show/hide this revision's text 2 Added snip from disassembly.

Edit:

A search of my disassembly for the common CRC16 polynomial 0xA001 revealed this function:

34F86 ; =============== S U B R O U T I N E =======================================34F86 Possible_Checksum:                    ; CODE XREF: MEM_EXT_4:00034FEEP34F86                                         ; MEM_EXT_4:0003503AP ...34F86                 mov     [-r0], r9       ; Move Word34F88                 mov     r4, r12         ; Move Word34F8A                 mov     r5, r13         ; Move Word34F8C                 shr     r4, #14         ; Shift Right34F8E                 shl     r5, #2          ; Shift Left34F90                 or      r5, r4          ; Logical OR34F92                 mov     r4, r12         ; Move Word34F94                 mov     DPP0, r5        ; Move Word34F98                 and     r4, #3FFFh      ; Logical AND34F9C                 movb    rl3, [r4]       ; Move Byte34F9E                 mov     DPP0, #4        ; Move Word34FA2                 movbz   r9, rl3         ; Move Byte Zero Extend34FA4                 mov     r15, #0         ; Move Word34FA6 loc_34FA6:                              ; CODE XREF: MEM_EXT_4:00034FC8j34FA6                 mov     r4, [r14]       ; Move Word34FA8                 xor     r4, r9          ; Logical Exclusive OR34FAA                 and     r4, #1          ; Logical AND34FAC                 jmpr    cc_Z, loc_34FBA ; Relative Conditional Jump34FAE                 mov     r4, [r14]       ; Move Word34FB0                 shr     r4, #1          ; Shift Right34FB2                 xor     r4, #0A001h     ; Logical Exclusive OR34FB6                 mov     [r14], r4       ; Move Word34FB8                 jmpr    cc_UC, loc_34FC0 ; Relative Conditional Jump34FBA ; ---------------------------------------------------------------------------34FBA loc_34FBA:                              ; CODE XREF: MEM_EXT_4:00034FACj34FBA                 mov     r4, [r14]       ; Move Word34FBC                 shr     r4, #1          ; Shift Right34FBE                 mov     [r14], r4       ; Move Word34FC0 loc_34FC0:
        
show/hide this revision's text 1

Determining CRC algorithm from data + CRC - embedded application.

Hello,

I have a set of data protected by 16bit checksums that I need to correct. The checksum locations are known, the exact areas they are calculated on and the exact algorithm used to calculate them are not. 16bit, LSB first. I suspect it's some sort of 16bit CRC, but I have not been able to find the code that's actually calculating the checksums.

Example:

00    4E00FFFF26EC14091E00A01830393630  
10    30313131313030393030363030313030  
20    30303131313030393030363030313030  
30    30303131313030393030363030313030  
40    3030FFFF225E363436304D313037**0CE0**  
50    64000000000000008080808080800000  
60    00000000**BE6E**FC01E001EB0013010500

Checksums are stored at 4E and 64. I don't know if they are calcuated starting from the offset in the first word at the beginning of each data section or starting after that, or on the whole range. I have tried a number of common CRC algorithms and polynomials with no luck. There are no references or specifications available for this application.

Here is another data section with different CRCs for comparison's sake.

00    4E00FFFF26C014091600A01030393132  
10    30313131313030393030313230313030  
20    30303131313030393030313230313030  
30    30303131313030393030313230313030  
40    3030FFFF225E343231324F313044**8348**  
50    64000000000000008080808080800000  
60    00000000**72F8**E001EB00130105000E01

My question is, can anyone identify the algorithm? Is there any way to calculate the CRC polynomial and other factors from the data and the CRC?

Thanks!