2020-07-30 17:54:11 +00:00
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package blake3
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2020-08-04 22:13:57 +00:00
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import "unsafe"
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2020-07-30 17:54:11 +00:00
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//go:generate go run avo/gen.go -out blake3_amd64.s
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//go:noescape
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2020-08-04 22:13:57 +00:00
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func compressChunksAVX512(cvs *[16][8]uint32, buf *[16 * chunkSize]byte, key *[8]uint32, counter uint64, flags uint32)
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//go:noescape
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func compressChunksAVX2(cvs *[8][8]uint32, buf *[8 * chunkSize]byte, key *[8]uint32, counter uint64, flags uint32)
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//go:noescape
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func compressBlocksAVX512(out *[1024]byte, block *[16]uint32, cv *[8]uint32, counter uint64, blockLen uint32, flags uint32)
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2020-07-30 17:54:11 +00:00
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2020-08-02 19:09:07 +00:00
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//go:noescape
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func compressBlocksAVX2(out *[512]byte, msgs *[16]uint32, cv *[8]uint32, counter uint64, blockLen uint32, flags uint32)
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2020-08-04 22:13:57 +00:00
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//go:noescape
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func compressParentsAVX2(parents *[8][8]uint32, cvs *[16][8]uint32, key *[8]uint32, flags uint32)
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2020-07-30 17:54:11 +00:00
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func compressNode(n node) (out [16]uint32) {
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compressNodeGeneric(&out, n)
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return
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}
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2020-08-04 22:13:57 +00:00
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func compressBufferAVX512(buf *[maxSIMD * chunkSize]byte, buflen int, key *[8]uint32, counter uint64, flags uint32) node {
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var cvs [maxSIMD][8]uint32
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compressChunksAVX512(&cvs, buf, key, counter, flags)
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numChunks := uint64(buflen / chunkSize)
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if buflen%chunkSize != 0 {
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// use non-asm for remainder
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partialChunk := buf[buflen-buflen%chunkSize : buflen]
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cvs[numChunks] = chainingValue(compressChunk(partialChunk, key, counter+numChunks, flags))
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numChunks++
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}
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return mergeSubtrees(&cvs, numChunks, key, flags)
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}
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func compressBufferAVX2(buf *[maxSIMD * chunkSize]byte, buflen int, key *[8]uint32, counter uint64, flags uint32) node {
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var cvs [maxSIMD][8]uint32
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cvHalves := (*[2][8][8]uint32)(unsafe.Pointer(&cvs))
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bufHalves := (*[2][8 * chunkSize]byte)(unsafe.Pointer(buf))
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compressChunksAVX2(&cvHalves[0], &bufHalves[0], key, counter, flags)
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2020-07-30 17:54:11 +00:00
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numChunks := uint64(buflen / chunkSize)
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2020-08-04 22:13:57 +00:00
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if numChunks > 8 {
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compressChunksAVX2(&cvHalves[1], &bufHalves[1], key, counter+8, flags)
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}
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2020-07-30 17:54:11 +00:00
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if buflen%chunkSize != 0 {
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// use non-asm for remainder
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partialChunk := buf[buflen-buflen%chunkSize : buflen]
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cvs[numChunks] = chainingValue(compressChunk(partialChunk, key, counter+numChunks, flags))
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numChunks++
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}
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2020-08-04 22:13:57 +00:00
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return mergeSubtrees(&cvs, numChunks, key, flags)
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2020-07-30 17:54:11 +00:00
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}
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2020-08-04 22:13:57 +00:00
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func compressBuffer(buf *[maxSIMD * chunkSize]byte, buflen int, key *[8]uint32, counter uint64, flags uint32) node {
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2020-07-30 17:54:11 +00:00
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switch {
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2020-08-04 22:13:57 +00:00
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case haveAVX512 && buflen >= chunkSize*2:
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return compressBufferAVX512(buf, buflen, key, counter, flags)
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case haveAVX2 && buflen >= chunkSize*2:
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return compressBufferAVX2(buf, buflen, key, counter, flags)
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2020-07-30 17:54:11 +00:00
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default:
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return compressBufferGeneric(buf, buflen, key, counter, flags)
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}
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}
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func compressChunk(chunk []byte, key *[8]uint32, counter uint64, flags uint32) node {
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n := node{
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cv: *key,
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counter: counter,
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blockLen: blockSize,
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flags: flags | flagChunkStart,
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}
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blockBytes := (*[64]byte)(unsafe.Pointer(&n.block))[:]
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for len(chunk) > blockSize {
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copy(blockBytes, chunk)
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chunk = chunk[blockSize:]
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n.cv = chainingValue(n)
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n.flags &^= flagChunkStart
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}
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// pad last block with zeros
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n.block = [16]uint32{}
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copy(blockBytes, chunk)
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n.blockLen = uint32(len(chunk))
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n.flags |= flagChunkEnd
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return n
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}
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func hashBlock(out *[64]byte, buf []byte) {
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var block [16]uint32
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copy((*[64]byte)(unsafe.Pointer(&block))[:], buf)
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compressNodeGeneric((*[16]uint32)(unsafe.Pointer(out)), node{
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cv: iv,
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block: block,
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blockLen: uint32(len(buf)),
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flags: flagChunkStart | flagChunkEnd | flagRoot,
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})
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}
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2020-08-02 19:09:07 +00:00
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2020-08-04 22:13:57 +00:00
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func compressBlocks(out *[maxSIMD * blockSize]byte, n node) {
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2020-08-02 19:09:07 +00:00
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switch {
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2020-08-04 22:13:57 +00:00
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case haveAVX512:
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compressBlocksAVX512(out, &n.block, &n.cv, n.counter, n.blockLen, n.flags)
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case haveAVX2:
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outs := (*[2][512]byte)(unsafe.Pointer(out))
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compressBlocksAVX2(&outs[0], &n.block, &n.cv, n.counter, n.blockLen, n.flags)
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compressBlocksAVX2(&outs[1], &n.block, &n.cv, n.counter+8, n.blockLen, n.flags)
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2020-08-02 19:09:07 +00:00
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default:
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2020-08-04 22:13:57 +00:00
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outs := (*[maxSIMD][64]byte)(unsafe.Pointer(out))
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compressBlocksGeneric(outs, n)
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2020-08-02 19:09:07 +00:00
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}
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2020-08-04 22:13:57 +00:00
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}
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2020-08-02 19:09:07 +00:00
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2020-08-04 22:13:57 +00:00
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func mergeSubtrees(cvs *[maxSIMD][8]uint32, numCVs uint64, key *[8]uint32, flags uint32) node {
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if !haveAVX2 {
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return mergeSubtreesGeneric(cvs, numCVs, key, flags)
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}
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for numCVs > 2 {
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if numCVs%2 == 0 {
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compressParentsAVX2((*[8][8]uint32)(unsafe.Pointer(cvs)), cvs, key, flags)
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} else {
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keep := cvs[numCVs-1]
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compressParentsAVX2((*[8][8]uint32)(unsafe.Pointer(cvs)), cvs, key, flags)
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cvs[numCVs/2] = keep
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numCVs++
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}
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numCVs /= 2
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}
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return parentNode(cvs[0], cvs[1], *key, flags)
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2020-08-02 19:09:07 +00:00
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}
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func wordsToBytes(words [16]uint32, block *[64]byte) {
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*block = *(*[64]byte)(unsafe.Pointer(&words))
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}
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