feat(serializers.csv): Allow specifying fixed column order (#14870)

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Sven Rebhan 2024-02-22 18:56:13 +01:00 committed by GitHub
parent 5847e1d9ee
commit 2942f84aa3
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11 changed files with 200 additions and 27 deletions

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@ -33,6 +33,20 @@ The `csv` output data format converts metrics into CSV lines.
## Prefix tag and field columns with "tag_" and "field_" respectively.
## This can be helpful if you need to know the "type" of a column.
# csv_column_prefix = false
## Use the specified order for the columns.
## This can be helpful if you need a specific output order. To specify tags,
## use a `tag.` prefix, for fields use a `field.` prefix and use `name` and
## `timestamp` to reference the measurement name and timestamp respectively.
## NOTE: The output will only contain the specified tags, fields, etc. All
## other data will be dropped. In case a tag or field does not exist,
## the column will be empty.
## ex. csv_columns = ["timestamp", "tag.host", "field.value"]
##
## By default all metric data will be written in the order:
## timestamp, name, tags..., fields...
## with tags and fields being ordered alphabetically.
# csv_columns = []
```
## Examples

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@ -7,6 +7,7 @@ import (
"runtime"
"sort"
"strconv"
"strings"
"time"
"unicode/utf8"
@ -16,10 +17,11 @@ import (
)
type Serializer struct {
TimestampFormat string `toml:"csv_timestamp_format"`
Separator string `toml:"csv_separator"`
Header bool `toml:"csv_header"`
Prefix bool `toml:"csv_column_prefix"`
TimestampFormat string `toml:"csv_timestamp_format"`
Separator string `toml:"csv_separator"`
Header bool `toml:"csv_header"`
Prefix bool `toml:"csv_column_prefix"`
Columns []string `toml:"csv_columns"`
buffer bytes.Buffer
writer *csv.Writer
@ -45,6 +47,17 @@ func (s *Serializer) Init() error {
}
}
// Check columns if any
for _, name := range s.Columns {
switch {
case name == "timestamp", name == "name",
strings.HasPrefix(name, "tag."),
strings.HasPrefix(name, "field."):
default:
return fmt.Errorf("invalid column reference %q", name)
}
}
// Initialize the writer
s.writer = csv.NewWriter(&s.buffer)
s.writer.Comma, _ = utf8.DecodeRuneInString(s.Separator)
@ -54,25 +67,7 @@ func (s *Serializer) Init() error {
}
func (s *Serializer) Serialize(metric telegraf.Metric) ([]byte, error) {
// Clear the buffer
s.buffer.Truncate(0)
// Write the header if the user wants us to
if s.Header {
if err := s.writeHeader(metric); err != nil {
return nil, fmt.Errorf("writing header failed: %w", err)
}
s.Header = false
}
// Write the data
if err := s.writeData(metric); err != nil {
return nil, fmt.Errorf("writing data failed: %w", err)
}
// Finish up
s.writer.Flush()
return s.buffer.Bytes(), nil
return s.SerializeBatch([]telegraf.Metric{metric})
}
func (s *Serializer) SerializeBatch(metrics []telegraf.Metric) ([]byte, error) {
@ -85,15 +80,27 @@ func (s *Serializer) SerializeBatch(metrics []telegraf.Metric) ([]byte, error) {
// Write the header if the user wants us to
if s.Header {
if err := s.writeHeader(metrics[0]); err != nil {
return nil, fmt.Errorf("writing header failed: %w", err)
if len(s.Columns) > 0 {
if err := s.writeHeaderOrdered(); err != nil {
return nil, fmt.Errorf("writing header failed: %w", err)
}
} else {
if err := s.writeHeader(metrics[0]); err != nil {
return nil, fmt.Errorf("writing header failed: %w", err)
}
}
s.Header = false
}
for _, m := range metrics {
if err := s.writeData(m); err != nil {
return nil, fmt.Errorf("writing data failed: %w", err)
if len(s.Columns) > 0 {
if err := s.writeDataOrdered(m); err != nil {
return nil, fmt.Errorf("writing data failed: %w", err)
}
} else {
if err := s.writeData(m); err != nil {
return nil, fmt.Errorf("writing data failed: %w", err)
}
}
}
@ -130,6 +137,21 @@ func (s *Serializer) writeHeader(metric telegraf.Metric) error {
return s.writer.Write(columns)
}
func (s *Serializer) writeHeaderOrdered() error {
columns := make([]string, 0, len(s.Columns))
for _, name := range s.Columns {
if s.Prefix {
name = strings.ReplaceAll(name, ".", "_")
} else {
name = strings.TrimPrefix(name, "tag.")
name = strings.TrimPrefix(name, "field.")
}
columns = append(columns, name)
}
return s.writer.Write(columns)
}
func (s *Serializer) writeData(metric telegraf.Metric) error {
var timestamp string
@ -170,6 +192,50 @@ func (s *Serializer) writeData(metric telegraf.Metric) error {
return s.writer.Write(columns)
}
func (s *Serializer) writeDataOrdered(metric telegraf.Metric) error {
var timestamp string
// Format the time
switch s.TimestampFormat {
case "unix":
timestamp = strconv.FormatInt(metric.Time().Unix(), 10)
case "unix_ms":
timestamp = strconv.FormatInt(metric.Time().UnixNano()/1_000_000, 10)
case "unix_us":
timestamp = strconv.FormatInt(metric.Time().UnixNano()/1_000, 10)
case "unix_ns":
timestamp = strconv.FormatInt(metric.Time().UnixNano(), 10)
default:
timestamp = metric.Time().UTC().Format(s.TimestampFormat)
}
columns := make([]string, 0, len(s.Columns))
for _, name := range s.Columns {
switch {
case name == "timestamp":
columns = append(columns, timestamp)
case name == "name":
columns = append(columns, metric.Name())
case strings.HasPrefix(name, "tag."):
v, _ := metric.GetTag(strings.TrimPrefix(name, "tag."))
columns = append(columns, v)
case strings.HasPrefix(name, "field."):
var v string
field := strings.TrimPrefix(name, "field.")
if raw, ok := metric.GetField(field); ok {
var err error
v, err = internal.ToString(raw)
if err != nil {
return fmt.Errorf("converting field %q to string failed: %w", field, err)
}
}
columns = append(columns, v)
}
}
return s.writer.Write(columns)
}
func init() {
serializers.Add("csv",
func() serializers.Serializer {

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@ -66,6 +66,22 @@ func TestSerializeTransformationNonBatch(t *testing.T) {
name: "header and semicolon",
filename: "testcases/semicolon.conf",
},
{
name: "ordered without header",
filename: "testcases/ordered.conf",
},
{
name: "ordered with header",
filename: "testcases/ordered_with_header.conf",
},
{
name: "ordered with header and prefix",
filename: "testcases/ordered_with_header_prefix.conf",
},
{
name: "ordered non-existing fields and tags",
filename: "testcases/ordered_not_exist.conf",
},
}
parser := &influx.Parser{}
require.NoError(t, parser.Init())
@ -93,6 +109,7 @@ func TestSerializeTransformationNonBatch(t *testing.T) {
Separator: cfg.Separator,
Header: cfg.Header,
Prefix: cfg.Prefix,
Columns: cfg.Columns,
}
require.NoError(t, serializer.Init())
// expected results use LF endings
@ -139,6 +156,22 @@ func TestSerializeTransformationBatch(t *testing.T) {
name: "header and semicolon",
filename: "testcases/semicolon.conf",
},
{
name: "ordered without header",
filename: "testcases/ordered.conf",
},
{
name: "ordered with header",
filename: "testcases/ordered_with_header.conf",
},
{
name: "ordered with header and prefix",
filename: "testcases/ordered_with_header_prefix.conf",
},
{
name: "ordered non-existing fields and tags",
filename: "testcases/ordered_not_exist.conf",
},
}
parser := &influx.Parser{}
require.NoError(t, parser.Init())
@ -166,6 +199,7 @@ func TestSerializeTransformationBatch(t *testing.T) {
Separator: cfg.Separator,
Header: cfg.Header,
Prefix: cfg.Prefix,
Columns: cfg.Columns,
}
require.NoError(t, serializer.Init())
// expected results use LF endings

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@ -0,0 +1,11 @@
# Example for outputting CSV with a specified column order
#
# Output File:
# testcases/ordered.csv
#
# Input:
# mymetric,machine=A1,host=1cbbb3796fc2 pressure=987.5,temperature=23.7,hours=15i 1653643420000000000
# mymetric,machine=X9,host=83d2e491ca01 pressure=1022.6,temperature=39.9,hours=231i 1653646789000000000
csv_timestamp_format = "unix_ns"
csv_columns = ["timestamp", "field.temperature", "field.pressure", "tag.machine"]

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@ -0,0 +1,2 @@
1653643420000000000,23.7,987.5,A1
1653646789000000000,39.9,1022.6,X9
1 1653643420000000000 23.7 987.5 A1
2 1653646789000000000 39.9 1022.6 X9

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@ -0,0 +1,12 @@
# Example for outputting CSV with a specified column order
#
# Output File:
# testcases/ordered_not_exist.csv
#
# Input:
# mymetric,machine=A1,host=1cbbb3796fc2 pressure=987.5,temperature=23.7,hours=15i 1653643420000000000
# mymetric,machine=X9,host=83d2e491ca01 status="healthy",pressure=1022.6,temperature=39.9,hours=231i 1653646789000000000
csv_timestamp_format = "unix_ns"
csv_header = true
csv_columns = ["timestamp", "field.temperature", "field.pressure", "field.status", "tag.location", "tag.machine"]

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@ -0,0 +1,3 @@
timestamp,temperature,pressure,status,location,machine
1653643420000000000,23.7,987.5,,,A1
1653646789000000000,39.9,1022.6,healthy,,X9
1 timestamp temperature pressure status location machine
2 1653643420000000000 23.7 987.5 A1
3 1653646789000000000 39.9 1022.6 healthy X9

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@ -0,0 +1,12 @@
# Example for outputting CSV with a specified column order
#
# Output File:
# testcases/ordered_with_header.csv
#
# Input:
# mymetric,machine=A1,host=1cbbb3796fc2 pressure=987.5,temperature=23.7,hours=15i 1653643420000000000
# mymetric,machine=X9,host=83d2e491ca01 pressure=1022.6,temperature=39.9,hours=231i 1653646789000000000
csv_timestamp_format = "unix_ns"
csv_header = true
csv_columns = ["timestamp", "field.temperature", "field.pressure", "tag.machine"]

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@ -0,0 +1,3 @@
timestamp,temperature,pressure,machine
1653643420000000000,23.7,987.5,A1
1653646789000000000,39.9,1022.6,X9
1 timestamp temperature pressure machine
2 1653643420000000000 23.7 987.5 A1
3 1653646789000000000 39.9 1022.6 X9

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@ -0,0 +1,13 @@
# Example for outputting CSV with a specified column order
#
# Output File:
# testcases/ordered_with_header_prefix.csv
#
# Input:
# mymetric,machine=A1,host=1cbbb3796fc2 pressure=987.5,temperature=23.7,hours=15i 1653643420000000000
# mymetric,machine=X9,host=83d2e491ca01 pressure=1022.6,temperature=39.9,hours=231i 1653646789000000000
csv_timestamp_format = "unix_ns"
csv_header = true
csv_column_prefix = true
csv_columns = ["timestamp", "field.temperature", "field.pressure", "tag.machine"]

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@ -0,0 +1,3 @@
timestamp,field_temperature,field_pressure,tag_machine
1653643420000000000,23.7,987.5,A1
1653646789000000000,39.9,1022.6,X9
1 timestamp field_temperature field_pressure tag_machine
2 1653643420000000000 23.7 987.5 A1
3 1653646789000000000 39.9 1022.6 X9