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ResourceImporterWAV: Add support for 64-bit IEEE float
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@ -165,7 +165,7 @@ Error ResourceImporterWAV::import(const String &p_source_file, const String &p_s
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if (compression_code != 1 && compression_code != 3) {
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if (compression_code != 1 && compression_code != 3) {
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file->close();
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file->close();
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memdelete(file);
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memdelete(file);
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ERR_FAIL_V_MSG(ERR_INVALID_DATA, "Format not supported for WAVE file (not PCM). Save WAVE files as uncompressed PCM instead.");
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ERR_FAIL_V_MSG(ERR_INVALID_DATA, "Format not supported for WAVE file (not PCM). Save WAVE files as uncompressed PCM or IEEE float instead.");
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}
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}
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format_channels = file->get_16();
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format_channels = file->get_16();
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@ -187,6 +187,12 @@ Error ResourceImporterWAV::import(const String &p_source_file, const String &p_s
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ERR_FAIL_V_MSG(ERR_INVALID_DATA, "Invalid amount of bits in the sample (should be one of 8, 16, 24 or 32).");
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ERR_FAIL_V_MSG(ERR_INVALID_DATA, "Invalid amount of bits in the sample (should be one of 8, 16, 24 or 32).");
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}
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}
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if (compression_code == 3 && format_bits % 32) {
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file->close();
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memdelete(file);
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ERR_FAIL_V_MSG(ERR_INVALID_DATA, "Invalid amount of bits in the IEEE float sample (should be 32 or 64).");
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}
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/* Don't need anything else, continue */
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/* Don't need anything else, continue */
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format_found = true;
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format_found = true;
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}
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}
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@ -217,36 +223,46 @@ Error ResourceImporterWAV::import(const String &p_source_file, const String &p_s
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data.resize(frames * format_channels);
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data.resize(frames * format_channels);
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if (format_bits == 8) {
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if (compression_code == 1) {
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for (int i = 0; i < frames * format_channels; i++) {
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if (format_bits == 8) {
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// 8 bit samples are UNSIGNED
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for (int i = 0; i < frames * format_channels; i++) {
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// 8 bit samples are UNSIGNED
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data.write[i] = int8_t(file->get_8() - 128) / 128.f;
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data.write[i] = int8_t(file->get_8() - 128) / 128.f;
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}
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} else if (format_bits == 32 && compression_code == 3) {
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for (int i = 0; i < frames * format_channels; i++) {
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//32 bit IEEE Float
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data.write[i] = file->get_float();
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}
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} else if (format_bits == 16) {
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for (int i = 0; i < frames * format_channels; i++) {
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//16 bit SIGNED
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data.write[i] = int16_t(file->get_16()) / 32768.f;
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}
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} else {
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for (int i = 0; i < frames * format_channels; i++) {
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//16+ bits samples are SIGNED
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// if sample is > 16 bits, just read extra bytes
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uint32_t s = 0;
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for (int b = 0; b < (format_bits >> 3); b++) {
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s |= ((uint32_t)file->get_8()) << (b * 8);
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}
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}
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s <<= (32 - format_bits);
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} else if (format_bits == 16) {
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for (int i = 0; i < frames * format_channels; i++) {
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//16 bit SIGNED
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data.write[i] = (int32_t(s) >> 16) / 32768.f;
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data.write[i] = int16_t(file->get_16()) / 32768.f;
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}
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} else {
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for (int i = 0; i < frames * format_channels; i++) {
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//16+ bits samples are SIGNED
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// if sample is > 16 bits, just read extra bytes
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uint32_t s = 0;
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for (int b = 0; b < (format_bits >> 3); b++) {
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s |= ((uint32_t)file->get_8()) << (b * 8);
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}
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s <<= (32 - format_bits);
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data.write[i] = (int32_t(s) >> 16) / 32768.f;
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}
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}
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} else if (compression_code == 3) {
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if (format_bits == 32) {
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for (int i = 0; i < frames * format_channels; i++) {
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//32 bit IEEE Float
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data.write[i] = file->get_float();
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}
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} else if (format_bits == 64) {
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for (int i = 0; i < frames * format_channels; i++) {
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//64 bit IEEE Float
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data.write[i] = file->get_double();
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}
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}
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}
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}
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}
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