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344 lines
10 KiB
344 lines
10 KiB
4 years ago
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---
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id: hello-world
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title: Hello, World!
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---
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Follow the instructions in this page to try Infer on a few small examples. You
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should be able to see the bugs reported by Infer, fix the bugs and run Infer
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again to check that they are not reported anymore. This should give you a first
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idea of how Infer works. See the [User Guide](infer-workflow) for more details
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about the use of Infer.
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All these examples can be found in the
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[`infer/examples`](https://github.com/facebook/infer/tree/master/examples)
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directory distributed with Infer.
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## Hello world Java
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Here is a simple Java example to illustrate Infer at work.
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```java
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// Hello.java
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class Hello {
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int test() {
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String s = null;
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return s.length();
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}
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}
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```
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To run Infer, type the following in your terminal from the same directory as
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[`Hello.java`](https://github.com/facebook/infer/tree/master/examples/Hello.java).
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```bash
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infer run -- javac Hello.java
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```
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You should see the following error reported by Infer.
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```bash
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Hello.java:5: error: NULL_DEREFERENCE
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object s last assigned on line 4 could be null and is dereferenced at line 5
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```
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Now edit the file to add null checks:
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```java
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int test() {
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String s = null;
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return s == null ? 0 : s.length();
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}
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```
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Run Infer again. This time we get no error: Infer reports `No issues found`.
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## Hello world Objective-C
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Here is a simple Objective-C example to illustrate Infer at work.
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```objectivec
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// Hello.m
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#import <Foundation/Foundation.h>
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@interface Hello: NSObject
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@property NSString* s;
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@end
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@implementation Hello
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NSString* m() {
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Hello* hello = nil;
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return hello->_s;
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}
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@end
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```
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To run Infer, type the following in your terminal from the same directory as
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[`Hello.m`](https://github.com/facebook/infer/tree/master/examples/Hello.m).
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```bash
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infer run -- clang -c Hello.m
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```
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You should see the following error reported by Infer.
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```
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Hello.m:10 NULL_DEREFERENCE
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pointer hello last assigned on line 9 could be null and is dereferenced at line 10, column 12
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```
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Now edit the file to use the getter instead of accessing the instance variable:
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```objectivec
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NSString* m() {
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Hello* hello = nil;
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return hello.s;
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}
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```
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Run Infer again. This time we get no error: Infer reports `No issues found`.
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## Hello world C
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Here is a simple C example to illustrate Infer at work.
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```c
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// hello.c
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#include <stdlib.h>
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void test() {
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int *s = NULL;
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*s = 42;
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}
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```
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To run Infer, type the following in your terminal from the same directory as
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[`hello.c`](https://github.com/facebook/infer/tree/master/examples/hello.c).
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```bash
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infer run -- gcc -c hello.c
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```
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You should see the following error reported by Infer.
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```
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hello.c:5: error: NULL_DEREFERENCE
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pointer s last assigned on line 4 could be null and is dereferenced at line 5, column 10
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```
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Now edit the file to add null checks:
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```c
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void test() {
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int *s = NULL;
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if (s != NULL) {
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*s = 42;
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}
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}
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```
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Run Infer again. This time we get no error: Infer reports `No issues found`.
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When analyzing C files, Infer captures the gcc command and runs clang instead to
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parse them. Thus you may get compiler errors and warnings that differ from
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gcc's. So in particular, the following two commands are equivalent:
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```bash
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infer run -- gcc -c hello.c
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infer run -- clang -c hello.c
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```
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## Hello world Android
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To be able to analyze the sample Android app, make sure that you have the
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[Android SDK](https://developer.android.com/sdk/installing/index.html) 22
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installed and up to date, as well as the "Android SDK Build-tools" and "Android
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Support Repository" components.
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Go to the sample Android app in
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[`infer/examples/android_hello`](https://github.com/facebook/infer/tree/master/examples/android_hello/)
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and create a `local.properties` file with a single line
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`sdk.dir=<location of your Android SDK>`. This sample Android app uses
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[gradle](https://gradle.org/) as its build system. You do not need to install
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gradle to try it out though, thanks to the
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[`gradlew`](https://docs.gradle.org/current/userguide/gradle_wrapper.html)
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script in the project that will download gradle and the project's dependencies
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for you.
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After editing `local.properties`, run
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```bash
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infer run -- ./gradlew build
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```
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Infer will output the list of found bugs:
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```bash
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app/src/main/java/infer/inferandroidexample/MainActivity.java:29: error: NULL_DEREFERENCE
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object s last assigned on line 28 could be null and is dereferenced at line 29
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27. setContentView(R.layout.activity_main);
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28. String s = getDay();
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29. > int length = s.length();
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30. writeToFile();
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31. }
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32.
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app/src/main/java/infer/inferandroidexample/MainActivity.java:46: error: RESOURCE_LEAK
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resource of type java.io.FileOutputStream acquired to fis by call to FileOutputStream(...) at line 43 is not released after line 46
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44. fis.write(arr);
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45. fis.close();
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46. > } catch (IOException e) {
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47. //Deal with exception
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48. }
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49.
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app/src/main/java/infer/other/MainActivity.java:23: error: NULL_DEREFERENCE
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object returned by source() could be null and is dereferenced at line 23
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21. @Override
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22. protected void onCreate(Bundle savedInstanceState) {
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23. > source().toString();
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24. }
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25.
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```
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### Differential analysis
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If you run Infer again without changing any files, you will notice that this
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time nothing gets analyzed. This is because gradle is _incremental_: everything
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was compiled already so nothing gets recompiled. Infer captures the compilation
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commands to know which files to analyze, hence it analyzes nothing in this case.
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There are three solutions to remedy this:
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1. Run gradlew clean in between Infer runs.
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```bash
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./gradlew clean
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```
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This causes gradle to recompile everything each time, and subsequently Infer
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to capture all the files again.
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2. Run Infer indicating that the capture of compilation commands should
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continue, using option `--continue` (or `-c` for short).
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```bash
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infer run --continue -- ./gradlew build
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```
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This makes Infer add the effects of the new compilation commands to the previous
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ones, and start a new analysis of the entire code.
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3. Run Infer in reactive mode after a code change, using option `--reactive` (or
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`-r` for short).
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```bash
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infer run --reactive -- ./gradlew build
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```
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This makes Infer analyze the effects of the code change, without re-analyzing
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everything. Note that only the modified files, and those dependent on them, are
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re-analyzed. This analysis mode can be significantly faster.
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You can learn more about the particulars of each solution in the
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[Infer workflow](infer-workflow) page.
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## Hello world iOS
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Go to the sample iOS app in
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[`infer/examples/ios_hello`](https://github.com/facebook/infer/tree/master/examples/ios_hello/)
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and run Infer on it:
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```bash
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infer run -- xcodebuild -target HelloWorldApp -configuration Debug -sdk iphonesimulator
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```
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Infer will output the list of found bugs:
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```bash
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AppDelegate.m:20: error: MEMORY_LEAK
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memory dynamically allocated to shadowPath by call to CGPathCreateWithRect() at line 20, column 28 is not reachable after line 20, column 5
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AppDelegate.m:25: error: RESOURCE_LEAK
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resource acquired to fp by call to fopen() at line 25, column 8 is not released after line 25, column 5
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AppDelegate.m:29: warning: PARAMETER_NOT_NULL_CHECKED
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Parameter callback is not checked for null, there could be a null pointer dereference: pointer callback could be null and is dereferenced at line 29, column 5
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AppDelegate.m:34: error: NULL_DEREFERENCE
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pointer str last assigned on line 33 could be null and is dereferenced at line 34, column 12
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AppDelegate.m:39: error: PREMATURE_NIL_TERMINATION_ARGUMENT
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pointer str last assigned on line 38 could be nil which results in a call to arrayWithObjects: with 1 arguments instead of 3 (nil indicates that the last argument of this variadic method has been reached) at line 39, column 12
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Hello.m:20: error: NULL_DEREFERENCE
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pointer hello last assigned on line 19 could be null and is dereferenced at line 20, column 12
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Hello.m:25: warning: IVAR_NOT_NULL_CHECKED
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Instance variable hello -> _hello is not checked for null, there could be a null pointer dereference: pointer ret_hello last assigned on line 24 could be null and is dereferenced at line 25, column 12
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Hello.m:30: warning: PARAMETER_NOT_NULL_CHECKED
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Parameter hello is not checked for null, there could be a null pointer dereference: pointer ret_hello last assigned on line 29 could be null and is dereferenced at line 30, column 12
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```
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Similarly to the case of [gradle](#differential-analysis),
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running the command above a second time will yield no analysis results, as
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nothing gets recompiled. Either add the `--reactive` (or `-r`) flag to the
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`infer` command:
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```bash
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infer run --reactive -- xcodebuild -target HelloWorldApp -configuration Debug -sdk iphonesimulator
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```
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or ask the build system to reinitialize the directory before running Infer
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again, using
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```bash
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xcodebuild -target HelloWorldApp -configuration Debug -sdk iphonesimulator clean
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```
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## Hello world Make
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Go to the sample C project in
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[`infer/examples/c_hello`](https://github.com/facebook/infer/tree/master/examples/c_hello/)
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and run Infer on it:
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```bash
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infer run -- make
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```
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Infer will output the list of found bugs:
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```bash
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example.c:22: error: NULL_DEREFERENCE
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pointer max last assigned on line 21 could be null and is dereferenced at line 22, column 10
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example.c:36: error: NULL_DEREFERENCE
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pointer joe last assigned on line 35 could be null and is dereferenced by call to get_age() at line 36, column 10
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example.c:45: error: RESOURCE_LEAK
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resource acquired to fd by call to open() at line 41, column 12 is not released after line 45, column 5
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example.c:51: error: MEMORY_LEAK
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memory dynamically allocated to p by call to malloc() at line 51, column 14 is not reachable after line 51, column 3
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example.c:57: error: MEMORY_LEAK
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memory dynamically allocated to p by call to malloc() at line 56, column 14 is not reachable after line 57, column 3
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```
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Similarly to the case of [gradle](#differential-analysis),
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running `infer run -- make` a second time will yield no analysis results, as
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nothing gets recompiled. Either add the `--reactive` (or `-r`) flag to the
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`infer` command:
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```bash
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infer run --reactive -- make
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```
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or run
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```bash
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make clean
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```
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before analyzing the project again.
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