Software on
1585	  ARM processors").
1586
1587config LOCAL_TIMERS
1588	bool "Use local timer interrupts"
1589	depends on SMP
1590	default y
1591	help
1592	  Enable support for local timers on SMP platforms, rather then the
1593	  legacy IPI broadcast method.  Local timers allows the system
1594	  accounting to be spread across the timer interval, preventing a
1595	  "thundering herd" at every timer tick.
1596
1597# The GPIO number here must be sorted by descending number. In case of
1598# a multiplatform kernel, we just want the highest value required by the
1599# selected platforms.
1600config ARCH_NR_GPIO
1601	int
1602	default 1024 if ARCH_SHMOBILE || ARCH_TEGRA
1603	default 512 if ARCH_EXYNOS || ARCH_KEYSTONE || SOC_OMAP5
1604	default 392 if ARCH_U8500
1605	default 352 if ARCH_VT8500
1606	default 288 if ARCH_SUNXI
1607	default 264 if MACH_H4700
1608	default 0
1609	help
1610	  Maximum number of GPIOs in the system.
1611
1612	  If unsure, leave the default value.
1613
1614source kernel/Kconfig.preempt
1615
1616config HZ
1617	int
1618	default 200 if ARCH_EBSA110 || ARCH_S3C24XX || ARCH_S5P64X0 || \
1619		ARCH_S5PV210 || ARCH_EXYNOS4
1620	default AT91_TIMER_HZ if ARCH_AT91
1621	default SHMOBILE_TIMER_HZ if ARCH_SHMOBILE
1622	default 100
1623
1624config SCHED_HRTICK
1625	def_bool HIGH_RES_TIMERS
1626
1627config THUMB2_KERNEL
1628	bool "Compile the kernel in Thumb-2 mode" if !CPU_THUMBONLY
1629	depends on (CPU_V7 || CPU_V7M) && !CPU_V6 && !CPU_V6K
1630	default y if CPU_THUMBONLY
1631	select AEABI
1632	select ARM_ASM_UNIFIED
1633	select ARM_UNWIND
1634	help
1635	  By enabling this option, the kernel will be compiled in
1636	  Thumb-2 mode. A compiler/assembler that understand the unified
1637	  ARM-Thumb syntax is needed.
1638
1639	  If unsure, say N.
1640
1641config THUMB2_AVOID_R_ARM_THM_JUMP11
1642	bool "Work around buggy Thumb-2 short branch relocations in gas"
1643	depends on THUMB2_KERNEL && MODULES
1644	default y
1645	help
1646	  Various binutils versions can resolve Thumb-2 branches to
1647	  locally-defined, preemptible global symbols as short-range "b.n"
1648	  branch instructions.
1649
1650	  This is a problem, because there's no guarantee the final
1651	  destination of the symbol, or any candidate locations for a
1652	  trampoline, are within range of the branch.  For this reason, the
1653	  kernel does not support fixing up the R_ARM_THM_JUMP11 (102)
1654	  relocation in modules at all, and it makes little sense to add
1655	  support.
1656
1657	  The symptom is that the kernel fails with an "unsupported
1658	  relocation" error when loading some modules.
1659
1660	  Until fixed tools are available, passing
1661	  -fno-optimize-sibling-calls to gcc should prevent gcc generating
1662	  code which hits this problem, at the cost of a bit of extra runtime
1663	  stack usage in some cases.
1664
1665	  The problem is described in more detail at:
1666	      https://bugs.launchpad.net/binutils-linaro/+bug/725126
1667
1668	  Only Thumb-2 kernels are affected.
1669
1670	  Unless you are sure your tools don't have this problem, say Y.
1671
1672config ARM_ASM_UNIFIED
1673	bool
1674
1675config AEABI
1676	bool "Use the ARM EABI to compile the kernel"
1677	help
1678	  This option allows for the kernel to be compiled using the latest
1679	  ARM ABI (aka EABI).  This is only useful if you are using a user
1680	  space environment that is also compiled with EABI.
1681
1682	  Since there are major incompatibilities between the legacy ABI and
1683	  EABI, especially with regard to structure member alignment, this
1684	  option also changes the kernel syscall calling convention to
1685	  disambiguate both ABIs and allow for backward compatibility support
1686	  (selected with CONFIG_OABI_COMPAT).
1687
1688	  To use this you need GCC version 4.0.0 or later.
1689
1690config OABI_COMPAT
1691	bool "Allow old ABI binaries to run with this kernel (EXPERIMENTAL)"
1692	depends on AEABI && !THUMB2_KERNEL
1693	default y
1694	help
1695	  This option preserves the old syscall interface along with the
1696	  new (ARM EABI) one. It also provides a compatibility layer to
1697	  intercept syscalls that have structure arguments which layout
1698	  in memory differs between the legacy ABI and the new ARM EABI
1699	  (only for non "thumb" binaries). This option adds a tiny
1700	  overhead to all syscalls and produces a slightly larger kernel.
1701	  If you know you'll be using only pure EABI user space then you
1702	  can say N here. If this option is not selected and you attempt
1703	  to execute a legacy ABI binary then the result will be
1704	  UNPREDICTABLE (in fact it can be predicted that it won't work
1705	  at all). If in doubt say Y.
1706
1707config ARCH_HAS_HOLES_MEMORYMODEL
1708	bool
1709
1710config ARCH_SPARSEMEM_ENABLE
1711	bool
1712
1713config ARCH_SPARSEMEM_DEFAULT
1714	def_bool ARCH_SPARSEMEM_ENABLE
1715
1716config ARCH_SELECT_MEMORY_MODEL
1717	def_bool ARCH_SPARSEMEM_ENABLE
1718
1719config HAVE_ARCH_PFN_VALID
1720	def_bool ARCH_HAS_HOLES_MEMORYMODEL || !SPARSEMEM
1721
1722config HIGHMEM
1723	bool "High Memory Support"
1724	depends on MMU
1725	help
1726	  The address space of ARM processors is only 4 Gigabytes large
1727	  and it has to accommodate user address space, kernel address
1728	  space as well as some memory mapped IO. That means that, if you
1729	  have a large amount of physical memory and/or IO, not all of the
1730	  memory can be "permanently mapped" by the kernel. The physical
1731	  memory that is not permanently mapped is called "high memory".
1732
1733	  Depending on the selected kernel/user memory split, minimum
1734	  vmalloc space and actual amount of RAM, you may not need this
1735	  option which should result in a slightly faster kernel.
1736
1737	  If unsure, say n.
1738
1739config HIGHPTE
1740	bool "Allocate 2nd-level pagetables from highmem"
1741	depends on HIGHMEM
1742
1743config HW_PERF_EVENTS
1744	bool "Enable hardware performance counter support for perf events"
1745	depends on PERF_EVENTS
1746	default y
1747	help
1748	  Enable hardware performance counter support for perf events. If
1749	  disabled, perf events will use software events only.
1750
1751config SYS_SUPPORTS_HUGETLBFS
1752       def_bool y
1753       depends on ARM_LPAE
1754
1755config HAVE_ARCH_TRANSPARENT_HUGEPAGE
1756       def_bool y
1757       depends on ARM_LPAE
1758
1759source "mm/Kconfig"
1760
1761config FORCE_MAX_ZONEORDER
1762	int "Maximum zone order" if ARCH_SHMOBILE
1763	range 11 64 if ARCH_SHMOBILE
1764	default "12" if SOC_AM33XX
1765	default "9" if SA1111
1766	default "11"
1767	help
1768	  The kernel memory allocator divides physically contiguous memory
1769	  blocks into "zones", where each zone is a power of two number of
1770	  pages.  This option selects the largest power of two that the kernel
1771	  keeps in the memory allocator.  If you need to allocate very large
1772	  blocks of physically contiguous memory, then you may need to
1773	  increase this value.
1774
1775	  This config option is actually maximum order plus one. For example,
1776	  a value of 11 means that the largest free memory block is 2^10 pages.
1777
1778config ALIGNMENT_TRAP
1779	bool
1780	depends on CPU_CP15_MMU
1781	default y if !ARCH_EBSA110
1782	select HAVE_PROC_CPU if PROC_FS
1783	help
1784	  ARM processors cannot fetch/store information which is not
1785	  naturally aligned on the bus, i.e., a 4 byte fetch must start at an
1786	  address divisible by 4. On 32-bit ARM processors, these non-aligned
1787	  fetch/store instructions will be emulated in software if you say
1788	  here, which has a severe performance impact. This is necessary for
1789	  correct operation of some network protocols. With an IP-only
1790	  configuration it is safe to say N, otherwise say Y.
1791
1792config UACCESS_WITH_MEMCPY
1793	bool "Use kernel mem{cpy,set}() for {copy_to,clear}_user()"
1794	depends on MMU
1795	default y if CPU_FEROCEON
1796	help
1797	  Implement faster copy_to_user and clear_user methods for CPU
1798	  cores where a 8-word STM instruction give significantly higher
1799	  memory write throughput than a sequence of individual 32bit stores.
1800
1801	  A possible side effect is a slight increase in scheduling latency
1802	  between threads sharing the same address space if they invoke
1803	  such copy operations with large buffers.
1804
1805	  However, if the CPU data cache is using a write-allocate mode,
1806	  this option is unlikely to provide any performance gain.
1807
1808config SECCOMP
1809	bool
1810	prompt "Enable seccomp to safely compute untrusted bytecode"
1811	---help---
1812	  This kernel feature is useful for number crunching applications
1813	  that may need to compute untrusted bytecode during their
1814	  execution. By using pipes or other transports made available to
1815	  the process as file descriptors supporting the read/write
1816	  syscalls, it's possible to isolate those applications in
1817	  their own address space using seccomp. Once seccomp is
1818	  enabled via prctl(PR_SET_SECCOMP), it cannot be disabled
1819	  and the task is only allowed to execute a few safe syscalls
1820	  defined by each seccomp mode.
1821
1822config CC_STACKPROTECTOR
1823	bool "Enable -fstack-protector buffer overflow detection (EXPERIMENTAL)"
1824	help
1825	  This option turns on the -fstack-protector GCC feature. This
1826	  feature puts, at the beginning of functions, a canary value on
1827	  the stack just before the return address, and validates
1828	  the value just before actually returning.  Stack based buffer
1829	  overflows (that need to overwrite this return address) now also
1830	  overwrite the canary, which gets detected and the attack is then
1831	  neutralized via a kernel panic.
1832	  This feature requires gcc version 4.2 or above.
1833
1834config XEN_DOM0
1835	def_bool y
1836	depends on XEN
1837
1838config XEN
1839	bool "Xen guest support on ARM (EXPERIMENTAL)"
1840	depends on ARM && AEABI && OF
1841	depends on CPU_V7 && !CPU_V6
1842	depends on !GENERIC_ATOMIC64
1843	select ARM_PSCI
1844	help
1845	  Say Y if you want to run Linux in a Virtual Machine on Xen on ARM.
1846
1847endmenu
1848
1849menu "Boot options"
1850
1851config USE_OF
1852	bool "Flattened Device Tree support"
1853	select IRQ_DOMAIN
1854	select OF
1855	select OF_EARLY_FLATTREE
1856	help
1857	  Include support for flattened device tree machine descriptions.
1858
1859config ATAGS
1860	bool "Support for the traditional ATAGS boot data passing" if USE_OF
1861	default y
1862	help
1863	  This is the traditional way of passing data to the kernel at boot
1864	  time. If you are solely relying on the flattened device tree (or
1865	  the ARM_ATAG_DTB_COMPAT option) then you may unselect this option
1866	  to remove ATAGS support from your kernel binary.  If unsure,
1867	  leave this to y.
1868
1869config DEPRECATED_PARAM_STRUCT
1870	bool "Provide old way to pass kernel parameters"
1871	depends on ATAGS
1872	help
1873	  This was deprecated in 2001 and announced to live on for 5 years.
1874	  Some old boot loaders still use this way.
1875
1876# Compressed boot loader in ROM.  Yes, we really want to ask about
1877# TEXT and BSS so we preserve their values in the config files.
1878config ZBOOT_ROM_TEXT
1879	hex "Compressed ROM boot loader base address"
1880	default "0"
1881	help
1882	  The physical address at which the ROM-able zImage is to be
1883	  placed in the target.  Platforms which normally make use of
1884	  ROM-able zImage formats normally set this to a suitable
1885	  value in their defconfig file.
1886
1887	  If ZBOOT_ROM is not enabled, this has no effect.
1888
1889config ZBOOT_ROM_BSS
1890	hex "Compressed ROM boot loader BSS address"
1891	default "0"
1892	help
1893	  The base address of an area of read/write memory in the target
1894	  for the ROM-able zImage which must be available while the
1895	  decompressor is running. It must be large enough to hold the
1896	  entire decompressed kernel plus an additional 128 KiB.
1897	  Platforms which normally make use of ROM-able zImage formats
1898	  normally set this to a suitable value in their defconfig file.
1899
1900	  If ZBOOT_ROM is not enabled, this has no effect.
1901
1902config ZBOOT_ROM
1903	bool "Compressed boot loader in ROM/flash"
1904	depends on ZBOOT_ROM_TEXT != ZBOOT_ROM_BSS
1905	help
1906	  Say Y here if you intend to execute your compressed kernel image
1907	  (zImage) directly from ROM or flash.  If unsure, say N.
1908
1909choice
1910	prompt "Include SD/MMC loader in zImage (EXPERIMENTAL)"
1911	depends on ZBOOT_ROM && ARCH_SH7372
1912	default ZBOOT_ROM_NONE
1913	help
1914	  Include experimental SD/MMC loading code in the ROM-able zImage.
1915	  With this enabled it is possible to write the ROM-able zImage
1916	  kernel image to an MMC or SD card and boot the kernel straight
1917	  from the reset vector. At reset the processor Mask ROM will load
1918	  the first part of the ROM-able zImage which in turn loads the
1919	  rest the kernel image to RAM.
1920
1921config ZBOOT_ROM_NONE
1922	bool "No SD/MMC loader in zImage (EXPERIMENTAL)"
1923	help
1924	  Do not load image from SD or MMC
1925
1926config ZBOOT_ROM_MMCIF
1927	bool "Include MMCIF loader in zImage (EXPERIMENTAL)"
1928	help
1929	  Load image from MMCIF hardware block.
1930
1931config ZBOOT_ROM_SH_MOBILE_SDHI
1932	bool "Include SuperH Mobile SDHI loader in zImage (EXPERIMENTAL)"
1933	help
1934	  Load image from SDHI hardware block
1935
1936endchoice
1937
1938config ARM_APPENDED_DTB
1939	bool "Use appended device tree blob to zImage (EXPERIMENTAL)"
1940	depends on OF && !ZBOOT_ROM
1941	help
1942	  With this option, the boot code will look for a device tree binary
1943	  (DTB) appended to zImage
1944	  (e.g. cat zImage <filename>.dtb > zImage_w_dtb).
1945
1946	  This is meant as a backward compatibility convenience for those
1947	  systems with a bootloader that can't be upgraded to accommodate
1948	  the documented boot protocol using a device tree.
1949
1950	  Beware that there is very little in terms of protection against
1951	  this option being confused by leftover garbage in memory that might
1952	  look like a DTB header after a reboot if no actual DTB is appended
1953	  to zImage.  Do not leave this option active in a production kernel
1954	  if you don't intend to always append a DTB.  Proper passing of the
1955	  location into r2 of a bootloader provided DTB is always preferable
1956	  to this option.
1957
1958config ARM_ATAG_DTB_COMPAT
1959	bool "Supplement the appended DTB with traditional ATAG information"
1960	depends on ARM_APPENDED_DTB
1961	help
1962	  Some old bootloaders can't be updated to a DTB capable one, yet
1963	  they provide ATAGs with memory configuration, the ramdisk address,
1964	  the kernel cmdline string, etc.  Such information is dynamically
1965	  provided by the bootloader and can't always be stored in a static
1966	  DTB.  To allow a device tree enabled kernel to be used with such
1967	  bootloaders, this option allows zImage to extract the information
1968	  from the ATAG list and store it at run time into the appended DTB.
1969
1970choice
1971	prompt "Kernel command line type" if ARM_ATAG_DTB_COMPAT
1972	default ARM_ATAG_DTB_COMPAT_CMDLINE_FROM_BOOTLOADER
1973
1974config ARM_ATAG_DTB_COMPAT_CMDLINE_FROM_BOOTLOADER
1975	bool "Use bootloader kernel arguments if available"
1976	help
1977	  Uses the command-line options passed by the boot loader instead of
1978	  the device tree bootargs property. If the boot loader doesn't provide
1979	  any, the device tree bootargs property will be used.
1980
1981config ARM_ATAG_DTB_COMPAT_CMDLINE_EXTEND
1982	bool "Extend with bootloader kernel arguments"
1983	help
1984	  The command-line arguments provided by the boot loader will be
1985	  appended to the the device tree bootargs property.
1986
1987endchoice
1988
1989config CMDLINE
1990	string "Default kernel command string"
1991	default ""
1992	help
1993	  On some architectures (EBSA110 and CATS), there is currently no way
1994	  for the boot loader to pass arguments to the kernel. For these
1995	  architectures, you should supply some command-line options at build
1996	  time by entering them here. As a minimum, you should specify the
1997	  memory size and the root device (e.g., mem=64M root=/dev/nfs).
1998
1999choice
2000	prompt "Kernel command line type" if CMDLINE != ""
2001	default CMDLINE_FROM_BOOTLOADER
2002	depends on ATAGS
2003
2004config CMDLINE_FROM_BOOTLOADER
2005	bool "Use bootloader kernel arguments if available"
2006	help
2007	  Uses the command-line options passed by the boot loader. If
2008	  the boot loader doesn't provide any, the default kernel command
2009	  string provided in CMDLINE will be used.
2010
2011config CMDLINE_EXTEND
2012	bool "Extend bootloader kernel arguments"
2013	help
2014	  The command-line arguments provided by the boot loader will be
2015	  appended to the default kernel command string.
2016
2017config CMDLINE_FORCE
2018	bool "Always use the default kernel command string"
2019	help
2020	  Always use the default kernel command string, even if the boot
2021	  loader passes other arguments to the kernel.
2022	  This is useful if you cannot or don't want to change the
2023	  command-line options your boot loader passes to the kernel.
2024endchoice
2025
2026config XIP_KERNEL
2027	bool "Kernel Execute-In-Place from ROM"
2028	depends on !ZBOOT_ROM && !ARM_LPAE && !ARCH_MULTIPLATFORM
2029	help
2030	  Execute-In-Place allows the kernel to run from non-volatile storage
2031	  directly addressable by the CPU, such as NOR flash. This saves RAM
2032	  space since the text section of the kernel is not loaded from flash
2033	  to RAM.  Read-write sections, such as the data section and stack,
2034	  are still copied to RAM.  The XIP kernel is not compressed since
2035	  it has to run directly from flash, so it will take more space to
2036	  store it.  The flash address used to link the kernel object files,
2037	  and for storing it, is configuration dependent. Therefore, if you
2038	  say Y here, you must know the proper physical address where to
2039	  store the kernel image depending on your own flash memory usage.
2040
2041	  Also note that the make target becomes "make xipImage" rather than
2042	  "make zImage" or "make Image".  The final kernel binary to put in
2043	  ROM memory will be arch/arm/boot/xipImage.
2044
2045	  If unsure, say N.
2046
2047config XIP_PHYS_ADDR
2048	hex "XIP Kernel Physical Location"
2049	depends on XIP_KERNEL
2050	default "0x00080000"
2051	help
2052	  This is the physical address in your flash memory the kernel will
2053	  be linked for and stored to.  This address is dependent on your
2054	  own flash usage.
2055
2056config KEXEC
2057	bool "Kexec system call (EXPERIMENTAL)"
2058	depends on (!SMP || PM_SLEEP_SMP)
2059	help
2060	  kexec is a system call that implements the ability to shutdown your
2061	  current kernel, and to start another kernel.  It is like a reboot
2062	  but it is independent of the system firmware.   And like a reboot
2063	  you can start any kernel with it, not just Linux.
2064
2065	  It is an ongoing process to be certain the hardware in a machine
2066	  is properly shutdown, so do not be surprised if this code does not
2067	  initially work for you.  It may help to enable device hotplugging
2068	  support.
2069
2070config ATAGS_PROC
2071	bool "Export atags in procfs"
2072	depends on ATAGS && KEXEC
2073	default y
2074	help
2075	  Should the atags used to boot the kernel be exported in an "atags"
2076	  file in procfs. Useful with kexec.
2077
2078config CRASH_DUMP
2079	bool "Build kdump crash kernel (EXPERIMENTAL)"
2080	help
2081	  Generate crash dump after being started by kexec. This should
2082	  be normally only set in special crash dump kernels which are
2083	  loaded in the main kernel with kexec-tools into a specially
2084	  reserved region and then later executed after a crash by
2085	  kdump/kexec. The crash dump kernel must be compiled to a
2086	  memory address not used by the main kernel
2087
2088	  For more details see Documentation/kdump/kdump.txt
2089
2090config AUTO_ZRELADDR
2091	bool "Auto calculation of the decompressed kernel image address"
2092	depends on !ZBOOT_ROM
2093	help
2094	  ZRELADDR is the physical address where the decompressed kernel
2095	  image will be placed. If AUTO_ZRELADDR is selected, the address
2096	  will be determined at run-time by masking the current IP with
2097	  0xf8000000. This assumes the zImage being placed in the first 128MB
2098	  from start of memory.
2099
2100endmenu
2101
2102menu "CPU Power Management"
2103
2104if ARCH_HAS_CPUFREQ
2105source "drivers/cpufreq/Kconfig"
2106endif
2107
2108source "drivers/cpuidle/Kconfig"
2109
2110endmenu
2111
2112menu "Floating point emulation"
2113
2114comment "At least one emulation must be selected"
2115
2116config FPE_NWFPE
2117	bool "NWFPE math emulation"
2118	depends on (!AEABI || OABI_COMPAT) && !THUMB2_KERNEL
2119	---help---
2120	  Say Y to include the NWFPE floating point emulator in the kernel.
2121	  This is necessary to run most binaries. Linux does not currently
2122	  support floating point hardware so you need to say Y here even if
2123	  your machine has an FPA or floating point co-processor podule.
2124
2125	  You may say N here if you are going to load the Acorn FPEmulator
2126	  early in the bootup.
2127
2128config FPE_NWFPE_XP
2129	bool "Support extended precision"
2130	depends on FPE_NWFPE
2131	help
2132	  Say Y to include 80-bit support in the kernel floating-point
2133	  emulator.  Otherwise, only 32 and 64-bit support is compiled in.
2134	  Note that gcc does not generate 80-bit operations by default,
2135	  so in most cases this option only enlarges the size of the
2136	  floating point emulator without any good reason.
2137
2138	  You almost surely want to say N here.
2139
2140config FPE_FASTFPE
2141	bool "FastFPE math emulation (EXPERIMENTAL)"
2142	depends on (!AEABI || OABI_COMPAT) && !CPU_32v3
2143	---help---
2144	  Say Y here to include the FAST floating point emulator in the kernel.
2145	  This is an experimental much faster emulator which now also has full
2146	  precision for the mantissa.  It does not support any exceptions.
2147	  It is very simple, and approximately 3-6 times faster than NWFPE.
2148
2149	  It should be sufficient for most programs.  It may be not suitable
2150	  for scientific calculations, but you have to check this for yourself.
2151	  If you do not feel you need a faster FP emulation you should better
2152	  choose NWFPE.
2153
2154config VFP
2155	bool "VFP-format floating point maths"
2156	depends on CPU_V6 || CPU_V6K || CPU_ARM926T || CPU_V7 || CPU_FEROCEON
2157	help
2158	  Say Y to include VFP support code in the kernel. This is needed
2159	  if your hardware includes a VFP unit.
2160
2161	  Please see <file:Documentation/arm/VFP/release-notes.txt> for
2162	  release notes and additional status information.
2163
2164	  Say N if your target does not have VFP hardware.
2165
2166config VFPv3
2167	bool
2168	depends on VFP
2169	default y if CPU_V7
2170
2171config NEON
2172	bool "Advanced SIMD (NEON) Extension support"
2173	depends on VFPv3 && CPU_V7
2174	help
2175	  Say Y to include support code for NEON, the ARMv7 Advanced SIMD
2176	  Extension.
2177
2178endmenu
2179
2180menu "Userspace binary formats"
2181
2182source "fs/Kconfig.binfmt"
2183
2184config ARTHUR
2185	tristate "RISC OS personality"
2186	depends on !AEABI
2187	help
2188	  Say Y here to include the kernel code necessary if you want to run
2189	  Acorn RISC OS/Arthur binaries under Linux. This code is still very
2190	  experimental; if this sounds frightening, say N and sleep in peace.
2191	  You can also say M here to compile this support as a module (which
2192	  will be called arthur).
2193
2194endmenu
2195
2196menu "Power management options"
2197
2198source "kernel/power/Kconfig"
2199
2200config ARCH_SUSPEND_POSSIBLE
2201	depends on !ARCH_S5PC100
2202	depends on CPU_ARM920T || CPU_ARM926T || CPU_SA1100 || \
2203		CPU_V6 || CPU_V6K || CPU_V7 || CPU_XSC3 || CPU_XSCALE || CPU_MOHAWK
2204	def_bool y
2205
2206config ARM_CPU_SUSPEND
2207	def_bool PM_SLEEP
2208
2209endmenu
2210
2211source "net/Kconfig"
2212
2213source "drivers/Kconfig"
2214
2215source "fs/Kconfig"
2216
2217source "arch/arm/Kconfig.debug"
2218
2219source "security/Kconfig"
2220
2221source "crypto/Kconfig"
2222
2223source "lib/Kconfig"
2224
2225source "arch/arm/kvm/Kconfig"
2226