Nemo  2.4.2
Simulate forward-in-time genetic evolution in a spatially explicit, individual-based stochastic simulator
TTQuanti_continuous_no_pleio Class Reference

TTQuanti_continuous_no_pleio : multiple non-pleiotropic traits. More...

#include <ttquanti.h>

+ Inheritance diagram for TTQuanti_continuous_no_pleio:
+ Collaboration diagram for TTQuanti_continuous_no_pleio:

Public Member Functions

 TTQuanti_continuous_no_pleio ()
 
 TTQuanti_continuous_no_pleio (const TTQuanti_continuous_no_pleio &TT)
 
virtual ~TTQuanti_continuous_no_pleio ()
 
virtual void init_sequence ()
 
virtual TTQuanti_continuous_no_pleioclone ()
 
virtual void show_up ()
 
virtual double get_additive_genotype (const unsigned int trait) const
 
virtual double get_dominant_genotype (const unsigned int trait) const
 
virtual void copy_sequence_block (sex_t SEX, unsigned int strand, unsigned int from_locus, unsigned int to_locus, const TTQuanti *parent)
 
virtual void copy_sequence_1locus (sex_t SEX, unsigned int strand, unsigned int at, const TTQuanti *parent)
 
- Public Member Functions inherited from TTQuanti_continuous
 TTQuanti_continuous ()
 
 TTQuanti_continuous (const TTQuanti &T)
 
virtual ~TTQuanti_continuous ()
 
virtual void reset ()
 
virtual void init ()
 
virtual void set_sequence (void **seq)
 
virtual void ** get_sequence () const
 
virtual unsigned int get_allele (int loc, int all) const
 
virtual double get_allele_value (int loc, int all) const
 
virtual void set_allele_value (unsigned int locus, unsigned int allele, double value)
 
virtual TTQuanti_continuousoperator= (const TTrait &T)
 
virtual bool operator== (const TTrait &T)
 
virtual bool operator!= (const TTrait &T)
 
virtual void store_data (BinaryStorageBuffer *saver)
 
virtual bool retrieve_data (BinaryStorageBuffer *reader)
 
virtual double get_full_genotype (unsigned int trait)
 
virtual void set_allele (int locus, int allele, double value)
 
virtual void mutate_add (unsigned int position, unsigned int allele, double value)
 
virtual void mutate_inplace (unsigned int position, unsigned int allele, double value)
 
virtual bool get_allele_bit (unsigned int position, unsigned int allele) const
 
virtual void set_allele_bit (unsigned int position, unsigned int allele, bool value)
 
- Public Member Functions inherited from TTQuanti
 TTQuanti ()
 
 TTQuanti (const TTQuanti &T)
 
virtual ~TTQuanti ()
 
virtual trait_t get_type () const
 
virtual void mutate ()
 
virtual void inherit (const TTrait *mother, const TTrait *father)
 
virtual void * set_trait (void *value)
 
virtual void set_value ()
 
virtual void * getValue () const
 
void set_proto (TProtoQuanti *proto)
 
TProtoQuantiget_proto ()
 
double get_phenotype (unsigned int trai)
 
void set_phenotype (unsigned int trait, double value)
 
void reset_phenotype_to_genotypic_value ()
 
- Public Member Functions inherited from TTrait
virtual ~TTrait ()
 
- Public Member Functions inherited from StorableComponent
virtual ~StorableComponent ()
 

Additional Inherited Members

- Protected Attributes inherited from TTQuanti_continuous
double ** _sequence
 
- Protected Attributes inherited from TTQuanti
double * _phenotypes
 
double * _genotypic_values
 
TProtoQuanti_myProto
 

Detailed Description

TTQuanti_continuous_no_pleio : multiple non-pleiotropic traits.

Constructor & Destructor Documentation

◆ TTQuanti_continuous_no_pleio() [1/2]

TTQuanti_continuous_no_pleio::TTQuanti_continuous_no_pleio ( )
inline
228 : TTQuanti_continuous() {}
TTQuanti_continuous()
Definition: ttquanti.h:116

Referenced by clone().

+ Here is the caller graph for this function:

◆ TTQuanti_continuous_no_pleio() [2/2]

TTQuanti_continuous_no_pleio::TTQuanti_continuous_no_pleio ( const TTQuanti_continuous_no_pleio TT)
inline
230 : TTQuanti_continuous(TT) {}

◆ ~TTQuanti_continuous_no_pleio()

virtual TTQuanti_continuous_no_pleio::~TTQuanti_continuous_no_pleio ( )
inlinevirtual
232 {}

Member Function Documentation

◆ clone()

virtual TTQuanti_continuous_no_pleio* TTQuanti_continuous_no_pleio::clone ( )
inlinevirtual

Implements TTrait.

236 {return new TTQuanti_continuous_no_pleio(*this);}
TTQuanti_continuous_no_pleio()
Definition: ttquanti.h:228

References TTQuanti_continuous_no_pleio().

◆ copy_sequence_1locus()

void TTQuanti_continuous_no_pleio::copy_sequence_1locus ( sex_t  SEX,
unsigned int  strand,
unsigned int  at,
const TTQuanti parent 
)
inlinevirtual

Implements TTQuanti.

3743 {
3744  const double *orig = (const double*)parent->get_sequence()[strand];
3745 
3746  _sequence[SEX][at] = orig[at];
3747 }
double ** _sequence
Definition: ttquanti.h:161
virtual void ** get_sequence() const =0
sequence accessor.

References TTQuanti_continuous::_sequence, and TTrait::get_sequence().

◆ copy_sequence_block()

void TTQuanti_continuous_no_pleio::copy_sequence_block ( sex_t  SEX,
unsigned int  strand,
unsigned int  from_locus,
unsigned int  to_locus,
const TTQuanti parent 
)
inlinevirtual

Implements TTQuanti.

3727 {
3728  assert(to_locus >= from_locus);
3729 
3730  const double *orig = (const double*)parent->get_sequence()[strand];
3731  double *seq = _sequence[SEX];
3732 
3733  size_t block_size = (to_locus - from_locus) * _myProto->get_locus_byte_size();
3734 
3735  memcpy(&seq[from_locus], &orig[from_locus], block_size);
3736 
3737 }
size_t get_locus_byte_size()
Definition: ttquanti.h:427
TProtoQuanti * _myProto
Definition: ttquanti.h:105

References TTQuanti::_myProto, TTQuanti_continuous::_sequence, TProtoQuanti::get_locus_byte_size(), and TTrait::get_sequence().

◆ get_additive_genotype()

double TTQuanti_continuous_no_pleio::get_additive_genotype ( const unsigned int  trait) const
inlinevirtual

Implements TTQuanti.

3662 {
3663  double genotype = 0;
3664  unsigned int L = _myProto->get_num_locus(trait); //number of loci affecting this trait
3665  unsigned int pos = _myProto->get_locus_seq_pos(0, trait); //starting position, all loci contiguous on the map
3666 
3667  // to help with vectorization:
3668  const double* __restrict__ s0 = _sequence[0] + pos;
3669  const double* __restrict__ s1 = _sequence[1] + pos;
3670 
3671  for (unsigned int j = 0; j < L; ++j) genotype += s0[j] + s1[j];
3672 
3673 // for(unsigned int j = 0; j < L; ++j, ++pos) {
3674 // genotype += _sequence[0][pos] + _sequence[1][pos];
3675 // }
3676 
3677  return genotype;
3678 }
unsigned int get_locus_seq_pos(unsigned int loc, unsigned int trait)
Definition: ttquanti.h:451
unsigned int get_num_locus()
Definition: ttquanti.h:422

References TTQuanti::_myProto, TTQuanti_continuous::_sequence, TProtoQuanti::get_locus_seq_pos(), and TProtoQuanti::get_num_locus().

◆ get_dominant_genotype()

double TTQuanti_continuous_no_pleio::get_dominant_genotype ( const unsigned int  trait) const
inlinevirtual

Implements TTQuanti.

3683 {
3684  double genotype = 0, k, a1, a2;
3685  unsigned int L = _myProto->get_num_locus(trait); //number of loci affecting this trait
3686  unsigned int pos = _myProto->get_locus_seq_pos(0, trait); //starting position, all loci contiguous on the map
3687  unsigned int locID;
3688 
3689  const double* __restrict__ s0 = _sequence[0] + pos;
3690  const double* __restrict__ s1 = _sequence[1] + pos;
3691  const TMatrix& __restrict__ dom_coef = _myProto->get_dominance_effects();
3692 
3693 // if(_myProto->has_equal_domCoeff()){
3694 // k = dom_coef.get(trait, _myProto->get_locus_ID(0, trait));
3695 // for (unsigned int j = 0; j < L; ++j) {
3696 // double a1 = s0[j], a2 = s1[j];
3697 // genotype += a1 + a2 + k * fabs(a2 - a1);
3698 // }
3699 // return genotype;
3700 // }
3701 //
3702  // double a1 = s0[j], a2 = s1[j];
3703  for (unsigned int j = 0; j < L; ++j) {
3704  locID = _myProto->get_locus_ID(j, trait);
3705 // genotype += _myProto->get_genotype_dominance_k(s0[j], s1[j],
3706 // _myProto->get_dominance(locID, trait));
3707  a1 = s0[j]; a2 = s1[j];
3708  k = dom_coef.get(trait, locID);
3709  genotype += a1 + a2 + k * fabs(a2 - a1);
3710  }
3711 
3712 // for(unsigned int j = 0; j < L; ++j, ++pos) {
3713 // locID = _myProto->get_locus_ID(j, trait);
3714 // genotype += _myProto->get_genotype_dominance_k(_sequence[0][pos], _sequence[1][pos],
3715 // _myProto->get_dominance(locID, trait));
3718 // }
3719 
3720  return genotype;
3721 }
A class to handle matrix in params, coerces matrix into a vector of same total size.
Definition: tmatrix.h:48
unsigned int get_locus_ID(unsigned int locus, unsigned int trait)
Definition: ttquanti.h:453
const TMatrix & get_dominance_effects()
Definition: ttquanti.h:479

References TTQuanti::_myProto, TTQuanti_continuous::_sequence, TProtoQuanti::get_dominance_effects(), TProtoQuanti::get_locus_ID(), TProtoQuanti::get_locus_seq_pos(), and TProtoQuanti::get_num_locus().

◆ init_sequence()

void TTQuanti_continuous_no_pleio::init_sequence ( )
inlinevirtual

Implements TTrait.

3752 {
3753  // cout << "\nStart of TTQuanti_var_pleio::init_sequence!\t\n";
3754 
3755  //options:
3756  //0: no variation, init value = (trait value)/(2*_num_locus)
3757  //1: init value = (trait value)/(2*_num_locus) + 1 mutation/locus
3758  //2: init value = (trait value)/(2*_num_locus) + random deviate ~N(0, _init_variance/2*_num_locus)
3759 
3760  //Note: the initial values may have been set individually by LCE_quanti
3761  // it wouldn't make sense then to store the init values in the prototype
3762  // because init values are set patch-specific by LCE_quanti
3763  // Problem: without LCE_quanti, the original init values must not change from one replicate
3764  // to the other, so we use a local variable
3765 
3766 
3767  //set the allele values from the trait values
3768  double myinit, initSD;
3769  for(unsigned int i = 0; i < _myProto->get_num_traits(); ++i){ // process trait-wise
3770 
3771  myinit = _myProto->get_init_value(i) / (2 * _myProto->get_num_locus(i)); //divide by num loci affecting that trait
3772  initSD = sqrt(_myProto->get_init_variance(i)/(2*_myProto->get_num_locus(i)));
3773 
3774  for(unsigned int j = 0, pos = _myProto->get_locus_seq_pos(0, i); j < _myProto->get_num_locus(i); ++j, ++pos){
3775  _sequence[0][ pos ] = myinit;
3776  _sequence[1][ pos ] = myinit;
3777  }
3778 
3779  if(_myProto->get_doInitMutation() == 2) {
3780  // add a random deviate from a Normal distribution
3781  for(unsigned int j = 0, pos = _myProto->get_locus_seq_pos(0, i); j < _myProto->get_num_locus(i); ++j, ++pos){
3782  _sequence[0][ pos ] += RAND::Gaussian(initSD);
3783  _sequence[1][ pos ] += RAND::Gaussian(initSD);
3784  }
3785  }
3786 
3787  }
3788 
3789  //add random mutations to allele values
3790  if(_myProto->get_doInitMutation() == 1) {
3791 
3792  for(unsigned int i = 0; i < _myProto->get_num_locus(); i++) {
3793 
3795 
3796  }
3797  }
3798 
3799 
3800 
3801 }
static double Gaussian(double sigma)
Definition: Uniform.h:271
static bool RandBool()
Returns a random boolean.
Definition: Uniform.h:170
double * getMutationEffects(unsigned int loc)
Definition: ttquanti.h:531
double get_init_value(unsigned int i)
Definition: ttquanti.h:445
double get_init_variance(unsigned int i)
Definition: ttquanti.h:446
unsigned int get_num_traits()
Definition: ttquanti.h:421
unsigned int get_doInitMutation()
Definition: ttquanti.h:447

References TTQuanti::_myProto, TTQuanti_continuous::_sequence, RAND::Gaussian(), TProtoQuanti::get_doInitMutation(), TProtoQuanti::get_init_value(), TProtoQuanti::get_init_variance(), TProtoQuanti::get_locus_seq_pos(), TProtoQuanti::get_num_locus(), TProtoQuanti::get_num_traits(), TProtoQuanti::getMutationEffects(), and RAND::RandBool().

◆ show_up()

void TTQuanti_continuous_no_pleio::show_up ( )
virtual

Implements TTrait.

3806 {
3807  message("\
3808  Trait's type: QUANTI (continuous, no pleiotropy)\n\
3809  traits: %i\n\
3810  loci: %i\n\
3811  seq length: %i\n",_myProto->get_num_traits(),_myProto->get_num_locus()
3812  ,_myProto->get_seq_length());
3813 
3814  for(unsigned int i = 0; i < _myProto->get_num_traits(); i++)
3815  message("phenotype %i: %f\n",i+1,_phenotypes[i]);
3816 
3817  message("genotype:");
3818 
3819  for(unsigned int i = 0; i < _myProto->get_num_traits(); ++i) {
3820 
3821  message("\ntrait %i (%i loci):\nloci: ",i+1, _myProto->get_num_locus(i));
3822 
3823  for(unsigned int j = 0; j < _myProto->get_num_locus(i); ++j) {
3824  message("%i, ", _myProto->get_locus_ID(j, i));
3825  }
3826 
3827  message("\n[0]: ");
3828 
3829  for(unsigned int j = 0; j < _myProto->get_num_locus(i); ++j) {
3830  message("%.3f,",_sequence[0][ _myProto->get_locus_seq_pos(j, i) ]);
3831  }
3832 
3833  message("\n[1]: ");
3834 
3835  for(unsigned int j = 0; j < _myProto->get_num_locus(i); ++j) {
3836  message("%.3f,",_sequence[1][ _myProto->get_locus_seq_pos(j, i) ]);
3837  }
3838  }
3839 
3840  message("\n");
3841 
3842 }
unsigned int get_seq_length()
Definition: ttquanti.h:425
double * _phenotypes
Definition: ttquanti.h:103
void message(const char *message,...)
Definition: output.cc:38

References TTQuanti::_myProto, TTQuanti::_phenotypes, TTQuanti_continuous::_sequence, TProtoQuanti::get_locus_ID(), TProtoQuanti::get_locus_seq_pos(), TProtoQuanti::get_num_locus(), TProtoQuanti::get_num_traits(), TProtoQuanti::get_seq_length(), and message().


The documentation for this class was generated from the following files:

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