fpga: n3xx: Support advanced transport adapter
- Fix NODE_INST - Fix RFNOC_PROTOVER - Add option to use SystemVerilog transport adapter for raw UDP Original-commit: 693ec2c896306bcba3686385e5861593040d4cbd
This commit is contained in:
@@ -37,6 +37,9 @@ include $(LIB_DIR)/rfnoc/Makefile.srcs
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include $(BASE_DIR)/n3xx/dboards/rh/Makefile.srcs
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include $(BASE_DIR)/n3xx/dboards/mg/Makefile.srcs
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include $(BASE_DIR)/n3xx/dboards/common/Makefile.srcs
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include $(LIB_DIR)/axi4s_sv/Makefile.srcs
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include $(LIB_DIR)/rfnoc/xport_sv/Makefile.srcs
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# For sake of convenience, we include the Makefile.srcs for DRAM FIFO, DDC, and
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# DUC, Replay, and of course the radio. Any other block needs to use the
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# RFNOC_OOT_MAKEFILE_SRCS variable (see below).
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@@ -139,7 +142,8 @@ $(RFNOC_FRAMEWORK_SRCS) \
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$(RFNOC_BLOCK_AXI_RAM_FIFO_SRCS) \
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$(RFNOC_BLOCK_DUC_SRCS) $(RFNOC_BLOCK_DDC_SRCS) \
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$(RFNOC_BLOCK_RADIO_SRCS) \
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$(RFNOC_BLOCK_REPLAY_SRCS)
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$(RFNOC_BLOCK_REPLAY_SRCS) \
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$(AXI4S_SV_SRCS) $(RFNOC_XPORT_SV_SRCS) \
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EDGE_TBL_DEF="RFNOC_EDGE_TBL_FILE=$(call RESOLVE_PATH,$(EDGE_FILE))"
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IMAGE_CORE_DEF="RFNOC_IMAGE_CORE_HDR=$(call RESOLVE_PATH,$(IMAGE_CORE:.v=.vh))"
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+135
-127
@@ -1178,7 +1178,9 @@ module n3xx (
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.LANES (NUM_QSFP_LANES),
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.PORTNUM_BASE (4),
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.REG_DWIDTH (REG_DWIDTH),
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.REG_AWIDTH (QSFP_REG_AWIDTH)
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.REG_AWIDTH (QSFP_REG_AWIDTH),
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.RFNOC_PROTOVER (RFNOC_PROTOVER),
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.NODE_INST_BASE (0)
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) qsfp_wrapper_i (
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.areset (global_rst),
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.gt_refclk (qsfp_gt_refclk),
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@@ -1694,147 +1696,149 @@ module n3xx (
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`endif
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.REG_DWIDTH(REG_DWIDTH), // Width of the AXI4-Lite data bus (must be 32 or 64)
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.REG_AWIDTH(REG_AWIDTH), // Width of the address bus
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.PORTNUM_BASE(8'd0)
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) sfp_wrapper_0 (
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.areset(global_rst),
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.gt_refclk(sfp0_gt_refclk),
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.gb_refclk(sfp0_gb_refclk),
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.misc_clk(sfp0_misc_clk),
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.user_clk(au_user_clk),
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.sync_clk(au_sync_clk),
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.gt_tx_out_clk_unbuf(sfp0_tx_out_clk),
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.PORTNUM_BASE(8'd0),
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.RFNOC_PROTOVER(RFNOC_PROTOVER),
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.NODE_INST_BASE(0)
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) sfp_wrapper_0 (
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.areset(global_rst),
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.gt_refclk(sfp0_gt_refclk),
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.gb_refclk(sfp0_gb_refclk),
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.misc_clk(sfp0_misc_clk),
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.user_clk(au_user_clk),
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.sync_clk(au_sync_clk),
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.gt_tx_out_clk_unbuf(sfp0_tx_out_clk),
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.bus_rst(bus_rst),
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.bus_clk(bus_clk),
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.bus_rst(bus_rst),
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.bus_clk(bus_clk),
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.qpllreset(qpllreset_sfp0),
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.qplllock(qplllock),
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.qplloutclk(qplloutclk),
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.qplloutrefclk(qplloutrefclk),
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.qpllrefclklost(),
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.qpllreset(qpllreset_sfp0),
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.qplllock(qplllock),
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.qplloutclk(qplloutclk),
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.qplloutrefclk(qplloutrefclk),
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.qpllrefclklost(),
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.mmcm_locked(au_mmcm_locked),
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.gt_pll_lock(sfp0_gt_pll_lock),
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.mmcm_locked(au_mmcm_locked),
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.gt_pll_lock(sfp0_gt_pll_lock),
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.txp(SFP_0_TX_P),
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.txn(SFP_0_TX_N),
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.rxp(SFP_0_RX_P),
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.rxn(SFP_0_RX_N),
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.txp(SFP_0_TX_P),
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.txn(SFP_0_TX_N),
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.rxp(SFP_0_RX_P),
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.rxn(SFP_0_RX_N),
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.mod_present_n(SFP_0_I2C_NPRESENT),
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.mod_rxlos(SFP_0_LOS),
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.mod_tx_fault(SFP_0_TXFAULT),
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.mod_tx_disable(SFP_0_TXDISABLE),
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.mod_present_n(SFP_0_I2C_NPRESENT),
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.mod_rxlos(SFP_0_LOS),
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.mod_tx_fault(SFP_0_TXFAULT),
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.mod_tx_disable(SFP_0_TXDISABLE),
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// Clock and reset
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.s_axi_aclk(clk40),
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.s_axi_aresetn(clk40_rstn),
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// AXI4-Lite: Write address port (domain: s_axi_aclk)
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.s_axi_awaddr(M_AXI_NET0_AWADDR[REG_AWIDTH-1:0]),
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.s_axi_awvalid(M_AXI_NET0_AWVALID),
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.s_axi_awready(M_AXI_NET0_AWREADY),
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// AXI4-Lite: Write data port (domain: s_axi_aclk)
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.s_axi_wdata(M_AXI_NET0_WDATA),
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.s_axi_wstrb(M_AXI_NET0_WSTRB),
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.s_axi_wvalid(M_AXI_NET0_WVALID),
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.s_axi_wready(M_AXI_NET0_WREADY),
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// AXI4-Lite: Write response port (domain: s_axi_aclk)
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.s_axi_bresp(M_AXI_NET0_BRESP),
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.s_axi_bvalid(M_AXI_NET0_BVALID),
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.s_axi_bready(M_AXI_NET0_BREADY),
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// AXI4-Lite: Read address port (domain: s_axi_aclk)
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.s_axi_araddr(M_AXI_NET0_ARADDR[REG_AWIDTH-1:0]),
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.s_axi_arvalid(M_AXI_NET0_ARVALID),
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.s_axi_arready(M_AXI_NET0_ARREADY),
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// AXI4-Lite: Read data port (domain: s_axi_aclk)
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.s_axi_rdata(M_AXI_NET0_RDATA),
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.s_axi_rresp(M_AXI_NET0_RRESP),
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.s_axi_rvalid(M_AXI_NET0_RVALID),
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.s_axi_rready(M_AXI_NET0_RREADY),
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// Clock and reset
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.s_axi_aclk(clk40),
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.s_axi_aresetn(clk40_rstn),
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// AXI4-Lite: Write address port (domain: s_axi_aclk)
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.s_axi_awaddr(M_AXI_NET0_AWADDR[REG_AWIDTH-1:0]),
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.s_axi_awvalid(M_AXI_NET0_AWVALID),
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.s_axi_awready(M_AXI_NET0_AWREADY),
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// AXI4-Lite: Write data port (domain: s_axi_aclk)
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.s_axi_wdata(M_AXI_NET0_WDATA),
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.s_axi_wstrb(M_AXI_NET0_WSTRB),
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.s_axi_wvalid(M_AXI_NET0_WVALID),
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.s_axi_wready(M_AXI_NET0_WREADY),
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// AXI4-Lite: Write response port (domain: s_axi_aclk)
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.s_axi_bresp(M_AXI_NET0_BRESP),
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.s_axi_bvalid(M_AXI_NET0_BVALID),
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.s_axi_bready(M_AXI_NET0_BREADY),
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// AXI4-Lite: Read address port (domain: s_axi_aclk)
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.s_axi_araddr(M_AXI_NET0_ARADDR[REG_AWIDTH-1:0]),
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.s_axi_arvalid(M_AXI_NET0_ARVALID),
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.s_axi_arready(M_AXI_NET0_ARREADY),
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// AXI4-Lite: Read data port (domain: s_axi_aclk)
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.s_axi_rdata(M_AXI_NET0_RDATA),
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.s_axi_rresp(M_AXI_NET0_RRESP),
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.s_axi_rvalid(M_AXI_NET0_RVALID),
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.s_axi_rready(M_AXI_NET0_RREADY),
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// Ethernet to Vita
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.e2v_tdata(e2v_sfp0_tdata),
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.e2v_tlast(e2v_sfp0_tlast),
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.e2v_tvalid(e2v_sfp0_tvalid),
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.e2v_tready(e2v_sfp0_tready),
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// Ethernet to Vita
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.e2v_tdata(e2v_sfp0_tdata),
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.e2v_tlast(e2v_sfp0_tlast),
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.e2v_tvalid(e2v_sfp0_tvalid),
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.e2v_tready(e2v_sfp0_tready),
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// Vita to Ethernet
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.v2e_tdata(v2e_sfp0_tdata),
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.v2e_tlast(v2e_sfp0_tlast),
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.v2e_tvalid(v2e_sfp0_tvalid),
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.v2e_tready(v2e_sfp0_tready),
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// Vita to Ethernet
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.v2e_tdata(v2e_sfp0_tdata),
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.v2e_tlast(v2e_sfp0_tlast),
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.v2e_tvalid(v2e_sfp0_tvalid),
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.v2e_tready(v2e_sfp0_tready),
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// Ethernet to CPU
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.e2c_tdata(arm_eth_sfp0_rx_tdata_b),
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.e2c_tkeep(arm_eth_sfp0_rx_tkeep_b),
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.e2c_tlast(arm_eth_sfp0_rx_tlast_b),
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.e2c_tvalid(arm_eth_sfp0_rx_tvalid_b),
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.e2c_tready(arm_eth_sfp0_rx_tready_b),
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// Ethernet to CPU
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.e2c_tdata(arm_eth_sfp0_rx_tdata_b),
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.e2c_tkeep(arm_eth_sfp0_rx_tkeep_b),
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.e2c_tlast(arm_eth_sfp0_rx_tlast_b),
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.e2c_tvalid(arm_eth_sfp0_rx_tvalid_b),
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.e2c_tready(arm_eth_sfp0_rx_tready_b),
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// CPU to Ethernet
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.c2e_tdata(arm_eth_sfp0_tx_tdata_b),
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.c2e_tkeep(arm_eth_sfp0_tx_tkeep_b),
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.c2e_tlast(arm_eth_sfp0_tx_tlast_b),
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.c2e_tvalid(arm_eth_sfp0_tx_tvalid_b),
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.c2e_tready(arm_eth_sfp0_tx_tready_b),
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// CPU to Ethernet
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.c2e_tdata(arm_eth_sfp0_tx_tdata_b),
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.c2e_tkeep(arm_eth_sfp0_tx_tkeep_b),
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.c2e_tlast(arm_eth_sfp0_tx_tlast_b),
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.c2e_tvalid(arm_eth_sfp0_tx_tvalid_b),
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.c2e_tready(arm_eth_sfp0_tx_tready_b),
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// White Rabbit Specific
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// White Rabbit Specific
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`ifdef SFP0_WR
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.wr_reset_n (~ps_gpio_out[48]), // reset for WR only
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.wr_refclk (wr_refclk_buf),
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.wr_dac_sclk (WB_DAC_SCLK),
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.wr_dac_din (WB_DAC_DIN),
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.wr_dac_clr_n (WB_DAC_NCLR),
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.wr_dac_cs_n (WB_DAC_NSYNC),
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.wr_dac_ldac_n(WB_DAC_NLDAC),
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.wr_eeprom_scl_o(), // storage for delay characterization
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.wr_eeprom_scl_i(1'b0), // temp
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.wr_eeprom_sda_o(),
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.wr_eeprom_sda_i(1'b0), // temp
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.wr_uart_rx(wr_uart_rxd), // to/from PS
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.wr_uart_tx(wr_uart_txd),
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.mod_pps(pps_wr_refclk), // out, reference clock and pps
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.mod_refclk(wr_ref_clk),
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// WR Slave Port to PS
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.wr_axi_aclk(m_axi_wr_clk), // out to PS
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.wr_axi_aresetn(1'b1), // in
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.wr_axi_awaddr(m_axi_wr_awaddr),
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.wr_axi_awvalid(m_axi_wr_awvalid),
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.wr_axi_awready(m_axi_wr_awready),
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.wr_axi_wdata(m_axi_wr_wdata),
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.wr_axi_wstrb(m_axi_wr_wstrb),
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.wr_axi_wvalid(m_axi_wr_wvalid),
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.wr_axi_wready(m_axi_wr_wready),
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.wr_axi_bresp(m_axi_wr_bresp),
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.wr_axi_bvalid(m_axi_wr_bvalid),
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.wr_axi_bready(m_axi_wr_bready),
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.wr_axi_araddr(m_axi_wr_araddr),
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.wr_axi_arvalid(m_axi_wr_arvalid),
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.wr_axi_arready(m_axi_wr_arready),
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.wr_axi_rdata(m_axi_wr_rdata),
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.wr_axi_rresp(m_axi_wr_rresp),
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.wr_axi_rvalid(m_axi_wr_rvalid),
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.wr_axi_rready(m_axi_wr_rready),
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.wr_axi_rlast(),
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.wr_reset_n (~ps_gpio_out[48]), // reset for WR only
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.wr_refclk (wr_refclk_buf),
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.wr_dac_sclk (WB_DAC_SCLK),
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.wr_dac_din (WB_DAC_DIN),
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.wr_dac_clr_n (WB_DAC_NCLR),
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.wr_dac_cs_n (WB_DAC_NSYNC),
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.wr_dac_ldac_n(WB_DAC_NLDAC),
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.wr_eeprom_scl_o(), // storage for delay characterization
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.wr_eeprom_scl_i(1'b0), // temp
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.wr_eeprom_sda_o(),
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.wr_eeprom_sda_i(1'b0), // temp
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.wr_uart_rx(wr_uart_rxd), // to/from PS
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.wr_uart_tx(wr_uart_txd),
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.mod_pps(pps_wr_refclk), // out, reference clock and pps
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.mod_refclk(wr_ref_clk),
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// WR Slave Port to PS
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.wr_axi_aclk(m_axi_wr_clk), // out to PS
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.wr_axi_aresetn(1'b1), // in
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.wr_axi_awaddr(m_axi_wr_awaddr),
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.wr_axi_awvalid(m_axi_wr_awvalid),
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.wr_axi_awready(m_axi_wr_awready),
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.wr_axi_wdata(m_axi_wr_wdata),
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.wr_axi_wstrb(m_axi_wr_wstrb),
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.wr_axi_wvalid(m_axi_wr_wvalid),
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.wr_axi_wready(m_axi_wr_wready),
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.wr_axi_bresp(m_axi_wr_bresp),
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.wr_axi_bvalid(m_axi_wr_bvalid),
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.wr_axi_bready(m_axi_wr_bready),
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.wr_axi_araddr(m_axi_wr_araddr),
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.wr_axi_arvalid(m_axi_wr_arvalid),
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.wr_axi_arready(m_axi_wr_arready),
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.wr_axi_rdata(m_axi_wr_rdata),
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.wr_axi_rresp(m_axi_wr_rresp),
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.wr_axi_rvalid(m_axi_wr_rvalid),
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.wr_axi_rready(m_axi_wr_rready),
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.wr_axi_rlast(),
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`else
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.wr_reset_n(1'b1),
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.wr_refclk(1'b0),
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.wr_eeprom_scl_i(1'b0),
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.wr_eeprom_sda_i(1'b0),
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.wr_uart_rx(1'b0),
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.wr_reset_n(1'b1),
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.wr_refclk(1'b0),
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.wr_eeprom_scl_i(1'b0),
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.wr_eeprom_sda_i(1'b0),
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.wr_uart_rx(1'b0),
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`endif
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// Misc
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.port_info(sfp_port0_info),
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.device_id(device_id),
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// Misc
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.port_info(sfp_port0_info),
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.device_id(device_id),
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// LED
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.link_up(sfp0_link_up),
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.activity(SFP_0_LED_A)
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);
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// LED
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.link_up(sfp0_link_up),
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.activity(SFP_0_LED_A)
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);
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assign ps_gpio_in[60] = ps_gpio_tri[60] ? sfp0_link_up : ps_gpio_out[60];
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assign SFP_0_LED_B = sfp0_link_up;
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assign ps_gpio_in[60] = ps_gpio_tri[60] ? sfp0_link_up : ps_gpio_out[60];
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assign SFP_0_LED_B = sfp0_link_up;
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`ifndef SFP0_WR
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assign WB_DAC_SCLK = 1'b0;
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@@ -1865,7 +1869,9 @@ module n3xx (
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`endif
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.REG_DWIDTH(REG_DWIDTH), // Width of the AXI4-Lite data bus (must be 32 or 64)
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.REG_AWIDTH(REG_AWIDTH), // Width of the address bus
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.PORTNUM_BASE(8'd1)
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.PORTNUM_BASE(8'd1),
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.RFNOC_PROTOVER(RFNOC_PROTOVER),
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.NODE_INST_BASE(1)
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) sfp_wrapper_1 (
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.areset(global_rst),
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@@ -2576,7 +2582,9 @@ module n3xx (
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eth_internal #(
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.DWIDTH(REG_DWIDTH),
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.AWIDTH(REG_AWIDTH),
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.PORTNUM(8'd1)
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.PORTNUM(8'd1),
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.RFNOC_PROTOVER(RFNOC_PROTOVER),
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.NODE_INST(2)
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) eth_internal_i (
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// Resets
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.bus_rst (bus_rst),
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+93
-85
@@ -1168,7 +1168,9 @@ module n3xx (
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.GT_COMMON (1),
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.PORTNUM_BASE (4),
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.REG_DWIDTH (REG_DWIDTH),
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.REG_AWIDTH (QSFP_REG_AWIDTH)
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.REG_AWIDTH (QSFP_REG_AWIDTH),
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.RFNOC_PROTOVER (RFNOC_PROTOVER),
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.NODE_INST_BASE (0)
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) qsfp_wrapper_i (
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.areset (global_rst),
|
||||
.gt_refclk (qsfp_gt_refclk),
|
||||
@@ -1685,7 +1687,9 @@ module n3xx (
|
||||
.REG_DWIDTH(REG_DWIDTH), // Width of the AXI4-Lite data bus (must be 32 or 64)
|
||||
.REG_AWIDTH(REG_AWIDTH), // Width of the address bus
|
||||
.GT_COMMON(1),
|
||||
.PORTNUM_BASE(8'd0)
|
||||
.PORTNUM_BASE(8'd0),
|
||||
.RFNOC_PROTOVER(RFNOC_PROTOVER),
|
||||
.NODE_INST_BASE(0)
|
||||
) sfp_wrapper_0 (
|
||||
.areset(global_rst),
|
||||
.gt_refclk(sfp0_gt_refclk),
|
||||
@@ -1843,7 +1847,7 @@ module n3xx (
|
||||
//
|
||||
//////////////////////////////////////////////////////////////////////
|
||||
|
||||
n3xx_mgt_channel_wrapper #(
|
||||
n3xx_mgt_channel_wrapper #(
|
||||
.LANES(1),
|
||||
`ifdef SFP1_10GBE
|
||||
.PROTOCOL("10GbE"),
|
||||
@@ -1856,101 +1860,103 @@ module n3xx (
|
||||
.REG_DWIDTH(REG_DWIDTH), // Width of the AXI4-Lite data bus (must be 32 or 64)
|
||||
.REG_AWIDTH(REG_AWIDTH), // Width of the address bus
|
||||
.GT_COMMON(1),
|
||||
.PORTNUM_BASE(8'd1)
|
||||
) sfp_wrapper_1 (
|
||||
.areset(global_rst),
|
||||
.PORTNUM_BASE(8'd1),
|
||||
.RFNOC_PROTOVER(RFNOC_PROTOVER),
|
||||
.NODE_INST_BASE(1)
|
||||
) sfp_wrapper_1 (
|
||||
.areset(global_rst),
|
||||
|
||||
.gt_refclk(sfp1_gt_refclk),
|
||||
.gb_refclk(sfp1_gb_refclk),
|
||||
.misc_clk(sfp1_misc_clk),
|
||||
.user_clk(au_user_clk),
|
||||
.sync_clk(au_sync_clk),
|
||||
.gt_tx_out_clk_unbuf(sfp1_tx_out_clk),
|
||||
.gt_refclk(sfp1_gt_refclk),
|
||||
.gb_refclk(sfp1_gb_refclk),
|
||||
.misc_clk(sfp1_misc_clk),
|
||||
.user_clk(au_user_clk),
|
||||
.sync_clk(au_sync_clk),
|
||||
.gt_tx_out_clk_unbuf(sfp1_tx_out_clk),
|
||||
|
||||
.bus_rst(bus_rst),
|
||||
.bus_clk(bus_clk),
|
||||
.bus_rst(bus_rst),
|
||||
.bus_clk(bus_clk),
|
||||
|
||||
.qpllreset(qpllreset_sfp1),
|
||||
.qplllock(qplllock),
|
||||
.qplloutclk(qplloutclk),
|
||||
.qplloutrefclk(qplloutrefclk),
|
||||
.qpllrefclklost(),
|
||||
.qpllreset(qpllreset_sfp1),
|
||||
.qplllock(qplllock),
|
||||
.qplloutclk(qplloutclk),
|
||||
.qplloutrefclk(qplloutrefclk),
|
||||
.qpllrefclklost(),
|
||||
|
||||
.mmcm_locked(au_mmcm_locked),
|
||||
.gt_pll_lock(sfp1_gt_pll_lock),
|
||||
.mmcm_locked(au_mmcm_locked),
|
||||
.gt_pll_lock(sfp1_gt_pll_lock),
|
||||
|
||||
.txp(SFP_1_TX_P),
|
||||
.txn(SFP_1_TX_N),
|
||||
.rxp(SFP_1_RX_P),
|
||||
.rxn(SFP_1_RX_N),
|
||||
.txp(SFP_1_TX_P),
|
||||
.txn(SFP_1_TX_N),
|
||||
.rxp(SFP_1_RX_P),
|
||||
.rxn(SFP_1_RX_N),
|
||||
|
||||
.mod_rxlos(SFP_1_LOS),
|
||||
.mod_tx_fault(SFP_1_TXFAULT),
|
||||
.mod_tx_disable(SFP_1_TXDISABLE),
|
||||
.mod_rxlos(SFP_1_LOS),
|
||||
.mod_tx_fault(SFP_1_TXFAULT),
|
||||
.mod_tx_disable(SFP_1_TXDISABLE),
|
||||
|
||||
// Clock and reset
|
||||
.s_axi_aclk(clk40),
|
||||
.s_axi_aresetn(clk40_rstn),
|
||||
// AXI4-Lite: Write address port (domain: s_axi_aclk)
|
||||
.s_axi_awaddr(M_AXI_NET1_AWADDR[REG_AWIDTH-1:0]),
|
||||
.s_axi_awvalid(M_AXI_NET1_AWVALID),
|
||||
.s_axi_awready(M_AXI_NET1_AWREADY),
|
||||
// AXI4-Lite: Write data port (domain: s_axi_aclk)
|
||||
.s_axi_wdata(M_AXI_NET1_WDATA),
|
||||
.s_axi_wstrb(M_AXI_NET1_WSTRB),
|
||||
.s_axi_wvalid(M_AXI_NET1_WVALID),
|
||||
.s_axi_wready(M_AXI_NET1_WREADY),
|
||||
// AXI4-Lite: Write response port (domain: s_axi_aclk)
|
||||
.s_axi_bresp(M_AXI_NET1_BRESP),
|
||||
.s_axi_bvalid(M_AXI_NET1_BVALID),
|
||||
.s_axi_bready(M_AXI_NET1_BREADY),
|
||||
// AXI4-Lite: Read address port (domain: s_axi_aclk)
|
||||
.s_axi_araddr(M_AXI_NET1_ARADDR[REG_AWIDTH-1:0]),
|
||||
.s_axi_arvalid(M_AXI_NET1_ARVALID),
|
||||
.s_axi_arready(M_AXI_NET1_ARREADY),
|
||||
// AXI4-Lite: Read data port (domain: s_axi_aclk)
|
||||
.s_axi_rdata(M_AXI_NET1_RDATA),
|
||||
.s_axi_rresp(M_AXI_NET1_RRESP),
|
||||
.s_axi_rvalid(M_AXI_NET1_RVALID),
|
||||
.s_axi_rready(M_AXI_NET1_RREADY),
|
||||
// Clock and reset
|
||||
.s_axi_aclk(clk40),
|
||||
.s_axi_aresetn(clk40_rstn),
|
||||
// AXI4-Lite: Write address port (domain: s_axi_aclk)
|
||||
.s_axi_awaddr(M_AXI_NET1_AWADDR[REG_AWIDTH-1:0]),
|
||||
.s_axi_awvalid(M_AXI_NET1_AWVALID),
|
||||
.s_axi_awready(M_AXI_NET1_AWREADY),
|
||||
// AXI4-Lite: Write data port (domain: s_axi_aclk)
|
||||
.s_axi_wdata(M_AXI_NET1_WDATA),
|
||||
.s_axi_wstrb(M_AXI_NET1_WSTRB),
|
||||
.s_axi_wvalid(M_AXI_NET1_WVALID),
|
||||
.s_axi_wready(M_AXI_NET1_WREADY),
|
||||
// AXI4-Lite: Write response port (domain: s_axi_aclk)
|
||||
.s_axi_bresp(M_AXI_NET1_BRESP),
|
||||
.s_axi_bvalid(M_AXI_NET1_BVALID),
|
||||
.s_axi_bready(M_AXI_NET1_BREADY),
|
||||
// AXI4-Lite: Read address port (domain: s_axi_aclk)
|
||||
.s_axi_araddr(M_AXI_NET1_ARADDR[REG_AWIDTH-1:0]),
|
||||
.s_axi_arvalid(M_AXI_NET1_ARVALID),
|
||||
.s_axi_arready(M_AXI_NET1_ARREADY),
|
||||
// AXI4-Lite: Read data port (domain: s_axi_aclk)
|
||||
.s_axi_rdata(M_AXI_NET1_RDATA),
|
||||
.s_axi_rresp(M_AXI_NET1_RRESP),
|
||||
.s_axi_rvalid(M_AXI_NET1_RVALID),
|
||||
.s_axi_rready(M_AXI_NET1_RREADY),
|
||||
|
||||
// Ethernet to Vita
|
||||
.e2v_tdata(e2v_sfp1_tdata),
|
||||
.e2v_tlast(e2v_sfp1_tlast),
|
||||
.e2v_tvalid(e2v_sfp1_tvalid),
|
||||
.e2v_tready(e2v_sfp1_tready),
|
||||
// Ethernet to Vita
|
||||
.e2v_tdata(e2v_sfp1_tdata),
|
||||
.e2v_tlast(e2v_sfp1_tlast),
|
||||
.e2v_tvalid(e2v_sfp1_tvalid),
|
||||
.e2v_tready(e2v_sfp1_tready),
|
||||
|
||||
// Vita to Ethernet
|
||||
.v2e_tdata(v2e_sfp1_tdata),
|
||||
.v2e_tlast(v2e_sfp1_tlast),
|
||||
.v2e_tvalid(v2e_sfp1_tvalid),
|
||||
.v2e_tready(v2e_sfp1_tready),
|
||||
// Vita to Ethernet
|
||||
.v2e_tdata(v2e_sfp1_tdata),
|
||||
.v2e_tlast(v2e_sfp1_tlast),
|
||||
.v2e_tvalid(v2e_sfp1_tvalid),
|
||||
.v2e_tready(v2e_sfp1_tready),
|
||||
|
||||
// Ethernet to CPU
|
||||
.e2c_tdata(arm_eth_sfp1_rx_tdata_b),
|
||||
.e2c_tkeep(arm_eth_sfp1_rx_tkeep_b),
|
||||
.e2c_tlast(arm_eth_sfp1_rx_tlast_b),
|
||||
.e2c_tvalid(arm_eth_sfp1_rx_tvalid_b),
|
||||
.e2c_tready(arm_eth_sfp1_rx_tready_b),
|
||||
// Ethernet to CPU
|
||||
.e2c_tdata(arm_eth_sfp1_rx_tdata_b),
|
||||
.e2c_tkeep(arm_eth_sfp1_rx_tkeep_b),
|
||||
.e2c_tlast(arm_eth_sfp1_rx_tlast_b),
|
||||
.e2c_tvalid(arm_eth_sfp1_rx_tvalid_b),
|
||||
.e2c_tready(arm_eth_sfp1_rx_tready_b),
|
||||
|
||||
// CPU to Ethernet
|
||||
.c2e_tdata(arm_eth_sfp1_tx_tdata_b),
|
||||
.c2e_tkeep(arm_eth_sfp1_tx_tkeep_b),
|
||||
.c2e_tlast(arm_eth_sfp1_tx_tlast_b),
|
||||
.c2e_tvalid(arm_eth_sfp1_tx_tvalid_b),
|
||||
.c2e_tready(arm_eth_sfp1_tx_tready_b),
|
||||
// CPU to Ethernet
|
||||
.c2e_tdata(arm_eth_sfp1_tx_tdata_b),
|
||||
.c2e_tkeep(arm_eth_sfp1_tx_tkeep_b),
|
||||
.c2e_tlast(arm_eth_sfp1_tx_tlast_b),
|
||||
.c2e_tvalid(arm_eth_sfp1_tx_tvalid_b),
|
||||
.c2e_tready(arm_eth_sfp1_tx_tready_b),
|
||||
|
||||
// Misc
|
||||
.port_info(sfp_port1_info),
|
||||
.device_id(device_id),
|
||||
// Misc
|
||||
.port_info(sfp_port1_info),
|
||||
.device_id(device_id),
|
||||
|
||||
// LED
|
||||
.link_up(sfp1_link_up),
|
||||
.activity(SFP_1_LED_A)
|
||||
);
|
||||
// LED
|
||||
.link_up(sfp1_link_up),
|
||||
.activity(SFP_1_LED_A)
|
||||
);
|
||||
|
||||
assign ps_gpio_in[61] = ps_gpio_tri[61] ? sfp1_link_up : ps_gpio_out[61];
|
||||
assign SFP_1_LED_B = sfp1_link_up;
|
||||
assign ps_gpio_in[61] = ps_gpio_tri[61] ? sfp1_link_up : ps_gpio_out[61];
|
||||
assign SFP_1_LED_B = sfp1_link_up;
|
||||
|
||||
/////////////////////////////////////////////////////////////////////
|
||||
//
|
||||
@@ -2567,7 +2573,9 @@ module n3xx (
|
||||
eth_internal #(
|
||||
.DWIDTH(REG_DWIDTH),
|
||||
.AWIDTH(REG_AWIDTH),
|
||||
.PORTNUM(8'd1)
|
||||
.PORTNUM(8'd1),
|
||||
.RFNOC_PROTOVER(RFNOC_PROTOVER),
|
||||
.NODE_INST(2)
|
||||
) eth_internal_i (
|
||||
// Resets
|
||||
.bus_rst (bus_rst),
|
||||
|
||||
@@ -1,27 +1,44 @@
|
||||
///////////////////////////////////////////////////////////////////
|
||||
//
|
||||
// Copyright 2018 Ettus Research, A National Instruments Company
|
||||
// Copyright 2018 Ettus Research, a National Instruments Brand
|
||||
//
|
||||
// SPDX-License-Identifier: LGPL-3.0-or-later
|
||||
//
|
||||
// Module: n3xx_mgt_channel_wrapper
|
||||
//
|
||||
// Description:
|
||||
//
|
||||
// Aurora/10 GbE wrapper for up to 4 QSFP lanes -or-
|
||||
// Aurora/1 GbE/10 GbE/White Rabbit wrapper for 1 SFP+ lane
|
||||
//
|
||||
//////////////////////////////////////////////////////////////////////
|
||||
// Parameters:
|
||||
//
|
||||
// PROTOCOL : Must be {10GbE, Aurora, Disabled}
|
||||
// LANES : Number of lanes of to instantiate (1, 2, 3, or 4)
|
||||
// REG_BASE : Base register address
|
||||
// PORTNUM_BASE : Base port number for discovery
|
||||
// MDIO_EN : Enable MDIO port
|
||||
// MDIO_PHYADDR : MDIO address to use
|
||||
// REG_DWIDTH : Width of regport address bus
|
||||
// REG_AWIDTH : Width of regport data bus
|
||||
// GT_COMMON : Use GT Common ports on MGT
|
||||
// RFNOC_PROTOVER : RFNoC protocol version to be reported by transport
|
||||
// adapters.
|
||||
// NODE_INST : RFNoC transport adapter node instance for this port
|
||||
//
|
||||
|
||||
`default_nettype none
|
||||
module n3xx_mgt_channel_wrapper #(
|
||||
parameter PROTOCOL = "10GbE",// Must be {10GbE, Aurora, Disabled}
|
||||
parameter LANES = 2, // Number of lanes of to instantiate (Supported = {1,2,3,4})
|
||||
parameter REG_BASE = 32'h0, // Base register address
|
||||
parameter PORTNUM_BASE = 4, // Base port number for discovery
|
||||
parameter MDIO_EN = 1, // Enable MDIO port
|
||||
parameter [4:0] MDIO_PHYADDR = 5'd0, // Enable MDIO port
|
||||
parameter REG_DWIDTH = 32, // Width of regport address bus
|
||||
parameter REG_AWIDTH = 14, // Width of regport data bus
|
||||
parameter GT_COMMON = 1
|
||||
parameter PROTOCOL = "10GbE",
|
||||
parameter LANES = 2,
|
||||
parameter REG_BASE = 32'h0,
|
||||
parameter PORTNUM_BASE = 4,
|
||||
parameter MDIO_EN = 1,
|
||||
parameter [ 4:0] MDIO_PHYADDR = 5'd0,
|
||||
parameter REG_DWIDTH = 32,
|
||||
parameter REG_AWIDTH = 14,
|
||||
parameter GT_COMMON = 1,
|
||||
parameter [15:0] RFNOC_PROTOVER = {8'd1, 8'd0},
|
||||
parameter NODE_INST_BASE = 0
|
||||
)(
|
||||
// Resets
|
||||
input wire areset,
|
||||
@@ -268,14 +285,15 @@ module n3xx_mgt_channel_wrapper #(
|
||||
generate
|
||||
for (l = 0; l < LANES; l = l + 1) begin: lanes
|
||||
n3xx_mgt_wrapper #(
|
||||
.PROTOCOL (PROTOCOL),
|
||||
.REG_BASE (REG_BASE + (REG_BLOCK_SIZE * l)),
|
||||
.REG_DWIDTH (REG_DWIDTH), // Width of the AXI4-Lite data bus (must be 32 or 64)
|
||||
.REG_AWIDTH (REG_AWIDTH), // Width of the address bus
|
||||
.GT_COMMON (GT_COMMON),
|
||||
.MDIO_EN (MDIO_EN),
|
||||
.MDIO_PHYADDR (MDIO_PHYADDR),
|
||||
.PORTNUM (PORTNUM_BASE + l)
|
||||
.PROTOCOL (PROTOCOL),
|
||||
.REG_BASE (REG_BASE + (REG_BLOCK_SIZE * l)),
|
||||
.REG_DWIDTH (REG_DWIDTH), // Width of the AXI4-Lite data bus (must be 32 or 64)
|
||||
.REG_AWIDTH (REG_AWIDTH), // Width of the address bus
|
||||
.GT_COMMON (GT_COMMON),
|
||||
.MDIO_EN (MDIO_EN),
|
||||
.MDIO_PHYADDR (MDIO_PHYADDR),
|
||||
.PORTNUM (PORTNUM_BASE + l),
|
||||
.NODE_INST (NODE_INST_BASE + l)
|
||||
) lane_i (
|
||||
//must reset all channels on quad when sfp1 gtx core is reset
|
||||
.areset (areset),
|
||||
|
||||
+155
-72
@@ -1,27 +1,48 @@
|
||||
///////////////////////////////////////////////////////////////////
|
||||
//
|
||||
// Copyright 2018 Ettus Research, A National Instruments Company
|
||||
// Copyright 2018 Ettus Research, a National Instruments Brand
|
||||
//
|
||||
// SPDX-License-Identifier: LGPL-3.0-or-later
|
||||
//
|
||||
// Module: n3xx_mgt_wrapper
|
||||
// Description:
|
||||
// Provides wrapper for just the pieces specific to an MGT lane
|
||||
// (for easy use with generate)
|
||||
//
|
||||
//////////////////////////////////////////////////////////////////////
|
||||
// Description:
|
||||
//
|
||||
// Wrapper for single MGT, including support for Aurora, WhiteRabbit, 10 GbE,
|
||||
// and 1 GbE.
|
||||
//
|
||||
// Parameters:
|
||||
//
|
||||
// PROTOCOL : Must be "10GbE", "1GbE", "Aurora", or "Disabled".
|
||||
// REG_DWIDTH : Data width of the AXI-Lite interface and RegPort
|
||||
// REG_AWIDTH : Address width of the AXI-Lite interface and RegPort\
|
||||
// GT_COMMON : Use GT Common ports on MGT
|
||||
// PORTNUM : Port number
|
||||
// MDIO_EN : Enables internal MDIO master
|
||||
// MDIO_PHYADDR : Address to use for the MDIO
|
||||
// RFNOC_PROTOVER : RFNoC protocol version to be reported by transport
|
||||
// adapters.
|
||||
// NODE_INST : RFNoC transport adapter node instance for this port
|
||||
// EN_RX_KV_MAP_CFG : Enable KV-map configuration port on transport adapter
|
||||
// EN_RX_RAW_PYLD : Enable raw UDP support on transport adapter
|
||||
//
|
||||
|
||||
`default_nettype none
|
||||
|
||||
|
||||
module n3xx_mgt_wrapper #(
|
||||
parameter PROTOCOL = "10GbE", // Must be {10GbE, Aurora, Disabled}
|
||||
parameter REG_DWIDTH = 32,
|
||||
parameter REG_AWIDTH = 14,
|
||||
parameter GT_COMMON = 1,
|
||||
parameter [7:0] PORTNUM = 8'd0,
|
||||
parameter MDIO_EN = 0,
|
||||
parameter [4:0] MDIO_PHYADDR = 5'd0,
|
||||
parameter REG_BASE = 16'h0000
|
||||
)(
|
||||
parameter PROTOCOL = "10GbE",
|
||||
parameter REG_DWIDTH = 32,
|
||||
parameter REG_AWIDTH = 14,
|
||||
parameter REG_BASE = 16'h0000,
|
||||
parameter GT_COMMON = 1,
|
||||
parameter [ 7:0] PORTNUM = 8'd0,
|
||||
parameter MDIO_EN = 0,
|
||||
parameter [ 4:0] MDIO_PHYADDR = 5'd0,
|
||||
parameter [15:0] RFNOC_PROTOVER = {8'd1, 8'd0},
|
||||
parameter NODE_INST = 0,
|
||||
parameter EN_RX_KV_MAP_CFG = 1,
|
||||
parameter EN_RX_RAW_PYLD = 1
|
||||
) (
|
||||
// Resets
|
||||
input wire areset,
|
||||
input wire bus_rst,
|
||||
@@ -378,13 +399,13 @@ module n3xx_mgt_wrapper #(
|
||||
|
||||
// Converting tuser to tkeep for ingress packets
|
||||
assign e2c_tkeep = ~e2c_tlast ? 8'b1111_1111
|
||||
: (e2c_tuser == 4'd0) ? 8'b1111_1111
|
||||
: (e2c_tuser == 4'd1) ? 8'b0000_0001
|
||||
: (e2c_tuser == 4'd2) ? 8'b0000_0011
|
||||
: (e2c_tuser == 4'd3) ? 8'b0000_0111
|
||||
: (e2c_tuser == 4'd4) ? 8'b0000_1111
|
||||
: (e2c_tuser == 4'd5) ? 8'b0001_1111
|
||||
: (e2c_tuser == 4'd6) ? 8'b0011_1111
|
||||
: (e2c_tuser[2:0] == 3'd0) ? 8'b1111_1111
|
||||
: (e2c_tuser[2:0] == 3'd1) ? 8'b0000_0001
|
||||
: (e2c_tuser[2:0] == 3'd2) ? 8'b0000_0011
|
||||
: (e2c_tuser[2:0] == 3'd3) ? 8'b0000_0111
|
||||
: (e2c_tuser[2:0] == 3'd4) ? 8'b0000_1111
|
||||
: (e2c_tuser[2:0] == 3'd5) ? 8'b0001_1111
|
||||
: (e2c_tuser[2:0] == 3'd6) ? 8'b0011_1111
|
||||
: 8'b0111_1111;
|
||||
|
||||
// Converting tkeep to tuser for egress packets
|
||||
@@ -399,58 +420,120 @@ module n3xx_mgt_wrapper #(
|
||||
: (c2e_tkeep == 8'b0000_0001) ? 4'd1
|
||||
: 4'd0;
|
||||
|
||||
eth_interface #(
|
||||
.PROTOVER ({8'd1,8'd0}), //FIXME. This should come from outside
|
||||
.MTU (10),
|
||||
.NODE_INST (0),
|
||||
.REG_AWIDTH (REG_AWIDTH),
|
||||
.BASE (REG_BASE_ETH_SWITCH)
|
||||
) eth_interface (
|
||||
.clk (bus_clk),
|
||||
.reset (bus_rst),
|
||||
.device_id (device_id),
|
||||
.reg_wr_req (reg_wr_req),
|
||||
.reg_wr_addr (reg_wr_addr),
|
||||
.reg_wr_data (reg_wr_data),
|
||||
.reg_rd_req (reg_rd_req),
|
||||
.reg_rd_addr (reg_rd_addr),
|
||||
.reg_rd_resp (reg_rd_resp_eth_if),
|
||||
.reg_rd_data (reg_rd_data_eth_if),
|
||||
.my_mac (),
|
||||
.my_ip (),
|
||||
.my_udp_port (),
|
||||
.eth_tx_tdata (mgti_tdata),
|
||||
.eth_tx_tuser (mgti_tuser),
|
||||
.eth_tx_tlast (mgti_tlast),
|
||||
.eth_tx_tvalid (mgti_tvalid),
|
||||
.eth_tx_tready (mgti_tready),
|
||||
.eth_rx_tdata (mgto_tdata),
|
||||
.eth_rx_tuser (mgto_tuser),
|
||||
.eth_rx_tlast (mgto_tlast),
|
||||
.eth_rx_tvalid (mgto_tvalid),
|
||||
.eth_rx_tready (mgto_tready),
|
||||
.e2v_tdata (e2v_tdata),
|
||||
.e2v_tlast (e2v_tlast),
|
||||
.e2v_tvalid (e2v_tvalid),
|
||||
.e2v_tready (e2v_tready),
|
||||
.v2e_tdata (v2e_tdata),
|
||||
.v2e_tlast (v2e_tlast),
|
||||
.v2e_tvalid (v2e_tvalid),
|
||||
.v2e_tready (v2e_tready),
|
||||
.e2c_tdata (e2c_tdata),
|
||||
.e2c_tuser (e2c_tuser),
|
||||
.e2c_tlast (e2c_tlast),
|
||||
.e2c_tvalid (e2c_tvalid),
|
||||
.e2c_tready (e2c_tready),
|
||||
.c2e_tdata (c2e_tdata),
|
||||
.c2e_tuser (c2e_tuser),
|
||||
.c2e_tlast (c2e_tlast),
|
||||
.c2e_tvalid (c2e_tvalid),
|
||||
.c2e_tready (c2e_tready)
|
||||
);
|
||||
|
||||
if (EN_RX_KV_MAP_CFG || EN_RX_RAW_PYLD) begin : gen_eth_ipv4_interface_wrapper
|
||||
eth_ipv4_interface_wrapper #(
|
||||
.PROTOVER (RFNOC_PROTOVER),
|
||||
.NODE_INST (NODE_INST),
|
||||
.REG_AWIDTH (REG_AWIDTH),
|
||||
.BASE (REG_BASE_ETH_SWITCH),
|
||||
.SYNC (1),
|
||||
.EN_RX_KV_MAP_CFG (EN_RX_KV_MAP_CFG),
|
||||
.EN_RX_RAW_PYLD (EN_RX_RAW_PYLD)
|
||||
) eth_ipv4_interface_wrapper_i (
|
||||
.bus_clk (bus_clk),
|
||||
.bus_rst (bus_rst),
|
||||
.device_id (device_id),
|
||||
.reg_wr_req (reg_wr_req),
|
||||
.reg_wr_addr (reg_wr_addr),
|
||||
.reg_wr_data (reg_wr_data),
|
||||
.reg_rd_req (reg_rd_req),
|
||||
.reg_rd_addr (reg_rd_addr),
|
||||
.reg_rd_resp (reg_rd_resp_eth_if),
|
||||
.reg_rd_data (reg_rd_data_eth_if),
|
||||
.my_mac (),
|
||||
.my_ip (),
|
||||
.my_udp_chdr_port (),
|
||||
.eth_clk (bus_clk),
|
||||
.eth_rst (bus_rst),
|
||||
.eth_pause_req (),
|
||||
.eth_tx_tdata (mgti_tdata),
|
||||
.eth_tx_tuser (mgti_tuser),
|
||||
.eth_tx_tkeep (),
|
||||
.eth_tx_tlast (mgti_tlast),
|
||||
.eth_tx_tvalid (mgti_tvalid),
|
||||
.eth_tx_tready (mgti_tready),
|
||||
.eth_rx_tdata (mgto_tdata),
|
||||
.eth_rx_tuser (mgto_tuser),
|
||||
.eth_rx_tlast (mgto_tlast),
|
||||
.eth_rx_tvalid (mgto_tvalid),
|
||||
.eth_rx_tready (mgto_tready),
|
||||
.e2v_tdata (e2v_tdata),
|
||||
.e2v_tlast (e2v_tlast),
|
||||
.e2v_tvalid (e2v_tvalid),
|
||||
.e2v_tready (e2v_tready),
|
||||
.v2e_tdata (v2e_tdata),
|
||||
.v2e_tlast (v2e_tlast),
|
||||
.v2e_tvalid (v2e_tvalid),
|
||||
.v2e_tready (v2e_tready),
|
||||
.cpu_clk (bus_clk),
|
||||
.cpu_rst (bus_rst),
|
||||
.e2c_tdata (e2c_tdata),
|
||||
.e2c_tuser (e2c_tuser),
|
||||
.e2c_tlast (e2c_tlast),
|
||||
.e2c_tvalid (e2c_tvalid),
|
||||
.e2c_tready (e2c_tready),
|
||||
.c2e_tdata (c2e_tdata),
|
||||
.c2e_tuser (c2e_tuser),
|
||||
.c2e_tlast (c2e_tlast),
|
||||
.c2e_tvalid (c2e_tvalid),
|
||||
.c2e_tready (c2e_tready)
|
||||
);
|
||||
end // gen_eth_ipv4_interface_wrapper
|
||||
else begin : gen_eth_interface
|
||||
eth_interface #(
|
||||
.PROTOVER (RFNOC_PROTOVER),
|
||||
.MTU (10),
|
||||
.NODE_INST (NODE_INST),
|
||||
.REG_AWIDTH (REG_AWIDTH),
|
||||
.BASE (REG_BASE_ETH_SWITCH)
|
||||
) eth_interface (
|
||||
.clk (bus_clk),
|
||||
.reset (bus_rst),
|
||||
.device_id (device_id),
|
||||
.reg_wr_req (reg_wr_req),
|
||||
.reg_wr_addr (reg_wr_addr),
|
||||
.reg_wr_data (reg_wr_data),
|
||||
.reg_rd_req (reg_rd_req),
|
||||
.reg_rd_addr (reg_rd_addr),
|
||||
.reg_rd_resp (reg_rd_resp_eth_if),
|
||||
.reg_rd_data (reg_rd_data_eth_if),
|
||||
.my_mac (),
|
||||
.my_ip (),
|
||||
.my_udp_port (),
|
||||
.eth_tx_tdata (mgti_tdata),
|
||||
.eth_tx_tuser (mgti_tuser),
|
||||
.eth_tx_tlast (mgti_tlast),
|
||||
.eth_tx_tvalid (mgti_tvalid),
|
||||
.eth_tx_tready (mgti_tready),
|
||||
.eth_rx_tdata (mgto_tdata),
|
||||
.eth_rx_tuser (mgto_tuser),
|
||||
.eth_rx_tlast (mgto_tlast),
|
||||
.eth_rx_tvalid (mgto_tvalid),
|
||||
.eth_rx_tready (mgto_tready),
|
||||
.e2v_tdata (e2v_tdata),
|
||||
.e2v_tlast (e2v_tlast),
|
||||
.e2v_tvalid (e2v_tvalid),
|
||||
.e2v_tready (e2v_tready),
|
||||
.v2e_tdata (v2e_tdata),
|
||||
.v2e_tlast (v2e_tlast),
|
||||
.v2e_tvalid (v2e_tvalid),
|
||||
.v2e_tready (v2e_tready),
|
||||
.e2c_tdata (e2c_tdata),
|
||||
.e2c_tuser (e2c_tuser),
|
||||
.e2c_tlast (e2c_tlast),
|
||||
.e2c_tvalid (e2c_tvalid),
|
||||
.e2c_tready (e2c_tready),
|
||||
.c2e_tdata (c2e_tdata),
|
||||
.c2e_tuser (c2e_tuser),
|
||||
.c2e_tlast (c2e_tlast),
|
||||
.c2e_tvalid (c2e_tvalid),
|
||||
.c2e_tready (c2e_tready)
|
||||
);
|
||||
end // gen_eth_interface
|
||||
end
|
||||
endgenerate
|
||||
|
||||
endmodule // n3xx_mgt_wrapper
|
||||
|
||||
|
||||
`default_nettype wire
|
||||
|
||||
Reference in New Issue
Block a user