SOLIDITY / CONTROL FLOW
Loops, gas limits, and bounded iteration
Learn how loops, gas limits, and bounded iteration works in Solidity, why the underlying model matters, and how to apply it in a small program without hiding important trade-offs.
What you will learn
- Explain loops in Solidity using the correct mental model
- Trace a focused Solidity example and predict its result before execution
- Recognize a boundary case involving gas limits and handle it deliberately
Understanding Loops, gas limits, and bounded iteration
Loops, gas limits, and bounded iteration belongs to the practical core of Solidity. Start by identifying the values or state involved and the rule that connects the input to the result.
Trace the example one operation at a time. Keep loops visible in the code rather than hiding it behind an abstraction before the behavior is understood.
Test a normal case and a boundary case. The difference between the prediction and the observed result is the most useful signal for deciding what to review next.
Loops, gas limits, and bounded iteration is a defining part of practical Solidity work. Start by identifying the data or state involved, then trace the operation that changes or interprets it. Pay attention to the rules Solidity applies at this boundary, because those rules explain both the useful behavior and the common failure modes. This lesson keeps the example deliberately small, then connects it to functions, visibility, selectors, and inheritance so the ideas form a coherent progression rather than a list of isolated syntax facts.
Worked examples
Loops, gas limits, and bounded iteration example
A focused Solidity example for loops.
// Educational syntax only
contract Greeting {
string public message = "Hello";
}
// Lesson 7: loops. Change one value and predict the result before running it.Example explained
Line 1Identify where loops appears in the Solidity example and name the data it operates on.
Line 2Trace the relevant Solidity rule one operation at a time, recording any state, type, or control-flow change.
Line 3Change one input or boundary condition, predict the result, and compare that prediction with the documented outcome.
Important notes
Keep the first loops example small enough to trace completely.
Use the normal Solidity toolchain or browser workspace to compare the actual result with your prediction.
Common mistakes
Treating loops as punctuation to memorize instead of a Solidity behavior to reason about.
Ignoring gas limits until it appears in production data or a larger program.
Try it yourself
Change, predict, then run
Create a small Solidity example that demonstrates loops. Add a normal case and a boundary case, write down the expected result for each, then explain which Solidity rule produces that result. Lesson 7 should remain small enough to trace without guessing.
Open Solidity workspaceCheck your understanding
What is the best first step when working with loops?
- Identify the data and predict the result
- Add more abstraction immediately
- Ignore boundary cases
- Memorize punctuation only
Show answer
A clear input, operation, and predicted result create a testable mental model.