1. Introduction Product Purpose: this product is being developed as a generalized robotic guidance platform. This product will take guidance input from the console and translate those values into positional data for a robotic platform. 2. Standards Hardware: this product should be capable of running on a Linux platform with the gcc compiler and a means of text I/O. Schedule: completion of this product is expected no later than 12 Oct. Language: this project will be implemented using the C++ programming language. 3. System Description System Context: this will be a self-contained piece of software that will not rely on external platforms for its basic operation. User Characteristics: users will be trained robot operators who are proficient with computer operation. This project will not be responsible for user training. 4. Functional Requirements 4.1 Startup (same as Version 1.0): when the software starts, it should ask the user for a number of robots to track. It should also ask the user for a unique identifier for each robot. You can assume that the user is entering unique names for each robot, you do not need to check.

Database System Concepts
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ISBN:9780078022159
Author:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Publisher:Abraham Silberschatz Professor, Henry F. Korth, S. Sudarshan
Chapter1: Introduction
Section: Chapter Questions
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How do I make the findRobot function for this program?

1. Introduction
Product Purpose: this product is being developed as a generalized
robotic guidance platform. This product will take guidance input from
the console and translate those values into positional data for a
robotic platform.
2. Standards
Hardware: this product should be capable of running on a Linux
platform with the gcc compiler and a means of text I/O.
Schedule: completion of this product is expected no later than 12
Oct.
Language: this project will be implemented using the C++ programming
language.
3. System Description
System Context: this will be a self-contained piece of software that
will not rely on external platforms for its basic operation.
User Characteristics: users will be trained robot operators who are
proficient with computer operation. This project will not be
responsible for user training.
4. Functional Requirements
4.1 Startup (same as Version 1.0): when the software starts, it
should ask the user for a number of robots to track. It should also
ask the user for a unique identifier for each robot. You can assume
that the user is entering unique names for each robot, you do not
need to check.
Transcribed Image Text:1. Introduction Product Purpose: this product is being developed as a generalized robotic guidance platform. This product will take guidance input from the console and translate those values into positional data for a robotic platform. 2. Standards Hardware: this product should be capable of running on a Linux platform with the gcc compiler and a means of text I/O. Schedule: completion of this product is expected no later than 12 Oct. Language: this project will be implemented using the C++ programming language. 3. System Description System Context: this will be a self-contained piece of software that will not rely on external platforms for its basic operation. User Characteristics: users will be trained robot operators who are proficient with computer operation. This project will not be responsible for user training. 4. Functional Requirements 4.1 Startup (same as Version 1.0): when the software starts, it should ask the user for a number of robots to track. It should also ask the user for a unique identifier for each robot. You can assume that the user is entering unique names for each robot, you do not need to check.
5.2 findRobot function (updated)
This function should find the index of one Robot in the array of
Robots using its unique identifier.
The parameters of this function are:
• Robot* roboList[]: an array of robots pointers
string identifier: the target unique identifier
SIZE: the number of robots in roboList
Return the index of the robot with a matching identifier as an int,
or -1 if the identifier is not in the list.
5.3 moveRobot function (updated)
The position of the robot struct should be updated using a void
function called moveRobot.
The parameters of this function are:
Robot r: a Robot pointer
• char d: a character value representing one direction
The robot's position should be updated as described in Section 4.3
(so if d == 'U', then increase r.y by r.currentSpeed, etc.)
Transcribed Image Text:5.2 findRobot function (updated) This function should find the index of one Robot in the array of Robots using its unique identifier. The parameters of this function are: • Robot* roboList[]: an array of robots pointers string identifier: the target unique identifier SIZE: the number of robots in roboList Return the index of the robot with a matching identifier as an int, or -1 if the identifier is not in the list. 5.3 moveRobot function (updated) The position of the robot struct should be updated using a void function called moveRobot. The parameters of this function are: Robot r: a Robot pointer • char d: a character value representing one direction The robot's position should be updated as described in Section 4.3 (so if d == 'U', then increase r.y by r.currentSpeed, etc.)
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