What Video Games Keep You From Using Linux?


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Just saw this question posted on another site and changed the site's name in the question, and it's an interesting question, so I thought I'd post it here:

Everyone knows content is king. Many of us use Windows or OSX at home instead of Linux because the games we love just are not available on Linux. With Steam moving forward for a Linux launch, I would like to hear from the Neowin community on this topic. What are the game(s) you cannot live without? If they were available in Linux would you be happy to run Linux instead of Windows or OSX?

xbill, because it's based on a true story.

This XBill, or another one? If it's the one I linked to, then it runs on Linux, if not, then point me in the direction of the one you're talking about.

Probably more than anything it is the future availability of games that concerns me the most. I don't consider the cost of Windows to be prohibitively high. I don't consider Windows as an OS to be "restrictive" or not "free as in beer" enough.

Still, I hope that Valve's efforts in Linux turn out better than their efforts in Mac OS X. On Mac we got Valve's games and maybe a handful of small indie games (like Torchlight) that came over with the Steam launch. But Steam on Mac OS X wasn't the game changer people were hoping for that would lead to the end of Windows dominance in PC Gaming. I kinda doubt Steam on Linux will be a game changer either...

I use to live and work in Linux. Years ago I was very active in the Linux forum here. My experience back then was that Linux works great for some things, such as servers. Desktop Linux and day-to-day use never was very inspiring for me. I didn't find it to be in anyway more capable than Windows. About the only thing going for it was it was 'free' but unless you think the cost of Windows is prohibitively high, 'free' don't count for much.

The day I can go out and buy a game and not have to worry about what operating system or console I have will be.... never. :( I don't think Linux will ever be as viable as Windows when it comes to gaming. Even though the hardware is there.

Just saw this question posted on another site and changed the site's name in the question, and it's an interesting question, so I thought I'd post it here:

Everyone knows content is king. Many of us use Windows or OSX at home instead of Linux because the games we love just are not available on Linux. With Steam moving forward for a Linux launch, I would like to hear from the Neowin community on this topic. What are the game(s) you cannot live without? If they were available in Linux would you be happy to run Linux instead of Windows or OSX?

1 All of them

2 Sure, I guess. Although I still find it a pain in the ass every time I try it, at least it works now.

Most of them. I like the Humble Bundles because they include Linux copies, but mostly I'll just boot into Windows to play a game. In all honesty it's all I used Windows for anymore.

Basically any windows games which can't even run properly in wine. OpenGL is inferior compared to DirectX in almost all cases, current linux games are kinda crap anyways.

Actually they're at feature parity now with 4.3, but I have never even seen a game use any of the 4.x line that I'm aware of.

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    • The quantum search for Time's origin had an equally mind-boggling conclusion by Sayan Sen Image by Steve Johnson via Pexels A theoretical study from researchers at the University of Surrey suggested that the direction of time may not be fundamentally fixed in certain quantum systems. The work, published in Scientific Reports, examined how the “arrow of time” could emerge from microscopic physics and found that time-reversal symmetry can remain intact even in models used to describe processes such as energy loss and thermalisation. The arrow of time refers to the observed one-way direction from past to future in everyday life. In macroscopic processes, this is easy to see. Spilled milk spreads across a table and does not gather back into a glass, and heat flows from hotter objects to colder ones. These processes shape the common sense idea that time moves in a single direction. However, at the level of fundamental physics, many equations do not prefer a direction of time. Time-reversal symmetry means that the same physical laws can describe a system whether time moves forward or backward. This has made it difficult to explain why irreversible behaviour appears in the large-scale world even when the underlying rules do not require it. Dr Andrea Rocco, Associate Professor in Physics and Mathematical Biology at the University of Surrey, described this contrast: "One way to explain this is when you look at a process like spilt milk spreading across a table, it's clear that time is moving forward. But if you were to play that in reverse, like a movie, you'd immediately know something was wrong – it would be hard to believe milk could just gather back into a glass. However, there are processes, such as the motion of a pendulum, that look just as believable in reverse. The puzzle is that, at the most fundamental level, the laws of physics resemble the pendulum; they do not account for irreversible processes. Our findings suggest that while our common experience tells us that time only moves one way, we are just unaware that the opposite direction would have been equally possible." The study focused on open quantum systems, which are quantum systems that interact with a surrounding environment. This environment, often described as a heat bath, can exchange energy and information with the system. The researchers used this framework to study how a direction of time might appear even when the underlying physics does not enforce one. A key part of the analysis involved the Markov approximation. This is a simplification used in many models where the system is assumed not to retain memory of its past states. The idea is that changes depend only on the current state, not on earlier history. This is commonly used when studying thermalisation, which is the process where a system settles into equilibrium with its environment. The study also used concepts such as master equations, including the Lindblad and Pauli equations, which describe how probabilities of different quantum states change over time. Another related model discussed was quantum Brownian motion, which describes the random-like movement of a quantum particle interacting continuously with its environment. In these descriptions, a “memory kernel” can appear, which is a mathematical term that accounts for how past states influence current behaviour. The researchers found that applying the Markov approximation did not break time-reversal symmetry. Even when the system interacted with an effectively infinite heat bath, the resulting equations of motion remained symmetric in time. This meant that the same mathematical description could, in principle, run forward or backward in time without contradiction. The study further showed that standard frameworks used in open quantum systems, including quantum Brownian motion and master equations like the Lindblad and Pauli forms, could be written in a time-symmetric way. These equations are typically used to describe processes that look irreversible, such as dissipation and thermalisation, but the results suggested they can also be interpreted as allowing evolution in both time directions. Thomas Guff, Research Fellow in Quantum Thermodynamics, said: "The surprising part of this project was that even after making the standard simplifying assumption to our equations describing open quantum systems, the equations still behaved the same way whether the system was moving forwards or backwards in time. When we carefully worked through the maths, we found that this behaviour had to be the case because a key part of the equation, the "memory kernel," is symmetrical in time. We also found a small but important detail which is usually overlooked – a time discontinuous factor emerged that kept the time-symmetry property intact. It’s unusual to see such a mathematical mechanism in a physics equation because it's not continuous, and it was very surprising to see it appear so naturally." The researchers also noted that deriving a one-way arrow of time from time-reversal symmetric microscopic dynamics remains an open problem across fields such as thermodynamics, statistical mechanics, particle physics, and cosmology. Their results suggested that some standard descriptions of irreversible behaviour in open quantum systems may be better understood using a time-symmetric formulation of Markovianity. According to the study, processes such as thermalisation, which are usually treated as irreversible, could in theory be described in a way that allows evolution in either time direction under the same rules. This does not imply that time reversal occurs in everyday life, but rather that the underlying equations do not strictly enforce a single direction. Overall, the findings suggested that the perceived direction of time may emerge from how physical systems are modelled and approximated, rather than from a fundamental asymmetry in the laws themselves. The researchers noted that this perspective could have implications for ongoing work in quantum mechanics, thermodynamics, and cosmology on the origin of time’s arrow. Source: University of Surrey, Nature This article was generated with some help from AI and reviewed by an editor. Under Section 107 of the Copyright Act 1976, this material is used for the purpose of news reporting. Fair use is a use permitted by copyright statute that might otherwise be infringing
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