uint8_t *out, uint chunk_sz);
/* lib/crc32.c */
-uint32_t crc32 (uint32_t, const unsigned char *, uint);
-uint32_t crc32_wd (uint32_t, const unsigned char *, uint, uint);
-uint32_t crc32_no_comp (uint32_t, const unsigned char *, uint);
+
+/**
+ * crc32 - Calculate the CRC32 for a block of data
+ *
+ * @crc: Input crc to chain from a previous calculution (use 0 to start a new
+ * calculation)
+ * @buf: Bytes to checksum
+ * @len: Number of bytes to checksum
+ * @return checksum value
+ */
+uint32_t crc32(uint32_t crc, const unsigned char *buf, uint len);
+
+/**
+ * crc32_wd - Calculate the CRC32 for a block of data (watchdog version)
+ *
+ * This checksums the data @chunk_sz bytes at a time, calling WATCHDOG_RESET()
+ * after each chunk, to prevent the watchdog from firing.
+ *
+ * @crc: Input crc to chain from a previous calculution (use 0 to start a new
+ * calculation)
+ * @buf: Bytes to checksum
+ * @len: Number of bytes to checksum
+ * @chunk_sz: Chunk size to use between watchdog resets
+ * @return checksum
+ */
+uint32_t crc32_wd(uint32_t crc, const unsigned char *buf, uint len,
+ uint chunk_sz);
+
+/**
+ * crc32_no_comp - Calculate the CRC32 for a block of data (no one's compliment)
+ *
+ * This version uses a different algorithm which doesn't use one's compliment.
+ * JFFS2 (and other things?) use this.
+ *
+ * @crc: Input crc to chain from a previous calculution (use 0 to start a new
+ * calculation)
+ * @buf: Bytes to checksum
+ * @len: Number of bytes to checksum
+ * @return checksum value
+ */
+uint32_t crc32_no_comp(uint32_t crc, const unsigned char *buf, uint len);
/**
* crc32_wd_buf - Perform CRC32 on a buffer and return result in buffer
* @output: Place to put checksum result (4 bytes)
* @chunk_sz: Trigger watchdog after processing this many bytes
*/
-void crc32_wd_buf(const unsigned char *input, uint ilen,
- unsigned char *output, uint chunk_sz);
+void crc32_wd_buf(const uint8_t *input, uint ilen, uint8_t *output,
+ uint chunk_sz);
/* lib/crc32c.c */
-void crc32c_init(uint32_t *, uint32_t);
-uint32_t crc32c_cal(uint32_t, const char *, int, uint32_t *);
+
+/**
+ * crc32c_init() - Set up a the CRC32 table
+ *
+ * This sets up 256-item table to aid in CRC32 calculation
+ *
+ * @crc32c_table: Place to put table
+ * @pol: polynomial to use
+ */
+void crc32c_init(uint32_t *crc32c_table, uint32_t pol);
+
+/**
+ * crc32c_cal() - Perform CRC32 on a buffer given a table
+ *
+ * This algorithm uses the table (set up by crc32c_init() to speed up
+ * processing.
+ *
+ * @crc: Previous crc (use 0 at start)
+ * @data: Data bytes to checksum
+ * @length: Number of bytes to process
+ * @crc32c_table:: CRC table
+ * @return checksum value
+ */
+uint32_t crc32c_cal(uint32_t crc, const char *data, int length,
+ uint32_t *crc32c_table);
#endif /* _UBOOT_CRC_H */
extern env_t embedded_environment;
#endif /* CONFIG_BUILD_ENVCRC */
-extern uint32_t crc32 (uint32_t, const unsigned char *, unsigned int);
+extern uint32_t crc32(uint32_t, const unsigned char *, unsigned int);
int main (int argc, char **argv)
{
memset(dataptr + eoe, pad, datasize - eoe);
}
- crc = crc32 (0, dataptr, datasize);
+ crc = crc32(0, dataptr, datasize);
/* Check if verbose mode is activated passing a parameter to the program */
if (argc > 1) {