Commit graph

602 commits

Author SHA1 Message Date
Nilay Vaish ca368765a1 ruby: SubBlock: refactor code 2015-08-14 19:28:44 -05:00
Nilay Vaish 514f18cdda ruby: cache recorder: move check on block size to RubySystem. 2015-08-14 19:28:44 -05:00
Nilay Vaish 3a726752c1 ruby: abstract controller: mark some variables as const 2015-08-14 19:28:44 -05:00
Nilay Vaish 3230a0b89f ruby: simple network: store Switch* in PerfectSwitch and Throttle 2015-08-14 19:28:44 -05:00
Nilay Vaish cb133b5f2c ruby: remove unused functionalRead() function. 2015-08-14 19:28:44 -05:00
Nilay Vaish 5f1d1ce5d4 ruby: perfect switch: refactor code
Refactored the code in operateVnet(), moved partly to a new function
operateMessageBuffer().
2015-08-14 19:28:44 -05:00
Nilay Vaish a706b6259a ruby: cache memory: drop {try,test}CacheAccess functions 2015-08-14 19:28:43 -05:00
Nilay Vaish 5060e572ca ruby: call setMRU from L1 controllers, not from sequencer
Currently the sequencer calls the function setMRU that updates the replacement
policy structures with the first level caches.  While functionally this is
correct, the problem is that this requires calling findTagInSet() which is an
expensive function.  This patch removes the calls to setMRU from the sequencer.
All controllers should now update the replacement policy on their own.

The set and the way index for a given cache entry can be found within the
AbstractCacheEntry structure. Use these indicies to update the replacement
policy structures.
2015-08-14 19:28:43 -05:00
Nilay Vaish b815221718 ruby: adds set and way indices to AbstractCacheEntry 2015-08-14 19:28:43 -05:00
Nilay Vaish a6f3f38f2c ruby: eliminate type uint64 and int64
These types are being replaced with uint64_t and int64_t.
2015-08-14 19:28:43 -05:00
Nilay Vaish 9648c05db1 ruby: slicc: use default argument value
Before this patch, while one could declare / define a function with default
argument values, but the actual function call would require one to specify
all the arguments.  This patch changes the check for  function arguments.
Now a function call needs to specify arguments that are at least as much as
those with default values and at most the total number of arguments taken
as input by the function.
2015-08-14 19:28:43 -05:00
Nilay Vaish 1a3e8a3370 ruby: handle llsc accesses through CacheEntry, not CacheMemory
The sequencer takes care of llsc accesses by calling upon functions
from the CacheMemory.  This is unnecessary once the required CacheEntry object
is available.  Thus some of the calls to findTagInSet() are avoided.
2015-08-14 19:28:42 -05:00
Nilay Vaish 91a84c5b3c ruby: replace Address by Addr
This patch eliminates the type Address defined by the ruby memory system.
This memory system would now use the type Addr that is in use by the
rest of the system.
2015-08-14 12:04:51 -05:00
Nilay Vaish 9ea5d9cad9 ruby: rename variables Addr to addr
Avoid clash between type Addr and variable name Addr.
2015-08-14 12:04:47 -05:00
Joel Hestness 581bae9ecb ruby: Expose MessageBuffers as SimObjects
Expose MessageBuffers from SLICC controllers as SimObjects that can be
manipulated in Python. This patch has numerous benefits:
1) First and foremost, it exposes MessageBuffers as SimObjects that can be
manipulated in Python code. This allows parameters to be set and checked in
Python code to avoid obfuscating parameters within protocol files. Further, now
as SimObjects, MessageBuffer parameters are printed to config output files as a
way to track parameters across simulations (e.g. buffer sizes)

2) Cleans up special-case code for responseFromMemory buffers, and aligns their
instantiation and use with mandatoryQueue buffers. These two special buffers
are the only MessageBuffers that are exposed to components outside of SLICC
controllers, and they're both slave ends of these buffers. They should be
exposed outside of SLICC in the same way, and this patch does it.

3) Distinguishes buffer-specific parameters from buffer-to-network parameters.
Specifically, buffer size, randomization, ordering, recycle latency, and ports
are all specific to a MessageBuffer, while the virtual network ID and type are
intrinsics of how the buffer is connected to network ports. The former are
specified in the Python object, while the latter are specified in the
controller *.sm files. Unlike buffer-specific parameters, which may need to
change depending on the simulated system structure, buffer-to-network
parameters can be specified statically for most or all different simulated
systems.
2015-08-14 00:19:44 -05:00
Joel Hestness bf06911b3f ruby: Change PerfectCacheMemory::lookup to return pointer
CacheMemory and DirectoryMemory lookup functions return pointers to entries
stored in the memory. Bring PerfectCacheMemory in line with this convention,
and clean up SLICC code generation that was in place solely to handle
references like that which was returned by PerfectCacheMemory::lookup.
2015-08-14 00:19:39 -05:00
Joel Hestness 9567c839fe ruby: Remove the RubyCache/CacheMemory latency
The RubyCache (CacheMemory) latency parameter is only used for top-level caches
instantiated for Ruby coherence protocols. However, the top-level cache hit
latency is assessed by the Sequencer as accesses flow through to the cache
hierarchy. Further, protocol state machines should be enforcing these cache hit
latencies, but RubyCaches do not expose their latency to any existng state
machines through the SLICC/C++ interface. Thus, the RubyCache latency parameter
is superfluous for all caches. This is confusing for users.

As a step toward pushing L0/L1 cache hit latency into the top-level cache
controllers, move their latencies out of the RubyCache declarations and over to
their Sequencers. Eventually, these Sequencer parameters should be exposed as
parameters to the top-level cache controllers, which should assess the latency.
NOTE: Assessing these latencies in the cache controllers will require modifying
each to eliminate instantaneous Ruby hit callbacks in transitions that finish
accesses, which is likely a large undertaking.
2015-08-14 00:19:37 -05:00
Andreas Sandberg 53e777d683 base: Declare a type for context IDs
Context IDs used to be declared as ad hoc (usually as int). This
changeset introduces a typedef for ContextIDs and a constant for
invalid context IDs.
2015-08-07 09:59:13 +01:00
Timothy Jones 96091f358b uby: Fix checkpointing and restore
There are 2 problems with the existing checkpoint and restore code in ruby.
The first is that when the event queue is altered by ruby during serialization,
some events that are currently scheduled cannot be found (e.g. the event to
stop simulation that always lives on the queue), causing a panic.
The second is that ruby is sometimes serialized after the memory system,
meaning that the dirty data in its cache is flushed back to memory too late
and so isn't included in the checkpoint.

These are fixed by implementing memory writeback in ruby, using the same
technique of hijacking the event queue, but first descheduling all events that
are currently on it.  They are saved, along with their scheduled time, so that
the event queue can be faithfully reconstructed after writeback has finished.
Events with the AutoDelete flag set will delete themselves when they
are descheduled, causing an error when attempting to schedule them again.
This is fixed by simply not recording them when taking them off the queue.

Writeback is still implemented using flushing, so the cache recorder object,
that is created to generate the trace and manage flushing, is kept
around and used during serialization to write the trace to disk.

Committed by: Nilay Vaish <nilay@cs.wisc.edu>
2015-08-03 23:08:40 -05:00
Brad Beckmann 03f2b8c23d ruby: removed invalid assert in message comparitor
It is perfectly valid to compare the same message and the greater than
operator should work correctly.
2015-08-01 12:59:47 -04:00
Brad Beckmann 6b52f828cc ruby: improved stall and wait debugging
Added dprintfs and asserts for identifying stall and wait bugs.
2015-07-20 09:15:18 -05:00
David Hashe 0d00cbc97b ruby: change router pipeline stages to 2
This patch changes the router pipeline stages from 4 to 2. The
canonical 4-stage router is conservative while a lower-latency router
with look ahead routing and speculative allocation is well acknowledged.
2015-07-20 09:15:18 -05:00
David Hashe 8b32dad4d8 ruby: change advance_stage for flit_d
Sets m_stage.second to the second parameter of the function.
Then, for every place where advance_stage is called, adds
a cycle to the argument being passed.
2015-07-20 09:15:18 -05:00
David Hashe c4ffd4989c ruby: expose access permission to replacement policies
This patch adds support that allows the replacement policy to identify each
cache block's access permission.  This information can be useful when making
replacement decisions.
2015-07-20 09:15:18 -05:00
David Hashe 967cfa939a ruby: adds size and empty apis to the msg buffer stallmap 2015-07-20 09:15:18 -05:00
David Hashe 21aa5734a0 ruby: fix deadlock bug in banked array resource checks
The Ruby banked array resource checks (initiated from SLICC) did a check and
allocate at the same time. If a transition needs more than one resource, then
it might check/allocate resource #1, then fail to get resource #2. Another
transition might then try to get the same resources, but in reverse order.
Deadlock.

This patch separates resource checking and resource reservation into two
steps to avoid deadlock.
2015-07-20 09:15:18 -05:00
David Hashe 63a9f10de8 ruby: Fix for stallAndWait bug
It was previously possible for a stalled message to be reordered after an
incomming message. This patch ensures that any stalled message stays in its
original request order.
2015-07-20 09:15:18 -05:00
David Hashe 7e9562013b ruby: allocate a block in CacheMemory without updating LRU state 2015-07-20 09:15:18 -05:00
David Hashe 7e00772bda ruby: speed up function used for cache walks
This patch adds a few helpful functions that allow .sm files to directly
invalidate all cache blocks using a trigger queue rather than rely on each
individual cache block to be invalidated via requests from the mandatory
queue.
2015-07-20 09:15:18 -05:00
David Hashe 1850ed410f ruby: initialize replacement policies with their own simobjs
this is in preparation for other replacement policies that take additional
parameters.
2015-07-20 09:15:18 -05:00
David Hashe 74ca89f8b7 ruby: give access to cache tag/data latencies from SLICC
This patch exposes the tag and data array latencies to the SLICC state machines
so that it can be used to determine the correct enqueue latency for response
messages.
2015-07-20 09:15:18 -05:00
David Hashe 6a288d9de3 slicc: support for multiple message types on the same buffer
This patch allows SLICC protocols to use more than one message type with a
message buffer. For example, you can declare two in ports as such:

  in_port(ResponseQueue_in, ResponseMsg, responseFromDir, rank=3) { ... }
  in_port(tgtResponseQueue_in, TgtResponseMsg, responseFromDir, rank=2) { ... }
2015-07-20 09:15:18 -05:00
David Hashe 3444d5f359 mem: Hit callback delay fix
This patch was created by Bihn Pham during his internship at AMD.

There is no need to delay hit callback response messages by a cycle because
the response latency is already incurred in the Ruby protocol. This ensures
correct timing of memory instructions.
2015-07-20 09:15:18 -05:00
Brad Beckmann 0c78abb302 ruby: re-added the addressToInt slicc interface function
This helper function is very useful converting address offsets to integers
that can be used for protocol specific destination mapping.
2015-07-20 09:15:18 -05:00
Brad Beckmann 4710eba588 ruby: add useful dprints to sequencer
Added two data block dprints that are useful when tracking down data check
failures in the ruby random tester.
2015-07-20 09:15:18 -05:00
Brandon Potter 582793468d ruby: dma sequencer: removes redundant code 2015-07-24 12:25:22 -07:00
Nilay Vaish 1b71a20391 ruby: network: NetworkLink inherits from Consumer now. 2015-07-22 11:20:07 -05:00
Brandon Potter bfe7ee96ad ruby: replace global g_abs_controls with per-RubySystem var
This is another step in the process of removing global variables
from Ruby to enable multiple RubySystem instances in a single simulation.

The list of abstract controllers is per-RubySystem and should be
represented that way, rather than as a global.

Since this is the last remaining Ruby global variable, the
src/mem/ruby/Common/Global.* files are also removed.
2015-07-10 16:05:24 -05:00
Brandon Potter f9a370f172 ruby: replace global g_system_ptr with per-object pointers
This is another step in the process of removing global variables
from Ruby to enable multiple RubySystem instances in a single simulation.

With possibly multiple RubySystem objects, we can no longer use a global
variable to find "the" RubySystem object.  Instead, each Ruby component
has to carry a pointer to the RubySystem object to which it belongs.
2015-07-10 16:05:23 -05:00
Brandon Potter c38f5098b1 ruby: replace g_ruby_start with per-RubySystem m_start_cycle
This patch begins the process of removing global variables from the Ruby
source with the goal of eventually allowing users to create multiple Ruby
instances in a single simulation.  Currently, users cannot do so because
several global variables and static members are referenced by the RubySystem
object in a way that assumes that there will only ever be a single RubySystem.
These need to be replaced with per-RubySystem equivalents.

This specific patch replaces the global var g_ruby_start, which is used
to calculate throughput statistics for Throttles in simple networks and
links in Garnet networks, with a RubySystem instance var m_start_cycle.
2015-07-10 16:05:23 -05:00
Brandon Potter 9eda4bdc5a ruby: remove extra whitespace and correct misspelled words 2015-07-10 16:05:23 -05:00
Andreas Sandberg ed38e3432c sim: Refactor and simplify the drain API
The drain() call currently passes around a DrainManager pointer, which
is now completely pointless since there is only ever one global
DrainManager in the system. It also contains vestiges from the time
when SimObjects had to keep track of their child objects that needed
draining.

This changeset moves all of the DrainState handling to the Drainable
base class and changes the drain() and drainResume() calls to reflect
this. Particularly, the drain() call has been updated to take no
parameters (the DrainManager argument isn't needed) and return a
DrainState instead of an unsigned integer (there is no point returning
anything other than 0 or 1 any more). Drainable objects should return
either DrainState::Draining (equivalent to returning 1 in the old
system) if they need more time to drain or DrainState::Drained
(equivalent to returning 0 in the old system) if they are already in a
consistent state. Returning DrainState::Running is considered an
error.

Drain done signalling is now done through the signalDrainDone() method
in the Drainable class instead of using the DrainManager directly. The
new call checks if the state of the object is DrainState::Draining
before notifying the drain manager. This means that it is safe to call
signalDrainDone() without first checking if the simulator has
requested draining. The intention here is to reduce the code needed to
implement draining in simple objects.
2015-07-07 09:51:05 +01:00
Andreas Sandberg f16c0a4a90 sim: Decouple draining from the SimObject hierarchy
Draining is currently done by traversing the SimObject graph and
calling drain()/drainResume() on the SimObjects. This is not ideal
when non-SimObjects (e.g., ports) need draining since this means that
SimObjects owning those objects need to be aware of this.

This changeset moves the responsibility for finding objects that need
draining from SimObjects and the Python-side of the simulator to the
DrainManager. The DrainManager now maintains a set of all objects that
need draining. To reduce the overhead in classes owning non-SimObjects
that need draining, objects inheriting from Drainable now
automatically register with the DrainManager. If such an object is
destroyed, it is automatically unregistered. This means that drain()
and drainResume() should never be called directly on a Drainable
object.

While implementing the new functionality, the DrainManager has now
been made thread safe. In practice, this means that it takes a lock
whenever it manipulates the set of Drainable objects since SimObjects
in different threads may create Drainable objects
dynamically. Similarly, the drain counter is now an atomic_uint, which
ensures that it is manipulated correctly when objects signal that they
are done draining.

A nice side effect of these changes is that it makes the drain state
changes stricter, which the simulation scripts can exploit to avoid
redundant drains.
2015-07-07 09:51:05 +01:00
Andreas Sandberg e9c3d59aae sim: Make the drain state a global typed enum
The drain state enum is currently a part of the Drainable
interface. The same state machine will be used by the DrainManager to
identify the global state of the simulator. Make the drain state a
global typed enum to better cater for this usage scenario.
2015-07-07 09:51:04 +01:00
Andreas Sandberg 76cd4393c0 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.
2015-07-07 09:51:03 +01:00
Nilay Vaish 16ac48e6a4 ruby: drop NetworkMessage class
This patch drops the NetworkMessage class.  The relevant data members and functions
have been moved to the Message class, which was the parent of NetworkMessage.
2015-07-04 10:43:46 -05:00
Nilay Vaish b4efb48a71 ruby: remove message buffer node
This structure's only purpose was to provide a comparison function for
ordering messages in the MessageBuffer.  The comparison function is now
being moved to the Message class itself.  So we no longer require this
structure.
2015-07-04 10:43:46 -05:00
Andreas Hansson 71856cfbbc mem: Split WriteInvalidateReq into write and invalidate
WriteInvalidateReq ensures that a whole-line write does not incur the
cost of first doing a read exclusive, only to later overwrite the
data. This patch splits the existing WriteInvalidateReq into a
WriteLineReq, which is done locally, and an InvalidateReq that is sent
out throughout the memory system. The WriteLineReq re-uses the normal
WriteResp.

The change allows us to better express the difference between the
cache that is performing the write, and the ones that are merely
invalidating. As a consequence, we no longer have to rely on the
isTopLevel flag. Moreover, the actual memory in the system does not
see the intitial write, only the writeback. We were marking the
written line as dirty already, so there is really no need to also push
the write all the way to the memory.

The overall flow of the write-invalidate operation remains the same,
i.e. the operation is only carried out once the response for the
invalidate comes back. This patch adds the InvalidateResp for this
very reason.
2015-07-03 10:14:41 -04:00
Nilay Vaish 0647d99854 ruby: message: remove a data member added by mistake
I (Nilay) had mistakenly added a data member to  the Message class in revision c1694b4032a6.
The data member is being removed.
2015-06-25 11:58:29 -05:00
Jason Power 2f3c467883 Ruby: Remove assert in RubyPort retry list logic
Remove the assert when adding a port to the RubyPort retry list.
Instead of asserting, just ignore the added port, since it's
already on the list.
Without this patch, Ruby+detailed fails for even the simplest tests
2015-06-25 11:58:28 -05:00