Conan 2.0 DocumentationBuild a simple CMake project using Conan Let’s get started with an example: We are going to create a string compressor application that uses one of the most popular C++ libraries: Zlib. We’ll use CMake as the source code for the string compres- sor program in main.c. Let’s have a look at the main.c file: Listing 1: main.c #include#include #include <string.h> #include int profile:host: This is the profile that defines the platform where the built binaries will run. For our string compressor application this profile would be the one applied for the Zlib library that will run in 0 码力 | 652 页 | 4.00 MB | 1 年前3
Conan 2.5 DocumentationBuild a simple CMake project using Conan Let’s get started with an example: We are going to create a string compressor application that uses one of the most popular C++ libraries: Zlib. We’ll use CMake as the source code for the string compres- sor program in main.c. Let’s have a look at the main.c file: Listing 1: main.c #include#include #include <string.h> #include int profile:host: This is the profile that defines the platform where the built binaries will run. For our string compressor application this profile would be the one applied for the Zlib library that will run in 0 码力 | 769 页 | 4.70 MB | 1 年前3
Conan 2.4 DocumentationBuild a simple CMake project using Conan Let’s get started with an example: We are going to create a string compressor application that uses one of the most popular C++ libraries: Zlib. We’ll use CMake as the source code for the string compres- sor program in main.c. Let’s have a look at the main.c file: Listing 1: main.c #include#include #include <string.h> #include int profile:host: This is the profile that defines the platform where the built binaries will run. For our string compressor application this profile would be the one applied for the Zlib library that will run in 0 码力 | 769 页 | 4.69 MB | 1 年前3
Conan 2.1 DocumentationBuild a simple CMake project using Conan Let’s get started with an example: We are going to create a string compressor application that uses one of the most popular C++ libraries: Zlib. We’ll use CMake as the source code for the string compres- sor program in main.c. Let’s have a look at the main.c file: Listing 1: main.c #include#include #include <string.h> #include int profile:host: This is the profile that defines the platform where the built binaries will run. For our string compressor application this profile would be the one applied for the Zlib library that will run in 0 码力 | 694 页 | 4.13 MB | 1 年前3
Conan 2.3 DocumentationBuild a simple CMake project using Conan Let’s get started with an example: We are going to create a string compressor application that uses one of the most popular C++ libraries: Zlib. We’ll use CMake as the source code for the string compres- sor program in main.c. Let’s have a look at the main.c file: Listing 1: main.c #include#include #include <string.h> #include int profile:host: This is the profile that defines the platform where the built binaries will run. For our string compressor application this profile would be the one applied for the Zlib library that will run in 0 码力 | 748 页 | 4.65 MB | 1 年前3
Conan 2.10 DocumentationBuild a simple CMake project using Conan Let’s get started with an example: We are going to create a string compressor application that uses one of the most popular C++ libraries: Zlib. We’ll use CMake as the source code for the string compres- sor program in main.c. Let’s have a look at the main.c file: Listing 1: main.c #include#include #include <string.h> #include int profile:host: This is the profile that defines the platform where the built binaries will run. For our string compressor application this profile would be the one applied for the Zlib library that will run in 0 码力 | 803 页 | 5.02 MB | 11 月前3
Conan 2.6 DocumentationBuild a simple CMake project using Conan Let’s get started with an example: We are going to create a string compressor application that uses one of the most popular C++ libraries: Zlib. We’ll use CMake as the source code for the string compres- sor program in main.c. Let’s have a look at the main.c file: Listing 1: main.c #include#include #include <string.h> #include int profile:host: This is the profile that defines the platform where the built binaries will run. For our string compressor application this profile would be the one applied for the Zlib library that will run in 0 码力 | 777 页 | 4.91 MB | 11 月前3
Conan 2.9 DocumentationBuild a simple CMake project using Conan Let’s get started with an example: We are going to create a string compressor application that uses one of the most popular C++ libraries: Zlib. We’ll use CMake as the source code for the string compres- sor program in main.c. Let’s have a look at the main.c file: Listing 1: main.c #include#include #include <string.h> #include int profile:host: This is the profile that defines the platform where the built binaries will run. For our string compressor application this profile would be the one applied for the Zlib library that will run in 0 码力 | 795 页 | 4.99 MB | 11 月前3
Conan 2.8 DocumentationBuild a simple CMake project using Conan Let’s get started with an example: We are going to create a string compressor application that uses one of the most popular C++ libraries: Zlib. We’ll use CMake as the source code for the string compres- sor program in main.c. Let’s have a look at the main.c file: Listing 1: main.c #include#include #include <string.h> #include int profile:host: This is the profile that defines the platform where the built binaries will run. For our string compressor application this profile would be the one applied for the Zlib library that will run in 0 码力 | 785 页 | 4.95 MB | 11 月前3
Conan 2.7 DocumentationBuild a simple CMake project using Conan Let’s get started with an example: We are going to create a string compressor application that uses one of the most popular C++ libraries: Zlib. We’ll use CMake as the source code for the string compres- sor program in main.c. Let’s have a look at the main.c file: Listing 1: main.c #include#include #include <string.h> #include int profile:host: This is the profile that defines the platform where the built binaries will run. For our string compressor application this profile would be the one applied for the Zlib library that will run in 0 码力 | 779 页 | 4.93 MB | 11 月前3
共 74 条
- 1
- 2
- 3
- 4
- 5
- 6
- 8













