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-rw-r--r--arch/arm/Kconfig2
-rw-r--r--arch/avr32/Kconfig2
-rw-r--r--arch/blackfin/Kconfig71
-rw-r--r--arch/cris/arch-v10/Kconfig2
-rw-r--r--arch/ia64/Kconfig8
-rw-r--r--arch/mips/Kconfig2
-rw-r--r--arch/powerpc/platforms/Kconfig2
-rw-r--r--arch/um/Kconfig2
8 files changed, 46 insertions, 45 deletions
diff --git a/arch/arm/Kconfig b/arch/arm/Kconfig
index 4cee938..a0cdaaf 100644
--- a/arch/arm/Kconfig
+++ b/arch/arm/Kconfig
@@ -851,7 +851,7 @@ config KEXEC
help
kexec is a system call that implements the ability to shutdown your
current kernel, and to start another kernel. It is like a reboot
- but it is indepedent of the system firmware. And like a reboot
+ but it is independent of the system firmware. And like a reboot
you can start any kernel with it, not just Linux.
It is an ongoing process to be certain the hardware in a machine
diff --git a/arch/avr32/Kconfig b/arch/avr32/Kconfig
index d12346a..bbecbd8 100644
--- a/arch/avr32/Kconfig
+++ b/arch/avr32/Kconfig
@@ -189,7 +189,7 @@ config CMDLINE
endmenu
-menu "Power managment options"
+menu "Power management options"
menu "CPU Frequency scaling"
diff --git a/arch/blackfin/Kconfig b/arch/blackfin/Kconfig
index 4c5ca9d..ad28dc7 100644
--- a/arch/blackfin/Kconfig
+++ b/arch/blackfin/Kconfig
@@ -613,85 +613,86 @@ config I_ENTRY_L1
bool "Locate interrupt entry code in L1 Memory"
default y
help
- If enabled interrupt entry code (STORE/RESTORE CONTEXT) is linked
- into L1 instruction memory.(less latency)
+ If enabled, interrupt entry code (STORE/RESTORE CONTEXT) is linked
+ into L1 instruction memory. (less latency)
config EXCPT_IRQ_SYSC_L1
- bool "Locate entire ASM lowlevel excepetion / interrupt - Syscall and CPLB handler code in L1 Memory"
+ bool "Locate entire ASM lowlevel exception / interrupt - Syscall and CPLB handler code in L1 Memory"
default y
help
- If enabled entire ASM lowlevel exception and interrupt entry code (STORE/RESTORE CONTEXT) is linked
- into L1 instruction memory.(less latency)
+ If enabled, the entire ASM lowlevel exception and interrupt entry code
+ (STORE/RESTORE CONTEXT) is linked into L1 instruction memory.
+ (less latency)
config DO_IRQ_L1
bool "Locate frequently called do_irq dispatcher function in L1 Memory"
default y
help
- If enabled frequently called do_irq dispatcher function is linked
- into L1 instruction memory.(less latency)
+ If enabled, the frequently called do_irq dispatcher function is linked
+ into L1 instruction memory. (less latency)
config CORE_TIMER_IRQ_L1
bool "Locate frequently called timer_interrupt() function in L1 Memory"
default y
help
- If enabled frequently called timer_interrupt() function is linked
- into L1 instruction memory.(less latency)
+ If enabled, the frequently called timer_interrupt() function is linked
+ into L1 instruction memory. (less latency)
config IDLE_L1
bool "Locate frequently idle function in L1 Memory"
default y
help
- If enabled frequently called idle function is linked
- into L1 instruction memory.(less latency)
+ If enabled, the frequently called idle function is linked
+ into L1 instruction memory. (less latency)
config SCHEDULE_L1
bool "Locate kernel schedule function in L1 Memory"
default y
help
- If enabled frequently called kernel schedule is linked
- into L1 instruction memory.(less latency)
+ If enabled, the frequently called kernel schedule is linked
+ into L1 instruction memory. (less latency)
config ARITHMETIC_OPS_L1
bool "Locate kernel owned arithmetic functions in L1 Memory"
default y
help
- If enabled arithmetic functions are linked
- into L1 instruction memory.(less latency)
+ If enabled, arithmetic functions are linked
+ into L1 instruction memory. (less latency)
config ACCESS_OK_L1
bool "Locate access_ok function in L1 Memory"
default y
help
- If enabled access_ok function is linked
- into L1 instruction memory.(less latency)
+ If enabled, the access_ok function is linked
+ into L1 instruction memory. (less latency)
config MEMSET_L1
bool "Locate memset function in L1 Memory"
default y
help
- If enabled memset function is linked
- into L1 instruction memory.(less latency)
+ If enabled, the memset function is linked
+ into L1 instruction memory. (less latency)
config MEMCPY_L1
bool "Locate memcpy function in L1 Memory"
default y
help
- If enabled memcpy function is linked
- into L1 instruction memory.(less latency)
+ If enabled, the memcpy function is linked
+ into L1 instruction memory. (less latency)
config SYS_BFIN_SPINLOCK_L1
bool "Locate sys_bfin_spinlock function in L1 Memory"
default y
help
- If enabled sys_bfin_spinlock function is linked
- into L1 instruction memory.(less latency)
+ If enabled, sys_bfin_spinlock function is linked
+ into L1 instruction memory. (less latency)
config IP_CHECKSUM_L1
bool "Locate IP Checksum function in L1 Memory"
default n
help
- If enabled IP Checksum function is linked
- into L1 instruction memory.(less latency)
+ If enabled, the IP Checksum function is linked
+ into L1 instruction memory. (less latency)
config CACHELINE_ALIGNED_L1
bool "Locate cacheline_aligned data to L1 Data Memory"
@@ -699,24 +700,24 @@ config CACHELINE_ALIGNED_L1
default n if BF54x
depends on !BF531
help
- If enabled cacheline_anligned data is linked
- into L1 data memory.(less latency)
+ If enabled, cacheline_anligned data is linked
+ into L1 data memory. (less latency)
config SYSCALL_TAB_L1
bool "Locate Syscall Table L1 Data Memory"
default n
depends on !BF531
help
- If enabled the Syscall LUT is linked
- into L1 data memory.(less latency)
+ If enabled, the Syscall LUT is linked
+ into L1 data memory. (less latency)
config CPLB_SWITCH_TAB_L1
bool "Locate CPLB Switch Tables L1 Data Memory"
default n
depends on !BF531
help
- If enabled the CPLB Switch Tables are linked
- into L1 data memory.(less latency)
+ If enabled, the CPLB Switch Tables are linked
+ into L1 data memory. (less latency)
endmenu
@@ -1029,13 +1030,13 @@ config DEBUG_HWERR
from.
config DEBUG_ICACHE_CHECK
- bool "Check Instruction cache coherancy"
+ bool "Check Instruction cache coherency"
depends on DEBUG_KERNEL
depends on DEBUG_HWERR
help
- Say Y here if you are getting wierd unexplained errors. This will
- ensure that icache is what SDRAM says it should be, by doing a
- byte wise comparision between SDRAM and instruction cache. This
+ Say Y here if you are getting weird unexplained errors. This will
+ ensure that icache is what SDRAM says it should be by doing a
+ byte wise comparison between SDRAM and instruction cache. This
also relocates the irq_panic() function to L1 memory, (which is
un-cached).
diff --git a/arch/cris/arch-v10/Kconfig b/arch/cris/arch-v10/Kconfig
index c7ea9ef..f1ce6f6 100644
--- a/arch/cris/arch-v10/Kconfig
+++ b/arch/cris/arch-v10/Kconfig
@@ -182,7 +182,7 @@ config ETRAX_LED7G
set this to same as CONFIG_ETRAX_LED1G (normally 2).
config ETRAX_LED8Y
- int "Eigth yellow LED bit"
+ int "Eighth yellow LED bit"
depends on ETRAX_CSP0_LEDS
default "2"
help
diff --git a/arch/ia64/Kconfig b/arch/ia64/Kconfig
index c89108e..bef4772 100644
--- a/arch/ia64/Kconfig
+++ b/arch/ia64/Kconfig
@@ -452,9 +452,9 @@ config IA64_PALINFO
config IA64_MC_ERR_INJECT
tristate "MC error injection support"
help
- Selets whether support for MC error injection. By enabling the
- support, kernel provide sysfs interface for user application to
- call MC error injection PAL procedure to inject various errors.
+ Adds support for MC error injection. If enabled, the kernel
+ will provide a sysfs interface for user applications to
+ call MC error injection PAL procedures to inject various errors.
This is a useful tool for MCA testing.
If you're unsure, do not select this option.
@@ -491,7 +491,7 @@ config KEXEC
but it is independent of the system firmware. And like a reboot
you can start any kernel with it, not just Linux.
- The name comes from the similiarity to the exec system call.
+ The name comes from the similarity to the exec system call.
It is an ongoing process to be certain the hardware in a machine
is properly shutdown, so do not be surprised if this code does not
diff --git a/arch/mips/Kconfig b/arch/mips/Kconfig
index 4dc142d..3ecff5e 100644
--- a/arch/mips/Kconfig
+++ b/arch/mips/Kconfig
@@ -1812,7 +1812,7 @@ config KEXEC
but it is independent of the system firmware. And like a reboot
you can start any kernel with it, not just Linux.
- The name comes from the similiarity to the exec system call.
+ The name comes from the similarity to the exec system call.
It is an ongoing process to be certain the hardware in a machine
is properly shutdown, so do not be surprised if this code does not
diff --git a/arch/powerpc/platforms/Kconfig b/arch/powerpc/platforms/Kconfig
index 229d355..ea22cad 100644
--- a/arch/powerpc/platforms/Kconfig
+++ b/arch/powerpc/platforms/Kconfig
@@ -120,7 +120,7 @@ config PPC_PMI
depends on PPC_IBM_CELL_BLADE
help
PMI (Platform Management Interrupt) is a way to
- communicate with the BMC (Baseboard Mangement Controller).
+ communicate with the BMC (Baseboard Management Controller).
It is used in some IBM Cell blades.
default m
diff --git a/arch/um/Kconfig b/arch/um/Kconfig
index d8925d2..dd1689b 100644
--- a/arch/um/Kconfig
+++ b/arch/um/Kconfig
@@ -3,7 +3,7 @@ config DEFCONFIG_LIST
option defconfig_list
default "arch/$ARCH/defconfig"
-# UML uses the generic IRQ sugsystem
+# UML uses the generic IRQ subsystem
config GENERIC_HARDIRQS
bool
default y