qcacld-3.0: Fix camelCase in hdd_cfg_get_config()
In order to conform to the coding style rename local variables in function hdd_cfg_get_config(). Change-Id: I2b3d3d6b5c3b630967bed389f7f33b6c7b091413 CRs-Fixed: 2352065
このコミットが含まれているのは:
@@ -2560,75 +2560,75 @@ static char *i_trim(char *str)
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/**
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* hdd_cfg_get_config() - get the configuration content
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* @reg_table: pointer to configuration table
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* @cRegTableEntries: number of the configuration entries
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* @ini_struct: pointer to the hdd config knob
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* @reg_table_count: number of @reg_table entries
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* @ini_struct: pointer to the hdd config blob
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* @hdd_ctx: pointer to hdd context
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* @print_fn: print function pointer
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*
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* Return: none
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*/
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static void hdd_cfg_get_config(struct reg_table_entry *reg_table,
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unsigned long cRegTableEntries,
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unsigned long reg_table_count,
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uint8_t *ini_struct, struct hdd_context *hdd_ctx,
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void (*print_fn)(const char *))
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{
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unsigned int idx;
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struct reg_table_entry *pRegEntry = reg_table;
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struct reg_table_entry *reg_entry = reg_table;
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uint32_t value;
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char valueStr[CFG_VALUE_MAX_LEN];
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char value_str[CFG_VALUE_MAX_LEN];
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char config_str[CFG_ENTRY_MAX_LEN];
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char *fmt;
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void *pField;
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struct qdf_mac_addr *pMacAddr;
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void *field;
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struct qdf_mac_addr *mac_addr;
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int curlen;
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for (idx = 0; idx < cRegTableEntries; idx++, pRegEntry++) {
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pField = ini_struct + pRegEntry->VarOffset;
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for (idx = 0; idx < reg_table_count; idx++, reg_entry++) {
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field = ini_struct + reg_entry->VarOffset;
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if ((WLAN_PARAM_Integer == pRegEntry->RegType) ||
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(WLAN_PARAM_SignedInteger == pRegEntry->RegType) ||
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(WLAN_PARAM_HexInteger == pRegEntry->RegType)) {
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if ((WLAN_PARAM_Integer == reg_entry->RegType) ||
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(WLAN_PARAM_SignedInteger == reg_entry->RegType) ||
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(WLAN_PARAM_HexInteger == reg_entry->RegType)) {
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value = 0;
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if ((pRegEntry->VarSize > sizeof(value)) ||
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(pRegEntry->VarSize == 0)) {
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if ((reg_entry->VarSize > sizeof(value)) ||
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(reg_entry->VarSize == 0)) {
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pr_warn("Invalid length of %s: %d",
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pRegEntry->RegName, pRegEntry->VarSize);
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reg_entry->RegName, reg_entry->VarSize);
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continue;
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}
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memcpy(&value, pField, pRegEntry->VarSize);
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if (WLAN_PARAM_HexInteger == pRegEntry->RegType) {
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memcpy(&value, field, reg_entry->VarSize);
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if (WLAN_PARAM_HexInteger == reg_entry->RegType) {
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fmt = "%x";
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} else if (WLAN_PARAM_SignedInteger ==
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pRegEntry->RegType) {
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reg_entry->RegType) {
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fmt = "%d";
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value = sign_extend32(
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value,
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pRegEntry->VarSize * 8 - 1);
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reg_entry->VarSize * 8 - 1);
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} else {
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fmt = "%u";
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}
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snprintf(valueStr, CFG_VALUE_MAX_LEN, fmt, value);
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} else if (WLAN_PARAM_String == pRegEntry->RegType) {
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snprintf(valueStr, CFG_VALUE_MAX_LEN, "%s",
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(char *)pField);
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} else if (WLAN_PARAM_MacAddr == pRegEntry->RegType) {
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pMacAddr = (struct qdf_mac_addr *) pField;
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snprintf(valueStr, CFG_VALUE_MAX_LEN,
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snprintf(value_str, CFG_VALUE_MAX_LEN, fmt, value);
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} else if (WLAN_PARAM_String == reg_entry->RegType) {
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snprintf(value_str, CFG_VALUE_MAX_LEN, "%s",
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(char *)field);
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} else if (WLAN_PARAM_MacAddr == reg_entry->RegType) {
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mac_addr = (struct qdf_mac_addr *) field;
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snprintf(value_str, CFG_VALUE_MAX_LEN,
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"%02x:%02x:%02x:%02x:%02x:%02x",
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pMacAddr->bytes[0],
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pMacAddr->bytes[1],
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pMacAddr->bytes[2],
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pMacAddr->bytes[3],
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pMacAddr->bytes[4], pMacAddr->bytes[5]);
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mac_addr->bytes[0],
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mac_addr->bytes[1],
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mac_addr->bytes[2],
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mac_addr->bytes[3],
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mac_addr->bytes[4], mac_addr->bytes[5]);
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} else {
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snprintf(valueStr, CFG_VALUE_MAX_LEN, "(unhandled)");
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snprintf(value_str, CFG_VALUE_MAX_LEN, "(unhandled)");
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}
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curlen = scnprintf(config_str, CFG_ENTRY_MAX_LEN,
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"%s=%s%s\n",
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pRegEntry->RegName,
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valueStr,
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reg_entry->RegName,
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value_str,
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test_bit(idx,
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(void *)&hdd_ctx->config->
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bExplicitCfg) ? "*" : "");
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