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6 Commits
Author SHA1 Message Date
Vitaliy Filippov 8810eae8fb Release 0.8.6
Important fixes:

- Fix possibly incorrect EC parity chunk updates with EC n+k, k > 1 and when
  the first parity chunk is missing

Minor fixes and improvements:

- Fix incorrect EC free space statistics in vitastor-cli df output
- Speedup vitastor-cli startup in clusters with RDMA
- Remove unused PG "peered" state (previously used to update PG epoch)
- Use sfdisk with just --json in vitastor-disk (--dump --json isn't needed)
- Allow trailing comma in sfdisk output (fixes sfdisk 2.36 compatibility)
- Slightly improve RDMA send/receive code
- Reduce RDMA memory consumption by default (rdma_max_recv/send = 16/8)
- Use vitastor-cli instead of direct etcd interaction in the CSI driver
2023-02-28 11:18:48 +03:00
Vitaliy Filippov c1365f46c9 Use vitastor-cli instead of direct etcd interaction in the CSI driver 2023-02-28 11:02:50 +03:00
Vitaliy Filippov 14d6acbcba Set default rdma_max_recv/send to 16/8, fix documentation 2023-02-28 11:00:56 +03:00
Vitaliy Filippov 1e307069bc Fix missing parity chunk calculation for EC n+k, k > 1 and first parity chunk missing 2023-02-28 02:40:19 +03:00
Vitaliy Filippov c3e80abad7 Allow to send more than 1 operation at a time 2023-02-26 02:01:04 +03:00
Vitaliy Filippov 138ffe4032 Reuse incoming RDMA buffers 2023-02-26 00:55:01 +03:00
27 changed files with 246 additions and 309 deletions
+1 -1
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@@ -2,6 +2,6 @@ cmake_minimum_required(VERSION 2.8)
project(vitastor) project(vitastor)
set(VERSION "0.8.5") set(VERSION "0.8.6")
add_subdirectory(src) add_subdirectory(src)
+1 -1
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@@ -1,4 +1,4 @@
VERSION ?= v0.8.5 VERSION ?= v0.8.6
all: build push all: build push
+1 -1
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@@ -49,7 +49,7 @@ spec:
capabilities: capabilities:
add: ["SYS_ADMIN"] add: ["SYS_ADMIN"]
allowPrivilegeEscalation: true allowPrivilegeEscalation: true
image: vitalif/vitastor-csi:v0.8.5 image: vitalif/vitastor-csi:v0.8.6
args: args:
- "--node=$(NODE_ID)" - "--node=$(NODE_ID)"
- "--endpoint=$(CSI_ENDPOINT)" - "--endpoint=$(CSI_ENDPOINT)"
+1 -1
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@@ -116,7 +116,7 @@ spec:
privileged: true privileged: true
capabilities: capabilities:
add: ["SYS_ADMIN"] add: ["SYS_ADMIN"]
image: vitalif/vitastor-csi:v0.8.5 image: vitalif/vitastor-csi:v0.8.6
args: args:
- "--node=$(NODE_ID)" - "--node=$(NODE_ID)"
- "--endpoint=$(CSI_ENDPOINT)" - "--endpoint=$(CSI_ENDPOINT)"
+1 -1
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@@ -5,7 +5,7 @@ package vitastor
const ( const (
vitastorCSIDriverName = "csi.vitastor.io" vitastorCSIDriverName = "csi.vitastor.io"
vitastorCSIDriverVersion = "0.8.5" vitastorCSIDriverVersion = "0.8.6"
) )
// Config struct fills the parameters of request or user input // Config struct fills the parameters of request or user input
+44 -191
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@@ -10,7 +10,6 @@ import (
"bytes" "bytes"
"strconv" "strconv"
"time" "time"
"fmt"
"os" "os"
"os/exec" "os/exec"
"io/ioutil" "io/ioutil"
@@ -21,8 +20,6 @@ import (
"google.golang.org/grpc/codes" "google.golang.org/grpc/codes"
"google.golang.org/grpc/status" "google.golang.org/grpc/status"
"go.etcd.io/etcd/clientv3"
"github.com/container-storage-interface/spec/lib/go/csi" "github.com/container-storage-interface/spec/lib/go/csi"
) )
@@ -114,6 +111,34 @@ func GetConnectionParams(params map[string]string) (map[string]string, []string,
return ctxVars, etcdUrl, etcdPrefix return ctxVars, etcdUrl, etcdPrefix
} }
func invokeCLI(ctxVars map[string]string, args []string) ([]byte, error)
{
if (ctxVars["etcdUrl"] != "")
{
args = append(args, "--etcd_address", ctxVars["etcdUrl"])
}
if (ctxVars["etcdPrefix"] != "")
{
args = append(args, "--etcd_prefix", ctxVars["etcdPrefix"])
}
if (ctxVars["configPath"] != "")
{
args = append(args, "--config_path", ctxVars["configPath"])
}
c := exec.Command("/usr/bin/vitastor-cli", args...)
var stdout, stderr bytes.Buffer
c.Stdout = &stdout
c.Stderr = &stderr
err := c.Run()
stderrStr := string(stderr.Bytes())
if (err != nil)
{
klog.Errorf("vitastor-cli %s failed: %s, status %s\n", strings.Join(args, " "), stderrStr, err)
return nil, status.Error(codes.Internal, stderrStr+" (status "+err.Error()+")")
}
return stdout.Bytes(), nil
}
// Create the volume // Create the volume
func (cs *ControllerServer) CreateVolume(ctx context.Context, req *csi.CreateVolumeRequest) (*csi.CreateVolumeResponse, error) func (cs *ControllerServer) CreateVolume(ctx context.Context, req *csi.CreateVolumeRequest) (*csi.CreateVolumeResponse, error)
{ {
@@ -146,128 +171,41 @@ func (cs *ControllerServer) CreateVolume(ctx context.Context, req *csi.CreateVol
volSize = ((capRange.GetRequiredBytes() + MB - 1) / MB) * MB volSize = ((capRange.GetRequiredBytes() + MB - 1) / MB) * MB
} }
// FIXME: The following should PROBABLY be implemented externally in a management tool ctxVars, etcdUrl, _ := GetConnectionParams(req.Parameters)
ctxVars, etcdUrl, etcdPrefix := GetConnectionParams(req.Parameters)
if (len(etcdUrl) == 0) if (len(etcdUrl) == 0)
{ {
return nil, status.Error(codes.InvalidArgument, "no etcdUrl in storage class configuration and no etcd_address in vitastor.conf") return nil, status.Error(codes.InvalidArgument, "no etcdUrl in storage class configuration and no etcd_address in vitastor.conf")
} }
// Connect to etcd // Create image using vitastor-cli
cli, err := clientv3.New(clientv3.Config{ _, err := invokeCLI(ctxVars, []string{ "create", volName, "-s", string(volSize), "--pool", string(poolId) })
DialTimeout: ETCD_TIMEOUT,
Endpoints: etcdUrl,
})
if (err != nil) if (err != nil)
{ {
return nil, status.Error(codes.Internal, "failed to connect to etcd at "+strings.Join(etcdUrl, ",")+": "+err.Error()) if (strings.Index(err.Error(), "already exists") > 0)
}
defer cli.Close()
var imageId uint64 = 0
for
{
// Check if the image exists
ctx, cancel := context.WithTimeout(context.Background(), ETCD_TIMEOUT)
resp, err := cli.Get(ctx, etcdPrefix+"/index/image/"+volName)
cancel()
if (err != nil)
{ {
return nil, status.Error(codes.Internal, "failed to read key from etcd: "+err.Error()) stat, err := invokeCLI(ctxVars, []string{ "ls", "--json", volName })
}
if (len(resp.Kvs) > 0)
{
kv := resp.Kvs[0]
var v InodeIndex
err := json.Unmarshal(kv.Value, &v)
if (err != nil) if (err != nil)
{ {
return nil, status.Error(codes.Internal, "invalid /index/image/"+volName+" key in etcd: "+err.Error()) return nil, err
} }
poolId = v.PoolId var inodeCfg []InodeConfig
imageId = v.Id err = json.Unmarshal(stat, &inodeCfg)
inodeCfgKey := fmt.Sprintf("/config/inode/%d/%d", poolId, imageId)
ctx, cancel := context.WithTimeout(context.Background(), ETCD_TIMEOUT)
resp, err := cli.Get(ctx, etcdPrefix+inodeCfgKey)
cancel()
if (err != nil) if (err != nil)
{ {
return nil, status.Error(codes.Internal, "failed to read key from etcd: "+err.Error()) return nil, status.Error(codes.Internal, "Invalid JSON in vitastor-cli ls: "+err.Error())
} }
if (len(resp.Kvs) == 0) if (len(inodeCfg) == 0)
{ {
return nil, status.Error(codes.Internal, "missing "+inodeCfgKey+" key in etcd") return nil, status.Error(codes.Internal, "vitastor-cli create said that image already exists, but ls can't find it")
} }
var inodeCfg InodeConfig if (inodeCfg[0].Size < uint64(volSize))
err = json.Unmarshal(resp.Kvs[0].Value, &inodeCfg)
if (err != nil)
{
return nil, status.Error(codes.Internal, "invalid "+inodeCfgKey+" key in etcd: "+err.Error())
}
if (inodeCfg.Size < uint64(volSize))
{ {
return nil, status.Error(codes.Internal, "image "+volName+" is already created, but size is less than expected") return nil, status.Error(codes.Internal, "image "+volName+" is already created, but size is less than expected")
} }
} }
else else
{ {
// Find a free ID return nil, err
// Create image metadata in a transaction verifying that the image doesn't exist yet AND ID is still free
maxIdKey := fmt.Sprintf("%s/index/maxid/%d", etcdPrefix, poolId)
ctx, cancel := context.WithTimeout(context.Background(), ETCD_TIMEOUT)
resp, err := cli.Get(ctx, maxIdKey)
cancel()
if (err != nil)
{
return nil, status.Error(codes.Internal, "failed to read key from etcd: "+err.Error())
}
var modRev int64
var nextId uint64
if (len(resp.Kvs) > 0)
{
var err error
nextId, err = strconv.ParseUint(string(resp.Kvs[0].Value), 10, 64)
if (err != nil)
{
return nil, status.Error(codes.Internal, maxIdKey+" contains invalid ID")
}
modRev = resp.Kvs[0].ModRevision
nextId++
}
else
{
nextId = 1
}
inodeIdxJson, _ := json.Marshal(InodeIndex{
Id: nextId,
PoolId: poolId,
})
inodeCfgJson, _ := json.Marshal(InodeConfig{
Name: volName,
Size: uint64(volSize),
})
ctx, cancel = context.WithTimeout(context.Background(), ETCD_TIMEOUT)
txnResp, err := cli.Txn(ctx).If(
clientv3.Compare(clientv3.ModRevision(fmt.Sprintf("%s/index/maxid/%d", etcdPrefix, poolId)), "=", modRev),
clientv3.Compare(clientv3.CreateRevision(fmt.Sprintf("%s/index/image/%s", etcdPrefix, volName)), "=", 0),
clientv3.Compare(clientv3.CreateRevision(fmt.Sprintf("%s/config/inode/%d/%d", etcdPrefix, poolId, nextId)), "=", 0),
).Then(
clientv3.OpPut(fmt.Sprintf("%s/index/maxid/%d", etcdPrefix, poolId), fmt.Sprintf("%d", nextId)),
clientv3.OpPut(fmt.Sprintf("%s/index/image/%s", etcdPrefix, volName), string(inodeIdxJson)),
clientv3.OpPut(fmt.Sprintf("%s/config/inode/%d/%d", etcdPrefix, poolId, nextId), string(inodeCfgJson)),
).Commit()
cancel()
if (err != nil)
{
return nil, status.Error(codes.Internal, "failed to commit transaction in etcd: "+err.Error())
}
if (txnResp.Succeeded)
{
imageId = nextId
break
}
// Start over if the transaction fails
} }
} }
@@ -299,97 +237,12 @@ func (cs *ControllerServer) DeleteVolume(ctx context.Context, req *csi.DeleteVol
} }
volName := ctxVars["name"] volName := ctxVars["name"]
_, etcdUrl, etcdPrefix := GetConnectionParams(ctxVars) ctxVars, _, _ = GetConnectionParams(ctxVars)
if (len(etcdUrl) == 0)
{
return nil, status.Error(codes.InvalidArgument, "no etcdUrl in storage class configuration and no etcd_address in vitastor.conf")
}
cli, err := clientv3.New(clientv3.Config{ _, err = invokeCLI(ctxVars, []string{ "rm", volName })
DialTimeout: ETCD_TIMEOUT,
Endpoints: etcdUrl,
})
if (err != nil) if (err != nil)
{ {
return nil, status.Error(codes.Internal, "failed to connect to etcd at "+strings.Join(etcdUrl, ",")+": "+err.Error()) return nil, err
}
defer cli.Close()
// Find inode by name
ctx, cancel := context.WithTimeout(context.Background(), ETCD_TIMEOUT)
resp, err := cli.Get(ctx, etcdPrefix+"/index/image/"+volName)
cancel()
if (err != nil)
{
return nil, status.Error(codes.Internal, "failed to read key from etcd: "+err.Error())
}
if (len(resp.Kvs) == 0)
{
return nil, status.Error(codes.NotFound, "volume "+volName+" does not exist")
}
var idx InodeIndex
err = json.Unmarshal(resp.Kvs[0].Value, &idx)
if (err != nil)
{
return nil, status.Error(codes.Internal, "invalid /index/image/"+volName+" key in etcd: "+err.Error())
}
// Get inode config
inodeCfgKey := fmt.Sprintf("%s/config/inode/%d/%d", etcdPrefix, idx.PoolId, idx.Id)
ctx, cancel = context.WithTimeout(context.Background(), ETCD_TIMEOUT)
resp, err = cli.Get(ctx, inodeCfgKey)
cancel()
if (err != nil)
{
return nil, status.Error(codes.Internal, "failed to read key from etcd: "+err.Error())
}
if (len(resp.Kvs) == 0)
{
return nil, status.Error(codes.NotFound, "volume "+volName+" does not exist")
}
var inodeCfg InodeConfig
err = json.Unmarshal(resp.Kvs[0].Value, &inodeCfg)
if (err != nil)
{
return nil, status.Error(codes.Internal, "invalid "+inodeCfgKey+" key in etcd: "+err.Error())
}
// Delete inode data by invoking vitastor-cli
args := []string{
"rm-data", "--etcd_address", strings.Join(etcdUrl, ","),
"--pool", fmt.Sprintf("%d", idx.PoolId),
"--inode", fmt.Sprintf("%d", idx.Id),
}
if (ctxVars["configPath"] != "")
{
args = append(args, "--config_path", ctxVars["configPath"])
}
c := exec.Command("/usr/bin/vitastor-cli", args...)
var stderr bytes.Buffer
c.Stdout = nil
c.Stderr = &stderr
err = c.Run()
stderrStr := string(stderr.Bytes())
if (err != nil)
{
klog.Errorf("vitastor-cli rm-data failed: %s, status %s\n", stderrStr, err)
return nil, status.Error(codes.Internal, stderrStr+" (status "+err.Error()+")")
}
// Delete inode config in etcd
ctx, cancel = context.WithTimeout(context.Background(), ETCD_TIMEOUT)
txnResp, err := cli.Txn(ctx).Then(
clientv3.OpDelete(fmt.Sprintf("%s/index/image/%s", etcdPrefix, volName)),
clientv3.OpDelete(fmt.Sprintf("%s/config/inode/%d/%d", etcdPrefix, idx.PoolId, idx.Id)),
).Commit()
cancel()
if (err != nil)
{
return nil, status.Error(codes.Internal, "failed to delete keys in etcd: "+err.Error())
}
if (!txnResp.Succeeded)
{
return nil, status.Error(codes.Internal, "failed to delete keys in etcd: transaction failed")
} }
return &csi.DeleteVolumeResponse{}, nil return &csi.DeleteVolumeResponse{}, nil
+2 -2
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@@ -1,10 +1,10 @@
vitastor (0.8.5-1) unstable; urgency=medium vitastor (0.8.6-1) unstable; urgency=medium
* Bugfixes * Bugfixes
-- Vitaliy Filippov <vitalif@yourcmc.ru> Fri, 03 Jun 2022 02:09:44 +0300 -- Vitaliy Filippov <vitalif@yourcmc.ru> Fri, 03 Jun 2022 02:09:44 +0300
vitastor (0.8.5-1) unstable; urgency=medium vitastor (0.8.6-1) unstable; urgency=medium
* Implement NFS proxy * Implement NFS proxy
* Add documentation * Add documentation
+4 -4
View File
@@ -34,8 +34,8 @@ RUN set -e -x; \
mkdir -p /root/packages/vitastor-$REL; \ mkdir -p /root/packages/vitastor-$REL; \
rm -rf /root/packages/vitastor-$REL/*; \ rm -rf /root/packages/vitastor-$REL/*; \
cd /root/packages/vitastor-$REL; \ cd /root/packages/vitastor-$REL; \
cp -r /root/vitastor vitastor-0.8.5; \ cp -r /root/vitastor vitastor-0.8.6; \
cd vitastor-0.8.5; \ cd vitastor-0.8.6; \
ln -s /root/fio-build/fio-*/ ./fio; \ ln -s /root/fio-build/fio-*/ ./fio; \
FIO=$(head -n1 fio/debian/changelog | perl -pe 's/^.*\((.*?)\).*$/$1/'); \ FIO=$(head -n1 fio/debian/changelog | perl -pe 's/^.*\((.*?)\).*$/$1/'); \
ls /usr/include/linux/raw.h || cp ./debian/raw.h /usr/include/linux/raw.h; \ ls /usr/include/linux/raw.h || cp ./debian/raw.h /usr/include/linux/raw.h; \
@@ -48,8 +48,8 @@ RUN set -e -x; \
rm -rf a b; \ rm -rf a b; \
echo "dep:fio=$FIO" > debian/fio_version; \ echo "dep:fio=$FIO" > debian/fio_version; \
cd /root/packages/vitastor-$REL; \ cd /root/packages/vitastor-$REL; \
tar --sort=name --mtime='2020-01-01' --owner=0 --group=0 --exclude=debian -cJf vitastor_0.8.5.orig.tar.xz vitastor-0.8.5; \ tar --sort=name --mtime='2020-01-01' --owner=0 --group=0 --exclude=debian -cJf vitastor_0.8.6.orig.tar.xz vitastor-0.8.6; \
cd vitastor-0.8.5; \ cd vitastor-0.8.6; \
V=$(head -n1 debian/changelog | perl -pe 's/^.*\((.*?)\).*$/$1/'); \ V=$(head -n1 debian/changelog | perl -pe 's/^.*\((.*?)\).*$/$1/'); \
DEBFULLNAME="Vitaliy Filippov <vitalif@yourcmc.ru>" dch -D $REL -v "$V""$REL" "Rebuild for $REL"; \ DEBFULLNAME="Vitaliy Filippov <vitalif@yourcmc.ru>" dch -D $REL -v "$V""$REL" "Rebuild for $REL"; \
DEB_BUILD_OPTIONS=nocheck dpkg-buildpackage --jobs=auto -sa; \ DEB_BUILD_OPTIONS=nocheck dpkg-buildpackage --jobs=auto -sa; \
+23 -6
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@@ -19,6 +19,7 @@ between clients, OSDs and etcd.
- [rdma_max_sge](#rdma_max_sge) - [rdma_max_sge](#rdma_max_sge)
- [rdma_max_msg](#rdma_max_msg) - [rdma_max_msg](#rdma_max_msg)
- [rdma_max_recv](#rdma_max_recv) - [rdma_max_recv](#rdma_max_recv)
- [rdma_max_send](#rdma_max_send)
- [peer_connect_interval](#peer_connect_interval) - [peer_connect_interval](#peer_connect_interval)
- [peer_connect_timeout](#peer_connect_timeout) - [peer_connect_timeout](#peer_connect_timeout)
- [osd_idle_timeout](#osd_idle_timeout) - [osd_idle_timeout](#osd_idle_timeout)
@@ -74,6 +75,12 @@ to work. For example, Mellanox ConnectX-3 and older adapters don't have
Implicit ODP, so they're unsupported by Vitastor. Run `ibv_devinfo -v` as Implicit ODP, so they're unsupported by Vitastor. Run `ibv_devinfo -v` as
root to list available RDMA devices and their features. root to list available RDMA devices and their features.
Remember that you also have to configure your network switches if you use
RoCE/RoCEv2, otherwise you may experience unstable performance. Refer to
the manual of your network vendor for details about setting up the switch
for RoCEv2 correctly. Usually it means setting up Lossless Ethernet with
PFC (Priority Flow Control) and ECN (Explicit Congestion Notification).
## rdma_port_num ## rdma_port_num
- Type: integer - Type: integer
@@ -116,20 +123,30 @@ required to change this parameter.
## rdma_max_msg ## rdma_max_msg
- Type: integer - Type: integer
- Default: 1048576 - Default: 132096
Maximum size of a single RDMA send or receive operation in bytes. Maximum size of a single RDMA send or receive operation in bytes.
## rdma_max_recv ## rdma_max_recv
- Type: integer
- Default: 16
Maximum number of RDMA receive buffers per connection (RDMA requires
preallocated buffers to receive data). Each buffer is `rdma_max_msg` bytes
in size. So this setting directly affects memory usage: a single Vitastor
RDMA client uses `rdma_max_recv * rdma_max_msg * OSD_COUNT` bytes of memory.
Default is roughly 2 MB * number of OSDs.
## rdma_max_send
- Type: integer - Type: integer
- Default: 8 - Default: 8
Maximum number of parallel RDMA receive operations. Note that this number Maximum number of outstanding RDMA send operations per connection. Should be
of receive buffers `rdma_max_msg` in size are allocated for each client, less than `rdma_max_recv` so the receiving side doesn't run out of buffers.
so this setting actually affects memory usage. This is because RDMA receive Doesn't affect memory usage - additional memory isn't allocated for send
operations are (sadly) still not zero-copy in Vitastor. It may be fixed in operations.
later versions.
## peer_connect_interval ## peer_connect_interval
+26 -8
View File
@@ -19,6 +19,7 @@
- [rdma_max_sge](#rdma_max_sge) - [rdma_max_sge](#rdma_max_sge)
- [rdma_max_msg](#rdma_max_msg) - [rdma_max_msg](#rdma_max_msg)
- [rdma_max_recv](#rdma_max_recv) - [rdma_max_recv](#rdma_max_recv)
- [rdma_max_send](#rdma_max_send)
- [peer_connect_interval](#peer_connect_interval) - [peer_connect_interval](#peer_connect_interval)
- [peer_connect_timeout](#peer_connect_timeout) - [peer_connect_timeout](#peer_connect_timeout)
- [osd_idle_timeout](#osd_idle_timeout) - [osd_idle_timeout](#osd_idle_timeout)
@@ -78,6 +79,13 @@ Implicit On-Demand Paging (Implicit ODP) и Scatter/Gather (SG). Наприме
суперпользователя, чтобы посмотреть список доступных RDMA-устройств, их суперпользователя, чтобы посмотреть список доступных RDMA-устройств, их
параметры и возможности. параметры и возможности.
Обратите внимание, что если вы используете RoCE/RoCEv2, вам также необходимо
правильно настроить для него коммутаторы, иначе вы можете столкнуться с
нестабильной производительностью. Подробную информацию о настройке
коммутатора для RoCEv2 ищите в документации производителя. Обычно это
подразумевает настройку сети без потерь на основе PFC (Priority Flow
Control) и ECN (Explicit Congestion Notification).
## rdma_port_num ## rdma_port_num
- Тип: целое число - Тип: целое число
@@ -121,22 +129,32 @@ OSD в любом случае согласовывают реальное зн
## rdma_max_msg ## rdma_max_msg
- Тип: целое число - Тип: целое число
- Значение по умолчанию: 1048576 - Значение по умолчанию: 132096
Максимальный размер одной RDMA-операции отправки или приёма. Максимальный размер одной RDMA-операции отправки или приёма.
## rdma_max_recv ## rdma_max_recv
- Тип: целое число
- Значение по умолчанию: 16
Максимальное число буферов для RDMA-приёма данных на одно соединение
(RDMA требует заранее выделенных буферов для приёма данных). Каждый буфер
имеет размер `rdma_max_msg` байт. Таким образом, настройка прямо влияет на
потребление памяти - один Vitastor-клиент с RDMA использует
`rdma_max_recv * rdma_max_msg * ЧИСЛО_OSD` байт памяти, по умолчанию -
примерно 2 МБ * число OSD.
## rdma_max_send
- Тип: целое число - Тип: целое число
- Значение по умолчанию: 8 - Значение по умолчанию: 8
Максимальное число параллельных RDMA-операций получения данных. Следует Максимальное число RDMA-операций отправки, отправляемых в очередь одного
иметь в виду, что данное число буферов размером `rdma_max_msg` выделяется соединения. Желательно, чтобы оно было меньше `rdma_max_recv`, чтобы
для каждого подключённого клиентского соединения, так что данная настройка у принимающей стороны в процессе работы не заканчивались буферы на приём.
влияет на потребление памяти. Это так потому, что RDMA-приём данных в Не влияет на потребление памяти - дополнительная память на операции отправки
Vitastor, увы, всё равно не является zero-copy, т.е. всё равно 1 раз не выделяется.
копирует данные в памяти. Данная особенность, возможно, будет исправлена в
более новых версиях Vitastor.
## peer_connect_interval ## peer_connect_interval
+39 -13
View File
@@ -53,6 +53,12 @@
to work. For example, Mellanox ConnectX-3 and older adapters don't have to work. For example, Mellanox ConnectX-3 and older adapters don't have
Implicit ODP, so they're unsupported by Vitastor. Run `ibv_devinfo -v` as Implicit ODP, so they're unsupported by Vitastor. Run `ibv_devinfo -v` as
root to list available RDMA devices and their features. root to list available RDMA devices and their features.
Remember that you also have to configure your network switches if you use
RoCE/RoCEv2, otherwise you may experience unstable performance. Refer to
the manual of your network vendor for details about setting up the switch
for RoCEv2 correctly. Usually it means setting up Lossless Ethernet with
PFC (Priority Flow Control) and ECN (Explicit Congestion Notification).
info_ru: | info_ru: |
Название RDMA-устройства для связи с Vitastor OSD (например, "rocep5s0f0"). Название RDMA-устройства для связи с Vitastor OSD (например, "rocep5s0f0").
Имейте в виду, что поддержка RDMA в Vitastor требует функций устройства Имейте в виду, что поддержка RDMA в Vitastor требует функций устройства
@@ -61,6 +67,13 @@
потому не поддерживаются в Vitastor. Запустите `ibv_devinfo -v` от имени потому не поддерживаются в Vitastor. Запустите `ibv_devinfo -v` от имени
суперпользователя, чтобы посмотреть список доступных RDMA-устройств, их суперпользователя, чтобы посмотреть список доступных RDMA-устройств, их
параметры и возможности. параметры и возможности.
Обратите внимание, что если вы используете RoCE/RoCEv2, вам также необходимо
правильно настроить для него коммутаторы, иначе вы можете столкнуться с
нестабильной производительностью. Подробную информацию о настройке
коммутатора для RoCEv2 ищите в документации производителя. Обычно это
подразумевает настройку сети без потерь на основе PFC (Priority Flow
Control) и ECN (Explicit Congestion Notification).
- name: rdma_port_num - name: rdma_port_num
type: int type: int
default: 1 default: 1
@@ -114,26 +127,39 @@
так что менять этот параметр обычно не нужно. так что менять этот параметр обычно не нужно.
- name: rdma_max_msg - name: rdma_max_msg
type: int type: int
default: 1048576 default: 132096
info: Maximum size of a single RDMA send or receive operation in bytes. info: Maximum size of a single RDMA send or receive operation in bytes.
info_ru: Максимальный размер одной RDMA-операции отправки или приёма. info_ru: Максимальный размер одной RDMA-операции отправки или приёма.
- name: rdma_max_recv - name: rdma_max_recv
type: int
default: 16
info: |
Maximum number of RDMA receive buffers per connection (RDMA requires
preallocated buffers to receive data). Each buffer is `rdma_max_msg` bytes
in size. So this setting directly affects memory usage: a single Vitastor
RDMA client uses `rdma_max_recv * rdma_max_msg * OSD_COUNT` bytes of memory.
Default is roughly 2 MB * number of OSDs.
info_ru: |
Максимальное число буферов для RDMA-приёма данных на одно соединение
(RDMA требует заранее выделенных буферов для приёма данных). Каждый буфер
имеет размер `rdma_max_msg` байт. Таким образом, настройка прямо влияет на
потребление памяти - один Vitastor-клиент с RDMA использует
`rdma_max_recv * rdma_max_msg * ЧИСЛО_OSD` байт памяти, по умолчанию -
примерно 2 МБ * число OSD.
- name: rdma_max_send
type: int type: int
default: 8 default: 8
info: | info: |
Maximum number of parallel RDMA receive operations. Note that this number Maximum number of outstanding RDMA send operations per connection. Should be
of receive buffers `rdma_max_msg` in size are allocated for each client, less than `rdma_max_recv` so the receiving side doesn't run out of buffers.
so this setting actually affects memory usage. This is because RDMA receive Doesn't affect memory usage - additional memory isn't allocated for send
operations are (sadly) still not zero-copy in Vitastor. It may be fixed in operations.
later versions.
info_ru: | info_ru: |
Максимальное число параллельных RDMA-операций получения данных. Следует Максимальное число RDMA-операций отправки, отправляемых в очередь одного
иметь в виду, что данное число буферов размером `rdma_max_msg` выделяется соединения. Желательно, чтобы оно было меньше `rdma_max_recv`, чтобы
для каждого подключённого клиентского соединения, так что данная настройка у принимающей стороны в процессе работы не заканчивались буферы на приём.
влияет на потребление памяти. Это так потому, что RDMA-приём данных в Не влияет на потребление памяти - дополнительная память на операции отправки
Vitastor, увы, всё равно не является zero-copy, т.е. всё равно 1 раз не выделяется.
копирует данные в памяти. Данная особенность, возможно, будет исправлена в
более новых версиях Vitastor.
- name: peer_connect_interval - name: peer_connect_interval
type: sec type: sec
min: 1 min: 1
+1 -1
View File
@@ -1,4 +1,4 @@
[Documentation](../../README.md#documentation) → Usage → Disk Tool [Documentation](../../README.md#documentation) → Usage → Disk management tool
----- -----
+1 -1
View File
@@ -1,4 +1,4 @@
[Документация](../../README-ru.md#документация) → Использование → Управление дисками [Документация](../../README-ru.md#документация) → Использование → Инструмент управления дисками
----- -----
+3 -3
View File
@@ -70,9 +70,9 @@ const etcd_tree = {
rdma_gid_index: 0, rdma_gid_index: 0,
rdma_mtu: 4096, rdma_mtu: 4096,
rdma_max_sge: 128, rdma_max_sge: 128,
rdma_max_send: 32, rdma_max_send: 8,
rdma_max_recv: 8, rdma_max_recv: 16,
rdma_max_msg: 1048576, rdma_max_msg: 132096,
log_level: 0, log_level: 0,
block_size: 131072, block_size: 131072,
disk_alignment: 4096, disk_alignment: 4096,
+1 -1
View File
@@ -50,7 +50,7 @@ from cinder.volume import configuration
from cinder.volume import driver from cinder.volume import driver
from cinder.volume import volume_utils from cinder.volume import volume_utils
VERSION = '0.8.5' VERSION = '0.8.6'
LOG = logging.getLogger(__name__) LOG = logging.getLogger(__name__)
+1 -1
View File
@@ -25,4 +25,4 @@ rm fio
mv fio-copy fio mv fio-copy fio
FIO=`rpm -qi fio | perl -e 'while(<>) { /^Epoch[\s:]+(\S+)/ && print "$1:"; /^Version[\s:]+(\S+)/ && print $1; /^Release[\s:]+(\S+)/ && print "-$1"; }'` FIO=`rpm -qi fio | perl -e 'while(<>) { /^Epoch[\s:]+(\S+)/ && print "$1:"; /^Version[\s:]+(\S+)/ && print $1; /^Release[\s:]+(\S+)/ && print "-$1"; }'`
perl -i -pe 's/(Requires:\s*fio)([^\n]+)?/$1 = '$FIO'/' $VITASTOR/rpm/vitastor-el$EL.spec perl -i -pe 's/(Requires:\s*fio)([^\n]+)?/$1 = '$FIO'/' $VITASTOR/rpm/vitastor-el$EL.spec
tar --transform 's#^#vitastor-0.8.5/#' --exclude 'rpm/*.rpm' -czf $VITASTOR/../vitastor-0.8.5$(rpm --eval '%dist').tar.gz * tar --transform 's#^#vitastor-0.8.6/#' --exclude 'rpm/*.rpm' -czf $VITASTOR/../vitastor-0.8.6$(rpm --eval '%dist').tar.gz *
+1 -1
View File
@@ -35,7 +35,7 @@ ADD . /root/vitastor
RUN set -e; \ RUN set -e; \
cd /root/vitastor/rpm; \ cd /root/vitastor/rpm; \
sh build-tarball.sh; \ sh build-tarball.sh; \
cp /root/vitastor-0.8.5.el7.tar.gz ~/rpmbuild/SOURCES; \ cp /root/vitastor-0.8.6.el7.tar.gz ~/rpmbuild/SOURCES; \
cp vitastor-el7.spec ~/rpmbuild/SPECS/vitastor.spec; \ cp vitastor-el7.spec ~/rpmbuild/SPECS/vitastor.spec; \
cd ~/rpmbuild/SPECS/; \ cd ~/rpmbuild/SPECS/; \
rpmbuild -ba vitastor.spec; \ rpmbuild -ba vitastor.spec; \
+2 -2
View File
@@ -1,11 +1,11 @@
Name: vitastor Name: vitastor
Version: 0.8.5 Version: 0.8.6
Release: 1%{?dist} Release: 1%{?dist}
Summary: Vitastor, a fast software-defined clustered block storage Summary: Vitastor, a fast software-defined clustered block storage
License: Vitastor Network Public License 1.1 License: Vitastor Network Public License 1.1
URL: https://vitastor.io/ URL: https://vitastor.io/
Source0: vitastor-0.8.5.el7.tar.gz Source0: vitastor-0.8.6.el7.tar.gz
BuildRequires: liburing-devel >= 0.6 BuildRequires: liburing-devel >= 0.6
BuildRequires: gperftools-devel BuildRequires: gperftools-devel
+1 -1
View File
@@ -35,7 +35,7 @@ ADD . /root/vitastor
RUN set -e; \ RUN set -e; \
cd /root/vitastor/rpm; \ cd /root/vitastor/rpm; \
sh build-tarball.sh; \ sh build-tarball.sh; \
cp /root/vitastor-0.8.5.el8.tar.gz ~/rpmbuild/SOURCES; \ cp /root/vitastor-0.8.6.el8.tar.gz ~/rpmbuild/SOURCES; \
cp vitastor-el8.spec ~/rpmbuild/SPECS/vitastor.spec; \ cp vitastor-el8.spec ~/rpmbuild/SPECS/vitastor.spec; \
cd ~/rpmbuild/SPECS/; \ cd ~/rpmbuild/SPECS/; \
rpmbuild -ba vitastor.spec; \ rpmbuild -ba vitastor.spec; \
+2 -2
View File
@@ -1,11 +1,11 @@
Name: vitastor Name: vitastor
Version: 0.8.5 Version: 0.8.6
Release: 1%{?dist} Release: 1%{?dist}
Summary: Vitastor, a fast software-defined clustered block storage Summary: Vitastor, a fast software-defined clustered block storage
License: Vitastor Network Public License 1.1 License: Vitastor Network Public License 1.1
URL: https://vitastor.io/ URL: https://vitastor.io/
Source0: vitastor-0.8.5.el8.tar.gz Source0: vitastor-0.8.6.el8.tar.gz
BuildRequires: liburing-devel >= 0.6 BuildRequires: liburing-devel >= 0.6
BuildRequires: gperftools-devel BuildRequires: gperftools-devel
+1 -1
View File
@@ -16,7 +16,7 @@ if("${CMAKE_INSTALL_PREFIX}" MATCHES "^/usr/local/?$")
set(CMAKE_INSTALL_RPATH "${CMAKE_INSTALL_PREFIX}/${CMAKE_INSTALL_LIBDIR}") set(CMAKE_INSTALL_RPATH "${CMAKE_INSTALL_PREFIX}/${CMAKE_INSTALL_LIBDIR}")
endif() endif()
add_definitions(-DVERSION="0.8.5") add_definitions(-DVERSION="0.8.6")
add_definitions(-Wall -Wno-sign-compare -Wno-comment -Wno-parentheses -Wno-pointer-arith -fdiagnostics-color=always -I ${CMAKE_SOURCE_DIR}/src) add_definitions(-Wall -Wno-sign-compare -Wno-comment -Wno-parentheses -Wno-pointer-arith -fdiagnostics-color=always -I ${CMAKE_SOURCE_DIR}/src)
if (${WITH_ASAN}) if (${WITH_ASAN})
add_definitions(-fsanitize=address -fno-omit-frame-pointer) add_definitions(-fsanitize=address -fno-omit-frame-pointer)
+2 -2
View File
@@ -157,10 +157,10 @@ void osd_messenger_t::parse_config(const json11::Json & config)
this->rdma_max_sge = 128; this->rdma_max_sge = 128;
this->rdma_max_send = config["rdma_max_send"].uint64_value(); this->rdma_max_send = config["rdma_max_send"].uint64_value();
if (!this->rdma_max_send) if (!this->rdma_max_send)
this->rdma_max_send = 1; this->rdma_max_send = 8;
this->rdma_max_recv = config["rdma_max_recv"].uint64_value(); this->rdma_max_recv = config["rdma_max_recv"].uint64_value();
if (!this->rdma_max_recv) if (!this->rdma_max_recv)
this->rdma_max_recv = 128; this->rdma_max_recv = 16;
this->rdma_max_msg = config["rdma_max_msg"].uint64_value(); this->rdma_max_msg = config["rdma_max_msg"].uint64_value();
if (!this->rdma_max_msg || this->rdma_max_msg > 128*1024*1024) if (!this->rdma_max_msg || this->rdma_max_msg > 128*1024*1024)
this->rdma_max_msg = 129*1024; this->rdma_max_msg = 129*1024;
+53 -36
View File
@@ -368,9 +368,8 @@ static void try_send_rdma_wr(osd_client_t *cl, ibv_sge *sge, int op_sge)
bool osd_messenger_t::try_send_rdma(osd_client_t *cl) bool osd_messenger_t::try_send_rdma(osd_client_t *cl)
{ {
auto rc = cl->rdma_conn; auto rc = cl->rdma_conn;
if (!cl->send_list.size() || rc->cur_send > 0) if (!cl->send_list.size() || rc->cur_send >= rc->max_send)
{ {
// Only send one batch at a time
return true; return true;
} }
uint64_t op_size = 0, op_sge = 0; uint64_t op_size = 0, op_sge = 0;
@@ -380,6 +379,7 @@ bool osd_messenger_t::try_send_rdma(osd_client_t *cl)
iovec & iov = cl->send_list[rc->send_pos]; iovec & iov = cl->send_list[rc->send_pos];
if (op_size >= rc->max_msg || op_sge >= rc->max_sge) if (op_size >= rc->max_msg || op_sge >= rc->max_sge)
{ {
rc->send_sizes.push_back(op_size);
try_send_rdma_wr(cl, sge, op_sge); try_send_rdma_wr(cl, sge, op_sge);
op_sge = 0; op_sge = 0;
op_size = 0; op_size = 0;
@@ -405,18 +405,24 @@ bool osd_messenger_t::try_send_rdma(osd_client_t *cl)
} }
if (op_sge > 0) if (op_sge > 0)
{ {
rc->send_sizes.push_back(op_size);
try_send_rdma_wr(cl, sge, op_sge); try_send_rdma_wr(cl, sge, op_sge);
} }
return true; return true;
} }
static void try_recv_rdma_wr(osd_client_t *cl, ibv_sge *sge, int op_sge) static void try_recv_rdma_wr(osd_client_t *cl, void *buf)
{ {
ibv_sge sge = {
.addr = (uintptr_t)buf,
.length = (uint32_t)cl->rdma_conn->max_msg,
.lkey = cl->rdma_conn->ctx->mr->lkey,
};
ibv_recv_wr *bad_wr = NULL; ibv_recv_wr *bad_wr = NULL;
ibv_recv_wr wr = { ibv_recv_wr wr = {
.wr_id = (uint64_t)(cl->peer_fd*2), .wr_id = (uint64_t)(cl->peer_fd*2),
.sg_list = sge, .sg_list = &sge,
.num_sge = op_sge, .num_sge = 1,
}; };
int err = ibv_post_recv(cl->rdma_conn->qp, &wr, &bad_wr); int err = ibv_post_recv(cl->rdma_conn->qp, &wr, &bad_wr);
if (err || bad_wr) if (err || bad_wr)
@@ -434,12 +440,7 @@ bool osd_messenger_t::try_recv_rdma(osd_client_t *cl)
{ {
void *buf = malloc_or_die(rc->max_msg); void *buf = malloc_or_die(rc->max_msg);
rc->recv_buffers.push_back(buf); rc->recv_buffers.push_back(buf);
ibv_sge sge = { try_recv_rdma_wr(cl, buf);
.addr = (uintptr_t)buf,
.length = (uint32_t)rc->max_msg,
.lkey = rc->ctx->mr->lkey,
};
try_recv_rdma_wr(cl, &sge, 1);
} }
return true; return true;
} }
@@ -476,6 +477,7 @@ void osd_messenger_t::handle_rdma_events()
continue; continue;
} }
osd_client_t *cl = cl_it->second; osd_client_t *cl = cl_it->second;
auto rc = cl->rdma_conn;
if (wc[i].status != IBV_WC_SUCCESS) if (wc[i].status != IBV_WC_SUCCESS)
{ {
fprintf(stderr, "RDMA work request failed for client %d", client_id); fprintf(stderr, "RDMA work request failed for client %d", client_id);
@@ -489,44 +491,59 @@ void osd_messenger_t::handle_rdma_events()
} }
if (!is_send) if (!is_send)
{ {
cl->rdma_conn->cur_recv--; rc->cur_recv--;
if (!handle_read_buffer(cl, cl->rdma_conn->recv_buffers[0], wc[i].byte_len)) if (!handle_read_buffer(cl, rc->recv_buffers[rc->next_recv_buf], wc[i].byte_len))
{ {
// handle_read_buffer may stop the client // handle_read_buffer may stop the client
continue; continue;
} }
free(cl->rdma_conn->recv_buffers[0]); try_recv_rdma_wr(cl, rc->recv_buffers[rc->next_recv_buf]);
cl->rdma_conn->recv_buffers.erase(cl->rdma_conn->recv_buffers.begin(), cl->rdma_conn->recv_buffers.begin()+1); rc->next_recv_buf = (rc->next_recv_buf+1) % rc->recv_buffers.size();
try_recv_rdma(cl);
} }
else else
{ {
cl->rdma_conn->cur_send--; rc->cur_send--;
if (!cl->rdma_conn->cur_send) uint64_t sent_size = rc->send_sizes.at(0);
rc->send_sizes.erase(rc->send_sizes.begin(), rc->send_sizes.begin()+1);
int send_pos = 0, send_buf_pos = 0;
while (sent_size > 0)
{ {
// Wait for the whole batch if (sent_size >= cl->send_list.at(send_pos).iov_len)
for (int i = 0; i < cl->rdma_conn->send_pos; i++)
{ {
if (cl->outbox[i].flags & MSGR_SENDP_FREE) sent_size -= cl->send_list[send_pos].iov_len;
{ send_pos++;
// Reply fully sent
delete cl->outbox[i].op;
}
} }
if (cl->rdma_conn->send_pos > 0) else
{ {
cl->send_list.erase(cl->send_list.begin(), cl->send_list.begin()+cl->rdma_conn->send_pos); send_buf_pos = sent_size;
cl->outbox.erase(cl->outbox.begin(), cl->outbox.begin()+cl->rdma_conn->send_pos); sent_size = 0;
cl->rdma_conn->send_pos = 0;
} }
if (cl->rdma_conn->send_buf_pos > 0)
{
cl->send_list[0].iov_base = (uint8_t*)cl->send_list[0].iov_base + cl->rdma_conn->send_buf_pos;
cl->send_list[0].iov_len -= cl->rdma_conn->send_buf_pos;
cl->rdma_conn->send_buf_pos = 0;
}
try_send_rdma(cl);
} }
assert(rc->send_pos >= send_pos);
if (rc->send_pos == send_pos)
{
rc->send_buf_pos -= send_buf_pos;
}
rc->send_pos -= send_pos;
for (int i = 0; i < send_pos; i++)
{
if (cl->outbox[i].flags & MSGR_SENDP_FREE)
{
// Reply fully sent
delete cl->outbox[i].op;
}
}
if (send_pos > 0)
{
cl->send_list.erase(cl->send_list.begin(), cl->send_list.begin()+send_pos);
cl->outbox.erase(cl->outbox.begin(), cl->outbox.begin()+send_pos);
}
if (send_buf_pos > 0)
{
cl->send_list[0].iov_base = (uint8_t*)cl->send_list[0].iov_base + send_buf_pos;
cl->send_list[0].iov_len -= send_buf_pos;
}
try_send_rdma(cl);
} }
} }
} while (event_count > 0); } while (event_count > 0);
+2 -1
View File
@@ -49,8 +49,9 @@ struct msgr_rdma_connection_t
uint64_t max_msg = 0; uint64_t max_msg = 0;
int send_pos = 0, send_buf_pos = 0; int send_pos = 0, send_buf_pos = 0;
int recv_pos = 0, recv_buf_pos = 0; int next_recv_buf = 0;
std::vector<void*> recv_buffers; std::vector<void*> recv_buffers;
std::vector<uint64_t> send_sizes;
~msgr_rdma_connection_t(); ~msgr_rdma_connection_t();
static msgr_rdma_connection_t *create(msgr_rdma_context_t *ctx, uint32_t max_send, uint32_t max_recv, uint32_t max_sge, uint32_t max_msg); static msgr_rdma_connection_t *create(msgr_rdma_context_t *ctx, uint32_t max_send, uint32_t max_recv, uint32_t max_sge, uint32_t max_msg);
+12 -9
View File
@@ -759,7 +759,18 @@ static void calc_rmw_parity_copy_mod(osd_rmw_stripe_t *stripes, int pg_size, int
uint64_t *read_osd_set, uint64_t *write_osd_set, uint32_t chunk_size, uint32_t bitmap_granularity, uint64_t *read_osd_set, uint64_t *write_osd_set, uint32_t chunk_size, uint32_t bitmap_granularity,
uint32_t &start, uint32_t &end) uint32_t &start, uint32_t &end)
{ {
if (write_osd_set[pg_minsize] != 0 || write_osd_set != read_osd_set) bool required = false;
for (int role = pg_minsize; role < pg_size; role++)
{
if (write_osd_set[role] != 0)
{
// Whole parity chunk is needed when we move the object
if (write_osd_set[role] != read_osd_set[role])
end = chunk_size;
required = true;
}
}
if (required && end != chunk_size)
{ {
// start & end are required for calc_rmw_parity // start & end are required for calc_rmw_parity
for (int role = 0; role < pg_minsize; role++) for (int role = 0; role < pg_minsize; role++)
@@ -770,14 +781,6 @@ static void calc_rmw_parity_copy_mod(osd_rmw_stripe_t *stripes, int pg_size, int
end = std::max(stripes[role].req_end, end); end = std::max(stripes[role].req_end, end);
} }
} }
for (int role = pg_minsize; role < pg_size; role++)
{
if (write_osd_set[role] != 0 && write_osd_set[role] != read_osd_set[role])
{
start = 0;
end = chunk_size;
}
}
} }
// Set bitmap bits accordingly // Set bitmap bits accordingly
if (bitmap_granularity > 0) if (bitmap_granularity > 0)
+19 -17
View File
@@ -24,7 +24,7 @@ void test11();
void test12(); void test12();
void test13(); void test13();
void test14(); void test14();
void test15(); void test15(bool second);
void test16(); void test16();
int main(int narg, char *args[]) int main(int narg, char *args[])
@@ -54,7 +54,8 @@ int main(int narg, char *args[])
// Test 14 // Test 14
test14(); test14();
// Test 15 // Test 15
test15(); test15(false);
test15(true);
// Test 16 // Test 16
test16(); test16();
// End // End
@@ -826,12 +827,11 @@ void test14()
***/ ***/
void test15() void test15(bool second)
{ {
const int bmp = 64*1024 / 4096 / 8; const int bmp = 64*1024 / 4096 / 8;
use_ec(4, 2, true); use_ec(4, 2, true);
osd_num_t osd_set[4] = { 1, 2, 3, 0 }; osd_num_t osd_set[4] = { 1, 2, (osd_num_t)(second ? 0 : 3), (osd_num_t)(second ? 4 : 0) };
osd_num_t write_osd_set[4] = { 1, 2, 3, 0 };
osd_rmw_stripe_t stripes[4] = {}; osd_rmw_stripe_t stripes[4] = {};
unsigned bitmaps[4] = { 0 }; unsigned bitmaps[4] = { 0 };
// Test 15.0 // Test 15.0
@@ -842,7 +842,7 @@ void test15()
assert(stripes[2].req_start == 0 && stripes[2].req_end == 0); assert(stripes[2].req_start == 0 && stripes[2].req_end == 0);
assert(stripes[3].req_start == 0 && stripes[3].req_end == 0); assert(stripes[3].req_start == 0 && stripes[3].req_end == 0);
// Test 15.1 // Test 15.1
void *rmw_buf = calc_rmw(write_buf, stripes, osd_set, 4, 2, 3, write_osd_set, 64*1024, bmp); void *rmw_buf = calc_rmw(write_buf, stripes, osd_set, 4, 2, 3, osd_set, 64*1024, bmp);
for (int i = 0; i < 4; i++) for (int i = 0; i < 4; i++)
stripes[i].bmp_buf = bitmaps+i; stripes[i].bmp_buf = bitmaps+i;
assert(rmw_buf); assert(rmw_buf);
@@ -852,32 +852,34 @@ void test15()
assert(stripes[3].read_start == 0 && stripes[3].read_end == 0); assert(stripes[3].read_start == 0 && stripes[3].read_end == 0);
assert(stripes[0].write_start == 0 && stripes[0].write_end == 0); assert(stripes[0].write_start == 0 && stripes[0].write_end == 0);
assert(stripes[1].write_start == 28*1024 && stripes[1].write_end == 32*1024); assert(stripes[1].write_start == 28*1024 && stripes[1].write_end == 32*1024);
assert(stripes[2].write_start == 28*1024 && stripes[2].write_end == 32*1024); assert(stripes[2+second].write_start == 28*1024 && stripes[2+second].write_end == 32*1024);
assert(stripes[3].write_start == 0 && stripes[3].write_end == 0); assert(stripes[3-second].write_start == 0 && stripes[3-second].write_end == 0);
assert(stripes[0].read_buf == (uint8_t*)rmw_buf+4*1024); assert(stripes[0].read_buf == (uint8_t*)rmw_buf+4*1024);
assert(stripes[1].read_buf == NULL); assert(stripes[1].read_buf == NULL);
assert(stripes[2].read_buf == NULL); assert(stripes[2].read_buf == NULL);
assert(stripes[3].read_buf == NULL); assert(stripes[3].read_buf == NULL);
assert(stripes[0].write_buf == NULL); assert(stripes[0].write_buf == NULL);
assert(stripes[1].write_buf == (uint8_t*)write_buf); assert(stripes[1].write_buf == (uint8_t*)write_buf);
assert(stripes[2].write_buf == rmw_buf); assert(stripes[2+second].write_buf == rmw_buf);
assert(stripes[3].write_buf == NULL); assert(stripes[3-second].write_buf == NULL);
// Test 15.2 - encode // Test 15.2 - encode
set_pattern(write_buf, 4*1024, PATTERN1); set_pattern(write_buf, 4*1024, PATTERN1);
set_pattern(stripes[0].read_buf, 4*1024, PATTERN2); set_pattern(stripes[0].read_buf, 4*1024, PATTERN2);
memset(stripes[0].bmp_buf, 0, bmp); memset(stripes[0].bmp_buf, 0, bmp);
memset(stripes[1].bmp_buf, 0, bmp); memset(stripes[1].bmp_buf, 0, bmp);
calc_rmw_parity_ec(stripes, 4, 2, osd_set, write_osd_set, 64*1024, bmp); memset(stripes[2+second].write_buf, 0, 4096);
assert(*(uint32_t*)stripes[2].bmp_buf == 0x80); calc_rmw_parity_ec(stripes, 4, 2, osd_set, osd_set, 64*1024, bmp);
assert(second || *(uint32_t*)stripes[2].bmp_buf == 0x80);
assert(stripes[0].write_start == 0 && stripes[0].write_end == 0); assert(stripes[0].write_start == 0 && stripes[0].write_end == 0);
assert(stripes[1].write_start == 28*1024 && stripes[1].write_end == 32*1024); assert(stripes[1].write_start == 28*1024 && stripes[1].write_end == 32*1024);
assert(stripes[2].write_start == 28*1024 && stripes[2].write_end == 32*1024); assert(stripes[2+second].write_start == 28*1024 && stripes[2+second].write_end == 32*1024);
assert(stripes[3].write_start == 0 && stripes[3].write_end == 0); assert(stripes[3-second].write_start == 0 && stripes[3-second].write_end == 0);
assert(stripes[0].write_buf == NULL); assert(stripes[0].write_buf == NULL);
assert(stripes[1].write_buf == (uint8_t*)write_buf); assert(stripes[1].write_buf == (uint8_t*)write_buf);
assert(stripes[2].write_buf == rmw_buf); assert(stripes[2+second].write_buf == rmw_buf);
assert(stripes[3].write_buf == NULL); assert(stripes[3-second].write_buf == NULL);
check_pattern(stripes[2].write_buf, 4*1024, PATTERN1^PATTERN2); // first parity is always xor :) // first parity is always xor :), second isn't...
check_pattern(stripes[2+second].write_buf, 4*1024, second ? 0xb79a59a0ce8b9b81 : PATTERN1^PATTERN2);
// Done // Done
free(rmw_buf); free(rmw_buf);
free(write_buf); free(write_buf);
+1 -1
View File
@@ -6,7 +6,7 @@ includedir=${prefix}/@CMAKE_INSTALL_INCLUDEDIR@
Name: Vitastor Name: Vitastor
Description: Vitastor client library Description: Vitastor client library
Version: 0.8.5 Version: 0.8.6
Libs: -L${libdir} -lvitastor_client Libs: -L${libdir} -lvitastor_client
Cflags: -I${includedir} Cflags: -I${includedir}