+18









Martin Braun
Alex Williams
Andrej Rode
Ashish Chaudhari
Ben Hilburn
Ciro Nishiguchi
Daniel Jepson
Derek Kozel
EJ Kreinar
Humberto Jimenez
Ian Buckley
Jörg Hofrichter
Jon Kiser
Josh Blum
Jonathon Pendlum
Matt Ettus
Michael West
Moritz Fischer
Nick Foster
Nicolas Cuervo
Paul Butler
Paul David
Ryan Marlow
Sugandha Gupta
Sylvain Munaut
Trung Tran
Vidush Vishwanath
Wade Fife
6b67702ad7
The FPGA codebase was removed from the UHD repository in 2014 to reduce the size of the repository. However, over the last half-decade, the split between the repositories has proven more burdensome than it has been helpful. By merging the FPGA code back, it will be possible to create atomic commits that touch both FPGA and UHD codebases. Continuous integration testing is also simplified by merging the repositories, because it was previously difficult to automatically derive the correct UHD branch when testing a feature branch on the FPGA repository. This commit also updates the license files and paths therein. We are therefore merging the repositories again. Future development for FPGA code will happen in the same repository as the UHD host code and MPM code. == Original Codebase and Rebasing == The original FPGA repository will be hosted for the foreseeable future at its original local location: https://github.com/EttusResearch/fpga/ It can be used for bisecting, reference, and a more detailed history. The final commit from said repository to be merged here is 05003794e2da61cabf64dd278c45685a7abad7ec. This commit is tagged as v4.0.0.0-pre-uhd-merge. If you have changes in the FPGA repository that you want to rebase onto the UHD repository, simply run the following commands: - Create a directory to store patches (this should be an empty directory): mkdir ~/patches - Now make sure that your FPGA codebase is based on the same state as the code that was merged: cd src/fpga # Or wherever your FPGA code is stored git rebase v4.0.0.0-pre-uhd-merge Note: The rebase command may look slightly different depending on what exactly you're trying to rebase. - Create a patch set for your changes versus v4.0.0.0-pre-uhd-merge: git format-patch v4.0.0.0-pre-uhd-merge -o ~/patches Note: Make sure that only patches are stored in your output directory. It should otherwise be empty. Make sure that you picked the correct range of commits, and only commits you wanted to rebase were exported as patch files. - Go to the UHD repository and apply the patches: cd src/uhd # Or wherever your UHD repository is stored git am --directory fpga ~/patches/* rm -rf ~/patches # This is for cleanup == Contributors == The following people have contributed mainly to these files (this list is not complete): Co-authored-by: Alex Williams <alex.williams@ni.com> Co-authored-by: Andrej Rode <andrej.rode@ettus.com> Co-authored-by: Ashish Chaudhari <ashish@ettus.com> Co-authored-by: Ben Hilburn <ben.hilburn@ettus.com> Co-authored-by: Ciro Nishiguchi <ciro.nishiguchi@ni.com> Co-authored-by: Daniel Jepson <daniel.jepson@ni.com> Co-authored-by: Derek Kozel <derek.kozel@ettus.com> Co-authored-by: EJ Kreinar <ej@he360.com> Co-authored-by: Humberto Jimenez <humberto.jimenez@ni.com> Co-authored-by: Ian Buckley <ian.buckley@gmail.com> Co-authored-by: Jörg Hofrichter <joerg.hofrichter@ni.com> Co-authored-by: Jon Kiser <jon.kiser@ni.com> Co-authored-by: Josh Blum <josh@joshknows.com> Co-authored-by: Jonathon Pendlum <jonathan.pendlum@ettus.com> Co-authored-by: Martin Braun <martin.braun@ettus.com> Co-authored-by: Matt Ettus <matt@ettus.com> Co-authored-by: Michael West <michael.west@ettus.com> Co-authored-by: Moritz Fischer <moritz.fischer@ettus.com> Co-authored-by: Nick Foster <nick@ettus.com> Co-authored-by: Nicolas Cuervo <nicolas.cuervo@ettus.com> Co-authored-by: Paul Butler <paul.butler@ni.com> Co-authored-by: Paul David <paul.david@ettus.com> Co-authored-by: Ryan Marlow <ryan.marlow@ettus.com> Co-authored-by: Sugandha Gupta <sugandha.gupta@ettus.com> Co-authored-by: Sylvain Munaut <tnt@246tNt.com> Co-authored-by: Trung Tran <trung.tran@ettus.com> Co-authored-by: Vidush Vishwanath <vidush.vishwanath@ettus.com> Co-authored-by: Wade Fife <wade.fife@ettus.com> Original-commit: bafa9d95453387814ef25e6b6256ba8db2df612f
610 lines
15 KiB
Verilog
610 lines
15 KiB
Verilog
/*
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* f15_core.v
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*
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* Core of the fosphor IP
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*
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* Copyright (C) 2014,2015 Ettus Corporation LLC
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* Copyright 2018 Ettus Research, a National Instruments Company
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*
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* SPDX-License-Identifier: LGPL-3.0-or-later
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*
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* vim: ts=4 sw=4
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*/
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`ifdef SIM
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`default_nettype none
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`endif
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module f15_core (
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input clk, input reset,
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input clear_req,
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input [ 1:0] cfg_random,
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input [15:0] cfg_offset, input [15:0] cfg_scale,
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input [15:0] cfg_trise, input [15:0] cfg_tdecay,
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input [15:0] cfg_alpha, input [15:0] cfg_epsilon,
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input [11:0] cfg_decim, input cfg_decim_changed,
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input [ 1:0] cfg_wf_div, input cfg_wf_mode,
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input [ 7:0] cfg_wf_decim, input cfg_wf_decim_changed,
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input [31:0] i_tdata, input i_tlast, input i_tvalid, output i_tready,
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output [31:0] o_hist_tdata, output o_hist_tlast, output o_hist_tvalid, input o_hist_tready, output o_hist_teob,
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output [31:0] o_wf_tdata, output o_wf_tlast, output o_wf_tvalid, input o_wf_tready
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);
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// Signals
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reg [31:0] in_data;
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reg in_last;
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reg in_valid;
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reg in_ready;
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wire [15:0] proc_real_0, proc_imag_0;
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wire [15:0] proc_logpwr_12, proc_logpwr_end;
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wire proc_last_0, proc_last_12, proc_last_end;
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wire proc_valid_0, proc_valid_12, proc_valid_end;
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reg [5:0] proc_binscan_addr_end;
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reg proc_binscan_last_end;
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reg proc_clear_end;
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reg clear_pending;
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wire rise_last_0, rise_last_15;
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wire rise_valid_0, rise_valid_15, rise_valid_24;
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wire [15:0] rise_logpwr_0;
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wire [5:0] rise_pwrbin_5, rise_pwrbin_15;
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reg [9:0] rise_addr_lsb_15;
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wire [15:0] rise_addr_15, rise_addr_24;
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wire [8:0] rise_intensity_18, rise_intensity_23;
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reg [8:0] rise_intensity_24;
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wire decay_last_0, decay_last_9;
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wire decay_valid_0, decay_valid_9;
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reg [ 9:0] decay_addr_lsb_0;
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wire [15:0] decay_addr_0, decay_addr_9;
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wire [8:0] decay_intensity_3, decay_intensity_8;
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reg [8:0] decay_intensity_9;
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wire decay_clear_0, decay_clear_9;
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reg [10:0] sls_addr_0;
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wire [10:0] sls_addr_6;
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wire [35:0] sls_data_2, sls_data_6;
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wire sls_last_0;
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wire sls_valid_0, sls_valid_6;
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wire [15:0] avgmh_logpwr_0, avgmh_logpwr_2;
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wire avgmh_clear_0, avgmh_clear_2;
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wire [11:0] avgmh_avg_2, avgmh_avg_6, avgmh_avg_9;
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wire [11:0] avgmh_max_2, avgmh_max_6, avgmh_max_9;
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wire [5:0] out_binaddr_0, out_binaddr_9;
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wire out_binlast_0, out_binlast_9;
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wire [33:0] out_hist_fifo_di;
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wire out_hist_fifo_wren;
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wire out_hist_fifo_afull;
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wire [33:0] out_hist_fifo_do;
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wire out_hist_fifo_rden;
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wire out_hist_fifo_empty;
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wire [11:0] wf_data_2, wf_data_5, wf_data_6;
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wire [15:0] wf_logpwr_0, wf_logpwr_2;
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wire [ 7:0] wf_out_data_5;
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wire wf_last_0, wf_last_2, wf_out_last_5;
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wire wf_valid_0, wf_valid_2, wf_out_valid_5;
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reg [ 1:0] out_wf_cnt;
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reg [32:0] out_wf_fifo_di;
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reg out_wf_fifo_wren;
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wire out_wf_fifo_afull;
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wire [32:0] out_wf_fifo_do;
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wire out_wf_fifo_rden;
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wire out_wf_fifo_empty;
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wire [31:0] rng;
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// -----------------------------------------------------------------------
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// Input
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// -----------------------------------------------------------------------
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always @(posedge clk)
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begin
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// Control
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if (reset) begin
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in_valid <= 1'b0;
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in_ready <= 1'b0;
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end else begin
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// Valid flag
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in_valid <= i_tvalid & i_tready;
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// We know we can get a sample if :
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// - Both outputs consumed a sample
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// - Both FIFOs have enough space
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in_ready <= (o_hist_tready & o_wf_tready) |
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(~out_hist_fifo_afull & ~out_wf_fifo_afull);
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end
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// Data pipeline
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in_data <= i_tdata;
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in_last <= i_tlast;
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end
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assign i_tready = in_ready;
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// -----------------------------------------------------------------------
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// Processing chain
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// -----------------------------------------------------------------------
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// Input to this stage
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assign proc_real_0 = in_data[31:16];
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assign proc_imag_0 = in_data[15:0];
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assign proc_last_0 = in_last;
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assign proc_valid_0 = in_valid;
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// Log power
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f15_logpwr logpwr_I (
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.in_real_0(proc_real_0),
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.in_imag_0(proc_imag_0),
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.out_12(proc_logpwr_12),
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.rng(rng),
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.random_mode(cfg_random),
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.clk(clk),
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.rst(reset)
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);
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// Aggregation
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// Not supported ATM but this is where it would be
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// Flag propagation
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delay_bit #(12) dl_proc_last (proc_last_0, proc_last_12, clk);
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delay_bit #(12) dl_proc_valid (proc_valid_0, proc_valid_12, clk);
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// Even/Odd resequencing
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f15_eoseq #(
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.WIDTH(16)
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) eoseq_I (
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.in_data(proc_logpwr_12),
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.in_valid(proc_valid_12),
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.in_last(proc_last_12),
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.out_data(proc_logpwr_end),
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.out_valid(proc_valid_end),
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.out_last(proc_last_end),
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.clk(clk),
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.rst(reset)
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);
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// Bin address counter and clear process
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// We do this here so we can propagate to every other stage with
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// just delay lines
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always @(posedge clk)
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begin
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if (reset) begin
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proc_binscan_addr_end <= 6'd0;
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proc_binscan_last_end <= 1'b0;
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end else if (proc_valid_end & proc_last_end) begin
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proc_binscan_addr_end <= proc_binscan_addr_end + 1;
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proc_binscan_last_end <= (proc_binscan_addr_end == 6'h3e);
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end
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end
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always @(posedge clk)
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begin
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if (reset) begin
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clear_pending <= 1'b0;
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proc_clear_end <= 1'b0;
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end else begin
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if (proc_valid_end & proc_last_end & proc_binscan_last_end) begin
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clear_pending <= 1'b0;
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proc_clear_end <= clear_pending;
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end else begin
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clear_pending <= clear_pending | clear_req;
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end
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end
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end
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// -----------------------------------------------------------------------
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// Rise
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// -----------------------------------------------------------------------
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// Input of this stage
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assign rise_last_0 = proc_last_end;
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assign rise_valid_0 = proc_valid_end;
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assign rise_logpwr_0 = proc_logpwr_end;
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// Power Bin mapping
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f15_binmap #(
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.BIN_WIDTH(6),
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.SCALE_FRAC_BITS(8)
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) binmap_I (
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.in_0(rise_logpwr_0),
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.offset_0(cfg_offset),
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.scale_0(cfg_scale),
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.bin_5(rise_pwrbin_5),
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.sat_ind_5(), // FIXME: Could be use to disable write ena (configurable)
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.clk(clk),
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.rst(reset)
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);
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// Delay
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// (We need to make sure rise doesn't conflict with decay)
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delay_bus #(10, 6) dl_pwrbin (rise_pwrbin_5, rise_pwrbin_15, clk);
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delay_bit #(15) dl_valid (rise_valid_0, rise_valid_15, clk);
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delay_bit #(15) dl_last (rise_last_0, rise_last_15, clk);
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// Address
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always @(posedge clk)
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begin
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if (reset)
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rise_addr_lsb_15[9:0] <= 9'd0;
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else if (rise_valid_15)
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if (rise_last_15)
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rise_addr_lsb_15 <= 9'd0;
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else
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rise_addr_lsb_15 <= rise_addr_lsb_15[9:0] + 1;
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end
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assign rise_addr_15 = { rise_pwrbin_15, rise_addr_lsb_15 };
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// Exponential rise
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f15_rise_decay #(
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.WIDTH(9)
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) rise_I (
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.in_0(rise_intensity_18),
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.out_5(rise_intensity_23),
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.k_0(cfg_trise),
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.ena_0(1'b1),
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.mode_0(1'b0),
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.rng(rng[15:0]),
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.clk(clk),
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.rst(reset)
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);
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// Need one more stage just for proper even/odd interlacing
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always @(posedge clk)
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rise_intensity_24 <= rise_intensity_23;
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// Propagate control
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delay_bit #(9) dl_rise_valid2 (rise_valid_15, rise_valid_24, clk);
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delay_bus #(9, 16) dl_rise_addr2 (rise_addr_15, rise_addr_24, clk);
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// -----------------------------------------------------------------------
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// State storage
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// -----------------------------------------------------------------------
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f15_histo_mem #(
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.ADDR_WIDTH(16)
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) mem_I (
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// Rise readout
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.addr_AR(rise_addr_15),
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.data_AR(rise_intensity_18),
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.ena_AR(rise_valid_15),
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// Rise writeback
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.addr_AW(rise_addr_24),
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.data_AW(rise_intensity_24),
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.ena_AW(rise_valid_24),
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// Decay readout
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.addr_BR(decay_addr_0),
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.data_BR(decay_intensity_3),
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.ena_BR(decay_valid_0),
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// Decay writeback
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.addr_BW(decay_addr_9),
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.data_BW(decay_intensity_9),
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.ena_BW(decay_valid_9),
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// Common
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.clk(clk),
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.rst(reset)
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);
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// -----------------------------------------------------------------------
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// Decay & Clear
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// -----------------------------------------------------------------------
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// Input of this stage
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assign decay_last_0 = proc_last_end;
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assign decay_valid_0 = proc_valid_end;
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assign decay_clear_0 = proc_clear_end;
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// Address generation
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always @(posedge clk)
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begin
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if (reset)
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decay_addr_lsb_0 <= 10'd0;
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else if (decay_valid_0)
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if (decay_last_0)
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decay_addr_lsb_0 <= 10'd0;
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else
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decay_addr_lsb_0 <= decay_addr_lsb_0 + 1;
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end
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assign decay_addr_0 = { proc_binscan_addr_end, decay_addr_lsb_0 };
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// Exponential decay
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f15_rise_decay #(
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.WIDTH(9)
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) decay_I (
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.in_0(decay_intensity_3),
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.out_5(decay_intensity_8),
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.k_0(cfg_tdecay),
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.ena_0(1'b1),
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.mode_0(1'b1),
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.rng(rng[15:0]),
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.clk(clk),
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.rst(reset)
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);
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// Need one more stage just for proper even/odd interlacing
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// Also do the clear in there
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always @(posedge clk)
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if (decay_clear_9)
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decay_intensity_9 <= 9'd0;
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else
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decay_intensity_9 <= decay_intensity_8;
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// Propagate control
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delay_bit #(9) dl_decay_valid (decay_valid_0, decay_valid_9, clk);
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delay_bit #(9) dl_decay_last (decay_last_0, decay_last_9, clk);
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delay_bit #(9) dl_decay_clear (decay_clear_0, decay_clear_9, clk);
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delay_bus #(9, 16) dl_decay_addr (decay_addr_0, decay_addr_9, clk);
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// -----------------------------------------------------------------------
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// Shared line-storage
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// -----------------------------------------------------------------------
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// This is shared between the average/max-hold spectrum lines and the
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// waterfall aggregation
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// Input of this stage
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assign sls_last_0 = proc_last_end;
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assign sls_valid_0 = proc_valid_end;
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// Address
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always @(posedge clk)
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begin
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if (reset)
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sls_addr_0 <= 11'd0;
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else if (sls_valid_0)
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if (sls_last_0)
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sls_addr_0 <= 11'd0;
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else
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sls_addr_0 <= sls_addr_0 + 1;
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end
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delay_bus #(6, 11) dl_sls_addr (sls_addr_0, sls_addr_6, clk);
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delay_bit #(6) dl_sls_valid (sls_valid_0, sls_valid_6, clk);
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// Storage
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f15_line_mem #(
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.AWIDTH(11),
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.DWIDTH(36)
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) line_mem_I (
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.rd_addr(sls_addr_0),
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.rd_data(sls_data_2),
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.rd_ena(sls_valid_0),
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.wr_addr(sls_addr_6),
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.wr_data(sls_data_6),
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.wr_ena(sls_valid_6),
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.clk(clk),
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.rst(reset)
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);
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// Data mapping
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assign avgmh_avg_2 = sls_data_2[11: 0];
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assign avgmh_max_2 = sls_data_2[23:12];
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assign wf_data_2 = sls_data_2[35:24];
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assign sls_data_6[11: 0] = avgmh_avg_6;
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assign sls_data_6[23:12] = avgmh_max_6;
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assign sls_data_6[35:24] = wf_data_6;
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// -----------------------------------------------------------------------
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// Average and Max-Hold
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// -----------------------------------------------------------------------
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// Input of this stage
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assign avgmh_logpwr_0 = proc_logpwr_end;
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assign avgmh_clear_0 = proc_clear_end;
|
|
|
|
// Modify stage: Average
|
|
f15_avg #(
|
|
.Y_WIDTH(12),
|
|
.X_WIDTH(16)
|
|
) avg_I (
|
|
.yin_0(avgmh_avg_2),
|
|
.x_0(avgmh_logpwr_2),
|
|
.rng_0(rng[15:0]),
|
|
.alpha_0(cfg_alpha),
|
|
.clear_0(avgmh_clear_2),
|
|
.yout_4(avgmh_avg_6),
|
|
.clk(clk),
|
|
.rst(reset)
|
|
);
|
|
|
|
// Modify stage: Max Hold
|
|
f15_maxhold #(
|
|
.Y_WIDTH(12),
|
|
.X_WIDTH(16),
|
|
.FRAC_WIDTH(8)
|
|
) maxhold_I (
|
|
.yin_0(avgmh_max_2),
|
|
.x_0(avgmh_logpwr_2),
|
|
.rng_0(rng[15:0]),
|
|
.epsilon_0(cfg_epsilon),
|
|
.clear_0(avgmh_clear_2),
|
|
.yout_4(avgmh_max_6),
|
|
.clk(clk),
|
|
.rst(reset)
|
|
);
|
|
|
|
// Delays
|
|
delay_bus #(2, 16) dl_avgmh_logpwr (avgmh_logpwr_0, avgmh_logpwr_2, clk);
|
|
delay_bit #(2) dl_avgmh_clear (avgmh_clear_0, avgmh_clear_2, clk);
|
|
delay_bus #(3, 12) dl_avgmh_max (avgmh_max_6, avgmh_max_9, clk);
|
|
delay_bus #(3, 12) dl_avgmh_avg (avgmh_avg_6, avgmh_avg_9, clk);
|
|
|
|
|
|
// -----------------------------------------------------------------------
|
|
// Histogram Output
|
|
// -----------------------------------------------------------------------
|
|
|
|
// For the 'tap' to work, we need avmh and decay blocks to have the
|
|
// same number of pipeline stage and be right after proc.
|
|
|
|
// Input of this stage
|
|
assign out_binaddr_0 = proc_binscan_addr_end;
|
|
assign out_binlast_0 = proc_binscan_last_end;
|
|
|
|
// Delays
|
|
delay_bus #(9, 6) dl_out_binaddr (out_binaddr_0, out_binaddr_9, clk);
|
|
delay_bit #(9) dl_out_binlast (out_binlast_0, out_binlast_9, clk);
|
|
|
|
// Packetizer
|
|
f15_packetizer #(
|
|
.BIN_WIDTH(6),
|
|
.DECIM_WIDTH(12)
|
|
) packetizer_I (
|
|
.in_bin_addr(out_binaddr_9),
|
|
.in_bin_last(out_binlast_9),
|
|
.in_histo(decay_intensity_9[8:1]),
|
|
.in_spectra_max(avgmh_max_9[11:4]),
|
|
.in_spectra_avg(avgmh_avg_9[11:4]),
|
|
.in_last(decay_last_9),
|
|
.in_valid(decay_valid_9),
|
|
.out_data(out_hist_fifo_di[31:0]),
|
|
.out_last(out_hist_fifo_di[32]),
|
|
.out_eob(out_hist_fifo_di[33]),
|
|
.out_valid(out_hist_fifo_wren),
|
|
.cfg_decim(cfg_decim),
|
|
.cfg_decim_changed(cfg_decim_changed),
|
|
.clk(clk),
|
|
.rst(reset)
|
|
);
|
|
|
|
// FIFO
|
|
fifo_srl #(
|
|
.WIDTH(34),
|
|
.LOG2_DEPTH(6),
|
|
.AFULL_LEVEL(20)
|
|
) out_hist_fifo_I (
|
|
.di(out_hist_fifo_di),
|
|
.wren(out_hist_fifo_wren),
|
|
.afull(out_hist_fifo_afull),
|
|
.do(out_hist_fifo_do),
|
|
.rden(out_hist_fifo_rden),
|
|
.empty(out_hist_fifo_empty),
|
|
.clk(clk),
|
|
.rst(reset)
|
|
);
|
|
|
|
// AXI mapping
|
|
assign o_hist_tdata = out_hist_fifo_do[31:0];
|
|
assign o_hist_tlast = out_hist_fifo_do[32];
|
|
assign o_hist_teob = out_hist_fifo_do[33];
|
|
assign o_hist_tvalid = ~out_hist_fifo_empty;
|
|
assign out_hist_fifo_rden = ~out_hist_fifo_empty && o_hist_tready;
|
|
|
|
|
|
// -----------------------------------------------------------------------
|
|
// Waterfall Output
|
|
// -----------------------------------------------------------------------
|
|
|
|
// Input to this stage (synced to SLS)
|
|
assign wf_logpwr_0 = proc_logpwr_end;
|
|
assign wf_last_0 = proc_last_end;
|
|
assign wf_valid_0 = proc_valid_end;
|
|
|
|
// Delay some input signals
|
|
delay_bus #(2, 16) dl_wf_logpwr (wf_logpwr_0, wf_logpwr_2, clk);
|
|
delay_bit #(2) dl_wf_last (wf_last_0, wf_last_2, clk);
|
|
delay_bit #(2) dl_wf_valid (wf_valid_0, wf_valid_2, clk);
|
|
|
|
// Decimation / Aggregation
|
|
f15_wf_agg #(
|
|
.Y_WIDTH(12),
|
|
.X_WIDTH(16),
|
|
.DECIM_WIDTH(8)
|
|
) dut_wf (
|
|
.yin_0(wf_data_2),
|
|
.x_0(wf_logpwr_2),
|
|
.valid_0(wf_valid_2),
|
|
.last_0(wf_last_2),
|
|
.rng_0(rng[15:0]),
|
|
.yout_3(wf_data_5),
|
|
.zout_3(wf_out_data_5),
|
|
.zvalid_3(wf_out_valid_5),
|
|
.cfg_div(cfg_wf_div),
|
|
.cfg_mode(cfg_wf_mode),
|
|
.cfg_decim(cfg_wf_decim),
|
|
.cfg_decim_changed(cfg_wf_decim_changed),
|
|
.clk(clk),
|
|
.rst(reset)
|
|
);
|
|
|
|
// Delay some output signals
|
|
delay_bus #(1, 12) dl_wf_data (wf_data_5, wf_data_6, clk);
|
|
delay_bit #(3) dl_wf_out_last (wf_last_2, wf_out_last_5, clk);
|
|
|
|
// Pack into 32 bits words
|
|
always @(posedge clk)
|
|
begin
|
|
if (reset) begin
|
|
out_wf_fifo_di <= 0;
|
|
out_wf_fifo_wren <= 1'b0;
|
|
out_wf_cnt <= 2'b00;
|
|
end else begin
|
|
if (wf_out_valid_5) begin
|
|
if (wf_out_last_5) begin
|
|
out_wf_fifo_di <= { 1'b1, out_wf_fifo_di[23:0], wf_out_data_5 };
|
|
out_wf_fifo_wren <= 1'b1;
|
|
out_wf_cnt <= 2'b00;
|
|
end else begin
|
|
out_wf_fifo_di <= { 1'b0, out_wf_fifo_di[23:0], wf_out_data_5 };
|
|
out_wf_fifo_wren <= (out_wf_cnt == 2'b11);
|
|
out_wf_cnt <= out_wf_cnt + 1;
|
|
end
|
|
end else begin
|
|
out_wf_fifo_wren <= 1'b0;
|
|
end
|
|
end
|
|
end
|
|
|
|
// FIFO
|
|
fifo_srl #(
|
|
.WIDTH(33),
|
|
.LOG2_DEPTH(6),
|
|
.AFULL_LEVEL(20)
|
|
) out_wf_fifo_I (
|
|
.di(out_wf_fifo_di),
|
|
.wren(out_wf_fifo_wren),
|
|
.afull(out_wf_fifo_afull),
|
|
.do(out_wf_fifo_do),
|
|
.rden(out_wf_fifo_rden),
|
|
.empty(out_wf_fifo_empty),
|
|
.clk(clk),
|
|
.rst(reset)
|
|
);
|
|
|
|
// AXI mapping
|
|
assign o_wf_tdata = out_wf_fifo_do[31:0];
|
|
assign o_wf_tlast = out_wf_fifo_do[32];
|
|
assign o_wf_tvalid = ~out_wf_fifo_empty;
|
|
assign out_wf_fifo_rden = ~out_wf_fifo_empty && o_wf_tready;
|
|
|
|
|
|
// -----------------------------------------------------------------------
|
|
// Misc
|
|
// -----------------------------------------------------------------------
|
|
|
|
// RNG
|
|
`ifdef SIM
|
|
assign rng = 0;
|
|
`else
|
|
rng rng_I (rng, clk, reset);
|
|
`endif
|
|
|
|
endmodule // f15_core
|