mirror of
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167 lines
5.1 KiB
C++
167 lines
5.1 KiB
C++
#include "nsid3v2.h"
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#include "nsid3v2/header.h"
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#include "nsid3v2/tag.h"
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#include "nsid3v2/frame_utils.h"
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#include "nu/ByteReader.h"
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#include "nu/ByteWriter.h"
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#include "nx/nxstring.h"
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struct ParsedUserText
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{
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ParsedString description;
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ParsedString value;
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};
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static int ParseUserText(const void *data, size_t data_len, ParsedUserText &parsed)
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{
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int ret;
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if (data_len == 0)
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return NErr_Insufficient;
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bytereader_value_t byte_reader;
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bytereader_init(&byte_reader, data, data_len);
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uint8_t encoding = bytereader_read_u8(&byte_reader);
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ret = ParseNullTerminatedString(&byte_reader, encoding, parsed.description);
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if (ret != NErr_Success)
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return ret;
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return ParseFrameTerminatedString(&byte_reader, encoding, parsed.value);
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}
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int NSID3v2_Tag_TXXX_Find(const nsid3v2_tag_t t, const char *description, nsid3v2_frame_t *out_frame, int text_flags)
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{
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const ID3v2::Tag *tag = (const ID3v2::Tag *)t;
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if (!tag)
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return NErr_Empty;
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const ID3v2::Frame *frame = tag->FindFirstFrame(NSID3V2_FRAME_USER_TEXT);
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while (frame)
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{
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const void *data;
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size_t data_len;
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ParsedUserText parsed;
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if (frame->GetData(&data, &data_len) == NErr_Success && data_len > 0 && ParseUserText(data, data_len, parsed) == NErr_Success && DescriptionMatches(parsed.description, description, text_flags))
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{
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*out_frame = (nsid3v2_frame_t)frame;
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return NErr_Success;
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}
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frame = tag->FindNextFrame(frame);
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}
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return NErr_Empty;
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}
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int NSID3v2_Tag_TXXX_Get(const nsid3v2_tag_t t, const char *description, nx_string_t *value, int text_flags)
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{
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const ID3v2::Tag *tag = (const ID3v2::Tag *)t;
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if (!tag)
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return NErr_Empty;
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const ID3v2::Frame *frame = tag->FindFirstFrame(NSID3V2_FRAME_USER_TEXT);
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while (frame)
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{
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const void *data;
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size_t data_len;
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ParsedUserText parsed;
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if (frame->GetData(&data, &data_len) == NErr_Success && data_len > 0 && ParseUserText(data, data_len, parsed) == NErr_Success && DescriptionMatches(parsed.description, description, text_flags))
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{
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return NXStringCreateFromParsedString(value, parsed.value, text_flags);
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}
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frame = tag->FindNextFrame(frame);
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}
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return NErr_Empty;
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}
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int NSID3v2_Frame_UserText_Get(const nsid3v2_frame_t f, nx_string_t *description, nx_string_t *value, int text_flags)
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{
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const ID3v2::Frame *frame = (const ID3v2::Frame *)f;
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if (frame)
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{
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const void *data;
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size_t data_len;
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ParsedUserText parsed;
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if (frame->GetData(&data, &data_len) == NErr_Success && data_len > 0 && ParseUserText(data, data_len, parsed) == NErr_Success)
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{
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int ret = NXStringCreateFromParsedString(value, parsed.value, text_flags);
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if (ret != NErr_Success)
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return ret;
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if (description)
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return NXStringCreateFromParsedString(description, parsed.description, text_flags);
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else
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return NErr_Success;
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}
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}
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return NErr_Error;
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}
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/* ---------------- Setters ---------------- */
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int NSID3v2_Frame_UserText_Set(nsid3v2_frame_t f, const char *description, nx_string_t value, int text_flags)
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{
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ID3v2::Frame *frame = (ID3v2::Frame *)f;
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if (frame)
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{
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/* benski> for now, we're going to store UTF-16LE always. in the future, we'll add functions to NXString to determine a 'best' encoding */
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size_t description_length=strlen(description);
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size_t byte_count_value=0;
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int ret = NXStringGetBytesSize(&byte_count_value, value, nx_charset_utf16le, 0);
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if (ret != NErr_DirectPointer && ret != NErr_Success)
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return ret;
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/* TODO: overflow check */
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size_t total_size = 1 /* encoding */ + 2 /* BOM for description */ + description_length*2 + 2 /* null separator */ + 2 /* BOM for value */ + byte_count_value;
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void *data;
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size_t data_len;
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ret = frame->NewData(total_size, &data, &data_len);
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if (ret != NErr_Success)
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return ret;
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size_t bytes_copied;
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bytewriter_s byte_writer;
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bytewriter_init(&byte_writer, data, data_len);
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bytewriter_write_u8(&byte_writer, 1); /* mark as UTF-16LE */
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bytewriter_write_u16_le(&byte_writer, 0xFEFF); /* BOM for description */
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for (size_t i=0;i<description_length;i++)
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bytewriter_write_u16_le(&byte_writer, description[i]);
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bytewriter_write_u16_le(&byte_writer, 0); /* NULL separator*/
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bytewriter_write_u16_le(&byte_writer, 0xFEFF); /* BOM for value */
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NXStringGetBytes(&bytes_copied, value, bytewriter_pointer(&byte_writer), bytewriter_size(&byte_writer), nx_charset_utf16le, 0);
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return NErr_Success;
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}
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return NErr_Error;
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}
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int NSID3v2_Tag_TXXX_Set(nsid3v2_tag_t t, const char *description, nx_string_t value, int text_flags)
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{
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ID3v2::Tag *tag = (ID3v2::Tag *)t;
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if (!tag)
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return NErr_Empty;
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ID3v2::Frame *frame = tag->FindFirstFrame(NSID3V2_FRAME_USER_TEXT);
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while (frame)
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{
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const void *data;
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size_t data_len;
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ParsedUserText parsed;
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if (frame->GetData(&data, &data_len) == NErr_Success && data_len > 0 && ParseUserText(data, data_len, parsed) == NErr_Success && DescriptionMatches(parsed.description, description, text_flags))
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{
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break;
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}
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frame = tag->FindNextFrame(frame);
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}
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if (!frame)
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{
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frame = tag->NewFrame(NSID3V2_FRAME_USER_TEXT, 0);
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if (!frame)
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return NErr_OutOfMemory;
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tag->AddFrame(frame);
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}
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return NSID3v2_Frame_UserText_Set((nsid3v2_frame_t)frame, description, value, text_flags);
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}
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