How this calculator works
A segmental retaining wall is dry-stacked, not mortared, so it is counted by the course rather than by area. Each course is a row of whole blocks spanning the wall length, and the wall is as many courses high as the block height divides into the wall height:
blocks per course = ceil( wall length ÷ block width )
courses = round( wall height ÷ block height )
wall blocks = ceil( blocks/course × courses × wastage )
cap blocks = ceil( wall length ÷ cap width × wastage )
base gravel = wall length × (block depth + 150 mm) × pad depth
backfill gravel = wall length × wall height × backfill zone
curved length = π × diameter × arc ÷ 360 (developed run of a curve)
Building an L-shape, a stepped wall, a radiused bed or a tree ring? Add a section for each run - set it to Straight, Curved (diameter + arc) or Round (a full circle) - and the block counts pool into one order. The calculator sizes two lots of gravel: the compacted leveling pad the wall sits on, in a trench a little wider than the block, and the free-draining backfill zone behind the blocks that carries water down to the drain pipe - order them as two different materials. All math runs in exact metric internally, so switching between feet and metres never changes the answer.
How many retaining wall blocks do I need?
The quick answer is blocks per course × number of courses, plus a cap row and a little waste. You do not need the wall area or a “blocks per square foot” figure - the block face width sets how many fit in a course, and the block height sets how many courses tall the wall is. Enter your wall length, your wall height and the block size above and the calculator returns the blocks per course, the courses, the total blocks to buy, the caps and the base gravel in one go - in square feet or metres, for a concrete, cinder, SRW or system block.
Worked example
This example follows the unit system you pick in the calculator above.
A 6 m long, 0.9 m high wall in 300 × 150 mm blocks (200 mm deep), with a 300 mm cap, on a 150 mm gravel pad and a 300 mm backfill zone, 5% wastage:
- Blocks per course: 6 ÷ 0.3 = 20 (round any part block up).
- Courses: 0.9 ÷ 0.15 = 6 courses high.
- Wall blocks: 20 × 6 = 120, × 1.05 = 126 blocks.
- Cap blocks: 6 ÷ 0.3 = 20, × 1.05 = 21 caps.
- Base pad: 6 × (0.20 + 0.15) × 0.15 = 0.32 m³.
- Drainage backfill: 6 × 0.9 × 0.30 = 1.62 m³ of clean stone.
- At 0.9 m the wall is under 1.2 m, so no geogrid is usually needed.
Block and base reference
Common segmental block sizes and how many fit in one course - multiply by the number of courses for the wall total:
So a 20 ft wall, 6 courses high, in 12 in blocks is 20 × 6 = 120 blocks before waste - the calculator does the rounding and adds the caps and base gravel.
Tips for ordering and building
- Bury the bottom course: dig down so the first course sits below finished grade (about one-tenth of the wall height), on top of the compacted gravel pad, for a wall that will not kick out at the base.
- Step the pad on a slope rather than tilting it, so every course stays level and the wall does not lean.
- Build in a slight backward batter (lean into the bank) - most block systems set the batter automatically with a lip or pin.
- Backfill behind the blocks with free-draining gravel and run a perforated drain pipe to daylight, so water pressure never builds up behind the wall.
- For a wall over about 1 to 1.2 m (3 to 4 ft), or any wall holding back a driveway or slope, get an engineered design with geogrid - the calculator sizes the facing blocks and base, not the reinforcement.
Permits and standards where you are
In Canada, this is a segmental retaining wall (SRW). Most provinces treat a wall over 1 m (about 3 ft 3 in) of exposed height as a designated structure - Ontario's Building Code, for example, needs a permit and an engineer's Part 4 design above that, and the rules vary by municipality.
For the recognised design method and the approval rules that apply to your wall, see the CMHA (formerly NCMA) segmental retaining wall design method, which also publishes Canadian guidance. A tall or
surcharged wall is an engineered structure - the calculator sizes the blocks and base, not the
geogrid reinforcement, which depends on the soil you are holding back.
Retaining wall guides
Go deeper on any part of the job: