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FI_GrasslandSilageAnnual Class Reference

FI_GrasslandSilageAnnual class
. More...

#include <FI_GrasslandSilageAnnual.h>

Inheritance diagram for FI_GrasslandSilageAnnual:
Crop

Public Member Functions

virtual bool Do (Farm *a_farm, LE *a_field, FarmEvent *a_ev)
 The one and only method for a crop management plan. All farm actions go through here. More...
 
 FI_GrasslandSilageAnnual (TTypesOfVegetation a_tov, TTypesOfCrops a_toc, Landscape *a_L)
 
void SetUpFarmCategoryInformation ()
 
- Public Member Functions inherited from Crop
virtual ~Crop ()
 
 Crop (TTypesOfVegetation a_tov, TTypesOfCrops a_toc, Landscape *a_L)
 
int GetFirstDate (void)
 
void ChooseNextCrop (int a_no_dates)
 Chooses the next crop to grow in a field. More...
 
int GetCropClassification ()
 
void SetCropClassification (int a_classification)
 
void GetCropType (TTypesOfCrops a_toc)
 
TTypesOfCrops GetCropType ()
 
FarmManagementCategory LookUpManagementCategory (int a_todo)
 
bool GetForceSpringOK ()
 

Additional Inherited Members

- Public Attributes inherited from Crop
TTypesOfVegetation m_tov
 
- Protected Member Functions inherited from Crop
void SimpleEvent (long a_date, int a_todo, bool a_lock)
 Adds an event to this crop management. More...
 
void SimpleEvent_ (long a_date, int a_todo, bool a_lock, Farm *a_farm, LE *a_field)
 Adds an event to this crop management without relying on member variables. More...
 
bool StartUpCrop (int a_spring, std::vector< std::vector< int >> a_flexdates, int a_todo)
 
Holds the translation between the farm operation enum for each cropand the farm management category associated with it More...
 
bool AphidDamage (LE *a_field)
 Compares aphid numbers per m2 with a threshold to return true if threshold is exceeded. More...
 
- Protected Attributes inherited from Crop
Farmm_farm
 
LEm_field
 
FarmEventm_ev
 
int m_first_date
 
int m_count
 
int m_last_date
 
int m_ddegstoharvest
 
int m_base_elements_no
 
Landscapem_OurLandscape
 
bool m_forcespringpossible = false
 Used to signal that the crop can be forced to start in spring. More...
 
TTypesOfCrops m_toc
 The Crop type in terms of the TTypesOfCrops list (smaller list than tov, no country designation) More...
 
int m_CropClassification
 Contains information on whether this is a winter crop, spring crop, or catch crop that straddles the year boundary (0,1,2) More...
 
vector< FarmManagementCategorym_ManagementCategories
 Holds the translation between the farm operation enum for each crop and the farm management category associated with it. More...
 
- Static Protected Attributes inherited from Crop
static int m_date_modifier = 0
 Holds a value that shifts test pesticide use by this many days in crops modified to use it. More...
 

Detailed Description

FI_GrasslandSilageAnnual class
.

See FI_GrasslandSilageAnnual.h::FI_GrasslandSilageAnnualToDo for a complete list of all possible events triggered codes by the GrasslandSilageAnnual management plan. When triggered these events are handled by Farm and are available as information for other objects such as animal and bird models.

Constructor & Destructor Documentation

◆ FI_GrasslandSilageAnnual()

FI_GrasslandSilageAnnual::FI_GrasslandSilageAnnual ( TTypesOfVegetation  a_tov,
TTypesOfCrops  a_toc,
Landscape a_L 
)
inline
97  : Crop(a_tov, a_toc, a_L)
98  {
99  // When we start it off, the first possible date for a farm operation is 1st October
100  // This information is used by other crops when they decide how much post processing of
101  // the management is allowed after harvest before the next crop starts.
102  m_first_date = g_date->DayInYear(1, 12);
103  m_forcespringpossible = true;
105  }

References Calendar::DayInYear(), g_date, Crop::m_first_date, Crop::m_forcespringpossible, and SetUpFarmCategoryInformation().

Member Function Documentation

◆ Do()

bool FI_GrasslandSilageAnnual::Do ( Farm a_farm,
LE a_field,
FarmEvent a_ev 
)
virtual

The one and only method for a crop management plan. All farm actions go through here.

Called every time something is done to the crop by the farmer in the first instance it is always called with a_ev->todo set to start, but susequently will be called whenever the farmer wants to carry out a new operation.
This method details all the management and relationships between operations necessary to grow and ALMaSS crop - in this case conventional spring barley Fodder.

Reimplemented from Crop.

99 {
100  m_field = a_field; // this is needed because of possible calls to other methods and currently we do not pass parameters.
101  m_farm = a_farm; // this is needed because of possible calls to other methods and currently we do not pass parameters.
102  bool done = false; // The boolean value done indicates when we are totally finished with this plan (i.e. it is set to true).
103  int d1 = 0;
104  m_ev = a_ev;
106  int l_nextcropstartdate;
107  // Depending what event has occured jump to the correct bit of code e.g. for ww_start jump to line 67 below
108  switch (a_ev->m_todo)
109  {
110  case fi_gsa_start:
111  {
112  a_field->ClearManagementActionSum();
113  m_last_date = g_date->DayInYear(30, 9); // Should match the last flexdate below
114  //Create a 2d array of 1 plus the number of operations you use. Change only 4+1 to what you need in the line below
115  std::vector<std::vector<int>> flexdates(1 + 1, std::vector<int>(2, 0));
116  // Set up the date management stuff
117  // Start and stop dates for all events after harvest
118  flexdates[0][1] = g_date->DayInYear(30, 9); // last possible day of harvest - this is in effect day before the earliest date that a following crop can use
119  // Now these are done in pairs, start & end for each operation. If its not used then -1
120 
121  // Below if this is a spring crop use 365, otherwise first parameter is always 0, second parameter is fixed, and the third is the start up operation in the first year
122  int isSpring = 0;
123  if (StartUpCrop(isSpring, flexdates, int(fi_gsa_preseeding_cultivation))) break;
124 
125  // End single block date checking code. Please see next line comment as well.
126  // Reinit d1 to first possible starting date.
127  d1 = g_date->OldDays() + g_date->DayInYear(1, 9);
128  // OK, let's go.
129  // Here we queue up the first event which changes dependent on whether it is a forced spring sow or not
130  if (m_ev->m_forcespring) {
131  int day_num_shift = 365;
132  if (g_date->DayInYear() < 70) day_num_shift = 0;
133  SimpleEvent(g_date->OldDays() + g_date->DayInYear(1, 5) + day_num_shift, fi_gsa_preseeding_cultivation, false);
134  break;
135  }
136  else SimpleEvent(d1, fi_gsa_herbicide, false);
137  break;
138  }
139  break;
140 
141  case fi_gsa_herbicide:
142  if (a_ev->m_lock || a_farm->DoIt(20)) {
143  if (!a_farm->HerbicideTreat(a_field, 0.0, g_date->DayInYear(30, 9) - g_date->DayInYear())) {
144  // If we don't succeed on the first try, then try and try again (until 10/10 when we will succeed)
145  SimpleEvent(g_date->Date() + 1, fi_gsa_herbicide, true);
146  break;
147  }
148  }
150  break;
152  if (a_ev->m_lock || a_farm->DoIt(90)) {
153  if (!a_farm->WinterPlough(a_field, 0.0, g_date->DayInYear(30, 10) - g_date->DayInYear())) {
154  // If we don't succeed on the first try, then try and try again (until 10/10 when we will succeed)
156  break;
157  }
158  }
159  //Here comes a fork of parallel events:
160  SimpleEvent(g_date->OldDays() + g_date->DayInYear(1, 4) + 365, fi_gsa_slurry, false); //slurry thread
161  SimpleEvent(g_date->OldDays() + g_date->DayInYear(1, 5) + 365, fi_gsa_preseeding_cultivation, false); //preseeding cultivation thread - main thread// next event -
162  break;
163  case fi_gsa_slurry: // 50% do this
164  if (a_ev->m_lock || a_farm->DoIt(50)) {
165  if (!a_farm->FA_Slurry(a_field, 0.0,
166  g_date->DayInYear(30, 5) - g_date->DayInYear())) {
167  SimpleEvent(g_date->Date() + 1, fi_gsa_slurry, true);
168  break;
169  }
170  }
171  break; //End of slurry thread
172  //preseeding cultivation - 100% do this
174  if (a_ev->m_lock || a_farm->DoIt(100)) {
175  if (!a_farm->PreseedingCultivator(a_field, 0.0,
176  g_date->DayInYear(15, 6) - g_date->DayInYear())) {
178  break;
179  }
180  }
182  break;
183  case fi_gsa_sow_w_cc: // sowing with catch crops 80% do this
184  if (a_ev->m_lock || a_farm->DoIt_prob(.60)) {
185  if (!a_farm->SpringSow(m_field, 0.0, g_date->DayInYear(15, 5) - g_date->DayInYear())) {
186  SimpleEvent(g_date->Date() + 1, fi_gsa_sow_w_cc, true);
187  break;
188  }
190  break;
191  } //sow wo catch crop
192  else if (a_ev->m_lock || a_farm->DoIt_prob(.40 / .40)) {
194  break;
195  }
196  case fi_gsa_sow_wo_cc: // sowing wo catch crops 40% do this
197  if (!a_farm->SpringSow(m_field, 0.0, g_date->DayInYear(15, 5) - g_date->DayInYear())) {
198  SimpleEvent(g_date->Date() + 1, fi_gsa_sow_wo_cc, true);
199  break;
200  }
202  break;
203  case fi_gsa_npk_w_cc:
204  if (a_ev->m_lock || a_farm->DoIt(90)) { //90% do this
205  if (!a_farm->FP_NPK(a_field, 0.0,
206  g_date->DayInYear(15, 6) - g_date->DayInYear())) {
207  SimpleEvent(g_date->Date() + 1, fi_gsa_npk_w_cc, true);
208  break;
209  }
210  } // harvest of catch crop
212  break;
213  case fi_gsa_npk_wo_cc:
214  if (a_ev->m_lock || a_farm->DoIt(90)) { //90% do this
215  if (!a_farm->FP_NPK(a_field, 0.0,
216  g_date->DayInYear(15, 6) - g_date->DayInYear())) {
217  SimpleEvent(g_date->Date() + 1, fi_gsa_npk_wo_cc, true);
218  break;
219  }
220  }
222  break;
223  case fi_gsa_harvest:
224  if (!a_farm->Harvest(a_field, 0.0,
225  g_date->DayInYear(15, 9) - g_date->DayInYear())) {
226  SimpleEvent(g_date->Date() + 1, fi_gsa_harvest, true);
227  break;
228  }
230  break;
231  case fi_gsa_grazing_wo_cc: // 40% of all (100% wo cc)
232  if (a_ev->m_lock || a_farm->DoIt(100)) {
233  if (!a_farm->CattleOut(a_field, 0.0,
234  g_date->DayInYear(15, 9) - g_date->DayInYear())) {
236  break;
237  }
239  break;
240  }
241  done = true;
242  break;
243 
244  case fi_gsa_cattle_is_out_wo_cc: // Keep the cattle out there
245  // CattleIsOut() returns false if it is not time to stop grazing
246  if (!m_farm->CattleIsOut(m_field, 0.0, g_date->DayInYear(15, 9) - g_date->DayInYear(), g_date->DayInYear(15, 9))) {
248  break;
249 
250  }
252  break;
253  case fi_gsa_slurry_wo_cc: // 50% do this
254  if (a_ev->m_lock || a_farm->DoIt(50)) {
255  if (!a_farm->FA_Slurry(a_field, 0.0,
256  g_date->DayInYear(22, 9) - g_date->DayInYear())) {
258  break;
259  }
260  done = true;
261  break;
262  }
263  else SimpleEvent(g_date->Date() < 7, fi_gsa_npk2_wo_cc, false);
264  break;
265  case fi_gsa_npk2_wo_cc: // 50% do this
266  if (!a_farm->FP_NPK(a_field, 0.0,
267  g_date->DayInYear(22, 9) - g_date->DayInYear())) {
268  SimpleEvent(g_date->Date() + 1, fi_gsa_npk2_wo_cc, true);
269  break;
270  }
271  done = true;
272  break;
273 
274  case fi_gsa_grazing_w_cc: // 30% of all (50% of the 60% w cc)
275  if (a_ev->m_lock || a_farm->DoIt(50)) {
276  if (!a_farm->CattleOut(a_field, 0.0,
277  g_date->DayInYear(15, 9) - g_date->DayInYear())) {
279  break;
280  }
282  break;
283  }
284  done = true;
285  break;
286  case fi_gsa_cattle_is_out_w_cc: // Keep the cattle out there
287  // CattleIsOut() returns false if it is not time to stop grazing
288  if (!m_farm->CattleIsOut(m_field, 0.0, m_field->GetMDates(1, 0) - g_date->DayInYear(), m_field->GetMDates(1, 0))) {
290  break;
291 
292  }
293  done = true;
294  break;// So we are done, and somewhere else the farmer will queue up the start event of the next crop
295  // END OF MAIN THREAD
296 
297  default:
298  g_msg->Warn(WARN_BUG, "FI_GrasslandSilageAnnual::Do(): "
299  "Unknown event type! ", "");
300  exit(1);
301  }
302  return done;
303 }

References Farm::CattleIsOut(), Farm::CattleOut(), LE::ClearManagementActionSum(), Calendar::Date(), Calendar::DayInYear(), Farm::DoIt(), Farm::DoIt_prob(), Farm::FA_Slurry(), fi_gsa_cattle_is_out_w_cc, fi_gsa_cattle_is_out_wo_cc, fi_gsa_grazing_w_cc, fi_gsa_grazing_wo_cc, fi_gsa_harvest, fi_gsa_herbicide, fi_gsa_npk2_wo_cc, fi_gsa_npk_w_cc, fi_gsa_npk_wo_cc, fi_gsa_preseeding_cultivation, fi_gsa_slurry, fi_gsa_slurry_wo_cc, fi_gsa_sow_w_cc, fi_gsa_sow_wo_cc, fi_gsa_start, fi_gsa_winter_plough, Farm::FP_NPK(), g_date, g_msg, LE::GetMDates(), Farm::Harvest(), Farm::HerbicideTreat(), Crop::m_ev, Crop::m_farm, Crop::m_field, FarmEvent::m_forcespring, Crop::m_last_date, FarmEvent::m_lock, FarmEvent::m_todo, Calendar::OldDays(), Farm::PreseedingCultivator(), Crop::SimpleEvent(), Farm::SpringSow(), Crop::StartUpCrop(), tov_FIGrasslandSilageAnnual, MapErrorMsg::Warn(), WARN_BUG, and Farm::WinterPlough().

◆ SetUpFarmCategoryInformation()

void FI_GrasslandSilageAnnual::SetUpFarmCategoryInformation ( )
inline
106  {
107  const int elements = 2 + (fi_gsa_foobar - FI_GSA_BASE);
109 
110  FarmManagementCategory catlist[elements] =
111  {
112  fmc_Others, // zero element unused but must be here
113  fmc_Others, // fi_gsa_start = 1, // Compulsory, must always be 1 (one).
114  fmc_Others, // fi_gsa_sleep_all_day = FI_GSA_BASE,
115  fmc_Cultivation, // fi_gsa_winter_plough,
116  fmc_Herbicide, // fi_gsa_herbicide,
117  fmc_Fertilizer, // fi_gsa_slurry,
118  fmc_Cultivation, // fi_gsa_preseeding_cultivation,
119  fmc_Others, // fi_gsa_sow_w_cc,
120  fmc_Others, // fi_gsa_sow_wo_cc,
121  fmc_Fertilizer, // fi_gsa_npk_w_cc,
122  fmc_Fertilizer, // fi_gsa_npk_wo_cc,
123  fmc_Harvest, // fi_gsa_harvest,
124  fmc_Grazing, // fi_gsa_grazing_wo_cc,
125  fmc_Grazing, // fi_gsa_cattle_is_out_wo_cc,
126  fmc_Fertilizer, // fi_gsa_slurry_wo_cc,
127  fmc_Fertilizer, // fi_gsa_npk2_wo_cc,
128  fmc_Grazing, // fi_gsa_grazing_w_cc,
129  fmc_Grazing // fi_gsa_cattle_is_out_w_cc,
130 
131 
132  // no foobar entry
133 
134  };
135  // Iterate over the catlist elements and copy them to vector
136  copy(begin(catlist), end(catlist), back_inserter(m_ManagementCategories));
137 
138  }

References FI_GSA_BASE, fi_gsa_foobar, fmc_Cultivation, fmc_Fertilizer, fmc_Grazing, fmc_Harvest, fmc_Herbicide, fmc_Others, Crop::m_base_elements_no, and Crop::m_ManagementCategories.

Referenced by FI_GrasslandSilageAnnual().


The documentation for this class was generated from the following files:
LE::GetMDates
int GetMDates(int a, int b)
Definition: Elements.h:405
FarmEvent::m_forcespring
bool m_forcespring
Definition: Farm.h:392
fi_gsa_slurry
Definition: FI_GrasslandSilageAnnual.h:68
Farm::FA_Slurry
virtual bool FA_Slurry(LE *a_field, double a_user, int a_days)
Spready slurry on a_field owned by an stock farmer.
Definition: FarmFuncs.cpp:1067
fi_gsa_herbicide
Definition: FI_GrasslandSilageAnnual.h:67
Farm::PreseedingCultivator
virtual bool PreseedingCultivator(LE *a_field, double a_user, int a_days)
Carry out preseeding cultivation on a_field (tilling set including cultivator and string roller to co...
Definition: FarmFuncs.cpp:312
Farm::HerbicideTreat
virtual bool HerbicideTreat(LE *a_field, double a_user, int a_days)
Apply herbicide to a_field.
Definition: FarmFuncs.cpp:2025
Farm::Harvest
virtual bool Harvest(LE *a_field, double a_user, int a_days)
Carry out a harvest on a_field.
Definition: FarmFuncs.cpp:1364
FarmEvent::m_lock
bool m_lock
Definition: Farm.h:384
Farm::CattleIsOut
virtual bool CattleIsOut(LE *a_field, double a_user, int a_days, int a_max)
Generate a 'cattle_out' event for every day the cattle are on a_field.
Definition: FarmFuncs.cpp:2470
LE::ClearManagementActionSum
void ClearManagementActionSum()
clears the management action counters
Definition: Elements.h:247
Farm::FP_NPK
virtual bool FP_NPK(LE *a_field, double a_user, int a_days)
Apply NPK fertilizer, on a_field owned by an arable farmer.
Definition: FarmFuncs.cpp:645
Farm::DoIt
bool DoIt(double a_probability)
Return chance out of 0 to 100.
Definition: Farm.cpp:856
FI_GrasslandSilageAnnual::SetUpFarmCategoryInformation
void SetUpFarmCategoryInformation()
Definition: FI_GrasslandSilageAnnual.h:106
Farm::DoIt_prob
bool DoIt_prob(double a_probability)
Return chance out of 0 to 1.
Definition: Farm.cpp:864
g_date
class Calendar * g_date
Definition: Calendar.cpp:37
fmc_Herbicide
Definition: LandscapeFarmingEnums.h:1006
Farm::SpringSow
virtual bool SpringSow(LE *a_field, double a_user, int a_days, double a_seed_coating_amount=-1, PlantProtectionProducts a_ppp=ppp_foobar)
Carry out a sowing event in the spring on a_field.
Definition: FarmFuncs.cpp:501
Crop::m_base_elements_no
int m_base_elements_no
Definition: Farm.h:505
fi_gsa_start
Definition: FI_GrasslandSilageAnnual.h:64
fi_gsa_cattle_is_out_wo_cc
Definition: FI_GrasslandSilageAnnual.h:76
Crop::m_first_date
int m_first_date
Definition: Farm.h:501
fi_gsa_npk2_wo_cc
Definition: FI_GrasslandSilageAnnual.h:78
fi_gsa_grazing_wo_cc
Definition: FI_GrasslandSilageAnnual.h:75
Crop::SimpleEvent
void SimpleEvent(long a_date, int a_todo, bool a_lock)
Adds an event to this crop management.
Definition: Farm.cpp:747
fmc_Fertilizer
Definition: LandscapeFarmingEnums.h:1004
fi_gsa_npk_wo_cc
Definition: FI_GrasslandSilageAnnual.h:73
fi_gsa_sow_w_cc
Definition: FI_GrasslandSilageAnnual.h:70
Calendar::Date
long Date(void)
Definition: Calendar.h:57
fmc_Cultivation
Definition: LandscapeFarmingEnums.h:1008
fmc_Others
Definition: LandscapeFarmingEnums.h:1003
fi_gsa_harvest
Definition: FI_GrasslandSilageAnnual.h:74
Calendar::OldDays
long OldDays(void)
Definition: Calendar.h:60
tov_FIGrasslandSilageAnnual
Definition: LandscapeFarmingEnums.h:564
fi_gsa_cattle_is_out_w_cc
Definition: FI_GrasslandSilageAnnual.h:80
fi_gsa_npk_w_cc
Definition: FI_GrasslandSilageAnnual.h:72
MapErrorMsg::Warn
void Warn(MapErrorState a_level, std::string a_msg1, std::string a_msg2)
Definition: MapErrorMsg.cpp:69
fi_gsa_winter_plough
Definition: FI_GrasslandSilageAnnual.h:66
Crop::StartUpCrop
bool StartUpCrop(int a_spring, std::vector< std::vector< int >> a_flexdates, int a_todo)
Holds the translation between the farm operation enum for each cropand the farm management category a...
Definition: Farm.cpp:652
Crop::m_farm
Farm * m_farm
Definition: Farm.h:498
Crop::m_field
LE * m_field
Definition: Farm.h:499
fi_gsa_foobar
Definition: FI_GrasslandSilageAnnual.h:81
Crop::m_ManagementCategories
vector< FarmManagementCategory > m_ManagementCategories
Holds the translation between the farm operation enum for each crop and the farm management category ...
Definition: Farm.h:530
fi_gsa_grazing_w_cc
Definition: FI_GrasslandSilageAnnual.h:79
FarmEvent::m_todo
int m_todo
Definition: Farm.h:388
Crop::m_last_date
int m_last_date
Definition: Farm.h:503
g_msg
MapErrorMsg * g_msg
Definition: MapErrorMsg.cpp:41
fmc_Grazing
Definition: LandscapeFarmingEnums.h:1010
TTypesOfVegetation
TTypesOfVegetation
Values that represent the types of vegetation that are represented in ALMaSS.
Definition: LandscapeFarmingEnums.h:192
fmc_Harvest
Definition: LandscapeFarmingEnums.h:1012
Farm::WinterPlough
virtual bool WinterPlough(LE *a_field, double a_user, int a_days)
Carry out a ploughing event in the winter on a_field.
Definition: FarmFuncs.cpp:395
Calendar::DayInYear
int DayInYear(void)
Definition: Calendar.h:58
fi_gsa_preseeding_cultivation
Definition: FI_GrasslandSilageAnnual.h:69
fi_gsa_slurry_wo_cc
Definition: FI_GrasslandSilageAnnual.h:77
FI_GSA_BASE
#define FI_GSA_BASE
Definition: FI_GrasslandSilageAnnual.h:53
Crop::Crop
Crop(TTypesOfVegetation a_tov, TTypesOfCrops a_toc, Landscape *a_L)
Definition: Farm.cpp:733
Crop::m_forcespringpossible
bool m_forcespringpossible
Used to signal that the crop can be forced to start in spring.
Definition: Farm.h:508
Crop::m_ev
FarmEvent * m_ev
Definition: Farm.h:500
Farm::CattleOut
virtual bool CattleOut(LE *a_field, double a_user, int a_days)
Start a grazing event on a_field today.
Definition: FarmFuncs.cpp:2368
WARN_BUG
Definition: MapErrorMsg.h:34
FarmManagementCategory
FarmManagementCategory
Definition: LandscapeFarmingEnums.h:1001
fi_gsa_sow_wo_cc
Definition: FI_GrasslandSilageAnnual.h:71