OpenCores
URL https://opencores.org/ocsvn/minimips_superscalar/minimips_superscalar/trunk

Subversion Repositories minimips_superscalar

[/] [minimips_superscalar/] - Rev 27

Rev

Go to most recent revision

Filtering Options

Clear current filter

Rev Log message Author Age Path
27 New bench on P1 tag. mcafruni 1530d 17h /minimips_superscalar/
26 Delete bench to upload a new one. mcafruni 1530d 17h /minimips_superscalar/
25 New bench mcafruni 1530d 17h /minimips_superscalar/
24 Delete bench to upload a new one. mcafruni 1530d 17h /minimips_superscalar/
23 Moving the benchmarks folder into the trunk folder. mcafruni 1536d 11h /minimips_superscalar/
22 Wrong code. (fi0.bin) But revealed a bug that needs attention. mcafruni 1536d 11h /minimips_superscalar/
21 Correcting codes that work in behavioral simulation but cause problems with implementation. There must be more to be corrected yet. In analysis ... mcafruni 1536d 11h /minimips_superscalar/
20 I've uncommented wait statement so that the benchmark to be loaded into the simulation. mcafruni 1571d 00h /minimips_superscalar/
19 mcafruni 1904d 16h /minimips_superscalar/
18 clock_gate.vhd: removed.
minimips.vhd: Clock2 input is wrongly connected to the clock signal (Do not ask me how that happened. I'm sorry.). The right thing is to be connected to the clock2 signal. Adjusted.
mcafruni 1904d 16h /minimips_superscalar/
17 Removing unnecessary clock-gate architecture. mcafruni 1904d 17h /minimips_superscalar/
16 FIR filter with 36 coefficients. (binary to run) mcafruni 1938d 01h /minimips_superscalar/
15 FIR filter with 36 coefficients. mcafruni 1938d 01h /minimips_superscalar/
14 Buble Sort algorithm. Four totally disorderly numbers are sorted in ascending order. Worst performance algorithm. mcafruni 1941d 20h /minimips_superscalar/
13 Buble Sort algorithm. Four totally disorderly numbers are sorted in ascending order. Worst performance algorithm. mcafruni 1941d 20h /minimips_superscalar/
12 Static Fast Fourier Transform COOLEY TUKEY algorithm to 8 samples. The signal must have zeros betwen non null samples to prevent multiplication by real and complex numbers, since the core don't have floating point. mcafruni 1941d 20h /minimips_superscalar/
11 Static Fast Fourier Transform COOLEY TUKEY algorithm to 8 samples. The signal must have zeros betwen non null samples to prevent multiplication by real and complex numbers, since the core don't have floating point. mcafruni 1941d 20h /minimips_superscalar/
10 Matrix/Vector multiplication by constant. (binary) mcafruni 1951d 18h /minimips_superscalar/
9 Matrix/Vector multiplication by constant. mcafruni 1951d 18h /minimips_superscalar/
8 mcafruni 1982d 17h /minimips_superscalar/

1 2 Next >

Show All

powered by: WebSVN 2.1.0

© copyright 1999-2024 OpenCores.org, equivalent to Oliscience, all rights reserved. OpenCores®, registered trademark.