source: ThirdParty/mpqc_open/src/bin/mpqc/scan.cc@ 860145

Action_Thermostats Add_AtomRandomPerturbation Add_RotateAroundBondAction Add_SelectAtomByNameAction Adding_Graph_to_ChangeBondActions Adding_MD_integration_tests Adding_StructOpt_integration_tests Automaking_mpqc_open AutomationFragmentation_failures Candidate_v1.6.0 Candidate_v1.6.1 ChangeBugEmailaddress ChangingTestPorts ChemicalSpaceEvaluator Combining_Subpackages Debian_Package_split Debian_package_split_molecuildergui_only Disabling_MemDebug Docu_Python_wait EmpiricalPotential_contain_HomologyGraph_documentation Enable_parallel_make_install Enhance_userguide Enhanced_StructuralOptimization Enhanced_StructuralOptimization_continued Example_ManyWaysToTranslateAtom Exclude_Hydrogens_annealWithBondGraph FitPartialCharges_GlobalError Fix_ChronosMutex Fix_StatusMsg Fix_StepWorldTime_single_argument Fix_Verbose_Codepatterns ForceAnnealing_goodresults ForceAnnealing_oldresults ForceAnnealing_tocheck ForceAnnealing_with_BondGraph ForceAnnealing_with_BondGraph_continued ForceAnnealing_with_BondGraph_continued_betteresults ForceAnnealing_with_BondGraph_contraction-expansion GeometryObjects Gui_displays_atomic_force_velocity IndependentFragmentGrids_IntegrationTest JobMarket_RobustOnKillsSegFaults JobMarket_StableWorkerPool JobMarket_unresolvable_hostname_fix ODR_violation_mpqc_open PartialCharges_OrthogonalSummation PythonUI_with_named_parameters QtGui_reactivate_TimeChanged_changes Recreated_GuiChecks RotateToPrincipalAxisSystem_UndoRedo StoppableMakroAction Subpackage_levmar Subpackage_mpqc_open Subpackage_vmg ThirdParty_MPQC_rebuilt_buildsystem TremoloParser_IncreasedPrecision TremoloParser_MultipleTimesteps Ubuntu_1604_changes stable
Last change on this file since 860145 was 860145, checked in by Frederik Heber <heber@…>, 8 years ago

Merge commit '0b990dfaa8c6007a996d030163a25f7f5fc8a7e7' as 'ThirdParty/mpqc_open'

  • Property mode set to 100644
File size: 48.6 KB
Line 
1#ifdef HAVE_CONFIG_H
2#include <scconfig.h>
3#endif
4#include <iostream>
5#ifdef USING_NAMESPACE_STD
6using namespace std;
7#endif
8
9#line 3 "<stdout>"
10
11#define YY_INT_ALIGNED short int
12
13/* A lexical scanner generated by flex */
14
15#define FLEX_SCANNER
16#define YY_FLEX_MAJOR_VERSION 2
17#define YY_FLEX_MINOR_VERSION 5
18#define YY_FLEX_SUBMINOR_VERSION 31
19#if YY_FLEX_SUBMINOR_VERSION > 0
20#define FLEX_BETA
21#endif
22
23 /* The c++ scanner is a mess. The FlexLexer.h header file relies on the
24 * following macro.
25 */
26 #define yyFlexLexer MPQCInFlexLexer
27
28/* First, we deal with platform-specific or compiler-specific issues. */
29
30/* begin standard C headers. */
31
32/* end standard C headers. */
33
34/* flex integer type definitions */
35
36#ifndef FLEXINT_H
37#define FLEXINT_H
38
39/* C99 systems have <inttypes.h>. Non-C99 systems may or may not. */
40
41#if defined __STDC_VERSION__ && __STDC_VERSION__ >= 199901L
42#include <inttypes.h>
43typedef int8_t flex_int8_t;
44typedef uint8_t flex_uint8_t;
45typedef int16_t flex_int16_t;
46typedef uint16_t flex_uint16_t;
47typedef int32_t flex_int32_t;
48typedef uint32_t flex_uint32_t;
49#else
50typedef signed char flex_int8_t;
51typedef short int flex_int16_t;
52typedef int flex_int32_t;
53typedef unsigned char flex_uint8_t;
54typedef unsigned short int flex_uint16_t;
55typedef unsigned int flex_uint32_t;
56#endif /* ! C99 */
57
58/* Limits of integral types. */
59#ifndef INT8_MIN
60#define INT8_MIN (-128)
61#endif
62#ifndef INT16_MIN
63#define INT16_MIN (-32767-1)
64#endif
65#ifndef INT32_MIN
66#define INT32_MIN (-2147483647-1)
67#endif
68#ifndef INT8_MAX
69#define INT8_MAX (127)
70#endif
71#ifndef INT16_MAX
72#define INT16_MAX (32767)
73#endif
74#ifndef INT32_MAX
75#define INT32_MAX (2147483647)
76#endif
77#ifndef UINT8_MAX
78#define UINT8_MAX (255U)
79#endif
80#ifndef UINT16_MAX
81#define UINT16_MAX (65535U)
82#endif
83#ifndef UINT32_MAX
84#define UINT32_MAX (4294967295U)
85#endif
86
87#endif /* ! FLEXINT_H */
88
89/* begin standard C++ headers. */
90#include <iostream>
91#include <errno.h>
92#include <cstdlib>
93#include <cstring>
94/* end standard C++ headers. */
95
96#ifdef __cplusplus
97
98/* The "const" storage-class-modifier is valid. */
99#define YY_USE_CONST
100
101#else /* ! __cplusplus */
102
103#if __STDC__
104
105#define YY_USE_CONST
106
107#endif /* __STDC__ */
108#endif /* ! __cplusplus */
109
110#ifdef YY_USE_CONST
111#define yyconst const
112#else
113#define yyconst
114#endif
115
116/* Returned upon end-of-file. */
117#define YY_NULL 0
118
119/* Promotes a possibly negative, possibly signed char to an unsigned
120 * integer for use as an array index. If the signed char is negative,
121 * we want to instead treat it as an 8-bit unsigned char, hence the
122 * double cast.
123 */
124#define YY_SC_TO_UI(c) ((unsigned int) (unsigned char) c)
125
126/* Enter a start condition. This macro really ought to take a parameter,
127 * but we do it the disgusting crufty way forced on us by the ()-less
128 * definition of BEGIN.
129 */
130#define BEGIN (yy_start) = 1 + 2 *
131
132/* Translate the current start state into a value that can be later handed
133 * to BEGIN to return to the state. The YYSTATE alias is for lex
134 * compatibility.
135 */
136#define YY_START (((yy_start) - 1) / 2)
137#define YYSTATE YY_START
138
139/* Action number for EOF rule of a given start state. */
140#define YY_STATE_EOF(state) (YY_END_OF_BUFFER + state + 1)
141
142/* Special action meaning "start processing a new file". */
143#define YY_NEW_FILE yyrestart( yyin )
144
145#define YY_END_OF_BUFFER_CHAR 0
146
147/* Size of default input buffer. */
148#ifndef YY_BUF_SIZE
149#define YY_BUF_SIZE 16384
150#endif
151
152#ifndef YY_TYPEDEF_YY_BUFFER_STATE
153#define YY_TYPEDEF_YY_BUFFER_STATE
154typedef struct yy_buffer_state *YY_BUFFER_STATE;
155#endif
156
157extern int yyleng;
158
159#define EOB_ACT_CONTINUE_SCAN 0
160#define EOB_ACT_END_OF_FILE 1
161#define EOB_ACT_LAST_MATCH 2
162
163 /* Note: We specifically omit the test for yy_rule_can_match_eol because it requires
164 * access to the local variable yy_act. Since yyless() is a macro, it would break
165 * existing scanners that call yyless() from OUTSIDE yylex.
166 * One obvious solution it to make yy_act a global. I tried that, and saw
167 * a 5% performance hit in a non-yylineno scanner, because yy_act is
168 * normally declared as a register variable-- so it is not worth it.
169 */
170 #define YY_LESS_LINENO(n) \
171 do { \
172 int yyl;\
173 for ( yyl = n; yyl < yyleng; ++yyl )\
174 if ( yytext[yyl] == '\n' )\
175 --yylineno;\
176 }while(0)
177
178/* Return all but the first "n" matched characters back to the input stream. */
179#define yyless(n) \
180 do \
181 { \
182 /* Undo effects of setting up yytext. */ \
183 int yyless_macro_arg = (n); \
184 YY_LESS_LINENO(yyless_macro_arg);\
185 *yy_cp = (yy_hold_char); \
186 YY_RESTORE_YY_MORE_OFFSET \
187 (yy_c_buf_p) = yy_cp = yy_bp + yyless_macro_arg - YY_MORE_ADJ; \
188 YY_DO_BEFORE_ACTION; /* set up yytext again */ \
189 } \
190 while ( 0 )
191
192#define unput(c) yyunput( c, (yytext_ptr) )
193
194/* The following is because we cannot portably get our hands on size_t
195 * (without autoconf's help, which isn't available because we want
196 * flex-generated scanners to compile on their own).
197 */
198
199#ifndef YY_TYPEDEF_YY_SIZE_T
200#define YY_TYPEDEF_YY_SIZE_T
201typedef unsigned int yy_size_t;
202#endif
203
204#ifndef YY_STRUCT_YY_BUFFER_STATE
205#define YY_STRUCT_YY_BUFFER_STATE
206struct yy_buffer_state
207 {
208
209 std::istream* yy_input_file;
210
211 char *yy_ch_buf; /* input buffer */
212 char *yy_buf_pos; /* current position in input buffer */
213
214 /* Size of input buffer in bytes, not including room for EOB
215 * characters.
216 */
217 yy_size_t yy_buf_size;
218
219 /* Number of characters read into yy_ch_buf, not including EOB
220 * characters.
221 */
222 int yy_n_chars;
223
224 /* Whether we "own" the buffer - i.e., we know we created it,
225 * and can realloc() it to grow it, and should free() it to
226 * delete it.
227 */
228 int yy_is_our_buffer;
229
230 /* Whether this is an "interactive" input source; if so, and
231 * if we're using stdio for input, then we want to use getc()
232 * instead of fread(), to make sure we stop fetching input after
233 * each newline.
234 */
235 int yy_is_interactive;
236
237 /* Whether we're considered to be at the beginning of a line.
238 * If so, '^' rules will be active on the next match, otherwise
239 * not.
240 */
241 int yy_at_bol;
242
243 int yy_bs_lineno; /**< The line count. */
244 int yy_bs_column; /**< The column count. */
245
246 /* Whether to try to fill the input buffer when we reach the
247 * end of it.
248 */
249 int yy_fill_buffer;
250
251 int yy_buffer_status;
252
253#define YY_BUFFER_NEW 0
254#define YY_BUFFER_NORMAL 1
255 /* When an EOF's been seen but there's still some text to process
256 * then we mark the buffer as YY_EOF_PENDING, to indicate that we
257 * shouldn't try reading from the input source any more. We might
258 * still have a bunch of tokens to match, though, because of
259 * possible backing-up.
260 *
261 * When we actually see the EOF, we change the status to "new"
262 * (via yyrestart()), so that the user can continue scanning by
263 * just pointing yyin at a new input file.
264 */
265#define YY_BUFFER_EOF_PENDING 2
266
267 };
268#endif /* !YY_STRUCT_YY_BUFFER_STATE */
269
270/* We provide macros for accessing buffer states in case in the
271 * future we want to put the buffer states in a more general
272 * "scanner state".
273 *
274 * Returns the top of the stack, or NULL.
275 */
276#define YY_CURRENT_BUFFER ( (yy_buffer_stack) \
277 ? (yy_buffer_stack)[(yy_buffer_stack_top)] \
278 : NULL)
279
280/* Same as previous macro, but useful when we know that the buffer stack is not
281 * NULL or when we need an lvalue. For internal use only.
282 */
283#define YY_CURRENT_BUFFER_LVALUE (yy_buffer_stack)[(yy_buffer_stack_top)]
284
285void *MPQCInalloc (yy_size_t );
286void *MPQCInrealloc (void *,yy_size_t );
287void MPQCInfree (void * );
288
289#define yy_new_buffer yy_create_buffer
290
291#define yy_set_interactive(is_interactive) \
292 { \
293 if ( ! YY_CURRENT_BUFFER ){ \
294 yyensure_buffer_stack (); \
295 YY_CURRENT_BUFFER_LVALUE = \
296 yy_create_buffer( yyin, YY_BUF_SIZE ); \
297 } \
298 YY_CURRENT_BUFFER_LVALUE->yy_is_interactive = is_interactive; \
299 }
300
301#define yy_set_bol(at_bol) \
302 { \
303 if ( ! YY_CURRENT_BUFFER ){\
304 yyensure_buffer_stack (); \
305 YY_CURRENT_BUFFER_LVALUE = \
306 yy_create_buffer( yyin, YY_BUF_SIZE ); \
307 } \
308 YY_CURRENT_BUFFER_LVALUE->yy_at_bol = at_bol; \
309 }
310
311#define YY_AT_BOL() (YY_CURRENT_BUFFER_LVALUE->yy_at_bol)
312
313/* Begin user sect3 */
314
315typedef unsigned char YY_CHAR;
316
317#define yytext_ptr yytext
318#define YY_INTERACTIVE
319
320#include <FlexLexer.h>
321
322/* Done after the current pattern has been matched and before the
323 * corresponding action - sets up yytext.
324 */
325#define YY_DO_BEFORE_ACTION \
326 (yytext_ptr) = yy_bp; \
327 yyleng = (size_t) (yy_cp - yy_bp); \
328 (yy_hold_char) = *yy_cp; \
329 *yy_cp = '\0'; \
330 (yy_c_buf_p) = yy_cp;
331
332#define YY_NUM_RULES 48
333#define YY_END_OF_BUFFER 49
334/* This struct is not used in this scanner,
335 but its presence is necessary. */
336struct yy_trans_info
337 {
338 flex_int32_t yy_verify;
339 flex_int32_t yy_nxt;
340 };
341static yyconst flex_int16_t yy_accept[204] =
342 { 0,
343 42, 42, 49, 47, 44, 46, 46, 1, 47, 47,
344 42, 38, 39, 37, 40, 36, 42, 42, 42, 42,
345 42, 42, 42, 42, 42, 42, 42, 42, 42, 42,
346 42, 44, 0, 0, 45, 42, 42, 42, 42, 42,
347 42, 42, 42, 42, 42, 42, 42, 42, 42, 42,
348 42, 42, 42, 42, 42, 15, 42, 42, 42, 42,
349 25, 42, 43, 6, 42, 42, 42, 42, 42, 42,
350 42, 42, 42, 42, 42, 2, 42, 42, 3, 42,
351 42, 42, 42, 42, 42, 42, 42, 42, 42, 42,
352 42, 42, 14, 7, 42, 42, 42, 42, 32, 27,
353
354 4, 42, 42, 42, 29, 42, 42, 42, 35, 42,
355 42, 42, 42, 41, 42, 42, 42, 42, 30, 42,
356 31, 42, 42, 18, 5, 42, 42, 42, 42, 42,
357 42, 42, 42, 42, 42, 42, 42, 42, 42, 42,
358 42, 42, 42, 16, 42, 42, 42, 42, 42, 8,
359 17, 42, 42, 42, 42, 42, 42, 42, 42, 42,
360 42, 42, 42, 42, 42, 42, 42, 42, 42, 23,
361 42, 28, 19, 42, 42, 42, 42, 42, 12, 21,
362 9, 42, 11, 42, 26, 20, 42, 42, 42, 42,
363 42, 22, 24, 42, 42, 42, 42, 13, 33, 34,
364
365 42, 10, 0
366 } ;
367
368static yyconst flex_int32_t yy_ec[256] =
369 { 0,
370 1, 1, 1, 1, 1, 1, 1, 1, 2, 3,
371 1, 4, 4, 1, 1, 1, 1, 1, 1, 1,
372 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
373 1, 2, 5, 6, 1, 1, 7, 1, 8, 9,
374 10, 8, 11, 8, 8, 8, 8, 8, 8, 8,
375 8, 8, 8, 8, 8, 8, 8, 12, 1, 13,
376 14, 1, 1, 1, 8, 8, 8, 8, 8, 8,
377 8, 8, 8, 8, 8, 8, 8, 8, 8, 8,
378 8, 8, 8, 8, 8, 8, 8, 8, 8, 8,
379 1, 1, 1, 1, 15, 1, 16, 17, 18, 19,
380
381 20, 21, 22, 23, 24, 8, 25, 26, 27, 28,
382 29, 30, 31, 32, 33, 34, 35, 8, 8, 36,
383 37, 38, 1, 1, 1, 1, 1, 1, 1, 1,
384 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
385 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
386 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
387 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
388 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
389 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
390 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
391
392 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
393 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
394 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
395 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
396 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
397 1, 1, 1, 1, 1
398 } ;
399
400static yyconst flex_int32_t yy_meta[39] =
401 { 0,
402 1, 1, 2, 1, 1, 2, 1, 3, 1, 1,
403 3, 1, 1, 1, 3, 3, 3, 3, 3, 3,
404 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
405 3, 3, 3, 3, 3, 3, 3, 3
406 } ;
407
408static yyconst flex_int16_t yy_base[207] =
409 { 0,
410 0, 0, 215, 216, 212, 216, 216, 216, 0, 210,
411 0, 216, 216, 216, 216, 216, 22, 24, 26, 183,
412 194, 178, 24, 181, 25, 179, 177, 186, 14, 187,
413 184, 201, 196, 198, 216, 0, 167, 169, 176, 161,
414 163, 161, 171, 29, 42, 175, 174, 39, 173, 47,
415 156, 38, 163, 157, 161, 0, 152, 33, 167, 157,
416 0, 150, 216, 171, 158, 147, 162, 154, 161, 144,
417 142, 140, 141, 154, 153, 0, 139, 131, 0, 149,
418 148, 146, 136, 141, 143, 144, 127, 136, 124, 124,
419 139, 129, 0, 0, 139, 120, 137, 119, 0, 0,
420
421 140, 130, 127, 123, 0, 112, 126, 121, 0, 112,
422 111, 113, 123, 0, 116, 112, 110, 121, 0, 116,
423 0, 103, 101, 0, 0, 100, 112, 101, 110, 101,
424 108, 99, 89, 106, 89, 93, 98, 102, 88, 85,
425 89, 93, 92, 0, 86, 86, 98, 84, 95, 0,
426 0, 84, 83, 70, 91, 72, 73, 77, 70, 86,
427 77, 82, 45, 65, 72, 77, 72, 75, 66, 0,
428 56, 0, 0, 64, 63, 66, 60, 59, 0, 0,
429 0, 69, 0, 48, 0, 0, 45, 58, 59, 58,
430 51, 0, 0, 41, 55, 52, 35, 0, 0, 0,
431
432 30, 0, 216, 80, 83, 44
433 } ;
434
435static yyconst flex_int16_t yy_def[207] =
436 { 0,
437 203, 1, 203, 203, 203, 203, 203, 203, 204, 205,
438 206, 203, 203, 203, 203, 203, 206, 206, 206, 206,
439 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
440 206, 203, 204, 205, 203, 206, 206, 206, 206, 206,
441 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
442 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
443 206, 206, 203, 206, 206, 206, 206, 206, 206, 206,
444 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
445 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
446 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
447
448 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
449 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
450 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
451 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
452 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
453 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
454 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
455 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
456 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
457 206, 206, 206, 206, 206, 206, 206, 206, 206, 206,
458
459 206, 206, 0, 203, 203, 203
460 } ;
461
462static yyconst flex_int16_t yy_nxt[255] =
463 { 0,
464 4, 5, 6, 7, 8, 9, 10, 11, 12, 13,
465 11, 14, 15, 16, 11, 17, 18, 19, 20, 21,
466 22, 23, 11, 24, 11, 11, 25, 26, 27, 11,
467 11, 28, 29, 11, 11, 30, 31, 11, 37, 41,
468 49, 44, 59, 42, 52, 71, 36, 38, 45, 39,
469 60, 89, 43, 53, 54, 50, 40, 73, 77, 55,
470 72, 74, 80, 177, 83, 90, 202, 78, 201, 200,
471 81, 84, 199, 198, 197, 196, 195, 194, 193, 178,
472 33, 192, 33, 34, 34, 34, 191, 190, 189, 188,
473 187, 186, 185, 184, 183, 182, 181, 180, 179, 176,
474
475 175, 174, 173, 172, 171, 170, 169, 168, 167, 166,
476 165, 164, 163, 162, 161, 160, 159, 158, 157, 156,
477 155, 154, 153, 152, 151, 150, 149, 148, 147, 146,
478 145, 144, 143, 142, 141, 140, 139, 138, 137, 136,
479 135, 134, 133, 132, 131, 130, 129, 128, 127, 126,
480 125, 124, 123, 122, 121, 120, 119, 118, 117, 116,
481 115, 114, 113, 112, 111, 110, 109, 108, 107, 106,
482 105, 104, 103, 102, 101, 100, 99, 98, 97, 96,
483 95, 94, 93, 92, 91, 88, 87, 86, 85, 82,
484 79, 76, 75, 70, 69, 68, 67, 66, 65, 64,
485
486 35, 63, 32, 62, 61, 58, 57, 56, 51, 48,
487 47, 46, 35, 32, 203, 3, 203, 203, 203, 203,
488 203, 203, 203, 203, 203, 203, 203, 203, 203, 203,
489 203, 203, 203, 203, 203, 203, 203, 203, 203, 203,
490 203, 203, 203, 203, 203, 203, 203, 203, 203, 203,
491 203, 203, 203, 203
492 } ;
493
494static yyconst flex_int16_t yy_chk[255] =
495 { 0,
496 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
497 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
498 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
499 1, 1, 1, 1, 1, 1, 1, 1, 17, 18,
500 23, 19, 29, 18, 25, 44, 206, 17, 19, 17,
501 29, 58, 18, 25, 25, 23, 17, 45, 48, 25,
502 44, 45, 50, 163, 52, 58, 201, 48, 197, 196,
503 50, 52, 195, 194, 191, 190, 189, 188, 187, 163,
504 204, 184, 204, 205, 205, 205, 182, 178, 177, 176,
505 175, 174, 171, 169, 168, 167, 166, 165, 164, 162,
506
507 161, 160, 159, 158, 157, 156, 155, 154, 153, 152,
508 149, 148, 147, 146, 145, 143, 142, 141, 140, 139,
509 138, 137, 136, 135, 134, 133, 132, 131, 130, 129,
510 128, 127, 126, 123, 122, 120, 118, 117, 116, 115,
511 113, 112, 111, 110, 108, 107, 106, 104, 103, 102,
512 101, 98, 97, 96, 95, 92, 91, 90, 89, 88,
513 87, 86, 85, 84, 83, 82, 81, 80, 78, 77,
514 75, 74, 73, 72, 71, 70, 69, 68, 67, 66,
515 65, 64, 62, 60, 59, 57, 55, 54, 53, 51,
516 49, 47, 46, 43, 42, 41, 40, 39, 38, 37,
517
518 34, 33, 32, 31, 30, 28, 27, 26, 24, 22,
519 21, 20, 10, 5, 3, 203, 203, 203, 203, 203,
520 203, 203, 203, 203, 203, 203, 203, 203, 203, 203,
521 203, 203, 203, 203, 203, 203, 203, 203, 203, 203,
522 203, 203, 203, 203, 203, 203, 203, 203, 203, 203,
523 203, 203, 203, 203
524 } ;
525
526/* Table of booleans, true if rule could match eol. */
527static yyconst flex_int32_t yy_rule_can_match_eol[49] =
528 { 0,
5290, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
530 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
531 0, 0, 0, 0, 0, 0, 1, 0, 0, };
532
533/* The intent behind this definition is that it'll catch
534 * any uses of REJECT which flex missed.
535 */
536#define REJECT reject_used_but_not_detected
537#define yymore() yymore_used_but_not_detected
538#define YY_MORE_ADJ 0
539#define YY_RESTORE_YY_MORE_OFFSET
540
541#if !defined(SUN4)
542#include <string.h>
543#endif
544
545#include <util/misc/exenv.h>
546
547#include "mpqcin.h"
548#include "parse.h"
549
550using namespace sc;
551
552#define YY_NO_UNISTD_H
553extern "C" int MPQCInwrap();
554
555#ifndef yywrap
556# define yywrap MPQCInwrap
557#endif
558
559static inline char *
560cstr(char *yytext)
561{
562 if (MPQCIn::checking()) return 0;
563 char *ret;
564 int strlenyytext = strlen(yytext);
565 ret = (char *)malloc(strlenyytext+1);
566 if (!ret) {
567 ExEnv::outn() << "MPQC: malloc failed"
568 << endl;
569 abort();
570 }
571 strcpy(ret,yytext);
572 return ret;
573}
574
575#define INITIAL 0
576
577/* Special case for "unistd.h", since it is non-ANSI. We include it way
578 * down here because we want the user's section 1 to have been scanned first.
579 * The user has a chance to override it with an option.
580 */
581#include <unistd.h>
582
583#ifndef YY_EXTRA_TYPE
584#define YY_EXTRA_TYPE void *
585#endif
586
587#ifndef yytext_ptr
588static void yy_flex_strncpy (char *,yyconst char *,int );
589#endif
590
591#ifdef YY_NEED_STRLEN
592static int yy_flex_strlen (yyconst char * );
593#endif
594
595#ifndef YY_NO_INPUT
596
597#endif
598
599/* Amount of stuff to slurp up with each read. */
600#ifndef YY_READ_BUF_SIZE
601#define YY_READ_BUF_SIZE 8192
602#endif
603
604/* Copy whatever the last rule matched to the standard output. */
605#ifndef ECHO
606#define ECHO LexerOutput( yytext, yyleng )
607#endif
608
609/* Gets input and stuffs it into "buf". number of characters read, or YY_NULL,
610 * is returned in "result".
611 */
612#ifndef YY_INPUT
613#define YY_INPUT(buf,result,max_size) \
614\
615 if ( (result = LexerInput( (char *) buf, max_size )) < 0 ) \
616 YY_FATAL_ERROR( "input in flex scanner failed" );
617
618#endif
619
620/* No semi-colon after return; correct usage is to write "yyterminate();" -
621 * we don't want an extra ';' after the "return" because that will cause
622 * some compilers to complain about unreachable statements.
623 */
624#ifndef yyterminate
625#define yyterminate() return YY_NULL
626#endif
627
628/* Number of entries by which start-condition stack grows. */
629#ifndef YY_START_STACK_INCR
630#define YY_START_STACK_INCR 25
631#endif
632
633/* Report a fatal error. */
634#ifndef YY_FATAL_ERROR
635#define YY_FATAL_ERROR(msg) LexerError( msg )
636#endif
637
638/* end tables serialization structures and prototypes */
639
640/* Default declaration of generated scanner - a define so the user can
641 * easily add parameters.
642 */
643#ifndef YY_DECL
644#define YY_DECL_IS_OURS 1
645#define YY_DECL int yyFlexLexer::yylex()
646#endif /* !YY_DECL */
647
648/* Code executed at the beginning of each rule, after yytext and yyleng
649 * have been set up.
650 */
651#ifndef YY_USER_ACTION
652#define YY_USER_ACTION
653#endif
654
655/* Code executed at the end of each rule. */
656#ifndef YY_BREAK
657#define YY_BREAK break;
658#endif
659
660#define YY_RULE_SETUP \
661 YY_USER_ACTION
662
663/** The main scanner function which does all the work.
664 */
665YY_DECL
666{
667 register yy_state_type yy_current_state;
668 register char *yy_cp, *yy_bp;
669 register int yy_act;
670
671 if ( (yy_init) )
672 {
673 (yy_init) = 0;
674
675#ifdef YY_USER_INIT
676 YY_USER_INIT;
677#endif
678
679 if ( ! (yy_start) )
680 (yy_start) = 1; /* first start state */
681
682 if ( ! yyin )
683 yyin = & std::cin;
684
685 if ( ! yyout )
686 yyout = & std::cout;
687
688 if ( ! YY_CURRENT_BUFFER ) {
689 yyensure_buffer_stack ();
690 YY_CURRENT_BUFFER_LVALUE =
691 yy_create_buffer( yyin, YY_BUF_SIZE );
692 }
693
694 yy_load_buffer_state( );
695 }
696
697 while ( 1 ) /* loops until end-of-file is reached */
698 {
699 yy_cp = (yy_c_buf_p);
700
701 /* Support of yytext. */
702 *yy_cp = (yy_hold_char);
703
704 /* yy_bp points to the position in yy_ch_buf of the start of
705 * the current run.
706 */
707 yy_bp = yy_cp;
708
709 yy_current_state = (yy_start);
710yy_match:
711 do
712 {
713 register YY_CHAR yy_c = yy_ec[YY_SC_TO_UI(*yy_cp)];
714 if ( yy_accept[yy_current_state] )
715 {
716 (yy_last_accepting_state) = yy_current_state;
717 (yy_last_accepting_cpos) = yy_cp;
718 }
719 while ( yy_chk[yy_base[yy_current_state] + yy_c] != yy_current_state )
720 {
721 yy_current_state = (int) yy_def[yy_current_state];
722 if ( yy_current_state >= 204 )
723 yy_c = yy_meta[(unsigned int) yy_c];
724 }
725 yy_current_state = yy_nxt[yy_base[yy_current_state] + (unsigned int) yy_c];
726 ++yy_cp;
727 }
728 while ( yy_base[yy_current_state] != 216 );
729
730yy_find_action:
731 yy_act = yy_accept[yy_current_state];
732 if ( yy_act == 0 )
733 { /* have to back up */
734 yy_cp = (yy_last_accepting_cpos);
735 yy_current_state = (yy_last_accepting_state);
736 yy_act = yy_accept[yy_current_state];
737 }
738
739 YY_DO_BEFORE_ACTION;
740
741 if ( yy_act != YY_END_OF_BUFFER && yy_rule_can_match_eol[yy_act] )
742 {
743 int yyl;
744 for ( yyl = 0; yyl < yyleng; ++yyl )
745 if ( yytext[yyl] == '\n' )
746
747 yylineno++;
748;
749 }
750
751do_action: /* This label is used only to access EOF actions. */
752
753 switch ( yy_act )
754 { /* beginning of action switch */
755 case 0: /* must back up */
756 /* undo the effects of YY_DO_BEFORE_ACTION */
757 *yy_cp = (yy_hold_char);
758 yy_cp = (yy_last_accepting_cpos);
759 yy_current_state = (yy_last_accepting_state);
760 goto yy_find_action;
761
762case 1:
763YY_RULE_SETUP
764{ return T_NOT; }
765 YY_BREAK
766case 2:
767YY_RULE_SETUP
768{ return T_EBC; }
769 YY_BREAK
770case 3:
771YY_RULE_SETUP
772{ return T_GBC; }
773 YY_BREAK
774case 4:
775YY_RULE_SETUP
776{ return T_CABS; }
777 YY_BREAK
778case 5:
779YY_RULE_SETUP
780{ return T_CABSP; }
781 YY_BREAK
782case 6:
783YY_RULE_SETUP
784{ return T_ABS; }
785 YY_BREAK
786case 7:
787YY_RULE_SETUP
788{ return T_ABSP; }
789 YY_BREAK
790case 8:
791YY_RULE_SETUP
792{ return T_MEMORY; }
793 YY_BREAK
794case 9:
795YY_RULE_SETUP
796{ return T_MOLECULE; }
797 YY_BREAK
798case 10:
799YY_RULE_SETUP
800{ return T_MULTIPLICITY; }
801 YY_BREAK
802case 11:
803YY_RULE_SETUP
804{ return T_OPTIMIZE; }
805 YY_BREAK
806case 12:
807YY_RULE_SETUP
808{ return T_GRADIENT; }
809 YY_BREAK
810case 13:
811YY_RULE_SETUP
812{ return T_FREQUENCIES; }
813 YY_BREAK
814case 14:
815YY_RULE_SETUP
816{ MPQCInylval.i = 1; return T_BOOL; }
817 YY_BREAK
818case 15:
819YY_RULE_SETUP
820{ MPQCInylval.i = 0; return T_BOOL; }
821 YY_BREAK
822case 16:
823YY_RULE_SETUP
824{ return T_CHARGE; }
825 YY_BREAK
826case 17:
827YY_RULE_SETUP
828{ return T_METHOD; }
829 YY_BREAK
830case 18:
831YY_RULE_SETUP
832{ return T_BASIS; }
833 YY_BREAK
834case 19:
835YY_RULE_SETUP
836{ return T_AUXBASIS; }
837 YY_BREAK
838case 20:
839YY_RULE_SETUP
840{ return T_CARTESIAN; }
841 YY_BREAK
842case 21:
843YY_RULE_SETUP
844{ return T_INTERNAL; }
845 YY_BREAK
846case 22:
847YY_RULE_SETUP
848{ return T_REDUNDANT; }
849 YY_BREAK
850case 23:
851YY_RULE_SETUP
852{ return T_RESTART; }
853 YY_BREAK
854case 24:
855YY_RULE_SETUP
856{ return T_CHECKPOINT; }
857 YY_BREAK
858case 25:
859YY_RULE_SETUP
860{ return T_XC; }
861 YY_BREAK
862case 26:
863YY_RULE_SETUP
864{ return T_SYMMETRY; }
865 YY_BREAK
866case 27:
867YY_RULE_SETUP
868{ return T_BOHR; }
869 YY_BREAK
870case 28:
871YY_RULE_SETUP
872{ return T_ANGSTROM; }
873 YY_BREAK
874case 29:
875YY_RULE_SETUP
876{ return T_DOCC; }
877 YY_BREAK
878case 30:
879YY_RULE_SETUP
880{ return T_SOCC; }
881 YY_BREAK
882case 31:
883YY_RULE_SETUP
884{ return T_ALPHA; }
885 YY_BREAK
886case 32:
887YY_RULE_SETUP
888{ return T_BETA; }
889 YY_BREAK
890case 33:
891YY_RULE_SETUP
892{ return T_FROZEN_DOCC; }
893 YY_BREAK
894case 34:
895YY_RULE_SETUP
896{ return T_FROZEN_UOCC; }
897 YY_BREAK
898case 35:
899YY_RULE_SETUP
900{ return T_GRID; }
901 YY_BREAK
902case 36:
903YY_RULE_SETUP
904{ return T_EQUALS; }
905 YY_BREAK
906case 37:
907YY_RULE_SETUP
908{ return T_COLON; }
909 YY_BREAK
910case 38:
911YY_RULE_SETUP
912{ return T_BEG_OPT; }
913 YY_BREAK
914case 39:
915YY_RULE_SETUP
916{ return T_END_OPT; }
917 YY_BREAK
918case 40:
919YY_RULE_SETUP
920{ return T_OO_INPUT_KEYWORD; }
921 YY_BREAK
922case 41:
923YY_RULE_SETUP
924{ return T_OO_INPUT_KEYWORD; }
925 YY_BREAK
926case 42:
927YY_RULE_SETUP
928{ MPQCInylval.str = cstr(yytext);
929 return T_STRING;
930 }
931 YY_BREAK
932case 43:
933YY_RULE_SETUP
934{ if (MPQCIn::checking()) return T_STRING;
935 MPQCInylval.str = (char *)malloc(strlen(yytext));
936 if (!MPQCInylval.str) {
937 ExEnv::outn() << "MPQC: {qstring} rule: malloc failed"
938 << endl;
939 abort();
940 }
941 strcpy(MPQCInylval.str,&yytext[1]);
942 MPQCInylval.str[strlen(MPQCInylval.str)-1] = '\0';
943 return(T_STRING);
944 }
945 YY_BREAK
946case 44:
947YY_RULE_SETUP
948;
949 YY_BREAK
950case 45:
951*yy_cp = (yy_hold_char); /* undo effects of setting up yytext */
952(yy_c_buf_p) = yy_cp -= 1;
953YY_DO_BEFORE_ACTION; /* set up yytext again */
954YY_RULE_SETUP
955;
956 YY_BREAK
957case 46:
958/* rule 46 can match eol */
959YY_RULE_SETUP
960;
961 YY_BREAK
962case 47:
963YY_RULE_SETUP
964{ ExEnv::outn() << "MPQC: Illegal character: \""
965 << yytext[0] <<"\"" << endl; }
966 YY_BREAK
967case 48:
968YY_RULE_SETUP
969ECHO;
970 YY_BREAK
971case YY_STATE_EOF(INITIAL):
972 yyterminate();
973
974 case YY_END_OF_BUFFER:
975 {
976 /* Amount of text matched not including the EOB char. */
977 int yy_amount_of_matched_text = (int) (yy_cp - (yytext_ptr)) - 1;
978
979 /* Undo the effects of YY_DO_BEFORE_ACTION. */
980 *yy_cp = (yy_hold_char);
981 YY_RESTORE_YY_MORE_OFFSET
982
983 if ( YY_CURRENT_BUFFER_LVALUE->yy_buffer_status == YY_BUFFER_NEW )
984 {
985 /* We're scanning a new file or input source. It's
986 * possible that this happened because the user
987 * just pointed yyin at a new source and called
988 * yylex(). If so, then we have to assure
989 * consistency between YY_CURRENT_BUFFER and our
990 * globals. Here is the right place to do so, because
991 * this is the first action (other than possibly a
992 * back-up) that will match for the new input source.
993 */
994 (yy_n_chars) = YY_CURRENT_BUFFER_LVALUE->yy_n_chars;
995 YY_CURRENT_BUFFER_LVALUE->yy_input_file = yyin;
996 YY_CURRENT_BUFFER_LVALUE->yy_buffer_status = YY_BUFFER_NORMAL;
997 }
998
999 /* Note that here we test for yy_c_buf_p "<=" to the position
1000 * of the first EOB in the buffer, since yy_c_buf_p will
1001 * already have been incremented past the NUL character
1002 * (since all states make transitions on EOB to the
1003 * end-of-buffer state). Contrast this with the test
1004 * in input().
1005 */
1006 if ( (yy_c_buf_p) <= &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[(yy_n_chars)] )
1007 { /* This was really a NUL. */
1008 yy_state_type yy_next_state;
1009
1010 (yy_c_buf_p) = (yytext_ptr) + yy_amount_of_matched_text;
1011
1012 yy_current_state = yy_get_previous_state( );
1013
1014 /* Okay, we're now positioned to make the NUL
1015 * transition. We couldn't have
1016 * yy_get_previous_state() go ahead and do it
1017 * for us because it doesn't know how to deal
1018 * with the possibility of jamming (and we don't
1019 * want to build jamming into it because then it
1020 * will run more slowly).
1021 */
1022
1023 yy_next_state = yy_try_NUL_trans( yy_current_state );
1024
1025 yy_bp = (yytext_ptr) + YY_MORE_ADJ;
1026
1027 if ( yy_next_state )
1028 {
1029 /* Consume the NUL. */
1030 yy_cp = ++(yy_c_buf_p);
1031 yy_current_state = yy_next_state;
1032 goto yy_match;
1033 }
1034
1035 else
1036 {
1037 yy_cp = (yy_c_buf_p);
1038 goto yy_find_action;
1039 }
1040 }
1041
1042 else switch ( yy_get_next_buffer( ) )
1043 {
1044 case EOB_ACT_END_OF_FILE:
1045 {
1046 (yy_did_buffer_switch_on_eof) = 0;
1047
1048 if ( yywrap( ) )
1049 {
1050 /* Note: because we've taken care in
1051 * yy_get_next_buffer() to have set up
1052 * yytext, we can now set up
1053 * yy_c_buf_p so that if some total
1054 * hoser (like flex itself) wants to
1055 * call the scanner after we return the
1056 * YY_NULL, it'll still work - another
1057 * YY_NULL will get returned.
1058 */
1059 (yy_c_buf_p) = (yytext_ptr) + YY_MORE_ADJ;
1060
1061 yy_act = YY_STATE_EOF(YY_START);
1062 goto do_action;
1063 }
1064
1065 else
1066 {
1067 if ( ! (yy_did_buffer_switch_on_eof) )
1068 YY_NEW_FILE;
1069 }
1070 break;
1071 }
1072
1073 case EOB_ACT_CONTINUE_SCAN:
1074 (yy_c_buf_p) =
1075 (yytext_ptr) + yy_amount_of_matched_text;
1076
1077 yy_current_state = yy_get_previous_state( );
1078
1079 yy_cp = (yy_c_buf_p);
1080 yy_bp = (yytext_ptr) + YY_MORE_ADJ;
1081 goto yy_match;
1082
1083 case EOB_ACT_LAST_MATCH:
1084 (yy_c_buf_p) =
1085 &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[(yy_n_chars)];
1086
1087 yy_current_state = yy_get_previous_state( );
1088
1089 yy_cp = (yy_c_buf_p);
1090 yy_bp = (yytext_ptr) + YY_MORE_ADJ;
1091 goto yy_find_action;
1092 }
1093 break;
1094 }
1095
1096 default:
1097 YY_FATAL_ERROR(
1098 "fatal flex scanner internal error--no action found" );
1099 } /* end of action switch */
1100 } /* end of scanning one token */
1101} /* end of yylex */
1102
1103yyFlexLexer::yyFlexLexer( std::istream* arg_yyin, std::ostream* arg_yyout )
1104{
1105 yyin = arg_yyin;
1106 yyout = arg_yyout;
1107 yy_c_buf_p = 0;
1108 yy_init = 1;
1109 yy_start = 0;
1110 yy_flex_debug = 0;
1111 yylineno = 1; // this will only get updated if %option yylineno
1112
1113 yy_did_buffer_switch_on_eof = 0;
1114
1115 yy_looking_for_trail_begin = 0;
1116 yy_more_flag = 0;
1117 yy_more_len = 0;
1118 yy_more_offset = yy_prev_more_offset = 0;
1119
1120 yy_start_stack_ptr = yy_start_stack_depth = 0;
1121 yy_start_stack = 0;
1122
1123 (yy_buffer_stack) = 0;
1124 (yy_buffer_stack_top) = 0;
1125 (yy_buffer_stack_max) = 0;
1126
1127 yy_state_buf = 0;
1128
1129}
1130
1131yyFlexLexer::~yyFlexLexer()
1132{
1133 delete [] yy_state_buf;
1134 MPQCInfree(yy_start_stack );
1135 yy_delete_buffer( YY_CURRENT_BUFFER );
1136}
1137
1138void yyFlexLexer::switch_streams( std::istream* new_in, std::ostream* new_out )
1139{
1140 if ( new_in )
1141 {
1142 yy_delete_buffer( YY_CURRENT_BUFFER );
1143 yy_switch_to_buffer( yy_create_buffer( new_in, YY_BUF_SIZE ) );
1144 }
1145
1146 if ( new_out )
1147 yyout = new_out;
1148}
1149
1150#ifdef YY_INTERACTIVE
1151int yyFlexLexer::LexerInput( char* buf, int /* max_size */ )
1152#else
1153int yyFlexLexer::LexerInput( char* buf, int max_size )
1154#endif
1155{
1156 if ( yyin->eof() || yyin->fail() )
1157 return 0;
1158
1159#ifdef YY_INTERACTIVE
1160 yyin->get( buf[0] );
1161
1162 if ( yyin->eof() )
1163 return 0;
1164
1165 if ( yyin->bad() )
1166 return -1;
1167
1168 return 1;
1169
1170#else
1171 (void) yyin->read( buf, max_size );
1172
1173 if ( yyin->bad() )
1174 return -1;
1175 else
1176 return yyin->gcount();
1177#endif
1178}
1179
1180void yyFlexLexer::LexerOutput( const char* buf, int size )
1181{
1182 (void) yyout->write( buf, size );
1183}
1184
1185/* yy_get_next_buffer - try to read in a new buffer
1186 *
1187 * Returns a code representing an action:
1188 * EOB_ACT_LAST_MATCH -
1189 * EOB_ACT_CONTINUE_SCAN - continue scanning from current position
1190 * EOB_ACT_END_OF_FILE - end of file
1191 */
1192int yyFlexLexer::yy_get_next_buffer()
1193{
1194 register char *dest = YY_CURRENT_BUFFER_LVALUE->yy_ch_buf;
1195 register char *source = (yytext_ptr);
1196 register int number_to_move, i;
1197 int ret_val;
1198
1199 if ( (yy_c_buf_p) > &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[(yy_n_chars) + 1] )
1200 YY_FATAL_ERROR(
1201 "fatal flex scanner internal error--end of buffer missed" );
1202
1203 if ( YY_CURRENT_BUFFER_LVALUE->yy_fill_buffer == 0 )
1204 { /* Don't try to fill the buffer, so this is an EOF. */
1205 if ( (yy_c_buf_p) - (yytext_ptr) - YY_MORE_ADJ == 1 )
1206 {
1207 /* We matched a single character, the EOB, so
1208 * treat this as a final EOF.
1209 */
1210 return EOB_ACT_END_OF_FILE;
1211 }
1212
1213 else
1214 {
1215 /* We matched some text prior to the EOB, first
1216 * process it.
1217 */
1218 return EOB_ACT_LAST_MATCH;
1219 }
1220 }
1221
1222 /* Try to read more data. */
1223
1224 /* First move last chars to start of buffer. */
1225 number_to_move = (int) ((yy_c_buf_p) - (yytext_ptr)) - 1;
1226
1227 for ( i = 0; i < number_to_move; ++i )
1228 *(dest++) = *(source++);
1229
1230 if ( YY_CURRENT_BUFFER_LVALUE->yy_buffer_status == YY_BUFFER_EOF_PENDING )
1231 /* don't do the read, it's not guaranteed to return an EOF,
1232 * just force an EOF
1233 */
1234 YY_CURRENT_BUFFER_LVALUE->yy_n_chars = (yy_n_chars) = 0;
1235
1236 else
1237 {
1238 size_t num_to_read =
1239 YY_CURRENT_BUFFER_LVALUE->yy_buf_size - number_to_move - 1;
1240
1241 while ( num_to_read <= 0 )
1242 { /* Not enough room in the buffer - grow it. */
1243
1244 /* just a shorter name for the current buffer */
1245 YY_BUFFER_STATE b = YY_CURRENT_BUFFER;
1246
1247 int yy_c_buf_p_offset =
1248 (int) ((yy_c_buf_p) - b->yy_ch_buf);
1249
1250 if ( b->yy_is_our_buffer )
1251 {
1252 int new_size = b->yy_buf_size * 2;
1253
1254 if ( new_size <= 0 )
1255 b->yy_buf_size += b->yy_buf_size / 8;
1256 else
1257 b->yy_buf_size *= 2;
1258
1259 b->yy_ch_buf = (char *)
1260 /* Include room in for 2 EOB chars. */
1261 MPQCInrealloc((void *) b->yy_ch_buf,b->yy_buf_size + 2 );
1262 }
1263 else
1264 /* Can't grow it, we don't own it. */
1265 b->yy_ch_buf = 0;
1266
1267 if ( ! b->yy_ch_buf )
1268 YY_FATAL_ERROR(
1269 "fatal error - scanner input buffer overflow" );
1270
1271 (yy_c_buf_p) = &b->yy_ch_buf[yy_c_buf_p_offset];
1272
1273 num_to_read = YY_CURRENT_BUFFER_LVALUE->yy_buf_size -
1274 number_to_move - 1;
1275
1276 }
1277
1278 if ( num_to_read > YY_READ_BUF_SIZE )
1279 num_to_read = YY_READ_BUF_SIZE;
1280
1281 /* Read in more data. */
1282 YY_INPUT( (&YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[number_to_move]),
1283 (yy_n_chars), num_to_read );
1284
1285 YY_CURRENT_BUFFER_LVALUE->yy_n_chars = (yy_n_chars);
1286 }
1287
1288 if ( (yy_n_chars) == 0 )
1289 {
1290 if ( number_to_move == YY_MORE_ADJ )
1291 {
1292 ret_val = EOB_ACT_END_OF_FILE;
1293 yyrestart( yyin );
1294 }
1295
1296 else
1297 {
1298 ret_val = EOB_ACT_LAST_MATCH;
1299 YY_CURRENT_BUFFER_LVALUE->yy_buffer_status =
1300 YY_BUFFER_EOF_PENDING;
1301 }
1302 }
1303
1304 else
1305 ret_val = EOB_ACT_CONTINUE_SCAN;
1306
1307 (yy_n_chars) += number_to_move;
1308 YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[(yy_n_chars)] = YY_END_OF_BUFFER_CHAR;
1309 YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[(yy_n_chars) + 1] = YY_END_OF_BUFFER_CHAR;
1310
1311 (yytext_ptr) = &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[0];
1312
1313 return ret_val;
1314}
1315
1316/* yy_get_previous_state - get the state just before the EOB char was reached */
1317
1318 yy_state_type yyFlexLexer::yy_get_previous_state()
1319{
1320 register yy_state_type yy_current_state;
1321 register char *yy_cp;
1322
1323 yy_current_state = (yy_start);
1324
1325 for ( yy_cp = (yytext_ptr) + YY_MORE_ADJ; yy_cp < (yy_c_buf_p); ++yy_cp )
1326 {
1327 register YY_CHAR yy_c = (*yy_cp ? yy_ec[YY_SC_TO_UI(*yy_cp)] : 1);
1328 if ( yy_accept[yy_current_state] )
1329 {
1330 (yy_last_accepting_state) = yy_current_state;
1331 (yy_last_accepting_cpos) = yy_cp;
1332 }
1333 while ( yy_chk[yy_base[yy_current_state] + yy_c] != yy_current_state )
1334 {
1335 yy_current_state = (int) yy_def[yy_current_state];
1336 if ( yy_current_state >= 204 )
1337 yy_c = yy_meta[(unsigned int) yy_c];
1338 }
1339 yy_current_state = yy_nxt[yy_base[yy_current_state] + (unsigned int) yy_c];
1340 }
1341
1342 return yy_current_state;
1343}
1344
1345/* yy_try_NUL_trans - try to make a transition on the NUL character
1346 *
1347 * synopsis
1348 * next_state = yy_try_NUL_trans( current_state );
1349 */
1350 yy_state_type yyFlexLexer::yy_try_NUL_trans( yy_state_type yy_current_state )
1351{
1352 register int yy_is_jam;
1353 register char *yy_cp = (yy_c_buf_p);
1354
1355 register YY_CHAR yy_c = 1;
1356 if ( yy_accept[yy_current_state] )
1357 {
1358 (yy_last_accepting_state) = yy_current_state;
1359 (yy_last_accepting_cpos) = yy_cp;
1360 }
1361 while ( yy_chk[yy_base[yy_current_state] + yy_c] != yy_current_state )
1362 {
1363 yy_current_state = (int) yy_def[yy_current_state];
1364 if ( yy_current_state >= 204 )
1365 yy_c = yy_meta[(unsigned int) yy_c];
1366 }
1367 yy_current_state = yy_nxt[yy_base[yy_current_state] + (unsigned int) yy_c];
1368 yy_is_jam = (yy_current_state == 203);
1369
1370 return yy_is_jam ? 0 : yy_current_state;
1371}
1372
1373 void yyFlexLexer::yyunput( int c, register char* yy_bp)
1374{
1375 register char *yy_cp;
1376
1377 yy_cp = (yy_c_buf_p);
1378
1379 /* undo effects of setting up yytext */
1380 *yy_cp = (yy_hold_char);
1381
1382 if ( yy_cp < YY_CURRENT_BUFFER_LVALUE->yy_ch_buf + 2 )
1383 { /* need to shift things up to make room */
1384 /* +2 for EOB chars. */
1385 register int number_to_move = (yy_n_chars) + 2;
1386 register char *dest = &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[
1387 YY_CURRENT_BUFFER_LVALUE->yy_buf_size + 2];
1388 register char *source =
1389 &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[number_to_move];
1390
1391 while ( source > YY_CURRENT_BUFFER_LVALUE->yy_ch_buf )
1392 *--dest = *--source;
1393
1394 yy_cp += (int) (dest - source);
1395 yy_bp += (int) (dest - source);
1396 YY_CURRENT_BUFFER_LVALUE->yy_n_chars =
1397 (yy_n_chars) = YY_CURRENT_BUFFER_LVALUE->yy_buf_size;
1398
1399 if ( yy_cp < YY_CURRENT_BUFFER_LVALUE->yy_ch_buf + 2 )
1400 YY_FATAL_ERROR( "flex scanner push-back overflow" );
1401 }
1402
1403 *--yy_cp = (char) c;
1404
1405 if ( c == '\n' ){
1406 --yylineno;
1407 }
1408
1409 (yytext_ptr) = yy_bp;
1410 (yy_hold_char) = *yy_cp;
1411 (yy_c_buf_p) = yy_cp;
1412}
1413
1414 int yyFlexLexer::yyinput()
1415{
1416 int c;
1417
1418 *(yy_c_buf_p) = (yy_hold_char);
1419
1420 if ( *(yy_c_buf_p) == YY_END_OF_BUFFER_CHAR )
1421 {
1422 /* yy_c_buf_p now points to the character we want to return.
1423 * If this occurs *before* the EOB characters, then it's a
1424 * valid NUL; if not, then we've hit the end of the buffer.
1425 */
1426 if ( (yy_c_buf_p) < &YY_CURRENT_BUFFER_LVALUE->yy_ch_buf[(yy_n_chars)] )
1427 /* This was really a NUL. */
1428 *(yy_c_buf_p) = '\0';
1429
1430 else
1431 { /* need more input */
1432 int offset = (yy_c_buf_p) - (yytext_ptr);
1433 ++(yy_c_buf_p);
1434
1435 switch ( yy_get_next_buffer( ) )
1436 {
1437 case EOB_ACT_LAST_MATCH:
1438 /* This happens because yy_g_n_b()
1439 * sees that we've accumulated a
1440 * token and flags that we need to
1441 * try matching the token before
1442 * proceeding. But for input(),
1443 * there's no matching to consider.
1444 * So convert the EOB_ACT_LAST_MATCH
1445 * to EOB_ACT_END_OF_FILE.
1446 */
1447
1448 /* Reset buffer status. */
1449 yyrestart( yyin );
1450
1451 /*FALLTHROUGH*/
1452
1453 case EOB_ACT_END_OF_FILE:
1454 {
1455 if ( yywrap( ) )
1456 return EOF;
1457
1458 if ( ! (yy_did_buffer_switch_on_eof) )
1459 YY_NEW_FILE;
1460#ifdef __cplusplus
1461 return yyinput();
1462#else
1463 return input();
1464#endif
1465 }
1466
1467 case EOB_ACT_CONTINUE_SCAN:
1468 (yy_c_buf_p) = (yytext_ptr) + offset;
1469 break;
1470 }
1471 }
1472 }
1473
1474 c = *(unsigned char *) (yy_c_buf_p); /* cast for 8-bit char's */
1475 *(yy_c_buf_p) = '\0'; /* preserve yytext */
1476 (yy_hold_char) = *++(yy_c_buf_p);
1477
1478 if ( c == '\n' )
1479
1480 yylineno++;
1481;
1482
1483 return c;
1484}
1485
1486/** Immediately switch to a different input stream.
1487 * @param input_file A readable stream.
1488 *
1489 * @note This function does not reset the start condition to @c INITIAL .
1490 */
1491 void yyFlexLexer::yyrestart( std::istream* input_file )
1492{
1493
1494 if ( ! YY_CURRENT_BUFFER ){
1495 yyensure_buffer_stack ();
1496 YY_CURRENT_BUFFER_LVALUE =
1497 yy_create_buffer( yyin, YY_BUF_SIZE );
1498 }
1499
1500 yy_init_buffer( YY_CURRENT_BUFFER, input_file );
1501 yy_load_buffer_state( );
1502}
1503
1504/** Switch to a different input buffer.
1505 * @param new_buffer The new input buffer.
1506 *
1507 */
1508 void yyFlexLexer::yy_switch_to_buffer( YY_BUFFER_STATE new_buffer )
1509{
1510
1511 /* TODO. We should be able to replace this entire function body
1512 * with
1513 * yypop_buffer_state();
1514 * yypush_buffer_state(new_buffer);
1515 */
1516 yyensure_buffer_stack ();
1517 if ( YY_CURRENT_BUFFER == new_buffer )
1518 return;
1519
1520 if ( YY_CURRENT_BUFFER )
1521 {
1522 /* Flush out information for old buffer. */
1523 *(yy_c_buf_p) = (yy_hold_char);
1524 YY_CURRENT_BUFFER_LVALUE->yy_buf_pos = (yy_c_buf_p);
1525 YY_CURRENT_BUFFER_LVALUE->yy_n_chars = (yy_n_chars);
1526 }
1527
1528 YY_CURRENT_BUFFER_LVALUE = new_buffer;
1529 yy_load_buffer_state( );
1530
1531 /* We don't actually know whether we did this switch during
1532 * EOF (yywrap()) processing, but the only time this flag
1533 * is looked at is after yywrap() is called, so it's safe
1534 * to go ahead and always set it.
1535 */
1536 (yy_did_buffer_switch_on_eof) = 1;
1537}
1538
1539 void yyFlexLexer::yy_load_buffer_state()
1540{
1541 (yy_n_chars) = YY_CURRENT_BUFFER_LVALUE->yy_n_chars;
1542 (yytext_ptr) = (yy_c_buf_p) = YY_CURRENT_BUFFER_LVALUE->yy_buf_pos;
1543 yyin = YY_CURRENT_BUFFER_LVALUE->yy_input_file;
1544 (yy_hold_char) = *(yy_c_buf_p);
1545}
1546
1547/** Allocate and initialize an input buffer state.
1548 * @param file A readable stream.
1549 * @param size The character buffer size in bytes. When in doubt, use @c YY_BUF_SIZE.
1550 *
1551 * @return the allocated buffer state.
1552 */
1553 YY_BUFFER_STATE yyFlexLexer::yy_create_buffer( std::istream* file, int size )
1554{
1555 YY_BUFFER_STATE b;
1556
1557 b = (YY_BUFFER_STATE) MPQCInalloc(sizeof( struct yy_buffer_state ) );
1558 if ( ! b )
1559 YY_FATAL_ERROR( "out of dynamic memory in yy_create_buffer()" );
1560
1561 b->yy_buf_size = size;
1562
1563 /* yy_ch_buf has to be 2 characters longer than the size given because
1564 * we need to put in 2 end-of-buffer characters.
1565 */
1566 b->yy_ch_buf = (char *) MPQCInalloc(b->yy_buf_size + 2 );
1567 if ( ! b->yy_ch_buf )
1568 YY_FATAL_ERROR( "out of dynamic memory in yy_create_buffer()" );
1569
1570 b->yy_is_our_buffer = 1;
1571
1572 yy_init_buffer( b, file );
1573
1574 return b;
1575}
1576
1577/** Destroy the buffer.
1578 * @param b a buffer created with yy_create_buffer()
1579 *
1580 */
1581 void yyFlexLexer::yy_delete_buffer( YY_BUFFER_STATE b )
1582{
1583
1584 if ( ! b )
1585 return;
1586
1587 if ( b == YY_CURRENT_BUFFER ) /* Not sure if we should pop here. */
1588 YY_CURRENT_BUFFER_LVALUE = (YY_BUFFER_STATE) 0;
1589
1590 if ( b->yy_is_our_buffer )
1591 MPQCInfree((void *) b->yy_ch_buf );
1592
1593 MPQCInfree((void *) b );
1594}
1595
1596
1597/* Initializes or reinitializes a buffer.
1598 * This function is sometimes called more than once on the same buffer,
1599 * such as during a yyrestart() or at EOF.
1600 */
1601 void yyFlexLexer::yy_init_buffer( YY_BUFFER_STATE b, std::istream* file )
1602
1603{
1604 int oerrno = errno;
1605
1606 yy_flush_buffer( b );
1607
1608 b->yy_input_file = file;
1609 b->yy_fill_buffer = 1;
1610
1611 /* If b is the current buffer, then yy_init_buffer was _probably_
1612 * called from yyrestart() or through yy_get_next_buffer.
1613 * In that case, we don't want to reset the lineno or column.
1614 */
1615 if (b != YY_CURRENT_BUFFER){
1616 b->yy_bs_lineno = 1;
1617 b->yy_bs_column = 0;
1618 }
1619
1620 b->yy_is_interactive = 0;
1621 errno = oerrno;
1622}
1623
1624/** Discard all buffered characters. On the next scan, YY_INPUT will be called.
1625 * @param b the buffer state to be flushed, usually @c YY_CURRENT_BUFFER.
1626 *
1627 */
1628 void yyFlexLexer::yy_flush_buffer( YY_BUFFER_STATE b )
1629{
1630 if ( ! b )
1631 return;
1632
1633 b->yy_n_chars = 0;
1634
1635 /* We always need two end-of-buffer characters. The first causes
1636 * a transition to the end-of-buffer state. The second causes
1637 * a jam in that state.
1638 */
1639 b->yy_ch_buf[0] = YY_END_OF_BUFFER_CHAR;
1640 b->yy_ch_buf[1] = YY_END_OF_BUFFER_CHAR;
1641
1642 b->yy_buf_pos = &b->yy_ch_buf[0];
1643
1644 b->yy_at_bol = 1;
1645 b->yy_buffer_status = YY_BUFFER_NEW;
1646
1647 if ( b == YY_CURRENT_BUFFER )
1648 yy_load_buffer_state( );
1649}
1650
1651/** Pushes the new state onto the stack. The new state becomes
1652 * the current state. This function will allocate the stack
1653 * if necessary.
1654 * @param new_buffer The new state.
1655 *
1656 */
1657void yyFlexLexer::yypush_buffer_state (YY_BUFFER_STATE new_buffer)
1658{
1659 if (new_buffer == NULL)
1660 return;
1661
1662 yyensure_buffer_stack();
1663
1664 /* This block is copied from yy_switch_to_buffer. */
1665 if ( YY_CURRENT_BUFFER )
1666 {
1667 /* Flush out information for old buffer. */
1668 *(yy_c_buf_p) = (yy_hold_char);
1669 YY_CURRENT_BUFFER_LVALUE->yy_buf_pos = (yy_c_buf_p);
1670 YY_CURRENT_BUFFER_LVALUE->yy_n_chars = (yy_n_chars);
1671 }
1672
1673 /* Only push if top exists. Otherwise, replace top. */
1674 if (YY_CURRENT_BUFFER)
1675 (yy_buffer_stack_top)++;
1676 YY_CURRENT_BUFFER_LVALUE = new_buffer;
1677
1678 /* copied from yy_switch_to_buffer. */
1679 yy_load_buffer_state( );
1680 (yy_did_buffer_switch_on_eof) = 1;
1681}
1682
1683/** Removes and deletes the top of the stack, if present.
1684 * The next element becomes the new top.
1685 *
1686 */
1687void yyFlexLexer::yypop_buffer_state (void)
1688{
1689 if (!YY_CURRENT_BUFFER)
1690 return;
1691
1692 yy_delete_buffer(YY_CURRENT_BUFFER );
1693 YY_CURRENT_BUFFER_LVALUE = NULL;
1694 if ((yy_buffer_stack_top) > 0)
1695 --(yy_buffer_stack_top);
1696
1697 if (YY_CURRENT_BUFFER) {
1698 yy_load_buffer_state( );
1699 (yy_did_buffer_switch_on_eof) = 1;
1700 }
1701}
1702
1703/* Allocates the stack if it does not exist.
1704 * Guarantees space for at least one push.
1705 */
1706void yyFlexLexer::yyensure_buffer_stack(void)
1707{
1708 int num_to_alloc;
1709
1710 if (!(yy_buffer_stack)) {
1711
1712 /* First allocation is just for 2 elements, since we don't know if this
1713 * scanner will even need a stack. We use 2 instead of 1 to avoid an
1714 * immediate realloc on the next call.
1715 */
1716 num_to_alloc = 1;
1717 (yy_buffer_stack) = (struct yy_buffer_state**)MPQCInalloc
1718 (num_to_alloc * sizeof(struct yy_buffer_state*)
1719 );
1720
1721 memset((yy_buffer_stack), 0, num_to_alloc * sizeof(struct yy_buffer_state*));
1722
1723 (yy_buffer_stack_max) = num_to_alloc;
1724 (yy_buffer_stack_top) = 0;
1725 return;
1726 }
1727
1728 if ((yy_buffer_stack_top) >= ((yy_buffer_stack_max)) - 1){
1729
1730 /* Increase the buffer to prepare for a possible push. */
1731 int grow_size = 8 /* arbitrary grow size */;
1732
1733 num_to_alloc = (yy_buffer_stack_max) + grow_size;
1734 (yy_buffer_stack) = (struct yy_buffer_state**)MPQCInrealloc
1735 ((yy_buffer_stack),
1736 num_to_alloc * sizeof(struct yy_buffer_state*)
1737 );
1738
1739 /* zero only the new slots.*/
1740 memset((yy_buffer_stack) + (yy_buffer_stack_max), 0, grow_size * sizeof(struct yy_buffer_state*));
1741 (yy_buffer_stack_max) = num_to_alloc;
1742 }
1743}
1744
1745 void yyFlexLexer::yy_push_state( int new_state )
1746{
1747 if ( (yy_start_stack_ptr) >= (yy_start_stack_depth) )
1748 {
1749 yy_size_t new_size;
1750
1751 (yy_start_stack_depth) += YY_START_STACK_INCR;
1752 new_size = (yy_start_stack_depth) * sizeof( int );
1753
1754 if ( ! (yy_start_stack) )
1755 (yy_start_stack) = (int *) MPQCInalloc(new_size );
1756
1757 else
1758 (yy_start_stack) = (int *) MPQCInrealloc((void *) (yy_start_stack),new_size );
1759
1760 if ( ! (yy_start_stack) )
1761 YY_FATAL_ERROR(
1762 "out of memory expanding start-condition stack" );
1763 }
1764
1765 (yy_start_stack)[(yy_start_stack_ptr)++] = YY_START;
1766
1767 BEGIN(new_state);
1768}
1769
1770 void yyFlexLexer::yy_pop_state()
1771{
1772 if ( --(yy_start_stack_ptr) < 0 )
1773 YY_FATAL_ERROR( "start-condition stack underflow" );
1774
1775 BEGIN((yy_start_stack)[(yy_start_stack_ptr)]);
1776}
1777
1778 int yyFlexLexer::yy_top_state()
1779{
1780 return (yy_start_stack)[(yy_start_stack_ptr) - 1];
1781}
1782
1783#ifndef YY_EXIT_FAILURE
1784#define YY_EXIT_FAILURE 2
1785#endif
1786
1787void yyFlexLexer::LexerError( yyconst char msg[] )
1788{
1789 std::cerr << msg << std::endl;
1790 exit( YY_EXIT_FAILURE );
1791}
1792
1793/* Redefine yyless() so it works in section 3 code. */
1794
1795#undef yyless
1796#define yyless(n) \
1797 do \
1798 { \
1799 /* Undo effects of setting up yytext. */ \
1800 int yyless_macro_arg = (n); \
1801 YY_LESS_LINENO(yyless_macro_arg);\
1802 yytext[yyleng] = (yy_hold_char); \
1803 (yy_c_buf_p) = yytext + yyless_macro_arg; \
1804 (yy_hold_char) = *(yy_c_buf_p); \
1805 *(yy_c_buf_p) = '\0'; \
1806 yyleng = yyless_macro_arg; \
1807 } \
1808 while ( 0 )
1809
1810/* Accessor methods (get/set functions) to struct members. */
1811
1812/*
1813 * Internal utility routines.
1814 */
1815
1816#ifndef yytext_ptr
1817static void yy_flex_strncpy (char* s1, yyconst char * s2, int n )
1818{
1819 register int i;
1820 for ( i = 0; i < n; ++i )
1821 s1[i] = s2[i];
1822}
1823#endif
1824
1825#ifdef YY_NEED_STRLEN
1826static int yy_flex_strlen (yyconst char * s )
1827{
1828 register int n;
1829 for ( n = 0; s[n]; ++n )
1830 ;
1831
1832 return n;
1833}
1834#endif
1835
1836void *MPQCInalloc (yy_size_t size )
1837{
1838 return (void *) malloc( size );
1839}
1840
1841void *MPQCInrealloc (void * ptr, yy_size_t size )
1842{
1843 /* The cast to (char *) in the following accommodates both
1844 * implementations that use char* generic pointers, and those
1845 * that use void* generic pointers. It works with the latter
1846 * because both ANSI C and C++ allow castless assignment from
1847 * any pointer type to void*, and deal with argument conversions
1848 * as though doing an assignment.
1849 */
1850 return (void *) realloc( (char *) ptr, size );
1851}
1852
1853void MPQCInfree (void * ptr )
1854{
1855 free( (char *) ptr ); /* see MPQCInrealloc() for (char *) cast */
1856}
1857
1858#define YYTABLES_NAME "yytables"
1859
1860#undef YY_NEW_FILE
1861#undef YY_FLUSH_BUFFER
1862#undef yy_set_bol
1863#undef yy_new_buffer
1864#undef yy_set_interactive
1865#undef yytext_ptr
1866#undef YY_DO_BEFORE_ACTION
1867
1868#ifdef YY_DECL_IS_OURS
1869#undef YY_DECL_IS_OURS
1870#undef YY_DECL
1871#endif
1872
1873int
1874MPQCInwrap()
1875{
1876 return 1;
1877}
1878
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