234 lines
6.3 KiB
C
234 lines
6.3 KiB
C
// Module for interfacing with the I2C interface
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#include "module.h"
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#include "lauxlib.h"
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#include "lextra.h"
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#include "platform.h"
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#include "i2c_common.h"
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// Lua: i2c.setup( id, sda, scl, speed )
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static int i2c_setup( lua_State *L )
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{
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unsigned id = luaL_checkinteger( L, 1 );
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unsigned sda = luaL_checkinteger( L, 2 );
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unsigned scl = luaL_checkinteger( L, 3 );
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uint32_t speed = (uint32_t)luaL_checkinteger( L, 4 );
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luaL_argcheck( L, id < I2C_ID_MAX, 1, "invalid id" );
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MOD_CHECK_ID( gpio, sda );
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MOD_CHECK_ID( gpio, scl );
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if (id == I2C_ID_SW) {
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luaL_argcheck( L, speed <= PLATFORM_I2C_SPEED_SLOW, 4, "wrong arg range" );
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if (!platform_i2c_setup( id, sda, scl, (uint32_t)speed ))
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luaL_error( L, "setup failed" );
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} else {
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luaL_argcheck( L, speed <= PLATFORM_I2C_SPEED_FASTPLUS, 4, "wrong arg range" );
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li2c_hw_master_setup( L, id, sda, scl, speed );
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}
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return 0;
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}
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// Lua: i2c.start( id )
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static int i2c_start( lua_State *L )
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{
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unsigned id = luaL_checkinteger( L, 1 );
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luaL_argcheck( L, id < I2C_ID_MAX, 1, "invalid id" );
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if (id == I2C_ID_SW) {
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if (!platform_i2c_send_start( id ))
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luaL_error( L, "command failed");
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} else {
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li2c_hw_master_start( L, id );
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}
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return 0;
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}
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// Lua: i2c.stop( id )
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static int i2c_stop( lua_State *L )
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{
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unsigned id = luaL_checkinteger( L, 1 );
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luaL_argcheck( L, id < I2C_ID_MAX, 1, "invalid id" );
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if (id == I2C_ID_SW) {
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if (!platform_i2c_send_stop( id ))
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luaL_error( L, "command failed" );
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} else {
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li2c_hw_master_stop( L, id );
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}
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return 0;
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}
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// Lua: status = i2c.address( id, address, direction )
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static int i2c_address( lua_State *L )
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{
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int stack = 0;
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unsigned id = luaL_checkinteger( L, ++stack );
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luaL_argcheck( L, id < I2C_ID_MAX, stack, "invalid id" );
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int address = luaL_checkinteger( L, ++stack );
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luaL_argcheck( L, address >= 0 && address <= 127, stack, "wrong arg range" );
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int direction = luaL_checkinteger( L, ++stack );
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luaL_argcheck( L,
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direction == PLATFORM_I2C_DIRECTION_TRANSMITTER ||
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direction == PLATFORM_I2C_DIRECTION_RECEIVER,
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stack, "wrong arg range" );
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bool ack_check_en = luaL_optbool( L, ++stack, true );
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int ret;
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if (id == I2C_ID_SW) {
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ret = platform_i2c_send_address( id, (uint16_t)address, direction, ack_check_en ? 1 : 0 );
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} else {
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ret = li2c_hw_master_address( L, id, (uint16_t)address, direction, ack_check_en );
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}
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lua_pushboolean( L, ret > 0 );
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return 1;
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}
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// Lua: wrote = i2c.write( id, data1, [data2], ..., [datan] )
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// data can be either a string, a table or an 8-bit number
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static int i2c_write( lua_State *L )
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{
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unsigned id = luaL_checkinteger( L, 1 );
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luaL_argcheck( L, id < I2C_ID_MAX, 1, "invalid id" );
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const char *pdata;
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size_t datalen, i;
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int numdata;
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uint32_t wrote = 0;
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unsigned argn;
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bool ack_check_en = true;
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if (lua_isboolean( L, -1 )) {
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ack_check_en = lua_toboolean( L, -1 );
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lua_pop( L, 1 );
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}
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if( lua_gettop( L ) < 2 )
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return luaL_error( L, "wrong arg type" );
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for( argn = 2; argn <= lua_gettop( L ); argn ++ )
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{
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// lua_isnumber() would silently convert a string of digits to an integer
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// whereas here strings are handled separately.
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if( lua_type( L, argn ) == LUA_TNUMBER )
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{
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numdata = ( int )luaL_checkinteger( L, argn );
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if( numdata < 0 || numdata > 255 )
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return luaL_error( L, "wrong arg range" );
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if (id == I2C_ID_SW) {
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if( platform_i2c_send_byte( id, numdata, 1) != 1 && ack_check_en )
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break;
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} else {
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li2c_hw_master_write( L, id, numdata, ack_check_en );
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}
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wrote ++;
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}
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else if( lua_istable( L, argn ) )
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{
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datalen = lua_objlen( L, argn );
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for( i = 0; i < datalen; i ++ )
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{
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lua_rawgeti( L, argn, i + 1 );
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numdata = ( int )luaL_checkinteger( L, -1 );
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lua_pop( L, 1 );
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if( numdata < 0 || numdata > 255 )
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return luaL_error( L, "wrong arg range" );
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if (id == I2C_ID_SW) {
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if( platform_i2c_send_byte( id, numdata, 1 ) == 0 && ack_check_en)
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break;
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} else {
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li2c_hw_master_write( L, id, numdata, ack_check_en );
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}
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}
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wrote += i;
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if( i < datalen )
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break;
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}
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else
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{
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pdata = luaL_checklstring( L, argn, &datalen );
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for( i = 0; i < datalen; i ++ )
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if (id == I2C_ID_SW) {
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if( platform_i2c_send_byte( id, pdata[ i ], 1 ) == 0 && ack_check_en)
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break;
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} else {
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li2c_hw_master_write( L, id, pdata[ i ], ack_check_en );
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}
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wrote += i;
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if( i < datalen )
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break;
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}
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}
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lua_pushinteger( L, wrote );
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return 1;
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}
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// Lua: read = i2c.read( id, size )
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static int i2c_read( lua_State *L )
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{
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unsigned id = luaL_checkinteger( L, 1 );
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luaL_argcheck( L, id < I2C_ID_MAX, 1, "invalid id" );
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uint32_t size = ( uint32_t )luaL_checkinteger( L, 2 ), i;
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if (id == I2C_ID_SW) {
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luaL_Buffer b;
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int data;
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if( size == 0 )
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return 0;
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luaL_buffinit( L, &b );
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for( i = 0; i < size; i ++ )
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if( ( data = platform_i2c_recv_byte( id, i < size - 1 ) ) == -1 )
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break;
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else
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luaL_addchar( &b, ( char )data );
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luaL_pushresult( &b );
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return 1;
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} else {
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li2c_hw_master_read( L, id, size );
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return 0;
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}
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}
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static const LUA_REG_TYPE i2c_map[] = {
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{ LSTRKEY( "setup" ), LFUNCVAL( i2c_setup ) },
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{ LSTRKEY( "start" ), LFUNCVAL( i2c_start ) },
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{ LSTRKEY( "stop" ), LFUNCVAL( i2c_stop ) },
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{ LSTRKEY( "address" ), LFUNCVAL( i2c_address ) },
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{ LSTRKEY( "write" ), LFUNCVAL( i2c_write ) },
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{ LSTRKEY( "read" ), LFUNCVAL( i2c_read ) },
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{ LSTRKEY( "transfer" ), LFUNCVAL( li2c_hw_master_transfer ) },
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{ LSTRKEY( "slave"), LROVAL( li2c_slave_map ) },
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{ LSTRKEY( "FASTPLUS" ), LNUMVAL( PLATFORM_I2C_SPEED_FASTPLUS ) },
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{ LSTRKEY( "FAST" ), LNUMVAL( PLATFORM_I2C_SPEED_FAST ) },
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{ LSTRKEY( "SLOW" ), LNUMVAL( PLATFORM_I2C_SPEED_SLOW ) },
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{ LSTRKEY( "TRANSMITTER" ), LNUMVAL( PLATFORM_I2C_DIRECTION_TRANSMITTER ) },
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{ LSTRKEY( "RECEIVER" ), LNUMVAL( PLATFORM_I2C_DIRECTION_RECEIVER ) },
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{ LSTRKEY( "SW" ), LNUMVAL( I2C_ID_SW ) },
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{ LSTRKEY( "HW0" ), LNUMVAL( I2C_ID_HW0 ) },
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{ LSTRKEY( "HW1" ), LNUMVAL( I2C_ID_HW1 ) },
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{LNILKEY, LNILVAL}
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};
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int luaopen_i2c( lua_State *L ) {
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li2c_hw_master_init( L );
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li2c_hw_slave_init( L );
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return 0;
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}
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NODEMCU_MODULE(I2C, "i2c", i2c_map, luaopen_i2c);
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