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channel_output
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@@ -112,7 +112,6 @@ one_measurement_t test_ldpc(short max_iterations,
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// double channel_output[68 * 384];
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memset(modulated_input,0,sizeof(modulated_input));
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int8_t channel_output_fixed[MAX_NUM_DLSCH_SEGMENTS][68 * 384] = {0};
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short BG = 0, nrows = 0; //,ncols;
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int i1, Kb = 0;
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@@ -317,11 +316,11 @@ one_measurement_t test_ldpc(short max_iterations,
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else
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modulated_input[j][i] = -1.0; /// sqrt(2);
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channel_output_fixed[j][i] =
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channel_output_fixed[j*(384*68) + i] =
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(int8_t)quantize(sigma / 4.0 / 4.0, modulated_input[j][i] + sigma * gaussdouble(0.0, 1.0), qbits);
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// Uncoded BER
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uint8_t channel_output_uncoded = channel_output_fixed[j][i] < 0 ? 1 /* QPSK demod */ : 0;
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uint8_t channel_output_uncoded = channel_output_fixed[(j*384*68)+i] < 0 ? 1 /* QPSK demod */ : 0;
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if (channel_output_uncoded != ((channel_input_optim[i - 2 * Zc] >> j) & 0x1))
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ret.errors_bit_uncoded++;
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}
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@@ -345,7 +344,7 @@ one_measurement_t test_ldpc(short max_iterations,
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start_meas(&ret.time_decoder);
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set_abort(&dec_abort, false);
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n_iter = ldpc_toCompare.LDPCdecoder(&decParams[j],
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(int8_t *)channel_output_fixed[j],
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&channel_output_fixed[j*384*68],
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&estimated_output[j*Kprime],
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&decoder_profiler,
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&dec_abort);
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@@ -535,6 +534,7 @@ int main(int argc, char *argv[])
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// find minimum value in all sets of lifting size
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Zc = 0;
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estimated_output = malloc(n_segments * Kprime);
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channel_output_fixed=malloc(n_segments * 68 * 384);
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char fname[200];
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sprintf(fname, "ldpctest_BG_%d_Zc_%d_rate_%d-%d_Kprime_%d_maxit_%d.txt", BG, Zc, nom_rate, denom_rate, Kprime, max_iterations);
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