STATIC uint64_t read_unaligned_u64(const char [static sizeof(uint64_t)]); STATIC void write_unaligned_u64(char [static sizeof(uint64_t)], uint64_t); STATIC int64_t readtableinfo(size_t n, const char [n], tableinfo_t [static 1]); STATIC int64_t readtableinfo_n( size_t n, const char [n], uint8_t, tableinfo_t [static 1]); STATIC int64_t writetableinfo( const tableinfo_t [static 1], size_t n, char [n]); STATIC uint64_t read_unaligned_u64(const char buf[static sizeof(uint64_t)]) { uint64_t ret; memcpy(&ret, buf, sizeof(uint64_t)); return ret; } STATIC void write_unaligned_u64(char buf[static sizeof(uint64_t)], uint64_t x) { memcpy(buf, &x, sizeof(uint64_t)); } STATIC int64_t readtableinfo( size_t buf_size, const char buf[buf_size], tableinfo_t info[static 1] ) { size_t i; if (buf == NULL) { LOG("Error reading table: buffer is NULL\n"); return NISSY_ERROR_NULL_POINTER; } if (buf_size < INFOSIZE) { LOG("Error reading table: buffer size is too small " "(given size %" PRIu64 " is smaller than INFOSIZE = %" PRId64 ")\n", buf_size, INFOSIZE); return NISSY_ERROR_BUFFER_SIZE; } for (i = 0; i < INFO_DISTRIBUTION_LEN; i++) info->distribution[i] = read_unaligned_u64(OFFSET(buf, INFO_OFFSET_DISTRIBUTION + i * sizeof(uint64_t))); info->type = read_unaligned_u64(OFFSET(buf, INFO_OFFSET_TYPE)); info->infosize = read_unaligned_u64(OFFSET(buf, INFO_OFFSET_INFOSIZE)); info->fullsize = read_unaligned_u64(OFFSET(buf, INFO_OFFSET_FULLSIZE)); info->hash = read_unaligned_u64(OFFSET(buf, INFO_OFFSET_HASH)); info->entries = read_unaligned_u64(OFFSET(buf, INFO_OFFSET_ENTRIES)); info->classes = read_unaligned_u64(OFFSET(buf, INFO_OFFSET_CLASSES)); info->next = read_unaligned_u64(OFFSET(buf, INFO_OFFSET_NEXT)); memcpy(info->solver, OFFSET(buf, INFO_OFFSET_SOLVER), INFO_SOLVER_STRLEN); info->h48h = *(uint8_t *)OFFSET(buf, INFO_OFFSET_H48H); info->bits = *(uint8_t *)OFFSET(buf, INFO_OFFSET_BITS); info->base = *(uint8_t *)OFFSET(buf, INFO_OFFSET_BASE); info->maxvalue = *(uint8_t *)OFFSET(buf, INFO_OFFSET_MAXVALUE); return NISSY_OK; } STATIC int64_t readtableinfo_n( size_t buf_size, const char buf[buf_size], uint8_t n, tableinfo_t info[static 1] ) { int64_t ret; for (; n > 0; n--, buf = buf + info->next, buf_size -= info->next) if ((ret = readtableinfo(buf_size, buf, info)) != 0) return ret; return NISSY_OK; } STATIC int64_t writetableinfo( const tableinfo_t info[static 1], size_t data_size, char buf[data_size] ) { size_t i; bool end; char *c; if (data_size < info->fullsize) { LOG("Error writing table: buffer size is too small " "(given %" PRId64 " but table requires %" PRId64 ")\n", data_size, info->fullsize); return NISSY_ERROR_BUFFER_SIZE; } for (i = 0; i < INFO_DISTRIBUTION_LEN; i++) write_unaligned_u64(OFFSET(buf, INFO_OFFSET_DISTRIBUTION + i * sizeof(uint64_t)), info->distribution[i]); write_unaligned_u64(OFFSET(buf, INFO_OFFSET_TYPE), info->type); write_unaligned_u64(OFFSET(buf, INFO_OFFSET_INFOSIZE), info->infosize); write_unaligned_u64(OFFSET(buf, INFO_OFFSET_FULLSIZE), info->fullsize); write_unaligned_u64(OFFSET(buf, INFO_OFFSET_HASH), info->hash); write_unaligned_u64(OFFSET(buf, INFO_OFFSET_ENTRIES), info->entries); write_unaligned_u64(OFFSET(buf, INFO_OFFSET_CLASSES), info->classes); write_unaligned_u64(OFFSET(buf, INFO_OFFSET_NEXT), info->next); memcpy(OFFSET(buf, INFO_OFFSET_SOLVER), info->solver, INFO_SOLVER_STRLEN); /* Zeroing all chars after the end of the string, for consistency */ end = false; for (i = 0; i < INFO_SOLVER_STRLEN; i++) { c = OFFSET(buf, INFO_OFFSET_SOLVER + i); end = end || *c == 0; if (end) *c = 0; } *(uint8_t *)OFFSET(buf, INFO_OFFSET_H48H) = info->h48h; *(uint8_t *)OFFSET(buf, INFO_OFFSET_BITS) = info->bits; *(uint8_t *)OFFSET(buf, INFO_OFFSET_BASE) = info->base; *(uint8_t *)OFFSET(buf, INFO_OFFSET_MAXVALUE) = info->maxvalue; return NISSY_OK; }