ce92730ef6
This will permit Nasal (e.g., FMS) to update nicely when the FlightPlan is modified from anywhere else.
1208 lines
37 KiB
C++
1208 lines
37 KiB
C++
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#ifdef HAVE_CONFIG_H
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# include "config.h"
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#endif
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#ifdef HAVE_SYS_TIME_H
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# include <sys/time.h> // gettimeofday
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#endif
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#include <string.h>
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#include <stdio.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <fstream>
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#include <sstream>
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#include <algorithm> // for std::sort
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#include <simgear/nasal/nasal.h>
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#include <simgear/props/props.hxx>
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#include <simgear/math/sg_random.h>
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#include <simgear/misc/sg_path.hxx>
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#include <simgear/misc/sg_dir.hxx>
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#include <simgear/misc/interpolator.hxx>
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#include <simgear/structure/commands.hxx>
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#include <simgear/math/sg_geodesy.hxx>
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#include <simgear/structure/event_mgr.hxx>
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#include "NasalSys.hxx"
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#include "NasalPositioned.hxx"
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#include <Main/globals.hxx>
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#include <Main/util.hxx>
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#include <Main/fg_props.hxx>
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using std::map;
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static FGNasalSys* nasalSys = 0;
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// Listener class for loading Nasal modules on demand
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class FGNasalModuleListener : public SGPropertyChangeListener
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{
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public:
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FGNasalModuleListener(SGPropertyNode* node);
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virtual void valueChanged(SGPropertyNode* node);
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private:
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SGPropertyNode_ptr _node;
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};
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FGNasalModuleListener::FGNasalModuleListener(SGPropertyNode* node) : _node(node)
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{
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}
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void FGNasalModuleListener::valueChanged(SGPropertyNode*)
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{
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if (_node->getBoolValue("enabled",false)&&
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!_node->getBoolValue("loaded",true))
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{
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nasalSys->loadPropertyScripts(_node);
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}
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}
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// Read and return file contents in a single buffer. Note use of
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// stat() to get the file size. This is a win32 function, believe it
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// or not. :) Note the REALLY IMPORTANT use of the "b" flag to fopen.
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// Text mode brain damage will kill us if we're trying to do bytewise
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// I/O.
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static char* readfile(const char* file, int* lenOut)
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{
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struct stat data;
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if(stat(file, &data) != 0) return 0;
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FILE* f = fopen(file, "rb");
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if(!f) return 0;
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char* buf = new char[data.st_size];
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*lenOut = fread(buf, 1, data.st_size, f);
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fclose(f);
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if(*lenOut != data.st_size) {
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// Shouldn't happen, but warn anyway since it represents a
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// platform bug and not a typical runtime error (missing file,
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// etc...)
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SG_LOG(SG_NASAL, SG_ALERT,
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"ERROR in Nasal initialization: " <<
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"short count returned from fread() of " << file <<
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". Check your C library!");
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delete[] buf;
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return 0;
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}
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return buf;
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}
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FGNasalSys::FGNasalSys()
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{
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nasalSys = this;
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_context = 0;
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_globals = naNil();
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_gcHash = naNil();
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_nextGCKey = 0; // Any value will do
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_callCount = 0;
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}
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naRef FGNasalSys::call(naRef code, int argc, naRef* args, naRef locals)
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{
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return callMethod(code, naNil(), argc, args, locals);
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}
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// Does a naCall() in a new context. Wrapped here to make lock
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// tracking easier. Extension functions are called with the lock, but
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// we have to release it before making a new naCall(). So rather than
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// drop the lock in every extension function that might call back into
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// Nasal, we keep a stack depth counter here and only unlock/lock
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// around the naCall if it isn't the first one.
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naRef FGNasalSys::callMethod(naRef code, naRef self, int argc, naRef* args, naRef locals)
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{
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naContext ctx = naNewContext();
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if(_callCount) naModUnlock();
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_callCount++;
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naRef result = naCall(ctx, code, argc, args, self, locals);
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if(naGetError(ctx))
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logError(ctx);
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_callCount--;
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if(_callCount) naModLock();
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naFreeContext(ctx);
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return result;
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}
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FGNasalSys::~FGNasalSys()
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{
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nasalSys = 0;
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map<int, FGNasalListener *>::iterator it, end = _listener.end();
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for(it = _listener.begin(); it != end; ++it)
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delete it->second;
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naFreeContext(_context);
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_globals = naNil();
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}
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bool FGNasalSys::parseAndRun(const char* sourceCode)
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{
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naRef code = parse("FGNasalSys::parseAndRun()", sourceCode,
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strlen(sourceCode));
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if(naIsNil(code))
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return false;
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call(code, 0, 0, naNil());
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return true;
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}
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FGNasalScript* FGNasalSys::parseScript(const char* src, const char* name)
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{
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FGNasalScript* script = new FGNasalScript();
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script->_gcKey = -1; // important, if we delete it on a parse
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script->_nas = this; // error, don't clobber a real handle!
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char buf[256];
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if(!name) {
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sprintf(buf, "FGNasalScript@%p", (void *)script);
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name = buf;
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}
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script->_code = parse(name, src, strlen(src));
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if(naIsNil(script->_code)) {
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delete script;
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return 0;
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}
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script->_gcKey = gcSave(script->_code);
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return script;
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}
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// Utility. Sets a named key in a hash by C string, rather than nasal
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// string object.
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void FGNasalSys::hashset(naRef hash, const char* key, naRef val)
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{
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naRef s = naNewString(_context);
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naStr_fromdata(s, (char*)key, strlen(key));
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naHash_set(hash, s, val);
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}
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// The get/setprop functions accept a *list* of strings and walk
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// through the property tree with them to find the appropriate node.
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// This allows a Nasal object to hold onto a property path and use it
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// like a node object, e.g. setprop(ObjRoot, "size-parsecs", 2.02). This
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// is the utility function that walks the property tree.
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// Future enhancement: support integer arguments to specify array
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// elements.
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static SGPropertyNode* findnode(naContext c, naRef* vec, int len)
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{
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SGPropertyNode* p = globals->get_props();
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try {
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for(int i=0; i<len; i++) {
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naRef a = vec[i];
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if(!naIsString(a)) return 0;
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p = p->getNode(naStr_data(a));
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if(p == 0) return 0;
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}
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} catch (const string& err) {
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naRuntimeError(c, (char *)err.c_str());
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return 0;
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}
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return p;
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}
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// getprop() extension function. Concatenates its string arguments as
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// property names and returns the value of the specified property. Or
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// nil if it doesn't exist.
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static naRef f_getprop(naContext c, naRef me, int argc, naRef* args)
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{
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using namespace simgear;
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const SGPropertyNode* p = findnode(c, args, argc);
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if(!p) return naNil();
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switch(p->getType()) {
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case props::BOOL: case props::INT:
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case props::LONG: case props::FLOAT:
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case props::DOUBLE:
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{
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double dv = p->getDoubleValue();
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if (osg::isNaN(dv)) {
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SG_LOG(SG_NASAL, SG_ALERT, "Nasal getprop: property " << p->getPath() << " is NaN");
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return naNil();
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}
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return naNum(dv);
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}
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case props::STRING:
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case props::UNSPECIFIED:
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{
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naRef nastr = naNewString(c);
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const char* val = p->getStringValue();
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naStr_fromdata(nastr, (char*)val, strlen(val));
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return nastr;
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}
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case props::ALIAS: // <--- FIXME, recurse?
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default:
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return naNil();
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}
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}
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// setprop() extension function. Concatenates its string arguments as
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// property names and sets the value of the specified property to the
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// final argument.
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static naRef f_setprop(naContext c, naRef me, int argc, naRef* args)
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{
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#define BUFLEN 1024
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char buf[BUFLEN + 1];
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buf[BUFLEN] = 0;
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char* p = buf;
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int buflen = BUFLEN;
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if(argc < 2) naRuntimeError(c, "setprop() expects at least 2 arguments");
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for(int i=0; i<argc-1; i++) {
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naRef s = naStringValue(c, args[i]);
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if(naIsNil(s)) return naNil();
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strncpy(p, naStr_data(s), buflen);
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p += naStr_len(s);
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buflen = BUFLEN - (p - buf);
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if(i < (argc-2) && buflen > 0) {
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*p++ = '/';
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buflen--;
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}
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}
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SGPropertyNode* props = globals->get_props();
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naRef val = args[argc-1];
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bool result = false;
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try {
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if(naIsString(val)) result = props->setStringValue(buf, naStr_data(val));
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else {
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naRef n = naNumValue(val);
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if(naIsNil(n))
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naRuntimeError(c, "setprop() value is not string or number");
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if (osg::isNaN(n.num)) {
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naRuntimeError(c, "setprop() passed a NaN");
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}
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result = props->setDoubleValue(buf, n.num);
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}
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} catch (const string& err) {
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naRuntimeError(c, (char *)err.c_str());
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}
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return naNum(result);
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#undef BUFLEN
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}
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// print() extension function. Concatenates and prints its arguments
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// to the FlightGear log. Uses the highest log level (SG_ALERT), to
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// make sure it appears. Is there better way to do this?
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static naRef f_print(naContext c, naRef me, int argc, naRef* args)
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{
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string buf;
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int n = argc;
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for(int i=0; i<n; i++) {
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naRef s = naStringValue(c, args[i]);
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if(naIsNil(s)) continue;
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buf += naStr_data(s);
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}
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SG_LOG(SG_NASAL, SG_ALERT, buf);
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return naNum(buf.length());
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}
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// fgcommand() extension function. Executes a named command via the
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// FlightGear command manager. Takes a single property node name as
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// an argument.
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static naRef f_fgcommand(naContext c, naRef me, int argc, naRef* args)
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{
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naRef cmd = argc > 0 ? args[0] : naNil();
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naRef props = argc > 1 ? args[1] : naNil();
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if(!naIsString(cmd) || (!naIsNil(props) && !naIsGhost(props)))
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naRuntimeError(c, "bad arguments to fgcommand()");
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SGPropertyNode_ptr tmp, *node;
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if(!naIsNil(props))
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node = (SGPropertyNode_ptr*)naGhost_ptr(props);
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else {
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tmp = new SGPropertyNode();
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node = &tmp;
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}
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return naNum(globals->get_commands()->execute(naStr_data(cmd), *node));
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}
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// settimer(func, dt, simtime) extension function. Falls through to
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// FGNasalSys::setTimer(). See there for docs.
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static naRef f_settimer(naContext c, naRef me, int argc, naRef* args)
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{
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nasalSys->setTimer(c, argc, args);
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return naNil();
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}
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// setlistener(func, property, bool) extension function. Falls through to
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// FGNasalSys::setListener(). See there for docs.
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static naRef f_setlistener(naContext c, naRef me, int argc, naRef* args)
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{
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return nasalSys->setListener(c, argc, args);
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}
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// removelistener(int) extension function. Falls through to
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// FGNasalSys::removeListener(). See there for docs.
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static naRef f_removelistener(naContext c, naRef me, int argc, naRef* args)
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{
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return nasalSys->removeListener(c, argc, args);
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}
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// Returns a ghost handle to the argument to the currently executing
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// command
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static naRef f_cmdarg(naContext c, naRef me, int argc, naRef* args)
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{
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return nasalSys->cmdArgGhost();
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}
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// Sets up a property interpolation. The first argument is either a
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// ghost (SGPropertyNode_ptr*) or a string (global property path) to
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// interpolate. The second argument is a vector of pairs of
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// value/delta numbers.
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static naRef f_interpolate(naContext c, naRef me, int argc, naRef* args)
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{
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SGPropertyNode* node;
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naRef prop = argc > 0 ? args[0] : naNil();
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if(naIsString(prop)) node = fgGetNode(naStr_data(prop), true);
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else if(naIsGhost(prop)) node = *(SGPropertyNode_ptr*)naGhost_ptr(prop);
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else return naNil();
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naRef curve = argc > 1 ? args[1] : naNil();
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if(!naIsVector(curve)) return naNil();
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int nPoints = naVec_size(curve) / 2;
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double* values = new double[nPoints];
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double* deltas = new double[nPoints];
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for(int i=0; i<nPoints; i++) {
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values[i] = naNumValue(naVec_get(curve, 2*i)).num;
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deltas[i] = naNumValue(naVec_get(curve, 2*i+1)).num;
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}
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((SGInterpolator*)globals->get_subsystem_mgr()
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->get_group(SGSubsystemMgr::INIT)->get_subsystem("interpolator"))
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->interpolate(node, nPoints, values, deltas);
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delete[] values;
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delete[] deltas;
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return naNil();
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}
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// This is a better RNG than the one in the default Nasal distribution
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// (which is based on the C library rand() implementation). It will
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// override.
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static naRef f_rand(naContext c, naRef me, int argc, naRef* args)
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{
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return naNum(sg_random());
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}
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static naRef f_srand(naContext c, naRef me, int argc, naRef* args)
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{
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sg_srandom_time();
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return naNum(0);
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}
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static naRef f_abort(naContext c, naRef me, int argc, naRef* args)
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{
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abort();
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return naNil();
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}
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// Return an array listing of all files in a directory
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static naRef f_directory(naContext c, naRef me, int argc, naRef* args)
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{
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if(argc != 1 || !naIsString(args[0]))
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naRuntimeError(c, "bad arguments to directory()");
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simgear::Dir d(SGPath(naStr_data(args[0])));
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if(!d.exists()) return naNil();
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naRef result = naNewVector(c);
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simgear::PathList paths = d.children(simgear::Dir::TYPE_FILE | simgear::Dir::TYPE_DIR);
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for (unsigned int i=0; i<paths.size(); ++i) {
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std::string p = paths[i].file();
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naVec_append(result, naStr_fromdata(naNewString(c), p.c_str(), p.size()));
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}
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return result;
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}
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/**
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* Given a data path, resolve it in FG_ROOT or an FG_AIRCRFT directory
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*/
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static naRef f_resolveDataPath(naContext c, naRef me, int argc, naRef* args)
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{
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if(argc != 1 || !naIsString(args[0]))
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naRuntimeError(c, "bad arguments to resolveDataPath()");
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SGPath p = globals->resolve_maybe_aircraft_path(naStr_data(args[0]));
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const char* pdata = p.c_str();
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return naStr_fromdata(naNewString(c), const_cast<char*>(pdata), strlen(pdata));
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}
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// Parse XML file.
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// parsexml(<path> [, <start-tag> [, <end-tag> [, <data> [, <pi>]]]]);
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//
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// <path> ... absolute path to an XML file
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// <start-tag> ... callback function with two args: tag name, attribute hash
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// <end-tag> ... callback function with one arg: tag name
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// <data> ... callback function with one arg: data
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// <pi> ... callback function with two args: target, data
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// (pi = "processing instruction")
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// All four callback functions are optional and default to nil.
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// The function returns nil on error, or the validated file name otherwise.
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static naRef f_parsexml(naContext c, naRef me, int argc, naRef* args)
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{
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if(argc < 1 || !naIsString(args[0]))
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naRuntimeError(c, "parsexml(): path argument missing or not a string");
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if(argc > 5) argc = 5;
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for(int i=1; i<argc; i++)
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if(!(naIsNil(args[i]) || naIsFunc(args[i])))
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naRuntimeError(c, "parsexml(): callback argument not a function");
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const char* file = fgValidatePath(naStr_data(args[0]), false);
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if(!file) {
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naRuntimeError(c, "parsexml(): reading '%s' denied "
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"(unauthorized access)", naStr_data(args[0]));
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return naNil();
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}
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std::ifstream input(file);
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NasalXMLVisitor visitor(c, argc, args);
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try {
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readXML(input, visitor);
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} catch (const sg_exception& e) {
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naRuntimeError(c, "parsexml(): file '%s' %s",
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file, e.getFormattedMessage().c_str());
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return naNil();
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}
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return naStr_fromdata(naNewString(c), const_cast<char*>(file), strlen(file));
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}
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// Return UNIX epoch time in seconds.
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static naRef f_systime(naContext c, naRef me, int argc, naRef* args)
|
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{
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#ifdef _WIN32
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FILETIME ft;
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GetSystemTimeAsFileTime(&ft);
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double t = (4294967296.0 * ft.dwHighDateTime + ft.dwLowDateTime);
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// Converts from 100ns units in 1601 epoch to unix epoch in sec
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return naNum((t * 1e-7) - 11644473600.0);
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#else
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struct timeval td;
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gettimeofday(&td, 0);
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return naNum(td.tv_sec + 1e-6 * td.tv_usec);
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#endif
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}
|
|
|
|
// Table of extension functions. Terminate with zeros.
|
|
static struct { const char* name; naCFunction func; } funcs[] = {
|
|
{ "getprop", f_getprop },
|
|
{ "setprop", f_setprop },
|
|
{ "print", f_print },
|
|
{ "_fgcommand", f_fgcommand },
|
|
{ "settimer", f_settimer },
|
|
{ "_setlistener", f_setlistener },
|
|
{ "removelistener", f_removelistener },
|
|
{ "_cmdarg", f_cmdarg },
|
|
{ "_interpolate", f_interpolate },
|
|
{ "rand", f_rand },
|
|
{ "srand", f_srand },
|
|
{ "abort", f_abort },
|
|
{ "directory", f_directory },
|
|
{ "resolvepath", f_resolveDataPath },
|
|
{ "parsexml", f_parsexml },
|
|
{ "systime", f_systime },
|
|
{ 0, 0 }
|
|
};
|
|
|
|
naRef FGNasalSys::cmdArgGhost()
|
|
{
|
|
return propNodeGhost(_cmdArg);
|
|
}
|
|
|
|
void FGNasalSys::init()
|
|
{
|
|
int i;
|
|
|
|
_context = naNewContext();
|
|
|
|
// Start with globals. Add it to itself as a recursive
|
|
// sub-reference under the name "globals". This gives client-code
|
|
// write access to the namespace if someone wants to do something
|
|
// fancy.
|
|
_globals = naInit_std(_context);
|
|
naSave(_context, _globals);
|
|
hashset(_globals, "globals", _globals);
|
|
|
|
hashset(_globals, "math", naInit_math(_context));
|
|
hashset(_globals, "bits", naInit_bits(_context));
|
|
hashset(_globals, "io", naInit_io(_context));
|
|
hashset(_globals, "thread", naInit_thread(_context));
|
|
hashset(_globals, "utf8", naInit_utf8(_context));
|
|
|
|
// Add our custom extension functions:
|
|
for(i=0; funcs[i].name; i++)
|
|
hashset(_globals, funcs[i].name,
|
|
naNewFunc(_context, naNewCCode(_context, funcs[i].func)));
|
|
|
|
|
|
|
|
// And our SGPropertyNode wrapper
|
|
hashset(_globals, "props", genPropsModule());
|
|
|
|
// Make a "__gcsave" hash to hold the naRef objects which get
|
|
// passed to handles outside the interpreter (to protect them from
|
|
// begin garbage-collected).
|
|
_gcHash = naNewHash(_context);
|
|
hashset(_globals, "__gcsave", _gcHash);
|
|
|
|
initNasalPositioned(_globals, _context, _gcHash);
|
|
|
|
// Now load the various source files in the Nasal directory
|
|
simgear::Dir nasalDir(SGPath(globals->get_fg_root(), "Nasal"));
|
|
loadScriptDirectory(nasalDir);
|
|
|
|
// Add modules in Nasal subdirectories to property tree
|
|
simgear::PathList directories = nasalDir.children(simgear::Dir::TYPE_DIR+
|
|
simgear::Dir::NO_DOT_OR_DOTDOT, "");
|
|
for (unsigned int i=0; i<directories.size(); ++i) {
|
|
simgear::Dir dir(directories[i]);
|
|
simgear::PathList scripts = dir.children(simgear::Dir::TYPE_FILE, ".nas");
|
|
addModule(directories[i].file(), scripts);
|
|
}
|
|
|
|
// set signal and remove node to avoid restoring at reinit
|
|
const char *s = "nasal-dir-initialized";
|
|
SGPropertyNode *signal = fgGetNode("/sim/signals", true);
|
|
signal->setBoolValue(s, true);
|
|
signal->removeChildren(s, false);
|
|
|
|
// Pull scripts out of the property tree, too
|
|
loadPropertyScripts();
|
|
|
|
// now Nasal modules are loaded, we can do some delayed work
|
|
postinitNasalPositioned(_globals, _context);
|
|
}
|
|
|
|
void FGNasalSys::update(double)
|
|
{
|
|
if(!_dead_listener.empty()) {
|
|
vector<FGNasalListener *>::iterator it, end = _dead_listener.end();
|
|
for(it = _dead_listener.begin(); it != end; ++it) delete *it;
|
|
_dead_listener.clear();
|
|
}
|
|
|
|
if (!_loadList.empty())
|
|
{
|
|
// process Nasal load hook (only one per update loop to avoid excessive lags)
|
|
_loadList.pop()->load();
|
|
}
|
|
else
|
|
if (!_unloadList.empty())
|
|
{
|
|
// process pending Nasal unload hooks after _all_ load hooks were processed
|
|
// (only unload one per update loop to avoid excessive lags)
|
|
_unloadList.pop()->unload();
|
|
}
|
|
|
|
// The global context is a legacy thing. We use dynamically
|
|
// created contexts for naCall() now, so that we can call them
|
|
// recursively. But there are still spots that want to use it for
|
|
// naNew*() calls, which end up leaking memory because the context
|
|
// only clears out its temporary vector when it's *used*. So just
|
|
// junk it and fetch a new/reinitialized one every frame. This is
|
|
// clumsy: the right solution would use the dynamic context in all
|
|
// cases and eliminate _context entirely. But that's more work,
|
|
// and this works fine (yes, they say "New" and "Free", but
|
|
// they're very fast, just trust me). -Andy
|
|
naFreeContext(_context);
|
|
_context = naNewContext();
|
|
}
|
|
|
|
bool pathSortPredicate(const SGPath& p1, const SGPath& p2)
|
|
{
|
|
return p1.file() < p2.file();
|
|
}
|
|
|
|
// Loads all scripts in given directory
|
|
void FGNasalSys::loadScriptDirectory(simgear::Dir nasalDir)
|
|
{
|
|
simgear::PathList scripts = nasalDir.children(simgear::Dir::TYPE_FILE, ".nas");
|
|
// sort scripts, avoid loading sequence effects due to file system's
|
|
// random directory order
|
|
std::sort(scripts.begin(), scripts.end(), pathSortPredicate);
|
|
|
|
for (unsigned int i=0; i<scripts.size(); ++i) {
|
|
SGPath fullpath(scripts[i]);
|
|
SGPath file = fullpath.file();
|
|
loadModule(fullpath, file.base().c_str());
|
|
}
|
|
}
|
|
|
|
// Create module with list of scripts
|
|
void FGNasalSys::addModule(string moduleName, simgear::PathList scripts)
|
|
{
|
|
if (scripts.size()>0)
|
|
{
|
|
SGPropertyNode* nasal = globals->get_props()->getNode("nasal");
|
|
SGPropertyNode* module_node = nasal->getChild(moduleName,0,true);
|
|
for (unsigned int i=0; i<scripts.size(); ++i) {
|
|
SGPropertyNode* pFileNode = module_node->getChild("file",i,true);
|
|
pFileNode->setStringValue(scripts[i].c_str());
|
|
}
|
|
if (!module_node->hasChild("enabled",0))
|
|
{
|
|
SGPropertyNode* node = module_node->getChild("enabled",0,true);
|
|
node->setBoolValue(true);
|
|
node->setAttribute(SGPropertyNode::USERARCHIVE,true);
|
|
}
|
|
}
|
|
}
|
|
|
|
// Loads the scripts found under /nasal in the global tree
|
|
void FGNasalSys::loadPropertyScripts()
|
|
{
|
|
SGPropertyNode* nasal = globals->get_props()->getNode("nasal");
|
|
if(!nasal) return;
|
|
|
|
for(int i=0; i<nasal->nChildren(); i++)
|
|
{
|
|
SGPropertyNode* n = nasal->getChild(i);
|
|
loadPropertyScripts(n);
|
|
}
|
|
}
|
|
|
|
// Loads the scripts found under /nasal in the global tree
|
|
void FGNasalSys::loadPropertyScripts(SGPropertyNode* n)
|
|
{
|
|
bool is_loaded = false;
|
|
|
|
const char* module = n->getName();
|
|
if(n->hasChild("module"))
|
|
module = n->getStringValue("module");
|
|
if (n->getBoolValue("enabled",true))
|
|
{
|
|
// allow multiple files to be specified within a single
|
|
// Nasal module tag
|
|
int j = 0;
|
|
SGPropertyNode *fn;
|
|
bool file_specified = false;
|
|
bool ok=true;
|
|
while((fn = n->getChild("file", j)) != NULL) {
|
|
file_specified = true;
|
|
const char* file = fn->getStringValue();
|
|
SGPath p(file);
|
|
if (!p.isAbsolute() || !p.exists())
|
|
{
|
|
p = globals->resolve_maybe_aircraft_path(file);
|
|
if (p.isNull())
|
|
{
|
|
SG_LOG(SG_NASAL, SG_ALERT, "Cannot find Nasal script '" <<
|
|
file << "' for module '" << module << "'.");
|
|
}
|
|
}
|
|
ok &= p.isNull() ? false : loadModule(p, module);
|
|
j++;
|
|
}
|
|
|
|
const char* src = n->getStringValue("script");
|
|
if(!n->hasChild("script")) src = 0; // Hrm...
|
|
if(src)
|
|
createModule(module, n->getPath().c_str(), src, strlen(src));
|
|
|
|
if(!file_specified && !src)
|
|
{
|
|
// module no longer exists - clear the archived "enable" flag
|
|
n->setAttribute(SGPropertyNode::USERARCHIVE,false);
|
|
SGPropertyNode* node = n->getChild("enabled",0,false);
|
|
if (node)
|
|
node->setAttribute(SGPropertyNode::USERARCHIVE,false);
|
|
|
|
SG_LOG(SG_NASAL, SG_ALERT, "Nasal error: " <<
|
|
"no <file> or <script> defined in " <<
|
|
"/nasal/" << module);
|
|
}
|
|
else
|
|
is_loaded = ok;
|
|
}
|
|
else
|
|
{
|
|
SGPropertyNode* enable = n->getChild("enabled");
|
|
if (enable)
|
|
{
|
|
FGNasalModuleListener* listener = new FGNasalModuleListener(n);
|
|
enable->addChangeListener(listener, false);
|
|
}
|
|
}
|
|
SGPropertyNode* loaded = n->getChild("loaded",0,true);
|
|
loaded->setAttribute(SGPropertyNode::PRESERVE,true);
|
|
loaded->setBoolValue(is_loaded);
|
|
}
|
|
|
|
// Logs a runtime error, with stack trace, to the FlightGear log stream
|
|
void FGNasalSys::logError(naContext context)
|
|
{
|
|
SG_LOG(SG_NASAL, SG_ALERT,
|
|
"Nasal runtime error: " << naGetError(context));
|
|
SG_LOG(SG_NASAL, SG_ALERT,
|
|
" at " << naStr_data(naGetSourceFile(context, 0)) <<
|
|
", line " << naGetLine(context, 0));
|
|
for(int i=1; i<naStackDepth(context); i++)
|
|
SG_LOG(SG_NASAL, SG_ALERT,
|
|
" called from: " << naStr_data(naGetSourceFile(context, i)) <<
|
|
", line " << naGetLine(context, i));
|
|
}
|
|
|
|
// Reads a script file, executes it, and places the resulting
|
|
// namespace into the global namespace under the specified module
|
|
// name.
|
|
bool FGNasalSys::loadModule(SGPath file, const char* module)
|
|
{
|
|
int len = 0;
|
|
char* buf = readfile(file.c_str(), &len);
|
|
if(!buf) {
|
|
SG_LOG(SG_NASAL, SG_ALERT,
|
|
"Nasal error: could not read script file " << file.c_str()
|
|
<< " into module " << module);
|
|
return false;
|
|
}
|
|
|
|
bool ok = createModule(module, file.c_str(), buf, len);
|
|
delete[] buf;
|
|
return ok;
|
|
}
|
|
|
|
// Parse and run. Save the local variables namespace, as it will
|
|
// become a sub-object of globals. The optional "arg" argument can be
|
|
// used to pass an associated property node to the module, which can then
|
|
// be accessed via cmdarg(). (This is, for example, used by XML dialogs.)
|
|
bool FGNasalSys::createModule(const char* moduleName, const char* fileName,
|
|
const char* src, int len,
|
|
const SGPropertyNode* cmdarg,
|
|
int argc, naRef* args)
|
|
{
|
|
naRef code = parse(fileName, src, len);
|
|
if(naIsNil(code))
|
|
return false;
|
|
|
|
// See if we already have a module hash to use. This allows the
|
|
// user to, for example, add functions to the built-in math
|
|
// module. Make a new one if necessary.
|
|
naRef locals;
|
|
naRef modname = naNewString(_context);
|
|
naStr_fromdata(modname, (char*)moduleName, strlen(moduleName));
|
|
if(!naHash_get(_globals, modname, &locals))
|
|
locals = naNewHash(_context);
|
|
|
|
_cmdArg = (SGPropertyNode*)cmdarg;
|
|
|
|
call(code, argc, args, locals);
|
|
hashset(_globals, moduleName, locals);
|
|
return true;
|
|
}
|
|
|
|
void FGNasalSys::deleteModule(const char* moduleName)
|
|
{
|
|
naRef modname = naNewString(_context);
|
|
naStr_fromdata(modname, (char*)moduleName, strlen(moduleName));
|
|
naHash_delete(_globals, modname);
|
|
}
|
|
|
|
naRef FGNasalSys::parse(const char* filename, const char* buf, int len)
|
|
{
|
|
int errLine = -1;
|
|
naRef srcfile = naNewString(_context);
|
|
naStr_fromdata(srcfile, (char*)filename, strlen(filename));
|
|
naRef code = naParseCode(_context, srcfile, 1, (char*)buf, len, &errLine);
|
|
if(naIsNil(code)) {
|
|
SG_LOG(SG_NASAL, SG_ALERT,
|
|
"Nasal parse error: " << naGetError(_context) <<
|
|
" in "<< filename <<", line " << errLine);
|
|
return naNil();
|
|
}
|
|
|
|
// Bind to the global namespace before returning
|
|
return naBindFunction(_context, code, _globals);
|
|
}
|
|
|
|
bool FGNasalSys::handleCommand(const SGPropertyNode* arg)
|
|
{
|
|
const char* nasal = arg->getStringValue("script");
|
|
const char* moduleName = arg->getStringValue("module");
|
|
naRef code = parse(arg->getPath(true).c_str(), nasal, strlen(nasal));
|
|
if(naIsNil(code)) return false;
|
|
|
|
// Commands can be run "in" a module. Make sure that module
|
|
// exists, and set it up as the local variables hash for the
|
|
// command.
|
|
naRef locals = naNil();
|
|
if(moduleName[0]) {
|
|
naRef modname = naNewString(_context);
|
|
naStr_fromdata(modname, (char*)moduleName, strlen(moduleName));
|
|
if(!naHash_get(_globals, modname, &locals)) {
|
|
locals = naNewHash(_context);
|
|
naHash_set(_globals, modname, locals);
|
|
}
|
|
}
|
|
|
|
// Cache this command's argument for inspection via cmdarg(). For
|
|
// performance reasons, we won't bother with it if the invoked
|
|
// code doesn't need it.
|
|
_cmdArg = (SGPropertyNode*)arg;
|
|
|
|
call(code, 0, 0, locals);
|
|
return true;
|
|
}
|
|
|
|
// settimer(func, dt, simtime) extension function. The first argument
|
|
// is a Nasal function to call, the second is a delta time (from now),
|
|
// in seconds. The third, if present, is a boolean value indicating
|
|
// that "real world" time (rather than simulator time) is to be used.
|
|
//
|
|
// Implementation note: the FGTimer objects don't live inside the
|
|
// garbage collector, so the Nasal handler functions have to be
|
|
// "saved" somehow lest they be inadvertently cleaned. In this case,
|
|
// they are inserted into a globals.__gcsave hash and removed on
|
|
// expiration.
|
|
void FGNasalSys::setTimer(naContext c, int argc, naRef* args)
|
|
{
|
|
// Extract the handler, delta, and simtime arguments:
|
|
naRef handler = argc > 0 ? args[0] : naNil();
|
|
if(!(naIsCode(handler) || naIsCCode(handler) || naIsFunc(handler))) {
|
|
naRuntimeError(c, "settimer() with invalid function argument");
|
|
return;
|
|
}
|
|
|
|
naRef delta = argc > 1 ? args[1] : naNil();
|
|
if(naIsNil(delta)) {
|
|
naRuntimeError(c, "settimer() with invalid time argument");
|
|
return;
|
|
}
|
|
|
|
bool simtime = (argc > 2 && naTrue(args[2])) ? false : true;
|
|
|
|
// Generate and register a C++ timer handler
|
|
NasalTimer* t = new NasalTimer;
|
|
t->handler = handler;
|
|
t->gcKey = gcSave(handler);
|
|
t->nasal = this;
|
|
|
|
globals->get_event_mgr()->addEvent("NasalTimer",
|
|
t, &NasalTimer::timerExpired,
|
|
delta.num, simtime);
|
|
}
|
|
|
|
void FGNasalSys::handleTimer(NasalTimer* t)
|
|
{
|
|
call(t->handler, 0, 0, naNil());
|
|
gcRelease(t->gcKey);
|
|
}
|
|
|
|
int FGNasalSys::gcSave(naRef r)
|
|
{
|
|
int key = _nextGCKey++;
|
|
naHash_set(_gcHash, naNum(key), r);
|
|
return key;
|
|
}
|
|
|
|
void FGNasalSys::gcRelease(int key)
|
|
{
|
|
naHash_delete(_gcHash, naNum(key));
|
|
}
|
|
|
|
void FGNasalSys::NasalTimer::timerExpired()
|
|
{
|
|
nasal->handleTimer(this);
|
|
delete this;
|
|
}
|
|
|
|
int FGNasalSys::_listenerId = 0;
|
|
|
|
// setlistener(<property>, <func> [, <initial=0> [, <persistent=1>]])
|
|
// Attaches a callback function to a property (specified as a global
|
|
// property path string or a SGPropertyNode_ptr* ghost). If the third,
|
|
// optional argument (default=0) is set to 1, then the function is also
|
|
// called initially. If the fourth, optional argument is set to 0, then the
|
|
// function is only called when the property node value actually changes.
|
|
// Otherwise it's called independent of the value whenever the node is
|
|
// written to (default). The setlistener() function returns a unique
|
|
// id number, which is to be used as argument to the removelistener()
|
|
// function.
|
|
naRef FGNasalSys::setListener(naContext c, int argc, naRef* args)
|
|
{
|
|
SGPropertyNode_ptr node;
|
|
naRef prop = argc > 0 ? args[0] : naNil();
|
|
if(naIsString(prop)) node = fgGetNode(naStr_data(prop), true);
|
|
else if(naIsGhost(prop)) node = *(SGPropertyNode_ptr*)naGhost_ptr(prop);
|
|
else {
|
|
naRuntimeError(c, "setlistener() with invalid property argument");
|
|
return naNil();
|
|
}
|
|
|
|
if(node->isTied())
|
|
SG_LOG(SG_NASAL, SG_DEBUG, "Attaching listener to tied property " <<
|
|
node->getPath());
|
|
|
|
naRef code = argc > 1 ? args[1] : naNil();
|
|
if(!(naIsCode(code) || naIsCCode(code) || naIsFunc(code))) {
|
|
naRuntimeError(c, "setlistener() with invalid function argument");
|
|
return naNil();
|
|
}
|
|
|
|
int init = argc > 2 && naIsNum(args[2]) ? int(args[2].num) : 0;
|
|
int type = argc > 3 && naIsNum(args[3]) ? int(args[3].num) : 1;
|
|
FGNasalListener *nl = new FGNasalListener(node, code, this,
|
|
gcSave(code), _listenerId, init, type);
|
|
|
|
node->addChangeListener(nl, init != 0);
|
|
|
|
_listener[_listenerId] = nl;
|
|
return naNum(_listenerId++);
|
|
}
|
|
|
|
// removelistener(int) extension function. The argument is the id of
|
|
// a listener as returned by the setlistener() function.
|
|
naRef FGNasalSys::removeListener(naContext c, int argc, naRef* args)
|
|
{
|
|
naRef id = argc > 0 ? args[0] : naNil();
|
|
map<int, FGNasalListener *>::iterator it = _listener.find(int(id.num));
|
|
|
|
if(!naIsNum(id) || it == _listener.end() || it->second->_dead) {
|
|
naRuntimeError(c, "removelistener() with invalid listener id");
|
|
return naNil();
|
|
}
|
|
|
|
it->second->_dead = true;
|
|
_dead_listener.push_back(it->second);
|
|
_listener.erase(it);
|
|
return naNum(_listener.size());
|
|
}
|
|
|
|
|
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|
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// FGNasalListener class.
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FGNasalListener::FGNasalListener(SGPropertyNode *node, naRef code,
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FGNasalSys* nasal, int key, int id,
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int init, int type) :
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_node(node),
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_code(code),
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_gcKey(key),
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_id(id),
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_nas(nasal),
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_init(init),
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_type(type),
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_active(0),
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_dead(false),
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_last_int(0L),
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_last_float(0.0)
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{
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if(_type == 0 && !_init)
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changed(node);
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}
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FGNasalListener::~FGNasalListener()
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{
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_node->removeChangeListener(this);
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_nas->gcRelease(_gcKey);
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}
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void FGNasalListener::call(SGPropertyNode* which, naRef mode)
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{
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if(_active || _dead) return;
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SG_LOG(SG_NASAL, SG_DEBUG, "trigger listener #" << _id);
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_active++;
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naRef arg[4];
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arg[0] = _nas->propNodeGhost(which);
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arg[1] = _nas->propNodeGhost(_node);
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arg[2] = mode; // value changed, child added/removed
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arg[3] = naNum(_node != which); // child event?
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_nas->call(_code, 4, arg, naNil());
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_active--;
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}
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void FGNasalListener::valueChanged(SGPropertyNode* node)
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{
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if(_type < 2 && node != _node) return; // skip child events
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if(_type > 0 || changed(_node) || _init)
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call(node, naNum(0));
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_init = 0;
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}
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void FGNasalListener::childAdded(SGPropertyNode*, SGPropertyNode* child)
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{
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if(_type == 2) call(child, naNum(1));
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}
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void FGNasalListener::childRemoved(SGPropertyNode*, SGPropertyNode* child)
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{
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if(_type == 2) call(child, naNum(-1));
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}
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bool FGNasalListener::changed(SGPropertyNode* node)
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{
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using namespace simgear;
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props::Type type = node->getType();
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if(type == props::NONE) return false;
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if(type == props::UNSPECIFIED) return true;
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bool result;
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switch(type) {
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case props::BOOL:
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case props::INT:
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case props::LONG:
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{
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long l = node->getLongValue();
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result = l != _last_int;
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_last_int = l;
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return result;
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}
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case props::FLOAT:
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case props::DOUBLE:
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{
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double d = node->getDoubleValue();
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result = d != _last_float;
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_last_float = d;
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return result;
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}
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default:
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{
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string s = node->getStringValue();
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result = s != _last_string;
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_last_string = s;
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return result;
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}
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}
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}
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// FGNasalModelData class. If sgLoad3DModel() is called with a pointer to
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// such a class, then it lets modelLoaded() run the <load> script, and the
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// destructor the <unload> script. The latter happens when the model branch
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// is removed from the scene graph.
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unsigned int FGNasalModelData::_module_id = 0;
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void FGNasalModelData::load()
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{
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std::stringstream m;
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m << "__model" << _module_id++;
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_module = m.str();
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SG_LOG(SG_NASAL, SG_DEBUG, "Loading nasal module " << _module.c_str());
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const char *s = _load ? _load->getStringValue() : "";
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naRef arg[2];
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arg[0] = nasalSys->propNodeGhost(_root);
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arg[1] = nasalSys->propNodeGhost(_prop);
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nasalSys->createModule(_module.c_str(), _path.c_str(), s, strlen(s),
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_root, 2, arg);
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}
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void FGNasalModelData::unload()
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{
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if (_module.empty())
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return;
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if(!nasalSys) {
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SG_LOG(SG_NASAL, SG_WARN, "Trying to run an <unload> script "
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"without Nasal subsystem present.");
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return;
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}
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SG_LOG(SG_NASAL, SG_DEBUG, "Unloading nasal module " << _module.c_str());
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if (_unload)
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{
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const char *s = _unload->getStringValue();
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nasalSys->createModule(_module.c_str(), _module.c_str(), s, strlen(s), _root);
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}
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nasalSys->deleteModule(_module.c_str());
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}
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void FGNasalModelDataProxy::modelLoaded(const string& path, SGPropertyNode *prop,
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osg::Node *)
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{
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if(!nasalSys) {
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SG_LOG(SG_NASAL, SG_WARN, "Trying to run a <load> script "
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"without Nasal subsystem present.");
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return;
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}
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if(!prop)
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return;
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SGPropertyNode *nasal = prop->getNode("nasal");
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if(!nasal)
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return;
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SGPropertyNode* load = nasal->getNode("load");
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SGPropertyNode* unload = nasal->getNode("unload");
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if ((!load) && (!unload))
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return;
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_data = new FGNasalModelData(_root, path, prop, load, unload);
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// register Nasal module to be created and loaded in the main thread.
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nasalSys->registerToLoad(_data);
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}
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FGNasalModelDataProxy::~FGNasalModelDataProxy()
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{
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// when necessary, register Nasal module to be destroyed/unloaded
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// in the main thread.
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if ((_data.valid())&&(nasalSys))
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nasalSys->registerToUnload(_data);
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}
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// NasalXMLVisitor class: handles EasyXML visitor callback for parsexml()
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//
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NasalXMLVisitor::NasalXMLVisitor(naContext c, int argc, naRef* args) :
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_c(naSubContext(c)),
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_start_element(argc > 1 ? args[1] : naNil()),
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_end_element(argc > 2 ? args[2] : naNil()),
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_data(argc > 3 ? args[3] : naNil()),
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_pi(argc > 4 ? args[4] : naNil())
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{
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}
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void NasalXMLVisitor::startElement(const char* tag, const XMLAttributes& a)
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{
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if(naIsNil(_start_element)) return;
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naRef attr = naNewHash(_c);
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for(int i=0; i<a.size(); i++) {
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naRef name = make_string(a.getName(i));
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naRef value = make_string(a.getValue(i));
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naHash_set(attr, name, value);
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}
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call(_start_element, 2, make_string(tag), attr);
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}
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void NasalXMLVisitor::endElement(const char* tag)
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{
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if(!naIsNil(_end_element)) call(_end_element, 1, make_string(tag));
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}
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void NasalXMLVisitor::data(const char* str, int len)
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{
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if(!naIsNil(_data)) call(_data, 1, make_string(str, len));
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}
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void NasalXMLVisitor::pi(const char* target, const char* data)
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{
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if(!naIsNil(_pi)) call(_pi, 2, make_string(target), make_string(data));
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}
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void NasalXMLVisitor::call(naRef func, int num, naRef a, naRef b)
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{
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naRef args[2];
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args[0] = a;
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args[1] = b;
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naCall(_c, func, num, args, naNil(), naNil());
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if(naGetError(_c))
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naRethrowError(_c);
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}
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naRef NasalXMLVisitor::make_string(const char* s, int n)
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{
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return naStr_fromdata(naNewString(_c), const_cast<char *>(s),
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n < 0 ? strlen(s) : n);
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}
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