Whenever I try to use the "randInt(" command on my TI-84+ SE it says, "ERR:OVERFLOW". It worked fine before. I don't know what is wrong. Help would be appreciated!
Can you give us an example of a line you are executing that is causing the problem?
Keep in mind that whenever you issue this command, your "random" numbers will follow the same sequence.
Tari wrote:
When in doubt, try reseeding the RNG.
Code:
Code:
0->rand
Keep in mind that whenever you issue this command, your "random" numbers will follow the same sequence.
Tari wrote:
When in doubt, try reseeding the RNG.
Code:
What does that exactly do? Does it somehow say out of which number the "random" numbers are calculated? Code:
0->rand
Sorunome wrote:
Tari wrote:
When in doubt, try reseeding the RNG.
Code:
What does that exactly do? Does it somehow say out of which number the "random" numbers are calculated?Code:
0->rand
Simpler random number generators work by starting with a certain number, and then each time you want a new random number, it'll do something like multiply the number by some arbitrary number (like .123456789 or .54321876) and then add another arbitrary number to it (again, like .12345), and will then consider that "random". When you re-seed the generator, you get the same sequence of results every time you use rand because it starts with the same number as the seed, and multiplies/adds the random numbers on top the same each time. The trick is to start with something rather naturally random as the seed, like a Timer ID/ Timer Status, and then don't reseed it more often than you need to (if at all).
It's also useful for experiments or debugging where you want to be able to reuse the same PRNG sequence on multiple trials—just use the same seed again.
I remember the “overflow” problem being mentioned frequently back in the TI-82/85 ASM days after people would run certain programs. I guess the seed value in RAM would get corrupted and cause the error until the seed was manually reset to a valid value.
I remember the “overflow” problem being mentioned frequently back in the TI-82/85 ASM days after people would run certain programs. I guess the seed value in RAM would get corrupted and cause the error until the seed was manually reset to a valid value.
Travis wrote:
I remember the “overflow” problem being mentioned frequently back in the TI-82/85 ASM days after people would run certain programs. I guess the seed value in RAM would get corrupted and cause the error until the seed was manually reset to a valid value.
Exactly this. I've never quite understood why the OS doesn't choose to reset the rand seed to a sane value if it's a non-number; either TI's engineers didn't think to catch and handle that error, or they decided it would be the least confusing behavior since you might not suddenly expect your rand to be reseeded.
To mimic seeding rand:
PROGRAM:RANDSEED
:abs(int(Ans→X
:2^31-{85,249→u(nMin)
:4E4+{14,692→v(nMin)
:{XAns(1),X
:15{823,4526}not(X)+Ans-u(nMin)int(Ans/u(nMin)→w(nMin)
To mimic rand:
PROGRAM:RAND
:v(nMin)w(nMin)
:Ans-u(nMin)int(Ans/u(nMin)→w(nMin)
:fPart(1-min(ΔList(Ans/u(nMin)
This is good up to and including X=109-1. Why the native variety takes a different course is anyone's guess.
PROGRAM:RANDSEED
:abs(int(Ans→X
:2^31-{85,249→u(nMin)
:4E4+{14,692→v(nMin)
:{XAns(1),X
:15{823,4526}not(X)+Ans-u(nMin)int(Ans/u(nMin)→w(nMin)
To mimic rand:
PROGRAM:RAND
:v(nMin)w(nMin)
:Ans-u(nMin)int(Ans/u(nMin)→w(nMin)
:fPart(1-min(ΔList(Ans/u(nMin)
This is good up to and including X=109-1. Why the native variety takes a different course is anyone's guess.
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