This is not executable code. It should be put into .rodata instead
of .text section.
This produces more correct BL1 image when SEPARATE_CODE_AND_RODATA is
defined.
Signed-off-by: Masahiro Yamada <yamada.masahiro@socionext.com>
This patch adds documentation about the new PCSI API to the porting guide
and it also update the version and function list in the firmware design.
Change-Id: Ie4edd190926a501922c061f5fcad53c9b389e331
Signed-off-by: Roberto Vargas <roberto.vargas@arm.com>
Updated the PSCI version conforming to the PSCI v1.1
specification (ARM DEN022D).
Change-Id: I1f34772ef6de37ec1ade719a1ab3aa062152d995
Signed-off-by: Roberto Vargas <roberto.vargas@arm.com>
With this patch the PSCI_FEATURES API correctly reports availability
of the PSCI_MEM_PROTECT_CHECK API - PSCI_MEM_CHK_RANGE_AARCH64 is
added to the PSCI capabilities mask, PSCI_CAP_64BIT_MASK
Change-Id: Ic90ee804deaadf0f948dc2d46ac5fe4121ef77ae
Signed-off-by: Roberto Vargas <roberto.vargas@arm.com>
Currently TF does not initialise the PMCR_EL0 register in
the secure context or save/restore the register.
In particular, the DP field may not be set to one to prohibit
cycle counting in the secure state, even though event counting
generally is prohibited via the default setting of MDCR_EL3.SMPE
to 0.
This patch initialises PMCR_EL0.DP to one in the secure state
to prohibit cycle counting and also initialises other fields
that have an architectually UNKNOWN reset value.
Additionally, PMCR_EL0 is added to the list of registers that are
saved and restored during a world switch.
Similar changes are made for PMCR for the AArch32 execution state.
NOTE: secure world code at lower ELs that assume other values in PMCR_EL0
will be impacted.
Change-Id: Iae40e8c0a196d74053accf97063ebc257b4d2f3a
Signed-off-by: David Cunado <david.cunado@arm.com>
This function implements the platform dependant part of PSCI system
reset2 for CSS platforms using SCMI.
Change-Id: I724389decab484043cadf577aeed96b349c1466d
Signed-off-by: Roberto Vargas <roberto.vargas@arm.com>
The common implementation of css_scp_sys_shutdown and
css_scp_warm_reset is refactored into a new function,
css_scp_system_off() that allows the desired power state to be
specified.
The css_scp_system_off can be used in the implementation of
SYSTEM_RESET2 for PSCI v1.1.
Change-Id: I161e62354d3d75f969b8436d794335237520a9a4
Signed-off-by: Roberto Vargas <roberto.vargas@arm.com>
This patch implements PSCI_SYSTEM_RESET2 API as defined in PSCI
v1.1 specification. The specification allows architectural and
vendor-specific resets via this API. In the current specification,
there is only one architectural reset, the warm reset. This reset is
intended to provide a fast reboot path that guarantees not to reset
system main memory.
Change-Id: I057bb81a60cd0fe56465dbb5791d8e1cca025bd3
Signed-off-by: Roberto Vargas <roberto.vargas@arm.com>
In order to compile the source of Fiptool using Visual Studio a number
of adjustments are required to the source. This commit modifies the
source with changes that will be required, but makes no functional
modification. The intent is to allow confirmation that the GCC build
is unaffected.
Change-Id: I4055bd941c646dd0a1aa2e24b940a1db3bf629ce
Signed-off-by: Evan Lloyd <evan.lloyd@arm.com>
Commit a8eb286ada introduced the
following error when creating ECDSA certificates.
ERROR: Error creating key 'Trusted World key'
Makefile:634: recipe for target 'certificates' failed
make: *** [certificates] Error 1
this patch adds the function to create PKCS#1 v1.5.
Change-Id: Ief96d55969d5e9877aeb528c6bb503b560563537
Signed-off-by: Qixiang Xu <qixiang.xu@arm.com>
This patch fixes incompatibility issues that prevent building the cert_tool
with OpenSSL >= v1.1.0. The changes introduced are still backwards
compatible with OpenSSL v1.0.2.
Fixesarm-software/trusted-fw#521
Signed-off-by: Michalis Pappas <mpappas@fastmail.fm>
This patch fixes an assertion check in the GICv3 ITS helper function.
Change-Id: I75f50d7bf6d87c12c6e24a07c9a9889e5facf4a5
Signed-off-by: Soby Mathew <soby.mathew@arm.com>
The MEM_PROTECT support adds a MMAP region for DRAM2, which when
building with TBBR support and OP-TEE tsp requires an additional
entry in the MMAP region array in BL2 - PLAT_ARM_MMAP_ENTRIES is
increased.
The MEM_PROTECT support also adds a new region in BL31, and when
BL31 is placed in DRAM, the memory mappings require an additional
translation table - MAX_XLAT_TABLES is increased.
Change-Id: I0b76260da817dcfd0b8f73a7193c36efda977625
Signed-off-by: David Cunado <david.cunado@arm.com>
Give hints on how to use the GICv3 save/restore helpers in the
implementation of the PSCI handlers.
Change-Id: I86de1c27417b64c7ce290974964ef97ff678f676
Signed-off-by: Douglas Raillard <douglas.raillard@arm.com>
This patch adds functions to save and restore GICv3 ITS registers during
system suspend. Please note that the power management of GIC ITS is
implementation defined. These functions only implements the
architectural part of the ITS power management and they do not restore
memory structures or register content required to support ITS. Even if
the ITS implementation stores structures in memory, an implementation
defined power down sequence is likely to be required to flush some
internal ITS caches to memory. If such implementation defined sequence
is not followed, the platform must ensure that the ITS is not power
gated during system suspend.
Change-Id: I5f31e5541975aa7dcaab69b0b7f67583c0e27678
Signed-off-by: Soby Mathew <soby.mathew@arm.com>
Signed-off-by: Douglas Raillard <douglas.raillard@arm.com>
During system suspend, the GICv3 Distributor and Redistributor context
can be lost due to power gating of the system power domain. This means
that the GICv3 context needs to be saved prior to system suspend and
restored on wakeup. Currently the consensus is that the Firmware should
be in charge of this. See tf-issues#464 for more details.
This patch introduces helper APIs in the GICv3 driver to save and
restore the Distributor and Redistributor contexts. The GICv3 ITS
context is not considered in this patch because the specification says
that the details of ITS power management is implementation-defined.
These APIs are expected to be appropriately invoked by the platform
layer during system suspend.
FixesARM-software/tf-issues#464
Change-Id: Iebb9c6770ab8c4d522546f161fa402d2fe02ec00
Signed-off-by: Soby Mathew <soby.mathew@arm.com>
Signed-off-by: Douglas Raillard <douglas.raillard@arm.com>
Tidy up the code a bit by turning some macros into inline functions
which allows to remove the do/while(0) idiom and backslashes at the end
of the line.
Change-Id: Ie41a4ea4a4da507f7b925247b53e85019101d717
Signed-off-by: Douglas Raillard <douglas.raillard@arm.com>
Reindent the file using tabs as the mix of spaces and tabs confuses some
editors and leads them to use spaces instead of tabs for new code
although the coding style mandates tabs.
Change-Id: I87fa4a5d368a048340054b9b3622325f3f7befba
Signed-off-by: Douglas Raillard <douglas.raillard@arm.com>
This patch introduces the ability of the xlat tables library to manage
EL0 and EL1 mappings from a higher exception level.
Attributes MT_USER and MT_PRIVILEGED have been added to allow the user
specify the target EL in the translation regime EL1&0.
REGISTER_XLAT_CONTEXT2 macro is introduced to allow creating a
xlat_ctx_t that targets a given translation regime (EL1&0 or EL3).
A new member is added to xlat_ctx_t to represent the translation regime
the xlat_ctx_t manages. The execute_never mask member is removed as it
is computed from existing information.
Change-Id: I95e14abc3371d7a6d6a358cc54c688aa9975c110
Co-authored-by: Douglas Raillard <douglas.raillard@arm.com>
Co-authored-by: Sandrine Bailleux <sandrine.bailleux@arm.com>
Co-authored-by: Antonio Nino Diaz <antonio.ninodiaz@arm.com>
Signed-off-by: Antonio Nino Diaz <antonio.ninodiaz@arm.com>
Introduce a variant of the TLB invalidation helper function that
allows the targeted translation regime to be specified, rather than
defaulting to the current one.
This new function is useful in the context of EL3 software managing
translation tables for the S-EL1&0 translation regime, as then it
might need to invalidate S-EL1&0 TLB entries rather than EL3 ones.
Define a new enumeration to be able to represent translation regimes in
the xlat tables library.
Change-Id: Ibe4438dbea2d7a6e7470bfb68ff805d8bf6b07e5
Co-authored-by: Sandrine Bailleux <sandrine.bailleux@arm.com>
Co-authored-by: Douglas Raillard <douglas.raillard@arm.com>
Co-authored-by: Antonio Nino Diaz <antonio.ninodiaz@arm.com>
Signed-off-by: Antonio Nino Diaz <antonio.ninodiaz@arm.com>
TLB invalidation functions used to be conditionally compiled in.
They were enabled only when using the dynamic mapping feature.
because only then would we need to modify page tables on the fly.
Actually there are other use cases where invalidating TLBs is required.
When changing memory attributes in existing translation descriptors for
example. These other use cases do not necessarily depend on the dynamic
mapping feature.
This patch removes this dependency and always compile TLB invalidation
functions in. If they're not used, they will be removed from the binary
at link-time anyway so there's no consequence on the memory footprint
if these functions are not called.
Change-Id: I1c33764ae900eb00073ee23b7d0d53d4efa4dd21
Signed-off-by: Sandrine Bailleux <sandrine.bailleux@arm.com>
The current implementation of the memory mapping API favours mapping
memory regions using the biggest possible block size in order to
reduce the number of translation tables needed.
In some cases, this behaviour might not be desirable. When translation
tables are edited at run-time, coarse-grain mappings like that might
need splitting into finer-grain tables. This operation has a
performance cost.
The MAP_REGION2() macro allows to specify the granularity of
translation tables used for the initial mapping of a memory region.
This might increase performance for memory regions that are likely to
be edited in the future, at the expense of a potentially increased
memory footprint.
The Translation Tables Library Design Guide has been updated to
explain the use case for this macro. Also added a few intermediate
titles to make the guide easier to digest.
Change-Id: I04de9302e0ee3d326b8877043a9f638766b81b7b
Co-authored-by: Sandrine Bailleux <sandrine.bailleux@arm.com>
Co-authored-by: Antonio Nino Diaz <antonio.ninodiaz@arm.com>
Signed-off-by: Antonio Nino Diaz <antonio.ninodiaz@arm.com>
Commit 11ad8f208d added supporting
multi-threaded CPUs on FVP platform, including modifications for
calculating CPU IDs. This patch imports the strong definition of the
same CPU ID calculation on FVP platform for TSP.
Without this patch, TSP on FVP was using the default CPU ID calculation,
which would end up being wrong on CPUs with multi-threading.
Change-Id: If67fd492dfce1f57224c9e693988c4b0f89a9a9a
Signed-off-by: Jeenu Viswambharan <jeenu.viswambharan@arm.com>
Uses the xlat tables library's Makefile instead of directly including
the source files in the Uniphier platform port.
Change-Id: I27294dd71bbf9bf3e82973c75324652b037e5bce
Signed-off-by: Douglas Raillard <douglas.raillard@arm.com>
Since commit 769d65da77 ("xlat: Use MAP_REGION macro as compatibility
layer"), building with GCC 4.9 fails.
CC plat/arm/board/fvp/fvp_common.c
plat/arm/board/fvp/fvp_common.c:60:2: error: initializer element is not constant
ARM_MAP_SHARED_RAM,
^
plat/arm/board/fvp/fvp_common.c:60:2: error: (near initialization for 'plat_arm_mmap[0]')
make: *** [Makefile:535: build/fvp/release/bl1/fvp_common.o] Error 1
Taking into account that MAP_REGION(_FLAT) is widely used in array
initializers, do not use cast.
Fixes: 769d65da77 ("xlat: Use MAP_REGION macro as compatibility layer")
Signed-off-by: Masahiro Yamada <yamada.masahiro@socionext.com>
On ARM platforms, the maximum size of the address space is limited
to 32-bits as defined in arm_def.h. In order to access DRAM2, which
is defined beyond the 32-bit address space, the maximum address space
is increased to 36-bits in AArch64. It is possible to increase the
virtual space for AArch32, but it is more difficult and not supported
for now.
NOTE - the actual maximum memory address space is platform dependent
and is checked at run-time by querying the PARange field in the
ID_AA64MMFR0_EL1 register.
Change-Id: I6cb05c78a63b1fed96db9a9773faca04a5b93d67
Signed-off-by: Roberto Vargas <roberto.vargas@arm.com>
mem_protect needs some kind of non-volatile memory because it has
to remember its state across reset and power down events.
The most suitable electronic part for this feature is a NVRAM
which should be only accesible from the secure world. Juno and
FVP lack such hardware and for this reason the MEM_PROTECT
functionality is implemented with Flash EEPROM memory on both
boards, even though this memory is accesible from the non-secure
world. This is done only to show a full implementation of
these PSCI features, but an actual system shouldn't use a
non-secure NVRAM to implement it.
The EL3 runtime software will write the mem_protect flag and BL2
will read and clear the memory ranges if enabled. It is done in
BL2 because it reduces the time that TF needs access to the full
non-secure memory.
The memory layout of both boards is defined using macros which
take different values in Juno and FVP platforms. Generic platform
helpers are added that use the platform specific macros to generate
a mem_region_t that is valid for the platform.
Change-Id: I2c6818ac091a2966fa07a52c5ddf8f6fde4941e9
Signed-off-by: Roberto Vargas <roberto.vargas@arm.com>
This commit introduces a new type (mem_region_t) used to describe
memory regions and it adds two utility functions:
- clear_mem_regions: This function clears (write 0) to a set
of regions described with an array of mem_region_t.
- mem_region_in_array_chk This function checks if a
region is covered by some of the regions described
with an array of mem_region_t.
Change-Id: I12ce549f5e81dd15ac0981645f6e08ee7c120811
Signed-off-by: Roberto Vargas <roberto.vargas@arm.com>