Compare commits
1 Commits
| Author | SHA256 | Date | |
|---|---|---|---|
| 050969ed16 |
@@ -44,7 +44,6 @@ dependencies {
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runtimeOnly("org.apache.logging.log4j:log4j-core:2.26.0")
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runtimeOnly("org.apache.logging.log4j:log4j-slf4j2-impl:2.26.0")
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implementation("com.r35157.nenjim:hubd-api:0.1-dev")
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implementation("com.fasterxml.jackson.core:jackson-databind:2.18.6")
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implementation("com.fazecast:jSerialComm:2.11.4")
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implementation("com.google.code.gson:gson:2.14.0")
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@@ -28,7 +28,6 @@ public final class PriceAlarm {
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previousReached = reached;
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if (!reached) {
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previousReached = false;
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return;
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}
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@@ -42,7 +41,7 @@ public final class PriceAlarm {
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}
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if (definition.trigger() == AlarmTrigger.PERSISTENT) {
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if (lastTriggeredAt == null || persistentGracePeriodHasPassed()) {
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if (enteredTriggeredSide || persistentGracePeriodHasPassed()) {
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trigger(price);
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}
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return;
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@@ -1,70 +0,0 @@
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package com.r35157.libs.codec.impl.ref;
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import com.r35157.libs.codec.Base58Codec;
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public class Base58CodecImpl implements Base58Codec {
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public String encode(byte[] input) {
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if (input.length == 0) {
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return "";
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}
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byte[] copy = input.clone();
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int zeros = 0;
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while (zeros < copy.length && copy[zeros] == 0) {
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zeros++;
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}
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char[] encoded = new char[copy.length * 2];
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int outputStart = encoded.length;
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int inputStart = zeros;
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while (inputStart < copy.length) {
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int remainder = divmod58(
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copy,
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inputStart
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);
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if (copy[inputStart] == 0) {
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inputStart++;
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}
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encoded[--outputStart] = ALPHABET[remainder];
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}
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while (outputStart < encoded.length && encoded[outputStart] == ENCODED_ZERO) {
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outputStart++;
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}
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while (zeros-- > 0) {
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encoded[--outputStart] = ENCODED_ZERO;
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}
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return new String(
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encoded,
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outputStart,
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encoded.length - outputStart
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);
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}
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private static int divmod58(byte[] number, int startAt) {
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int remainder = 0;
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for (int i = startAt; i < number.length; i++) {
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int digit = number[i] & 0xff;
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int temp = remainder * 256 + digit;
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number[i] = (byte) (temp / 58);
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remainder = temp % 58;
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}
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return remainder;
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}
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private static final char[] ALPHABET =
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"123456789ABCDEFGHJKLMNPQRSTUVWXYZabcdefghijkmnopqrstuvwxyz".toCharArray();
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private static final char ENCODED_ZERO =
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ALPHABET[0];
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}
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-50
@@ -1,50 +0,0 @@
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package com.r35157.libs.jupiter.perps.impl.anchoridl;
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import com.r35157.libs.codec.Base58Codec;
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import com.r35157.libs.codec.impl.ref.Base58CodecImpl;
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import com.r35157.libs.solana.SolanaAccountInfo;
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import java.util.Base64;
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class AnchorIdlJupiterPerpsCustodyDecoder {
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ΩSPLMintAddressΩ decodeMint(
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SolanaAccountInfo custodyAccountInfo
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) {
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byte[] data = Base64.getDecoder().decode(custodyAccountInfo.dataBase64());
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if (data.length < MINT_OFFSET + PUBLIC_KEY_LENGTH) {
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throw new IllegalArgumentException(
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"Jupiter Perps custody account data is too short: " + data.length
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);
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}
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return readPublicKey(data, MINT_OFFSET);
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}
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private ΩSPLMintAddressΩ readPublicKey(
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byte[] data,
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int offset
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) {
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byte[] publicKeyBytes = new byte[PUBLIC_KEY_LENGTH];
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System.arraycopy(
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data,
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offset,
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publicKeyBytes,
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0,
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PUBLIC_KEY_LENGTH
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);
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return base58.encode(publicKeyBytes);
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}
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private static final int ANCHOR_DISCRIMINATOR_LENGTH = 8;
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private static final int PUBLIC_KEY_LENGTH = 32;
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private static final int MINT_OFFSET =
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ANCHOR_DISCRIMINATOR_LENGTH
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+ PUBLIC_KEY_LENGTH; // pool
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private static final Base58Codec base58 = new Base58CodecImpl();
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}
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-114
@@ -1,114 +0,0 @@
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package com.r35157.libs.jupiter.perps.impl.anchoridl;
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import com.r35157.libs.codec.Base58Codec;
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import com.r35157.libs.codec.impl.ref.Base58CodecImpl;
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import com.r35157.libs.jupiter.perps.JupiterPerpsPosition;
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import com.r35157.libs.jupiter.perps.JupiterPerpsPositionDirection;
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import com.r35157.libs.solana.SolanaAccountInfo;
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import java.math.BigDecimal;
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import java.nio.ByteBuffer;
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import java.nio.ByteOrder;
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import java.util.Base64;
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class AnchorIdlJupiterPerpsPositionDecoder {
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JupiterPerpsPosition decode(
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ΩJupiterPerpsPositionAccountΩ positionAccount,
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SolanaAccountInfo accountInfo,
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ΩSPLMintAddressΩ tradedTokenMint
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) {
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byte[] data = Base64.getDecoder().decode(accountInfo.dataBase64());
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if (data.length < PRICE_OFFSET + U64_LENGTH) {
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throw new IllegalArgumentException(
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"Jupiter Perps position account data is too short: " + data.length
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);
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}
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JupiterPerpsPositionDirection direction =
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decodeDirection(data[SIDE_OFFSET]);
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long rawEntryPrice = ByteBuffer
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.wrap(data, PRICE_OFFSET, U64_LENGTH)
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.order(ByteOrder.LITTLE_ENDIAN)
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.getLong();
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ΩUSDCPriceΩ entryPrice = BigDecimal
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.valueOf(rawEntryPrice)
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.movePointLeft(6);
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JupiterPerpsPosition pos = new JupiterPerpsPosition(
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positionAccount,
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entryPrice,
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direction,
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tradedTokenMint
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);
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return pos;
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}
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ΩSolanaAddressΩ decodeCustodyAccount(SolanaAccountInfo accountInfo) {
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byte[] data = Base64.getDecoder().decode(accountInfo.dataBase64());
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if (data.length < CUSTODY_OFFSET + PUBLIC_KEY_LENGTH) {
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throw new IllegalArgumentException(
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"Jupiter Perps position account data is too short: " + data.length
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);
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}
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return readPublicKey(
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data,
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CUSTODY_OFFSET
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);
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}
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private JupiterPerpsPositionDirection decodeDirection(
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byte rawSide
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) {
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// Jupiter Perps position side values are encoded as 1 = LONG, 2 = SHORT.
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JupiterPerpsPositionDirection direction = switch (rawSide) {
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case 1 -> JupiterPerpsPositionDirection.LONG;
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case 2 -> JupiterPerpsPositionDirection.SHORT;
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default -> throw new IllegalArgumentException(
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"Unknown Jupiter Perps position side: " + rawSide
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);
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};
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return direction;
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}
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private ΩSolanaAddressΩ readPublicKey(
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byte[] data,
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int offset
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) {
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byte[] publicKeyBytes = new byte[PUBLIC_KEY_LENGTH];
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System.arraycopy(
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data,
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offset,
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publicKeyBytes,
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0,
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PUBLIC_KEY_LENGTH
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);
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return base58.encode(publicKeyBytes);
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}
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private static final int ANCHOR_DISCRIMINATOR_LENGTH = 8;
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private static final int PUBLIC_KEY_LENGTH = 32;
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private static final int I64_LENGTH = 8;
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private static final int SIDE_ENUM_LENGTH = 1;
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private static final int U64_LENGTH = 8;
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private static final int OWNER_OFFSET = ANCHOR_DISCRIMINATOR_LENGTH;
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private static final int POOL_OFFSET = OWNER_OFFSET + PUBLIC_KEY_LENGTH;
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private static final int CUSTODY_OFFSET = POOL_OFFSET + PUBLIC_KEY_LENGTH;
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private static final int COLLATERAL_CUSTODY_OFFSET = CUSTODY_OFFSET + PUBLIC_KEY_LENGTH; // custody
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private static final int OPEN_TIME_OFFSET = COLLATERAL_CUSTODY_OFFSET + PUBLIC_KEY_LENGTH;
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private static final int UPDATE_TIME_OFFSET = OPEN_TIME_OFFSET + I64_LENGTH; // openTime
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private static final int SIDE_OFFSET = UPDATE_TIME_OFFSET + I64_LENGTH;
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private static final int PRICE_OFFSET = SIDE_OFFSET + SIDE_ENUM_LENGTH;
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private static final Base58Codec base58 = new Base58CodecImpl();
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}
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-99
@@ -1,99 +0,0 @@
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package com.r35157.libs.jupiter.perps.impl.anchoridl;
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import com.r35157.libs.jupiter.perps.JupiterPerpsPosition;
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import com.r35157.libs.jupiter.perps.JupiterPerpsService;
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import com.r35157.libs.solana.SolanaAccountInfo;
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import com.r35157.libs.solana.SolanaBlockChain;
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import com.r35157.libs.solana.SolanaProgramAccountMemcmpFilter;
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import java.io.IOException;
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import java.util.HashSet;
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import java.util.Set;
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public class AnchorIdlJupiterPerpsServiceImpl implements JupiterPerpsService {
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public AnchorIdlJupiterPerpsServiceImpl(
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SolanaBlockChain solanaBlockChain
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) {
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this.solanaBlockChain = solanaBlockChain;
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this.positionDecoder = new AnchorIdlJupiterPerpsPositionDecoder();
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this.custodyDecoder = new AnchorIdlJupiterPerpsCustodyDecoder();
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}
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@Override
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public JupiterPerpsPosition getPosition(ΩJupiterPerpsPositionAccountΩ positionAccount)
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throws IOException, InterruptedException {
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SolanaAccountInfo accountInfo = solanaBlockChain.getAccountInfo(positionAccount);
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if (accountInfo == null) {
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throw new IllegalArgumentException("Jupiter Perps position account does not exist: " + positionAccount);
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}
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if (!JUPITER_PERPS_PROGRAM_ID.equals(accountInfo.owner())) {
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throw new IllegalArgumentException(
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"Account is not owned by Jupiter Perps program: " + positionAccount
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);
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}
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ΩSPLMintAddressΩ tradedTokenMint = getTradedTokenMint(accountInfo);
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JupiterPerpsPosition pos = positionDecoder.decode(positionAccount, accountInfo, tradedTokenMint);
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return pos;
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}
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@Override
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public Set<JupiterPerpsPosition> getOpenPositions(ΩSolanaWalletIdΩ owner)
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throws IOException, InterruptedException {
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Set<SolanaAccountInfo> accountInfos = solanaBlockChain.getProgramAccounts(
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JUPITER_PERPS_PROGRAM_ID,
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Set.of(new SolanaProgramAccountMemcmpFilter(
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POSITION_OWNER_OFFSET,
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owner
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))
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);
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Set<JupiterPerpsPosition> positions = new HashSet<>();
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for (SolanaAccountInfo accountInfo : accountInfos) {
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ΩSolanaAddressΩ address = accountInfo.address();
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ΩSolanaProgramIdΩ programId = accountInfo.owner();
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if (!JUPITER_PERPS_PROGRAM_ID.equals(programId)) {
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String errorMsg = "Account '" + address + "' is not owned by Jupiter Perps program '" +
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programId + "'";
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throw new IllegalArgumentException(errorMsg);
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}
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ΩSPLMintAddressΩ tradedTokenMint = getTradedTokenMint(accountInfo);
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JupiterPerpsPosition position = positionDecoder.decode(address, accountInfo, tradedTokenMint);
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positions.add(position);
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}
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return Set.copyOf(positions);
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}
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private ΩSPLMintAddressΩ getTradedTokenMint(SolanaAccountInfo positionAccountInfo)
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throws IOException, InterruptedException
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{
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ΩSolanaAddressΩ custodyAccount = positionDecoder.decodeCustodyAccount(positionAccountInfo);
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SolanaAccountInfo custodyAccountInfo = solanaBlockChain.getAccountInfo(custodyAccount);
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if (custodyAccountInfo == null) {
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throw new IllegalArgumentException(
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"Jupiter Perps custody account does not exist: " + custodyAccount
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);
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}
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ΩSPLMintAddressΩ mintAddress = custodyDecoder.decodeMint(custodyAccountInfo);
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return mintAddress;
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}
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private static final ΩJupiterPerpsProgramIdΩ JUPITER_PERPS_PROGRAM_ID =
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"PERPHjGBqRHArX4DySjwM6UJHiR3sWAatqfdBS2qQJu";
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private static final int POSITION_OWNER_OFFSET = 8;
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private final SolanaBlockChain solanaBlockChain;
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private final AnchorIdlJupiterPerpsPositionDecoder positionDecoder;
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private final AnchorIdlJupiterPerpsCustodyDecoder custodyDecoder;
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}
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@@ -0,0 +1,146 @@
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package com.r35157.libs.solana;
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import com.r35157.libs.solana.valuetypes.SolanaProgramDerivedAddress;
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import com.r35157.libs.solana.valuetypes.economic.SolanaSPLTokenProgram;
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import com.r35157.libs.valuetypes.basic.MoneyAmount;
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import java.io.IOException;
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import java.util.List;
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import java.util.Map;
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import java.util.Set;
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/**
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* Provides read-oriented access to the Solana blockchain.
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*
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* <p>This interface exposes the Solana operations needed by higher-level
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* integrations. It can fetch native SOL balances, SPL token holdings, NFT-like
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* token holding candidates, account information and program derived addresses.</p>
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*
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* <p>The interface is intentionally generic and does not contain Raydium-specific
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* logic. Higher-level integrations are expected to interpret Solana accounts,
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* token holdings and derived addresses according to their own domain rules.</p>
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*/
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public interface SolanaBlockChain {
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/**
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* Fetches the native SOL balance for a Solana address.
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*
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* @param address the Solana address to inspect
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* @return the native SOL balance for the address
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* @throws IOException if the balance could not be fetched or parsed
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* @throws InterruptedException if the calling thread is interrupted while fetching the balance
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*/
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ΩSolanaAmountΩ getBalanceInSolana(ΩSolanaAddressΩ address) throws IOException, InterruptedException;
|
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|
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/**
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* Fetches the native SOL balance for a Solana address in lamports.
|
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*
|
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* <p>Lamports are the smallest unit of native SOL.</p>
|
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*
|
||||
* @param address the Solana address to inspect
|
||||
* @return the native SOL balance for the address in lamports
|
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* @throws IOException if the balance could not be fetched or parsed
|
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* @throws InterruptedException if the calling thread is interrupted while fetching the balance
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*/
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ΩlamportsΩ getBalanceInLamport(ΩSolanaAddressΩ address) throws IOException, InterruptedException;
|
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|
||||
/**
|
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* Fetches SPL token holdings owned by a Solana address for a specific token program.
|
||||
*
|
||||
* <p>The supplied token program decides which token accounts are inspected. For example,
|
||||
* callers may query the original SPL Token Program or the Token-2022 Program depending
|
||||
* on which token accounts they need to discover.</p>
|
||||
*
|
||||
* @param ownerAddress the Solana owner address whose token holdings should be inspected
|
||||
* @param splProgramId the SPL token program to query
|
||||
* @return a map of SPL mint addresses to token holding information
|
||||
* @throws IOException if the token holdings could not be fetched or parsed
|
||||
* @throws InterruptedException if the calling thread is interrupted while fetching token holdings
|
||||
*/
|
||||
Map<ΩSPLMintAddressΩ, SPLTokenHolding> getSPLTokenHoldings(
|
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ΩSolanaAddressΩ ownerAddress,
|
||||
SolanaSPLTokenProgram splProgramId
|
||||
) throws IOException, InterruptedException;
|
||||
|
||||
/**
|
||||
* Fetches NFT-like token mint address candidates owned by a Solana address for a specific token program.
|
||||
*
|
||||
* <p>This method identifies token holdings that look like NFTs within the supplied token
|
||||
* program. A returned address is only a candidate. Higher-level integrations are responsible
|
||||
* for deciding whether the returned address has domain-specific meaning.</p>
|
||||
*
|
||||
* // TODO This method currently identifies candidates from the owner's token holdings only.
|
||||
* // A token with zero decimals and an owner balance of one is not guaranteed to be a real NFT,
|
||||
* // because the mint's total supply may still be greater than one. A future implementation
|
||||
* // should verify the mint supply, for example by using Solana getTokenSupply, before treating
|
||||
* // the result as a confirmed NFT.
|
||||
*
|
||||
* @param ownerAddress the Solana owner address whose NFT-like holdings should be inspected
|
||||
* @param splProgram the SPL token program to query
|
||||
* @return the NFT-like Solana mint address candidates owned by the address
|
||||
* @throws IOException if the NFT candidate addresses could not be fetched or parsed
|
||||
* @throws InterruptedException if the calling thread is interrupted while fetching NFT candidate addresses
|
||||
*/
|
||||
Set<ΩSolanaNFTAddressΩ> getSolanaNFTCandidateAddresses(
|
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ΩSolanaAddressΩ ownerAddress,
|
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SolanaSPLTokenProgram splProgram
|
||||
) throws IOException, InterruptedException;
|
||||
|
||||
/**
|
||||
* Finds a Solana program derived address for a program id and a set of seeds.
|
||||
*
|
||||
* <p>The seeds describe the logical inputs used to derive the address. The implementation
|
||||
* is responsible for converting each seed into the byte representation required by Solana.</p>
|
||||
*
|
||||
* @param programId the Solana program id used to derive the address
|
||||
* @param seeds the seeds used when deriving the program address
|
||||
* @return the derived Solana address together with its bump value
|
||||
*/
|
||||
SolanaProgramDerivedAddress findProgramAddress(
|
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ΩSolanaProgramIdΩ programId,
|
||||
List<SolanaProgramAddressSeed> seeds
|
||||
);
|
||||
|
||||
/**
|
||||
* Fetches account information for a Solana account address.
|
||||
*
|
||||
* <p>If the account does not exist, this method returns {@code null}. If the account exists,
|
||||
* the returned value contains the account address, the owning Solana program id and the
|
||||
* account data encoded as Base64.</p>
|
||||
*
|
||||
* @param accountAddress the Solana account address to inspect
|
||||
* @return account information, or {@code null} if the account does not exist
|
||||
* @throws IOException if the account information could not be fetched or parsed
|
||||
* @throws InterruptedException if the calling thread is interrupted while fetching account information
|
||||
*/
|
||||
SolanaAccountInfo getAccountInfo(ΩSolanaAddressΩ accountAddress)
|
||||
throws IOException, InterruptedException;
|
||||
|
||||
/**
|
||||
* Encodes a raw 32-byte Solana address into its textual Solana address representation.
|
||||
*
|
||||
* <p>This method is intended for callers that have obtained raw Solana address bytes from
|
||||
* account data and need the normal string representation used elsewhere in the API.</p>
|
||||
*
|
||||
* @param addressBytes the raw 32-byte Solana address
|
||||
* @return the encoded Solana address
|
||||
* @throws IllegalArgumentException if the supplied byte array is not a valid Solana address length
|
||||
*/
|
||||
ΩSolanaAddressΩ encodeSolanaAddress(byte[] addressBytes);
|
||||
|
||||
/**
|
||||
* Fetches the total supply of an SPL token mint for a specific token program.
|
||||
*
|
||||
* <p>The supplied token program identifies which SPL token program owns the mint,
|
||||
* for example the original SPL Token Program or the Token-2022 Program.</p>
|
||||
*
|
||||
* @param mintAddress the SPL mint address whose supply should be fetched
|
||||
* @param splProgram the SPL token program to query
|
||||
* @return the SPL token supply for the mint
|
||||
* @throws IOException if the token supply could not be fetched or parsed
|
||||
* @throws InterruptedException if the calling thread is interrupted while fetching token supply
|
||||
*/
|
||||
SPLTokenSupply getSPLTokenSupply(
|
||||
ΩSPLMintAddressΩ mintAddress,
|
||||
SolanaSPLTokenProgram splProgram
|
||||
) throws IOException, InterruptedException;
|
||||
}
|
||||
@@ -331,113 +331,6 @@ public class SolanaBlockChainImpl implements SolanaBlockChain {
|
||||
);
|
||||
}
|
||||
|
||||
@Override
|
||||
public Set<SolanaAccountInfo> getProgramAccounts(
|
||||
ΩSolanaProgramIdΩ programId,
|
||||
Set<SolanaProgramAccountMemcmpFilter> filters
|
||||
) throws IOException, InterruptedException {
|
||||
String jsonBody = createGetProgramAccountsBody(programId, filters);
|
||||
|
||||
HttpRequest request = HttpRequest.newBuilder()
|
||||
.uri(URI.create(RPC_URL))
|
||||
.header("Content-Type", "application/json")
|
||||
.POST(HttpRequest.BodyPublishers.ofString(jsonBody))
|
||||
.build();
|
||||
|
||||
HttpResponse<String> response = sendThrottled(request);
|
||||
|
||||
if (response.statusCode() != 200) {
|
||||
throw new IOException("RPC call failed: HTTP " + response.statusCode() + "\n" + response.body());
|
||||
}
|
||||
|
||||
JsonNode root = objectMapper.readTree(response.body());
|
||||
|
||||
if (root.has("error")) {
|
||||
throw new IOException("Solana RPC error: " + root.get("error").toPrettyString());
|
||||
}
|
||||
|
||||
JsonNode result = root.path("result");
|
||||
|
||||
if (!result.isArray()) {
|
||||
throw new IOException("getProgramAccounts response did not contain result array!");
|
||||
}
|
||||
|
||||
Set<SolanaAccountInfo> accountInfos = new HashSet<>();
|
||||
|
||||
for (JsonNode accountNode : result) {
|
||||
JsonNode pubkeyNode = accountNode.path("pubkey");
|
||||
JsonNode account = accountNode.path("account");
|
||||
|
||||
if (!pubkeyNode.isTextual()) {
|
||||
throw new IOException("getProgramAccounts response contained account without textual pubkey!");
|
||||
}
|
||||
|
||||
JsonNode ownerNode = account.path("owner");
|
||||
if (!ownerNode.isTextual()) {
|
||||
throw new IOException("getProgramAccounts response contained account without textual owner!");
|
||||
}
|
||||
|
||||
JsonNode dataNode = account.path("data");
|
||||
if (!dataNode.isArray() || dataNode.isEmpty() || !dataNode.get(0).isTextual()) {
|
||||
throw new IOException("getProgramAccounts response contained account without base64 data!");
|
||||
}
|
||||
|
||||
accountInfos.add(new SolanaAccountInfo(
|
||||
pubkeyNode.asText(),
|
||||
ownerNode.asText(),
|
||||
dataNode.get(0).asText()
|
||||
));
|
||||
}
|
||||
|
||||
return Set.copyOf(accountInfos);
|
||||
}
|
||||
|
||||
private String createGetProgramAccountsBody(
|
||||
ΩSolanaProgramIdΩ programId,
|
||||
Set<SolanaProgramAccountMemcmpFilter> filters
|
||||
) throws IOException {
|
||||
StringBuilder filtersJson = new StringBuilder();
|
||||
|
||||
boolean first = true;
|
||||
for (SolanaProgramAccountMemcmpFilter filter : filters) {
|
||||
if (!first) {
|
||||
filtersJson.append(",");
|
||||
}
|
||||
|
||||
filtersJson.append("""
|
||||
{
|
||||
"memcmp": {
|
||||
"offset": %d,
|
||||
"bytes": "%s"
|
||||
}
|
||||
}
|
||||
""".formatted(
|
||||
filter.offset(),
|
||||
filter.bytes()
|
||||
));
|
||||
|
||||
first = false;
|
||||
}
|
||||
|
||||
return """
|
||||
{
|
||||
"jsonrpc": "2.0",
|
||||
"id": 1,
|
||||
"method": "getProgramAccounts",
|
||||
"params": [
|
||||
"%s",
|
||||
{
|
||||
"commitment": "finalized",
|
||||
"encoding": "base64",
|
||||
"filters": [
|
||||
%s
|
||||
]
|
||||
}
|
||||
]
|
||||
}
|
||||
""".formatted(programId, filtersJson);
|
||||
}
|
||||
|
||||
private synchronized HttpResponse<String> sendThrottled(HttpRequest request) throws IOException, InterruptedException {
|
||||
waitBeforeRemoteCall();
|
||||
|
||||
|
||||
@@ -1,10 +1,5 @@
|
||||
package com.r35157.nenjim.hubd.impl.ref;
|
||||
|
||||
import com.r35157.libs.jupiter.perps.JupiterPerpsPosition;
|
||||
import com.r35157.libs.jupiter.perps.JupiterPerpsService;
|
||||
import com.r35157.libs.jupiter.perps.impl.anchoridl.AnchorIdlJupiterPerpsServiceImpl;
|
||||
import com.r35157.libs.solana.SolanaBlockChain;
|
||||
import com.r35157.libs.solana.impl.ref.SolanaBlockChainImpl;
|
||||
import com.r35157.nenjim.hubd.ctx.Context;
|
||||
import com.r35157.nenjim.hubd.NenjimHub;
|
||||
import org.slf4j.Logger;
|
||||
@@ -17,21 +12,12 @@ import com.r35157.nenjim.hubd.journal.JournalManager;
|
||||
import com.r35157.nenjim.hubd.impl.ref.JournalManagerImpl;
|
||||
import java.nio.file.Files;
|
||||
import java.nio.file.Path;
|
||||
import java.util.Set;
|
||||
|
||||
public class Main {
|
||||
|
||||
// TODO: Consider if we really need a Main class or we just need to move the main method to NenjimHubImpl?
|
||||
static void main(String[] args) throws Exception {
|
||||
NenjimHubImpl nenjimHub = new NenjimHubImpl();
|
||||
|
||||
/*
|
||||
SolanaBlockChain sbc = new SolanaBlockChainImpl();
|
||||
JupiterPerpsService jupiter = new AnchorIdlJupiterPerpsServiceImpl(sbc);
|
||||
ΩSolanaWalletIdΩ walletId = "vj98roDZ7744EBfxyuDFkKpEGCsKQLr7K8UFRumJNHf";
|
||||
Set<JupiterPerpsPosition> positions = jupiter.getOpenPositions(walletId);
|
||||
int a=0;
|
||||
*/
|
||||
nenjimHub.awaitShutdown();
|
||||
|
||||
/* try {
|
||||
|
||||
Reference in New Issue
Block a user