Having a different name for the FLAGS register creates an unnecessary difference
between ia32 and x86_64 code since regardless of the name/size the bits in the
register mean exactly the same thing
This commit implements the body of SELFOUR-499. The API exposes the x86 DR0-7
and ARM coprocessor 14 features to userspace by virtualizing them as context-
switched registers in the TCB. Implemented as TCB invocations. This feature is
only built when CONFIG_HARDWARE_DEBUG_API is selected.
* Add low-level support routines for setting, unsetting, getting, enabling
and disabling breakpoints.
* Add support for single-stepping as well.
^ Single-stepping is not supported on ARMv6 since the hardware
doesn't have support.
^ ARM implements single-stepping as instruction breakpoints
configured to fault on every instruction -- this is achieved through
the "mismatch" mode, which is only supported from ARMv7 onwards.
* Also support explicit software break requests, a la "BKPT" and "INT $3".
* New invocations:
* seL4_TCB_SetBreakpoint().
* seL4_TCB_GetBreakpoint().
* seL4_TCB_UnsetBreakpoint().
* seL4_TCB_ConfigureSingleStepping().
* New constants:
^ Event types:
^ seL4_InstructionBreakpoint.
^ seL4_DataBreakpoint.
^ seL4_SoftwareBreakRequest.
^ Access types:
^ seL4_BreakOnRead.
^ seL4_BreakOnWrite.
^ seL4_BreakOnReadWrite.
^ Exports:
^ seL4_NumHWBreakpoints.
^ seL4_NumExclusiveBreakpoints.
^ seL4_NumExclusiveWatchpoints.
^ seL4_NumDualFunctionMonitors.
^ seL4_FirstBreakpoint.
^ seL4_FirstWatchpoint.
^ seL4_FirstDualFunctionMonitor.
See documentation in the seL4 API manual.
syscall/sysret is an additional way of performing kernel entry/exits.
Whilst the instructions themselves are not supported when running
in 32-bit mode, this commit provides the config choice for them as
well as the generic support code for them.
Where MCP = Maximum Controlled Priority
This commit adds:
* seL4_TCB_SetMCPriority
and changes the arguments to
* seL4_TCB_Configure
As of this commit, a thread cannot create or set a threads
priority (including itself) above its mcp. Previously the kernel
did this check against a threads priority, which prevented a thread
from setting it's own priority down and then up again.
Adds a mapping type to frame caps that tracks
what kind of hierarchy the cap is mapped into;
an MMU, IOMMU and in the future an EPT structure.
Additionally the IOMMU code is updated to
have correct functionality and be verification
friendly.
The TK1 manual's address map has a 16K MMIO region called the "Misc" region,
where they lump together several controllers that aren't all page aligned,
including a USB controller and a SATA controller of some kind.
They also lump the pinmux controller into this "misc" region, but the
pinmux controller is at a page aligned boundary, and has no other devices
sharing that page, so it can be split off into its own device untyped.
This also makes it easier to request that mapping from userspace.
- update core detection code and Kconfig file
- update kernel stack managment so that BSP does not use boot stack before IPI APs
- move arch dependant data to a single structure
- add cache line size to Kconfig
- add cpu indexing and apic id mapping
- boot APs to halting state
- add guard for kernel stack if there is only one core
The ACTLR register is not a PL2 exclusive register, and is architecturally
defined to exist (although the contents of the register are implementation defined).
* commit '8e77cdb5e91e971f49747492a3350c2b443a3827':
SELFOUR-421: Add padding for untyped in bootinfo
SELFOUR-421: minor changes for c-refine
SELFOUR-421: fix up boolean equality in Arch_sameObjectAs
SELFOUR-421: added device check to sameObjectAs
SELFOUR-421: Arch_createObject changed to use new user_data_device in ghostupdates for device pages
SELFOUR-421 Introduce explicit device frames and untypeds
Kernel objects cannot be created from device untypeds, with the
exception of frames, which do not get zeroed and cannot be used
as an IPC buffer. Device untypeds additionally cannot be used
in the construction of ASID pools.
This then changes the API to the rootserver (i.e. bootinfo) to
send device untypeds instead of device frames. On ARM these
device untypeds are the same as the previously exported device
frame regions. On x86 PCI scanning is removed and all physical
memory addresses (that are not important for kernel integrity)
are released to the user.
In order to have bits in the frame and untyped caps on ARM the
number of software ASIDs had to be reduced from 2^18 to 2^17,
and the maximum untyped size reduced from 2^31 to 2^30
The previous macro computed to (0 - sizeof(tcb_t)). Basically a negative
number, which is just a really big unsigned number, so this macro was
basically allowing TCB naming of any length.
* commit 'fbc071b4f11b3d7d423e26908a661f416b07cda2':
SELFOUR-630:preliminary booting application processors - update core detection code and Kconfig file - update kernel stack managment so that BSP does not use boot stack before IPI APs - move arch dependant data to a single structure - add cache line size to Kconfig - add cpu indexing and apic id mapping - boot APs to halting state - add guard for kernel stack if there is only one core
- update core detection code and Kconfig file
- update kernel stack managment so that BSP does not use boot stack before IPI APs
- move arch dependant data to a single structure
- add cache line size to Kconfig
- add cpu indexing and apic id mapping
- boot APs to halting state
- add guard for kernel stack if there is only one core
The first time the irq number is read from the controller, the interrupt
is acknowledged. Subsequent reads of the irq number result in an invalid
irq number being read.
This modifies the kzm interrupt controller driver to save the current irq
number when it's first read from the interrupt controller, preventing the
need for future reads from the controller until the next interrupt arrives.