@@ -1,7 +1,7 @@
|
||||
name: dev-long-tests
|
||||
# Tests longer than 10mn
|
||||
|
||||
concurrency:
|
||||
concurrency:
|
||||
group: long-${{ github.ref }}
|
||||
cancel-in-progress: true
|
||||
|
||||
@@ -10,6 +10,7 @@ on:
|
||||
branches: [ dev, release, actionsTest ]
|
||||
|
||||
jobs:
|
||||
# lasts ~24mn
|
||||
make-test:
|
||||
runs-on: ubuntu-latest
|
||||
env:
|
||||
@@ -20,6 +21,7 @@ jobs:
|
||||
- name: make test
|
||||
run: make test
|
||||
|
||||
# lasts ~26mn
|
||||
make-test-osx:
|
||||
runs-on: macos-latest
|
||||
steps:
|
||||
@@ -41,6 +43,7 @@ jobs:
|
||||
- name: thread sanitizer zstreamtest
|
||||
run: CC=clang ZSTREAM_TESTTIME=-T3mn make tsan-test-zstream
|
||||
|
||||
# lasts ~15mn
|
||||
tsan-fuzztest:
|
||||
runs-on: ubuntu-latest
|
||||
steps:
|
||||
@@ -48,6 +51,7 @@ jobs:
|
||||
- name: thread sanitizer fuzztest
|
||||
run: CC=clang make tsan-fuzztest
|
||||
|
||||
# lasts ~23mn
|
||||
gcc-8-asan-ubsan-testzstd:
|
||||
runs-on: ubuntu-latest
|
||||
steps:
|
||||
@@ -113,6 +117,7 @@ jobs:
|
||||
sudo apt-get install clang
|
||||
CC=clang FUZZER_FLAGS="--long-tests" make clean msan-fuzztest
|
||||
|
||||
# lasts ~24mn
|
||||
clang-msan-testzstd:
|
||||
runs-on: ubuntu-latest
|
||||
steps:
|
||||
@@ -145,6 +150,7 @@ jobs:
|
||||
make clean
|
||||
make -C tests test-fuzzer-stackmode
|
||||
|
||||
# lasts ~20mn
|
||||
oss-fuzz:
|
||||
runs-on: ubuntu-latest
|
||||
strategy:
|
||||
|
||||
@@ -200,8 +200,73 @@ jobs:
|
||||
make clean && make -j all MOREFLAGS="-Werror -DZSTD_NO_INLINE -DZSTD_STRIP_ERROR_STRINGS"
|
||||
make clean && make check MOREFLAGS="-Werror -DZSTD_NO_INLINE -DZSTD_STRIP_ERROR_STRINGS"
|
||||
|
||||
|
||||
qemu-consistency:
|
||||
name: QEMU ${{ matrix.name }}
|
||||
runs-on: ubuntu-latest
|
||||
strategy:
|
||||
fail-fast: false # 'false' means Don't stop matrix workflows even if some matrix failed.
|
||||
matrix:
|
||||
include: [
|
||||
{ name: ARM, xcc_pkg: gcc-arm-linux-gnueabi, xcc: arm-linux-gnueabi-gcc, xemu_pkg: qemu-system-arm, xemu: qemu-arm-static },
|
||||
{ name: ARM64, xcc_pkg: gcc-aarch64-linux-gnu, xcc: aarch64-linux-gnu-gcc, xemu_pkg: qemu-system-arm, xemu: qemu-aarch64-static },
|
||||
{ name: PPC, xcc_pkg: gcc-powerpc-linux-gnu, xcc: powerpc-linux-gnu-gcc, xemu_pkg: qemu-system-ppc, xemu: qemu-ppc-static },
|
||||
{ name: PPC64LE, xcc_pkg: gcc-powerpc64le-linux-gnu, xcc: powerpc64le-linux-gnu-gcc, xemu_pkg: qemu-system-ppc, xemu: qemu-ppc64le-static },
|
||||
{ name: S390X, xcc_pkg: gcc-s390x-linux-gnu, xcc: s390x-linux-gnu-gcc, xemu_pkg: qemu-system-s390x, xemu: qemu-s390x-static },
|
||||
{ name: MIPS, xcc_pkg: gcc-mips-linux-gnu, xcc: mips-linux-gnu-gcc, xemu_pkg: qemu-system-mips, xemu: qemu-mips-static },
|
||||
{ name: M68K, xcc_pkg: gcc-m68k-linux-gnu, xcc: m68k-linux-gnu-gcc, xemu_pkg: qemu-system-m68k, xemu: qemu-m68k-static },
|
||||
]
|
||||
env: # Set environment variables
|
||||
XCC: ${{ matrix.xcc }}
|
||||
XEMU: ${{ matrix.xemu }}
|
||||
steps:
|
||||
- uses: actions/checkout@v2 # https://github.com/actions/checkout
|
||||
- name: apt update & install
|
||||
run: |
|
||||
sudo apt-get update
|
||||
sudo apt-get install gcc-multilib g++-multilib qemu-utils qemu-user-static
|
||||
sudo apt-get install ${{ matrix.xcc_pkg }} ${{ matrix.xemu_pkg }}
|
||||
- name: Environment info
|
||||
run: |
|
||||
echo && which $XCC
|
||||
echo && $XCC --version
|
||||
echo && $XCC -v # Show built-in specs
|
||||
echo && which $XEMU
|
||||
echo && $XEMU --version
|
||||
- name: ARM
|
||||
if: ${{ matrix.name == 'ARM' }}
|
||||
run: |
|
||||
LDFLAGS="-static" CC=$XCC QEMU_SYS=$XEMU make clean check
|
||||
- name: ARM64
|
||||
if: ${{ matrix.name == 'ARM64' }}
|
||||
run: |
|
||||
LDFLAGS="-static" CC=$XCC QEMU_SYS=$XEMU make clean check
|
||||
- name: PPC
|
||||
if: ${{ matrix.name == 'PPC' }}
|
||||
run: |
|
||||
LDFLAGS="-static" CC=$XCC QEMU_SYS=$XEMU make clean check
|
||||
- name: PPC64LE
|
||||
if: ${{ matrix.name == 'PPC64LE' }}
|
||||
run: |
|
||||
LDFLAGS="-static" CC=$XCC QEMU_SYS=$XEMU make clean check
|
||||
- name: S390X
|
||||
if: ${{ matrix.name == 'S390X' }}
|
||||
run: |
|
||||
LDFLAGS="-static" CC=$XCC QEMU_SYS=$XEMU make clean check
|
||||
- name: MIPS
|
||||
if: ${{ matrix.name == 'MIPS' }}
|
||||
run: |
|
||||
LDFLAGS="-static" CC=$XCC QEMU_SYS=$XEMU make clean check
|
||||
- name: M68K
|
||||
if: ${{ matrix.name == 'M68K' }}
|
||||
continue-on-error: true # disable reporting errors (alignment issues)
|
||||
run: |
|
||||
LDFLAGS="-static" CC=$XCC QEMU_SYS=$XEMU make clean check
|
||||
|
||||
|
||||
# This test currently fails on Github Actions specifically.
|
||||
# No clear reason, as the same test works fine locally and on travisCI.
|
||||
# Possible reason : TTY emulation.
|
||||
# Note that the same test works fine locally and on travisCI.
|
||||
# This will have to be fixed before transfering the test to GA.
|
||||
# versions-compatibility:
|
||||
# runs-on: ubuntu-latest
|
||||
|
||||
+19
-28
@@ -78,12 +78,11 @@ size_t FSE_buildCTable_wksp(FSE_CTable* ct,
|
||||
U32 const maxSV1 = maxSymbolValue+1;
|
||||
|
||||
U16* cumul = (U16*)workSpace; /* size = maxSV1 */
|
||||
FSE_FUNCTION_TYPE* tableSymbol = (FSE_FUNCTION_TYPE*)(cumul + (maxSV1+1)); /* size = tableSize */
|
||||
BYTE* spread = tableSymbol + tableSize; /* size = tableSize */
|
||||
FSE_FUNCTION_TYPE* const tableSymbol = (FSE_FUNCTION_TYPE*)(cumul + (maxSV1+1)); /* size = tableSize */
|
||||
|
||||
U32 highThreshold = tableSize-1;
|
||||
|
||||
if ((size_t)workSpace & 3) return ERROR(GENERIC); /* Must be 4 byte aligned */
|
||||
assert(((size_t)workSpace & 1) == 0); /* Must be 2 bytes-aligned */
|
||||
if (FSE_BUILD_CTABLE_WORKSPACE_SIZE(maxSymbolValue, tableLog) > wkspSize) return ERROR(tableLog_tooLarge);
|
||||
/* CTable header */
|
||||
tableU16[-2] = (U16) tableLog;
|
||||
@@ -105,7 +104,9 @@ size_t FSE_buildCTable_wksp(FSE_CTable* ct,
|
||||
cumul[u] = cumul[u-1] + 1;
|
||||
tableSymbol[highThreshold--] = (FSE_FUNCTION_TYPE)(u-1);
|
||||
} else {
|
||||
cumul[u] = cumul[u-1] + normalizedCounter[u-1];
|
||||
assert(normalizedCounter[u-1] >= 0);
|
||||
cumul[u] = cumul[u-1] + (U16)normalizedCounter[u-1];
|
||||
assert(cumul[u] >= cumul[u-1]); /* no overflow */
|
||||
} }
|
||||
cumul[maxSV1] = (U16)(tableSize+1);
|
||||
}
|
||||
@@ -115,8 +116,8 @@ size_t FSE_buildCTable_wksp(FSE_CTable* ct,
|
||||
/* Case for no low prob count symbols. Lay down 8 bytes at a time
|
||||
* to reduce branch misses since we are operating on a small block
|
||||
*/
|
||||
{
|
||||
U64 const add = 0x0101010101010101ull;
|
||||
BYTE* const spread = tableSymbol + tableSize; /* size = tableSize */
|
||||
{ U64 const add = 0x0101010101010101ull;
|
||||
size_t pos = 0;
|
||||
U64 sv = 0;
|
||||
U32 s;
|
||||
@@ -127,15 +128,15 @@ size_t FSE_buildCTable_wksp(FSE_CTable* ct,
|
||||
for (i = 8; i < n; i += 8) {
|
||||
MEM_write64(spread + pos + i, sv);
|
||||
}
|
||||
pos += n;
|
||||
assert(n>=0);
|
||||
pos += (size_t)n;
|
||||
}
|
||||
}
|
||||
/* Spread symbols across the table. Lack of lowprob symbols means that
|
||||
* we don't need variable sized inner loop, so we can unroll the loop and
|
||||
* reduce branch misses.
|
||||
*/
|
||||
{
|
||||
size_t position = 0;
|
||||
{ size_t position = 0;
|
||||
size_t s;
|
||||
size_t const unroll = 2; /* Experimentally determined optimal unroll */
|
||||
assert(tableSize % unroll == 0); /* FSE_MIN_TABLELOG is 5 */
|
||||
@@ -147,7 +148,7 @@ size_t FSE_buildCTable_wksp(FSE_CTable* ct,
|
||||
}
|
||||
position = (position + (unroll * step)) & tableMask;
|
||||
}
|
||||
assert(position == 0);
|
||||
assert(position == 0); /* Must have initialized all positions */
|
||||
}
|
||||
} else {
|
||||
U32 position = 0;
|
||||
@@ -161,7 +162,6 @@ size_t FSE_buildCTable_wksp(FSE_CTable* ct,
|
||||
while (position > highThreshold)
|
||||
position = (position + step) & tableMask; /* Low proba area */
|
||||
} }
|
||||
|
||||
assert(position==0); /* Must have initialized all positions */
|
||||
}
|
||||
|
||||
@@ -185,16 +185,17 @@ size_t FSE_buildCTable_wksp(FSE_CTable* ct,
|
||||
case -1:
|
||||
case 1:
|
||||
symbolTT[s].deltaNbBits = (tableLog << 16) - (1<<tableLog);
|
||||
symbolTT[s].deltaFindState = total - 1;
|
||||
assert(total <= INT_MAX);
|
||||
symbolTT[s].deltaFindState = (int)(total - 1);
|
||||
total ++;
|
||||
break;
|
||||
default :
|
||||
{
|
||||
U32 const maxBitsOut = tableLog - BIT_highbit32 (normalizedCounter[s]-1);
|
||||
U32 const minStatePlus = normalizedCounter[s] << maxBitsOut;
|
||||
assert(normalizedCounter[s] > 1);
|
||||
{ U32 const maxBitsOut = tableLog - BIT_highbit32 ((U32)normalizedCounter[s]-1);
|
||||
U32 const minStatePlus = (U32)normalizedCounter[s] << maxBitsOut;
|
||||
symbolTT[s].deltaNbBits = (maxBitsOut << 16) - minStatePlus;
|
||||
symbolTT[s].deltaFindState = total - normalizedCounter[s];
|
||||
total += normalizedCounter[s];
|
||||
symbolTT[s].deltaFindState = (int)(total - (unsigned)normalizedCounter[s]);
|
||||
total += (unsigned)normalizedCounter[s];
|
||||
} } } }
|
||||
|
||||
#if 0 /* debug : symbol costs */
|
||||
@@ -205,26 +206,16 @@ size_t FSE_buildCTable_wksp(FSE_CTable* ct,
|
||||
symbol, normalizedCounter[symbol],
|
||||
FSE_getMaxNbBits(symbolTT, symbol),
|
||||
(double)FSE_bitCost(symbolTT, tableLog, symbol, 8) / 256);
|
||||
}
|
||||
}
|
||||
} }
|
||||
#endif
|
||||
|
||||
return 0;
|
||||
}
|
||||
|
||||
#ifndef ZSTD_NO_UNUSED_FUNCTIONS
|
||||
size_t FSE_buildCTable(FSE_CTable* ct, const short* normalizedCounter, unsigned maxSymbolValue, unsigned tableLog)
|
||||
{
|
||||
FSE_FUNCTION_TYPE tableSymbol[FSE_MAX_TABLESIZE]; /* memset() is not necessary, even if static analyzer complain about it */
|
||||
return FSE_buildCTable_wksp(ct, normalizedCounter, maxSymbolValue, tableLog, tableSymbol, sizeof(tableSymbol));
|
||||
}
|
||||
#endif
|
||||
|
||||
|
||||
|
||||
#ifndef FSE_COMMONDEFS_ONLY
|
||||
|
||||
|
||||
/*-**************************************************************
|
||||
* FSE NCount encoding
|
||||
****************************************************************/
|
||||
|
||||
@@ -275,10 +275,11 @@ ZSTD_buildCTable(void* dst, size_t dstCapacity,
|
||||
assert(nbSeq_1 > 1);
|
||||
assert(entropyWorkspaceSize >= sizeof(ZSTD_BuildCTableWksp));
|
||||
(void)entropyWorkspaceSize;
|
||||
FORWARD_IF_ERROR(FSE_normalizeCount(wksp->norm, tableLog, count, nbSeq_1, max, ZSTD_useLowProbCount(nbSeq_1)), "");
|
||||
{ size_t const NCountSize = FSE_writeNCount(op, oend - op, wksp->norm, max, tableLog); /* overflow protected */
|
||||
FORWARD_IF_ERROR(FSE_normalizeCount(wksp->norm, tableLog, count, nbSeq_1, max, ZSTD_useLowProbCount(nbSeq_1)), "FSE_normalizeCount failed");
|
||||
assert(oend >= op);
|
||||
{ size_t const NCountSize = FSE_writeNCount(op, (size_t)(oend - op), wksp->norm, max, tableLog); /* overflow protected */
|
||||
FORWARD_IF_ERROR(NCountSize, "FSE_writeNCount failed");
|
||||
FORWARD_IF_ERROR(FSE_buildCTable_wksp(nextCTable, wksp->norm, max, tableLog, wksp->wksp, sizeof(wksp->wksp)), "");
|
||||
FORWARD_IF_ERROR(FSE_buildCTable_wksp(nextCTable, wksp->norm, max, tableLog, wksp->wksp, sizeof(wksp->wksp)), "FSE_buildCTable_wksp failed");
|
||||
return NCountSize;
|
||||
}
|
||||
}
|
||||
|
||||
+3
-3
@@ -156,7 +156,7 @@ endif
|
||||
|
||||
# zlib detection
|
||||
NO_ZLIB_MSG := ==> no zlib, building zstd without .gz support
|
||||
HAVE_ZLIB := $(shell printf '$(NUM_SYMBOL)include <zlib.h>\nint main(void) { return 0; }' > have_zlib.c && $(CC) $(FLAGS) -o have_zlib$(EXT) have_zlib.c -lz 2> $(VOID) && rm have_zlib$(EXT) && echo 1 || echo 0; rm have_zlib.c)
|
||||
HAVE_ZLIB ?= $(shell printf '$(NUM_SYMBOL)include <zlib.h>\nint main(void) { return 0; }' > have_zlib.c && $(CC) $(FLAGS) -o have_zlib$(EXT) have_zlib.c -lz 2> $(VOID) && rm have_zlib$(EXT) && echo 1 || echo 0; rm have_zlib.c)
|
||||
ifeq ($(HAVE_ZLIB), 1)
|
||||
ZLIB_MSG := ==> building zstd with .gz compression support
|
||||
ZLIBCPP = -DZSTD_GZCOMPRESS -DZSTD_GZDECOMPRESS
|
||||
@@ -167,7 +167,7 @@ endif
|
||||
|
||||
# lzma detection
|
||||
NO_LZMA_MSG := ==> no liblzma, building zstd without .xz/.lzma support
|
||||
HAVE_LZMA := $(shell printf '$(NUM_SYMBOL)include <lzma.h>\nint main(void) { return 0; }' > have_lzma.c && $(CC) $(FLAGS) -o have_lzma$(EXT) have_lzma.c -llzma 2> $(VOID) && rm have_lzma$(EXT) && echo 1 || echo 0; rm have_lzma.c)
|
||||
HAVE_LZMA ?= $(shell printf '$(NUM_SYMBOL)include <lzma.h>\nint main(void) { return 0; }' > have_lzma.c && $(CC) $(FLAGS) -o have_lzma$(EXT) have_lzma.c -llzma 2> $(VOID) && rm have_lzma$(EXT) && echo 1 || echo 0; rm have_lzma.c)
|
||||
ifeq ($(HAVE_LZMA), 1)
|
||||
LZMA_MSG := ==> building zstd with .xz/.lzma compression support
|
||||
LZMACPP = -DZSTD_LZMACOMPRESS -DZSTD_LZMADECOMPRESS
|
||||
@@ -178,7 +178,7 @@ endif
|
||||
|
||||
# lz4 detection
|
||||
NO_LZ4_MSG := ==> no liblz4, building zstd without .lz4 support
|
||||
HAVE_LZ4 := $(shell printf '$(NUM_SYMBOL)include <lz4frame.h>\n$(NUM_SYMBOL)include <lz4.h>\nint main(void) { return 0; }' > have_lz4.c && $(CC) $(FLAGS) -o have_lz4$(EXT) have_lz4.c -llz4 2> $(VOID) && rm have_lz4$(EXT) && echo 1 || echo 0; rm have_lz4.c)
|
||||
HAVE_LZ4 ?= $(shell printf '$(NUM_SYMBOL)include <lz4frame.h>\n$(NUM_SYMBOL)include <lz4.h>\nint main(void) { return 0; }' > have_lz4.c && $(CC) $(FLAGS) -o have_lz4$(EXT) have_lz4.c -llz4 2> $(VOID) && rm have_lz4$(EXT) && echo 1 || echo 0; rm have_lz4.c)
|
||||
ifeq ($(HAVE_LZ4), 1)
|
||||
LZ4_MSG := ==> building zstd with .lz4 compression support
|
||||
LZ4CPP = -DZSTD_LZ4COMPRESS -DZSTD_LZ4DECOMPRESS
|
||||
|
||||
+2
-1
@@ -166,7 +166,8 @@ if [ -z "${DATAGEN_BIN}" ]; then
|
||||
DATAGEN_BIN="$TESTDIR/datagen"
|
||||
fi
|
||||
|
||||
ZSTD_BIN="$EXE_PREFIX$ZSTD_BIN"
|
||||
# Why was this line here ? Generates a strange ZSTD_BIN when EXE_PREFIX is non empty
|
||||
# ZSTD_BIN="$EXE_PREFIX$ZSTD_BIN"
|
||||
|
||||
# assertions
|
||||
[ -n "$ZSTD_BIN" ] || die "zstd not found at $ZSTD_BIN! \n Please define ZSTD_BIN pointing to the zstd binary. You might also consider rebuilding zstd follwing the instructions in README.md"
|
||||
|
||||
Reference in New Issue
Block a user