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@ -19,6 +19,7 @@ |
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#include "msc_sd.h" |
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#include "SPI.h" |
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#include "usb_reg_map.h" |
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#define PRODUCT_ID 0x29 |
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@ -41,13 +42,26 @@ Serial0Type<USBCompositeSerial> MarlinCompositeSerial(true); |
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#endif |
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#if ENABLED(EMERGENCY_PARSER) |
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void (*real_rx_callback)(void); |
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void my_rx_callback(void) { |
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real_rx_callback(); |
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int len = MarlinCompositeSerial.available(); |
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while (len-- > 0) // >0 because available() may return a negative value
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emergency_parser.update(MarlinCompositeSerial.emergency_state, MarlinCompositeSerial.peek()); |
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// The original callback is not called (no way to retrieve address).
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// That callback detects a special STM32 reset sequence: this functionality is not essential
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// as M997 achieves the same.
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void my_rx_callback(unsigned int, void*) { |
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// max length of 16 is enough to contain all emergency commands
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uint8 buf[16]; |
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//rx is usbSerialPart.endpoints[2]
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uint16 len = usb_get_ep_rx_count(usbSerialPart.endpoints[2].address); |
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uint32 total = composite_cdcacm_data_available(); |
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if (len == 0 || total == 0 || !WITHIN(total, len, COUNT(buf))) |
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return; |
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// cannot get character by character due to bug in composite_cdcacm_peek_ex
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len = composite_cdcacm_peek(buf, total); |
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for (uint32 i = 0; i < len; i++) |
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emergency_parser.update(MarlinCompositeSerial.emergency_state, buf[i+total-len]); |
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} |
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#endif |
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@ -73,9 +87,7 @@ void MSC_SD_init() { |
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MarlinCompositeSerial.registerComponent(); |
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USBComposite.begin(); |
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#if ENABLED(EMERGENCY_PARSER) |
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//rx is usbSerialPart.endpoints[2]
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real_rx_callback = usbSerialPart.endpoints[2].callback; |
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usbSerialPart.endpoints[2].callback = my_rx_callback; |
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composite_cdcacm_set_hooks(USBHID_CDCACM_HOOK_RX, my_rx_callback); |
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#endif |
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} |
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