Archived/GSoc 2014: Difference between revisions
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{{InfoLeft|The application deadline for GSoC has closed for 2014.}} |
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* [http://www.google-melange.com/gsoc/homepage/google/gsoc2014 melange] |
* [http://www.google-melange.com/gsoc/homepage/google/gsoc2014 melange] |
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* We do have our own [[GSoC Student Application Template]] form |
* We do have our own [[GSoC Student Application Template]] form |
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=== GSoC Projects that were accepted in 2014 === |
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{{project |
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|Project=Implement Xen PVUSB support in xl/libxl toolstack |
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|Date=01/12/2012 |
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|Contact=Mentor: George Dunlap, Student: Bo Cao |
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|GSoC=Yes |
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|Desc= |
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xl/libxl does not currently support Xen PVUSB functionality. Port the feature from xm/xend to xl/libxl. Necessary operations include: |
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* Task 1: Implement PVUSB in xl/libxl, make it functionally equivalent to xm/xend. |
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* Send to xen-devel mailinglist for review, comments. |
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* Fix any upcoming issues. |
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* Repeat until merged to xen-unstable. |
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* See above for PVUSB drivers for dom0/domU. |
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* Xen PVUSB supports both PV domUs and HVM guests with PV drivers. |
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* More info: http://wiki.xen.org/xenwiki/XenUSBPassthrough |
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{{Comment|[[User:Lars.kurth|Lars.kurth]] 14:14, 23 January 2013 (UTC):}} Should be suitable, but desc needs. Rate in terms of challenges, size and skill. Also kernel functionality is not yet upstreamed. Maybe Suse kernel. |
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}} |
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{{project |
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|Project=Lazy restore using memory paging |
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|Date=01/20/2014 |
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|Contact=Mentor: Andres Lagar-Cavilla, Student: Dushyant Behl |
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|Difficulty=Medium |
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|GSoC=Yes |
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|Desc=VM Save/restore results in a boatload of IO and non-trivial downtime as the entire memory footprint of a VM is read from IO. |
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Xen memory paging support in x86 is now mature enough to allow for lazy restore, whereby the footprint of a VM is backfilled while the VM executes. If the VM hits a page not yet present, it is eagerly paged in. |
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There has been some concern recently about the lack of docs and/or mature tools that use xen-paging. This is a good way to address the problem. |
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|Skills= A good understanding of save/restore, and virtualized memory management (e.g. EPT, shadow page tables, etc). In principle the entire project can be implemented in user-space C code, but it may be the case that new hypercalls are needed for performance reasons. |
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|Outcomes=Expected outcome: |
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* Mainline patches for libxc and libxl |
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}} |
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* {{Comment|[[User:dushyant|dushyant]]}} Hi, I am working on this project. |
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{{project |
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|Project=HVM per-event-channel interrupts |
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|Date=01/30/2013 |
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|Contact=Mentor: Paul Durrant, Student: Yandong Han |
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|Skills=C, some prior knowledge of Xen useful |
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|Desc=Windows PV drivers currently have to multiplex all event channel processing onto a single interrupt which is registered with Xen using the HVM_PARAM_CALLBACK_IRQ parameter. This results in a lack of scalability when multiple event channels are heavily used, such as when multiple VIFs in the VM as simultaneously under load. |
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Goal: Modify Xen to allow each event channel to be bound to a separate interrupt (the association being controlled by the PV drivers in the guest) to allow separate event channel interrupts to be handled by separate vCPUs. There should be no modifications required to the guest OS interrupt logic to support this (as there is with the current Linux PV-on-HVM code) as this will not be possible with a Windows guest. |
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|Outcomes=Code is submitted to xen-devel@xen.org for inclusion in xen-unstable |
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|GSoC=yes}} |
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{{project |
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|Project=Mirage OS cloud API support |
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|Date=28/11/2013 |
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|Contact=Mentor: Dave Scott; Student: Jyotsna Prakash |
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|Skills=OCaml |
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|Difficulty=medium |
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|Desc= |
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MirageOS (see http://xenproject.org/developers/teams/mirage-os.html, http://www.openmirage.org/) is a type-safe unikernel written in OCaml which generates highly specialised "appliance" VMs that run directly on Xen without requiring an intervening kernel. A MirageOS application typically runs via several communicating kernel instances on the cloud. Today these instances are difficult to manage; we would like to explore strategies for managing these distributed computations using common public cloud APIs such as those exposed by Amazon EC2 and Rackspace. |
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First we need to create pure OCaml API bindings for (e.g.) EC2 and Rackspace (purity is needed to ensure portability). These API bindings can then be used to provide operating-system-level abstractions to the unikernels. For example, a traditional VM might hotplug a vCPU; while a MirageOS application would request a "VM create" using the cloud API and "connect" the new instance to the existing network. We should be able to spin up 1000s of "CPUs" by using such APIs in a cluster environment. |
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As well as helping Xen/Mirage, the public cloud API bindings will be very useful to other people in other contexts-- a nice side-effect. |
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See https://fedoraproject.org/wiki/User:Gholms/EC2_Primer for a primer on how to use EC2 |
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|Outcomes=1. one or more public cloud API bindings plus examples, in a standalone repo on github; 2. an example mirage app which uses these APIs to spin up a new VM |
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|GSoC=yes |
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}} |
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{{project |
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|Project=Parallel xenwatch kthread |
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|Date=01/08/2012 |
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|Difficulty=Low-Medium |
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|Contact=Mentor: Boris Ostrovsky, Student: Tülin İZER |
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|Desc= |
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Xenwatch is locked with a coarse lock. For a huge number of guests this represents a scalability issue. The need is to rewrite the xenwatch locking in order to support full scalability. |
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See https://git.kernel.org/cgit/linux/kernel/git/torvalds/linux.git/tree/drivers/xen/xenbus/xenbus_xs.c#n768 |
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for the code. |
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|Outcomes=Expected outcome: |
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* Have upstream patches or a draft of them. |
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* benchmark report of with and without. |
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|GSoC=Yes |
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| Skills=You need to have understanding of: |
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* locks - spinlocks and mutexes |
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* build Linux kernel |
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}} |
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== List of peer reviewed Projects == |
== List of peer reviewed Projects == |
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|Difficulty=Medium |
|Difficulty=Medium |
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|Desc= |
|Desc= |
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OVMF is a project to enable UEFI support for virtual machine. http://sourceforge.net/apps/mediawiki/tianocore/index.php?title=OVMF |
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SeaBIOS is a legacy BIOS implementation used by Xen to boot HVM guests. http://www.coreboot.org/SeaBIOS |
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Currently Xen supports booting HVM guest with Seabios and OVMF UEFI firmware, but those are separate binaries. OVMF supports adding legacy BIOS blob in its binary with Compatibility Support Module support. We can try to produce single OVMF binary with Seabios in it, thus having only one firmware binary. |
Currently Xen supports booting HVM guest with Seabios and OVMF UEFI firmware, but those are separate binaries. OVMF supports adding legacy BIOS blob in its binary with Compatibility Support Module support. We can try to produce single OVMF binary with Seabios in it, thus having only one firmware binary. |
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Tasks may include: |
Tasks may include: |
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* understand the boot process of HVM guests |
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* figure out how CSM works |
* figure out how CSM works |
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* design / implement interface between Hvmloader and the unified binary |
* design / implement interface between Hvmloader and the unified binary |
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| Skills=You need to have understanding of: |
| Skills=You need to have understanding of: |
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* Firmware internal |
* Firmware internal |
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* Xen HVM booting process |
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* Some C programming skills |
* Some C programming skills |
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|Review= |
|Review= |
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}} |
}} |
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* {{Comment|[[User:sdytlm|sdytlm]]}} Hi, I am interested to work on this project. |
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{{project |
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|Project=Parallel xenwatch kthread |
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|Date=01/08/2012 |
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|Difficulty=Low-Medium |
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|Contact=Konrad Rzeszutek Wilk <konrad.wilk@oracle.com> |
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|Desc= |
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Xenwatch is locked with a coarse lock. For a huge number of guests this represents a scalability issue. The need is to rewrite the xenwatch locking in order to support full scalability. |
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|Outcomes=Expected outcome: |
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* Have upstream patches. |
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* benchmark report of with and without. |
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|GSoC=Yes |
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|Review=(delete as addressed) |
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* {{Comment|[[User:Lars.kurth|Lars.kurth]] 15:24, 17 February 2014 (UTC):}} Konrad, maybe you can provide a pointer to the lock? Also, can you add the '''Skills''' section. |
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}} |
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{{project |
{{project |
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|Project=Utilize Intel |
|Project=Utilize Intel QuickData on network and block path. |
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|Date=01/22/2013 |
|Date=01/22/2013 |
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|Difficulty=High |
|Difficulty=High |
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|Contact=Konrad Rzeszutek Wilk <konrad.wilk@oracle.com> |
|Contact=Konrad Rzeszutek Wilk <konrad.wilk@oracle.com> |
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|Desc=The Intel |
|Desc=The Intel QuickData, also known as Direct Cache Access (or IOA/T), is the chipset that sits in the PCIe subsystem in the Intel systems. It allows the PCIe subsystem to tag which PCIe writes to memory should reside in the Last Level Cache (LLC, also known as L3, which in some cases can be of 15MB or 2.5MB per CPU). This offers incredible boosts of speed - as we bypass the DIMMs and instead the CPU can process the data in the cache. |
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Adding this component in the network or block backends can mean that we can keep the data longer in the cache and the guest can process the data right off the cache. |
Adding this component in the network or block backends can mean that we can keep the data longer in the cache and the guest can process the data right off the cache. |
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See these for references: |
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http://www.intel.com/content/www/us/en/wireless-network/accel-technology.html |
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http://www.intel.com/content/www/us/en/chipsets/quickdata-technology-software-guide-for-linux-paper.html |
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Also the dmaengine@vger.kernel.org is an excellent mailing list to subscribe to. |
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|Skills=The basic requirement for this project is Linux kernel programming skill. |
|Skills=The basic requirement for this project is Linux kernel programming skill. |
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|Outcomes=Expected outcome: |
|Outcomes=Expected outcome: |
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* Investigate whether DCA (aka QuickData aka I/O AT) works with Xen. |
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* Have upstream patches. |
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* If above is true: have upstream patches (or draft patches) |
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* benchmark report of with and without. |
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* and benchmark report of with and without. |
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|GSoC=Yes |
|GSoC=Yes |
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|Review=(delete as addressed) |
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* {{Comment|[[User:Lars.kurth|Lars.kurth]] 15:24, 17 February 2014 (UTC):}} Konrad, this project would benefit to links to the mentioned specs and a list of the open source communities that the student may need to work with. |
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}} |
}} |
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{{project |
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|Project=Xen block backend/frontend multiqueue support |
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|Date=03/09/2014 |
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|Difficulty=High |
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|Contact=Konrad Rzeszutek Wilk <konrad.wilk@oracle.com> |
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|Desc= |
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The Linux kernel (and FreeBSD, Windows, etc) have ParaVirtualized (PV) drivers to perform |
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the I/O instead of using the emulated devices that appear in QEMU (IDE, SCSI, etc). This is |
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done because the emulation of the IDE drivers is quite slow - and if you dig in how it |
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actually is done - it is full of bit-banging registers. The PV drivers are an answer to this |
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and eliminate the need for emulation. The mechanism by which they work is |
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nicely draw out in http://wiki.xen.org/wiki/PV_Protocol |
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and http://www.informit.com/articles/article.aspx?p=1160234&seqNum=3 |
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("Definitive Guide to the Xen Hypervisor, The") |
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There have been improvements done in it - see http://wiki.xen.org/wiki/Xen_4.3_Block_Protocol_Scalability |
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and http://blog.xen.org/index.php/2013/08/07/indirect-descriptors-for-xen-pv-disks/ |
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However, there are still room for improvement. We can utilize the new |
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block multiqueue API support in Linux (See https://lwn.net/Articles/552904/ |
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and http://kernel.dk/systor13-final18.pdf) |
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to allocate per CPU a block thread (which handles the I/O transmission). |
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That should provide greater throughput and lower latency for I/O workloads. |
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Also see https://docs.google.com/document/d/1Vh5T8Z3Tx3sUEhVB0DnNDKBNiqB_ZA8Z5YVqAsCIjuI |
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which has some of the explanation. |
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| Skills=You need to have understanding of: |
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* Knowledge of Linux kernel |
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* How I/O works |
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* C language |
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|Outcomes=Expected outcome: |
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* Patches for the Linux Kernel Mailing list (LKML). |
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* Benchmark reports. |
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|GSoC=Yes |
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}} |
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{{project |
{{project |
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* More info: http://www.linux-kvm.org/page/9p_virtio |
* More info: http://www.linux-kvm.org/page/9p_virtio |
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* Also the Bell Labs original OS that introduced the 9P protocol: http://plan9.bell-labs.com/sources/plan9/sys/src/ |
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|Skills= Required skills include knowledge of kernel hacking, file system internals. Desired skills include: understanding of Xen PV driver structure, and VirtIO. |
|Skills= Required skills include knowledge of kernel hacking, file system internals. Desired skills include: understanding of Xen PV driver structure, and VirtIO. |
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|Project=CPU/RAM/PCI diagram tool |
|Project=CPU/RAM/PCI diagram tool |
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|Date=01/30/2014 |
|Date=01/30/2014 |
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|Contact= |
|Contact=Andrew Cooper <andrew.cooper3@citrix.com> |
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|Difficulty=Moderate, to Extremely Difficult (depending on which area of the problem you choose to tackle) |
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|Difficulty=Low to medium |
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|Skills=Understanding of PC server hardware, Understanding of ACPI/SMBios tables, Linux scripting or kernel hacking (depending on which area of the problem you choose to tackle) |
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|Skills=Linux scripting; basic understanding of PC server hardware |
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|Desc=It is often useful in debugging kernel, hypervisor or performance problems to understand the bus topology of a server. This project will create a layout diagram for a server automatically using data from ACPI Tables, SMBios Tables, lspci output etc. This tool would be useful in general Linux environments including Xen and KVM based virtualisation systems. |
|Desc=It is often useful in debugging kernel, hypervisor or performance problems to understand the bus topology of a server. This project will create a layout diagram for a server automatically using data from ACPI Tables, SMBios Tables, lspci output etc. This tool would be useful in general Linux environments including Xen and KVM based virtualisation systems. |
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|Difficulty=Medium |
|Difficulty=Medium |
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|Skills=C, Kernel Debuggers, Xen, Windows |
|Skills=C, Kernel Debuggers, Xen, Windows |
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|Desc=kdd is a Windows Debugger Stub for Xen hypervisor. It is OSS found under http://xenbits.xen.org/ |
|Desc=kdd is a Windows Debugger Stub for Xen hypervisor. It is OSS found under http://xenbits.xen.org/gitweb/?p=xen.git;a=tree;f=tools/debugger/kdd;h=fd82789a678fb8060cc74ebbe0a04dc58309d6d7;hb=refs/heads/master |
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kdd allows you to debug a running Windows virtual machine on Xen using standard Windows kernel debugging tools like WinDbg. kdd is an external debugger stub for the windows kernel. |
kdd allows you to debug a running Windows virtual machine on Xen using standard Windows kernel debugging tools like WinDbg. kdd is an external debugger stub for the windows kernel. |
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Windows can be debugged without enabling the debugger stub inside windows kernel by using kdd. This is important for debugging hard to reproduce problems on Windows virtual machines that may not have debugging enabled. |
Windows can be debugged without enabling the debugger stub inside windows kernel by using kdd. This is important for debugging hard to reproduce problems on Windows virtual machines that may not have debugging enabled. |
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|Outcomes=Code is submitted to xen-devel@xen.org for inclusion in the xen-unstable project. |
|Outcomes=Code is submitted to xen-devel@xen.org for inclusion in the xen-unstable project. |
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|GSoC=yes}} |
|GSoC=yes}} |
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{{project |
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|Project=CPUID Programming for Humans |
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|Date=02/04/2014 |
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|Contact=Andres Lagar-Cavilla <andres@lagarcavilla.org> |
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|Difficulty=Easy |
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|GSoC=Yes |
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|Desc=When creating a VM, a policy is applied to mask certain CPUID features. Right now it's black magic. |
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The KVM stack has done an excellent job of making this human-useable, and understandable. |
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For example, in a qemu-kvm command-line you may encounter: |
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-cpu SandyBridge,+pdpe1gb,+osxsave,+dca,+pcid,+pdcm,+xtpr,+tm2,+est,+smx,+vmx,+ds_cpl,+monitor,+dtes64,+pbe,+tm,+ht,+ss,+acpi,+ds,+vme |
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And in <qemu>/target-i386.c you find a fairly comprehensive description of x86 processor models, what CPUID features are inherent, and what CPUID feature each of these symbolic flags enables. |
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In the Xen world, there is a libxc interface to do the same, although it's all hex and register driven. It's effective, yet horrible to use. |
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An ideal outcome would have libxl config files and command line absorb a similarly human-friendly description of the CPUID features a user wishes for the VM, and interface appropriately with libxl. Further, autodetection of best CPUID shuold yield a human-readable output to be able to easily understand what the VM thinks about its processor. |
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Finally, interfacing with libvirt should be carefully considered. |
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CPUID management is crucial in a heterogeneous cluster where migrations and save restore require careful processor feature selection to avoid blow-ups. |
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See: http://wiki.qemu.org/images/c/c8/Cpu-models-and-libvirt-devconf-2014.pdf |
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and https://www.berrange.com/posts/2010/02/15/guest-cpu-model-configuration-in-libvirt-with-qemukvm/ |
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and http://blog.xen.org/index.php/2014/01/17/libvirt-support-for-xens-new-libxenlight-toolstack/ |
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|Skills= A good understanding of C user-land programming, and the ability to dive into qemu/libvirt (for reference code and integration), as well as libxc and libxl (for implementation). |
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|Outcomes=Expected outcome: |
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* Mainline patches for libxl |
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}} |
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* {{Comment|[[User:Vasilev|Vasilev]]}} I am interested in this idea ( [http://lists.xen.org/archives/html/xen-api/2014-03/msg00011.html] ) |
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=== Mirage OS === |
=== Mirage OS === |
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|Project=Create a tiny VM for easy load testing |
|Project=Create a tiny VM for easy load testing |
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|Date=01/30/2014 |
|Date=01/30/2014 |
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|Contact=Dave Scott < |
|Contact=Dave Scott <dave.scott@eu.citrix.com> |
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|Difficulty=Medium |
|Difficulty=Medium |
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|Skills=OCaml |
|Skills=OCaml |
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|Desc=The Mirage OS framework (see http://xenproject.org/developers/teams/mirage-os.html, http://www.openmirage.org/) can be used to create tiny ' |
|Desc=The Mirage OS framework (see http://xenproject.org/developers/teams/mirage-os.html, http://www.openmirage.org/) can be used to create tiny 'unikernels': entire software stacks which run directly on the Xen hypervisor. These VMs have such a small memory footprint (16 MiB or less) that many of them can be run even on relatively small hosts. The goal of this project is to create a specific unikernel that can be configured to generate a specific I/O pattern, and to create configurations that mimic the boot sequence of Linux and Windows guests. The resulting unikernel will then enable cheap system load testing. |
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The first task is to generate an I/O trace from a VM. For this we could use 'xen-disk', a userspace Mirage application which acts as a block backend for xen guests (see http://openmirage.org/wiki/xen-synthesize-virtual-disk). Following the wiki instructions we could modify a 'file' backend to log the request timestamps, offsets, buffer lengths. |
The first task is to generate an I/O trace from a VM. For this we could use 'xen-disk', a userspace Mirage application which acts as a block backend for xen guests (see http://openmirage.org/wiki/xen-synthesize-virtual-disk). Following the wiki instructions we could modify a 'file' backend to log the request timestamps, offsets, buffer lengths. |
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The second task is to create a simple kernel based on one of the MirageOS examples (see http://github.com/mirage/mirage-skeleton). The ' |
The second task is to create a simple kernel based on one of the MirageOS examples (see http://github.com/mirage/mirage-skeleton). The 'block' example shows how reads and writes are done. The previously-generated log could be statically compiled into the kernel and executed to generate load. |
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|Outcomes=1. a repository containing an ' |
|Outcomes=1. a repository containing an 'unikernel' (see http://github.com/mirage/mirage-skeleton) |
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2. at least 2 I/O traces, one for Windows boot and one for Linux boot (any version) |
2. at least 2 I/O traces, one for Windows boot and one for Linux boot (any version) |
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|GSoC=yes}} |
|GSoC=yes}} |
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|Date=28/11/2013 |
|Date=28/11/2013 |
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|Contact=Anil Madhavapeddy <anil@recoil.org> |
|Contact=Anil Madhavapeddy <anil@recoil.org> |
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|Skills=OCaml |
|Skills=OCaml, Xen |
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|Difficulty=medium |
|Difficulty=medium |
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|Desc= |
|Desc= |
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Mirage OS (see http://xenproject.org/developers/teams/mirage-os.html, http://www.openmirage.org/) is a type-safe |
Mirage OS (see http://xenproject.org/developers/teams/mirage-os.html, http://www.openmirage.org/) is a type-safe unikernel written in OCaml which generates highly specialised "appliance" VMs that run directly on Xen without requiring an intervening guest kernel. We would like to use the Mirage/Xen libraries to fuzz test all levels of a typical cloud toolstack. Mirage has low-level bindings for Xen hypercalls, mid-level bindings for domain management, and high-level bindings to XCP for cluster management. This project would build a QuickCheck-style fuzzing mechanism that would perform millions of random operations against a real cluster, and identify bugs with useful backtraces. |
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The first task would be to become familiar with a specification-based testing tool like Kaputt (see http://kaputt.x9c.fr/). The second task would be to choose an interface for testing; perhaps one of the hypercall ones. |
The first task would be to become familiar with a specification-based testing tool like Kaputt (see http://kaputt.x9c.fr/). The second task would be to choose an interface for testing; perhaps one of the hypercall ones. |
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{{project |
{{project |
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|Project=Mirage OS |
|Project=Mirage OS web stack testing |
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|Date= |
|Date=25/02/2014 |
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|Contact=Anil Madhavapeddy <anil@recoil.org> |
|Contact=Anil Madhavapeddy <anil@recoil.org> |
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|Skills=OCaml |
|Skills=OCaml, shell scripting |
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|Difficulty=medium |
|Difficulty=medium |
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|Desc= |
|Desc= |
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MirageOS has an emerging web toolstack that's broken up as a series of libraries -- for example, Cohttp, Uri, Cow, Ipaddr, RSS and Cowabloga. This project will get you familiar with them by building a protocol testing framework that can generate traffic using off-the-shelf tools such as httperf, and evaluate the results vs applications such as Apache or Nginx. |
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MirageOS (see http://xenproject.org/developers/teams/mirage-os.html, http://www.openmirage.org/) is a type-safe exokernel written in OCaml which generates highly specialised "appliance" VMs that run directly on Xen without requiring an intervening kernel. A MirageOS application typically runs via several communicating kernel instances on the cloud. Today these instances are difficult to manage; we would like to explore strategies for managing these distributed computations using common public cloud APIs such as those exposed by Amazon EC2 and Rackspace. |
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|Outcomes=1. a test harness for HTTP; 2. some results of the evaluation using the test harness |
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First we need to create pure OCaml API bindings for (e.g.) EC2 and Rackspace (purity is needed to ensure portability). These API bindings can then be used to provide operating-system-level abstractions to the exokernels. For example, a traditional VM might hotplug a vCPU; while a MirageOS application would request a "VM create" using the cloud API and "connect" the new instance to the existing network. We should be able to spin up 1000s of "CPUs" by using such APIs in a cluster environment. |
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As well as helping Xen/Mirage, the public cloud API bindings will be very useful to other people in other contexts-- a nice side-effect. |
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|Outcomes=1. one or more public cloud API bindings plus examples, in a standalone repo on github; 2. an example mirage app which uses these APIs to spin up a new VM |
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|GSoC=yes |
|GSoC=yes |
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}} |
}} |
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* More info: http://wiki.xen.org/xenwiki/XenPVSCSI |
* More info: http://wiki.xen.org/xenwiki/XenPVSCSI |
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{{Comment|[[User:Lars.kurth|Lars.kurth]] 14:14, 23 January 2013 (UTC):}} Should be suitable, but desc needs. Rate in terms of challenges, size and skill. Also kernel functionality is not yet upstreamed. Maybe Suse kernel. |
{{Comment|[[User:Lars.kurth|Lars.kurth]] 14:14, 23 January 2013 (UTC):}} Should be suitable, but desc needs. Rate in terms of challenges, size and skill. Also kernel functionality is not yet upstreamed. Maybe Suse kernel. |
||
}} |
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{{project |
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|Project=Implement Xen PVUSB support in xl/libxl toolstack |
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|Date=01/12/2012 |
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|Contact=Pasi Karkkainen <pasik@iki.fi> |
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|GSoC=Yes |
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|Desc= |
|||
xl/libxl does not currently support Xen PVUSB functionality. Port the feature from xm/xend to xl/libxl. Necessary operations include: |
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* Task 1: Implement PVUSB in xl/libxl, make it functionally equivalent to xm/xend. |
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* Send to xen-devel mailinglist for review, comments. |
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* Fix any upcoming issues. |
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* Repeat until merged to xen-unstable. |
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* See above for PVUSB drivers for dom0/domU. |
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* Xen PVUSB supports both PV domUs and HVM guests with PV drivers. |
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* More info: http://wiki.xen.org/xenwiki/XenUSBPassthrough |
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{{Comment|[[User:Lars.kurth|Lars.kurth]] 14:14, 23 January 2013 (UTC):}} Should be suitable, but desc needs. Rate in terms of challenges, size and skill. Also kernel functionality is not yet upstreamed. Maybe Suse kernel. |
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}} |
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{{project |
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|Project=Block backend/frontend improvements |
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|Date=01/01/2013 |
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|Difficulty=Medium |
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|Contact=Konrad Rzeszutek Wilk <konrad.wilk@oracle.com> |
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|Desc= |
|||
Blkback requires a number of improvements, some of them being: |
|||
* Multiple disks in a guest cause contention in the global pool of pages. |
|||
* There is only one ring page and with SSDs nowadays we should make this larger, implementing some multi-page support. |
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* With multi-page it becomes apparent that the segment size ends up wasting a bit of space on the ring. BSD folks fixed that by negotiating a new parameter to utilize the full size of the ring. Intel had an idea for descriptor page. |
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* Add DIF/DIX support [http://oss.oracle.com/~mkp/docs/lpc08-data-integrity.pdf] for T10 PI (Protection Information), to support data integrity fields and checksums. |
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* Further perf evaluation needs to be done to see how it behaves under high load. |
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* Further discussion and issues outlined in http://lists.xen.org/archives/html/xen-devel/2012-12/msg01346.html and https://docs.google.com/document/d/1Vh5T8Z3Tx3sUEhVB0DnNDKBNiqB_ZA8Z5YVqAsCIjuI |
|||
|GSoC=Yes, but we would have to chop them into smaller chunks working with the applicant |
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}} |
}} |
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Line 295: | Line 415: | ||
|GSoC=Yes |
|GSoC=Yes |
||
}} |
}} |
||
{{project |
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|Project=HVM per-event-channel interrupts |
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|Date=01/30/2013 |
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|Contact=Paul Durrant <paul.durrant@citrix.com> |
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|Skills=C, some prior knowledge of Xen useful |
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|Desc=Windows PV drivers currently have to multiplex all event channel processing onto a single interrupt which is registered with Xen using the HVM_PARAM_CALLBACK_IRQ parameter. This results in a lack of scalability when multiple event channels are heavily used, such as when multiple VIFs in the VM as simultaneously under load. |
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Goal: Modify Xen to allow each event channel to be bound to a separate interrupt (the association being controlled by the PV drivers in the guest) to allow separate event channel interrupts to be handled by separate vCPUs. There should be no modifications required to the guest OS interrupt logic to support this (as there is with the current Linux PV-on-HVM code) as this will not be possible with a Windows guest. |
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|Outcomes=Code is submitted to xen-devel@xen.org for inclusion in xen-unstable |
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|GSoC=yes}} |
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=== Xen Hypervisor Userspace Tools === |
=== Xen Hypervisor Userspace Tools === |
||
Line 344: | Line 453: | ||
{{project |
{{project |
||
|Project= |
|Project=Advanced Scheduling Parameters |
||
|Date= |
|Date=01/22/2013 |
||
|Contact=< |
|Contact=George Dunlap <george.dunlap@eu.citrix.com> |
||
|Desc= |
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|Desc=Although xl is capable of saving and restoring a running VM, it is not currently possible to create a snapshot of the disk together with the rest of the VM. |
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The credit scheduler provides a range of "knobs" to control guest behavior, including CPU weight and caps. However, |
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a number of users have requested the ability to encode more advanced scheduling logic. For instance, "Let this VM max out for 5 minutes out of any given hour; but after that, impose a cap of 20%, so that even if the system is idle he can't an unlimited amount of CPU power without paying for a higher level of service." |
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This is too coarse-grained to do inside the hypervisor; a user-space tool would be sufficient. The goal of this project would |
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QEMU is capable of creating, listing and deleting disk snapshots on QCOW2 and QED files, so even today, issuing the right commands via the QEMU monitor, it is possible to create disk snapshots of a running Xen VM. xl and libxl don't have any knowledge of these snapshots, don't know how to create, list or delete them. |
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be to come up with a good way for admins to support these kinds of complex policies in a simple and robust way. |
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This project is about implementing disk snapshots support in libxl, using the QMP protocol to issue commands to QEMU. Users should be able to manage the entire life-cycle of their disk snapshots via xl. The candidate should also explore ways to integrate disk snapshots into the regular Xen save/restore mechanisms and provide a solid implementation for xl/libxl. |
|||
[[GSoC_2013#vm-snapshots]] |
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|GSoC=Yes |
|GSoC=Yes |
||
}} |
}} |
||
=== PCI Pass-through improvements === |
|||
{{project |
{{project |
||
Line 377: | Line 490: | ||
{{project |
{{project |
||
|Project=Advanced |
|Project=Improve PCIe Advanced Error Reporting (AER) handling for passed-through devices |
||
|Date= |
|Date=03/04/2014 |
||
|Difficulty=Medium-High |
|||
|Contact=George Dunlap <george.dunlap@eu.citrix.com> |
|||
|Skills=Understanding of PC server hardware, PCIe, C |
|||
|Desc= |
|||
|Contact=Matt Wilson <msw@amazon.com> |
|||
The credit scheduler provides a range of "knobs" to control guest behavior, including CPU weight and caps. However, |
|||
|Outcomes=Patches for libxl, qemu, and perhaps xen-pciback posted |
|||
a number of users have requested the ability to encode more advanced scheduling logic. For instance, "Let this VM max out for 5 minutes out of any given hour; but after that, impose a cap of 20%, so that even if the system is idle he can't an unlimited amount of CPU power without paying for a higher level of service." |
|||
|Desc=Today the xen-pciback driver handles an AER event for passed-through PCI devices. If the device is assigned to a PV guest, it uses xenstore to request a reset from xen-pcifront. If the device is assigned to a HVM guest, the toolstack is notified and is expected to take corrective action. |
|||
The toolstack support for taking corrective action is only implemented in [http://xenbits.xen.org/gitweb/?p=xen.git;a=blob;f=tools/python/xen/xend/server/pciif.py;h=27c1b75cfcf2695740e57bde557d2ee04c4d7322;hb=HEAD#l459 xend], not libxl. For HVM guests ideally, the AER event would be propagated into the guest through the device model (qemu) so that the driver inside the guest can take reset actions. |
|||
This is too coarse-grained to do inside the hypervisor; a user-space tool would be sufficient. The goal of this project would |
|||
be to come up with a good way for admins to support these kinds of complex policies in a simple and robust way. |
|||
|GSoC=Yes |
|GSoC=Yes |
||
}} |
|||
{{project |
|||
|Project=Lazy restore using memory paging |
|||
|Date=01/20/2014 |
|||
|Contact=Andres Lagar-Cavilla <andres@lagarcavilla.org> |
|||
|Difficulty=Medium |
|||
|GSoC=Yes |
|||
|Desc=VM Save/restore results in a boatload of IO and non-trivial downtime as the entire memory footprint of a VM is read from IO. |
|||
Xen memory paging support in x86 is now mature enough to allow for lazy restore, whereby the footprint of a VM is backfilled while the VM executes. If the VM hits a page not yet present, it is eagerly paged in. |
|||
There has been some concern recently about the lack of docs and/or mature tools that use xen-paging. This is a good way to address the problem. |
|||
|Skills= A good understanding of save/restore, and virtualized memory management (e.g. EPT, shadow page tables, etc). In principle the entire project can be implemented in user-space C code, but it may be the case that new hypercalls are needed for performance reasons. |
|||
|Outcomes=Expected outcome: |
|||
* Mainline patches for libxc and libxl |
|||
}} |
|||
{{project |
|||
|Project=CPUID Programming for Humans |
|||
|Date=02/04/2014 |
|||
|Contact=Andres Lagar-Cavilla <andres@lagarcavilla.org> |
|||
|Difficulty=Easy |
|||
|GSoC=Yes |
|||
|Desc=When creating a VM, a policy is applied to mask certain CPUID features. Right now it's black magic. |
|||
The KVM stack has done an excellent job of making this human-useable, and understandable. |
|||
For example, in a qemu-kvm command-line you may encounter: |
|||
-cpu SandyBridge,+pdpe1gb,+osxsave,+dca,+pcid,+pdcm,+xtpr,+tm2,+est,+smx,+vmx,+ds_cpl,+monitor,+dtes64,+pbe,+tm,+ht,+ss,+acpi,+ds,+vme |
|||
And in <qemu>/target-i386.c you find a fairly comprehensive description of x86 processor models, what CPUID features are inherent, and what CPUID feature each of these symbolic flags enables. |
|||
In the Xen world, there is a libxc interface to do the same, although it's all hex and register driven. It's effective, yet horrible to use. |
|||
An ideal outcome would have libxl config files and command line absorb a similarly human-friendly description of the CPUID features a user wishes for the VM, and interface appropriately with libxl. Further, autodetection of best CPUID shuold yield a human-readable output to be able to easily understand what the VM thinks about its processor. |
|||
Finally, interfacing with libvirt should be carefully considered. |
|||
CPUID management is crucial in a heterogeneous cluster where migrations and save restore require careful processor feature selection to avoid blow-ups. |
|||
|Skills= A good understanding of C user-land programming, and the ability to dive into qemu/libvirt (for reference code and integration), as well as libxc and libxl (for implementation). |
|||
|Outcomes=Expected outcome: |
|||
* Mainline patches for libxl |
|||
}} |
}} |
||
Line 486: | Line 551: | ||
* {{Comment|~~~~:}} Comment 2 |
* {{Comment|~~~~:}} Comment 2 |
||
</pre> |
</pre> |
||
=== Choosing Projects === |
|||
We have a bi-weekly mentor meeting overlooked by our program management team, which are a core team of 2-3 mentors and a program administrator. This group will work with mentors to ensure that project proposals are of good quality and whether mentors are engaging with the program management team and students in the weeks before the application period ends. |
|||
[[Category:GSoC]] |
[[Category:GSoC]] |
||
[[Category:GSoC 2014]] |
|||
[[Category:Developers]] |
[[Category:Developers]] |
||
[[Category:Index]] |
[[Category:Index]] |
||
[[Category:Project]] |
[[Category:Project]] |
||
[[Category:Archived]] |
|||
[[Category:Internships]] |
|||
[[Category:Transient]] <!-- as if not maintained it becomes stale --> |
[[Category:Transient]] <!-- as if not maintained it becomes stale --> |
Latest revision as of 18:07, 2 February 2017
The Xen Project is a Linux Foundation collaborative project that develops the
- Xen Hypervisor (for x86 and ARM)
- The XAPI toolstack
- Mirage OS
The project also has excellent relationships with its upstreams (Linux Kernel, the BSDs, QEMU and other projects) and upstreams such as Linux distributions. This is reflected in the project list, which contains many interesting cross-project development projects for students.
GSoC and Xen
This page is used to list project ideas for Google Summer of Code (GSOC) 2014.
Key GSoC resources
Google Summer of Code 2014 is On (see [1]). The Xen Project has applied as a Mentoring Organization. Stay posted.
Finding a project that fits you
This page lists Xen Project development projects for GSoC that can be picked up by anyone! If you're interesting in hacking Xen Project code and want to become a part of our friendly developer community this is the place to start! Ready for the challenge?
To work on a project:
- Find a project that looks interesting (or a bug if you want to start with something simple)
- Send an email to the relevant mailing list (see Developer Mailing Lists) and let us know if you are interested in starting to work or applying on a specific project.
- Post your ideas, questions, RFCs to the relevant mailing list sooner than later so you can get comments and feedback.
You have your own project idea: no problem!
- If you have your own project idea, outline what you are trying to do on the mailing list. If you know the right list, post your project idea on mailing list. Failing that post on xen-devel and we can redirect you to the right list. Make sure you add GSoC 2014 to the subject line.
It is a good idea to ...
The Xen Project has also participated in the Gnome Outreach Program for Women (OPW) in the past. One of the things we learned by participating in OPW is that you will be more successful, happier and get more out of participating in student programs such as GSoC, if you do a bit of prep-work before writing an application. Here is some stuff you can do:
- Contact your mentor early and get to know him or her
- If the Xen Project is accepted into GSoC, start hanging out on our IRC channel. You can use the #xen-opw IRC channel on freenode.net for now (if accepted, we will create a GSoC channel)
- You may want to ask the mentor for a couple of small bitesize work-items (such as reviewing someones patch, a bitesize bug, ...) and start communicating on the relevant mailing list. That helps you become familiar with our development process, the mentor and other community members and will help you chose the right project and help you decide whether the Xen project is for you.
- Note that quite a few Xen maintainers used to be GSoC students once. Feel free to ask community dot manager at xenproject dot org to put you in touch with them if you have questions about their experience.
- Any work you submit before applying for a project should be based on xen-unstable development tree, if the project is Xen Hypervisor and/or tools related. Linux kernel related patches should be based on upstream kernel.org Linux git tree (latest version). XAPI and Mirage OS patches should be based on the right codeline too. Check out the navigation by audience section on the left to find resources.
More resources
Quick links to changelogs of the various Xen related repositories/trees: Please see XenRepositories wiki page!
Before to submit patches, please look at Submitting Xen Patches wiki page and the relevant Xen Project team page. This will contain more information.
If you have new ideas, suggestions or development plans let us know and we'll update this list!
Aspiring Students
- Please contact the mentor and CC the most appropriate mailing list
- Get a bite-size task from the mentor before the application starts
- If you feel comfortable with an idea, please put your name to an idea using the following format
{{project ... |Review=(delete as addressed) * {{Comment|~~~~:}} I am interested in this idea ... (note that you may also want to link to the e-mail thread with the mentor)
- You will need to request write access to the wiki by filling out this form
Applying for GSoC
Note that we will update this section when more student information on melange is available, to make it easier for you to find information. And of course assuming that the Xen Project will be accepted into GSoC. |
To apply for a project, follow the steps outlined on
- melange
- We do have our own GSoC Student Application Template form
GSoC Projects that were accepted in 2014
Implement Xen PVUSB support in xl/libxl toolstack
|
Lazy restore using memory paging
|
- dushyant Hi, I am working on this project.
HVM per-event-channel interrupts
|
Mirage OS cloud API support
|
Parallel xenwatch kthread
|
List of peer reviewed Projects
Domain support (PVOPS and Linux)
OVMF Compatibility Support Module support in Xen
|
- sdytlm Hi, I am interested to work on this project.
Utilize Intel QuickData on network and block path.
|
Xen block backend/frontend multiqueue support
|
Enabling the 9P File System transport as a paravirt device
Peer Review Comments(delete as addressed)
|
Xen Hypervisor Userspace Tools
CPU/RAM/PCI diagram tool
|
KDD (Windows Debugger Stub) enhancements
|
CPUID Programming for Humans
|
Mirage OS
Create a tiny VM for easy load testing
|
Fuzz testing Xen with Mirage
|
Mirage OS web stack testing
|
List of projects that need more work
Domain support (PVOPS and Linux)
Implement Xen PVSCSI support in xl/libxl toolstack
|
Xen Hypervisor
Introducing PowerClamp-like driver for Xen
|
Xen Hypervisor Userspace Tools
Refactor Linux hotplug scripts
|
XL to XCP VM motion
|
Advanced Scheduling Parameters
|
PCI Pass-through improvements
Allowing guests to boot with a passed-through GPU as the primary display
|
Improve PCIe Advanced Error Reporting (AER) handling for passed-through devices
|
XAPI
DRBD Integration
|
New Project Ideas
Please add new project ideas here, following
Conventions for Projects and Project Mentors
Rules and Advice for Adding Ideas
- Be creative
- Add projects into New Project Ideas or improve projects in Project Ideas that Need Review or more work through review comments.
- Use the {{GSoC Project}} template to encode ideas on this page. Please read the Template Documentation before you do so.
- Be specific: what do you want to be implemented; if at all possible provide an indication of size and complexity as described above to make it easier for a student to choose ideas
- Check that the project meets the GSoC Program Goals
- If you are willing to mentors those ideas, add your name and email to the idea.
- Aspiring mentors should introduce themselves on the most appropriate Xen Project mailing list
Peer Review Goals
We strongly recommend and invite project proposers and project mentors to review each others proposals. When you review, please look out for
- Can a student get going and started with the information in the project description
- Are any unstated assumptions in the proposal, is there undefined terminology, etc. in the proposal
- Can the project completed in 3 months (assume that one month is needed for preparation)
- Does the project meet Google Summer of Code goals, which are
- Create and release open source code for the benefit of all
- Inspire young developers to begin participating in open source development
- Help open source projects identify and bring in new developers and committers
- Provide students the opportunity to do work related to their academic pursuits (think "flip bits, not burgers")
- Give students more exposure to real-world software development scenarios (e.g., distributed development, software licensing questions, mailing-list etiquette)
Peer Review Conventions
The {{GSoC Project}} template used to encode GSoC projects, contains some review functionality. Please read the Template Documentation before you add a template, also please use the conventions below to make comments.
|Review=(delete as addressed) * {{Comment|~~~~:}} Comment 1 * {{Comment|~~~~:}} Comment 2
Choosing Projects
We have a bi-weekly mentor meeting overlooked by our program management team, which are a core team of 2-3 mentors and a program administrator. This group will work with mentors to ensure that project proposals are of good quality and whether mentors are engaging with the program management team and students in the weeks before the application period ends.