You guys can keep complaining about how go is too verbose, but I love everything about go.
I love the error handling, I love the forced formatting, i love all the linting it has including style guides. When you read other source code it's so easy to understand it and make sense of it. Thank you go team
(Ok, maybe I am a bit sceptical with the latest generic additions, but overall it's a great language. I love it.)
Oh yeah totally agree. I don't understand why someone would want to write `slices.Contains(s, needle)` when you can write this beautiful poem like a Shakespeare in VSCode:
found := false
for _, v := range s {
if v == needle {
found = true
break
}
}
Oh and I totally want to build a stack trace manually. It's like doing cardio to me.
if err != nil {
return fmt.Errorf("my function name but in spaces: %w", err);
}
This is very elegant by the way, so that we need errors.Is now, which has to dynamically check if the error implements Unwrap() error or Unwrap() []error. Because having any language facilities for error handling is harmful.
> Because having any language facilities for error handling is harmful.
No, making error handling verbose mandatory is meant to make developers do mental cardio and be mindful of what they are doing.
You can either keep developers mindful or punish them after they make a mistake by shouting at them and make them waste their time during re-compiling.
P.S.: Yes, I love Go's error handling mechanics, which makes handling errors mandatory, not optional, and if you ignore the error, this is a deliberate choice and the burden is on the developer.
Go does the former, Rust does the latter.
What are you talking about, only Rust actually forces you to handle errors. Go functions merely return a tuple with an error along with the result, with a convention that you must checktror a non-nil error before using the result.
Rust bakes this into the type system, a function can truly return a result or an error.
I don't say it's perfect, but right in this moment I feel most comfortable with go and I don't mind jumping through a few hoops or writing things multiple times
found := false
for _, v := range s {
if v == needle {
found = true
break
}
}
Do you see it? It copies the v into a local variable, which could be tremendously wasteful if it's a large struct. You should instead be taking a pointer to s[i] and comparing the value there with `needle`.
If you'd used `slices.Contains(s, needle)`, on the other hand, it could have such a performance bug in it and you'd never know.
> If you'd used `slices.Contains(s, needle)`, on the other hand, it could have such a performance bug in it and you'd never know.
Perhaps you're much better at programming than I am, but I prefer these semantics in a language because I figure they're much more likely to have been optimized empirically, support vectorization, and be less buggy than another rote loop I'm trying to speed through.
> on the other hand, it could have such a performance bug in it and you'd never know.
wut...? the debate isn't between closed (incompetent) source and open (competent) source - the debate is between verbose language and expressive language.
100% with you on every point. It's the only language I've worked in that lets me read other codebases without an hour or two of "wut?" happening, so they did something right!
Even if you prefer manually checking for errors after every call that might fail, I fail to see how one can love go’s verbosity. Compare go’s
foo, err := bar()
if err != nil {
return ERR;
}
with something like (hypothetical)
foo := bar() ||| return ERR;
where the compiler, seeing that bar returns an Either<int,err> can enforce the presence of the ||| clause or, alternatively, require later code to check for errors if the ||| clause isn’t present. I think that’s both more robust (prevents one from forgetting to check for errors) and shorter (allowing for showing a lot more code on a screen or page)
I do love the batteries included attitude. Having benchmarking included as well as a mechanism to run tests to check (test) for race-conditions right from the language/build tool is amazing.
My only wish is that go could become less verbose. There are several frontends to go that are more compact, compile down into golang, and then let you enjoy all the benefits.
I love how during prototyping, the compiler will tell me off for having an unused variable and fail to compile. I totally love the idea of crashing when writing on a closed channel.
For SpiceDB[0], we've found a lot of success using this framework to define our own analyzers; it's probably 10x easier now with LLMs. No need for tribal knowledge or more time wasted on code review if you can just turn it into a linter and move on.
Someone in the thread about the Ruff update ingenuously said they wished Go had something like Ruff, being unaware of this framework. In that thread, someone seemed to take it as a sign that many people who might care to know about this don't yet, so they made a dedicated post for it.
The Go team's emphasis on tooling in the service of software engineering is a boon to human and agentic development alike. Give yourself and your agents great tools.
An example from one of my recent projects: https://github.com/verdverm/gmd/blob/main/Makefile (give agents simple "tool calls" instead of needing to divine the correct args/flags every time, essentially invocable agents.md content)
One of the interesting things to call out from this is using build tags for testing { unit, coverage, recorded, real api }, with the buffet allowing the agent to iterate faster and more targeted. I tend to run the linting and coverage in a new session, have a report generated, and then another fresh session to start dealing with gaps.
You guys can keep complaining about how go is too verbose, but I love everything about go.
I love the error handling, I love the forced formatting, i love all the linting it has including style guides. When you read other source code it's so easy to understand it and make sense of it. Thank you go team
(Ok, maybe I am a bit sceptical with the latest generic additions, but overall it's a great language. I love it.)
Oh yeah totally agree. I don't understand why someone would want to write `slices.Contains(s, needle)` when you can write this beautiful poem like a Shakespeare in VSCode:
Oh and I totally want to build a stack trace manually. It's like doing cardio to me. This is very elegant by the way, so that we need errors.Is now, which has to dynamically check if the error implements Unwrap() error or Unwrap() []error. Because having any language facilities for error handling is harmful.> Because having any language facilities for error handling is harmful.
No, making error handling verbose mandatory is meant to make developers do mental cardio and be mindful of what they are doing.
You can either keep developers mindful or punish them after they make a mistake by shouting at them and make them waste their time during re-compiling.
P.S.: Yes, I love Go's error handling mechanics, which makes handling errors mandatory, not optional, and if you ignore the error, this is a deliberate choice and the burden is on the developer. Go does the former, Rust does the latter.
What are you talking about, only Rust actually forces you to handle errors. Go functions merely return a tuple with an error along with the result, with a convention that you must checktror a non-nil error before using the result.
Rust bakes this into the type system, a function can truly return a result or an error.
I don't say it's perfect, but right in this moment I feel most comfortable with go and I don't mind jumping through a few hoops or writing things multiple times
Your handwritten one has a major performance bug:
Do you see it? It copies the v into a local variable, which could be tremendously wasteful if it's a large struct. You should instead be taking a pointer to s[i] and comparing the value there with `needle`.If you'd used `slices.Contains(s, needle)`, on the other hand, it could have such a performance bug in it and you'd never know.
You're right. Just for information, slices.Contains() uses the index, not a copied value.
https://cs.opensource.google/go/go/+/refs/tags/go1.26.5:src/...
> If you'd used `slices.Contains(s, needle)`, on the other hand, it could have such a performance bug in it and you'd never know.
Perhaps you're much better at programming than I am, but I prefer these semantics in a language because I figure they're much more likely to have been optimized empirically, support vectorization, and be less buggy than another rote loop I'm trying to speed through.
or contains() could be written by those who can write performant code, ..once
> on the other hand, it could have such a performance bug in it and you'd never know.
wut...? the debate isn't between closed (incompetent) source and open (competent) source - the debate is between verbose language and expressive language.
You forgot to put /s after your post.
100% with you on every point. It's the only language I've worked in that lets me read other codebases without an hour or two of "wut?" happening, so they did something right!
> I love the error handling
Even if you prefer manually checking for errors after every call that might fail, I fail to see how one can love go’s verbosity. Compare go’s
with something like (hypothetical) where the compiler, seeing that bar returns an Either<int,err> can enforce the presence of the ||| clause or, alternatively, require later code to check for errors if the ||| clause isn’t present. I think that’s both more robust (prevents one from forgetting to check for errors) and shorter (allowing for showing a lot more code on a screen or page)I do love the batteries included attitude. Having benchmarking included as well as a mechanism to run tests to check (test) for race-conditions right from the language/build tool is amazing.
My only wish is that go could become less verbose. There are several frontends to go that are more compact, compile down into golang, and then let you enjoy all the benefits.
I love how during prototyping, the compiler will tell me off for having an unused variable and fail to compile. I totally love the idea of crashing when writing on a closed channel.
If generics were going to ruin the language, they would have by now. I think you can rest easy.
The greatest thing about generics is … that they're not used much if at all.
Which is a great way to make sure they're not overused, which in my experience is better than underuse.
It doesn't have a lot of style guides or linting though. You have to install and configure quite a lot of tooling for that
This isn't new?
You can see it's used by _a lot_ of linters already:
https://pkg.go.dev/golang.org/x/tools/go/analysis?tab=import...
I visited that link three years ago. It isn't new. It's nifty, though.
It was mentioned in the Ruff article comments and probably reposted.
For SpiceDB[0], we've found a lot of success using this framework to define our own analyzers; it's probably 10x easier now with LLMs. No need for tribal knowledge or more time wasted on code review if you can just turn it into a linter and move on.
[0]: https://github.com/authzed/spicedb/tree/main/tools/analyzers
Can these sorts of primitives be used to create broader "architectural" linters?
Yes, and I use them often in the context of writing adversarial ‘go vet’ style anti-slop analyzers that run pre-commit.
So what is context? This isn't new and why the submission ?
Someone in the thread about the Ruff update ingenuously said they wished Go had something like Ruff, being unaware of this framework. In that thread, someone seemed to take it as a sign that many people who might care to know about this don't yet, so they made a dedicated post for it.
I was just looking for this. Will give it a spin.
The Go team's emphasis on tooling in the service of software engineering is a boon to human and agentic development alike. Give yourself and your agents great tools.
An example from one of my recent projects: https://github.com/verdverm/gmd/blob/main/Makefile (give agents simple "tool calls" instead of needing to divine the correct args/flags every time, essentially invocable agents.md content)
One of the interesting things to call out from this is using build tags for testing { unit, coverage, recorded, real api }, with the buffet allowing the agent to iterate faster and more targeted. I tend to run the linting and coverage in a new session, have a report generated, and then another fresh session to start dealing with gaps.
Another super cool testing tool in the Go internal source is `testscript`. Roger Peppe extracted a number of those internal utilities here https://github.com/rogpeppe/go-internal/tree/master/testscri...
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It's spam look at the users history. They just comment the same thing everywhere
This is another instance of a spam attack I first noted over a year ago. New accounts all set up to keep linking to this one particular Stack Overflow question. Ref. https://meta.stackoverflow.com/questions/433930/repeated-wav...