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43 changed files with 1344 additions and 1733 deletions
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@@ -4,6 +4,7 @@ on:
push:
branches:
- main
- main-v2
jobs:
build:
+56 -56
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@@ -3,61 +3,61 @@ name: Docker Build
on: [pull_request]
jobs:
# concise_migration_diff:
# name: Verify concise migration and generated schema
# runs-on: ubuntu-latest
# steps:
# - uses: actions/checkout@v2
# - name: Run docker concise migration build
# run: make docker-concise-migration-build
# - name: Run database
# run: docker-compose -f docker-compose.test.yml up -d test-db
# - name: Test concise migration
# run: |
# sleep 10
# docker run --rm --network host -e DATABASE_USER=vdbm -e DATABASE_PASSWORD=password \
# -e DATABASE_HOSTNAME=127.0.0.1 -e DATABASE_PORT=8066 -e DATABASE_NAME=vulcanize_testing \
# vulcanize/concise-migration-build
# - name: Verify schema is latest
# run: |
# PGPASSWORD="password" pg_dump -h localhost -p 8066 -U vdbm vulcanize_testing --no-owner --schema-only > ./db/migration_schema.sql
# ./scripts/check_diff.sh ./db/migration_schema.sql db/schema.sql
concise_migration_diff:
name: Verify concise migration and generated schema
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v2
- name: Run docker concise migration build
run: make docker-concise-migration-build
- name: Run database
run: docker-compose -f docker-compose.test.yml up -d test-db
- name: Test concise migration
run: |
sleep 10
docker run --rm --network host -e DATABASE_USER=vdbm -e DATABASE_PASSWORD=password \
-e DATABASE_HOSTNAME=127.0.0.1 -e DATABASE_PORT=8066 -e DATABASE_NAME=vulcanize_testing \
vulcanize/concise-migration-build
- name: Verify schema is latest
run: |
PGPASSWORD="password" pg_dump -h localhost -p 8066 -U vdbm vulcanize_testing --no-owner --schema-only > ./db/migration_schema.sql
./scripts/check_diff.sh ./db/migration_schema.sql db/schema.sql
# incremental_migration_diff:
# name: Compare conscise migration schema with incremental migration.
# runs-on: ubuntu-latest
# steps:
# - uses: actions/checkout@v2
# - name: Run database
# run: docker-compose -f docker-compose.test.yml up -d test-db statediff-migrations
# - name: Test incremental migration
# run: |
# sleep 10
# docker run --rm --network host -e DATABASE_USER=vdbm -e DATABASE_PASSWORD=password \
# -e DATABASE_HOSTNAME=127.0.0.1 -e DATABASE_PORT=8066 -e DATABASE_NAME=vulcanize_testing \
# vulcanize/statediff-migrations:v0.9.0
# - name: Verify schema is latest
# run: |
# PGPASSWORD="password" pg_dump -h localhost -p 8066 -U vdbm vulcanize_testing --no-owner --schema-only > ./db/migration_schema.sql
# ./scripts/check_diff.sh db/schema.sql ./db/migration_schema.sql
incremental_migration_diff:
name: Compare conscise migration schema with incremental migration.
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v2
- name: Run database
run: docker-compose -f docker-compose.test.yml up -d test-db statediff-migrations
- name: Test incremental migration
run: |
sleep 10
docker run --rm --network host -e DATABASE_USER=vdbm -e DATABASE_PASSWORD=password \
-e DATABASE_HOSTNAME=127.0.0.1 -e DATABASE_PORT=8066 -e DATABASE_NAME=vulcanize_testing \
vulcanize/statediff-migrations:v0.9.0
- name: Verify schema is latest
run: |
PGPASSWORD="password" pg_dump -h localhost -p 8066 -U vdbm vulcanize_testing --no-owner --schema-only > ./db/migration_schema.sql
./scripts/check_diff.sh db/schema.sql ./db/migration_schema.sql
# migration:
# name: Compare up and down migration
# env:
# GOPATH: /tmp/go
# strategy:
# matrix:
# go-version: [ 1.16.x ]
# os: [ ubuntu-latest ]
# runs-on: ${{ matrix.os }}
# steps:
# - name: Create GOPATH
# run: mkdir -p /tmp/go
# - name: Install Go
# uses: actions/setup-go@v2
# with:
# go-version: ${{ matrix.go-version }}
# - uses: actions/checkout@v2
# - name: Test migration
# run: |
# timeout 5m make test-migrations
migration:
name: Compare up and down migration
env:
GOPATH: /tmp/go
strategy:
matrix:
go-version: [ 1.16.x ]
os: [ ubuntu-latest ]
runs-on: ${{ matrix.os }}
steps:
- name: Create GOPATH
run: mkdir -p /tmp/go
- name: Install Go
uses: actions/setup-go@v2
with:
go-version: ${{ matrix.go-version }}
- uses: actions/checkout@v2
- name: Test migration
run: |
timeout 5m make test-migrations
+2 -27
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@@ -1,28 +1,3 @@
FROM golang:1.16-alpine as builder
FROM postgres:12-alpine
RUN apk --update --no-cache add make git g++ linux-headers
ADD . /go/src/github.com/vulcanize/ipld-eth-db
# Build migration tool
WORKDIR /go/src/github.com/pressly
RUN git clone https://github.com/pressly/goose.git
WORKDIR /go/src/github.com/pressly/goose/cmd/goose
RUN GCO_ENABLED=0 GOOS=linux go build -a -installsuffix cgo -ldflags '-extldflags "-static"' -tags='no_sqlite3' -o goose .
# app container
FROM alpine
WORKDIR /app
COPY --from=builder /go/src/github.com/vulcanize/ipld-eth-db/scripts/startup_script.sh .
# copy over files for multi-node setup
COPY --from=builder /go/src/github.com/vulcanize/ipld-eth-db/docker-compose.test.yml docker-multi-node/docker-compose.test.yml
COPY --from=builder /go/src/github.com/vulcanize/ipld-eth-db/scripts/init-access-node.sh docker-multi-node/scripts/init-access-node.sh
COPY --from=builder /go/src/github.com/vulcanize/ipld-eth-db/scripts/init-data-node.sh docker-multi-node/scripts/init-data-node.sh
COPY --from=builder /go/src/github.com/pressly/goose/cmd/goose/goose goose
COPY --from=builder /go/src/github.com/vulcanize/ipld-eth-db/db/migrations migrations/vulcanizedb
ENTRYPOINT ["/app/startup_script.sh"]
COPY ./schema.sql /docker-entrypoint-initdb.d/init.sql
+3 -36
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@@ -1,14 +1,10 @@
ifndef GOPATH
override GOPATH = $(HOME)/go
endif
BIN = $(GOPATH)/bin
# Tools
## Migration tool
GOOSE = $(BIN)/goose
$(BIN)/goose:
GO111MODULE=off go get -u github.com/pressly/goose/cmd/goose
go get -u github.com/pressly/goose/cmd/goose
.PHONY: installtools
installtools: | $(GOOSE)
@@ -48,47 +44,18 @@ rollback: $(GOOSE) checkdbvars
$(GOOSE) -dir db/migrations postgres "$(CONNECT_STRING)" down
pg_dump -O -s $(CONNECT_STRING) > schema.sql
## Rollback to a select migration (id/timestamp)
.PHONY: rollback_to
rollback_to: $(GOOSE) checkmigration checkdbvars
$(GOOSE) -dir db/migrations postgres "$(CONNECT_STRING)" down-to "$(MIGRATION)"
## Rollback pre_batch_set
.PHONY: `rollback_pre_batch_set`
rollback_pre_batch_set: $(GOOSE) checkdbvars
$(GOOSE) -dir db/pre_batch_processing_migrations postgres "$(CONNECT_STRING)" down
## Rollback post_batch_set
.PHONY: rollback_post_batch_set
rollback_post_batch_set: $(GOOSE) checkdbvars
$(GOOSE) -dir db/post_batch_processing_migrations postgres "$(CONNECT_STRING)" down
## Apply the next up migration
.PHONY: migrate_up_by_one
migrate_up_by_one: $(GOOSE) checkdbvars
$(GOOSE) -dir db/migrations postgres "$(CONNECT_STRING)" up-by-one
## Apply all migrations not already run
.PHONY: migrate
migrate: $(GOOSE) checkdbvars
$(GOOSE) -dir db/migrations postgres "$(CONNECT_STRING)" up
pg_dump -O -s $(CONNECT_STRING) > schema.sql
## Apply migrations to be ran before a batch processing
.PHONY: migrate_pre_batch_set
migrate_pre_batch_set: $(GOOSE) checkdbvars
$(GOOSE) -dir db/pre_batch_processing_migrations postgres "$(CONNECT_STRING)" up
## Apply migrations to be ran after a batch processing, one-by-one
.PHONY: migrate_post_batch_set_up_by_one
migrate_post_batch_set_up_by_one: $(GOOSE) checkdbvars
$(GOOSE) -dir db/post_batch_processing_migrations postgres "$(CONNECT_STRING)" up-by-one
## Apply migrations to be ran after a batch processing
.PHONY: migrate_post_batch_set
migrate_post_batch_set: $(GOOSE) checkdbvars
$(GOOSE) -dir db/post_batch_processing_migrations postgres "$(CONNECT_STRING)" up
## Create a new migration file
.PHONY: new_migration
new_migration: $(GOOSE) checkmigname
@@ -124,4 +91,4 @@ docker-concise-migration-build:
.PHONY: test-migrations
test-migrations: $(GOOSE)
./scripts/test_migration.sh
./scripts/test_migration.sh
+1 -41
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@@ -2,44 +2,4 @@
Schemas and utils for IPLD ETH Postgres database
## Database UML
![](vulcanize_db.png)
## Run
* Remove any existing containers / volumes:
```bash
docker-compose down -v --remove-orphans
```
* Spin up an access node and three data nodes using [docker-compose.test.yml](./docker-compose.test.yml):
```bash
docker-compose -f docker-compose.test.yml up
```
Following final output should be seen on all the nodes:
```
LOG: TimescaleDB background worker launcher connected to shared catalogs
```
* Edit [startup_script.sh](./scripts/startup_script.sh) to change the number of migrations to be run:
```bash
./goose -dir migrations/vulcanizedb postgres "$VDB_PG_CONNECT" up-to 21
```
* In another `ipld-eth-db` terminal window, build an image `migrations-test` using [Dockerfile](./db/Dockerfile):
```bash
docker build -t migrations-test -f ./db/Dockerfile .
```
* After the access and data nodes have spun up, start a container using `migrations-test` image to run the db migrations:
```bash
# Here, we are running the container using host network.
# So connect to access node on 127.0.0.1:8066
docker run --rm --network host -e DATABASE_USER=postgres -e DATABASE_PASSWORD=password -e DATABASE_HOSTNAME=127.0.0.1 -e DATABASE_PORT=8066 -e DATABASE_NAME=vulcanize_testing_v4 migrations-test
```
![](vulcanize_db.png)
+1 -1
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@@ -8,7 +8,7 @@ ADD . /go/src/github.com/vulcanize/ipld-eth-db
WORKDIR /go/src/github.com/pressly
RUN git clone https://github.com/pressly/goose.git
WORKDIR /go/src/github.com/pressly/goose/cmd/goose
RUN GCO_ENABLED=0 GOOS=linux go build -a -installsuffix cgo -ldflags '-extldflags "-static"' -tags='no_sqlite3' -o goose .
RUN GCO_ENABLED=0 GOOS=linux go build -a -installsuffix cgo -ldflags '-extldflags "-static"' -tags='no_mysql no_sqlite' -o goose .
# app container
FROM alpine
@@ -1,9 +1,7 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS public.blocks (
block_number BIGINT NOT NULL,
key TEXT NOT NULL,
data BYTEA NOT NULL,
PRIMARY KEY (key, block_number)
key TEXT UNIQUE NOT NULL,
data BYTEA NOT NULL
);
-- +goose Down
+8 -6
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@@ -1,10 +1,12 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS nodes (
genesis_block VARCHAR(66),
network_id VARCHAR,
node_id VARCHAR(128) PRIMARY KEY,
client_name VARCHAR,
chain_id INTEGER DEFAULT 1
CREATE TABLE nodes (
id SERIAL PRIMARY KEY,
client_name VARCHAR,
genesis_block VARCHAR(66),
network_id VARCHAR,
node_id VARCHAR(128),
chain_id INTEGER DEFAULT 1,
CONSTRAINT node_uc UNIQUE (genesis_block, network_id, node_id, chain_id)
);
-- +goose Down
@@ -1,23 +1,24 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS eth.header_cids (
block_number BIGINT NOT NULL,
block_hash VARCHAR(66) NOT NULL,
parent_hash VARCHAR(66) NOT NULL,
cid TEXT NOT NULL,
td NUMERIC NOT NULL,
node_id VARCHAR(128) NOT NULL,
reward NUMERIC NOT NULL,
state_root VARCHAR(66) NOT NULL,
tx_root VARCHAR(66) NOT NULL,
receipt_root VARCHAR(66) NOT NULL,
uncle_root VARCHAR(66) NOT NULL,
bloom BYTEA NOT NULL,
timestamp BIGINT NOT NULL,
mh_key TEXT NOT NULL,
times_validated INTEGER NOT NULL DEFAULT 1,
coinbase VARCHAR(66) NOT NULL,
PRIMARY KEY (block_hash, block_number)
CREATE TABLE eth.header_cids (
id SERIAL PRIMARY KEY,
block_number BIGINT NOT NULL,
block_hash VARCHAR(66) NOT NULL,
parent_hash VARCHAR(66) NOT NULL,
cid TEXT NOT NULL,
mh_key TEXT NOT NULL REFERENCES public.blocks (key) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
td NUMERIC NOT NULL,
node_id INTEGER NOT NULL REFERENCES nodes (id) ON DELETE CASCADE,
reward NUMERIC NOT NULL,
state_root VARCHAR(66) NOT NULL,
tx_root VARCHAR(66) NOT NULL,
receipt_root VARCHAR(66) NOT NULL,
uncle_root VARCHAR(66) NOT NULL,
bloom BYTEA NOT NULL,
timestamp NUMERIC NOT NULL,
times_validated INTEGER NOT NULL DEFAULT 1,
base_fee BIGINT,
UNIQUE (block_number, block_hash)
);
-- +goose Down
DROP TABLE eth.header_cids;
DROP TABLE eth.header_cids;
@@ -1,14 +1,14 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS eth.uncle_cids (
block_number BIGINT NOT NULL,
block_hash VARCHAR(66) NOT NULL,
header_id VARCHAR(66) NOT NULL,
parent_hash VARCHAR(66) NOT NULL,
cid TEXT NOT NULL,
reward NUMERIC NOT NULL,
mh_key TEXT NOT NULL,
PRIMARY KEY (block_hash, block_number)
CREATE TABLE eth.uncle_cids (
id SERIAL PRIMARY KEY,
header_id INTEGER NOT NULL REFERENCES eth.header_cids (id) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
block_hash VARCHAR(66) NOT NULL,
parent_hash VARCHAR(66) NOT NULL,
cid TEXT NOT NULL,
mh_key TEXT NOT NULL REFERENCES public.blocks (key) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
reward NUMERIC NOT NULL,
UNIQUE (header_id, block_hash)
);
-- +goose Down
DROP TABLE eth.uncle_cids;
DROP TABLE eth.uncle_cids;
@@ -1,17 +1,16 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS eth.transaction_cids (
block_number BIGINT NOT NULL,
header_id VARCHAR(66) NOT NULL,
tx_hash VARCHAR(66) NOT NULL,
cid TEXT NOT NULL,
dst VARCHAR(66) NOT NULL,
src VARCHAR(66) NOT NULL,
index INTEGER NOT NULL,
mh_key TEXT NOT NULL,
tx_data BYTEA,
tx_type INTEGER,
value NUMERIC,
PRIMARY KEY (tx_hash, block_number)
CREATE TABLE eth.transaction_cids (
id SERIAL PRIMARY KEY,
header_id INTEGER NOT NULL REFERENCES eth.header_cids (id) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
tx_hash VARCHAR(66) NOT NULL,
index INTEGER NOT NULL,
cid TEXT NOT NULL,
mh_key TEXT NOT NULL REFERENCES public.blocks (key) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
dst VARCHAR(66) NOT NULL,
src VARCHAR(66) NOT NULL,
tx_data BYTEA,
tx_type BYTEA,
UNIQUE (header_id, tx_hash)
);
-- +goose Down
@@ -1,16 +1,16 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS eth.receipt_cids (
block_number BIGINT NOT NULL,
tx_id VARCHAR(66) NOT NULL,
leaf_cid TEXT NOT NULL,
contract VARCHAR(66),
contract_hash VARCHAR(66),
leaf_mh_key TEXT NOT NULL,
post_state VARCHAR(66),
post_status INTEGER,
log_root VARCHAR(66),
PRIMARY KEY (tx_id, block_number)
CREATE TABLE eth.receipt_cids (
id SERIAL PRIMARY KEY,
tx_id INTEGER NOT NULL REFERENCES eth.transaction_cids (id) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
leaf_cid TEXT NOT NULL,
leaf_mh_key TEXT NOT NULL REFERENCES public.blocks (key) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
contract VARCHAR(66),
contract_hash VARCHAR(66),
post_state VARCHAR(66),
post_status INTEGER,
log_root VARCHAR(66),
UNIQUE (tx_id)
);
-- +goose Down
DROP TABLE eth.receipt_cids;
DROP TABLE eth.receipt_cids;
@@ -1,15 +1,15 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS eth.state_cids (
block_number BIGINT NOT NULL,
header_id VARCHAR(66) NOT NULL,
state_leaf_key VARCHAR(66),
cid TEXT NOT NULL,
state_path BYTEA NOT NULL,
node_type INTEGER NOT NULL,
diff BOOLEAN NOT NULL DEFAULT FALSE,
mh_key TEXT NOT NULL,
PRIMARY KEY (state_path, header_id, block_number)
CREATE TABLE eth.state_cids (
id BIGSERIAL PRIMARY KEY,
header_id INTEGER NOT NULL REFERENCES eth.header_cids (id) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
state_leaf_key VARCHAR(66),
cid TEXT NOT NULL,
mh_key TEXT NOT NULL REFERENCES public.blocks (key) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
state_path BYTEA,
node_type INTEGER NOT NULL,
diff BOOLEAN NOT NULL DEFAULT FALSE,
UNIQUE (header_id, state_path)
);
-- +goose Down
DROP TABLE eth.state_cids;
DROP TABLE eth.state_cids;
@@ -1,16 +1,15 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS eth.storage_cids (
block_number BIGINT NOT NULL,
header_id VARCHAR(66) NOT NULL,
state_path BYTEA NOT NULL,
storage_leaf_key VARCHAR(66),
cid TEXT NOT NULL,
storage_path BYTEA NOT NULL,
node_type INTEGER NOT NULL,
diff BOOLEAN NOT NULL DEFAULT FALSE,
mh_key TEXT NOT NULL,
PRIMARY KEY (storage_path, state_path, header_id, block_number)
CREATE TABLE eth.storage_cids (
id BIGSERIAL PRIMARY KEY,
state_id BIGINT NOT NULL REFERENCES eth.state_cids (id) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
storage_leaf_key VARCHAR(66),
cid TEXT NOT NULL,
mh_key TEXT NOT NULL REFERENCES public.blocks (key) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
storage_path BYTEA,
node_type INTEGER NOT NULL,
diff BOOLEAN NOT NULL DEFAULT FALSE,
UNIQUE (state_id, storage_path)
);
-- +goose Down
DROP TABLE eth.storage_cids;
DROP TABLE eth.storage_cids;
@@ -1,14 +0,0 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS eth.state_accounts (
block_number BIGINT NOT NULL,
header_id VARCHAR(66) NOT NULL,
state_path BYTEA NOT NULL,
balance NUMERIC NOT NULL,
nonce BIGINT NOT NULL,
code_hash BYTEA NOT NULL,
storage_root VARCHAR(66) NOT NULL,
PRIMARY KEY (state_path, header_id, block_number)
);
-- +goose Down
DROP TABLE eth.state_accounts;
@@ -0,0 +1,13 @@
-- +goose Up
CREATE TABLE eth.state_accounts (
id SERIAL PRIMARY KEY,
state_id BIGINT NOT NULL REFERENCES eth.state_cids (id) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
balance NUMERIC NOT NULL,
nonce INTEGER NOT NULL,
code_hash BYTEA NOT NULL,
storage_root VARCHAR(66) NOT NULL,
UNIQUE (state_id)
);
-- +goose Down
DROP TABLE eth.state_accounts;
@@ -1,12 +0,0 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS eth.access_list_elements (
block_number BIGINT NOT NULL,
tx_id VARCHAR(66) NOT NULL,
index INTEGER NOT NULL,
address VARCHAR(66),
storage_keys VARCHAR(66)[],
PRIMARY KEY (tx_id, index, block_number)
);
-- +goose Down
DROP TABLE eth.access_list_elements;
@@ -1,19 +0,0 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS eth.log_cids (
block_number BIGINT NOT NULL,
leaf_cid TEXT NOT NULL,
leaf_mh_key TEXT NOT NULL,
rct_id VARCHAR(66) NOT NULL,
address VARCHAR(66) NOT NULL,
index INTEGER NOT NULL,
topic0 VARCHAR(66),
topic1 VARCHAR(66),
topic2 VARCHAR(66),
topic3 VARCHAR(66),
log_data BYTEA,
PRIMARY KEY (rct_id, index, block_number)
);
-- +goose Down
-- log indexes
DROP TABLE eth.log_cids;
@@ -0,0 +1,69 @@
-- +goose Up
-- +goose StatementBegin
CREATE FUNCTION eth.graphql_subscription() returns TRIGGER as $$
declare
table_name text = TG_ARGV[0];
attribute text = TG_ARGV[1];
id text;
begin
execute 'select $1.' || quote_ident(attribute)
using new
into id;
perform pg_notify('postgraphile:' || table_name,
json_build_object(
'__node__', json_build_array(
table_name,
id
)
)::text
);
return new;
end;
$$ language plpgsql;
-- +goose StatementEnd
CREATE TRIGGER header_cids_ai
after INSERT ON eth.header_cids
for each row
execute procedure eth.graphql_subscription('header_cids', 'id');
CREATE TRIGGER receipt_cids_ai
after INSERT ON eth.receipt_cids
for each row
execute procedure eth.graphql_subscription('receipt_cids', 'id');
CREATE TRIGGER state_accounts_ai
after INSERT ON eth.state_accounts
for each row
execute procedure eth.graphql_subscription('state_accounts', 'id');
CREATE TRIGGER state_cids_ai
after INSERT ON eth.state_cids
for each row
execute procedure eth.graphql_subscription('state_cids', 'id');
CREATE TRIGGER storage_cids_ai
after INSERT ON eth.storage_cids
for each row
execute procedure eth.graphql_subscription('storage_cids', 'id');
CREATE TRIGGER transaction_cids_ai
after INSERT ON eth.transaction_cids
for each row
execute procedure eth.graphql_subscription('transaction_cids', 'id');
CREATE TRIGGER uncle_cids_ai
after INSERT ON eth.uncle_cids
for each row
execute procedure eth.graphql_subscription('uncle_cids', 'id');
-- +goose Down
DROP TRIGGER uncle_cids_ai ON eth.uncle_cids;
DROP TRIGGER transaction_cids_ai ON eth.transaction_cids;
DROP TRIGGER storage_cids_ai ON eth.storage_cids;
DROP TRIGGER state_cids_ai ON eth.state_cids;
DROP TRIGGER state_accounts_ai ON eth.state_accounts;
DROP TRIGGER receipt_cids_ai ON eth.receipt_cids;
DROP TRIGGER header_cids_ai ON eth.header_cids;
DROP FUNCTION eth.graphql_subscription();
+112
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@@ -0,0 +1,112 @@
-- +goose Up
-- header indexes
CREATE INDEX block_number_index ON eth.header_cids USING brin (block_number);
CREATE INDEX block_hash_index ON eth.header_cids USING btree (block_hash);
CREATE INDEX header_cid_index ON eth.header_cids USING btree (cid);
CREATE INDEX header_mh_index ON eth.header_cids USING btree (mh_key);
CREATE INDEX state_root_index ON eth.header_cids USING btree (state_root);
CREATE INDEX timestamp_index ON eth.header_cids USING brin (timestamp);
-- transaction indexes
CREATE INDEX tx_header_id_index ON eth.transaction_cids USING btree (header_id);
CREATE INDEX tx_hash_index ON eth.transaction_cids USING btree (tx_hash);
CREATE INDEX tx_cid_index ON eth.transaction_cids USING btree (cid);
CREATE INDEX tx_mh_index ON eth.transaction_cids USING btree (mh_key);
CREATE INDEX tx_dst_index ON eth.transaction_cids USING btree (dst);
CREATE INDEX tx_src_index ON eth.transaction_cids USING btree (src);
-- receipt indexes
CREATE INDEX rct_tx_id_index ON eth.receipt_cids USING btree (tx_id);
CREATE INDEX rct_leaf_cid_index ON eth.receipt_cids USING btree (leaf_cid);
CREATE INDEX rct_leaf_mh_index ON eth.receipt_cids USING btree (leaf_mh_key);
CREATE INDEX rct_contract_index ON eth.receipt_cids USING btree (contract);
CREATE INDEX rct_contract_hash_index ON eth.receipt_cids USING btree (contract_hash);
-- state node indexes
CREATE INDEX state_header_id_index ON eth.state_cids USING btree (header_id);
CREATE INDEX state_leaf_key_index ON eth.state_cids USING btree (state_leaf_key);
CREATE INDEX state_cid_index ON eth.state_cids USING btree (cid);
CREATE INDEX state_mh_index ON eth.state_cids USING btree (mh_key);
CREATE INDEX state_path_index ON eth.state_cids USING btree (state_path);
CREATE INDEX state_node_type_index ON eth.state_cids USING btree (node_type);
-- storage node indexes
CREATE INDEX storage_state_id_index ON eth.storage_cids USING btree (state_id);
CREATE INDEX storage_leaf_key_index ON eth.storage_cids USING btree (storage_leaf_key);
CREATE INDEX storage_cid_index ON eth.storage_cids USING btree (cid);
CREATE INDEX storage_mh_index ON eth.storage_cids USING btree (mh_key);
CREATE INDEX storage_path_index ON eth.storage_cids USING btree (storage_path);
CREATE INDEX storage_node_type_index ON eth.storage_cids USING btree (node_type);
-- state accounts indexes
CREATE INDEX account_state_id_index ON eth.state_accounts USING btree (state_id);
CREATE INDEX storage_root_index ON eth.state_accounts USING btree (storage_root);
-- +goose Down
-- state account indexes
DROP INDEX eth.storage_root_index;
DROP INDEX eth.account_state_id_index;
-- storage node indexes
DROP INDEX eth.storage_node_type_index;
DROP INDEX eth.storage_path_index;
DROP INDEX eth.storage_mh_index;
DROP INDEX eth.storage_cid_index;
DROP INDEX eth.storage_leaf_key_index;
DROP INDEX eth.storage_state_id_index;
-- state node indexes
DROP INDEX eth.state_node_type_index;
DROP INDEX eth.state_path_index;
DROP INDEX eth.state_mh_index;
DROP INDEX eth.state_cid_index;
DROP INDEX eth.state_leaf_key_index;
DROP INDEX eth.state_header_id_index;
-- receipt indexes
DROP INDEX eth.rct_contract_hash_index;
DROP INDEX eth.rct_contract_index;
DROP INDEX eth.rct_leaf_mh_index;
DROP INDEX eth.rct_leaf_cid_index;
DROP INDEX eth.rct_tx_id_index;
-- transaction indexes
DROP INDEX eth.tx_src_index;
DROP INDEX eth.tx_dst_index;
DROP INDEX eth.tx_mh_index;
DROP INDEX eth.tx_cid_index;
DROP INDEX eth.tx_hash_index;
DROP INDEX eth.tx_header_id_index;
-- header indexes
DROP INDEX eth.timestamp_index;
DROP INDEX eth.state_root_index;
DROP INDEX eth.header_mh_index;
DROP INDEX eth.header_cid_index;
DROP INDEX eth.block_hash_index;
DROP INDEX eth.block_number_index;
-129
View File
@@ -1,129 +0,0 @@
-- +goose Up
-- header indexes
CREATE INDEX header_block_number_index ON eth.header_cids USING brin (block_number);
CREATE UNIQUE INDEX header_cid_index ON eth.header_cids USING btree (cid, block_number);
CREATE UNIQUE INDEX header_mh_block_number_index ON eth.header_cids USING btree (mh_key, block_number);
CREATE INDEX state_root_index ON eth.header_cids USING btree (state_root);
CREATE INDEX timestamp_index ON eth.header_cids USING brin (timestamp);
-- uncle indexes
CREATE INDEX uncle_block_number_index ON eth.uncle_cids USING brin (block_number);
CREATE UNIQUE INDEX uncle_mh_block_number_index ON eth.uncle_cids USING btree (mh_key, block_number);
CREATE INDEX uncle_header_id_index ON eth.uncle_cids USING btree (header_id);
-- transaction indexes
CREATE INDEX tx_block_number_index ON eth.transaction_cids USING brin (block_number);
CREATE INDEX tx_header_id_index ON eth.transaction_cids USING btree (header_id);
CREATE UNIQUE INDEX tx_cid_index ON eth.transaction_cids USING btree (cid, block_number);
CREATE UNIQUE INDEX tx_mh_block_number_index ON eth.transaction_cids USING btree (mh_key, block_number);
CREATE INDEX tx_dst_index ON eth.transaction_cids USING btree (dst);
CREATE INDEX tx_src_index ON eth.transaction_cids USING btree (src);
-- receipt indexes
CREATE INDEX rct_block_number_index ON eth.receipt_cids USING brin (block_number);
CREATE INDEX rct_leaf_cid_index ON eth.receipt_cids USING btree (leaf_cid);
CREATE INDEX rct_leaf_mh_block_number_index ON eth.receipt_cids USING btree (leaf_mh_key, block_number);
CREATE INDEX rct_contract_index ON eth.receipt_cids USING btree (contract);
CREATE INDEX rct_contract_hash_index ON eth.receipt_cids USING btree (contract_hash);
-- state node indexes
CREATE INDEX state_block_number_index ON eth.state_cids USING brin (block_number);
CREATE INDEX state_leaf_key_index ON eth.state_cids USING btree (state_leaf_key);
CREATE INDEX state_cid_index ON eth.state_cids USING btree (cid);
CREATE INDEX state_mh_block_number_index ON eth.state_cids USING btree (mh_key, block_number);
CREATE INDEX state_header_id_index ON eth.state_cids USING btree (header_id);
CREATE INDEX state_node_type_index ON eth.state_cids USING btree (node_type);
-- storage node indexes
CREATE INDEX storage_block_number_index ON eth.storage_cids USING brin (block_number);
CREATE INDEX storage_state_path_index ON eth.storage_cids USING btree (state_path);
CREATE INDEX storage_leaf_key_index ON eth.storage_cids USING btree (storage_leaf_key);
CREATE INDEX storage_cid_index ON eth.storage_cids USING btree (cid);
CREATE INDEX storage_mh_block_number_index ON eth.storage_cids USING btree (mh_key, block_number);
CREATE INDEX storage_header_id_index ON eth.storage_cids USING btree (header_id);
CREATE INDEX storage_node_type_index ON eth.storage_cids USING btree (node_type);
-- state accounts indexes
CREATE INDEX account_block_number_index ON eth.state_accounts USING brin (block_number);
CREATE INDEX account_header_id_index ON eth.state_accounts USING btree (header_id);
CREATE INDEX account_storage_root_index ON eth.state_accounts USING btree (storage_root);
-- access list indexes
CREATE INDEX access_list_block_number_index ON eth.access_list_elements USING brin (block_number);
CREATE INDEX access_list_element_address_index ON eth.access_list_elements USING btree (address);
CREATE INDEX access_list_storage_keys_index ON eth.access_list_elements USING gin (storage_keys);
-- log indexes
CREATE INDEX log_block_number_index ON eth.log_cids USING brin (block_number);
CREATE INDEX log_leaf_mh_block_number_index ON eth.log_cids USING btree (leaf_mh_key, block_number);
CREATE INDEX log_cid_index ON eth.log_cids USING btree (leaf_cid);
CREATE INDEX log_address_index ON eth.log_cids USING btree (address);
CREATE INDEX log_topic0_index ON eth.log_cids USING btree (topic0);
CREATE INDEX log_topic1_index ON eth.log_cids USING btree (topic1);
CREATE INDEX log_topic2_index ON eth.log_cids USING btree (topic2);
CREATE INDEX log_topic3_index ON eth.log_cids USING btree (topic3);
-- +goose Down
-- log indexes
DROP INDEX eth.log_topic3_index;
DROP INDEX eth.log_topic2_index;
DROP INDEX eth.log_topic1_index;
DROP INDEX eth.log_topic0_index;
DROP INDEX eth.log_address_index;
DROP INDEX eth.log_cid_index;
DROP INDEX eth.log_leaf_mh_block_number_index;
DROP INDEX eth.log_block_number_index;
-- access list indexes
DROP INDEX eth.access_list_storage_keys_index;
DROP INDEX eth.access_list_element_address_index;
DROP INDEX eth.access_list_block_number_index;
-- state account indexes
DROP INDEX eth.account_storage_root_index;
DROP index eth.account_header_id_index;
DROP INDEX eth.account_block_number_index;
-- storage node indexes
DROP INDEX eth.storage_node_type_index;
DROP INDEX eth.storage_header_id_index;
DROP INDEX eth.storage_mh_block_number_index;
DROP INDEX eth.storage_cid_index;
DROP INDEX eth.storage_leaf_key_index;
DROP INDEX eth.storage_state_path_index;
DROP INDEX eth.storage_block_number_index;
-- state node indexes
DROP INDEX eth.state_node_type_index;
DROP INDEX eth.state_header_id_index;
DROP INDEX eth.state_mh_block_number_index;
DROP INDEX eth.state_cid_index;
DROP INDEX eth.state_leaf_key_index;
DROP INDEX eth.state_block_number_index;
-- receipt indexes
DROP INDEX eth.rct_contract_hash_index;
DROP INDEX eth.rct_contract_index;
DROP INDEX eth.rct_leaf_mh_block_number_index;
DROP INDEX eth.rct_leaf_cid_index;
DROP INDEX eth.rct_block_number_index;
-- transaction indexes
DROP INDEX eth.tx_src_index;
DROP INDEX eth.tx_dst_index;
DROP INDEX eth.tx_mh_block_number_index;
DROP INDEX eth.tx_cid_index;
DROP INDEX eth.tx_header_id_index;
DROP INDEX eth.tx_block_number_index;
-- uncle indexes
DROP INDEX eth.uncle_block_number_index;
DROP INDEX eth.uncle_mh_block_number_index;
DROP INDEX eth.uncle_header_id_index;
-- header indexes
DROP INDEX eth.timestamp_index;
DROP INDEX eth.state_root_index;
DROP INDEX eth.header_mh_block_number_index;
DROP INDEX eth.header_cid_index;
DROP INDEX eth.header_block_number_index;
@@ -0,0 +1,138 @@
-- +goose Up
-- +goose StatementBegin
-- returns if a state leaf node was removed within the provided block number
CREATE OR REPLACE FUNCTION was_state_leaf_removed(key character varying, hash character varying)
RETURNS boolean AS $$
SELECT state_cids.node_type = 3
FROM eth.state_cids
INNER JOIN eth.header_cids ON (state_cids.header_id = header_cids.id)
WHERE state_leaf_key = key
AND block_number <= (SELECT block_number
FROM eth.header_cids
WHERE block_hash = hash)
ORDER BY block_number DESC LIMIT 1;
$$
language sql;
-- +goose StatementEnd
-- +goose StatementBegin
CREATE TYPE child_result AS (
has_child BOOLEAN,
children eth.header_cids[]
);
CREATE OR REPLACE FUNCTION has_child(hash VARCHAR(66), height BIGINT) RETURNS child_result AS
$BODY$
DECLARE
child_height INT;
temp_child eth.header_cids;
new_child_result child_result;
BEGIN
child_height = height + 1;
-- short circuit if there are no children
SELECT exists(SELECT 1
FROM eth.header_cids
WHERE parent_hash = hash
AND block_number = child_height
LIMIT 1)
INTO new_child_result.has_child;
-- collect all the children for this header
IF new_child_result.has_child THEN
FOR temp_child IN
SELECT * FROM eth.header_cids WHERE parent_hash = hash AND block_number = child_height
LOOP
new_child_result.children = array_append(new_child_result.children, temp_child);
END LOOP;
END IF;
RETURN new_child_result;
END
$BODY$
LANGUAGE 'plpgsql';
-- +goose StatementEnd
-- +goose StatementBegin
CREATE OR REPLACE FUNCTION canonical_header_from_array(headers eth.header_cids[]) RETURNS eth.header_cids AS
$BODY$
DECLARE
canonical_header eth.header_cids;
canonical_child eth.header_cids;
header eth.header_cids;
current_child_result child_result;
child_headers eth.header_cids[];
current_header_with_child eth.header_cids;
has_children_count INT DEFAULT 0;
BEGIN
-- for each header in the provided set
FOREACH header IN ARRAY headers
LOOP
-- check if it has any children
current_child_result = has_child(header.block_hash, header.block_number);
IF current_child_result.has_child THEN
-- if it does, take note
has_children_count = has_children_count + 1;
current_header_with_child = header;
-- and add the children to the growing set of child headers
child_headers = array_cat(child_headers, current_child_result.children);
END IF;
END LOOP;
-- if none of the headers had children, none is more canonical than the other
IF has_children_count = 0 THEN
-- return the first one selected
SELECT * INTO canonical_header FROM unnest(headers) LIMIT 1;
-- if only one header had children, it can be considered the heaviest/canonical header of the set
ELSIF has_children_count = 1 THEN
-- return the only header with a child
canonical_header = current_header_with_child;
-- if there are multiple headers with children
ELSE
-- find the canonical header from the child set
canonical_child = canonical_header_from_array(child_headers);
-- the header that is parent to this header, is the canonical header at this level
SELECT * INTO canonical_header FROM unnest(headers)
WHERE block_hash = canonical_child.parent_hash;
END IF;
RETURN canonical_header;
END
$BODY$
LANGUAGE 'plpgsql';
-- +goose StatementEnd
-- +goose StatementBegin
CREATE OR REPLACE FUNCTION canonical_header_id(height BIGINT) RETURNS INTEGER AS
$BODY$
DECLARE
canonical_header eth.header_cids;
headers eth.header_cids[];
header_count INT;
temp_header eth.header_cids;
BEGIN
-- collect all headers at this height
FOR temp_header IN
SELECT * FROM eth.header_cids WHERE block_number = height
LOOP
headers = array_append(headers, temp_header);
END LOOP;
-- count the number of headers collected
header_count = array_length(headers, 1);
-- if we have less than 1 header, return NULL
IF header_count IS NULL OR header_count < 1 THEN
RETURN NULL;
-- if we have one header, return its id
ELSIF header_count = 1 THEN
RETURN headers[1].id;
-- if we have multiple headers we need to determine which one is canonical
ELSE
canonical_header = canonical_header_from_array(headers);
RETURN canonical_header.id;
END IF;
END;
$BODY$
LANGUAGE 'plpgsql';
-- +goose StatementEnd
-- +goose Down
DROP FUNCTION was_state_leaf_removed;
DROP FUNCTION canonical_header_id;
DROP FUNCTION canonical_header_from_array;
DROP FUNCTION has_child;
DROP TYPE child_result;
@@ -0,0 +1,15 @@
-- +goose Up
CREATE TABLE eth.access_list_element (
id SERIAL PRIMARY KEY,
tx_id INTEGER NOT NULL REFERENCES eth.transaction_cids (id) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
index INTEGER NOT NULL,
address VARCHAR(66),
storage_keys VARCHAR(66)[],
UNIQUE (tx_id, index)
);
CREATE INDEX accesss_list_element_address_index ON eth.access_list_element USING btree (address);
-- +goose Down
DROP INDEX eth.accesss_list_element_address_index;
DROP TABLE eth.access_list_element;
@@ -1,116 +0,0 @@
-- +goose Up
-- Name: graphql_subscription(); Type: FUNCTION; Schema: eth; Owner: -
-- +goose StatementBegin
CREATE FUNCTION eth.graphql_subscription() RETURNS TRIGGER AS $$
DECLARE
obj jsonb;
BEGIN
IF (TG_TABLE_NAME = 'state_cids') OR (TG_TABLE_NAME = 'state_accounts') THEN
obj := json_build_array(
TG_TABLE_NAME,
NEW.header_id,
NEW.state_path
);
ELSIF (TG_TABLE_NAME = 'storage_cids') THEN
obj := json_build_array(
TG_TABLE_NAME,
NEW.header_id,
NEW.state_path,
NEW.storage_path
);
ELSIF (TG_TABLE_NAME = 'log_cids') THEN
obj := json_build_array(
TG_TABLE_NAME,
NEW.rct_id,
NEW.index
);
ELSIF (TG_TABLE_NAME = 'receipt_cids') THEN
obj := json_build_array(
TG_TABLE_NAME,
NEW.tx_id
);
ELSIF (TG_TABLE_NAME = 'transaction_cids') THEN
obj := json_build_array(
TG_TABLE_NAME,
NEW.tx_hash
);
ELSIF (TG_TABLE_NAME = 'access_list_elements') THEN
obj := json_build_array(
TG_TABLE_NAME,
NEW.tx_id,
NEW.index
);
ELSIF (TG_TABLE_NAME = 'uncle_cids') OR (TG_TABLE_NAME = 'header_cids') THEN
obj := json_build_array(
TG_TABLE_NAME,
NEW.block_hash
);
END IF;
perform pg_notify('postgraphile:' || TG_RELNAME , json_build_object(
'__node__', obj
)::text
);
RETURN NEW;
END;
$$ language plpgsql;
-- +goose StatementEnd
CREATE TRIGGER trg_eth_header_cids
AFTER INSERT ON eth.header_cids
FOR EACH ROW
EXECUTE PROCEDURE eth.graphql_subscription();
CREATE TRIGGER trg_eth_uncle_cids
AFTER INSERT ON eth.uncle_cids
FOR EACH ROW
EXECUTE PROCEDURE eth.graphql_subscription();
CREATE TRIGGER trg_eth_transaction_cids
AFTER INSERT ON eth.transaction_cids
FOR EACH ROW
EXECUTE PROCEDURE eth.graphql_subscription();
CREATE TRIGGER trg_eth_receipt_cids
AFTER INSERT ON eth.receipt_cids
FOR EACH ROW
EXECUTE PROCEDURE eth.graphql_subscription();
CREATE TRIGGER trg_eth_state_cids
AFTER INSERT ON eth.state_cids
FOR EACH ROW
EXECUTE PROCEDURE eth.graphql_subscription();
CREATE TRIGGER trg_eth_log_cids
AFTER INSERT ON eth.log_cids
FOR EACH ROW
EXECUTE PROCEDURE eth.graphql_subscription();
CREATE TRIGGER trg_eth_storage_cids
AFTER INSERT ON eth.storage_cids
FOR EACH ROW
EXECUTE PROCEDURE eth.graphql_subscription();
CREATE TRIGGER trg_eth_state_accounts
AFTER INSERT ON eth.state_accounts
FOR EACH ROW
EXECUTE PROCEDURE eth.graphql_subscription();
CREATE TRIGGER trg_eth_access_list_elements
AFTER INSERT ON eth.access_list_elements
FOR EACH ROW
EXECUTE PROCEDURE eth.graphql_subscription();
-- +goose Down
DROP TRIGGER trg_eth_uncle_cids ON eth.uncle_cids;
DROP TRIGGER trg_eth_transaction_cids ON eth.transaction_cids;
DROP TRIGGER trg_eth_storage_cids ON eth.storage_cids;
DROP TRIGGER trg_eth_state_cids ON eth.state_cids;
DROP TRIGGER trg_eth_state_accounts ON eth.state_accounts;
DROP TRIGGER trg_eth_receipt_cids ON eth.receipt_cids;
DROP TRIGGER trg_eth_header_cids ON eth.header_cids;
DROP TRIGGER trg_eth_log_cids ON eth.log_cids;
DROP TRIGGER trg_eth_access_list_elements ON eth.access_list_elements;
DROP FUNCTION eth.graphql_subscription();
@@ -1,9 +0,0 @@
-- +goose Up
CREATE TABLE IF NOT EXISTS public.db_version (
singleton BOOLEAN NOT NULL DEFAULT TRUE UNIQUE CHECK (singleton),
version TEXT NOT NULL,
tstamp TIMESTAMP WITHOUT TIME ZONE DEFAULT NOW()
);
-- +goose Down
DROP TABLE public.db_version;
@@ -0,0 +1,61 @@
-- +goose Up
CREATE TABLE eth.log_cids (
id SERIAL PRIMARY KEY,
leaf_cid TEXT NOT NULL,
leaf_mh_key TEXT NOT NULL REFERENCES public.blocks (key) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
receipt_id INTEGER NOT NULL REFERENCES eth.receipt_cids (id) ON DELETE CASCADE DEFERRABLE INITIALLY DEFERRED,
address VARCHAR(66) NOT NULL,
log_data BYTEA,
index INTEGER NOT NULL,
topic0 VARCHAR(66),
topic1 VARCHAR(66),
topic2 VARCHAR(66),
topic3 VARCHAR(66),
UNIQUE (receipt_id, index)
);
CREATE INDEX log_mh_index ON eth.log_cids USING btree (leaf_mh_key);
CREATE INDEX log_cid_index ON eth.log_cids USING btree (leaf_cid);
CREATE INDEX log_rct_id_index ON eth.log_cids USING btree (receipt_id);
--
-- Name: log_topic0_index; Type: INDEX; Schema: eth; Owner: -
--
CREATE INDEX log_topic0_index ON eth.log_cids USING btree (topic0);
--
-- Name: log_topic1_index; Type: INDEX; Schema: eth; Owner: -
--
CREATE INDEX log_topic1_index ON eth.log_cids USING btree (topic1);
--
-- Name: log_topic2_index; Type: INDEX; Schema: eth; Owner: -
--
CREATE INDEX log_topic2_index ON eth.log_cids USING btree (topic2);
--
-- Name: log_topic3_index; Type: INDEX; Schema: eth; Owner: -
--
CREATE INDEX log_topic3_index ON eth.log_cids USING btree (topic3);
-- +goose Down
-- log indexes
DROP INDEX eth.log_mh_index;
DROP INDEX eth.log_cid_index;
DROP INDEX eth.log_rct_id_index;
DROP INDEX eth.log_topic0_index;
DROP INDEX eth.log_topic1_index;
DROP INDEX eth.log_topic2_index;
DROP INDEX eth.log_topic3_index;
DROP TABLE eth.log_cids;
@@ -0,0 +1,5 @@
-- +goose Up
CREATE SCHEMA eth_meta;
-- +goose Down
DROP SCHEMA eth_meta;
@@ -1,6 +0,0 @@
-- +goose Up
INSERT INTO public.db_version (singleton, version) VALUES (true, 'v4.0.0')
ON CONFLICT (singleton) DO UPDATE SET (version, tstamp) = ('v4.0.0', NOW());
-- +goose Down
DELETE FROM public.db_version WHERE version = 'v4.0.0';
-16
View File
@@ -1,16 +0,0 @@
-- +goose NO TRANSACTION
-- +goose Up
-- this is generated by a script
SELECT add_data_node('dn3', host => 'data-node-3', port => 5432, database => 'vulcanize_testing_v4', password => 'password');
SELECT add_data_node('dn2', host => 'data-node-2', port => 5432, database => 'vulcanize_testing_v4', password => 'password');
SELECT add_data_node('dn1', host => 'data-node-1', port => 5432, database => 'vulcanize_testing_v4', password => 'password');
CALL distributed_exec($$ CREATE SCHEMA eth $$);
-- +goose Down
-- this is generated by a script
CALL distributed_exec($$ DROP SCHEMA eth $$);
SELECT delete_data_node('dn1', force => true, if_attached => true);
SELECT delete_data_node('dn2', force => true, if_attached => true);
SELECT delete_data_node('dn3', force => true, if_attached => true);
@@ -0,0 +1,10 @@
-- +goose Up
CREATE TABLE eth_meta.watched_addresses (
address VARCHAR(66) PRIMARY KEY,
created_at BIGINT NOT NULL,
watched_at BIGINT NOT NULL,
last_filled_at BIGINT NOT NULL DEFAULT 0
);
-- +goose Down
DROP TABLE eth_meta.watched_addresses;
@@ -1,130 +0,0 @@
-- +goose Up
-- creating distributed hypertables from duplicate tables for now as we are getting the following error (while running geth
-- unit tests) if regular tables are directly converted to distributed hypertables
-- error: "cannot PREPARE a transaction that has executed LISTEN, UNLISTEN, or NOTIFY"
-- create new regular tables
CREATE TABLE eth.log_cids_i (LIKE eth.log_cids INCLUDING ALL);
CREATE TABLE eth.access_list_elements_i (LIKE eth.access_list_elements INCLUDING ALL);
CREATE TABLE eth.state_accounts_i (LIKE eth.state_accounts INCLUDING ALL);
CREATE TABLE eth.storage_cids_i (LIKE eth.storage_cids INCLUDING ALL);
CREATE TABLE eth.state_cids_i (LIKE eth.state_cids INCLUDING ALL);
CREATE TABLE eth.receipt_cids_i (LIKE eth.receipt_cids INCLUDING ALL);
CREATE TABLE eth.transaction_cids_i (LIKE eth.transaction_cids INCLUDING ALL);
CREATE TABLE eth.uncle_cids_i (LIKE eth.uncle_cids INCLUDING ALL);
CREATE TABLE eth.header_cids_i (LIKE eth.header_cids INCLUDING ALL);
CREATE TABLE public.blocks_i (LIKE public.blocks INCLUDING ALL);
-- turn them into distributed hypertables
SELECT create_distributed_hypertable('public.blocks_i', 'block_number', chunk_time_interval => 32768);
SELECT create_distributed_hypertable('eth.header_cids_i', 'block_number', chunk_time_interval => 32768);
SELECT create_distributed_hypertable('eth.uncle_cids_i', 'block_number', chunk_time_interval => 32768);
SELECT create_distributed_hypertable('eth.transaction_cids_i', 'block_number', chunk_time_interval => 32768);
SELECT create_distributed_hypertable('eth.receipt_cids_i', 'block_number', chunk_time_interval => 32768);
SELECT create_distributed_hypertable('eth.state_cids_i', 'block_number', chunk_time_interval => 32768);
SELECT create_distributed_hypertable('eth.storage_cids_i', 'block_number', chunk_time_interval => 32768);
SELECT create_distributed_hypertable('eth.state_accounts_i', 'block_number', chunk_time_interval => 32768);
SELECT create_distributed_hypertable('eth.access_list_elements_i', 'block_number', chunk_time_interval => 32768);
SELECT create_distributed_hypertable('eth.log_cids_i', 'block_number', chunk_time_interval => 32768);
-- migrate data
INSERT INTO eth.log_cids_i (SELECT * FROM eth.log_cids);
INSERT INTO eth.access_list_elements_i (SELECT * FROM eth.access_list_elements);
INSERT INTO eth.state_accounts_i (SELECT * FROM eth.state_accounts);
INSERT INTO eth.storage_cids_i (SELECT * FROM eth.storage_cids);
INSERT INTO eth.state_cids_i (SELECT * FROM eth.state_cids);
INSERT INTO eth.receipt_cids_i (SELECT * FROM eth.receipt_cids);
INSERT INTO eth.transaction_cids_i (SELECT * FROM eth.transaction_cids);
INSERT INTO eth.uncle_cids_i (SELECT * FROM eth.uncle_cids);
INSERT INTO eth.header_cids_i (SELECT * FROM eth.header_cids);
INSERT INTO public.blocks_i (SELECT * FROM public.blocks);
-- drop tables
DROP TABLE eth.log_cids;
DROP TABLE eth.access_list_elements;
DROP TABLE eth.state_accounts;
DROP TABLE eth.storage_cids;
DROP TABLE eth.state_cids;
DROP TABLE eth.receipt_cids;
DROP TABLE eth.transaction_cids;
DROP TABLE eth.uncle_cids;
DROP TABLE eth.header_cids;
DROP TABLE public.blocks;
-- rename distributed hypertables
ALTER TABLE eth.log_cids_i RENAME TO log_cids;
ALTER TABLE eth.access_list_elements_i RENAME TO access_list_elements;
ALTER TABLE eth.state_accounts_i RENAME TO state_accounts;
ALTER TABLE eth.storage_cids_i RENAME TO storage_cids;
ALTER TABLE eth.state_cids_i RENAME TO state_cids;
ALTER TABLE eth.receipt_cids_i RENAME TO receipt_cids;
ALTER TABLE eth.transaction_cids_i RENAME TO transaction_cids;
ALTER TABLE eth.uncle_cids_i RENAME TO uncle_cids;
ALTER TABLE eth.header_cids_i RENAME TO header_cids;
ALTER TABLE public.blocks_i RENAME TO blocks;
CALL distributed_exec('ALTER TABLE eth.log_cids_i RENAME TO log_cids');
CALL distributed_exec('ALTER TABLE eth.access_list_elements_i RENAME TO access_list_elements');
CALL distributed_exec('ALTER TABLE eth.state_accounts_i RENAME TO state_accounts');
CALL distributed_exec('ALTER TABLE eth.storage_cids_i RENAME TO storage_cids');
CALL distributed_exec('ALTER TABLE eth.state_cids_i RENAME TO state_cids');
CALL distributed_exec('ALTER TABLE eth.receipt_cids_i RENAME TO receipt_cids');
CALL distributed_exec('ALTER TABLE eth.transaction_cids_i RENAME TO transaction_cids');
CALL distributed_exec('ALTER TABLE eth.uncle_cids_i RENAME TO uncle_cids');
CALL distributed_exec('ALTER TABLE eth.header_cids_i RENAME TO header_cids');
CALL distributed_exec('ALTER TABLE public.blocks_i RENAME TO blocks');
-- update version
INSERT INTO public.db_version (singleton, version) VALUES (true, 'v4.0.00-dh')
ON CONFLICT (singleton) DO UPDATE SET (version, tstamp) = ('v4.0.0-dh', NOW());
-- +goose Down
INSERT INTO public.db_version (singleton, version) VALUES (true, 'v4.0.0')
ON CONFLICT (singleton) DO UPDATE SET (version, tstamp) = ('v4.0.0', NOW());
-- reversing conversion to hypertables requires migrating all data from every chunk back to a single table
-- create new regular tables
CREATE TABLE eth.log_cids_i (LIKE eth.log_cids INCLUDING ALL);
CREATE TABLE eth.access_list_elements_i (LIKE eth.access_list_elements INCLUDING ALL);
CREATE TABLE eth.state_accounts_i (LIKE eth.state_accounts INCLUDING ALL);
CREATE TABLE eth.storage_cids_i (LIKE eth.storage_cids INCLUDING ALL);
CREATE TABLE eth.state_cids_i (LIKE eth.state_cids INCLUDING ALL);
CREATE TABLE eth.receipt_cids_i (LIKE eth.receipt_cids INCLUDING ALL);
CREATE TABLE eth.transaction_cids_i (LIKE eth.transaction_cids INCLUDING ALL);
CREATE TABLE eth.uncle_cids_i (LIKE eth.uncle_cids INCLUDING ALL);
CREATE TABLE eth.header_cids_i (LIKE eth.header_cids INCLUDING ALL);
CREATE TABLE public.blocks_i (LIKE public.blocks INCLUDING ALL);
-- migrate data
INSERT INTO eth.log_cids_i (SELECT * FROM eth.log_cids);
INSERT INTO eth.access_list_elements_i (SELECT * FROM eth.access_list_elements);
INSERT INTO eth.state_accounts_i (SELECT * FROM eth.state_accounts);
INSERT INTO eth.storage_cids_i (SELECT * FROM eth.storage_cids);
INSERT INTO eth.state_cids_i (SELECT * FROM eth.state_cids);
INSERT INTO eth.receipt_cids_i (SELECT * FROM eth.receipt_cids);
INSERT INTO eth.transaction_cids_i (SELECT * FROM eth.transaction_cids);
INSERT INTO eth.uncle_cids_i (SELECT * FROM eth.uncle_cids);
INSERT INTO eth.header_cids_i (SELECT * FROM eth.header_cids);
INSERT INTO public.blocks_i (SELECT * FROM public.blocks);
-- drop distributed hypertables
DROP TABLE eth.log_cids;
DROP TABLE eth.access_list_elements;
DROP TABLE eth.state_accounts;
DROP TABLE eth.storage_cids;
DROP TABLE eth.state_cids;
DROP TABLE eth.receipt_cids;
DROP TABLE eth.transaction_cids;
DROP TABLE eth.uncle_cids;
DROP TABLE eth.header_cids;
DROP TABLE public.blocks;
-- rename hypertable tables
ALTER TABLE eth.log_cids_i RENAME TO log_cids;
ALTER TABLE eth.access_list_elements_i RENAME TO access_list_elements;
ALTER TABLE eth.state_accounts_i RENAME TO state_accounts;
ALTER TABLE eth.storage_cids_i RENAME TO storage_cids;
ALTER TABLE eth.state_cids_i RENAME TO state_cids;
ALTER TABLE eth.receipt_cids_i RENAME TO receipt_cids;
ALTER TABLE eth.transaction_cids_i RENAME TO transaction_cids;
ALTER TABLE eth.uncle_cids_i RENAME TO uncle_cids;
ALTER TABLE eth.header_cids_i RENAME TO header_cids;
ALTER TABLE public.blocks_i RENAME TO blocks;
@@ -1,5 +0,0 @@
-- +goose Up
-- to be generated by a script
-- +goose Down
-- to be generated by a script
@@ -1,248 +0,0 @@
-- +goose Up
-- +goose StatementBegin
-- returns if a state leaf node was removed within the provided block number
CREATE OR REPLACE FUNCTION was_state_leaf_removed(key character varying, hash character varying)
RETURNS boolean AS $$
SELECT state_cids.node_type = 3
FROM eth.state_cids
INNER JOIN eth.header_cids ON (state_cids.header_id = header_cids.block_hash)
WHERE state_leaf_key = key
AND state_cids.block_number <= (SELECT block_number
FROM eth.header_cids
WHERE block_hash = hash)
ORDER BY state_cids.block_number DESC LIMIT 1;
$$
language sql;
-- +goose StatementEnd
-- +goose StatementBegin
CREATE TYPE child_result AS (
has_child BOOLEAN,
children eth.header_cids[]
);
CREATE OR REPLACE FUNCTION has_child(hash VARCHAR(66), height BIGINT) RETURNS child_result AS
$BODY$
DECLARE
child_height INT;
temp_child eth.header_cids;
new_child_result child_result;
BEGIN
child_height = height + 1;
-- short circuit if there are no children
SELECT exists(SELECT 1
FROM eth.header_cids
WHERE parent_hash = hash
AND block_number = child_height
LIMIT 1)
INTO new_child_result.has_child;
-- collect all the children for this header
IF new_child_result.has_child THEN
FOR temp_child IN
SELECT * FROM eth.header_cids WHERE parent_hash = hash AND block_number = child_height
LOOP
new_child_result.children = array_append(new_child_result.children, temp_child);
END LOOP;
END IF;
RETURN new_child_result;
END
$BODY$
LANGUAGE 'plpgsql';
-- +goose StatementEnd
-- +goose StatementBegin
CREATE OR REPLACE FUNCTION canonical_header_from_array(headers eth.header_cids[]) RETURNS eth.header_cids AS
$BODY$
DECLARE
canonical_header eth.header_cids;
canonical_child eth.header_cids;
header eth.header_cids;
current_child_result child_result;
child_headers eth.header_cids[];
current_header_with_child eth.header_cids;
has_children_count INT DEFAULT 0;
BEGIN
-- for each header in the provided set
FOREACH header IN ARRAY headers
LOOP
-- check if it has any children
current_child_result = has_child(header.block_hash, header.block_number);
IF current_child_result.has_child THEN
-- if it does, take note
has_children_count = has_children_count + 1;
current_header_with_child = header;
-- and add the children to the growing set of child headers
child_headers = array_cat(child_headers, current_child_result.children);
END IF;
END LOOP;
-- if none of the headers had children, none is more canonical than the other
IF has_children_count = 0 THEN
-- return the first one selected
SELECT * INTO canonical_header FROM unnest(headers) LIMIT 1;
-- if only one header had children, it can be considered the heaviest/canonical header of the set
ELSIF has_children_count = 1 THEN
-- return the only header with a child
canonical_header = current_header_with_child;
-- if there are multiple headers with children
ELSE
-- find the canonical header from the child set
canonical_child = canonical_header_from_array(child_headers);
-- the header that is parent to this header, is the canonical header at this level
SELECT * INTO canonical_header FROM unnest(headers)
WHERE block_hash = canonical_child.parent_hash;
END IF;
RETURN canonical_header;
END
$BODY$
LANGUAGE 'plpgsql';
-- +goose StatementEnd
-- +goose StatementBegin
CREATE OR REPLACE FUNCTION canonical_header_hash(height BIGINT) RETURNS character varying AS
$BODY$
DECLARE
canonical_header eth.header_cids;
headers eth.header_cids[];
header_count INT;
temp_header eth.header_cids;
BEGIN
-- collect all headers at this height
FOR temp_header IN
SELECT * FROM eth.header_cids WHERE block_number = height
LOOP
headers = array_append(headers, temp_header);
END LOOP;
-- count the number of headers collected
header_count = array_length(headers, 1);
-- if we have less than 1 header, return NULL
IF header_count IS NULL OR header_count < 1 THEN
RETURN NULL;
-- if we have one header, return its hash
ELSIF header_count = 1 THEN
RETURN headers[1].block_hash;
-- if we have multiple headers we need to determine which one is canonical
ELSE
canonical_header = canonical_header_from_array(headers);
RETURN canonical_header.block_hash;
END IF;
END
$BODY$
LANGUAGE 'plpgsql';
-- +goose StatementEnd
-- +goose StatementBegin
CREATE TYPE state_node_result AS (
data BYTEA,
state_leaf_key VARCHAR(66),
cid TEXT,
state_path BYTEA,
node_type INTEGER,
mh_key TEXT
);
-- +goose StatementEnd
-- +goose StatementBegin
CREATE OR REPLACE FUNCTION state_snapshot(starting_height BIGINT, ending_height BIGINT) RETURNS void AS
$BODY$
DECLARE
canonical_hash VARCHAR(66);
results state_node_result[];
BEGIN
-- get the canonical hash for the header at ending_height
canonical_hash = canonical_header_hash(ending_height);
IF canonical_hash IS NULL THEN
RAISE EXCEPTION 'cannot create state snapshot, no header can be found at height %', ending_height;
END IF;
-- select all of the state nodes for this snapshot: the latest state node record at every unique path
SELECT DISTINCT ON (state_path) blocks.data, state_cids.state_leaf_key, state_cids.cid, state_cids.state_path,
state_cids.node_type, state_cids.mh_key
INTO results
FROM eth.state_cids
INNER JOIN public.blocks
ON (state_cids.mh_key, state_cids.block_number) = (blocks.key, blocks.block_number)
WHERE state_cids.block_number BETWEEN starting_height AND ending_height
ORDER BY state_path, block_number DESC;
-- from the set returned above, insert public.block records at the ending_height block number
INSERT INTO public.blocks (block_number, key, data)
SELECT ending_height, r.mh_key, r.data
FROM results r;
-- from the set returned above, insert eth.state_cids records at the ending_height block number
-- anchoring all the records to the canonical header found at ending_height
INSERT INTO eth.state_cids (block_number, header_id, state_leaf_key, cid, state_path, node_type, diff, mh_key)
SELECT ending_height, canonical_hash, r.state_leaf_key, r.cid, r.state_path, r.node_type, false, r.mh_key
FROM results r
ON CONFLICT (state_path, header_id) DO NOTHING;
END
$BODY$
LANGUAGE 'plpgsql';
-- +goose StatementEnd
-- +goose StatementBegin
CREATE TYPE storage_node_result AS (
data BYTEA,
state_path BYTEA,
storage_leaf_key VARCHAR(66),
cid TEXT,
storage_path BYTEA,
node_type INTEGER,
mh_key TEXT
);
-- +goose StatementEnd
-- +goose StatementBegin
-- this should only be ran after a state_snapshot has been completed
-- this should probably be rolled together with state_snapshot into a single procedure...
CREATE OR REPLACE FUNCTION storage_snapshot(starting_height BIGINT, ending_height BIGINT) RETURNS void AS
$BODY$
DECLARE
canonical_hash VARCHAR(66);
results storage_node_result[];
BEGIN
-- get the canonical hash for the header at ending_height
SELECT canonical_header_hash(ending_height) INTO canonical_hash;
IF canonical_hash IS NULL THEN
RAISE EXCEPTION 'cannot create state snapshot, no header can be found at height %', ending_height;
END IF;
-- select all of the storage nodes for this snapshot: the latest storage node record at every unique state leaf key
SELECT DISTINCT ON (state_leaf_key, storage_path) block.data, storage_cids.state_path, storage_cids.storage_leaf_key,
storage_cids.cid, storage_cids.storage_path, storage_cids.node_type, storage_cids.mh_key
INTO results
FROM eth.storage_cids
INNER JOIN public.blocks
ON (storage_cids.mh_key, storage_cids.block_number) = (blocks.key, blocks.block_number)
INNER JOIN eth.state_cids
ON (storage_cids.state_path, storage_cids.header_id) = (state_cids.state_path, state_cids.header_id)
WHERE storage_cids.block_number BETWEEN starting_height AND ending_height
ORDER BY state_path, storage_path, block_number DESC;
-- from the set returned above, insert public.block records at the ending_height block number
INSERT INTO public.blocks (block_number, key, data)
SELECT ending_height, r.mh_key, r.data
FROM results r;
-- from the set returned above, insert eth.state_cids records at the ending_height block number
-- anchoring all the records to the canonical header found at ending_height
INSERT INTO eth.storage_cids (block_number, header_id, state_path, storage_leaf_key, cid, storage_path,
node_type, diff, mh_key)
SELECT ending_height, canonical_hash, r.state_path, r.storage_leaf_key, r.cid, r.storage_path, r.node_type, false, r.mh_key
FROM results r
ON CONFLICT (storage_path, state_path, header_id) DO NOTHING;
END
$BODY$
LANGUAGE 'plpgsql';
-- +goose StatementEnd
-- +goose Down
DROP FUNCTION storage_snapshot;
DROP TYPE storage_node_result;
DROP FUNCTION state_snapshot;
DROP TYPE state_node_result;
DROP FUNCTION was_state_leaf_removed;
DROP FUNCTION canonical_header_hash;
DROP FUNCTION canonical_header_from_array;
DROP FUNCTION has_child;
DROP TYPE child_result;
@@ -1,27 +0,0 @@
-- +goose Up
-- to be generated by a script
SELECT set_replication_factor('public.blocks', 3);
SELECT set_replication_factor('eth.header_cids', 3);
SELECT set_replication_factor('eth.uncle_cids', 3);
SELECT set_replication_factor('eth.transaction_cids', 3);
SELECT set_replication_factor('eth.receipt_cids', 3);
SELECT set_replication_factor('eth.state_cids', 3);
SELECT set_replication_factor('eth.storage_cids', 3);
SELECT set_replication_factor('eth.state_accounts', 3);
SELECT set_replication_factor('eth.access_list_elements', 3);
SELECT set_replication_factor('eth.log_cids', 3);
-- +goose Down
-- to be generated by a script
SELECT set_replication_factor('public.blocks', 1);
SELECT set_replication_factor('eth.header_cids', 1);
SELECT set_replication_factor('eth.uncle_cids', 1);
SELECT set_replication_factor('eth.transaction_cids', 1);
SELECT set_replication_factor('eth.receipt_cids', 1);
SELECT set_replication_factor('eth.state_cids', 1);
SELECT set_replication_factor('eth.storage_cids', 1);
SELECT set_replication_factor('eth.state_accounts', 1);
SELECT set_replication_factor('eth.access_list_elements', 1);
SELECT set_replication_factor('eth.log_cids', 1);
+10 -53
View File
@@ -1,62 +1,19 @@
version: '3.2'
services:
access-node:
image: timescale/timescaledb:latest-pg14
restart: always
container_name: access-node
statediff-migrations:
restart: on-failure
depends_on:
- data-node-1
- data-node-2
- data-node-3
command: ["postgres", "-c", "log_statement=all"]
environment:
POSTGRES_USER: "postgres"
POSTGRES_DB: "vulcanize_testing_v4"
POSTGRES_PASSWORD: "password"
ports:
- "127.0.0.1:8066:5432"
volumes:
- ./scripts/init-access-node.sh:/docker-entrypoint-initdb.d/init-access-node.sh
- test-db
image: vulcanize/statediff-migrations:v0.9.0
data-node-1:
image: timescale/timescaledb:latest-pg14
restart: unless-stopped
container_name: data-node-1
test-db:
restart: always
image: postgres:10.12-alpine
command: ["postgres", "-c", "log_statement=all"]
environment:
POSTGRES_USER: "postgres"
POSTGRES_DB: "vulcanize_testing_v4"
POSTGRES_USER: "vdbm"
POSTGRES_DB: "vulcanize_testing"
POSTGRES_PASSWORD: "password"
ports:
- "127.0.0.1:8067:5432"
volumes:
- ./scripts/init-data-node.sh:/docker-entrypoint-initdb.d/init-data-node.sh
data-node-2:
image: timescale/timescaledb:latest-pg14
restart: unless-stopped
container_name: data-node-2
command: ["postgres", "-c", "log_statement=all"]
environment:
POSTGRES_USER: "postgres"
POSTGRES_DB: "vulcanize_testing_v4"
POSTGRES_PASSWORD: "password"
ports:
- "127.0.0.1:8068:5432"
volumes:
- ./scripts/init-data-node.sh:/docker-entrypoint-initdb.d/init-data-node.sh
data-node-3:
image: timescale/timescaledb:latest-pg14
restart: unless-stopped
container_name: data-node-3
command: ["postgres", "-c", "log_statement=all"]
environment:
POSTGRES_USER: "postgres"
POSTGRES_DB: "vulcanize_testing_v4"
POSTGRES_PASSWORD: "password"
ports:
- "127.0.0.1:8069:5432"
volumes:
- ./scripts/init-data-node.sh:/docker-entrypoint-initdb.d/init-data-node.sh
- "127.0.0.1:8066:5432"
+633 -380
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File diff suppressed because it is too large Load Diff
-138
View File
@@ -1,138 +0,0 @@
#!/bin/bash
# Guards
if [ -z "$1" ] || [ -z "$2" ] || [ -z "$3" ] || [ -z "$4" ] || [ -z "$5" ]
then
echo "Env variables not provided"
echo "Usage: ./add_nodes.sh <MIGRATION_FILE_PATH:string> <NODE_NAME:string> <NODE_HOST:string> <NODE_PORT:numeric/string> <NODE_DATABASE:string> <EXECUTE_SQL:bool>"
echo "Only <EXECUTE_SQL> is optional"
exit 1
fi
if [ -z "$6" ]
then
echo "EXECUTE_SQL not set, will not run statements against an access server"
else
echo "EXECUTE_SQL is set, will run stataments against an access server"
echo "Note: this mode is not recommended except in the case when the migration has already been applied with previous
nodes and we need/want to add more while still recording them in the existing migration (and adding their Down statements to said migration)"
echo "Expected environment variables:"
echo "DATABASE_HOSTNAME, DATABASE_NAME, DATABASE_PORT, DATABASE_USER"
echo "For now, DATABASE_PASSWORD will be prompted for on each psql call"
fi
# Remote DB node info
export MIGRATION_FILE_PATH=$1
export NODE_NAME=$2
export NODE_HOST=$3
export NODE_PORT=$4
export NODE_DATABASE=$5
printf "Enter the ${NODE_HOST} database password:\n"
stty -echo
read NODE_PASSWORD
stty echo
export NODE_PASSWORD
if ! [ -z "$6" ]
then
# Access DB info
echo "heeeeey"
export DATABASE_HOSTNAME=localhost
export DATABASE_PORT=5432
export DATABASE_USER=vdbm
export DATABASE_NAME=vulcanize_db
fi
# Array of distributed hypertable names
declare -a tables_names=("public.blocks" "eth.header_cid" "eth.uncle_cids" "eth.transaction_cids"
"eth.receipt_cids" "eth.state_cid" "eth.storage_cids" "eth.state_accounts"
"eth.access_list_elements" "eth.log_cids"
)
# Array to append Up statements to for later (optional) execution
declare -a up_stmts=()
echo "Writing Up and Down statements to provided migration file at ${migration_file_path}"
# Create add node statement
up_add_pg_str="SELECT add_data_node('${NODE_NAME}', host => '${NODE_HOST}', port => ${NODE_PORT}, database => '${NODE_DATABASE}', password => '${NODE_PASSWORD}');"
up_stmts+=(${up_add_pg_str})
# Insert at the 3rd line of the file
sed -i.bak '3 i\
'"${up_add_pg_str}"'
' "${MIGRATION_FILE_PATH}"
# Check for error
if [[ $? -eq 0 ]]; then
echo "Wrote Up add node statement ${up_add_pg_str}"
else
echo "Could not write Up add node statement ${up_add_pg_str}. Is the migration file path correct?"
exit 1
fi
# Create attach node statements
for table_name in "${tables_names[@]}"
do
up_attach_pg_str="SELECT attach_data_node('${NODE_NAME}', '${table_name}', if_not_attached => true);"
up_stmts+=(${up_attach_pg_str})
# Insert at the 4th line of the file
sed -i.bak '4 i\
'"${up_attach_pg_str}"'
' "${MIGRATION_FILE_PATH}"
# Check for error
if [[ $? -eq 0 ]]; then
echo "Wrote Up attach node statement ${up_attach_pg_str}"
else
echo "Could not write Up attach node statement ${up_attach_pg_str}. Is the migration file path correct?"
exit 1
fi
done
## Create detach and remove node statement
down_attach_pg_str="SELECT detach_data_node('${NODE_NAME}', force => true, if_attached = true);"
down_add_pg_str="SELECT delete_data_node('${NODE_NAME}', force => true, if_attached => true);"
# Append them at the last line in the file
sed -i.bak '$ a\
'"${down_attach_pg_str}"'
' "${MIGRATION_FILE_PATH}"
# Check for error
if [[ $? -eq 0 ]]; then
echo "Wrote Down attach node statement ${down_attach_pg_str}"
else
echo "Could not write Down attach node statement ${down_attach_pg_str}. Is the migration file path correct?"
exit 1
fi
# Append them at the last line in the file
sed -i.bak '$ a\
'"${down_add_pg_str}"'
' "${MIGRATION_FILE_PATH}"
# Check for error
if [[ $? -eq 0 ]]; then
echo "Wrote Down add node statement ${down_add_pg_str}"
else
echo "Could not write Down add node statement ${down_add_pg_str}. Is the migration file path correct?"
exit 1
fi
# Execute Up statements on the server if we are in that mode
if [ -z "$6" ]
then
echo "Done!"
exit 0
fi
echo "Executing Up statements against provided server"
for up_stmt in "${up_stmts[@]}"
do
psql -c '\x' -c "${up_stmt}" -h $DATABASE_HOSTNAME -p $DATABASE_PORT -U $DATABASE_USER -d $DATABASE_NAME -W
# Check for error
if [[ $? -eq 0 ]]; then
echo "Executed Up statement ${up_stmt}}"
else
echo "Could not execute Up statement ${up_stmt}. Is the migration file path correct?"
exit 1
fi
done
echo "Done!"
exit 0
-29
View File
@@ -1,29 +0,0 @@
#!/bin/sh
set -e
# https://docs.timescale.com/timescaledb/latest/how-to-guides/multinode-timescaledb/multinode-config/
# To achieve good query performance you need to enable partition-wise aggregation on the access node. This pushes down aggregation queries to the data nodes.
# https://www.postgresql.org/docs/12/runtime-config-query.html#enable_partitionwise_aggregate
sed -ri "s!^#?(enable_partitionwise_aggregate)\s*=.*!\1 = on!" /var/lib/postgresql/data/postgresql.conf
grep "enable_partitionwise_aggregate" /var/lib/postgresql/data/postgresql.conf
# JIT should be set to off on the access node as JIT currently doesn't work well with distributed queries.
# https://www.postgresql.org/docs/12/runtime-config-query.html#jit
sed -ri "s!^#?(jit)\s*=.*!\1 = off!" /var/lib/postgresql/data/postgresql.conf
grep "jit" /var/lib/postgresql/data/postgresql.conf
# https://docs.timescale.com/timescaledb/latest/how-to-guides/multinode-timescaledb/multinode-auth/
# https://docs.timescale.com/timescaledb/latest/how-to-guides/multinode-timescaledb/multinode-auth/#password-authentication
# Set password_encryption = 'scram-sha-256' in postgresql.conf on the access node.
sed -ri "s!^#?(password_encryption)\s*=.*!\1 = 'scram-sha-256'!" /var/lib/postgresql/data/postgresql.conf
grep "password_encryption" /var/lib/postgresql/data/postgresql.conf
# Append to data/passfile *:*:*:ROLE:ROLE_PASSWORD
# This file stores the passwords for each role that the access node connects to on the data nodes.
echo "*:*:*:postgres:password">>/var/lib/postgresql/data/passfile
chmod 0600 /var/lib/postgresql/data/passfile
# Add "host all all ACCESS_NODE_IP scram-sha-256" pg_hba.conf on the data nodes.
# Skipped. Using default "host all all all scram-sha-256" for now.
-27
View File
@@ -1,27 +0,0 @@
#!/bin/sh
set -e
# https://docs.timescale.com/timescaledb/latest/how-to-guides/configuration/timescaledb-config/#timescaledb-last-tuned-string
# https://docs.timescale.com/timescaledb/latest/how-to-guides/multi-node-setup/required-configuration/
# It is necessary to change the parameter max_prepared_transactions to a non-zero value ('150' is recommended).
# https://www.postgresql.org/docs/12/runtime-config-resource.html#max_prepared_transactions
sed -ri "s!^#?(max_prepared_transactions)\s*=.*!\1 = 150!" /var/lib/postgresql/data/postgresql.conf
grep "max_prepared_transactions" /var/lib/postgresql/data/postgresql.conf
# Statement timeout should be disabled on the data nodes and managed through the access node configuration if desired.
# https://www.postgresql.org/docs/12/runtime-config-client.html#statement_timeout
sed -ri "s!^#?(statement_timeout)\s*=.*!\1 = 0!" /var/lib/postgresql/data/postgresql.conf
grep "statement_timeout" /var/lib/postgresql/data/postgresql.conf
# On the data nodes, set the wal_level to logical or higher to move or copy chunks between data nodes.
# https://www.postgresql.org/docs/14/runtime-config-wal.html
sed -ri "s!^#?(wal_level)\s*=.*!\1 = 'logical'!" /var/lib/postgresql/data/postgresql.conf
grep "wal_level" /var/lib/postgresql/data/postgresql.conf
# https://docs.timescale.com/timescaledb/latest/how-to-guides/multinode-timescaledb/multinode-auth/
# https://docs.timescale.com/timescaledb/latest/how-to-guides/multinode-timescaledb/multinode-auth/#password-authentication
# Set password_encryption = 'scram-sha-256' in postgresql.conf on the data node.
sed -ri "s!^#?(password_encryption)\s*=.*!\1 = 'scram-sha-256'!" /var/lib/postgresql/data/postgresql.conf
grep "password_encryption" /var/lib/postgresql/data/postgresql.conf
+1 -2
View File
@@ -7,9 +7,8 @@ VDB_PG_CONNECT=postgresql://$DATABASE_USER:$DATABASE_PASSWORD@$DATABASE_HOSTNAME
# Run the DB migrations
echo "Connecting with: $VDB_PG_CONNECT"
sleep 15
echo "Running database migrations"
./goose -dir migrations/vulcanizedb postgres "$VDB_PG_CONNECT" up-to 21
./goose -dir migrations/vulcanizedb postgres "$VDB_PG_CONNECT" up
# If the db migrations ran without err
if [[ $? -eq 0 ]]; then
BIN
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+127 -125
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