added most new function declarations, replaced all usecases for old functions, missing are most new implementations
| | |
| | | SCPI_ChoiceToName(trigger_source, param, &name); |
| | | fprintf(stderr, "\tP1=%s (%ld)\r\n", name, (long int)param); |
| | | |
| | | SCPI_ResultInt(context, param); |
| | | SCPI_ResultInt32(context, param); |
| | | |
| | | return SCPI_RES_OK; |
| | | } |
| | |
| | | */ |
| | | static scpi_result_t My_CoreTstQ(scpi_t * context) { |
| | | |
| | | SCPI_ResultInt(context, 0); |
| | | SCPI_ResultInt32(context, 0); |
| | | |
| | | return SCPI_RES_OK; |
| | | } |
| | |
| | | SCPI_ChoiceToName(trigger_source, param, &name); |
| | | fprintf(stderr, "\tP1=%s (%ld)\r\n", name, (long int)param); |
| | | |
| | | SCPI_ResultInt(context, param); |
| | | SCPI_ResultInt32(context, param); |
| | | |
| | | return SCPI_RES_OK; |
| | | } |
| | |
| | | */ |
| | | scpi_result_t My_CoreTstQ(scpi_t * context) { |
| | | |
| | | SCPI_ResultInt(context, 0); |
| | | SCPI_ResultInt32(context, 0); |
| | | |
| | | return SCPI_RES_OK; |
| | | } |
| | |
| | | |
| | | size_t SCPI_ResultCharacters(scpi_t * context, const char * data, size_t len); |
| | | #define SCPI_ResultMnemonic(context, data) SCPI_ResultCharacters((context), (data), strlen(data)) |
| | | size_t SCPI_ResultInt(scpi_t * context, int32_t val); |
| | | size_t SCPI_ResultIntBase(scpi_t * context, int32_t val, int8_t base); |
| | | size_t SCPI_ResultInt32(scpi_t * context, int32_t val); |
| | | #define SCPI_ResultInt(context, val) SCPI_ResultInt32 ((context), (val)) |
| | | size_t SCPI_ResultInt32Base(scpi_t * context, int32_t val, int8_t base); |
| | | #define SCPI_ResultIntBase(context, val, base) SCPI_ResultInt32Base ((context), (val), (base)) |
| | | size_t SCPI_ResultUInt32(scpi_t * context, uint32_t val); |
| | | size_t SCPI_ResultUInt32Base(scpi_t * context, uint32_t val, int8_t base); |
| | | size_t SCPI_ResultInt64(scpi_t * context, int64_t val); |
| | | size_t SCPI_ResultInt64Base(scpi_t * context, int64_t val, int8_t base); |
| | | size_t SCPI_ResultUInt64(scpi_t * context, uint64_t val); |
| | | size_t SCPI_ResultUInt64Base(scpi_t * context, uint64_t val, int8_t base); |
| | | size_t SCPI_ResultDouble(scpi_t * context, double val); |
| | | size_t SCPI_ResultText(scpi_t * context, const char * data); |
| | | size_t SCPI_ResultArbitraryBlock(scpi_t * context, const char * data, size_t len); |
| | | size_t SCPI_ResultBool(scpi_t * context, scpi_bool_t val); |
| | | |
| | | |
| | | scpi_bool_t SCPI_Parameter(scpi_t * context, scpi_parameter_t * parameter, scpi_bool_t mandatory); |
| | | scpi_bool_t SCPI_ParamIsValid(scpi_parameter_t * parameter); |
| | | scpi_bool_t SCPI_ParamErrorOccurred(scpi_t * context); |
| | | scpi_bool_t SCPI_ParamIsNumber(scpi_parameter_t * parameter, scpi_bool_t suffixAllowed); |
| | | scpi_bool_t SCPI_ParamToInt(scpi_t * context, scpi_parameter_t * parameter, int32_t * value); |
| | | scpi_bool_t SCPI_ParamToUnsignedInt(scpi_t * context, scpi_parameter_t * parameter, uint32_t * value); |
| | | scpi_bool_t SCPI_ParamToInt32(scpi_t * context, scpi_parameter_t * parameter, int32_t * value); |
| | | #define SCPI_ParamToInt(context, parameter, value) SCPI_ParamToInt32((context), (parameter), (value)) |
| | | scpi_bool_t SCPI_ParamToUInt32(scpi_t * context, scpi_parameter_t * parameter, uint32_t * value); |
| | | #define SCPI_ParamToUnsignedInt(context, parameter, value) SCPI_ParamToUInt32((context), (parameter), (value)) |
| | | scpi_bool_t SCPI_ParamToInt64(scpi_t * context, scpi_parameter_t * parameter, int64_t * value); |
| | | scpi_bool_t SCPI_ParamToUInt64(scpi_t * context, scpi_parameter_t * parameter, uint64_t * value); |
| | | scpi_bool_t SCPI_ParamToDouble(scpi_t * context, scpi_parameter_t * parameter, double * value); |
| | | scpi_bool_t SCPI_ParamToChoice(scpi_t * context, scpi_parameter_t * parameter, const scpi_choice_def_t * options, int32_t * value); |
| | | scpi_bool_t SCPI_ChoiceToName(const scpi_choice_def_t * options, int32_t tag, const char ** text); |
| | | |
| | | |
| | | scpi_bool_t SCPI_ParamInt(scpi_t * context, int32_t * value, scpi_bool_t mandatory); |
| | | scpi_bool_t SCPI_ParamUnsignedInt(scpi_t * context, uint32_t * value, scpi_bool_t mandatory); |
| | | scpi_bool_t SCPI_ParamInt32(scpi_t * context, int32_t * value, scpi_bool_t mandatory); |
| | | #define SCPI_ParamInt(context, value, mandatory) SCPI_ParamInt32((context), (value), (mandatory)) |
| | | scpi_bool_t SCPI_ParamUInt32(scpi_t * context, uint32_t * value, scpi_bool_t mandatory); |
| | | #define SCPI_ParamUnsignedInt(context, value, mandatory) SCPI_ParamUInt32((context), (value), (mandatory)) |
| | | scpi_bool_t SCPI_ParamInt64(scpi_t * context, int64_t * value, scpi_bool_t mandatory); |
| | | scpi_bool_t SCPI_ParamUInt64(scpi_t * context, uint64_t * value, scpi_bool_t mandatory); |
| | | scpi_bool_t SCPI_ParamDouble(scpi_t * context, double * value, scpi_bool_t mandatory); |
| | | scpi_bool_t SCPI_ParamCharacters(scpi_t * context, const char ** value, size_t * len, scpi_bool_t mandatory); |
| | | scpi_bool_t SCPI_ParamArbitraryBlock(scpi_t * context, const char ** value, size_t * len, scpi_bool_t mandatory); |
| | |
| | | extern "C" { |
| | | #endif |
| | | |
| | | size_t SCPI_LongToStr(int32_t val, char * str, size_t len, int8_t base); |
| | | size_t SCPI_Int32ToStr(int32_t val, char * str, size_t len, int8_t base); |
| | | #define SCPI_LongToStr(val, str, len, base) SCPI_Int32ToStr((val), (str), (len), (base)) |
| | | size_t SCPI_UInt32ToStr(uint32_t val, char * str, size_t len, int8_t base); |
| | | size_t SCPI_Int64ToStr(int64_t val, char * str, size_t len, int8_t base); |
| | | size_t SCPI_UInt64ToStr(uint64_t val, char * str, size_t len, int8_t base); |
| | | size_t SCPI_DoubleToStr(double val, char * str, size_t len); |
| | | |
| | | #ifdef __cplusplus |
| | |
| | | res = SCPI_ExprNumericListEntry(context, param, index, &range, ¶mFrom, ¶mTo); |
| | | if (res == SCPI_EXPR_OK) { |
| | | *isRange = range; |
| | | SCPI_ParamToInt(context, ¶mFrom, valueFrom); |
| | | SCPI_ParamToInt32(context, ¶mFrom, valueFrom); |
| | | if (range) { |
| | | SCPI_ParamToInt(context, ¶mTo, valueTo); |
| | | SCPI_ParamToInt32(context, ¶mTo, valueTo); |
| | | } |
| | | } |
| | | |
| | |
| | | */ |
| | | scpi_result_t SCPI_CoreEse(scpi_t * context) { |
| | | int32_t new_ESE; |
| | | if (SCPI_ParamInt(context, &new_ESE, TRUE)) { |
| | | if (SCPI_ParamInt32(context, &new_ESE, TRUE)) { |
| | | SCPI_RegSet(context, SCPI_REG_ESE, (scpi_reg_val_t)new_ESE); |
| | | } |
| | | return SCPI_RES_OK; |
| | |
| | | * @return |
| | | */ |
| | | scpi_result_t SCPI_CoreEseQ(scpi_t * context) { |
| | | SCPI_ResultInt(context, SCPI_RegGet(context, SCPI_REG_ESE)); |
| | | SCPI_ResultInt32(context, SCPI_RegGet(context, SCPI_REG_ESE)); |
| | | return SCPI_RES_OK; |
| | | } |
| | | |
| | |
| | | * @return |
| | | */ |
| | | scpi_result_t SCPI_CoreEsrQ(scpi_t * context) { |
| | | SCPI_ResultInt(context, SCPI_RegGet(context, SCPI_REG_ESR)); |
| | | SCPI_ResultInt32(context, SCPI_RegGet(context, SCPI_REG_ESR)); |
| | | SCPI_RegSet(context, SCPI_REG_ESR, 0); |
| | | return SCPI_RES_OK; |
| | | } |
| | |
| | | */ |
| | | scpi_result_t SCPI_CoreOpcQ(scpi_t * context) { |
| | | /* Operation is always completed */ |
| | | SCPI_ResultInt(context, 1); |
| | | SCPI_ResultInt32(context, 1); |
| | | return SCPI_RES_OK; |
| | | } |
| | | |
| | |
| | | */ |
| | | scpi_result_t SCPI_CoreSre(scpi_t * context) { |
| | | int32_t new_SRE; |
| | | if (SCPI_ParamInt(context, &new_SRE, TRUE)) { |
| | | if (SCPI_ParamInt32(context, &new_SRE, TRUE)) { |
| | | SCPI_RegSet(context, SCPI_REG_SRE, (scpi_reg_val_t)new_SRE); |
| | | } |
| | | return SCPI_RES_OK; |
| | |
| | | * @return |
| | | */ |
| | | scpi_result_t SCPI_CoreSreQ(scpi_t * context) { |
| | | SCPI_ResultInt(context, SCPI_RegGet(context, SCPI_REG_SRE)); |
| | | SCPI_ResultInt32(context, SCPI_RegGet(context, SCPI_REG_SRE)); |
| | | return SCPI_RES_OK; |
| | | } |
| | | |
| | |
| | | * @return |
| | | */ |
| | | scpi_result_t SCPI_CoreStbQ(scpi_t * context) { |
| | | SCPI_ResultInt(context, SCPI_RegGet(context, SCPI_REG_STB)); |
| | | SCPI_ResultInt32(context, SCPI_RegGet(context, SCPI_REG_STB)); |
| | | return SCPI_RES_OK; |
| | | } |
| | | |
| | |
| | | */ |
| | | scpi_result_t SCPI_CoreTstQ(scpi_t * context) { |
| | | (void) context; |
| | | SCPI_ResultInt(context, 0); |
| | | SCPI_ResultInt32(context, 0); |
| | | return SCPI_RES_OK; |
| | | } |
| | | |
| | |
| | | * @return |
| | | */ |
| | | scpi_result_t SCPI_StubQ(scpi_t * context) { |
| | | SCPI_ResultInt(context, 0); |
| | | SCPI_ResultInt32(context, 0); |
| | | return SCPI_RES_OK; |
| | | } |
| | | |
| | |
| | | scpi_result_t SCPI_SystemErrorNextQ(scpi_t * context) { |
| | | int16_t err = SCPI_ErrorPop(context); |
| | | |
| | | SCPI_ResultInt(context, err); |
| | | SCPI_ResultInt32(context, err); |
| | | SCPI_ResultText(context, SCPI_ErrorTranslate(err)); |
| | | |
| | | return SCPI_RES_OK; |
| | |
| | | * @return |
| | | */ |
| | | scpi_result_t SCPI_SystemErrorCountQ(scpi_t * context) { |
| | | SCPI_ResultInt(context, SCPI_ErrorCount(context)); |
| | | SCPI_ResultInt32(context, SCPI_ErrorCount(context)); |
| | | |
| | | return SCPI_RES_OK; |
| | | } |
| | |
| | | */ |
| | | scpi_result_t SCPI_StatusQuestionableEventQ(scpi_t * context) { |
| | | /* return value */ |
| | | SCPI_ResultInt(context, SCPI_RegGet(context, SCPI_REG_QUES)); |
| | | SCPI_ResultInt32(context, SCPI_RegGet(context, SCPI_REG_QUES)); |
| | | |
| | | /* clear register */ |
| | | SCPI_RegSet(context, SCPI_REG_QUES, 0); |
| | |
| | | */ |
| | | scpi_result_t SCPI_StatusQuestionableEnableQ(scpi_t * context) { |
| | | /* return value */ |
| | | SCPI_ResultInt(context, SCPI_RegGet(context, SCPI_REG_QUESE)); |
| | | SCPI_ResultInt32(context, SCPI_RegGet(context, SCPI_REG_QUESE)); |
| | | |
| | | return SCPI_RES_OK; |
| | | } |
| | |
| | | */ |
| | | scpi_result_t SCPI_StatusQuestionableEnable(scpi_t * context) { |
| | | int32_t new_QUESE; |
| | | if (SCPI_ParamInt(context, &new_QUESE, TRUE)) { |
| | | if (SCPI_ParamInt32(context, &new_QUESE, TRUE)) { |
| | | SCPI_RegSet(context, SCPI_REG_QUESE, (scpi_reg_val_t)new_QUESE); |
| | | } |
| | | return SCPI_RES_OK; |
| | |
| | | } |
| | | |
| | | /** |
| | | * Write integer value to the result |
| | | * Write signed 32 bit integer value to the result |
| | | * @param context |
| | | * @param val |
| | | * @return |
| | | */ |
| | | size_t SCPI_ResultInt(scpi_t * context, int32_t val) { |
| | | return SCPI_ResultIntBase(context, val, 10); |
| | | size_t SCPI_ResultInt32(scpi_t * context, int32_t val) { |
| | | return SCPI_ResultInt32Base(context, val, 10); |
| | | } |
| | | |
| | | /** |
| | | * Write unsigned 32 bit integer value to the result |
| | | * @param context |
| | | * @param val |
| | | * @return |
| | | */ |
| | | size_t SCPI_ResultUInt32(scpi_t * context, uint32_t val) { |
| | | return SCPI_ResultUInt32Base(context, val, 10); |
| | | } |
| | | |
| | | /** |
| | | * Write signed 64 bit integer value to the result |
| | | * @param context |
| | | * @param val |
| | | * @return |
| | | */ |
| | | size_t SCPI_ResultInt64(scpi_t * context, int64_t val) { |
| | | return SCPI_ResultInt64Base(context, val, 10); |
| | | } |
| | | |
| | | /** |
| | | * Write unsigned 64 bit integer value to the result |
| | | * @param context |
| | | * @param val |
| | | * @return |
| | | */ |
| | | size_t SCPI_ResultUInt64(scpi_t * context, uint64_t val) { |
| | | return SCPI_ResultUInt64Base(context, val, 10); |
| | | } |
| | | |
| | | /** |
| | |
| | | } |
| | | |
| | | /** |
| | | * Write integer value in specific base to the result |
| | | * Write signed 32 bit integer value in specific base to the result |
| | | * @param context |
| | | * @param val |
| | | * @param base |
| | | * @return |
| | | */ |
| | | size_t SCPI_ResultIntBase(scpi_t * context, int32_t val, int8_t base) { |
| | | size_t SCPI_ResultInt32Base(scpi_t * context, int32_t val, int8_t base) { |
| | | char buffer[33]; |
| | | const char * basePrefix; |
| | | size_t result = 0; |
| | | size_t len; |
| | | |
| | | len = SCPI_LongToStr(val, buffer, sizeof (buffer), base); |
| | | len = SCPI_Int32ToStr(val, buffer, sizeof (buffer), base); |
| | | basePrefix = getBasePrefix(base); |
| | | |
| | | result += writeDelimiter(context); |
| | |
| | | } |
| | | |
| | | /** |
| | | * Write double walue to the result |
| | | * Write unsigned 32 bit integer value in specific base to the result |
| | | * @param context |
| | | * @param val |
| | | * @param base |
| | | * @return |
| | | */ |
| | | size_t SCPI_ResultUInt32Base(scpi_t * context, uint32_t val, int8_t base) { |
| | | char buffer[33]; |
| | | const char * basePrefix; |
| | | size_t result = 0; |
| | | size_t len; |
| | | |
| | | len = SCPI_UInt32ToStr(val, buffer, sizeof (buffer), base); |
| | | basePrefix = getBasePrefix(base); |
| | | |
| | | result += writeDelimiter(context); |
| | | if (basePrefix != NULL) { |
| | | result += writeData(context, basePrefix, 2); |
| | | } |
| | | result += writeData(context, buffer, len); |
| | | context->output_count++; |
| | | return result; |
| | | } |
| | | |
| | | /** |
| | | * Write signed 64 bit integer value in specific base to the result |
| | | * @param context |
| | | * @param val |
| | | * @param base |
| | | * @return |
| | | */ |
| | | size_t SCPI_ResultInt64Base(scpi_t * context, int64_t val, int8_t base) { |
| | | char buffer[33]; //TODO |
| | | const char * basePrefix; |
| | | size_t result = 0; |
| | | size_t len; |
| | | |
| | | len = SCPI_Int64ToStr(val, buffer, sizeof (buffer), base); |
| | | basePrefix = getBasePrefix(base); |
| | | |
| | | result += writeDelimiter(context); |
| | | if (basePrefix != NULL) { |
| | | result += writeData(context, basePrefix, 2); |
| | | } |
| | | result += writeData(context, buffer, len); |
| | | context->output_count++; |
| | | return result; |
| | | } |
| | | |
| | | /** |
| | | * Write unsigned 64 bit integer value in specific base to the result |
| | | * @param context |
| | | * @param val |
| | | * @param base |
| | | * @return |
| | | */ |
| | | size_t SCPI_ResultUInt64Base(scpi_t * context, uint64_t val, int8_t base) { |
| | | char buffer[33]; //TODO |
| | | const char * basePrefix; |
| | | size_t result = 0; |
| | | size_t len; |
| | | |
| | | len = SCPI_UInt64ToStr(val, buffer, sizeof (buffer), base); |
| | | basePrefix = getBasePrefix(base); |
| | | |
| | | result += writeDelimiter(context); |
| | | if (basePrefix != NULL) { |
| | | result += writeData(context, basePrefix, 2); |
| | | } |
| | | result += writeData(context, buffer, len); |
| | | context->output_count++; |
| | | return result; |
| | | } |
| | | |
| | | /** |
| | | * Write double value to the result |
| | | * @param context |
| | | * @param val |
| | | * @return |
| | |
| | | char block_header[12]; |
| | | size_t header_len; |
| | | block_header[0] = '#'; |
| | | SCPI_LongToStr(len, block_header + 2, 10, 10); |
| | | SCPI_Int32ToStr(len, block_header + 2, 10, 10); |
| | | |
| | | header_len = strlen(block_header + 2); |
| | | block_header[1] = (char)(header_len + '0'); |
| | |
| | | * @return |
| | | */ |
| | | size_t SCPI_ResultBool(scpi_t * context, scpi_bool_t val) { |
| | | return SCPI_ResultIntBase(context, val ? 1 : 0, 10); |
| | | return SCPI_ResultInt32Base(context, val ? 1 : 0, 10); |
| | | } |
| | | |
| | | /* parsing parameters */ |
| | |
| | | } |
| | | |
| | | /** |
| | | * Convert parameter to integer |
| | | * Convert parameter to signed/unsigned 32 bit integer |
| | | * @param context |
| | | * @param parameter |
| | | * @param value result |
| | | * @return TRUE if succesful |
| | | */ |
| | | static scpi_bool_t ParamToInt(scpi_t * context, scpi_parameter_t * parameter, int32_t * value, scpi_bool_t sign) { |
| | | static scpi_bool_t ParamToInt32(scpi_t * context, scpi_parameter_t * parameter, int32_t * value, scpi_bool_t sign) { |
| | | |
| | | if (!value) { |
| | | SCPI_ErrorPush(context, SCPI_ERROR_SYSTEM_ERROR); |
| | |
| | | |
| | | switch (parameter->type) { |
| | | case SCPI_TOKEN_HEXNUM: |
| | | return strToULong(parameter->ptr, (uint32_t *)value, 16) > 0 ? TRUE : FALSE; |
| | | return strToUInt32(parameter->ptr, (uint32_t *)value, 16) > 0 ? TRUE : FALSE; |
| | | case SCPI_TOKEN_OCTNUM: |
| | | return strToULong(parameter->ptr, (uint32_t *)value, 8) > 0 ? TRUE : FALSE; |
| | | return strToUInt32(parameter->ptr, (uint32_t *)value, 8) > 0 ? TRUE : FALSE; |
| | | case SCPI_TOKEN_BINNUM: |
| | | return strToULong(parameter->ptr, (uint32_t *)value, 2) > 0 ? TRUE : FALSE; |
| | | return strToUInt32(parameter->ptr, (uint32_t *)value, 2) > 0 ? TRUE : FALSE; |
| | | case SCPI_TOKEN_DECIMAL_NUMERIC_PROGRAM_DATA: |
| | | case SCPI_TOKEN_DECIMAL_NUMERIC_PROGRAM_DATA_WITH_SUFFIX: |
| | | if (sign) { |
| | | return strToLong(parameter->ptr, value, 10) > 0 ? TRUE : FALSE; |
| | | return strToInt32(parameter->ptr, value, 10) > 0 ? TRUE : FALSE; |
| | | } else { |
| | | return strToULong(parameter->ptr, (uint32_t *)value, 10) > 0 ? TRUE : FALSE; |
| | | return strToUInt32(parameter->ptr, (uint32_t *)value, 10) > 0 ? TRUE : FALSE; |
| | | } |
| | | default: |
| | | return FALSE; |
| | | } |
| | | } |
| | | |
| | | |
| | | /** |
| | | * Convert parameter to integer |
| | | * Convert parameter to signed 32 bit integer |
| | | * @param context |
| | | * @param parameter |
| | | * @param value result |
| | | * @return TRUE if succesful |
| | | */ |
| | | scpi_bool_t SCPI_ParamToInt(scpi_t * context, scpi_parameter_t * parameter, int32_t * value) { |
| | | return ParamToInt(context, parameter, value, TRUE); |
| | | scpi_bool_t SCPI_ParamToInt32(scpi_t * context, scpi_parameter_t * parameter, int32_t * value) { |
| | | return ParamToInt32(context, parameter, value, TRUE); |
| | | } |
| | | |
| | | /** |
| | | * Convert parameter to unsigned integer |
| | | * Convert parameter to unsigned 32 bit integer |
| | | * @param context |
| | | * @param parameter |
| | | * @param value result |
| | | * @return TRUE if succesful |
| | | */ |
| | | scpi_bool_t SCPI_ParamToUnsignedInt(scpi_t * context, scpi_parameter_t * parameter, uint32_t * value) { |
| | | return ParamToInt(context, parameter, (int32_t *)value, FALSE); |
| | | static scpi_bool_t ParamToUInt32(scpi_t * context, scpi_parameter_t * parameter, uint32_t * value, scpi_bool_t sign) { |
| | | |
| | | if (!value) { |
| | | SCPI_ErrorPush(context, SCPI_ERROR_SYSTEM_ERROR); |
| | | return FALSE; |
| | | } |
| | | |
| | | switch (parameter->type) { |
| | | case SCPI_TOKEN_HEXNUM: |
| | | return strToUInt32(parameter->ptr, (uint32_t *)value, 16) > 0 ? TRUE : FALSE; |
| | | case SCPI_TOKEN_OCTNUM: |
| | | return strToUInt32(parameter->ptr, (uint32_t *)value, 8) > 0 ? TRUE : FALSE; |
| | | case SCPI_TOKEN_BINNUM: |
| | | return strToUInt32(parameter->ptr, (uint32_t *)value, 2) > 0 ? TRUE : FALSE; |
| | | case SCPI_TOKEN_DECIMAL_NUMERIC_PROGRAM_DATA: |
| | | case SCPI_TOKEN_DECIMAL_NUMERIC_PROGRAM_DATA_WITH_SUFFIX: |
| | | if (sign) { |
| | | return strToInt32(parameter->ptr, value, 10) > 0 ? TRUE : FALSE; |
| | | } else { |
| | | return strToUInt32(parameter->ptr, (uint32_t *)value, 10) > 0 ? TRUE : FALSE; |
| | | } |
| | | } |
| | | return FALSE; |
| | | } |
| | | |
| | | /** |
| | | * Convert parameter to unsigned 32 bit integer |
| | | * @param context |
| | | * @param parameter |
| | | * @param value result |
| | | * @return TRUE if succesful |
| | | */ |
| | | scpi_bool_t SCPI_ParamToUInt32(scpi_t * context, scpi_parameter_t * parameter, uint32_t * value) { |
| | | return ParamToInt32(context, parameter, (int32_t *)value, FALSE); |
| | | } |
| | | |
| | | /** |
| | |
| | | case SCPI_TOKEN_HEXNUM: |
| | | case SCPI_TOKEN_OCTNUM: |
| | | case SCPI_TOKEN_BINNUM: |
| | | result = SCPI_ParamToUnsignedInt(context, parameter, &valint); |
| | | result = SCPI_ParamToUInt32(context, parameter, &valint); |
| | | *value = valint; |
| | | break; |
| | | case SCPI_TOKEN_DECIMAL_NUMERIC_PROGRAM_DATA: |
| | |
| | | } |
| | | |
| | | /** |
| | | * Read integer parameter |
| | | * Read signed/unsigned 32 bit integer parameter |
| | | * @param context |
| | | * @param value |
| | | * @param mandatory |
| | | * @return |
| | | */ |
| | | static scpi_bool_t ParamInt(scpi_t * context, int32_t * value, scpi_bool_t mandatory, scpi_bool_t sign) { |
| | | static scpi_bool_t ParamInt32(scpi_t * context, int32_t * value, scpi_bool_t mandatory, scpi_bool_t sign) { |
| | | scpi_bool_t result; |
| | | scpi_parameter_t param; |
| | | |
| | |
| | | result = SCPI_Parameter(context, ¶m, mandatory); |
| | | if (result) { |
| | | if (SCPI_ParamIsNumber(¶m, FALSE)) { |
| | | result = ParamToInt(context, ¶m, value, sign); |
| | | result = ParamToInt32(context, ¶m, value, sign); |
| | | } else if (SCPI_ParamIsNumber(¶m, TRUE)) { |
| | | SCPI_ErrorPush(context, SCPI_ERROR_SUFFIX_NOT_ALLOWED); |
| | | result = FALSE; |
| | |
| | | return result; |
| | | } |
| | | |
| | | scpi_bool_t SCPI_ParamInt(scpi_t * context, int32_t * value, scpi_bool_t mandatory) { |
| | | return ParamInt(context, value, mandatory, TRUE); |
| | | /** |
| | | * Read signed 32 bit integer parameter |
| | | * @param context |
| | | * @param value |
| | | * @param mandatory |
| | | * @return |
| | | */ |
| | | scpi_bool_t SCPI_ParamInt32(scpi_t * context, int32_t * value, scpi_bool_t mandatory) { |
| | | return ParamInt32(context, value, mandatory, TRUE); |
| | | } |
| | | |
| | | scpi_bool_t SCPI_ParamUnsignedInt(scpi_t * context, uint32_t * value, scpi_bool_t mandatory) { |
| | | return ParamInt(context, (int32_t *)value, mandatory, FALSE); |
| | | /** |
| | | * Read unsigned 32 bit integer parameter |
| | | * @param context |
| | | * @param value |
| | | * @param mandatory |
| | | * @return |
| | | */ |
| | | scpi_bool_t SCPI_ParamUInt32(scpi_t * context, uint32_t * value, scpi_bool_t mandatory) { |
| | | return ParamInt32(context, (int32_t *)value, mandatory, FALSE); |
| | | } |
| | | |
| | | /** |
| | |
| | | |
| | | if (result) { |
| | | if (param.type == SCPI_TOKEN_DECIMAL_NUMERIC_PROGRAM_DATA) { |
| | | SCPI_ParamToInt(context, ¶m, &intval); |
| | | SCPI_ParamToInt32(context, ¶m, &intval); |
| | | *value = intval ? TRUE : FALSE; |
| | | } else { |
| | | result = SCPI_ParamToChoice(context, ¶m, bool_options, &intval); |
| | |
| | | * @param base output base |
| | | * @return number of bytes written to str (without '\0') |
| | | */ |
| | | size_t SCPI_LongToStr(int32_t val, char * str, size_t len, int8_t base) { |
| | | size_t SCPI_Int32ToStr(int32_t val, char * str, size_t len, int8_t base) { |
| | | const char digits[] = "0123456789ABCDEF"; |
| | | |
| | | #define ADD_CHAR(c) if (pos < len) str[pos++] = (c) |
| | |
| | | } |
| | | |
| | | /** |
| | | * Converts unsigned 32b integer value to string |
| | | * @param val integer value |
| | | * @param str converted textual representation |
| | | * @param len string buffer length |
| | | * @param base output base |
| | | * @return number of bytes written to str (without '\0') |
| | | */ |
| | | size_t SCPI_UInt32ToStr(uint32_t val, char * str, size_t len, int8_t base) { |
| | | const char digits[] = "0123456789ABCDEF"; |
| | | |
| | | #define ADD_CHAR(c) if (pos < len) str[pos++] = (c) |
| | | uint32_t x = 0; |
| | | int_fast8_t digit; |
| | | size_t pos = 0; |
| | | |
| | | if (val == 0) { |
| | | ADD_CHAR('0'); |
| | | } else { |
| | | |
| | | switch (base) { |
| | | case 2: |
| | | x = 0x80000000L; |
| | | break; |
| | | case 8: |
| | | x = 0x40000000L; |
| | | break; |
| | | case 10: |
| | | x = 1000000000L; |
| | | break; |
| | | case 0x10: |
| | | x = 0x10000000L; |
| | | break; |
| | | default: |
| | | x = 1000000000L; |
| | | base = 10; |
| | | break; |
| | | } |
| | | |
| | | // remove leading zeros |
| | | while ((val / x) == 0) { |
| | | x /= base; |
| | | } |
| | | |
| | | do { |
| | | digit = (uint8_t) (val / x); |
| | | ADD_CHAR(digits[digit]); |
| | | val -= digit * x; |
| | | x /= base; |
| | | } while (x && (pos < len)); |
| | | } |
| | | |
| | | if (pos < len) str[pos] = 0; |
| | | return pos; |
| | | #undef ADD_CHAR |
| | | } |
| | | |
| | | /** |
| | | * Converts signed 64b integer value to string |
| | | * @param val integer value |
| | | * @param str converted textual representation |
| | | * @param len string buffer length |
| | | * @param base output base |
| | | * @return number of bytes written to str (without '\0') |
| | | */ |
| | | size_t SCPI_Int64ToStr(int64_t val, char * str, size_t len, int8_t base) { |
| | | const char digits[] = "0123456789ABCDEF"; |
| | | |
| | | #define ADD_CHAR(c) if (pos < len) str[pos++] = (c) |
| | | uint64_t x = 0; |
| | | int_fast8_t digit; |
| | | size_t pos = 0; |
| | | uint64_t uval = val; |
| | | |
| | | if (uval == 0) { |
| | | ADD_CHAR('0'); |
| | | } else { |
| | | |
| | | switch (base) { |
| | | case 2: |
| | | x = 0x8000000000000000LL; |
| | | break; |
| | | case 8: |
| | | x = 0x4000000000000000LL; |
| | | break; |
| | | case 10: |
| | | x = 100000000000000000LL; |
| | | break; |
| | | case 0x10: |
| | | x = 0x1000000000000000LL; |
| | | break; |
| | | default: |
| | | x = 100000000000000000LL; |
| | | base = 10; |
| | | break; |
| | | } |
| | | |
| | | // add sign for numbers in base 10 |
| | | if ((val < 0) && (base == 10)) { |
| | | uval = -val; |
| | | ADD_CHAR('-'); |
| | | } |
| | | |
| | | // remove leading zeros |
| | | while ((uval / x) == 0) { |
| | | x /= base; |
| | | } |
| | | |
| | | do { |
| | | digit = (uint8_t) (uval / x); |
| | | ADD_CHAR(digits[digit]); |
| | | uval -= digit * x; |
| | | x /= base; |
| | | } while (x && (pos < len)); |
| | | } |
| | | |
| | | if (pos < len) str[pos] = 0; |
| | | return pos; |
| | | #undef ADD_CHAR |
| | | } |
| | | |
| | | /** |
| | | * Converts unsigned 64b integer value to string |
| | | * @param val integer value |
| | | * @param str converted textual representation |
| | | * @param len string buffer length |
| | | * @param base output base |
| | | * @return number of bytes written to str (without '\0') |
| | | */ |
| | | size_t SCPI_UInt64ToStr(uint64_t val, char * str, size_t len, int8_t base) { |
| | | const char digits[] = "0123456789ABCDEF"; |
| | | |
| | | #define ADD_CHAR(c) if (pos < len) str[pos++] = (c) |
| | | uint64_t x = 0; |
| | | int_fast8_t digit; |
| | | size_t pos = 0; |
| | | |
| | | if (val == 0) { |
| | | ADD_CHAR('0'); |
| | | } else { |
| | | |
| | | switch (base) { |
| | | case 2: |
| | | x = 0x8000000000000000LL; |
| | | break; |
| | | case 8: |
| | | x = 0x4000000000000000LL; |
| | | break; |
| | | case 10: |
| | | x = 100000000000000000LL; |
| | | break; |
| | | case 0x10: |
| | | x = 0x1000000000000000LL; |
| | | break; |
| | | default: |
| | | x = 1000000000L; |
| | | base = 10; |
| | | break; |
| | | } |
| | | |
| | | // remove leading zeros |
| | | while ((val / x) == 0) { |
| | | x /= base; |
| | | } |
| | | |
| | | do { |
| | | digit = (uint8_t) (val / x); |
| | | ADD_CHAR(digits[digit]); |
| | | val -= digit * x; |
| | | x /= base; |
| | | } while (x && (pos < len)); |
| | | } |
| | | |
| | | if (pos < len) str[pos] = 0; |
| | | return pos; |
| | | #undef ADD_CHAR |
| | | } |
| | | |
| | | /** |
| | | * Converts double value to string |
| | | * @param val double value |
| | | * @param str converted textual representation |
| | |
| | | * @param val 32bit integer result |
| | | * @return number of bytes used in string |
| | | */ |
| | | size_t strToLong(const char * str, int32_t * val, int8_t base) { |
| | | size_t strToInt32(const char * str, int32_t * val, int8_t base) { |
| | | char * endptr; |
| | | *val = strtol(str, &endptr, base); |
| | | return endptr - str; |
| | |
| | | * @param val 32bit integer result |
| | | * @return number of bytes used in string |
| | | */ |
| | | size_t strToULong(const char * str, uint32_t * val, int8_t base) { |
| | | size_t strToUInt32(const char * str, uint32_t * val, int8_t base) { |
| | | char * endptr; |
| | | *val = strtoul(str, &endptr, base); |
| | | return endptr - str; |
| | |
| | | //*num = 1; |
| | | } else { |
| | | int32_t tmpNum; |
| | | i = len1 + strToLong(str2 + len1, &tmpNum, 10); |
| | | i = len1 + strToInt32(str2 + len1, &tmpNum, 10); |
| | | if (i != len2) { |
| | | result = FALSE; |
| | | } else { |
| | |
| | | } |
| | | |
| | | /** |
| | | * Compose command from previsou command anc current command |
| | | * Compose command from previous command anc current command |
| | | * |
| | | * @param prev pointer to previous command |
| | | * @param current pointer of current command |
| | |
| | | char * strnpbrk(const char *str, size_t size, const char *set) LOCAL; |
| | | scpi_bool_t compareStr(const char * str1, size_t len1, const char * str2, size_t len2) LOCAL; |
| | | scpi_bool_t compareStrAndNum(const char * str1, size_t len1, const char * str2, size_t len2, int32_t * num) LOCAL; |
| | | size_t strToLong(const char * str, int32_t * val, int8_t base) LOCAL; |
| | | size_t strToULong(const char * str, uint32_t * val, int8_t base) LOCAL; |
| | | size_t strToInt32(const char * str, int32_t * val, int8_t base) LOCAL; |
| | | size_t strToUInt32(const char * str, uint32_t * val, int8_t base) LOCAL; |
| | | size_t strToInt64(const char * str, int64_t * val, int8_t base) LOCAL; |
| | | size_t strToUInt64(const char * str, uint64_t * val, int8_t base) LOCAL; |
| | | size_t strToDouble(const char * str, double * val) LOCAL; |
| | | scpi_bool_t locateText(const char * str1, size_t len1, const char ** str2, size_t * len2) LOCAL; |
| | | scpi_bool_t locateStr(const char * str1, size_t len1, const char ** str2, size_t * len2) LOCAL; |
| | |
| | | |
| | | static scpi_result_t test_treeA(scpi_t* context) { |
| | | |
| | | SCPI_ResultInt(context, 10); |
| | | SCPI_ResultInt32(context, 10); |
| | | |
| | | return SCPI_RES_OK; |
| | | } |
| | | |
| | | static scpi_result_t test_treeB(scpi_t* context) { |
| | | |
| | | SCPI_ResultInt(context, 20); |
| | | SCPI_ResultInt32(context, 20); |
| | | |
| | | return SCPI_RES_OK; |
| | | } |
| | |
| | | |
| | | } |
| | | |
| | | static void test_longToStr() { |
| | | char str[32]; |
| | | static void test_Int32ToStr() { |
| | | const size_t max=32+1; |
| | | char str[max]; |
| | | size_t len; |
| | | |
| | | len = SCPI_LongToStr(10, str, 32, 10); |
| | | CU_ASSERT(len == 2); |
| | | CU_ASSERT_STRING_EQUAL(str, "10"); |
| | | // test conversion to decimal numbers |
| | | len = SCPI_Int32ToStr(0, str, max, 10); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "0"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_LongToStr(10, str, 32, 2); |
| | | CU_ASSERT(len == 4); |
| | | CU_ASSERT(str[0] == '1'); |
| | | CU_ASSERT(str[1] == '0'); |
| | | CU_ASSERT(str[2] == '1'); |
| | | CU_ASSERT(str[3] == '0'); |
| | | CU_ASSERT(str[4] == '\0'); |
| | | |
| | | len = SCPI_LongToStr(10, str, 32, 16); |
| | | len = SCPI_Int32ToStr(1, str, max, 10); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT(str[0] == 'A'); |
| | | CU_ASSERT(str[1] == '\0'); |
| | | |
| | | len = SCPI_LongToStr(10, str, 32, 8); |
| | | CU_ASSERT_STRING_EQUAL(str, "1"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(-1, str, max, 10); |
| | | CU_ASSERT(len == 2); |
| | | CU_ASSERT(str[0] == '1'); |
| | | CU_ASSERT(str[1] == '2'); |
| | | CU_ASSERT(str[2] == '\0'); |
| | | CU_ASSERT_STRING_EQUAL(str, "-1"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(0x7fffffff, str, max, 10); |
| | | CU_ASSERT(len == 10); |
| | | CU_ASSERT_STRING_EQUAL(str, "2147483647"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(0x80000000, str, max, 10); |
| | | CU_ASSERT(len == 11); |
| | | CU_ASSERT_STRING_EQUAL(str, "-2147483648"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | // test conversion to binary numbers |
| | | len = SCPI_Int32ToStr(0, str, max, 2); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "0"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(1, str, max, 2); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "1"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(-1, str, max, 2); |
| | | CU_ASSERT(len == 32); |
| | | CU_ASSERT_STRING_EQUAL(str, "11111111111111111111111111111111"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(0x01234567, str, max, 2); |
| | | CU_ASSERT(len == 25); |
| | | CU_ASSERT_STRING_EQUAL(str, "1001000110100010101100111"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(0x89abcdef, str, max, 2); |
| | | CU_ASSERT(len == 32); |
| | | CU_ASSERT_STRING_EQUAL(str, "10001001101010111100110111101111"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | // test conversion to hexadecimal numbers |
| | | len = SCPI_Int32ToStr(0x0, str, max, 16); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "0"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(0x01234567, str, max, 16); |
| | | CU_ASSERT(len == 7); |
| | | CU_ASSERT_STRING_EQUAL(str, "1234567"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(0x89ABCDEF, str, max, 16); |
| | | CU_ASSERT(len == 8); |
| | | CU_ASSERT_STRING_EQUAL(str, "89ABCDEF"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | // test conversion to octal numbers |
| | | len = SCPI_Int32ToStr(0, str, max, 8); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "0"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(0xffffffff, str, max, 8); |
| | | CU_ASSERT(len == 11); |
| | | CU_ASSERT_STRING_EQUAL(str, "37777777777"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int32ToStr(076543210, str, max, 8); |
| | | CU_ASSERT(len == 8); |
| | | CU_ASSERT_STRING_EQUAL(str, "76543210"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | } |
| | | |
| | | static void test_UInt32ToStr() { |
| | | const size_t max=32+1; |
| | | char str[max]; |
| | | size_t len; |
| | | |
| | | // test conversion to decimal numbers |
| | | len = SCPI_UInt32ToStr(0, str, max, 10); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "0"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_UInt32ToStr(1, str, max, 10); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "1"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_UInt32ToStr(-1, str, max, 10); |
| | | CU_ASSERT(len == 10); |
| | | CU_ASSERT_STRING_EQUAL(str, "4294967295"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_UInt32ToStr(0x7fffffff, str, max, 10); |
| | | CU_ASSERT(len == 10); |
| | | CU_ASSERT_STRING_EQUAL(str, "2147483647"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_UInt32ToStr(0x80000000, str, max, 10); |
| | | CU_ASSERT(len == 10); |
| | | CU_ASSERT_STRING_EQUAL(str, "2147483648"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | } |
| | | |
| | | static void test_Int64ToStr() { |
| | | const size_t max=64+1; |
| | | char str[max]; |
| | | size_t len; |
| | | |
| | | // test conversion to decimal numbers |
| | | len = SCPI_Int64ToStr(0, str, max, 10); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "0"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(1, str, max, 10); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "1"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(-1, str, max, 10); |
| | | CU_ASSERT(len == 2); |
| | | CU_ASSERT_STRING_EQUAL(str, "-1"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(0x7fffffffffffffff, str, max, 10); |
| | | CU_ASSERT(len == 19); |
| | | CU_ASSERT_STRING_EQUAL(str, "9223372036854775807"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | printf("\n"); |
| | | printf(str); |
| | | printf("\n"); |
| | | |
| | | len = SCPI_Int64ToStr(0x8000000000000000, str, max, 10); |
| | | CU_ASSERT(len == 20); |
| | | CU_ASSERT_STRING_EQUAL(str, "-9223372036854775808"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | // test conversion to binary numbers |
| | | len = SCPI_Int64ToStr(0, str, max, 2); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "0"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(1, str, max, 2); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "1"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(-1, str, max, 2); |
| | | CU_ASSERT(len == 64); |
| | | CU_ASSERT_STRING_EQUAL(str, "1111111111111111111111111111111111111111111111111111111111111111"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(0x0123456789abcdef, str, max, 2); |
| | | CU_ASSERT(len == 57); |
| | | CU_ASSERT_STRING_EQUAL(str, "100100011010001010110011110001001101010111100110111101111"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(0xfedcba9876543210, str, max, 2); |
| | | CU_ASSERT(len == 64); |
| | | CU_ASSERT_STRING_EQUAL(str, "1111111011011100101110101001100001110110010101000011001000010000"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | // test conversion to hexadecimal numbers |
| | | len = SCPI_Int64ToStr(0x0, str, max, 16); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "0"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(0x0123456789abcdef, str, max, 16); |
| | | CU_ASSERT(len == 15); |
| | | CU_ASSERT_STRING_EQUAL(str, "123456789ABCDEF"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(0xfedcba9876543210, str, max, 16); |
| | | CU_ASSERT(len == 16); |
| | | CU_ASSERT_STRING_EQUAL(str, "FEDCBA9876543210"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | // test conversion to octal numbers |
| | | len = SCPI_Int64ToStr(0, str, max, 8); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "0"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(0xffffffffffffffff, str, max, 8); |
| | | CU_ASSERT(len == 22); |
| | | CU_ASSERT_STRING_EQUAL(str, "1777777777777777777777"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_Int64ToStr(076543210, str, max, 8); |
| | | CU_ASSERT(len == 8); |
| | | CU_ASSERT_STRING_EQUAL(str, "76543210"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | } |
| | | |
| | | static void test_UInt64ToStr() { |
| | | const size_t max=64+1; |
| | | char str[max]; |
| | | size_t len; |
| | | |
| | | // test conversion to decimal numbers |
| | | len = SCPI_UInt64ToStr(0, str, max, 10); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "0"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_UInt64ToStr(1, str, max, 10); |
| | | CU_ASSERT(len == 1); |
| | | CU_ASSERT_STRING_EQUAL(str, "1"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_UInt64ToStr(-1, str, max, 10); |
| | | CU_ASSERT(len == 20); |
| | | CU_ASSERT_STRING_EQUAL(str, "18446744073709551615"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_UInt64ToStr(0x7fffffffffffffff, str, max, 10); |
| | | CU_ASSERT(len == 19); |
| | | CU_ASSERT_STRING_EQUAL(str, "9223372036854775807"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | |
| | | len = SCPI_UInt64ToStr(0x8000000000000000, str, max, 10); |
| | | CU_ASSERT(len == 19); |
| | | CU_ASSERT_STRING_EQUAL(str, "9223372036854775808"); |
| | | CU_ASSERT(str[len] == '\0'); |
| | | } |
| | | |
| | | static void test_doubleToStr() { |
| | |
| | | TEST_DOUBLE_TO_STR(-1.3e-30, 8, "-1.3e-30"); |
| | | } |
| | | |
| | | static void test_strToLong() { |
| | | static void test_strToInt32() { |
| | | size_t result; |
| | | int32_t val; |
| | | |
| | | #define TEST_STR_TO_LONG(s, r, v, b) \ |
| | | do { \ |
| | | result = strToLong(s, &val, b); \ |
| | | result = strToInt32(s, &val, b); \ |
| | | CU_ASSERT_EQUAL(val, v); \ |
| | | CU_ASSERT_EQUAL(result, r); \ |
| | | } while(0) \ |
| | | |
| | | |
| | | TEST_STR_TO_LONG("", 0, 0, 10); |
| | | TEST_STR_TO_LONG("1", 1, 1, 10); |
| | | TEST_STR_TO_LONG("10", 2, 10, 10); |
| | |
| | | TEST_STR_TO_LONG("18", 1, 1, 8); // octal 1, 8 is ignored |
| | | } |
| | | |
| | | static void test_strToULong() { |
| | | static void test_strToUInt32() { |
| | | size_t result; |
| | | uint32_t val; |
| | | |
| | | #define TEST_STR_TO_ULONG(s, r, v, b) \ |
| | | do { \ |
| | | result = strToULong(s, &val, b); \ |
| | | result = strToUInt32(s, &val, b); \ |
| | | CU_ASSERT_EQUAL(val, v); \ |
| | | CU_ASSERT_EQUAL(result, r); \ |
| | | } while(0) \ |
| | |
| | | /* Add the tests to the suite */ |
| | | if (0 |
| | | || (NULL == CU_add_test(pSuite, "strnpbrk", test_strnpbrk)) |
| | | || (NULL == CU_add_test(pSuite, "longToStr", test_longToStr)) |
| | | || (NULL == CU_add_test(pSuite, "Int32ToStr", test_Int32ToStr)) |
| | | || (NULL == CU_add_test(pSuite, "UInt32ToStr", test_UInt32ToStr)) |
| | | || (NULL == CU_add_test(pSuite, "Int64ToStr", test_Int64ToStr)) |
| | | || (NULL == CU_add_test(pSuite, "UInt64ToStr", test_UInt64ToStr)) |
| | | || (NULL == CU_add_test(pSuite, "doubleToStr", test_doubleToStr)) |
| | | || (NULL == CU_add_test(pSuite, "strToLong", test_strToLong)) |
| | | || (NULL == CU_add_test(pSuite, "strToULong", test_strToULong)) |
| | | || (NULL == CU_add_test(pSuite, "strToInt32", test_strToInt32)) |
| | | || (NULL == CU_add_test(pSuite, "strToUInt32", test_strToUInt32)) |
| | | || (NULL == CU_add_test(pSuite, "strToDouble", test_strToDouble)) |
| | | || (NULL == CU_add_test(pSuite, "compareStr", test_compareStr)) |
| | | || (NULL == CU_add_test(pSuite, "compareStrAndNum", test_compareStrAndNum)) |