This better aligns with the rest of the code and makes it clearer
that these tests can run "as is" in a normal hosted environments
without the special test environment.
Signed-off-by: Philipp Schuster <philipp.schuster@cyberus-technology.de>
On-behalf-of: SAP philipp.schuster@sap.com
This allows us to enable/disable the fw_cfg device via the cli
We can also now upload files into the guest vm using fw_cfg_items
via the cli
Signed-off-by: Alex Orozco <alexorozco@google.com>
This allows the fw_cfg device to be recognized by the guest linux
kernel. This becomes more relavnt in the following cl where I add
the option to load files into the guest via fw_cfg. The Linux kernel
already has a fw_cfg driver that will automatically load these files
under /sys when CONFIG_FW_CFG_SYSFS is enabled in the kernel config
For arm we must add fw_cfg to the devices tree
Signed-off-by: Alex Orozco <alexorozco@google.com>
We pass a reference to the guest memory when we create the device
in DeviceManager. This allows us to access the guest memory for DMA.
Signed-off-by: Alex Orozco <alexorozco@google.com>
The acpi tables are created in the same place the acpi tables would be
created for the regular bootflow, except here we add them to the
fw_cfg device to be measured by the fw and then the fw will put the
acpi tables into memory.
Signed-off-by: Alex Orozco <alexorozco@google.com>
The kernel and initramfs are passed to the fw_cfg device as
file references. The cmdline is passed directly.
Signed-off-by: Alex Orozco <alexorozco@google.com>
Here we add the fw_cfg device as a legacy device to the device manager.
It is guarded behind a fw_cfg flag in vmm at creation of the
DeviceManager. In this cl we implement the fw_cfg device with one
function (signature).
Signed-off-by: Alex Orozco <alexorozco@google.com>