cmdqueue.cpp 25 KB

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  1. #include "cmdqueue.h"
  2. #include "cardreader.h"
  3. #include "ultralcd.h"
  4. #include "Prusa_farm.h"
  5. // Reserve BUFSIZE lines of length MAX_CMD_SIZE plus CMDBUFFER_RESERVE_FRONT.
  6. char cmdbuffer[BUFSIZE * (MAX_CMD_SIZE + 1) + CMDBUFFER_RESERVE_FRONT];
  7. // Head of the circular buffer, where to read.
  8. size_t bufindr = 0;
  9. // Tail of the buffer, where to write.
  10. static size_t bufindw = 0;
  11. // Number of lines in cmdbuffer.
  12. int buflen = 0;
  13. // Flag for processing the current command inside the main Arduino loop().
  14. // If a new command was pushed to the front of a command buffer while
  15. // processing another command, this replaces the command on the top.
  16. // Therefore don't remove the command from the queue in the loop() function.
  17. bool cmdbuffer_front_already_processed = false;
  18. // Used for temporarely preventing accidental adding of Serial commands to the queue.
  19. // For now only check_file and the fancheck pause use this.
  20. bool cmdqueue_serial_disabled = false;
  21. int serial_count = 0; //index of character read from serial line
  22. bool comment_mode = false;
  23. char *strchr_pointer; // just a pointer to find chars in the command string like X, Y, Z, E, etc
  24. ShortTimer serialTimeoutTimer;
  25. long gcode_N = 0;
  26. long gcode_LastN = 0;
  27. uint32_t sdpos_atomic = 0;
  28. // Pop the currently processed command from the queue.
  29. // It is expected, that there is at least one command in the queue.
  30. bool cmdqueue_pop_front()
  31. {
  32. if (buflen > 0) {
  33. #ifdef CMDBUFFER_DEBUG
  34. SERIAL_ECHOPGM("Dequeing ");
  35. SERIAL_ECHO(cmdbuffer+bufindr+CMDHDRSIZE);
  36. SERIAL_ECHOLNPGM("");
  37. SERIAL_ECHOPGM("Old indices: buflen ");
  38. SERIAL_ECHO(buflen);
  39. SERIAL_ECHOPGM(", bufindr ");
  40. SERIAL_ECHO(bufindr);
  41. SERIAL_ECHOPGM(", bufindw ");
  42. SERIAL_ECHO(bufindw);
  43. SERIAL_ECHOPGM(", serial_count ");
  44. SERIAL_ECHO(serial_count);
  45. SERIAL_ECHOPGM(", bufsize ");
  46. SERIAL_ECHO(sizeof(cmdbuffer));
  47. SERIAL_ECHOLNPGM("");
  48. #endif /* CMDBUFFER_DEBUG */
  49. if (-- buflen == 0) {
  50. // Empty buffer.
  51. if (serial_count == 0)
  52. // No serial communication is pending. Reset both pointers to zero.
  53. bufindw = 0;
  54. bufindr = bufindw;
  55. } else {
  56. // There is at least one ready line in the buffer.
  57. // First skip the current command ID and iterate up to the end of the string.
  58. for (bufindr += CMDHDRSIZE; cmdbuffer[bufindr] != 0; ++ bufindr) ;
  59. // Second, skip the end of string null character and iterate until a nonzero command ID is found.
  60. for (++ bufindr; bufindr < sizeof(cmdbuffer) && cmdbuffer[bufindr] == 0; ++ bufindr) ;
  61. // If the end of the buffer was empty,
  62. if (bufindr == sizeof(cmdbuffer)) {
  63. // skip to the start and find the nonzero command.
  64. for (bufindr = 0; cmdbuffer[bufindr] == 0; ++ bufindr) ;
  65. }
  66. #ifdef CMDBUFFER_DEBUG
  67. SERIAL_ECHOPGM("New indices: buflen ");
  68. SERIAL_ECHO(buflen);
  69. SERIAL_ECHOPGM(", bufindr ");
  70. SERIAL_ECHO(bufindr);
  71. SERIAL_ECHOPGM(", bufindw ");
  72. SERIAL_ECHO(bufindw);
  73. SERIAL_ECHOPGM(", serial_count ");
  74. SERIAL_ECHO(serial_count);
  75. SERIAL_ECHOPGM(" new command on the top: ");
  76. SERIAL_ECHO(cmdbuffer+bufindr+CMDHDRSIZE);
  77. SERIAL_ECHOLNPGM("");
  78. #endif /* CMDBUFFER_DEBUG */
  79. }
  80. return true;
  81. }
  82. return false;
  83. }
  84. void cmdqueue_reset()
  85. {
  86. while (buflen)
  87. {
  88. // printf_P(PSTR("dumping: \"%s\" of type %u\n"), cmdbuffer+bufindr+CMDHDRSIZE, CMDBUFFER_CURRENT_TYPE);
  89. ClearToSend();
  90. cmdqueue_pop_front();
  91. }
  92. bufindr = 0;
  93. bufindw = 0;
  94. //commands are removed from command queue after process_command() function is finished
  95. //reseting command queue and enqueing new commands during some (usually long running) command processing would cause that new commands are immediately removed from queue (or damaged)
  96. //this will ensure that all new commands which are enqueued after cmdqueue reset, will be always executed
  97. cmdbuffer_front_already_processed = true;
  98. }
  99. // How long a string could be pushed to the front of the command queue?
  100. // If yes, adjust bufindr to the new position, where the new command could be enqued.
  101. // len_asked does not contain the zero terminator size.
  102. static bool cmdqueue_could_enqueue_front(size_t len_asked)
  103. {
  104. // MAX_CMD_SIZE has to accommodate the zero terminator.
  105. if (len_asked >= MAX_CMD_SIZE)
  106. return false;
  107. // Remove the currently processed command from the queue.
  108. if (! cmdbuffer_front_already_processed) {
  109. cmdqueue_pop_front();
  110. cmdbuffer_front_already_processed = true;
  111. }
  112. if (bufindr == bufindw && buflen > 0)
  113. // Full buffer.
  114. return false;
  115. // Adjust the end of the write buffer based on whether a partial line is in the receive buffer.
  116. int endw = (serial_count > 0) ? (bufindw + MAX_CMD_SIZE + 1) : bufindw;
  117. if (bufindw < bufindr) {
  118. int bufindr_new = bufindr - len_asked - (1 + CMDHDRSIZE);
  119. // Simple case. There is a contiguous space between the write buffer and the read buffer.
  120. if (endw <= bufindr_new) {
  121. bufindr = bufindr_new;
  122. return true;
  123. }
  124. } else {
  125. // Otherwise the free space is split between the start and end.
  126. if (len_asked + (1 + CMDHDRSIZE) <= bufindr) {
  127. // Could fit at the start.
  128. bufindr -= len_asked + (1 + CMDHDRSIZE);
  129. return true;
  130. }
  131. int bufindr_new = sizeof(cmdbuffer) - len_asked - (1 + CMDHDRSIZE);
  132. if (endw <= bufindr_new) {
  133. memset(cmdbuffer, 0, bufindr);
  134. bufindr = bufindr_new;
  135. return true;
  136. }
  137. }
  138. return false;
  139. }
  140. // Could one enqueue a command of length len_asked into the buffer,
  141. // while leaving CMDBUFFER_RESERVE_FRONT at the start?
  142. // If yes, adjust bufindw to the new position, where the new command could be enqued.
  143. // len_asked does not contain the zero terminator size.
  144. // This function may update bufindw, therefore for the power panic to work, this function must be called
  145. // with the interrupts disabled!
  146. static bool cmdqueue_could_enqueue_back(size_t len_asked, bool atomic_update = false)
  147. {
  148. // MAX_CMD_SIZE has to accommodate the zero terminator.
  149. if (len_asked >= MAX_CMD_SIZE)
  150. return false;
  151. if (bufindr == bufindw && buflen > 0)
  152. // Full buffer.
  153. return false;
  154. // If there is some data stored starting at bufindw, len_asked is certainly smaller than
  155. // the allocated data buffer. Try to reserve a new buffer and to move the already received
  156. // serial data.
  157. // How much memory to reserve for the commands pushed to the front?
  158. // End of the queue, when pushing to the end.
  159. size_t endw = bufindw + len_asked + (1 + CMDHDRSIZE);
  160. if (bufindw < bufindr)
  161. // Simple case. There is a contiguous space between the write buffer and the read buffer.
  162. return endw + CMDBUFFER_RESERVE_FRONT <= bufindr;
  163. // Otherwise the free space is split between the start and end.
  164. if (// Could one fit to the end, including the reserve?
  165. endw + CMDBUFFER_RESERVE_FRONT <= sizeof(cmdbuffer) ||
  166. // Could one fit to the end, and the reserve to the start?
  167. (endw <= sizeof(cmdbuffer) && CMDBUFFER_RESERVE_FRONT <= bufindr))
  168. return true;
  169. // Could one fit both to the start?
  170. if (len_asked + (1 + CMDHDRSIZE) + CMDBUFFER_RESERVE_FRONT <= bufindr) {
  171. // Mark the rest of the buffer as used.
  172. memset(cmdbuffer+bufindw, 0, sizeof(cmdbuffer)-bufindw);
  173. // and point to the start.
  174. // Be careful! The bufindw needs to be changed atomically for the power panic & filament panic to work.
  175. if (atomic_update)
  176. cli();
  177. bufindw = 0;
  178. if (atomic_update)
  179. sei();
  180. return true;
  181. }
  182. return false;
  183. }
  184. #ifdef CMDBUFFER_DEBUG
  185. void cmdqueue_dump_to_serial_single_line(int nr, const char *p)
  186. {
  187. SERIAL_ECHOPGM("Entry nr: ");
  188. SERIAL_ECHO(nr);
  189. SERIAL_ECHOPGM(", type: ");
  190. int type = *p;
  191. SERIAL_ECHO(type);
  192. SERIAL_ECHOPGM(", size: ");
  193. unsigned int size = *(unsigned int*)(p + 1);
  194. SERIAL_ECHO(size);
  195. SERIAL_ECHOPGM(", cmd: ");
  196. SERIAL_ECHO(p + CMDHDRSIZE);
  197. SERIAL_ECHOLNPGM("");
  198. }
  199. void cmdqueue_dump_to_serial()
  200. {
  201. if (buflen == 0) {
  202. SERIAL_ECHOLNPGM("The command buffer is empty.");
  203. } else {
  204. SERIAL_ECHOPGM("Content of the buffer: entries ");
  205. SERIAL_ECHO(buflen);
  206. SERIAL_ECHOPGM(", indr ");
  207. SERIAL_ECHO(bufindr);
  208. SERIAL_ECHOPGM(", indw ");
  209. SERIAL_ECHO(bufindw);
  210. SERIAL_ECHOLNPGM("");
  211. int nr = 0;
  212. if (bufindr < bufindw) {
  213. for (const char *p = cmdbuffer + bufindr; p < cmdbuffer + bufindw; ++ nr) {
  214. cmdqueue_dump_to_serial_single_line(nr, p);
  215. // Skip the command.
  216. for (p += CMDHDRSIZE; *p != 0; ++ p);
  217. // Skip the gaps.
  218. for (++p; p < cmdbuffer + bufindw && *p == 0; ++ p);
  219. }
  220. } else {
  221. for (const char *p = cmdbuffer + bufindr; p < cmdbuffer + sizeof(cmdbuffer); ++ nr) {
  222. cmdqueue_dump_to_serial_single_line(nr, p);
  223. // Skip the command.
  224. for (p += CMDHDRSIZE; *p != 0; ++ p);
  225. // Skip the gaps.
  226. for (++p; p < cmdbuffer + sizeof(cmdbuffer) && *p == 0; ++ p);
  227. }
  228. for (const char *p = cmdbuffer; p < cmdbuffer + bufindw; ++ nr) {
  229. cmdqueue_dump_to_serial_single_line(nr, p);
  230. // Skip the command.
  231. for (p += CMDHDRSIZE; *p != 0; ++ p);
  232. // Skip the gaps.
  233. for (++p; p < cmdbuffer + bufindw && *p == 0; ++ p);
  234. }
  235. }
  236. SERIAL_ECHOLNPGM("End of the buffer.");
  237. }
  238. }
  239. #endif /* CMDBUFFER_DEBUG */
  240. //adds an command to the main command buffer
  241. //thats really done in a non-safe way.
  242. //needs overworking someday
  243. // Currently the maximum length of a command piped through this function is around 20 characters
  244. void enquecommand(const char *cmd, bool from_progmem)
  245. {
  246. size_t len = from_progmem ? strlen_P(cmd) : strlen(cmd);
  247. // Does cmd fit the queue while leaving sufficient space at the front for the chained commands?
  248. // If it fits, it may move bufindw, so it points to a contiguous buffer, which fits cmd.
  249. if (cmdqueue_could_enqueue_back(len)) {
  250. // This is dangerous if a mixing of serial and this happens
  251. // This may easily be tested: If serial_count > 0, we have a problem.
  252. cmdbuffer[bufindw] = CMDBUFFER_CURRENT_TYPE_UI;
  253. if (from_progmem)
  254. strcpy_P(cmdbuffer + bufindw + CMDHDRSIZE, cmd);
  255. else
  256. strcpy(cmdbuffer + bufindw + CMDHDRSIZE, cmd);
  257. SERIAL_ECHO_START;
  258. SERIAL_ECHORPGM(MSG_Enqueing);
  259. SERIAL_ECHO(cmdbuffer + bufindw + CMDHDRSIZE);
  260. SERIAL_ECHOLNPGM("\"");
  261. bufindw += len + (CMDHDRSIZE + 1);
  262. if (bufindw == sizeof(cmdbuffer))
  263. bufindw = 0;
  264. ++ buflen;
  265. #ifdef CMDBUFFER_DEBUG
  266. cmdqueue_dump_to_serial();
  267. #endif /* CMDBUFFER_DEBUG */
  268. } else {
  269. SERIAL_ERROR_START;
  270. SERIAL_ECHORPGM(MSG_Enqueing);
  271. if (from_progmem)
  272. SERIAL_PROTOCOLRPGM(cmd);
  273. else
  274. SERIAL_ECHO(cmd);
  275. SERIAL_ECHOLNPGM("\" failed: Buffer full!");
  276. #ifdef CMDBUFFER_DEBUG
  277. cmdqueue_dump_to_serial();
  278. #endif /* CMDBUFFER_DEBUG */
  279. }
  280. }
  281. bool cmd_buffer_empty()
  282. {
  283. return (buflen == 0);
  284. }
  285. void enquecommand_front(const char *cmd, bool from_progmem)
  286. {
  287. size_t len = from_progmem ? strlen_P(cmd) : strlen(cmd);
  288. // Does cmd fit the queue? This call shall move bufindr, so the command may be copied.
  289. if (cmdqueue_could_enqueue_front(len)) {
  290. cmdbuffer[bufindr] = CMDBUFFER_CURRENT_TYPE_UI;
  291. if (from_progmem)
  292. strcpy_P(cmdbuffer + bufindr + CMDHDRSIZE, cmd);
  293. else
  294. strcpy(cmdbuffer + bufindr + CMDHDRSIZE, cmd);
  295. ++ buflen;
  296. SERIAL_ECHO_START;
  297. SERIAL_ECHOPGM("Enqueing to the front: \"");
  298. SERIAL_ECHO(cmdbuffer + bufindr + CMDHDRSIZE);
  299. SERIAL_ECHOLNPGM("\"");
  300. #ifdef CMDBUFFER_DEBUG
  301. cmdqueue_dump_to_serial();
  302. #endif /* CMDBUFFER_DEBUG */
  303. } else {
  304. SERIAL_ERROR_START;
  305. SERIAL_ECHOPGM("Enqueing to the front: \"");
  306. if (from_progmem)
  307. SERIAL_PROTOCOLRPGM(cmd);
  308. else
  309. SERIAL_ECHO(cmd);
  310. SERIAL_ECHOLNPGM("\" failed: Buffer full!");
  311. #ifdef CMDBUFFER_DEBUG
  312. cmdqueue_dump_to_serial();
  313. #endif /* CMDBUFFER_DEBUG */
  314. }
  315. }
  316. // Mark the command at the top of the command queue as new.
  317. // Therefore it will not be removed from the queue.
  318. void repeatcommand_front()
  319. {
  320. cmdbuffer_front_already_processed = true;
  321. }
  322. void get_command()
  323. {
  324. // Test and reserve space for the new command string.
  325. if (! cmdqueue_could_enqueue_back(MAX_CMD_SIZE - 1, true))
  326. return;
  327. if (MYSERIAL.available() == RX_BUFFER_SIZE - 1) { //compare number of chars buffered in rx buffer with rx buffer size
  328. MYSERIAL.flush();
  329. SERIAL_ECHOLNPGM("Full RX Buffer"); //if buffer was full, there is danger that reading of last gcode will not be completed
  330. }
  331. // start of serial line processing loop
  332. while (((MYSERIAL.available() > 0 && !saved_printing) || (MYSERIAL.available() > 0 && isPrintPaused)) && !cmdqueue_serial_disabled) { //is print is saved (crash detection or filament detection), dont process data from serial line
  333. char serial_char = MYSERIAL.read();
  334. serialTimeoutTimer.start();
  335. if (serial_char < 0)
  336. // Ignore extended ASCII characters. These characters have no meaning in the G-code apart from the file names
  337. // and Marlin does not support such file names anyway.
  338. // Serial characters with a highest bit set to 1 are generated when the USB cable is unplugged, leading
  339. // to a hang-up of the print process from an SD card.
  340. continue;
  341. if(serial_char == '\n' ||
  342. serial_char == '\r' ||
  343. serial_count >= (MAX_CMD_SIZE - 1) )
  344. {
  345. if(!serial_count) { //if empty line
  346. comment_mode = false; //for new command
  347. return;
  348. }
  349. cmdbuffer[bufindw+serial_count+CMDHDRSIZE] = 0; //terminate string
  350. if(!comment_mode){
  351. gcode_N = 0;
  352. // Line numbers must be first in buffer
  353. if ((strstr_P(cmdbuffer+bufindw+CMDHDRSIZE, PSTR("PRUSA")) == NULL) &&
  354. (cmdbuffer[bufindw+CMDHDRSIZE] == 'N')) {
  355. // Line number met. When sending a G-code over a serial line, each line may be stamped with its index,
  356. // and Marlin tests, whether the successive lines are stamped with an increasing line number ID
  357. gcode_N = (strtol(cmdbuffer+bufindw+CMDHDRSIZE+1, NULL, 10));
  358. if(gcode_N != gcode_LastN+1 && (strstr_P(cmdbuffer+bufindw+CMDHDRSIZE, PSTR("M110")) == NULL) ) {
  359. // M110 - set current line number.
  360. // Line numbers not sent in succession.
  361. SERIAL_ERROR_START;
  362. SERIAL_ERRORRPGM(_n("Line Number is not Last Line Number+1, Last Line: "));////MSG_ERR_LINE_NO
  363. SERIAL_ERRORLN(gcode_LastN);
  364. //Serial.println(gcode_N);
  365. FlushSerialRequestResend();
  366. serial_count = 0;
  367. return;
  368. }
  369. if((strchr_pointer = strchr(cmdbuffer+bufindw+CMDHDRSIZE, '*')) != NULL)
  370. {
  371. byte checksum = 0;
  372. char *p = cmdbuffer+bufindw+CMDHDRSIZE;
  373. while (p != strchr_pointer)
  374. checksum = checksum^(*p++);
  375. if (code_value_short() != (int16_t)checksum) {
  376. SERIAL_ERROR_START;
  377. SERIAL_ERRORRPGM(_n("checksum mismatch, Last Line: "));////MSG_ERR_CHECKSUM_MISMATCH
  378. SERIAL_ERRORLN(gcode_LastN);
  379. FlushSerialRequestResend();
  380. serial_count = 0;
  381. return;
  382. }
  383. // If no errors, remove the checksum and continue parsing.
  384. *strchr_pointer = 0;
  385. }
  386. else
  387. {
  388. SERIAL_ERROR_START;
  389. SERIAL_ERRORRPGM(_n("No Checksum with line number, Last Line: "));////MSG_ERR_NO_CHECKSUM
  390. SERIAL_ERRORLN(gcode_LastN);
  391. FlushSerialRequestResend();
  392. serial_count = 0;
  393. return;
  394. }
  395. // Don't parse N again with code_seen('N')
  396. cmdbuffer[bufindw + CMDHDRSIZE] = '$';
  397. }
  398. // if we don't receive 'N' but still see '*'
  399. if ((cmdbuffer[bufindw + CMDHDRSIZE] != 'N') && (cmdbuffer[bufindw + CMDHDRSIZE] != '$') && (strchr(cmdbuffer+bufindw+CMDHDRSIZE, '*') != NULL))
  400. {
  401. SERIAL_ERROR_START;
  402. SERIAL_ERRORRPGM(_n("No Line Number with checksum, Last Line: "));////MSG_ERR_NO_LINENUMBER_WITH_CHECKSUM
  403. SERIAL_ERRORLN(gcode_LastN);
  404. FlushSerialRequestResend();
  405. serial_count = 0;
  406. return;
  407. }
  408. // Handle KILL early, even when Stopped
  409. if(strcmp(cmdbuffer+bufindw+CMDHDRSIZE, "M112") == 0)
  410. kill(MSG_M112_KILL, 2);
  411. // Handle the USB timer
  412. if ((strchr_pointer = strchr(cmdbuffer+bufindw+CMDHDRSIZE, 'G')) != NULL) {
  413. if (!IS_SD_PRINTING) {
  414. usb_timer.start();
  415. }
  416. }
  417. if (Stopped == true) {
  418. // Stopped can be set either during error states (thermal error: cannot continue), or
  419. // when a printer-initiated action is processed. In such case the printer will send to
  420. // the host an action, but cannot know if the action has been processed while new
  421. // commands are being sent. In this situation we just drop the command while issuing
  422. // periodic "busy" messages in the main loop. Since we're not incrementing the received
  423. // line number, a request for resend will happen (if necessary), ensuring we don't skip
  424. // commands whenever Stopped is cleared and processing resumes.
  425. serial_count = 0;
  426. return;
  427. }
  428. // Command is complete: store the current line into buffer, move to the next line.
  429. // Store type of entry
  430. cmdbuffer[bufindw] = gcode_N ? CMDBUFFER_CURRENT_TYPE_USB_WITH_LINENR : CMDBUFFER_CURRENT_TYPE_USB;
  431. #ifdef CMDBUFFER_DEBUG
  432. SERIAL_ECHO_START;
  433. SERIAL_ECHOPGM("Storing a command line to buffer: ");
  434. SERIAL_ECHO(cmdbuffer+bufindw+CMDHDRSIZE);
  435. SERIAL_ECHOLNPGM("");
  436. #endif /* CMDBUFFER_DEBUG */
  437. // Store command itself
  438. bufindw += strlen(cmdbuffer+bufindw+CMDHDRSIZE) + (1 + CMDHDRSIZE);
  439. if (bufindw == sizeof(cmdbuffer))
  440. bufindw = 0;
  441. ++ buflen;
  442. // Update the processed gcode line
  443. gcode_LastN = gcode_N;
  444. #ifdef CMDBUFFER_DEBUG
  445. SERIAL_ECHOPGM("Number of commands in the buffer: ");
  446. SERIAL_ECHO(buflen);
  447. SERIAL_ECHOLNPGM("");
  448. #endif /* CMDBUFFER_DEBUG */
  449. } // end of 'not comment mode'
  450. serial_count = 0; //clear buffer
  451. // Don't call cmdqueue_could_enqueue_back if there are no characters waiting
  452. // in the queue, as this function will reserve the memory.
  453. if (MYSERIAL.available() == 0 || ! cmdqueue_could_enqueue_back(MAX_CMD_SIZE-1, true))
  454. return;
  455. } // end of "end of line" processing
  456. else {
  457. // Not an "end of line" symbol. Store the new character into a buffer.
  458. if(serial_char == ';') comment_mode = true;
  459. if(!comment_mode) cmdbuffer[bufindw+CMDHDRSIZE+serial_count++] = serial_char;
  460. }
  461. } // end of serial line processing loop
  462. if (serial_count > 0 && serialTimeoutTimer.expired(farm_mode ? 800 : 2000)) {
  463. comment_mode = false;
  464. serial_count = 0;
  465. SERIAL_ECHOLNPGM("RX timeout");
  466. return;
  467. }
  468. #ifdef SDSUPPORT
  469. if(!card.sdprinting || !card.isFileOpen() || serial_count!=0){
  470. // If there is a half filled buffer from serial line, wait until return before
  471. // continuing with the serial line.
  472. return;
  473. }
  474. //'#' stops reading from SD to the buffer prematurely, so procedural macro calls are possible
  475. // if it occurs, stop_buffering is triggered and the buffer is ran dry.
  476. // this character _can_ occur in serial com, due to checksums. however, no checksums are used in SD printing
  477. static bool stop_buffering=false;
  478. if(buflen==0) stop_buffering=false;
  479. union {
  480. struct {
  481. char lo;
  482. char hi;
  483. } lohi;
  484. uint16_t value;
  485. } sd_count;
  486. sd_count.value = 0;
  487. // Reads whole lines from the SD card. Never leaves a half-filled line in the cmdbuffer.
  488. while( !card.eof() && !stop_buffering) {
  489. int16_t n=card.getFilteredGcodeChar();
  490. char serial_char = (char)n;
  491. if( serial_char == '\n'
  492. || serial_char == '\r'
  493. || ((serial_char == '#' || serial_char == ':') )
  494. || serial_count >= (MAX_CMD_SIZE - 1)
  495. || n==-1
  496. ){
  497. if(serial_char=='#')
  498. stop_buffering=true;
  499. if(!serial_count)
  500. {
  501. // This is either an empty line, or a line with just a comment.
  502. // Continue to the following line, and continue accumulating the number of bytes
  503. // read from the sdcard into sd_count,
  504. // so that the lenght of the already read empty lines and comments will be added
  505. // to the following non-empty line.
  506. return; // prevent cycling indefinitely - let manage_heaters do their job
  507. }
  508. // The new command buffer could be updated non-atomically, because it is not yet considered
  509. // to be inside the active queue.
  510. sd_count.value = card.get_sdpos() - sdpos_atomic;
  511. cmdbuffer[bufindw] = CMDBUFFER_CURRENT_TYPE_SDCARD;
  512. cmdbuffer[bufindw+1] = sd_count.lohi.lo;
  513. cmdbuffer[bufindw+2] = sd_count.lohi.hi;
  514. cmdbuffer[bufindw+serial_count+CMDHDRSIZE] = 0; //terminate string
  515. // Calculate the length before disabling the interrupts.
  516. uint8_t len = strlen(cmdbuffer+bufindw+CMDHDRSIZE) + (1 + CMDHDRSIZE);
  517. // SERIAL_ECHOPGM("SD cmd(");
  518. // MYSERIAL.print(sd_count.value, DEC);
  519. // SERIAL_ECHOPGM(") ");
  520. // SERIAL_ECHOLN(cmdbuffer+bufindw+CMDHDRSIZE);
  521. // SERIAL_ECHOPGM("cmdbuffer:");
  522. // MYSERIAL.print(cmdbuffer);
  523. // SERIAL_ECHOPGM("buflen:");
  524. // MYSERIAL.print(buflen+1);
  525. sd_count.value = 0;
  526. cli();
  527. // This block locks the interrupts globally for 3.56 us,
  528. // which corresponds to a maximum repeat frequency of 280.70 kHz.
  529. // This blocking is safe in the context of a 10kHz stepper driver interrupt
  530. // or a 115200 Bd serial line receive interrupt, which will not trigger faster than 12kHz.
  531. ++ buflen;
  532. bufindw += len;
  533. sdpos_atomic = card.get_sdpos();
  534. if (bufindw == sizeof(cmdbuffer))
  535. bufindw = 0;
  536. sei();
  537. comment_mode = false; //for new command
  538. serial_count = 0; //clear buffer
  539. if(card.eof()) break;
  540. // The following line will reserve buffer space if available.
  541. if (! cmdqueue_could_enqueue_back(MAX_CMD_SIZE-1, true))
  542. return;
  543. }
  544. else
  545. {
  546. // there are no comments coming from the filtered file
  547. cmdbuffer[bufindw+CMDHDRSIZE+serial_count++] = serial_char;
  548. }
  549. }
  550. if(card.eof())
  551. {
  552. // file was fully buffered, but commands might still need to be planned!
  553. // do *not* clear sdprinting until all SD commands are consumed to ensure
  554. // SD state can be resumed from a saved printing state. sdprinting is only
  555. // cleared by printingHasFinished after peforming all remaining moves.
  556. if(!cmdqueue_calc_sd_length())
  557. {
  558. // queue is complete, but before we process EOF commands prevent
  559. // re-entry by disabling SD processing from any st_synchronize call
  560. card.closefile();
  561. SERIAL_PROTOCOLLNRPGM(_n("Done printing file"));////MSG_FILE_PRINTED
  562. stoptime=_millis();
  563. char time[30];
  564. unsigned long t=(stoptime-starttime-pause_time)/1000;
  565. pause_time = 0;
  566. int hours, minutes;
  567. minutes=(t/60)%60;
  568. hours=t/60/60;
  569. save_statistics(total_filament_used, t);
  570. sprintf_P(time, PSTR("%i hours %i minutes"),hours, minutes);
  571. SERIAL_ECHO_START;
  572. SERIAL_ECHOLN(time);
  573. lcd_setstatus(time);
  574. card.printingHasFinished();
  575. card.checkautostart(true);
  576. if (farm_mode)
  577. {
  578. prusa_statistics(6);
  579. lcd_commands_type = LcdCommands::FarmModeConfirm;
  580. }
  581. }
  582. }
  583. #endif //SDSUPPORT
  584. }
  585. uint16_t cmdqueue_calc_sd_length()
  586. {
  587. if (buflen == 0)
  588. return 0;
  589. union {
  590. struct {
  591. char lo;
  592. char hi;
  593. } lohi;
  594. uint16_t value;
  595. } sdlen_single;
  596. uint16_t sdlen = 0;
  597. for (size_t _buflen = buflen, _bufindr = bufindr;;) {
  598. if (cmdbuffer[_bufindr] == CMDBUFFER_CURRENT_TYPE_SDCARD) {
  599. sdlen_single.lohi.lo = cmdbuffer[_bufindr + 1];
  600. sdlen_single.lohi.hi = cmdbuffer[_bufindr + 2];
  601. sdlen += sdlen_single.value;
  602. }
  603. if (-- _buflen == 0)
  604. break;
  605. // First skip the current command ID and iterate up to the end of the string.
  606. for (_bufindr += CMDHDRSIZE; cmdbuffer[_bufindr] != 0; ++ _bufindr) ;
  607. // Second, skip the end of string null character and iterate until a nonzero command ID is found.
  608. for (++ _bufindr; _bufindr < sizeof(cmdbuffer) && cmdbuffer[_bufindr] == 0; ++ _bufindr) ;
  609. // If the end of the buffer was empty,
  610. if (_bufindr == sizeof(cmdbuffer)) {
  611. // skip to the start and find the nonzero command.
  612. for (_bufindr = 0; cmdbuffer[_bufindr] == 0; ++ _bufindr) ;
  613. }
  614. }
  615. return sdlen;
  616. }