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#include <stdio.h> |
#include <stdio.h> |
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#include <string.h> |
#include <string.h> |
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unsigned int split_line(const char *buffer, int max_len, int *p_eol, int *p_display_len) |
int split_line(const char *buffer, int max_display_len, int *p_eol, int *p_display_len) |
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{ |
{ |
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size_t len = strnlen(buffer, LINE_BUFFER_LEN); |
int i; |
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unsigned int i = 0; |
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*p_eol = 0; |
*p_eol = 0; |
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*p_display_len = 0; |
*p_display_len = 0; |
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char c; |
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if (len == 0) |
for (i = 0; buffer[i] != '\0'; i++) |
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{ |
{ |
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return 0; |
c = buffer[i]; |
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} |
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for (; i < len; i++) |
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{ |
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char c = buffer[i]; |
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if (c == '\r' || c == '\7') // skip |
if (c == '\r' || c == '\7') // skip |
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{ |
{ |
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if (c == '\033' && buffer[i + 1] == '[') // Skip control sequence |
if (c == '\033' && buffer[i + 1] == '[') // Skip control sequence |
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{ |
{ |
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i += 2; |
i += 2; |
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while (i < len && buffer[i] != 'm') |
while (buffer[i] != '\0' && buffer[i] != 'm') |
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{ |
{ |
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i++; |
i++; |
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} |
} |
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continue; |
continue; |
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} |
} |
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if (c > 127 && c <= 255) // GBK chinese character |
if (c < 0 || c > 127) // GBK chinese character |
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{ |
{ |
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if (*p_display_len + 2 > max_len) |
if (*p_display_len + 2 > max_display_len) |
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{ |
{ |
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*p_eol = 1; |
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break; |
break; |
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} |
} |
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i++; |
i++; |
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*p_display_len += 2; |
(*p_display_len) += 2; |
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} |
} |
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else |
else |
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{ |
{ |
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if (*p_display_len + 1 > max_len) |
if (*p_display_len + 1 > max_display_len) |
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{ |
{ |
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*p_eol = 1; |
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break; |
break; |
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} |
} |
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(*p_display_len)++; |
(*p_display_len)++; |
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return i; |
return i; |
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} |
} |
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unsigned int split_file_lines(FILE *fin, int max_len, long *p_line_offsets, int max_line_cnt) |
long split_data_lines(const char *p_buf, int max_display_len, long *p_line_offsets, long line_offsets_count) |
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{ |
{ |
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char buffer[LINE_BUFFER_LEN]; |
int line_cnt = 0; |
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char *p_buf = buffer; |
int len = 0; |
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unsigned int line_cnt = 0; |
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unsigned int len = 0; |
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int end_of_line = 0; |
int end_of_line = 0; |
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int display_len = 0; |
int display_len = 0; |
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p_line_offsets[line_cnt] = 0L; |
p_line_offsets[line_cnt] = 0L; |
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while (fgets(p_buf, (int)(sizeof(buffer) - len), fin)) |
while (1) |
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{ |
{ |
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p_buf = buffer; |
len = split_line(p_buf, max_display_len, &end_of_line, &display_len); |
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while (1) |
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{ |
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len = split_line(p_buf, max_len, &end_of_line, &display_len); |
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if (len == 0 || !end_of_line) // !end_of_line == EOF |
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{ |
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break; |
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} |
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// Exceed max_line_cnt |
if (len == 0) // EOF |
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if (line_cnt + 1 >= max_line_cnt) |
{ |
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{ |
break; |
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log_error("File line count %d reaches limit\n", line_cnt + 1); |
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return line_cnt; |
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} |
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p_line_offsets[line_cnt + 1] = p_line_offsets[line_cnt] + len; |
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line_cnt++; |
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p_buf += len; |
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} |
} |
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// Move p_buf[0 .. len - 1] to head of buffer |
// Exceed max_line_cnt |
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for (int i = 0; i < len; i++) |
if (line_cnt + 1 >= line_offsets_count) |
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{ |
{ |
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buffer[i] = p_buf[i]; |
log_error("Line count %d reaches limit %d\n", line_cnt + 1, line_offsets_count); |
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return line_cnt; |
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} |
} |
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p_buf = buffer + len; |
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} |
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if (len > 0 && line_cnt + 1 < max_line_cnt) |
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{ |
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p_line_offsets[line_cnt + 1] = p_line_offsets[line_cnt] + len; |
p_line_offsets[line_cnt + 1] = p_line_offsets[line_cnt] + len; |
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line_cnt++; |
line_cnt++; |
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p_buf += len; |
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} |
} |
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return line_cnt; |
return line_cnt; |