1. 12 Feb, 2018 1 commit
  2. 19 Dec, 2017 1 commit
  3. 20 Nov, 2017 1 commit
    • Dimitris Papastamos's avatar
      Refactor Statistical Profiling Extensions implementation · 281a08cc
      Dimitris Papastamos authored
      
      
      Factor out SPE operations in a separate file.  Use the publish
      subscribe framework to drain the SPE buffers before entering secure
      world.  Additionally, enable SPE before entering normal world.
      
      A side effect of this change is that the profiling buffers are now
      only drained when a transition from normal world to secure world
      happens.  Previously they were drained also on return from secure
      world, which is unnecessary as SPE is not supported in S-EL1.
      
      Change-Id: I17582c689b4b525770dbb6db098b3a0b5777b70a
      Signed-off-by: default avatarDimitris Papastamos <dimitris.papastamos@arm.com>
      281a08cc
  4. 13 Nov, 2017 2 commits
  5. 09 Aug, 2017 1 commit
    • Summer Qin's avatar
      Add Trusted OS extra image parsing support for ARM standard platforms · 54661cd2
      Summer Qin authored
      
      
      Trusted OS may have extra images to be loaded. Load them one by one
      and do the parsing. In this patch, ARM TF need to load up to 3 images
      for optee os: header, pager and paged images. Header image is the info
      about optee os and images. Pager image include pager code and data.
      Paged image include the paging parts using virtual memory.
      
      Change-Id: Ia3bcfa6d8a3ed7850deb5729654daca7b00be394
      Signed-off-by: default avatarSummer Qin <summer.qin@arm.com>
      54661cd2
  6. 28 Jun, 2017 1 commit
    • Soby Mathew's avatar
      ARM plat changes to enable CryptoCell integration · e60f2af9
      Soby Mathew authored
      
      
      This patch makes the necessary changes to enable ARM platform to
      successfully integrate CryptoCell during Trusted Board Boot. The
      changes are as follows:
      
      * A new build option `ARM_CRYPTOCELL_INTEG` is introduced to select
        the CryptoCell crypto driver for Trusted Board boot.
      
      * The TrustZone filter settings for Non Secure DRAM is modified
        to allow CryptoCell to read this memory. This is required to
        authenticate BL33 which is loaded into the Non Secure DDR.
      
      * The CSS platforms are modified to use coherent stacks in BL1 and BL2
        when CryptoCell crypto is selected. This is because CryptoCell makes
        use of DMA to transfer data and the CryptoCell SBROM library allocates
        buffers on the stack during signature/hash verification.
      
      Change-Id: I1e6f6dcd1899784f1edeabfa2a9f279bbfb90e31
      Signed-off-by: default avatarSoby Mathew <soby.mathew@arm.com>
      e60f2af9
  7. 22 Jun, 2017 1 commit
    • dp-arm's avatar
      aarch64: Enable Statistical Profiling Extensions for lower ELs · d832aee9
      dp-arm authored
      
      
      SPE is only supported in non-secure state.  Accesses to SPE specific
      registers from SEL1 will trap to EL3.  During a world switch, before
      `TTBR` is modified the SPE profiling buffers are drained.  This is to
      avoid a potential invalid memory access in SEL1.
      
      SPE is architecturally specified only for AArch64.
      
      Change-Id: I04a96427d9f9d586c331913d815fdc726855f6b0
      Signed-off-by: default avatardp-arm <dimitris.papastamos@arm.com>
      d832aee9
  8. 03 May, 2017 1 commit
  9. 31 Mar, 2017 1 commit
  10. 21 Sep, 2016 1 commit
    • Yatharth Kochar's avatar
      ARM platform changes for new version of image loading · a8aa7fec
      Yatharth Kochar authored
      This patch adds changes in ARM platform code to use new
      version of image loading.
      
      Following are the major changes:
        -Refactor the signatures for bl31_early_platform_setup()
         and arm_bl31_early_platform_setup() function to use
         `void *` instead of `bl31_params_t *`.
        -Introduce `plat_arm_bl2_handle_scp_bl2()` to handle
         loading of SCP_BL2 image from BL2.
        -Remove usage of reserve_mem() function from
         `arm_bl1_early_platform_setup()`
        -Extract BL32 & BL33 entrypoint info, from the link list
         passed by BL2, in `arm_bl31_early_platform_setup()`
        -Provides weak definitions for following platform functions:
           plat_get_bl_image_load_info
           plat_get_next_bl_params
           plat_flush_next_bl_params
           bl2_plat_handle_post_image_load
        -Instantiates a descriptor array for ARM platforms
         describing image and entrypoint information for
         `SCP_BL2`, `BL31`, `BL32` and `BL33` images.
      
      All the above changes are conditionally compiled using the
      `LOAD_IMAGE_V2` flag.
      
      Change-Id: I5e88b9785a3df1a2b2bbbb37d85b8e353ca61049
      a8aa7fec
  11. 19 Jul, 2016 1 commit
    • Soby Mathew's avatar
      Move `arm_common.c` out of aarch64 folder · bc149bfc
      Soby Mathew authored
      This patch moves the `arm_common.c` file from `plat/arm/common/aarch64/`
      to the parent directory since the functions implemented in the file are
      not AArch64 specific. The platform makefiles are also modified for this
      change.
      
      Change-Id: I776d2e4958f59041476cf2f53a9adb5b2d304ee0
      bc149bfc
  12. 18 Jul, 2016 1 commit
    • Soby Mathew's avatar
      Rework type usage in Trusted Firmware · 4c0d0390
      Soby Mathew authored
      This patch reworks type usage in generic code, drivers and ARM platform files
      to make it more portable. The major changes done with respect to
      type usage are as listed below:
      
      * Use uintptr_t for storing address instead of uint64_t or unsigned long.
      * Review usage of unsigned long as it can no longer be assumed to be 64 bit.
      * Use u_register_t for register values whose width varies depending on
        whether AArch64 or AArch32.
      * Use generic C types where-ever possible.
      
      In addition to the above changes, this patch also modifies format specifiers
      in print invocations so that they are AArch64/AArch32 agnostic. Only files
      related to upcoming feature development have been reworked.
      
      Change-Id: I9f8c78347c5a52ba7027ff389791f1dad63ee5f8
      4c0d0390
  13. 08 Jul, 2016 3 commits
    • Sandrine Bailleux's avatar
      Add some verbose traces in arm_setup_page_tables() · 84aaf559
      Sandrine Bailleux authored
      This patch adds some verbose traces in the arm_setup_page_tables()
      function to print the extents of the different memory regions it maps.
      
      Change-Id: Ia3ae1053e7ebf3579601ff9238b0e3791eb1e9e4
      84aaf559
    • Sandrine Bailleux's avatar
      ARM platforms: Add support for SEPARATE_CODE_AND_RODATA · 0af559a8
      Sandrine Bailleux authored
      The arm_setup_page_tables() function used to expect a single set of
      addresses defining the extents of the whole read-only section, code
      and read-only data mixed up, which was mapped as executable.
      
      This patch changes this behaviour. arm_setup_page_tables() now
      expects 2 separate sets of addresses:
      
       - the extents of the code section;
       - the extents of the read-only data section.
      
      The code is mapped as executable, whereas the data is mapped as
      execute-never. New #defines have been introduced to identify the
      extents of the code and the read-only data section. Given that
      all BL images except BL1 share the same memory layout and linker
      script structure, these #defines are common across these images.
      The slight memory layout differences in BL1 have been handled by
      providing values specific to BL1.
      
      Note that this patch also affects the Xilinx platform port, which
      uses the arm_setup_page_tables() function. It has been updated
      accordingly, such that the memory mappings on this platform are
      unchanged. This is achieved by passing null values as the extents
      of the read-only data section so that it is ignored. As a result,
      the whole read-only section is still mapped as executable.
      
      Fixes ARM-software/tf-issues#85
      
      Change-Id: I1f95865c53ce6e253a01286ff56e0aa1161abac5
      0af559a8
    • Sandrine Bailleux's avatar
      Introduce arm_setup_page_tables() function · b5fa6563
      Sandrine Bailleux authored
      This patch introduces the arm_setup_page_tables() function to
      set up page tables on ARM platforms. It replaces the
      arm_configure_mmu_elx() functions and does the same thing except
      that it doesn't enable the MMU at the end. The idea is to reduce
      the amount of per-EL code that is generated by the C preprocessor
      by splitting the memory regions definitions and page tables creation
      (which is generic) from the MMU enablement (which is the only per-EL
      configuration).
      
      As a consequence, the call to the enable_mmu_elx() function has been
      moved up into the plat_arch_setup() hook. Any other ARM standard
      platforms that use the functions `arm_configure_mmu_elx()` must be
      updated.
      
      Change-Id: I6f12a20ce4e5187b3849a8574aac841a136de83d
      b5fa6563
  14. 03 Jun, 2016 1 commit
    • Sandrine Bailleux's avatar
      Fix a syntax error · b4127c1f
      Sandrine Bailleux authored
      Building TF with ERROR_DEPRECATED=1 fails because of a missing
      semi-column. This patch fixes this syntax error.
      
      Change-Id: I98515840ce74245b0a0215805f85c8e399094f68
      b4127c1f
  15. 20 May, 2016 1 commit
  16. 26 Apr, 2016 1 commit
    • Yatharth Kochar's avatar
      Conditionally compile `plat_get_syscnt_freq()` in ARM standard platforms · 1969625a
      Yatharth Kochar authored
      This patch puts the definition of `plat_get_syscnt_freq()`
      under `#ifdef ARM_SYS_CNTCTL_BASE` in arm_common.c file.
      This is the fix for compilation error introduced by commit-id
      `749ade45`, for platforms that use arm_common.c but do not
      provide a memory mapped interface to the generic counter.
      
      Fixes ARM-software/tf-issues#395
      
      Change-Id: I2f2b10bd9500fa15308541ccb15829306a76a745
      1969625a
  17. 21 Apr, 2016 1 commit
    • Yatharth Kochar's avatar
      Move `plat_get_syscnt_freq()` to arm_common.c · c073fda1
      Yatharth Kochar authored
      This patch moves the definition for `plat_get_syscnt_freq()`
      from arm_bl31_setup.c to arm_common.c. This could be useful
      in case a delay timer needs to be installed based on the
      generic timer in other BLs.
      This patch also modifies the return type for this function
      from `uint64_t` to `unsigned long long` within ARM and other
      platform files.
      
      Change-Id: Iccdfa811948e660d4fdcaae60ad1d700e4eda80d
      c073fda1
  18. 01 Apr, 2016 2 commits
  19. 16 Feb, 2016 1 commit
    • Vikram Kanigiri's avatar
      Rework use of interconnect drivers · 6355f234
      Vikram Kanigiri authored
      ARM Trusted Firmware supports 2 different interconnect peripheral
      drivers: CCI and CCN. ARM platforms are implemented using either of the
      interconnect peripherals.
      
      This patch adds a layer of abstraction to help ARM platform ports to
      choose the right interconnect driver and corresponding platform support.
      This is as described below:
      
      1. A set of ARM common functions have been implemented to initialise an
      interconnect and for entering/exiting a cluster from coherency. These
      functions are prefixed as "plat_arm_interconnect_". Weak definitions of
      these functions have been provided for each type of driver.
      
      2.`plat_print_interconnect_regs` macro used for printing CCI registers is
      moved from a common arm_macros.S to cci_macros.S.
      
      3. The `ARM_CONFIG_HAS_CCI` flag used in `arm_config_flags` structure
      is renamed to `ARM_CONFIG_HAS_INTERCONNECT`.
      
      Change-Id: I02f31184fbf79b784175892d5ce1161b65a0066c
      6355f234
  20. 15 Feb, 2016 1 commit
    • Vikram Kanigiri's avatar
      Add API to return memory map on ARM platforms · 65cb1c4c
      Vikram Kanigiri authored
      Functions to configure the MMU in S-EL1 and EL3 on ARM platforms
      expect each platform to export its memory map in the `plat_arm_mmap`
      data structure. This approach does not scale well in case the memory
      map cannot be determined until runtime. To cater for this possibility,
      this patch introduces the plat_arm_get_mmap() API. It returns a
      reference to the `plat_arm_mmap` by default but can be overridden
      by a platform if required.
      
      Change-Id: Idae6ad8fdf40cdddcd8b992abc188455fa047c74
      65cb1c4c
  21. 21 Jan, 2016 1 commit
    • Juan Castillo's avatar
      Disable PL011 UART before configuring it · 9400b40e
      Juan Castillo authored
      The PL011 TRM (ARM DDI 0183G) specifies that the UART must be
      disabled before any of the control registers are programmed. The
      PL011 driver included in TF does not disable the UART, so the
      initialization in BL2 and BL31 is violating this requirement
      (and potentially in BL1 if the UART is enabled after reset).
      
      This patch modifies the initialization function in the PL011
      console driver to disable the UART before programming the
      control registers.
      
      Register clobber list and documentation updated.
      
      Fixes ARM-software/tf-issues#300
      
      Change-Id: I839b2d681d48b03f821ac53663a6a78e8b30a1a1
      9400b40e
  22. 20 Jan, 2016 1 commit
    • Juan Castillo's avatar
      ARM plat: add build option to unlock access to non-secure timer · 0e5dcdd2
      Juan Castillo authored
      Currently, Trusted Firmware on ARM platforms unlocks access to the
      timer frame registers that will be used by the Non-Secure world. This
      unlock operation should be done by the Non-Secure software itself,
      instead of relying on secure firmware settings.
      
      This patch adds a new ARM specific build option 'ARM_CONFIG_CNTACR'
      to unlock access to the timer frame by setting the corresponding
      bits in the CNTACR<N> register. The frame id <N> is defined by
      'PLAT_ARM_NSTIMER_FRAME_ID'. Default value is true (unlock timer
      access).
      
      Documentation updated accordingly.
      
      Fixes ARM-software/tf-issues#170
      
      Change-Id: Id9d606efd781e43bc581868cd2e5f9c8905bdbf6
      0e5dcdd2
  23. 14 Dec, 2015 1 commit
  24. 30 Oct, 2015 1 commit
    • Soby Mathew's avatar
      Support PSCI SYSTEM SUSPEND on Juno · c1bb8a05
      Soby Mathew authored
      This patch adds the capability to power down at system power domain level
      on Juno via the PSCI SYSTEM SUSPEND API. The CSS power management helpers
      are modified to add support for power management operations at system
      power domain level. A new helper for populating `get_sys_suspend_power_state`
      handler in plat_psci_ops is defined. On entering the system suspend state,
      the SCP powers down the SYSTOP power domain on the SoC and puts the memory
      into retention mode. On wakeup from the power down, the system components
      on the CSS will be reinitialized by the platform layer and the PSCI client
      is responsible for restoring the context of these system components.
      
      According to PSCI Specification, interrupts targeted to cores in PSCI CPU
      SUSPEND should be able to resume it. On Juno, when the system power domain
      is suspended, the GIC is also powered down. The SCP resumes the final core
      to be suspend when an external wake-up event is received. But the other
      cores cannot be woken up by a targeted interrupt, because GIC doesn't
      forward these interrupts to the SCP. Due to this hardware limitation,
      we down-grade PSCI CPU SUSPEND requests targeted to the system power domain
      level to cluster power domain level in `juno_validate_power_state()`
      and the CSS default `plat_arm_psci_ops` is overridden in juno_pm.c.
      
      A system power domain resume helper `arm_system_pwr_domain_resume()` is
      defined for ARM standard platforms which resumes/re-initializes the
      system components on wakeup from system suspend. The security setup also
      needs to be done on resume from system suspend, which means
      `plat_arm_security_setup()` must now be included in the BL3-1 image in
      addition to previous BL images if system suspend need to be supported.
      
      Change-Id: Ie293f75f09bad24223af47ab6c6e1268f77bcc47
      c1bb8a05
  25. 13 Aug, 2015 2 commits
    • Sandrine Bailleux's avatar
      PSCI: Pool platform_mem_init() in common ARM platforms code · a6bd5ffb
      Sandrine Bailleux authored
      Now that the FVP mailbox is no longer zeroed, the function
      platform_mem_init() does nothing both on FVP and on Juno. Therefore,
      this patch pools it as the default implementation on ARM platforms.
      
      Change-Id: I007220f4531f15e8b602c3368a1129a5e3a38d91
      a6bd5ffb
    • Soby Mathew's avatar
      PSCI: Migrate ARM reference platforms to new platform API · 38dce70f
      Soby Mathew authored
      This patch migrates ARM reference platforms, Juno and FVP, to the new platform
      API mandated by the new PSCI power domain topology and composite power state
      frameworks. The platform specific makefiles now exports the build flag
      ENABLE_PLAT_COMPAT=0 to disable the platform compatibility layer.
      
      Change-Id: I3040ed7cce446fc66facaee9c67cb54a8cd7ca29
      38dce70f
  26. 28 Apr, 2015 1 commit
    • Dan Handley's avatar
      Add common ARM and CSS platform code · b4315306
      Dan Handley authored
      This major change pulls out the common functionality from the
      FVP and Juno platform ports into the following categories:
      
      *   (include/)plat/common. Common platform porting functionality that
      typically may be used by all platforms.
      
      *   (include/)plat/arm/common. Common platform porting functionality
      that may be used by all ARM standard platforms. This includes all
      ARM development platforms like FVP and Juno but may also include
      non-ARM-owned platforms.
      
      *   (include/)plat/arm/board/common. Common platform porting
      functionality for ARM development platforms at the board
      (off SoC) level.
      
      *   (include/)plat/arm/css/common. Common platform porting
      functionality at the ARM Compute SubSystem (CSS) level. Juno
      is an example of a CSS-based platform.
      
      *   (include/)plat/arm/soc/common. Common platform porting
      functionality at the ARM SoC level, which is not already defined
      at the ARM CSS level.
      
      No guarantees are made about the backward compatibility of
      functionality provided in (include/)plat/arm.
      
      Also remove any unnecessary variation between the ARM development
      platform ports, including:
      
      *   Unify the way BL2 passes `bl31_params_t` to BL3-1. Use the
      Juno implementation, which copies the information from BL2 memory
      instead of expecting it to persist in shared memory.
      
      *   Unify the TZC configuration. There is no need to add a region
      for SCP in Juno; it's enough to simply not allow any access to
      this reserved region. Also set region 0 to provide no access by
      default instead of assuming this is the case.
      
      *   Unify the number of memory map regions required for ARM
      development platforms, although the actual ranges mapped for each
      platform may be different. For the FVP port, this reduces the
      mapped peripheral address space.
      
      These latter changes will only be observed when the platform ports
      are migrated to use the new common platform code in subsequent
      patches.
      
      Change-Id: Id9c269dd3dc6e74533d0e5116fdd826d53946dc8
      b4315306