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Author | SHA1 | Date | |
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9f4503a94c |
@ -51,11 +51,17 @@ impl<'a> EEPROM<'a> {
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self.select()?;
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self.i2c.start()?;
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self.i2c.write(self.address << 1)?;
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self.i2c.write(addr)?;
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if !self.i2c.write(self.address << 1)? {
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return Err("eeprom failed to ack control byte (write)");
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}
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if !self.i2c.write(addr)? {
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return Err("eeprom failed to ack read address");
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}
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self.i2c.restart()?;
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self.i2c.write((self.address << 1) | 1)?;
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if !self.i2c.write((self.address << 1) | 1)? {
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return Err("eeprom failed to ack control byte (read)");
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}
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let buf_len = buf.len();
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for (i, byte) in buf.iter_mut().enumerate() {
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*byte = self.i2c.read(i < buf_len - 1)?;
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@ -80,10 +86,16 @@ impl<'a> EEPROM<'a> {
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for (i, byte) in buf.iter().enumerate() {
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if (i == 0) || (pb == 0) {
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self.i2c.start()?;
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self.i2c.write(self.address << 1)?;
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self.i2c.write(addr + (i as u8))?;
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if !self.i2c.write(self.address << 1)? {
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return Err("eeprom failed to ack control byte (write)");
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}
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if !self.i2c.write(addr + (i as u8))? {
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return Err("eeprom failed to ack write address");
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}
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}
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if !self.i2c.write(*byte)? {
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return Err("eeprom failed to ack written value");
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}
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self.i2c.write(*byte)?;
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pb += 1;
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if (i == buf_len-1) || (pb == self.page_size) {
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