diff --git a/README.md b/README.md
index 74f9e06..144ecd9 100644
--- a/README.md
+++ b/README.md
@@ -59,7 +59,7 @@ TurboPFor: Fastest Integer Compression
### Integer Compression Benchmark (single thread):
- Download [IcApp](hhttps://github.com/powturbo/TurboPFor-Integer-Compression/releases/tag/2023.03) a new benchmark for TurboPFor
for testing allmost all integer and floating point file types.
-- Practical (No **PURE** cache) "integer compression" benchmark w/ **large** arrays.
+ ( type icapp ZIPF )
- [Benchmark Intel CPU: Skylake i7-6700 3.4GHz gcc 9.2](https://github.com/powturbo/TurboPFor/issues/47)
- [Benchmark ARM: ARMv8 A73-ODROID-N2 1.8GHz](https://github.com/powturbo/TurboPFor/issues/49)
@@ -253,35 +253,46 @@ q/s: queries/second, ms/q:milliseconds/query
+ benchmark groups of "integer compression" functions
./icapp -a1.2 -m0 -M255 -n100M ZIPF
- ./icapp -a1.2 -m0 -M255 -n100M ZIPF
-
- >*Type "icbench -l1" for a list*
-
+ ./icapp -a1.2 -m0 -M255 -n100M ZIPF -e20-50
+
>*-zipfian distribution alpha = 1.2 (Ex. -a1.0=uniform -a1.5=skewed distribution)
-number of integers = 100.000.000
-integer range from 0 to 255
*
- + Unsorted lists: individual function test (ex. Copy TurboPack TurboPFor)
+ + Unsorted lists: individual function test
- ./icbench -a1.5 -m0 -M255 -ecopy/turbopack/turbopfor/turbopack256v ZIPF
+ ./icapp -a1.5 -m0 -M255 -e1,2,3 ZIPF
+ Unsorted lists: Zigzag encoding w/ option **-fz** or FOR encoding
- ./icbench -fz -eturbovbyte/turbopfor/turbopackv ZIPF
- ./icbench -eturboforv ZIPF
+ ./icapp -e10,11,12 ZIPF
- + Sorted lists: differential coding w/ option **-fs** (increasing) or **-fS** (strictly increasing)
+ + Sorted lists: differential coding (increasing/strictly increasing)
- ./icbench -fs -eturbopack/turbopfor/turbopfor256v ZIPF
+ ./icapp -e4,5,6 ZIPF
+ ./icapp -e7,8,9 ZIPF
+
+ + Transpose/RLE/TurboVByte + General purpose compressor (lz,zstd,turborc,...)
+
+ ./icapp file -e80-95
+ ./icapp file -e80-95 -Ezstd,15
+ ./icapp file -e80-95 -Eturborc,1
+ ./icapp file -e80-95 -Eturborc,20
+
+ + 2D/3D/4D Transpose + General purpose compressor (lz,zstd,turborc,...)
+ ./icapp file512x128.f32 R512x128 -Ff
+ ./icapp file512x128.f32 -R512x128 -Ff -e100,101,102
+ ./icapp file1024x512x128.f32 -R1024x512x128 -Ff -e100,101,102
+
+ Automatic dimension determination from file name ( option -R0 )
+ ./icapp file1024x512x128.f32 -R0 -Ff -e103,104,105
+ ./icapp file1024x512x128.f64 -R0 -Fl -e103,104,105
+
+ + Lossy floating point compression
+ ./icapp file512x128.f32 -R512x128 -Ff -g.0001
+ ./icapp file.f32 -Ff -g.001
+ ./icapp file.f64 -Ff -g.001
- + Generate interactive "file.html" plot for browsing
-
- ./icbench -p2 -S2 -Q3 file.tbb
-
- + Unit test: test function from bit size 0 to 32
-
- ./icbench -m0 -M32 -eturbpfor -fu
- ./icbench -m0 -M8 -eturbopack -fs -n1M
##### - Data files:
- Raw 32 bits binary data file [Test data](https://github.com/ot/partitioned_elias_fano/tree/master/test/test_data)
@@ -366,7 +377,7 @@ q/s: queries/second, ms/q:milliseconds/query
>*run queries in file "1mq.txt" over the index of all gov2 partitions "gov2.sorted.s00.i - gov2.sorted.s07.i".*
### Function usage:
-See benchmark "icbench" program for "integer compression" usage examples.
+See benchmark "icapp" program for "integer compression" usage examples.
In general encoding/decoding functions are of the form:
>**char *endptr = encode( unsigned *in, unsigned n, char *out, [unsigned start], [int b])**