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UM1635 Datasheet(PDF) 31 Page - STMicroelectronics

Part # UM1635
Description  Standard software driver for C90FL2 Flash
PDF  42 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

UM1635 Datasheet(HTML) 31 Page - STMicroelectronics

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UM1635
API specification
Troubleshooting
The trouble shooting given here comprises of hardware errors and input parameter error.
Comments
The inputs lowEnabledBlocks, midEnabledBlocks and highEnabledBlocks are bit-mapped
arguments that are used to select the blocks to be evaluated in the Low/Mid/High address
spaces of main array. The selection of the blocks of the main array is determined by
setting/clearing the corresponding bit in lowEnabledBlocks, midEnabledBlocks or
highEnabledBlocks.
The bit allocations for blocks in one address space are: bit 0 is assigned to block 0, bit 1 to
block 1, etc. The following diagrams show the formats of lowEnabledBlocks,
midEnabledBlocks and highEnabledBlocks for the C90FL2 module.
For low address space valid bits are from bit 0 to bit (lowBlockNum – 1). In which,
lowBlockNum is the number of low blocks returned from FlashInit();
For middle address space valid bits are from bit 0 and bit (midBlockNum – 1). In which,
midBlockNum is the number of middle blocks returned from FlashInit();
For high address space valid bits are from bit 0 to bit (highBlockNum – 1). In which,
highBlockNum is the number of high blocks returned from FlashInit();
For example, below are bit allocations for blocks in Low/Mid/High Address Space of
SPC56ELx:
Bit Allocation for Blocks in Low Address Space:
Table 47. Troubleshooting for FlashArrayIntegrityCheck()
Returned error bits
Possible causes
Solution
C90FL_ERROR_AIC_MISMATCH
The MISR value calculated by the user
is incorrect.
Re-calculate the MISR values using
the correct Data and addrSeq.
The MISR calculated by the Hardware
is incorrect.
Hardware Error.
C90FL_ERROR_AIC_NO_BLOCK
None of the Blocks are enabled for
Array Integrity Check
Enable any of the blocks using
variables lowEnabledBlocks,
midEnabledBlocks and
highEnabledBlock.
Table 48. Bit allocation for blocks in low address space
MSB
LSB
bit 31
bit 10
bit 9
bit 8
bit 1
bit 0
reserved
reserved
block 9
block 8
block 1
block 0



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