- 31 Mar, 2017 1 commit
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Douglas Raillard authored
Introduce new build option ENABLE_STACK_PROTECTOR. It enables compilation of all BL images with one of the GCC -fstack-protector-* options. A new platform function plat_get_stack_protector_canary() is introduced. It returns a value that is used to initialize the canary for stack corruption detection. Returning a random value will prevent an attacker from predicting the value and greatly increase the effectiveness of the protection. A message is printed at the ERROR level when a stack corruption is detected. To be effective, the global data must be stored at an address lower than the base of the stacks. Failure to do so would allow an attacker to overwrite the canary as part of an attack which would void the protection. FVP implementation of plat_get_stack_protector_canary is weak as there is no real source of entropy on the FVP. It therefore relies on a timer's value, which could be predictable. Change-Id: Icaaee96392733b721fa7c86a81d03660d3c1bc06 Signed-off-by: Douglas Raillard <douglas.raillard@arm.com>
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- 02 Mar, 2017 1 commit
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Jeenu Viswambharan authored
The boolean build option HW_ASSISTED_COHERENCY is introduced to enable various optimizations in ARM Trusted Software, when built for such systems. It's set to 0 by default. Change-Id: I638390da6e1718fe024dcf5b402e07084f1eb014 Signed-off-by: Jeenu Viswambharan <jeenu.viswambharan@arm.com>
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- 14 Feb, 2017 1 commit
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Jeenu Viswambharan authored
The ARMv8v.1 architecture extension has introduced support for far atomics, which includes compare-and-swap. Compare and Swap instruction is only available for AArch64. Introduce build options to choose the architecture versions to target ARM Trusted Firmware: - ARM_ARCH_MAJOR: selects the major version of target ARM Architecture. Default value is 8. - ARM_ARCH_MINOR: selects the minor version of target ARM Architecture. Default value is 0. When: (ARM_ARCH_MAJOR > 8) || ((ARM_ARCH_MAJOR == 8) && (ARM_ARCH_MINOR >= 1)), for AArch64, Compare and Swap instruction is used to implement spin locks. Otherwise, the implementation falls back to using load-/store-exclusive instructions. Update user guide, and introduce a section in Firmware Design guide to summarize support for features introduced in ARMv8 Architecture Extensions. Change-Id: I73096a0039502f7aef9ec6ab3ae36680da033f16 Signed-off-by: Jeenu Viswambharan <jeenu.viswambharan@arm.com>
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- 28 Jan, 2017 1 commit
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Masahiro Yamada authored
The current fiptool packs all the images without any padding between them. So, the offset to each image has no alignment. This is not efficient, for example, when the FIP is read from a block-oriented device. For example, (e)MMC is accessed by block-addressing. The block size is 512 byte. So, the best case is each image is aligned by 512 byte since the DMA engine can transfer the whole of the image to its load address directly. The worst case is the offset does not have even DMA-capable alignment (this is where we stand now). In this case, we need to transfer every block to a bounce buffer, then do memcpy() from the bounce buffer to our final destination. At least, this should work with the abstraction by the block I/O layer, but the CPU-intervention for the whole data transfer makes it really slow. This commit adds a new option --align to the fiptool. This option, if given, requests the tool to align each component in the FIP file by the specified byte. Also, add a new Make option FIP_ALIGN for easier access to this feature; users can give something like FIP_ALIGN=512 from the command line, or add "FIP_ALIGN := 512" to their platform.mk file. Signed-off-by: Masahiro Yamada <yamada.masahiro@socionext.com>
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- 08 Nov, 2016 1 commit
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Jeenu Viswambharan authored
When build variables are assigned or processed en masse, they'd appear neater in alphabetical order. Static initializations are moved to a separate file, make_helpers/defaults.mk, which in itself is sorted alphabetically. No functional changes. Change-Id: I966010042b33de6b67592fb9ffcef8fc44d7d128 Signed-off-by: Jeenu Viswambharan <jeenu.viswambharan@arm.com>
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