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cocotb_pro
| Author | SHA1 | Date | |
|---|---|---|---|
| 4dac1789c8 |
@ -12,8 +12,7 @@ module axi4l_reg_map #(
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axi4l_if.slave s_axil,
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input logic [N_REGS-1:0][31:0] reg_i,
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output logic [N_REGS-1:0][31:0] reg_o,
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output logic [N_REGS-1:0][31:0] reg_pulse
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output logic [N_REGS-1:0][31:0] reg_o
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);
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import axi_pkg::*;
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@ -106,7 +105,6 @@ module axi4l_reg_map #(
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rdata_q <= '0;
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reg_o <= REG_RST;
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end else begin
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reg_pulse <= '0;
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for (int r = 0; r < N_REGS; r++) begin
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for (int bit_idx = 0; bit_idx < 32; bit_idx++) begin
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if (reg_bit_mode_t'(REG_MODE[r][bit_idx]) == REG_BIT_W1S)
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@ -138,33 +136,12 @@ module axi4l_reg_map #(
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for (b = 0; b < 32; b = b + 1) begin
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if (wr_mask[b]) begin
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unique case (reg_bit_mode_t'(REG_MODE[wr_idx][b]))
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REG_BIT_RSVD: begin
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end
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REG_BIT_RO: begin
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bresp_q <= 2'b10;
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end
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REG_BIT_RW: begin
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rw_new[b] = wr_data32[b];
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end
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REG_BIT_W1S: begin
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if (wr_data32[b]) begin
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rw_new[b] = 1'b1;
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reg_pulse[wr_idx][b] <= 1'b1;
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end
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end
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REG_BIT_W1C: begin
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if (wr_data32[b]) begin
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rw_new[b] = 1'b0;
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reg_pulse[wr_idx][b] <= 1'b1;
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end
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end
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default: begin
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end
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REG_BIT_RSVD: begin end
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REG_BIT_RO : begin bresp_q <= 2'b10; end
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REG_BIT_RW : rw_new[b] = wr_data32[b];
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REG_BIT_W1S : if (wr_data32[b]) rw_new[b] = 1'b1;
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REG_BIT_W1C : if (wr_data32[b]) rw_new[b] = 1'b0;
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default : begin end
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endcase
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end
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end
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@ -197,7 +174,6 @@ module axi4l_reg_map #(
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REG_BIT_W1C : rd_word[b] = reg_o[rd_idx][b];
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default : rd_word[b] = 1'b0;
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endcase
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end
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end
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@ -1,64 +1,37 @@
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package dma_axil_reg_map_pkg;
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localparam int unsigned DMA_AXIL_REG_MAP_N_REGS = 6;
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localparam int unsigned DMA_WRITE_DESC_CONTROL_REG = 0;
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localparam int unsigned DMA_WRITE_DESC_ADDR_REG = 1;
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localparam int unsigned DMA_WRITE_DESC_LEN_REG = 2;
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localparam int unsigned DMA_READ_DESC_CONTROL_REG = 3;
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localparam int unsigned DMA_READ_DESC_ADDR_REG = 4;
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localparam int unsigned DMA_READ_DESC_LEN_REG = 5;
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localparam int unsigned DMA_AXIL_REG_MAP_N_REGS = 4;
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localparam logic [2:0] REG_BIT_RSVD = 3'd0;
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localparam logic [2:0] REG_BIT_RO = 3'd1;
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localparam logic [2:0] REG_BIT_RW = 3'd2;
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localparam logic [2:0] REG_BIT_W1S = 3'd3;
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localparam logic [2:0] REG_BIT_W1C = 3'd4;
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typedef logic [DMA_AXIL_REG_MAP_N_REGS-1:0][31:0][2:0] reg_mode_map_t;
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localparam DMA_WRITE_DESC_CONTROL_REG = 0;
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localparam DMA_WRITE_DESC_ADDR_REG = 1;
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localparam DMA_WRITE_DESC_LEN_REG = 2;
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localparam DMA_READ_DESC_CONTROL_REG = 3;
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localparam DMA_READ_DESC_ADDR_REG = 4;
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localparam DMA_READ_DESC_LEN_REG = 5;
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function automatic reg_mode_map_t make_dma_reg_mode();
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reg_mode_map_t mode;
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localparam logic [DMA_AXIL_REG_MAP_N_REGS-1:0][31:0][2:0] DMA_AXIL_REG_MAP_REG_MODE = '{
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mode = '0;
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'{REG_BIT_RO, REG_BIT_W1S, default: REG_BIT_RSVD},
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'{32{REG_BIT_RW}, default: REG_BIT_RSVD},
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'{32{REG_BIT_RW}, default: REG_BIT_RSVD},
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'{REG_BIT_RO, REG_BIT_W1S, default: REG_BIT_RSVD},
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'{32{REG_BIT_RW}, default: REG_BIT_RSVD},
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'{32{REG_BIT_RW}, default: REG_BIT_RSVD}
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};
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// По умолчанию всё reserved
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for (int reg_idx = 0; reg_idx < DMA_AXIL_REG_MAP_N_REGS; reg_idx++) begin
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for (int bit_idx = 0; bit_idx < 32; bit_idx++) begin
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mode[reg_idx][bit_idx] = REG_BIT_RSVD;
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end
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end
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// WRITE CONTROL
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mode[DMA_WRITE_DESC_CONTROL_REG][0] = REG_BIT_RO;
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mode[DMA_WRITE_DESC_CONTROL_REG][1] = REG_BIT_W1S;
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// WRITE ADDR
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for (int bit_idx = 0; bit_idx < 32; bit_idx++) begin
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mode[DMA_WRITE_DESC_ADDR_REG][bit_idx] = REG_BIT_RW;
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end
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// WRITE LEN
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for (int bit_idx = 0; bit_idx < 32; bit_idx++) begin
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mode[DMA_WRITE_DESC_LEN_REG][bit_idx] = REG_BIT_RW;
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end
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// READ CONTROL
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mode[DMA_READ_DESC_CONTROL_REG][0] = REG_BIT_RO;
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mode[DMA_READ_DESC_CONTROL_REG][1] = REG_BIT_W1S;
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// READ ADDR
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for (int bit_idx = 0; bit_idx < 32; bit_idx++) begin
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mode[DMA_READ_DESC_ADDR_REG][bit_idx] = REG_BIT_RW;
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end
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// READ LEN
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for (int bit_idx = 0; bit_idx < 32; bit_idx++) begin
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mode[DMA_READ_DESC_LEN_REG][bit_idx] = REG_BIT_RW;
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end
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return mode;
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endfunction
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localparam reg_mode_map_t DMA_AXIL_REG_MAP_REG_MODE = make_dma_reg_mode();
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localparam logic [DMA_AXIL_REG_MAP_N_REGS-1:0][31:0] DMA_AXIL_REG_MAP_REG_RST = '{
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32'h0000_0000,
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32'h0000_0000,
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32'h0000_0000,
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32'h0000_0000,
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32'h0000_0000,
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32'h0000_0000
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};
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endpackage
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@ -2,7 +2,7 @@ module axi_crossbar_wrapper #(
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parameter int SLAVE_QTY = 3,
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parameter int MASTER_QTY = 3,
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parameter int ADDR_WIDTH = 32,
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parameter int DATA_WIDTH = 32,
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parameter int DATA_WIDTH = 32
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parameter int STRB_WIDTH = (DATA_WIDTH/8)
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)(
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input wire clk,
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@ -13,7 +13,7 @@ interface axi4_if #(
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typedef logic [DATA_W/8-1:0] strb_t;
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typedef logic [ID_W-1:0] id_t;
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typedef logic [USER_W-1:0] user_t;
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`AXI4_TYPEDEF_ALL(axi, addr_t, data_t, strb_t, id_t, user_t);
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`AXI4_TYPEDEF_ALL(axi, addr_t, data_t, strb_t, id_t, user_t)
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axi_req_t req;
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axi_resp_t resp;
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modport master (input aclk, aresetn, output req, input resp);
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@ -34,7 +34,7 @@ interface axi4l_if #(
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typedef logic [DATA_W-1:0] data_t;
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typedef logic [DATA_W/8-1:0] strb_t;
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typedef logic [USER_W-1:0] user_t;
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`AXI4L_TYPEDEF_ALL(axil, addr_t, data_t, strb_t, user_t);
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`AXI4L_TYPEDEF_ALL(axil, addr_t, data_t, strb_t, user_t)
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axil_req_t req;
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axil_resp_t resp;
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modport master (input aclk, aresetn, output req, input resp);
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@ -1,6 +1,6 @@
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module axil_cdc_wrapper #(
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parameter int ADDR_WIDTH = 32,
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parameter int DATA_WIDTH = 32
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parameter int ADDR_WIDTH = 32
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parameter int DATA_WIDTH = 32,
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)(
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input wire s_clk,
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input wire s_rst,
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@ -83,8 +83,8 @@ module axil_cdc_wrapper #(
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);
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axil_cdc #(
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.ADDR_WIDTH (ADDR_WIDTH),
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.DATA_WIDTH (DATA_WIDTH)
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.ADDR_WIDTH (ADDR_WIDTH)
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.DATA_WIDTH (DATA_WIDTH),
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) i_axil_cdc (
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.s_clk (s_clk),
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.s_rst (s_rst),
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430
axi/tb/axi_cocotb_loopback_test/axi4_proxy.py
Normal file
430
axi/tb/axi_cocotb_loopback_test/axi4_proxy.py
Normal file
@ -0,0 +1,430 @@
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# proxy to match cocotb and custom axi4_if
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import logging
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from cocotb.types import LogicArray
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from cocotbext.axi.axi_channels import (
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AxiAWBus,
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AxiWBus,
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AxiBBus,
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AxiARBus,
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AxiRBus,
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AxiBus,
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)
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def install_cocotbext_axi_slice_compat():
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"""
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cocotbext-axi StreamMonitor uses RisingEdge(self.valid/self.ready).
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That works only for real cocotb LogicObject handles.
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Our SliceSignal is a Python proxy over packed req/resp vector, so
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RisingEdge(SliceSignal) fails in cocotb 2.x.
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This patch makes StreamMonitor wake on signal.value_change instead.
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For SliceSignal this should return parent packed vector value_change.
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"""
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# this sucks...
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from cocotbext.axi import stream as axi_stream
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async def _run_valid_monitor_value_change(self):
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while True:
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await self.valid.value_change
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self.wake_event.set()
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async def _run_ready_monitor_value_change(self):
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while True:
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await self.ready.value_change
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self.wake_event.set()
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axi_stream.StreamMonitor._run_valid_monitor = _run_valid_monitor_value_change
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axi_stream.StreamMonitor._run_ready_monitor = _run_ready_monitor_value_change
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def _safe_int(value) -> int:
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try:
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return int(value)
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except Exception:
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s = str(value).upper()
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bits = []
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for ch in s:
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if ch in "01":
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bits.append(ch)
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elif ch in "XZUW-":
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bits.append("0")
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if not bits:
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return 0
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return int("".join(bits), 2)
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def _logic_array(value: int, width: int):
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value &= (1 << width) - 1
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return LogicArray.from_unsigned(value, width)
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def _param_int(obj, name: str, override):
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if override is not None:
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return int(override)
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p = getattr(obj, name)
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try:
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return int(p)
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except Exception:
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pass
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try:
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return int(p.value)
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except Exception:
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pass
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raise RuntimeError(f"Cannot read parameter {name} from {obj!r}")
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def _packed_offsets(fields):
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"""
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de-construct SV signal order.
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"""
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total = sum(width for _, width in fields)
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pos = total
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offsets = {}
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for name, width in fields:
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pos -= width
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offsets[name] = (pos, width)
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return total, offsets
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class PackedVector:
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def __init__(self, handle, name=None):
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self.handle = handle
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self.name = name or getattr(handle, "_path", repr(handle))
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self.width = len(handle)
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self.mask = (1 << self.width) - 1
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self.shadow = _safe_int(handle.value) & self.mask
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self.dirty = False
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def read(self, lo: int, width: int) -> int:
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src = self.shadow if self.dirty else (
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_safe_int(self.handle.value) & self.mask)
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return (src >> lo) & ((1 << width) - 1)
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def write(self, lo: int, width: int, value, immediate=False):
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value = _safe_int(value)
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field_mask = ((1 << width) - 1) << lo
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self.shadow &= ~field_mask
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self.shadow |= (value << lo) & field_mask
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self.shadow &= self.mask
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self.dirty = True
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v = _logic_array(self.shadow, self.width)
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if immediate:
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self.handle.setimmediatevalue(v)
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else:
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self.handle.value = v
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class SliceSignal:
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"""
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cocotbext-axi proxy
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looks like:
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sig.value
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sig.value = ...
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sig.setimmediatevalue(...)
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len(sig)
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"""
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def __init__(self, name: str, parent: PackedVector, lo: int, width: int):
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self._name = name
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self._path = name
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self._log = logging.getLogger(f"cocotb.{name}")
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self.parent = parent
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self.lo = lo
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self.width = width
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def __len__(self):
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return self.width
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def __repr__(self):
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return f"<SliceSignal {self._path}[{self.lo + self.width - 1}:{self.lo}]>"
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@property
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def value(self):
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return _logic_array(self.parent.read(self.lo, self.width), self.width)
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@value.setter
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def value(self, value):
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self.parent.write(self.lo, self.width, value, immediate=False)
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def setimmediatevalue(self, value):
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self.parent.write(self.lo, self.width, value, immediate=True)
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def set(self, value):
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self.value = value
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def get(self):
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return self.value
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@property
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def value_change(self):
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# dirty
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return self.parent.handle.value_change
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class ProxyEntity:
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def __init__(self, name: str, **signals):
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self._name = name
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self._path = name
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self._log = logging.getLogger(f"cocotb.{name}")
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self.__dict__.update(signals)
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def __dir__(self):
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return list(self.__dict__.keys())
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def _sig(name, parent, base_lo, layout, field):
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lo, width = layout[field]
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return SliceSignal(name, parent, base_lo + lo, width)
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def axi4_bus_from_packed_if(
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iface,
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name="axi",
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*,
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addr_width=None,
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data_width=None,
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id_width=None,
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user_width=None,
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):
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"""
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Build cocotbext-axi AxiBus from custom packed axi4_if.
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iface should be instance axi4_if:
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dut.axi_in
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dut.axi_out
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example:
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master = AxiMaster(
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axi4_bus_from_packed_if(dut.axi_in, "s_axi"),
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dut.clk,
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dut.rst,
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)
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ram = AxiRam(
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axi4_bus_from_packed_if(dut.axi_out, "m_axi"),
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dut.clk,
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dut.rst,
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size=2**20,
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)
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"""
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ADDR_W = _param_int(iface, "ADDR_W", addr_width)
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DATA_W = _param_int(iface, "DATA_W", data_width)
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ID_W = _param_int(iface, "ID_W", id_width)
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USER_W = _param_int(iface, "USER_W", user_width)
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if DATA_W % 8 != 0:
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raise ValueError(f"AXI DATA_W must be divisible by 8, got {DATA_W}")
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STRB_W = DATA_W // 8
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aw_total, aw_layout = _packed_offsets([
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("id", ID_W),
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("addr", ADDR_W),
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("len", 8),
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("size", 3),
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("burst", 2),
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("lock", 1),
|
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("cache", 4),
|
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("prot", 3),
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("qos", 4),
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("region", 4),
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("user", USER_W),
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("valid", 1),
|
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])
|
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|
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w_total, w_layout = _packed_offsets([
|
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("data", DATA_W),
|
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("strb", STRB_W),
|
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("last", 1),
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||||
("user", USER_W),
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("valid", 1),
|
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])
|
||||
|
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b_total, b_layout = _packed_offsets([
|
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("id", ID_W),
|
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("resp", 2),
|
||||
("user", USER_W),
|
||||
("valid", 1),
|
||||
])
|
||||
|
||||
ar_total, ar_layout = _packed_offsets([
|
||||
("id", ID_W),
|
||||
("addr", ADDR_W),
|
||||
("len", 8),
|
||||
("size", 3),
|
||||
("burst", 2),
|
||||
("lock", 1),
|
||||
("cache", 4),
|
||||
("prot", 3),
|
||||
("qos", 4),
|
||||
("region", 4),
|
||||
("user", USER_W),
|
||||
("valid", 1),
|
||||
])
|
||||
|
||||
r_total, r_layout = _packed_offsets([
|
||||
("id", ID_W),
|
||||
("data", DATA_W),
|
||||
("resp", 2),
|
||||
("last", 1),
|
||||
("user", USER_W),
|
||||
("valid", 1),
|
||||
])
|
||||
|
||||
req_total, req_layout = _packed_offsets([
|
||||
("aw", aw_total),
|
||||
("w", w_total),
|
||||
("b_ready", 1),
|
||||
("ar", ar_total),
|
||||
("r_ready", 1),
|
||||
])
|
||||
|
||||
resp_total, resp_layout = _packed_offsets([
|
||||
("aw_ready", 1),
|
||||
("w_ready", 1),
|
||||
("b", b_total),
|
||||
("ar_ready", 1),
|
||||
("r", r_total),
|
||||
])
|
||||
|
||||
req = PackedVector(iface.req, f"{name}.req")
|
||||
resp = PackedVector(iface.resp, f"{name}.resp")
|
||||
|
||||
if req_total != req.width:
|
||||
raise RuntimeError(
|
||||
f"{name}.req layout mismatch: calculated {req_total} bits, "
|
||||
f"simulator has {req.width} bits"
|
||||
)
|
||||
|
||||
if resp_total != resp.width:
|
||||
raise RuntimeError(
|
||||
f"{name}.resp layout mismatch: calculated {resp_total} bits, "
|
||||
f"simulator has {resp.width} bits"
|
||||
)
|
||||
|
||||
aw_lo, _ = req_layout["aw"]
|
||||
w_lo, _ = req_layout["w"]
|
||||
ar_lo, _ = req_layout["ar"]
|
||||
|
||||
b_lo, _ = resp_layout["b"]
|
||||
r_lo, _ = resp_layout["r"]
|
||||
|
||||
aw = AxiAWBus.from_entity(ProxyEntity(
|
||||
f"{name}_aw",
|
||||
|
||||
awid=_sig(f"{name}_awid", req, aw_lo, aw_layout, "id"),
|
||||
awaddr=_sig(f"{name}_awaddr", req, aw_lo, aw_layout, "addr"),
|
||||
awlen=_sig(f"{name}_awlen", req, aw_lo, aw_layout, "len"),
|
||||
awsize=_sig(f"{name}_awsize", req, aw_lo, aw_layout, "size"),
|
||||
awburst=_sig(f"{name}_awburst", req, aw_lo, aw_layout, "burst"),
|
||||
awlock=_sig(f"{name}_awlock", req, aw_lo, aw_layout, "lock"),
|
||||
awcache=_sig(f"{name}_awcache", req, aw_lo, aw_layout, "cache"),
|
||||
awprot=_sig(f"{name}_awprot", req, aw_lo, aw_layout, "prot"),
|
||||
awqos=_sig(f"{name}_awqos", req, aw_lo, aw_layout, "qos"),
|
||||
awregion=_sig(f"{name}_awregion", req, aw_lo, aw_layout, "region"),
|
||||
awuser=_sig(f"{name}_awuser", req, aw_lo, aw_layout, "user"),
|
||||
awvalid=_sig(f"{name}_awvalid", req, aw_lo, aw_layout, "valid"),
|
||||
|
||||
awready=SliceSignal(
|
||||
f"{name}_awready",
|
||||
resp,
|
||||
*resp_layout["aw_ready"],
|
||||
),
|
||||
))
|
||||
|
||||
w = AxiWBus.from_entity(ProxyEntity(
|
||||
f"{name}_w",
|
||||
|
||||
wdata=_sig(f"{name}_wdata", req, w_lo, w_layout, "data"),
|
||||
wstrb=_sig(f"{name}_wstrb", req, w_lo, w_layout, "strb"),
|
||||
wlast=_sig(f"{name}_wlast", req, w_lo, w_layout, "last"),
|
||||
wuser=_sig(f"{name}_wuser", req, w_lo, w_layout, "user"),
|
||||
wvalid=_sig(f"{name}_wvalid", req, w_lo, w_layout, "valid"),
|
||||
|
||||
wready=SliceSignal(
|
||||
f"{name}_wready",
|
||||
resp,
|
||||
*resp_layout["w_ready"],
|
||||
),
|
||||
))
|
||||
|
||||
b = AxiBBus.from_entity(ProxyEntity(
|
||||
f"{name}_b",
|
||||
|
||||
bid=_sig(f"{name}_bid", resp, b_lo, b_layout, "id"),
|
||||
bresp=_sig(f"{name}_bresp", resp, b_lo, b_layout, "resp"),
|
||||
buser=_sig(f"{name}_buser", resp, b_lo, b_layout, "user"),
|
||||
bvalid=_sig(f"{name}_bvalid", resp, b_lo, b_layout, "valid"),
|
||||
|
||||
bready=SliceSignal(
|
||||
f"{name}_bready",
|
||||
req,
|
||||
*req_layout["b_ready"],
|
||||
),
|
||||
))
|
||||
|
||||
ar = AxiARBus.from_entity(ProxyEntity(
|
||||
f"{name}_ar",
|
||||
|
||||
arid=_sig(f"{name}_arid", req, ar_lo, ar_layout, "id"),
|
||||
araddr=_sig(f"{name}_araddr", req, ar_lo, ar_layout, "addr"),
|
||||
arlen=_sig(f"{name}_arlen", req, ar_lo, ar_layout, "len"),
|
||||
arsize=_sig(f"{name}_arsize", req, ar_lo, ar_layout, "size"),
|
||||
arburst=_sig(f"{name}_arburst", req, ar_lo, ar_layout, "burst"),
|
||||
arlock=_sig(f"{name}_arlock", req, ar_lo, ar_layout, "lock"),
|
||||
arcache=_sig(f"{name}_arcache", req, ar_lo, ar_layout, "cache"),
|
||||
arprot=_sig(f"{name}_arprot", req, ar_lo, ar_layout, "prot"),
|
||||
arqos=_sig(f"{name}_arqos", req, ar_lo, ar_layout, "qos"),
|
||||
arregion=_sig(f"{name}_arregion", req, ar_lo, ar_layout, "region"),
|
||||
aruser=_sig(f"{name}_aruser", req, ar_lo, ar_layout, "user"),
|
||||
arvalid=_sig(f"{name}_arvalid", req, ar_lo, ar_layout, "valid"),
|
||||
|
||||
arready=SliceSignal(
|
||||
f"{name}_arready",
|
||||
resp,
|
||||
*resp_layout["ar_ready"],
|
||||
),
|
||||
))
|
||||
|
||||
r = AxiRBus.from_entity(ProxyEntity(
|
||||
f"{name}_r",
|
||||
|
||||
rid=_sig(f"{name}_rid", resp, r_lo, r_layout, "id"),
|
||||
rdata=_sig(f"{name}_rdata", resp, r_lo, r_layout, "data"),
|
||||
rresp=_sig(f"{name}_rresp", resp, r_lo, r_layout, "resp"),
|
||||
rlast=_sig(f"{name}_rlast", resp, r_lo, r_layout, "last"),
|
||||
ruser=_sig(f"{name}_ruser", resp, r_lo, r_layout, "user"),
|
||||
rvalid=_sig(f"{name}_rvalid", resp, r_lo, r_layout, "valid"),
|
||||
|
||||
rready=SliceSignal(
|
||||
f"{name}_rready",
|
||||
req,
|
||||
*req_layout["r_ready"],
|
||||
),
|
||||
))
|
||||
|
||||
return AxiBus.from_channels(aw, w, b, ar, r)
|
||||
@ -1,113 +1,11 @@
|
||||
`timescale 1ns/1ps
|
||||
|
||||
module tb_axi4_loopback #(
|
||||
parameter int unsigned ADDR_W = 32,
|
||||
parameter int unsigned DATA_W = 64,
|
||||
parameter int unsigned ID_W = 4,
|
||||
parameter int unsigned USER_W = 1
|
||||
)(
|
||||
input logic clk,
|
||||
input logic rst,
|
||||
|
||||
// slave-side flat AXI port (cocotb driven)
|
||||
input logic [ID_W-1:0] s_axi_awid,
|
||||
input logic [ADDR_W-1:0] s_axi_awaddr,
|
||||
input logic [7:0] s_axi_awlen,
|
||||
input logic [2:0] s_axi_awsize,
|
||||
input logic [1:0] s_axi_awburst,
|
||||
input logic s_axi_awlock,
|
||||
input logic [3:0] s_axi_awcache,
|
||||
input logic [2:0] s_axi_awprot,
|
||||
input logic [3:0] s_axi_awqos,
|
||||
input logic [3:0] s_axi_awregion,
|
||||
input logic [USER_W-1:0] s_axi_awuser,
|
||||
input logic s_axi_awvalid,
|
||||
output logic s_axi_awready,
|
||||
|
||||
input logic [DATA_W-1:0] s_axi_wdata,
|
||||
input logic [DATA_W/8-1:0] s_axi_wstrb,
|
||||
input logic s_axi_wlast,
|
||||
input logic [USER_W-1:0] s_axi_wuser,
|
||||
input logic s_axi_wvalid,
|
||||
output logic s_axi_wready,
|
||||
|
||||
output logic [ID_W-1:0] s_axi_bid,
|
||||
output logic [1:0] s_axi_bresp,
|
||||
output logic [USER_W-1:0] s_axi_buser,
|
||||
output logic s_axi_bvalid,
|
||||
input logic s_axi_bready,
|
||||
|
||||
input logic [ID_W-1:0] s_axi_arid,
|
||||
input logic [ADDR_W-1:0] s_axi_araddr,
|
||||
input logic [7:0] s_axi_arlen,
|
||||
input logic [2:0] s_axi_arsize,
|
||||
input logic [1:0] s_axi_arburst,
|
||||
input logic s_axi_arlock,
|
||||
input logic [3:0] s_axi_arcache,
|
||||
input logic [2:0] s_axi_arprot,
|
||||
input logic [3:0] s_axi_arqos,
|
||||
input logic [3:0] s_axi_arregion,
|
||||
input logic [USER_W-1:0] s_axi_aruser,
|
||||
input logic s_axi_arvalid,
|
||||
output logic s_axi_arready,
|
||||
|
||||
output logic [ID_W-1:0] s_axi_rid,
|
||||
output logic [DATA_W-1:0] s_axi_rdata,
|
||||
output logic [1:0] s_axi_rresp,
|
||||
output logic s_axi_rlast,
|
||||
output logic [USER_W-1:0] s_axi_ruser,
|
||||
output logic s_axi_rvalid,
|
||||
input logic s_axi_rready,
|
||||
|
||||
// master-side flat AXI port for coco-tb
|
||||
output logic [ID_W-1:0] m_axi_awid,
|
||||
output logic [ADDR_W-1:0] m_axi_awaddr,
|
||||
output logic [7:0] m_axi_awlen,
|
||||
output logic [2:0] m_axi_awsize,
|
||||
output logic [1:0] m_axi_awburst,
|
||||
output logic m_axi_awlock,
|
||||
output logic [3:0] m_axi_awcache,
|
||||
output logic [2:0] m_axi_awprot,
|
||||
output logic [3:0] m_axi_awqos,
|
||||
output logic [3:0] m_axi_awregion,
|
||||
output logic [USER_W-1:0] m_axi_awuser,
|
||||
output logic m_axi_awvalid,
|
||||
input logic m_axi_awready,
|
||||
|
||||
output logic [DATA_W-1:0] m_axi_wdata,
|
||||
output logic [DATA_W/8-1:0] m_axi_wstrb,
|
||||
output logic m_axi_wlast,
|
||||
output logic [USER_W-1:0] m_axi_wuser,
|
||||
output logic m_axi_wvalid,
|
||||
input logic m_axi_wready,
|
||||
|
||||
input logic [ID_W-1:0] m_axi_bid,
|
||||
input logic [1:0] m_axi_bresp,
|
||||
input logic [USER_W-1:0] m_axi_buser,
|
||||
input logic m_axi_bvalid,
|
||||
output logic m_axi_bready,
|
||||
|
||||
output logic [ID_W-1:0] m_axi_arid,
|
||||
output logic [ADDR_W-1:0] m_axi_araddr,
|
||||
output logic [7:0] m_axi_arlen,
|
||||
output logic [2:0] m_axi_arsize,
|
||||
output logic [1:0] m_axi_arburst,
|
||||
output logic m_axi_arlock,
|
||||
output logic [3:0] m_axi_arcache,
|
||||
output logic [2:0] m_axi_arprot,
|
||||
output logic [3:0] m_axi_arqos,
|
||||
output logic [3:0] m_axi_arregion,
|
||||
output logic [USER_W-1:0] m_axi_aruser,
|
||||
output logic m_axi_arvalid,
|
||||
input logic m_axi_arready,
|
||||
|
||||
input logic [ID_W-1:0] m_axi_rid,
|
||||
input logic [DATA_W-1:0] m_axi_rdata,
|
||||
input logic [1:0] m_axi_rresp,
|
||||
input logic m_axi_rlast,
|
||||
input logic [USER_W-1:0] m_axi_ruser,
|
||||
input logic m_axi_rvalid,
|
||||
output logic m_axi_rready
|
||||
input logic clk,
|
||||
input logic rst
|
||||
);
|
||||
|
||||
logic aresetn;
|
||||
@ -133,120 +31,9 @@ module tb_axi4_loopback #(
|
||||
.aresetn(aresetn)
|
||||
);
|
||||
|
||||
axi4_flat_to_if #(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.ID_W(ID_W),
|
||||
.USER_W(USER_W)
|
||||
) u_flat_to_if (
|
||||
.s_axi_awid (s_axi_awid),
|
||||
.s_axi_awaddr (s_axi_awaddr),
|
||||
.s_axi_awlen (s_axi_awlen),
|
||||
.s_axi_awsize (s_axi_awsize),
|
||||
.s_axi_awburst (s_axi_awburst),
|
||||
.s_axi_awlock (s_axi_awlock),
|
||||
.s_axi_awcache (s_axi_awcache),
|
||||
.s_axi_awprot (s_axi_awprot),
|
||||
.s_axi_awqos (s_axi_awqos),
|
||||
.s_axi_awregion (s_axi_awregion),
|
||||
.s_axi_awuser (s_axi_awuser),
|
||||
.s_axi_awvalid (s_axi_awvalid),
|
||||
.s_axi_awready (s_axi_awready),
|
||||
.s_axi_wdata (s_axi_wdata),
|
||||
.s_axi_wstrb (s_axi_wstrb),
|
||||
.s_axi_wlast (s_axi_wlast),
|
||||
.s_axi_wuser (s_axi_wuser),
|
||||
.s_axi_wvalid (s_axi_wvalid),
|
||||
.s_axi_wready (s_axi_wready),
|
||||
.s_axi_bid (s_axi_bid),
|
||||
.s_axi_bresp (s_axi_bresp),
|
||||
.s_axi_buser (s_axi_buser),
|
||||
.s_axi_bvalid (s_axi_bvalid),
|
||||
.s_axi_bready (s_axi_bready),
|
||||
.s_axi_arid (s_axi_arid),
|
||||
.s_axi_araddr (s_axi_araddr),
|
||||
.s_axi_arlen (s_axi_arlen),
|
||||
.s_axi_arsize (s_axi_arsize),
|
||||
.s_axi_arburst (s_axi_arburst),
|
||||
.s_axi_arlock (s_axi_arlock),
|
||||
.s_axi_arcache (s_axi_arcache),
|
||||
.s_axi_arprot (s_axi_arprot),
|
||||
.s_axi_arqos (s_axi_arqos),
|
||||
.s_axi_arregion (s_axi_arregion),
|
||||
.s_axi_aruser (s_axi_aruser),
|
||||
.s_axi_arvalid (s_axi_arvalid),
|
||||
.s_axi_arready (s_axi_arready),
|
||||
.s_axi_rid (s_axi_rid),
|
||||
.s_axi_rdata (s_axi_rdata),
|
||||
.s_axi_rresp (s_axi_rresp),
|
||||
.s_axi_rlast (s_axi_rlast),
|
||||
.s_axi_ruser (s_axi_ruser),
|
||||
.s_axi_rvalid (s_axi_rvalid),
|
||||
.s_axi_rready (s_axi_rready),
|
||||
.m_axi (axi_in)
|
||||
);
|
||||
|
||||
axi4_loopback #(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.ID_W(ID_W),
|
||||
.USER_W(USER_W)
|
||||
) dut (
|
||||
axi4_loopback dut (
|
||||
.s_axi(axi_in),
|
||||
.m_axi(axi_out)
|
||||
);
|
||||
|
||||
axi4_if_to_flat #(
|
||||
.ADDR_W(ADDR_W),
|
||||
.DATA_W(DATA_W),
|
||||
.ID_W(ID_W),
|
||||
.USER_W(USER_W)
|
||||
) u_if_to_flat (
|
||||
.s_axi (axi_out),
|
||||
.m_axi_awid (m_axi_awid),
|
||||
.m_axi_awaddr (m_axi_awaddr),
|
||||
.m_axi_awlen (m_axi_awlen),
|
||||
.m_axi_awsize (m_axi_awsize),
|
||||
.m_axi_awburst (m_axi_awburst),
|
||||
.m_axi_awlock (m_axi_awlock),
|
||||
.m_axi_awcache (m_axi_awcache),
|
||||
.m_axi_awprot (m_axi_awprot),
|
||||
.m_axi_awqos (m_axi_awqos),
|
||||
.m_axi_awregion (m_axi_awregion),
|
||||
.m_axi_awuser (m_axi_awuser),
|
||||
.m_axi_awvalid (m_axi_awvalid),
|
||||
.m_axi_awready (m_axi_awready),
|
||||
.m_axi_wdata (m_axi_wdata),
|
||||
.m_axi_wstrb (m_axi_wstrb),
|
||||
.m_axi_wlast (m_axi_wlast),
|
||||
.m_axi_wuser (m_axi_wuser),
|
||||
.m_axi_wvalid (m_axi_wvalid),
|
||||
.m_axi_wready (m_axi_wready),
|
||||
.m_axi_bid (m_axi_bid),
|
||||
.m_axi_bresp (m_axi_bresp),
|
||||
.m_axi_buser (m_axi_buser),
|
||||
.m_axi_bvalid (m_axi_bvalid),
|
||||
.m_axi_bready (m_axi_bready),
|
||||
.m_axi_arid (m_axi_arid),
|
||||
.m_axi_araddr (m_axi_araddr),
|
||||
.m_axi_arlen (m_axi_arlen),
|
||||
.m_axi_arsize (m_axi_arsize),
|
||||
.m_axi_arburst (m_axi_arburst),
|
||||
.m_axi_arlock (m_axi_arlock),
|
||||
.m_axi_arcache (m_axi_arcache),
|
||||
.m_axi_arprot (m_axi_arprot),
|
||||
.m_axi_arqos (m_axi_arqos),
|
||||
.m_axi_arregion (m_axi_arregion),
|
||||
.m_axi_aruser (m_axi_aruser),
|
||||
.m_axi_arvalid (m_axi_arvalid),
|
||||
.m_axi_arready (m_axi_arready),
|
||||
.m_axi_rid (m_axi_rid),
|
||||
.m_axi_rdata (m_axi_rdata),
|
||||
.m_axi_rresp (m_axi_rresp),
|
||||
.m_axi_rlast (m_axi_rlast),
|
||||
.m_axi_ruser (m_axi_ruser),
|
||||
.m_axi_rvalid (m_axi_rvalid),
|
||||
.m_axi_rready (m_axi_rready)
|
||||
);
|
||||
|
||||
endmodule
|
||||
@ -3,7 +3,12 @@ import itertools
|
||||
import cocotb
|
||||
from cocotb.clock import Clock
|
||||
from cocotb.triggers import RisingEdge, Timer
|
||||
from cocotbext.axi import AxiBus, AxiMaster, AxiRam
|
||||
from cocotbext.axi import AxiMaster, AxiRam
|
||||
|
||||
from cocotbext.axi import AxiMaster, AxiRam
|
||||
from axi4_proxy import axi4_bus_from_packed_if, install_cocotbext_axi_slice_compat
|
||||
|
||||
install_cocotbext_axi_slice_compat()
|
||||
|
||||
|
||||
class TB:
|
||||
@ -12,21 +17,28 @@ class TB:
|
||||
|
||||
cocotb.start_soon(Clock(dut.clk, 10, units="ns").start())
|
||||
|
||||
# Forencich-style connection:
|
||||
# s_axi: cocotb AXI master -> flat_to_if -> compact AXI interface
|
||||
# m_axi: compact AXI interface -> if_to_flat -> cocotb AXI RAM
|
||||
self.master = AxiMaster(AxiBus.from_prefix(
|
||||
dut, "s_axi"), dut.clk, dut.rst)
|
||||
self.ram = AxiRam(AxiBus.from_prefix(dut, "m_axi"),
|
||||
dut.clk, dut.rst, size=2**20)
|
||||
self.master = AxiMaster(
|
||||
axi4_bus_from_packed_if(dut.axi_in, "s_axi"),
|
||||
dut.clk,
|
||||
dut.rst,
|
||||
)
|
||||
|
||||
self.ram = AxiRam(
|
||||
axi4_bus_from_packed_if(dut.axi_out, "m_axi"),
|
||||
dut.clk,
|
||||
dut.rst,
|
||||
size=2**20,
|
||||
)
|
||||
|
||||
async def reset(self):
|
||||
self.dut.rst.setimmediatevalue(0)
|
||||
await RisingEdge(self.dut.clk)
|
||||
await RisingEdge(self.dut.clk)
|
||||
|
||||
self.dut.rst.value = 1
|
||||
await RisingEdge(self.dut.clk)
|
||||
await RisingEdge(self.dut.clk)
|
||||
|
||||
self.dut.rst.value = 0
|
||||
await RisingEdge(self.dut.clk)
|
||||
await RisingEdge(self.dut.clk)
|
||||
@ -36,6 +48,13 @@ def cycle_pause():
|
||||
return itertools.cycle([1, 1, 1, 0])
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def inspect_axi_if(dut):
|
||||
dut._log.info("axi_in fields: %s", dir(dut.axi_in))
|
||||
dut._log.info("axi_in.req fields: %s", dir(dut.axi_in.req))
|
||||
dut._log.info("axi_in.resp fields: %s", dir(dut.axi_in.resp))
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def run_basic_write_read_test(dut):
|
||||
# simple loopback test..
|
||||
|
||||
@ -92,7 +92,6 @@ module tb_axi4l_reg_map;
|
||||
|
||||
logic [N_REGS-1:0][31:0] reg_i;
|
||||
logic [N_REGS-1:0][31:0] reg_o;
|
||||
logic [N_REGS-1:0][31:0] reg_pulse;
|
||||
|
||||
// debug probes visible from cocotb. they are useful for checking W1S pulse-like behavior
|
||||
logic [31:0] reg0_o;
|
||||
@ -158,8 +157,7 @@ module tb_axi4l_reg_map;
|
||||
.rst_n (rst_n),
|
||||
.s_axil (s_axil_if.slave),
|
||||
.reg_i (reg_i),
|
||||
.reg_o (reg_o),
|
||||
.reg_pulse(reg_pulse)
|
||||
.reg_o (reg_o)
|
||||
);
|
||||
|
||||
endmodule
|
||||
|
||||
@ -1,12 +1,14 @@
|
||||
# SPDX-License-Identifier: MIT
|
||||
|
||||
import cocotb
|
||||
from cocotb.clock import Clock
|
||||
from cocotb.triggers import ReadOnly, RisingEdge
|
||||
from cocotb.triggers import RisingEdge
|
||||
from cocotbext.axi import AxiLiteBus, AxiLiteMaster
|
||||
|
||||
OKAY = 0
|
||||
SLVERR = 2
|
||||
|
||||
REG0_CTRL = 0x00
|
||||
REG0_CTRL = 0x00
|
||||
REG1_STATUS = 0x04
|
||||
REG2_CONFIG = 0x08
|
||||
REG_INVALID = 0x0C # N_REGS=3, so index 3 is bad
|
||||
@ -33,8 +35,7 @@ def _read_data(resp):
|
||||
class TB:
|
||||
def __init__(self, dut):
|
||||
self.dut = dut
|
||||
self.axil = AxiLiteMaster(AxiLiteBus.from_prefix(
|
||||
dut, "s_axil"), dut.clk, dut.rst)
|
||||
self.axil = AxiLiteMaster(AxiLiteBus.from_prefix(dut, "s_axil"), dut.clk, dut.rst)
|
||||
|
||||
async def reset(self):
|
||||
self.dut.rst.value = 1
|
||||
@ -113,175 +114,28 @@ async def test_rw_and_w1c_bits(dut):
|
||||
assert await tb.read32(REG2_CONFIG) == 0xDEADBEEF
|
||||
|
||||
|
||||
def _reg0_pulse_value(dut):
|
||||
"""Return REG0 pulse bits regardless of how the test wrapper exposes them."""
|
||||
if hasattr(dut, "reg0_pulse"):
|
||||
return int(dut.reg0_pulse.value)
|
||||
|
||||
if hasattr(dut, "reg_pulse"):
|
||||
# Packed SystemVerilog array [N_REGS-1:0][31:0]: REG0 occupies bits 31:0.
|
||||
return int(dut.reg_pulse.value) & 0xFFFF_FFFF
|
||||
|
||||
raise AssertionError(
|
||||
"DUT must expose either reg0_pulse[31:0] or packed reg_pulse"
|
||||
)
|
||||
|
||||
|
||||
async def _sample_reg0_pulse_cycles(dut, cycles):
|
||||
"""Sample REG0 pulse output after each active clock edge."""
|
||||
samples = []
|
||||
|
||||
for _ in range(cycles):
|
||||
await RisingEdge(dut.clk)
|
||||
await ReadOnly()
|
||||
samples.append(_reg0_pulse_value(dut))
|
||||
|
||||
return samples
|
||||
|
||||
|
||||
def _assert_single_cycle_bit_pulse(samples, bit, name):
|
||||
"""Check that one selected bit was high for exactly one sampled cycle."""
|
||||
high_cycles = [
|
||||
index for index, value in enumerate(samples)
|
||||
if value & (1 << bit)
|
||||
]
|
||||
assert len(high_cycles) == 1, (
|
||||
f"{name}: expected one high cycle, got {len(high_cycles)}; "
|
||||
f"samples={[f'0x{value:08x}' for value in samples]}"
|
||||
)
|
||||
return high_cycles[0]
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def test_reg_pulse_is_zero_after_reset(dut):
|
||||
"""No W1 event may be reported after reset without a write."""
|
||||
async def test_w1s_seen_on_reg_o_probe(dut):
|
||||
"""Check that a W1S write creates a short-lived internal reg_o bit."""
|
||||
cocotb.start_soon(Clock(dut.clk, 10, units="ns").start())
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
samples = await _sample_reg0_pulse_cycles(dut, 4)
|
||||
assert not any(samples), (
|
||||
"reg_pulse was asserted without a W1 write: "
|
||||
f"{[f'0x{value:08x}' for value in samples]}"
|
||||
)
|
||||
seen = False
|
||||
|
||||
async def monitor_w1s_bit():
|
||||
nonlocal seen
|
||||
for _ in range(20):
|
||||
await RisingEdge(dut.clk)
|
||||
if int(dut.reg0_o.value) & 0x1:
|
||||
seen = True
|
||||
|
||||
@cocotb.test()
|
||||
async def test_w1s_generates_single_cycle_reg_pulse(dut):
|
||||
"""Writing 1 to REG0[0] W1S must pulse REG0 pulse bit 0 once."""
|
||||
cocotb.start_soon(Clock(dut.clk, 10, units="ns").start())
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
monitor = cocotb.start_soon(_sample_reg0_pulse_cycles(dut, 20))
|
||||
mon = cocotb.start_soon(monitor_w1s_bit())
|
||||
await tb.write32(REG0_CTRL, 0x00000001)
|
||||
samples = await monitor
|
||||
await mon
|
||||
|
||||
_assert_single_cycle_bit_pulse(samples, bit=0, name="reg_pulse[0][0]")
|
||||
|
||||
# No unrelated W1 bit may pulse.
|
||||
assert not any(value & (1 << 2) for value in samples)
|
||||
|
||||
# W1S is a command bit and is not returned by reads.
|
||||
assert await tb.read32(REG0_CTRL) == 0x00000004
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def test_w1c_generates_single_cycle_reg_pulse(dut):
|
||||
"""Writing 1 to REG0[2] W1C must pulse bit 2 once and clear state."""
|
||||
cocotb.start_soon(Clock(dut.clk, 10, units="ns").start())
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
assert await tb.read32(REG0_CTRL) == 0x00000004
|
||||
|
||||
monitor = cocotb.start_soon(_sample_reg0_pulse_cycles(dut, 20))
|
||||
await tb.write32(REG0_CTRL, 0x00000004)
|
||||
samples = await monitor
|
||||
|
||||
_assert_single_cycle_bit_pulse(samples, bit=2, name="reg_pulse[0][2]")
|
||||
|
||||
# No unrelated W1 bit may pulse.
|
||||
assert not any(value & (1 << 0) for value in samples)
|
||||
|
||||
assert await tb.read32(REG0_CTRL) == 0x00000000
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def test_zero_to_w1_and_rw_write_do_not_generate_reg_pulse(dut):
|
||||
"""Only written ones in W1 fields may create reg_pulse."""
|
||||
cocotb.start_soon(Clock(dut.clk, 10, units="ns").start())
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
monitor = cocotb.start_soon(_sample_reg0_pulse_cycles(dut, 20))
|
||||
|
||||
# bit1 is RW; both W1 fields receive zero.
|
||||
await tb.write32(REG0_CTRL, 0x00000002)
|
||||
samples = await monitor
|
||||
|
||||
assert not any(samples), (
|
||||
"RW write or zero written to W1 fields generated reg_pulse: "
|
||||
f"{[f'0x{value:08x}' for value in samples]}"
|
||||
)
|
||||
assert await tb.read32(REG0_CTRL) == 0x00000006
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def test_w1s_and_w1c_pulse_together(dut):
|
||||
"""W1S and W1C ones in one AXI write must pulse on the same cycle."""
|
||||
cocotb.start_soon(Clock(dut.clk, 10, units="ns").start())
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
monitor = cocotb.start_soon(_sample_reg0_pulse_cycles(dut, 20))
|
||||
await tb.write32(REG0_CTRL, 0x00000005)
|
||||
samples = await monitor
|
||||
|
||||
w1s_cycle = _assert_single_cycle_bit_pulse(
|
||||
samples, bit=0, name="reg_pulse[0][0]"
|
||||
)
|
||||
w1c_cycle = _assert_single_cycle_bit_pulse(
|
||||
samples, bit=2, name="reg_pulse[0][2]"
|
||||
)
|
||||
|
||||
assert w1s_cycle == w1c_cycle, (
|
||||
"W1 bits written by one transaction pulsed on different cycles: "
|
||||
f"W1S={w1s_cycle}, W1C={w1c_cycle}"
|
||||
)
|
||||
|
||||
# Only bits 0 and 2 are allowed to pulse.
|
||||
assert samples[w1s_cycle] == 0x00000005
|
||||
assert await tb.read32(REG0_CTRL) == 0x00000000
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
async def test_each_w1_write_creates_a_new_pulse(dut):
|
||||
"""Two separate W1 writes must create two separate one-cycle pulses."""
|
||||
cocotb.start_soon(Clock(dut.clk, 10, units="ns").start())
|
||||
tb = TB(dut)
|
||||
await tb.reset()
|
||||
|
||||
monitor = cocotb.start_soon(_sample_reg0_pulse_cycles(dut, 40))
|
||||
|
||||
await tb.write32(REG0_CTRL, 0x00000001)
|
||||
for _ in range(3):
|
||||
await RisingEdge(dut.clk)
|
||||
await tb.write32(REG0_CTRL, 0x00000001)
|
||||
|
||||
samples = await monitor
|
||||
high_cycles = [
|
||||
index for index, value in enumerate(samples)
|
||||
if value & 0x1
|
||||
]
|
||||
|
||||
assert len(high_cycles) == 2, (
|
||||
f"expected two W1S pulses, got cycles {high_cycles}; "
|
||||
f"samples={[f'0x{value:08x}' for value in samples]}"
|
||||
)
|
||||
assert high_cycles[1] > high_cycles[0] + 1, (
|
||||
f"separate writes did not produce separate pulses: {high_cycles}"
|
||||
)
|
||||
assert seen, "W1S bit was never observed on reg0_o[0]"
|
||||
assert await tb.read32(REG0_CTRL) == 0x00000004 # W1S reads as 0, W1C reset bit remains set
|
||||
|
||||
|
||||
@cocotb.test()
|
||||
|
||||
Reference in New Issue
Block a user