#ifndef SIMDJSON_INLINE_PARSEDJSON_ITERATOR_H #define SIMDJSON_INLINE_PARSEDJSON_ITERATOR_H #include "simdjson/parsedjson_iterator.h" namespace simdjson { // Because of template weirdness, the actual class definition is inline in the document class WARN_UNUSED bool dom::parser::Iterator::is_ok() const { return location < tape_length; } // useful for debugging purposes size_t dom::parser::Iterator::get_tape_location() const { return location; } // useful for debugging purposes size_t dom::parser::Iterator::get_tape_length() const { return tape_length; } // returns the current depth (start at 1 with 0 reserved for the fictitious root // node) size_t dom::parser::Iterator::get_depth() const { return depth; } // A scope is a series of nodes at the same depth, typically it is either an // object ({) or an array ([). The root node has type 'r'. uint8_t dom::parser::Iterator::get_scope_type() const { return depth_index[depth].scope_type; } bool dom::parser::Iterator::move_forward() { if (location + 1 >= tape_length) { return false; // we are at the end! } if ((current_type == '[') || (current_type == '{')) { // We are entering a new scope depth++; assert(depth < max_depth); depth_index[depth].start_of_scope = location; depth_index[depth].scope_type = current_type; } else if ((current_type == ']') || (current_type == '}')) { // Leaving a scope. depth--; } else if (is_number()) { // these types use 2 locations on the tape, not just one. location += 1; } location += 1; current_val = doc.tape[location]; current_type = (current_val >> 56); return true; } void dom::parser::Iterator::move_to_value() { // assume that we are on a key, so move by 1. location += 1; current_val = doc.tape[location]; current_type = (current_val >> 56); } bool dom::parser::Iterator::move_to_key(const char *key) { if (down()) { do { const bool right_key = (strcmp(get_string(), key) == 0); move_to_value(); if (right_key) { return true; } } while (next()); up(); } return false; } bool dom::parser::Iterator::move_to_key_insensitive( const char *key) { if (down()) { do { const bool right_key = (simdjson_strcasecmp(get_string(), key) == 0); move_to_value(); if (right_key) { return true; } } while (next()); up(); } return false; } bool dom::parser::Iterator::move_to_key(const char *key, uint32_t length) { if (down()) { do { bool right_key = ((get_string_length() == length) && (memcmp(get_string(), key, length) == 0)); move_to_value(); if (right_key) { return true; } } while (next()); up(); } return false; } bool dom::parser::Iterator::move_to_index(uint32_t index) { if (down()) { uint32_t i = 0; for (; i < index; i++) { if (!next()) { break; } } if (i == index) { return true; } up(); } return false; } bool dom::parser::Iterator::prev() { size_t target_location = location; to_start_scope(); size_t npos = location; if (target_location == npos) { return false; // we were already at the start } size_t oldnpos; // we have that npos < target_location here do { oldnpos = npos; if ((current_type == '[') || (current_type == '{')) { // we need to jump npos = static_cast(current_val); } else { npos = npos + ((current_type == 'd' || current_type == 'l') ? 2 : 1); } } while (npos < target_location); location = oldnpos; current_val = doc.tape[location]; current_type = current_val >> 56; return true; } bool dom::parser::Iterator::up() { if (depth == 1) { return false; // don't allow moving back to root } to_start_scope(); // next we just move to the previous value depth--; location -= 1; current_val = doc.tape[location]; current_type = (current_val >> 56); return true; } bool dom::parser::Iterator::down() { if (location + 1 >= tape_length) { return false; } if ((current_type == '[') || (current_type == '{')) { size_t npos = static_cast(current_val); if (npos == location + 2) { return false; // we have an empty scope } depth++; assert(depth < max_depth); location = location + 1; depth_index[depth].start_of_scope = location; depth_index[depth].scope_type = current_type; current_val = doc.tape[location]; current_type = (current_val >> 56); return true; } return false; } void dom::parser::Iterator::to_start_scope() { location = depth_index[depth].start_of_scope; current_val = doc.tape[location]; current_type = (current_val >> 56); } bool dom::parser::Iterator::next() { size_t npos; if ((current_type == '[') || (current_type == '{')) { // we need to jump npos = static_cast(current_val); } else { npos = location + (is_number() ? 2 : 1); } uint64_t next_val = doc.tape[npos]; uint8_t next_type = (next_val >> 56); if ((next_type == ']') || (next_type == '}')) { return false; // we reached the end of the scope } location = npos; current_val = next_val; current_type = next_type; return true; } dom::parser::Iterator::Iterator(const dom::parser &pj) noexcept(false) : doc(pj.doc), depth(0), location(0), tape_length(0) { #if SIMDJSON_EXCEPTIONS if (!pj.valid) { throw simdjson_error(pj.error); } #else if (!pj.valid) { abort(); } #endif max_depth = pj.max_depth(); depth_index = new scopeindex_t[max_depth + 1]; depth_index[0].start_of_scope = location; current_val = doc.tape[location++]; current_type = (current_val >> 56); depth_index[0].scope_type = current_type; tape_length = current_val & internal::JSON_VALUE_MASK; if (location < tape_length) { // If we make it here, then depth_capacity must >=2, but the compiler // may not know this. current_val = doc.tape[location]; current_type = (current_val >> 56); depth++; assert(depth < max_depth); depth_index[depth].start_of_scope = location; depth_index[depth].scope_type = current_type; } } dom::parser::Iterator::Iterator( const dom::parser::Iterator &o) noexcept : doc(o.doc), max_depth(o.depth), depth(o.depth), location(o.location), tape_length(o.tape_length), current_type(o.current_type), current_val(o.current_val) { depth_index = new scopeindex_t[max_depth+1]; memcpy(depth_index, o.depth_index, (depth + 1) * sizeof(depth_index[0])); } dom::parser::Iterator::~Iterator() noexcept { if (depth_index) { delete[] depth_index; } } bool dom::parser::Iterator::print(std::ostream &os, bool escape_strings) const { if (!is_ok()) { return false; } switch (current_type) { case '"': // we have a string os << '"'; if (escape_strings) { os << internal::escape_json_string(std::string_view(get_string(), get_string_length())); } else { // was: os << get_string();, but given that we can include null chars, we // have to do something crazier: std::copy(get_string(), get_string() + get_string_length(), std::ostream_iterator(os)); } os << '"'; break; case 'l': // we have a long int os << get_integer(); break; case 'u': os << get_unsigned_integer(); break; case 'd': os << get_double(); break; case 'n': // we have a null os << "null"; break; case 't': // we have a true os << "true"; break; case 'f': // we have a false os << "false"; break; case '{': // we have an object case '}': // we end an object case '[': // we start an array case ']': // we end an array os << static_cast(current_type); break; default: return false; } return true; } bool dom::parser::Iterator::move_to(const char *pointer, uint32_t length) { char *new_pointer = nullptr; if (pointer[0] == '#') { // Converting fragment representation to string representation new_pointer = new char[length]; uint32_t new_length = 0; for (uint32_t i = 1; i < length; i++) { if (pointer[i] == '%' && pointer[i + 1] == 'x') { #if __cpp_exceptions try { #endif int fragment = std::stoi(std::string(&pointer[i + 2], 2), nullptr, 16); if (fragment == '\\' || fragment == '"' || (fragment <= 0x1F)) { // escaping the character new_pointer[new_length] = '\\'; new_length++; } new_pointer[new_length] = fragment; i += 3; #if __cpp_exceptions } catch (std::invalid_argument &) { delete[] new_pointer; return false; // the fragment is invalid } #endif } else { new_pointer[new_length] = pointer[i]; } new_length++; } length = new_length; pointer = new_pointer; } // saving the current state size_t depth_s = depth; size_t location_s = location; uint8_t current_type_s = current_type; uint64_t current_val_s = current_val; rewind(); // The json pointer is used from the root of the document. bool found = relative_move_to(pointer, length); delete[] new_pointer; if (!found) { // since the pointer has found nothing, we get back to the original // position. depth = depth_s; location = location_s; current_type = current_type_s; current_val = current_val_s; } return found; } bool dom::parser::Iterator::relative_move_to(const char *pointer, uint32_t length) { if (length == 0) { // returns the whole document return true; } if (pointer[0] != '/') { // '/' must be the first character return false; } // finding the key in an object or the index in an array std::string key_or_index; uint32_t offset = 1; // checking for the "-" case if (is_array() && pointer[1] == '-') { if (length != 2) { // the pointer must be exactly "/-" // there can't be anything more after '-' as an index return false; } key_or_index = '-'; offset = length; // will skip the loop coming right after } // We either transform the first reference token to a valid json key // or we make sure it is a valid index in an array. for (; offset < length; offset++) { if (pointer[offset] == '/') { // beginning of the next key or index break; } if (is_array() && (pointer[offset] < '0' || pointer[offset] > '9')) { // the index of an array must be an integer // we also make sure std::stoi won't discard whitespaces later return false; } if (pointer[offset] == '~') { // "~1" represents "/" if (pointer[offset + 1] == '1') { key_or_index += '/'; offset++; continue; } // "~0" represents "~" if (pointer[offset + 1] == '0') { key_or_index += '~'; offset++; continue; } } if (pointer[offset] == '\\') { if (pointer[offset + 1] == '\\' || pointer[offset + 1] == '"' || (pointer[offset + 1] <= 0x1F)) { key_or_index += pointer[offset + 1]; offset++; continue; } return false; // invalid escaped character } if (pointer[offset] == '\"') { // unescaped quote character. this is an invalid case. // lets do nothing and assume most pointers will be valid. // it won't find any corresponding json key anyway. // return false; } key_or_index += pointer[offset]; } bool found = false; if (is_object()) { if (move_to_key(key_or_index.c_str(), key_or_index.length())) { found = relative_move_to(pointer + offset, length - offset); } } else if (is_array()) { if (key_or_index == "-") { // handling "-" case first if (down()) { while (next()) ; // moving to the end of the array // moving to the nonexistent value right after... size_t npos; if ((current_type == '[') || (current_type == '{')) { // we need to jump npos = static_cast(current_val); } else { npos = location + ((current_type == 'd' || current_type == 'l') ? 2 : 1); } location = npos; current_val = doc.tape[npos]; current_type = (current_val >> 56); return true; // how could it fail ? } } else { // regular numeric index // The index can't have a leading '0' if (key_or_index[0] == '0' && key_or_index.length() > 1) { return false; } // it cannot be empty if (key_or_index.length() == 0) { return false; } // we already checked the index contains only valid digits uint32_t index = std::stoi(key_or_index); if (move_to_index(index)) { found = relative_move_to(pointer + offset, length - offset); } } } return found; } } // namespace simdjson #endif // SIMDJSON_INLINE_PARSEDJSON_ITERATOR_H