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853 lines (721 loc) · 20 KB
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// ===============================================================================================
// Evacuation Solver: Get / Set functions
// Description: All the requiered get / set functions for the defined interfaces for EvcSolver class
//
// Copyright (C) 2014 Kaveh Shahabi
// Distributed under the Apache Software License, Version 2.0. (See accompanying file LICENSE.txt)
//
// Author: Kaveh Shahabi
// URL: http://github.com/spatial-computing/CASPER
// ===============================================================================================
#include "stdafx.h"
#include "NameConstants.h"
#include "EvcSolver.h"
//******************************************************************************************/
// INARouteSolver2
STDMETHODIMP EvcSolver::get_Name(BSTR * pName)
{
// This name is locale/language independent and should not be translated.
if (!pName) return E_POINTER;
*pName = ::SysAllocString(CS_NAME);
return S_OK;
}
STDMETHODIMP EvcSolver::get_DisplayName(BSTR * pName)
{
// This name should be translated and would typically come from
// a string resource.
if (!pName) return E_POINTER;
*pName = ::SysAllocString(CS_DISPLAY_NAME);
return S_OK;
}
STDMETHODIMP EvcSolver::get_ClassDefinitions(INamedSet ** ppDefinitions)
{
if (!ppDefinitions) return E_POINTER;
*ppDefinitions = nullptr;
// get_ClassDefinitions() will return the default NAClasses that this solver uses.
// We will define a NAClass for "Evacuee Points", "Barriers", and "Lines".
// Barriers are just like the other NA Solvers' Barriers.
// Lines are the sets of connected/disconnected lines that this solver discovers.
// Lines are akin to the Routes output from a Route Solver.
// Evacuee Points are the origins of traversal for this solver.
ISpatialReferencePtr ipUnkSR(CLSID_UnknownCoordinateSystem);
HRESULT hr;
if (FAILED(hr = BuildClassDefinitions(ipUnkSR, ppDefinitions, nullptr)))
return ATL::AtlReportError(GetObjectCLSID(), _T("Failed to create class definitions."), IID_INASolver, hr);
return S_OK;
}
STDMETHODIMP EvcSolver::get_StartTime(DATE * Value)
{
if (!Value) return E_POINTER;
*Value = 0.0;
return S_OK;
}
#pragma warning(push)
#pragma warning(disable : 4100) /* Ignore warnings for unreferenced function parameters */
STDMETHODIMP EvcSolver::put_StartTime(DATE Value)
{
return S_OK;
}
STDMETHODIMP EvcSolver::put_UseStartTime(VARIANT_BOOL Value)
{
return S_OK;
}
#pragma warning(pop)
STDMETHODIMP EvcSolver::get_UseStartTime(VARIANT_BOOL * Value)
{
if (!Value) return E_POINTER;
*Value = VARIANT_FALSE;
return S_OK;
}
STDMETHODIMP EvcSolver::get_OutputLines(esriNAOutputLineType * Value)
{
if (!Value) return E_POINTER;
*Value = m_outputLineType;
return S_OK;
}
STDMETHODIMP EvcSolver::put_OutputLines(esriNAOutputLineType Value)
{
m_outputLineType = Value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_CreateTraversalResult(VARIANT_BOOL * Value)
{
if (!Value) return E_POINTER;
*Value = m_CreateTraversalResult;
return S_OK;
}
STDMETHODIMP EvcSolver::put_CreateTraversalResult(VARIANT_BOOL Value)
{
m_CreateTraversalResult = Value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_UseTimeWindows(VARIANT_BOOL * Value)
{
if (!Value) return E_POINTER;
*Value = m_UseTimeWindows;
return S_OK;
}
STDMETHODIMP EvcSolver::put_UseTimeWindows(VARIANT_BOOL Value)
{
m_UseTimeWindows = Value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_PreserveLastStop(VARIANT_BOOL * Value)
{
if (!Value) return E_POINTER;
*Value = m_PreserveLastStop;
return S_OK;
}
STDMETHODIMP EvcSolver::put_PreserveLastStop(VARIANT_BOOL Value)
{
m_PreserveLastStop = Value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_PreserveFirstStop(VARIANT_BOOL * Value)
{
if (!Value) return E_POINTER;
*Value = m_PreserveFirstStop;
return S_OK;
}
STDMETHODIMP EvcSolver::put_PreserveFirstStop(VARIANT_BOOL Value)
{
m_PreserveFirstStop = Value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_FindBestSequence(VARIANT_BOOL * Value)
{
if (!Value) return E_POINTER;
*Value = m_FindBestSequence;
return S_OK;
}
STDMETHODIMP EvcSolver::put_FindBestSequence(VARIANT_BOOL Value)
{
m_FindBestSequence = Value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_CanUseHierarchy(VARIANT_BOOL * pCanUseHierarchy)
{
// This solver does not make use of hierarchies
if (!pCanUseHierarchy) return E_POINTER;
*pCanUseHierarchy = VARIANT_FALSE;
return S_OK;
}
STDMETHODIMP EvcSolver::get_CanAccumulateAttributes(VARIANT_BOOL * pCanAccumulateAttrs)
{
// This solver does not support attribute accumulation
if (!pCanAccumulateAttrs) return E_POINTER;
*pCanAccumulateAttrs = VARIANT_FALSE;
return S_OK;
}
STDMETHODIMP EvcSolver::get_Properties(IPropertySet ** ppPropSet)
{
if (!ppPropSet) return E_POINTER;
// The use of the property set has been deprecated at 9.2.
// Clients should use the accessors and mutators on the solver interfaces.
*ppPropSet = nullptr;
return E_NOTIMPL;
}
//******************************************************************************************/
// IEvcSolver
STDMETHODIMP EvcSolver::get_FlockingEnabled(VARIANT_BOOL * value)
{
*value = flockingEnabled;
return S_OK;
}
STDMETHODIMP EvcSolver::put_FlockingEnabled(VARIANT_BOOL value)
{
flockingEnabled = value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_TwoWayShareCapacity(VARIANT_BOOL * value)
{
*value = twoWayShareCapacity;
return S_OK;
}
STDMETHODIMP EvcSolver::put_ThreeGenCARMA(VARIANT_BOOL value)
{
ThreeGenCARMA = value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_ThreeGenCARMA(VARIANT_BOOL * value)
{
*value = ThreeGenCARMA;
return S_OK;
}
STDMETHODIMP EvcSolver::put_TwoWayShareCapacity(VARIANT_BOOL value)
{
twoWayShareCapacity = value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_ExportEdgeStat(VARIANT_BOOL * value)
{
*value = VarExportEdgeStat;
return S_OK;
}
STDMETHODIMP EvcSolver::put_ExportEdgeStat(VARIANT_BOOL value)
{
VarExportEdgeStat = value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_EvacueeGroupingOption(EvacueeGrouping * value)
{
*value = evacueeGroupingOption;
return S_OK;
}
STDMETHODIMP EvcSolver::put_EvacueeGroupingOption(EvacueeGrouping value)
{
evacueeGroupingOption = value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_DynamicCASPEROption(DynamicMode * value)
{
*value = CASPERDynamicMode;
return S_OK;
}
STDMETHODIMP EvcSolver::put_DynamicCASPEROption(DynamicMode value)
{
CASPERDynamicMode = value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_CARMASortSetting(CARMASort * value)
{
*value = CarmaSortCriteria;
return S_OK;
}
STDMETHODIMP EvcSolver::put_CARMASortSetting(CARMASort value)
{
CarmaSortCriteria = value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_TrafficModel(EvcTrafficModel * value)
{
*value = trafficModel;
return S_OK;
}
STDMETHODIMP EvcSolver::put_TrafficModel(EvcTrafficModel value)
{
trafficModel = value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_FlockingProfile(FLOCK_PROFILE * value)
{
*value = flockingProfile;
return S_OK;
}
STDMETHODIMP EvcSolver::put_FlockingProfile(FLOCK_PROFILE value)
{
flockingProfile = value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_CARMAPerformanceRatio(BSTR * value)
{
if (value)
{
*value = new DEBUG_NEW_PLACEMENT WCHAR[100];
swprintf_s(*value, 100, L"%.3f", CARMAPerformanceRatio);
}
return S_OK;
}
STDMETHODIMP EvcSolver::put_CARMAPerformanceRatio(BSTR value)
{
swscanf_s(value, L"%f", &CARMAPerformanceRatio);
CARMAPerformanceRatio = min(max(CARMAPerformanceRatio, 0.0f), 1.0f);
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_IterativeRatio(BSTR * value)
{
if (value)
{
*value = new DEBUG_NEW_PLACEMENT WCHAR[100];
swprintf_s(*value, 100, L"%.3f", iterateRatio);
}
return S_OK;
}
STDMETHODIMP EvcSolver::put_IterativeRatio(BSTR value)
{
swscanf_s(value, L"%f", &iterateRatio);
iterateRatio = min(max(iterateRatio, 0.0f), 1.0f);
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_SelfishRatio(BSTR * value)
{
if (value)
{
*value = new DEBUG_NEW_PLACEMENT WCHAR[100];
swprintf_s(*value, 100, L"%.3f", selfishRatio);
}
return S_OK;
}
STDMETHODIMP EvcSolver::put_SelfishRatio(BSTR value)
{
swscanf_s(value, L"%f", &selfishRatio);
selfishRatio = min(max(selfishRatio, 0.0f), 1.0f);
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_SolverMethod(EvcSolverMethod * value)
{
*value = solverMethod;
return S_OK;
}
STDMETHODIMP EvcSolver::put_SolverMethod(EvcSolverMethod value)
{
solverMethod = value;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_SaturationPerCap(BSTR * value)
{
if (value)
{
*value = new DEBUG_NEW_PLACEMENT WCHAR[100];
swprintf_s(*value, 100, L"%.2f", SaturationPerCap);
}
return S_OK;
}
STDMETHODIMP EvcSolver::get_FlockingSnapInterval(BSTR * value)
{
if (value)
{
*value = new DEBUG_NEW_PLACEMENT WCHAR[100];
swprintf_s(*value, 100, L"%.4f", flockingSnapInterval);
}
return S_OK;
}
STDMETHODIMP EvcSolver::get_FlockingSimulationInterval(BSTR * value)
{
if (value)
{
*value = new DEBUG_NEW_PLACEMENT WCHAR[100];
swprintf_s(*value, 100, L"%.4f", flockingSimulationInterval);
}
return S_OK;
}
STDMETHODIMP EvcSolver::get_CriticalDensPerCap(BSTR * value)
{
if (value)
{
*value = new DEBUG_NEW_PLACEMENT WCHAR[100];
swprintf_s(*value, 100, L"%.2f", CriticalDensPerCap);
}
return S_OK;
}
STDMETHODIMP EvcSolver::get_CostPerZoneDensity(BSTR * value)
{
if (value)
{
*value = new DEBUG_NEW_PLACEMENT WCHAR[100];
swprintf_s(*value, 100, L"%.2f", costPerDensity);
}
return S_OK;
}
STDMETHODIMP EvcSolver::get_InitDelayCostPerPop(BSTR * value)
{
if (value)
{
*value = new DEBUG_NEW_PLACEMENT WCHAR[100];
swprintf_s(*value, 100, L"%.4f", initDelayCostPerPop);
}
return S_OK;
}
STDMETHODIMP EvcSolver::put_FlockingSnapInterval(BSTR value)
{
swscanf_s(value, L"%f", &flockingSnapInterval);
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::put_InitDelayCostPerPop(BSTR value)
{
swscanf_s(value, L"%f", &initDelayCostPerPop);
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::put_FlockingSimulationInterval(BSTR value)
{
swscanf_s(value, L"%f", &flockingSimulationInterval);
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::put_SaturationPerCap(BSTR value)
{
swscanf_s(value, L"%f", &SaturationPerCap);
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::put_CriticalDensPerCap(BSTR value)
{
swscanf_s(value, L"%f", &CriticalDensPerCap);
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::put_CostPerZoneDensity(BSTR value)
{
swscanf_s(value, L"%f", &costPerDensity);
m_bPersistDirty = true;
return S_OK;
}
// returns the name of the heuristic attributes loaded from the network dataset.
// this will be called from the property page so the user can select.
STDMETHODIMP EvcSolver::get_CostAttributes(unsigned __int3264 & count, BSTR ** Names)
{
count = costAttribs.size();
HRESULT hr;
BSTR * names = new DEBUG_NEW_PLACEMENT BSTR[count];
*Names = names;
for (size_t i = 0; i < count; i++) if (FAILED(hr = costAttribs[i]->get_Name(&(names[i])))) return hr;
return S_OK;
}
// returns the name of the heuristic attributes loaded from the network dataset.
// this will be called from the property page so the user can select.
STDMETHODIMP EvcSolver::get_DiscriptiveAttributes(unsigned __int3264 & count, BSTR ** Names)
{
count = discriptiveAttribs.size();
HRESULT hr;
BSTR * names = new DEBUG_NEW_PLACEMENT BSTR[count];
*Names = names;
for (size_t i = 0; i < count; i++) if (FAILED(hr = discriptiveAttribs[i]->get_Name(&(names[i])))) return hr;
return S_OK;
}
// Gets the selected cost attribute back to the property page
STDMETHODIMP EvcSolver::get_CapacityAttribute(size_t * index)
{
size_t count = discriptiveAttribs.size(), i;
HRESULT hr;
long ID;
for (i = 0; i < count; i++)
{
if (FAILED(hr = discriptiveAttribs[i]->get_ID(&ID))) return hr;
if (capAttributeID == ID)
{
if (index) *index = i;
break;
}
}
return S_OK;
}
// Gets the selected cost attribute back to the property page
STDMETHODIMP EvcSolver::get_CostAttribute(size_t * index)
{
size_t count = costAttribs.size(), i;
HRESULT hr;
long ID;
for (i = 0; i < count; i++)
{
if (FAILED(hr = costAttribs[i]->get_ID(&ID))) return hr;
if (costAttributeID == ID)
{
if (index) *index = i;
break;
}
}
return S_OK;
}
// Sets the selected cost attribute based on what user selected in property page
STDMETHODIMP EvcSolver::put_CapacityAttribute(size_t index)
{
HRESULT hr;
if (FAILED(hr = discriptiveAttribs[index]->get_ID(&capAttributeID))) return hr;
m_bPersistDirty = true;
return S_OK;
}
// Sets the selected cost attribute based on what user selected in property page
STDMETHODIMP EvcSolver::put_CostAttribute(size_t index)
{
HRESULT hr;
if (FAILED(hr = costAttribs[index]->get_ID(&costAttributeID))) return hr;
m_bPersistDirty = true;
return S_OK;
}
//******************************************************************************************/
// INASolverSettings2
STDMETHODIMP EvcSolver::put_AttributeParameterValue(BSTR AttributeName, BSTR paramName, VARIANT value)
{
INetworkAttribute2Ptr networkAttrib = nullptr;
INetworkAttributeParameterPtr param = nullptr;
IArray * params = nullptr;
long c1, c2, i, j;
HRESULT hr;
IUnknownPtr unk;
BSTR name1, name2;
if (allAttribs)
{
if (FAILED(hr = allAttribs->get_Count(&c1))) return hr;
for (i = 0; i < c1; i++)
{
if (FAILED(hr = allAttribs->get_Element(i, &unk))) return hr;
networkAttrib = unk;
if (FAILED(hr = networkAttrib->get_Name(&name1))) return hr;
if (wcscmp(name1, AttributeName) == 0)
{
if (FAILED(hr = networkAttrib->get_Parameters(¶ms))) return hr;
if (FAILED(hr = params->get_Count(&c2))) return hr;
for (j = 0; j < c2; j++)
{
if (FAILED(hr = params->get_Element(j, &unk))) return hr;
param = unk;
if (FAILED(hr = param->get_Name(&name2))) return hr;
if (wcscmp(name2, paramName) == 0)
{
if (FAILED(hr = param->put_Value(value))) return hr;
break;
}
}
break;
}
}
}
return S_OK;
}
STDMETHODIMP EvcSolver::get_AttributeParameterValue(BSTR AttributeName, BSTR paramName, VARIANT * value)
{
INetworkAttribute2Ptr networkAttrib = nullptr;
INetworkAttributeParameterPtr param = nullptr;
IArray * params = nullptr;
long c1, c2, i, j;
HRESULT hr;
IUnknownPtr unk;
BSTR name1, name2;
if (allAttribs)
{
if (FAILED(hr = allAttribs->get_Count(&c1))) return hr;
for (i = 0; i < c1; i++)
{
if (FAILED(hr = allAttribs->get_Element(i, &unk))) return hr;
networkAttrib = unk;
if (FAILED(hr = networkAttrib->get_Name(&name1))) return hr;
if (wcscmp(name1, AttributeName) == 0)
{
if (FAILED(hr = networkAttrib->get_Parameters(¶ms))) return hr;
if (FAILED(hr = params->get_Count(&c2))) return hr;
for (j = 0; j < c2; j++)
{
if (FAILED(hr = params->get_Element(j, &unk))) return hr;
param = unk;
if (FAILED(hr = param->get_Name(&name2))) return hr;
if (wcscmp(name2, paramName) == 0)
{
if (FAILED(hr = param->get_Value(value))) return hr;
break;
}
}
break;
}
}
}
return S_OK;
}
STDMETHODIMP EvcSolver::put_ImpedanceAttributeName(BSTR attributeName)
{
size_t count = costAttribs.size(), i;
HRESULT hr;
BSTR name;
for (i = 0; i < count; i++)
{
if (FAILED(hr = costAttribs[i]->get_Name(&name))) return hr;
if (wcscmp(name, attributeName) == 0)
{
if (FAILED(hr = costAttribs[i]->get_ID(&costAttributeID))) return hr;
m_bPersistDirty = true;
break;
}
}
return S_OK;
}
STDMETHODIMP EvcSolver::get_ImpedanceAttributeName(BSTR * pAttributeName)
{
size_t count = costAttribs.size(), i;
HRESULT hr;
long ID = -1;
if (!pAttributeName) return E_POINTER;
for (i = 0; i < count; i++)
{
if (FAILED(hr = costAttribs[i]->get_ID(&ID))) return hr;
if (ID == costAttributeID)
{
if (FAILED(hr = costAttribs[i]->get_Name(pAttributeName))) return hr;
break;
}
}
return S_OK;
}
// returns the name of the turn attributes loaded from the network dataset.
// this will be called from the property page so the user can select.
STDMETHODIMP EvcSolver::get_RestrictionAttributeNames(IStringArray ** ppAttributeName)
{
size_t count = turnAttribs.size(), i;
HRESULT hr;
BSTR name;
IStringArrayPtr names(CLSID_StrArray);
for (i = 0; i < count; i++)
{
if (FAILED(hr = turnAttribs[i]->get_Name(&name))) return hr;
names->Add(name);
}
names->AddRef();
*ppAttributeName = names;
return S_OK;
}
STDMETHODIMP EvcSolver::putref_RestrictionAttributeNames(IStringArray * pAttributeName)
{
turnAttributeNames = pAttributeName;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::put_RestrictUTurns(esriNetworkForwardStarBacktrack Backtrack)
{
backtrack = Backtrack;
m_bPersistDirty = true;
return S_OK;
}
STDMETHODIMP EvcSolver::get_RestrictUTurns(esriNetworkForwardStarBacktrack * pBacktrack)
{
if (pBacktrack) *pBacktrack = backtrack;
return S_OK;
}
STDMETHODIMP EvcSolver::get_UseHierarchy(VARIANT_BOOL* pUseHierarchy)
{
if (!pUseHierarchy) return E_POINTER;
// This solver does not support hierarchy attributes
*pUseHierarchy = VARIANT_FALSE;
return S_OK;
}
STDMETHODIMP EvcSolver::get_IgnoreInvalidLocations(VARIANT_BOOL * pIgnoreInvalidLocations)
{
*pIgnoreInvalidLocations = VARIANT_TRUE;
return S_OK;
}
STDMETHODIMP EvcSolver::get_HierarchyLevelCount(long * pCount)
{
*pCount = 0;
return S_OK; // This solver does not support hierarchy attributes
}
#pragma warning(push)
#pragma warning(disable : 4100) /* Ignore warnings for unreferenced function parameters */
STDMETHODIMP EvcSolver::put_ResetHierarchyRangesOnBind(VARIANT_BOOL value)
{
return E_NOTIMPL; // This solver does not support hierarchy
}
STDMETHODIMP EvcSolver::get_ResetHierarchyRangesOnBind(VARIANT_BOOL * value)
{
return E_NOTIMPL; // This solver does not support hierarchy
}
STDMETHODIMP EvcSolver::get_AccumulateAttributeNames(IStringArray ** ppAttributeNames)
{
return E_NOTIMPL; // This solver does not support attribute accumulation
}
STDMETHODIMP EvcSolver::putref_AccumulateAttributeNames(IStringArray * pAttributeNames)
{
return E_NOTIMPL; // This solver does not support attribute accumulation
}
STDMETHODIMP EvcSolver::put_IgnoreInvalidLocations(VARIANT_BOOL ignoreInvalidLocations)
{
return S_OK; // This solver does not support ignoring invalid locations
}
STDMETHODIMP EvcSolver::put_UseHierarchy(VARIANT_BOOL useHierarchy)
{
return S_OK; // This solver does not support hierarchy attributes
}
STDMETHODIMP EvcSolver::put_HierarchyAttributeName(BSTR attributeName)
{
return E_NOTIMPL; // This solver does not support hierarchy attributes
}
STDMETHODIMP EvcSolver::get_HierarchyAttributeName(BSTR* pattributeName)
{
return E_NOTIMPL; // This solver does not support hierarchy attributes
}
STDMETHODIMP EvcSolver::put_HierarchyLevelCount(long Count)
{
return S_OK; // This solver does not support hierarchy attributes
}
STDMETHODIMP EvcSolver::put_MaxValueForHierarchy(long level, long value)
{
return E_NOTIMPL; // This solver does not support hierarchy attributes
}
STDMETHODIMP EvcSolver::get_MaxValueForHierarchy(long level, long * pValue)
{
return E_NOTIMPL; // This solver does not support hierarchy attributes
}
STDMETHODIMP EvcSolver::put_NumTransitionToHierarchy(long toLevel, long value)
{
return E_NOTIMPL; // This solver does not support hierarchy attributes
}
STDMETHODIMP EvcSolver::get_NumTransitionToHierarchy(long toLevel, long * pValue)
{
return E_NOTIMPL; // This solver does not support hierarchy attributes
}
//******************************************************************************************/
// INASolverOutputGeneralization
STDMETHODIMP EvcSolver::put_OutputGeometryPrecision(VARIANT value)
{
return S_OK;
}
STDMETHODIMP EvcSolver::get_OutputGeometryPrecision(VARIANT * value)
{
return S_OK;
}
STDMETHODIMP EvcSolver::put_OutputGeometryPrecisionUnits(esriUnits value)
{
return S_OK;
}
STDMETHODIMP EvcSolver::get_OutputGeometryPrecisionUnits(esriUnits * value)
{
return S_OK;
}
#pragma warning(pop)