Error to use 1.3 in sql query - sql

I am using the following query.
select * from wp_rg_lead_detail where lead_id=5063 and field_number=cast(1.6 as decimal).
but it returns the field number 2 result instead of 1.6
Please let me know how can I do it?

Here:
select * from wp_rg_lead_detail where lead_id=5063 and field_number=cast(1.6 as decimal(2, 1))
You must specify number of digits in your decimal when casting, an number of digits after coma (I set them to 2 digits decimal with 1 after coma). You can easily test such casting by simply writing query:
SELECT Cast( 1.6 as decimal(2,1))
this will produce you effect of your casting. If you don't include (2,1) part, it will be automatically rounded to 2.

Related

Converting to decimal using sql statement

i have decimal numbers like in the table below, im trying to convert them to decimal, because when i select them, they are come out as integer, for example on row 1 if i select 0.8 or 2.86 it will give me 0 or 2 respectively
im using the following statement
select ELERENVPR, ELEDCSFPM from db-name
i tried cast to convert it
select cast(ELERENVPR, decimal), cast(ELEDCSFPM,decimal) from db-name
im not sure if it works, becouse now its renaming the table to 00001 and 00002, like the picture below
decimal with no scale or precision parameters has defaults, which might be to zero precision.
You need to be explicit about what you want. I would recommend something like decimal(10, 2) (8 digits before the decimal place, 2 after). Something like this:
select cast(ELERENVPR, decimal(10, 2)) as ELERENVPR,
cast(ELEDCSFPM, decimal(10, 2)) as ELEDCSFPM
from db-name ;
The as renames the columns.

Convert scientific notation to float in BQ

Is there an easy way to convert a number in scientific notation to float in BigQuery?
For example:
8.32E-4 to 0,08
I know this is an older question, but for anyone else looking for a solution, this query (although a little clunky) should work for all scientific notation fields.
The difficulty is that BigQuery will convert any numbers greater than E±3 to scientific notation. The workaround is to cast the number as a string. If you're using this output for reporting purposes, it shouldn't be a problem. If you need to work with the numbers, make sure you've completed all calculations before converting:
SELECT
number
,base_num
,exponent
,CASE WHEN REGEXP_EXTRACT(number, r'E([+-])') = '+'
THEN REGEXP_EXTRACT(STRING((base_num * (POW(10, exponent)))), r'(\d+\.0)')
ELSE STRING(base_num * (POW(10, (exponent * -1))))
END AS converted_number
FROM
(SELECT
number
,FLOAT(REGEXP_EXTRACT(number, r'(.*)E')) base_num
,INTEGER(REGEXP_EXTRACT(number, r'E[+-](\d+)')) exponent
FROM
(SELECT "8E+1" AS number)
,(SELECT "1.6E-3" AS number)
,(SELECT "8.32E-4" AS number)
,(SELECT "2.92E+9" AS number)
)
Explanation:
FLOAT(REGEXP_EXTRACT(number, r'(.*)E')) returns the number before the E (as a string) and then converts it to a float.
INTEGER(REGEXP_EXTRACT(number, r'E[+-](\d+)')) returns the number after the E (as a string) and then converts it to an integer.
Then, raise 10 to the exponent (or its inverse, if it's negative) and multiply this by the base number.
Finally, cast as a string to maintain non-scientific notation. For numbers greater than 1, "round" to a single 0 after the decimal using regex for easier reading.
Output:
Row number base_num exponent converted_number
1 8E+1 8.0 1 80.0
2 1.6E-3 1.6 3 0.001600
3 8.32E-4 8.32 4 0.000832
4 2.92E+9 2.92 9 2920000000.0
I supposed this is for reporting purposes maybe? Does this solve for you?
SELECT FORMAT("%.10f", 8.32E-8) number UNION ALL
SELECT FORMAT("%.6f", 8.32E-4) UNION ALL
SELECT FORMAT("%4.f", 8.32E+4) UNION ALL
SELECT FORMAT("%10.f", 8.32E+8)

SQL: Unable to CAST a query

SELECT CAST ((SUM(r.SalesVolume)/1000) AS decimal(3,3)) FROM RawData r
The above is a part of a query that I am trying to run but returns an error:
Lookup Error - SQL Server Database Error: Arithmetic overflow error converting int to data type numeric.
Not sure what this means.
The result column looks like(Without dividing by 1000 and casting):
Total_Sales_Volume
64146
69814
68259
56318
66585
51158
44365
49855
49553
88998
102739
55713
Tried casting as float but doesnt help.
The Problem is decimal(3,3) --> this means a number with 3 digit, 3 of them behind the decimal point. If you want a number like this 1234567.123 you would have do declare it as decimal(10,3)
Try this:
SELECT CAST ((SUM(r.SalesVolume)/1000.0) AS decimal(6,3)) FROM RawData r
decimal(3,3) means that you allow numbers with 3 digits in total, and 3 of these are behind the comma ... I think you meant decimal(6,3)
EDIT: In addition, you need to to divide by 1000.0, not by 1000.
If you divide by 1000, it is an integer division.
If you divide by 1000.0, then it becomes a decimal division, with commas.
Try following:
SELECT CAST ((SUM(r.SalesVolume)/1000) AS numeric(6,3)) FROM RawData r

How do I count decimal places in SQL?

I have a column X which is full of floats with decimals places ranging from 0 (no decimals) to 6 (maximum). I can count on the fact that there are no floats with greater than 6 decimal places. Given that, how do I make a new column such that it tells me how many digits come after the decimal?
I have seen some threads suggesting that I use CAST to convert the float to a string, then parse the string to count the length of the string that comes after the decimal. Is this the best way to go?
You can use something like this:
declare #v sql_variant
set #v=0.1242311
select SQL_VARIANT_PROPERTY(#v, 'Scale') as Scale
This will return 7.
I tried to make the above query work with a float column but couldn't get it working as expected. It only works with a sql_variant column as you can see here: http://sqlfiddle.com/#!6/5c62c/2
So, I proceeded to find another way and building upon this answer, I got this:
SELECT value,
LEN(
CAST(
CAST(
REVERSE(
CONVERT(VARCHAR(50), value, 128)
) AS float
) AS bigint
)
) as Decimals
FROM Numbers
Here's a SQL Fiddle to test this out: http://sqlfiddle.com/#!6/23d4f/29
To account for that little quirk, here's a modified version that will handle the case when the float value has no decimal part:
SELECT value,
Decimals = CASE Charindex('.', value)
WHEN 0 THEN 0
ELSE
Len (
Cast(
Cast(
Reverse(CONVERT(VARCHAR(50), value, 128)) AS FLOAT
) AS BIGINT
)
)
END
FROM numbers
Here's the accompanying SQL Fiddle: http://sqlfiddle.com/#!6/10d54/11
This thread is also using CAST, but I found the answer interesting:
http://www.sqlservercentral.com/Forums/Topic314390-8-1.aspx
DECLARE #Places INT
SELECT TOP 1000000 #Places = FLOOR(LOG10(REVERSE(ABS(SomeNumber)+1)))+1
FROM dbo.BigTest
and in ORACLE:
SELECT FLOOR(LOG(10,REVERSE(CAST(ABS(.56544)+1 as varchar(50))))) + 1 from DUAL
A float is just representing a real number. There is no meaning to the number of decimal places of a real number. In particular the real number 3 can have six decimal places, 3.000000, it's just that all the decimal places are zero.
You may have a display conversion which is not showing the right most zero values in the decimal.
Note also that the reason there is a maximum of 6 decimal places is that the seventh is imprecise, so the display conversion will not commit to a seventh decimal place value.
Also note that floats are stored in binary, and they actually have binary places to the right of a binary point. The decimal display is an approximation of the binary rational in the float storage which is in turn an approximation of a real number.
So the point is, there really is no sense of how many decimal places a float value has. If you do the conversion to a string (say using the CAST) you could count the decimal places. That really would be the best approach for what you are trying to do.
I answered this before, but I can tell from the comments that it's a little unclear. Over time I found a better way to express this.
Consider pi as
(a) 3.141592653590
This shows pi as 11 decimal places. However this was rounded to 12 decimal places, as pi, to 14 digits is
(b) 3.1415926535897932
A computer or database stores values in binary. For a single precision float, pi would be stored as
(c) 3.141592739105224609375
This is actually rounded up to the closest value that a single precision can store, just as we rounded in (a). The next lowest number a single precision can store is
(d) 3.141592502593994140625
So, when you are trying to count the number of decimal places, you are trying to find how many decimal places, after which all remaining decimals would be zero. However, since the number may need to be rounded to store it, it does not represent the correct value.
Numbers also introduce rounding error as mathematical operations are done, including converting from decimal to binary when inputting the number, and converting from binary to decimal when displaying the value.
You cannot reliably find the number of decimal places a number in a database has, because it is approximated to round it to store in a limited amount of storage. The difference between the real value, or even the exact binary value in the database will be rounded to represent it in decimal. There could always be more decimal digits which are missing from rounding, so you don't know when the zeros would have no more non-zero digits following it.
Solution for Oracle but you got the idea. trunc() removes decimal part in Oracle.
select *
from your_table
where (your_field*1000000 - trunc(your_field*1000000)) <> 0;
The idea of the query: Will there be any decimals left after you multiply by 1 000 000.
Another way I found is
SELECT 1.110000 , LEN(PARSENAME(Cast(1.110000 as float),1)) AS Count_AFTER_DECIMAL
I've noticed that Kshitij Manvelikar's answer has a bug. If there are no decimal places, instead of returning 0, it returns the total number of characters in the number.
So improving upon it:
Case When (SomeNumber = Cast(SomeNumber As Integer)) Then 0 Else LEN(PARSENAME(Cast(SomeNumber as float),1)) End
Here's another Oracle example. As I always warn non-Oracle users before they start screaming at me and downvoting etc... the SUBSTRING and INSTRING are ANSI SQL standard functions and can be used in any SQL. The Dual table can be replaced with any other table or created. Here's the link to SQL SERVER blog whre i copied dual table code from: http://blog.sqlauthority.com/2010/07/20/sql-server-select-from-dual-dual-equivalent/
CREATE TABLE DUAL
(
DUMMY VARCHAR(1)
)
GO
INSERT INTO DUAL (DUMMY)
VALUES ('X')
GO
The length after dot or decimal place is returned by this query.
The str can be converted to_number(str) if required. You can also get the length of the string before dot-decimal place - change code to LENGTH(SUBSTR(str, 1, dot_pos))-1 and remove +1 in INSTR part:
SELECT str, LENGTH(SUBSTR(str, dot_pos)) str_length_after_dot FROM
(
SELECT '000.000789' as str
, INSTR('000.000789', '.')+1 dot_pos
FROM dual
)
/
SQL>
STR STR_LENGTH_AFTER_DOT
----------------------------------
000.000789 6
You already have answers and examples about casting etc...
This question asks of regular SQL, but I needed a solution for SQLite. SQLite has neither a log10 function, nor a reverse string function builtin, so most of the answers here don't work. My solution is similar to Art's answer, and as a matter of fact, similar to what phan describes in the question body. It works by converting the floating point value (in SQLite, a "REAL" value) to text, and then counting the caracters after a decimal point.
For a column named "Column" from a table named "Table", the following query will produce a the count of each row's decimal places:
select
length(
substr(
cast(Column as text),
instr(cast(Column as text), '.')+1
)
) as "Column-precision" from "Table";
The code will cast the column as text, then get the index of a period (.) in the text, and fetch the substring from that point on to the end of the text. Then, it calculates the length of the result.
Remember to limit 100 if you don't want it to run for the entire table!
It's not a perfect solution; for example, it considers "10.0" as having 1 decimal place, even if it's only a 0. However, this is actually what I needed, so it wasn't a concern to me.
Hopefully this is useful to someone :)
Probably doesn't work well for floats, but I used this approach as a quick and dirty way to find number of significant decimal places in a decimal type in SQL Server. Last parameter of round function if not 0 indicates to truncate rather than round.
CASE
WHEN col = round(col, 1, 1) THEN 1
WHEN col = round(col, 2, 1) THEN 2
WHEN col = round(col, 3, 1) THEN 3
...
ELSE null END

Get an accurate percentage calculation

I am trying to divide one number by another in a SQL view. I'm dividing two columns that are each of type int, and the problem is that its giving me a rounded output, rather than an accurate one.
Here is my select:
SELECT numberOne, numberTwo, (numberOne*100/NULLIF(numberTwo, 0)) as PctOutput
This is working, but when it dives 3 by 37 its giving me 8 instead of 8.108.
How would I modify this to give me an accurate answer? Do I need to cast the numbers out of ints? if so - into what?
Try an implicit cast:
SELECT
numberOne,
numberTwo,
((1.0*numberOne)*100/NULLIF(1.0*numberTwo, 0)) as PctOutput
**--Cast the denominator as Float**
SELECT 3 * 100 / NULLIF(CAST(37 AS FLOAT),0) -- 8.10810810810811
**--Multiply by 1.0 in either numerator OR denominator**
SELECT 3 * 100 / NULLIF(37 * 1.0,0) -- 8.108108
SELECT 3.0 * 100 / NULLIF(37,0) -- 8.108108
**--Convert it to decimal**
SELECT CONVERT(DECIMAL(25,13), 3) * 100 /
NULLIF(CONVERT(DECIMAL(25,13), 37),0) -- 8.108108108
You need to cast the numbers from INT into either float or decimal.
If you use literals, they will likely be decimal (NUMERIC), not float (http://stackoverflow.com/questions/1072806/sql-server-calculation-with-numeric-literals)
Note that if you use decimal, you should be aware of the rules of scale and precision in division if you have numbers near the boundaries where you might lose precision:
http://msdn.microsoft.com/en-us/library/ms190476.aspx
In SQL Server the result is always of the same type as the inputs. So yes you do need to convert the inputs.
I generally convert using convert(decimal(9,2),numberOne) but depending you may want to convert(real,numberOne) or use a different level of precision.