911 lines
29 KiB
Verilog
911 lines
29 KiB
Verilog
// ***************************************************************************
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// ***************************************************************************
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// Copyright 2011(c) Analog Devices, Inc.
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//
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without modification,
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// are permitted provided that the following conditions are met:
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// - Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// - Redistributions in binary form must reproduce the above copyright
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// notice, this list of conditions and the following disclaimer in
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// the documentation and/or other materials provided with the
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// distribution.
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// - Neither the name of Analog Devices, Inc. nor the names of its
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// contributors may be used to endorse or promote products derived
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// from this software without specific prior written permission.
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// - The use of this software may or may not infringe the patent rights
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// of one or more patent holders. This license does not release you
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// from the requirement that you obtain separate licenses from these
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// patent holders to use this software.
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// - Use of the software either in source or binary form, must be run
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// on or directly connected to an Analog Devices Inc. component.
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//
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// THIS SOFTWARE IS PROVIDED BY ANALOG DEVICES "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
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// INCLUDING, BUT NOT LIMITED TO, NON-INFRINGEMENT, MERCHANTABILITY AND FITNESS FOR A
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// PARTICULAR PURPOSE ARE DISCLAIMED.
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//
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// IN NO EVENT SHALL ANALOG DEVICES BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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// EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, INTELLECTUAL PROPERTY
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// RIGHTS, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
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// BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
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// STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
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// THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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// ***************************************************************************
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// ***************************************************************************
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`timescale 1ns/100ps
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module ad_gt_es (
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// drp interface
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drp_rst,
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drp_clk,
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es_sel,
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es_wr,
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es_addr,
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es_wdata,
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es_rdata,
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es_ready,
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// axi4 interface
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axi_rstn,
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axi_clk,
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axi_awvalid,
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axi_awaddr,
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axi_awprot,
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axi_awready,
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axi_wvalid,
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axi_wdata,
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axi_wstrb,
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axi_wready,
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axi_bvalid,
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axi_bresp,
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axi_bready,
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axi_arvalid,
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axi_araddr,
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axi_arprot,
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axi_arready,
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axi_rvalid,
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axi_rresp,
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axi_rdata,
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axi_rready,
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// processor interface
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es_start,
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es_stop,
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es_init,
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es_sdata0,
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es_sdata1,
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es_sdata2,
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es_sdata3,
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es_sdata4,
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es_qdata0,
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es_qdata1,
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es_qdata2,
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es_qdata3,
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es_qdata4,
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es_prescale,
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es_hoffset_min,
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es_hoffset_max,
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es_hoffset_step,
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es_voffset_min,
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es_voffset_max,
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es_voffset_step,
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es_voffset_range,
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es_start_addr,
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es_dmaerr,
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es_status,
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// debug interface
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es_dbg_trigger,
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es_dbg_data);
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// parameters
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parameter GTH_GTX_N = 0;
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// gt address
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localparam ES_DRP_CTRL_ADDR = (GTH_GTX_N == 1) ? 12'h03c : 12'h03d; // GTH-7 12'h03d
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localparam ES_DRP_SDATA0_ADDR = (GTH_GTX_N == 1) ? 12'h049 : 12'h036; // GTH-7 12'h036
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localparam ES_DRP_SDATA1_ADDR = (GTH_GTX_N == 1) ? 12'h04a : 12'h037; // GTH-7 12'h037
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localparam ES_DRP_SDATA2_ADDR = (GTH_GTX_N == 1) ? 12'h04b : 12'h038; // GTH-7 12'h038
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localparam ES_DRP_SDATA3_ADDR = (GTH_GTX_N == 1) ? 12'h04c : 12'h039; // GTH-7 12'h039
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localparam ES_DRP_SDATA4_ADDR = (GTH_GTX_N == 1) ? 12'h04d : 12'h03a; // GTH-7 12'h03a
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localparam ES_DRP_QDATA0_ADDR = (GTH_GTX_N == 1) ? 12'h044 : 12'h031; // GTH-7 12'h031
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localparam ES_DRP_QDATA1_ADDR = (GTH_GTX_N == 1) ? 12'h045 : 12'h032; // GTH-7 12'h032
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localparam ES_DRP_QDATA2_ADDR = (GTH_GTX_N == 1) ? 12'h046 : 12'h033; // GTH-7 12'h033
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localparam ES_DRP_QDATA3_ADDR = (GTH_GTX_N == 1) ? 12'h047 : 12'h034; // GTH-7 12'h034
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localparam ES_DRP_QDATA4_ADDR = (GTH_GTX_N == 1) ? 12'h048 : 12'h035; // GTH-7 12'h035
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localparam ES_DRP_HOFFSET_ADDR = (GTH_GTX_N == 1) ? 12'h04f : 12'h03c; // GTH-7 12'h03c
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localparam ES_DRP_VOFFSET_ADDR = (GTH_GTX_N == 1) ? 12'h097 : 12'h03b; // GTH-7 12'h03b
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localparam ES_DRP_STATUS_ADDR = (GTH_GTX_N == 1) ? 12'h153 : 12'h151; // GTH-7 12'h153
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localparam ES_DRP_SCNT_ADDR = (GTH_GTX_N == 1) ? 12'h152 : 12'h150; // GTH-7 12'h152
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localparam ES_DRP_ECNT_ADDR = (GTH_GTX_N == 1) ? 12'h151 : 12'h14f; // GTH-7 12'h151
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// state machine
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parameter ES_FSM_IDLE = 6'h00;
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parameter ES_FSM_STATUS = 6'h30;
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parameter ES_FSM_INIT = 6'h31;
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parameter ES_FSM_CTRLINIT_READ = 6'h01;
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parameter ES_FSM_CTRLINIT_RRDY = 6'h02;
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parameter ES_FSM_CTRLINIT_WRITE = 6'h03;
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parameter ES_FSM_CTRLINIT_WRDY = 6'h04;
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parameter ES_FSM_SDATA0_WRITE = 6'h05;
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parameter ES_FSM_SDATA0_WRDY = 6'h06;
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parameter ES_FSM_SDATA1_WRITE = 6'h07;
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parameter ES_FSM_SDATA1_WRDY = 6'h08;
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parameter ES_FSM_SDATA2_WRITE = 6'h09;
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parameter ES_FSM_SDATA2_WRDY = 6'h0a;
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parameter ES_FSM_SDATA3_WRITE = 6'h0b;
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parameter ES_FSM_SDATA3_WRDY = 6'h0c;
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parameter ES_FSM_SDATA4_WRITE = 6'h0d;
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parameter ES_FSM_SDATA4_WRDY = 6'h0e;
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parameter ES_FSM_QDATA0_WRITE = 6'h0f;
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parameter ES_FSM_QDATA0_WRDY = 6'h10;
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parameter ES_FSM_QDATA1_WRITE = 6'h11;
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parameter ES_FSM_QDATA1_WRDY = 6'h12;
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parameter ES_FSM_QDATA2_WRITE = 6'h13;
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parameter ES_FSM_QDATA2_WRDY = 6'h14;
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parameter ES_FSM_QDATA3_WRITE = 6'h15;
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parameter ES_FSM_QDATA3_WRDY = 6'h16;
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parameter ES_FSM_QDATA4_WRITE = 6'h17;
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parameter ES_FSM_QDATA4_WRDY = 6'h18;
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parameter ES_FSM_HOFFSET_READ = 6'h19;
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parameter ES_FSM_HOFFSET_RRDY = 6'h1a;
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parameter ES_FSM_HOFFSET_WRITE = 6'h1b;
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parameter ES_FSM_HOFFSET_WRDY = 6'h1c;
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parameter ES_FSM_VOFFSET_READ = 6'h1d;
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parameter ES_FSM_VOFFSET_RRDY = 6'h1e;
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parameter ES_FSM_VOFFSET_WRITE = 6'h1f;
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parameter ES_FSM_VOFFSET_WRDY = 6'h20;
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parameter ES_FSM_CTRLSTART_READ = 6'h21;
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parameter ES_FSM_CTRLSTART_RRDY = 6'h22;
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parameter ES_FSM_CTRLSTART_WRITE = 6'h23;
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parameter ES_FSM_CTRLSTART_WRDY = 6'h24;
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parameter ES_FSM_STATUS_READ = 6'h25;
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parameter ES_FSM_STATUS_RRDY = 6'h26;
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parameter ES_FSM_CTRLSTOP_READ = 6'h27;
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parameter ES_FSM_CTRLSTOP_RRDY = 6'h28;
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parameter ES_FSM_CTRLSTOP_WRITE = 6'h29;
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parameter ES_FSM_CTRLSTOP_WRDY = 6'h2a;
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parameter ES_FSM_SCNT_READ = 6'h2b;
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parameter ES_FSM_SCNT_RRDY = 6'h2c;
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parameter ES_FSM_ECNT_READ = 6'h2d;
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parameter ES_FSM_ECNT_RRDY = 6'h2e;
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parameter ES_FSM_DATA = 6'h2f;
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// drp interface
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input drp_rst;
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input drp_clk;
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output es_sel;
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output es_wr;
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output [11:0] es_addr;
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output [15:0] es_wdata;
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input [15:0] es_rdata;
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input es_ready;
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// axi4 interface
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input axi_rstn;
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input axi_clk;
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output axi_awvalid;
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output [31:0] axi_awaddr;
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output [ 2:0] axi_awprot;
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input axi_awready;
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output axi_wvalid;
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output [31:0] axi_wdata;
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output [ 3:0] axi_wstrb;
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input axi_wready;
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input axi_bvalid;
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input [ 1:0] axi_bresp;
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output axi_bready;
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output axi_arvalid;
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output [31:0] axi_araddr;
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output [ 2:0] axi_arprot;
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input axi_arready;
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input axi_rvalid;
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input [31:0] axi_rdata;
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input [ 1:0] axi_rresp;
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output axi_rready;
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// processor interface
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input es_start;
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input es_stop;
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input es_init;
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input [15:0] es_sdata0;
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input [15:0] es_sdata1;
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input [15:0] es_sdata2;
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input [15:0] es_sdata3;
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input [15:0] es_sdata4;
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input [15:0] es_qdata0;
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input [15:0] es_qdata1;
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input [15:0] es_qdata2;
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input [15:0] es_qdata3;
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input [15:0] es_qdata4;
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input [ 4:0] es_prescale;
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input [11:0] es_hoffset_min;
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input [11:0] es_hoffset_max;
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input [11:0] es_hoffset_step;
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input [ 7:0] es_voffset_min;
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input [ 7:0] es_voffset_max;
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input [ 7:0] es_voffset_step;
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input [ 1:0] es_voffset_range;
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input [31:0] es_start_addr;
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output es_dmaerr;
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output es_status;
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// debug interface
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output [275:0] es_dbg_data;
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output [ 7:0] es_dbg_trigger;
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// internal registers
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reg axi_req_toggle_m1 = 'd0;
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reg axi_req_toggle_m2 = 'd0;
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reg axi_req_toggle_m3 = 'd0;
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reg axi_awvalid = 'd0;
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reg [31:0] axi_awaddr = 'd0;
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reg axi_wvalid = 'd0;
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reg [31:0] axi_wdata = 'd0;
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reg axi_err = 'd0;
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reg es_dmaerr_m1 = 'd0;
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reg es_dmaerr = 'd0;
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reg es_dma_req_toggle = 'd0;
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reg [31:0] es_dma_addr = 'd0;
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reg [31:0] es_dma_data = 'd0;
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reg es_status = 'd0;
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reg es_ut = 'd0;
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reg [31:0] es_dma_addr_int = 'd0;
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reg [11:0] es_hoffset = 'd0;
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reg [ 7:0] es_voffset = 'd0;
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reg [15:0] es_hoffset_rdata = 'd0;
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reg [15:0] es_voffset_rdata = 'd0;
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reg [15:0] es_ctrl_rdata = 'd0;
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reg [15:0] es_scnt_rdata = 'd0;
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reg [15:0] es_ecnt_rdata = 'd0;
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reg [ 5:0] es_fsm = 'd0;
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reg es_sel = 'd0;
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reg es_wr = 'd0;
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reg [11:0] es_addr = 'd0;
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reg [15:0] es_wdata = 'd0;
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// internal signals
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wire axi_req_s;
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wire es_heos_s;
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wire es_eos_s;
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wire [ 7:0] es_voffset_2_s;
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wire [ 7:0] es_voffset_n_s;
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wire [ 7:0] es_voffset_s;
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// debug interface
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assign es_dbg_trigger = {es_start, es_eos_s, es_fsm};
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assign es_dbg_data[ 0: 0] = es_sel;
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assign es_dbg_data[ 1: 1] = es_wr;
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assign es_dbg_data[ 13: 2] = es_addr;
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assign es_dbg_data[ 29: 14] = es_wdata;
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assign es_dbg_data[ 45: 30] = es_rdata;
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assign es_dbg_data[ 46: 46] = es_ready;
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assign es_dbg_data[ 47: 47] = axi_awvalid;
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assign es_dbg_data[ 79: 48] = axi_awaddr;
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assign es_dbg_data[ 80: 80] = axi_awready;
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assign es_dbg_data[ 81: 81] = axi_wvalid;
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assign es_dbg_data[113: 82] = axi_wdata;
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assign es_dbg_data[117:114] = axi_wstrb;
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assign es_dbg_data[118:118] = axi_wready;
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assign es_dbg_data[119:119] = axi_bvalid;
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assign es_dbg_data[121:120] = axi_bresp;
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assign es_dbg_data[122:122] = axi_bready;
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assign es_dbg_data[123:123] = es_dmaerr;
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assign es_dbg_data[124:124] = es_start;
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assign es_dbg_data[125:125] = es_init;
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assign es_dbg_data[126:126] = es_status;
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assign es_dbg_data[127:127] = es_ut;
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assign es_dbg_data[159:128] = es_dma_addr_int;
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assign es_dbg_data[171:160] = es_hoffset;
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assign es_dbg_data[179:172] = es_voffset;
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assign es_dbg_data[195:180] = es_hoffset_rdata;
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assign es_dbg_data[211:196] = es_voffset_rdata;
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assign es_dbg_data[227:212] = es_ctrl_rdata;
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assign es_dbg_data[243:228] = es_scnt_rdata;
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assign es_dbg_data[259:244] = es_ecnt_rdata;
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assign es_dbg_data[265:260] = es_fsm;
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assign es_dbg_data[266:266] = es_heos_s;
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assign es_dbg_data[267:267] = es_eos_s;
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assign es_dbg_data[275:268] = es_voffset_s;
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// axi write interface
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assign axi_awprot = 3'd0;
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assign axi_wstrb = 4'hf;
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assign axi_bready = 1'd1;
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assign axi_arvalid = 1'd0;
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assign axi_araddr = 32'd0;
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assign axi_arprot = 3'd0;
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assign axi_rready = 1'd1;
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assign axi_req_s = axi_req_toggle_m3 ^ axi_req_toggle_m2;
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always @(negedge axi_rstn or posedge axi_clk) begin
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if (axi_rstn == 0) begin
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axi_req_toggle_m1 <= 'd0;
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axi_req_toggle_m2 <= 'd0;
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axi_req_toggle_m3 <= 'd0;
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axi_awvalid <= 'b0;
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axi_awaddr <= 'd0;
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axi_wvalid <= 'b0;
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axi_wdata <= 'd0;
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axi_err <= 'd0;
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end else begin
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axi_req_toggle_m1 <= es_dma_req_toggle;
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axi_req_toggle_m2 <= axi_req_toggle_m1;
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axi_req_toggle_m3 <= axi_req_toggle_m2;
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if ((axi_awvalid == 1'b1) && (axi_awready == 1'b1)) begin
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axi_awvalid <= 1'b0;
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axi_awaddr <= 32'd0;
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end else if (axi_req_s == 1'b1) begin
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axi_awvalid <= 1'b1;
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axi_awaddr <= es_dma_addr;
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end
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if ((axi_wvalid == 1'b1) && (axi_wready == 1'b1)) begin
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axi_wvalid <= 1'b0;
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axi_wdata <= 32'd0;
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end else if (axi_req_s == 1'b1) begin
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axi_wvalid <= 1'b1;
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axi_wdata <= es_dma_data;
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end
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if (axi_bvalid == 1'b1) begin
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axi_err <= axi_bresp[1] | axi_bresp[0];
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end
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end
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end
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always @(posedge drp_clk) begin
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if (drp_rst == 1'b1) begin
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es_dmaerr_m1 <= 'd0;
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es_dmaerr <= 'd0;
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es_dma_req_toggle <= 'd0;
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es_dma_addr <= 'd0;
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es_dma_data <= 'd0;
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end else begin
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es_dmaerr_m1 <= axi_err;
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es_dmaerr <= es_dmaerr_m1;
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if (es_fsm == ES_FSM_DATA) begin
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es_dma_req_toggle <= ~es_dma_req_toggle;
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es_dma_addr <= es_dma_addr_int;
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es_dma_data <= {es_scnt_rdata, es_ecnt_rdata};
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end
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end
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end
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// prescale, horizontal and vertical offsets
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assign es_heos_s = (es_hoffset == es_hoffset_max) ? es_ut : 1'b0;
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assign es_eos_s = (es_voffset == es_voffset_max) ? es_heos_s : 1'b0;
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assign es_voffset_2_s = ~es_voffset + 1'b1;
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assign es_voffset_n_s = {1'b1, es_voffset_2_s[6:0]};
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assign es_voffset_s = (es_voffset[7] == 1'b1) ? es_voffset_n_s : es_voffset;
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always @(posedge drp_clk) begin
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if (es_fsm == ES_FSM_IDLE) begin
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es_status <= 1'b0;
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end else begin
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es_status <= 1'b1;
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end
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if (es_fsm == ES_FSM_IDLE) begin
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es_ut <= 1'b0;
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es_dma_addr_int <= es_start_addr;
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es_hoffset <= es_hoffset_min;
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es_voffset <= es_voffset_min;
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end else if (es_fsm == ES_FSM_DATA) begin
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es_ut <= ~es_ut;
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es_dma_addr_int <= es_dma_addr_int + 3'd4;
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if (es_heos_s == 1'b1) begin
|
|
es_hoffset <= es_hoffset_min;
|
|
end else if (es_ut == 1'b1) begin
|
|
es_hoffset <= es_hoffset + es_hoffset_step;
|
|
end
|
|
if (es_heos_s == 1'b1) begin
|
|
es_voffset <= es_voffset + es_voffset_step;
|
|
end
|
|
end
|
|
end
|
|
|
|
// read-modify-write parameters (gt's are full of mixed up controls)
|
|
|
|
always @(posedge drp_clk) begin
|
|
if ((es_fsm == ES_FSM_HOFFSET_RRDY) && (es_ready == 1'b1)) begin
|
|
es_hoffset_rdata <= es_rdata;
|
|
end
|
|
if ((es_fsm == ES_FSM_VOFFSET_RRDY) && (es_ready == 1'b1)) begin
|
|
es_voffset_rdata <= es_rdata;
|
|
end
|
|
if (((es_fsm == ES_FSM_CTRLINIT_RRDY) || (es_fsm == ES_FSM_CTRLSTART_RRDY) ||
|
|
(es_fsm == ES_FSM_CTRLSTOP_RRDY)) && (es_ready == 1'b1)) begin
|
|
es_ctrl_rdata <= es_rdata;
|
|
end
|
|
if ((es_fsm == ES_FSM_SCNT_RRDY) && (es_ready == 1'b1)) begin
|
|
es_scnt_rdata <= es_rdata;
|
|
end
|
|
if ((es_fsm == ES_FSM_ECNT_RRDY) && (es_ready == 1'b1)) begin
|
|
es_ecnt_rdata <= es_rdata;
|
|
end
|
|
end
|
|
|
|
// eye scan state machine- write vertical and horizontal offsets
|
|
// and read back sample and error counters
|
|
|
|
always @(posedge drp_clk) begin
|
|
if ((drp_rst == 1'b1) || (es_stop == 1'b1)) begin
|
|
es_fsm <= ES_FSM_IDLE;
|
|
end else begin
|
|
case (es_fsm)
|
|
ES_FSM_IDLE: begin // idle
|
|
if (es_start == 1'b1) begin
|
|
es_fsm <= ES_FSM_STATUS;
|
|
end else begin
|
|
es_fsm <= ES_FSM_IDLE;
|
|
end
|
|
end
|
|
|
|
ES_FSM_STATUS: begin // set status
|
|
es_fsm <= ES_FSM_INIT;
|
|
end
|
|
|
|
ES_FSM_INIT: begin // initialize
|
|
if (es_init == 1'b1) begin
|
|
es_fsm <= ES_FSM_CTRLINIT_READ;
|
|
end else begin
|
|
es_fsm <= ES_FSM_HOFFSET_READ;
|
|
end
|
|
end
|
|
|
|
ES_FSM_CTRLINIT_READ: begin // control read
|
|
es_fsm <= ES_FSM_CTRLINIT_RRDY;
|
|
end
|
|
ES_FSM_CTRLINIT_RRDY: begin // control ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_CTRLINIT_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_CTRLINIT_RRDY;
|
|
end
|
|
end
|
|
ES_FSM_CTRLINIT_WRITE: begin // control write
|
|
es_fsm <= ES_FSM_CTRLINIT_WRDY;
|
|
end
|
|
ES_FSM_CTRLINIT_WRDY: begin // control ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_SDATA0_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_CTRLINIT_WRDY;
|
|
end
|
|
end
|
|
|
|
ES_FSM_SDATA0_WRITE: begin // sdata write
|
|
es_fsm <= ES_FSM_SDATA0_WRDY;
|
|
end
|
|
ES_FSM_SDATA0_WRDY: begin // sdata ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_SDATA1_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_SDATA0_WRDY;
|
|
end
|
|
end
|
|
ES_FSM_SDATA1_WRITE: begin // sdata write
|
|
es_fsm <= ES_FSM_SDATA1_WRDY;
|
|
end
|
|
ES_FSM_SDATA1_WRDY: begin // sdata ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_SDATA2_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_SDATA1_WRDY;
|
|
end
|
|
end
|
|
ES_FSM_SDATA2_WRITE: begin // sdata write
|
|
es_fsm <= ES_FSM_SDATA2_WRDY;
|
|
end
|
|
ES_FSM_SDATA2_WRDY: begin // sdata ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_SDATA3_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_SDATA2_WRDY;
|
|
end
|
|
end
|
|
ES_FSM_SDATA3_WRITE: begin // sdata write
|
|
es_fsm <= ES_FSM_SDATA3_WRDY;
|
|
end
|
|
ES_FSM_SDATA3_WRDY: begin // sdata ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_SDATA4_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_SDATA3_WRDY;
|
|
end
|
|
end
|
|
ES_FSM_SDATA4_WRITE: begin // sdata write
|
|
es_fsm <= ES_FSM_SDATA4_WRDY;
|
|
end
|
|
ES_FSM_SDATA4_WRDY: begin // sdata ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_QDATA0_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_SDATA4_WRDY;
|
|
end
|
|
end
|
|
|
|
ES_FSM_QDATA0_WRITE: begin // qdata write
|
|
es_fsm <= ES_FSM_QDATA0_WRDY;
|
|
end
|
|
ES_FSM_QDATA0_WRDY: begin // qdata ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_QDATA1_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_QDATA0_WRDY;
|
|
end
|
|
end
|
|
ES_FSM_QDATA1_WRITE: begin // qdata write
|
|
es_fsm <= ES_FSM_QDATA1_WRDY;
|
|
end
|
|
ES_FSM_QDATA1_WRDY: begin // qdata ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_QDATA2_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_QDATA1_WRDY;
|
|
end
|
|
end
|
|
ES_FSM_QDATA2_WRITE: begin // qdata write
|
|
es_fsm <= ES_FSM_QDATA2_WRDY;
|
|
end
|
|
ES_FSM_QDATA2_WRDY: begin // qdata ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_QDATA3_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_QDATA2_WRDY;
|
|
end
|
|
end
|
|
ES_FSM_QDATA3_WRITE: begin // qdata write
|
|
es_fsm <= ES_FSM_QDATA3_WRDY;
|
|
end
|
|
ES_FSM_QDATA3_WRDY: begin // qdata ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_QDATA4_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_QDATA3_WRDY;
|
|
end
|
|
end
|
|
ES_FSM_QDATA4_WRITE: begin // qdata write
|
|
es_fsm <= ES_FSM_QDATA4_WRDY;
|
|
end
|
|
ES_FSM_QDATA4_WRDY: begin // qdata ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_HOFFSET_READ;
|
|
end else begin
|
|
es_fsm <= ES_FSM_QDATA4_WRDY;
|
|
end
|
|
end
|
|
|
|
ES_FSM_HOFFSET_READ: begin // horizontal offset read
|
|
es_fsm <= ES_FSM_HOFFSET_RRDY;
|
|
end
|
|
ES_FSM_HOFFSET_RRDY: begin // horizontal offset ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_HOFFSET_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_HOFFSET_RRDY;
|
|
end
|
|
end
|
|
ES_FSM_HOFFSET_WRITE: begin // horizontal offset write
|
|
es_fsm <= ES_FSM_HOFFSET_WRDY;
|
|
end
|
|
ES_FSM_HOFFSET_WRDY: begin // horizontal offset ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_VOFFSET_READ;
|
|
end else begin
|
|
es_fsm <= ES_FSM_HOFFSET_WRDY;
|
|
end
|
|
end
|
|
|
|
ES_FSM_VOFFSET_READ: begin // vertical offset read
|
|
es_fsm <= ES_FSM_VOFFSET_RRDY;
|
|
end
|
|
ES_FSM_VOFFSET_RRDY: begin // vertical offset ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_VOFFSET_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_VOFFSET_RRDY;
|
|
end
|
|
end
|
|
ES_FSM_VOFFSET_WRITE: begin // vertical offset write
|
|
es_fsm <= ES_FSM_VOFFSET_WRDY;
|
|
end
|
|
ES_FSM_VOFFSET_WRDY: begin // vertical offset ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_CTRLSTART_READ;
|
|
end else begin
|
|
es_fsm <= ES_FSM_VOFFSET_WRDY;
|
|
end
|
|
end
|
|
|
|
ES_FSM_CTRLSTART_READ: begin // control read
|
|
es_fsm <= ES_FSM_CTRLSTART_RRDY;
|
|
end
|
|
ES_FSM_CTRLSTART_RRDY: begin // control ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_CTRLSTART_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_CTRLSTART_RRDY;
|
|
end
|
|
end
|
|
ES_FSM_CTRLSTART_WRITE: begin // control write
|
|
es_fsm <= ES_FSM_CTRLSTART_WRDY;
|
|
end
|
|
ES_FSM_CTRLSTART_WRDY: begin // control ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_STATUS_READ;
|
|
end else begin
|
|
es_fsm <= ES_FSM_CTRLSTART_WRDY;
|
|
end
|
|
end
|
|
|
|
ES_FSM_STATUS_READ: begin // status read
|
|
es_fsm <= ES_FSM_STATUS_RRDY;
|
|
end
|
|
ES_FSM_STATUS_RRDY: begin // status ready
|
|
if (es_ready == 1'b0) begin
|
|
es_fsm <= ES_FSM_STATUS_RRDY;
|
|
end else if (es_rdata[3:0] == 4'b0101) begin
|
|
es_fsm <= ES_FSM_CTRLSTOP_READ;
|
|
end else begin
|
|
es_fsm <= ES_FSM_STATUS_READ;
|
|
end
|
|
end
|
|
|
|
ES_FSM_CTRLSTOP_READ: begin // control read
|
|
es_fsm <= ES_FSM_CTRLSTOP_RRDY;
|
|
end
|
|
ES_FSM_CTRLSTOP_RRDY: begin // control ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_CTRLSTOP_WRITE;
|
|
end else begin
|
|
es_fsm <= ES_FSM_CTRLSTOP_RRDY;
|
|
end
|
|
end
|
|
ES_FSM_CTRLSTOP_WRITE: begin // control write
|
|
es_fsm <= ES_FSM_CTRLSTOP_WRDY;
|
|
end
|
|
ES_FSM_CTRLSTOP_WRDY: begin // control ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_SCNT_READ;
|
|
end else begin
|
|
es_fsm <= ES_FSM_CTRLSTOP_WRDY;
|
|
end
|
|
end
|
|
|
|
ES_FSM_SCNT_READ: begin // read sample count
|
|
es_fsm <= ES_FSM_SCNT_RRDY;
|
|
end
|
|
ES_FSM_SCNT_RRDY: begin // sample count ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_ECNT_READ;
|
|
end else begin
|
|
es_fsm <= ES_FSM_SCNT_RRDY;
|
|
end
|
|
end
|
|
|
|
ES_FSM_ECNT_READ: begin // read error count
|
|
es_fsm <= ES_FSM_ECNT_RRDY;
|
|
end
|
|
ES_FSM_ECNT_RRDY: begin // error count ready
|
|
if (es_ready == 1'b1) begin
|
|
es_fsm <= ES_FSM_DATA;
|
|
end else begin
|
|
es_fsm <= ES_FSM_ECNT_RRDY;
|
|
end
|
|
end
|
|
|
|
ES_FSM_DATA: begin // data phase
|
|
if (es_eos_s == 1'b1) begin
|
|
es_fsm <= ES_FSM_IDLE;
|
|
end else if (es_ut == 1'b1) begin
|
|
es_fsm <= ES_FSM_HOFFSET_READ;
|
|
end else begin
|
|
es_fsm <= ES_FSM_VOFFSET_READ;
|
|
end
|
|
end
|
|
|
|
default: begin
|
|
es_fsm <= ES_FSM_IDLE;
|
|
end
|
|
endcase
|
|
end
|
|
end
|
|
|
|
// drp signals controlled by the fsm
|
|
|
|
always @(posedge drp_clk) begin
|
|
case (es_fsm)
|
|
ES_FSM_CTRLINIT_READ: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b0;
|
|
es_addr <= ES_DRP_CTRL_ADDR;
|
|
es_wdata <= 16'h0000;
|
|
end
|
|
ES_FSM_CTRLINIT_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_CTRL_ADDR;
|
|
if (GTH_GTX_N == 1) begin
|
|
es_wdata <= {es_ctrl_rdata[15:10], 2'b11, es_ctrl_rdata[7:5], es_prescale};
|
|
end else begin
|
|
es_wdata <= {es_ctrl_rdata[15:10], 2'b11, es_ctrl_rdata[7:0]};
|
|
end
|
|
end
|
|
ES_FSM_SDATA0_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_SDATA0_ADDR;
|
|
es_wdata <= es_sdata0;
|
|
end
|
|
ES_FSM_SDATA1_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_SDATA1_ADDR;
|
|
es_wdata <= es_sdata1;
|
|
end
|
|
ES_FSM_SDATA2_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_SDATA2_ADDR;
|
|
es_wdata <= es_sdata2;
|
|
end
|
|
ES_FSM_SDATA3_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_SDATA3_ADDR;
|
|
es_wdata <= es_sdata3;
|
|
end
|
|
ES_FSM_SDATA4_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_SDATA4_ADDR;
|
|
es_wdata <= es_sdata4;
|
|
end
|
|
ES_FSM_QDATA0_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_QDATA0_ADDR;
|
|
es_wdata <= es_qdata0;
|
|
end
|
|
ES_FSM_QDATA1_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_QDATA1_ADDR;
|
|
es_wdata <= es_qdata1;
|
|
end
|
|
ES_FSM_QDATA2_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_QDATA2_ADDR;
|
|
es_wdata <= es_qdata2;
|
|
end
|
|
ES_FSM_QDATA3_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_QDATA3_ADDR;
|
|
es_wdata <= es_qdata3;
|
|
end
|
|
ES_FSM_QDATA4_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_QDATA4_ADDR;
|
|
es_wdata <= es_qdata4;
|
|
end
|
|
ES_FSM_HOFFSET_READ: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b0;
|
|
es_addr <= ES_DRP_HOFFSET_ADDR;
|
|
es_wdata <= 16'h0000;
|
|
end
|
|
ES_FSM_HOFFSET_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_HOFFSET_ADDR;
|
|
if (GTH_GTX_N == 1) begin
|
|
es_wdata <= {es_hoffset, es_hoffset_rdata[3:0]};
|
|
end else begin
|
|
es_wdata <= {es_hoffset_rdata[15:12], es_hoffset};
|
|
end
|
|
end
|
|
ES_FSM_VOFFSET_READ: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b0;
|
|
es_addr <= ES_DRP_VOFFSET_ADDR;
|
|
es_wdata <= 16'h0000;
|
|
end
|
|
ES_FSM_VOFFSET_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_VOFFSET_ADDR;
|
|
if (GTH_GTX_N == 1) begin
|
|
es_wdata <= {es_voffset_rdata[15:11], es_voffset_s[7], es_ut, es_voffset_s[6:0], es_voffset_range};
|
|
end else begin
|
|
es_wdata <= {es_prescale, es_voffset_rdata[10:9], es_ut, es_voffset_s};
|
|
end
|
|
end
|
|
ES_FSM_CTRLSTART_READ: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b0;
|
|
es_addr <= ES_DRP_CTRL_ADDR;
|
|
es_wdata <= 16'h0000;
|
|
end
|
|
ES_FSM_CTRLSTART_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_CTRL_ADDR;
|
|
if (GTH_GTX_N == 1) begin
|
|
es_wdata <= {6'd1, es_ctrl_rdata[9:0]};
|
|
end else begin
|
|
es_wdata <= {es_ctrl_rdata[15:6], 6'd1};
|
|
end
|
|
end
|
|
ES_FSM_STATUS_READ: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b0;
|
|
es_addr <= ES_DRP_STATUS_ADDR;
|
|
es_wdata <= 16'h0000;
|
|
end
|
|
ES_FSM_CTRLSTOP_READ: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b0;
|
|
es_addr <= ES_DRP_CTRL_ADDR;
|
|
es_wdata <= 16'h0000;
|
|
end
|
|
ES_FSM_CTRLSTOP_WRITE: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b1;
|
|
es_addr <= ES_DRP_CTRL_ADDR;
|
|
if (GTH_GTX_N == 1) begin
|
|
es_wdata <= {6'd0, es_ctrl_rdata[9:0]};
|
|
end else begin
|
|
es_wdata <= {es_ctrl_rdata[15:6], 6'd0};
|
|
end
|
|
end
|
|
ES_FSM_SCNT_READ: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b0;
|
|
es_addr <= ES_DRP_SCNT_ADDR;
|
|
es_wdata <= 16'h0000;
|
|
end
|
|
ES_FSM_ECNT_READ: begin
|
|
es_sel <= 1'b1;
|
|
es_wr <= 1'b0;
|
|
es_addr <= ES_DRP_ECNT_ADDR;
|
|
es_wdata <= 16'h0000;
|
|
end
|
|
default: begin
|
|
es_sel <= 1'b0;
|
|
es_wr <= 1'b0;
|
|
es_addr <= 9'h000;
|
|
es_wdata <= 16'h0000;
|
|
end
|
|
endcase
|
|
end
|
|
|
|
endmodule
|
|
|
|
// ***************************************************************************
|
|
// ***************************************************************************
|