10- In C++ the declaration of floating point variables starts with the type name double, followed by the name of the variable, and terminates with a semicolon. It is possible to declare multiple variables separated by commas in one statement. The following statements present examples, double b; double a, z, w: The following partial grammar represents the specification for C++ style variable declaration. In this grammar the range a-z indicates terminals that represent variable names. A variable name consists of only one letter. The non-terminal S is the start symbol. S=TV: V=C₂VIC T = float C = a-z We want to design an LR parser for this grammar. Create a complete parsing DFA, showing the closure for all states including the parsing marker in every rule, and transitions between the states. You can use the symbol @ as the parsing marker. States need to be numbered or named. You may write all required information in a table instead of drawing a DFA. There is no need to add $ at the end of start rule since there is a terminal at the end. i.e. the semicolon.
10- In C++ the declaration of floating point variables starts with the type name double, followed by the name of the variable, and terminates with a semicolon. It is possible to declare multiple variables separated by commas in one statement. The following statements present examples, double b; double a, z, w: The following partial grammar represents the specification for C++ style variable declaration. In this grammar the range a-z indicates terminals that represent variable names. A variable name consists of only one letter. The non-terminal S is the start symbol. S=TV: V=C₂VIC T = float C = a-z We want to design an LR parser for this grammar. Create a complete parsing DFA, showing the closure for all states including the parsing marker in every rule, and transitions between the states. You can use the symbol @ as the parsing marker. States need to be numbered or named. You may write all required information in a table instead of drawing a DFA. There is no need to add $ at the end of start rule since there is a terminal at the end. i.e. the semicolon.
Database System Concepts
7th Edition
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
Problem 1PE
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![10- In C++ the declaration of floating point variables starts with the type name double,
followed by the name of the variable, and terminates with a semicolon. It is possible to
declare multiple variables separated by commas in one statement. The following
statements present examples,
double b;
double a, z, w:
The following partial grammar represents the specification for C++ style variable
declaration. In this grammar the range a-z indicates terminals that represent variable
names. A variable name consists of only one letter. The non-terminal S is the start symbol.
S=TV:
V=C, VIC
T = float
C = a-z
We want to design an LR parser for this grammar. Create a complete parsing DFA,
showing the closure for all states including the parsing marker in every rule, and
transitions between the states. You can use the symbol @ as the parsing marker.
States need to be numbered or named. You may write all required information in a table
instead of drawing a DFA. There is no need to add $ at the end of start rule since there
is a terminal at the end, i.e. the semicolon.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffe00f331-3f4e-4e17-853e-c4aa2122c265%2F9bffc398-d165-431a-a396-215dce992e41%2F1wpq2dr_processed.png&w=3840&q=75)
Transcribed Image Text:10- In C++ the declaration of floating point variables starts with the type name double,
followed by the name of the variable, and terminates with a semicolon. It is possible to
declare multiple variables separated by commas in one statement. The following
statements present examples,
double b;
double a, z, w:
The following partial grammar represents the specification for C++ style variable
declaration. In this grammar the range a-z indicates terminals that represent variable
names. A variable name consists of only one letter. The non-terminal S is the start symbol.
S=TV:
V=C, VIC
T = float
C = a-z
We want to design an LR parser for this grammar. Create a complete parsing DFA,
showing the closure for all states including the parsing marker in every rule, and
transitions between the states. You can use the symbol @ as the parsing marker.
States need to be numbered or named. You may write all required information in a table
instead of drawing a DFA. There is no need to add $ at the end of start rule since there
is a terminal at the end, i.e. the semicolon.
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