preprocessor: move adl to unaryopnode
parent
253f92630d
commit
85eebf231e
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@ -201,7 +201,8 @@ enum UnaryOpcode
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oSteadyStateParam2ndDeriv, // for the 2nd derivative of the STEADY_STATE operator w.r.t. to a parameter
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oExpectation,
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oErf,
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oDiff
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oDiff,
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oAdl
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};
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enum BinaryOpcode
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@ -220,8 +221,7 @@ enum BinaryOpcode
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oLessEqual,
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oGreaterEqual,
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oEqualEqual,
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oDifferent,
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oAdl
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oDifferent
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};
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enum TrinaryOpcode
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@ -264,10 +264,9 @@ DataTree::AddDiff(expr_t iArg1)
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}
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expr_t
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DataTree::AddAdl(expr_t iArg1, const string &name, expr_t iArg2)
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DataTree::AddAdl(expr_t iArg1, const string &name, int lag)
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{
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expr_t adlnode = AddBinaryOp(iArg1, oAdl, iArg2, 0, string(name));
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return adlnode;
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return AddUnaryOp(oAdl, iArg1, 0, 0, 0, string(name), lag);
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}
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expr_t
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@ -63,10 +63,11 @@ protected:
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typedef map<pair<int, int>, VariableNode *> variable_node_map_t;
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variable_node_map_t variable_node_map;
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//! Pair( Pair(arg1, UnaryOpCode), Pair( Expectation Info Set, Pair(param1_symb_id, param2_symb_id)) ))
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typedef map<pair<pair<expr_t, UnaryOpcode>, pair<int, pair<int, int> > >, UnaryOpNode *> unary_op_node_map_t;
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typedef map<pair<pair<expr_t, UnaryOpcode>, pair<pair<int, pair<int, int> >, pair<string, int> > >, UnaryOpNode *> unary_op_node_map_t;
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unary_op_node_map_t unary_op_node_map;
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//! Pair( Pair( Pair(arg1, arg2), order of Power Derivative), opCode)
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typedef map<pair<pair<pair<expr_t, expr_t>, pair<int, string> >, BinaryOpcode>, BinaryOpNode *> binary_op_node_map_t;
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typedef map<pair<pair<pair<expr_t, expr_t>, int>, BinaryOpcode>, BinaryOpNode *> binary_op_node_map_t;
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binary_op_node_map_t binary_op_node_map;
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typedef map<pair<pair<pair<expr_t, expr_t>, expr_t>, TrinaryOpcode>, TrinaryOpNode *> trinary_op_node_map_t;
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trinary_op_node_map_t trinary_op_node_map;
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@ -103,8 +104,8 @@ private:
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int node_counter;
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inline expr_t AddPossiblyNegativeConstant(double val);
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inline expr_t AddUnaryOp(UnaryOpcode op_code, expr_t arg, int arg_exp_info_set = 0, int param1_symb_id = 0, int param2_symb_id = 0);
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inline expr_t AddBinaryOp(expr_t arg1, BinaryOpcode op_code, expr_t arg2, int powerDerivOrder = 0, const string &adlparam = "");
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inline expr_t AddUnaryOp(UnaryOpcode op_code, expr_t arg, int arg_exp_info_set = 0, int param1_symb_id = 0, int param2_symb_id = 0, const string &adl_param_name = "", int adl_param_lag = -1);
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inline expr_t AddBinaryOp(expr_t arg1, BinaryOpcode op_code, expr_t arg2, int powerDerivOrder = 0);
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inline expr_t AddTrinaryOp(expr_t arg1, TrinaryOpcode op_code, expr_t arg2, expr_t arg3);
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public:
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@ -165,7 +166,7 @@ public:
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//! Adds "diff(arg)" to model tree
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expr_t AddDiff(expr_t iArg1);
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//! Adds "adl(arg1, arg2)" to model tree
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expr_t AddAdl(expr_t iArg1, const string &name, expr_t iArg2);
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expr_t AddAdl(expr_t iArg1, const string &name, int lag);
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//! Adds "exp(arg)" to model tree
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expr_t AddExp(expr_t iArg1);
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//! Adds "log(arg)" to model tree
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@ -316,10 +317,10 @@ DataTree::AddPossiblyNegativeConstant(double v)
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}
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inline expr_t
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DataTree::AddUnaryOp(UnaryOpcode op_code, expr_t arg, int arg_exp_info_set, int param1_symb_id, int param2_symb_id)
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DataTree::AddUnaryOp(UnaryOpcode op_code, expr_t arg, int arg_exp_info_set, int param1_symb_id, int param2_symb_id, const string &adl_param_name, int adl_param_lag)
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{
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// If the node already exists in tree, share it
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unary_op_node_map_t::iterator it = unary_op_node_map.find(make_pair(make_pair(arg, op_code), make_pair(arg_exp_info_set, make_pair(param1_symb_id, param2_symb_id))));
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unary_op_node_map_t::iterator it = unary_op_node_map.find(make_pair(make_pair(arg, op_code), make_pair(make_pair(arg_exp_info_set, make_pair(param1_symb_id, param2_symb_id)), make_pair(adl_param_name, adl_param_lag))));
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if (it != unary_op_node_map.end())
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return it->second;
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@ -338,15 +339,13 @@ DataTree::AddUnaryOp(UnaryOpcode op_code, expr_t arg, int arg_exp_info_set, int
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{
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}
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}
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return new UnaryOpNode(*this, op_code, arg, arg_exp_info_set, param1_symb_id, param2_symb_id);
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return new UnaryOpNode(*this, op_code, arg, arg_exp_info_set, param1_symb_id, param2_symb_id, adl_param_name, adl_param_lag);
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}
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inline expr_t
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DataTree::AddBinaryOp(expr_t arg1, BinaryOpcode op_code, expr_t arg2, int powerDerivOrder, const string &adlparam)
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DataTree::AddBinaryOp(expr_t arg1, BinaryOpcode op_code, expr_t arg2, int powerDerivOrder)
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{
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binary_op_node_map_t::iterator it = binary_op_node_map.find(make_pair(make_pair(make_pair(arg1, arg2),
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make_pair(powerDerivOrder, adlparam)),
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op_code));
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binary_op_node_map_t::iterator it = binary_op_node_map.find(make_pair(make_pair(make_pair(arg1, arg2), powerDerivOrder), op_code));
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if (it != binary_op_node_map.end())
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return it->second;
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@ -361,7 +360,7 @@ DataTree::AddBinaryOp(expr_t arg1, BinaryOpcode op_code, expr_t arg2, int powerD
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catch (ExprNode::EvalException &e)
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{
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}
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return new BinaryOpNode(*this, arg1, op_code, arg2, powerDerivOrder, adlparam);
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return new BinaryOpNode(*this, arg1, op_code, arg2, powerDerivOrder);
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}
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inline expr_t
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@ -1601,18 +1601,21 @@ VariableNode::getEndosAndMaxLags(map<string, int> &model_endos_and_lags) const
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model_endos_and_lags[varname] = lag;
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}
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UnaryOpNode::UnaryOpNode(DataTree &datatree_arg, UnaryOpcode op_code_arg, const expr_t arg_arg, int expectation_information_set_arg, int param1_symb_id_arg, int param2_symb_id_arg) :
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UnaryOpNode::UnaryOpNode(DataTree &datatree_arg, UnaryOpcode op_code_arg, const expr_t arg_arg, int expectation_information_set_arg, int param1_symb_id_arg, int param2_symb_id_arg, const string &adl_param_name_arg, int adl_param_lag_arg) :
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ExprNode(datatree_arg),
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arg(arg_arg),
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expectation_information_set(expectation_information_set_arg),
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param1_symb_id(param1_symb_id_arg),
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param2_symb_id(param2_symb_id_arg),
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op_code(op_code_arg)
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op_code(op_code_arg),
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adl_param_name(adl_param_name_arg),
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adl_param_lag(adl_param_lag_arg)
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{
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// Add myself to the unary op map
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datatree.unary_op_node_map[make_pair(make_pair(arg, op_code),
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make_pair(expectation_information_set,
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make_pair(param1_symb_id, param2_symb_id)))] = this;
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make_pair(make_pair(expectation_information_set,
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make_pair(param1_symb_id, param2_symb_id)),
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make_pair(adl_param_name, adl_param_lag)))] = this;
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}
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void
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@ -1761,6 +1764,9 @@ UnaryOpNode::composeDerivatives(expr_t darg, int deriv_id)
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case oDiff:
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cerr << "UnaryOpNode::composeDerivatives: not implemented on oDiff" << endl;
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exit(EXIT_FAILURE);
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case oAdl:
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cerr << "UnaryOpNode::composeDerivatives: not implemented on oAdl" << endl;
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exit(EXIT_FAILURE);
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}
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// Suppress GCC warning
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exit(EXIT_FAILURE);
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@ -1845,6 +1851,9 @@ UnaryOpNode::cost(int cost, bool is_matlab) const
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case oDiff:
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cerr << "UnaryOpNode::cost: not implemented on oDiff" << endl;
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exit(EXIT_FAILURE);
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case oAdl:
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cerr << "UnaryOpNode::cost: not implemented on oAdl" << endl;
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exit(EXIT_FAILURE);
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}
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else
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// Cost for C files
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@ -1890,6 +1899,9 @@ UnaryOpNode::cost(int cost, bool is_matlab) const
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case oDiff:
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cerr << "UnaryOpNode::cost: not implemented on oDiff" << endl;
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exit(EXIT_FAILURE);
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case oAdl:
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cerr << "UnaryOpNode::cost: not implemented on oAdl" << endl;
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exit(EXIT_FAILURE);
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}
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exit(EXIT_FAILURE);
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}
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@ -2036,6 +2048,12 @@ UnaryOpNode::writeJsonOutput(ostream &output,
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case oDiff:
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output << "diff";
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break;
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case oAdl:
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output << "adl";
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output << "(";
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arg->writeJsonOutput(output, temporary_terms, tef_terms);
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output << "," << adl_param_name << "," << adl_param_lag << ")";
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return;
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case oSteadyState:
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output << "(";
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arg->writeJsonOutput(output, temporary_terms, tef_terms);
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@ -2259,6 +2277,9 @@ UnaryOpNode::writeOutput(ostream &output, ExprNodeOutputType output_type,
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case oDiff:
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output << "diff";
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break;
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case oAdl:
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output << "adl";
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break;
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}
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bool close_parenthesis = false;
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@ -2367,6 +2388,9 @@ UnaryOpNode::eval_opcode(UnaryOpcode op_code, double v) throw (EvalException, Ev
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case oDiff:
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cerr << "UnaryOpNode::eval_opcode: not implemented on oDiff" << endl;
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exit(EXIT_FAILURE);
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case oAdl:
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cerr << "UnaryOpNode::eval_opcode: not implemented on oAdl" << endl;
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exit(EXIT_FAILURE);
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}
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// Suppress GCC warning
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exit(EXIT_FAILURE);
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@ -2618,6 +2642,8 @@ UnaryOpNode::buildSimilarUnaryOpNode(expr_t alt_arg, DataTree &alt_datatree) con
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return alt_datatree.AddErf(alt_arg);
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case oDiff:
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return alt_datatree.AddDiff(alt_arg);
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case oAdl:
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return alt_datatree.AddAdl(alt_arg, adl_param_name, adl_param_lag);
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}
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// Suppress GCC warning
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exit(EXIT_FAILURE);
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@ -2676,15 +2702,36 @@ UnaryOpNode::maxLead() const
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expr_t
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UnaryOpNode::substituteAdlAndDiff() const
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{
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if (op_code != oDiff)
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if (op_code != oDiff && op_code != oAdl)
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{
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expr_t argsubst = arg->substituteAdlAndDiff();
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return buildSimilarUnaryOpNode(argsubst, datatree);
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}
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if (op_code == oDiff)
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{
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expr_t argsubst = arg->substituteAdlAndDiff();
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return datatree.AddMinus(argsubst,
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argsubst->decreaseLeadsLags(1));
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}
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expr_t arg1subst = arg->substituteAdlAndDiff();
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int i = 1;
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ostringstream inttostr;
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inttostr << i;
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expr_t retval = datatree.AddTimes(datatree.AddVariable(datatree.symbol_table.getID(adl_param_name + "_lag_" + inttostr.str()), 0),
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arg1subst->decreaseLeadsLags(i));
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i++;
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for (; i <= adl_param_lag; i++)
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{
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inttostr.clear();
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inttostr.str("");
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inttostr << i;
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retval = datatree.AddPlus(retval,
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datatree.AddTimes(datatree.AddVariable(datatree.symbol_table.getID(adl_param_name + "_lag_" + inttostr.str()), 0),
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arg1subst->decreaseLeadsLags(i)));
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}
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return retval;
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}
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expr_t
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@ -2887,10 +2934,9 @@ BinaryOpNode::BinaryOpNode(DataTree &datatree_arg, const expr_t arg1_arg,
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arg1(arg1_arg),
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arg2(arg2_arg),
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op_code(op_code_arg),
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powerDerivOrder(0),
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adlparam("")
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powerDerivOrder(0)
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{
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datatree.binary_op_node_map[make_pair(make_pair(make_pair(arg1, arg2), make_pair(powerDerivOrder, adlparam)), op_code)] = this;
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datatree.binary_op_node_map[make_pair(make_pair(make_pair(arg1, arg2), powerDerivOrder), op_code)] = this;
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}
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BinaryOpNode::BinaryOpNode(DataTree &datatree_arg, const expr_t arg1_arg,
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arg1(arg1_arg),
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arg2(arg2_arg),
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op_code(op_code_arg),
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powerDerivOrder(powerDerivOrder_arg),
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adlparam("")
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powerDerivOrder(powerDerivOrder_arg)
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{
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assert(powerDerivOrder >= 0);
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datatree.binary_op_node_map[make_pair(make_pair(make_pair(arg1, arg2), make_pair(powerDerivOrder, adlparam)), op_code)] = this;
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}
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BinaryOpNode::BinaryOpNode(DataTree &datatree_arg, const expr_t arg1_arg,
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BinaryOpcode op_code_arg, const expr_t arg2_arg,
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int powerDerivOrder_arg, string adlparam_arg) :
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ExprNode(datatree_arg),
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arg1(arg1_arg),
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arg2(arg2_arg),
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op_code(op_code_arg),
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powerDerivOrder(powerDerivOrder_arg),
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adlparam(adlparam_arg)
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{
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assert(powerDerivOrder >= 0);
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datatree.binary_op_node_map[make_pair(make_pair(make_pair(arg1, arg2), make_pair(powerDerivOrder, adlparam)), op_code)] = this;
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datatree.binary_op_node_map[make_pair(make_pair(make_pair(arg1, arg2), powerDerivOrder), op_code)] = this;
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}
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void
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@ -3051,9 +3082,6 @@ BinaryOpNode::composeDerivatives(expr_t darg1, expr_t darg2)
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return datatree.AddPlus(t14, t12);
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case oEqual:
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return datatree.AddMinus(darg1, darg2);
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case oAdl:
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cerr << "BinaryOpNode::composeDerivatives not implemented for oAdl";
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exit(EXIT_FAILURE);
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}
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// Suppress GCC warning
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exit(EXIT_FAILURE);
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@ -3120,9 +3148,6 @@ BinaryOpNode::precedence(ExprNodeOutputType output_type, const temporary_terms_t
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case oMin:
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case oMax:
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return 100;
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case oAdl:
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cerr << "BinaryOpNode::precedence not implemented for oAdl";
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exit(EXIT_FAILURE);
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}
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// Suppress GCC warning
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exit(EXIT_FAILURE);
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@ -3159,7 +3184,6 @@ BinaryOpNode::precedenceJson(const temporary_terms_t &temporary_terms) const
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return 5;
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case oMin:
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case oMax:
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case oAdl:
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return 100;
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}
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// Suppress GCC warning
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@ -3220,9 +3244,6 @@ BinaryOpNode::cost(int cost, bool is_matlab) const
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return cost + (MIN_COST_MATLAB/2+1);
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case oEqual:
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return cost;
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case oAdl:
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cerr << "BinaryOpNode::cost not implemented for oAdl";
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exit(EXIT_FAILURE);
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}
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else
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// Cost for C files
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@ -3250,9 +3271,6 @@ BinaryOpNode::cost(int cost, bool is_matlab) const
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return cost + (MIN_COST_C/2+1);;
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case oEqual:
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return cost;
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case oAdl:
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cerr << "BinaryOpNode::cost not implemented for oAdl";
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exit(EXIT_FAILURE);
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}
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// Suppress GCC warning
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exit(EXIT_FAILURE);
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@ -3365,9 +3383,6 @@ BinaryOpNode::eval_opcode(double v1, BinaryOpcode op_code, double v2, int derivO
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return (v1 != v2);
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case oEqual:
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throw EvalException();
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case oAdl:
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cerr << "BinaryOpNode::eval_opcode not implemented for oAdl";
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exit(EXIT_FAILURE);
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}
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// Suppress GCC warning
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exit(EXIT_FAILURE);
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@ -4116,8 +4131,6 @@ BinaryOpNode::buildSimilarBinaryOpNode(expr_t alt_arg1, expr_t alt_arg2, DataTre
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return alt_datatree.AddDifferent(alt_arg1, alt_arg2);
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case oPowerDeriv:
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return alt_datatree.AddPowerDeriv(alt_arg1, alt_arg2, powerDerivOrder);
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case oAdl:
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return alt_datatree.AddAdl(alt_arg1, adlparam, alt_arg2);
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}
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// Suppress GCC warning
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exit(EXIT_FAILURE);
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@ -4307,30 +4320,9 @@ BinaryOpNode::substituteExpectation(subst_table_t &subst_table, vector<BinaryOpN
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expr_t
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BinaryOpNode::substituteAdlAndDiff() const
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{
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if (op_code != oAdl)
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{
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expr_t arg1subst = arg1->substituteAdlAndDiff();
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expr_t arg2subst = arg2->substituteAdlAndDiff();
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return buildSimilarBinaryOpNode(arg1subst, arg2subst, datatree);
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}
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expr_t arg1subst = arg1->substituteAdlAndDiff();
|
||||
int i = 1;
|
||||
ostringstream inttostr;
|
||||
inttostr << i;
|
||||
int param_symb_id = datatree.symbol_table.getID(adlparam + "_lag_" + inttostr.str());
|
||||
expr_t retval = datatree.AddTimes(datatree.AddVariable(param_symb_id, 0), arg1subst->decreaseLeadsLags(i));
|
||||
i++;
|
||||
for (; i <= (int) arg2->eval(eval_context_t());)
|
||||
{
|
||||
inttostr.clear();
|
||||
inttostr.str("");
|
||||
inttostr << i++;
|
||||
retval = datatree.AddPlus(retval,
|
||||
datatree.AddTimes(datatree.AddVariable(datatree.symbol_table.getID(adlparam + "_lag_" + inttostr.str()), 0),
|
||||
arg1subst->decreaseLeadsLags(i)));
|
||||
}
|
||||
return retval;
|
||||
}
|
||||
|
||||
expr_t
|
||||
|
|
|
@ -633,6 +633,8 @@ private:
|
|||
//! Only used for oSteadyStateParamDeriv and oSteadyStateParam2ndDeriv
|
||||
const int param1_symb_id, param2_symb_id;
|
||||
const UnaryOpcode op_code;
|
||||
const string adl_param_name;
|
||||
const int adl_param_lag;
|
||||
virtual expr_t computeDerivative(int deriv_id);
|
||||
virtual int cost(int cost, bool is_matlab) const;
|
||||
virtual int cost(const temporary_terms_t &temporary_terms, bool is_matlab) const;
|
||||
|
@ -640,7 +642,7 @@ private:
|
|||
//! Returns the derivative of this node if darg is the derivative of the argument
|
||||
expr_t composeDerivatives(expr_t darg, int deriv_id);
|
||||
public:
|
||||
UnaryOpNode(DataTree &datatree_arg, UnaryOpcode op_code_arg, const expr_t arg_arg, int expectation_information_set_arg, int param1_symb_id_arg, int param2_symb_id_arg);
|
||||
UnaryOpNode(DataTree &datatree_arg, UnaryOpcode op_code_arg, const expr_t arg_arg, int expectation_information_set_arg, int param1_symb_id_arg, int param2_symb_id_arg, const string &adl_param_name_arg, int adl_param_lag_arg);
|
||||
virtual void prepareForDerivation();
|
||||
virtual void computeTemporaryTerms(map<expr_t, pair<int, NodeTreeReference> > &reference_count,
|
||||
map<NodeTreeReference, temporary_terms_t> &temp_terms_map,
|
||||
|
@ -736,8 +738,6 @@ public:
|
|||
BinaryOpcode op_code_arg, const expr_t arg2_arg);
|
||||
BinaryOpNode(DataTree &datatree_arg, const expr_t arg1_arg,
|
||||
BinaryOpcode op_code_arg, const expr_t arg2_arg, int powerDerivOrder);
|
||||
BinaryOpNode(DataTree &datatree_arg, const expr_t arg1_arg,
|
||||
BinaryOpcode op_code_arg, const expr_t arg2_arg, int powerDerivOrder_arg, string adlparam_arg);
|
||||
virtual void prepareForDerivation();
|
||||
virtual int precedenceJson(const temporary_terms_t &temporary_terms) const;
|
||||
virtual int precedence(ExprNodeOutputType output_type, const temporary_terms_t &temporary_terms) const;
|
||||
|
|
|
@ -2594,8 +2594,7 @@ ParsingDriver::add_diff(expr_t arg1)
|
|||
expr_t
|
||||
ParsingDriver::add_adl(expr_t arg1, string *name, string *lag)
|
||||
{
|
||||
expr_t id = data_tree->AddAdl(arg1, *name,
|
||||
data_tree->AddNonNegativeConstant(*lag));
|
||||
expr_t id = data_tree->AddAdl(arg1, *name, atoi(lag->c_str()));
|
||||
|
||||
// Declare parameters here so that parameters can be initialized after the model block
|
||||
int i = 0;
|
||||
|
|
Loading…
Reference in New Issue