compression, fixes #6
This commit is contained in:
parent
cfa7ccd1e0
commit
db8ae1ee37
2
.merlin
2
.merlin
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@ -6,4 +6,4 @@ S provision
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B _build/**
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PKG topkg logs ipaddr x509 tls rresult bos lwt cmdliner hex cstruct.ppx duration
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PKG ptime ptime.clock.os ipaddr.unix
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PKG ptime ptime.clock.os ipaddr.unix decompress
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7
_tags
7
_tags
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@ -3,16 +3,17 @@ true : warn(+A-44)
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true : package(rresult logs ipaddr x509 tls bos hex ptime ptime.clock.os astring duration cstruct)
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"src" : include
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<src/vmm_compress.ml>: package(decompress)
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<src/vmm_wire.{ml,mli}>: package(ppx_cstruct)
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<src/vmm_asn.{ml,mli}>: package(asn1-combinators)
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<src/vmm_lwt.{ml,mli}>: package(lwt)
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<src/vmm_tls.{ml,mli}>: package(lwt tls.lwt)
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<app/*>: package(lwt.unix cmdliner logs.fmt fmt.cli logs.cli fmt.tty lwt ipaddr.unix)
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<app/*>: package(lwt.unix cmdliner logs.fmt fmt.cli logs.cli fmt.tty lwt ipaddr.unix decompress)
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<app/vmm_client.{ml,native,byte}>: package(nocrypto tls.lwt nocrypto.lwt)
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<app/vmmd.{ml,native,byte}>: package(tls.lwt)
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<app/vmm_prometheus_stats.{ml,native,byte}>: package(nocrypto tls.lwt nocrypto.lwt)
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<provision/*>: package(cmdliner logs.fmt fmt.cli logs.cli fmt.tty asn1-combinators nocrypto.unix lwt)
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<provision/*>: package(cmdliner logs.fmt fmt.cli logs.cli fmt.tty asn1-combinators nocrypto.unix lwt decompress)
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<stats/vmm_stats_lwt.{ml,native,byte}>: link_vmm_stats, package(cmdliner logs.fmt fmt.cli logs.cli fmt.tty lwt.unix lwt)
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<stats/vmm_stats_lwt.{ml,native,byte}>: link_vmm_stats, package(cmdliner logs.fmt fmt.cli logs.cli fmt.tty lwt.unix lwt decompress)
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1
opam
1
opam
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@ -27,6 +27,7 @@ depends: [
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"nocrypto"
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"asn1-combinators" {>= "0.2.0"}
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"duration"
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"decompress" {>= "0.7"}
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]
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build: [
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2
pkg/META
2
pkg/META
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@ -1,6 +1,6 @@
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description = "VM Manager"
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version = "%%VERSION_NUM%%"
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requires = "rresult logs ipaddr x509 tls bos hex ptime ptime.clock.os astring duration asn1-combinators lwt tls.lwt"
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requires = "rresult logs ipaddr x509 tls bos hex ptime ptime.clock.os astring duration asn1-combinators lwt tls.lwt decompress"
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archive(byte) = "vmm.cma"
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archive(native) = "vmm.cmxa"
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plugin(byte) = "vmm.cma"
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@ -6,7 +6,7 @@ open Rresult.R.Infix
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open Vmm_asn
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let vm_csr key name image cpu mem args block net force =
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let vm_csr key name image cpu mem args block net force compression =
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let block = match block with
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| None -> []
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| Some x -> [ (false, `Unsupported (Oid.block_device, string_to_cstruct x)) ]
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@ -18,24 +18,30 @@ let vm_csr key name image cpu mem args block net force =
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| xs -> [ (false, `Unsupported (Oid.network, strings_to_cstruct xs)) ]
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and cmd = if force then `Force_create else `Create
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in
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let image = match compression with
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| 0 -> image_to_cstruct (`Ukvm_amd64, image)
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| level ->
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let img = Vmm_compress.compress ~level (Cstruct.to_string image) in
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image_to_cstruct (`Ukvm_amd64_compressed, Cstruct.of_string img)
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in
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let exts =
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[ (false, `Unsupported (Oid.version, version_to_cstruct asn_version)) ;
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(false, `Unsupported (Oid.cpuid, int_to_cstruct cpu)) ;
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(false, `Unsupported (Oid.memory, int_to_cstruct mem)) ;
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(false, `Unsupported (Oid.vmimage, image_to_cstruct (`Ukvm_amd64, image))) ;
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(false, `Unsupported (Oid.vmimage, image)) ;
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(false, `Unsupported (Oid.permissions, permissions_to_cstruct [ cmd ])) ;
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] @ block @ arg @ net
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and name = [ `CN name ]
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in
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X509.CA.request name ~extensions:[`Extensions exts] key
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let jump _ name key image mem cpu args block net force =
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let jump _ name key image mem cpu args block net force compression =
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Nocrypto_entropy_unix.initialize () ;
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match
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priv_key key name >>= fun key ->
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(Bos.OS.File.read (Fpath.v image) >>= fun s ->
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Ok (Cstruct.of_string s)) >>= fun image ->
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let csr = vm_csr key name image cpu mem args block net force in
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let csr = vm_csr key name image cpu mem args block net force compression in
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let enc = X509.Encoding.Pem.Certificate_signing_request.to_pem_cstruct1 csr in
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Bos.OS.File.write Fpath.(v name + ".req") (Cstruct.to_string enc)
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with
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@ -68,8 +74,12 @@ let force =
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let doc = "Force creation (destroy VM with same name if it exists)" in
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Arg.(value & flag & info [ "force" ] ~doc)
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let compress_level =
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let doc = "Compression level (0 for no compression)" in
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Arg.(value & opt int 4 & info [ "compression-level" ] ~doc)
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let cmd =
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Term.(ret (const jump $ setup_log $ nam $ key $ image $ mem $ cpu $ args $ block $ net $ force)),
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Term.(ret (const jump $ setup_log $ nam $ key $ image $ mem $ cpu $ args $ block $ net $ force $ compress_level)),
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Term.info "vmm_req_vm" ~version:"%%VERSION_NUM%%"
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let () = match Term.eval cmd with `Ok () -> exit 0 | _ -> exit 1
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@ -103,14 +103,17 @@ let image =
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let f = function
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| `C1 x -> `Ukvm_amd64, x
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| `C2 x -> `Ukvm_arm64, x
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| `C3 x -> `Ukvm_amd64_compressed, x
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and g = function
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| `Ukvm_amd64, x -> `C1 x
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| `Ukvm_arm64, x -> `C2 x
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| `Ukvm_amd64_compressed, x -> `C3 x
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in
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Asn.S.map f g @@
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Asn.S.(choice2
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Asn.S.(choice3
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(explicit 0 octet_string)
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(explicit 1 octet_string))
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(explicit 1 octet_string)
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(explicit 2 octet_string))
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let image_of_cstruct, image_to_cstruct = projections_of image
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@ -125,7 +125,12 @@ let prepare vm =
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let tmpfile = tmpfile vm in
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(match vm.vmimage with
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| `Ukvm_amd64, blob -> Ok blob
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| _ -> Error (`Msg "no amd64 ukvm image found")) >>= fun image ->
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| `Ukvm_amd64_compressed, blob ->
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begin match Vmm_compress.uncompress (Cstruct.to_string blob) with
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| Ok blob -> Ok (Cstruct.of_string blob)
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| Error () -> Error (`Msg "failed to uncompress")
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end
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| `Ukvm_arm64, _ -> Error (`Msg "no amd64 ukvm image found")) >>= fun image ->
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Bos.OS.File.write (image_fn tmpfile) (Cstruct.to_string image) >>= fun () ->
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let fifo = fifo_fn tmpfile in
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(match fifo_exists fifo with
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128
src/vmm_compress.ml
Normal file
128
src/vmm_compress.ml
Normal file
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@ -0,0 +1,128 @@
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(* copied n 2018-03-18 from github.com:mirage/decompress.git (MIT licensed) at
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db86cf8a57ab1b4fb21e10f99093bdae425d48db by Hannes Mehnert
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TODO: should use Deflate/Inflate.bigstring instead of bytes (to avoid
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unnecessary copies)
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*)
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open Decompress
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(* Keep in your mind, this is an easy example of Decompress but not efficient.
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Don't copy/paste this code in a productive environment.
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*)
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let compress ?(level = 4) data =
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let input_buffer = Bytes.create 0xFFFF in
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(* We need to allocate an input buffer, the size of this buffer is important.
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In fact, the Lz77 algorithm can find a pattern (and compress) only on
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this input buffer. So if the input buffer is small, the algorithm has no
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chance to find many patterns.
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If it is big, the algorithm can find a far pattern and keep this pattern
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as long as it tries to compress. The optimal size seems to be [1 << 15]
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bytes (a bigger buffer is not necessary because the distance can be upper
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than [1 << 15]).
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*)
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let output_buffer = Bytes.create 0xFFFF in
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(* We need to allocate an output buffer, is like you can. it's depends your
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capabilities of your writing.
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*)
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let pos = ref 0 in
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let res = Buffer.create (String.length data) in
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(* The buffer is not a good idea. In fact, we can have a memory problem with
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that (like if the output is too big). You need to keep in your mind that is
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insecure to let a buffer to grow automatically (an attacker can use this
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behaviour).
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*)
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(* This is the same interface as [caml-zip]. A refiller and a flusher. The
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refiller send you the maximum byte than you can [blit] inside the input
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buffer.
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So, if the second argument is [Some max], it's mandatory to respect that,
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otherwise, you lost something. In the other case, you can blit the maximum
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that what you can.
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The flusher send you the output buffer and how many byte Decompress wrote
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inside. The offset for this buffer is always [0]. Then, you need to send
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how many bytes are free in the output buffer (and the common is that all
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is free).
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One argument (optionnal) is missing, it's the [meth]. This argument is
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used to limit the memory used by the state internally. In fact, Decompress
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(and `zlib`) need to keep all of your input to calculate at the end the
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frequencies and the dictionarie. So if you want to compress a big file,
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may be you will have a memory problem (because, all your file will be
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present in the memory). So you can specify a method to flush the internal
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memory (with SYNC, PARTIAL or FULL - see the documentation about that) at
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each [n] bytes, like: ~meth:(PARTIAL, 4096) flushes the internal memory
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when we compute 4096 bytes of your input.
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If [meth] is specified, the refiller has a [Some] as the second parameter.
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Otherwise, it is [None].
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*)
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match
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Deflate.bytes
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input_buffer output_buffer
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(fun input_buffer -> function
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| Some max ->
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let n = min max (min 0xFFFF (String.length data - !pos)) in
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Bytes.blit_string data !pos input_buffer 0 n;
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pos := !pos + n;
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n
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| None ->
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let n = min 0xFFFF (String.length data - !pos) in
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Bytes.blit_string data !pos input_buffer 0 n;
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pos := !pos + n;
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n)
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(fun output_buffer len ->
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Buffer.add_subbytes res output_buffer 0 len;
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0xFFFF)
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(Deflate.default ~proof:B.proof_bytes level)
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(* We can specify the level of the compression, see the documentation to know
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what we use for each level. The default is 4.
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*)
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with
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| Ok _ -> Buffer.contents res
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| Error e ->
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Logs.err (fun m -> m "error %a while compressing" Deflate.pp_error e) ;
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invalid_arg "cannot compress"
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let uncompress data =
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let input_buffer = Bytes.create 0xFFFF in
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(* We need to allocate an input buffer. it's depends your capabilities of
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your reading.
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*)
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let output_buffer = Bytes.create 0xFFFF in
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(* Same as [compress]. *)
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let window = Window.create ~proof:B.proof_bytes in
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(* We allocate a window. We let the user to do that to reuse the window if
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it's needed. In fact, the window is a big buffer ([size = (1 << 15)]) and
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allocate this buffer costs.
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So in this case, we decompress only one time but if you want to decompress
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some flows, you can reuse this window after a [Window.reset].
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*)
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let pos = ref 0 in
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let res = Buffer.create (String.length data) in
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match
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Inflate.bytes
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input_buffer output_buffer
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(* Same logic as [compress]. *)
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(fun input_buffer ->
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let n = min 0xFFFF (String.length data - !pos) in
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Bytes.blit_string data !pos input_buffer 0 n;
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pos := !pos + n;
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n)
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(fun output_buffer len ->
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Buffer.add_subbytes res output_buffer 0 len;
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0xFFFF)
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(Inflate.default window)
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with
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| Ok _ -> Ok (Buffer.contents res)
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| Error exn ->
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Logs.err (fun m -> m "error %a while uncompressing" Inflate.pp_error exn) ;
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Error ()
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@ -84,10 +84,11 @@ let cmd_allowed permissions cmd =
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in
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List.mem perm permissions
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type vmtype = [ `Ukvm_amd64 | `Ukvm_arm64 ]
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type vmtype = [ `Ukvm_amd64 | `Ukvm_arm64 | `Ukvm_amd64_compressed ]
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let pp_vmtype ppf = function
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| `Ukvm_amd64 -> Fmt.pf ppf "ukvm-amd64"
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| `Ukvm_amd64_compressed -> Fmt.pf ppf "ukvm-amd64-compressed"
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| `Ukvm_arm64 -> Fmt.pf ppf "ukvm-arm64"
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type id = string list
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