WO2014056118A1 - Procédé de capture et de génération de jeux d'essai dans un point de vente - Google Patents

Procédé de capture et de génération de jeux d'essai dans un point de vente Download PDF

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Publication number
WO2014056118A1
WO2014056118A1 PCT/CL2012/000079 CL2012000079W WO2014056118A1 WO 2014056118 A1 WO2014056118 A1 WO 2014056118A1 CL 2012000079 W CL2012000079 W CL 2012000079W WO 2014056118 A1 WO2014056118 A1 WO 2014056118A1
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WO
WIPO (PCT)
Prior art keywords
pos
pinpad
test
microcontroller
automation
Prior art date
Application number
PCT/CL2012/000079
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English (en)
Spanish (es)
Inventor
Marco RIBO COLELLA
Mauricio CORTES RABBA
Original Assignee
Cortes Y Aracena Cia Ltda.
Rhiscom S.A.
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Application filed by Cortes Y Aracena Cia Ltda., Rhiscom S.A. filed Critical Cortes Y Aracena Cia Ltda.
Publication of WO2014056118A1 publication Critical patent/WO2014056118A1/fr

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q20/00Payment architectures, schemes or protocols
    • G06Q20/30Payment architectures, schemes or protocols characterised by the use of specific devices or networks
    • G06Q20/34Payment architectures, schemes or protocols characterised by the use of specific devices or networks using cards, e.g. integrated circuit [IC] cards or magnetic cards
    • G06Q20/356Aspects of software for card payments
    • G06Q20/3567Software being in the reader
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F11/00Error detection; Error correction; Monitoring
    • G06F11/36Preventing errors by testing or debugging software
    • G06F11/3668Software testing
    • G06F11/3672Test management
    • G06F11/3684Test management for test design, e.g. generating new test cases
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07GREGISTERING THE RECEIPT OF CASH, VALUABLES, OR TOKENS
    • G07G1/00Cash registers
    • G07G1/0009Details of the software in the checkout register, electronic cash register [ECR] or point of sale terminal [POS]
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q20/00Payment architectures, schemes or protocols
    • G06Q20/08Payment architectures
    • G06Q20/20Point-of-sale [POS] network systems

Definitions

  • the present invention is framed for face-to-face customer service teams such as cash registers in commercial stores, called Points of Sale (POS).
  • POS Points of Sale
  • the invention consists in having an automation and processing device with multiple interfaces, several that allow to replace peripherals or devices that are connected to a POS, and one that allows to connect to a workstation for its control.
  • the automation and processing device is internally composed of a processing and control unit, a robotic system for PINpad (PinPad means the credit card reader and smart card, with a keyboard and screen that allows the customer to enter their password and verify your purchase or transaction) and will optionally be connected to one or more tax control cards. This allows functional testing of applications that are automatically incorporated into a POS.
  • PINpad means the credit card reader and smart card, with a keyboard and screen that allows the customer to enter their password and verify your purchase or transaction
  • POS Point of Sale
  • the large number of services associated with the POS can also be certified by the tax service and also by banking and credit institutions, which entails a rigorous control of these machines, both in their architecture and in the applications that allow the commercial transactions that are carried out in the POS, therefore, the operational quality of the POS is of a high demand, especially of the public authorities.
  • this service When a new functionality or service must be incorporated into the POS, this service must operate in accordance with the logic required by the business, ensure quality policies and standards, as well as the controls required by the public authority, especially the tax service and the banking entities, for which exhaustive tests must be carried out with the new functionality or service, and generally these are performed manually repeatedly, so as to have a large number of results, with all the variety implied by the test, emulating faithfully the operation with the service that is delivered to the client.
  • a reliability and safety test can take a long time, involve a large number of people, both to simulate customer service and that of an operator repeating the operation of the new application or service a number of times in time. real, in order to be able to compare the behavior of the incorporation of the equipment and the application or service to the data processing system of the sales store as of the public control institutions.
  • the invention patent application US2002178400 of Venkataraman, dated 28.11.2002, entitled “POS terminal test system and method", describes a system for testing an application running at a point of sale (POS) comprising a server that It runs on a personal computer connected to the point of sale terminal.
  • the server sends signals that simulate actions on a keyboard, card readers and the like, to the application under test.
  • the server can also receive other data and send instructions, for example, obtain available details of RAM space, file details and system clock details, and can send instructions to restart the application.
  • the patent application US2005127173, of Odol et al., Dated 16.05.2005, entitled “Point of sale automated testing technology”, describes a solution that is designed to simulate the point of sale with the transactions that allows companies test the transactions of point of sale in a defined and repeatable way.
  • the invention provides a software solution and a method to test the point of sale and test sales transactions and validation of sales operations and discounts to ensure quality and standards in the production environment.
  • the solution captures, for reuse, the systemic responses to a point of sale transaction and the procedure for the purposes of automated testing of the transaction and the procedure.
  • the present invention records the details of the transaction and the procedure by examining and saving a database or file with the details of the procedural steps and the transaction values, as well as the null values.
  • the solution provides approve or fail the values after measuring the actual result with the expected result.
  • the patent application JP2003298646 of Furukawa et al., Dated 17.10.2003, entitled "POS tested unit and testing system of the same", describes a probe unit of a POS for a test that connects to one end of a POS N channel that is connected to another end.
  • a generator transmits a test frame for the POS channel N.
  • the generator transmits the test frame the POS channel N synchronously with a trigger signal that shows a start time point and an end point of the sampling period as output of the probe unit of a POS.
  • the first objective of the invention is to have a device with several interfaces that allows to replace peripherals or devices that are connected to a POS and allows to perform functional tests of applications that are automatically incorporated into a POS, achieving high demand commercial transactions and operational quality, especially for public authorities, this will be called an automation and processing device, the automation and processing device connects a workstation for control and a POS through a plurality of interfaces, replacing all the devices that were Originally connected to the POS in its normal operation, the POS is optionally maintained with a LAN connection to operate with a controller / host / store server.
  • the automation and processing device is internally composed of a processing and control unit, a robotic system for PINpad and will optionally be connected to one or more tax control cards.
  • the robotic system for PINpad consists of a PINpad interface and a real PINpad, which allows: to emulate the action of a user when passing a magnetic card using a magnetic head to write the required tracks, press the keyboard using a robotic system appropriate and communicate the PINpad with the POS application.
  • the automation and processing device can emulate the operation of all peripherals or devices connected to the POS, except for fiscal control cards and PINPad.
  • the robotic PINpad system is a matrix arrangement of solenoids or CNC, on a surface coinciding with that of the PINpad keyboard, so that each solenoid can be moved vertically to press the key under its position, whereby actions can be emulated What does the user on a PINpad connected to a POS, for example, in a retail store.
  • the microcontroller / processor contained in the processing and control unit sends a control signal through a general purpose input / output (GPIO) gate to both the interface magnetic head as to the PlNPad keyboard activator to emulate the magnetic card step actions and keyboard action.
  • GPIO general purpose input / output
  • the second objective of the invention is to have an operating method that uses the automation and processing device to perform functional tests of applications that are incorporated into a Point of Sale (POS), automatically.
  • POS Point of Sale
  • the method includes the stages of test management, communication and incident management.
  • test management stage is carried out through a test manager application, where the test cases, plans, cycles and test metrics are managed, maintained and stored.
  • the communication stage is carried out through a Virtual POS application for learning and a Virtual POS application for execution, and allows controlling the automation and processing device, in order to virtualize the devices that are normally connected to the POS.
  • the incident management stage is carried out through an incident management application, and allows the administration, maintenance and monitoring of each of the incidents reported in the regressive tests.
  • the test management stage comprises the sub-stages of creating test folders, which will contain the test cases for definition in a database; create a test plan; create a test cycle; assign the test cycle with the test plan; create metrics; define test cases; and add the test cases, which are contained in the test folder, to the test plan.
  • the communication stage within the scope of the Virtual POS for learning, includes the sub-stages of synchronizing with the test manager the folders that have been defined in the test manager; select a test plan in the folder containing the test case that is required to learn; record a test case for the automation and processing device to learn the inputs and outputs of a transaction in the POS, based on executing a test case manually; and store test case steps in this learned sequence, in the database of the test manager, and then execute them as an automated process.
  • the sub-stages of recording a test case and storing test case steps correspond to a process that learns from the inputs and outputs of a transaction in the POS application, once the inputs and outputs coming from the device are registered. Automation and processing device, also synchronizes with the test manager.
  • the communication stage within the scope of the Virtual POS for execution, includes the sub-stages of execution of a test case; select the associated cycle for the plan to be executed; select the test plan to execute; execute a test case in isolation or a test plan; see test results, where, once the test plan is executed, you can view the reports in the test manager application that show the results of the cases that happen, fail or are blocked, here the evidence and incidents are generated if they exist, so it also synchronizes with the incident manager.
  • the incident management stage corresponds to a verification and reporting stage, where, if there is a difference in inputs and outputs, between what is registered by the Virtual POS application of learning and the Virtual POS application of execution, information can be obtained relevant to failures and generate reports of incidents detected in the testing process.
  • Figure 1 illustrates a general diagram of a device as a Point of Sale in the prior art.
  • Figure 2 illustrates a general arrangement where the present invention is inserted.
  • FIG. 3 shows the interior detail of the automation and processing apparatus of the present invention.
  • Figure 4 shows a detail of the content of the processing unit and the automation unit.
  • Figure 5 shows a second implementation option of the invention.
  • Figure 6 shows a flow chart for carrying out tests of the invention.
  • Figure 1 describes, in a general diagram (10) of the prior art state, where a POS (20) is connected via a LAN (40) to a store controller (60), the POS (20) has direct connections with a PinPad device (21) through a link (45), the PinPad device is understood as the credit card reader with a keyboard and screen that allows the customer to enter their password and verify their purchase or transaction, a cash drawer (22) with a link (46), a screen (23) ("touch screen” type) through a link (47) and first other devices (24) through a link (48), in addition, by means of a link (49) it is possible to connect via a data bus S485 a tax card (26) to a printer (25) for the issuance of a document of the transaction made that is accepted by the corresponding internal tax service; a user screen (29), a keyboard (28), a scanner (27) and second other devices (30).
  • a data bus S485 a tax card (26) to a printer (25) for the issuance of a document of the
  • Figure 2 describes the arrangement (100) of the invention showing an automation and processing apparatus (80) commanded by a PC (70), the automation and processing apparatus (80) is connected to the POS (20) by the links (45, 46, 47, 48, 49), replacing all the means described in Figure 1 that were connected to the POS (20) in its prior art arrangement, except the connection to the LAN (40) and the controller from store (60), which remain the same.
  • Figure 3 in general, explains the content of the automation and processing apparatus (80) connected to the POS (20) by means of the links (45, 46, 47, 48, 49);
  • the POS (20) is connected via the links (45, 46, 47, 48, 49) directly with a processing unit (120), where the link (49) in turn is optionally connected to a fiscal card A (82) and a fiscal card B (83) that in turn connect to the processing unit (120); on the other hand, the processing unit (120) is connected to an automation unit (90) and to the PC (70).
  • FIG. 4 shows in more detail the contents of the automation and processing apparatus
  • the link (45), which is associated with the PINPAD, is connected via a first RS232 interface (135) to a COMM3 port of a microcontroller (130) contained in the processing unit (120);
  • the link (46) associated with the value drawer (22) is connected via a first interface (136) to a GPIOJN door and a GPIO_OUT door of the microcontroller (130);
  • the link (47) associated with a touch screen is connected with a USB interface (137) to the COMM4 port of the microcontroller (130);
  • the link (48) associated with other POS input / output devices (20) is connected via a second interface (138) to the microcontroller port l / O (130);
  • Figure 5 shows a second embodiment of the invention, where the processing unit (120) is configured with a first microcontroller (130 ') and a second microcontroller (130 "); where the link (45) associated with the PINPAD is connected by a first RS232 interface (135) to a COMM1 gate of the first microcontroller (130 ') contained in the processing unit (120); the link (46) associated with the value drawer (22), is connected in a first direction towards a interface (137) and is at a GPIOJN gate and in a second direction from a first GPIO_OUT gate of the first microcontroller (130 '); on the other hand the COMM2 gate of the first microcontroller (130') is connected to the automation unit (90 ) via a second RS232 interface (131) to a PinPad (94) contained within said automation unit (90); said automation unit (90) also contains a PinPad interface (92) consisting of a magnetic spindle interface (96 ) and a tea activator PinPad
  • the link (49) is optionally connected to a switch (84) that can be switched to choose to connect the fiscal card A (82) or the fiscal card B (83) to a second RS485 interface (140) to the COMM0 port of the second microcontroller (130 ") and a link (141) connected to the GPIOJDUT door of the second microcontroller (130") allows to control the switch (84); the first microcontroller (130 ') through its COMM0 gate communicates with the COMM2 gate of the second microcontroller (130 ").
  • a POS (20), such as the one shown in Figure 1, has a program that runs, allowing interaction with the store controller (60) through LAN (40), and handles a series of peripherals such as for example a printer (25), scanner (27), etc.
  • communication with the printer (25) is done through a device called a fiscal control card (26), which is optional depending on the legislation of each country, the fiscal control card (26) handles a record of the documents of the transactions made issued and allows auditing said documents actually made by the printer (25).
  • the invention proposed basically in Figure 2 allows all the connections that the POS (20) with its peripherals have, are replaced by a connection with the automation and processing apparatus (80) through the links (45,46, 47,48,49), automation and processing apparatus (80) which is also connected to a PC (70) that executes the control work of said automation and processing apparatus (80) on the POS (20), which maintains the connection to the store controller (60) through the LAN (40).
  • Figure 3 shows the scheme of the automation and processing apparatus (80), connected to the POS (20) and the PC (70).
  • the automation and processing apparatus (80) is composed of a processing unit (120) and an automation unit (90) containing a PinPad interface (92) and a PinPad (94); the automation unit (90) allows to emulate the action of a user, pass a magnetic card and press the keyboard for a transaction, in addition, the processing unit (120) is connected to a pair of tax cards (82,83), which in some cases are optional, but cannot be intervened or modified, as is the case with the PinPad (94).
  • the processing unit (120) can emulate the operation of all peripherals connected to the POS (20), except for the fiscal control cards (82.83) and the PinPad (94).
  • FIG 4 A detailed block diagram of the automation and processing apparatus (80) is shown in Figure 4, the processing unit (120) can control which fiscal card (82.83) is switched for testing, via link (141) acting on said switch (84); An interface (140) adapts the electrical signals that a microcontroller (130) receives / transmits with the chosen fiscal card (82.83), based on an application program that executes this microcontroller (130).
  • the microcontroller (130) interacts with the PinPad (94) through the second RS232 interface (131), where the PinPad interface (92) emulates the action of a user, through a magnetic head interface that delivers a signal to the head PinPad magnetic (94) equivalent to passing the magnetic card, and a PinPad keyboard activator (98), acts on the keyboard by marking the keys of the PinPad keyboard (94), simulating a user transaction, these actions are received by the PinPad (94) that sends the corresponding information to the microcontroller (130).
  • the PinPad keyboard activator (98) (not shown), is a parallel and vertical solenoid arrangement between them, on a surface coinciding with that of the PinPad keyboard (94), so that each solenoid can be displaced vertically to press the key under its position, which can emulate the actions that the user does in a PinPad connected to a POS (20) in the customer service, for example, in a retail store.
  • the microcontroller (130) sends a control signal via a GPIO gate, both to the magnetic head interface (96) and to the PinPad keyboard activator (98).
  • the processing unit (120) is composed of a first microcontroller (130 ') and a second microcontroller (130 " ) which is responsible for emulating all the input and output peripherals of the POS (20) connected to the bus (49) of the POS (20), in its previous art version as shown in Figure 1, which is done by the link bus (49), among these peripherals is the printer (25), user screen (29), scanner (27), etc .; this includes a fiscal card A (82) and a fiscal card B (83), where the second microcontroller (130 ") through a GPIO output, selects which fiscal card (82.83) it will operate with.
  • the second microcontroller (130 ") interacts with both the POS (20) and the fiscal card (82.83) selected through a second RS485 interface (140).
  • the application program of the second microcontroller (130") receives and stores the information transmitted by the POS (20) to the output peripherals, for example the user screen (29), and responds to the POS (20) all the requested information as if the user screen (29) was connected to the POS (20), following a known communications protocol.
  • the PC (70) is responsible for managing the functionality of the complete system, for this, periodically sends an interrogation command to the first microcontroller (130 '), which relays, through its COMMO door that communicates with the door COMM2 of the second microcontroller (130 "), the same question to the second microcontroller (130").
  • the second microcontroller (130 ") receives the interrogation command from the PC (70), it transmits to the PC (70) neatly everything it has received from the POS (20) when emulating the POS output peripherals (20) , and also what transmitted (if it is being used) the fiscal card A (82) or fiscal B (83) in operation.
  • the second microcontroller (130 ) If the second microcontroller (130 ") has nothing to transmit, report this condition to the microcontroller ( 130 ') which verifies if it has information associated with the PinPad (94) to transmit to the PC (70); If you have the microcontroller (130 '), the information to transmit is sent to the PC (70), if you do not have something to transmit, report that condition to the PC (70).
  • the PC (70) selects which of the two microcontrollers (130 ', 130 ") should transmit a message through an identifier that is included in a data frame generated by the PC (70).
  • the POS (20) When the POS (20) requires interacting with the PinPad (94), it transmits a message, which is captured by the first microcontroller (130 ') and retransmitted to the PinPad (94). In this way the first microcontroller (130 ') knows when the PinPad (94) is waiting for the user to pass the magnetic card through the magnetic head of the PinPad (94) or is waiting for a key to be entered through the PinPad keyboard ( 94). This information is transmitted to the PC (70). In response, the PC (70) transmits one or both of the following instructions to the first microcontroller (130 '):
  • the POS (20) sends the opening signal of the value drawer (22), it is captured by the first microcontroller (130 ') that informs said situation to the PC (70), which can command the first microcontroller (130' ) that activates or does not activate the status output that indicates to the POS (20) that the value drawer (22) was opened.
  • a test manager (71) who is responsible for the administration, maintenance and storage of cases of tests, plans, cycles and test metrics
  • a Virtual POS for execution (72) and a Virtual POS for learning (73) which allows communication with the automation and processing apparatus (80) and allows virtualizing the devices that are normally connected to the POS (20)
  • an incident manager (74) that allows to manage, maintain and monitor each of the incidents reported in the regressive tests.
  • Figure 6 describes the method of operation of the automation and processing apparatus (80) for processing functional tests of new applications that are incorporated into the POS (20).
  • a stage is defined that consists of creating test folders (1), which allows the test cases to be contained for definition in a database in the test manager (71); The next stage creates a test plan (2) for the test manager (71); the next step creates a test cycle (3) for the test manager (71); the next stage assigns the test cycle (3) with the test plan (2); then in the next stage, metrics (5) are created, based on defining a percentage of acceptance for the test cases (6) that are defined according to their importance; the definition of the test cases (6) are carried out in the test manager (71); The next stage involves adding the test cases (7) that are contained in the test folder (1) to the test plan (2).
  • the synchronization (8) is then synchronized with the Virtual POS application for learning (72) and the Virtual POS application for execution (73), the folders defined in the test manager (71). Then, a test plan (9) is selected in the folder containing the test case (6) that is required to learn.
  • the step of learning a test case (10) allows the automation and processing apparatus (80) to learn the inputs and outputs of a transaction that is carried out in the POS (20), based on executing a test case and storing test cases (11) in this learned sequence, in the database of the test manager (71); the stage of learning a test case (10) and the stage of storing the test cases (llj correspond to a process where the method learns from the inputs and outputs of a transaction in the application of the POS (20), based on executing a test case (6) and recording this automatically learned sequence, in the database of the test manager (71); the inputs and outputs are recorded, which come from the automation and processing apparatus (80).
  • test case (10) From the stage of learning a test case (10) the step of synchronizing with the test manager (12) is continued, then the stage of selecting the associated cycle (13) for the plan to be executed is followed, and the test plan (14) is selected to Then run the stage of executing (15) a test case (6) in isolation or a test plan (2), then you can go to the stage to see test results (18), where, once Once the test plan has been executed (2), the reports can be displayed in the test manager as (71) that show the results of cases that pass, fail or are blocked.
  • stage of recording incidents (16) From the stage of executing (15) you can continue to the stage of recording incidents (16), where, if the automation and processing apparatus (80) records a difference of inputs and outputs, registered in the Virtual Learning POS application ( 72), with respect to the Virtual POS application of execution (73), the difference is recorded as an incident in the incident manager (74).
  • the stage of executing (15) and the stage of recording incidents (16) correspond to a process that allows the execution of test plans (2) in a continuous, programmed and unattended manner. All the incidents that are detected are registered in the incident manager (74). The results obtained with the test cases (6) executed are registered in the test manager (71).
  • the incident management stage (17) which comes from the stage of recording incidents (16), generates reports of incidents detected in the testing process. Each incident is managed until it is closed in the incident manager (74).
  • the method as a whole makes it possible to learn from the operation based on defined functional tests, based on cases of tests performed at the POS (20).
  • the method allows to learn from the test cases executed in the application in the POS (20), it is in a position to perform regression tests, that is, it allows to verify automatically, programmed, permanently and continuously that the functional behavior of The application in the POS (20) is known. This allows verifying that the modifications in components and environment in the POS (20) did not cause unexpected effects and that the system or components continue to meet the specified requirements. Therefore, it can be determined that after a change no errors have been introduced in functionalities that should not change.

Abstract

L'invention concerne un dispositif et un procédé destinés à effectuer des essais fonctionnels d'applications qui s'incorporent à un point de vente (POS), de manière automatique, ce qui permet que les transactions commerciales se réalisant dans les POS, soient de qualité opérationnelle élevée, par conséquent, l'objectif premier de l'invention est de disposer d'un dispositif permettant d'effectuer des essais fonctionnels d'applications qui s'incorporent à un POS, de manière automatique, qui comprend un appareil d'automatisation et de traitement qui se connecte à un POS au moyen d'une pluralité de liens, remplaçant tous les moyens qui étaient à l'origine connecté au POS dans sa configuration normale et conservant le POS connecté à un réseau local (LAN) et à un contrôleur de magasin; dans l'appareil d'automatisation et de traitement, le POS se connecte par l'intermédiaire des liens directement à une unité de traitement contenue dans l'appareil d'automatisation et de traitement, dans laquelle un des liens se connecte, éventuellement, à au moins à une carte fiscale qui à son tour se connecte à une unité de traitement; d'autre part, l'unité de traitement se connecte à une unité d'automatisation et de traitement, et à l'ordinateur personnel (PC). En outre, l'unité d'automatisation contient une interface PinPad et un PinPad; cette unité d'automatisation permet d'imiter l'action d'un utilisateur, de passer une carte magnétique et de taper au clavier pour une transaction, par ailleurs, l'unité de traitement est connectée à une paire de cartes fiscales, qui dans certains cas sont facultatives, mais qui ne peuvent pas être modifiées et sur lesquelles il est impossible d'intervenir, comme c'est le cas avec le PinPad; ainsi l'unité de traitement peut imiter le fonctionnement de tous les périphériques connectés au POS, sauf les cartes de contrôle fiscal et le PinPad. L'interface PinPad, imite l'action d'un utilisateur, au moyen d'une interface tête magnétique qui transmet un signal à la tête magnétique du PinPad équivalent au passage d'une carte magnétique, et un activateur de clavier PinPad, qui agit sur le clavier en marquant les touches du clavier du PinPad, par simulation d'une transaction de l'utilisateur.
PCT/CL2012/000079 2012-10-08 2012-12-31 Procédé de capture et de génération de jeux d'essai dans un point de vente WO2014056118A1 (fr)

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US11107086B2 (en) 2016-12-23 2021-08-31 Walmart Apollo, Llc Retail financial system testing system and methods

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