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	cleaning code
git-svn-id: https://svn.code.sf.net/p/gnss-sdr/code/trunk@127 64b25241-fba3-4117-9849-534c7e92360d
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		| @@ -75,7 +75,7 @@ gps_l1_ca_dll_fll_pll_make_tracking_cc(unsigned int satellite, long if_freq, lon | ||||
|  | ||||
| void Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::forecast (int noutput_items, gr_vector_int &ninput_items_required) | ||||
| { | ||||
|     ninput_items_required[0] =d_vector_length*2; //set the required available samples in each call | ||||
|     ninput_items_required[0] = d_vector_length*2; //set the required available samples in each call | ||||
| } | ||||
|  | ||||
|  | ||||
| @@ -107,8 +107,8 @@ Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc(unsigned in | ||||
|     d_ca_code = new gr_complex[(int)GPS_L1_CA_CODE_LENGTH_CHIPS+2]; | ||||
|     // Get space for the resampled early / prompt / late local replicas | ||||
|     d_early_code = new gr_complex[d_vector_length*2]; | ||||
|     d_prompt_code =new gr_complex[d_vector_length*2]; | ||||
|     d_late_code =new gr_complex[d_vector_length*2]; | ||||
|     d_prompt_code = new gr_complex[d_vector_length*2]; | ||||
|     d_late_code = new gr_complex[d_vector_length*2]; | ||||
|     // space for carrier wipeoff LO vector | ||||
|     d_carr_sign = new gr_complex[d_vector_length*2]; | ||||
|  | ||||
| @@ -141,70 +141,69 @@ void Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::start_tracking() | ||||
|      */ | ||||
|     unsigned long int acq_trk_diff_samples; | ||||
|     float acq_trk_diff_seconds; | ||||
|     acq_trk_diff_samples=d_sample_counter-d_acq_sample_stamp;//-d_vector_length; | ||||
|     acq_trk_diff_samples = d_sample_counter - d_acq_sample_stamp;//-d_vector_length; | ||||
|     //std::cout<<"acq_trk_diff_samples="<<acq_trk_diff_samples<<"\r\n"; | ||||
|     acq_trk_diff_seconds=(float)acq_trk_diff_samples/(float)d_fs_in; | ||||
|     acq_trk_diff_seconds = (float)acq_trk_diff_samples / (float)d_fs_in; | ||||
|     //doppler effect | ||||
|     // Fd=(C/(C+Vr))*F | ||||
|     float radial_velocity; | ||||
|     radial_velocity=(GPS_L1_FREQ_HZ+d_acq_carrier_doppler_hz)/GPS_L1_FREQ_HZ; | ||||
|     radial_velocity = (GPS_L1_FREQ_HZ + d_acq_carrier_doppler_hz) / GPS_L1_FREQ_HZ; | ||||
|     // new chip and prn sequence periods based on acq Doppler | ||||
|     float T_chip_mod_seconds; | ||||
|     float T_prn_mod_seconds; | ||||
|     float T_prn_mod_samples; | ||||
|     d_code_freq_hz=radial_velocity*GPS_L1_CA_CODE_RATE_HZ; | ||||
|     T_chip_mod_seconds=1/d_code_freq_hz; | ||||
|     T_prn_mod_seconds=T_chip_mod_seconds*GPS_L1_CA_CODE_LENGTH_CHIPS; | ||||
|     T_prn_mod_samples=T_prn_mod_seconds*(float)d_fs_in; | ||||
|     d_next_prn_length_samples=round(T_prn_mod_samples); | ||||
|     d_code_freq_hz = radial_velocity * GPS_L1_CA_CODE_RATE_HZ; | ||||
|     T_chip_mod_seconds = 1 / d_code_freq_hz; | ||||
|     T_prn_mod_seconds = T_chip_mod_seconds * GPS_L1_CA_CODE_LENGTH_CHIPS; | ||||
|     T_prn_mod_samples = T_prn_mod_seconds * (float)d_fs_in; | ||||
|     d_next_prn_length_samples = round(T_prn_mod_samples); | ||||
|  | ||||
|  | ||||
|     float T_prn_true_seconds = GPS_L1_CA_CODE_LENGTH_CHIPS/GPS_L1_CA_CODE_RATE_HZ; | ||||
|     float T_prn_true_samples = T_prn_true_seconds*(float)d_fs_in; | ||||
|     float T_prn_true_seconds = GPS_L1_CA_CODE_LENGTH_CHIPS / GPS_L1_CA_CODE_RATE_HZ; | ||||
|     float T_prn_true_samples = T_prn_true_seconds * (float)d_fs_in; | ||||
|     float T_prn_diff_seconds; | ||||
|     T_prn_diff_seconds=T_prn_true_seconds-T_prn_mod_seconds; | ||||
|     T_prn_diff_seconds = T_prn_true_seconds - T_prn_mod_seconds; | ||||
|     float N_prn_diff; | ||||
|     N_prn_diff=acq_trk_diff_seconds/T_prn_true_seconds; | ||||
|     float corrected_acq_phase_samples,delay_correction_samples; | ||||
|     corrected_acq_phase_samples=fmod((d_acq_code_phase_samples+T_prn_diff_seconds*N_prn_diff*(float)d_fs_in),T_prn_true_samples); | ||||
|     N_prn_diff = acq_trk_diff_seconds / T_prn_true_seconds; | ||||
|     float corrected_acq_phase_samples, delay_correction_samples; | ||||
|     corrected_acq_phase_samples = fmod((d_acq_code_phase_samples + T_prn_diff_seconds * N_prn_diff * (float)d_fs_in), T_prn_true_samples); | ||||
|  | ||||
|     if (corrected_acq_phase_samples<0) | ||||
|     if (corrected_acq_phase_samples < 0) | ||||
|         { | ||||
|             corrected_acq_phase_samples=T_prn_mod_samples+corrected_acq_phase_samples; | ||||
|             corrected_acq_phase_samples = T_prn_mod_samples + corrected_acq_phase_samples; | ||||
|         } | ||||
|     delay_correction_samples=d_acq_code_phase_samples-corrected_acq_phase_samples; | ||||
|     d_acq_code_phase_samples=corrected_acq_phase_samples; | ||||
|     delay_correction_samples = d_acq_code_phase_samples - corrected_acq_phase_samples; | ||||
|     d_acq_code_phase_samples = corrected_acq_phase_samples; | ||||
|  | ||||
|     d_carrier_doppler_hz=d_acq_carrier_doppler_hz; | ||||
|     d_carrier_doppler_hz = d_acq_carrier_doppler_hz; | ||||
|     // DLL/PLL filter initialization | ||||
|     d_carrier_loop_filter.initialize(d_acq_carrier_doppler_hz); | ||||
|     d_FLL_wait=1; | ||||
|     d_FLL_wait = 1; | ||||
|  | ||||
|     // generate local reference ALWAYS starting at chip 1 (1 sample per chip) | ||||
|     code_gen_conplex(&d_ca_code[1],d_satellite,0); | ||||
|     d_ca_code[0]=d_ca_code[(int)GPS_L1_CA_CODE_LENGTH_CHIPS]; | ||||
|     d_ca_code[(int)GPS_L1_CA_CODE_LENGTH_CHIPS+1]=d_ca_code[1]; | ||||
|     code_gen_conplex(&d_ca_code[1], d_satellite, 0); | ||||
|     d_ca_code[0] = d_ca_code[(int)GPS_L1_CA_CODE_LENGTH_CHIPS]; | ||||
|     d_ca_code[(int)GPS_L1_CA_CODE_LENGTH_CHIPS + 1] = d_ca_code[1]; | ||||
|  | ||||
|     d_carrier_lock_fail_counter=0; | ||||
|     d_Prompt_prev=0; | ||||
|     d_rem_code_phase_samples=0; | ||||
|     d_rem_carr_phase=0; | ||||
|     d_FLL_discriminator_hz=0; | ||||
|     d_rem_code_phase_samples=0; | ||||
|     d_next_rem_code_phase_samples=0; | ||||
|     d_acc_carrier_phase_rad=0; | ||||
|     d_carrier_lock_fail_counter = 0; | ||||
|     d_Prompt_prev = 0; | ||||
|     d_rem_code_phase_samples = 0; | ||||
|     d_rem_carr_phase = 0; | ||||
|     d_FLL_discriminator_hz = 0; | ||||
|     d_rem_code_phase_samples = 0; | ||||
|     d_next_rem_code_phase_samples = 0; | ||||
|     d_acc_carrier_phase_rad = 0; | ||||
|  | ||||
|     d_code_phase_samples = d_acq_code_phase_samples; | ||||
|  | ||||
|     // DEBUG OUTPUT | ||||
|     std::cout<<"Tracking start on channel "<<d_channel<<" for satellite ID* "<< this->d_satellite<< std::endl; | ||||
|     DLOG(INFO) << "Start tracking for satellite "<<this->d_satellite<<" received "; | ||||
|     std::cout << "Tracking start on channel " << d_channel << " for satellite ID* " << this->d_satellite << std::endl; | ||||
|     DLOG(INFO) << "Start tracking for satellite " << this->d_satellite << " received "; | ||||
|  | ||||
|     // enable tracking | ||||
|     d_pull_in=true; | ||||
|     d_enable_tracking=true; | ||||
|     d_pull_in = true; | ||||
|     d_enable_tracking = true; | ||||
|  | ||||
|     std::cout<<"PULL-IN Doppler [Hz]= "<<d_carrier_doppler_hz<<" Code Phase correction [samples]="<<delay_correction_samples<<" PULL-IN Code Phase [samples]= "<<d_acq_code_phase_samples<<"\r\n"; | ||||
|     std::cout << "PULL-IN Doppler [Hz]= " << d_carrier_doppler_hz << " Code Phase correction [samples]=" << delay_correction_samples << " PULL-IN Code Phase [samples]= " << d_acq_code_phase_samples << std::endl; | ||||
| } | ||||
|  | ||||
|  | ||||
| @@ -217,20 +216,20 @@ void Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::update_local_code() | ||||
|     float rem_code_phase_chips; | ||||
|     float code_phase_step_chips; | ||||
|     int associated_chip_index; | ||||
|     int code_length_chips=(int)GPS_L1_CA_CODE_LENGTH_CHIPS; | ||||
|     code_phase_step_chips=d_code_freq_hz/((float)d_fs_in); | ||||
|     rem_code_phase_chips=d_rem_code_phase_samples*(d_code_freq_hz/d_fs_in); | ||||
|     int code_length_chips = (int)GPS_L1_CA_CODE_LENGTH_CHIPS; | ||||
|     code_phase_step_chips = d_code_freq_hz / ((float)d_fs_in); | ||||
|     rem_code_phase_chips = d_rem_code_phase_samples * (d_code_freq_hz / d_fs_in); | ||||
|     // unified loop for E, P, L code vectors | ||||
|     tcode_chips=-rem_code_phase_chips; | ||||
|     for (int i=0;i<d_current_prn_length_samples;i++) | ||||
|     tcode_chips = -rem_code_phase_chips; | ||||
|     for (int i=0; i<d_current_prn_length_samples; i++) | ||||
|         { | ||||
|             associated_chip_index=1+round(fmod(tcode_chips-d_early_late_spc_chips,code_length_chips)); | ||||
|             associated_chip_index = 1 + round(fmod(tcode_chips - d_early_late_spc_chips, code_length_chips)); | ||||
|             d_early_code[i] = d_ca_code[associated_chip_index]; | ||||
|             associated_chip_index = 1+round(fmod(tcode_chips, code_length_chips)); | ||||
|             associated_chip_index = 1 + round(fmod(tcode_chips, code_length_chips)); | ||||
|             d_prompt_code[i] = d_ca_code[associated_chip_index]; | ||||
|             associated_chip_index = 1+round(fmod(tcode_chips+d_early_late_spc_chips, code_length_chips)); | ||||
|             associated_chip_index = 1 + round(fmod(tcode_chips + d_early_late_spc_chips, code_length_chips)); | ||||
|             d_late_code[i] = d_ca_code[associated_chip_index]; | ||||
|             tcode_chips=tcode_chips+code_phase_step_chips; | ||||
|             tcode_chips = tcode_chips+code_phase_step_chips; | ||||
|         } | ||||
|     //d_code_phase_samples=d_code_phase_samples+(float)d_fs_in*GPS_L1_CA_CODE_LENGTH_CHIPS*(1/d_code_freq_hz-1/GPS_L1_CA_CODE_RATE_HZ); | ||||
| } | ||||
| @@ -242,21 +241,23 @@ void Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::update_local_code() | ||||
| void Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::update_local_carrier() | ||||
| { | ||||
|     float phase, phase_step; | ||||
|     phase_step = (float)TWO_PI*d_carrier_doppler_hz/(float)d_fs_in; | ||||
|     phase=d_rem_carr_phase; | ||||
|     for(int i = 0; i < d_current_prn_length_samples; i++) { | ||||
|             d_carr_sign[i] = gr_complex(cos(phase),sin(phase)); | ||||
|     phase_step = (float)TWO_PI * d_carrier_doppler_hz / (float)d_fs_in; | ||||
|     phase = d_rem_carr_phase; | ||||
|     for(int i = 0; i < d_current_prn_length_samples; i++) | ||||
|         { | ||||
|             d_carr_sign[i] = gr_complex(cos(phase), sin(phase)); | ||||
|             phase += phase_step; | ||||
|     } | ||||
|     d_rem_carr_phase=fmod(phase,TWO_PI); | ||||
|     d_acc_carrier_phase_rad=d_acc_carrier_phase_rad+d_rem_carr_phase; | ||||
|         } | ||||
|     d_rem_carr_phase = fmod(phase, TWO_PI); | ||||
|     d_acc_carrier_phase_rad = d_acc_carrier_phase_rad + d_rem_carr_phase; | ||||
| } | ||||
|  | ||||
|  | ||||
|  | ||||
|  | ||||
|  | ||||
| Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::~Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc() { | ||||
| Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::~Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc() | ||||
| { | ||||
|     d_dump_file.close(); | ||||
|     delete[] d_ca_code; | ||||
|     delete[] d_early_code; | ||||
| @@ -266,6 +267,8 @@ Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::~Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc() { | ||||
|     delete[] d_Prompt_buffer; | ||||
| } | ||||
|  | ||||
|  | ||||
|  | ||||
| /* Tracking signal processing | ||||
|  * Notice that this is a class derived from gr_sync_decimator, so each of the ninput_items has vector_length samples | ||||
|  */ | ||||
| @@ -346,7 +349,7 @@ int Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::general_work (int noutput_items, gr_vecto | ||||
|             /*! | ||||
|              * \todo Use SIMD-enabled correlators | ||||
|              */ | ||||
|             for(int i=0;i<d_current_prn_length_samples;i++) | ||||
|             for(int i=0; i<d_current_prn_length_samples; i++) | ||||
|                 { | ||||
|                     //Perform the carrier wipe-off | ||||
|                     bb_signal_sample = in[i] * d_carr_sign[i]; | ||||
| @@ -490,12 +493,9 @@ int Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::general_work (int noutput_items, gr_vecto | ||||
|                 { | ||||
|                     d_code_phase_samples = T_prn_true_samples + d_code_phase_samples; | ||||
|                 } | ||||
|  | ||||
|             d_code_phase_samples = fmod(d_code_phase_samples, T_prn_true_samples); | ||||
|             d_next_prn_length_samples = round(K_blk_samples);//round to a discrete samples | ||||
|             d_next_rem_code_phase_samples = K_blk_samples-d_next_prn_length_samples; //rounding error | ||||
|  | ||||
|  | ||||
|         } | ||||
|     else | ||||
|         { | ||||
| @@ -616,7 +616,7 @@ void Gps_L1_Ca_Dll_Fll_Pll_Tracking_cc::set_channel(unsigned int channel) | ||||
|                     } | ||||
|                     catch (std::ifstream::failure e) | ||||
|                     { | ||||
|                             std::cout << "channel "<< d_channel << " Exception opening trk dump file "<< e.what() << std::endl; | ||||
|                             std::cout << "channel " << d_channel << " Exception opening trk dump file " << e.what() << std::endl; | ||||
|                     } | ||||
|                 } | ||||
|         } | ||||
|   | ||||
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