Mutiple frame handling for byte stuffer
Also handles unexpected data.
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					 2 changed files with 63 additions and 2 deletions
				
			
		|  | @ -41,6 +41,7 @@ void init_byte_stuffer_state(byte_stuffer_state_t* state) { | |||
| } | ||||
| 
 | ||||
| void recv_byte(byte_stuffer_state_t* state, uint8_t data) { | ||||
|     // Start of a new frame
 | ||||
|     if (state->next_zero == 0) { | ||||
|         state->next_zero = data; | ||||
|         state->data_pos = 0; | ||||
|  | @ -49,10 +50,19 @@ void recv_byte(byte_stuffer_state_t* state, uint8_t data) { | |||
| 
 | ||||
|     state->next_zero--; | ||||
|     if (data == 0) { | ||||
|         recv_frame(state->data, state->data_pos); | ||||
|         if (state->next_zero == 0) { | ||||
|             // The frame is completed
 | ||||
|             recv_frame(state->data, state->data_pos); | ||||
|         } | ||||
|         else { | ||||
|             // The frame is invalid, so reset
 | ||||
|             state->next_zero = 0; | ||||
|             state->data_pos = 0; | ||||
|         } | ||||
|     } | ||||
|     else { | ||||
|         if (state->next_zero == 0) { | ||||
|             // Special case for zeroes
 | ||||
|             state->next_zero = data; | ||||
|             state->data[state->data_pos++] = 0; | ||||
|         } | ||||
|  |  | |||
|  | @ -72,7 +72,7 @@ Ensure(ByteStuffer, receives_three_bytes_valid_frame) { | |||
|         when(size, is_equal_to(3)), | ||||
|         when(data, is_equal_to_contents_of(expected, 3)) | ||||
|         ); | ||||
|     recv_byte(&state, 5); | ||||
|     recv_byte(&state, 4); | ||||
|     recv_byte(&state, 0x37); | ||||
|     recv_byte(&state, 0x99); | ||||
|     recv_byte(&state, 0xFF); | ||||
|  | @ -103,3 +103,54 @@ Ensure(ByteStuffer, receives_valid_frame_with_zeroes) { | |||
|     recv_byte(&state, 1); | ||||
|     recv_byte(&state, 0); | ||||
| } | ||||
| 
 | ||||
| Ensure(ByteStuffer, receives_two_valid_frames) { | ||||
|     uint8_t expected1[] = {5, 0}; | ||||
|     uint8_t expected2[] = {3}; | ||||
|     expect(recv_frame, | ||||
|         when(size, is_equal_to(2)), | ||||
|         when(data, is_equal_to_contents_of(expected1, 2)) | ||||
|         ); | ||||
|     expect(recv_frame, | ||||
|         when(size, is_equal_to(1)), | ||||
|         when(data, is_equal_to_contents_of(expected2, 1)) | ||||
|         ); | ||||
|     recv_byte(&state, 2); | ||||
|     recv_byte(&state, 5); | ||||
|     recv_byte(&state, 1); | ||||
|     recv_byte(&state, 0); | ||||
|     recv_byte(&state, 2); | ||||
|     recv_byte(&state, 3); | ||||
|     recv_byte(&state, 0); | ||||
| } | ||||
| 
 | ||||
| Ensure(ByteStuffer, receives_valid_frame_after_unexpected_zero) { | ||||
|     uint8_t expected[] = {5, 7}; | ||||
|     expect(recv_frame, | ||||
|         when(size, is_equal_to(2)), | ||||
|         when(data, is_equal_to_contents_of(expected, 2)) | ||||
|         ); | ||||
|     recv_byte(&state, 3); | ||||
|     recv_byte(&state, 1); | ||||
|     recv_byte(&state, 0); | ||||
|     recv_byte(&state, 3); | ||||
|     recv_byte(&state, 5); | ||||
|     recv_byte(&state, 7); | ||||
|     recv_byte(&state, 0); | ||||
| } | ||||
| 
 | ||||
| Ensure(ByteStuffer, receives_valid_frame_after_unexpected_non_zero) { | ||||
|     uint8_t expected[] = {5, 7}; | ||||
|     expect(recv_frame, | ||||
|         when(size, is_equal_to(2)), | ||||
|         when(data, is_equal_to_contents_of(expected, 2)) | ||||
|         ); | ||||
|     recv_byte(&state, 2); | ||||
|     recv_byte(&state, 9); | ||||
|     recv_byte(&state, 4); // This should have been zero
 | ||||
|     recv_byte(&state, 0); | ||||
|     recv_byte(&state, 3); | ||||
|     recv_byte(&state, 5); | ||||
|     recv_byte(&state, 7); | ||||
|     recv_byte(&state, 0); | ||||
| } | ||||
|  |  | |||
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	 Fred Sundvik
						Fred Sundvik