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1 ingob 1
/*#######################################################################################*/
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/* !!! THIS IS NOT FREE SOFTWARE !!!                                                     */
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/*#######################################################################################*/
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// ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
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// + www.MikroKopter.com
6
// ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
360 holgerb 7
// + Software Nutzungsbedingungen (english version: see below)
8
// + der Fa. HiSystems GmbH, Flachsmeerstrasse 2, 26802 Moormerland - nachfolgend Lizenzgeber genannt -
9
// + Der Lizenzgeber räumt dem Kunden ein nicht-ausschließliches, zeitlich und räumlich* unbeschränktes Recht ein, die im den
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// + Mikrocontroller verwendete Firmware für die Hardware Flight-Ctrl, Navi-Ctrl, BL-Ctrl, MK3Mag & PC-Programm MikroKopter-Tool 
11
// + - nachfolgend Software genannt - nur für private Zwecke zu nutzen.
12
// + Der Einsatz dieser Software ist nur auf oder mit Produkten des Lizenzgebers zulässig.
1 ingob 13
// ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
360 holgerb 14
// + Die vom Lizenzgeber gelieferte Software ist urheberrechtlich geschützt. Alle Rechte an der Software sowie an sonstigen im
15
// + Rahmen der Vertragsanbahnung und Vertragsdurchführung überlassenen Unterlagen stehen im Verhältnis der Vertragspartner ausschließlich dem Lizenzgeber zu.
16
// + Die in der Software enthaltenen Copyright-Vermerke, Markenzeichen, andere Rechtsvorbehalte, Seriennummern sowie
17
// + sonstige der Programmidentifikation dienenden Merkmale dürfen vom Kunden nicht verändert oder unkenntlich gemacht werden.
18
// + Der Kunde trifft angemessene Vorkehrungen für den sicheren Einsatz der Software. Er wird die Software gründlich auf deren
19
// + Verwendbarkeit zu dem von ihm beabsichtigten Zweck testen, bevor er diese operativ einsetzt.
20
// + Die Haftung des Lizenzgebers wird - soweit gesetzlich zulässig - begrenzt in Höhe des typischen und vorhersehbaren
21
// + Schadens. Die gesetzliche Haftung bei Personenschäden und nach dem Produkthaftungsgesetz bleibt unberührt. Dem Lizenzgeber steht jedoch der Einwand 
22
// + des Mitverschuldens offen.
23
// + Der Kunde trifft angemessene Vorkehrungen für den Fall, dass die Software ganz oder teilweise nicht ordnungsgemäß arbeitet.
24
// + Er wird die Software gründlich auf deren Verwendbarkeit zu dem von ihm beabsichtigten Zweck testen, bevor er diese operativ einsetzt.
25
// + Der Kunde wird er seine Daten vor Einsatz der Software nach dem Stand der Technik sichern.
26
// + Der Kunde ist darüber unterrichtet, dass der Lizenzgeber seine Daten im zur Vertragsdurchführung erforderlichen Umfang
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// + und auf Grundlage der Datenschutzvorschriften erhebt, speichert, verarbeitet und, sofern notwendig, an Dritte übermittelt.
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// + *) Die räumliche Nutzung bezieht sich nur auf den Einsatzort, nicht auf die Reichweite der programmierten Software.
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// + #### ENDE DER NUTZUNGSBEDINGUNGEN ####'
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// +  Hinweis: Informationen über erweiterte Nutzungsrechte (wie z.B. Nutzung für nicht-private Zwecke) sind auf Anfrage per Email an info(@)hisystems.de verfügbar.
1 ingob 31
// ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
360 holgerb 32
// + Software LICENSING TERMS
1 ingob 33
// ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
360 holgerb 34
// + of HiSystems GmbH, Flachsmeerstrasse 2, 26802 Moormerland, Germany - the Licensor -
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// + The Licensor grants the customer a non-exclusive license to use the microcontroller firmware of the Flight-Ctrl, Navi-Ctrl, BL-Ctrl, and MK3Mag hardware 
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// + (the Software) exclusively for private purposes. The License is unrestricted with respect to time and territory*.
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// + The Software may only be used with the Licensor's products.
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// + The Software provided by the Licensor is protected by copyright. With respect to the relationship between the parties to this
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// + agreement, all rights pertaining to the Software and other documents provided during the preparation and execution of this
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// + agreement shall be the property of the Licensor.
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// + The information contained in the Software copyright notices, trademarks, other legal reservations, serial numbers and other
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// + features that can be used to identify the program may not be altered or defaced by the customer.
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// + The customer shall be responsible for taking reasonable precautions
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// + for the safe use of the Software. The customer shall test the Software thoroughly regarding its suitability for the
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// + intended purpose before implementing it for actual operation. The Licensor's liability shall be limited to the extent of typical and
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// + foreseeable damage to the extent permitted by law, notwithstanding statutory liability for bodily injury and product
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// + liability. However, the Licensor shall be entitled to the defense of contributory negligence.
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// + The customer will take adequate precautions in the case, that the software is not working properly. The customer will test
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// + the software for his purpose before any operational usage. The customer will backup his data before using the software.
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// + The customer understands that the Licensor collects, stores and processes, and, where required, forwards, customer data
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// + to third parties to the extent necessary for executing the agreement, subject to applicable data protection and privacy regulations.
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// + *) The territory aspect only refers to the place where the Software is used, not its programmed range.
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// + #### END OF LICENSING TERMS ####
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// + Note: For information on license extensions (e.g. commercial use), please contact us at info(@)hisystems.de.
1 ingob 55
// ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
24 StephanB 56
#include "91x_lib.h"
136 killagreg 57
#include "config.h"
362 holgerb 58
#include "main.h"
1 ingob 59
 
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//________________________________________________________________________________________________________________________________________
24 StephanB 61
// Module name:                 ssc.c 
1 ingob 62
// Compiler used:               avr-gcc 3.4.5
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// Last Modifikation:   24.07.2007
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// Version:                             1.02
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// Authors:                             Stephan Busker  
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// Description:                 Source files for access to the synchrnous serial channel.
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//                                              Copyright (C) 2007 Stephan Busker
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//........................................................................................................................................
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// ext. Functions:              extern void                     SSC_Init(void);         
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//                                              extern u8                               SSC_GetChar (void);
1 ingob 71
//                                              extern void                     SSC_PutChar (u8 Byte);
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//                                              extern void                     SSC_Disable(void); 
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//                                              extern void                     SSC_Enable(void); 
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//                                              extern void                             SSC_ClearRxFifo();
1 ingob 75
//........................................................................................................................................
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// URL:                                 www.Mikro-Control.de
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// mailto:                              stephan.busker@mikro-control.de
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//________________________________________________________________________________________________________________________________________
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//________________________________________________________________________________________________________________________________________
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// Function:    SSC_Enable(void);
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// 
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// Description: This function enables chipselect of the sdcard (active low) 
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//                              
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//
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// Returnvalue: none
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//________________________________________________________________________________________________________________________________________
1 ingob 90
 
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void SSC_Enable(void)
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{
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        // enable chipselect of the sd-card (P5.4 -> SD-CS, active low). 
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        GPIO_WriteBit(GPIO5, GPIO_Pin_4 , Bit_RESET);
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}
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1 ingob 97
//________________________________________________________________________________________________________________________________________
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// Function:    SSC_Disable(void);
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// 
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// Description: This function disables chipselect of the sdcard (active low) 
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//                              
102
//
103
// Returnvalue: none
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//________________________________________________________________________________________________________________________________________
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106
void SSC_Disable(void)
107
{
108
        // disable chipselect of the sd-card (P5.4 -> SD-CS, active low). 
109
        GPIO_WriteBit(GPIO5, GPIO_Pin_4 , Bit_SET);
110
}
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//________________________________________________________________________________________________________________________________________
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// Function:    SSC_Init(void);
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// 
1 ingob 116
// Description: This function initialises the synchronus serial channel to the sdcard. 
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//                              
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//
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// Returnvalue: none
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//________________________________________________________________________________________________________________________________________
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379 holgerb 122
void SSC_Speed(u32 speed)
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{
124
        SSP_InitTypeDef         SSP_InitStructure;
125
 
126
    SSP_Cmd(SSP1, DISABLE);
127
        SSP_DeInit(SSP1);
128
        SSP_StructInit(&SSP_InitStructure);
129
        SSP_InitStructure.SSP_FrameFormat = SSP_FrameFormat_Motorola;
130
        SSP_InitStructure.SSP_Mode = SSP_Mode_Master;
131
        SSP_InitStructure.SSP_CPHA = SSP_CPHA_1Edge;
132
        SSP_InitStructure.SSP_CPOL = SSP_CPOL_Low;
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        // Set Baud Rate (Prescaler)
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        // bit rate is BRCLK/SSP_ClockPrescaler/(1+SSP_ClockRate))
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        // With MSCLK = 48MHz = BRCLK we get for the SPICLK = 48Mhz / 20 / (1+5) = 400 kHz 
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        SSP_InitStructure.SSP_ClockRate = 5; //5
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        SSP_InitStructure.SSP_ClockPrescaler = (48000 / (5+1)) / speed;
138
        SSP_Init(SSP1, &SSP_InitStructure);
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        SSP_Cmd(SSP1, ENABLE);
140
}
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142
 
1 ingob 143
void SSC_Init(void)
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{
24 StephanB 145
        GPIO_InitTypeDef        GPIO_InitStructure;
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//      WIU_InitTypeDef         WIU_InitStructure;
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        // enable APB clock for SPI1
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        SCU_APBPeriphClockConfig(__SSP1 ,ENABLE);
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        // configure P5.4 -> SD-CS as an output pin
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        GPIO_StructInit(&GPIO_InitStructure);
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        GPIO_InitStructure.GPIO_Direction = GPIO_PinOutput;
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        GPIO_InitStructure.GPIO_Pin = GPIO_Pin_4;
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        GPIO_InitStructure.GPIO_Type = GPIO_Type_PushPull ;
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        GPIO_InitStructure.GPIO_IPInputConnected = GPIO_IPInputConnected_Disable;
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        GPIO_InitStructure.GPIO_Alternate = GPIO_OutputAlt1;
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        GPIO_Init (GPIO5, &GPIO_InitStructure);
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        // configure P3.4 -> SCK1 and P3.6 -> MOSI1 as an output pin
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        GPIO_StructInit(&GPIO_InitStructure);
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        GPIO_InitStructure.GPIO_Direction = GPIO_PinOutput;
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        GPIO_InitStructure.GPIO_Pin = GPIO_Pin_4 | GPIO_Pin_6;
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        GPIO_InitStructure.GPIO_Type = GPIO_Type_PushPull ;
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        GPIO_InitStructure.GPIO_IPInputConnected = GPIO_IPInputConnected_Enable;
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        GPIO_InitStructure.GPIO_Alternate = GPIO_OutputAlt2;
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        GPIO_Init (GPIO3, &GPIO_InitStructure);
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        // configure P3.5 <- MISO1 as an input pin
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        GPIO_StructInit(&GPIO_InitStructure);
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        GPIO_InitStructure.GPIO_Direction = GPIO_PinInput;
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        GPIO_InitStructure.GPIO_Pin = GPIO_Pin_5;
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        GPIO_InitStructure.GPIO_Type = GPIO_Type_PushPull;
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        GPIO_InitStructure.GPIO_IPInputConnected = GPIO_IPInputConnected_Enable;
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        GPIO_InitStructure.GPIO_Alternate = GPIO_InputAlt1;
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        GPIO_Init (GPIO3, &GPIO_InitStructure);
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        // configure SPI1
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    SSC_Speed(400);
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        SSC_Disable();
176
        SSP_Cmd(SSP1, ENABLE);
1 ingob 177
 
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        // Configure SD_SWITCH at pin GPIO5.3 as an external irq 11
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        // configure the port
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        SCU_APBPeriphClockConfig(__GPIO5, ENABLE); // Enable the GPIO5 Clock    
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    GPIO_InitStructure.GPIO_Direction =         GPIO_PinInput;
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    GPIO_InitStructure.GPIO_Pin =                       GPIO_Pin_3;
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        GPIO_InitStructure.GPIO_Type =                  GPIO_Type_PushPull ;
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        GPIO_InitStructure.GPIO_IPInputConnected =      GPIO_IPInputConnected_Disable;
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        GPIO_InitStructure.GPIO_Alternate =     GPIO_InputAlt1;
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    GPIO_Init(GPIO5, &GPIO_InitStructure);
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/*
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        // configure the EXT11 interrupt line (P5.3) as an IRQ with the lowest priority
191
        SCU_APBPeriphClockConfig(__WIU, ENABLE);
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        WIU_Cmd(ENABLE);
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        WIU_ClearITPendingBit(WIU_Line11);
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        //WIU_DeInit();
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        WIU_InitStructure.WIU_TriggerEdge = WIU_FallingEdge;
196
        WIU_InitStructure.WIU_Line = WIU_Line11;
197
        WIU_Init(&WIU_InitStructure);
198
        // The  EXTIT1_IRQHandler() is called every time the SD-Switch is activated (falling edge)
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        // by inserting an sd-card
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        SCU_WakeUpLineConfig(11);
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    VIC_Config(EXTIT1_ITLine, VIC_IRQ, PRIORITY_SDSWITCH);
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    VIC_ITCmd(EXTIT1_ITLine, ENABLE);
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*/
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}
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void SSC_Deinit(void)
207
{
208
        GPIO_InitTypeDef        GPIO_InitStructure;
1 ingob 209
 
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        SSP_Cmd(SSP1, DISABLE);
211
        SSP_DeInit(SSP1);
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        // configure P5.4 -> SD-CS as an input pin
214
        GPIO_InitStructure.GPIO_Direction = GPIO_PinInput;
215
        GPIO_InitStructure.GPIO_Pin = GPIO_Pin_4;
216
        GPIO_InitStructure.GPIO_Type = GPIO_Type_PushPull ;
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        GPIO_InitStructure.GPIO_IPInputConnected = GPIO_IPInputConnected_Disable;
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        GPIO_InitStructure.GPIO_Alternate = GPIO_InputAlt1;
219
        GPIO_Init (GPIO5, &GPIO_InitStructure);
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        // configure P3.4 -> SCK1 and P3.6 -> MOSI1 as an input pin
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        GPIO_InitStructure.GPIO_Direction = GPIO_PinInput;
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        GPIO_InitStructure.GPIO_Pin = GPIO_Pin_4 | GPIO_Pin_6;
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        GPIO_InitStructure.GPIO_Type = GPIO_Type_PushPull ;
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        GPIO_InitStructure.GPIO_IPInputConnected = GPIO_IPInputConnected_Disable;
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        GPIO_InitStructure.GPIO_Alternate = GPIO_InputAlt1;
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        GPIO_Init (GPIO3, &GPIO_InitStructure);
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        // configure P3.5 <- MISO1 as an input pin
228
        GPIO_InitStructure.GPIO_Direction = GPIO_PinInput;
229
        GPIO_InitStructure.GPIO_Pin = GPIO_Pin_5;
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        GPIO_InitStructure.GPIO_Type = GPIO_Type_PushPull;
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        GPIO_InitStructure.GPIO_IPInputConnected = GPIO_IPInputConnected_Disable;
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        GPIO_InitStructure.GPIO_Alternate = GPIO_InputAlt1;
233
        GPIO_Init (GPIO3, &GPIO_InitStructure);
234
 
235
        // disable APB clock for SPI1
236
        SCU_APBPeriphClockConfig(__SSP1 ,DISABLE);
237
 
238
        // configure the port of the SDC-Switch
239
        SCU_APBPeriphClockConfig(__GPIO5, ENABLE); // Enable the GPIO5 Clock    
240
    GPIO_InitStructure.GPIO_Direction =         GPIO_PinInput;
241
    GPIO_InitStructure.GPIO_Pin =                       GPIO_Pin_3;
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        GPIO_InitStructure.GPIO_Type =                  GPIO_Type_PushPull ;
196 killagreg 243
        GPIO_InitStructure.GPIO_IPInputConnected =      GPIO_IPInputConnected_Disable;
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        GPIO_InitStructure.GPIO_Alternate =     GPIO_InputAlt1;
245
    GPIO_Init(GPIO5, &GPIO_InitStructure);
1 ingob 246
}
247
 
248
 
249
//________________________________________________________________________________________________________________________________________
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// Function:    SSC_GetChar(void);
1 ingob 251
// 
252
// Description: This function reads one byte from the SSC
253
//                              
254
//
255
// Returnvalue: the byte received.
256
//________________________________________________________________________________________________________________________________________
257
 
258
u8 SSC_GetChar (void)
259
{
260
        u8 Byte = 0;
378 holgerb 261
        while(SSP_GetFlagStatus(SSP1, SSP_FLAG_TxFifoNotFull) != SET);  // wait for space in the tx fifo
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        SSP_SendData(SSP1, 0xFF);// send dymmy byte (0xFF) as master to receive a byte from the slave
378 holgerb 263
        while(SSP_GetFlagStatus(SSP1, SSP_FLAG_TxFifoEmpty) != SET); // wait for the byte to be sent
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        Byte = SSP_ReceiveData(SSP1); // read the byte transmitted from the slave
1 ingob 265
        return (Byte);
266
}
267
 
268
//________________________________________________________________________________________________________________________________________
269
void SSC_ClearRxFifo (void)
270
{
24 StephanB 271
        // wait that the tx fifo is empty
378 holgerb 272
        while(SSP_GetFlagStatus(SSP1, SSP_FLAG_TxFifoEmpty) != SET);
24 StephanB 273
        // then empty the rx fifo by reading all the bytes that are available
378 holgerb 274
        while(SSP_GetFlagStatus(SSP1, SSP_FLAG_RxFifoNotEmpty) == SET) SSP_ReceiveData(SSP1);
1 ingob 275
}
276
//________________________________________________________________________________________________________________________________________
24 StephanB 277
// Function:    SSC_PutChar(u8 Byte);
1 ingob 278
// 
279
// Description: This function writes one byte to the SSC 
280
//                              
281
//
282
// Returnvalue: none
283
//________________________________________________________________________________________________________________________________________
284
 
285
void SSC_PutChar (u8 Byte)
286
{
24 StephanB 287
        // wait for some space in the tx fifo
378 holgerb 288
        while(SSP_GetFlagStatus(SSP1, SSP_FLAG_TxFifoNotFull) != SET);
24 StephanB 289
        // put the byte to send in the tx fifo
1 ingob 290
        SSP_SendData(SSP1, Byte);
291
}
292
 
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