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ALMaSS  1.2 (after EcoStack, March 2024)
The Animal, Landscape and Man Simulation System
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FI_SpringRape Class Reference

FI_SpringRape class
. More...

#include <FI_SpringRape.h>

Inheritance diagram for FI_SpringRape:
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_SpringRape (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_SpringRape class
.

See FI_SpringRape.h::FI_SpringRapeToDo for a complete list of all possible events triggered codes by the winter wheat 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_SpringRape()

FI_SpringRape::FI_SpringRape ( TTypesOfVegetation  a_tov,
TTypesOfCrops  a_toc,
Landscape a_L 
)
inline
100  : Crop(a_tov, a_toc, a_L)
101  {
102  // When we start it off, the first possible date for a farm operation is 1st October
103  // This information is used by other crops when they decide how much post processing of
104  // the management is allowed after harvest before the next crop starts.
105  m_first_date=g_date->DayInYear( 1,12 );
106  m_forcespringpossible = true;
108  }

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

Member Function Documentation

◆ Do()

bool FI_SpringRape::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 winter wheat.

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  bool flag = false;
104  m_ev = a_ev;
105  int d1 = 0;
107  int l_nextcropstartdate;
108  // Depending what event has occured jump to the correct bit of code e.g. for ww_start jump to line 67 below
109  switch (a_ev->m_todo)
110  {
111  case fi_sr_start:
112  {
113  a_field->ClearManagementActionSum();
114  m_last_date = g_date->DayInYear(30, 10); // Should match the last flexdate below
115  //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
116  std::vector<std::vector<int>> flexdates(3 + 1, std::vector<int>(2, 0));
117  // Set up the date management stuff
118  // Start and stop dates for all events after harvest
119  flexdates[0][1] = g_date->DayInYear(10, 10); // last possible day of harvest - this is in effect day before the earliest date that a following crop can use
120  // Now these are done in pairs, start & end for each operation. If its not used then -1
121  flexdates[1][0] = -1; // This date will be moved back as far as necessary and potentially to flexdates 1 (start op 1)
122  flexdates[1][1] = g_date->DayInYear(10, 10); // This date will be moved back as far as necessary and potentially to flexdates 1 (end op 1)
123  flexdates[2][0] = -1; // This date will be moved back as far as necessary and potentially to flexdates 1 (start op 2)
124  flexdates[2][1] = g_date->DayInYear(15, 10); // This date will be moved back as far as necessary and potentially to flexdates 1 (end op 2)
125  flexdates[3][0] = -1; // This date will be moved back as far as necessary and potentially to flexdates 1 (start op 3)
126  flexdates[3][1] = g_date->DayInYear(30, 10); // This date will be moved back as far as necessary and potentially to flexdates 1 (end op 3)
127 
128 
129  // 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
130  int isSpring = 0;
131  if (StartUpCrop(isSpring, flexdates, int(fi_sr_slurry))) break;
132 
133  // End single block date checking code. Please see next line comment as well.
134  // Reinit d1 to first possible starting date.
135  d1 = g_date->OldDays() + g_date->DayInYear(1, 9);
136  // OK, let's go.
137  // Here we queue up the first event which changes dependent on whether it is a forced spring sow or not
138  if (m_ev->m_forcespring) {
139  int day_num_shift = 365;
140  if (g_date->DayInYear() < 70) day_num_shift = 0;
141  SimpleEvent(g_date->OldDays() + g_date->DayInYear(20, 4) + day_num_shift, fi_sr_slurry, false);
142  break;
143  }
144  else SimpleEvent(d1, fi_sr_stubble_cultivator1, false);
145  break;
146  }
147  break;
148 
149  // This is the first real farm operation - LKM: done if there is time between 1st September-10th of October - 50% do this
151  if (a_ev->m_lock || a_farm->DoIt(50)) {
152  if (!a_farm->StubbleCultivatorHeavy(a_field, 0.0, g_date->DayInYear(10, 10) - g_date->DayInYear())) {
153  // If we don't succeed on the first try, then try and try again (until 10/10 when we will succeed)
155  break;
156  }
157  // Queue up the next event - in this case organic slurry (the next year) - date is a suggestion (no date stated in crop scheme!) - 5% do this
158  SimpleEvent(g_date->OldDays() + g_date->DayInYear(20, 4) + 365, fi_sr_slurry, false);
159  break;
160  }
161  else // autumn plough - the rest (50%) do this
163  break;
164  case fi_sr_autumn_plough:
165  if (!a_farm->AutumnPlough(a_field, 0.0, g_date->DayInYear(15, 10) - g_date->DayInYear())) {
167  break;
168  }
169  // Queue up the next event - in this case organic slurry (the next year) - date is a suggestion - 5% do this
170  SimpleEvent(g_date->OldDays() + g_date->DayInYear(20, 4) + 365, fi_sr_slurry, false);
171  break;
172  case fi_sr_slurry:
173  if (a_ev->m_lock || a_farm->DoIt(5)) {
174  if (!a_farm->FP_Slurry(a_field, 0.0, g_date->DayInYear(30, 4) - g_date->DayInYear())) {
175  SimpleEvent(g_date->Date() + 1, fi_sr_slurry, true);
176  break;
177  }
178  }
179  // Queue up the next event - in this case spring plough (the next year) - date is a suggestion - 5% do this
181  break;
182  case fi_sr_spring_plough:
183  if (a_ev->m_lock || a_farm->DoIt(5)) {
184  if (!a_farm->SpringPlough(a_field, 0.0, g_date->DayInYear(30, 4) - g_date->DayInYear())) {
186  break;
187  }
188  }
189  // Queue up the next event - in this case preseeding cultivation - 85% do this
191  break;
193  if (a_ev->m_lock || a_farm->DoIt(85)) {
194  if (!a_farm->PreseedingCultivator(a_field, 0.0,
195  g_date->DayInYear(20, 5) - g_date->DayInYear())) {
197  break;
198  }
199  SimpleEvent(g_date->Date(), fi_sr_sow, false);
200  break;
201  } // the rest (15%) do preseeding cultivator with sow
202  else SimpleEvent(g_date->OldDays() + g_date->DayInYear(10, 5), fi_sr_preseeding_sow, false);
203  break;
204 
205  case fi_sr_sow: // sowing with fertilizer
206  if (!a_farm->SpringSowWithFerti(m_field, 0.0, g_date->DayInYear(31, 5) - g_date->DayInYear())) {
207  SimpleEvent(g_date->Date() + 1, fi_sr_sow, true);
208  break;
209  } // Queue up the next event - in this case harrow before emergence (suggest 7 days)
210  // LKM: Here is a fork leading to parallel events
211  SimpleEvent(g_date->OldDays() + g_date->DayInYear(1, 6) + m_date_modifier, fi_sr_insecticide1, false); // insecticide thread
212  SimpleEvent(g_date->OldDays() + g_date->DayInYear(10, 6), fi_sr_herbicide1, false); // herbicide thread - main thread
213  break;
215  if (!a_farm->PreseedingCultivatorSow(m_field, 0.0, g_date->DayInYear(31, 5) - g_date->DayInYear())) {
217  break;
218  } // fertilizer when preseeding cultivator with sowing
220  break;
221  case fi_sr_fertilizer:
222  if (!a_farm->FP_NPKS(a_field, 0.0,
223  g_date->DayInYear(31, 5) - g_date->DayInYear())) {
224  SimpleEvent(g_date->Date() + 1, fi_sr_fertilizer, true);
225  break;
226  }
227  // LKM: Here is a fork leading to parallel events
228  SimpleEvent(g_date->OldDays() + g_date->DayInYear(1, 6) + m_date_modifier, fi_sr_insecticide1, false); // insecticide thread
229  SimpleEvent(g_date->OldDays() + g_date->DayInYear(10, 6), fi_sr_herbicide1, false); // herbicide thread - main thread
230  break;
231  // Insecticide thread
232  case fi_sr_insecticide1:
233 #ifdef ECOSTACK_BIOPESTICIDE
234  if (a_ev->m_lock || a_farm->DoIt(90)) { //90% do insecticide
235 #else
236  if (a_ev->m_lock || a_farm->DoIt(90)) { //90% do insecticide
237 #endif
238  // here we check whether we are using ERA pesticide or not
239  d1 = g_date->DayInYear(7, 6) - g_date->DayInYear();
240  if (!cfg_pest_springrape_on.value() || !m_field->GetLandscape()->SupplyShouldSpray()) // Not using pesticide spray
241  {
242 #ifdef ECOSTACK_BIOPESTICIDE
243  flag = m_farm->BiocideTreat(m_field, 0.0, d1);
244 #else
245  flag = m_farm->InsecticideTreat(m_field, 0.0, d1);
246 #endif
247  }
248  else {
250  }
251  if (!flag) {
253  break;
254  }
255 #ifdef ECOSTACK_BIOPESTICIDE
256  SimpleEvent(g_date->Date() + 7, fi_sr_insecticide1b, false); //second spray (crop scheme says 1-3 sprays (went with 2) depending on insect pressure - days between is a suggestion)
257  break;
258 #else
259  SimpleEvent(g_date->Date() + 7, fi_sr_insecticide2, false); //second spray (crop scheme says 1-3 sprays (went with 2) depending on insect pressure - days between is a suggestion)
260  break;
261 #endif
262  }
263  break;
264 
265 #ifdef ECOSTACK_BIOPESTICIDE
266  case fi_sr_insecticide1b:
267  if (m_ev->m_lock || m_farm->DoIt_prob(1.0)) {
268  // here we check whether we are using ERA pesticide or not
269  d1 = g_date->DayInYear(14, 6) - g_date->DayInYear();
270  flag = m_farm->BiocideTreat(m_field, 0.0, d1);
271  if (!flag) {
273  break;
274  }
275  }
276 #endif
277 
278  case fi_sr_insecticide2:
279  // here we check whether we are using ERA pesticide or not
280  d1 = g_date->DayInYear(14, 6) - g_date->DayInYear();
281  if (!cfg_pest_springrape_on.value() || !m_field->GetLandscape()->SupplyShouldSpray()) // Not using pesticide spray
282  {
283 #ifdef ECOSTACK_BIOPESTICIDE
284  flag = m_farm->BiocideTreat(m_field, 0.0, d1);
285 #else
286  flag = m_farm->InsecticideTreat(m_field, 0.0, d1);
287 #endif
288  }
289  else {
291  }
292  if (!flag) {
294  break;
295  }
296 #ifdef ECOSTACK_BIOPESTICIDE
297  SimpleEvent(g_date->Date() + 7, fi_sr_insecticide2b, false);
298  break;
299 #endif
300  //End of insecticide thread
301  break;
302 #ifdef ECOSTACK_BIOPESTICIDE
303  case fi_sr_insecticide2b:
304  if (m_ev->m_lock || m_farm->DoIt_prob(1.0)) {
305  // here we check whether we are using ERA pesticide or not
306  d1 = g_date->DayInYear(21, 6) - g_date->DayInYear();
307  flag = m_farm->BiocideTreat(m_field, 0.0, d1);
308  if (!flag) {
309  SimpleEvent(g_date->Date() + 1, fi_sr_insecticide2, true);
310  break;
311  }
312  }
313  break; // end of thread
314 #endif
315  case fi_sr_herbicide1:
316  if (a_ev->m_lock || a_farm->DoIt(80)) { //80% do herbicide1
317  if (!a_farm->HerbicideTreat(a_field, 0.0,
318  g_date->DayInYear(15, 6) - g_date->DayInYear())) {
319  SimpleEvent(g_date->Date() + 1, fi_sr_herbicide1, true);
320  break;
321  }
322  }
323  SimpleEvent(g_date->OldDays() + g_date->DayInYear(15, 7), fi_sr_fungicide, false);
324  break;
325  case fi_sr_fungicide:
326  if (a_ev->m_lock || a_farm->DoIt(40)) { //40% do fungicide
327  if (!a_farm->FungicideTreat(a_field, 0.0,
328  g_date->DayInYear(25, 7) - g_date->DayInYear())) {
329  SimpleEvent(g_date->Date() + 1, fi_sr_fungicide, true);
330  break;
331  }
332  }
333  SimpleEvent(g_date->OldDays() + g_date->DayInYear(15, 9), fi_sr_harvest, false);
334  break;
335  case fi_sr_harvest:
336  // We don't move harvest days
337  if (!a_farm->Harvest(m_field, 0.0, m_field->GetMDates(1, 0) - g_date->DayInYear())) {
338  SimpleEvent(g_date->Date() + 1, fi_sr_harvest, true);
339  break;
340  }
341  // 30% of farmers will do herbicide after harvest
343  break;
344  case fi_sr_herbicide2:
345  if (a_ev->m_lock || a_farm->DoIt(30)) {
346  if (!a_farm->HerbicideTreat(m_field, 0.0, m_field->GetMDates(1, 1) - g_date->DayInYear())) {
347  SimpleEvent(g_date->Date() + 1, fi_sr_herbicide2, true);
348  break;
349  }
350  }
351  // 50% of farmers will do stubble cultivation
353  break;
355  if (a_ev->m_lock || a_farm->DoIt(50)) {
356  if (!a_farm->StubbleCultivatorHeavy(m_field, 0.0, m_field->GetMDates(1, 2) - g_date->DayInYear())) {
358  break;
359  }
360  done = true;
361  } // the rest (50%) will do plough
362  else SimpleEvent(g_date->Date(), fi_sr_autumn_plough2, false);
363  break;
364  case fi_sr_autumn_plough2: // 50% do this
365  if (!a_farm->AutumnPlough(m_field, 0.0, m_field->GetMDates(1, 3) - g_date->DayInYear())) {
367  break;
368  }
369  done = true;
370  // So we are done, and somewhere else the farmer will queue up the start event of the next crop
371  // END OF MAIN THREAD
372  break;
373  default:
374  g_msg->Warn(WARN_BUG, "FI_SpringRape::Do(): "
375  "Unknown event type! ", "");
376  exit(1);
377  }
378  return done;
379 }

References Farm::AutumnPlough(), Farm::BiocideTreat(), cfg_pest_product_amounts, cfg_pest_springrape_on, LE::ClearManagementActionSum(), Calendar::Date(), Calendar::DayInYear(), Farm::DoIt(), Farm::DoIt_prob(), fi_sr_autumn_plough, fi_sr_autumn_plough2, fi_sr_fertilizer, fi_sr_fungicide, fi_sr_harvest, fi_sr_herbicide1, fi_sr_herbicide2, fi_sr_insecticide1, fi_sr_insecticide1b, fi_sr_insecticide2, fi_sr_insecticide2b, fi_sr_preseeding_cultivation, fi_sr_preseeding_sow, fi_sr_slurry, fi_sr_sow, fi_sr_spring_plough, fi_sr_start, fi_sr_stubble_cultivator1, fi_sr_stubble_cultivator2, Farm::FP_NPKS(), Farm::FP_Slurry(), Farm::FungicideTreat(), g_date, g_msg, LE::GetMDates(), Farm::Harvest(), Farm::HerbicideTreat(), Farm::InsecticideTreat(), Crop::m_date_modifier, Crop::m_ev, Crop::m_farm, Crop::m_field, FarmEvent::m_forcespring, Crop::m_last_date, FarmEvent::m_lock, FarmEvent::m_todo, Calendar::OldDays(), ppp_1, Farm::PreseedingCultivator(), Farm::PreseedingCultivatorSow(), Farm::ProductApplication(), Crop::SimpleEvent(), Crop::SimpleEvent_(), Farm::SpringPlough(), Farm::SpringSowWithFerti(), Crop::StartUpCrop(), Farm::StubbleCultivatorHeavy(), tov_FISpringRape, CfgBool::value(), CfgArray_Double::value(), MapErrorMsg::Warn(), and WARN_BUG.

◆ SetUpFarmCategoryInformation()

void FI_SpringRape::SetUpFarmCategoryInformation ( )
inline
109  {
110  const int elements = 2 + (fi_sr_foobar - FI_SR_BASE);
112 
113  FarmManagementCategory catlist[elements] =
114  {
115  fmc_Others, // zero element unused but must be here
116  fmc_Others, // fi_sr_start = 1, // Compulsory, must always be 1 (one).
117  fmc_Others, // fi_sr_sleep_all_day = FI_SR_BASE,
118  fmc_Cultivation, // fi_sr_stubble_cultivator1,
119  fmc_Cultivation, // fi_sr_autumn_plough,
120  fmc_Fertilizer, // fi_sr_slurry,
121  fmc_Cultivation, // fi_sr_spring_plough,
122  fmc_Cultivation, // fi_sr_preseeding_cultivation,
123  fmc_Cultivation, // fi_sr_preseeding_sow,
124  fmc_Others, // fi_sr_sow,
125  fmc_Fertilizer, // fi_sr_fertilizer,
126  fmc_Herbicide, // fi_sr_herbicide1,
127  fmc_Insecticide, // fi_sr_insecticide1,
128  fmc_Insecticide, // fi_sr_insecticide2,
129  fmc_Fungicide, // fi_sr_fungicide,
130  fmc_Harvest, // fi_sr_harvest,
131  fmc_Herbicide, // fi_sr_herbicide2,
132  fmc_Cultivation, // fi_sr_stubble_cultivator2,
133  fmc_Cultivation // fi_sr_autumn_plough2,
134 
135 
136  // no foobar entry
137 
138  };
139  // Iterate over the catlist elements and copy them to vector
140  copy(begin(catlist), end(catlist), back_inserter(m_ManagementCategories));
141 
142  }

References FI_SR_BASE, fi_sr_foobar, fmc_Cultivation, fmc_Fertilizer, fmc_Fungicide, fmc_Harvest, fmc_Herbicide, fmc_Insecticide, fmc_Others, Crop::m_base_elements_no, and Crop::m_ManagementCategories.

Referenced by FI_SpringRape().


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
fmc_Insecticide
Definition: LandscapeFarmingEnums.h:1005
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::SpringPlough
virtual bool SpringPlough(LE *a_field, double a_user, int a_days)
Carry out a ploughing event in the spring on a_field.
Definition: FarmFuncs.cpp:421
Farm::HerbicideTreat
virtual bool HerbicideTreat(LE *a_field, double a_user, int a_days)
Apply herbicide to a_field.
Definition: FarmFuncs.cpp:2025
fi_sr_fertilizer
Definition: FI_SpringRape.h:73
fi_sr_harvest
Definition: FI_SpringRape.h:80
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::ProductApplication
virtual bool ProductApplication(LE *a_field, double a_user, int a_days, double a_applicationrate, PlantProtectionProducts a_ppp, bool a_isgranularpesticide=false, int a_orcharddrifttype=0)
Apply test pesticide to a_field.
Definition: FarmFuncs.cpp:2267
Farm::StubbleCultivatorHeavy
virtual bool StubbleCultivatorHeavy(LE *a_field, double a_user, int a_days)
Carry out a stubble cultivation event on a_field. This is non-inversion type of cultivation which can...
Definition: FarmFuncs.cpp:245
LE::ClearManagementActionSum
void ClearManagementActionSum()
clears the management action counters
Definition: Elements.h:247
Farm::DoIt
bool DoIt(double a_probability)
Return chance out of 0 to 100.
Definition: Farm.cpp:856
fi_sr_stubble_cultivator2
Definition: FI_SpringRape.h:82
fi_sr_insecticide1
Definition: FI_SpringRape.h:75
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
fi_sr_autumn_plough
Definition: FI_SpringRape.h:67
Crop::m_base_elements_no
int m_base_elements_no
Definition: Farm.h:505
fi_sr_slurry
Definition: FI_SpringRape.h:68
Crop::m_first_date
int m_first_date
Definition: Farm.h:501
fi_sr_insecticide1b
Definition: FI_SpringRape.h:76
Farm::FungicideTreat
virtual bool FungicideTreat(LE *a_field, double a_user, int a_days)
Apply fungicide to a_field.
Definition: FarmFuncs.cpp:2101
fi_sr_autumn_plough2
Definition: FI_SpringRape.h:83
Crop::SimpleEvent
void SimpleEvent(long a_date, int a_todo, bool a_lock)
Adds an event to this crop management.
Definition: Farm.cpp:747
CfgBool::value
bool value() const
Definition: Configurator.h:164
fmc_Fertilizer
Definition: LandscapeFarmingEnums.h:1004
FI_SR_BASE
#define FI_SR_BASE
Definition: FI_SpringRape.h:49
tov_FISpringRape
Definition: LandscapeFarmingEnums.h:535
Calendar::Date
long Date(void)
Definition: Calendar.h:57
fi_sr_herbicide1
Definition: FI_SpringRape.h:74
fmc_Cultivation
Definition: LandscapeFarmingEnums.h:1008
fmc_Others
Definition: LandscapeFarmingEnums.h:1003
fi_sr_preseeding_sow
Definition: FI_SpringRape.h:71
Calendar::OldDays
long OldDays(void)
Definition: Calendar.h:60
cfg_pest_product_amounts
CfgArray_Double cfg_pest_product_amounts
Amount of pesticide applied in grams of active substance per hectare for each of the 10 pesticides.
MapErrorMsg::Warn
void Warn(MapErrorState a_level, std::string a_msg1, std::string a_msg2)
Definition: MapErrorMsg.cpp:69
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
fi_sr_insecticide2
Definition: FI_SpringRape.h:77
Crop::m_farm
Farm * m_farm
Definition: Farm.h:498
fi_sr_stubble_cultivator1
Definition: FI_SpringRape.h:66
Crop::m_field
LE * m_field
Definition: Farm.h:499
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
CfgArray_Double::value
std::vector< double > value() const
Definition: Configurator.h:219
Farm::PreseedingCultivatorSow
virtual bool PreseedingCultivatorSow(LE *a_field, double a_user, int a_days, double a_seed_coating_amount=-1, PlantProtectionProducts a_ppp=ppp_foobar)
Carry out preseeding cultivation together with sow on a_field (tilling and sowing set including culti...
Definition: FarmFuncs.cpp:325
FarmEvent::m_todo
int m_todo
Definition: Farm.h:388
Farm::InsecticideTreat
virtual bool InsecticideTreat(LE *a_field, double a_user, int a_days)
Apply insecticide to a_field.
Definition: FarmFuncs.cpp:2135
Farm::FP_Slurry
virtual bool FP_Slurry(LE *a_field, double a_user, int a_days)
Apply slurry to a_field owned by an arable farmer.
Definition: FarmFuncs.cpp:823
Farm::BiocideTreat
virtual bool BiocideTreat(LE *a_field, double a_user, int a_days)
Apply Biocide to a_field.
Definition: FarmFuncs.cpp:2175
cfg_pest_springrape_on
CfgBool cfg_pest_springrape_on
Turn on pesticides for spring rape.
Crop::m_last_date
int m_last_date
Definition: Farm.h:503
Farm::AutumnPlough
virtual bool AutumnPlough(LE *a_field, double a_user, int a_days)
Carry out a ploughing event in the autumn on a_field.
Definition: FarmFuncs.cpp:212
g_msg
MapErrorMsg * g_msg
Definition: MapErrorMsg.cpp:41
Farm::SpringSowWithFerti
virtual bool SpringSowWithFerti(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 with start fertilizer in the spring on a_field.
Definition: FarmFuncs.cpp:537
fi_sr_fungicide
Definition: FI_SpringRape.h:79
TTypesOfVegetation
TTypesOfVegetation
Values that represent the types of vegetation that are represented in ALMaSS.
Definition: LandscapeFarmingEnums.h:192
Crop::m_date_modifier
static int m_date_modifier
Holds a value that shifts test pesticide use by this many days in crops modified to use it.
Definition: Farm.h:514
fmc_Harvest
Definition: LandscapeFarmingEnums.h:1012
fi_sr_insecticide2b
Definition: FI_SpringRape.h:78
fi_sr_spring_plough
Definition: FI_SpringRape.h:69
fi_sr_herbicide2
Definition: FI_SpringRape.h:81
Calendar::DayInYear
int DayInYear(void)
Definition: Calendar.h:58
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
fi_sr_start
Definition: FI_SpringRape.h:64
fi_sr_foobar
Definition: FI_SpringRape.h:84
Crop::m_ev
FarmEvent * m_ev
Definition: Farm.h:500
WARN_BUG
Definition: MapErrorMsg.h:34
ppp_1
Definition: LandscapeFarmingEnums.h:1079
fmc_Fungicide
Definition: LandscapeFarmingEnums.h:1007
fi_sr_sow
Definition: FI_SpringRape.h:72
FarmManagementCategory
FarmManagementCategory
Definition: LandscapeFarmingEnums.h:1001
fi_sr_preseeding_cultivation
Definition: FI_SpringRape.h:70
FI_SpringRape::SetUpFarmCategoryInformation
void SetUpFarmCategoryInformation()
Definition: FI_SpringRape.h:109
Farm::FP_NPKS
virtual bool FP_NPKS(LE *a_field, double a_user, int a_days)
Apply NPKS fertilizer, on a_field owned by an arable farmer.
Definition: FarmFuncs.cpp:630
Crop::SimpleEvent_
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.
Definition: Farm.cpp:751