[http] Handle parsing of WWW-Authenticate header within authentication scheme
Allow individual authentication schemes to parse WWW-Authenticate
headers that do not comply with RFC2617.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[peerdist] Gather and report peer statistics during download
Record and report the number of peers (calculated as the maximum
number of peers discovered for a block's segment at the time that the
block download is complete), and the percentage of blocks retrieved
from peers rather than from the origin server.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[hyperv] Do not steal ownership from the Gen 2 UEFI firmware
We must not steal ownership from the Gen 2 UEFI firmware, since doing
so will cause an immediate system crash (most likely in the form of a
reboot).
This problem was masked before commit a0f6e75 ("[hyperv] Do not fail
if guest OS ID MSR is already set"), since prior to that commit we
would always fail if we found any non-zero guest OS identity. We now
accept a non-zero previous guest OS identity in order to allow for
situations such as chainloading from iPXE to another iPXE, and as a
prerequisite for commit b91cc98 ("[hyperv] Cope with Windows Server
2016 enlightenments").
A proper fix would be to reverse engineer the UEFI protocols exposed
within the Hyper-V Gen 2 firmware and use these to bind to the VMBus
device representing the network connection, (with the native Hyper-V
driver moved to become a BIOS-only feature).
As an interim solution, fail to initialise the native Hyper-V driver
if we detect the guest OS identity known to be used by the Gen 2 UEFI
firmware. This will cause the standard all-drivers build (ipxe.efi)
to fall back to using the SNP driver.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[build] Fix use of inline assembly on GCC 4.8 ARM64 builds
The inline assembly used in include/errno.h to generate the einfo
blocks requires the ability to generate an immediate constant with no
immediate-value prefix (such as the dollar sign for x86 assembly).
We currently achieve this via the undocumented "%c0" form of operand.
This causes an "invalid operand prefix" error on GCC 4.8 for ARM64
builds.
Fix by switching to the equally undocumented "%a0" form of operand,
which appears to work correctly on all tested versions of GCC.
Reported-by: Benjamin S. Allen <bsallen@alcf.anl.gov>
Signed-off-by: Michael Brown <mcb30@ipxe.org>
Since we don't enable IOMMU at all, we can then simply enable the
IOMMU support by claiming the support of VIRITO_F_IOMMU_PLATFORM.
This fixes booting failure when iommu_platform is set from qemu cli.
Signed-off-by: Jason Wang <jasowang@redhat.com>
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[smscusb] Abstract out common SMSC USB device functionality
The smsc75xx and smsc95xx drivers include a substantial amount of
identical functionality, varying only in the base address of register
sets. Abstract out this common functionality to allow code to be
shared between the drivers.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
Support renegotiation with servers supporting RFC5746. This allows
for the use of per-directory client certificates.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[usb] Use non-zero language ID to retrieve strings
We currently use a zero language ID to retrieve strings such as the
ECM/NCM MAC address. This works on most hardware devices, but is
known to fail on some software emulated CDC-NCM devices.
Fix by using the first supported language ID, falling back to English
(0x0409) if any error occurs when fetching the list of supported
languages. This matches the behaviour of the Linux kernel.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[crypto] Provide asn1_built() to construct a cursor from a builder
Our ASN.1 parsing code uses a struct asn1_cursor, while the object
construction code uses a struct asn1_builder. These structures are
identical apart from the const modifier applied to the data pointer in
struct asn1_cursor.
Provide asn1_built() to safely typecast a struct asn1_builder to a
struct asn1_cursor, allowing constructed objects to be passed to
functions expecting a struct asn1_cursor.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
Allow values to be read from ACPI tables using the syntax
${acpi/<signature>.<index>.0.<offset>.<length>}
where <signature> is the ACPI table signature as a 32-bit hexadecimal
number (e.g. 0x41504093 for the 'APIC' signature on the MADT), <index>
is the index into the array of tables matching this signature,
<offset> is the byte offset within the table, and <length> is the
field length in bytes.
Numeric values are returned in reverse byte order, since ACPI numeric
values are usually little-endian.
For example:
${acpi/0x41504943.0.0.0.0} - entire MADT table in raw hex
${acpi/0x41504943.0.0.0x0a.6:string} - MADT table OEM ID
${acpi/0x41504943.0.0.0x24.4:uint32} - local APIC address
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[hyperv] Cope with Windows Server 2016 enlightenments
An "enlightened" external bootloader (such as Windows Server 2016's
winload.exe) may take ownership of the Hyper-V connection before all
INT 13 operations have been completed. When this happens, all VMBus
devices are implicitly closed and we are left with a non-functional
network connection.
Detect when our Hyper-V connection has been lost (by checking the
SynIC message page MSR). Reclaim ownership of the Hyper-V connection
and reestablish any VMBus devices, without disrupting any existing
iPXE state (such as IPv4 settings attached to the network device).
Windows Server 2016 will not cleanly take ownership of an active
Hyper-V connection. Experimentation shows that we can quiesce by
resetting only the SynIC message page MSR; this results in a
successful SAN boot (on a Windows 2012 R2 physical host). Choose to
quiesce by resetting (almost) all MSRs, in the hope that this will be
more robust against corner cases such as a stray synthetic interrupt
occurring during the handover.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[block] Provide abstraction to allow system to be quiesced
When performing a SAN boot via INT 13, there is no way for the
operating system to indicate that it has finished using the INT 13 SAN
device. We therefore have no opportunity to clean up state before the
loaded operating system's native drivers take over. This can cause
problems when booting Windows, which tends not to be forgiving of
unexpected system state.
Windows will typically write a flag to the SAN device as the last
action before transferring control to the native drivers. We can use
this as a heuristic to bring the system to a quiescent state (without
performing a full shutdown); this provides us an opportunity to
temporarily clean up state that could otherwise prevent a successful
Windows boot.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[block] Allow use of a non-default EFI SAN boot filename
Some older operating systems (e.g. RHEL6) use a non-default filename
on the root disk and rely on setting an EFI variable to point to the
bootloader. This does not work when performing a SAN boot on a
machine where the EFI variable is not present.
Fix by allowing a non-default filename to be specified via the
"sanboot --filename" option or the "san-filename" setting. For
example:
sanboot --filename \efi\redhat\grub.efi \
iscsi:192.168.0.1::::iqn.2010-04.org.ipxe.demo:rhel6
or
option ipxe.san-filename code 188 = string;
option ipxe.san-filename "\\efi\\redhat\\grub.efi";
option root-path "iscsi:192.168.0.1::::iqn.2010-04.org.ipxe.demo:rhel6";
Originally-implemented-by: Vishvananda Ishaya Abrams <vish.ishaya@oracle.com>
Signed-off-by: Michael Brown <mcb30@ipxe.org>
Describe all SAN devices via ACPI tables such as the iBFT. For tables
that can describe only a single device (i.e. the aBFT and sBFT), one
table is installed per device. For multi-device tables (i.e. the
iBFT), all devices are described in a single table.
An underlying SAN device connection may be closed at the time that we
need to construct an ACPI table. We therefore introduce the concept
of an "ACPI descriptor" which enables the SAN boot code to maintain an
opaque pointer to the underlying object, and an "ACPI model" which can
build tables from a list of such descriptors. This separates the
lifecycles of ACPI descriptions from the lifecycles of the block
device interfaces, and allows for construction of the ACPI tables even
if the block device interface has been closed.
For a multipath SAN device, iPXE will wait until sufficient
information is available to describe all devices but will not wait for
all paths to connect successfully. For example: with a multipath
iSCSI boot iPXE will wait until at least one path has become available
and name resolution has completed on all other paths. We do this
since the iBFT has to include IP addresses rather than DNS names. We
will commence booting without waiting for the inactive paths to either
become available or close; this avoids unnecessary boot delays.
Note that the Linux kernel will refuse to accept an iBFT with more
than two NIC or target structures. We therefore describe only the
NICs that are actually required in order to reach the described
targets. Any iBFT with at most two targets is therefore guaranteed to
describe at most two NICs.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
Allow the SAN retry count to be configured via the ${san-retry}
setting, defaulting to the current value of 10 retries if not
specified.
Note that setting a retry count of zero is inadvisable, since iSCSI
targets in particular will often report spurious errors such as "power
on occurred" for the first few commands.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
Add basic support for multipath block devices. The "sanboot" and
"sanhook" commands now accept a list of SAN URIs. We open all URIs
concurrently. The first connection to become available for issuing
block device commands is marked as the active path and used for all
subsequent commands; all other connections are then closed. Whenever
the active path fails, we reopen all URIs and repeat the process.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
Add a dummy SAN device which allows the "sanhook" command to be tested
even when no SAN booting capability is present on the platform. This
allows substantial portions of the SAN boot code to be run in Linux
under Valgrind.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[iobuf] Increase minimum I/O buffer size to 128 bytes
The eIPoIB translation layer needs to translate outbound ARP packets
from Ethernet to IPoIB. A 64-byte buffer (starting with the Ethernet
header) does not provide enough tailroom to expand to hold the two
20-byte IPoIB MAC addresses. The result is that an UNDI API user will
be unable to send ARP packets.
We could potentially shuffle the packet contents to reuse the space
occupied by the stripped Ethernet link-layer header, but this would
add complexity. Instead, fix by increasing the minimum allocation
size to 128 bytes.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
Track the current and maximum heap usage, and display the maximum
during shutdown when DEBUG=malloc is enabled.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[infiniband] Return status code from ib_create_cq() and ib_create_qp()
Any underlying errors arising during ib_create_cq() or ib_create_qp()
are lost since the functions simply return NULL on error. This makes
debugging harder, since a debug-enabled build is required to discover
the root cause of the error.
Fix by returning a status code from these functions, thereby allowing
any underlying errors to be propagated.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
[build] Avoid confusing sparse in single-argument DBG() macros
For visual consistency with surrounding lines, the definitions of
DBG_MORE(), DBG_PAUSE(), etc include an unnecessary ##__VA_ARGS__
argument which is always elided. This confuses sparse, which
complains about DBG_MORE_IF() being called with more than one
argument.
Work around this problem by adding an unused variable argument list to
the single-argument macros DBG_MORE_IF() and DBG_PAUSE_IF().
Signed-off-by: Michael Brown <mcb30@ipxe.org>
Several files define the ARRAY_SIZE() macro as used in Linux. Provide
a common definition for this in include/compiler.h.
Signed-off-by: Michael Brown <mcb30@ipxe.org>
The concept of the SAN drive number is meaningful only in a BIOS
environment, where it represents the INT13 drive number (0x80 for the
first hard disk). We retain this concept in a UEFI environment to
allow for a simple way for iPXE commands to refer to SAN drives.
Centralise the concept of the default drive number, since it is shared
between all supported environments.
Signed-off-by: Michael Brown <mcb30@ipxe.org>