It did, and also up till 3.0 (thus 2.10 and 2.11) had also SWITCHAR which you could change command options character / to - like in it was in UNIX convention, from CONFIG.SYS definition.
The problem with changing / to - was, that under MS-DOS command line parsing was left completely to a a loaded program, which then would had to know how to find out this change and act accordingly. And if not only MS-DOS std. utilities behaved properly and others not so much. Thus causing confusion which perhaps then lead to dropping that feature 3.0 onwards.
I think it was also before 2.0 or at least what delivered with Apricot PC (UK made PC) 1.25 which I tinkered with few days as we had it on display from Finnish importer ARAIC Rautakirja Oy (Finnish railways VR magazines and other related travel reading importer, also keeper of the R-kiosks). A very nicely built non IBM PC compatible PC with good graphics and then uncommon 3.5" 70kb disk drives before Apple Macintosh made the more popular.
e: Now did it change also path separator from \ to / ?
It may have done it also. I bit later work more with Xenix and can't remember for sure. Starting from 286 versions SvR2.x, 386 SvR3.x up till SCO UNIX SVR4 early 90's and less with MS-DOS besides maintaining couple of TSR's I had written and just checked every MS-DOS release that those still did work.
no, Windows still leaves that to the program. Usually handled by the msvc runtime for argv/argc, but the base windows API is GetCommandLine, giving you a single string.
I think I did have some time early -90's someone did alternative C0.lib which actually when you linked it with your programs it made much easier porting some *nix software to MS-DOS. No need to make modifications command line handler, as that modified startup-library as I think it's or was called, did what was needed.
It was then COMMAND.COM ie. Dos command line did not do that. And there were alternatives like something called 4DOS which I did never use, but those could have done it. Or did they?
I have't used Windows for quite long time. And I do not know if CMD.EXE or PowerShell whatever its name are any better. Maybe someone knowing would like to comment this.
Thankfully they ditched it. One of the best things about DOS was that it gave users control over the directory structure. While other OS's just barfed a billions directories all over your disk on install and spewed system files wherever they felt like it, DOS let you decide where you wanted things with the exception of a couple of files in the root directory. This did mean that some people just dumped everything into the root of their system drive, but everyone else could organize things however they wanted. You could learn a lot about someone, and their system, with a single dir command.
And file handles stdin, stdout, stderr same file numbers also. There was and still is overlapping features with Microsoft later and current operating systems.
Linked post is quite good and had forgotten completely XEDOS mentioned Byte article.
Xenix was targeted at a hardware spec that was well out of reach for the ordinary home PC consumer. The amount of ram and HDD needed to install and run it would make a computer in 1985/1986 money equivalent to a $12,000 desktop today. They always knew they needed to keep developing DOS for the low end.
Sure, but as the article points out, had it not been for the change of heart, Xenix light could have been something like Coherent.
Having learnt UNIX on Xenix, I know how expensive it was, we had a single tower that the teacher carried on into class, while we in groups of 2 students had about 15 minutes time slots to try out our applications that we prepared on MS-DOS ahead of time with Turbo C 2.0.
I was teaching myself 8086 16-bit assembly a few nights ago on MS-DOS 5.0. It was so much fun getting a color block to display on CGA.
Nevertheless, writing system code in assembly was probably going to cause a lot of insomnia and other side effects, especially when Microsoft was far from the domination force on IBM PC.
It is, but some tools like Turbo C did provide asm generating switch (-S AFAIK) directly you to use and saved you from using debug.com or any better disassembler.
Sure, it wasn't uncommon feature at all, but many fellows I knew had not noticed it before I suggested using it when a colleague or a friend was wondering how he would write that function assembler and try to make it faster.
It tells me more about some people not being curious enough to read documents and explore environment they work than others apparently.
Assembler generating was long time a standard feature of compilers simply because writing the assembler code was easier than directly runnable or linkable object code. And for language designer and compiler programmer it was easier to read verifying correct code generating that way. Why bother writing assembly compiler, linker etc. when you usually already had them in the system that time.
Then later it changed bit as vendors did not any more ship any or just some crippled compliers to compile just a new kernel with the base system to curb their language competition. Which made third party compilers had to either provide with complete set their own creating executables or ask buyer also licensing system vendor compiler toolkit which they would not otherwise need. That then caused prospect third party compiler customer add that licensing fee top of offering and compared which option they would buy if any. That was time when developement toolkits started changing. Under MS-DOS there never was compiler shipped with it that was a situation all the time, but with the minis and larger systems more what described here above.
ps. I think you get much too wound up about C-language. For a long time there was no real alternative use to cross environments compatible way developing thing without major rewrite each platform. That what mattered more than anything else then and in some sense also to some these days also. And no language needs to be put on pedestal like you wrote message you already changed or deleted so that I did not get to answer.
This is enlightening. Growing up playing with Unix boxes (and XENIX, specifically, mostly writing shell scripts and playing in the filesystem) and programming MS-DOS in assembly I could often see strange parallels between how stuff worked in MS-DOS and his stuff was in Unix. I just assumed MSFT programmers had used Unix at some point and wanted to lift features and idioms from it to use in DOS. It never occurred to me, knowing XENIX was a MSFT-licensed Unic derivative, that there might be more direct inspiration in that vague Unix "flavor" in DOS.
I never did any CP/M programming, so the whole FCB-based file manipulation API in MS-dos just seemed like strange old cruft to me. Had I been exposed to CP/M the Unix inspiration behind the handle-based API would have been a lot more apparent. (I got in about the MS-DOS 3.3 timeframe...)
What a strange world it would have been in MSFT got IBM to buy into the Unix path separator.
Using the backslash: one of those incredibly idiotic things that caused untold misery and time waste further down the road. Future generations cursed the day.
I know this is software focused, but as much of the work done in DOS 2.0 was to support the introduction of hard disks, it would be worth mentioning what the hardware was in the PC/XT:
As I recall 8 inch class HDD (5, 10, 20MB?) were called Winchester in the pre-PC/XT era, named for the earlier IBM product, and then the terminology carried on into the microcomputer/desktop world when the 5.25" full height HDD was introduced for the XT.
Yes, memory was the main issue. The PC launched with 64KB of RAM. Technically there was a model with 16KB of RAM and no disk drive but I don't think they produced or sold many of those.
I could get the extra 48KB memory for less than IBM charged. More importantly, double sided floppy drives were already on the market but you couldn't get them from IBM at any price.
So I went to a local component supplier and got a pair of double sided drives. They worked "out of the box" in DOS, but unsurprisingly, only side 1 of each drive showed up as A: and B: drives.
So I wrote a TSR to add C: and D: drive letterss which were side 2 of each drive.
It was super easy.
Later I heard about a fancier TSR that combined side 1 and 2 of each drive into a single drive letter with twice the capacity.
But that was a much more complicated task, and I was happy enough with my four-drive-letter solution.
2BSD is still hanging on getting updates and forked projects to this day. My understanding is that it's longevity in the face of the existence of 4bsd is because it is 16-bit clean, These days it is mainly for people who want a unix for their microcontroller.
>"But it soon became clear that IBM was committed to keeping DOS 2.0 as close as possible to the eight thousand bytes [8K] used by DOS 1.1, so as not to disrupt their existing user base. [...] The first version of MS-DOS 2.0 shipped with IBM PC XT as PC-DOS 2.0 on March 8, 1983. It required about 20 KB of RAM, far more than MS DOS 1.0, so both versions continued to be sold simultaneously for a while."
And that approximate doubling, in RAM requirements, year by year (compare to Moore's Law for hardware!) for Microsoft's OS'es, has got us, fellow students of computer history, to where we are today -- with Microsoft OS'es being the size that they are and requiring the RAM that they do!
And it all started with upgrading (or "upgrading", take your pick of term!) an 8KB OS to a 20KB OS! :-)
https://github.com/microsoft/MS-DOS/blob/main/v2.0/source/CO...
The problem with changing / to - was, that under MS-DOS command line parsing was left completely to a a loaded program, which then would had to know how to find out this change and act accordingly. And if not only MS-DOS std. utilities behaved properly and others not so much. Thus causing confusion which perhaps then lead to dropping that feature 3.0 onwards.
I think it was also before 2.0 or at least what delivered with Apricot PC (UK made PC) 1.25 which I tinkered with few days as we had it on display from Finnish importer ARAIC Rautakirja Oy (Finnish railways VR magazines and other related travel reading importer, also keeper of the R-kiosks). A very nicely built non IBM PC compatible PC with good graphics and then uncommon 3.5" 70kb disk drives before Apple Macintosh made the more popular.
https://www.homecomputermuseum.nl/en/collectie/act-computers...
e: Now did it change also path separator from \ to / ? It may have done it also. I bit later work more with Xenix and can't remember for sure. Starting from 286 versions SvR2.x, 386 SvR3.x up till SCO UNIX SVR4 early 90's and less with MS-DOS besides maintaining couple of TSR's I had written and just checked every MS-DOS release that those still did work.
And in the many decades and OS rewrites since, they have long since corrected this mistake... right?
EDIT: https://nullprogram.com/blog/2022/02/18/
It was then COMMAND.COM ie. Dos command line did not do that. And there were alternatives like something called 4DOS which I did never use, but those could have done it. Or did they?
I have't used Windows for quite long time. And I do not know if CMD.EXE or PowerShell whatever its name are any better. Maybe someone knowing would like to comment this.
s/ARAIC/AFAIC/g s/70kb/720kB/g
try making an AUX directory, or CON file, or PRN
Linked post is quite good and had forgotten completely XEDOS mentioned Byte article.
The Future of Xenix, Bill Gates Interview on Unix World, back in 1985
https://archive.org/details/Unix_World_Vol02_10.pdf
Having learnt UNIX on Xenix, I know how expensive it was, we had a single tower that the teacher carried on into class, while we in groups of 2 students had about 15 minutes time slots to try out our applications that we prepared on MS-DOS ahead of time with Turbo C 2.0.
Nevertheless, writing system code in assembly was probably going to cause a lot of insomnia and other side effects, especially when Microsoft was far from the domination force on IBM PC.
Gotta find some time to read some of the code to chill.
Fortran 77 manual for UNIX, https://www.unix.com/man_page/v7/1/f77
You can find plenty of other examples, when doing digital archaeology.
It tells me more about some people not being curious enough to read documents and explore environment they work than others apparently.
Assembler generating was long time a standard feature of compilers simply because writing the assembler code was easier than directly runnable or linkable object code. And for language designer and compiler programmer it was easier to read verifying correct code generating that way. Why bother writing assembly compiler, linker etc. when you usually already had them in the system that time.
Then later it changed bit as vendors did not any more ship any or just some crippled compliers to compile just a new kernel with the base system to curb their language competition. Which made third party compilers had to either provide with complete set their own creating executables or ask buyer also licensing system vendor compiler toolkit which they would not otherwise need. That then caused prospect third party compiler customer add that licensing fee top of offering and compared which option they would buy if any. That was time when developement toolkits started changing. Under MS-DOS there never was compiler shipped with it that was a situation all the time, but with the minis and larger systems more what described here above.
ps. I think you get much too wound up about C-language. For a long time there was no real alternative use to cross environments compatible way developing thing without major rewrite each platform. That what mattered more than anything else then and in some sense also to some these days also. And no language needs to be put on pedestal like you wrote message you already changed or deleted so that I did not get to answer.
What irks me is this mystical selling point, have you ever tried to write portable C code in K&R C without it being full of #ifdefs?
As you point out, people are not curious enough for what is outside of their bubble and take the marketing message as is.
Even more so, when knowledge was spread via the local library and what magazines one could get their hands on.
https://www.fuzix.org/downloads/0.4/
https://github.com/ghaerr/elks
I never did any CP/M programming, so the whole FCB-based file manipulation API in MS-dos just seemed like strange old cruft to me. Had I been exposed to CP/M the Unix inspiration behind the handle-based API would have been a lot more apparent. (I got in about the MS-DOS 3.3 timeframe...)
What a strange world it would have been in MSFT got IBM to buy into the Unix path separator.
Using the backslash: one of those incredibly idiotic things that caused untold misery and time waste further down the road. Future generations cursed the day.
https://en.wikipedia.org/wiki/ST-506/ST-412
https://www.google.com/search?client=firefox-b-d&q=ST-212+ha...
Interesting. At my old job I got my hands on Wang IN/ix around 1985, a 16 bit UNIX.
It ran on an 8086 but needed 512k memory. It ran fine. I wonder if memory was the main issue ? But seems the issue was probably memory for IBM and MS
I could get the extra 48KB memory for less than IBM charged. More importantly, double sided floppy drives were already on the market but you couldn't get them from IBM at any price.
So I went to a local component supplier and got a pair of double sided drives. They worked "out of the box" in DOS, but unsurprisingly, only side 1 of each drive showed up as A: and B: drives.
So I wrote a TSR to add C: and D: drive letterss which were side 2 of each drive.
It was super easy.
Later I heard about a fancier TSR that combined side 1 and 2 of each drive into a single drive letter with twice the capacity.
But that was a much more complicated task, and I was happy enough with my four-drive-letter solution.
I had one of these in mid 1982 to late https://en.wikipedia.org/wiki/IBM_Personal_Computer
Here is one, https://github.com/RetroBSD/retrobsd. This is for the pic32, so I may be wrong about the 16-bit thing.
I don't know if anyone has done it but it looks like it could fit, perhaps not on a original 8086 PC, but perhaps a 286 with 640K.
And that approximate doubling, in RAM requirements, year by year (compare to Moore's Law for hardware!) for Microsoft's OS'es, has got us, fellow students of computer history, to where we are today -- with Microsoft OS'es being the size that they are and requiring the RAM that they do!
And it all started with upgrading (or "upgrading", take your pick of term!) an 8KB OS to a 20KB OS! :-)