Vector Is Not A Template
Vector Is Not A Template - As some commenters have noted, you have circular references. The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of inclusion. Building on what ganesh said, if you arrived here anytime after 2019, you need #include and the std::vector to use a vector. Therefore the compiler needs to know the declaration of std::vector at that point (amongst.</p> Vector is a template, not a type, you need the template argument list e.g. This however is rather unwielding. If we start in node.h, early on, it includes edge.h. The code is parsed in the order it appears. Since you're passing a pointer to a vector you need to dereference it. Vector in the function signature.
Since you're passing a pointer to a vector you need to dereference it. Vector in the function signature. Vector is a template, not a type, you need the template argument list e.g. If we start in node.h, early on, it includes edge.h. Building on what ganesh said, if you arrived here anytime after 2019, you need #include and the std::vector to use a vector. The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of inclusion. The code is parsed in the order it appears. As some commenters have noted, you have circular references. This however is rather unwielding. Therefore the compiler needs to know the declaration of std::vector at that point (amongst.</p>
Therefore the compiler needs to know the declaration of std::vector at that point (amongst.</p> Since you're passing a pointer to a vector you need to dereference it. The code is parsed in the order it appears. Vector is a template, not a type, you need the template argument list e.g. Vector in the function signature. Building on what ganesh said, if you arrived here anytime after 2019, you need #include and the std::vector to use a vector. If we start in node.h, early on, it includes edge.h. The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of inclusion. As some commenters have noted, you have circular references. This however is rather unwielding.
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The code is parsed in the order it appears. Vector in the function signature. Building on what ganesh said, if you arrived here anytime after 2019, you need #include and the std::vector to use a vector. The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of.
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The code is parsed in the order it appears. Building on what ganesh said, if you arrived here anytime after 2019, you need #include and the std::vector to use a vector. Vector in the function signature. Since you're passing a pointer to a vector you need to dereference it. Therefore the compiler needs to know the declaration of std::vector at.
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This however is rather unwielding. Therefore the compiler needs to know the declaration of std::vector at that point (amongst.</p> As some commenters have noted, you have circular references. The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of inclusion. Since you're passing a pointer to a.
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Building on what ganesh said, if you arrived here anytime after 2019, you need #include and the std::vector to use a vector. If we start in node.h, early on, it includes edge.h. The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of inclusion. Vector in the.
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The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of inclusion. Therefore the compiler needs to know the declaration of std::vector at that point (amongst.</p> This however is rather unwielding. The code is parsed in the order it appears. As some commenters have noted, you have.
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The code is parsed in the order it appears. The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of inclusion. If we start in node.h, early on, it includes edge.h. As some commenters have noted, you have circular references. Therefore the compiler needs to know the.
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Vector in the function signature. Vector is a template, not a type, you need the template argument list e.g. The code is parsed in the order it appears. This however is rather unwielding. The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of inclusion.
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Therefore the compiler needs to know the declaration of std::vector at that point (amongst.</p> Vector in the function signature. Vector is a template, not a type, you need the template argument list e.g. The code is parsed in the order it appears. As some commenters have noted, you have circular references.
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The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of inclusion. Vector in the function signature. Building on what ganesh said, if you arrived here anytime after 2019, you need #include and the std::vector to use a vector. This however is rather unwielding. If we start.
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Vector is a template, not a type, you need the template argument list e.g. This however is rather unwielding. Building on what ganesh said, if you arrived here anytime after 2019, you need #include and the std::vector to use a vector. Since you're passing a pointer to a vector you need to dereference it. Therefore the compiler needs to know.
As Some Commenters Have Noted, You Have Circular References.
Since you're passing a pointer to a vector you need to dereference it. Therefore the compiler needs to know the declaration of std::vector at that point (amongst.</p> If we start in node.h, early on, it includes edge.h. Vector in the function signature.
This However Is Rather Unwielding.
Vector is a template, not a type, you need the template argument list e.g. The same result can however be achieved by simply including in the header file, this way you are not dependant on the order of inclusion. The code is parsed in the order it appears. Building on what ganesh said, if you arrived here anytime after 2019, you need #include and the std::vector to use a vector.