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8 <h1>spi.c</h1><a href="spi_8c.html">Go to the documentation of this file.</a><div class="fragment"><pre class="fragment">00001 <span class="comment">/*! \file spi.c \brief SPI interface driver. */</span>
9 00002 <span class="comment">//*****************************************************************************</span>
10 00003 <span class="comment">//</span>
11 00004 <span class="comment">// File Name : 'spi.c'</span>
12 00005 <span class="comment">// Title : SPI interface driver</span>
13 00006 <span class="comment">// Author : Pascal Stang - Copyright (C) 2000-2002</span>
14 00007 <span class="comment">// Created : 11/22/2000</span>
15 00008 <span class="comment">// Revised : 06/06/2002</span>
16 00009 <span class="comment">// Version : 0.6</span>
17 00010 <span class="comment">// Target MCU : Atmel AVR series</span>
18 00011 <span class="comment">// Editor Tabs : 4</span>
19 00012 <span class="comment">//</span>
20 00013 <span class="comment">// NOTE: This code is currently below version 1.0, and therefore is considered</span>
21 00014 <span class="comment">// to be lacking in some functionality or documentation, or may not be fully</span>
22 00015 <span class="comment">// tested. Nonetheless, you can expect most functions to work.</span>
23 00016 <span class="comment">//</span>
24 00017 <span class="comment">// This code is distributed under the GNU Public License</span>
25 00018 <span class="comment">// which can be found at http://www.gnu.org/licenses/gpl.txt</span>
26 00019 <span class="comment">//</span>
27 00020 <span class="comment">//*****************************************************************************</span>
28 00021
29 00022 <span class="preprocessor">#include &lt;avr/io.h&gt;</span>
30 00023 <span class="preprocessor">#include &lt;avr/interrupt.h&gt;</span>
31 00024
32 00025 <span class="preprocessor">#include "<a class="code" href="spi_8h.html">spi.h</a>"</span>
33 00026
34 00027 <span class="comment">// Define the SPI_USEINT key if you want SPI bus operation to be</span>
35 00028 <span class="comment">// interrupt-driven. The primary reason for not using SPI in</span>
36 00029 <span class="comment">// interrupt-driven mode is if the SPI send/transfer commands</span>
37 00030 <span class="comment">// will be used from within some other interrupt service routine</span>
38 00031 <span class="comment">// or if interrupts might be globally turned off due to of other</span>
39 00032 <span class="comment">// aspects of your program</span>
40 00033 <span class="comment">//</span>
41 00034 <span class="comment">// Comment-out or uncomment this line as necessary</span>
42 00035 <span class="comment">//#define SPI_USEINT</span>
43 00036
44 00037 <span class="comment">// global variables</span>
45 00038 <span class="keyword">volatile</span> u08 spiTransferComplete;
46 00039
47 00040 <span class="comment">// SPI interrupt service handler</span>
48 00041 <span class="preprocessor">#ifdef SPI_USEINT</span>
49 00042 <span class="preprocessor"></span><a class="code" href="a2d_8c.html#a10">SIGNAL</a>(SIG_SPI)
50 00043 {
51 00044 spiTransferComplete = TRUE;
52 00045 }
53 00046 <span class="preprocessor">#endif</span>
54 00047 <span class="preprocessor"></span>
55 00048 <span class="comment">// access routines</span>
56 00049 <span class="keywordtype">void</span> spiInit()
57 00050 {
58 00051 <span class="preprocessor">#ifdef __AVR_ATmega128__</span>
59 00052 <span class="preprocessor"></span> <span class="comment">// setup SPI I/O pins</span>
60 00053 sbi(PORTB, 1); <span class="comment">// set SCK hi</span>
61 00054 sbi(DDRB, 1); <span class="comment">// set SCK as output</span>
62 00055 cbi(DDRB, 3); <span class="comment">// set MISO as input</span>
63 00056 sbi(DDRB, 2); <span class="comment">// set MOSI as output</span>
64 00057 sbi(DDRB, 0); <span class="comment">// SS must be output for Master mode to work</span>
65 00058 <span class="preprocessor">#elif __AVR_ATmega8__</span>
66 00059 <span class="preprocessor"></span> <span class="comment">// setup SPI I/O pins</span>
67 00060 sbi(PORTB, 5); <span class="comment">// set SCK hi</span>
68 00061 sbi(DDRB, 5); <span class="comment">// set SCK as output</span>
69 00062 cbi(DDRB, 4); <span class="comment">// set MISO as input</span>
70 00063 sbi(DDRB, 3); <span class="comment">// set MOSI as output</span>
71 00064 sbi(DDRB, 2); <span class="comment">// SS must be output for Master mode to work</span>
72 00065 <span class="preprocessor">#else</span>
73 00066 <span class="preprocessor"></span> <span class="comment">// setup SPI I/O pins</span>
74 00067 sbi(PORTB, 7); <span class="comment">// set SCK hi</span>
75 00068 sbi(DDRB, 7); <span class="comment">// set SCK as output</span>
76 00069 cbi(DDRB, 6); <span class="comment">// set MISO as input</span>
77 00070 sbi(DDRB, 5); <span class="comment">// set MOSI as output</span>
78 00071 sbi(DDRB, 4); <span class="comment">// SS must be output for Master mode to work</span>
79 00072 <span class="preprocessor">#endif</span>
80 00073 <span class="preprocessor"></span>
81 00074 <span class="comment">// setup SPI interface :</span>
82 00075 <span class="comment">// master mode</span>
83 00076 sbi(SPCR, MSTR);
84 00077 <span class="comment">// clock = f/4</span>
85 00078 <span class="comment">// cbi(SPCR, SPR0);</span>
86 00079 <span class="comment">// cbi(SPCR, SPR1);</span>
87 00080 <span class="comment">// clock = f/16</span>
88 00081 cbi(SPCR, SPR0);
89 00082 sbi(SPCR, SPR1);
90 00083 <span class="comment">// select clock phase positive-going in middle of data</span>
91 00084 cbi(SPCR, CPOL);
92 00085 <span class="comment">// Data order MSB first</span>
93 00086 cbi(SPCR,DORD);
94 00087 <span class="comment">// enable SPI</span>
95 00088 sbi(SPCR, SPE);
96 00089
97 00090
98 00091 <span class="comment">// some other possible configs</span>
99 00092 <span class="comment">//outp((1&lt;&lt;MSTR)|(1&lt;&lt;SPE)|(1&lt;&lt;SPR0), SPCR );</span>
100 00093 <span class="comment">//outp((1&lt;&lt;CPHA)|(1&lt;&lt;CPOL)|(1&lt;&lt;MSTR)|(1&lt;&lt;SPE)|(1&lt;&lt;SPR0)|(1&lt;&lt;SPR1), SPCR );</span>
101 00094 <span class="comment">//outp((1&lt;&lt;CPHA)|(1&lt;&lt;MSTR)|(1&lt;&lt;SPE)|(1&lt;&lt;SPR0), SPCR );</span>
102 00095
103 00096 <span class="comment">// clear status</span>
104 00097 inb(SPSR);
105 00098 spiTransferComplete = TRUE;
106 00099
107 00100 <span class="comment">// enable SPI interrupt</span>
108 00101 <span class="preprocessor"> #ifdef SPI_USEINT</span>
109 00102 <span class="preprocessor"></span> sbi(SPCR, SPIE);
110 00103 <span class="preprocessor"> #endif</span>
111 00104 <span class="preprocessor"></span>}
112 00105 <span class="comment">/*</span>
113 00106 <span class="comment">void spiSetBitrate(u08 spr)</span>
114 00107 <span class="comment">{</span>
115 00108 <span class="comment"> outb(SPCR, (inb(SPCR) &amp; ((1&lt;&lt;SPR0)|(1&lt;&lt;SPR1))) | (spr&amp;((1&lt;&lt;SPR0)|(1&lt;&lt;SPR1)))));</span>
116 00109 <span class="comment">}</span>
117 00110 <span class="comment">*/</span>
118 00111 <span class="keywordtype">void</span> spiSendByte(u08 data)
119 00112 {
120 00113 <span class="comment">// send a byte over SPI and ignore reply</span>
121 00114 <span class="preprocessor"> #ifdef SPI_USEINT</span>
122 00115 <span class="preprocessor"></span> <span class="keywordflow">while</span>(!spiTransferComplete);
123 00116 spiTransferComplete = FALSE;
124 00117 <span class="preprocessor"> #else</span>
125 00118 <span class="preprocessor"></span> <span class="keywordflow">while</span>(!(inb(SPSR) &amp; (1&lt;&lt;SPIF)));
126 00119 <span class="preprocessor"> #endif</span>
127 00120 <span class="preprocessor"></span>
128 00121 outb(SPDR, data);
129 00122 }
130 00123
131 00124 u08 spiTransferByte(u08 data)
132 00125 {
133 00126 <span class="preprocessor"> #ifdef SPI_USEINT</span>
134 00127 <span class="preprocessor"></span> <span class="comment">// send the given data</span>
135 00128 spiTransferComplete = FALSE;
136 00129 outb(SPDR, data);
137 00130 <span class="comment">// wait for transfer to complete</span>
138 00131 <span class="keywordflow">while</span>(!spiTransferComplete);
139 00132 <span class="preprocessor"> #else</span>
140 00133 <span class="preprocessor"></span> <span class="comment">// send the given data</span>
141 00134 outb(SPDR, data);
142 00135 <span class="comment">// wait for transfer to complete</span>
143 00136 <span class="keywordflow">while</span>(!(inb(SPSR) &amp; (1&lt;&lt;SPIF)));
144 00137 <span class="preprocessor"> #endif</span>
145 00138 <span class="preprocessor"></span> <span class="comment">// return the received data</span>
146 00139 <span class="keywordflow">return</span> inb(SPDR);
147 00140 }
148 00141
149 00142 u16 spiTransferWord(u16 data)
150 00143 {
151 00144 u16 rxData = 0;
152 00145
153 00146 <span class="comment">// send MS byte of given data</span>
154 00147 rxData = (spiTransferByte((data&gt;&gt;8) &amp; 0x00FF))&lt;&lt;8;
155 00148 <span class="comment">// send LS byte of given data</span>
156 00149 rxData |= (spiTransferByte(data &amp; 0x00FF));
157 00150
158 00151 <span class="comment">// return the received data</span>
159 00152 <span class="keywordflow">return</span> rxData;
160 00153 }
161 </pre></div><hr size="1"><address style="align: right;"><small>Generated on Sun Oct 29 03:41:07 2006 for Procyon AVRlib by&nbsp;
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163 <img src="doxygen.png" alt="doxygen" align="middle" border="0"></a> 1.4.2 </small></address>
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