/dports/comms/liquid-dsp/liquid-dsp-1.3.2/src/nco/src/ |
H A D | nco.c | 58 NCO() q = (NCO()) malloc(sizeof(struct NCO(_s))); in NCO() 75 void NCO(_destroy)(NCO() _q) in NCO() function 85 void NCO(_print)(NCO() _q) in NCO() function 98 void NCO(_reset)(NCO() _q) in NCO() function 137 void NCO(_step)(NCO() _q) in NCO() function 143 T NCO(_get_phase)(NCO() _q) in NCO() function 156 T NCO(_sin)(NCO() _q) in NCO() function 162 T NCO(_cos)(NCO() _q) in NCO() function 170 void NCO(_sincos)(NCO() _q, in NCO() function 183 void NCO(_cexpf)(NCO() _q, in NCO() function [all …]
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/dports/misc/gpsim/gpsim-0.31.0/src/ |
H A D | nco.h | 34 class NCO; variable 54 NCO *pt_nco; 67 NCO *pt_nco; 79 NCO *pt_nco; 91 NCO *pt_nco; 103 NCO *pt_nco; 115 NCO *pt_nco; 127 NCO *pt_nco; 134 explicit NCO(Processor *pCpu); 135 ~NCO(); [all …]
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H A D | nco.cc | 62 NCO * nco; 92 NCO * m_nco; 117 NCO * m_nco; 121 NCO::NCO(Processor * pCpu): in NCO() function in NCO 140 NCO::~NCO() in ~NCO() 213 void NCO::NCOincrement() in NCOincrement() 278 void NCO::callback() in callback() 572 int NCO::clock_src() in clock_src() 691 void NCO::set_acc_buf() in set_acc_buf() 710 void NCO::newINCL() in newINCL() [all …]
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/dports/comms/redsea/redsea-0.20/src/ |
H A D | liquid_wrappers.cc | 68 NCO::NCO(liquid_ncotype type, float freq) : in NCO() function in liquid::NCO 73 NCO::~NCO() { in ~NCO() 77 std::complex<float> NCO::mixDown(std::complex<float> s) { in mixDown() 83 void NCO::step() { in step() 87 void NCO::setPLLBandwidth(float bw) { in setPLLBandwidth() 91 void NCO::stepPLL(float dphi) { in stepPLL()
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H A D | liquid_wrappers.h | 61 class NCO { 63 explicit NCO(liquid_ncotype type, float freq); 64 NCO(const NCO&) = delete; 65 ~NCO();
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/dports/comms/liquid-dsp/liquid-dsp-1.3.2/src/framing/src/ |
H A D | qsource.c | 127 q->mixer = NCO(_create)(LIQUID_VCO); in QSOURCE() 164 NCO(_destroy)(_q->source.chirp.nco); in QSOURCE() 189 NCO(_destroy) (_q->mixer); in QSOURCE() 222 _q->source.chirp.nco = NCO(_create)(LIQUID_VCO); in QSOURCE() 350 NCO(_set_frequency)(_q->mixer, _dphi); in QSOURCE() 356 return NCO(_get_frequency)(_q->mixer); in QSOURCE() 373 NCO(_cexpf) (_q->source.chirp.nco, &sample); in QSOURCE() 374 NCO(_adjust_frequency)(_q->source.chirp.nco, _q->source.chirp.df); in QSOURCE() 375 NCO(_step) (_q->source.chirp.nco); in QSOURCE() 422 NCO(_mix_up)(_q->mixer, sample, _v); in QSOURCE() [all …]
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H A D | symtrack.c | 66 NCO() nco; // nco (carrier recovery) in SYMTRACK() 128 q->nco = NCO(_create)(LIQUID_VCO); in SYMTRACK() 159 NCO (_destroy)(_q->nco); in SYMTRACK() 225 NCO(_pll_set_bandwidth)(_q->nco, pll_bandwidth); in SYMTRACK() 233 NCO(_adjust_phase)(_q->nco, _dphi); in SYMTRACK() 260 NCO(_step)(_q->nco); in SYMTRACK() 291 NCO(_pll_step)(_q->nco, phase_error); in SYMTRACK()
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/dports/comms/liquid-dsp/liquid-dsp-1.3.2/src/channel/src/ |
H A D | channel.c | 45 NCO() nco; // oscillator in CHANNEL() 72 q->nco = NCO(_create)(LIQUID_VCO); in CHANNEL() 87 NCO(_destroy)(_q->nco); in CHANNEL() 143 NCO(_set_frequency)(_q->nco, _q->dphi); in CHANNEL() 144 NCO(_set_phase) (_q->nco, _q->phi); in CHANNEL() 260 NCO(_mix_up)(_q->nco, r, &r); in CHANNEL() 261 NCO(_step) (_q->nco); in CHANNEL()
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/dports/science/dalton/dalton-66052b3af5ea7225e31178bf9a8b031913c72190/DALTON/sirius/ |
H A D | sirloc.F | 39 CALL FROLOC(NCO) 41 WRITE(LUPRI,*) 'Number of frozen orbitals :',NCO 49 NOC = NOC - NCO 54 NCMO = NCMOT - NCO*NBA 63 KDIPX = KCMO + NCMOT + NBA*(NOC + NCO) 79 KOVER1 = KMOC + (NOC+NCO)*NBA 84 KCMOC = KCMO + NCO*NBA 253 SUBROUTINE FROLOC(NCO) 271 NCO = 0 274 NCO = NCO + LOCFRO(ISYM) [all …]
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/dports/comms/qsstv/qsstv/dsp/ |
H A D | nco.h | 37 class NCO // numerical controlled oscillator 44 NCO(double freq=0.5) 48 ~NCO() in ~NCO()
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/dports/comms/fldigi/fldigi-4.1.20/src/include/ |
H A D | nco.h | 35 class NCO { 47 NCO() { sinetable_ready = false; } in NCO() function 48 ~NCO() { }; in ~NCO()
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/dports/science/cantera/cantera-2.5.1-611-gc4d6ecc15/test/data/ |
H A D | gri30.inp | 15 HCN H2CN HCNN HCNO HOCN HNCO NCO N2 317 CN+OH<=>NCO+H 4.000E+13 .000 .00 319 CN+O2<=>NCO+O 6.140E+12 .000 -440.00 321 NCO+O<=>NO+CO 2.350E+13 .000 .00 322 NCO+H<=>NH+CO 5.400E+13 .000 .00 323 NCO+OH<=>NO+H+CO 0.250E+13 .000 .00 324 NCO+N<=>N2+CO 2.000E+13 .000 .00 325 NCO+O2<=>NO+CO2 2.000E+12 .000 20000.00 326 NCO+M<=>N+CO+M 3.100E+14 .000 54050.00 328 NCO+NO<=>N2O+CO 1.900E+17 -1.520 740.00 [all …]
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/dports/x11-toolkits/shared-desktop-ontologies/shared-desktop-ontologies-0.11.0/nco/ |
H A D | nco-main.docbook | 19 <para>The purpose of the Nepomuk Contact Ontology (NCO) is to 38 NCO is more expressive.</para> 45 NCO is quite wide. It is every piece of data that identifies 48 communication. NCO covers both of them. 57 of NCO is outlined in the figure above. It has two axes: 93 more complicated. NCO tries to provide means to express this 138 can be expressed. NCO provides means to describe contact 158 <para>Addressbook entries are not the only way to use NCO. 167 <para>The NCO is a good example of the trend towards 186 <ulink url="nco-contact.ttl" /> A simple NCO Contact. [all …]
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/dports/net/fspclient/fspclient-0.93.1/client/ |
H A D | macro.c | 291 #define NCO 6 macro 327 macrotable[i].name, j == NCO-1? "\n" : ""); in fsp_macro_long_help_all() 328 j = (j+1) % NCO; in fsp_macro_long_help_all() 373 macrotable[i].name, j == NCO-1? "\n" : ""); in fsp_macro_short_help() 374 j = (j+1) % NCO; in fsp_macro_short_help()
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H A D | main.c | 481 #define NCO 6 macro 507 dispatch_table[i].com, j == NCO-1? "\n" : ""); in fsp_builtin_long_help_all() 508 j = (j+1) % NCO; in fsp_builtin_long_help_all() 549 dispatch_table[i].com, j == NCO-1? "\n" : ""); in fsp_builtin_short_help() 550 j = (j+1) % NCO; in fsp_builtin_short_help()
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/dports/science/antioch/antioch-0.4.0-156-g90ffa43/share/antioch_default_files/ |
H A D | antioch_default_vibrational_data.dat | 69 NCO 1.83600e+03 1 70 NCO 7.67100e+02 2 71 NCO 2.76800e+03 1
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/dports/misc/gpsim/gpsim-0.31.0/regression/p1xf18xx/ |
H A D | p16f1503_nco.asm | 7 ;; Numerically controlled oscillator (NCO) 119 ; LC1_OUT drives NCO 121 BANKSEL PIE3 ; No CLC interrupt so sleep to NCO interrupt 163 ; enable NCO with output Pulse freq mode 170 ; NCO wakeup after 32 x 32 kHz pulse = 100 usec 175 clrf NCO1CON ; turn of NCO 287 ; LC1_OUT drives NCO 327 ; enable NCO with output Pulse freq mode 334 ; NCO wakeup after (32+1) 600 kHz pulse = 55 usec 338 clrf NCO1CON ; turn of NCO [all …]
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/dports/comms/cubicsdr/CubicSDR-0248e5a/external/liquid-dsp/include/liquid/ |
H A D | liquid.h | 8021 typedef struct NCO(_s) * NCO(); \ 8025 NCO() NCO(_create)(liquid_ncotype _type); \ 8028 int NCO(_destroy)(NCO() _q); \ 8031 int NCO(_print)(NCO() _q); \ 8035 int NCO(_reset)(NCO() _q); \ 8038 T NCO(_get_frequency)(NCO() _q); \ 8043 int NCO(_set_frequency)(NCO() _q, \ 8049 int NCO(_adjust_frequency)(NCO() _q, \ 8053 T NCO(_get_phase)(NCO() _q); \ 8058 int NCO(_set_phase)(NCO() _q, \ [all …]
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/dports/comms/liquid-dsp/liquid-dsp-1.3.2/include/ |
H A D | liquid.h | 7653 typedef struct NCO(_s) * NCO(); \ 7657 NCO() NCO(_create)(liquid_ncotype _type); \ 7660 void NCO(_destroy)(NCO() _q); \ 7663 void NCO(_print)(NCO() _q); \ 7667 void NCO(_reset)(NCO() _q); \ 7670 T NCO(_get_frequency)(NCO() _q); \ 7675 void NCO(_set_frequency)(NCO() _q, \ 7681 void NCO(_adjust_frequency)(NCO() _q, \ 7685 T NCO(_get_phase)(NCO() _q); \ 7690 void NCO(_set_phase)(NCO() _q, \ [all …]
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H A D | liquid.internal.h | 1618 #define LIQUID_NCO_DEFINE_INTERNAL_API(NCO,T,TC) \ argument 1621 void NCO(_constrain_phase)(NCO() _q); \ 1622 void NCO(_constrain_frequency)(NCO() _q); \ 1625 void NCO(_compute_sincos_nco)(NCO() _q); \ 1626 void NCO(_compute_sincos_vco)(NCO() _q); \ 1629 void NCO(_pll_reset)(NCO() _q); \
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/dports/games/pcgen/pcgen/data/modern/rpg_objects/blood_and_guts/modern_military/ |
H A D | modernmilitary_feats_hidden_specops.lst | 23 …TYPE:SpecOpsStrategy.SpecOpsTraining VISIBLE:NO PREABILITY:1,CATEGORY=FEAT,NCO School,Officer Cand… 24 …TYPE:SpecOpsStrategy.SpecOpsTraining VISIBLE:NO PREABILITY:1,CATEGORY=FEAT,NCO School,Officer Cand… 25 …TYPE:SpecOpsStrategy.SpecOpsTraining VISIBLE:NO PREABILITY:1,CATEGORY=FEAT,NCO School,Officer Cand…
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/dports/sysutils/zeitgeist/zeitgeist-1.0.3/libzeitgeist/ |
H A D | ontology.vala | 213 uri = Zeitgeist.NCO.CONTACT; 217 children = { NCO.ORGANIZATION_CONTACT, NCO.PERSON_CONTACT }; 218 all_children = { NCO.ORGANIZATION_CONTACT, NCO.PERSON_CONTACT }; 221 uri = Zeitgeist.NCO.CONTACT_GROUP; 229 uri = Zeitgeist.NCO.CONTACT_LIST; 237 uri = Zeitgeist.NCO.CONTACT_LIST_DATA_OBJECT; 245 uri = Zeitgeist.NCO.ORGANIZATION_CONTACT; 248 parents = { NCO.CONTACT }; 253 uri = Zeitgeist.NCO.PERSON_CONTACT; 256 parents = { NCO.CONTACT }; [all …]
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/dports/misc/urh/urh-2.9.2/src/urh/dev/native/lib/ |
H A D | climesdr.pxd | 27 LMS_TESTSIG_NCODIV8 # Test signal from NCO half scale 28 LMS_TESTSIG_NCODIV4 # Test signal from NCO half scale 29 LMS_TESTSIG_NCODIV8F # Test signal from NCO full scale 30 LMS_TESTSIG_NCODIV4F # Test signal from NCO full scale
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/dports/science/cantera/cantera-2.5.1-611-gc4d6ecc15/data/inputs/ |
H A D | gri30_highT.cti | 16 HCN H2CN HCNN HCNO HOCN HNCO NCO N2 AR C3H7 884 species(name = "NCO", 1768 reaction( "CN + OH <=> NCO + H", [4.00000E+13, 0, 0]) 1774 reaction( "CN + O2 <=> NCO + O", [6.14000E+12, 0, -440]) 1780 reaction( "NCO + O <=> NO + CO", [2.35000E+13, 0, 0]) 1783 reaction( "NCO + H <=> NH + CO", [5.40000E+13, 0, 0]) 1786 reaction( "NCO + OH <=> NO + H + CO", [2.50000E+12, 0, 0]) 1789 reaction( "NCO + N <=> N2 + CO", [2.00000E+13, 0, 0]) 1792 reaction( "NCO + O2 <=> NO + CO2", [2.00000E+12, 0, 20000]) 1802 reaction( "NCO + NO <=> N2 + CO2", [3.80000E+18, -2, 800]) [all …]
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H A D | gri30.cti | 16 HCN H2CN HCNN HCNO HOCN HNCO NCO N2 AR C3H7 884 species(name = "NCO", 1768 reaction( "CN + OH <=> NCO + H", [4.00000E+13, 0, 0]) 1774 reaction( "CN + O2 <=> NCO + O", [6.14000E+12, 0, -440]) 1780 reaction( "NCO + O <=> NO + CO", [2.35000E+13, 0, 0]) 1783 reaction( "NCO + H <=> NH + CO", [5.40000E+13, 0, 0]) 1786 reaction( "NCO + OH <=> NO + H + CO", [2.50000E+12, 0, 0]) 1789 reaction( "NCO + N <=> N2 + CO", [2.00000E+13, 0, 0]) 1792 reaction( "NCO + O2 <=> NO + CO2", [2.00000E+12, 0, 20000]) 1802 reaction( "NCO + NO <=> N2 + CO2", [3.80000E+18, -2, 800]) [all …]
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