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12749:223c83ed9979 |
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04-Jun-2018 |
Giacomo Travaglini <giacomo.travaglini@arm.com> |
misc: Using smart pointers for memory Requests
This patch is changing the underlying type for RequestPtr from Request* to shared_ptr<Request>. Having memory requests being managed by smart pointers will simplify the code; it will also prevent memory leakage and dangling pointers.
Change-Id: I7749af38a11ac8eb4d53d8df1252951e0890fde3 Signed-off-by: Giacomo Travaglini <giacomo.travaglini@arm.com> Reviewed-by: Andreas Sandberg <andreas.sandberg@arm.com> Reviewed-on: https://gem5-review.googlesource.com/10996 Reviewed-by: Nikos Nikoleris <nikos.nikoleris@arm.com> Maintainer: Nikos Nikoleris <nikos.nikoleris@arm.com>
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12406:86bde4a026b5 |
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22-Dec-2017 |
Gabe Black <gabeblack@google.com> |
arch,cpu: "virtualize" the TLB interface.
CPUs have historically instantiated the architecture specific version of the TLBs to avoid a virtual function call, making them a little bit more dependent on what the current ISA is. Some simple performance measurement, the x86 twolf regression on the atomic CPU, shows that there isn't actually any performance benefit, and if anything the simulator goes slightly faster (although still within margin of error) when the TLB functions are virtual.
This change switches everything outside of the architectures themselves to use the generic BaseTLB type, and then inside the ISA for them to cast that to their architecture specific type to call into architecture specific interfaces.
The ARM TLB needed the most adjustment since it was using non-standard translation function signatures. Specifically, they all took an extra "type" parameter which defaulted to normal, and translateTiming returned a Fault. translateTiming actually doesn't need to return a Fault because everywhere that consumed it just stored it into a structure which it then deleted(?), and the fault is stored in the Translation object when the translation is done.
A little more work is needed to fully obviate the arch/tlb.hh header, so the TheISA::TLB type is still visible outside of the ISAs. Specifically, the TlbEntry type is used in the generic PageTable which lives in src/mem.
Change-Id: I51b68ee74411f9af778317eff222f9349d2ed575 Reviewed-on: https://gem5-review.googlesource.com/6921 Maintainer: Gabe Black <gabeblack@google.com> Reviewed-by: Jason Lowe-Power <jason@lowepower.com>
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11793:ef606668d247 |
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09-Nov-2016 |
Brandon Potter <brandon.potter@amd.com> |
style: [patch 1/22] use /r/3648/ to reorganize includes
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11523:81332eb10367 |
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06-Jun-2016 |
David Guillen Fandos <david.guillen@arm.com> |
stats: Fixing regStats function for some SimObjects
Fixing an issue with regStats not calling the parent class method for most SimObjects in Gem5. This causes issues if one adds new stats in the base class (since they are never initialized properly!).
Change-Id: Iebc5aa66f58816ef4295dc8e48a357558d76a77c Reviewed-by: Andreas Sandberg <andreas.sandberg@arm.com>
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11430:bd1c6789c33f |
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07-Apr-2016 |
Andreas Sandberg <andreas.sandberg@arm.com> |
Revert to 74c1e6513bd0 (sim: Thermal support for Linux)
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11422:4f749e00b667 |
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18-Nov-2014 |
Akash Bagdia <akash.bagdia@ARM.com> |
power: Add power states to ClockedObject
Add 4 power states to the ClockedObject, provides necessary access functions to check and update the power state. Default power state is UNDEFINED, it is responsibility of the respective simulation model to provide the startup state and any other logic for state change.
Add number of transition stat. Add distribution of time spent in clock gated state. Add power state residency stat.
Add dump call back function to allow stats update of distribution and residency stats.
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10905:a6ca6831e775 |
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07-Jul-2015 |
Andreas Sandberg <andreas.sandberg@arm.com> |
sim: Refactor the serialization base class
Objects that are can be serialized are supposed to inherit from the Serializable class. This class is meant to provide a unified API for such objects. However, so far it has mainly been used by SimObjects due to some fundamental design limitations. This changeset redesigns to the serialization interface to make it more generic and hide the underlying checkpoint storage. Specifically:
* Add a set of APIs to serialize into a subsection of the current object. Previously, objects that needed this functionality would use ad-hoc solutions using nameOut() and section name generation. In the new world, an object that implements the interface has the methods serializeSection() and unserializeSection() that serialize into a named /subsection/ of the current object. Calling serialize() serializes an object into the current section.
* Move the name() method from Serializable to SimObject as it is no longer needed for serialization. The fully qualified section name is generated by the main serialization code on the fly as objects serialize sub-objects.
* Add a scoped ScopedCheckpointSection helper class. Some objects need to serialize data structures, that are not deriving from Serializable, into subsections. Previously, this was done using nameOut() and manual section name generation. To simplify this, this changeset introduces a ScopedCheckpointSection() helper class. When this class is instantiated, it adds a new /subsection/ and subsequent serialization calls during the lifetime of this helper class happen inside this section (or a subsection in case of nested sections).
* The serialize() call is now const which prevents accidental state manipulation during serialization. Objects that rely on modifying state can use the serializeOld() call instead. The default implementation simply calls serialize(). Note: The old-style calls need to be explicitly called using the serializeOld()/serializeSectionOld() style APIs. These are used by default when serializing SimObjects.
* Both the input and output checkpoints now use their own named types. This hides underlying checkpoint implementation from objects that need checkpointing and makes it easier to change the underlying checkpoint storage code.
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10824:308771bd2647 |
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05-May-2015 |
Andreas Sandberg <Andreas.Sandberg@ARM.com> |
mem, cpu: Add a separate flag for strictly ordered memory
The Request::UNCACHEABLE flag currently has two different functions. The first, and obvious, function is to prevent the memory system from caching data in the request. The second function is to prevent reordering and speculation in CPU models.
This changeset gives the order/speculation requirement a separate flag (Request::STRICT_ORDER). This flag prevents CPU models from doing the following optimizations:
* Speculation: CPU models are not allowed to issue speculative loads.
* Write combining: CPU models and caches are not allowed to merge writes to the same cache line.
Note: The memory system may still reorder accesses unless the UNCACHEABLE flag is set. It is therefore expected that the STRICT_ORDER flag is combined with the UNCACHEABLE flag to prevent this behavior.
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10474:799c8ee4ecba |
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16-Oct-2014 |
Andreas Hansson <andreas.hansson@arm.com> |
arch: Use shared_ptr for all Faults
This patch takes quite a large step in transitioning from the ad-hoc RefCountingPtr to the c++11 shared_ptr by adopting its use for all Faults. There are no changes in behaviour, and the code modifications are mostly just replacing "new" with "make_shared".
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10231:cb2e6950956d |
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31-May-2014 |
Steve Reinhardt <steve.reinhardt@amd.com> |
style: eliminate equality tests with true and false
Using '== true' in a boolean expression is totally redundant, and using '== false' is pretty verbose (and arguably less readable in most cases) compared to '!'.
It's somewhat of a pet peeve, perhaps, but I had some time waiting for some tests to run and decided to clean these up.
Unfortunately, SLICC appears not to have the '!' operator, so I had to leave the '== false' tests in the SLICC code.
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9738:304a37519d11 |
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03-Jun-2013 |
Andreas Sandberg <andreas@sandberg.pp.se> |
arch: Create a method to finalize physical addresses in the TLB
Some architectures (currently only x86) require some fixing-up of physical addresses after a normal address translation. This is usually to remap devices such as the APIC, but could be used for other memory mapped devices as well. When running the CPU in a using hardware virtualization, we still need to do these address fix-ups before inserting the request into the memory system. This patch moves this patch allows that code to be used by such CPUs without doing full address translations.
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8888:befcf4d79fc1 |
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09-Mar-2012 |
Geoffrey Blake <geoffrey.blake@arm.com> |
CheckerCPU: Add function stubs to non-ARM ISA source to compile with CheckerCPU
Making the CheckerCPU a runtime time option requires the code to be compatible with ISAs other than ARM. This patch adds the appropriate function stubs to allow compilation.
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8806:669e93d79ed9 |
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29-Jan-2012 |
Gabe Black <gblack@eecs.umich.edu> |
Implement Ali's review feedback.
Try to decrease indentation, and remove some redundant FullSystem checks.
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8795:0909f8ed7aa0 |
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07-Jan-2012 |
Gabe Black <gblack@eecs.umich.edu> |
Merge with main repository.
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8772:a5a83fc04972 |
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30-Oct-2011 |
Gabe Black <gblack@eecs.umich.edu> |
SE/FS: Remove the last references to FULL_SYSTEM from POWER.
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8607:5fb918115c07 |
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31-Oct-2011 |
Gabe Black <gblack@eecs.umich.edu> |
GCC: Get everything working with gcc 4.6.1.
And by "everything" I mean all the quick regressions.
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8232:b28d06a175be |
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15-Apr-2011 |
Nathan Binkert <nate@binkert.org> |
trace: reimplement the DTRACE function so it doesn't use a vector At the same time, rename the trace flags to debug flags since they have broader usage than simply tracing. This means that --trace-flags is now --debug-flags and --trace-help is now --debug-help
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7676:92274350b953 |
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10-Sep-2010 |
Nathan Binkert <nate@binkert.org> |
style: fix sorting of includes and whitespace in some files
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7461:5a07045d0af2 |
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15-Jun-2010 |
Nathan Binkert <nate@binkert.org> |
stats: only consider a formula initialized if there is a formula
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6972:b6482c4c89e3 |
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12-Feb-2010 |
Timothy M. Jones <tjones1@inf.ed.ac.uk> |
Power ISA: Add an alignment fault to Power ISA and check alignment in TLB.
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6691:cd68b6ecd68d |
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27-Oct-2009 |
Timothy M. Jones <tjones1@inf.ed.ac.uk> |
POWER: Add support for the Power ISA
This adds support for the 32-bit, big endian Power ISA. This supports both integer and floating point instructions based on the Power ISA Book I v2.06.
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