* First draft for erc721 token allowance * Split ui and provide parameters into their own files * Print txtype when not supported * fix compilation for erc721 * Use pluginType * Add debug statement in compound plugin * add debug error msg in plugin error * Add parameter parsing for all methods * Remove debug logs * Add SET_APPROVAL_FOR_ALL; Add correct parsing method on contract init * Add dst_size parameter to copy functions * Add query contract id code * format * Add UIs * update ethapp.asc * Change setExternalPlugin to setPlugin; Add support for ERC721 * clang-format * Fix typo Unconsistent -> Inconsistent * Add support for 721; use extraInfo * Add extraInfo to ethpluginQueryConractUI * Rename extraInfo to item * Add txFromEtherscan to tests * Add nft key and temp padding * Remove comments around HAVE_BYPASS_SIGNATURES * Rename TESTING_KEY to NFT_TESTING_KEY * Add comments regarding value of queryContractUI->item * Fix comment regarding method selector * Rename provideToken to provideInfo; Update plugin doc * fix caps of eth_plugin_prepare_provide_info * fix caps of handle_provide_info * Use verificationFn insead of hardcoded cx_ecdsa_verify * Add comments about nftInfo_t and tokenDefinition_t * Add erc721 test * Remove comment from plugin interface version * Fix network_ticker duplicate * Add setPlugin and provideNFTInfo to doc.asc * Add back setExternalPlugin; implement new setPlugin * Update plugin sdk * Call setPlugin instead of setExternalPlugin * setPlugin work without checking sig * Remove printf of displayed fees * Add working 721 test * Finalize ERC721 and add simple test * Display NFT address on set approval and operator * Support set approval for all for erc721 * Finish UI for set approval for all erc721 * Move copy_parameter and copy_address to eth_plugin_internal; Add tests for erc721 * update plugin sdk * Add erc1155 plugin and 1155 tests placeholder * Add restriction for AWS key and setPlugin * Add NOT_OLD_INTERNAL variant; Add erc_1155_plugin_call * Fixed compilation warnings (function pointer casting) Co-authored-by: pscott <scott.piriou@ledger.fr>
626 lines
21 KiB
C
626 lines
21 KiB
C
/*******************************************************************************
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* Ledger Ethereum App
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* (c) 2016-2019 Ledger
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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********************************************************************************/
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#include <stdint.h>
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#include <string.h>
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#include "ethUstream.h"
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#include "ethUtils.h"
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#include "utils.h"
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#define MAX_INT256 32
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#define MAX_ADDRESS 20
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void initTx(txContext_t *context,
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cx_sha3_t *sha3,
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txContent_t *content,
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ustreamProcess_t customProcessor,
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void *extra) {
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memset(context, 0, sizeof(txContext_t));
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context->sha3 = sha3;
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context->content = content;
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context->customProcessor = customProcessor;
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context->extra = extra;
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context->currentField = RLP_NONE + 1;
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cx_keccak_init(context->sha3, 256);
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}
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uint8_t readTxByte(txContext_t *context) {
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uint8_t data;
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if (context->commandLength < 1) {
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PRINTF("readTxByte Underflow\n");
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THROW(EXCEPTION);
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}
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data = *context->workBuffer;
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context->workBuffer++;
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context->commandLength--;
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if (context->processingField) {
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context->currentFieldPos++;
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}
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if (!(context->processingField && context->fieldSingleByte)) {
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cx_hash((cx_hash_t *) context->sha3, 0, &data, 1, NULL, 0);
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}
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return data;
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}
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void copyTxData(txContext_t *context, uint8_t *out, uint32_t length) {
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if (context->commandLength < length) {
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PRINTF("copyTxData Underflow\n");
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THROW(EXCEPTION);
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}
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if (out != NULL) {
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memmove(out, context->workBuffer, length);
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}
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if (!(context->processingField && context->fieldSingleByte)) {
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cx_hash((cx_hash_t *) context->sha3, 0, context->workBuffer, length, NULL, 0);
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}
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context->workBuffer += length;
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context->commandLength -= length;
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if (context->processingField) {
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context->currentFieldPos += length;
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}
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}
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static void processContent(txContext_t *context) {
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// Keep the full length for sanity checks, move to the next field
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if (!context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_CONTENT\n");
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THROW(EXCEPTION);
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}
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context->dataLength = context->currentFieldLength;
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context->currentField++;
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context->processingField = false;
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}
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static void processAccessList(txContext_t *context) {
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if (!context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_ACCESS_LIST\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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copyTxData(context, NULL, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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context->currentField++;
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context->processingField = false;
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}
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}
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static void processType(txContext_t *context) {
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if (context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_TYPE\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldLength > MAX_INT256) {
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PRINTF("Invalid length for RLP_TYPE\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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copyTxData(context, NULL, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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context->currentField++;
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context->processingField = false;
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}
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}
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static void processChainID(txContext_t *context) {
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if (context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_CHAINID\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldLength > MAX_INT256) {
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PRINTF("Invalid length for RLP_CHAINID\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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copyTxData(context, context->content->chainID.value, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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context->content->chainID.length = context->currentFieldLength;
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context->currentField++;
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context->processingField = false;
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}
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}
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static void processNonce(txContext_t *context) {
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if (context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_NONCE\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldLength > MAX_INT256) {
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PRINTF("Invalid length for RLP_NONCE\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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copyTxData(context, context->content->nonce.value, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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context->content->nonce.length = context->currentFieldLength;
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context->currentField++;
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context->processingField = false;
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}
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}
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static void processStartGas(txContext_t *context) {
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if (context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_STARTGAS\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldLength > MAX_INT256) {
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PRINTF("Invalid length for RLP_STARTGAS %d\n", context->currentFieldLength);
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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copyTxData(context, context->content->startgas.value + context->currentFieldPos, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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context->content->startgas.length = context->currentFieldLength;
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context->currentField++;
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context->processingField = false;
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}
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}
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// Alias over `processStartGas()`.
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static void processGasLimit(txContext_t *context) {
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processStartGas(context);
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}
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static void processGasprice(txContext_t *context) {
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if (context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_GASPRICE\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldLength > MAX_INT256) {
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PRINTF("Invalid length for RLP_GASPRICE\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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copyTxData(context, context->content->gasprice.value + context->currentFieldPos, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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context->content->gasprice.length = context->currentFieldLength;
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context->currentField++;
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context->processingField = false;
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}
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}
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static void processValue(txContext_t *context) {
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if (context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_VALUE\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldLength > MAX_INT256) {
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PRINTF("Invalid length for RLP_VALUE\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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copyTxData(context, context->content->value.value + context->currentFieldPos, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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context->content->value.length = context->currentFieldLength;
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context->currentField++;
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context->processingField = false;
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}
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}
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static void processTo(txContext_t *context) {
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if (context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_TO\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldLength > MAX_ADDRESS) {
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PRINTF("Invalid length for RLP_TO\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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copyTxData(context, context->content->destination + context->currentFieldPos, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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context->content->destinationLength = context->currentFieldLength;
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context->currentField++;
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context->processingField = false;
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}
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}
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static void processData(txContext_t *context) {
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PRINTF("PROCESS DATA\n");
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if (context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_DATA\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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// If there is no data, set dataPresent to false.
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if (copySize == 1 && *context->workBuffer == 0x00) {
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context->content->dataPresent = false;
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}
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copyTxData(context, NULL, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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PRINTF("incrementing field\n");
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context->currentField++;
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context->processingField = false;
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}
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}
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static void processAndDiscard(txContext_t *context) {
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if (context->currentFieldIsList) {
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PRINTF("Invalid type for Discarded field\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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copyTxData(context, NULL, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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context->currentField++;
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context->processingField = false;
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}
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}
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static void processV(txContext_t *context) {
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if (context->currentFieldIsList) {
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PRINTF("Invalid type for RLP_V\n");
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THROW(EXCEPTION);
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}
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if (context->currentFieldPos < context->currentFieldLength) {
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uint32_t copySize =
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MIN(context->commandLength, context->currentFieldLength - context->currentFieldPos);
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// Make sure we do not copy more than the size of v.
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copySize = MIN(copySize, sizeof(context->content->v));
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copyTxData(context, context->content->v + context->currentFieldPos, copySize);
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}
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if (context->currentFieldPos == context->currentFieldLength) {
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context->content->vLength = context->currentFieldLength;
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context->currentField++;
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context->processingField = false;
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}
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}
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static bool processEIP1559Tx(txContext_t *context) {
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switch (context->currentField) {
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case EIP1559_RLP_CONTENT: {
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processContent(context);
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if ((context->processingFlags & TX_FLAG_TYPE) == 0) {
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context->currentField++;
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}
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break;
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}
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// This gets hit only by Wanchain
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case EIP1559_RLP_TYPE: {
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processType(context);
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break;
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}
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case EIP1559_RLP_CHAINID: {
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processChainID(context);
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break;
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}
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case EIP1559_RLP_NONCE: {
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processNonce(context);
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break;
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}
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case EIP1559_RLP_MAX_FEE_PER_GAS: {
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processGasprice(context);
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break;
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}
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case EIP1559_RLP_GASLIMIT: {
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processGasLimit(context);
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break;
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}
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case EIP1559_RLP_TO: {
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processTo(context);
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break;
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}
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case EIP1559_RLP_VALUE: {
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processValue(context);
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break;
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}
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case EIP1559_RLP_DATA: {
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processData(context);
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break;
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}
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case EIP1559_RLP_ACCESS_LIST: {
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processAccessList(context);
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break;
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}
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case EIP1559_RLP_MAX_PRIORITY_FEE_PER_GAS:
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processAndDiscard(context);
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break;
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default:
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PRINTF("Invalid RLP decoder context\n");
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return true;
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}
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return false;
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}
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static bool processEIP2930Tx(txContext_t *context) {
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switch (context->currentField) {
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case EIP2930_RLP_CONTENT:
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processContent(context);
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if ((context->processingFlags & TX_FLAG_TYPE) == 0) {
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context->currentField++;
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}
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break;
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// This gets hit only by Wanchain
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case EIP2930_RLP_TYPE:
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processType(context);
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break;
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case EIP2930_RLP_CHAINID:
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processChainID(context);
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break;
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case EIP2930_RLP_NONCE:
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processNonce(context);
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break;
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case EIP2930_RLP_GASPRICE:
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processGasprice(context);
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break;
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case EIP2930_RLP_GASLIMIT:
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processGasLimit(context);
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break;
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case EIP2930_RLP_TO:
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processTo(context);
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break;
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case EIP2930_RLP_VALUE:
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processValue(context);
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break;
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case EIP2930_RLP_DATA:
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processData(context);
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break;
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case EIP2930_RLP_ACCESS_LIST:
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processAccessList(context);
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break;
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default:
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PRINTF("Invalid RLP decoder context\n");
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return true;
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}
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return false;
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}
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static bool processLegacyTx(txContext_t *context) {
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switch (context->currentField) {
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case LEGACY_RLP_CONTENT:
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processContent(context);
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if ((context->processingFlags & TX_FLAG_TYPE) == 0) {
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context->currentField++;
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}
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break;
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// This gets hit only by Wanchain
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case LEGACY_RLP_TYPE:
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processType(context);
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break;
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case LEGACY_RLP_NONCE:
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processNonce(context);
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break;
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case LEGACY_RLP_GASPRICE:
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processGasprice(context);
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break;
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case LEGACY_RLP_STARTGAS:
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processStartGas(context);
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break;
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case LEGACY_RLP_TO:
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processTo(context);
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break;
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case LEGACY_RLP_VALUE:
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processValue(context);
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break;
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case LEGACY_RLP_DATA:
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processData(context);
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break;
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case LEGACY_RLP_R:
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case LEGACY_RLP_S:
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processAndDiscard(context);
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break;
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case LEGACY_RLP_V:
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processV(context);
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break;
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default:
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PRINTF("Invalid RLP decoder context\n");
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return true;
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}
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return false;
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}
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static parserStatus_e parseRLP(txContext_t *context) {
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bool canDecode = false;
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uint32_t offset;
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while (context->commandLength != 0) {
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bool valid;
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// Feed the RLP buffer until the length can be decoded
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context->rlpBuffer[context->rlpBufferPos++] = readTxByte(context);
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if (rlpCanDecode(context->rlpBuffer, context->rlpBufferPos, &valid)) {
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// Can decode now, if valid
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if (!valid) {
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PRINTF("RLP pre-decode error\n");
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return USTREAM_FAULT;
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}
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canDecode = true;
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break;
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}
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// Cannot decode yet
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// Sanity check
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if (context->rlpBufferPos == sizeof(context->rlpBuffer)) {
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PRINTF("RLP pre-decode logic error\n");
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return USTREAM_FAULT;
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}
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}
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if (!canDecode) {
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PRINTF("Can't decode\n");
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return USTREAM_PROCESSING;
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}
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// Ready to process this field
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if (!rlpDecodeLength(context->rlpBuffer,
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&context->currentFieldLength,
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&offset,
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&context->currentFieldIsList)) {
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PRINTF("RLP decode error\n");
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return USTREAM_FAULT;
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}
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// Ready to process this field
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|
if (offset == 0) {
|
|
// Hack for single byte, self encoded
|
|
context->workBuffer--;
|
|
context->commandLength++;
|
|
context->fieldSingleByte = true;
|
|
} else {
|
|
context->fieldSingleByte = false;
|
|
}
|
|
context->currentFieldPos = 0;
|
|
context->rlpBufferPos = 0;
|
|
context->processingField = true;
|
|
return USTREAM_CONTINUE;
|
|
}
|
|
|
|
static parserStatus_e processTxInternal(txContext_t *context) {
|
|
for (;;) {
|
|
customStatus_e customStatus = CUSTOM_NOT_HANDLED;
|
|
// EIP 155 style transaction
|
|
if (PARSING_IS_DONE(context)) {
|
|
PRINTF("parsing is done\n");
|
|
return USTREAM_FINISHED;
|
|
}
|
|
// Old style transaction (pre EIP-155). Transations could just skip `v,r,s` so we needed to
|
|
// cut parsing here. commandLength == 0 could happen in two cases :
|
|
// 1. We are in an old style transaction : just return `USTREAM_FINISHED`.
|
|
// 2. We are at the end of an APDU in a multi-apdu process. This would make us return
|
|
// `USTREAM_FINISHED` preemptively. Case number 2 should NOT happen as it is up to
|
|
// `ledgerjs` to correctly decrease the size of the APDU (`commandLength`) so that this
|
|
// situation doesn't happen.
|
|
if ((context->txType == LEGACY && context->currentField == LEGACY_RLP_V) &&
|
|
(context->commandLength == 0)) {
|
|
context->content->vLength = 0;
|
|
PRINTF("finished\n");
|
|
return USTREAM_FINISHED;
|
|
}
|
|
if (context->commandLength == 0) {
|
|
PRINTF("Command length done\n");
|
|
return USTREAM_PROCESSING;
|
|
}
|
|
if (!context->processingField) {
|
|
parserStatus_e status = parseRLP(context);
|
|
if (status != USTREAM_CONTINUE) {
|
|
return status;
|
|
}
|
|
}
|
|
if (context->customProcessor != NULL) {
|
|
customStatus = context->customProcessor(context);
|
|
PRINTF("After customprocessor\n");
|
|
switch (customStatus) {
|
|
case CUSTOM_NOT_HANDLED:
|
|
case CUSTOM_HANDLED:
|
|
break;
|
|
case CUSTOM_SUSPENDED:
|
|
return USTREAM_SUSPENDED;
|
|
case CUSTOM_FAULT:
|
|
PRINTF("Custom processor aborted\n");
|
|
return USTREAM_FAULT;
|
|
default:
|
|
PRINTF("Unhandled custom processor status\n");
|
|
return USTREAM_FAULT;
|
|
}
|
|
}
|
|
if (customStatus == CUSTOM_NOT_HANDLED) {
|
|
PRINTF("Current field: %d\n", context->currentField);
|
|
switch (context->txType) {
|
|
bool fault;
|
|
case LEGACY:
|
|
fault = processLegacyTx(context);
|
|
if (fault) {
|
|
return USTREAM_FAULT;
|
|
} else {
|
|
break;
|
|
}
|
|
case EIP2930:
|
|
fault = processEIP2930Tx(context);
|
|
if (fault) {
|
|
return USTREAM_FAULT;
|
|
} else {
|
|
break;
|
|
}
|
|
case EIP1559:
|
|
fault = processEIP1559Tx(context);
|
|
if (fault) {
|
|
return USTREAM_FAULT;
|
|
} else {
|
|
break;
|
|
}
|
|
default:
|
|
PRINTF("Transaction type %d is not supported\n", context->txType);
|
|
return USTREAM_FAULT;
|
|
}
|
|
}
|
|
}
|
|
PRINTF("end of here\n");
|
|
}
|
|
|
|
parserStatus_e processTx(txContext_t *context,
|
|
uint8_t *buffer,
|
|
uint32_t length,
|
|
uint32_t processingFlags) {
|
|
parserStatus_e result;
|
|
BEGIN_TRY {
|
|
TRY {
|
|
context->workBuffer = buffer;
|
|
context->commandLength = length;
|
|
context->processingFlags = processingFlags;
|
|
result = processTxInternal(context);
|
|
PRINTF("result: %d\n");
|
|
}
|
|
CATCH_OTHER(e) {
|
|
result = USTREAM_FAULT;
|
|
}
|
|
FINALLY {
|
|
}
|
|
}
|
|
END_TRY;
|
|
return result;
|
|
}
|
|
|
|
parserStatus_e continueTx(txContext_t *context) {
|
|
parserStatus_e result;
|
|
BEGIN_TRY {
|
|
TRY {
|
|
result = processTxInternal(context);
|
|
}
|
|
CATCH_OTHER(e) {
|
|
result = USTREAM_FAULT;
|
|
}
|
|
FINALLY {
|
|
}
|
|
}
|
|
END_TRY;
|
|
return result;
|
|
}
|