parser.h 12 KB

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  1. /**
  2. * Marlin 3D Printer Firmware
  3. * Copyright (C) 2016 MarlinFirmware [https://github.com/MarlinFirmware/Marlin]
  4. *
  5. * Based on Sprinter and grbl.
  6. * Copyright (C) 2011 Camiel Gubbels / Erik van der Zalm
  7. *
  8. * This program is free software: you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation, either version 3 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  20. *
  21. */
  22. /**
  23. * parser.h - Parser for a GCode line, providing a parameter interface.
  24. * Codes like M149 control the way the GCode parser behaves,
  25. * so settings for these codes are located in this class.
  26. */
  27. #ifndef _PARSER_H_
  28. #define _PARSER_H_
  29. #include "enum.h"
  30. #include "types.h"
  31. #include "MarlinConfig.h"
  32. //#define DEBUG_GCODE_PARSER
  33. #if ENABLED(DEBUG_GCODE_PARSER)
  34. #include "hex_print_routines.h"
  35. #include "serial.h"
  36. #endif
  37. #define strtof strtod
  38. /**
  39. * GCode parser
  40. *
  41. * - Parse a single gcode line for its letter, code, subcode, and parameters
  42. * - FASTER_GCODE_PARSER:
  43. * - Flags existing params (1 bit each)
  44. * - Stores value offsets (1 byte each)
  45. * - Provide accessors for parameters:
  46. * - Parameter exists
  47. * - Parameter has value
  48. * - Parameter value in different units and types
  49. */
  50. class GCodeParser {
  51. private:
  52. static char *value_ptr; // Set by seen, used to fetch the value
  53. #if ENABLED(FASTER_GCODE_PARSER)
  54. static uint32_t codebits; // Parameters pre-scanned
  55. static uint8_t param[26]; // For A-Z, offsets into command args
  56. #else
  57. static char *command_args; // Args start here, for slow scan
  58. #endif
  59. public:
  60. // Global states for GCode-level units features
  61. static bool volumetric_enabled;
  62. #if ENABLED(INCH_MODE_SUPPORT)
  63. static float linear_unit_factor, volumetric_unit_factor;
  64. #endif
  65. #if ENABLED(TEMPERATURE_UNITS_SUPPORT)
  66. static TempUnit input_temp_units;
  67. #endif
  68. // Command line state
  69. static char *command_ptr, // The command, so it can be echoed
  70. *string_arg; // string of command line
  71. static char command_letter; // G, M, or T
  72. static int codenum; // 123
  73. #if USE_GCODE_SUBCODES
  74. static uint8_t subcode; // .1
  75. #endif
  76. #if ENABLED(DEBUG_GCODE_PARSER)
  77. static void debug();
  78. #endif
  79. GCodeParser() {
  80. #if ENABLED(INCH_MODE_SUPPORT)
  81. set_input_linear_units(LINEARUNIT_MM);
  82. #endif
  83. }
  84. // Reset is done before parsing
  85. static void reset();
  86. #define LETTER_BIT(N) ((N) - 'A')
  87. FORCE_INLINE static bool valid_signless(const char * const p) {
  88. return NUMERIC(p[0]) || (p[0] == '.' && NUMERIC(p[1])); // .?[0-9]
  89. }
  90. FORCE_INLINE static bool valid_float(const char * const p) {
  91. return valid_signless(p) || ((p[0] == '-' || p[0] == '+') && valid_signless(&p[1])); // [-+]?.?[0-9]
  92. }
  93. #if ENABLED(FASTER_GCODE_PARSER)
  94. FORCE_INLINE static bool valid_int(const char * const p) {
  95. return NUMERIC(p[0]) || ((p[0] == '-' || p[0] == '+') && NUMERIC(p[1])); // [-+]?[0-9]
  96. }
  97. // Set the flag and pointer for a parameter
  98. static void set(const char c, char * const ptr) {
  99. const uint8_t ind = LETTER_BIT(c);
  100. if (ind >= COUNT(param)) return; // Only A-Z
  101. SBI32(codebits, ind); // parameter exists
  102. param[ind] = ptr ? ptr - command_ptr : 0; // parameter offset or 0
  103. #if ENABLED(DEBUG_GCODE_PARSER)
  104. if (codenum == 800) {
  105. SERIAL_ECHOPAIR("Set bit ", (int)ind);
  106. SERIAL_ECHOPAIR(" of codebits (", hex_address((void*)(codebits >> 16)));
  107. print_hex_word((uint16_t)(codebits & 0xFFFF));
  108. SERIAL_ECHOLNPAIR(") | param = ", (int)param[ind]);
  109. }
  110. #endif
  111. }
  112. // Code seen bit was set. If not found, value_ptr is unchanged.
  113. // This allows "if (seen('A')||seen('B'))" to use the last-found value.
  114. static bool seen(const char c) {
  115. const uint8_t ind = LETTER_BIT(c);
  116. if (ind >= COUNT(param)) return false; // Only A-Z
  117. const bool b = TEST32(codebits, ind);
  118. if (b) {
  119. #if ENABLED(DEBUG_GCODE_PARSER)
  120. if (codenum == 800) {
  121. SERIAL_CHAR('\''); SERIAL_CHAR(c); SERIAL_ECHOLNPGM("' is seen");
  122. }
  123. #endif
  124. char * const ptr = command_ptr + param[ind];
  125. value_ptr = param[ind] && valid_float(ptr) ? ptr : (char*)NULL;
  126. }
  127. return b;
  128. }
  129. static bool seen_any() { return !!codebits; }
  130. #define SEEN_TEST(L) TEST32(codebits, LETTER_BIT(L))
  131. #else // !FASTER_GCODE_PARSER
  132. // Code is found in the string. If not found, value_ptr is unchanged.
  133. // This allows "if (seen('A')||seen('B'))" to use the last-found value.
  134. static bool seen(const char c) {
  135. char *p = strchr(command_args, c);
  136. const bool b = !!p;
  137. if (b) value_ptr = valid_float(&p[1]) ? &p[1] : (char*)NULL;
  138. return b;
  139. }
  140. static bool seen_any() { return *command_args == '\0'; }
  141. #define SEEN_TEST(L) !!strchr(command_args, L)
  142. #endif // !FASTER_GCODE_PARSER
  143. // Seen any axis parameter
  144. static bool seen_axis() {
  145. return SEEN_TEST('X') || SEEN_TEST('Y') || SEEN_TEST('Z') || SEEN_TEST('E');
  146. }
  147. // Populate all fields by parsing a single line of GCode
  148. // This uses 54 bytes of SRAM to speed up seen/value
  149. static void parse(char * p);
  150. #if ENABLED(CNC_COORDINATE_SYSTEMS)
  151. // Parse the next parameter as a new command
  152. static bool chain();
  153. #endif
  154. // The code value pointer was set
  155. FORCE_INLINE static bool has_value() { return value_ptr != NULL; }
  156. // Seen a parameter with a value
  157. inline static bool seenval(const char c) { return seen(c) && has_value(); }
  158. // Float removes 'E' to prevent scientific notation interpretation
  159. inline static float value_float() {
  160. if (value_ptr) {
  161. char *e = value_ptr;
  162. for (;;) {
  163. const char c = *e;
  164. if (c == '\0' || c == ' ') break;
  165. if (c == 'E' || c == 'e') {
  166. *e = '\0';
  167. const float ret = strtof(value_ptr, NULL);
  168. *e = c;
  169. return ret;
  170. }
  171. ++e;
  172. }
  173. return strtof(value_ptr, NULL);
  174. }
  175. return 0;
  176. }
  177. // Code value as a long or ulong
  178. inline static int32_t value_long() { return value_ptr ? strtol(value_ptr, NULL, 10) : 0L; }
  179. inline static uint32_t value_ulong() { return value_ptr ? strtoul(value_ptr, NULL, 10) : 0UL; }
  180. // Code value for use as time
  181. FORCE_INLINE static millis_t value_millis() { return value_ulong(); }
  182. FORCE_INLINE static millis_t value_millis_from_seconds() { return value_float() * 1000UL; }
  183. // Reduce to fewer bits
  184. FORCE_INLINE static int16_t value_int() { return (int16_t)value_long(); }
  185. FORCE_INLINE static uint16_t value_ushort() { return (uint16_t)value_long(); }
  186. inline static uint8_t value_byte() { return (uint8_t)constrain(value_long(), 0, 255); }
  187. // Bool is true with no value or non-zero
  188. inline static bool value_bool() { return !has_value() || !!value_byte(); }
  189. // Units modes: Inches, Fahrenheit, Kelvin
  190. #if ENABLED(INCH_MODE_SUPPORT)
  191. inline static void set_input_linear_units(const LinearUnit units) {
  192. switch (units) {
  193. case LINEARUNIT_INCH:
  194. linear_unit_factor = 25.4;
  195. break;
  196. case LINEARUNIT_MM:
  197. default:
  198. linear_unit_factor = 1.0;
  199. break;
  200. }
  201. volumetric_unit_factor = POW(linear_unit_factor, 3.0);
  202. }
  203. inline static float axis_unit_factor(const AxisEnum axis) {
  204. return (axis >= E_AXIS && volumetric_enabled ? volumetric_unit_factor : linear_unit_factor);
  205. }
  206. inline static float value_linear_units() { return value_float() * linear_unit_factor; }
  207. inline static float value_axis_units(const AxisEnum axis) { return value_float() * axis_unit_factor(axis); }
  208. inline static float value_per_axis_unit(const AxisEnum axis) { return value_float() / axis_unit_factor(axis); }
  209. #else
  210. FORCE_INLINE static float value_linear_units() { return value_float(); }
  211. FORCE_INLINE static float value_axis_units(const AxisEnum a) { UNUSED(a); return value_float(); }
  212. FORCE_INLINE static float value_per_axis_unit(const AxisEnum a) { UNUSED(a); return value_float(); }
  213. #endif
  214. #if ENABLED(TEMPERATURE_UNITS_SUPPORT)
  215. inline static void set_input_temp_units(TempUnit units) { input_temp_units = units; }
  216. #if ENABLED(ULTIPANEL) && DISABLED(DISABLE_M503)
  217. FORCE_INLINE static char temp_units_code() {
  218. return input_temp_units == TEMPUNIT_K ? 'K' : input_temp_units == TEMPUNIT_F ? 'F' : 'C';
  219. }
  220. FORCE_INLINE static const char* temp_units_name() {
  221. return input_temp_units == TEMPUNIT_K ? PSTR("Kelvin") : input_temp_units == TEMPUNIT_F ? PSTR("Fahrenheit") : PSTR("Celsius");
  222. }
  223. inline static float to_temp_units(const float &f) {
  224. switch (input_temp_units) {
  225. case TEMPUNIT_F:
  226. return f * 0.5555555556 + 32.0;
  227. case TEMPUNIT_K:
  228. return f + 273.15;
  229. case TEMPUNIT_C:
  230. default:
  231. return f;
  232. }
  233. }
  234. #endif // ULTIPANEL && !DISABLE_M503
  235. inline static float value_celsius() {
  236. const float f = value_float();
  237. switch (input_temp_units) {
  238. case TEMPUNIT_F:
  239. return (f - 32.0) * 0.5555555556;
  240. case TEMPUNIT_K:
  241. return f - 273.15;
  242. case TEMPUNIT_C:
  243. default:
  244. return f;
  245. }
  246. }
  247. inline static float value_celsius_diff() {
  248. switch (input_temp_units) {
  249. case TEMPUNIT_F:
  250. return value_float() * 0.5555555556;
  251. case TEMPUNIT_C:
  252. case TEMPUNIT_K:
  253. default:
  254. return value_float();
  255. }
  256. }
  257. #else // !TEMPERATURE_UNITS_SUPPORT
  258. FORCE_INLINE static float value_celsius() { return value_float(); }
  259. FORCE_INLINE static float value_celsius_diff() { return value_float(); }
  260. #endif // !TEMPERATURE_UNITS_SUPPORT
  261. FORCE_INLINE static float value_feedrate() { return value_linear_units(); }
  262. void unknown_command_error();
  263. // Provide simple value accessors with default option
  264. FORCE_INLINE static float floatval(const char c, const float dval=0.0) { return seenval(c) ? value_float() : dval; }
  265. FORCE_INLINE static bool boolval(const char c, const bool dval=false) { return seenval(c) ? value_bool() : (seen(c) ? true : dval); }
  266. FORCE_INLINE static uint8_t byteval(const char c, const uint8_t dval=0) { return seenval(c) ? value_byte() : dval; }
  267. FORCE_INLINE static int16_t intval(const char c, const int16_t dval=0) { return seenval(c) ? value_int() : dval; }
  268. FORCE_INLINE static uint16_t ushortval(const char c, const uint16_t dval=0) { return seenval(c) ? value_ushort() : dval; }
  269. FORCE_INLINE static int32_t longval(const char c, const int32_t dval=0) { return seenval(c) ? value_long() : dval; }
  270. FORCE_INLINE static uint32_t ulongval(const char c, const uint32_t dval=0) { return seenval(c) ? value_ulong() : dval; }
  271. FORCE_INLINE static float linearval(const char c, const float dval=0.0) { return seenval(c) ? value_linear_units() : dval; }
  272. FORCE_INLINE static float celsiusval(const char c, const float dval=0.0) { return seenval(c) ? value_celsius() : dval; }
  273. };
  274. extern GCodeParser parser;
  275. #endif // _PARSER_H_