Lines Matching +full:full +full:- +full:custom

1 # SPDX-License-Identifier: GPL-2.0
56 Xtensa processors are 32-bit RISC machines designed by Tensilica
61 a home page at <http://www.linux-xtensa.org/>.
97 def_bool $(success,test "$(shell,echo __XTENSA_EB__ | $(CC) -E -P -)" = 1)
103 …def_bool $(success,test "$(shell,echo __XTENSA_CALL0_ABI__ | $(CC) -mabi=call0 -E -P - 2>/dev/null…
112 bool "fsf - default (not generic) configuration"
116 bool "dc232b - Diamond 232L Standard Core Rev.B (LE)"
123 bool "dc233c - Diamond 233L Standard Core Rev.C (LE)"
130 bool "Custom Xtensa processor configuration"
133 Select this variant to use a custom Xtensa processor configuration.
138 string "Xtensa Processor Custom Core Variant Name"
141 Provide the name of a custom Xtensa processor variant.
153 bool "Core variant has a Full MMU (TLB, Pages, Protection, etc)"
158 Build a Conventional Kernel with full MMU support,
159 ie: it supports a TLB with auto-loading, page protection.
211 This option is used to indicate that the system-on-a-chip (SOC)
225 bool "Enable Symmetric multi-processing support"
234 int "Maximum number of CPUs (2-32)"
393 XT2000 is the name of Tensilica's feature-rich emulation platform.
394 This hardware is capable of running a full Linux distribution.
405 This hardware is capable of running a full Linux distribution.
434 architectures, you should supply some command-line options at build
481 tristate "Host file-based simulated block device support"
490 int "Number of host file-based simulated block devices"
513 Another simulated disk in a host file for a buildroot-independent
538 bool "Use 8-bit access to XTFPGA LCD"
542 LCD may be connected with 4- or 8-bit interface, 8-bit access may
543 only be used with 8-bit interface. Please consult prototyping user
559 This unfortunately won't work for U-Boot and likely also won't
565 xt-gdb can't place a Software Breakpoint in the 0XD region prior
573 Selecting this will cause U-Boot to set the KERNEL Load and Entry
579 bool "Kernel Execute-In-Place from ROM"
582 Execute-In-Place allows the kernel to run from non-volatile storage
585 to RAM. Read-write sections, such as the data section and stack,
606 region: bits 0..3 -- for addresses 0x00000000..0x1fffffff,
607 bits 4..7 -- for addresses 0x20000000..0x3fffffff, and so on.
615 For full MMU:
626 2: WB, no-write-allocate cache,
672 placed at their hardware-defined locations.
689 XIP-aware MTD support.
759 Linux can use the full amount of RAM in the system by