diff options
author | Nilay Vaish <nilay@cs.wisc.edu> | 2011-02-12 11:41:20 -0600 |
---|---|---|
committer | Nilay Vaish <nilay@cs.wisc.edu> | 2011-02-12 11:41:20 -0600 |
commit | 0cede15d6c5213d83e4cd143014321b2ee7ec5eb (patch) | |
tree | 2bff094d29f493d61a63cba2fb9a04f409d9e120 /src/mem/protocol/MOESI_hammer-cache.sm | |
parent | 2971b8401a4a76a774962900d9aed6e9eb4b2950 (diff) | |
download | gem5-0cede15d6c5213d83e4cd143014321b2ee7ec5eb.tar.xz |
Ruby: Reorder Cache Lookup in Protocol Files
The patch changes the order in which L1 dcache and icache are looked up when
a request comes in. Earlier, if a request came in for instruction fetch, the
dcache was looked up before the icache, to correctly handle self-modifying
code. But, in the common case, dcache is going to report a miss and the
subsequent icache lookup is going to report a hit. Given the invariant -
caches under the same controller keep track of disjoint sets of cache blocks,
we can move the icache lookup before the dcache lookup. In case of a hit in
the icache, using our invariant, we know that the dcache would have reported
a miss. In case of a miss in the icache, we know that icache would have
missed even if the dcache was looked up before looking up the icache.
Effectively, we are doing the same thing as before, though in the common case,
we expect reduction in the number of lookups. This was empirically confirmed
for MOESI hammer. The ratio lookups to access requests is now about 1.1 to 1.
Diffstat (limited to 'src/mem/protocol/MOESI_hammer-cache.sm')
-rw-r--r-- | src/mem/protocol/MOESI_hammer-cache.sm | 57 |
1 files changed, 29 insertions, 28 deletions
diff --git a/src/mem/protocol/MOESI_hammer-cache.sm b/src/mem/protocol/MOESI_hammer-cache.sm index 78bc9e3e7..ab2a6acf4 100644 --- a/src/mem/protocol/MOESI_hammer-cache.sm +++ b/src/mem/protocol/MOESI_hammer-cache.sm @@ -377,26 +377,26 @@ machine(L1Cache, "AMD Hammer-like protocol") if (in_msg.Type == CacheRequestType:IFETCH) { // ** INSTRUCTION ACCESS *** - // Check to see if it is in the OTHER L1 - Entry L1Dcache_entry := getL1DCacheEntry(in_msg.LineAddress); - if (is_valid(L1Dcache_entry)) { - // The block is in the wrong L1, try to write it to the L2 - if (L2cacheMemory.cacheAvail(in_msg.LineAddress)) { - trigger(Event:L1_to_L2, in_msg.LineAddress, L1Dcache_entry, tbe); - } else { - trigger(Event:L2_Replacement, - L2cacheMemory.cacheProbe(in_msg.LineAddress), - getL2CacheEntry(L2cacheMemory.cacheProbe(in_msg.LineAddress)), - TBEs[L2cacheMemory.cacheProbe(in_msg.LineAddress)]); - } - } - Entry L1Icache_entry := getL1ICacheEntry(in_msg.LineAddress); if (is_valid(L1Icache_entry)) { // The tag matches for the L1, so the L1 fetches the line. We know it can't be in the L2 due to exclusion trigger(mandatory_request_type_to_event(in_msg.Type), in_msg.LineAddress, L1Icache_entry, tbe); } else { + // Check to see if it is in the OTHER L1 + Entry L1Dcache_entry := getL1DCacheEntry(in_msg.LineAddress); + if (is_valid(L1Dcache_entry)) { + // The block is in the wrong L1, try to write it to the L2 + if (L2cacheMemory.cacheAvail(in_msg.LineAddress)) { + trigger(Event:L1_to_L2, in_msg.LineAddress, L1Dcache_entry, tbe); + } else { + trigger(Event:L2_Replacement, + L2cacheMemory.cacheProbe(in_msg.LineAddress), + getL2CacheEntry(L2cacheMemory.cacheProbe(in_msg.LineAddress)), + TBEs[L2cacheMemory.cacheProbe(in_msg.LineAddress)]); + } + } + if (L1IcacheMemory.cacheAvail(in_msg.LineAddress)) { // L1 does't have the line, but we have space for it in the L1 @@ -430,26 +430,27 @@ machine(L1Cache, "AMD Hammer-like protocol") } else { // *** DATA ACCESS *** - // Check to see if it is in the OTHER L1 - Entry L1Icache_entry := getL1ICacheEntry(in_msg.LineAddress); - if (is_valid(L1Icache_entry)) { - // The block is in the wrong L1, try to write it to the L2 - if (L2cacheMemory.cacheAvail(in_msg.LineAddress)) { - trigger(Event:L1_to_L2, in_msg.LineAddress, L1Icache_entry, tbe); - } else { - trigger(Event:L2_Replacement, - L2cacheMemory.cacheProbe(in_msg.LineAddress), - getL2CacheEntry(L2cacheMemory.cacheProbe(in_msg.LineAddress)), - TBEs[L2cacheMemory.cacheProbe(in_msg.LineAddress)]); - } - } - Entry L1Dcache_entry := getL1DCacheEntry(in_msg.LineAddress); if (is_valid(L1Dcache_entry)) { // The tag matches for the L1, so the L1 fetches the line. We know it can't be in the L2 due to exclusion trigger(mandatory_request_type_to_event(in_msg.Type), in_msg.LineAddress, L1Dcache_entry, tbe); } else { + + // Check to see if it is in the OTHER L1 + Entry L1Icache_entry := getL1ICacheEntry(in_msg.LineAddress); + if (is_valid(L1Icache_entry)) { + // The block is in the wrong L1, try to write it to the L2 + if (L2cacheMemory.cacheAvail(in_msg.LineAddress)) { + trigger(Event:L1_to_L2, in_msg.LineAddress, L1Icache_entry, tbe); + } else { + trigger(Event:L2_Replacement, + L2cacheMemory.cacheProbe(in_msg.LineAddress), + getL2CacheEntry(L2cacheMemory.cacheProbe(in_msg.LineAddress)), + TBEs[L2cacheMemory.cacheProbe(in_msg.LineAddress)]); + } + } + if (L1DcacheMemory.cacheAvail(in_msg.LineAddress)) { // L1 does't have the line, but we have space for it in the L1 Entry L2cache_entry := getL2CacheEntry(in_msg.LineAddress); |