C# dev here: it’s amazing how different this is from a Microsoft release. First off, Oracle are doing versions at approximately twice the cadence. But also, and I’m guessing this is a function of the much larger Java audience: things rarely get two preview versions in a proper release. Updates in beta versions, yes, all the time. It also feels like Microsoft are bundling a lot more into the platform and leaving less to the community. Again, probably an artifact of the different sizes of the communities. Also, the page reads like an open source “We’re finished, we’re tired.” announcement rather than the razzmatazz of a Microsoft release.
One difference I think about is generics. Java and .NET bolted generics on to an existing system. Java used type erasure in such a way that a List<OfThat> is really just a List. Type erasure has a lot of limitations. If I am coding in Java for days I never get into trouble with it because I know how to color in the lines. But do some balls-to-the-walls metaprogramming and then it is annoying that you can't write
Expression<Integer> add(Expression<Integer> a, Expression<Integer> b);
Expression<Double> add(Expression<Double> a, Expression<Double> b);
because in the end they both look like
Expression add(Expression a, Expression b)
we have ways to cope, like unerasing the types by rewriting the names... And now you've got a reason to do balls to the walls metaprogramming! Similarly if I do a lot of C# or Scala or something I will get into the habit of doing things I can't do in Java.
.NET on the other hand did not keep backwards compatibility, so a List is not a List<X> so .NET had a schism where some API functions use generic collections and others use non-generics which was annoying in its own way.
Something like that is how all methods in Java are virtual whereas methods in C# may or not be virtual. All-virtual is probably not the best for performance, but it is simple for understanding. You never have to think "do I make this virtual or not?" or think "is that method virtual or not and does that have consequences for how I use it?"
> First off, Oracle are doing versions at approximately twice the cadence
Is that actually a good thing?
But Oracle started playing a game, for better or worse, where they decided to couple the "language version" with a single specific runtime's release schedule. For example, in "Java 27" there are exactly 0 language changes and 1 minor feature addition to the TLS library.
Everything else is OpenJDK runtime internals which don't impact the language or how you use it. So if you don't use OpenJDK (such as if you use Oracle's other runtime, GraalVM), then Java 27 basically doesn't even exist at all. Skimming the past couple of C# releases, it doesn't look like Microsoft is playing that game, so the release cadence will of course be different.
The Java language and runtime have been co-designed as a unified platform for many years now. Virtually every significant feature has language, library, and VM people working on it, and we often don't even know when we start how much of the feature would be in the language, library, or VM. Consequently, there is no "language version" or a "runtime version". There's only a platform version, which is defined in a single spec approved by the JCP (https://openjdk.org/projects/jdk/27/spec/). This also makes things easier with regards to compatibility and evolution.
And of the 4 non-preview JSRs in the Java 27 release, only 1 of them is actually part of the "platform version".
The other 3 are strictly changes to Hotspot internals with no platform involvement at all. They did not change any aspect of any Java platform in any way whatsoever. That is what I'm referring to. I'm not referring to the fact that the core library, language syntax, and runtime specs are all part of the same version. I'm referring to the fact that Hotspot specific behaviors and adjustments are also branded as being part of the platform release.
Like there's no Java 27 platform spec that says that G1 is the default garbage collector. That would of course be an absurd platform spec change. But that is still somehow a "feature" of the Java 27 release according to Oracle.
Right. There's a "Java SE" (platorm spec) version, and a JDK version that corresponds to it, but not everything in the JDK affects or is dictated by the spec.
BTW, Java is developed "code first", which means that we first work on the implementation in OpenJDK, and then extract the relevant spec changes from it.
> But that is still somehow a "feature" of the Java 27 release according to Oracle.
It's a feature of the OpenJDK JDK, which is, indeed, the Java implementation done by Oracle (with contributions from others). The language is very careful, as you can see in the announcement: "JDK 27, the reference implementation of Java 27". The Java SE 27 spec is here: https://www.jcp.org/en/jsr/detail?id=402
You’re only counting JEPs, which are only for more involved features. There are lots of changes to the JDK apis that are used by other runtimes. See, for instance: https://javaalmanac.io/jdk/27/apidiff/26/.
Admittedly, the terminology here is almost designed to be maximally confusing, and I’ve never read a good post that laid out how everything relates.
There are also bug-fixes and performance improvements that are not going to show on the page I linked.
I do think it’s plausible this is a smaller release. Not that this was the real point of the discussion, but I think it’s still just a good idea to have more than one release a year. It keeps things moving smoothly, and lowers the cost of missing a release, which has beneficial effects.
I started programming when Java 6 was relatively new. Back then it was about 3-4 years in between releases. Although I don’t write much Java any more, I’m happy to see changes shipping more frequently now.
There's not really a second C# runtime. Java has several, some based on the Openjdk, but a few that are completely new like OpenJ9 and Graal.
The closest C# has is mono.
This sort of thing is bound to happen with that situation. Heck, it happens with C++ whenever a new C++ version comes out. Some C++11 features took years to make their way into all the compilers.
Graal is based on OpenJDK. OpenJ9 while using a separate JVM and JIT leverage the openjdk class path as well as the build environment and various other things.
I don’t think there’s a single alternate implementation that doesn’t leverage a good chunk of openjdk somehow
> Also, the page reads like an open source “We’re finished, we’re tired.” announcement rather than the razzmatazz of a Microsoft release.
I think this is because the JRE/JDK upstream releases are a bit like Linux kernel releases: all the major first-party feature development goes on in subprojects that maintain their own "living forks" during feature development, with the teams on these features doing PRs against the fork's own "main"; that "fork's main" having its own subproject maintainers who ensure a mess isn't made of it; and then those maintainers eventually polishing up that fork-main into a single big one-shot PR to upstream once the feature-as-a-whole is ready.
(Compare/contrast: the Linux kernel's mm, rt, and kvm feature development efforts.)
Because of this, the top-level "project maintainers" (i.e. the people who decide what gets merged into upstream main) aren't really the same people as these subproject people who care deeply about these new features. They want to ship stuff people want, but they personally mostly deal all day with requests to merge 1. small bugfixes, and 2. features so small that no JEP is needed.
But then, every once in a while, they have to deal with a request to merge one of these huge subproject upstreaming PRs. And sure, it's already heavily reviewed by the subproject's maintainers, who they trust. But they do still have to audit it and learn it and create a stabilized release path for it. "Handover" stuff. And that's tiring!
So, given that the toplevel project maintainers write the release notes, I'm not surprised they come off as weary about releases.
(That being said, for purely PR reasons, the toplevel maintainers could ask the subproject staff to contribute their perspective to the release notes of a release that merges their work? But this could also just-as-well be a separate blog post—which would probably be better for sharing. I don't think I've ever seen a centralized Java blog [is there one?] but I think the subproject teams do tend to have them.)
Java tried to do fairly large updates and sometimes the release cycle would be very unpredictable as things would slip and take much longer than anticipated.
So to make it more predictable and to keep updates coming they switched to 6 months cadence with long term support (LTS) every two years.
This I think is a pretty good way of doing things, makes people who plan things figure out how to split feature development into these 6 months cycles, it made JEPs more granular and I think it made project Valhalla possible, if they tried doing it the old way it would never happen.
Splitting things in small chunks clarified what needs to be done and the path forward. It still takes very long time, but doesn't cause big incompatible changes and I think overall Java has good progress without being stalled.
I remember Dolphin being a particularly painful one, and as I recall it ended up with some weird compromises (wasn't erasure supposed to avoid needing to update the bytecode format, but then annotations required it anyway? Something along those lines)
Java releases used to be glacial multi-year affairs. Lots of discussion of features that then missed the release train and you knew they'd not be with you for another multi-year period.
They made a conscious decision to switch to a regular six-month cadence and it's been all the better for it. The preview-mechanism has been terrific there too, allowing half-baked features to be aired without absolutely committing to something that turns out to be flawed.
> Microsoft are bundling a lot more into the platform and leaving less to the community.
This is a good thing. In Java everything has multiple community offerings, so before doing anything you have to evaluate the community offerings and decide which one to go with. If you go with the wrong one you may end up having to switch at some point, and that can be painful. This happens so often that most of the time spent when using Java is doing these evaluations and comparisons. With C# you just use the one built into .NET platform. Saves a ton of time.
Sometimes the thing built into the .NET platform is great, sometime it is just crap but developers will use it anyway and it sets back the ecosystem.
There is this division of labor between systems programmers and application programmers and often we think systems programmers are better because they know more about algorithms and data structures and compilers and assembly language and such. On the other hand, application developers understand how to reconcile the mental model of managers and employees and customers with computers, reality and common sense and, once they get experienced, see the commonalities between all the run-of-the-mill bizapps that we are coding all the time.
Application programmers do a lot better at applications framework than systems programmers and make things like Ruby on Rails and Spring. Systems programmers make terrible things like ASP.NET MVC (I worked out a way to do MVC with ordinary ASP.NET, why couldn't they, with access to the platform internals?)
If someone wants to create a project by assembling bits and pieces from different open source products they can, but many just go for Spring (Boot) and call it a day.
All of my projects are based on Spring and I don't really have to look outside of that ecosystem. It almost acts as an aggregator of different open source solutions and often works by abstracting the functionality so that differences are not that big. I recently switched messaging providers and didn't have to change much of my code.
Yep, with Spring Boot development is so easy, and even decade old projects are mostly easy to upgrade. I don't have experience from C# or .NET development, but at least compared to Python and especially JS ecosystems it's so much better.
Generally fairly painless in recent years, you need to divide the .NET timeline into original timeline ( .NET 1.0 -> Framework 4.8 ) and "core" lineage/timeline.
The Core (smaller, but also properly crossplatform) project begun in 2014, fairly major rewrites with breaking changes in the new releases up until 2019 (.NET Core 3.1) and 2020 (the 5.0 release that became the official major "unification" with most parts of Framework having newer alternatives and being "complete" even if 6.0 and 7.0 patched holes).
Projects started with core 3.0/3.1 in 2019 have a pretty easy and clear upgrade path without major breaking changes up until today.
It's not JS/Node volatility, and the cleanups in the language/runtime were well worth it in hindsight (still maintaining old 4.8 applications running under IIS), also 4.8 is still nominally supported so there's no immediate stress in upgrading (There are better semantics today, but with huge projects those semantic differences, mainly no lazy-loading by default are a risk).
I never thought of Java being the 'move fast ~and break things~' alternative over .NET, but Java has a faster release schedule to get features out sooner.
I don't think modern Java is a 'move fast ~and break things~' environment. It's a comparatively stable platform with an enviable focus on backwards compatibility. The maintainers have talked about "last mover's advantage" when it comes to introducing new language features. Java has a checkered history when it comes to novel programming language features, so I think this is good.
Granted, the maintainers are more inclined to deprecate and remove parts of the API than has historically been the case but it is mostly obsolete things like applets. And you may need to keep a close eye on runtime flags and their effects.
We often use the latest version of Java at my work place. We haven't had any issues with upgrading, so there's no benefit of waiting for an LTS. There's no big process behind it either. The developers just quietly change the version as part of keeping the project up to date (BAU)
It may be that we are shielded from edge cases because we are based on Spring, which is probably the most tested piece of software before new versions of Java are released. But it's my impression that the risk of upgrading to a new version of Java is not the same today as it was in the past. The only advantage of an LTS is that it is supported longer, so that you can postpone the upgrade if you really want. It's not as if the intermediate releases are inferior or less safe.
> Let me get this straight: we're behind the [other languages] and we're going to catch up to them by going slower than they are?
Gotta go faster if you ever wanna catch up. However, Java is also purposefully slow. Everything is extremely considered. And while it means it takes a while before you get a feature it tends to be pretty good.
I kind of wish C# would slowdown releases in some areas. I have not been a huge fan of some of the changes in the past year. I love the performance changes and bits of functionality here and there, but the syntax-sugar is getting annoying.
People complain, but most of the actually used changes are in things that continually used where I find painpoints.
Not 100% on board with the collection expression changes (I found fluent Linq chains usually more readable), but they're improving painpoints so I think it'll work out in the end hopefully.
Most new syntax features make code more readable. For those that don't there are company style guides and `AGENTS.md`. The C++ philosophy comes down to "if it works ship it" and I don't think you're expected to use every single new feature.
Interesting take, how is optional functionality annoying? Isn't the fact that it's just sugar a huge benefit? Us old timers can simply stick to what we're familiar with.
Because unless you are the only person maintaining your codebase other people in your organization will start using the cool new syntax sugar and optional functionality. So you will be forced to deal with it as it starts showing up in your codebase.
You don't really have to use the latest C# version, though. Install the latest .NET and you get the performance improvements without usually having to change anything about your code.
>> Oracle are doing versions at approximately twice the cadence.
This has nothing to do with Oracle. All good that you hear from Java in the last few years, is the great community and good old people from Sun working at Oracle.
Someone doesn't know their Java history. Oracle bought Java 16 years ago in 2010. At that time Sun had been working on Java 7 for over 4 years with no release date in sight. Oracle trimmed the fat and released Java 7 in less than a year. And since then has kept a regular release cadence. Sun would probably still be working on Java 7.
These days, Java is mostly used in greenfield software that has to be very reliable, very performant, and last for many years. So it's often the first choice for banking, telecom, finance, government, defence, manufacturing control, logistics and shipping, media streaming, retail, hospitality, healthcare etc.. It's usually not a first pick for more exciting software, such as Python type checkers, JS bundlers, or TUI file managers.
I think of Java/Kotlin and Spring as a secret weapon for startups. My workplace was a startup 5 years ago and it's amazing how things just worked as expected, leaving us more time to focus on the product. We have tried a few alternatives over the years, such as a few services in Rust, but the people who implemented those have usually seen the advantage of using a stable ecosystem after a few years. It's unfortunately something you need to experience yourself instead of being told by someone else.
i can't speak to the others but banking and healthcare is virtually all java top to bottom. The big healthcare EMR/EHR systems are Java and every bank i've ever worked with (i use to do a lot of integrations with the big banks) was all Java. I have friends in those areas and whenever they start up a new project it's still always Java since that's where their skills are and what's on the "approved tech." list.
They lack in performance, stability (compatibility), observability (telemetry), productivity, or some combination thereof. They are chosen, of course (especially C#; Go and Rust are far behind), but not as much as Java.
I think you have a biased view. The number of stuff written in Rust in the last couple of years has absolutely exploded. For example, I see a lot of projects now that provide SDKs in Rust but don’t bother with Java. And I say this as someone who still writes most of my code ( or tell my LLM to write) in Java.
There's a difference between number of programs and number of LOC (the latter is related to the number of people involved). I am not aware of any SDK targeting the industries I mentioned that "doesn't bother with Java". It's not only a popular choice in those industries, it's not only among the top choices, but it's the top choice by a large margin. Look at wanted ads in those industries to see that. Overall, there are only two languages as popular as Java or more, and they are JS and Python: https://www.devjobsscanner.com/blog/top-8-most-demanded-prog...
Yeah I mean he literally works on Java at Oracle, so may just be a little biased.
Doesn't bother to disclose it of course, because what, you don't check everyone's profile in every discussion to make sure they're not biased? What, you don't just know who every user on this site works for? You dummy you :)
It's disclosed right there in my profile (I don't see your professional affiliation disclosed in your comment; or your profile, for that matter). Of course, I, like other runtime and compiler people, joined the Java team because we wanted to work on the most advanced compiler and runtime tech. I perfectly understand people who want to work on smaller, newer, potentially insurgent products, but I took the chance to work on the cutting edge of compiler and runtime engineering, and Java is where it's at these days (I'm not saying it's the only one, but it's a very small club).
Saying that Go lacks in those is just showing how people are making software those days. It’s just terrifying.
As to Rust - we all, hopefully, agree that it’s great language, but not for some startup making websites or Mongo based, boring backends. It’s great for the stable, system level products.
I don't know what compiler and GC quality has to do with how people are making software these days, and I don't think state-of-the-art optimising compilers and GCs are terrifying at all. Go opts for more traditional, simpler algorithms under the assumption that for many purposes they're good enough. That may be so, but sometimes workloads really are very demanding, and you need the best performance.
and the costs they are willing to pay. Go/Rust just kill everything else (except maybe C++) for performance and resource needs. JVM requires so many resources just to run small apps.
I don't agree. If anything these newer languages have better tooling and new projects are always built from ground up to support open standards like open telemetry
Open telemetry is about how telemetry data is reported, not how it's collected. It's hard to compete with JFR on the breadth and depth of low-overhead, in production telemetry, built into the standard library and the JVM itself.
It's stable to the point of boring, and there's no shortage of people who know the language and can work with it, it's got best in class tooling, decades worth of libraries almost all very mature. Most of the language's issues are from legacy code bases coded in a style that isn't really relevant to a greenfield project.
The ecosystem has (at long last) standardized on JSpecify (https://jspecify.dev) for nullability annotations. JSpecify allows you to annotate a package or module with `@NullMarked` and your IDE and build (via ErrorProne+NullAway, typically) will check for null safety.
If you develop a library in Java and use it from Kotlin, the built-in Kotlin null-safety will recognize the JSpecify annotations on the library.
Unlike C it is trivial to catch a NullPointerException and confine the crash to the unit of work. And unlike C you are not talking about insanely dangerous pointers, you're just talking about an NPE.
I'll admit it's a hassle when something wasn't initialized properly and then you get a null pointer exception at some unrelated code much later. It's not always easy to debug. Catastrophic? No!
There are a lot of third party tools that can check for null safety and a lot of work is being done to make Java's initialization safer but also a little more flexible, there is
and there are all sorts of practical answers. Nulls in Java are low on my list of annoyances, way behind front end programmers who pepper my CSS files with "!important" because they don't know about precedence (though maybe they think my .clazz.clazz.clazz selector is brain dead!)
It is really not a big deal nowadays, the problem of the same scale as having index out of bounds error (no language has good defence against this, yet it is not a catastrophe).
That's expected (the index out of bound). You have an array, and maybe it grows, you read a number from input, you don't check it against the size of the array because you want to torture the language, use it to get the element at that index and... I'm sure that there is a surprisingly number of different designs of what it should happen and a number of designed ways to ensure that it doesn't happen. But a runtime error is expected.
yes, so are the NPEs - both are runtime errors indicating a bug in the code. NPE was a major source of irritation 20 years ago, but what many people do not know is that debugging NPEs in Java is easier now - they carry more information about the source. And the culture has evolved.
Can I trust code I’ve written myself with no guarantees from the language? Maybe. Can I trust code written by dozens of other developers (and/or agents) working on the same project over multiple years? Definitely not.
Most engineers do not have the ability to impose rules by fiat on all of their coworkers. It seems like you're misunderstanding the nature of working on a codebase as an IC when other developers contribute to it. If all of my coworkers don't want a lint rule I propose, I don't get to add it. If all of my other coworkers want to write code in a certain way and approve each other's MRs with code written in that way, I don't get to veto it.
Most engineers don't get to decide to use a language either. Usually someone with the clout to pick a language has the clout to set style requirements too.
I don't disagree, but that sounds more like a response to the person asking "what's the argument for picking Java?" than one to the someone who finds "Have you tried not returning null or constructing incomplete objects?" and "Why don't you have any coding standards?" to be poor takes.
I admit I haven't worked in Java for years, but no project I've seen at my current company (the only one I've worked at since agents have been a useful thing) is anywhere close to removing all dependencies. From what I've seen, people want to spend tokens on new things, not things that are already known to exist. Even if you can reinvent the wheel, it's not something that an employer is going to be particularly happy to subsidize.
I’m not sure how long it will take, but please - can we stop saying that annotations like @IHopeThisWontBeNull is a toy for kids and, having so many years of incidents caused by those and having LLMs to write and fix the code, we can rely on language and compiler already?
You're drawing a distinction that doesn't matter in practice. If you encounter a NullPointerException incident then you either didn't annotate your code or you didn't run the tooling. (In fact before even running your CI suite, any serious IDE will tell you immediately that you've mishandled null somewhere.)
I get that some people feel like it ought to be built-in to the language rather than a separate tool... but people's personal feelings are irrelevant to the lived experience of my day-to-day work, where worrying about null is truly a thing of the past.
It's a stable known stack. It's not hard to find Java developers and the AI Agents are probably pretty good at writing Java too. A Java backend will just sit there and do its job happily forever and you can bolt on whatever front-end you want. Spring Boot has been kind of the standard way to do Java web applications for probably a decade if not longer. It works fine has all the bells and whistles when you're ready for them and most Java developers who work on the web know Spring already.
As for an individual developer doing a side project, you should use Java if you haven't used it before to get exposure to it. It's a fundamental component of enterprise software and if you've never used it before take the time to learn something new.
When building boring web applications with a sizeable team that need to run for a long time. Hiring developers is easy since there are many, there is nearly no magic and the language is quite strict and type safe so it works well with a large team.
And that "team" nowadays may also consist of many AI agents. In my experience Claude Code for example works very well with a typed, slightly boring language with lots of framework and library support. Because it doesn't compile when you get something wrong, instead of getting a vague runtime issue that Claude can't always see.
I agree with the rest, but there's definitely a lot of magic in Java. This is from both what features the languages makes available (many) and how the community uses them (often). I've had so many hard-to-debug issues in Java over the years due to reflection, annotations, and bytecode manipulation shenanigans.
And another positive point for Java: checked exceptions. It's verbose, but knowing exactly in which ways a function can fail is extremely helpful for building robust applications.
A lot of that is coding style. I’ve also seen a lot of hard-to-debug issues in Python caused by reflection, weird decorators that muck around with name-mangled symbols, and bytecode manipulation. You can even manipulate the traceback object so it’s more difficult to make sense of why the exception comes from.
It took me quite a long time to accept that the recommended unit testing library manipulates bytecode so that the exception message for `assert a == b` prints the values for both.
WRT magic, I've generally thought that was a result of frameworks - Spring, for example. In the past, my feeling was that these impose a sort of meta/configuration language that itself is not checkable at compile time, so you'd get weird runtime errors that are somewhat inexplicable. This was like... 2018 though, so perhaps things have improved.
Mostly I think they are a mistake, like in ordinary application code instead of catching close to the throw you want to do a lot of
try {
...
} finally() {
...
}
to make sure things get torn down that have to be torn down and let the exception go to the top of the unit of work and probably to whatever drives the work unit. You can probably do better than logging the raw exception and moving on to the next work unit but you can do much worse. That is, you want a default "sloppy" error handling approach that's correct that you can do without thinking and avoid other kinds of "sloppy" coding encouraged by checked exception such as catching exceptions locally without doing the right thing globally.
Occasionally though I have built something really sensitive, like an authentication filter for a web site which has at least 5 ways to log in and in that I have a hierarchy of exceptions and use checked exceptions heavily to document all the ways things can go wrong and felt like "the type system really has my back here" but that is like 5% of the Java I write.
>in places where it's pointless to check, like IOException
Can you explain why this is pointless? In my mind, this being a checked exception would hopefully be a hint that I should think about this failure-case and make an explicit decision whether to handle it or not. Network connection failed? Maybe I retry. Maybe I store that data somewhere else as a fall back. Isn't this similar to Go programmers needing to check if err is not nil?
I don't think I can recall a time where I routed-around-the-damage on the basis of a particular typed exception.
As soon as you consider retrying a network failure, you immediately need to start thinking about distributed systems failures, idempotency, and all that good stuff.
As soon as you start thinking about the above, it becomes immediately obvious that low-level calls should not be able to decide to re-run themselves.
Scala's ZIO also demonstrates that they're a great idea and can be perfectly ergonomic, but you need type inference, which Java devs were resistant to for a long time (maybe still are? I remember lots of "how will I ever know what `val a = new Animal()` is???"). If you infer the exception type, they're basically invisible except for when you forget to have some place in your program to handle them, which is exactly what you want.
I'd argue that checked exceptions are still worth it, even though all the problems pointed out do exist. And that's because it works to inform consumers of what a producer is doing. Haskell has the IO and Maybe monads; Java communicates the same information through IOException and other domain exceptions.
Many times I've decided to switch from one function to another, or even an entirely new library, because the checked exceptions told me that it was doing far more than I expected, and I was not comfortable introducing those new failure modes.
It's far from perfect, one still has to handle nulls and wrapped/merged exceptions, but overall I like this language feature.
> but knowing exactly in which ways a function can fail is extremely helpful for building robust applications
I've worked on Java apps that have failed in mysterious ways that no exception could explain. Meanwhile, the overhead of having to call out certain exceptions but not others in language syntax is a bit excessive.
For example, decoding a byte array (or URL encoded form field) into a UTF-8 string means handling a theoretical UnsupportedEncodingException. What the fuck? How the hell can one have a JVM that doesn't support UTF-8? Why does my code need boilerplate that will never run because there might be some broken-ass JVM out there that that doesn't support UTF-8? How did it launch a web server, safely load all the libraries, and accept a web request, and route it to my code without blowing up? "But the encoding scheme might change..." No, it won't change. It's always going to be UTF-8. It will always be UTF-8. If it's not, let it blow up.
It works well enough with plain Ruby and plain Javascript. It ported a Rails 7, Vue 2, vuetify 2, vuex app to Rails 8 (ok, easy, I did it myself at least once), Vue 3, Vuetify 4, Pinia. I had to visually check the SPA, of course.
Java & Spring is a good choice whenever you want your application to work and be maintainable 10 years from now, without having to replace the framework and half of the libraries you used. I see few good reasons to ever use something with unstable ecosystem (like Javascript with NodeJS) over Java these days.
Stability is a good point, although I am curious where JS and Node stand there now. They're not at the level of Java or .NET by any means, but the JS ecosystem has definitely begun to slowdown over the last few years. I've used express for the server and winston for logging for years and years now and they've very stable at this point.
I guess I'm asking this as an open question: Where are we in the "move fast vs stable" spectrum with Node these days? Definitely not rock solid, but it's moving in that direction I feel.
When you are already familiar with it or work in a Java shop, there are better options if you are starting from scratch, but if you already have 50 guys that know Java it's a pretty big ask for all of them to switch.
Most organizations that use Java tend to be pretty conservative with their technology picks and nowadays with newer Java versions the only real gap with Kotlin is null-safety which is supposed to also come to Java at some point.
There is also an organization culture component most of the time, one our engineers actually proposed to use Kotlin for one of the new projects but it got rejected because "We are a Java shop"
Golang gives you none of nice features of a modern language while being about the same performance tier as Scala or Java, so there's basically no reason not to use Scala.
Every job I've has has used different languages so I don't really understand the need to find a dev for a specific language. I went from network firmware in C to banking application servers in Scala and it took like 2 weeks to ramp up. Not a big deal. Now I write lower level networking stuff again in Go, which seems like its just worse than e.g. C-with-templates (and occasional classes) style C++ so I don't really understand why people like it.
I think it used to be common to just look for smart people and assume they can run with whatever stack. Wasn't that the point of abstract algorithm questions etc. (basically an IQ test)?
It's sad - I spent a good 12 years writing Scala every day and it was the ideal language for my brain. Until it wasn't - sbt got too complex for it's own good, everything became "very smart" developers over-using implicit conversions, you couldn't find a project that wasn't an opinion war on cats vs whatever. It collapsed on the weight of it's own smugness.
go and kotlin aren't it, gleam scratches the itch but I can't justify writing code that would impossible to hire for.
Java is almost always significantly faster than Go because the Go runtime does a poor job of exploiting large memory page, doesn't support text-on-huge-pages, and barely supports profile-guided optimization. With HotSpot you get all of this and more for free. Go is fine but Java is peak.
I ported a moderate sized java project to golang. Test suite runs order of magnitude faster now. There isn't much change in terms of the architecture. Pretty much the same algos and data structures. The whole dev tooling runs on a 16 gb mac without swapping now. I used vs code for both
IME they're both in a place where Rust is maybe ~40% faster for a decent CRUD web application server, but with go you need to write much lower level code to get there (e.g. using composable generic iterators will ruin your allocations, so it's all manual for loops). You can write idiomatic high level Scala and get the same performance. Which could be as simple as the go compiler offers no ability to force inlining and has way too low of a complexity threshold, but that basically makes reusable code unusable in high performance situations.
The whole go team's philosophy tends to also revolve around assuming their users don't know what they're doing, which is annoying. Like an inline keyword: thinking you know better than me doesn't mean I'm not going to inline it; it means I'm going to manually write it inline myself in the code, and then think the language sucks because it's tedious, error-prone, and verbose. Or they tend to mark lots of stuff private for no reason, and e.g. with TLS 1.3 they just ignore your config because they think they know better, etc.
Isn't this mostly about java cold start costs? It might be that other people are optimizing for steady-state performance, not transient startup performance.
java is a great language for server side projects. it is actively maintained, the biggest issues with it have JEPs, and it’s very friendly to AI authors
Java-the-language blows, but Kotlin does not, and Java-the-platform is on the Pareto frontier of oldest-yet-most-usable open-source ecosystems. I prefer Rust, and the gaps where it doesn't apply, C# fits my use cases better, but Kotlin/JVM is a rock solid development platform.
JavaFX is a hidden gem. I really like the programming model with its binding and scene graph and CSS.
It's not as portable as Swing, as it has some platform specific binary components to it. But it works fine on mainstream platforms. For me Swing portability is not worth giving up the FX model.
Just be aware that if you happen to bundle in the Web view component, you're basically adding WebKit to your distribution. I did this with a small project because I wanted to have a "help" screen with Markdown -> HTML. Easy, but "expensive". It simply adds a big chunk (10-20Mb) to your distribution.
(Now I have a very crude Markdown renderer for this task, which is a 100 lines code, and I'm working on a better one -- but I have yet to pull the trigger on the latest FX with its new Rich Text component, which could change everything.)
One hot tip with cross platform FX, however. Embed your fonts. The font suite is not common across the distributions, and the CSS does not honor the font fall back (i.e. if not XXX font, then YYY font), so if the runtime doesn't have your specific font, it collapses to the System font. So, embedding the fonts you use helps a lot with cross platform stability. Plenty of free fonts, I have not had a real problem with this. But it can be one of those O.o moments when you test on other platforms and encounter it the first time.
Why should anyone use it over Java?
Ms is hostile towards its developers, it creates new versions of things, deprecates previous versions, uses confusing naming for newer versions.. etc.
Microsoft has come a long way since Satya Nadella took over in early 2014. The open-sourcing of .NET Core that same year was a huge step forward. Seeing a 'Microsoft Loves Linux' slide that year was something I did not have on my bingo card. VS Code and the GitHub acquisition demonstrated Microsoft's interest in fostering good relations with developers instead of alienating them. I do wish GitHub had stayed independent, though.
Microsoft is a business and will always put their business objectives first. In my opinion, they have a non-zero amount of evilness. I do not support them jamming Copilot into every available crevice. I still think they make dumb choices, like every imperfect organization. However, C# is a powerful and intuitive language, and for Microsoft shops that already run a lot of Windows and SQL Server it makes a lot of sense.
No shade to the JVM. I've mostly enjoyed my time in that space. I do believe the choice between Java and Kotlin, the wide variety of vendor JDK distributions and IDE fragmentation make the JVM stack a bit more difficult for newcomers to break into.
Because your employer is dick-deep in Microsoft psychosis.
I've been a .NET dev for a decade now. It's perfectly serviceable, but I wouldn't say I truly love the language anymore, but I would take it over Java any day. Entity Framework and LINQ are gifts from the Gods. I have never used an ORM that even comes remotely close.
Also, C# is big in the gaming world. I am working on a game right now, and I was not impressed with what many other languages had to offer. It seems like the kings are still C(++) and C#. Of course, Java can create games, but I would argue that is a "could vs. should" kind of decision.
Unity, Godot, Monogame, Raylib, XNA, FNA, etc. all can use or rely on C#. I have not seen Java be compatible with any of those -- except maybe Raylib? I do not know of anyone nor any games that use it though.
Java and C# seem to be the best ways of making code-first OpenAPI based servers.
C# LINQ also seem to be the best compromise between ORM and raw SQL queries, although I never used it myself.
I have been severely disappointed in all similar solutions for Go at least and I imagine Rust does not have something better given it has a smaller community-base.
Python and NodeJS have some very neat solutions for this stuff too, but both are "slow" dynamic languages. I personally dislike python with a passion and NodeJS stuff is extremely community-driven and therefor often unreliable. Prisma (NodeJS ORM) for example just did a major overhaul and is now pushing a completely different API.
If you are making boring REST API to SQL Database it seems like Java and C# are the best options.
Whoever works with, or chooses Java, is not doing it for the language itself, be it beautiful or not. Java has a huge ecosystem, from battle tested integrations to optimized images to build pipelines to whatever, so at the same you're buying access to all this world (yes, more than an environment). And of course transferable skills. I'm not saying Java is alone offering this, also not saying every feature is the best, but you can have them all, and even choose from different options.
Java's ecosystem is lingering since Oracle brought the language, and it's at the point where you should really look if the things you want to use are still in the state of the art, or if they felt behind every other language.
And if you are starting from scratch, whatever part of the ecosystem you use, I'm not optimist on its situation improving with time.
I use Java for hobby projects, I think it's design choices make it a nice minimalist language for "classic OOP" style: dynamic dispatch, encapsulation etc.
Nowadays a lot of code is written with mostly procedural style with some functional characteristics, I wouldn't use Java for that.
"The Java Story" documentary by CultRepo on YouTube is pretty great. A major topic is the release cadence which some other comments here are mentioning / joking about.
The elephant in the room is the standard library (collections). It isn't even type safe yet, because some methods were around before generics were added. And collections are too core for anyone to be able to agree on a 3rd party standard.
universal null type safety has sadly been discarded as a core concept of Valhalla in my Understanding; that being said, the proposals in Valhalla have null-safety as a side effect, but only under certain conditions.
You really need to dare to try something else, Kotlin has been available for many years and the cost for a Java shop is super small since the same tools work with both.
I’ve used also Dart which is lots of fun. Even Typescript can be a good alternative depending on what you’re doing. All have nullability guarantees and a nicer type system than Java while being in the same ballpark in terms of performance.
Still pretty fun that here banks are still using Java 8, where i work they use java 17 and you can still find work requirements asking for java 7 (mostly in goverment entities)
Language that runs on the explicit design philosophy of letting other languages experiment first and then incorporating their lessons learned once the dust has settled is late to implement a feature.
I've been using the Vector APIs for years now, and I'm still waiting for them to GA!
They are useful for neural information retrieval (RAG, memory), which relies heavily on content vectorization and similarity matching using their dot products.
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