Vortex 2.0 changes:
+ Microarchitecture optimizations + 64-bit support + Xilinx FPGA support + LLVM-16 support + Refactoring and quality control fixes
This commit is contained in:
@@ -1,3 +1,16 @@
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// Copyright © 2019-2023
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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`include "VX_platform.vh"
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// Fast encoder using parallel prefix computation
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@@ -5,7 +18,7 @@
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`TRACING_OFF
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module VX_onehot_encoder #(
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parameter N = 1,
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parameter N = 1,
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parameter REVERSE = 0,
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parameter MODEL = 1,
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parameter LN = `LOG2UP(N)
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@@ -24,53 +37,50 @@ module VX_onehot_encoder #(
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assign data_out = data_in[!REVERSE];
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assign valid_out = (| data_in);
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end else if (MODEL == 1) begin
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`IGNORE_WARNINGS_BEGIN
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localparam levels_lp = $clog2(N);
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localparam aligned_width_lp = 1 << $clog2(N);
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wire [levels_lp:0][aligned_width_lp-1:0] addr;
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wire [levels_lp:0][aligned_width_lp-1:0] v;
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end else if (MODEL == 1) begin
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localparam M = 1 << LN;
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`IGNORE_UNOPTFLAT_BEGIN
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wire [LN-1:0][M-1:0] addr;
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wire [LN:0][M-1:0] v;
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`IGNORE_UNOPTFLAT_END
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// base case, also handle padding for non-power of two inputs
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assign v[0] = REVERSE ? (data_in << (aligned_width_lp - N)) : ((aligned_width_lp)'(data_in));
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assign addr[0] = 'x;
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assign v[0] = REVERSE ? (M'(data_in) << (M - N)) : M'(data_in);
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for (genvar level = 1; level < levels_lp+1; level=level+1) begin
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localparam segments_lp = 2**(levels_lp-level);
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localparam segment_slot_lp = aligned_width_lp/segments_lp;
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localparam segment_width_lp = level; // how many bits are needed at each level
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for (genvar lvl = 1; lvl < (LN+1); ++lvl) begin
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localparam SN = 1 << (LN - lvl);
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localparam SI = M / SN;
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localparam SW = lvl;
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for (genvar segment = 0; segment < segments_lp; segment=segment+1) begin
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wire [1:0] vs = {
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v[level-1][segment*segment_slot_lp+(segment_slot_lp >> 1)],
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v[level-1][segment*segment_slot_lp]
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};
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assign v[level][segment*segment_slot_lp] = (| vs);
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for (genvar s = 0; s < SN; ++s) begin
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`IGNORE_UNOPTFLAT_BEGIN
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wire [1:0] vs = {v[lvl-1][s*SI+(SI>>1)], v[lvl-1][s*SI]};
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`IGNORE_UNOPTFLAT_END
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assign v[lvl][s*SI] = (| vs);
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if (level == 1) begin
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assign addr[level][(segment*segment_slot_lp)+:segment_width_lp] = vs[!REVERSE];
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if (lvl == 1) begin
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assign addr[lvl-1][s*SI +: SW] = vs[!REVERSE];
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end else begin
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assign addr[level][(segment*segment_slot_lp)+:segment_width_lp] = {
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assign addr[lvl-1][s*SI +: SW] = {
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vs[!REVERSE],
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addr[level-1][segment*segment_slot_lp+:segment_width_lp-1] | addr[level-1][segment*segment_slot_lp+(segment_slot_lp >> 1)+:segment_width_lp-1]
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addr[lvl-2][s*SI +: SW-1] | addr[lvl-2][s*SI+(SI>>1) +: SW-1]
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};
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end
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end
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end
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assign data_out = addr[levels_lp][`LOG2UP(N)-1:0];
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assign valid_out = v[levels_lp][0];
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`IGNORE_WARNINGS_END
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end else if (MODEL == 2) begin
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assign data_out = addr[LN-1][LN-1:0];
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assign valid_out = v[LN][0];
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end else if (MODEL == 2 && REVERSE == 0) begin
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for (genvar j = 0; j < LN; ++j) begin
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wire [N-1:0] mask;
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for (genvar i = 0; i < N; ++i) begin
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assign mask[i] = i[j];
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end
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assign data_out[j] = |(mask & data_in);
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assign data_out[j] = | (mask & data_in);
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end
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assign valid_out = (| data_in);
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@@ -79,21 +89,21 @@ module VX_onehot_encoder #(
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reg [LN-1:0] index_r;
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if (REVERSE) begin
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if (REVERSE != 0) begin
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always @(*) begin
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index_r = 'x;
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for (integer i = N-1; i >= 0; --i) begin
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if (data_in[i]) begin
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index_r = `LOG2UP(N)'(i);
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index_r = LN'(N-1-i);
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end
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end
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end
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end else begin
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always @(*) begin
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index_r = 'x;
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for (integer i = 0; i < N; i++) begin
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for (integer i = 0; i < N; ++i) begin
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if (data_in[i]) begin
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index_r = `LOG2UP(N)'(i);
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index_r = LN'(i);
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end
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end
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end
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@@ -104,4 +114,4 @@ module VX_onehot_encoder #(
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end
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endmodule
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`TRACING_ON
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`TRACING_ON
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