fpga: x400: Make transport adapter width configurable
Original-commit: 8e08cfe1da494f8be185470810ee19fcc8ed98d7
This commit is contained in:
+63
-32
@@ -278,10 +278,23 @@ module x4xx (
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localparam RADIO_SPC = 1; // Number of samples per cycle
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`endif
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// Set the width for each transport adapter. All ports within a single QSFP
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// will have the same width.
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localparam [31:0] QSFP0_W = `CHDR_WIDTH;
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localparam [31:0] QSFP1_W = `CHDR_WIDTH;
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// Width of the signals used to connect the Ethernet transport adapters to
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// RFNoC. Set this to the width of the widest port.
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localparam [31:0] ENET_W = (QSFP0_W > QSFP1_W) ? QSFP0_W : QSFP1_W;
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// Actual width of each SFP port's transport adapter interface. Each port of
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// the same QSFP must have the same width.
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localparam [8*32-1:0] ENET_WIDTHS = {{4{QSFP1_W}}, {4{QSFP0_W}}};
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// See global_regs_regmap_utils.vh for definition of CHDR_CLK_VALUE.
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localparam CHDR_CLK_RATE = CHDR_CLK_VALUE[CHDR_CLK_SIZE-1:0];
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localparam RFNOC_PROTOVER = `RFNOC_PROTOVER;
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localparam NET_CHDR_W = ENET_W;
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localparam CHDR_W = `CHDR_WIDTH;
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localparam DMA_W = `CHDR_WIDTH;
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localparam CPU_W = 64;
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localparam REG_AWIDTH = 15;
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@@ -1539,15 +1552,15 @@ module x4xx (
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wire [15:0] device_id;
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wire rx_rec_clk_out1; // output GTY on QSFP1
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// e2v and v2e are flattened arrays, where e2v_tdata[CHDR_W*N +: CHDR_W] is
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// e2v and v2e are flattened arrays, where e2v_tdata[ENET_W*N +: ENET_W] is
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// the data for RFNoC port N. RFNoC ports 0-3 map to QSFP0 and ports 4-7 map
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// to QSFP1.
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wire [CHDR_W*8-1:0] e2v_tdata;
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// to QSFP1. Note that each port might use less than ENET_W bits.
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wire [ENET_W*8-1:0] e2v_tdata;
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wire [ 8-1:0] e2v_tlast;
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wire [ 8-1:0] e2v_tready;
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wire [ 8-1:0] e2v_tvalid;
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wire [CHDR_W*8-1:0] v2e_tdata;
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wire [ENET_W*8-1:0] v2e_tdata;
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wire [ 8-1:0] v2e_tlast;
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wire [ 8-1:0] v2e_tready;
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wire [ 8-1:0] v2e_tvalid;
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@@ -1640,7 +1653,8 @@ module x4xx (
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.PROTOCOL3 (`QSFP0_3),
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`endif
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.CPU_W (CPU_W),
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.CHDR_W (CHDR_W),
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.CHDR_W (QSFP0_W),
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.NET_CHDR_W (NET_CHDR_W),
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.BYTE_MTU (BYTE_MTU),
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.PORTNUM (0),
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.NODE_INST (0),
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@@ -1712,16 +1726,21 @@ module x4xx (
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.rx_p (qsfp0_rx_p),
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.rx_n (qsfp0_rx_n),
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// Ethernet to CHDR
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.e2v_tdata (e2v_tdata [0*CHDR_W*4 +: CHDR_W*4]),
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.e2v_tlast (e2v_tlast [0* 4 +: 4]),
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.e2v_tvalid (e2v_tvalid [0* 4 +: 4]),
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.e2v_tready (e2v_tready [0* 4 +: 4]),
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.e2v_tdata ({ e2v_tdata [3*ENET_W +: QSFP0_W],
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e2v_tdata [2*ENET_W +: QSFP0_W],
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e2v_tdata [1*ENET_W +: QSFP0_W],
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e2v_tdata [0*ENET_W +: QSFP0_W] }),
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.e2v_tlast (e2v_tlast [0 +: 4]),
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.e2v_tvalid (e2v_tvalid[0 +: 4]),
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.e2v_tready (e2v_tready[0 +: 4]),
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// CHDR to Ethernet
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.v2e_tdata (v2e_tdata [0*CHDR_W*4 +: CHDR_W*4]),
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.v2e_tlast (v2e_tlast [0* 4 +: 4]),
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.v2e_tvalid (v2e_tvalid [0* 4 +: 4]),
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.v2e_tready (v2e_tready [0* 4 +: 4]),
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.v2e_tdata ({ v2e_tdata[3*ENET_W +: QSFP0_W],
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v2e_tdata[2*ENET_W +: QSFP0_W],
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v2e_tdata[1*ENET_W +: QSFP0_W],
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v2e_tdata[0*ENET_W +: QSFP0_W] }),
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.v2e_tlast (v2e_tlast [0 +: 4]),
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.v2e_tvalid (v2e_tvalid[0 +: 4]),
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.v2e_tready (v2e_tready[0 +: 4]),
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// Misc
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.eth_rx_irq (eth0_rx_irq),
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.eth_tx_irq (eth0_tx_irq),
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@@ -1750,7 +1769,8 @@ module x4xx (
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.PROTOCOL3 (`QSFP1_3),
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`endif
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.CPU_W (CPU_W),
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.CHDR_W (CHDR_W),
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.CHDR_W (QSFP1_W),
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.NET_CHDR_W (NET_CHDR_W),
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.BYTE_MTU (BYTE_MTU),
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.PORTNUM (1),
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.NODE_INST (4),
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@@ -1822,15 +1842,21 @@ module x4xx (
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.rx_p (qsfp1_rx_p),
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.rx_n (qsfp1_rx_n),
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// Ethernet to CHDR
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.e2v_tdata (e2v_tdata [1*CHDR_W*4 +: CHDR_W*4]),
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.e2v_tlast (e2v_tlast [1* 4 +: 4]),
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.e2v_tvalid (e2v_tvalid [1* 4 +: 4]),
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.e2v_tready (e2v_tready [1* 4 +: 4]),
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.e2v_tdata ({ e2v_tdata[4*ENET_W + 3*ENET_W +: QSFP1_W],
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e2v_tdata[4*ENET_W + 2*ENET_W +: QSFP1_W],
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e2v_tdata[4*ENET_W + 1*ENET_W +: QSFP1_W],
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e2v_tdata[4*ENET_W + 0*ENET_W +: QSFP1_W] }),
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.e2v_tlast (e2v_tlast [4 +: 4]),
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.e2v_tvalid (e2v_tvalid[4 +: 4]),
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.e2v_tready (e2v_tready[4 +: 4]),
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// CHDR to Ethernet
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.v2e_tdata (v2e_tdata [1*CHDR_W*4 +: CHDR_W*4]),
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.v2e_tlast (v2e_tlast [1* 4 +: 4]),
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.v2e_tvalid (v2e_tvalid [1* 4 +: 4]),
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.v2e_tready (v2e_tready [1* 4 +: 4]),
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.v2e_tdata ({ v2e_tdata[4*ENET_W + 3*ENET_W +: QSFP1_W],
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v2e_tdata[4*ENET_W + 2*ENET_W +: QSFP1_W],
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v2e_tdata[4*ENET_W + 1*ENET_W +: QSFP1_W],
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v2e_tdata[4*ENET_W + 0*ENET_W +: QSFP1_W] }),
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.v2e_tlast (v2e_tlast [4 +: 4]),
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.v2e_tvalid (v2e_tvalid[4 +: 4]),
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.v2e_tready (v2e_tready[4 +: 4]),
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// Misc
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.eth_rx_irq (eth1_rx_irq),
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.eth_tx_irq (eth1_tx_irq),
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@@ -1850,17 +1876,18 @@ module x4xx (
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//---------------------------------------------------------------------------
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// CHDR DMA bus (clk200 domain)
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wire [CHDR_W-1:0] e2v_dma_tdata;
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wire e2v_dma_tlast;
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wire e2v_dma_tready;
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wire e2v_dma_tvalid;
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wire [CHDR_W-1:0] v2e_dma_tdata;
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wire v2e_dma_tlast;
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wire v2e_dma_tready;
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wire v2e_dma_tvalid;
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wire [DMA_W-1:0] e2v_dma_tdata;
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wire e2v_dma_tlast;
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wire e2v_dma_tready;
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wire e2v_dma_tvalid;
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wire [DMA_W-1:0] v2e_dma_tdata;
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wire v2e_dma_tlast;
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wire v2e_dma_tready;
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wire v2e_dma_tvalid;
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eth_ipv4_internal #(
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.CHDR_W (CHDR_W),
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.CHDR_W (DMA_W),
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.NET_CHDR_W (NET_CHDR_W),
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.BYTE_MTU (BYTE_MTU),
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.DWIDTH (REG_DWIDTH),
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.AWIDTH (REG_AWIDTH),
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@@ -2055,6 +2082,10 @@ module x4xx (
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.CHDR_CLK_RATE (CHDR_CLK_RATE),
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.NUM_CHANNELS (NUM_CHANNELS),
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.CHDR_W (CHDR_W),
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.DMA_W (DMA_W),
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.NET_CHDR_W (NET_CHDR_W),
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.ENET_W (ENET_W),
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.ENET_WIDTHS (ENET_WIDTHS),
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.MTU (CHDR_MTU),
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.RFNOC_PROTOVER (RFNOC_PROTOVER),
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.RADIO_SPC (RADIO_SPC),
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+86
-61
@@ -18,6 +18,13 @@
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// CHDR_CLK_RATE : rfnoc_chdr_clk rate in Hz
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// NUM_CHANNELS : Total number of channels
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// CHDR_W : CHDR width used by RFNoC
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// DMA_W : Width of the DMA port interface
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// NET_CHDR_W : CHDR width used by the network interface ports
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// ENET_W : Width of the Ethernet buses (each port may have a unique
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// width, but all signals have equal width for simplicity).
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// ENET_WIDTHS : Actual width of each Ethernet port's interface. This is a
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// packed array of 32-bit integers with port 0 in the
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// right-most position.
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// MTU : Log2 of maximum transmission unit in CHDR_W sized words
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// RFNOC_PROTOVER : RFNoC protocol version (major[7:0], minor[7:0])
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// RADIO_SPC : Number of samples per radio clock cycle
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@@ -26,16 +33,20 @@
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module x4xx_core #(
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parameter NUM_DBOARDS = 2,
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parameter REG_DWIDTH = 32,
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parameter REG_AWIDTH = 32,
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parameter CHDR_CLK_RATE = 200000000,
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parameter NUM_CHANNELS = 4,
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parameter CHDR_W = 64,
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parameter MTU = $clog2(8192 / (CHDR_W/8)),
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parameter RFNOC_PROTOVER = {8'd1, 8'd0},
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parameter RADIO_SPC = 1,
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parameter RF_BANDWIDTH = 200
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parameter NUM_DBOARDS = 2,
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parameter REG_DWIDTH = 32,
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parameter REG_AWIDTH = 32,
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parameter CHDR_CLK_RATE = 200000000,
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parameter NUM_CHANNELS = 4,
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parameter CHDR_W = 64,
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parameter DMA_W = 64,
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parameter NET_CHDR_W = 64,
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parameter [ 31:0] ENET_W = 64,
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parameter [32*8-1:0] ENET_WIDTHS = {8{ENET_W}},
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parameter MTU = $clog2(8192 / (CHDR_W/8)),
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parameter RFNOC_PROTOVER = {8'd1, 8'd0},
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parameter RADIO_SPC = 1,
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parameter RF_BANDWIDTH = 200
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) (
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// Clocks and resets
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input wire radio_clk,
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@@ -126,23 +137,23 @@ module x4xx_core #(
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output [ NUM_CHANNELS-1:0] tx_running,
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// DMA
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output [CHDR_W-1:0] dmao_tdata,
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output dmao_tlast,
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output dmao_tvalid,
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input dmao_tready,
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output [DMA_W-1:0] dmao_tdata,
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output dmao_tlast,
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output dmao_tvalid,
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input dmao_tready,
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input [CHDR_W-1:0] dmai_tdata,
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input dmai_tlast,
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input dmai_tvalid,
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output dmai_tready,
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input [DMA_W-1:0] dmai_tdata,
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input dmai_tlast,
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input dmai_tvalid,
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output dmai_tready,
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// e2v (Ethernet to CHDR)
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output [CHDR_W*8-1:0] v2e_tdata,
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output [ENET_W*8-1:0] v2e_tdata,
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output [ 8-1:0] v2e_tvalid,
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output [ 8-1:0] v2e_tlast,
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input [ 8-1:0] v2e_tready,
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// v2e (CHDR to Ethernet)
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input [CHDR_W*8-1:0] e2v_tdata,
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input [ENET_W*8-1:0] e2v_tdata,
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input [ 8-1:0] e2v_tlast,
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input [ 8-1:0] e2v_tvalid,
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output [ 8-1:0] e2v_tready,
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@@ -285,7 +296,7 @@ module x4xx_core #(
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x4xx_core_common #(
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.CHDR_CLK_RATE (CHDR_CLK_RATE),
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.CHDR_W (CHDR_W),
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.CHDR_W (NET_CHDR_W),
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.RFNOC_PROTOVER (RFNOC_PROTOVER),
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.NUM_DBOARDS (NUM_DBOARDS),
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.PCIE_PRESENT (0)
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@@ -540,8 +551,22 @@ module x4xx_core #(
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// Calculate how may bits wide each channel is
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localparam CHAN_W = 32 * RADIO_SPC;
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localparam PORT_W = 512; // Set to max value; unused bits will be ignored.
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localparam ENET0_W = ENET_WIDTHS[32*0 +: 32];
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localparam ENET1_W = ENET_WIDTHS[32*1 +: 32];
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localparam ENET2_W = ENET_WIDTHS[32*2 +: 32];
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localparam ENET3_W = ENET_WIDTHS[32*3 +: 32];
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localparam ENET4_W = ENET_WIDTHS[32*4 +: 32];
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rfnoc_image_core #(
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.CHDR_W (CHDR_W),
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.PORT_W (PORT_W),
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.ETH0_W (ENET0_W),
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.ETH1_W (ENET1_W),
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.ETH2_W (ENET2_W),
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.ETH3_W (ENET3_W),
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.ETH4_W (ENET4_W),
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.DMA_W (DMA_W),
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.MTU (MTU),
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.PROTOVER (RFNOC_PROTOVER),
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.RADIO_NIPC (RADIO_SPC)
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@@ -631,46 +656,46 @@ module x4xx_core #(
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.m_axi_ruser (0),
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.m_axi_rvalid (dram_axi_rvalid),
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.m_axi_rready (dram_axi_rready),
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.s_eth0_tdata (e2v_tdata [0*CHDR_W +: CHDR_W]),
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.s_eth0_tlast (e2v_tlast [0* 1 +: 1]),
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.s_eth0_tvalid (e2v_tvalid [0* 1 +: 1]),
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.s_eth0_tready (e2v_tready [0* 1 +: 1]),
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.m_eth0_tdata (v2e_tdata [0*CHDR_W +: CHDR_W]),
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.m_eth0_tlast (v2e_tlast [0* 1 +: 1]),
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.m_eth0_tvalid (v2e_tvalid [0* 1 +: 1]),
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.m_eth0_tready (v2e_tready [0* 1 +: 1]),
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.s_eth1_tdata (e2v_tdata [1*CHDR_W +: CHDR_W]),
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.s_eth1_tlast (e2v_tlast [1* 1 +: 1]),
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.s_eth1_tvalid (e2v_tvalid [1* 1 +: 1]),
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.s_eth1_tready (e2v_tready [1* 1 +: 1]),
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.m_eth1_tdata (v2e_tdata [1*CHDR_W +: CHDR_W]),
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.m_eth1_tlast (v2e_tlast [1* 1 +: 1]),
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.m_eth1_tvalid (v2e_tvalid [1* 1 +: 1]),
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.m_eth1_tready (v2e_tready [1* 1 +: 1]),
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.s_eth2_tdata (e2v_tdata [2*CHDR_W +: CHDR_W]),
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.s_eth2_tlast (e2v_tlast [2* 1 +: 1]),
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.s_eth2_tvalid (e2v_tvalid [2* 1 +: 1]),
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.s_eth2_tready (e2v_tready [2* 1 +: 1]),
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.m_eth2_tdata (v2e_tdata [2*CHDR_W +: CHDR_W]),
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.m_eth2_tlast (v2e_tlast [2* 1 +: 1]),
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.m_eth2_tvalid (v2e_tvalid [2* 1 +: 1]),
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.m_eth2_tready (v2e_tready [2* 1 +: 1]),
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.s_eth3_tdata (e2v_tdata [3*CHDR_W +: CHDR_W]),
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.s_eth3_tlast (e2v_tlast [3* 1 +: 1]),
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.s_eth3_tvalid (e2v_tvalid [3* 1 +: 1]),
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.s_eth3_tready (e2v_tready [3* 1 +: 1]),
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.m_eth3_tdata (v2e_tdata [3*CHDR_W +: CHDR_W]),
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.m_eth3_tlast (v2e_tlast [3* 1 +: 1]),
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.m_eth3_tvalid (v2e_tvalid [3* 1 +: 1]),
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.m_eth3_tready (v2e_tready [3* 1 +: 1]),
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.s_eth4_tdata (e2v_tdata [4*CHDR_W +: CHDR_W]),
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.s_eth4_tlast (e2v_tlast [4* 1 +: 1]),
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.s_eth4_tvalid (e2v_tvalid [4* 1 +: 1]),
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.s_eth4_tready (e2v_tready [4* 1 +: 1]),
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.m_eth4_tdata (v2e_tdata [4*CHDR_W +: CHDR_W]),
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.m_eth4_tlast (v2e_tlast [4* 1 +: 1]),
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.m_eth4_tvalid (v2e_tvalid [4* 1 +: 1]),
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.m_eth4_tready (v2e_tready [4* 1 +: 1]),
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.s_eth0_tdata (e2v_tdata [0*ENET_W +: ENET0_W]),
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.s_eth0_tlast (e2v_tlast [0* 1 +: 1]),
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.s_eth0_tvalid (e2v_tvalid [0* 1 +: 1]),
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.s_eth0_tready (e2v_tready [0* 1 +: 1]),
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.m_eth0_tdata (v2e_tdata [0*ENET_W +: ENET0_W]),
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.m_eth0_tlast (v2e_tlast [0* 1 +: 1]),
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.m_eth0_tvalid (v2e_tvalid [0* 1 +: 1]),
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.m_eth0_tready (v2e_tready [0* 1 +: 1]),
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.s_eth1_tdata (e2v_tdata [1*ENET_W +: ENET1_W]),
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||||
.s_eth1_tlast (e2v_tlast [1* 1 +: 1]),
|
||||
.s_eth1_tvalid (e2v_tvalid [1* 1 +: 1]),
|
||||
.s_eth1_tready (e2v_tready [1* 1 +: 1]),
|
||||
.m_eth1_tdata (v2e_tdata [1*ENET_W +: ENET1_W]),
|
||||
.m_eth1_tlast (v2e_tlast [1* 1 +: 1]),
|
||||
.m_eth1_tvalid (v2e_tvalid [1* 1 +: 1]),
|
||||
.m_eth1_tready (v2e_tready [1* 1 +: 1]),
|
||||
.s_eth2_tdata (e2v_tdata [2*ENET_W +: ENET2_W]),
|
||||
.s_eth2_tlast (e2v_tlast [2* 1 +: 1]),
|
||||
.s_eth2_tvalid (e2v_tvalid [2* 1 +: 1]),
|
||||
.s_eth2_tready (e2v_tready [2* 1 +: 1]),
|
||||
.m_eth2_tdata (v2e_tdata [2*ENET_W +: ENET2_W]),
|
||||
.m_eth2_tlast (v2e_tlast [2* 1 +: 1]),
|
||||
.m_eth2_tvalid (v2e_tvalid [2* 1 +: 1]),
|
||||
.m_eth2_tready (v2e_tready [2* 1 +: 1]),
|
||||
.s_eth3_tdata (e2v_tdata [3*ENET_W +: ENET3_W]),
|
||||
.s_eth3_tlast (e2v_tlast [3* 1 +: 1]),
|
||||
.s_eth3_tvalid (e2v_tvalid [3* 1 +: 1]),
|
||||
.s_eth3_tready (e2v_tready [3* 1 +: 1]),
|
||||
.m_eth3_tdata (v2e_tdata [3*ENET_W +: ENET3_W]),
|
||||
.m_eth3_tlast (v2e_tlast [3* 1 +: 1]),
|
||||
.m_eth3_tvalid (v2e_tvalid [3* 1 +: 1]),
|
||||
.m_eth3_tready (v2e_tready [3* 1 +: 1]),
|
||||
.s_eth4_tdata (e2v_tdata [4*ENET_W +: ENET4_W]),
|
||||
.s_eth4_tlast (e2v_tlast [4* 1 +: 1]),
|
||||
.s_eth4_tvalid (e2v_tvalid [4* 1 +: 1]),
|
||||
.s_eth4_tready (e2v_tready [4* 1 +: 1]),
|
||||
.m_eth4_tdata (v2e_tdata [4*ENET_W +: ENET4_W]),
|
||||
.m_eth4_tlast (v2e_tlast [4* 1 +: 1]),
|
||||
.m_eth4_tvalid (v2e_tvalid [4* 1 +: 1]),
|
||||
.m_eth4_tready (v2e_tready [4* 1 +: 1]),
|
||||
.s_dma_tdata (dmai_tdata),
|
||||
.s_dma_tlast (dmai_tlast),
|
||||
.s_dma_tvalid (dmai_tvalid),
|
||||
|
||||
@@ -16,6 +16,7 @@
|
||||
// lanes. See x4xx_mgt_types.vh for possible values.
|
||||
// CPU_W : Width of CPU interface
|
||||
// CHDR_W : CHDR bus width
|
||||
// NET_CHDR_W : CHDR width used over the network connection
|
||||
// BYTE_MTU : Transport MTU in bytes
|
||||
// PORTNUM : Port number to distinguish multiple QSFP ports
|
||||
// NODE_INST : RFNoC transport adapter node instance for the first port
|
||||
@@ -33,6 +34,7 @@ module x4xx_qsfp_wrapper #(
|
||||
`MGT_Disabled},
|
||||
parameter CPU_W = 64,
|
||||
parameter CHDR_W = 64,
|
||||
parameter NET_CHDR_W = CHDR_W,
|
||||
parameter BYTE_MTU = $clog2(8*1024),
|
||||
parameter [ 7:0] PORTNUM = 8'd0,
|
||||
parameter NODE_INST = 0,
|
||||
@@ -450,7 +452,8 @@ module x4xx_qsfp_wrapper #(
|
||||
.PAUSE_EN (PAUSE_EN),
|
||||
.ENET_W (MGT_W),
|
||||
.CPU_W (CPU_W),
|
||||
.CHDR_W (CHDR_W)
|
||||
.CHDR_W (CHDR_W),
|
||||
.NET_CHDR_W (NET_CHDR_W)
|
||||
) eth_ipv4_interface_i (
|
||||
.bus_clk (bus_clk),
|
||||
.bus_rst (bus_rst),
|
||||
|
||||
@@ -14,7 +14,8 @@
|
||||
// PROTOCOL : Indicates the protocol to use for each of the 4 QSFP
|
||||
// lanes. See x4xx_mgt_types.vh for possible values.
|
||||
// CPU_W : Width of CPU interface
|
||||
// CHDR_W : CHDR bus width
|
||||
// CHDR_W : CHDR width used by RFNoC on the FPGA
|
||||
// NET_CHDR_W : CHDR width used over the network connection
|
||||
// BYTE_MTU : Transport MTU in bytes
|
||||
// PORTNUM : Port number to distinguish multiple QSFP ports
|
||||
// NODE_INST : RFNoC transport adapter node instance for the first port
|
||||
@@ -31,6 +32,7 @@ module x4xx_qsfp_wrapper_temp #(
|
||||
parameter PROTOCOL3 = `MGT_Disabled,
|
||||
parameter CPU_W = 64,
|
||||
parameter CHDR_W = 64,
|
||||
parameter NET_CHDR_W = CHDR_W,
|
||||
parameter BYTE_MTU = $clog2(8*1024),
|
||||
parameter [ 7:0] PORTNUM = 8'd0,
|
||||
parameter NODE_INST = 0,
|
||||
@@ -302,6 +304,7 @@ module x4xx_qsfp_wrapper_temp #(
|
||||
.PROTOCOL ({ PROTOCOL3, PROTOCOL2, PROTOCOL1, PROTOCOL0 }),
|
||||
.CPU_W (CPU_W),
|
||||
.CHDR_W (CHDR_W),
|
||||
.NET_CHDR_W (NET_CHDR_W),
|
||||
.BYTE_MTU (BYTE_MTU),
|
||||
.PORTNUM (PORTNUM),
|
||||
.NODE_INST (NODE_INST),
|
||||
|
||||
Reference in New Issue
Block a user