The "GR-PEACH_Audio_Playback_Sample" is a sample code that can provides high-resolution audio playback of FLAC format files. It also allows the user to audio-playback control functions such as play, pause, and stop by manipulating key switches.

Dependencies:   R_BSP TLV320_RBSP USBHost_custom

Note

For a sample program of with LCD Board,
please refer to GR-PEACH_Audio_Playback_7InchLCD_Sample.

Introduction

The "GR-PEACH_Audio_Playback_Sample" is a sample code that can provides high-resolution audio playback of FLAC format files. It also allows the user to audio-playback control functions such as play, pause, and stop by manipulating key switches.

1. Overview of the Sample Code

1.1 Software Block Diagram

Figure 1.1 shows the software block diagram.

/media/uploads/dkato/audioplayback_figure1_1x.png

1.2 Pin Definitions

Table 1.1 shows the pins that this sample code are to use.

/media/uploads/dkato/audioplayback_table1_1.png

2. Sample Code Operating Environment

This sample code runs in GR-PEACH + the Audio/Camera shield for the GR-PEACH environment. This section explains the functions of the ports that are used by this sample code.

2.1 Operating Environment

Figure 2.1 shows the configuration of the operating environment for running this sample code.

/media/uploads/dkato/audioplayback_figure2_1.png /media/uploads/1050186/figure2_2.png /media/uploads/dkato/audioplayback_figure2_3.png

2.2 List of User Operations

A list of user operations on the command line, TFT touch keys, and switch key that the user can perform for this sample code is shown in. Table 2.1.

/media/uploads/dkato/audioplayback_table2_1x.png

3. Function Outline

The functions of this sample code are summarized in Table 3.1 to Table 3.3.

/media/uploads/dkato/audioplayback_table3_1.png /media/uploads/dkato/audioplayback_table3_2.png /media/uploads/dkato/audioplayback_table3_3.png /media/uploads/dkato/audioplayback_figure3_1.png

3.1 Playback Control

The playback control that the sample code supports include play, pause, stop, skip to next, and skip to previous.

3.2 Trick Play Control

Manipulating "Repeat" alternates between "Repeat mode On" and "Repeat mode Off". The default mode is "Repeat mode On". When the repeat mode is on, the playback of the first song starts after the playback of the last song is finished. When the repeat mode is off, the sample code enters the stopped state after the playback of the last song is finished.

3.3 Acquisition of the Song Information

The information of the song being played is obtained by operating the "Play info" during the playback of the song. Table 3.4 lists the items of information that can be obtained by the "Play info" operation.

/media/uploads/dkato/audioplayback_table3_4.png

3.4 How the Folder Structure is Analyzed

The sample coded analyzes the folder structure in the breadth-first search order. The order in which files are numbered is illustrated in Table 3.5. The sample code does not sort the files by file or folder name.

/media/uploads/dkato/audioplayback_table3_5.png

4.Others

The default setting of serial communication (baud rate etc.) in mbed is shown the following link.
Please refer to the link and change the settings of your PC terminal software.
The default value of baud rate in mbed is 9600, and this application uses baud rate 9600.
https://developer.mbed.org/teams/Renesas/wiki/GR-PEACH-Getting-Started#install-the-usb-serial-communication

Committer:
dkato
Date:
Fri Oct 16 04:28:07 2015 +0000
Revision:
0:ee40da884cfc
first commit

Who changed what in which revision?

UserRevisionLine numberNew contents of line
dkato 0:ee40da884cfc 1 #ifndef FLAC__PRIVATE__MD5_H
dkato 0:ee40da884cfc 2 #define FLAC__PRIVATE__MD5_H
dkato 0:ee40da884cfc 3
dkato 0:ee40da884cfc 4 /*
dkato 0:ee40da884cfc 5 * This is the header file for the MD5 message-digest algorithm.
dkato 0:ee40da884cfc 6 * The algorithm is due to Ron Rivest. This code was
dkato 0:ee40da884cfc 7 * written by Colin Plumb in 1993, no copyright is claimed.
dkato 0:ee40da884cfc 8 * This code is in the public domain; do with it what you wish.
dkato 0:ee40da884cfc 9 *
dkato 0:ee40da884cfc 10 * Equivalent code is available from RSA Data Security, Inc.
dkato 0:ee40da884cfc 11 * This code has been tested against that, and is equivalent,
dkato 0:ee40da884cfc 12 * except that you don't need to include two pages of legalese
dkato 0:ee40da884cfc 13 * with every copy.
dkato 0:ee40da884cfc 14 *
dkato 0:ee40da884cfc 15 * To compute the message digest of a chunk of bytes, declare an
dkato 0:ee40da884cfc 16 * MD5Context structure, pass it to MD5Init, call MD5Update as
dkato 0:ee40da884cfc 17 * needed on buffers full of bytes, and then call MD5Final, which
dkato 0:ee40da884cfc 18 * will fill a supplied 16-byte array with the digest.
dkato 0:ee40da884cfc 19 *
dkato 0:ee40da884cfc 20 * Changed so as no longer to depend on Colin Plumb's `usual.h'
dkato 0:ee40da884cfc 21 * header definitions; now uses stuff from dpkg's config.h
dkato 0:ee40da884cfc 22 * - Ian Jackson <ijackson@nyx.cs.du.edu>.
dkato 0:ee40da884cfc 23 * Still in the public domain.
dkato 0:ee40da884cfc 24 *
dkato 0:ee40da884cfc 25 * Josh Coalson: made some changes to integrate with libFLAC.
dkato 0:ee40da884cfc 26 * Still in the public domain, with no warranty.
dkato 0:ee40da884cfc 27 */
dkato 0:ee40da884cfc 28
dkato 0:ee40da884cfc 29 #include "FLAC/ordinals.h"
dkato 0:ee40da884cfc 30
dkato 0:ee40da884cfc 31 typedef union {
dkato 0:ee40da884cfc 32 FLAC__byte *p8;
dkato 0:ee40da884cfc 33 FLAC__int16 *p16;
dkato 0:ee40da884cfc 34 FLAC__int32 *p32;
dkato 0:ee40da884cfc 35 } FLAC__multibyte;
dkato 0:ee40da884cfc 36
dkato 0:ee40da884cfc 37 typedef struct {
dkato 0:ee40da884cfc 38 FLAC__uint32 in[16];
dkato 0:ee40da884cfc 39 FLAC__uint32 buf[4];
dkato 0:ee40da884cfc 40 FLAC__uint32 bytes[2];
dkato 0:ee40da884cfc 41 FLAC__multibyte internal_buf;
dkato 0:ee40da884cfc 42 size_t capacity;
dkato 0:ee40da884cfc 43 } FLAC__MD5Context;
dkato 0:ee40da884cfc 44
dkato 0:ee40da884cfc 45 void FLAC__MD5Init(FLAC__MD5Context *context);
dkato 0:ee40da884cfc 46 void FLAC__MD5Final(FLAC__byte digest[16], FLAC__MD5Context *context);
dkato 0:ee40da884cfc 47
dkato 0:ee40da884cfc 48 FLAC__bool FLAC__MD5Accumulate(FLAC__MD5Context *ctx, const FLAC__int32 * const signal[], unsigned channels, unsigned samples, unsigned bytes_per_sample);
dkato 0:ee40da884cfc 49
dkato 0:ee40da884cfc 50 #endif