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Add quarter wave cordic block
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rtl/cordic.sv
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58
rtl/cordic.sv
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`default_nettype none
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module cordic
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( input var [15:0] i_qph // 16-bit unsigned, representing 0-90 degrees
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, output var [15:0] o_sin // 16-bit unsigned, representing 0-1
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);
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// Gain is 1.164435, 2^16 / 1.164435 = 56281.37... = 0xDBD9
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logic [15:0] i_x;
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logic [15:0] i_y;
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always_comb i_x = i_qph[15] ? 16'h0000 : 16'hDBD9;
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always_comb i_y = i_qph[15] ? 16'hDBD9 : 16'h0000;
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// Cordic angle table
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logic [22:0] cordic_angle [0:18];
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always_comb cordic_angle[ 0] = 23'h25C80A; // 26.565051 degrees
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always_comb cordic_angle[ 1] = 23'h13F670; // 14.036243 degrees
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always_comb cordic_angle[ 2] = 23'h0A2223; // 7.125016 degrees
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always_comb cordic_angle[ 3] = 23'h05161A; // 3.576334 degrees
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always_comb cordic_angle[ 4] = 23'h028BAF; // 1.789911 degrees
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always_comb cordic_angle[ 5] = 23'h0145EC; // 0.895174 degrees
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always_comb cordic_angle[ 6] = 23'h00A2F8; // 0.447614 degrees
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always_comb cordic_angle[ 7] = 23'h00517C; // 0.223811 degrees
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always_comb cordic_angle[ 8] = 23'h0028BE; // 0.111906 degrees
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always_comb cordic_angle[ 9] = 23'h00145F; // 0.055953 degrees
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always_comb cordic_angle[10] = 23'h000A2F; // 0.027976 degrees
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always_comb cordic_angle[11] = 23'h000517; // 0.013988 degrees
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always_comb cordic_angle[12] = 23'h00028B; // 0.006994 degrees
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always_comb cordic_angle[13] = 23'h000145; // 0.003497 degrees
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always_comb cordic_angle[14] = 23'h0000A2; // 0.001749 degrees
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always_comb cordic_angle[15] = 23'h000051; // 0.000874 degrees
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always_comb cordic_angle[16] = 23'h000028; // 0.000437 degrees
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always_comb cordic_angle[17] = 23'h000014; // 0.000219 degrees
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always_comb cordic_angle[18] = 23'h00000A; // 0.000109 degrees
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logic [18:0] x [0:19];
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logic [18:0] y [0:19];
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logic [22:0] p [0:19];
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// Extend input from input to working widths
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always_comb x[0] = {1'b0, i_x, {2{1'b0}}};
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always_comb y[0] = {1'b0, i_y, {2{1'b0}}};
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always_comb p[0] = {i_qph, {7{1'b0}}};
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// Max pos = 23'h3FFF80, Max neg = 23'h400000
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for (genvar i = 0; i < 19; i = i + 1) begin: l_cordic_steps
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// If phase is negative, rotate CW, otherwise CCW
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always_comb x[i+1] = (p[i][22]) ? x[i] + (y[i] >>> (i+1)) : x[i] - (y[i] >>> (i+1));
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always_comb y[i+1] = (p[i][22]) ? y[i] - (x[i] >>> (i+1)) : y[i] + (x[i] >>> (i+1));
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always_comb p[i+1] = (p[i][22]) ? p[i] + cordic_angle[i] : p[i] - cordic_angle[i];
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end
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always_comb
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if (i_qph > 16'd65508) o_sin = 16'hFFFF;
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else if (i_qph < 16'd32) o_sin = i_qph + (i_qph >> 1);
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else o_sin = y[19][17:2];
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endmodule
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