The "GR-PEACH_Audio_Playback_7InchLCD_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:   GR-PEACH_video R_BSP TLV320_RBSP USBHost_custom

Fork of GR-PEACH_Audio_Playback_Sample by Renesas

Note

For a sample program of without LCD Board, please refer to GR-PEACH_Audio_Playback_Sample.

Introduction

The "GR-PEACH_Audio_Playback_7InchLCD_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/1050186/lcd_figure1_1.png

1.2 Pin Definitions

Table 1.1 shows the pins used in this sample code.

/media/uploads/1050186/lcd_table1_1.png

2. Sample Code Operating Environment

In order to operate this sample code, GR-PEACH, Audio Camera Shield and 7.1 inch LCD Shield must be needed. For details on Audio Camera Shield and 7.1 inch LCD Shield, please refer to the following links, respectively:

In this section, it is described that how board is configured and to control audio playback via command line and touch screen.

2.1 Operating Environment

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

/media/uploads/1050186/lcd_figure2_1.png

Figure 2.2 and 2.3 show how to configure GR-PEACH, Audio Camera Shield and 7.1 inch LCD shield when using USB0 and USB1, respectively.

/media/uploads/1050186/lcd_figure2_2.png /media/uploads/1050186/lcd_figure2_3.png

Table 2.1 lists the overview of Graphical User Interface (GUI) of this sample code.

/media/uploads/1050186/lcd_table2_1.png

2.2 List of User Operations

Table 2.2 shows the relationship among Audio Playback, Command Line and Onboard Switch.

/media/uploads/1050186/lcd_table2_2.png

3. Function Outline

Table 3.1, 3.2 and 3.3 shows the overview of functions implemented in this sample code.

/media/uploads/1050186/lcd_table3_1.png /media/uploads/1050186/lcd_table3_2.png /media/uploads/1050186/lcd_table3_3.png /media/uploads/1050186/lcd_figure3_1.png

3.1 Playback Control

This sample program supports the operation "play", "pause", "stop", "play next song" and "play previous song".

3.2 Trick Play Control

In order to enable/disable Repeat Mode, user need to type "repeat" on command line or click the corresponding icon shown in Table 2.2. By derault, Repeat Mode is enabled. When Repeat Mode is enabled, the first song is played back after the playback of the last song is finished. Otherwise, the playback is shopped when finishing to play back the last song.

3.3 How to see Song Information

The information of the song being played back can be seen by typing playinfo on command line. Table 3.4 lists the items user can see on the terminal.

/media/uploads/dkato/audioplayback_table3_4.png

3.4 How to analyze the folder structure in USB stick

In this sample code, the folder structure in USB stick is analyzed in the breadth-first order. Table 3.5 shows how the files in USB stick are numbered.

/media/uploads/dkato/audioplayback_table3_5.png

4.Others

4.1 Serial Communication Setting

With respect to the default serial communication related setting on mbed, please refer to the follwing link:
https://developer.mbed.org/teams/Renesas/wiki/GR-PEACH-Getting-Started#install-the-usb-serial-communication
Please set up the terminal software you would like to use on your PC in consideration of the above. For example, 9600 should be specified for the baud rate on the terminal in order to control this sample via command line.

4.2 Necessary modification when using GCC ARM Embedded

If you would like to use GCC ARM Embedded, you must revise the following linker script incorporated in mbed OS 5 package as follows:

  • Linker Script to be modified
    $(PROJECT_ROOT)/mbed-os/targets/TARGET_RENESAS/TARGET_RZ_A1H/device/TOOLCHAIN_GCC_ARM/RZA1H.ld

    Please note that $(PROJECT_ROOT) in the above denotes the root directory of this sample code

  • Before Modification

RZA1H.ld

/* Linker script for mbed RZ_A1H */

/* Linker script to configure memory regions. */
MEMORY
{
  ROM   (rx)  : ORIGIN = 0x00000000, LENGTH = 0x02000000
  BOOT_LOADER (rx) : ORIGIN = 0x18000000, LENGTH = 0x00004000 
  SFLASH (rx) : ORIGIN = 0x18004000, LENGTH = 0x07FFC000 
  L_TTB (rw)  : ORIGIN = 0x20000000, LENGTH = 0x00004000 
  RAM (rwx) : ORIGIN = 0x20020000, LENGTH = 0x00700000
  RAM_NC (rwx) : ORIGIN = 0x20900000, LENGTH = 0x00100000
}
(snip)
  • After Modification

RZA1H.ld

/* Linker script for mbed RZ_A1H */

/* Linker script to configure memory regions. */
MEMORY
{
  ROM   (rx)  : ORIGIN = 0x00000000, LENGTH = 0x02000000
  BOOT_LOADER (rx) : ORIGIN = 0x18000000, LENGTH = 0x00004000 
  SFLASH (rx) : ORIGIN = 0x18004000, LENGTH = 0x07FFC000 
  L_TTB (rw)  : ORIGIN = 0x20000000, LENGTH = 0x00004000 
  RAM (rwx) : ORIGIN = 0x20020000, LENGTH = 0x00180000
  RAM_NC (rwx) : ORIGIN = 0x20200000, LENGTH = 0x00680000
}
(snip)
Committer:
Osamu Nakamura
Date:
Tue Apr 11 12:42:10 2017 +0900
Revision:
6:a957aaa284f0
Parent:
0:ee40da884cfc
Update R-BSP from rev. cbb9d60c8748 to fb9eda52224e so that this program can be compiled with IAR toolchain.

Who changed what in which revision?

UserRevisionLine numberNew contents of line
dkato 0:ee40da884cfc 1 /*******************************************************************************
dkato 0:ee40da884cfc 2 * DISCLAIMER
dkato 0:ee40da884cfc 3 * This software is supplied by Renesas Electronics Corporation and is only
dkato 0:ee40da884cfc 4 * intended for use with Renesas products. No other uses are authorized. This
dkato 0:ee40da884cfc 5 * software is owned by Renesas Electronics Corporation and is protected under
dkato 0:ee40da884cfc 6 * all applicable laws, including copyright laws.
dkato 0:ee40da884cfc 7 * THIS SOFTWARE IS PROVIDED "AS IS" AND RENESAS MAKES NO WARRANTIES REGARDING
dkato 0:ee40da884cfc 8 * THIS SOFTWARE, WHETHER EXPRESS, IMPLIED OR STATUTORY, INCLUDING BUT NOT
dkato 0:ee40da884cfc 9 * LIMITED TO WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE
dkato 0:ee40da884cfc 10 * AND NON-INFRINGEMENT. ALL SUCH WARRANTIES ARE EXPRESSLY DISCLAIMED.
dkato 0:ee40da884cfc 11 * TO THE MAXIMUM EXTENT PERMITTED NOT PROHIBITED BY LAW, NEITHER RENESAS
dkato 0:ee40da884cfc 12 * ELECTRONICS CORPORATION NOR ANY OF ITS AFFILIATED COMPANIES SHALL BE LIABLE
dkato 0:ee40da884cfc 13 * FOR ANY DIRECT, INDIRECT, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES FOR
dkato 0:ee40da884cfc 14 * ANY REASON RELATED TO THIS SOFTWARE, EVEN IF RENESAS OR ITS AFFILIATES HAVE
dkato 0:ee40da884cfc 15 * BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
dkato 0:ee40da884cfc 16 * Renesas reserves the right, without notice, to make changes to this software
dkato 0:ee40da884cfc 17 * and to discontinue the availability of this software. By using this software,
dkato 0:ee40da884cfc 18 * you agree to the additional terms and conditions found by accessing the
dkato 0:ee40da884cfc 19 * following link:
dkato 0:ee40da884cfc 20 * http://www.renesas.com/disclaimer*
dkato 0:ee40da884cfc 21 * Copyright (C) 2015 Renesas Electronics Corporation. All rights reserved.
dkato 0:ee40da884cfc 22 *******************************************************************************/
dkato 0:ee40da884cfc 23
dkato 0:ee40da884cfc 24 #ifndef SYS_SCAN_FOLDER_H
dkato 0:ee40da884cfc 25 #define SYS_SCAN_FOLDER_H
dkato 0:ee40da884cfc 26
dkato 0:ee40da884cfc 27 #include "r_typedefs.h"
dkato 0:ee40da884cfc 28 #include "system.h"
dkato 0:ee40da884cfc 29
dkato 0:ee40da884cfc 30 /*--- User defined types ---*/
dkato 0:ee40da884cfc 31 /* Information of a folder / track. */
dkato 0:ee40da884cfc 32 typedef struct {
dkato 0:ee40da884cfc 33 char_t name[SYS_MAX_NAME_LENGTH + 1]; /* Name of a folder / track. */
dkato 0:ee40da884cfc 34 uint32_t parent_number; /* Number of the parent folder. */
dkato 0:ee40da884cfc 35 } item_t;
dkato 0:ee40da884cfc 36
dkato 0:ee40da884cfc 37 /* Information of folder scan in USB memory */
dkato 0:ee40da884cfc 38 typedef struct {
dkato 0:ee40da884cfc 39 item_t folder_list[SYS_MAX_FOLDER_NUM]; /* Folder list */
dkato 0:ee40da884cfc 40 item_t track_list[SYS_MAX_TRACK_NUM]; /* Track list */
dkato 0:ee40da884cfc 41 uint32_t total_folder; /* Total number of folders */
dkato 0:ee40da884cfc 42 uint32_t total_track; /* Total number of tracks */
dkato 0:ee40da884cfc 43 char_t work_buf[SYS_MAX_PATH_LENGTH + 1]; /* Work */
dkato 0:ee40da884cfc 44 /* (Including the null terminal character.) */
dkato 0:ee40da884cfc 45 } fid_scan_folder_t;
dkato 0:ee40da884cfc 46
dkato 0:ee40da884cfc 47 /** Initializes the folder structure of USB memory
dkato 0:ee40da884cfc 48 *
dkato 0:ee40da884cfc 49 * @param p_info Pointer to the control data of folder scan module.
dkato 0:ee40da884cfc 50 */
dkato 0:ee40da884cfc 51 void fid_init(fid_scan_folder_t * const p_info);
dkato 0:ee40da884cfc 52
dkato 0:ee40da884cfc 53 /** Scans the folder structure of USB memory
dkato 0:ee40da884cfc 54 *
dkato 0:ee40da884cfc 55 * @param p_info Pointer to the control data of folder scan module.
dkato 0:ee40da884cfc 56 *
dkato 0:ee40da884cfc 57 * @returns
dkato 0:ee40da884cfc 58 * Results of process. true is success. false is failure.
dkato 0:ee40da884cfc 59 */
dkato 0:ee40da884cfc 60 bool fid_scan_folder_struct(fid_scan_folder_t * const p_info);
dkato 0:ee40da884cfc 61
dkato 0:ee40da884cfc 62 /** Gets the total number of detected tracks
dkato 0:ee40da884cfc 63 *
dkato 0:ee40da884cfc 64 * @param p_info Pointer to the control data of folder scan module.
dkato 0:ee40da884cfc 65 *
dkato 0:ee40da884cfc 66 * @returns
dkato 0:ee40da884cfc 67 * the total number of tracks
dkato 0:ee40da884cfc 68 */
dkato 0:ee40da884cfc 69 uint32_t fid_get_total_track(const fid_scan_folder_t * const p_info);
dkato 0:ee40da884cfc 70
dkato 0:ee40da884cfc 71 /** Gets the track name
dkato 0:ee40da884cfc 72 *
dkato 0:ee40da884cfc 73 * @param p_info Pointer to the control data of folder scan module.
dkato 0:ee40da884cfc 74 * @param track_id Track ID [0 - (total track - 1)]
dkato 0:ee40da884cfc 75 *
dkato 0:ee40da884cfc 76 * @returns
dkato 0:ee40da884cfc 77 * Pointer to the track name.
dkato 0:ee40da884cfc 78 */
dkato 0:ee40da884cfc 79 const char_t *fid_get_track_name(const fid_scan_folder_t * const p_info,
dkato 0:ee40da884cfc 80 const uint32_t track_id);
dkato 0:ee40da884cfc 81
dkato 0:ee40da884cfc 82 /** Opens the track
dkato 0:ee40da884cfc 83 *
dkato 0:ee40da884cfc 84 * @param p_info Pointer to the control data of folder scan module.
dkato 0:ee40da884cfc 85 * @param track_id Track ID [0 - (total track - 1)]
dkato 0:ee40da884cfc 86 *
dkato 0:ee40da884cfc 87 * @returns
dkato 0:ee40da884cfc 88 * Pointer to the track handle
dkato 0:ee40da884cfc 89 */
dkato 0:ee40da884cfc 90 FILE *fid_open_track(fid_scan_folder_t * const p_info, const uint32_t track_id);
dkato 0:ee40da884cfc 91
dkato 0:ee40da884cfc 92 /** Closes the track
dkato 0:ee40da884cfc 93 *
dkato 0:ee40da884cfc 94 * @param fp Pointer to the track handle
dkato 0:ee40da884cfc 95 */
dkato 0:ee40da884cfc 96 void fid_close_track(FILE * const fp);
dkato 0:ee40da884cfc 97
dkato 0:ee40da884cfc 98 #endif /* SYS_SCAN_FOLDER_H */