lasmi: simplify usage for the user (it's the job of the controller to manage write/read latencies on acks)
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@ -14,12 +14,13 @@ class Interface(Record):
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self.write_latency = write_latency
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bank_layout = [
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("adr", aw, DIR_M_TO_S),
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("we", 1, DIR_M_TO_S),
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("stb", 1, DIR_M_TO_S),
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("req_ack", 1, DIR_S_TO_M),
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("dat_ack", 1, DIR_S_TO_M),
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("lock", 1, DIR_S_TO_M)
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("adr", aw, DIR_M_TO_S),
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("we", 1, DIR_M_TO_S),
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("stb", 1, DIR_M_TO_S),
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("req_ack", 1, DIR_S_TO_M),
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("dat_w_ack", 1, DIR_S_TO_M),
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("dat_r_ack", 1, DIR_S_TO_M),
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("lock", 1, DIR_S_TO_M)
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]
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if nbanks > 1:
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layout = [("bank"+str(i), bank_layout) for i in range(nbanks)]
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@ -77,7 +78,9 @@ class Crossbar(Module):
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else:
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controller_selected = [1]*nmasters
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master_req_acks = [0]*nmasters
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master_dat_acks = [0]*nmasters
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master_dat_w_acks = [0]*nmasters
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master_dat_r_acks = [0]*nmasters
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rrs = [roundrobin.RoundRobin(nmasters, roundrobin.SP_CE) for n in range(self._nbanks)]
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self.submodules += rrs
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for nb, rr in enumerate(rrs):
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@ -109,11 +112,28 @@ class Crossbar(Module):
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]
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master_req_acks = [master_req_ack | ((rr.grant == nm) & bank_selected[nm] & bank.req_ack)
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for nm, master_req_ack in enumerate(master_req_acks)]
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master_dat_acks = [master_dat_ack | ((rr.grant == nm) & bank.dat_ack)
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for nm, master_dat_ack in enumerate(master_dat_acks)]
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master_dat_w_acks = [master_dat_w_ack | ((rr.grant == nm) & bank.dat_w_ack)
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for nm, master_dat_w_ack in enumerate(master_dat_w_acks)]
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master_dat_r_acks = [master_dat_r_ack | ((rr.grant == nm) & bank.dat_r_ack)
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for nm, master_dat_r_ack in enumerate(master_dat_r_acks)]
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for nm, master_dat_w_ack in enumerate(master_dat_w_acks):
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for i in range(self._write_latency):
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new_master_dat_w_ack = Signal()
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self.sync += new_master_dat_w_ack.eq(master_dat_w_ack)
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master_dat_w_ack = new_master_dat_w_ack
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master_dat_w_acks[nm] = master_dat_w_ack
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for nm, master_dat_r_ack in enumerate(master_dat_r_acks):
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for i in range(self._read_latency):
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new_master_dat_r_ack = Signal()
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self.sync += new_master_dat_r_ack.eq(master_dat_r_ack)
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master_dat_r_ack = new_master_dat_r_ack
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master_dat_r_acks[nm] = master_dat_r_ack
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self.comb += [master.req_ack.eq(master_req_ack) for master, master_req_ack in zip(self._masters, master_req_acks)]
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self.comb += [master.dat_ack.eq(master_dat_ack) for master, master_dat_ack in zip(self._masters, master_dat_acks)]
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self.comb += [master.dat_w_ack.eq(master_dat_w_ack) for master, master_dat_w_ack in zip(self._masters, master_dat_w_acks)]
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self.comb += [master.dat_r_ack.eq(master_dat_r_ack) for master, master_dat_r_ack in zip(self._masters, master_dat_r_acks)]
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# route data writes
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controller_selected_wl = controller_selected
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@ -105,8 +105,6 @@ class WB2LASMI(Module, AutoCSR):
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fsm = FSM(reset_state="IDLE")
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self.submodules += fsm
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fsm.delayed_enter("EVICT_DATAD", "EVICT_DATA", lasmim.write_latency-1)
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fsm.delayed_enter("REFILL_DATAD", "REFILL_DATA", lasmim.read_latency-1)
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fsm.act("IDLE",
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If(self.wishbone.cyc & self.wishbone.stb, NextState("TEST_HIT"))
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@ -135,7 +133,7 @@ class WB2LASMI(Module, AutoCSR):
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If(lasmim.req_ack, NextState("EVICT_WAIT_DATA_ACK"))
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)
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fsm.act("EVICT_WAIT_DATA_ACK",
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If(lasmim.dat_ack, NextState("EVICT_DATAD"))
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If(lasmim.dat_w_ack, NextState("EVICT_DATA"))
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)
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fsm.act("EVICT_DATA",
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write_to_lasmi.eq(1),
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@ -155,17 +153,16 @@ class WB2LASMI(Module, AutoCSR):
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)
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fsm.act("REFILL_REQUEST",
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lasmim.stb.eq(1),
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If(lasmim.req_ack, NextState("REFILL_WAIT_DATA_ACK"))
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)
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fsm.act("REFILL_WAIT_DATA_ACK",
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If(lasmim.dat_ack, NextState("REFILL_DATAD"))
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If(lasmim.req_ack, NextState("REFILL_DATA"))
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)
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fsm.act("REFILL_DATA",
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write_from_lasmi.eq(1),
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word_inc.eq(1),
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If(word_is_last(word),
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NextState("TEST_HIT"),
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).Else(
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NextState("REFILL_REQUEST")
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If(lasmim.dat_r_ack,
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write_from_lasmi.eq(1),
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word_inc.eq(1),
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If(word_is_last(word),
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NextState("TEST_HIT"),
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).Else(
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NextState("REFILL_REQUEST")
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)
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)
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)
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@ -41,7 +41,7 @@ class BankMachine(Module):
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self.req_fifo.we.eq(req.stb),
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req.req_ack.eq(self.req_fifo.writable),
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self.req_fifo.re.eq(req.dat_ack),
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self.req_fifo.re.eq(req.dat_w_ack | req.dat_r_ack),
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req.lock.eq(self.req_fifo.readable)
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]
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reqf = self.req_fifo.dout
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@ -100,7 +100,8 @@ class BankMachine(Module):
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If(hit,
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# NB: write-to-read specification is enforced by multiplexer
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self.cmd.stb.eq(1),
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req.dat_ack.eq(self.cmd.ack),
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req.dat_w_ack.eq(self.cmd.ack & reqf.we),
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req.dat_r_ack.eq(self.cmd.ack & ~reqf.we),
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self.cmd.is_read.eq(~reqf.we),
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self.cmd.is_write.eq(reqf.we),
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self.cmd.cas_n.eq(0),
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