mem: Add tRTP to the DRAM controller
This patch adds the tRTP timing constraint, governing the minimum time between a read command and a precharge. Default values are provided for the existing DRAM types.
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3 changed files with 23 additions and 8 deletions
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@ -135,6 +135,9 @@ class DRAMCtrl(AbstractMemory):
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# minimum time between a write data transfer and a precharge
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tWR = Param.Latency("Write recovery time")
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# minimum time between a read and precharge command
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tRTP = Param.Latency("Read to precharge")
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# time to complete a burst transfer, typically the burst length
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# divided by two due to the DDR bus, but by making it a parameter
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# it is easier to also evaluate SDR memories like WideIO.
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@ -198,6 +201,7 @@ class DDR3_1600_x64(DRAMCtrl):
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tRP = '13.75ns'
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tRAS = '35ns'
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tWR = '15ns'
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tRTP = '7.5ns'
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# 8 beats across an x64 interface translates to 4 clocks @ 800 MHz.
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# Note this is a BL8 DDR device.
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@ -257,6 +261,7 @@ class DDR3_1333_x64_DRAMSim2(DRAMCtrl):
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tRP = '15ns'
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tRAS = '36ns'
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tWR = '15ns'
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tRTP = '7.5ns'
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# 8 beats across an x64 interface translates to 4 clocks @ 666.66 MHz.
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# Note this is a BL8 DDR device.
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@ -314,6 +319,9 @@ class LPDDR2_S4_1066_x32(DRAMCtrl):
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tRAS = '42ns'
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tWR = '15ns'
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# 6 CK read to precharge delay
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tRTP = '11.256ns'
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# 8 beats across an x32 DDR interface translates to 4 clocks @ 533 MHz.
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# Note this is a BL8 DDR device.
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# Requests larger than 32 bytes are broken down into multiple requests
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@ -365,6 +373,8 @@ class WideIO_200_x128(DRAMCtrl):
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tRP = '18ns'
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tRAS = '42ns'
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tWR = '15ns'
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# Read to precharge is same as the burst
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tRTP = '20ns'
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# 4 beats across an x128 SDR interface translates to 4 clocks @ 200 MHz.
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# Note this is a BL4 SDR device.
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@ -420,6 +430,9 @@ class LPDDR3_1600_x32(DRAMCtrl):
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tRAS = '42ns'
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tWR = '15ns'
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# Greater of 4 CK or 7.5 ns, 4 CK @ 800 MHz = 5 ns
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tRTP = '7.5ns'
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# Pre-charge one bank 15 ns (all banks 18 ns)
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tRP = '15ns'
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@ -76,7 +76,7 @@ DRAMCtrl::DRAMCtrl(const DRAMCtrlParams* p) :
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writesThisTime(0), readsThisTime(0),
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tWTR(p->tWTR), tRTW(p->tRTW), tBURST(p->tBURST),
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tRCD(p->tRCD), tCL(p->tCL), tRP(p->tRP), tRAS(p->tRAS), tWR(p->tWR),
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tRFC(p->tRFC), tREFI(p->tREFI), tRRD(p->tRRD),
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tRTP(p->tRTP), tRFC(p->tRFC), tREFI(p->tREFI), tRRD(p->tRRD),
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tXAW(p->tXAW), activationLimit(p->activation_limit),
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memSchedPolicy(p->mem_sched_policy), addrMapping(p->addr_mapping),
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pageMgmt(p->page_policy),
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@ -560,9 +560,10 @@ DRAMCtrl::printParams() const
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"tWTR %d ticks\n" \
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"tRTW %d ticks\n" \
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"tWR %d ticks\n" \
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"tRTP %d ticks\n" \
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"tXAW (%d) %d ticks\n",
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name(), tRCD, tCL, tRP, tBURST, tRFC, tREFI, tWTR,
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tRTW, tWR, activationLimit, tXAW);
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tRTW, tWR, tRTP, activationLimit, tXAW);
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}
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void
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@ -993,12 +994,12 @@ DRAMCtrl::doDRAMAccess(DRAMPacket* dram_pkt)
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// read/write (add a max with tCCD here)
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bank.colAllowedAt = cmd_at + tBURST;
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// If this is a write, we also need to respect the write
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// recovery time before a precharge
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if (!dram_pkt->isRead) {
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bank.preAllowedAt = std::max(bank.preAllowedAt,
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dram_pkt->readyTime + tWR);
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}
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// If this is a write, we also need to respect the write recovery
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// time before a precharge, in the case of a read, respect the
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// read to precharge constraint
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bank.preAllowedAt = std::max(bank.preAllowedAt,
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dram_pkt->isRead ? cmd_at + tRTP :
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dram_pkt->readyTime + tWR);
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// increment the bytes accessed and the accesses per row
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bank.bytesAccessed += burstSize;
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@ -486,6 +486,7 @@ class DRAMCtrl : public AbstractMemory
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const Tick tRP;
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const Tick tRAS;
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const Tick tWR;
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const Tick tRTP;
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const Tick tRFC;
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const Tick tREFI;
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const Tick tRRD;
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