forked from cory/tildefriends
ssb.addIdentity without hitting the DB from the main thread.
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7997a739ab
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a09edfb612
90
src/ssb.js.c
90
src/ssb.js.c
@ -108,13 +108,60 @@ static JSValue _tf_ssb_createIdentity(JSContext* context, JSValueConst this_val,
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return result;
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}
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typedef struct _add_identity_t
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{
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uint8_t key[crypto_sign_SECRETKEYBYTES / 2];
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bool added;
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JSValue promise[2];
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char user[];
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} add_identity_t;
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static void _tf_ssb_add_identity_work(tf_ssb_t* ssb, void* user_data)
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{
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add_identity_t* work = user_data;
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uint8_t public_key[crypto_sign_PUBLICKEYBYTES];
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unsigned char seed[crypto_sign_SEEDBYTES];
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uint8_t secret_key[crypto_sign_SECRETKEYBYTES] = { 0 };
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memcpy(secret_key, work->key, sizeof(secret_key) / 2);
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if (crypto_sign_ed25519_sk_to_seed(seed, secret_key) == 0 && crypto_sign_seed_keypair(public_key, secret_key, seed) == 0)
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{
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char public_key_b64[512];
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tf_base64_encode(public_key, sizeof(public_key), public_key_b64, sizeof(public_key_b64));
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snprintf(public_key_b64 + strlen(public_key_b64), sizeof(public_key_b64) - strlen(public_key_b64), ".ed25519");
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uint8_t combined[crypto_sign_SECRETKEYBYTES];
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memcpy(combined, work->key, sizeof(work->key));
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memcpy(combined + sizeof(work->key), public_key, sizeof(public_key));
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char combined_b64[512];
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tf_base64_encode(combined, sizeof(combined), combined_b64, sizeof(combined_b64));
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snprintf(combined_b64 + strlen(combined_b64), sizeof(combined_b64) - strlen(combined_b64), ".ed25519");
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work->added = tf_ssb_db_identity_add(ssb, work->user, public_key_b64, combined_b64);
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}
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}
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static void _tf_ssb_add_identity_after_work(tf_ssb_t* ssb, int status, void* user_data)
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{
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add_identity_t* work = user_data;
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JSContext* context = tf_ssb_get_context(ssb);
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JSValue result = work->added ? JS_TRUE : JS_UNDEFINED;
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JSValue error = JS_Call(context, work->promise[0], JS_UNDEFINED, 1, &result);
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JS_FreeValue(context, result);
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tf_util_report_error(context, error);
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JS_FreeValue(context, error);
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JS_FreeValue(context, work->promise[0]);
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JS_FreeValue(context, work->promise[1]);
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tf_free(work);
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}
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static JSValue _tf_ssb_addIdentity(JSContext* context, JSValueConst this_val, int argc, JSValueConst* argv)
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{
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tf_ssb_t* ssb = JS_GetOpaque(this_val, _tf_ssb_classId);
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JSValue result = JS_UNDEFINED;
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if (ssb)
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{
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const char* user = JS_ToCString(context, argv[0]);
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size_t user_length = 0;
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const char* user = JS_ToCStringLen(context, &user_length, argv[0]);
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JSValue buffer = JS_UNDEFINED;
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size_t length = 0;
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@ -134,50 +181,25 @@ static JSValue _tf_ssb_addIdentity(JSContext* context, JSValueConst this_val, in
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{
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if (length == crypto_sign_SECRETKEYBYTES / 2)
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{
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uint8_t public_key[crypto_sign_PUBLICKEYBYTES];
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unsigned char seed[crypto_sign_SEEDBYTES];
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uint8_t secret_key[crypto_sign_SECRETKEYBYTES] = { 0 };
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memcpy(secret_key, array, sizeof(secret_key) / 2);
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if (crypto_sign_ed25519_sk_to_seed(seed, secret_key) == 0 && crypto_sign_seed_keypair(public_key, secret_key, seed) == 0)
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{
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char public_key_b64[512];
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tf_base64_encode(public_key, sizeof(public_key), public_key_b64, sizeof(public_key_b64));
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snprintf(public_key_b64 + strlen(public_key_b64), sizeof(public_key_b64) - strlen(public_key_b64), ".ed25519");
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uint8_t combined[crypto_sign_SECRETKEYBYTES];
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memcpy(combined, array, length);
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memcpy(combined + length, public_key, sizeof(public_key));
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char combined_b64[512];
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tf_base64_encode(combined, sizeof(combined), combined_b64, sizeof(combined_b64));
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snprintf(combined_b64 + strlen(combined_b64), sizeof(combined_b64) - strlen(combined_b64), ".ed25519");
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if (tf_ssb_db_identity_add(ssb, user, public_key_b64, combined_b64))
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{
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result = JS_TRUE;
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add_identity_t* work = tf_malloc(sizeof(add_identity_t) + user_length + 1);
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*work = (add_identity_t) { 0 };
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memcpy(work->key, array, sizeof(work->key));
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memcpy(work->user, user, user_length + 1);
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result = JS_NewPromiseCapability(context, work->promise);
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tf_ssb_run_work(ssb, _tf_ssb_add_identity_work, _tf_ssb_add_identity_after_work, work);
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}
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else
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{
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tf_printf("Unable to add the identity.");
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}
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result = JS_ThrowInternalError(context, "Unexpected private key size: %zd vs. %d\n", length, crypto_sign_SECRETKEYBYTES);
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}
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}
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else
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{
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tf_printf("Unexpected private key size: %zd vs. %d\n", length, crypto_sign_SECRETKEYBYTES);
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}
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}
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else
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{
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tf_printf("didn't find array\n");
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result = JS_ThrowInternalError(context, "Expected array argument.");
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}
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JS_FreeValue(context, buffer);
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JS_FreeCString(context, user);
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}
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else
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{
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tf_printf("no ssb\n");
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}
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return result;
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}
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