1. A computer program product embodied in a computer readable storage medium, wherein the medium does not include a propagating signal, for supporting creation of source code including a plurality of routines described in a program, using a plurality of test cases defining a plurality of respective tests to be executed to check conformity of software to requirements, the computer program product comprising the programming instructions for:
a test case execution step of executing one or more specific test cases selected from the plurality of test cases or causing the specific test cases to be executed; and
a test result output step of adding a test result of a test case executed or caused to be executed in the test case execution step to the source code.
2. The computer program product as recited in claim 1, wherein the plurality of test cases are associated with a plurality of respective pieces of test object location information that can identify the plurality of respective routines in the source code, wherein the specific test cases being ones of the test cases in association with specific test object location information that is test object location information that can identify a specific routine out of the plurality of routines, and wherein the test result output step adds respective test results of the specific test cases executed or caused to be executed in the test case execution step to a program description field of the specific routine identified by the specific test object location information in association with the specific test cases.
3. The computer program product as recited in claim 2, wherein the program description field defining the specific routine includes a specific comment line that is a comment line including a marker that is a specific character string, wherein the specific test object location information includes a single character string or a combination of a plurality of character strings that are selected from a description of the specific routine and can identify the specific routine in the source code.
4. The computer program product as recited in claim 3, wherein the test result output step adds the test results of the specific test cases executed or caused to be executed in the test case execution step to the specific comment line of the program description field defining the specific routine.
5. The computer program product as recited in claim 4, wherein the test case execution step executes a higher-level specific test case that is one of the test cases, the higher-level specific test case being in association with higher-level specific test object location information that is test object location information assigned to a higher-level routine that is a routine calling the specific routine, or causes the higher-level specific test case to be executed.
6. The computer program product as recited in claim 5, wherein the specific comment line includes specific supplementary information regarding a test, wherein the test case execution step executes the specific test cases or causes the specific test cases to be executed according to the specific supplementary information.
7. The computer program product as recited in claim 6 further comprising the programming instructions for:
adding the specific comment line including the marker to a portion of the program description field of the source code where a difference lies by comparing two different versions of the source code.
8. The computer program product as recited in claim 2, wherein the test case execution step executes a higher-level specific test case that is one of the test cases, the higher-level specific test case being in association with higher-level specific test object location information that is test object location information assigned to a higher-level routine that is a routine calling the specific routine, or causes the higher-level specific test case to be executed.
9. The computer program product as recited in claim 3, wherein the specific comment line includes specific supplementary information regarding a test, wherein the test case execution step executes the specific test cases or causes the specific test cases to be executed according to the specific supplementary information.
10. The computer program product as recited in claim 3 further comprising the programming instructions for:
adding the specific comment line including the marker to a portion of the program description field of the source code where a difference lies by comparing two different versions of the source code.
11. A system, comprising:
a memory unit for storing a computer program for supporting creation of source code including a plurality of routines described in a program, using a plurality of test cases defining a plurality of respective tests to be executed to check conformity of software to requirements;
a processor coupled to the memory unit, wherein the processor, responsive to the computer program, comprises:
circuitry for executing, in a test case execution step, one or more specific test cases selected from the plurality of test cases or causing the specific test cases to be executed; and
circuitry for adding, in a test result output step, a test result of a test case executed or caused to be executed in the test case execution step to the source code.
12. The system as recited in claim 11, wherein the plurality of test cases are associated with a plurality of respective pieces of test object location information that can identify the plurality of respective routines in the source code, wherein the specific test cases being ones of the test cases in association with specific test object location information that is test object location information that can identify a specific routine out of the plurality of routines, and wherein the test result output step adds respective test results of the specific test cases executed or caused to be executed in the test case execution step to a program description field of the specific routine identified by the specific test object location information in association with the specific test cases.
13. The system as recited in claim 12, wherein the program description field defining the specific routine includes a specific comment line that is a comment line including a marker that is a specific character string, wherein the specific test object location information includes a single character string or a combination of a plurality of character strings that are selected from a description of the specific routine and can identify the specific routine in the source code.
14. The system as recited in claim 13, wherein the test result output step adds the test results of the specific test cases executed or caused to be executed in the test case execution step to the specific comment line of the program description field defining the specific routine.
15. The system as recited in claim 14, wherein the test case execution step executes a higher-level specific test case that is one of the test cases, the higher-level specific test case being in association with higher-level specific test object location information that is test object location information assigned to a higher-level routine that is a routine calling the specific routine, or causes the higher-level specific test case to be executed.
16. The system as recited in claim 15, wherein the specific comment line includes specific supplementary information regarding a test, wherein the test case execution step executes the specific test cases or causes the specific test cases to be executed according to the specific supplementary information.
17. The system as recited in claim 16, wherein the processor further comprises:
circuitry for adding the specific comment line including the marker to a portion of the program description field of the source code where a difference lies by comparing two different versions of the source code.
18. The system as recited in claim 12, wherein the test case execution step executes a higher-level specific test case that is one of the test cases, the higher-level specific test case being in association with higher-level specific test object location information that is test object location information assigned to a higher-level routine that is a routine calling the specific routine, or causes the higher-level specific test case to be executed.
19. The system as recited in claim 13, wherein the specific comment line includes specific supplementary information regarding a test, wherein the test case execution step executes the specific test cases or causes the specific test cases to be executed according to the specific supplementary information.
20. The system as recited in claim 13, wherein the processor further comprises:
circuitry for adding the specific comment line including the marker to a portion of the program description field of the source code where a difference lies by comparing two different versions of the source code.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A module for installation in a device for compressing concrete, comprising:
a formwork device;
a vibration decoupling device fastened to the formwork device;
at least one vibration exciter fastened to the formwork device; and
electrical supply lines for the vibration exciter or exciters, the electrical supply lines being fastened to the formwork device and being held on the formwork device by the vibration decoupling device.
2. The module as recited in claim 1, wherein the electrical supply lines run between the vibration decoupling device and the formwork device.
3. The module as recited in claim 1, wherein the vibration decoupling device has a foam layer, and the electrical supply lines run inside the foam layer.
4. The module as recited in claim 1, wherein an electrical connecting device is fastened to the formwork device for coupling the electrical supply lines to an electrical supply network.
5. The module as recited in claim 4, wherein on the connecting device a central plug connector is provided for coupling to the supply network.
6. The module as recited in claim 4, wherein the electrical supply lines between the connecting device and the vibration exciter are fastened completely to the formwork device.
7. The module as recited in claim 4, wherein the electrical connecting device is decoupled in terms of vibration from the formwork device.
8. A device for compressing concrete during the manufacture of concrete parts, wherein
a module is provided that includes:
a formwork device;
a vibration decoupling device fastened to the formwork device;
at least one vibration exciter fastened to the formwork device; and
electrical supply lines for the vibration exciter, the electrical supply lines being fastened to the formwork device and being held on the formwork device by the vibration decoupling device;
the formwork device, the vibration decoupling device, and the vibration exciter being completely pre-assembled to form the module; and wherein
the pre-assembled module is capable of being placed onto a bearing structure.
9. The device as recited in claim 8, wherein recesses are provided in the bearing structure for accepting the vibration exciter or exciters.
10. A device for compressing concrete during the manufacture of concrete parts, comprising:
a bearing structure;
a formwork device held by the bearing structure;
a vibration decoupling device provided between the bearing structure and the formwork device;
at least one vibration exciter that acts directly on the formwork device; in which
an excitation frequency produced by the vibration exciter is a frequency that is advantageous for the concrete compressing; and
a system made up of the bearing structure and the vibration decoupling device is designed in such a way that its resonant frequency is not situated in the range of the excitation frequency; wherein
the formwork device, the vibration decoupling device, and the vibration exciter are combined to form a pre-assembled module and;
the module is capable of being placed onto the bearing structure.
11. The device as recited in claim 10, wherein the resonant frequency of the system made up of the bearing structure and the vibration decoupling device is less than the excitation frequency of the vibration exciter.
12. The device as recited in claim 10, wherein the resonant frequency is at most half as large as the excitation frequency.
13. The device as recited in claim 10, wherein the bearing structure is provided with a mass that is selected to provide a resulting resonant frequency that is less than or equal to about half of the exciter frequency.
14. The device as recited in claim 10, wherein the bearing structure is formed at least essentially by a concrete base.
15. The device as recited in claim 10, wherein the bearing structure is decoupled in terms of vibration from a floor that supports the device.
16. The device as recited in claim 10, wherein a vibration decoupling layer is provided between the bearing structure and a floor and attenuates transmission of vibrations between the bearing structure and the floor.
17. The device as recited in claim 10, wherein recesses are provided in the bearing structure for accepting the vibration exciter or exciters.