libdap Updated for version 3.20.9
libdap4 is an implementation of OPeNDAP's DAP protocol.
BaseType.cc
1
2// -*- mode: c++; c-basic-offset:4 -*-
3
4// This file is part of libdap, A C++ implementation of the OPeNDAP Data
5// Access Protocol.
6
7// Copyright (c) 2002,2003 OPeNDAP, Inc.
8// Author: James Gallagher <jgallagher@opendap.org>
9//
10// This library is free software; you can redistribute it and/or
11// modify it under the terms of the GNU Lesser General Public
12// License as published by the Free Software Foundation; either
13// version 2.1 of the License, or (at your option) any later version.
14//
15// This library is distributed in the hope that it will be useful,
16// but WITHOUT ANY WARRANTY; without even the implied warranty of
17// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18// Lesser General Public License for more details.
19//
20// You should have received a copy of the GNU Lesser General Public
21// License along with this library; if not, write to the Free Software
22// Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
23//
24// You can contact OPeNDAP, Inc. at PO Box 112, Saunderstown, RI. 02874-0112.
25
26// (c) COPYRIGHT URI/MIT 1994-1999
27// Please read the full copyright statement in the file COPYRIGHT_URI.
28//
29// Authors:
30// jhrg,jimg James Gallagher <jgallagher@gso.uri.edu>
31
32// Implementation for BaseType.
33//
34// jhrg 9/6/94
35
36#include "config.h"
37
38#include <cstdio> // for stdin and stdout
39
40#include <sstream>
41#include <string>
42
43//#define DODS_DEBUG
44
45#include "BaseType.h"
46#include "Byte.h"
47#include "Int16.h"
48#include "UInt16.h"
49#include "Int32.h"
50#include "UInt32.h"
51#include "Float32.h"
52#include "Float64.h"
53#include "Str.h"
54#include "Url.h"
55#include "Array.h"
56#include "Structure.h"
57#include "Sequence.h"
58#include "Grid.h"
59
60#include "D4Attributes.h"
61#include "DMR.h"
62#include "XMLWriter.h"
63#include "D4BaseTypeFactory.h"
64
65#include "InternalErr.h"
66
67#include "util.h"
68#include "escaping.h"
69#include "DapIndent.h"
70
71#include "debug.h"
72
73using namespace std;
74
75namespace libdap {
76
77// Protected copy mfunc
78
85void
87{
88 DBG(cerr << "In BaseType::m_duplicate for " << bt.name() << endl);
89
90 d_name = bt.d_name;
91 d_type = bt.d_type;
92 d_dataset = bt.d_dataset;
93 d_is_read = bt.d_is_read; // added, reza
94 d_is_send = bt.d_is_send; // added, reza
95 d_in_selection = bt.d_in_selection;
96 d_is_synthesized = bt.d_is_synthesized; // 5/11/2001 jhrg
97
98 d_parent = bt.d_parent; // copy pointers 6/4/2001 jhrg
99
100 d_attr = bt.d_attr; // Deep copy.
101
102 if (bt.d_attributes)
103 d_attributes = new D4Attributes(*bt.d_attributes); // deep copy
104 else
105 d_attributes = 0; // init to null if not used.
106
107 d_is_dap4 = bt.d_is_dap4;
108
109 DBG(cerr << "Exiting BaseType::m_duplicate for " << bt.name() << endl);
110}
111
112// Public mfuncs
113
126BaseType::BaseType(const string &n, const Type &t, bool is_dap4)
127: d_name(n), d_type(t), d_dataset(""), d_is_read(false), d_is_send(false),
128 d_parent(0), d_attributes(0), d_is_dap4(is_dap4),
129 d_in_selection(false), d_is_synthesized(false)
130{}
131
144BaseType::BaseType(const string &n, const string &d, const Type &t, bool is_dap4)
145: d_name(n), d_type(t), d_dataset(d), d_is_read(false), d_is_send(false),
146 d_parent(0), d_attributes(0), d_is_dap4(is_dap4),
147 d_in_selection(false), d_is_synthesized(false)
148{}
149
151BaseType::BaseType(const BaseType &copy_from) : DapObj()
152{
153 DBG(cerr << "In BaseTpe::copy_ctor for " << copy_from.name() << endl);
154 m_duplicate(copy_from);
155}
156
157BaseType::~BaseType()
158{
159 DBG2(cerr << "Entering ~BaseType (" << this << ")" << endl);
160
161 if (d_attributes)
162 delete d_attributes;
163
164 DBG2(cerr << "Exiting ~BaseType" << endl);
165}
166
167BaseType &
168BaseType::operator=(const BaseType &rhs)
169{
170 DBG(cerr << "Entering BaseType::operator=" << endl);
171 if (this == &rhs)
172 return *this;
173
174 m_duplicate(rhs);
175
176 DBG(cerr << "Exiting BaseType::operator=" << endl);
177 return *this;
178}
179
185{
186 ostringstream oss;
187 oss << "BaseType (" << this << "):" << endl
188 << " _name: " << name() << endl
189 << " _type: " << type_name() << endl
190 << " _dataset: " << d_dataset << endl
191 << " _read_p: " << d_is_read << endl
192 << " _send_p: " << d_is_send << endl
193 << " _synthesized_p: " << d_is_synthesized << endl
194 << " d_parent: " << d_parent << endl
195 << " d_attr: " << hex << &d_attr << dec << endl;
196
197 return oss.str();
198}
199
215void
217{
218 BaseType *dest = ptr_duplicate();
219 // If it's already a DAP4 object then we can just return it!
220 if(!is_dap4()){
222 dest->set_is_dap4(true);
223 }
224 container->add_var_nocopy(dest);
225}
226
227
258std::vector<BaseType *> *
260{
261 BaseType *dest = this->ptr_duplicate();
262 // convert the d4 attributes to a dap2 attribute table.
263 // HK-403. jhrg 6/17/19
264#if 0
265 AttrTable *attrs = this->attributes()->get_AttrTable(name());
266 dest->set_attr_table(*attrs);
267#else
268 if (dest->get_attr_table().get_size() == 0) {
270 dest->get_attr_table().set_name(name());
271 }
272#endif
273
274 dest->set_is_dap4(false);
275
276 vector<BaseType *> *result = new vector<BaseType *>();
277 result->push_back(dest);
278 return result;
279}
280
281
290void
291BaseType::dump(ostream &strm) const
292{
293 strm << DapIndent::LMarg << "BaseType::dump - ("
294 << (void *)this << ")" << endl ;
295 DapIndent::Indent() ;
296
297 strm << DapIndent::LMarg << "name: " << name() << endl ;
298 strm << DapIndent::LMarg << "type: " << type_name() << endl ;
299 strm << DapIndent::LMarg << "dataset: " << d_dataset << endl ;
300 strm << DapIndent::LMarg << "read_p: " << d_is_read << endl ;
301 strm << DapIndent::LMarg << "send_p: " << d_is_send << endl ;
302 strm << DapIndent::LMarg << "synthesized_p: " << d_is_synthesized << endl ;
303 strm << DapIndent::LMarg << "parent: " << (void *)d_parent << endl ;
304 strm << DapIndent::LMarg << "attributes: " << endl ;
305 DapIndent::Indent() ;
306
307 if (d_attributes)
308 d_attributes->dump(strm);
309 else
310 d_attr.dump(strm) ;
311
312 DapIndent::UnIndent() ;
313
314 DapIndent::UnIndent() ;
315}
316
319string
321{
322 return d_name;
323}
324
331string
333{
334 if (get_parent() == 0)
335 return name();
336 else if (get_parent()->type() == dods_group_c)
337 return get_parent()->FQN() + name();
338 else
339 return get_parent()->FQN() + "." + name();
340}
341
343void
344BaseType::set_name(const string &n)
345{
346 string name = n;
347 d_name = www2id(name); // www2id writes into its param.
348}
349
357string
359{
360 return d_dataset;
361}
362
364Type
366{
367 return d_type;
368}
369
371void
373{
374 d_type = t;
375}
376
378string
380{
381 if (is_dap4())
382 return libdap::D4type_name(d_type);
383 else
384 return libdap::D2type_name(d_type);
385}
386
392bool
394{
396}
397
401bool
403{
405}
406
411bool
413{
415}
416
442int
444{
445 return 1;
446}
447
451bool
453{
454 return d_is_synthesized;
455}
456
462void
464{
465 d_is_synthesized = state;
466}
467
468// Return the state of d_is_read (true if the value of the variable has been
469// read (and is in memory) false otherwise).
470
479bool
481{
482 return d_is_read;
483}
484
515void
517{
518 // The this comment is/was wrong!
519 // The is_synthesized property was not being used and the more I thought
520 // about how this was coded, the more this code below seemed like a bad idea.
521 // Once the property was set, the read_p property could not be changed.
522 // That seems a little silly. Also, I think I need to use this is_synthesized
523 // property for some of the server function code I'm working on for Raytheon,
524 // and I'd like to be able to control the read_p property! jhrg 3/9/15
525
526 // What's true: The is_synthesized property is used by
527 // 'projection functions' in the freeform handler. It might be better
528 // to modify the FFtypes to support this behavior, but for now I'm returning
529 // the library to its old behavior. That this change (setting is_read
530 // of the value of is_syn...) broke the FF handler was not detected
531 // because the FF tests were not being run due to an error in the FF
532 // bes-testsuite Makefile.am). jhrg 9/9/15
533
534#if 1
535 if (!d_is_synthesized) {
536 d_is_read = state;
537 }
538#else
539 d_is_read = state;
540#endif
541}
542
553bool
555{
556 return d_is_send;
557}
558
567void
569{
570 DBG2(cerr << "Calling BaseType::set_send_p() for: " << this->name()
571 << endl);
572 d_is_send = state;
573}
574
575
581AttrTable &
583{
584 return d_attr;
585}
586
589void
591{
592 d_attr = at;
593}
594
600{
601 if (!d_attributes) d_attributes = new D4Attributes();
602 return d_attributes;
603}
604
605void
606BaseType::set_attributes(D4Attributes *attrs)
607{
608 d_attributes = new D4Attributes(*attrs);
609}
610
611void
612BaseType::set_attributes_nocopy(D4Attributes *attrs)
613{
614 d_attributes = attrs;
615}
617
645
646 DBG(cerr << __func__ << "() - BEGIN name:'" << name() << "'" << endl);
647
648 AttrTable *at = at_container->get_attr_table(name());
649 DBG(cerr << __func__ << "() - at: "<< (void *) at << endl);
650
651
652 if (at) {
653 at->set_is_global_attribute(false);
654 DBG(cerr << __func__ << "() - Processing AttrTable: " << at->get_name() << endl);
655
656 AttrTable::Attr_iter at_p = at->attr_begin();
657 while (at_p != at->attr_end()) {
658 DBG(cerr << __func__ << "() - Attribute '" << at->get_name(at_p) << "' is type: " << at->get_type(at_p) << endl);
659 if (at->get_attr_type(at_p) == Attr_container){
660 // An attribute container may actually represent a child member variable. When
661 // that's the case we don't want to add the container to the parent type, but
662 // rather let any child of BaseType deal with those containers in the child's
663 // overridden transfer_attributes() method.
664 // We capitalize on the magic of the BaseType API and utilize the var() method
665 // to check for a child variable of the same name and, if one exists, we'll skip
666 // this AttrTable and let a child constructor class like Grid or Constructor
667 // deal with it.
668 BaseType *bt = var(at->get_name(at_p),true);
669 if(bt==0){
670 DBG(cerr << __func__ << "() - Adding container '" << at->get_name(at_p) << endl);
672 }
673 else {
674 DBG(cerr << __func__ << "() - Found child var: '"<< bt->type_name()<< " " << bt->name() << " (address:" << (void *) bt << ")" << endl);
675 DBG(cerr << __func__ << "() - Skipping container '" << at->get_name(at_p) << endl);
676 }
677 }
678 else {
679 DBG(cerr << __func__ << "() - Adding Attribute '" << at->get_name(at_p) << endl);
680 get_attr_table().append_attr(at->get_name(at_p), at->get_type(at_p), at->get_attr_vector(at_p));
681 }
682 at_p++;
683 }
684 }
685 else {
686 DBG(cerr << __func__ << "() - Unable to locate AttrTable '" << name() << "' SKIPPING" << endl);
687
688 }
689}
690
702bool
704{
705 return d_in_selection;
706}
707
717void
719{
720 d_in_selection = state;
721}
722
723// Protected method.
732void
734{
735 if (!dynamic_cast<Constructor *>(parent)
736 && !dynamic_cast<Vector *>(parent)
737 && parent != 0)
738 throw InternalErr("Call to set_parent with incorrect variable type.");
739
740 d_parent = parent;
741}
742
743// Public method.
744
750BaseType *
752{
753 return d_parent;
754}
755
756// Documented in the header file.
757BaseType *
758BaseType::var(const string &/*name*/, bool /*exact_match*/, btp_stack */*s*/)
759{
760 return static_cast<BaseType *>(0);
761}
762
779BaseType *
780BaseType::var(const string &, btp_stack &)
781{
782 return static_cast<BaseType *>(0);
783}
784
814void
816{
817 throw InternalErr(__FILE__, __LINE__, "BaseType::add_var unimplemented");
818}
819
820void
821BaseType::add_var_nocopy(BaseType *, Part)
822{
823 throw InternalErr(__FILE__, __LINE__, "BaseType::add_var_nocopy unimplemented");
824}
825
898bool
900{
901 if (d_is_read)
902 return true;
903
904 throw InternalErr("Unimplemented BaseType::read() method called for the variable named: " + name());
905}
906
907void
909{
910#if USE_LOCAL_TIMEOUT_SCHEME
911 dds.timeout_on();
912#endif
913 DBG2(cerr << "BaseType::intern_data: " << name() << endl);
914 if (!read_p())
915 read(); // read() throws Error and InternalErr
916#if USE_LOCAL_TIMEOUT_SCHEME
917 dds.timeout_off();
918#endif
919}
920
926void
927BaseType::intern_data(/*Crc32 &checksum, DMR &, ConstraintEvaluator &*/)
928{
929 if (!read_p())
930 read(); // read() throws Error and InternalErr
931#if 0
932 compute_checksum(checksum);
933#endif
934}
935
936bool
938{
939 throw InternalErr(__FILE__, __LINE__, "The DAP2 serialize() method has not been implemented for " + type_name());
940}
941
942bool
944{
945 throw InternalErr(__FILE__, __LINE__, "The DAP2 deserialize() method has not been implemented for " + type_name());
946}
947
948void
949BaseType::serialize(D4StreamMarshaller &, DMR &, /*ConstraintEvaluator &,*/ bool)
950{
951 throw InternalErr(__FILE__, __LINE__, "The DAP4 serialize() method has not been implemented for " + type_name());
952}
953
954void
956{
957 throw InternalErr(__FILE__, __LINE__, "The DAP4 deserialize() method has not been implemented for " + type_name());
958}
959
1002void
1003BaseType::print_decl(FILE *out, string space, bool print_semi,
1004 bool constraint_info, bool constrained)
1005{
1006 ostringstream oss;
1007 print_decl(oss, space, print_semi, constraint_info, constrained);
1008 fwrite(oss.str().data(), sizeof(char), oss.str().length(), out);
1009}
1010
1053void
1054BaseType::print_decl(ostream &out, string space, bool print_semi,
1055 bool constraint_info, bool constrained)
1056{
1057 // if printing the constrained declaration, exit if this variable was not
1058 // selected.
1059 if (constrained && !send_p())
1060 return;
1061
1062 out << space << type_name() << " " << id2www(name()) ;
1063
1064 if (constraint_info) {
1065 if (send_p())
1066 out << ": Send True" ;
1067 else
1068 out << ": Send False" ;
1069 }
1070
1071 if (print_semi)
1072 out << ";\n" ;
1073}
1074
1089void
1090BaseType::print_val(FILE *out, string space, bool print_decl_p)
1091{
1092 ostringstream oss;
1093 print_val(oss, space, print_decl_p);
1094 fwrite(oss.str().data(), sizeof(char), oss.str().length(), out);
1095}
1096
1104void
1105BaseType::print_xml(FILE *out, string space, bool constrained)
1106{
1107 XMLWriter xml(space);
1108 print_xml_writer(xml, constrained);
1109 fwrite(xml.get_doc(), sizeof(char), xml.get_doc_size(), out);
1110}
1111
1119void
1120BaseType::print_xml(ostream &out, string space, bool constrained)
1121{
1122 XMLWriter xml(space);
1123 print_xml_writer(xml, constrained);
1124 out << xml.get_doc();
1125}
1126
1133void
1135{
1136 if (constrained && !send_p())
1137 return;
1138
1139 if (xmlTextWriterStartElement(xml.get_writer(), (const xmlChar*)type_name().c_str()) < 0)
1140 throw InternalErr(__FILE__, __LINE__, "Could not write " + type_name() + " element");
1141
1142 if (!name().empty())
1143 if (xmlTextWriterWriteAttribute(xml.get_writer(), (const xmlChar*) "name", (const xmlChar*)name().c_str()) < 0)
1144 throw InternalErr(__FILE__, __LINE__, "Could not write attribute for name");
1145
1146 if (is_dap4())
1147 attributes()->print_dap4(xml);
1148
1149 if (!is_dap4() && get_attr_table().get_size() > 0)
1151
1152 if (xmlTextWriterEndElement(xml.get_writer()) < 0)
1153 throw InternalErr(__FILE__, __LINE__, "Could not end " + type_name() + " element");
1154}
1155
1163void
1164BaseType::print_dap4(XMLWriter &xml, bool constrained)
1165{
1166 print_xml_writer(xml, constrained);
1167}
1168
1169// Compares the object's current state with the semantics of a particular
1170// type. This will typically be defined in ctor classes (which have
1171// complicated semantics). For BaseType, an object is semantically correct if
1172// it has both a non-null name and type.
1173//
1174// NB: This is not the same as an invariant -- during the parse objects exist
1175// but have no name. Also, the bool ALL defaults to false for BaseType. It is
1176// used by children of CtorType.
1177//
1178// Returns: true if the object is semantically correct, false otherwise.
1179
1208bool
1210{
1211 bool sem = (d_type != dods_null_c && name().length());
1212
1213 if (!sem)
1214 msg = "Every variable must have both a name and a type\n";
1215
1216 return sem;
1217}
1218
1255bool
1257{
1258 // Even though ops is a public method, it can never be called because
1259 // they will never have a BaseType object since this class is abstract,
1260 // however any of the child classes could by mistake call BaseType::ops
1261 // so this is an internal error. Jose Garcia
1262 throw InternalErr(__FILE__, __LINE__, "Unimplemented operator.");
1263}
1264
1281bool
1283{
1284 throw InternalErr(__FILE__, __LINE__, "Unimplemented operator.");
1285}
1286
1298unsigned int
1299BaseType::width(bool /* constrained */) const
1300{
1301 throw InternalErr(__FILE__, __LINE__, "not implemented");
1302}
1303
1304} // namespace libdap
Contains the attributes for a dataset.
Definition: AttrTable.h:143
virtual AttrTable * append_container(const string &name)
Add a container to the attribute table.
Definition: AttrTable.cc:410
virtual void set_name(const string &n)
Set the name of this attribute table.
Definition: AttrTable.cc:245
virtual AttrTable * get_attr_table(const string &name)
Get an attribute container.
Definition: AttrTable.cc:607
virtual Attr_iter attr_end()
Definition: AttrTable.cc:719
virtual string get_type(const string &name)
Get the type name of an attribute within this attribute table.
Definition: AttrTable.cc:613
virtual vector< string > * get_attr_vector(const string &name)
Get a vector-valued attribute.
Definition: AttrTable.cc:653
virtual unsigned int append_attr(const string &name, const string &type, const string &value)
Add an attribute to the table.
Definition: AttrTable.cc:307
virtual Attr_iter attr_begin()
Definition: AttrTable.cc:711
virtual string get_name() const
Get the name of this attribute table.
Definition: AttrTable.cc:238
void print_xml_writer(XMLWriter &xml)
Definition: AttrTable.cc:1425
virtual unsigned int get_size() const
Get the number of entries in this attribute table.
Definition: AttrTable.cc:231
virtual void dump(ostream &strm) const
dumps information about this object
Definition: AttrTable.cc:1510
virtual AttrType get_attr_type(const string &name)
Get the type of an attribute.
Definition: AttrTable.cc:621
The basic data type for the DODS DAP types.
Definition: BaseType.h:118
void m_duplicate(const BaseType &bt)
Perform a deep copy.
Definition: BaseType.cc:86
virtual void print_xml_writer(XMLWriter &xml, bool constrained=false)
Definition: BaseType.cc:1134
virtual string type_name() const
Returns the type of the class instance as a string.
Definition: BaseType.cc:379
virtual void intern_data()
Read data into this variable.
Definition: BaseType.cc:927
virtual bool read()
Read data into a local buffer.
Definition: BaseType.cc:899
virtual bool deserialize(UnMarshaller &um, DDS *dds, bool reuse=false)
Receive data from the net.
Definition: BaseType.cc:943
virtual AttrTable & get_attr_table()
Definition: BaseType.cc:582
virtual string name() const
Returns the name of the class instance.
Definition: BaseType.cc:320
virtual void set_in_selection(bool state)
Definition: BaseType.cc:718
virtual void print_decl(FILE *out, string space=" ", bool print_semi=true, bool constraint_info=false, bool constrained=false)
Print an ASCII representation of the variable structure.
Definition: BaseType.cc:1003
virtual BaseType * get_parent() const
Definition: BaseType.cc:751
virtual bool read_p()
Has this variable been read?
Definition: BaseType.cc:480
virtual unsigned int width(bool constrained=false) const
How many bytes does this variable use Return the number of bytes of storage this variable uses....
Definition: BaseType.cc:1299
virtual void set_read_p(bool state)
Sets the value of the read_p property.
Definition: BaseType.cc:516
virtual string dataset() const
Returns the name of the dataset used to create this instance.
Definition: BaseType.cc:358
virtual BaseType * var(const string &name="", bool exact_match=true, btp_stack *s=0)
Returns a pointer to a member of a constructor class.
Definition: BaseType.cc:758
virtual bool d4_ops(BaseType *b, int op)
Evaluator a relop for DAP4.
Definition: BaseType.cc:1282
virtual void set_attr_table(const AttrTable &at)
Definition: BaseType.cc:590
virtual void set_synthesized_p(bool state)
Definition: BaseType.cc:463
virtual void set_parent(BaseType *parent)
Definition: BaseType.cc:733
virtual int element_count(bool leaves=false)
Count the members of constructor types.
Definition: BaseType.cc:443
virtual string toString()
Definition: BaseType.cc:184
virtual bool is_vector_type() const
Returns true if the instance is a vector (i.e., array) type variable.
Definition: BaseType.cc:402
virtual void print_xml(FILE *out, string space=" ", bool constrained=false)
Definition: BaseType.cc:1105
virtual void set_name(const string &n)
Sets the name of the class instance.
Definition: BaseType.cc:344
virtual bool ops(BaseType *b, int op)
Evaluate relational operators.
Definition: BaseType.cc:1256
virtual bool is_constructor_type() const
Returns true if the instance is a constructor (i.e., Structure, Sequence or Grid) type variable.
Definition: BaseType.cc:412
virtual D4Attributes * attributes()
Definition: BaseType.cc:599
virtual std::string FQN() const
Definition: BaseType.cc:332
virtual bool send_p()
Should this variable be sent?
Definition: BaseType.cc:554
virtual bool is_simple_type() const
Returns true if the instance is a numeric, string or URL type variable.
Definition: BaseType.cc:393
virtual void set_send_p(bool state)
Definition: BaseType.cc:568
virtual BaseType * ptr_duplicate()=0
virtual void compute_checksum(Crc32 &checksum)=0
include the data for this variable in the checksum DAP4 includes a checksum with every data response....
virtual void transform_to_dap4(D4Group *root, Constructor *container)
DAP2 to DAP4 transform.
Definition: BaseType.cc:216
virtual bool serialize(ConstraintEvaluator &eval, DDS &dds, Marshaller &m, bool ce_eval=true)
Move data to the net, then remove them from the object.
Definition: BaseType.cc:937
virtual void add_var(BaseType *bt, Part part=nil)
Add a variable.
Definition: BaseType.cc:815
virtual void transfer_attributes(AttrTable *at)
Definition: BaseType.cc:644
virtual void dump(ostream &strm) const
dumps information about this object
Definition: BaseType.cc:291
virtual bool is_in_selection()
Is this variable part of the current selection?
Definition: BaseType.cc:703
virtual bool synthesized_p()
Definition: BaseType.cc:452
virtual bool check_semantics(string &msg, bool all=false)
Compare an object's current state with the semantics of its type.
Definition: BaseType.cc:1209
BaseType(const string &n, const Type &t, bool is_dap4=false)
The BaseType constructor.
Definition: BaseType.cc:126
virtual void set_type(const Type &t)
Sets the type of the class instance.
Definition: BaseType.cc:372
virtual Type type() const
Returns the type of the class instance.
Definition: BaseType.cc:365
virtual void print_val(FILE *out, string space="", bool print_decl_p=true)
Prints the value of the variable.
Definition: BaseType.cc:1090
virtual void print_dap4(XMLWriter &xml, bool constrained=false)
Definition: BaseType.cc:1164
virtual std::vector< BaseType * > * transform_to_dap2(AttrTable *parent_attr_table)
DAP4 to DAP2 transform.
Definition: BaseType.cc:259
Evaluate a constraint expression.
virtual void add_var_nocopy(BaseType *bt, Part part=nil)
Definition: Constructor.cc:432
void transform_to_dap4(AttrTable &at)
copy attributes from DAP2 to DAP4
void transform_attrs_to_dap2(AttrTable *d2_attr_table)
Copy the attributes from this D4Attributes object to a DAP2 AttrTable.
virtual void dump(ostream &strm) const
dumps information about this object
Marshaller that knows how to marshal/serialize dap data objects to a C++ iostream using DAP4's receiv...
Read data from the stream made by D4StreamMarshaller.
libdap base object for common functionality of libdap objects
Definition: DapObj.h:51
A class for software fault reporting.
Definition: InternalErr.h:65
abstract base class used to marshal/serialize dap data objects
Definition: Marshaller.h:50
abstract base class used to unmarshall/deserialize dap data objects
Definition: UnMarshaller.h:55
Holds a one-dimensional collection of DAP2 data types.
Definition: Vector.h:81
top level DAP object to house generic methods
Definition: AlarmHandler.h:36
Type
Identifies the data type.
Definition: Type.h:94
string www2id(const string &in, const string &escape, const string &except)
Definition: escaping.cc:220
bool is_simple_type(Type t)
Returns true if the instance is a numeric, string or URL type variable.
Definition: util.cc:777
string D2type_name(Type t)
Returns the type of the class instance as a string. Supports all DAP2 types and not the DAP4-only typ...
Definition: util.cc:651
string D4type_name(Type t)
Returns the type of the class instance as a string. Supports all DAP4 types and not the DAP2-only typ...
Definition: util.cc:696
bool is_constructor_type(Type t)
Returns true if the instance is a constructor (i.e., Structure, Sequence or Grid) type variable.
Definition: util.cc:861
bool is_vector_type(Type t)
Returns true if the instance is a vector (i.e., array) type variable.
Definition: util.cc:817
Part
Names the parts of multi-section constructor data types.
Definition: Type.h:48
string id2www(string in, const string &allowable)
Definition: escaping.cc:153