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import java.util.*;
import java.util.zip.*;
import java.util.List;
import java.util.regex.*;
import java.util.concurrent.*;
import java.util.concurrent.atomic.*;
import java.util.concurrent.locks.*;
import javax.swing.*;
import javax.swing.event.*;
import javax.swing.text.*;
import javax.swing.table.*;
import java.io.*;
import java.net.*;
import java.lang.reflect.*;
import java.lang.ref.*;
import java.lang.management.*;
import java.security.*;
import java.security.spec.*;
import java.awt.*;
import java.awt.event.*;
import java.awt.image.*;
import javax.imageio.*;
import java.math.*;
public class main {
public static void main(final String[] args) throws Exception {
Pair p = splitConceptsFromStatements(loadStringVar("#1008586", "bla"));
useConceptsAndStatements(p.a, p.b);
loadMyTruthFrom("#1008586");
//printConcepts(list(MyTruth));
aiStandardHandlers();
printLispStatements();
}
static void useConceptsAndStatements(String concepts, String statements) {
useConcepts(concepts);
useFacts(statements);
}
static boolean myTruth_verbose, myTruth_persistent = true;
static void loadMyTruthFrom(String dbProgramID) {
loadConceptsFrom(dbProgramID);
loadMyTruth2();
}
static void loadMyTruth() {
if (myTruth_persistent) db();
loadMyTruth2();
}
static void loadMyTruth2() {
tt();
englishToConceptLanguage_hygienicParsing = true;
for (MyTruth t : list(MyTruth.class))
lispAddLocalTruth(t.globalID, t.term);
}
static void myTruth(String bla) {
Pair p = splitConceptsFromStatements(bla);
myTruth(p.a, p.b);
}
static void myTruth(String concepts, String statements) {
useConceptsAndStatements(concepts, statements);
loadMyTruth();
aiStandardHandlers();
printLispStatements();
}
static void fromUser(String head, Object... args) { fromUser(lisp(head, args)); }
static void fromUser(Lisp l) { emit(l, "user"); }
static void emit(Lisp l) { emit(l, ""); }
static void emit(Lisp l, String madeByRule) {
ThoughtSpace ts = thoughtSpace();
if (ts != null) {
ts.addStatement(l);
return;
}
LispStatement s = lispAddLocalTruth(l);
if (s != null) {
new MyTruth(s.globalID, l, madeByRule);
if (myTruth_verbose)
print("emit> " + l);
}
}
static void unemit(Lisp l) {
ThoughtSpace ts = thoughtSpace();
if (ts != null) {
//print("Unemitting from " + ts.globalID + ": " + l);
ts.removeStatement(l);
return;
}
LispStatement s = findLispStatement(l);
if (s == null) return;
removeLispStatement(s);
deleteConcepts(MyTruth.class, "globalID" , s.globalID);
}
static void unemit(String statementID) {
ThoughtSpace ts = thoughtSpace();
if (ts != null) {
ts.removeStatement(statementID);
return;
}
LispStatement s = getLispStatement(statementID);
if (s == null) return;
removeLispStatement(s);
deleteConcepts(MyTruth.class, "globalID" , s.globalID);
}
static Map _registerThread_threads = synchroMap(new WeakHashMap());
static Thread _registerThread(Thread t) {
_registerThread_threads.put(t, true);
return t;
}
static void aiStandardHandlers() {
alwaysRules_standardHandlers();
lispStandardEvaluators();
lispStandardExecutors();
}
static Pair splitConceptsFromStatements(String text) {
List a = new ArrayList();
List b = new ArrayList();
for (String s : toLinesFullTrim_java(text)) {
List tok = javaTokC(s);
if (possibleGlobalID(get(tok, 0)) && eq(get(tok, 1), "-"))
a.add(s);
else
b.add(s);
}
return pair(joinLines(a), joinLines(b));
}
static void printLispStatements() {
printNumberedLines(map(new Object() { Object get(LispStatement s) { try { return
"[" + s.globalID + "] " + s.term
; } catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "\"[\" + s.globalID + \"] \" + s.term"; }}, values(lispStatements_cached())));
print();
}
static String loadStringVar(String progIDOrSrc, String varName) {
return (String) loadVariableDefinition(progIDOrSrc, varName);
}
static void tt() {
typeWriterConsole();
}
static Map synchroMap() {
return synchroHashMap();
}
static Map synchroMap(Map map) {
return Collections.synchronizedMap(map);
}
static List printNumberedLines(List l) {
printNumberedLines((Collection ) l);
return l;
}
static void printNumberedLines(Map map) {
printNumberedLines(mapToLines(map));
}
static Collection printNumberedLines(Collection l) {
int i = 0;
if (l != null) for (A a : l) print((++i) + ". " + str(a));
return l;
}
static void printNumberedLines(Object[] l) {
printNumberedLines(asList(l));
}
static void printNumberedLines(Object o) {
printNumberedLines(lines(str(o)));
}
// return new statement or null if it existed
static LispStatement lispAddLocalTruth(Lisp l) {
if (lispTrue(l)) return null;
return lispAddLocalTruth_noCheck(aGlobalID(), l);
}
static LispStatement lispAddLocalTruth(String id, Lisp l) {
if (lispTrue(l)) return null;
return lispAddLocalTruth_noCheck(id, l);
}
static LispStatement lispAddLocalTruth_noCheck(String id, Lisp l) {
LispStatement s = new LispStatement(id, l);
lispStatements_cached().put(id, s);
lispChange();
return s;
}
static Collection values(Map map) {
return map == null ? emptyList() : map.values();
}
static String joinLines(List lines) {
return fromLines(lines);
}
static String joinLines(String glue, String text) {
return join(glue, toLines(text));
}
static LispStatement findLispStatement(Lisp l) {
for (LispStatement s : lispStatementsByHead(l.head))
if (eq(s.term, l)) return s;
return null;
}
static List toLinesFullTrim_java(String text) {
return toLinesFullTrim(joinLines(map("javaDropComments", toLinesFullTrim(text))));
}
static void lispStandardEvaluators() {
// True
addLispEvaluator("zivsiiacmvqrolto", main.f1_const(Boolean.TRUE));
// Not (X)
addLispEvaluator("wynynoujiakixjus", new F1() {
Boolean get(Lisp l) {
return !isTrue(callLispEvaluator(l.get(0)));
}
});
// X <> Y
addLispEvaluator("buahjsodljsaxvaq", new F1() {
Boolean get(Lisp l) {
return l.size() == 2 && neq(l.get(0), l.get(1));
}
});
// X > Y
addLispEvaluator("wdbphzfoxwlrhdyl", new F1() {
Boolean get(Lisp l) {
return l.size() == 2 && eq(compareIfNotNull(lispToBigInt(l.get(0)), lispToBigInt(l.get(1))), 1);
}
});
// I don't know if (X)
addLispEvaluator("mzdvauejerzefagk", new F1() {
Boolean get(Lisp l) {
return l.size() == 1 && notKnownIf(l.get(0));
}
});
// There is no statement with operator X.
addLispEvaluator("zhoulgsatpswstfa", new F1() {
Boolean get(Lisp l) {
return l.size() == 1 && !hasTruthWithHead(l.raw(0));
}
});
// There is no answer to (X).
addLispEvaluator("xikyminwmeahxiws", new F1() {
Boolean get(Lisp l) {
boolean ok = l.size() == 1 && null == lispForward("pxavyqesoqyqbipb", l.get(0));
print("Checking for answer to " + l.get(0) + " => " + ok);
return ok;
}
});
// :- rules
for (final Lisp rule : lispTruth2("sicrogpdrtkiptun"))
addLispEvaluator(rule.raw(0), new F1() {
Boolean get(Lisp l) {
return l.isLeaf() && matchCondition_simple(rule.get(1));
}
});
}
// get purpose 1: access a list/array (safer version of x.get(y))
static A get(List l, int idx) {
return l != null && idx >= 0 && idx < l(l) ? l.get(idx) : null;
}
static A get(A[] l, int idx) {
return idx >= 0 && idx < l(l) ? l[idx] : null;
}
// default to false
static boolean get(boolean[] l, int idx) {
return idx >= 0 && idx < l(l) ? l[idx] : false;
}
// get purpose 2: access a field by reflection or a map
static Object get(Object o, String field) {
try {
if (o instanceof Class) return get((Class) o, field);
if (o instanceof Map)
return ((Map) o).get(field);
Field f = getOpt_findField(o.getClass(), field);
if (f != null) {
f.setAccessible(true);
return f.get(o);
}
if (o instanceof DynamicObject)
return ((DynamicObject) o).fieldValues.get(field);
} catch (Exception e) {
throw asRuntimeException(e);
}
throw new RuntimeException("Field '" + field + "' not found in " + o.getClass().getName());
}
static Object get_raw(Object o, String field) {
try {
Field f = get_findField(o.getClass(), field);
f.setAccessible(true);
return f.get(o);
} catch (Exception e) {
throw new RuntimeException(e);
}
}
static Object get(Class c, String field) {
try {
Field f = get_findStaticField(c, field);
f.setAccessible(true);
return f.get(null);
} catch (Exception e) {
throw new RuntimeException(e);
}
}
static Field get_findStaticField(Class> c, String field) {
Class _c = c;
do {
for (Field f : _c.getDeclaredFields())
if (f.getName().equals(field) && (f.getModifiers() & Modifier.STATIC) != 0)
return f;
_c = _c.getSuperclass();
} while (_c != null);
throw new RuntimeException("Static field '" + field + "' not found in " + c.getName());
}
static Field get_findField(Class> c, String field) {
Class _c = c;
do {
for (Field f : _c.getDeclaredFields())
if (f.getName().equals(field))
return f;
_c = _c.getSuperclass();
} while (_c != null);
throw new RuntimeException("Field '" + field + "' not found in " + c.getName());
}
static void lispStandardExecutors() {
// (X)
lispEvaluator("mcoswmplpqlieruo", new F1() {
Boolean get(Lisp l) {
return isTrue(callLispEvaluator(l.get(0)));
}
});
// Assert (X).
lispExecutor("rzryqdohxtczvzgn", new Object() { void get(Lisp l) { try {
l = l.get(0);
if (!isTrue(callLispEvaluator(l)))
throw fail("Not true: " + l);
} catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "l = l.get(0);\r\n if (!isTrue(callLispEvaluator(l)))\r\n fail(\"Not true: \" +..."; }});
// Make an empty thought space X.
lispExecutor("jamvyfwypzbptvle", new Object() { void get(Lisp l) { try {
String name = l.raw(0);
addThoughtSpace(new ThoughtSpace(name));
} catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "S name = l.raw(0);\r\n addThoughtSpace(new ThoughtSpace(name));"; }});
// X is empty (thought space)
lispEvaluator("yvmxaacduvvomgqi", new F1() {
Boolean get(Lisp l) {
return isEmpty(getThoughtSpace(l.raw(0)).statements);
}
});
// X contains Y (thought space)
lispEvaluator("unfiqixlxwqnomcs", new F1() {
Boolean get(Lisp l) {
return getThoughtSpace(l.raw(0)).containsStatement(l.get(1));
}
});
// Add (X) to Y. (thought space)
lispExecutor("matnhiruhwprdiir", new Object() { void get(Lisp l) { try {
getThoughtSpace(l.raw(1)).addStatement(l.get(0));
} catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "getThoughtSpace(l.raw(1)).addStatement(l.get(0));"; }});
// Apply always rules in X. (thought space)
lispExecutor("bcypplfticghlkxy", new Object() { void get(Lisp l) { try {
thoughtSpace(getThoughtSpace(l.raw(0)));
try {
applyAlwaysRules(100);
//print("After always rules: " + struct(keys(thoughtSpace().statementsIndex)));
} finally {
thoughtSpace(null);
}
} catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "thoughtSpace(getThoughtSpace(l.raw(0)));\r\n try {\r\n applyAlwaysRules(100)..."; }});
// No X where Y
lispEvaluator(ll("bblhpfgfvcyjfwmd", "kxlzhendchftgjqh"), new F1() {
Boolean get(Lisp l) {
String var = l.raw(0), newVar = aGlobalID();
Lisp term = l.get(1);
Lisp newTerm = lispReplaceVars(term, litmap(var, lisp(newVar)));
//print("Evaluating negation: " + newVar + " - " + newTerm);
Map m = new HashMap();
m.put(newVar, null);
m = matchCondition_first(newTerm, m);
//print(" Result: " + struct(m));
return m == null;
}
});
}
static Object loadVariableDefinition(String varName) {
return loadVariableDefinition(getProgramID(), varName);
}
// currently only works with string lists ("= litlist(...)")
// and strings.
static Object loadVariableDefinition(String progIDOrSrc, String varName) {
if (isSnippetID(progIDOrSrc))
progIDOrSrc = loadSnippet(progIDOrSrc);
List tok = javaTok(progIDOrSrc);
int i = findCodeTokens(tok, varName, "=");
if (i < 0) return null;
i += 4;
if (isQuoted(tok.get(i)))
return unquote(tok.get(i));
if (eq(get(tok, i), "litlist") && eq(get(tok, i+2), "(")) {
int opening = i+2;
int closing = findEndOfBracketPart(tok, opening)-1;
List l = new ArrayList();
for (i = opening+2; i < closing; i += 4)
l.add(unquote(tok.get(i)));
return l;
}
throw fail("Unknown variable type or no definition in source: " + shorten(progIDOrSrc, 100) + "/" + varName);
}
static List map(Iterable l, Object f) {
return map(f, l);
}
static List map(Object f, Iterable l) {
List x = new ArrayList();
Object mc = mc();
for (Object o : unnull(l))
x.add(callF(f, o));
return x;
}
static List map(Object f, Object[] l) {
return map(f, asList(l));
}
static List map(Object f, Map map) {
return map(map, f);
}
static List map(Map map, Object f) {
List x = new ArrayList();
for (Object _e : map.entrySet()) {
Map.Entry e = (Map.Entry) _e;
x.add(callF(f, e.getKey(), e.getValue()));
}
return x;
}
static WeakAssoc, Map> lispStatements_cache = new WeakAssoc("statementsToLisp");
static Map lispStatements_global;
static Map lispStatements_cached() {
ThoughtSpace ts = thoughtSpace();
if (ts != null) return ts.statements;
if (lispStatements_global != null) return lispStatements_global;
return lispStatements_cache.get(loadTruth_cached());
}
static List javaTokC(String s) {
int l = s.length();
ArrayList tok = new ArrayList();
int i = 0;
while (i < l) {
int j = i;
char c, d;
// scan for whitespace
while (j < l) {
c = s.charAt(j);
d = j+1 >= l ? '\0' : s.charAt(j+1);
if (c == ' ' || c == '\t' || c == '\r' || c == '\n')
++j;
else if (c == '/' && d == '*') {
do ++j; while (j < l && !s.substring(j, Math.min(j+2, l)).equals("*/"));
j = Math.min(j+2, l);
} else if (c == '/' && d == '/') {
do ++j; while (j < l && "\r\n".indexOf(s.charAt(j)) < 0);
} else
break;
}
i = j;
if (i >= l) break;
c = s.charAt(i);
d = i+1 >= l ? '\0' : s.charAt(i+1);
// scan for non-whitespace
if (c == '\'' || c == '"') {
char opener = c;
++j;
while (j < l) {
if (s.charAt(j) == opener || s.charAt(j) == '\n') { // end at \n to not propagate unclosed string literal errors
++j;
break;
} else if (s.charAt(j) == '\\' && j+1 < l)
j += 2;
else
++j;
}
} else if (Character.isJavaIdentifierStart(c))
do ++j; while (j < l && (Character.isJavaIdentifierPart(s.charAt(j)) || "'".indexOf(s.charAt(j)) >= 0)); // for stuff like "don't"
else if (Character.isDigit(c)) {
do ++j; while (j < l && Character.isDigit(s.charAt(j)));
if (j < l && s.charAt(j) == 'L') ++j; // Long constants like 1L
} else if (c == '[' && d == '[') {
do ++j; while (j+1 < l && !s.substring(j, j+2).equals("]]"));
j = Math.min(j+2, l);
} else if (c == '[' && d == '=' && i+2 < l && s.charAt(i+2) == '[') {
do ++j; while (j+2 < l && !s.substring(j, j+3).equals("]=]"));
j = Math.min(j+3, l);
} else
++j;
tok.add(quickSubstring(s, i, j));
i = j;
}
return tok;
}
// make a lisp form
static Lisp lisp(String head, Object... args) {
Lisp l = new Lisp(head);
for (Object o : args)
l.add(o);
return l;
}
static Lisp lisp(String head, Collection args) {
return new Lisp(head, args);
}
static boolean possibleGlobalID(String s) {
return l(s) == 16 && allLowerCaseCharacters(s);
}
static boolean eq(Object a, Object b) {
return a == null ? b == null : a == b || a.equals(b);
}
static Pair pair(A a, B b) {
return new Pair(a, b);
}
static void useConcepts(String concepts) {
useConceptsDump(concepts);
}
static void alwaysRules_standardHandlers() {
// Remove (X)
addAlwaysRuleHandler("chjllkocfhtwcgoj", new Object() { void get(Lisp l) { try {
//print("Remove " + l.get(0) + ", ts=" + thoughtSpace());
unemit(l);
unemit(l.get(0));
} catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "//print(\"Remove \" + l.get(0) + \", ts=\" + thoughtSpace());\r\n unemit(l);\r\n u..."; }});
// Always fully apply X
addAlwaysRuleHandler(ll("anmgnlmdnkjivliq", "anmjmlkwmjbzbiss"), new Object() { void get(Lisp l) { try {
l = l.get(0);
applyRule_all(l, applyAlwaysRules_ruleID());
} catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "l = l.get(0);\r\n applyRule_all(l, applyAlwaysRules_ruleID());"; }});
// Fire once: X - not try to apply once, but actually fire once
addAlwaysRuleHandler("wrqnygxvjvtpyiwc", new Object() { void get(Lisp l) { try {
String ruleID = applyAlwaysRules_ruleID();
//print("Trying to fire " + l.get(0));
if (applyRule_first(l.get(0), ruleID))
unemit(ruleID);
} catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "S ruleID = applyAlwaysRules_ruleID();\r\n //print(\"Trying to fire \" + l.get(0))..."; }});
}
static ThreadLocal thoughtSpace_byThread = new ThreadLocal();
// get for current thread
static ThoughtSpace thoughtSpace() {
return thoughtSpace_byThread.get();
}
// set for current thread
static ThoughtSpace thoughtSpace(ThoughtSpace ts) {
thoughtSpace_byThread.set(ts);
return ts;
}
static volatile StringBuffer local_log = new StringBuffer(); // not redirected
static volatile StringBuffer print_log = local_log; // might be redirected, e.g. to main bot
// in bytes - will cut to half that
static volatile int print_log_max = 1024*1024;
static volatile int local_log_max = 100*1024;
//static int print_maxLineLength = 0; // 0 = unset
static boolean print_silent; // total mute if set
static Object print_byThread_lock = new Object();
static volatile ThreadLocal> print_byThread; // special handling by thread
static void print() {
print("");
}
// slightly overblown signature to return original object...
static A print(A o) {
ping();
if (print_silent) return o;
String s = String.valueOf(o) + "\n";
print_noNewLine(s);
return o;
}
static void print_noNewLine(String s) {
if (print_byThread != null) {
F1 f = print_byThread.get();
if (f != null)
if (isFalse(f.get(s))) return;
}
print_raw(s);
}
static void print_raw(String s) {
s = fixNewLines(s);
// TODO if (print_maxLineLength != 0)
StringBuffer loc = local_log;
StringBuffer buf = print_log;
int loc_max = print_log_max;
if (buf != loc && buf != null) {
print_append(buf, s, print_log_max);
loc_max = local_log_max;
}
if (loc != null)
print_append(loc, s, loc_max);
System.out.print(s);
}
static void print(long l) {
print(String.valueOf(l));
}
static void print(char c) {
print(String.valueOf(c));
}
static void print_append(StringBuffer buf, String s, int max) {
synchronized(buf) {
buf.append(s);
max /= 2;
if (buf.length() > max) try {
int newLength = max/2;
int ofs = buf.length()-newLength;
String newString = buf.substring(ofs);
buf.setLength(0);
buf.append("[...] ").append(newString);
} catch (Exception e) {
buf.setLength(0);
}
}
}
static LispStatement getLispStatement(String statementID) {
return lispStatements_cached().get(statementID);
}
static void useFacts(String facts) {
List statements = linesToCL(facts);
useFacts_cl(statements);
}
// use facts in CL
static void useFacts_cl(List statements) {
ai();
// trueStatements_cached_autoClearInterval = 0;
trueStatements_cached_cache.set(new LinkedHashSet(statements));
loadTruth_cached_cache.set(aiMakeStatements(statements));
}
static void useFacts_cl(String statements) {
useFacts_cl(toLinesFullTrim(statements));
}
static void deleteConcepts(List conceptsOrIDs) {
mainConcepts.deleteConcepts(conceptsOrIDs);
}
static List deleteConcepts(Class c, Object... params) {
List l = findConceptsWhere(c, params);
deleteConcepts(l);
return l;
}
static void removeLispStatement(LispStatement s) {
if (s == null) return;
ThoughtSpace ts = thoughtSpace();
if (ts != null) {
ts.removeStatement(s);
return;
}
lispStatements_cached().remove(s.globalID);
lispChange();
}
static void db() {
conceptsAndBot();
}
static String aGlobalID() {
return randomID(16);
}
static WeakHashMap> callF_cache = new WeakHashMap();
static Object callF(Object f, Object... args) { try {
if (f instanceof String)
return callMC((String) f, args);
if (f instanceof Runnable) {
((Runnable) f).run();
return null;
}
if (f == null) return null;
Class c = f.getClass();
ArrayList methods;
synchronized(callF_cache) {
methods = callF_cache.get(c);
if (methods == null)
methods = callF_makeCache(c);
}
int n = l(methods);
if (n == 0) throw fail("No get method in " + getClassName(c));
if (n == 1) return methods.get(0).invoke(f, args);
for (int i = 0; i < n; i++) {
Method m = methods.get(i);
if (call_checkArgs(m, args, false))
return m.invoke(f, args);
}
throw fail("No matching get method in " + getClassName(c));
} catch (Exception __e) { throw rethrow(__e); } }
// used internally
static ArrayList callF_makeCache(Class c) {
ArrayList l = new ArrayList();
Class _c = c;
do {
for (Method m : _c.getDeclaredMethods())
if (m.getName().equals("get")) {
m.setAccessible(true);
l.add(m);
}
if (!l.isEmpty()) break;
_c = _c.getSuperclass();
} while (_c != null);
callF_cache.put(c, l);
return l;
}
static ArrayList asList(A[] a) {
return new ArrayList (Arrays.asList(a));
}
static ArrayList asList(int[] a) {
ArrayList l = new ArrayList();
for (int i : a) l.add(i);
return l;
}
static ArrayList asList(Iterable s) {
if (s instanceof ArrayList) return (ArrayList) s;
ArrayList l = new ArrayList();
if (s != null)
for (A a : s)
l.add(a);
return l;
}
static ArrayList asList(Enumeration e) {
ArrayList l = new ArrayList();
if (e != null)
while (e.hasMoreElements())
l.add(e.nextElement());
return l;
}
static int shorten_default = 100;
static String shorten(String s) { return shorten(s, shorten_default); }
static String shorten(String s, int max) {
if (s == null) return "";
if (max < 0) return s;
return s.length() <= max ? s : s.substring(0, Math.min(s.length(), max)) + "...";
}
static String shorten(int max, String s) { return shorten(s, max); }
public static String join(String glue, Iterable strings) {
if (strings == null) return "";
StringBuilder buf = new StringBuilder();
Iterator i = strings.iterator();
if (i.hasNext()) {
buf.append(i.next());
while (i.hasNext())
buf.append(glue).append(i.next());
}
return buf.toString();
}
public static String join(String glue, String[] strings) {
return join(glue, Arrays.asList(strings));
}
public static String join(Iterable strings) {
return join("", strings);
}
public static String join(String[] strings) {
return join("", strings);
}
static List findConceptsWhere(Class c, Object... params) {
return filterConcepts(list(c), expandParams(c, params));
}
static List findConceptsWhere(String c, Object... params) {
return filterConcepts(list(c), params);
}
static List findConceptsWhere(Concepts concepts, Class c, Object... params) {
return filterConcepts(concepts.list(c), expandParams(c, params));
}
static List findConceptsWhere(Concepts concepts, String c, Object... params) {
return filterConcepts(concepts.list(c), params);
}
static void typeWriterConsole() {
if (isHeadless()) return;
Font f = typeWriterFont();
consoleFont(f);
consoleInputFont(f);
}
static BigInteger lispToBigInt(Lisp l) { return lispToInt(l); }
static F1 f1_const(final B b) {
return new F1 () {
B get(A a) { return b; }
};
}
// TODO: WeakAssoc from loadTruth_cached()
static Cache> trueStatements_cached_cache = new Cache(new Object() { Object get() { try { return collectTreeSet(loadTruth_cached(), "text") ; } catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "collectTreeSet(loadTruth_cached(), \"text\")"; }});
static Set trueStatements_cached() {
return trueStatements_cached_cache.get();
}
static void trueStatements_clearCache() {
trueStatements_cached_cache.clear();
}
// clear cache if older than x seconds
static void trueStatements_clearCache(double seconds) {
trueStatements_cached_cache.clear(seconds);
}
static void addAlwaysRuleHandler(String head, Object handler) {
applyAlwaysRules_handlers.put(head, handler);
}
static void addAlwaysRuleHandler(List heads, Object handler) {
for (String head : heads)
addAlwaysRuleHandler(head, handler);
}
static void ai() {
aiEnhancements();
}
static Map litmap(Object... x) {
TreeMap map = new TreeMap();
litmap_impl(map, x);
return map;
}
static void litmap_impl(Map map, Object... x) {
for (int i = 0; i < x.length-1; i += 2)
if (x[i+1] != null)
map.put(x[i], x[i+1]);
}
static Lisp lispReplaceVars(Lisp l, Map map) {
if (l.isLeaf()) {
Lisp x = map.get(l.head);
if (x != null) return x;
}
Lisp x = lisp(l.head);
for (Lisp a : l.args)
x.add(lispReplaceVars(a, map));
return x;
}
static String str(Object o) {
return o == null ? "null" : o.toString();
}
static String str(char[] c) {
return new String(c);
}
static RuntimeException fail() {
throw new RuntimeException("fail");
}
static RuntimeException fail(Throwable e) {
throw asRuntimeException(e);
}
static RuntimeException fail(Object msg) {
throw new RuntimeException(String.valueOf(msg));
}
static RuntimeException fail(String msg) {
throw new RuntimeException(unnull(msg));
}
static RuntimeException fail(String msg, Throwable innerException) {
throw new RuntimeException(msg, innerException);
}
static List toLinesFullTrim(String s) {
List l = toLines(s);
for (ListIterator i = l.listIterator(); i.hasNext(); ) {
String line = i.next().trim();
if (line.length() == 0)
i.remove();
else
i.set(line);
}
return l;
}
static List toLinesFullTrim(File f) {
return toLinesFullTrim(loadTextFile(f));
}
static Map> addLispEvaluator_map = new HashMap();
static void addLispEvaluator(String head, F1 evaluator) {
addLispEvaluator_map.put(head, (F1) evaluator);
}
static String quickSubstring(String s, int i, int j) {
if (i == j) return "";
return s.substring(i, j);
}
static List linesToCL(String text) {
return listToCL(linesToCL_prepare(text));
}
static List linesToCL_prepare(String text) {
return toLinesFullTrim_java(text);
}
static String fixNewLines(String s) {
return s.replace("\r\n", "\n").replace("\r", "\n");
}
static List mapToLines(Map map) {
List l = new ArrayList();
for (Object key : keys(map))
l.add(str(key) + " = " + str(map.get(key)));
return l;
}
static String programID;
static String getProgramID() {
return nempty(programID) ? formatSnippetIDOpt(programID) : "?";
}
// TODO: ask JavaX instead
static String getProgramID(Class c) {
String id = (String) getOpt(c, "programID");
if (nempty(id))
return formatSnippetID(id);
return "?";
}
static String getProgramID(Object o) {
return getProgramID(getMainClass(o));
}
static volatile boolean ping_pauseAll;
static int ping_sleep = 100; // poll pauseAll flag every 100
static volatile boolean ping_anyActions;
static Map ping_actions = synchroMap(new WeakHashMap());
// always returns true
static boolean ping() {
if (ping_pauseAll || ping_anyActions) ping_impl();
return true;
}
// returns true when it slept
static boolean ping_impl() { try {
if (ping_pauseAll && !isAWTThread()) {
do
Thread.sleep(ping_sleep);
while (ping_pauseAll);
return true;
}
if (ping_anyActions) {
Object action;
synchronized(mc()) {
action = ping_actions.get(currentThread());
if (action instanceof Runnable)
ping_actions.remove(currentThread());
if (ping_actions.isEmpty()) ping_anyActions = false;
}
if (action instanceof Runnable)
((Runnable) action).run();
else if (eq(action, "cancelled"))
throw fail("Thread cancelled.");
}
return false;
} catch (Exception __e) { throw rethrow(__e); } }
// replacement for class JavaTok
// maybe incomplete, might want to add floating point numbers
// todo also: extended multi-line strings
static int javaTok_n, javaTok_elements;
static boolean javaTok_opt;
static List javaTok(String s) {
return javaTok(s, null);
}
static List javaTok(String s, List existing) {
++javaTok_n;
int nExisting = javaTok_opt && existing != null ? existing.size() : 0;
ArrayList tok = existing != null ? new ArrayList(nExisting) : new ArrayList();
int l = s.length();
int i = 0, n = 0;
while (i < l) {
int j = i;
char c, d;
// scan for whitespace
while (j < l) {
c = s.charAt(j);
d = j+1 >= l ? '\0' : s.charAt(j+1);
if (c == ' ' || c == '\t' || c == '\r' || c == '\n')
++j;
else if (c == '/' && d == '*') {
do ++j; while (j < l && !s.substring(j, Math.min(j+2, l)).equals("*/"));
j = Math.min(j+2, l);
} else if (c == '/' && d == '/') {
do ++j; while (j < l && "\r\n".indexOf(s.charAt(j)) < 0);
} else
break;
}
if (n < nExisting && javaTok_isCopyable(existing.get(n), s, i, j))
tok.add(existing.get(n));
else
tok.add(quickSubstring(s, i, j));
++n;
i = j;
if (i >= l) break;
c = s.charAt(i);
d = i+1 >= l ? '\0' : s.charAt(i+1);
// scan for non-whitespace
if (c == '\'' || c == '"') {
char opener = c;
++j;
while (j < l) {
if (s.charAt(j) == opener /*|| s.charAt(j) == '\n'*/) { // allow multi-line strings
++j;
break;
} else if (s.charAt(j) == '\\' && j+1 < l)
j += 2;
else
++j;
}
} else if (Character.isJavaIdentifierStart(c))
do ++j; while (j < l && (Character.isJavaIdentifierPart(s.charAt(j)) || "'".indexOf(s.charAt(j)) >= 0)); // for stuff like "don't"
else if (Character.isDigit(c)) {
do ++j; while (j < l && Character.isDigit(s.charAt(j)));
if (j < l && s.charAt(j) == 'L') ++j; // Long constants like 1L
} else if (c == '[' && d == '[') {
do ++j; while (j+1 < l && !s.substring(j, j+2).equals("]]"));
j = Math.min(j+2, l);
} else if (c == '[' && d == '=' && i+2 < l && s.charAt(i+2) == '[') {
do ++j; while (j+2 < l && !s.substring(j, j+3).equals("]=]"));
j = Math.min(j+3, l);
} else
++j;
if (n < nExisting && javaTok_isCopyable(existing.get(n), s, i, j))
tok.add(existing.get(n));
else
tok.add(quickSubstring(s, i, j));
++n;
i = j;
}
if ((tok.size() % 2) == 0) tok.add("");
javaTok_elements += tok.size();
return tok;
}
static List javaTok(List tok) {
return javaTok(join(tok), tok);
}
static boolean javaTok_isCopyable(String t, String s, int i, int j) {
return t.length() == j-i
&& s.regionMatches(i, t, 0, j-i); // << could be left out, but that's brave
}
static String unnull(String s) {
return s == null ? "" : s;
}
static List unnull(List l) {
return l == null ? emptyList() : l;
}
static Iterable unnull(Iterable i) {
return i == null ? emptyList() : i;
}
static Object[] unnull(Object[] a) {
return a == null ? new Object[0] : a;
}
static BitSet unnull(BitSet b) {
return b == null ? new BitSet() : b;
}
static List lispStatementsByHead(final String... heads) {
return aiUsing(filter(values(lispStatements_cached()) , new Object() { Object get(LispStatement s) { try { return s.term.is(heads) ; } catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "s.term.is(heads)"; }}));
}
static boolean applyRule_all_debug;
static void applyRule_all(String ruleID) {
// process the rule
Lisp rule = getLispTruth(ruleID);
if (rule == null) { print("Rule not found: " + ruleID); return; }
//print("Applying rule " + ruleID);
if (applyRule_all_debug) print_setPrefixForThread(ruleID + "> ");
try {
applyRule_all(rule, ruleID);
} finally {
if (applyRule_all_debug) print_setPrefixForThread("");
}
}
static void applyRule_all(Lisp rule, String ruleID) {
List conditions = dropLast(rule.args);
Lisp out = last(rule.args);
//for (Lisp cond : conditions) print("Condition: " + cond);
List> results = matchConditions_all(conditions, new HashMap());
if (applyRule_all_debug) {
print("Got " + n(results, "results"));
if (empty(results))
print(" " + n(matchConditions_random(conditions, new HashMap()), "conditions") + " met of " + l(conditions));
}
for (Map matches : results) {
if (applyRule_all_debug) print("Yo! " + struct(matches));
out = lispReplaceVars(out, matches);
if (lispTrue(out)) {
if (applyRule_all_debug) print("Already had: " + out);
} else {
if (applyRule_all_debug) print("Defining: " + lispToEnglish_prettier(out));
emit(out, ruleID);
}
}
}
public static boolean isSnippetID(String s) {
try {
parseSnippetID(s);
return true;
} catch (RuntimeException e) {
return false;
}
}
static long applyAlwaysRules_defaultSteps = 1000;
static void applyAlwaysRules() {
applyAlwaysRules(applyAlwaysRules_defaultSteps);
}
static void applyAlwaysRules(long maxSteps) {
long count = 0, step = 0;
do {
count = lispChangeCount();
applyAlwaysRules_step();
} while (++step < maxSteps && lispChangeCount() != count);
}
static List toLines(File f) {
return toLines(loadTextFile(f));
}
public static List toLines(String s) {
List lines = new ArrayList();
if (s == null) return lines;
int start = 0;
while (true) {
int i = toLines_nextLineBreak(s, start);
if (i < 0) {
if (s.length() > start) lines.add(s.substring(start));
break;
}
lines.add(s.substring(start, i));
if (s.charAt(i) == '\r' && i+1 < s.length() && s.charAt(i+1) == '\n')
i += 2;
else
++i;
start = i;
}
return lines;
}
private static int toLines_nextLineBreak(String s, int start) {
for (int i = start; i < s.length(); i++) {
char c = s.charAt(i);
if (c == '\r' || c == '\n')
return i;
}
return -1;
}
static Map matchCondition_first(Lisp condition, Map m) {
List facts = lispTruth();
Object evaluator = getLispEvaluator(condition.head);
if (evaluator != null)
return isTrue(callF(evaluator, lispReplaceVars(condition, m))) ? m : null;
List> candidates = new ArrayList();
for (Lisp fact : facts) {
Map m2 = cloneMap(m);
if (lispMatchIC_xyzVars_sub(condition, fact, m2))
return m2;
}
return null;
}
static int l(Object[] a) { return a == null ? 0 : a.length; }
static int l(boolean[] a) { return a == null ? 0 : a.length; }
static int l(byte[] a) { return a == null ? 0 : a.length; }
static int l(int[] a) { return a == null ? 0 : a.length; }
static int l(float[] a) { return a == null ? 0 : a.length; }
static int l(char[] a) { return a == null ? 0 : a.length; }
static int l(Collection c) { return c == null ? 0 : c.size(); }
static int l(Map m) { return m == null ? 0 : m.size(); }
static int l(CharSequence s) { return s == null ? 0 : s.length(); } static long l(File f) { return f == null ? 0 : f.length(); }
static int l(Object o) {
return o instanceof String ? l((String) o)
: o instanceof Map ? l((Map) o)
: l((Collection) o); // incomplete
}
static int l(Lisp l) { return l == null ? 0 : l.size(); }
static boolean isTrue(Object o) {
if (o instanceof Boolean)
return ((Boolean) o).booleanValue();
if (o == null) return false;
throw fail(getClassName(o));
}
static Lisp lispForward(String relation, Lisp argument) {
return first(followForwardRelation(relation, argument));
}
static Field getOpt_findField(Class> c, String field) {
Class _c = c;
do {
for (Field f : _c.getDeclaredFields())
if (f.getName().equals(field))
return f;
_c = _c.getSuperclass();
} while (_c != null);
return null;
}
static Integer compareIfNotNull(BigInteger a, BigInteger b) {
return a == null || b == null ? null : a.compareTo(b);
}
static List ll(A... a) {
return litlist(a);
}
// i must point at the opening bracket (any of the 2 types, not type parameters)
// index returned is index of closing bracket + 1
static int findEndOfBracketPart(List cnc, int i) {
int j = i+2, level = 1;
while (j < cnc.size()) {
if (litlist("{", "(").contains(cnc.get(j))) ++level;
else if (litlist("}", ")").contains(cnc.get(j))) --level;
if (level == 0)
return j+1;
++j;
}
return cnc.size();
}
static Cache> loadTruth_cached_cache = new Cache("loadTruth");
static List loadTruth_cached() {
return loadTruth_cached_cache.get();
}
static void loadTruth_clearCache() {
loadTruth_cached_cache.clear();
}
static void loadTruth_clearCache(double seconds) {
loadTruth_cached_cache.clear(seconds);
}
static void useConceptsDump(String concepts) {
List usedConcepts = conceptsFromDump(concepts);
//dumpConcepts2(findAIConcepts(conceptsUsed));
//printAIConcepts(usedConcepts);
setOpt(mc(), "englishToConceptLanguage_concepts_global", usedConcepts);
aiConceptsMap_cached_autoClearInterval = 0;
aiConceptsMap_cached_cache.set(indexByField(usedConcepts, "globalID"));
ai();
}
static RuntimeException asRuntimeException(Throwable t) {
return t instanceof RuntimeException ? (RuntimeException) t : new RuntimeException(t);
}
static Object mc() {
return getMainClass();
}
// supports the usual quotings (', ", variable length double brackets)
static boolean isQuoted(String s) {
if (s.startsWith("'") || s.startsWith("\"")) return true;
if (!s.startsWith("[")) return false;
int i = 1;
while (i < s.length() && s.charAt(i) == '=') ++i;
return i < s.length() && s.charAt(i) == '[';
//return Pattern.compile("^\\[=*\\[").matcher(s).find();
}
static boolean neq(Object a, Object b) {
return !eq(a, b);
}
static int findCodeTokens(List tok, String... tokens) {
return findCodeTokens(tok, 1, false, tokens);
}
static int findCodeTokens(List tok, boolean ignoreCase, String... tokens) {
return findCodeTokens(tok, 1, ignoreCase, tokens);
}
static int findCodeTokens(List tok, int startIdx, boolean ignoreCase, String... tokens) {
return findCodeTokens(tok, startIdx, ignoreCase, tokens, null);
}
static List findCodeTokens_specials = litlist("*", "", "", "", "\\*");
static boolean findCodeTokens_debug;
static int findCodeTokens_indexed, findCodeTokens_unindexed;
static int findCodeTokens_bails, findCodeTokens_nonbails;
static int findCodeTokens(List tok, int startIdx, boolean ignoreCase, String[] tokens, Object condition) {
if (findCodeTokens_debug) {
if (eq(getClassName(tok), "main$IndexedList2"))
findCodeTokens_indexed++;
else
findCodeTokens_unindexed++;
}
// bail out early if first token not found (works great with IndexedList)
if (!findCodeTokens_specials.contains(tokens[0])
&& !tok.contains(tokens[0] /*, startIdx << no signature in List for this, unfortunately */)) {
++findCodeTokens_bails;
return -1;
}
++findCodeTokens_nonbails;
outer: for (int i = startIdx | 1; i+tokens.length*2-2 < tok.size(); i += 2) {
for (int j = 0; j < tokens.length; j++) {
String p = tokens[j], t = tok.get(i+j*2);
boolean match;
if (eq(p, "*")) match = true;
else if (eq(p, "")) match = isQuoted(t);
else if (eq(p, "")) match = isIdentifier(t);
else if (eq(p, "")) match = isInteger(t);
else if (eq(p, "\\*")) match = eq("*", t);
else match = ignoreCase ? eqic(p, t) : eq(p, t);
if (!match)
continue outer;
}
if (condition == null || checkCondition(condition, tok, i-1)) // pass N index
return i;
}
return -1;
}
static String applyAlwaysRules_ruleID() {
return applyAlwaysRules_ruleID.get();
}
static List lispTruth2(String... heads) {
List out = new ArrayList();
for (Lisp l : lispTruthByHead(heads))
if (l.size() == 2) out.add(l);
return out;
}
static List aiMakeStatements(List statements) {
return map(new Object() { Object get(String s) { try {
Statement st = unlisted(Statement.class);
String id = getGlobalIDPrefix(s);
if (id == null) {
st.globalID = aGlobalID();
st.text = s;
} else {
st.globalID = id;
st.text = dropGlobalIDPrefix(s);
}
return st;
} catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "Statement st = unlisted(Statement);\r\n S id = getGlobalIDPrefix(s);\r\n if (i..."; }}, statements);
}
static boolean hasTruthWithHead(String... heads) {
return nempty(lispStatementsByHead(heads));
}
static boolean matchCondition_simple(Lisp condition) {
//print("matchCondition " + condition);
Object evaluator = getLispEvaluator(condition.head);
if (evaluator != null)
return isTrue(callF(evaluator, condition));
return lispTrue(condition);
}
static boolean isFalse(Object o) {
return eq(false, o);
}
// returns true if it fired
static boolean applyRule_first(String ruleID) {
// process the rule
Lisp rule = getLispTruth(ruleID);
if (rule == null) { print("Rule not found: " + ruleID); return false; }
//print("Applying rule " + ruleID);
print_setPrefixForThread(ruleID + "> ");
try {
return applyRule_first(rule, ruleID);
} finally {
print_setPrefixForThread("");
}
}
// ruleID is just as an info parameter to emit()
static boolean applyRule_first(Lisp rule, String ruleID) {
List conditions = dropLast(rule.args);
Lisp out = last(rule.args);
List> results = matchConditions_all(conditions, new HashMap()); // can be optimized
//print("Got " + n(results, "results"));
if (empty(results)) return false;
Map matches = first(results);
//print("Yo! " + struct(matches));
out = lispReplaceVars(out, matches);
//print("Possibly defining: " + lispToEnglish_prettier(out));
emit(out, ruleID);
return true;
}
static void addThoughtSpace(ThoughtSpace ts) {
getThoughtSpace_map.put(ts.globalID, ts);
if (!aiConceptsMap_cached().containsKey(ts.globalID)) {
AIConcept c = unlisted(AIConcept.class);
c.globalID = ts.globalID;
c.name = "-> a thought space";
aiConceptsMap_cached().put(c.globalID, c);
}
}
static HashMap getThoughtSpace_map = new HashMap();
static ThoughtSpace getThoughtSpace(String name) {
return assertNotNull(getThoughtSpace_map.get(name));
}
static boolean lispTrue(String head, Object... args) {
return lispTrue(lisp(head, args));
}
static boolean lispTrue(Lisp l) {
for (Lisp x : lispTruthByHead(l.head))
if (eq(x, l)) return true;
return false;
}
volatile static boolean conceptsAndBot_running;
static void conceptsAndBot() {
conceptsAndBot(null);
}
static void conceptsAndBot(Integer autoSaveInterval) {
if (conceptsAndBot_running) return;
conceptsAndBot_running = true;
ensureBotIsNotAlreadyRunning(dbBotStandardName());
if (autoSaveInterval != null)
loadAndAutoSaveConcepts(autoSaveInterval);
else
loadAndAutoSaveConcepts();
dbBot();
}
static AtomicLong lispChange_count = new AtomicLong();
static void lispChange() {
lispChange_count.incrementAndGet();
}
static void lispExecutor(String head, Object executor) {
addLispExecutor(head, executor);
}
// usually L
static String fromLines(List lines) {
StringBuilder buf = new StringBuilder();
if (lines != null)
for (Object line : lines)
buf.append(str(line)).append('\n');
return buf.toString();
}
static String fromLines(String... lines) {
return fromLines(asList(lines));
}
static void lispEvaluator(String head, F1 evaluator) {
addLispEvaluator(head, evaluator);
}
static void lispEvaluator(List heads, F1 evaluator) {
for (String head : heads)
addLispEvaluator(head, evaluator);
}
static List emptyList() {
return new ArrayList();
//ret Collections.emptyList();
}
static boolean notKnownIf(Lisp l) {
// check fact and negation
return !lispTrue(l)
&& !lispTrue(lisp("zxucpbfzmexohoiv", l));
}
static boolean preferCached = false;
static boolean loadSnippet_debug = false;
public static String loadSnippet(String snippetID) {
try {
return loadSnippet(parseSnippetID(snippetID), preferCached);
} catch (IOException e) {
throw new RuntimeException(e);
}
}
public static String loadSnippet(String snippetID, boolean preferCached) throws IOException {
return loadSnippet(parseSnippetID(snippetID), preferCached);
}
public static String loadSnippet(long snippetID) {
try {
return loadSnippet(snippetID, preferCached);
} catch (IOException e) {
throw new RuntimeException(e);
}
}
public static String loadSnippet(long snippetID, boolean preferCached) throws IOException {
String text;
// boss bot disabled for now for shorter transpilations
/*text = getSnippetFromBossBot(snippetID);
if (text != null) return text;*/
initSnippetCache();
text = DiskSnippetCache_get(snippetID);
if (preferCached && text != null)
return text;
try {
if (loadSnippet_debug && text != null) System.err.println("md5: " + md5(text));
String url = "http://tinybrain.de:8080/getraw.php?id=" + snippetID + "&utf8=1";
if (nempty(text)) url += "&md5=" + md5(text);
String text2 = loadPage(url + standardCredentials());
boolean same = eq(text2, "==*#*==");
if (loadSnippet_debug) print("loadSnippet: same=" + same);
if (!same) text = text2;
} catch (RuntimeException e) {
e.printStackTrace();
throw new IOException("Snippet #" + snippetID + " not found or not public");
}
try {
initSnippetCache();
DiskSnippetCache_put(snippetID, text);
} catch (IOException e) {
System.err.println("Minor warning: Couldn't save snippet to cache (" + DiskSnippetCache_getDir() + ")");
}
return text;
}
static File DiskSnippetCache_dir;
public static void initDiskSnippetCache(File dir) {
DiskSnippetCache_dir = dir;
dir.mkdirs();
}
public static synchronized String DiskSnippetCache_get(long snippetID) throws IOException {
return loadTextFile(DiskSnippetCache_getFile(snippetID).getPath(), null);
}
private static File DiskSnippetCache_getFile(long snippetID) {
return new File(DiskSnippetCache_dir, "" + snippetID);
}
public static synchronized void DiskSnippetCache_put(long snippetID, String snippet) throws IOException {
saveTextFile(DiskSnippetCache_getFile(snippetID).getPath(), snippet);
}
public static File DiskSnippetCache_getDir() {
return DiskSnippetCache_dir;
}
public static void initSnippetCache() {
if (DiskSnippetCache_dir == null)
initDiskSnippetCache(getGlobalCache());
}
static String lines(List lines) { return fromLines(lines); }
static List lines(String s) { return toLines(s); }
public static String unquote(String s) {
if (s == null) return null;
if (s.startsWith("[")) {
int i = 1;
while (i < s.length() && s.charAt(i) == '=') ++i;
if (i < s.length() && s.charAt(i) == '[') {
String m = s.substring(1, i);
if (s.endsWith("]" + m + "]"))
return s.substring(i+1, s.length()-i-1);
}
}
if ((s.startsWith("\"") || s.startsWith("\'")) && s.length() > 1) {
int l = s.endsWith(substring(s, 0, 1)) ? s.length()-1 : s.length();
StringBuilder sb = new StringBuilder(l-1);
for (int i = 1; i < l; i++) {
char ch = s.charAt(i);
if (ch == '\\') {
char nextChar = (i == l - 1) ? '\\' : s.charAt(i + 1);
// Octal escape?
if (nextChar >= '0' && nextChar <= '7') {
String code = "" + nextChar;
i++;
if ((i < l - 1) && s.charAt(i + 1) >= '0'
&& s.charAt(i + 1) <= '7') {
code += s.charAt(i + 1);
i++;
if ((i < l - 1) && s.charAt(i + 1) >= '0'
&& s.charAt(i + 1) <= '7') {
code += s.charAt(i + 1);
i++;
}
}
sb.append((char) Integer.parseInt(code, 8));
continue;
}
switch (nextChar) {
case '\\':
ch = '\\';
break;
case 'b':
ch = '\b';
break;
case 'f':
ch = '\f';
break;
case 'n':
ch = '\n';
break;
case 'r':
ch = '\r';
break;
case 't':
ch = '\t';
break;
case '\"':
ch = '\"';
break;
case '\'':
ch = '\'';
break;
// Hex Unicode: u????
case 'u':
if (i >= l - 5) {
ch = 'u';
break;
}
int code = Integer.parseInt(
"" + s.charAt(i + 2) + s.charAt(i + 3)
+ s.charAt(i + 4) + s.charAt(i + 5), 16);
sb.append(Character.toChars(code));
i += 5;
continue;
default:
ch = nextChar; // added by Stefan
}
i++;
}
sb.append(ch);
}
return sb.toString();
}
return s; // not quoted - return original
}
static boolean isEmpty(Collection c) {
return c == null || c.isEmpty();
}
static boolean isEmpty(CharSequence s) {
return s == null || s.length() == 0;
}
static boolean isEmpty(Object[] a) {
return a == null || a.length == 0;
}
static boolean isEmpty(Map map) {
return map == null || map.isEmpty();
}
static Object callLispEvaluator(Lisp l) {
F1 e = getLispEvaluator(l.head);
if (e == null) return null;
return e.get(l);
}
static boolean allLowerCaseCharacters(String s) {
for (int i = 0; i < l(s); i++)
if (Character.getType(s.charAt(i)) != Character.LOWERCASE_LETTER) return false;
return true;
}
static Map synchroHashMap() {
return Collections.synchronizedMap(new HashMap());
}
static String struct(Object o) {
return structure(o);
}
static Font typeWriterFont() {
return typeWriterFont(14);
}
static Font typeWriterFont(int size) {
return new Font("Courier", Font.PLAIN, size);
}
static void ensureBotIsNotAlreadyRunning(String name) {
if (hasBot(name))
throw fail("Bot already running [" + name + "]");
}
static Set followForwardRelation(String relation, String argument) {
return followForwardRelation(relation, lisp(argument));
}
static Set followForwardRelation(String relation, Lisp argument) {
HashSet out = new HashSet();
for (Lisp l : lispTruthByHead(relation))
if (eq(l.get(0), argument))
out.add(l.get(1));
return out;
}
static final HashMap> callMC_cache = new HashMap();
static String callMC_key;
static Method callMC_value;
// varargs assignment fixer for a single string array argument
static Object callMC(String method, String[] arg) {
return callMC(method, new Object[] {arg});
}
static Object callMC(String method, Object... args) { try {
Method me;
synchronized(callMC_cache) {
me = method == callMC_key ? callMC_value : null;
}
if (me != null) return callMC_value.invoke(null, args);
List m;
synchronized(callMC_cache) {
m = callMC_cache.get(method);
}
if (m == null) {
if (callMC_cache.isEmpty()) {
callMC_makeCache();
m = callMC_cache.get(method);
}
if (m == null) throw fail("Method named " + method + " not found in main");
}
int n = m.size();
if (n == 1) {
me = m.get(0);
synchronized(callMC_cache) {
callMC_key = method;
callMC_value = me;
}
return me.invoke(null, args);
}
for (int i = 0; i < n; i++) {
me = m.get(i);
if (call_checkArgs(me, args, false))
return me.invoke(null, args);
}
throw fail("No method called " + method + " with matching arguments found in main");
} catch (Exception __e) { throw rethrow(__e); } }
static void callMC_makeCache() {
synchronized(callMC_cache) {
callMC_cache.clear();
Class _c = (Class) mc(), c = _c;
while (c != null) {
for (Method m : c.getDeclaredMethods())
if ((m.getModifiers() & Modifier.STATIC) != 0) {
m.setAccessible(true);
multiMapPut(callMC_cache, m.getName(), m);
}
c = c.getSuperclass();
}
}
}
static String[] dropLast(String[] a, int n) {
n = Math.min(n, a.length);
String[] b = new String[a.length-n];
System.arraycopy(a, 0, b, 0, b.length);
return b;
}
static List dropLast(List l) {
return subList(l, 0, l(l)-1);
}
static List dropLast(int n, List l) {
return subList(l, 0, l(l)-n);
}
static List dropLast(Iterable l) {
return dropLast(asList(l));
}
static String dropLast(String s) {
return substring(s, 0, l(s)-1);
}
// if match: returns -1
// if no match: returns how many conditions were met
static int matchConditions_random(List conditions, Map m) {
if (empty(conditions)) return -1;
Lisp condition = first(conditions);
Map m2 = cloneMap(m);
if (!matchCondition_random(condition, m2)) {
print("Condition failed: " + condition);
return 0;
}
print("Condition matched, " + struct(m2));
int n = matchConditions_random(dropFirst(conditions), m2);
if (n == -1) {
m.putAll(m2);
return -1;
}
return n+1; // failure
}
static Cache> aiConceptsMap_cached_cache = new Cache("aiConceptsMap");
static double aiConceptsMap_cached_autoClearInterval = 30;
static Map aiConceptsMap_cached() {
aiConceptsMap_cached_cache.clear(aiConceptsMap_cached_autoClearInterval);
return aiConceptsMap_cached_cache.get();
}
static void aiConceptsMap_clearCache() {
aiConceptsMap_cached_cache.clear();
}
// clear cache if older than x seconds
static void aiConceptsMap_clearCache(double seconds) {
aiConceptsMap_cached_cache.clear(seconds);
}
static A assertNotNull(A a) {
assertTrue(a != null);
return a;
}
static A assertNotNull(String msg, A a) {
assertTrue(msg, a != null);
return a;
}
static TreeSet collectTreeSet(Collection c, String field) {
TreeSet set = new TreeSet();
for (Object a : c) {
Object val = getOpt(a, field);
if (val != null)
set.add(val);
}
return set;
}
static long lispChangeCount() {
ThoughtSpace ts = thoughtSpace();
if (ts != null) return ts.changes;
return lispChange_count.get();
}
// TODO: test if android complains about this
static boolean isAWTThread() {
if (isAndroid()) return false;
if (isHeadless()) return false;
return isAWTThread_awt();
}
static boolean isAWTThread_awt() {
return SwingUtilities.isEventDispatchThread();
}
static Thread currentThread() {
return Thread.currentThread();
}
static void aiEnhancements() {
conceptLanguageToolTips();
}
static String standardCredentials() {
String user = standardCredentialsUser();
String pass = standardCredentialsPass();
if (nempty(user) && nempty(pass))
return "&_user=" + urlencode(user) + "&_pass=" + urlencode(pass);
return "";
}
static Lisp getLispTruth(String id) {
LispStatement s = lispStatements_cached().get(id);
return s == null ? null : s.term;
}
static boolean aiConceptsMap_fastLoad, aiConceptsMap_silent;
static List aiConceptsMap_list;
static Map aiConceptsMap() {
long time = sysNow();
List concepts = aiConceptsMap_fastLoad ? fastLoadAIConcepts() : loadAIConcepts();
aiConceptsMap_list = concepts;
Map map = indexByField(concepts, "globalID");
if (!aiConceptsMap_silent)
sysDone(time, "load ai concepts");
return map;
}
static List lispTruthByHead(String... heads) {
return collect(lispStatementsByHead(heads), "term");
}
static F1 getLispEvaluator(String head) {
return addLispEvaluator_map.get(head);
}
static ArrayList litlist(A... a) {
return new ArrayList (Arrays.asList(a));
}
static Class getMainClass() {
return main.class;
}
static Class getMainClass(Object o) { try {
return (o instanceof Class ? (Class) o : o.getClass()).getClassLoader().loadClass("main");
} catch (Exception __e) { throw rethrow(__e); } }
static BigInteger lispToInt(Lisp x) {
return lispIsInt(x) ? bigint(x.head) : null;
}
static Map cloneMap(Map map) {
if (map == null) return litmap();
// assume mutex is equal to collection, which will be true unless you explicitly pass a mutex to synchronizedList() which no one ever does.
synchronized(map) {
return map instanceof TreeMap ? new TreeMap(map)
: map instanceof LinkedHashMap ? new LinkedHashMap(map)
: new HashMap(map);
}
}
static ThreadLocal loadPage_charset = new ThreadLocal();
static boolean loadPage_allowGzip = true, loadPage_debug;
static boolean loadPage_anonymous; // don't send computer ID
static int loadPage_verboseness = 100000;
static int loadPage_retries = 60; // seconds
static ThreadLocal loadPage_silent = new ThreadLocal();
public static String loadPageSilently(String url) { try {
return loadPageSilently(new URL(loadPage_preprocess(url)));
} catch (Exception __e) { throw rethrow(__e); } }
public static String loadPageSilently(URL url) { try {
IOException e = null;
for (int tries = 0; tries < loadPage_retries; tries++)
try {
URLConnection con = openConnection(url);
return loadPage(con, url);
} catch (IOException _e) {
e = _e;
if (loadPageThroughProxy_enabled) {
print("Trying proxy because of: " + e);
try {
return loadPageThroughProxy(str(url));
} catch (Throwable e2) {
print(" " + exceptionToStringShort(e2));
}
} else if (loadPage_debug)
print(e);
sleepSeconds(1);
}
throw e;
} catch (Exception __e) { throw rethrow(__e); } }
static String loadPage_preprocess(String url) {
if (url.startsWith("tb/"))
url = "tinybrain.de:8080/" + url;
if (url.indexOf("://") < 0)
url = "http://" + url;
return url;
}
public static String loadPage(String url) { try {
url = loadPage_preprocess(url);
if (!isTrue(loadPage_silent.get()))
print("Loading: " + hideCredentials(url));
return loadPageSilently(new URL(url));
} catch (Exception __e) { throw rethrow(__e); } }
public static String loadPage(URL url) {
print("Loading: " + hideCredentials(url.toExternalForm()));
return loadPageSilently(url);
}
public static String loadPage(URLConnection con, URL url) throws IOException {
try {
if (!loadPage_anonymous)
setHeaders(con);
if (loadPage_allowGzip)
con.setRequestProperty("Accept-Encoding", "gzip");
} catch (Throwable e) {} // fails if within doPost
String contentType = con.getContentType();
if (contentType == null)
throw new IOException("Page could not be read: " + url);
//print("Content-Type: " + contentType);
String charset = loadPage_charset == null ? null : loadPage_charset.get();
if (charset == null) charset = loadPage_guessCharset(contentType);
InputStream in = con.getInputStream();
if ("gzip".equals(con.getContentEncoding())) {
if (loadPage_debug)
print("loadPage: Using gzip.");
in = new GZIPInputStream(in);
}
Reader r = new InputStreamReader(in, charset);
StringBuilder buf = new StringBuilder();
int n = 0;
while (true) {
int ch = r.read();
if (ch < 0)
break;
buf.append((char) ch);
++n;
if ((n % loadPage_verboseness) == 0) print(" " + n + " chars read");
}
return buf.toString();
}
static String loadPage_guessCharset(String contentType) {
Pattern p = Pattern.compile("text/[a-z]+;\\s*charset=([^\\s]+)\\s*");
Matcher m = p.matcher(contentType);
String match = m.matches() ? m.group(1) : null;
if (loadPage_debug)
print("loadPage: contentType=" + contentType + ", match: " + match);
/* If Content-Type doesn't match this pre-conception, choose default and hope for the best. */
return or(match, "ISO-8859-1");
}
static void print_setPrefixForThread(final String prefix) {
interceptPrintInThisThread(empty(prefix) ? null
: new _PrintIndent(prefix));
}
static List lispTruth() {
return collect(values(lispStatements_cached()), "term");
}
static String n(long l, String name) {
return l + " " + (l == 1 ? singular(name) : getPlural(name));
}
static String n(Collection l, String name) {
return n(l(l), name);
}
static String n(Map m, String name) {
return n(l(m), name);
}
static String n(Object[] a, String name) {
return n(l(a), name);
}
static Map applyAlwaysRules_handlers = new HashMap();
static boolean applyAlwaysRules_step_debug;
// for handlers
static ThreadLocal applyAlwaysRules_ruleID = new ThreadLocal();
static void applyAlwaysRules_step() {
List statements = lispStatements_cloned();
if (applyAlwaysRules_step_debug)
print("applyAlwaysRules_step: " + struct(statements));
for (LispStatement s : statements) {
Lisp l = s.term;
Object handler = applyAlwaysRules_handlers.get(l.head);
if (handler != null) {
applyAlwaysRules_ruleID.set(s.globalID);
if (applyAlwaysRules_step_debug)
print("Calling handler for " + l.head);
try {
callF(handler, /*lispSingleChildOrFull*/(l));
} finally {
applyAlwaysRules_ruleID.set(null);
}
}
}
}
static boolean aiUsing_enabled;
static Set aiUsing_set = synchroTreeSet();
static String aiUsing(String s) {
if (aiUsing_enabled)
aiUsing_set.addAll(aggressivelyCollectPossibleGlobalIDs(s));
return s;
}
static void aiUsing(Object o) {
// TODO
}
static List aiUsing(List l) {
if (aiUsing_enabled)
for (Object li : unnull(l)) aiUsing(li);
return l;
}
static Lisp aiUsing(Lisp l) {
if (aiUsing_enabled && l != null) {
aiUsing(l.head);
for (Lisp sub : l) aiUsing(sub);
}
return l;
}
static void aiUsing_print() {
aiUsing_print(null);
}
static void aiUsing_print(List priorityConcepts) {
//print("\nAI concepts used: " + aiUsing_set);
print("\nAI concepts used: ");
dumpConcepts2(findAIConcepts(prioritizeList(aiUsing_set, priorityConcepts)));
}
static File getGlobalCache() {
File file = new File(userHome(), ".tinybrain/snippet-cache");
file.mkdirs();
return file;
}
static Object first(Object list) {
return empty((List) list) ? null : ((List) list).get(0);
}
static A first(List list) {
return empty(list) ? null : list.get(0);
}
static A first(A[] bla) {
return bla == null || bla.length == 0 ? null : bla[0];
}
static A first(Iterable i) {
if (i == null) return null;
Iterator it = i.iterator();
return it.hasNext() ? it.next() : null;
}
static Character first(String s) { return empty(s) ? null : s.charAt(0); }
static String md5(String text) { try {
if (text == null) return "-";
return bytesToHex(md5_impl(text.getBytes("UTF-8"))); // maybe different than the way PHP does it...
} catch (Exception __e) { throw rethrow(__e); } }
static String md5(byte[] data) {
if (data == null) return "-";
return bytesToHex(md5_impl(data));
}
static MessageDigest md5_md;
/*static byte[] md5_impl(byte[] data) ctex {
if (md5_md == null)
md5_md = MessageDigest.getInstance("MD5");
return ((MessageDigest) md5_md.clone()).digest(data);
}*/
static byte[] md5_impl(byte[] data) { try {
return MessageDigest.getInstance("MD5").digest(data);
} catch (Exception __e) { throw rethrow(__e); } }
static String md5(File file) { try {
return md5(loadBinaryFile(file));
} catch (Exception __e) { throw rethrow(__e); } }
static boolean isIdentifier(String s) {
return isJavaIdentifier(s);
}
static String lispToEnglish_prettier(Lisp l) {
if (l == null) return "";
String pattern = conceptToNameOpt(lispForwardRawOrSame("omrvwjslbkffaxoj", l.head));
if (empty(pattern)) return clUnparse(l);
List args = map("lispToEnglish_prettier", l.args);
String s = formatXYZ_appendRest(pattern, args);
return s;
}
static Boolean isHeadless_cache;
static boolean isHeadless() {
if (isHeadless_cache != null) return isHeadless_cache;
if (GraphicsEnvironment.isHeadless()) return isHeadless_cache = true;
// Also check if AWT actually works.
// If DISPLAY variable is set but no X server up, this will notice.
try {
SwingUtilities.isEventDispatchThread();
return isHeadless_cache = false;
} catch (Throwable e) { return isHeadless_cache = true; }
}
static boolean empty(Collection c) {
return isEmpty(c);
}
static boolean empty(String s) {
return isEmpty(s);
}
static boolean empty(Map map) {
return map == null || map.isEmpty();
}
static boolean empty(Object[] o) {
return o == null || o.length == 0;
}
static boolean empty(Object o) {
if (o instanceof Collection) return empty((Collection) o);
if (o instanceof String) return empty((String) o);
if (o instanceof Map) return empty((Map) o);
if (o instanceof Object[]) return empty((Object[]) o);
throw fail("unknown type for 'empty': " + getType(o));
}
static boolean empty(float[] a) { return a == null || a.length == 0; }
static String getGlobalIDPrefix(String s) {
List tok = javaTok(s);
if (eq(get(tok, 1), "[") && eq(get(tok, 5), "]") && possibleGlobalID(get(tok, 3)))
return get(tok, 3);
return null;
}
static boolean isInteger(String s) {
if (s == null) return false;
int n = l(s);
if (n == 0) return false;
int i = 0;
if (s.charAt(0) == '-')
if (++i >= n) return false;
while (i < n) {
char c = s.charAt(i);
if (c < '0' || c > '9') return false;
++i;
}
return true;
}
static String formatSnippetID(String id) {
return "#" + parseSnippetID(id);
}
static String formatSnippetID(long id) {
return "#" + id;
}
static List filterConcepts(List list, Object... params) {
List l = new ArrayList();
for (A x : list)
if (checkConceptFields(x, params))
l.add(x);
return l;
}
static A last(List l) {
return l.isEmpty() ? null : l.get(l.size()-1);
}
static char last(String s) {
return empty(s) ? '#' : s.charAt(l(s)-1);
}
static int last(int[] a) {
return l(a) != 0 ? a[l(a)-1] : 0;
}
static boolean checkCondition(Object condition, Object... args) {
return isTrue(call(condition, "get", args));
}
static ArrayList list(A[] a) {
return asList(a);
}
static ArrayList list(int[] a) {
return asList(a);
}
static ArrayList list(Set s) {
return asList(s);
}
static Object call(Object o) {
return callFunction(o);
}
// varargs assignment fixer for a single string array argument
static Object call(Object o, String method, String[] arg) {
return call(o, method, new Object[] {arg});
}
static Object call(Object o, String method, Object... args) {
try {
if (o instanceof Class) {
Method m = call_findStaticMethod((Class) o, method, args, false);
m.setAccessible(true);
return m.invoke(null, args);
} else {
Method m = call_findMethod(o, method, args, false);
m.setAccessible(true);
return m.invoke(o, args);
}
} catch (Exception e) {
throw e instanceof RuntimeException ? (RuntimeException) e : new RuntimeException(e);
}
}
static Method call_findStaticMethod(Class c, String method, Object[] args, boolean debug) {
Class _c = c;
while (c != null) {
for (Method m : c.getDeclaredMethods()) {
if (debug)
System.out.println("Checking method " + m.getName() + " with " + m.getParameterTypes().length + " parameters");;
if (!m.getName().equals(method)) {
if (debug) System.out.println("Method name mismatch: " + method);
continue;
}
if ((m.getModifiers() & Modifier.STATIC) == 0 || !call_checkArgs(m, args, debug))
continue;
return m;
}
c = c.getSuperclass();
}
throw new RuntimeException("Method '" + method + "' (static) with " + args.length + " parameter(s) not found in " + _c.getName());
}
static Method call_findMethod(Object o, String method, Object[] args, boolean debug) {
Class c = o.getClass();
while (c != null) {
for (Method m : c.getDeclaredMethods()) {
if (debug)
System.out.println("Checking method " + m.getName() + " with " + m.getParameterTypes().length + " parameters");;
if (m.getName().equals(method) && call_checkArgs(m, args, debug))
return m;
}
c = c.getSuperclass();
}
throw new RuntimeException("Method '" + method + "' (non-static) with " + args.length + " parameter(s) not found in " + o.getClass().getName());
}
private static boolean call_checkArgs(Method m, Object[] args, boolean debug) {
Class>[] types = m.getParameterTypes();
if (types.length != args.length) {
if (debug)
System.out.println("Bad parameter length: " + args.length + " vs " + types.length);
return false;
}
for (int i = 0; i < types.length; i++)
if (!(args[i] == null || isInstanceX(types[i], args[i]))) {
if (debug)
System.out.println("Bad parameter " + i + ": " + args[i] + " vs " + types[i]);
return false;
}
return true;
}
// make concept instance that is not connected to DB
static A unlisted(Class c, Object... args) {
concepts_unlisted.set(true);
try {
return nuObject(c, args);
} finally {
concepts_unlisted.set(null);
}
}
/** writes safely (to temp file, then rename) */
static void saveTextFile(String fileName, String contents) throws IOException {
CriticalAction action = beginCriticalAction("Saving file " + fileName + " (" + l(contents) + " chars)");
try {
File file = new File(fileName);
File parentFile = file.getParentFile();
if (parentFile != null)
parentFile.mkdirs();
String tempFileName = fileName + "_temp";
File tempFile = new File(tempFileName);
if (contents != null) {
if (tempFile.exists()) try {
String saveName = tempFileName + ".saved." + now();
copyFile(tempFile, new File(saveName));
} catch (Throwable e) { printStackTrace(e); }
FileOutputStream fileOutputStream = newFileOutputStream(tempFile.getPath());
OutputStreamWriter outputStreamWriter = new OutputStreamWriter(fileOutputStream, "UTF-8");
PrintWriter printWriter = new PrintWriter(outputStreamWriter);
printWriter.print(contents);
printWriter.close();
}
if (file.exists() && !file.delete())
throw new IOException("Can't delete " + fileName);
if (contents != null)
if (!tempFile.renameTo(file))
throw new IOException("Can't rename " + tempFile + " to " + file);
} finally {
action.done();
}
}
static void saveTextFile(File fileName, String contents) { try {
saveTextFile(fileName.getPath(), contents);
} catch (Exception __e) { throw rethrow(__e); } }
static List conceptsFromDump(String s) {
List < List < String > > l = new ArrayList();
if (neq(first(javaTokC(s)), "[")) {
for (String line : toLinesFullTrim(s)) {
int i = line.indexOf(" - ");
if (i > 0) {
String id = trim(substring(line, 0, i));
if (!possibleGlobalID(id)) warn("no id: " + id);
else
l.add(ll(id, trim(substring(line, i+3))));
}
}
} else
l = (List) safeUnstructure("[" + s + "]");
List out = new ArrayList();
for (List x : l) {
AIConcept c = unlisted(AIConcept.class);
String id = makeNewID(get(x, 0));
cset(c, "globalID" , id, "name" , unnull(get(x, 1)), "comment" , unnull(get(x, 2)));
out.add(c);
}
return out;
}
static String dropGlobalIDPrefix(String s) {
List tok = javaTok(s);
if (eq(get(tok, 1), "[") && eq(get(tok, 5), "]") && possibleGlobalID(get(tok, 3)))
return join(subList(tok, 7));
return s;
}
static String getClassName(Object o) {
return o == null ? "null" : o.getClass().getName();
}
// head -> voidfunc(Lisp)
static Map addLispExecutor_map = new HashMap();
static void addLispExecutor(String head, Object executor) {
addLispExecutor_map.put(head, executor);
}
static Set keys(Map map) {
return map.keySet();
}
static Set keys(Object map) {
return keys((Map) map);
}
static Android3 dbBot() {
return dbBot(dbBotStandardName());
}
static Android3 dbBot(String name) {
ensureBotIsNotAlreadyRunning(name);
assertNotNull(mainConcepts);
return methodsBot2(name, mainConcepts, exposedDBMethods, mainConcepts.lock);
}
static String substring(String s, int x) {
return substring(s, x, l(s));
}
static String substring(String s, int x, int y) {
if (s == null) return null;
if (x < 0) x = 0;
if (x > s.length()) return "";
if (y < x) y = x;
if (y > s.length()) y = s.length();
return s.substring(x, y);
}
public static long parseSnippetID(String snippetID) {
long id = Long.parseLong(shortenSnippetID(snippetID));
if (id == 0) throw fail("0 is not a snippet ID");
return id;
}
static String dbBotStandardName() {
return dbBotName(getDBProgramID()) + ".";
}
static List listToCL(List l) {
return map("englishToConceptLanguage_keepPrefix", l);
}
static Object[] expandParams(Class c, Object[] params) {
if (l(params) == 1)
params = new Object[] { singleFieldName(c), params[0] };
else
warnIfOddCount(params);
return params;
}
static List> matchConditions_all(List conditions, Map m) {
if (empty(conditions)) return ll(m);
Lisp condition = first(conditions);
List> candidates = matchCondition_all(condition, m);
if (empty(candidates)) return candidates; // first condition failed
LinkedHashSet < Map < String , Lisp > > results = new LinkedHashSet();
for (Map m2 : candidates)
results.addAll(matchConditions_all(dropFirst(conditions), m2));
return asList(results);
}
static String formatSnippetIDOpt(String s) {
return isSnippetID(s) ? formatSnippetID(s) : s;
}
static void consoleFont(Font font) {
callOpt(getConsoleTextArea_gen(), "setFont", font);
}
public static String loadTextFile(String fileName) {
return loadTextFile(fileName, null);
}
public static String loadTextFile(String fileName, String defaultContents) {
try {
if (!new File(fileName).exists())
return defaultContents;
FileInputStream fileInputStream = new FileInputStream(fileName);
InputStreamReader inputStreamReader = new InputStreamReader(fileInputStream, "UTF-8");
return loadTextFile(inputStreamReader);
} catch (IOException e) {
throw new RuntimeException(e);
}
}
public static String loadTextFile(File fileName) {
return loadTextFile(fileName, null);
}
public static String loadTextFile(File f, String defaultContents) {
return f == null ? defaultContents : loadTextFile(f.getPath(), defaultContents);
}
public static String loadTextFile(Reader reader) throws IOException {
StringBuilder builder = new StringBuilder();
try {
char[] buffer = new char[1024];
int n;
while (-1 != (n = reader.read(buffer)))
builder.append(buffer, 0, n);
} finally {
reader.close();
}
return builder.toString();
}
static boolean nempty(Collection c) {
return !isEmpty(c);
}
static boolean nempty(CharSequence s) {
return !isEmpty(s);
}
static boolean nempty(Object[] o) {
return !isEmpty(o);
}
static boolean nempty(Map m) {
return !isEmpty(m);
}
static boolean nempty(Iterator i) {
return i != null && i.hasNext();
}
static boolean eqic(String a, String b) {
if ((a == null) != (b == null)) return false;
if (a == null) return true;
return a.equalsIgnoreCase(b);
}
static boolean lispMatchIC_xyzVars_debug;
static Map lispMatchIC_xyzVars(Lisp pat, Lisp nl) {
Map matches = new HashMap();
return lispMatchIC_xyzVars_sub(pat, nl, matches) ? matches : null;
}
// put additional vars in m with value = null
static boolean lispMatchIC_xyzVars_sub(Lisp pat, Lisp nl, Map m) {
if (pat == null || nl == null) return false;
if (pat.isLeaf() && (isXYZVar(pat.head) || m.containsKey(pat.head))) {
if (lispMatchIC_xyzVars_debug) print("Var: " + pat.head + " => " + nl);
return lispMatchIC_xyzVars_putMatch(m, pat.head, nl);
}
if (neqic(pat.head, nl.head)) return false;
// heads identical, proceed to children
int n = pat.size();
if (n != nl.size()) return false;
for (int i = 0; i < n; i++) {
if (lispMatchIC_xyzVars_debug) print("Sub " + i + ": " + pat.get(i) + " => " + nl.get(i));
if (!lispMatchIC_xyzVars_sub(pat.get(i), nl.get(i), m))
return false;
}
return true;
}
static boolean lispMatchIC_xyzVars_putMatch(Map matches, String key, Lisp val) {
Lisp oldValue = matches.get(key);
if (oldValue != null) {
if (!lispEqic(oldValue, val))
return false;
//fail("multi-matching not implemented");
} else
matches.put(key, val);
return true;
}
// does not store null values
static Map indexByField(Collection c, String field) {
HashMap map = new HashMap();
for (Object a : c) {
Object val = getOpt(a, field);
if (val != null)
map.put(val, a);
}
return map;
}
static int randomID_defaultLength = 12;
static String randomID(int length) {
return makeRandomID(length);
}
static String randomID() {
return randomID(randomID_defaultLength);
}
static Field setOpt_findField(Class c, String field) {
HashMap map;
synchronized(getOpt_cache) {
map = getOpt_cache.get(c);
if (map == null)
map = getOpt_makeCache(c);
}
return map.get(field);
}
static void setOpt(Object o, String field, Object value) { try {
if (o == null) return;
Class c = o.getClass();
HashMap map;
synchronized(getOpt_cache) {
map = getOpt_cache.get(c);
if (map == null)
map = getOpt_makeCache(c);
}
if (map == getOpt_special) {
if (o instanceof Class) {
setOpt((Class) o, field, value);
return;
}
return;
}
Field f = map.get(field);
if (f != null)
smartSet(f, o, value); // possible improvement: skip setAccessible
} catch (Exception __e) { throw rethrow(__e); } }
static void setOpt(Class c, String field, Object value) {
if (c == null) return;
try {
Field f = setOpt_findStaticField(c, field);
if (f != null)
smartSet(f, null, value);
} catch (Exception e) {
throw new RuntimeException(e);
}
}
static Field setOpt_findStaticField(Class> c, String field) {
Class _c = c;
do {
for (Field f : _c.getDeclaredFields())
if (f.getName().equals(field) && (f.getModifiers() & Modifier.STATIC) != 0)
return f;
_c = _c.getSuperclass();
} while (_c != null);
return null;
}
static Object getOpt(Object o, String field) {
return getOpt_cached(o, field);
}
static Object getOpt_raw(Object o, String field) {
try {
Field f = getOpt_findField(o.getClass(), field);
if (f == null) return null;
f.setAccessible(true);
return f.get(o);
} catch (Exception e) {
throw new RuntimeException(e);
}
}
static Object getOpt(Class c, String field) {
try {
if (c == null) return null;
Field f = getOpt_findStaticField(c, field);
if (f == null) return null;
f.setAccessible(true);
return f.get(null);
} catch (Exception e) {
throw new RuntimeException(e);
}
}
static Field getOpt_findStaticField(Class> c, String field) {
Class _c = c;
do {
for (Field f : _c.getDeclaredFields())
if (f.getName().equals(field) && (f.getModifiers() & Modifier.STATIC) != 0)
return f;
_c = _c.getSuperclass();
} while (_c != null);
return null;
}
static void consoleInputFont(Font f) {
JTextField input = consoleInputField();
if (input != null) {
input.setFont(f);
revalidateFrame(input);
}
}
static List beginCriticalAction_inFlight = synchroList();
static class CriticalAction {
String description;
CriticalAction() {}
CriticalAction(String description) {
this.description = description;}
void done() {
beginCriticalAction_inFlight.remove(this);
}
}
static CriticalAction beginCriticalAction(String description) {
ping();
CriticalAction c = new CriticalAction(description);
beginCriticalAction_inFlight.add(c);
return c;
}
static void cleanMeUp_beginCriticalAction() {
int n = 0;
while (nempty(beginCriticalAction_inFlight)) {
int m = l(beginCriticalAction_inFlight);
if (m != n) {
n = m;
try {
print("Waiting for " + n(n, "critical actions") + ": " + join(", ", collect(beginCriticalAction_inFlight, "description")));
} catch (Throwable __e) { printStackTrace2(__e); }
}
sleepInCleanUp(10);
}
}
static List lispStatements_cloned() {
return cloneList(values(lispStatements_cached()));
}
static Object callFunction(Object f, Object... args) {
return callF(f, args);
}
static boolean neqic(String a, String b) {
return !eqic(a, b);
}
static String trim(String s) { return s == null ? null : s.trim(); }
static String trim(StringBuilder buf) { return buf.toString().trim(); }
static String trim(StringBuffer buf) { return buf.toString().trim(); }
static String shortenSnippetID(String snippetID) {
if (snippetID.startsWith("#"))
snippetID = snippetID.substring(1);
String httpBlaBla = "http://tinybrain.de/";
if (snippetID.startsWith(httpBlaBla))
snippetID = snippetID.substring(httpBlaBla.length());
return "" + parseLong(snippetID);
}
static List getPlural_specials = ll("sheep", "fish");
static String getPlural(String s) {
if (containsIgnoreCase(getPlural_specials, s)) return s;
if (ewic(s, "y")) return dropSuffixIgnoreCase("y", s) + "ies";
if (ewic(s, "ss")) return s + "es";
if (ewic(s, "s")) return s;
return s + "s";
}
static Throwable printStackTrace(Throwable e) {
// we go to system.out now - system.err is nonsense
print(getStackTrace(e));
return e;
}
static void printStackTrace() {
printStackTrace(new Throwable());
}
static void printStackTrace(String msg) {
printStackTrace(new Throwable(msg));
}
static void printStackTrace(String indent, Throwable e) {
if (endsWithLetter(indent)) indent += " ";
printIndent(indent, getStackTrace(e));
}
static List fastLoadAIConcepts() {
print("fast-loading ai concepts");
Class main = getBotMainClass(dbBotName(aiConceptsProgram()));
Object concepts = get(main, "mainConcepts");
return map("fastLoadAIConcept", (List) call(concepts, "list", "AIConcept"));
}
static String getType(Object o) {
return getClassName(o);
}
static Map singular_specials = litmap(
"children", "child", "images", "image", "chess", "chess");
static Set singular_specials2 = litset("time", "machine");
static String singular(String s) {
if (s == null) return null;
{ String _a_1 = singular_specials.get(s); if (!empty(_a_1)) return _a_1; }
if (singular_specials2.contains(dropSuffix("s", s)))
return dropSuffix("s", s);
if (s.endsWith("ness")) return s;
if (s.endsWith("ges")) return dropSuffix("s", s);
s = dropSuffix("es", s);
s = dropSuffix("s", s);
return s;
}
static Set synchroTreeSet() {
return Collections.synchronizedSet(new TreeSet ());
}
static String hideCredentials(String url) {
return url.replaceAll("&_pass=[^&]*", "&_pass=");
}
static void setHeaders(URLConnection con) throws IOException {
String computerID = getComputerID_quick();
if (computerID != null) try {
con.setRequestProperty("X-ComputerID", computerID);
con.setRequestProperty("X-OS", System.getProperty("os.name") + " " + System.getProperty("os.version"));
} catch (Throwable e) {
//printShortException(e);
}
}
static List subList(List l, int startIndex) {
return subList(l, startIndex, l(l));
}
static List subList(List l, int startIndex, int endIndex) {
startIndex = max(0, min(l(l), startIndex));
endIndex = max(0, min(l(l), endIndex));
if (startIndex > endIndex) return litlist();
return l.subList(startIndex, endIndex);
}
static String exceptionToStringShort(Throwable e) {
e = getInnerException(e);
String msg = unnull(e.getMessage());
if (msg.indexOf("Error") < 0 && msg.indexOf("Exception") < 0)
return baseClassName(e) + ": " + msg;
else
return msg;
}
public static String bytesToHex(byte[] bytes) {
return bytesToHex(bytes, 0, bytes.length);
}
public static String bytesToHex(byte[] bytes, int ofs, int len) {
StringBuilder stringBuilder = new StringBuilder(len*2);
for (int i = 0; i < len; i++) {
String s = "0" + Integer.toHexString(bytes[ofs+i]);
stringBuilder.append(s.substring(s.length()-2, s.length()));
}
return stringBuilder.toString();
}
static boolean isXYZVar(String s) { return formatXYZ_varToIndex(s) != 0; }
static URLConnection openConnection(URL url) { try {
ping();
return url.openConnection();
} catch (Exception __e) { throw rethrow(__e); } }
static Set aggressivelyCollectPossibleGlobalIDs(String s) {
LinkedHashSet ids = new LinkedHashSet();
if (s == null) return ids;
for (int i = 0; i < l(s); i++) {
int j = i;
while (j < l(s) && Character.isLowerCase(s.charAt(j))) ++j;
if (j-i == 16)
ids.add(substring(s, i, j));
i = j;
}
return ids;
}
static String lispForwardRawOrSame(String relation, String argument) {
return or(lispForwardRaw(relation, argument), argument);
}
static String dbBotName(String progID) {
return fsI(progID) + " Concepts";
}
static boolean warn_on = true;
static void warn(String s) {
if (warn_on)
print("Warning: " + s);
}
static void warn(String s, List warnings) {
warn(s);
if (warnings != null)
warnings.add(s);
}
static List findAIConcepts(String ids) {
return findAIConcepts(javaTokC(ids));
}
static List findAIConcepts(Iterable ids) {
List l = new ArrayList();
for (Object id : ids)
if (id instanceof String)
addIfNotNull(l, aiConceptsMap_cached().get((String) id));
else if (id instanceof AIConcept)
l.add((AIConcept) id);
return l;
}
static void warnIfOddCount(Object... list) {
if (odd(l(list)))
printStackTrace("Odd list size: " + list);
}
static long now_virtualTime;
static long now() {
return now_virtualTime != 0 ? now_virtualTime : System.currentTimeMillis();
}
static FileOutputStream newFileOutputStream(File path) throws IOException {
return newFileOutputStream(path.getPath());
}
static FileOutputStream newFileOutputStream(String path) throws IOException {
return newFileOutputStream(path, false);
}
static FileOutputStream newFileOutputStream(String path, boolean append) throws IOException {
FileOutputStream f = new // Line break for ancient translator
FileOutputStream(path, append);
callJavaX("registerIO", f, path, true);
return f;
}
static boolean checkConceptFields(Concept x, Object... data) {
for (int i = 0; i < l(data); i += 2)
if (neq(cget(x, (String) data[i]), deref(data[i+1])))
return false;
return true;
}
static String clUnparse(Lisp l) {
if (l == null) return "";
return join(" ", (List) concatLists(ll(conceptQuote(l.head)), map("clUnparse_sub", l)));
}
static String clUnparse_sub(Lisp l) {
return l.empty() ? clUnparse(l) : "(" + clUnparse(l) + ")";
}
static List clUnparse(List l) {
return map("clUnparse", l);
}
static String makeRandomID(int length) {
Random random = new Random();
char[] id = new char[length];
for (int i = 0; i < id.length; i++)
id[i] = (char) ((int) 'a' + random.nextInt(26));
return new String(id);
}
static JTextField consoleInputField() {
return (JTextField) getOpt(get(getJavaX(), "console"), "tfInput");
}
public static byte[] loadBinaryFile(String fileName) {
try {
if (!new File(fileName).exists())
return null;
FileInputStream in = new FileInputStream(fileName);
byte buf[] = new byte[1024];
ByteArrayOutputStream out = new ByteArrayOutputStream();
int l;
while (true) {
l = in.read(buf);
if (l <= 0) break;
out.write(buf, 0, l);
}
in.close();
return out.toByteArray();
} catch (IOException e) { throw new RuntimeException(e); }
}
public static byte[] loadBinaryFile(File file) {
return loadBinaryFile(file.getPath());
}
static String[] dropFirst(int n, String[] a) {
return drop(n, a);
}
static String[] dropFirst(String[] a) {
return drop(1, a);
}
static Object[] dropFirst(Object[] a) {
return drop(1, a);
}
static List dropFirst(List l) {
return dropFirst(1, l);
}
static List dropFirst(Iterable i) {
return dropFirst(toList(i));
}
static List dropFirst(int n, List l) {
return n <= 0 ? l : new ArrayList(l.subList(Math.min(n, l.size()), l.size()));
}
static List dropFirst(List l, int n) {
return dropFirst(n, l);
}
static String dropFirst(int n, String s) {
return substring(s, n);
}
static String urlencode(String x) {
try {
return URLEncoder.encode(unnull(x), "UTF-8");
} catch (UnsupportedEncodingException e) { throw new RuntimeException(e); }
}
static void interceptPrintInThisThread(F1 f) {
print_byThread().set(f);
}
static boolean lispIsInt(Lisp x) {
return x != null && x.isLeaf() && isInteger(x.head);
}
static boolean matchCondition_random(Lisp condition, Map m) {
List facts = lispTruth();
Object evaluator = getLispEvaluator(condition.head);
if (evaluator != null)
return isTrue(callF(evaluator, lispReplaceVars(condition, m)));
List> candidates = new ArrayList();
for (Lisp fact : facts) {
Map m2 = cloneMap(m);
if (lispMatchIC_xyzVars_sub(condition, fact, m2))
candidates.add(m2);
}
//print("Have " + n(candidates, "candidate"));
if (empty(candidates)) return false;
m.putAll(random(candidates));
return true;
}
static String standardCredentialsUser() {
return trim(loadTextFile(new File(userHome(), ".tinybrain/username")));
}
static Object safeUnstructure(String s) {
return unstructure(s, true);
}
static boolean isJavaIdentifier(String s) {
if (s.length() == 0 || !Character.isJavaIdentifierStart(s.charAt(0)))
return false;
for (int i = 1; i < s.length(); i++)
if (!Character.isJavaIdentifierPart(s.charAt(i)))
return false;
return true;
}
public static void copyFile(File src, File dest) { try {
mkdirsForFile(dest);
FileInputStream inputStream = new FileInputStream(src.getPath());
FileOutputStream outputStream = newFileOutputStream(dest.getPath());
try {
copyStream(inputStream, outputStream);
inputStream.close();
} finally {
outputStream.close();
}
} catch (Exception __e) { throw rethrow(__e); } }
static List> matchCondition_all(Lisp condition, Map m) {
List facts = lispTruth();
Object evaluator = getLispEvaluator(condition.head);
if (evaluator != null)
return (List) (isTrue(callF(evaluator, lispReplaceVars(condition, m)))
? ll(m) : ll());
List> candidates = new ArrayList();
for (Lisp fact : facts) {
Map m2 = cloneMap(m);
if (lispMatchIC_xyzVars_sub(condition, fact, m2))
candidates.add(m2);
}
return candidates;
}
static String conceptToNameOpt(String s) {
AIConcept c = aiConceptsMap_cached().get(s);
return c == null ? null : unnull(c.name);
}
static String _userHome;
static String userHome() {
if (_userHome == null) {
if (isAndroid())
_userHome = "/storage/sdcard0/";
else
_userHome = System.getProperty("user.home");
//System.out.println("userHome: " + _userHome);
}
return _userHome;
}
static File userHome(String path) {
return new File(userDir(), path);
}
static void assertTrue(Object o) {
assertEquals(true, o);
}
static boolean assertTrue(String msg, boolean b) {
if (!b)
throw fail(msg);
return b;
}
static boolean assertTrue(boolean b) {
if (!b)
throw fail("oops");
return b;
}
static boolean conceptLanguageToolTips_enabled;
static void conceptLanguageToolTips() { swingAndWait(new Runnable() { public void run() { try {
if (conceptLanguageToolTips_enabled) return;
conceptLanguageToolTips_enabled = true;
{ /*nt*/ Thread _t_0 = new Thread("conceptLanguageToolTips") {
public void run() { /* in run */ try { /* in thread */
boolean firstTime = true; // hack fix for tool tip not appearing the first time
String initialMsg = "Move mouse over a concept word to reveal its meaning!";
//repeat with ms sleep 500 {
// Don't respond to "pause" button
while (licensed_noPing()) {
try {
Component c = (Component) componentAtMouse_gen();
if (c instanceof JComponent) {
String word = wordAtMouse(), msg = firstTime ? initialMsg : "";
if (possibleGlobalID(word)) {
Lisp l = getLispTruth(word);
String name = null;
if (l != null)
name = lispToEnglish_prettier(l);
if (name == null)
name = conceptToNameOpt(word); // This reloads AI concepts
if (name != null) {
msg = word + ": " + name;
firstTime = false;
}
}
setToolTipText((JComponent) c, msg);
}
} catch (Throwable __e) { printStackTrace2(__e); }
Thread.sleep(500);
}
/* in thread */ } catch (Throwable __e) { printStackTrace2(__e); } /* in run */ }
};
startThread(_t_0); }
} catch (Exception __e) { throw rethrow(__e); } } public String toString() { return "if (conceptLanguageToolTips_enabled) return;\r\n conceptLanguageToolTips_enabled ..."; }}); }
static String getDBProgramID_id;
static String getDBProgramID() {
return nempty(getDBProgramID_id) ? getDBProgramID_id : programID();
}
static Object getConsoleTextArea_gen() {
return getOpt(get(getJavaX(), "console"), "textArea");
}
static boolean lispEqic(Lisp a, Lisp b) {
if (a == null) return b == null;
if (neqic(a.head, b.head)) return false;
int n = l(a.args);
if (n != l(b.args)) return false;
for (int i = 0; i < n; i++)
if (!lispEqic(a.args.get(i), b.args.get(i))) return false;
return true;
}
static List prioritizeList(Collection c, List prioritizer) {
List l = new ArrayList();
Set set = asSet(c);
for (A a : prioritizer) {
if (set.contains(a)) {
set.remove(a);
l.add(a);
}
}
l.addAll(set);
return l;
}
static final boolean loadPageThroughProxy_enabled = false;
static String loadPageThroughProxy(String url) {
return null;
}
static void multiMapPut(Map > map, A a, B b) {
List l = map.get(a);
if (l == null)
map.put(a, l = new ArrayList());
l.add(b);
}
// extended over Class.isInstance() to handle primitive types
static boolean isInstanceX(Class type, Object arg) {
if (type == boolean.class) return arg instanceof Boolean;
if (type == int.class) return arg instanceof Integer;
if (type == long.class) return arg instanceof Long;
if (type == float.class) return arg instanceof Float;
if (type == short.class) return arg instanceof Short;
if (type == char.class) return arg instanceof Character;
if (type == byte.class) return arg instanceof Byte;
if (type == double.class) return arg instanceof Double;
return type.isInstance(arg);
}
static String singleFieldName(Class c) {
Set l = listFields(c);
if (l(l) != 1)
throw fail("No single field found in " + c + " (have " + n(l(l), "fields") + ")");
return first(l);
}
static String formatXYZ_appendRest(String pattern, List args) {
List tok = javaTokC(pattern);
List restArgs = cloneList(args);
for (int idx : (List) reverseSorted(map("formatXYZ_varToIndex_maybeQuoted", tok)))
remove(restArgs, idx-1);
return join(" ", concatLists(
ll(formatXYZ(pattern, args)),
restArgs));
}
static long sysDone(String desc, long startTime, int minPrint) {
return done2(startTime, desc, minPrint);
}
static long sysDone(long startTime, String desc, int minPrint) {
return done2(startTime, desc, minPrint);
}
static long sysDone(long startTime, String desc) {
return done2(startTime, desc);
}
static long sysDone(String desc, long startTime) {
return done2(desc, startTime);
}
static long sysDone(long startTime) {
return done2(startTime);
}
static Object nuObject(String className, Object... args) { try {
return nuObject(Class.forName(className), args);
} catch (Exception __e) { throw rethrow(__e); } }
// too ambiguous - maybe need to fix some callers
/*static O nuObject(O realm, S className, O... args) {
ret nuObject(_getClass(realm, className), args);
}*/
static A nuObject(Class c, Object... args) { try {
Constructor m = nuObject_findConstructor(c, args);
m.setAccessible(true);
return (A) m.newInstance(args);
} catch (Exception __e) { throw rethrow(__e); } }
static Constructor nuObject_findConstructor(Class c, Object... args) {
for (Constructor m : c.getDeclaredConstructors()) {
if (!nuObject_checkArgs(m.getParameterTypes(), args, false))
continue;
return m;
}
throw new RuntimeException("Constructor " + c.getName() + getClasses(args) + " not found");
}
static boolean nuObject_checkArgs(Class[] types, Object[] args, boolean debug) {
if (types.length != args.length) {
if (debug)
System.out.println("Bad parameter length: " + args.length + " vs " + types.length);
return false;
}
for (int i = 0; i < types.length; i++)
if (!(args[i] == null || isInstanceX(types[i], args[i]))) {
if (debug)
System.out.println("Bad parameter " + i + ": " + args[i] + " vs " + types[i]);
return false;
}
return true;
}
static List collect(Collection c, String field) {
return collectField(c, field);
}
static void sleepSeconds(double s) {
if (s > 0) sleep(round(s*1000));
}
static Object callOpt(Object o) {
if (o == null) return null;
return callF(o);
}
static Object callOpt(Object o, String method, Object... args) {
try {
if (o == null) return null;
if (o instanceof Class) {
Method m = callOpt_findStaticMethod((Class) o, method, args, false);
if (m == null) return null;
m.setAccessible(true);
return m.invoke(null, args);
} else {
Method m = callOpt_findMethod(o, method, args, false);
if (m == null) return null;
m.setAccessible(true);
return m.invoke(o, args);
}
} catch (Exception e) {
throw new RuntimeException(e);
}
}
static Method callOpt_findStaticMethod(Class c, String method, Object[] args, boolean debug) {
Class _c = c;
while (c != null) {
for (Method m : c.getDeclaredMethods()) {
if (debug)
System.out.println("Checking method " + m.getName() + " with " + m.getParameterTypes().length + " parameters");;
if (!m.getName().equals(method)) {
if (debug) System.out.println("Method name mismatch: " + method);
continue;
}
if ((m.getModifiers() & Modifier.STATIC) == 0 || !callOpt_checkArgs(m, args, debug))
continue;
return m;
}
c = c.getSuperclass();
}
return null;
}
static Method callOpt_findMethod(Object o, String method, Object[] args, boolean debug) {
Class c = o.getClass();
while (c != null) {
for (Method m : c.getDeclaredMethods()) {
if (debug)
System.out.println("Checking method " + m.getName() + " with " + m.getParameterTypes().length + " parameters");;
if (m.getName().equals(method) && callOpt_checkArgs(m, args, debug))
return m;
}
c = c.getSuperclass();
}
return null;
}
private static boolean callOpt_checkArgs(Method m, Object[] args, boolean debug) {
Class>[] types = m.getParameterTypes();
if (types.length != args.length) {
if (debug)
System.out.println("Bad parameter length: " + args.length + " vs " + types.length);
return false;
}
for (int i = 0; i < types.length; i++)
if (!(args[i] == null || isInstanceX(types[i], args[i]))) {
if (debug)
System.out.println("Bad parameter " + i + ": " + args[i] + " vs " + types[i]);
return false;
}
return true;
}
static boolean hasBot(String searchPattern) {
DialogIO io = findBot(searchPattern);
if (io != null) {
io.close();
return true;
} else
return false;
}
static final WeakHashMap> getOpt_cache = new WeakHashMap();
static final HashMap getOpt_special = new HashMap(); // just a marker
static {
getOpt_cache.put(Class.class, getOpt_special);
getOpt_cache.put(String.class, getOpt_special);
}
static Object getOpt_cached(Object o, String field) { try {
if (o == null) return null;
Class c = o.getClass();
HashMap map;
synchronized(getOpt_cache) {
map = getOpt_cache.get(c);
if (map == null)
map = getOpt_makeCache(c);
}
if (map == getOpt_special) {
if (o instanceof Class)
return getOpt((Class) o, field);
/*if (o instanceof S)
ret getOpt(getBot((S) o), field);*/
if (o instanceof Map)
return ((Map) o).get(field);
}
Field f = map.get(field);
if (f != null) return f.get(o);
if (o instanceof DynamicObject)
return ((DynamicObject) o).fieldValues.get(field);
return null;
} catch (Exception __e) { throw rethrow(__e); } }
// used internally - we are in synchronized block
static HashMap getOpt_makeCache(Class c) {
HashMap map;
if (isSubtypeOf(c, Map.class))
map = getOpt_special;
else {
map = new HashMap();
Class _c = c;
do {
for (Field f : _c.getDeclaredFields()) {
f.setAccessible(true);
String name = f.getName();
if (!map.containsKey(name))
map.put(name, f);
}
_c = _c.getSuperclass();
} while (_c != null);
}
getOpt_cache.put(c, map);
return map;
}
static long sysNow() {
return System.nanoTime()/1000000;
}
static BigInteger bigint(String s) {
return new BigInteger(s);
}
static BigInteger bigint(long l) {
return BigInteger.valueOf(l);
}
static Android3 methodsBot2(String name, final Object receiver, final List exposedMethods) {
return methodsBot2(name, receiver, exposedMethods, null);
}
static Android3 methodsBot2(String name, final Object receiver, final List exposedMethods, final Lock lock) {
Android3 android = new Android3();
android.greeting = name;
android.console = false;
android.responder = new Responder() {
String answer(String s, List history) {
return exposeMethods2(receiver, s, exposedMethods, lock);
}
};
return makeBot(android);
}
static A or(A a, A b) {
return a != null ? a : b;
}
static String makeNewID(String id) {
return empty(id) || eq(id, "?") ? aGlobalID() : id;
}
static void smartSet(Field f, Object o, Object value) throws Exception {
f.setAccessible(true);
// take care of common case (long to int)
if (f.getType() == int.class && value instanceof Long)
value = ((Long) value).intValue();
try {
f.set(o, value);
} catch (Exception e) {
try {
if (f.getType() == Concept.Ref.class) {
f.set(o, ((Concept) o).new Ref((Concept) value));
return;
}
if (o instanceof Concept.Ref) {
f.set(o, ((Concept.Ref) o).get());
return;
}
} catch (Throwable _e) {}
throw e;
}
}
static void revalidateFrame(Component c) {
revalidate(getFrame(c));
}
static boolean structure_showTiming, structure_checkTokenCount;
static String structure(Object o) {
return structure(o, new structure_Data());
}
static String structure(Object o, structure_Data d) {
StringWriter sw = new StringWriter();
d.out = new PrintWriter(sw);
structure_go(o, d);
String s = str(sw);
if (structure_checkTokenCount) {
print("token count=" + d.n);
assertEquals("token count", l(javaTokC(s)), d.n);
}
return s;
}
static void structure_go(Object o, structure_Data d) {
structure_1(o, d);
while (nempty(d.stack))
popLast(d.stack).run();
}
static void structureToPrintWriter(Object o, PrintWriter out) {
structure_Data d = new structure_Data();
d.out = out;
structure_go(o, d);
}
// leave to false, unless unstructure() breaks
static boolean structure_allowShortening = false;
static class structure_Data {
PrintWriter out;
int stringSizeLimit;
int shareStringsLongerThan = 20;
IdentityHashMap seen = new IdentityHashMap();
BitSet refd = new BitSet();
HashMap strings = new HashMap();
HashSet concepts = new HashSet();
HashMap> fieldsByClass = new HashMap();
Class conceptClass = findClass("Concept");
int n; // token count
List stack = new ArrayList();
// append single token
structure_Data append(String token) { out.print(token); ++n; return this; }
structure_Data append(int i) { out.print(i); ++n; return this; }
// append multiple tokens
structure_Data append(String token, int tokCount) { out.print(token); n += tokCount; return this; }
// extend last token
structure_Data app(String token) { out.print(token); return this; }
structure_Data app(int i) { out.print(i); return this; }
}
static void structure_1(final Object o, final structure_Data d) {
final PrintWriter out = d.out;
if (o == null) { d.append("null"); return; }
Class c = o.getClass();
String name = c.getName();
String dynName = shortDynamicClassName(o);
boolean concept = d.conceptClass != null && d.conceptClass.isInstance(o);
List lFields = d.fieldsByClass.get(c);
if (lFields == null) {
// these are never back-referenced (for readability)
if (o instanceof Number) {
if (o instanceof Integer) { int i = ((Integer) o).intValue(); out.print(i); d.n += i < 0 ? 2 : 1; return; }
if (o instanceof Long) { long l = ((Long) o).longValue(); out.print(l); out.print("L"); d.n += l < 0 ? 2 : 1; return; }
if (o instanceof Float) { d.append("fl ", 2); quoteToPrintWriter(str(o), out); return; }
if (o instanceof Double) { d.append("d(", 3); quoteToPrintWriter(str(o), out); d.append(")"); return; }
if (o instanceof BigInteger) { out.print("bigint("); out.print(o); out.print(")"); d.n += ((BigInteger) o).signum() < 0 ? 5 : 4; return; }
}
if (o instanceof Boolean) {
d.append(((Boolean) o).booleanValue() ? "t" : "f"); return;
}
if (o instanceof Character) {
d.append(quoteCharacter((Character) o)); return;
}
if (o instanceof File) {
d.append("File ").append(quote(((File) o).getPath())); return;
}
// referencable objects follow
Integer ref = d.seen.get(o);
if (o instanceof String && ref == null)
ref = d.strings.get((String) o);
if (ref != null) {
d.refd.set(ref);
d.append("t").app(ref); return;
}
ref = d.n; //d.seen.size()+1;
if (d.shareStringsLongerThan < Integer.MAX_VALUE || !(o instanceof String))
d.seen.put(o, ref);
//d.append("m").app(ref).app(" "); // marker
if (o instanceof String) {
String s = d.stringSizeLimit != 0 ? shorten((String) o, d.stringSizeLimit) : (String) o;
if (l(s) >= d.shareStringsLongerThan)
d.strings.put(s, ref);
quoteToPrintWriter(s, out); d.n++; return;
}
if (o instanceof HashSet) {
d.append("hashset ");
structure_1(new ArrayList((Set) o), d);
return;
}
if (o instanceof TreeSet) {
d.append("treeset ");
structure_1(new ArrayList((Set) o), d);
return;
}
if (o instanceof Collection && neq(name, "main$Concept$RefL")) {
d.append("[");
final int l = d.n;
final Iterator it = ((Collection) o).iterator();
d.stack.add(new Runnable() { public void run() { try {
if (!it.hasNext())
d.append("]");
else {
d.stack.add(this);
if (d.n != l) d.append(", ");
structure_1(it.next(), d);
}
} catch (Exception __e) { throw rethrow(__e); } } public String toString() { return "if (!it.hasNext())\r\n d.append(\"]\");\r\n else {\r\n d.stack...."; }});
return;
}
if (o instanceof Map) {
if (o instanceof LinkedHashMap) d.append("lhm");
else if (o instanceof HashMap) d.append("hm");
d.append("{");
final int l = d.n;
final Iterator it = ((Map) o).entrySet().iterator();
d.stack.add(new Runnable() {
boolean v;
Map.Entry e;
public void run() {
if (v) {
d.append("=");
v = false;
d.stack.add(this);
structure_1(e.getValue(), d);
} else {
if (!it.hasNext())
d.append("}");
else {
e = (Map.Entry) it.next();
v = true;
d.stack.add(this);
if (d.n != l) d.append(", ");
structure_1(e.getKey(), d);
}
}
}
});
return;
}
if (c.isArray()) {
if (o instanceof byte[]) {
d.append("ba ").append(quote(bytesToHex((byte[]) o))); return;
}
final int n = Array.getLength(o);
if (o instanceof boolean[]) {
String hex = boolArrayToHex((boolean[]) o);
int i = l(hex);
while (i > 0 && hex.charAt(i-1) == '0' && hex.charAt(i-2) == '0') i -= 2;
d.append("boolarray ").append(n).app(" ").append(quote(substring(hex, 0, i))); return;
}
String atype = "array", sep = ", ";
if (o instanceof int[]) {
//ret "intarray " + quote(intArrayToHex((int[]) o));
atype = "intarray";
sep = " ";
}
d.append(atype).append("{");
d.stack.add(new Runnable() {
int i;
public void run() {
if (i >= n)
d.append("}");
else {
d.stack.add(this);
if (i > 0) d.append(", ");
structure_1(Array.get(o, i++), d);
}
}
});
return;
}
if (o instanceof Class) {
d.append("class(", 2).append(quote(((Class) o).getName())).append(")"); return;
}
if (o instanceof Throwable) {
d.append("exception(", 2).append(quote(((Throwable) o).getMessage())).append(")"); return;
}
if (o instanceof BitSet) {
BitSet bs = (BitSet) o;
d.append("bitset{", 2);
int l = d.n;
for (int i = bs.nextSetBit(0); i >= 0; i = bs.nextSetBit(i+1)) {
if (d.n != l) d.append(", ");
d.append(i);
}
d.append("}"); return;
}
// Need more cases? This should cover all library classes...
if (name.startsWith("java.") || name.startsWith("javax.")) {
d.append("j ").append(quote(str(o))); return; // Hm. this is not unstructure-able
}
if (o instanceof Lisp) {
d.append("l(", 2);
final Lisp lisp = (Lisp) ( o);
structure_1(lisp.head, d);
final Iterator it = lisp.args.iterator();
d.stack.add(new Runnable() { public void run() { try {
if (!it.hasNext())
d.append(")");
else {
d.stack.add(this);
d.append(", ");
structure_1(it.next(), d);
}
} catch (Exception __e) { throw rethrow(__e); } } public String toString() { return "if (!it.hasNext())\r\n d.append(\")\");\r\n else {\r\n d...."; }});
return;
}
/*if (name.equals("main$Lisp")) {
fail("lisp not supported right now");
}*/
if (concept && !d.concepts.contains(dynName)) {
d.concepts.add(dynName);
d.append("c ");
}
// serialize an object with fields.
// first, collect all fields and values in fv.
TreeSet fields = new TreeSet(new Comparator() {
public int compare(Field a, Field b) {
return stdcompare(a.getName(), b.getName());
}
});
while (c != Object.class) {
for (Field field : getDeclaredFields_cached(c)) {
if ((field.getModifiers() & (Modifier.STATIC | Modifier.TRANSIENT)) != 0)
continue;
String fieldName = field.getName();
fields.add(field);
// put special cases here...
}
c = c.getSuperclass();
}
lFields = asList(fields);
// Render this$1 first because unstructure needs it for constructor call.
for (int i = 0; i < l(lFields); i++) {
Field f = lFields.get(i);
if (f.getName().equals("this$1")) {
lFields.remove(i);
lFields.add(0, f);
break;
}
}
d.fieldsByClass.put(c, lFields);
}
LinkedHashMap fv = new LinkedHashMap();
for (Field f : lFields) {
Object value;
try {
value = f.get(o);
} catch (Exception e) {
value = "?";
}
if (value != null)
fv.put(f.getName(), value);
}
String shortName = dropPrefix("main$", name);
// Now we have fields & values. Process fieldValues if it's a DynamicObject.
// omit field "className" if equal to class's name
if (concept && eq(fv.get("className"), shortName))
fv.remove("className");
if (o instanceof DynamicObject) {
fv.putAll((Map) fv.get("fieldValues"));
fv.remove("fieldValues");
shortName = dynName;
fv.remove("className");
}
String singleField = fv.size() == 1 ? first(fv.keySet()) : null;
d.append(shortName);
final int l = d.n;
final Iterator it = fv.entrySet().iterator();
d.stack.add(new Runnable() { public void run() { try {
if (!it.hasNext()) {
if (d.n != l)
d.append(")");
} else {
Map.Entry e = (Map.Entry) it.next();
d.append(d.n == l ? "(" : ", ");
d.append((String) e.getKey()).append("=");
d.stack.add(this);
structure_1(e.getValue(), d);
}
} catch (Exception __e) { throw rethrow(__e); } } public String toString() { return "if (!it.hasNext()) {\r\n if (d.n != l)\r\n d.append(\")\");\r\n } else {\r..."; }});
}
static boolean loadAIConcepts_alwaysFromDisk;
static List loadAIConcepts() {
Concepts c = new Concepts("#1006463");
if (loadAIConcepts_alwaysFromDisk) c.loadFromDisk(); else c.load();
return list(c, AIConcept.class);
}
static String standardCredentialsPass() {
return trim(loadTextFile(new File(userHome(), ".tinybrain/userpass")));
}
static int isAndroid_flag;
static boolean isAndroid() {
if (isAndroid_flag == 0)
isAndroid_flag = System.getProperty("java.vendor").toLowerCase().indexOf("android") >= 0 ? 1 : -1;
return isAndroid_flag > 0;
}
static String dumpConcepts2(List concepts) {
List l = new ArrayList();
for (AIConcept c : concepts) {
List x = ll(c.globalID, c.name);
addIfNempty(x, c.comment);
l.add(" " + struct(x));
}
return print("[[\n" + join(",\n", l) + "\n]]");
}
// This is for main classes that are all static.
// (We don't go to base classes.)
static Set listFields(Object c) {
TreeSet fields = new TreeSet();
for (Field f : _getClass(c).getDeclaredFields())
fields.add(f.getName());
return fields;
}
static String quote(Object o) {
if (o == null) return "null";
return quote(str(o));
}
static String quote(String s) {
if (s == null) return "null";
StringBuilder out = new StringBuilder((int) (l(s)*1.5+2));
quote_impl(s, out);
return out.toString();
}
static void quote_impl(String s, StringBuilder out) {
out.append('"');
int l = s.length();
for (int i = 0; i < l; i++) {
char c = s.charAt(i);
if (c == '\\' || c == '"')
out.append('\\').append(c);
else if (c == '\r')
out.append("\\r");
else if (c == '\n')
out.append("\\n");
else
out.append(c);
}
out.append('"');
}
static String quoteCharacter(char c) {
if (c == '\'') return "'\\''";
if (c == '\\') return "'\\\\'";
if (c == '\r') return "'\\r'";
if (c == '\n') return "'\\n'";
if (c == '\t') return "'\\t'";
return "'" + c + "'";
}
static String shortDynamicClassName(Object o) {
if (o instanceof DynamicObject && ((DynamicObject) o).className != null)
return ((DynamicObject) o).className;
return shortClassName(o);
}
static HashSet litset(A... items) {
return lithashset(items);
}
static Object cget(Object c, String field) {
Object o = getOpt(c, field);
if (o instanceof Concept.Ref) return ((Concept.Ref) o).get();
return o;
}
static String dropSuffixIgnoreCase(String suffix, String s) {
return ewic(s, suffix) ? s.substring(0, l(s)-l(suffix)) : s;
}
static Object unstructure(String text) {
return unstructure(text, false);
}
static Object unstructure(String text, final boolean allDynamic) {
return unstructure(text, allDynamic, null);
}
static int structure_internStringsLongerThan = 50;
static int unstructure_tokrefs; // stats
abstract static class unstructure_Receiver {
abstract void set(Object o);
}
// classFinder: func(name) -> class (optional)
static Object unstructure(String text, boolean allDynamic,
Object classFinder) {
if (text == null) return null;
return unstructure_tok(javaTokC_iterator(text), allDynamic, classFinder);
}
static Object unstructure_reader(BufferedReader reader) {
return unstructure_tok(javaTokC_onReader(reader), false, null);
}
static Object unstructure_tok(final Producer tok, final boolean allDynamic, final Object classFinder) {
final boolean debug = unstructure_debug;
final class X {
int i = -1;
HashMap refs = new HashMap();
HashMap tokrefs = new HashMap();
HashSet concepts = new HashSet();
HashMap classesMap = new HashMap();
List stack = new ArrayList();
String curT;
// look at current token
String t() {
return curT;
}
// get current token, move to next
String tpp() {
String t = curT;
consume();
return t;
}
void parse(final unstructure_Receiver out) {
String t = t();
int refID = 0;
if (structure_isMarker(t, 0, l(t))) {
refID = parseInt(t.substring(1));
consume();
}
final int _refID = refID;
// if (debug) print("parse: " + quote(t));
final int tokIndex = i;
parse_inner(refID, tokIndex, new unstructure_Receiver() {
void set(Object o) {
if (_refID != 0)
refs.put(_refID, o);
if (o != null)
tokrefs.put(tokIndex, o);
out.set(o);
}
});
}
void parse_inner(int refID, int tokIndex, final unstructure_Receiver out) {
String t = t();
// if (debug) print("parse_inner: " + quote(t));
Class c = classesMap.get(t);
if (c == null) {
if (t.startsWith("\"")) {
String s = internIfLongerThan(unquote(tpp()), structure_internStringsLongerThan);
out.set(s); return;
}
if (t.startsWith("'")) {
out.set(unquoteCharacter(tpp())); return;
}
if (t.equals("bigint")) {
out.set(parseBigInt()); return;
}
if (t.equals("d")) {
out.set(parseDouble()); return;
}
if (t.equals("fl")) {
out.set(parseFloat()); return;
}
if (t.equals("false") || t.equals("f")) {
consume(); out.set(false); return;
}
if (t.equals("true") || t.equals("t")) {
consume(); out.set(true); return;
}
if (t.equals("-")) {
consume();
t = tpp();
out.set(isLongConstant(t) ? (Object) (-parseLong(t)) : (Object) (-parseInt(t))); return;
}
if (isInteger(t) || isLongConstant(t)) {
consume();
//if (debug) print("isLongConstant " + quote(t) + " => " + isLongConstant(t));
if (isLongConstant(t)) {
out.set(parseLong(t)); return;
}
long l = parseLong(t);
boolean isInt = l == (int) l;
if (debug)
print("l=" + l + ", isInt: " + isInt);
out.set(isInt ? (Object) new Integer((int) l) : (Object) new Long(l)); return;
}
if (t.equals("File")) {
consume();
File f = new File(unquote(tpp()));
out.set(f); return;
}
if (t.startsWith("r") && isInteger(t.substring(1))) {
consume();
int ref = Integer.parseInt(t.substring(1));
Object o = refs.get(ref);
if (o == null)
print("Warning: unsatisfied back reference " + ref);
out.set(o); return;
}
if (t.startsWith("t") && isInteger(t.substring(1))) {
consume();
int ref = Integer.parseInt(t.substring(1));
Object o = tokrefs.get(ref);
if (o == null)
print("Warning: unsatisfied token reference " + ref);
out.set(o); return;
}
if (t.equals("hashset")) {
parseHashSet(out); return;
}
if (t.equals("treeset")) {
parseTreeSet(out); return;
}
if (eqOneOf(t, "hashmap", "hm")) {
consume();
parseMap(new HashMap(), out);
return;
}
if (t.equals("lhm")) {
consume();
parseMap(new LinkedHashMap(), out);
return;
}
if (t.equals("{")) {
parseMap(out); return;
}
if (t.equals("[")) {
parseList(out); return;
}
if (t.equals("bitset")) {
parseBitSet(out); return;
}
if (t.equals("array") || t.equals("intarray")) {
parseArray(out); return;
}
if (t.equals("ba")) {
consume();
String hex = unquote(tpp());
out.set(hexToBytes(hex)); return;
}
if (t.equals("boolarray")) {
consume();
int n = parseInt(tpp());
String hex = unquote(tpp());
out.set(boolArrayFromBytes(hexToBytes(hex), n)); return;
}
if (t.equals("class")) {
out.set(parseClass()); return;
}
if (t.equals("l")) {
parseLisp(out); return;
}
if (t.equals("null")) {
consume(); out.set(null); return;
}
if (eq(t, "c")) {
consume("c");
t = t();
assertTrue(isJavaIdentifier(t));
concepts.add(t);
}
}
if (eq(t, "j")) {
consume("j");
out.set(parseJava()); return;
}
if (c == null && !isJavaIdentifier(t))
throw new RuntimeException("Unknown token " + (i+1) + ": " + t);
// any other class name
if (c == null) {
// First, find class
if (allDynamic) c = null;
else c = classFinder != null ? (Class) callF(classFinder, t) : findClass(t);
if (c != null)
classesMap.put(t, c);
}
// Check if it has an outer reference
consume();
boolean hasBracket = eq(t(), "(");
if (hasBracket) consume();
boolean hasOuter = hasBracket && eq(t(), "this$1");
DynamicObject dO = null;
Object o = null;
if (c != null)
o = hasOuter ? nuStubInnerObject(c) : nuEmptyObject(c);
else {
if (concepts.contains(t) && (c = findClass("Concept")) != null)
o = dO = (DynamicObject) nuEmptyObject(c);
else
dO = new DynamicObject();
dO.className = t;
if (debug) print("Made dynamic object " + t + " " + shortClassName(dO));
}
// Save in references list early because contents of object
// might link back to main object
if (refID != 0)
refs.put(refID, o != null ? o : dO);
tokrefs.put(tokIndex, o != null ? o : dO);
// NOW parse the fields!
final LinkedHashMap fields = new LinkedHashMap(); // preserve order
final Object _o = o;
final DynamicObject _dO = dO;
if (hasBracket) {
stack.add(new Runnable() { public void run() { try {
if (eq(t(), ")")) {
consume(")");
objRead(_o, _dO, fields);
out.set(_o != null ? _o : _dO);
} else {
final String key = unquote(tpp());
consume("=");
stack.add(this);
parse(new unstructure_Receiver() {
void set(Object value) {
fields.put(key, value);
if (eq(t(), ",")) consume();
}
});
}
} catch (Exception __e) { throw rethrow(__e); } } public String toString() { return "if (eq(t(), \")\")) {\r\n consume(\")\");\r\n objRead(_o, _dO, fie..."; }});
} else {
objRead(o, dO, fields);
out.set(o != null ? o : dO);
}
}
void objRead(Object o, DynamicObject dO, Map fields) {
if (o != null)
if (dO != null) {
if (debug)
printStructure("setOptAllDyn", fields);
setOptAllDyn(dO, fields);
} else
setOptAll(o, fields);
else for (String field : keys(fields))
dO.fieldValues.put(field.intern(), fields.get(field));
if (o != null)
pcallOpt_noArgs(o, "_doneLoading");
}
void parseSet(final Set set, final unstructure_Receiver out) {
parseList(new unstructure_Receiver() {
void set(Object o) {
set.addAll((List) o);
out.set(set);
}
});
}
void parseLisp(final unstructure_Receiver out) {
consume("l");
consume("(");
final ArrayList list = new ArrayList();
stack.add(new Runnable() { public void run() { try {
if (eq(t(), ")")) {
consume(")");
out.set(newObject("main$Lisp", (String) list.get(0), subList(list, 1)));
} else {
stack.add(this);
parse(new unstructure_Receiver() {
void set(Object o) {
list.add(o);
if (eq(t(), ",")) consume();
}
});
}
} catch (Exception __e) { throw rethrow(__e); } } public String toString() { return "if (eq(t(), \")\")) {\r\n consume(\")\");\r\n out.set(newObject(\"main$..."; }});
}
void parseBitSet(final unstructure_Receiver out) {
consume("bitset");
consume("{");
final BitSet bs = new BitSet();
stack.add(new Runnable() { public void run() { try {
if (eq(t(), "}")) {
consume("}");
out.set(bs);
} else {
stack.add(this);
parse(new unstructure_Receiver() {
void set(Object o) {
bs.set((Integer) o);
if (eq(t(), ",")) consume();
}
});
}
} catch (Exception __e) { throw rethrow(__e); } } public String toString() { return "if (eq(t(), \"}\")) {\r\n consume(\"}\");\r\n out.set(bs);\r\n } ..."; }});
}
void parseList(final unstructure_Receiver out) {
consume("[");
final ArrayList list = new ArrayList();
stack.add(new Runnable() { public void run() { try {
if (eq(t(), "]")) {
consume("]");
out.set(list);
} else {
stack.add(this);
parse(new unstructure_Receiver() {
void set(Object o) {
//if (debug) print("List element type: " + getClassName(o));
list.add(o);
if (eq(t(), ",")) consume();
}
});
}
} catch (Exception __e) { throw rethrow(__e); } } public String toString() { return "if (eq(t(), \"]\")) {\r\n consume(\"]\");\r\n out.set(list);\r\n ..."; }});
}
void parseArray(final unstructure_Receiver out) {
final String type = tpp();
consume("{");
final List list = new ArrayList();
stack.add(new Runnable() { public void run() { try {
if (eq(t(), "}")) {
consume("}");
out.set(type.equals("intarray") ? toIntArray(list) : list.toArray());
} else {
stack.add(this);
parse(new unstructure_Receiver() {
void set(Object o) {
list.add(o);
if (eq(t(), ",")) consume();
}
});
}
} catch (Exception __e) { throw rethrow(__e); } } public String toString() { return "if (eq(t(), \"}\")) {\r\n consume(\"}\");\r\n out.set(type.equals(\"int..."; }});
}
Object parseClass() {
consume("class");
consume("(");
String name = unquote(tpp());
consume(")");
name = dropPrefix("main$", name);
Class c = allDynamic ? null : classFinder != null ? (Class) callF(classFinder, name) : findClass(name);
if (c != null) return c;
DynamicObject dO = new DynamicObject();
dO.className = "java.lang.Class";
dO.fieldValues.put("name", name);
return dO;
}
Object parseBigInt() {
consume("bigint");
consume("(");
String val = tpp();
if (eq(val, "-"))
val = "-" + tpp();
consume(")");
return new BigInteger(val);
}
Object parseDouble() {
consume("d");
consume("(");
String val = unquote(tpp());
consume(")");
return Double.parseDouble(val);
}
Object parseFloat() {
consume("fl");
String val;
if (eq(t(), "(")) {
consume("(");
val = unquote(tpp());
consume(")");
} else {
val = unquote(tpp());
}
return Float.parseFloat(val);
}
void parseHashSet(unstructure_Receiver out) {
consume("hashset");
parseSet(new HashSet(), out);
}
void parseTreeSet(unstructure_Receiver out) {
consume("treeset");
parseSet(new TreeSet(), out);
}
void parseMap(unstructure_Receiver out) {
parseMap(new TreeMap(), out);
}
Object parseJava() {
String j = unquote(tpp());
Matches m = new Matches();
if (jmatch("java.awt.Color[r=*,g=*,b=*]", j, m))
return nuObject("java.awt.Color", parseInt(m.unq(0)), parseInt(m.unq(1)), parseInt(m.unq(2)));
else throw fail("Unknown Java object: " + j);
}
void parseMap(final Map map, final unstructure_Receiver out) {
consume("{");
stack.add(new Runnable() {
boolean v;
Object key;
public void run() {
if (v) {
v = false;
stack.add(this);
consume("=");
parse(new unstructure_Receiver() {
void set(Object value) {
map.put(key, value);
if (debug)
print("parseMap: Got value " + getClassName(value) + ", next token: " + quote(t()));
if (eq(t(), ",")) consume();
}
});
} else {
if (eq(t(), "}")) {
consume("}");
out.set(map);
} else {
v = true;
stack.add(this);
parse(new unstructure_Receiver() {
void set(Object o) {
key = o;
}
});
}
} // if v else
} // run()
});
}
/*void parseSub(unstructure_Receiver out) {
int n = l(stack);
parse(out);
while (l(stack) > n)
stack
}*/
void consume() { curT = tok.next(); ++i; }
void consume(String s) {
if (!eq(t(), s)) {
/*S prevToken = i-1 >= 0 ? tok.get(i-1) : "";
S nextTokens = join(tok.subList(i, Math.min(i+2, tok.size())));
fail(quote(s) + " expected: " + prevToken + " " + nextTokens + " (" + i + "/" + tok.size() + ")");*/
throw fail(quote(s) + " expected, got " + quote(t()));
}
consume();
}
void parse_x(unstructure_Receiver out) {
consume(); // get first token
parse(out);
while (nempty(stack))
popLast(stack).run();
}
}
final Var v = new Var();
X x = new X();
x.parse_x(new unstructure_Receiver() {
void set(Object o) { v.set(o); }
});
unstructure_tokrefs = x.tokrefs.size();
return v.get();
}
static boolean unstructure_debug;
static void sleep(long ms) {
ping();
if (ms < 0) return;
// allow spin locks
if (isAWTThread() && ms > 100) throw fail("Should not sleep on AWT thread");
try {
Thread.sleep(ms);
} catch (Exception e) { throw new RuntimeException(e); }
}
static void sleep() { try {
print("Sleeping.");
sleepQuietly();
} catch (Exception __e) { throw rethrow(__e); } }
static int min(int a, int b) {
return Math.min(a, b);
}
static long min(long a, long b) {
return Math.min(a, b);
}
static float min(float a, float b) { return Math.min(a, b); }
static float min(float a, float b, float c) { return min(min(a, b), c); }
static double min(double a, double b) {
return Math.min(a, b);
}
static double min(double[] c) {
double x = Double.MAX_VALUE;
for (double d : c) x = Math.min(x, d);
return x;
}
static float min(float[] c) {
float x = Float.MAX_VALUE;
for (float d : c) x = Math.min(x, d);
return x;
}
static byte min(byte[] c) {
byte x = 127;
for (byte d : c) if (d < x) x = d;
return x;
}
static short min(short[] c) {
short x = 0x7FFF;
for (short d : c) if (d < x) x = d;
return x;
}
static Class __javax;
static Class getJavaX() {
return __javax;
}
static List collectField(Collection c, String field) {
List l = new ArrayList();
for (Object a : c)
l.add(getOpt(a, field));
return l;
}
static Map findBot_cache = synchroHashMap();
static int findBot_timeout = 5000;
static DialogIO findBot(String searchPattern) {
// first split off sub-bot suffix
String subBot = null;
int i = searchPattern.indexOf('/');
if (i >= 0 && (isJavaIdentifier(searchPattern.substring(0, i)) || isInteger(searchPattern.substring(0, i)))) {
subBot = searchPattern.substring(i+1);
searchPattern = searchPattern.substring(0, i);
if (!isInteger(searchPattern))
searchPattern = "Multi-Port at " + searchPattern + ".";
}
// assume it's a port if it's an integer
if (isInteger(searchPattern))
return talkToSubBot(subBot, talkTo(parseInt(searchPattern)));
if (eq(searchPattern, "remote"))
return talkToSubBot(subBot, talkTo("second.tinybrain.de", 4999));
Integer port = findBot_cache.get(searchPattern);
if (port != null) try {
DialogIO io = talkTo("localhost", port);
io.waitForLine(/*findBot_timeout*/); // TODO: implement
String line = io.readLineNoBlock();
if (indexOfIgnoreCase(line, searchPattern) == 0) {
call(io, "pushback", line); // put hello string back in
return talkToSubBot(subBot, io);
}
} catch (Exception e) {
e.printStackTrace();
}
List bots = quickBotScan();
// find top-level bots
for (ProgramScan.Program p : bots) {
if (indexOfIgnoreCase(p.helloString, searchPattern) == 0) { // strict matching - start of hello string only, but case-insensitive
findBot_cache.put(searchPattern, p.port);
return talkToSubBot(subBot, talkTo("localhost", p.port));
}
}
// find sub-bots
for (ProgramScan.Program p : bots) {
String botName = firstPartOfHelloString(p.helloString);
boolean isVM = startsWithIgnoreCase(p.helloString, "This is a JavaX VM.");
boolean shouldRecurse = startsWithIgnoreCase(botName, "Multi-Port") || isVM;
if (shouldRecurse) try {
Map subBots = (Map) unstructure(sendToLocalBotQuietly(p.port, "list bots"));
for (Number vport : subBots.keySet()) {
String name = subBots.get(vport);
if (startsWithIgnoreCase(name, searchPattern))
return talkToSubBot(vport.longValue(), talkTo("localhost", p.port));
}
} catch (Exception e) { e.printStackTrace(); }
}
return null;
}
static Throwable getInnerException(Throwable e) {
while (e.getCause() != null)
e = e.getCause();
return e;
}
static String lispForwardRaw(String relation, String argument) {
return first(followForwardRelation_raw(relation, argument));
}
static String lispForwardRaw(String relation, Lisp argument) {
return first(followForwardRelation_raw(relation, argument));
}
static HashMap getDeclaredFields_cache = new HashMap();
static Field[] getDeclaredFields_cached(Class c) {
Field[] fields;
synchronized(getDeclaredFields_cache) {
fields = getDeclaredFields_cache.get(c);
if (fields == null) {
getDeclaredFields_cache.put(c, fields = c.getDeclaredFields());
for (Field f : fields)
f.setAccessible(true);
}
}
return fields;
}
static String boolArrayToHex(boolean[] a) {
return bytesToHex(boolArrayToBytes(a));
}
static A setToolTipText(final A c, final Object toolTip) {
if (c == null) return null;
{ swingAndWait(new Runnable() { public void run() { try {
String s = nullIfEmpty(str(toolTip));
if (neq(s, c.getToolTipText()))
c.setToolTipText(s);
} catch (Exception __e) { throw rethrow(__e); } } public String toString() { return "String s = nullIfEmpty(str(toolTip));\r\n if (neq(s, c.getToolTipText()))\r\n ..."; }}); }
return c;
}
static String getStackTrace(Throwable throwable) {
StringWriter writer = new StringWriter();
throwable.printStackTrace(new PrintWriter(writer));
return writer.toString();
}
static int formatXYZ_varToIndex(String t) {
if (l(t) == 1 && eqOneOf(t, "X", "Y", "Z"))
return 1 + charDiff(t.charAt(0), 'X');
else if (l(t) == 2 && t.startsWith("A")) {
char c = t.charAt(1);
if (c >= 'A' && c <= 'Z')
return 4 + charDiff(t.charAt(1), 'A');
}
return 0;
}
static boolean exposeMethods2_debug;
static String exposeMethods2(Object receiver, String s, List methodNames) {
return exposeMethods2(receiver, s, methodNames, null);
}
static String exposeMethods2(Object receiver, String s, List methodNames,
Lock lock) {
Matches m = new Matches();
if (exposeMethods2_debug) print("Received: " + s);
if (match("call *", s, m)) {
List l;
if (isIdentifier(m.unq(0)))
l = ll(m.unq(0));
else
l = (List) unstructure(m.unq(0)); // we used to have safeUnstructure here
String method = getString(l, 0);
if (!contains(methodNames, method))
throw fail("Method not allowed: " + method);
if (lock != null) lock.lock();
try {
if (exposeMethods2_debug) print("Calling: " + method);
Object o = call(receiver, method, asObjectArray(subList(l, 1)));
if (exposeMethods2_debug) print("Got: " + getClassName(o));
return ok2(structure(o));
} finally {
if (lock != null) lock.unlock();
}
}
if (match("list methods", s))
return ok2(structure(methodNames));
return null;
}
static String aiConceptsProgram() {
return "#1006463";
}
static String wordAtMouse() {
return (String) swing(new Object() { Object get() { try {
Component c = (Component) componentAtMouse_gen();
if (c instanceof JTextComponent) {
JTextComponent tc = (JTextComponent) ( c);
Point d = mouseToComponent(c);
int idx = tc.viewToModel(d);
String text = tc.getText();
return wordAroundIndex(text, idx);
}
return "";
} catch (Exception __e) { throw rethrow(__e); } }
public String toString() { return "Component c = (Component) componentAtMouse_gen();\r\n if (c instanceof JTextCom..."; }});
}
static void revalidate(Component c) {
if (c == null || !c.isShowing()) return;
// magic combo to actually relayout and repaint
c.revalidate();
c.repaint();
}
static String[] drop(int n, String[] a) {
n = Math.min(n, a.length);
String[] b = new String[a.length-n];
System.arraycopy(a, n, b, 0, b.length);
return b;
}
static Object[] drop(int n, Object[] a) {
n = Math.min(n, a.length);
Object[] b = new Object[a.length-n];
System.arraycopy(a, n, b, 0, b.length);
return b;
}
public static File mkdirsForFile(File file) {
File dir = file.getParentFile();
if (dir != null) // is null if file is in current dir
dir.mkdirs();
return file;
}
static Object callJavaX(String method, Object... args) {
return callOpt(getJavaX(), method, args);
}
static void remove(List l, int i) {
if (l != null && i >= 0 && i < l(l))
l.remove(i);
}
static Random random_random = new Random();
static int random(int n) {
return n <= 0 ? 0 : random_random.nextInt(n);
}
static double random(double max) {
return random()*max;
}
static double random() {
return random_random.nextInt(100001)/100000.0;
}
static double random(double min, double max) {
return min+random()*(max-min);
}
// min <= value < max
static int random(int min, int max) {
return min+random(max-min);
}
static A random(List l) {
return oneOf(l);
}
static A random(Collection c) {
return oneOf(asList(c));
}
static void addIfNotNull(Collection l, A a) {
if (a != null)
l.add(a);
}
static List synchroList() {
return Collections.synchronizedList(new ArrayList ());
}
static List synchroList(List l) {
return Collections.synchronizedList(l);
}
static String programID() {
return getProgramID();
}
static String conceptQuote(String s) {
if (isIdentifier(s) || isInteger(s) || isProperlyQuoted(s)) return s;
return quote(s);
}
static ThreadLocal> print_byThread() {
synchronized(print_byThread_lock) {
if (print_byThread == null)
print_byThread = new ThreadLocal();
}
return print_byThread;
}
static boolean containsIgnoreCase(List